704
C
HAPTER
49: M
ULTICAST
R
OUTING
AND
F
ORWARDING
C
ONFIGURATION
2. This means that the interface on which the packet actually arrived is not the
RPF interface. The RPF check fails and the packet is discarded.
■
A multicast packet from Source arrives on VLAN-interface 2 of Switch C, and
the corresponding forwarding entry does not exist in the multicast forwarding
table of Switch C. The switch performs an RPF check, and finds in its unicast
routing table that the outgoing interface to 192.168.0.0/24 is the interface on
which the packet actually arrived. The RPF check succeeds and the packet is
forwarded.
Multicast Static Routes
If the topology structure of a multicast network is the same as that of a unicast
network, receivers can receive multicast data via unicast routes. However, the
topology structure of a multicast network may differ from that of a unicast
network, and some routers may support only unicast but not multicast. In this
case, you can configure multicast static routes to provide multicast transmission
paths that are different from those for unicast traffic. Note the following two
points:
■
A multicast static route only affects RPF checks, and not guides multicast
forwarding, so it is also called an RPF static route.
■
A multicast static route is effective on the multicast router on which it is
configured, and will not be broadcast throughout the network or injected to
other routers.
A multicast static route is an important basis for RPF checks. With a multicast static
route configured on a router, the router searches the unicast routing table and the
multicast static routing table simultaneously in a RPF check, chooses the optimal
unicast RPF route and the optimal multicast static route respectively from the
routing tables, and uses one of them as the RPF route after comparison.
Figure 207
Multicast static route
As shown in Figure 207, when no multicast static route is configured, Switch C’s
RPF neighbor on the path back to Source is Switch A and the multicast
information from Source travels along the path from Switch A to Switch C, which
is the unicast route between the two switches; with a static route configured on
Switch C and Switch B as Switch C’s RPF neighbor on the path back to Source, the
Receiver
Switch A
Switch B
Switch C
Vlan-int2
Vlan-int1
1 .1.1.1/24
Vlan-int2
Multicast packets
Source
192 .168 .0 .1/24
Receiver
Vlan-int1
1 .1.1.2/24
Multicast static route
Destination/Mask
Multicast Routing Table Static on Switch C
192.168.0.0/24
Interface
Vlan-int1
RPF neighbor/Mask
1.1.1.1/24
Содержание 4800G Series
Страница 26: ...26 CHAPTER NETWORKING APPLICATIONS ...
Страница 30: ...30 CHAPTER 1 LOGGING IN TO AN ETHERNET SWITCH ...
Страница 62: ...62 CHAPTER 3 LOGGING IN THROUGH TELNET ...
Страница 70: ...70 CHAPTER 5 LOGGING IN THROUGH WEB BASED NETWORK MANAGEMENT SYSTEM ...
Страница 72: ...72 CHAPTER 6 LOGGING IN THROUGH NMS ...
Страница 82: ...82 CHAPTER 8 CONTROLLING LOGIN USERS ...
Страница 98: ...98 CHAPTER 9 VLAN CONFIGURATION ...
Страница 108: ...108 CHAPTER 10 VOICE VLAN CONFIGURATION ...
Страница 119: ...GVRP Configuration Examples 119 DeviceB display vlan dynamic No dynamic vlans exist ...
Страница 120: ...120 CHAPTER 11 GVRP CONFIGURATION ...
Страница 160: ...160 CHAPTER 17 PORT ISOLATION CONFIGURATION ...
Страница 172: ...172 CHAPTER 19 LINK AGGREGATION CONFIGURATION ...
Страница 196: ...196 CHAPTER 22 DLDP CONFIGURATION ...
Страница 240: ...240 CHAPTER 23 MSTP CONFIGURATION ...
Страница 272: ...272 CHAPTER 27 RIP CONFIGURATION ...
Страница 364: ...364 CHAPTER 29 IS IS CONFIGURATION ...
Страница 426: ...426 CHAPTER 31 ROUTING POLICY CONFIGURATION ...
Страница 442: ...442 CHAPTER 33 IPV6 RIPNG CONFIGURATION ...
Страница 466: ...466 CHAPTER 35 IPV6 IS IS CONFIGURATION ...
Страница 488: ...488 CHAPTER 36 IPV6 BGP CONFIGURATION ...
Страница 498: ...498 CHAPTER 37 ROUTING POLICY CONFIGURATION ...
Страница 540: ...540 CHAPTER 40 TUNNELING CONFIGURATION ...
Страница 552: ...552 CHAPTER 41 MULTICAST OVERVIEW ...
Страница 604: ...604 CHAPTER 43 MLD SNOOPING CONFIGURATION ...
Страница 628: ...628 CHAPTER 46 IGMP CONFIGURATION ...
Страница 699: ...Troubleshooting MSDP 699 4 Verify that the C BSR address is different from the anycast RP address ...
Страница 700: ...700 CHAPTER 48 MSDP CONFIGURATION ...
Страница 812: ...812 CHAPTER 57 DHCP SERVER CONFIGURATION ...
Страница 822: ...822 CHAPTER 58 DHCP RELAY AGENT CONFIGURATION ...
Страница 834: ...834 CHAPTER 61 BOOTP CLIENT CONFIGURATION ...
Страница 850: ...850 CHAPTER 63 IPV4 ACL CONFIGURATION ...
Страница 856: ...856 CHAPTER 64 IPV6 ACL CONFIGURATION ...
Страница 860: ...860 CHAPTER 65 QOS OVERVIEW ...
Страница 868: ...868 CHAPTER 66 TRAFFIC CLASSIFICATION TP AND LR CONFIGURATION ...
Страница 888: ...888 CHAPTER 69 PRIORITY MAPPING ...
Страница 894: ...894 CHAPTER 71 TRAFFIC MIRRORING CONFIGURATION ...
Страница 904: ...904 CHAPTER 72 PORT MIRRORING CONFIGURATION ...
Страница 930: ...930 CHAPTER 74 UDP HELPER CONFIGURATION ...
Страница 990: ...990 CHAPTER 79 FILE SYSTEM MANAGEMENT CONFIGURATION ...
Страница 1000: ...1000 CHAPTER 80 FTP CONFIGURATION ...
Страница 1020: ...1020 CHAPTER 82 INFORMATION CENTER CONFIGURATION ...
Страница 1038: ...1038 CHAPTER 84 SYSTEM MAINTAINING AND DEBUGGING ...
Страница 1046: ...1046 CHAPTER 85 DEVICE MANAGEMENT ...
Страница 1129: ...SSH Client Configuration Examples 1129 SwitchB ...
Страница 1130: ...1130 CHAPTER 88 SSH CONFIGURATION ...
Страница 1160: ...1160 CHAPTER 90 RRPP CONFIGURATION ...
Страница 1180: ...1180 CHAPTER 91 PORT SECURITY CONFIGURATION ...
Страница 1192: ...1192 CHAPTER 92 LLDP CONFIGURATION ...
Страница 1202: ...1202 CHAPTER 93 POE CONFIGURATION ...
Страница 1218: ...1218 CHAPTER 96 HTTPS CONFIGURATION ...