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BigIron RX Series Configuration Guide
607
53-1002253-01
PIM Sparse
23
from a group source to the group’s receivers. After the first packet, the BigIron RX calculates
the shortest path between the receiver and source (the Shortest Path Tree, or SPT) and uses
the SPT for subsequent packets from the source to the receiver. The BigIron RX calculates a
separate SPT for each source-receiver pair.
NOTE
Brocade recommends that you configure the same ports as candidate BSRs and RPs.
RP paths and SPT paths
Figure 92
shows two paths for packets from the source for group 239.255.162.1 and a receiver for
the group. The source is attached to PIM Sparse router A and the recipient is attached to PIM
Sparse router C. PIM Sparse router B in is the RP for this multicast group. As a result, the default
path for packets from the source to the receiver is through the RP. However, the path through the
RP sometimes is not the shortest path. In this case, the shortest path between the source and the
receiver is over the direct link between router A and router C, which bypasses the RP (router B).
To optimize PIM traffic, the protocol contains a mechanism for calculating the Shortest Path Tree
(SPT) between a given source and receiver. PIM Sparse routers can use the SPT as an alternative to
using the RP for forwarding traffic from a source to a receiver. By default, the BigIron RX forwards
the first packet they receive from a given source to a given receiver using the RP path, but forward
subsequent packets from that source to that receiver through the SPT. In
Figure 92
, BigIron RX A
forwards the first packet from group 239.255.162.1’s source to the destination by sending the
packet to router B, which is the RP. Router B then sends the packet to router C. For the second and
all future packets that router A receives from the source for the receiver, router A forwards them
directly to router C using the SPT path.
NOTE
Brocade recommends that you configure the same ports as candidate BSRs and RPs
Configuring PIM Sparse
To configure a BigIron RX for PIM Sparse, perform the following tasks:
•
Configure the following global parameter:
•
Enable the PIM Sparse mode of multicast routing.
•
Configure the following interface parameters:
•
Configure an IP address on the interface
•
Enable PIM Sparse.
•
Identify the interface as a PIM Sparse border, if applicable.
NOTE
You cannot configure a Brocade routing interface as a PMBR interface for PIM Sparse in the
current software release.
•
Configure the following PIM Sparse global parameters:
•
Identify the BigIron RX as a candidate PIM Sparse Bootstrap Router (BSR), if applicable.
•
Identify the BigIron RX as a candidate PIM Sparse Rendezvous Point (RP), if applicable.
•
Specify the IP address of the RP (if you want to statically select the RP).
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 ...