421 lines
16 KiB
Python
421 lines
16 KiB
Python
#!/usr/bin/env python3
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# VXNetworkInstance.py - Class implementing a PVC VM network and run by pvcd
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# Part of the Parallel Virtual Cluster (PVC) system
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#
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# Copyright (C) 2018 Joshua M. Boniface <joshua@boniface.me>
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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 3 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
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# along with this program. If not, see <https://www.gnu.org/licenses/>.
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#
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###############################################################################
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import os
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import sys
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from textwrap import dedent
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import pvcd.log as log
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import pvcd.zkhandler as zkhandler
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import pvcd.common as common
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class VXNetworkInstance():
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# Initialization function
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def __init__ (self, vni, zk_conn, config, logger, this_node):
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self.vni = vni
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self.zk_conn = zk_conn
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self.config = config
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self.logger = logger
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self.this_node = this_node
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self.vni_dev = config['vni_dev']
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self.old_description = None
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self.description = None
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self.domain = None
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self.ip_gateway = zkhandler.readdata(self.zk_conn, '/networks/{}/ip_gateway'.format(self.vni))
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self.ip_network = None
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self.ip_cidrnetmask = None
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self.dhcp_flag = zkhandler.readdata(self.zk_conn, '/networks/{}/dhcp_flag'.format(self.vni))
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self.dhcp_start = None
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self.dhcp_end = None
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self.vxlan_nic = 'vxlan{}'.format(self.vni)
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self.bridge_nic = 'br{}'.format(self.vni)
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self.nftables_update_filename = '{}/update'.format(config['nft_dynamic_directory'])
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self.nftables_netconf_filename = '{}/networks/{}.nft'.format(config['nft_dynamic_directory'], self.vni)
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self.firewall_rules = []
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self.dhcp_server_daemon = None
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self.dnsmasq_hostsdir = '{}/{}'.format(config['dnsmasq_dynamic_directory'], self.vni)
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self.dhcp_reservations = []
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# Zookeper handlers for changed states
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@self.zk_conn.DataWatch('/networks/{}'.format(self.vni))
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def watch_network_description(data, stat, event=''):
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if event and event.type == 'DELETED':
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# The key has been deleted after existing before; terminate this watcher
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# because this class instance is about to be reaped in Daemon.py
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return False
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if data and self.description != data.decode('ascii'):
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self.old_description = self.description
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self.description = data.decode('ascii')
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@self.zk_conn.DataWatch('/networks/{}/domain'.format(self.vni))
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def watch_network_domain(data, stat, event=''):
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if event and event.type == 'DELETED':
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# The key has been deleted after existing before; terminate this watcher
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# because this class instance is about to be reaped in Daemon.py
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return False
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if data and self.domain != data.decode('ascii'):
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domain = data.decode('ascii')
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self.domain = domain
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@self.zk_conn.DataWatch('/networks/{}/ip_network'.format(self.vni))
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def watch_network_ip_network(data, stat, event=''):
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if event and event.type == 'DELETED':
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# The key has been deleted after existing before; terminate this watcher
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# because this class instance is about to be reaped in Daemon.py
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return False
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if data and self.ip_network != data.decode('ascii'):
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ip_network = data.decode('ascii')
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self.ip_network = ip_network
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self.ip_cidrnetmask = ip_network.split('/')[-1]
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@self.zk_conn.DataWatch('/networks/{}/ip_gateway'.format(self.vni))
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def watch_network_gateway(data, stat, event=''):
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if event and event.type == 'DELETED':
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# The key has been deleted after existing before; terminate this watcher
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# because this class instance is about to be reaped in Daemon.py
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return False
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if data and self.ip_gateway != data.decode('ascii'):
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orig_gateway = self.ip_gateway
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self.ip_gateway = data.decode('ascii')
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if self.this_node.router_state == 'primary':
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if orig_gateway:
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self.removeGatewayAddress()
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self.createGatewayAddress()
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@self.zk_conn.DataWatch('/networks/{}/dhcp_flag'.format(self.vni))
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def watch_network_dhcp_status(data, stat, event=''):
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if event and event.type == 'DELETED':
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# The key has been deleted after existing before; terminate this watcher
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# because this class instance is about to be reaped in Daemon.py
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return False
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if data and self.dhcp_flag != data.decode('ascii'):
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self.dhcp_flag = ( data.decode('ascii') == 'True' )
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if self.dhcp_flag and self.this_node.router_state == 'primary':
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self.startDHCPServer()
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elif self.this_node.router_state == 'primary':
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self.stopDHCPServer()
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@self.zk_conn.DataWatch('/networks/{}/dhcp_start'.format(self.vni))
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def watch_network_dhcp_start(data, stat, event=''):
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if event and event.type == 'DELETED':
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# The key has been deleted after existing before; terminate this watcher
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# because this class instance is about to be reaped in Daemon.py
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return False
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if data and self.dhcp_start != data.decode('ascii'):
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self.dhcp_start = data.decode('ascii')
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@self.zk_conn.DataWatch('/networks/{}/dhcp_end'.format(self.vni))
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def watch_network_dhcp_end(data, stat, event=''):
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if event and event.type == 'DELETED':
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# The key has been deleted after existing before; terminate this watcher
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# because this class instance is about to be reaped in Daemon.py
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return False
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if data and self.dhcp_end != data.decode('ascii'):
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self.dhcp_end = data.decode('ascii')
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@self.zk_conn.ChildrenWatch('/networks/{}/dhcp_reservations'.format(self.vni))
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def watch_network_dhcp_reservations(new_reservations, event=''):
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if event and event.type == 'DELETED':
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# The key has been deleted after existing before; terminate this watcher
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# because this class instance is about to be reaped in Daemon.py
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return False
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if self.dhcp_reservations != new_reservations:
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old_reservations = self.dhcp_reservations
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self.dhcp_reservations = new_reservations
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self.updateDHCPReservations(old_reservations, new_reservations)
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@self.zk_conn.ChildrenWatch('/networks/{}/firewall_rules'.format(self.vni))
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def watch_network_firewall_rules(new_rules, event=''):
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if event and event.type == 'DELETED':
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# The key has been deleted after existing before; terminate this watcher
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# because this class instance is about to be reaped in Daemon.py
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return False
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if self.firewall_rules != new_rules:
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old_rules = self.firewall_rules
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self.firewall_rules = new_rules
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self.updateFirewallRules(old_rules, new_rules)
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self.createNetwork()
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self.createFirewall()
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def getvni(self):
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return self.vni
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def updateDHCPReservations(self, old_reservations_list, new_reservations_list):
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for reservation in new_reservations_list:
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if reservation not in old_reservations_list:
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# Add new reservation file
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filename = '{}/{}'.format(self.dnsmasq_hostsdir, reservation)
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ipaddr = zkhandler.readdata(
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self.zk_conn,
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'/networks/{}/dhcp_reservations/{}/ipaddr'.format(
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self.vni,
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reservation
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)
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)
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entry = '{},{}'.format(reservation, ipaddr)
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outfile = open(filename, 'w')
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outfile.write(entry)
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outfile.close()
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for reservation in old_reservations_list:
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if reservation not in new_reservations_list:
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# Remove old reservation file
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filename = '{}/{}'.format(self.dnsmasq_hostsdir, reservation)
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try:
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os.remove(filename)
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self.dhcp_server_daemon.signal('hup')
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except:
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pass
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def updateFirewallRules(self, old_rules_list, new_rules_list):
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for rule in new_rules_list:
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if rule not in old_rules_list:
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# Add new rule entry
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pass
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for rule in old_rules_list:
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if rule not in new_rules_list:
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pass
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def createNetwork(self):
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self.logger.out(
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'Creating VXLAN device on interface {}'.format(
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self.vni_dev
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),
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prefix='VNI {}'.format(self.vni),
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state='o'
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)
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common.run_os_command(
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'ip link add {} type vxlan id {} dstport 4789 dev {}'.format(
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self.vxlan_nic,
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self.vni,
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self.vni_dev
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)
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)
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common.run_os_command(
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'brctl addbr {}'.format(
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self.bridge_nic
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)
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)
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common.run_os_command(
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'brctl addif {} {}'.format(
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self.bridge_nic,
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self.vxlan_nic
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)
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)
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common.run_os_command(
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'ip link set {} up'.format(
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self.vxlan_nic
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)
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)
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common.run_os_command(
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'ip link set {} up'.format(
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self.bridge_nic
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)
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)
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def createFirewall(self):
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nftables_network_rules = """# Rules for network {vxlannic}
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add chain inet filter {vxlannic}-in
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add chain inet filter {vxlannic}-out
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add rule inet filter {vxlannic}-in counter
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add rule inet filter {vxlannic}-out counter
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# Jump from forward chain to this chain when matching net
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add rule inet filter forward ip daddr {netaddr} counter jump {vxlannic}-in
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add rule inet filter forward ip saddr {netaddr} counter jump {vxlannic}-out
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# Allow ICMP traffic into the router from network
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add rule inet filter input ip protocol icmp meta iifname {bridgenic} counter accept
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# Allow DNS and DHCP traffic into the router from network
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add rule inet filter input tcp dport 53 meta iifname {bridgenic} counter accept
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add rule inet filter input udp dport 53 meta iifname {bridgenic} counter accept
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add rule inet filter input udp dport 67 meta iifname {bridgenic} counter accept
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# Block traffic into the router from network
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add rule inet filter input meta iifname {bridgenic} counter drop
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""".format(
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netaddr=self.ip_network,
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vxlannic=self.vxlan_nic,
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bridgenic=self.bridge_nic
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)
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with open(self.nftables_netconf_filename, 'w') as nfbasefile:
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nfbasefile.write(dedent(nftables_network_rules))
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open(self.nftables_update_filename, 'a').close()
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pass
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def createGatewayAddress(self):
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if self.this_node.router_state == 'primary':
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self.logger.out(
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'Creating gateway {} on interface {}'.format(
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self.ip_gateway,
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self.bridge_nic
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),
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prefix='VNI {}'.format(self.vni),
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state='o'
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)
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common.run_os_command(
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'ip address add {}/{} dev {}'.format(
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self.ip_gateway,
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self.ip_cidrnetmask,
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self.bridge_nic
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)
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)
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common.run_os_command(
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'arping -A -c2 -I {} {}'.format(
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self.bridge_nic,
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self.ip_gateway
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),
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background=True
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)
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def startDHCPServer(self):
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if self.this_node.router_state == 'primary':
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self.logger.out(
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'Starting dnsmasq DHCP server on interface {}'.format(
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self.bridge_nic
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),
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prefix='VNI {}'.format(self.vni),
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state='o'
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)
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# Create the network hostsdir
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common.run_os_command(
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'/bin/mkdir --parents {}'.format(
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self.dnsmasq_hostsdir
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)
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)
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# Recreate the environment we need for dnsmasq
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pvcd_config_file = os.environ['PVCD_CONFIG_FILE']
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dhcp_environment = {
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'DNSMASQ_BRIDGE_INTERFACE': self.bridge_nic,
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'PVCD_CONFIG_FILE': pvcd_config_file
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}
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# Define the dnsmasq config
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dhcp_configuration = [
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'--domain-needed',
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'--bogus-priv',
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'--no-resolv',
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'--filterwin2k',
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'--expand-hosts',
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'--domain={}'.format(self.domain),
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'--local=/{}/'.format(self.domain),
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'--auth-zone={}'.format(self.domain),
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'--auth-peer=127.0.0.1,{}'.format(self.ip_gateway),
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'--auth-sec-servers=127.0.0.1,[::1],{}'.format(self.ip_gateway),
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'--listen-address={}'.format(self.ip_gateway),
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'--bind-interfaces',
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'--leasefile-ro',
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'--dhcp-script=/usr/share/pvc/pvcd/dnsmasq-zookeeper-leases.py',
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'--dhcp-range={},{},4h'.format(self.dhcp_start, self.dhcp_end),
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'--dhcp-lease-max=99',
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'--dhcp-hostsdir={}'.format(self.dnsmasq_hostsdir),
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'--log-queries=extra',
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'--log-facility={}/dnsmasq.log'.format(self.config['dnsmasq_log_directory']),
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'--keep-in-foreground'
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]
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# Start the dnsmasq process in a thread
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self.dhcp_server_daemon = common.run_os_daemon(
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'/usr/sbin/dnsmasq {}'.format(
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' '.join(dhcp_configuration)
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),
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environment=dhcp_environment
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)
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def removeNetwork(self):
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self.logger.out(
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'Removing VNI device on interface {}'.format(
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self.vni_dev
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),
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prefix='VNI {}'.format(self.vni),
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state='o'
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)
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common.run_os_command(
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'ip link set {} down'.format(
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self.bridge_nic
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)
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)
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common.run_os_command(
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'ip link set {} down'.format(
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self.vxlan_nic
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)
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)
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common.run_os_command(
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'brctl delif {} {}'.format(
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self.bridge_nic,
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self.vxlan_nic
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)
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)
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common.run_os_command(
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'brctl delbr {}'.format(
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self.bridge_nic
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)
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)
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common.run_os_command(
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'ip link delete {}'.format(
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self.vxlan_nic
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)
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)
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def removeFirewall(self):
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os.remove(self.nftables_netconf_filename)
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open(self.nftables_update_filename, 'a').close()
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pass
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def removeGatewayAddress(self):
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self.logger.out(
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'Removing gateway {} from interface {}'.format(
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self.ip_gateway,
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self.bridge_nic
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),
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prefix='VNI {}'.format(self.vni),
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state='o'
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)
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common.run_os_command(
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'ip address delete {}/{} dev {}'.format(
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self.ip_gateway,
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self.ip_cidrnetmask,
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self.bridge_nic
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)
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)
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def stopDHCPServer(self):
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if self.dhcp_server_daemon:
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self.logger.out(
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'Stopping dnsmasq DHCP server on interface {}'.format(
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self.bridge_nic
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),
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prefix='VNI {}'.format(self.vni),
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state='o'
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)
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self.dhcp_server_daemon.signal('term')
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