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OSPFv2 supports
helper-only
and
restarting-only
roles. By default, both helper and restarting roles are
enabled. OSPFv2 supports the helper-reject role globally on a router.
OSPFv3 supports
helper-only
and
restarting-only
roles. The helper-only role is enabled by default. To
enable the restarting role in addition to the helper-only role, configure a grace period. Reconfigure
OSPFv3 graceful restart to a restarting-only role when you enable the helper-reject role on an
interface. OSPFv3 supports the helper-reject role on a per-interface basis.
Configuring helper-reject role on an OSPFv2 router or OSPFv3 interface enables the restarting-only
role globally on the router or locally on the interface. In a helper-reject role, OSPF does not
participate in the graceful restart of an adjacent OSPFv2/v3 router.
If multiple OSPF interfaces provide communication between two routers, after you configure helper-
reject on one interface, all other interfaces between the two routers behave as if they are in the help-
reject role.
• OSPFv2 and OSPFv3 support planned-only and/or unplanned-only restarts. The default is support for
both planned and unplanned restarts.
A planned restart occurs when you enter the
redundancy force-failover rpm
command to
force the primary RPM to switch to the backup RPM. During a planned restart, OSPF sends out a
Grace LSA before the system switches over to the backup RPM.
An unplanned restart occurs when an unplanned event causes the active RPM to switch to the backup
RPM, such as when an active process crashes, the active RPM is removed, or a power failure happens.
During an unplanned restart, OSPF sends out a Grace LSA when the backup RPM comes online.
To display the configuration values for OSPF graceful restart, enter the
show run ospf
command for
OSPFv2 and the
show run ospf
and
show ipv6 ospf database database-summary
commands
for OSPFv3.
Fast Convergence (OSPFv2, IPv4 Only)
Fast convergence allows you to define the speeds at which LSAs are originated and accepted, and reduce
OSPFv2 end-to-end convergence time.
Dell Networking OS allows you to accept and originate LSAs as soon as they are available to speed up
route information propagation.
NOTE: The faster the convergence, the more frequent the route calculations and updates. This
impacts CPU utilization and may impact adjacency stability in larger topologies.
Multi-Process OSPFv2 with VRF
Multi-process OSPF with VRF is supported on the Dell Networking OS. Only one OSPFv2 process per VRF
is supported.
Multi-process OSPF allows multiple OSPFv2 processes on a single router. Multiple OSPFv2 processes
allow for isolating routing domains, supporting multiple route policies and priorities in different domains,
and creating smaller domains for easier management.The system supports up to 16 OSPFv2
processes.Each OSPFv2 process has a unique process ID and must have an associated router ID. There
must be an equal number of interfaces and must be in Layer-3 mode for the number of processes
created. For example, if you create five OSPFv2 processes on a system, there must be at least five
interfaces assigned in Layer 3 mode. Each OSPFv2 process is independent. If one process loses
adjacency, the other processes continue to function.
622
Open Shortest Path First (OSPFv2 and OSPFv3)
Содержание S6000-ON
Страница 1: ...Dell Configuration Guide for the S6000 ON System 9 9 0 0 ...
Страница 505: ...Figure 60 Inspecting Configuration of LAG 10 on ALPHA Link Aggregation Control Protocol LACP 505 ...
Страница 508: ...Figure 62 Inspecting a LAG Port on BRAVO Using the show interface Command 508 Link Aggregation Control Protocol LACP ...
Страница 509: ...Figure 63 Inspecting LAG 10 Using the show interfaces port channel Command Link Aggregation Control Protocol LACP 509 ...
Страница 552: ...mac address table static multicast mac address vlan vlan id output range interface 552 Microsoft Network Load Balancing ...
Страница 557: ...Figure 80 Configuring OSPF and BGP for MSDP Multicast Source Discovery Protocol MSDP 557 ...
Страница 558: ...Figure 81 Configuring PIM in Multiple Routing Domains 558 Multicast Source Discovery Protocol MSDP ...
Страница 562: ...Figure 83 MSDP Default Peer Scenario 1 562 Multicast Source Discovery Protocol MSDP ...
Страница 563: ...Figure 84 MSDP Default Peer Scenario 2 Multicast Source Discovery Protocol MSDP 563 ...
Страница 564: ...Figure 85 MSDP Default Peer Scenario 3 564 Multicast Source Discovery Protocol MSDP ...
Страница 665: ...Policy based Routing PBR 665 ...
Страница 672: ...ip pim bsr border Remove candidate RP advertisements clear ip pim rp mapping 672 PIM Sparse Mode PIM SM ...
Страница 818: ...Figure 110 Single and Double Tag TPID Match 818 Service Provider Bridging ...
Страница 819: ...Figure 111 Single and Double Tag First byte TPID Match Service Provider Bridging 819 ...
Страница 995: ...Figure 140 Setup OSPF and Static Routes Virtual Routing and Forwarding VRF 995 ...