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1102
Configuring IPv6 Routing
IPv6 Static Reject and Discard Routes
A static configured route with a next-hop of “null” causes any packet
matching the route to disappear or vanish from the network. This type of
route is called a “Discard” route if the router returns an ICMP “network-
unreachable” message, or is called a “Reject” route if no ICMP message is
returned. The PowerConnect M6220, M6348, M8024, and M8024-k switches
support “Reject” routes, where any packets matching the route network prefix
silently disappear.
A common use of a Reject route is to quickly discard packets that cannot be
delivered because a valid route to the destination is not known. Without the
Reject route, these undeliverable packets will continue to circulate through
the network, following the default routes, until their TTL expires. Forwarding
packets that cannot be delivered wastes bandwidth, particularly on expensive
WAN connections. The Reject route will also suppress a type of “Denial of
Service” (DoS) attack where an internal host sends large numbers of packets
to unknown destinations, causing congestion of the WAN links.
• ipv6 route ::/0 null 254
Use this in all routers except the ones with direct Internet connectivity.
Routers with direct Internet connectivity should advertise a default route.
The effect of this route is that when a router does not have connectivity to
the Internet, the router will quickly discard packets that it cannot deliver.
If the router learns a default route from another router, the learned route
will have a lower distance metric and therefore a higher preference. Routes
that are more specific (have more bits in the prefix) will have precedence
over less specific routes. This will cause packets destined for non-existent
networks to be quickly discarded. Also, because of the high distance metric
(254), this route will never be advertised to any neighbor routers.
• ipv6 route fc00::/7 null 254
This route covers the entire ULA (IPv6 private) address space. If you have
networks configured in this address space, you will have more specific
routes for those networks. The more specific routes (more bits of prefix)
will have precedence over this route. Any destinations in this range not
known via another, more specific route do not exist. The effect is that
packets destined for private networks that do not exist in your network will
be quickly discarded instead of being forwarded to the default route.
Содержание PowerConnect M6220
Страница 52: ...52 Introduction ...
Страница 86: ...86 Switch Features ...
Страница 100: ...100 Hardware Overview ...
Страница 116: ...116 Using the Command Line Interface ...
Страница 121: ...Default Settings 121 ...
Страница 122: ...122 Default Settings ...
Страница 142: ...142 Setting Basic Network Information ...
Страница 206: ...206 Configuring Authentication Authorization and Accounting ...
Страница 292: ...292 Managing General System Settings Figure 11 31 Verify MOTD ...
Страница 296: ...296 Managing General System Settings ...
Страница 332: ...332 Configuring SNMP ...
Страница 408: ...408 Monitoring Switch Traffic ...
Страница 560: ...560 Configuring Access Control Lists ...
Страница 582: ...582 Configuring VLANs Figure 21 6 Add Ports to VLAN 4 Click Apply 5 Verify that the ports have been added to the VLAN ...
Страница 591: ...Configuring VLANs 591 Figure 21 17 GVRP Port Parameters Table ...
Страница 597: ...Configuring VLANs 597 Figure 21 24 Double VLAN Port Parameter Table ...
Страница 693: ...Configuring Port Based Traffic Control 693 Figure 24 3 Storm Control 5 Click Apply ...
Страница 780: ...780 Configuring Connectivity Fault Management ...
Страница 804: ...804 Snooping and Inspecting Traffic Figure 27 17 DAI Interface Configuration Summary ...
Страница 818: ...818 Snooping and Inspecting Traffic ...
Страница 836: ...836 Configuring Link Aggregation ...
Страница 860: ...860 Configuring Data Center Bridging Features ...
Страница 906: ...906 Configuring DHCP Server Settings ...
Страница 940: ...940 Configuring L2 and L3 Relay Features Figure 34 3 DHCP Relay Interface Summary ...
Страница 1080: ...1080 Configuring VRRP ...
Страница 1104: ...1104 Configuring IPv6 Routing ...
Страница 1124: ...1124 Configuring DHCPv6 Server and Relay Settings Relay Interface Number Vl100 Relay Remote ID Option Flags ...
Страница 1131: ...Configuring Differentiated Services 1131 Figure 40 5 DiffServ Class Criteria ...
Страница 1158: ...1158 Configuring Class of Service Figure 41 1 Mapping Table Configuration CoS 802 1P ...
Страница 1174: ...1174 Configuring Auto VoIP Figure 42 2 Auto VoIP Interface Configuration ...
Страница 1240: ...1240 Managing IPv4 and IPv6 Multicast Figure 43 51 DVMRP Next Hop Summary ...
Страница 1266: ...1266 Managing IPv4 and IPv6 Multicast ...
Страница 1274: ...1274 System Process Definitions ...
Страница 1294: ...1294 Index ...