242 lines
7.8 KiB
Python
242 lines
7.8 KiB
Python
import ipaddress
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import logging
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import socket
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##
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import netaddr
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from pyroute2 import IPRoute
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##
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from . import ra
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from . import utils
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# TODO: more logging
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logger = logging.getLogger()
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class IP(object):
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type = None
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version = None
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_ip = ipaddress.ip_address
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_net = ipaddress.ip_network
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_net_ip = netaddr.IPAddress
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_net_net = netaddr.IPNetwork
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def __init__(self, ip, prefix, *args, **kwargs):
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self.str = ip
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self.prefix = int(prefix)
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self.net_ip = self._net_ip(self.str)
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self.net_net = self._net_net('{0}/{1}'.format(self.str, self.prefix))
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def _ext_init(self):
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self.ip = self._ip(self.str)
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self.net = self._net('{0}/{1}'.format(self.str, self.prefix), strict = False)
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return(None)
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class IP4(IP):
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type = 'IPv4'
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version = 4
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_ip = ipaddress.IPv4Address
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_net = ipaddress.IPv4Network
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def __init__(self, ip, prefix, *args, **kwargs):
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super().__init__(ip, prefix, *args, **kwargs)
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self._ext_init()
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class IP6(IP):
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type = 'IPv6'
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version = 6
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_ip = ipaddress.IPv6Address
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_net = ipaddress.IPv6Network
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def __init__(self, ip, prefix, *args, **kwargs):
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super().__init__(ip, prefix, *args, **kwargs)
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self._ext_init()
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self.alloc_block = netaddr.SubnetSplitter(self.net_net)
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class Assignment(object):
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def __init__(self,
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assign_xml,
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ra_dns = False,
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ra_dhcp = False,
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ra_other = False,
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ra_tag = None,
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ra_domains = None):
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self.xml = assign_xml
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self.ra_dns = ra_dns
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self.ra_tag = ra_tag
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self.ra_other = ra_other
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self.ra_dhcp = ra_dhcp
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for a in ('dns', 'tag', 'other', 'dhcp'):
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k = 'ra_{0}'.format(a)
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v = getattr(self, k)
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logger.debug('{0}: {1}'.format(k, v))
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self.ra_domains = set()
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if isinstance(ra_domains, list):
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self.ra_domains.update(ra_domains)
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elif isinstance(ra_domains, str):
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self.ra_domains.update([i.lower().strip() for i in ra_domains if i.strip() != ''])
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logger.debug('ra_domains: {0}'.format(', '.join(self.ra_domains)))
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self.iface = None
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self.iface_ll = None
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self.iface_idx = None
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self.iface_blocks = []
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self.dhcp6_ranges = []
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self.alloc = None # This must be set externally to a mapped Allocation instance
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self.alloc_id = None
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self.prefix = None
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self.alloc_block = None
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self.parse()
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def _alloc(self):
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self.alloc_id = int(self.xml.attrib['alloc'].strip())
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return(None)
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def _iface(self):
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_iface_txt = self.xml.attrib['iface'].strip()
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self.iface = _iface_txt.strip()
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ipr = IPRoute()
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logger.debug('Looking for iface {0}'.format(self.iface))
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self.iface_idx = ipr.link_lookup(ifname = self.iface)[0]
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logger.debug('Found iface {0} at idx {1}'.format(self.iface, self.iface_idx))
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# Link-Local address
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ll = ipr.get_addr(index = self.iface_idx,
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family = socket.AF_INET6,
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scope = 253)[0]['attrs']
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addrs = dict(ll)['IFA_ADDRESS']
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logger.debug('Link-Local address for {0}: {1}'.format(self.iface, addrs))
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if isinstance(addrs, (list, tuple)):
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addr = addrs[0]
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else:
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addr = addrs
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self.iface_ll = addr
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ipr.close()
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return(None)
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def _prefix(self):
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self.prefix = int(self.xml.attrib.get('prefix', 64).strip())
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return(None)
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def parse(self):
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self._iface()
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self._alloc()
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self._prefix()
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return(None)
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def parse_alloc(self):
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self.alloc_block = self.alloc.ip.alloc_block
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self.iface_blocks = self.alloc_block.extract_subnet(self.prefix, count = 1)
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logger.debug('Allocation blocks for {0}: {1}'.format(self.iface, ','.join([str(i) for i in self.iface_blocks])))
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for idx, i in enumerate(self.iface_blocks):
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# DHCPv6 range.
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_base = '{0}:{1}'.format(str(i.ip).rstrip(':'), idx)
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logger.debug('Base prefix for {0}: {1}'.format(str(i), _base))
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start = '{0}:dead:beef:cafe:0'.format(_base)
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stop = '{0}:dead:beef:cafe:ffff'.format(_base)
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d_range = (start, stop)
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self.dhcp6_ranges.append(d_range)
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logger.debug('Added range {0} to block {1} for iface {2}'.format(d_range, str(i.ip), self.iface))
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return(None)
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class Allocation(object):
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def __init__(self, alloc_net):
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_ip, _prefix = alloc_net.split('/')
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self.id = int(_prefix.strip())
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self.prefix = self.id
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self.ip = IP6(_ip.strip(), self.prefix)
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class Tunnel(object):
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def __init__(self, tun_xml, he_tunnel, creds):
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self.xml = tun_xml
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self.creds = creds
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self.he = he_tunnel
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self.update_key = self.he.creds.password
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self.id = None
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self.client = None
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self.server = None
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self.endpoint = None
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self.ra = None
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self.ra_provider = None
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self.allocations = {} # This is a dict of {}[alloc.id] = Allocation obj (as provided by HE)
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self.assignments = [] # This is a list of Assignment objs
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self.parse()
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def _allocations(self):
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self.allocations = self.he.allocations
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return(None)
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def _assignments(self):
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_assigns_xml = self.xml.find('assignments')
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self.ra_provider = _assigns_xml.attrib.get('raProvider')
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for _assign_xml in _assigns_xml.findall('assign'):
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do_dns = False
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domains = []
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do_dhcp = False
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ra_other = False
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tag = None
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_ra_xml = _assign_xml.find('ra')
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if _ra_xml is not None and self.ra_provider:
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tag = _ra_xml.attrib.get('tag', None)
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_dns_xml = _ra_xml.find('dns')
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_dhcp_xml = _ra_xml.find('dhcpv6')
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if _dns_xml is not None:
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do_dns = utils.xml2bool(_dns_xml.text.strip())
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domains = [i.strip() for i in _dns_xml.attrib.get('domains', '').split() if i.strip() != '']
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if _dhcp_xml is not None:
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do_dhcp = utils.xml2bool(_dhcp_xml.text.strip())
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ra_other = utils.xml2bool(_dhcp_xml.attrib.get('advOther', 'false').strip())
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assign = Assignment(_assign_xml,
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ra_dns = do_dns,
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ra_dhcp = do_dhcp,
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ra_other = ra_other,
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ra_tag = tag,
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ra_domains = domains)
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assign.alloc = self.allocations[assign.alloc_id]
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assign.parse_alloc()
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self.assignments.append(assign)
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return(None)
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def _client(self):
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self.client = self.he.client
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return(None)
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def _creds(self):
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self.creds_id = self.xml.attrib['creds'].strip()
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return(None)
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def _endpoint(self):
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self.endpoint = self.he.endpoint
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return(None)
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def _id(self):
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self.id = int(self.xml.attrib['id'].strip())
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return(None)
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def _ra(self):
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# TODO: support conf path override via config XML?
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if self.ra_provider.strip().lower() == 'dnsmasq':
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self.ra = ra.DNSMasq()
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elif self.ra_provider.strip().lower() == 'radvd':
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self.ra = ra.RADVD()
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self.ra.conf.generate(self.assignments)
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return(None)
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def _server(self):
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self.server = self.he.server
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return(None)
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def parse(self):
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self._id()
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self._creds()
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self._client()
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self._server()
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self._endpoint()
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self._allocations()
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self._assignments()
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self._ra()
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return(None)
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