marker that indicates it has received all of the BGP4 route updates, it recomputes the new routes and replaces the stale routes in the
route map with the newly computed routes. If the device does not come back up within the time configured for the purge timer, the stale
routes are removed.
NOTE
BGP4 restart is supported in FSX 800, FSX 1600 devices with dual management modules, FCX switches in a stack and ICX
switches in a stack. If the switch will function as a restart helper device only, a secondary management module is not required.
NOTE
A second management module must be installed for the device to function as a restart device. If the device functions as a
restart helper device only, there is no requirement for a secondary management module.
The implementation of BGP4 Restart supports the following Internet Draft:
•
Draft-ietf-idr-restart-10.txt: restart mechanism for BGP4
BGP4 Peer notification during a management module switchover
The BGP4 Peer notification process restores BGP4 adjacency quickly and allows packet forwarding between the newly active
management module and the BGP4 peers. The handling of TCP packets with an MD5 digest prevents the silent dropping of TCP
packets without triggering a RESET packet.
The BGP4 peer notification process operates effectively when implemented for the following processes that involve the intentional
switching of the active status from one management module to another:
•
System Reload - When a device undergoes the reload process, both management modules and all interface modules are
rebooted. All BGP4 sessions are terminated BEFORE the system triggers the hardware reset.
•
Switchover Requested by User - Switching over to a standby management module can be triggered by the
switchover
,
reset
,
reload
, and
hitless-reload
commands. When these commands are executed, the active management module resets the
BGP4/TCP sessions with BGP4 neighbors before transferring control to the standby management module.
NOTE
Restart-enabled BGP4 sessions are not reset. The BGP4 restart protocol allows a BGP4 session to reconnect gracefully
without going through the normal process.
This example describes the procedure used between the management modules in a device and a BGP4 neighbor device.
BGP4 restart
FastIron Ethernet Switch Layer 3 Routing
53-1003627-04
357
Summary of Contents for FastIron SX 1600
Page 2: ...FastIron Ethernet Switch Layer 3 Routing 2 53 1003627 04 ...
Page 16: ...FastIron Ethernet Switch Layer 3 Routing 16 53 1003627 04 ...
Page 20: ...FastIron Ethernet Switch Layer 3 Routing 20 53 1003627 04 ...
Page 142: ...FastIron Ethernet Switch Layer 3 Routing 142 53 1003627 04 ...
Page 150: ...FastIron Ethernet Switch Layer 3 Routing 150 53 1003627 04 ...
Page 200: ...FastIron Ethernet Switch Layer 3 Routing 200 53 1003627 04 ...
Page 214: ...FastIron Ethernet Switch Layer 3 Routing 214 53 1003627 04 ...
Page 350: ...FastIron Ethernet Switch Layer 3 Routing 350 53 1003627 04 ...
Page 476: ...FastIron Ethernet Switch Layer 3 Routing 476 53 1003627 04 ...
Page 588: ...FastIron Ethernet Switch Layer 3 Routing 588 53 1003627 04 ...