예제 #1
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def validate_rpc_host(ip):
    """
    Validates the given ip for use as RPC server address.
    """
    if not is_valid_ipv4(ip) and not is_valid_ipv6(ip):
        raise ApplicationException(desc='Invalid RPC ip address: %s' % ip)
    return ip
예제 #2
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    def update_vrf_table(self, route_dist, prefix=None, next_hop=None,
                         route_family=None, route_type=None, tunnel_type=None,
                         is_withdraw=False, redundancy_mode=None,
                         pmsi_tunnel_type=None, **kwargs):
        """Update a BGP route in the VRF table identified by `route_dist`
        with the given `next_hop`.

        If `is_withdraw` is False, which is the default, add a BGP route
        to the VRF table identified by `route_dist` with the given
        `next_hop`.
        If `is_withdraw` is True, remove a BGP route from the VRF table
        and the given `next_hop` is ignored.

        If `route_family` is VRF_RF_L2_EVPN, `route_type` and `kwargs`
        are required to construct EVPN NLRI and `prefix` is ignored.

        ``redundancy_mode`` specifies a redundancy mode type.

`       `pmsi_tunnel_type` specifies the type of the PMSI tunnel attribute
         used to encode the multicast tunnel identifier.
        This field is advertised only if route_type is
        EVPN_MULTICAST_ETAG_ROUTE.

        Returns assigned VPN label.
        """
        from os_ken.services.protocols.bgp.core import BgpCoreError

        assert route_dist

        if is_withdraw:
            gen_lbl = False
            next_hop = None
        else:
            gen_lbl = True
            if not (is_valid_ipv4(next_hop) or is_valid_ipv6(next_hop)):
                raise BgpCoreError(
                    desc='Invalid IPv4/IPv6 nexthop: %s' % next_hop)

        vrf_table = self._tables.get((route_dist, route_family))
        if vrf_table is None:
            raise BgpCoreError(
                desc='VRF table  does not exist: route_dist=%s, '
                     'route_family=%s' % (route_dist, route_family))

        vni = kwargs.get('vni', None)

        if route_family == VRF_RF_IPV4:
            if not is_valid_ipv4_prefix(prefix):
                raise BgpCoreError(desc='Invalid IPv4 prefix: %s' % prefix)
            ip, masklen = prefix.split('/')
            prefix = IPAddrPrefix(int(masklen), ip)
        elif route_family == VRF_RF_IPV6:
            if not is_valid_ipv6_prefix(prefix):
                raise BgpCoreError(desc='Invalid IPv6 prefix: %s' % prefix)
            ip6, masklen = prefix.split('/')
            prefix = IP6AddrPrefix(int(masklen), ip6)
        elif route_family == VRF_RF_L2_EVPN:
            assert route_type
            if route_type == EvpnMacIPAdvertisementNLRI.ROUTE_TYPE_NAME:
                # MPLS labels will be assigned automatically
                kwargs['mpls_labels'] = []
            if route_type == EvpnInclusiveMulticastEthernetTagNLRI.ROUTE_TYPE_NAME:
                # Inclusive Multicast Ethernet Tag Route does not have "vni",
                # omit "vni" from "kwargs" here.
                vni = kwargs.pop('vni', None)
            subclass = EvpnNLRI._lookup_type_name(route_type)
            kwargs['route_dist'] = route_dist
            esi = kwargs.get('esi', None)
            if esi is not None:
                if isinstance(esi, dict):
                    esi_type = esi.get('type', 0)
                    esi_class = EvpnEsi._lookup_type(esi_type)
                    kwargs['esi'] = esi_class.from_jsondict(esi)
                else:  # isinstance(esi, numbers.Integral)
                    kwargs['esi'] = EvpnArbitraryEsi(
                        type_desc.Int9.from_user(esi))
            if vni is not None:
                # Disable to generate MPLS labels,
                # because encapsulation type is not MPLS.
                from os_ken.services.protocols.bgp.api.prefix import (
                    TUNNEL_TYPE_VXLAN, TUNNEL_TYPE_NVGRE)
                assert tunnel_type in [
                    None, TUNNEL_TYPE_VXLAN, TUNNEL_TYPE_NVGRE]
                gen_lbl = False
            prefix = subclass(**kwargs)
        else:
            raise BgpCoreError(
                desc='Unsupported route family %s' % route_family)

        # We do not check if we have a path to given prefix, we issue
        # withdrawal. Hence multiple withdrawals have not side effect.
        return vrf_table.insert_vrf_path(
            nlri=prefix, next_hop=next_hop, gen_lbl=gen_lbl,
            is_withdraw=is_withdraw, redundancy_mode=redundancy_mode,
            vni=vni, tunnel_type=tunnel_type,
            pmsi_tunnel_type=pmsi_tunnel_type)
예제 #3
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파일: prefix.py 프로젝트: openstack/os-ken
def is_valid_gw_ip_addr(addr):
    if not (validation.is_valid_ipv4(addr) or validation.is_valid_ipv6(addr)):
        raise ConfigValueError(conf_name=GW_IP_ADDR, conf_value=addr)
예제 #4
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파일: prefix.py 프로젝트: openstack/os-ken
def is_valid_ip_addr(addr):
    # Note: Allows empty IP Address (means length=0).
    # e.g.) L2VPN MAC advertisement of Cisco NX-OS
    if not (addr is None or validation.is_valid_ipv4(addr)
            or validation.is_valid_ipv6(addr)):
        raise ConfigValueError(conf_name=IP_ADDR, conf_value=addr)
예제 #5
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파일: prefix.py 프로젝트: openstack/os-ken
def is_valid_next_hop(next_hop):
    if not (validation.is_valid_ipv4(next_hop)
            or validation.is_valid_ipv6(next_hop)):
        raise ConfigValueError(conf_name=NEXT_HOP, conf_value=next_hop)
예제 #6
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 def test_is_valid_ipv6_not_colon(self):
     eq_(False, validation.is_valid_ipv6('fe80--0011-aabb-ccdd-eeff'))
예제 #7
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 def test_is_valid_ipv6(self):
     ok_(validation.is_valid_ipv6('fe80::0011:aabb:ccdd:eeff'))