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BigIron RX Series Configuration Guide
53-1002253-01
Overview of OSPF (Open Shortest Path First)
25
•
A second ASBR comes on-line
•
A second ASBR that is already on-line begins advertising an equivalent route to the same
destination.
In either case above, the router with the higher router ID floods the AS External LSAs and the
other router flushes its equivalent AS External LSAs. For example, if Router D is offline, Router
E is the only source for a route to the external routing domain. When Router D comes on-line, it
takes over flooding of the AS External LSAs to Router F, while Router E flushes its equivalent AS
External LSAs to Router F.
•
One of the ASBRs starts advertising a route that is no longer equivalent to the route the other
ASBR is advertising. In this case, the ASBRs each flood AS External LSAs. Since the LSAs either
no longer have the same cost or no longer have the same next-hop router, the LSAs are no
longer equivalent, and the LSA reduction feature no longer applies.
•
The ASBR with the higher router ID becomes unavailable or is reconfigured so that it is no
longer an ASBR. In this case, the other ASBR floods the AS External LSAs. For example, if
Router D goes off-line, then Router E starts flooding the AS with AS External LSAs for the route
to Router F.
Support for OSPF RFC 2328 appendix E
BigIron RX provides support for Appendix E in OSPF RFC 2328. Appendix E describes a method to
ensure that an OSPF router generates unique link state IDs for type-5 (External) link state
advertisements (LSAs) in cases where two networks have the same network address but different
network masks.
NOTE
Support for Appendix E of RFC 2328 is enabled automatically and cannot be disabled. No user
configuration is required.
Normally, an OSPF router uses the network address alone for the link state ID of the link state
advertisement (LSA) for the network. For example, if the router needs to generate an LSA for
network 10.1.2.3 255.0.0.0, the router generates ID 10.1.2.3 for the LSA.
However, suppose that an OSPF router needs to generate LSAs for all the following networks:
•
10.0.0.0 255.0.0.0
•
10.0.0.0 255.255.0.0
•
10.0.0.0 255.255.255.0
All three networks have the same network address, 10.0.0.0. Without support for RFC 2328
Appendix E, an OSPF router uses the same link state ID, 10.0.0.0, for the LSAs for all three
networks. For example, if the router generates an LSA with ID 10.0.0.0 for network 10.0.0.0
255.0.0.0, this LSA conflicts with the LSA generated for network 10.0.0.0 255.255.0.0 or 10.0.0.0
255.255.255.0. The result is multiple LSAs that have the same ID but that contain different route
information.
When appendix E is supported, the router generates the link state ID for a network as follows.
1. Does an LSA with the network address as its ID already exist?
•
No – Use the network address as the ID.
•
Yes – Go to
step 2
.
Содержание BigIron RX Series
Страница 100: ...24 BigIron RX Series Configuration Guide 53 1002253 01 Logging on through the Web Management Interface 2 ...
Страница 192: ...116 BigIron RX Series Configuration Guide 53 1002253 01 Configuring authentication method lists 4 ...
Страница 228: ...152 BigIron RX Series Configuration Guide 53 1002253 01 Enabling WAN PHY mode support 6 ...
Страница 312: ...236 BigIron RX Series Configuration Guide 53 1002253 01 Displaying IP information 7 ...
Страница 356: ...280 BigIron RX Series Configuration Guide 53 1002253 01 Resetting LLDP statistics 9 ...
Страница 402: ...326 BigIron RX Series Configuration Guide 53 1002253 01 Transparent firewall mode 11 ...
Страница 432: ...356 BigIron RX Series Configuration Guide 53 1002253 01 SuperSpan 12 ...
Страница 500: ...424 BigIron RX Series Configuration Guide 53 1002253 01 MRP CLI example 14 ...
Страница 580: ...504 BigIron RX Series Configuration Guide 53 1002253 01 Configuring multicast traffic engineering 18 ...
Страница 591: ...BigIron RX Series Configuration Guide 515 53 1002253 01 Displaying traffic reduction 19 ...
Страница 592: ...516 BigIron RX Series Configuration Guide 53 1002253 01 Displaying traffic reduction 19 ...
Страница 598: ...522 BigIron RX Series Configuration Guide 53 1002253 01 Viewing Layer 2 ACLs 20 ...
Страница 656: ...580 BigIron RX Series Configuration Guide 53 1002253 01 Trunk formation 22 ...
Страница 754: ...678 BigIron RX Series Configuration Guide 53 1002253 01 Displaying RIP filters 24 ...
Страница 814: ...738 BigIron RX Series Configuration Guide 53 1002253 01 Displaying OSPF information 25 ...
Страница 932: ...856 BigIron RX Series Configuration Guide 53 1002253 01 Generalized TTL security mechanism support 26 ...
Страница 980: ...904 BigIron RX Series Configuration Guide 53 1002253 01 Clearing IS IS information 28 ...
Страница 1000: ...924 BigIron RX Series Configuration Guide 53 1002253 01 Using secure copy 30 ...
Страница 1088: ...1012 BigIron RX Series Configuration Guide 53 1002253 01 IP source guard 35 ...
Страница 1108: ...1032 BigIron RX Series Configuration Guide 53 1002253 01 Reading CDP packets 37 ...
Страница 1126: ...1050 BigIron RX Series Configuration Guide 53 1002253 01 Clearing sFlow statistics 39 ...
Страница 1140: ...1064 BigIron RX Series Configuration Guide 53 1002253 01 802 1s Multiple Spanning Tree Protocol 40 ...
Страница 1324: ...1248 BigIron RX Series Configuration Guide 53 1002253 01 Displaying OSPFv3 information 48 ...
Страница 1363: ...BigIron RX Series Configuration Guide 1287 53 1002253 01 Continuous System Monitor 51 ...
Страница 1364: ...1288 BigIron RX Series Configuration Guide 53 1002253 01 Continuous System Monitor 51 ...
Страница 1404: ...1328 BigIron RX Series Configuration Guide 53 1002253 01 Commands That Require a Reload D ...
Страница 1458: ...1382 BigIron RX Series Configuration Guide 53 1002253 01 VSRP E ...