Virtual Router Redundancy Protocol
ExtremeWare XOS 11.3 Concepts Guide
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Electing the Master Router
VRRP uses an election algorithm to dynamically assign responsibility for the master router to one of the
VRRP routers on the network. A VRRP router is elected master if the router has the highest priority (the
range is 1 to 254; 255 is a reserved number).
If the master router becomes unavailable, the election process provides dynamic failover and the backup
router that has the highest priority assumes the role of master.
A new master is elected when one of the following things happen:
●
VRRP is disabled on the master router.
●
Loss of communication occurs between master and backup router(s).
●
Another VRRP router is attached to the VLAN, and the new router has the same priority as the
current master.
When VRRP is disabled on the master interface, the master router sends an advertisement with the
priority set to 0 to all backup routers. This signals the backup routers that they do not need to wait for
the master down interval to expire, and the master election process for a new master can begin
immediately.
The master down interval is set as follows:
3 * advertisement in skew time
Where:
●
The advertisement interval is a user-configurable option.
●
The skew time is (256-priority/256).
NOTE
An extremely busy CPU can create a short dual master situation. To avoid this, increase the advertisement interval.
Additional VRRP Highlights
The following additional points pertain to VRRP:
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VRRP packets are encapsulated IP packets.
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The VRRP multicast address is 224.0.0.18.
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The virtual router MAC address is
00 00 5E 00 01 <vrid>
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Duplicate VRIDs are allowed on the router but not on the same interface.
●
The maximum number of supported VRIDs per interface is seven.
●
An interconnect link between VRRP routers should not be used, except when VRRP routers have
hosts directly attached.
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A maximum of 64 VRID instances are supported on the router.
●
Up to seven unique VRIDs can be configured on the router. VRIDs can be re-used, but not on the
same interface.
Содержание ExtremeWare XOS 11.3
Страница 20: ...Contents ExtremeWare XOS 11 3 Concepts Guide 20...
Страница 25: ...1 Using ExtremeWare XOS...
Страница 26: ......
Страница 38: ...ExtremeWare XOS Overview ExtremeWare XOS 11 3 Concepts Guide 38...
Страница 58: ...Accessing the Switch ExtremeWare XOS 11 3 Concepts Guide 58...
Страница 146: ...Configuring Slots and Ports on a Switch ExtremeWare XOS 11 3 Concepts Guide 146...
Страница 218: ...Status Monitoring and Statistics ExtremeWare XOS 11 3 Concepts Guide 218...
Страница 240: ...Virtual LANs ExtremeWare XOS 11 3 Concepts Guide 240...
Страница 248: ...Virtual Routers ExtremeWare XOS 11 3 Concepts Guide 248...
Страница 278: ...Access Lists ACLs ExtremeWare XOS 11 3 Concepts Guide 278...
Страница 288: ...Routing Policies ExtremeWare XOS 11 3 Concepts Guide 288 entry deny_rest if then deny...
Страница 344: ...Security ExtremeWare XOS 11 3 Concepts Guide 344...
Страница 393: ...2 Using Switching and Routing Protocols...
Страница 394: ......
Страница 454: ...Spanning Tree Protocol ExtremeWare XOS 11 3 Concepts Guide 454...
Страница 484: ...Extreme Standby Router Protocol ExtremeWare XOS 11 3 Concepts Guide 484...
Страница 514: ...IPv4 Unicast Routing ExtremeWare XOS 11 3 Concepts Guide 514...
Страница 530: ...IPv6 Unicast Routing ExtremeWare XOS 11 3 Concepts Guide 530...
Страница 538: ...RIP ExtremeWare XOS 11 3 Concepts Guide 538...
Страница 556: ...OSPF ExtremeWare XOS 11 3 Concepts Guide 556...
Страница 566: ...OSPFv3 ExtremeWare XOS 11 3 Concepts Guide 566...
Страница 589: ...3 Appendixes...
Страница 590: ......
Страница 640: ...CNA Agent ExtremeWare XOS 11 3 Concepts Guide 640...
Страница 670: ...Glossary ExtremeWare XOS 11 3 Concepts Guide 670...
Страница 698: ...Index ExtremeWare XOS 11 3 Concepts Guide 698...