思科路由协议培训.ppt
《思科路由协议培训.ppt》由会员分享,可在线阅读,更多相关《思科路由协议培训.ppt(320页珍藏版)》请在三一办公上搜索。
1、Configuring EIGRP,Objectives,Upon completing this lesson,you will be able to:Describe EIGRP features and operationExplain how EIGRP discovers,chooses,and maintains routesExplain how EIGRP supports the use of VLSMExplain how EIGRP operates in an NBMAenvironmentExplain how EIGRP supports the use of ro
2、utesummarization,Objectives(cont.),Describe how EIGRP supports large networks Configure EIGRPVerify EIGRP operationConfigure an EIGRP environment and verify proper operation(within described guidelines)of your routers,given a set of network requirements Configure EIGRP in an NBMA environment and ver
3、ify proper operation(within described guidelines)of your routers,given a set of network requirements,EIGRP Overview,2001,Cisco Systems,Inc.,4-4,EIGRP supports:Rapid convergenceReduced bandwidth usageMultiple network-layer protocols,What Is EIGRP?,EnhancedIGRP,IPX RoutingProtocols,AppleTalk Routing P
4、rotocol,IP RoutingProtocols,IPX RoutingProtocols,AppleTalk Routing Protocol,IP RoutingProtocols,EIGRP Features,Advanced distance vector100%loop freeFast convergenceEasy configurationLess network design constraints than OSPF,EIGRP Features(cont.),Incremental updatesSupports VLSM and discontiguous net
5、worksClassless routingCompatible with existing IGRP networksProtocol independent(supports IPX and AppleTalk),Advantages of EIGRP,Multicast instead of broadcastUse of link bandwidth and delay EIGRP metric=IGRP metric x 256(32 bit versus 24 bit)Unequal cost path load balancingMore flexible than OSPF M
6、anual summarization can be done in any interface at any router within the network,EIGRP in IP Packets,EIGRP is an advanced distance vector routing protocol:Automatically establishes neighbor relationships with peer devicesRelies on IP packets for delivery of routing information,IP Header,Protocol Nu
7、mber,Frame Header,CRC,Packet Payload,Frame Payload,88EIGRP 6TCP17UDP,EIGRP Support for Different Topologies,EIGRP supportsMultiaccess(LANs)Point-to-point(HDLC)NBMA(Frame Relay),S0,A,B,S1,E,F,G,H,FrameRelay,D,C,Rest of the Core,EIGRP Support for IP Addresses,EIGRP supports:VLSMsHierarchical designs,/
8、16,D,/27,/30,/24,World,N,M,A,P,O,B,S,R,C,EIGRP Support for Route Summarization,EIGRP performs route summarizationClassful network boundaries(default)Arbitrary network boundaries(manual),172.16.0.0/24,10.0.0.0/18,192.168.42.0/27,172.16.0.0/16,172.16.0.0/16192.168.42.0/24,EIGRP Terminology,Neighbor Ta
9、bleAppleTalkDestination Next Hop Router,Neighbor TableIPXDestination Next Hop Router,Neighbor TableIPNext-Hop Interface Router,EIGRP Terminology(cont.),Neighbor TableAppleTalkDestination Next Hop Router,Neighbor TableIPXDestination Next Hop Router,Neighbor TableIPNext-Hop Interface Router,EIGRP Term
10、inology(cont.),Neighbor TableAppleTalkDestination Next Hop Router,Neighbor TableIPXDestination Next Hop Router,Neighbor TableIPNext-Hop Interface Router,EIGRP Terminology(cont.),Neighbor TableAppleTalkDestination Next Hop Router,Neighbor TableIPXDestination Next Hop Router,Neighbor TableIPNext-Hop I
11、nterface Router,EIGRP Terminology(cont.),Neighbor TableAppleTalkDestination Next Hop Router,Neighbor TableIPXDestination Next Hop Router,Neighbor TableIPNext-Hop Interface Router,EIGRP Operation,2001,Cisco Systems,Inc.,4-18,EIGRP Packets,Hello:Establish neighbor relationshipsUpdate:Send routing upda
12、tesQuery:Ask neighbors aboutrouting informationReply:Response to query aboutrouting informationACK:Acknowledgment of a reliable packet,EIGRP Neighbor Relationship,Two routers become neighbors when they see each others hello packetHello address=224.0.0.10Hellos sent once every 5 seconds on the follow
13、ing links:Broadcast media:Ethernet,Token Ring,FDDIPoint-to-point serial links:PPP,HDLC,point-to-point Frame Relay/ATM subinterfacesMultipoint circuits with bandwidth greater than T1:ISDN PRI,SMDS,Frame Relay,EIGRP Neighbor Relationship(cont.),Hellos sent once every 60 seconds on the following links:
14、Multipointcircuits with bandwidth less than or equal to T1:ISDN BRI,Frame Relay,SMDS,and so onNeighbor declared dead when no EIGRP packets are received within hold intervalHold time by default is three times the hello time,EIGRP Neighbor Relationship(cont.),EIGRP will form neighbors even though hell
15、o time and hold time dont match EIGRP sources hello packets from primary address of the interfaceEIGRP will not form neighbor if K-values are mismatchedEIGRP will not form neighbor if AS numbers are mismatched,What Is in a Neighbor Table?,p2r2,p2r2#show ip eigrp neighborsIP-EIGRP neighbors for proce
16、ss 400H Address Interface Hold Uptime SRTT RTO Q Seq(sec)(ms)Cnt Num1 172.68.2.2 To0 13 02:15:30 8 200 0 90 172.68.16.2 Se1 10 02:38:29 29 200 0 6,EIGRP Reliability,EIGRP reliable packets are packets that require explicit acknowledgment:UpdateQueryReplyEIGRP unreliable packets are packets that do no
17、t require explicit acknowledgment:HelloACK,EIGRP Reliability(cont.),The router keeps a neighbor list and a retransmission list for every neighbor Each reliable packet(update,query,reply)will be retransmitted when packet is not acknowledgedNeighbor relationship is reset when retry limit(limit=16)for
18、reliable packets is reached,EIGRP Reliability(cont.),EIGRP transport has window size of one(stop-and-wait mechanism)Every single reliable packet needs to be acknowledged before the next sequenced packet can be sent If one or more peers are slow in acknowledging,all other peers sufferSolution:The non
19、acknowledged multicast packet will be retransmitted as a unicast to the slow neighbor,I am router A,who is on the link?,Hello,A,B,1,Initial Route Discovery,Here is my complete routing information.,Update,2,Initial Route Discovery(cont.),I am router A,who is on the link?,Hello,A,B,1,Thanks for the in
20、formation!,Ack,3,Initial Route Discovery(cont.),Here is my complete routing information.,Update,2,I am router A,who is on the link?,Hello,A,B,1,Topology Table,3,4,Initial Route Discovery(cont.),Thanks for the information!,Ack,3,Here is my complete routing information.,Update,2,I am router A,who is o
21、n the link?,Hello,A,B,1,3,4,Thanks for the information!,Ack,3,Here is my complete routing information.,Update,2,I am router A,who is on the link?,Hello,A,B,1,Initial Route Discovery(cont.),Here is my complete route information.,Update,Topology Table,5,Initial Route Discovery(cont.),Converged,Thanks
22、for the information!,Ack,6,3,4,Thanks for the information!,Ack,3,Here is my complete routing information.,Update,2,I am router A,who is on the link?,Hello,B,1,Here is my complete route information.,Update,5,Topology Table,A,EIGRP uses a composite metric to pick the best path,EIGRP Route Selection,IP
23、X,19.2,T1,T1,T1,IPX,AppleTalk,IP,AppleTalk,IP,A,B,D,C,EIGRP Metrics Calculation,Metric=K1 x BW+(K2 x BW)/(256 load)+K3 x delay x K5/(reliability+K4)By default:K1=1,K2=0,K3=1,K4=0,K5=0Delay is sum of all the delays of the links along the pathsDelay=Delay in 10s of microseconds x 256BW=the lowest band
24、width of the links along the pathsBW=10000000/(bandwidth in Kbps)x 256By default,metric=BW+delay,EIGRP DUAL,Diffusing Update Algorithm(DUAL)Finite-state machineTracks all routes advertised by neighborsSelects loop-free path using a successor and remembers any feasible successorsIf successor lost:Use
25、 feasible successorIf no feasible successor:Query neighbors and recompute new successor,DUAL Example(Start),E EIGRP FD AD Topology(a)3(fd)via D 3 2(Successor)via C 4 3,D EIGRP FD AD Topology(a)2(fd)via B 2 1(Successor)via C 5 3,C EIGRP FD AD Topology(a)3(fd)via B 3 1(Successor)via D 4 2(fs)via E 4 3
- 配套讲稿:
如PPT文件的首页显示word图标,表示该PPT已包含配套word讲稿。双击word图标可打开word文档。
- 特殊限制:
部分文档作品中含有的国旗、国徽等图片,仅作为作品整体效果示例展示,禁止商用。设计者仅对作品中独创性部分享有著作权。
- 关 键 词:
- 思科 路由 协议 培训
链接地址:https://www.31ppt.com/p-2971016.html