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1070
Configuring IPv6 Routing
How Does IPv6 Compare with IPv4?
There are many conceptual similarities between IPv4 and IPv6 network
operation. Addresses still have a network prefix portion (network) and a
device interface specific portion (host). While the length of the network
portion is still variable, most users have standardized on using a network
prefix length of 64 bits. This leaves 64 bits for the interface specific portion,
called an Interface ID in IPv6. Depending upon the underlying link
addressing, the Interface ID can be automatically computed from the link
(e.g., MAC address). Such an automatically computed Interface ID is called
an EUI-64 identifier, which is the interface MAC address with ff:fe inserted in
the middle.
IPv6 packets on the network are of an entirely different format than
traditional IPv4 packets and are also encapsulated in a different EtherType
(86DD rather than 0800 which is used with IPv4). The details for
encapsulating IPv6 in Ethernet frames are described in RFC2462.
Unlike IPv4, IPv6 does not have broadcasts. There are two types of IPv6
addresses — unicast and multicast. Unicast addresses allow direct one-to-one
communication between two hosts, whereas multicast addresses allow one-to-
many communication. Multicast addresses are used as destinations only.
Unicast addresses will have 00 through fe in the most significant octets and
multicast addresses will have ff in the most significant octets.
How Are IPv6 Interfaces Configured?
In PowerConnect 8000/8100-series switch software, IPv6 coexists with IPv4.
As with IPv4, IPv6 routing can be enabled on VLAN interfaces. Each L3
routing interface can be used for IPv4, IPv6, or both simultaneously.
Neighbor Discovery (ND) protocol is the IPv6 replacement for Address
Resolution Protocol (ARP) in IPv4. The IPv6 Neighbor Discovery protocol is
described in detail in RFC4861. Router advertisement is part of the Neighbor
Discovery process and is required for IPv6. As part of router advertisement,
PowerConnect 8000/8100-series switch software supports stateless auto
configuration of end nodes. The switch supports both EUI-64 interface
identifiers and manually configured interface IDs.
While optional in IPv4, router advertisement is mandatory in IPv6. Router
advertisements specify the network prefix(es) on a link which can be used by
receiving hosts, in conjunction with an EUI-64 identifier, to autoconfigure a
Содержание PowerConnect 8024
Страница 48: ...48 Contents ...
Страница 52: ...52 Introduction ...
Страница 86: ...86 Switch Features ...
Страница 140: ...140 Setting Basic Network Information ...
Страница 178: ...178 Managing a Switch Stack ...
Страница 204: ...204 Configuring Authentication Authorization and Accounting ...
Страница 272: ...272 Managing General System Settings ...
Страница 308: ...308 Configuring SNMP ...
Страница 336: ...336 Managing Images and Files ...
Страница 354: ...354 Auto Image and Configuration Update ...
Страница 385: ...Monitoring Switch Traffic 385 Figure 16 26 Configure Additional Port Mirroring Settings 9 Click Apply ...
Страница 468: ...468 Configuring Port Characteristics ...
Страница 509: ...Configuring Port and System Security 509 Figure 20 12 Configure Port Security Settings 5 Click Apply ...
Страница 512: ...512 Configuring Port and System Security ...
Страница 550: ...550 Configuring Access Control Lists ...
Страница 571: ...Configuring VLANs 571 Figure 22 6 Add Ports to VLAN 4 Click Apply 5 Verify that the ports have been added to the VLAN ...
Страница 580: ...580 Configuring VLANs Figure 22 17 GVRP Port Parameters Table ...
Страница 586: ...586 Configuring VLANs Figure 22 24 Double VLAN Port Parameter Table ...
Страница 618: ...618 Configuring VLANs ...
Страница 631: ...Configuring the Spanning Tree Protocol 631 Figure 23 5 Spanning Tree Global Settings ...
Страница 637: ...Configuring the Spanning Tree Protocol 637 Figure 23 11 RSTP LAG Settings ...
Страница 685: ...Configuring Port Based Traffic Control 685 Figure 25 3 Storm Control 5 Click Apply ...
Страница 776: ...776 Snooping and Inspecting Traffic Figure 27 17 DAI Interface Configuration Summary ...
Страница 790: ...790 Snooping and Inspecting Traffic ...
Страница 797: ...Configuring Link Aggregation 797 To view or edit settings for multiple LAGs click Show All ...
Страница 894: ...894 Configuring DHCP Server Settings ...
Страница 928: ...928 Configuring L2 and L3 Relay Features Figure 34 3 DHCP Relay Interface Summary ...
Страница 955: ...Configuring OSPF and OSPFv3 955 Figure 35 1 OSPF Configuration ...
Страница 1030: ...1030 Configuring OSPF and OSPFv3 ...
Страница 1068: ...1068 Configuring VRRP ...
Страница 1092: ...1092 Configuring IPv6 Routing ...
Страница 1112: ...1112 Configuring DHCPv6 Server and Relay Settings Relay Interface Number Vl100 Relay Remote ID Option Flags ...
Страница 1119: ...Configuring Differentiated Services 1119 Figure 40 5 DiffServ Class Criteria ...
Страница 1126: ...1126 Configuring Differentiated Services Figure 40 14 DiffServ Service Summary ...
Страница 1142: ...1142 Configuring Differentiated Services ...
Страница 1148: ...1148 Configuring Class of Service Figure 41 1 Mapping Table Configuration CoS 802 1P ...
Страница 1160: ...1160 Configuring Class of Service ...
Страница 1164: ...1164 Configuring Auto VoIP Figure 42 2 Auto VoIP Interface Configuration ...
Страница 1230: ...1230 Managing IPv4 and IPv6 Multicast Figure 43 51 DVMRP Next Hop Summary ...
Страница 1256: ...1256 Managing IPv4 and IPv6 Multicast ...
Страница 1266: ...1266 Feature Limitations and Platform Constants ...
Страница 1274: ...1274 System Process Definitions ...
Страница 1294: ...Index 1294 ...