
C
HAPTER
21
| Multicast Routing
Configuring PIMv6 for IPv6
– 852 –
If the hello holdtime is already configured, and the hello interval is set
to a value longer than the hello holdtime, this command will fail.
◆
Join/Prune Holdtime
– Sets the hold time for the prune state.
(Range: 1-65535 seconds; Default: 210 seconds)
■
PIM-DM: The multicast interface that first receives a multicast
stream from a particular source forwards this traffic to all other
PIM-DM interfaces on the router. If there are no requesting groups
on that interface, the leaf node sends a prune message upstream
and enters a prune state for this multicast stream. The prune state
is maintained until the join/prune holdtime timer expires or a graft
message is received for the forwarding entry.
■
PIM-SM: The multicast interface that first receives a multicast
stream from a particular source forwards this traffic only to those
interfaces on the router that have requests to join this group. When
there are no longer any requesting groups on that interface, the leaf
node sends a prune message upstream and enters a prune state for
this multicast stream. The protocol maintains both the current join
state and the pending RPT prune state for this (source, group) pair
until the join/prune interval timer expires.
◆
LAN Prune Delay
– Causes this device to inform downstream routers
of how long it will wait before pruning a flow after receiving a prune
request. (Default: Disabled)
When other downstream routers on the same VLAN are notified that
this upstream router has received a prune request, they must send a
Join to override the prune before the prune delay expires if they want
to continue receiving the flow. The message generated by this
command effectively prompts any downstream neighbors with hosts
receiving the flow to reply with a Join message. If no join messages are
received after the prune delay expires, this router will prune the flow.
The sum of the Override Interval and Propagation Delay are used to
calculate the LAN prune delay.
◆
Override Interval
– The time required for a downstream router to
respond to a LAN Prune Delay message by sending back a Join
message if it wants to continue receiving the flow referenced in the
message. (Range: 500-6000 milliseconds; Default: 2500 milliseconds)
The override interval and the propagation delay are used to calculate
the LAN prune delay. If a downstream router has group members which
want to continue receiving the flow referenced in a LAN prune delay
message, then the override interval represents the time required for
the downstream router to process the message and then respond by
sending a Join message back to the upstream router to ensure that the
flow is not terminated.
◆
Propagation Delay
– The time required for a LAN prune delay
message to reach downstream routers. (Range: 100-5000
milliseconds; Default: 500 milliseconds)
The override interval and pro po gat ion delay are used to calculate the
LAN prune delay. If a downstream router has group members which
Содержание ECS4660-28F
Страница 1: ...Management Guide www edge core com ECS4660 28F Layer 3 Gigabit Ethernet Switch...
Страница 2: ......
Страница 4: ......
Страница 12: ...ABOUT THIS GUIDE 12...
Страница 64: ...CONTENTS 64...
Страница 90: ...TABLES 90...
Страница 92: ...SECTION I Getting Started 92...
Страница 122: ...SECTION II Web Configuration 122 Multicast Routing on page 825...
Страница 148: ...CHAPTER 3 Using the Web Interface Navigating the Web Browser Interface 148...
Страница 224: ...CHAPTER 5 Interface Configuration VLAN Trunking 224 Figure 68 Configuring VLAN Trunking...
Страница 262: ...CHAPTER 6 VLAN Configuration Configuring VLAN Translation 262...
Страница 304: ...CHAPTER 9 Congestion Control Automatic Traffic Control 304...
Страница 340: ...CHAPTER 11 Quality of Service Attaching a Policy Map to a Port 340...
Страница 452: ...CHAPTER 13 Security Measures DHCP Snooping 452...
Страница 740: ...CHAPTER 17 IP Services Configuring the PPPoE Intermediate Agent 740...
Страница 866: ...CHAPTER 21 Multicast Routing Configuring PIMv6 for IPv6 866...
Страница 882: ...CHAPTER 22 Using the Command Line Interface CLI Command Groups 882...
Страница 1024: ...CHAPTER 26 Remote Monitoring Commands 1024...
Страница 1030: ...CHAPTER 27 Flow Sampling Commands 1030...
Страница 1088: ...CHAPTER 28 Authentication Commands PPPoE Intermediate Agent 1088...
Страница 1162: ...CHAPTER 29 General Security Measures Configuring Port based Traffic Segmentation 1162...
Страница 1186: ...CHAPTER 30 Access Control Lists ACL Information 1186...
Страница 1214: ...CHAPTER 31 Interface Commands Transceiver Threshold Configuration 1214...
Страница 1238: ...CHAPTER 33 Port Mirroring Commands RSPAN Mirroring Commands 1238...
Страница 1258: ...CHAPTER 34 Congestion Control Commands Automatic Traffic Control Commands 1258...
Страница 1270: ...CHAPTER 36 UniDirectional Link Detection Commands 1270...
Страница 1276: ...CHAPTER 37 Address Table Commands 1276...
Страница 1336: ...CHAPTER 39 ERPS Commands 1336...
Страница 1386: ...CHAPTER 40 VLAN Commands Configuring Voice VLANs 1386...
Страница 1406: ...CHAPTER 41 Class of Service Commands Priority Commands Layer 3 and 4 1406...
Страница 1424: ...CHAPTER 42 Quality of Service Commands 1424...
Страница 1536: ...CHAPTER 43 Multicast Filtering Commands MLD Proxy Routing 1536...
Страница 1602: ...CHAPTER 45 CFM Commands Delay Measure Operations 1602...
Страница 1624: ...CHAPTER 47 Domain Name Service Commands 1624...
Страница 1646: ...CHAPTER 48 DHCP Commands DHCP Server 1646...
Страница 1974: ...SECTION IV Appendices 1974...
Страница 1980: ...APPENDIX A Software Specifications Management Information Bases 1980...
Страница 2020: ...ECS4660 28F E102013 ST R03 149100000140A...