C
HAPTER
45
| IP Interface Commands
IPv6 Interface
– 1181 –
This example displays a brief summary of IPv6 addresses configured on the
switch.
Console#show ipv6 interface brief
Interface VLAN IPv6 IPv6 Address
--------------- ---------- ---------- ------------------------------------
VLAN 1 Up Up 2001:DB8:2222:7273::72/96
VLAN 1 Up Up FE80::2E0:CFF:FE00:FD%1/64
Console#
Table 175: show ipv6 interface
- display description
Field
Description
VLAN
A VLAN is marked “up” if the switch can send and receive packets on this
interface, “down” if a line signal is not present, or “administratively down”
if the interface has been disabled by the administrator.
IPv6
IPv6 is marked “enable” if the switch can send and receive IP traffic on this
interface, “disable” if the switch cannot send and receive IP traffic on this
interface, or “stalled” if a duplicate link-local address is detected on the
interface.
Link-local
address
Shows the link-local address assigned to this interface
Global unicast
address(es)
Shows the global unicast address(es) assigned to this interface
Joined group
address(es)
In addition to the unicast addresses assigned to an interface, a node is
required to join the all-nodes multicast addresses FF01::1 and FF02::1 for
all IPv6 nodes within scope 1 (interface-local) and scope 2 (link-local),
respectively.
FF01::1/16 is the transient interface-local multicast address for all attached
IPv6 nodes, and FF02::1/16 is the link-local multicast address for all
attached IPv6 nodes. The interface-local multicast address is only used for
loopback transmission of multicast traffic. Link-local multicast addresses
cover the same types as used by link-local unicast addresses, including all
nodes (FF02::1), all routers (FF02::2), and solicited nodes
(FF02::1:FFXX:XXXX) as described below.
A node is also required to compute and join the associated solicited-node
multicast addresses for every unicast and anycast address it is assigned.
IPv6 addresses that differ only in the high-order bits, e.g. due to multiple
high-order prefixes associated with different aggregations, will map to the
same solicited-node address, thereby reducing the number of multicast
addresses a node must join. In this example, FF02::1:FF90:0/104 is the
solicited-node multicast address which is formed by taking the low-order 24
bits of the address and appending those bits to the prefix.
ND DAD
Indicates whether (neighbor discovery) duplicate address detection is
enabled.
number of DAD
attempts
The number of consecutive neighbor solicitation messages sent on the
interface during duplicate address detection.
ND retransmit
interval
The interval between IPv6 neighbor solicitation retransmissions sent on an
interface during duplicate address detection.
ND advertised
retransmit
interval
The retransmit interval is included in all router advertisements sent out of
an interface so that nodes on the same link use the same time value.
ND reachable
time
The amount of time a remote IPv6 node is considered reachable after a
reachability confirmation event has occurred
ND advertised
reachable time
The reachable time is included in all router advertisements sent out of an
interface so that nodes on the same link use the same time value.
Содержание ECS4810-12M Layer 2
Страница 1: ...Management Guide www edge core com ECS4810 12M Layer 2 Gigabit Ethernet Switch...
Страница 2: ......
Страница 4: ......
Страница 6: ...ABOUT THIS GUIDE 6...
Страница 54: ...SECTION I Getting Started 54...
Страница 64: ...CHAPTER 1 Introduction System Defaults 64...
Страница 82: ...CHAPTER 2 Initial Switch Configuration Managing System Files 82...
Страница 84: ...SECTION II Web Configuration 84...
Страница 102: ...CHAPTER 3 Using the Web Interface Navigating the Web Browser Interface 102...
Страница 206: ...CHAPTER 6 VLAN Configuration Configuring VLAN Mirroring 206...
Страница 256: ...CHAPTER 11 Class of Service Layer 3 4 Priority Settings 256...
Страница 378: ...CHAPTER 14 Security Measures DHCP Snooping 378...
Страница 520: ...CHAPTER 16 IP Configuration Setting the Switch s IP Address IP Version 6 520...
Страница 528: ...CHAPTER 17 IP Services Displaying the DNS Cache 528...
Страница 586: ...CHAPTER 19 Using the Command Line Interface CLI Command Groups 586...
Страница 676: ...CHAPTER 22 SNMP Commands 676...
Страница 684: ...CHAPTER 23 Remote Monitoring Commands 684...
Страница 816: ...CHAPTER 27 Access Control Lists ACL Information 816...
Страница 866: ...CHAPTER 30 Port Mirroring Commands RSPAN Mirroring Commands 866...
Страница 883: ...CHAPTER 32 Automatic Traffic Control Commands 883 Trap Traffic Release Disabled Disabled Console...
Страница 884: ...CHAPTER 32 Automatic Traffic Control Commands 884...
Страница 890: ...CHAPTER 33 Address Table Commands 890...
Страница 986: ...CHAPTER 37 Class of Service Commands Priority Commands Layer 3 and 4 986...
Страница 1006: ...CHAPTER 38 Quality of Service Commands 1006...
Страница 1068: ...CHAPTER 39 Multicast Filtering Commands Multicast VLAN Registration 1068...
Страница 1092: ...CHAPTER 40 LLDP Commands 1092...
Страница 1134: ...CHAPTER 41 CFM Commands 1134...
Страница 1154: ...CHAPTER 43 Domain Name Service Commands 1154...
Страница 1160: ...CHAPTER 44 DHCP Commands DHCP Client 1160...
Страница 1194: ...CHAPTER 45 IP Interface Commands IPv6 Interface 1194...
Страница 1196: ...SECTION IV Appendices 1196...
Страница 1201: ...APPENDIX A Software Specifications Management Information Bases 1201 Trap RFC 1215 UDP MIB RFC 2013...
Страница 1202: ...APPENDIX A Software Specifications Management Information Bases 1202...
Страница 1224: ...COMMAND LIST 1224...
Страница 1234: ...INDEX 1234...
Страница 1235: ......
Страница 1236: ...ECS4810 12M E072011 ST R01 149100000142A...