424
C
HAPTER
29: C
ONFIGURING
OSPF
0.0.0.0. All areas must be continuous logically. Thus, a virtual link is introduced to
the backbone to ensure that physically separated areas are still connected logically.
The router between the ASs is called autonomous system boundary router (ASBR).
Routing information, such as static routing, RIP routing, BGP routing, outside the
OSPF AS can be learned from the ASBR.
Computation of the OSPF protocol is summarized as follows:
1
Every router supporting OSPF maintains a link state database (LSDB) for describing
the topology of the entire AS. A router generates the Link State Advertisement
(LSA) according to the network topology around it and sends the LSA to other
routers on the network by the transmission of protocol packets. Thus, every router
receives the LSA from other routers. All LSAs together forms the LSDB.
2
The LSA describes the network topology around a router, so the LSDB describes
the topology of the whole network. A router can easily convert the LSDB into a
weighted directed graph, which shows the real topology of the whole network.
Obviously, each router in the autonomous system receives the same topology
diagram of the network.
3
Each router calculates with the SPF algorithm a shortest path tree with itself as the
root. This tree gives the routes to all autonomous systems. External routing
information is the leaf sub-node. The external route is flagged by the router by
broadcasting it to record additional information for the AS. Obviously, each router
gets a different routing table.
In addition, multiple adjacent relationship lists must be created so that each router
on the broadcast network and NBMA network can broadcast the local status
information (such as available interface information and reachable peer
information) to the whole system. Consequently, the route change of any router
may be transmitted many times, which is both unnecessary and wastes bandwidth
resources. To solve this problem, OSPF protocol selects a designated router (DR).
All routers send information to the DR, which broadcasts the network link status.
Two non-DR routers (DR Other) do not create neighboring relations with each
other and do not exchange any routing information. Then the number of
neighboring relations between the routers on the multi-address network is greatly
The OSPF protocol supports IP subnet and the marking and receiving of external
routing information. It supports interface-based message authentication to insure
the security of route calculation. Messages are transmitted and received in IP
multicast mode.
Configuring OSPF
In all configuration tasks, the OSPF-specified interface and area number must be
defined first to configure other function features. The configuration of
interface-related function features is not restricted by whether OSPF has been
enabled. The original interface parameters become invalid after OSPF is
terminated.
OSPF configuration includes:
■
Specify Router ID
■
Enabling OSPF
■
Associating an Area-id with the Specified Interface
■
Configuring the Network Type of the OSPF Interface
Содержание 3036
Страница 1: ...http www 3com com 3Com Router Configuration Guide Published March 2004 Part No 10014299 ...
Страница 4: ...VPN 615 RELIABILITY 665 QOS 681 DIAL UP 721 ...
Страница 6: ...2 ABOUT THIS GUIDE ...
Страница 7: ...I GETTING STARTED Chapter 1 3Com Router Introduction Chapter 2 3Com Router User Interface ...
Страница 8: ...4 ...
Страница 16: ...12 CHAPTER 1 3COM ROUTER INTRODUCTION ...
Страница 34: ...30 ...
Страница 60: ...56 CHAPTER 3 SYSTEM MANAGEMENT ...
Страница 88: ...84 CHAPTER 5 CONFIGURING NETWORK MANAGEMENT RouterA interface ethernet 0 RouterA Ethernet0 rmon promiscuous ...
Страница 98: ...94 CHAPTER 6 DISPLAY AND DEBUGGING TOOLS ...
Страница 110: ...106 ...
Страница 114: ...110 CHAPTER 8 INTERFACE CONFIGURATION OVERVIEW ...
Страница 158: ...154 CHAPTER 10 CONFIGURING WAN INTERFACE ...
Страница 168: ...164 ...
Страница 188: ...184 CHAPTER 13 CONFIGURING PPPOE CLIENT ...
Страница 192: ...188 CHAPTER 14 CONFIGURING SLIP Router ip route static 0 0 0 0 0 0 0 0 10 110 0 1 ...
Страница 248: ...244 CHAPTER 16 CONFIGURING LAPB AND X 25 ...
Страница 292: ...288 CHAPTER 18 CONFIGURING HDLC Enable HDLC packet debugging debugging hdlc packet interface type number ...
Страница 320: ...316 ...
Страница 330: ...326 CHAPTER 20 CONFIGURING IP ADDRESS ...
Страница 362: ...358 CHAPTER 21 CONFIGURING IP APPLICATION ...
Страница 374: ...370 CHAPTER 23 CONFIGURING IP COUNT ...
Страница 406: ...402 CHAPTER 25 CONFIGURING DLSW ...
Страница 408: ...404 ...
Страница 452: ...448 CHAPTER 29 CONFIGURING OSPF ...
Страница 482: ...478 CHAPTER 30 CONFIGURING BGP ...
Страница 494: ...490 CHAPTER 31 CONFIGURING IP ROUTING POLICY ...
Страница 502: ...498 ...
Страница 508: ...504 CHAPTER 33 IP MULTICAST ...
Страница 514: ...510 CHAPTER 34 CONFIGURING IGMP ...
Страница 526: ...522 CHAPTER 36 CONFIGURING PIM SM ...
Страница 528: ...524 ...
Страница 532: ...528 CHAPTER 37 CONFIGURING TERMINAL ACCESS SECURITY ...
Страница 550: ...546 CHAPTER 38 CONFIGURING AAA AND RADIUS PROTOCOL ...
Страница 590: ...586 CHAPTER 40 CONFIGURING IPSEC ...
Страница 599: ...IX VPN Chapter 42 Configuring VPN Chapter 43 Configuring L2TP Chapter 44 Configuring GRE ...
Страница 600: ...596 ...
Страница 638: ...634 CHAPTER 43 CONFIGURING L2TP ...
Страница 649: ...X RELIABILITY Chapter 45 Configuring a Standby Center Chapter 46 Configuring VRRP ...
Страница 650: ...646 ...
Страница 666: ...662 ...
Страница 670: ...666 CHAPTER 47 QOS OVERVIEW ...
Страница 700: ...696 CHAPTER 49 CONGESTION MANAGEMENT ...
Страница 706: ...702 CHAPTER 50 CONGESTION AVOIDANCE ...
Страница 707: ...XII DIAL UP Chapter 51 Configuring DCC Chapter 52 Configuring Modem ...
Страница 708: ...704 ...
Страница 762: ...758 CHAPTER 52 CONFIGURING MODEM ...