1-6
table based on the actual networking situation and the performance requirements. If the configured
maximum number of IPv6 multicast forwarding table entries is smaller than the current value, the
entries in excess will not be immediately deleted; instead they will be deleted by the IPv6 multicast
routing protocol running on the router. The router will no longer install new IPv6 multicast forwarding
entries until the number of existing IPv6 multicast forwarding entries comes down below the configured
value.
When forwarding IPv6 multicast traffic, the router replicates a copy of the IPv6 multicast traffic for each
downstream node and forwards the traffic, and thus each of these downstream nodes forms a branch of
the IPv6 multicast distribution tree. You can configure the maximum number of downstream nodes
(namely, the maximum number of outgoing interfaces) for a single entry in the IPv6 multicast forwarding
table to lessen burden on the router for replicating IPv6 multicast traffic. If the configured maximum
number of downstream nodes for a single IPv6 multicast forwarding entry is smaller than the current
number, the downstream nodes in excess will not be deleted immediately; instead they must be deleted
by the IPv6 multicast routing protocol. The router will no longer install new IPv6 multicast forwarding
entries for newly added downstream nodes until the number of existing downstream nodes comes
down below the configured value.
Follow these steps to configure the IPv6 multicast forwarding table size:
To do...
Use the command...
Remarks
Enter system view
system-view
—
Configure the maximum
number of entries in the IPv6
multicast forwarding table
multicast ipv6
forwarding-table route-limit
limit
Optional
512 by default.
Configure the maximum
number of downstream nodes
for a single IPv6 multicast
forwarding entry
multicast ipv6
forwarding-table
downstream-limit limit
Optional
128 by default.
Displaying and Maintaining IPv6 Multicast Routing and Forwarding
To do...
Use the command...
Remarks
Display the IPv6 multicast boundary
information
display multicast ipv6 boundary
[
ipv6-group-address
[
prefix-length
] |
interface interface-type interface-number
]
Available in
any view
Display the information of the IPv6
multicast forwarding table
display multicast ipv6 forwarding-table
[
ipv6-source-address
[
prefix-length
] |
ipv6-group-address
[
prefix-length
] |
incoming-interface
{
interface-type
interface-number
|
register
} |
outgoing-interface
{ {
exclude
|
include
|
match
} {
interface-type interface-number
|
register
} } |
statistics
|
slot slot-number
] *
[
port-info
]
Available in
any view
Display the information of the IPv6
multicast routing table
display multicast ipv6 routing-table
[
ipv6-source-address
[
prefix-length
]
|
ipv6-group-address
[
prefix-length
] |
incoming-interface
{
interface-type
interface-number
|
register
} |
outgoing-interface
{ {
exclude
|
include
|
match
} {
interface-type interface-number
|
register
} } ] *
Available in
any view
Содержание 4500G PWR 24-Port
Страница 200: ...1 5 ProviderB GigabitEthernet1 0 2 undo stp enable ProviderB GigabitEthernet1 0 2 bpdu tunnel dot1q stp ...
Страница 252: ...1 7 Clearing ARP entries from the ARP table may cause communication failures ...
Страница 362: ...i Table of Contents 1 Dual Stack Configuration 1 1 Dual Stack Overview 1 1 Configuring Dual Stack 1 1 ...
Страница 407: ...1 8 1 1 ms 1 ms 1 ms 1 1 6 1 2 1 ms 1 ms 1 ms 1 1 4 1 3 1 ms 1 ms 1 ms 1 1 2 2 Trace complete ...
Страница 786: ...1 16 3 In the case of PIM SM use the display current configuration command to check the BSR and RP information ...
Страница 1387: ...1 23 ...
Страница 1443: ...i Table of Contents 1 URPF Configuration 1 1 URPF Overview 1 1 What is URPF 1 1 How URPF Works 1 1 Configuring URPF 1 2 ...
Страница 1720: ...ii Single Device Upgrade 3 4 IRF System Upgrade 3 5 ...