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Sun Ethernet Fabric Operating System

OSPFv3 Administration Guide

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Document Information

Using This Documentation

Product Notes

Related Documentation

Acronyms and Abbreviations

CLI Command Modes

Feedback

Support and Accessibility

OSPFv3 Overview

Protocol Description

OSPFv3 Topologies

Configuration and Testing Topologies

IPv6 Example Topology Interface and Host Addresses

OSPFv3 Configurations

Default Configuration Values

SNMP MIB Files

Creating the Base Configuration

Access Global Configuration Mode

Access Interface Configuration Mode

Enabling IPv6 Support and Assigning IPv6 Addresses

Enable IPv6

Disable IPv6

Delete an IPv6 Address

Configuring IPv6 Static Routes

Configure Static Routes

Delete a Static Route

Creating the Base Configuration for Example Topologies

Configure SEFOS1

Configure SEFOS2

Configure SEFOS3

Configure SEFOS4

Configure SEFOS5

Configure SEFOS6

Configure SEFOS7

Configure SEFOS8

Configure SEFOS9

Configuring OSPFv3 Features

OSPFv3 Features

Configuring Basic OSPFv3

Enable OSPFv3

Disable OSPFv3

Creating an OSPFv3 Interface

Configure an OSPFv3 Interface

Configuring Neighbors

Configure an OSPFv3 Neighbor

Configuring OSPFv3 Interface Parameters

OSPFv3 Interface Parameters

Configure Interface Priority

Restore the Default Interface Priority

Configure the Retransmission Interval

Restore the Default Retransmission Value

Configure Transmission Delay

Restore the Default Transmission Delay

Configure the Hello Interval

Restore the Default Hello Interval

Configure the Dead Interval

Restore the Default Dead Interval

Configure the Network Type

Restore the Default OSPF Network Type

Configure the Interface Cost

Restore the Default Interface Cost

Configuring a Demand Circuit

Enable a Demand Circuit

Remove the Demand Circuit Setting

Enable Neighbor Probing on a Demand Circuit

Remove Neighbor Probing on a Demand Circuit

Configuring Neighbor Probe Values

Configure the Neighbor Probe Retransmission Limit

Restore the Default Neighbor Probe Retransmission Limit

Configure the Neighbor Probe Interval

Restore the Default Neighbor Probe Interval

Configuring a Passive Interface

Configure All Interfaces To Be Passive

Configure Specified Interfaces To Be Passive

Restore the Default Routing Updates

Configuring Route Redistribution

Configure an ASBR Router

Disable the ASBR Router

Configure Route Redistribution

Disable Route Redistribution

Configure the Stub Area, ASBR, and Route Distribution

Configuring Attributes for Redistributed Routes

Configure Redistributed Route Attributes

Delete Redistributed Route Attributes

Configuring the Redistribution of Routes

Configure Route Redistribution

Restore the Default Redistribution Configuration

Configuring Area Route Summarization

Area Route Overview

Configure Address Range Aggregation

Disable an Address Range

Configure an Internal Address Range

Disable an Internal Address Range

Configuring a Stub Area

Configure a Stub Area

Convert a Stub Area to a Normal Area

Configure a Default Summary Route for a Stub Area

Configure the Default Summary Route Cost for a Stub Area

Configuring an NSSA

Configure the Stability Interval for NSSA

Restore the Default Stability Interval

Configure an NSSA Translation Role

Restore the Default Translation Role

Configure Default Summary Route for an NSSA

Configure the Metric Type for an NSSA

Configuring the Capability in an NSSA Internal Border Router

Configure NSSA Type-7/-5 Conversion

Configuring Virtual Links

Configure a Virtual Link

Delete a Virtual Link

Configure Virtual Link and Route Summarization

Configuring External Database Limit

Configure the External Database Limit

Restore the Default External Database Limit

Configuring the Overflow Exit Interval

Configure the Overflow Exit Interval

Configuring a Demand Extension

Disable a Demand Extension

Re-Enable Demand Extensions

Configuring the Host

Configure the Host

Test the Host

Configuring Route Calculation SPF Timers

Configure SPF Timers

Restore the Default Delay Time

Configure Route Redistribution

This example shows how to configure the information to be applied to routes learned from RTM in SEFOS1. The IPv6 address prefix is 3333::1111:0:0, with a length of 96. A metric value of 100 is applied to the route before it is advertised to the OSPFv3 domain. A tag with the value 10 is applied to the sample route.

  1. Test the redistribution configuration in SEFOS1.
    SEFOS# configure terminal
    SEFOS(config)# ipv6 router ospf
  2. Configure redistribution of static route's redistribution configuration.
    SEFOS(config-router)# redistribute static
  3. Configure redistribution configuration.
    SEFOS(config-router)# redist-config 3333::1111:0:0 96  metric-value 100 metric-type asExttype1 tag 10
    SEFOS(config-router)# exit
  4. Add a static route for the network.
    SEFOS(config)# ipv6 route 3333::1111:0:0 96 fec0::1111:0:2
    SEFOS(config)# end
    SEFOS#
  5. View the configuration details in SEFOS1.

    An external LSA is generated for 3333::1111:0:0 with metric as 100, metric type as asExtType1, and tag as 10.

    SEFOS# show ipv6 ospf database as-external detail
     
    Age: 0   Seconds            LS Type: External Lsa
    Link State Id: 0.0.0.1      Adv Rtr Id: 10.0.0.1
    Sequence: 0x80000001        Checksum: 0x6151    Length: 60
    Metric Type: Ext Type1      Metric: 0x64
    Prefix Length: 96            Prefix Options: 0x00
    Referenced LS Type: 0
    Addres Prefix: 3333::1111:0:0
    Fw Addres Prefix: 3333::1111:fec0:0
    External Route Tag: 10
  6. View the configuration details in SEFOS2.

    View the external route 3333::1111:0:0 with metric as 101.

    SEFOS# show ipv6 ospf route
     
    OSPFV3 Process Routing Table
    Dest/Prefix-Length   NextHop/IfIndex       Cost     Rt.Type     Area
    3333::1111:0:0/96   fec0::1111:0:2/vlan11   101     type1Ext    0.0.0.0
    fec0::1111:0:0/96               ::/vlan11     1     intraArea   0.0.0.0
    fec0::4444:0:0/96               ::/vlan4      1     intraArea   0.0.0.3