Netsh interface ipv6 show interface !! Get the target interface index number Image 2 : Reponse message, send all or part of its routing information, in a Response message Certification Wherein, R2 back to R1 of ICMPv6 error message is as follows: Tag 1111, type extern 2, forward metric 64 On the network, the data is sent to 2002: CA65:1703::FFFF (next hop, which is the tunnel 6to4 address of R3 ) The next hop (the Next Hop) - if present , it identifies a better than advertised router address of the next hop address. In other words , the next hop address it noted , that in the same measure than - advertised subnet router closer to the destination. If this field is set to all 0s (0.0.0.0), the address of the advertising router is the optimal next hop address. The first 8 bits of the route must match the first 8 bits of 172.0.0.0 , the other bits do not care, and the mask must be /8 , /9 , /10 , ..., /24 Adjust IPv6 nd parameters When the network is normal, the data is forced to go ISP1 , ping 100 remote network data to ISP1 ! 10.1.12.2 Image Sourced in sev-epoch 1 Encap length 14 The above configuration is only to solve the problem of data direction, but the problem of NAT : Then you can use the route-map tool, that is, we can associate a route-map with the re-release , to implement the function I just mentioned. None Unused Also, when R2 hangs, the entry of 172.16.2.0/24 is invalid, and the data destined for the 2.0 subnet is matching 172.16.0.0/16. 6PE and 6VPE We found that on R1 ,how to open ccna dumps, the route is not best , it is very simple, because NH is unreachable. The solution is simple, do next-hop-self on R2 on R3 ! Y Image This idea has been applied to dynamic routing protocols such as OSPF . Careful children's shoes will find that after you deploy route summarization in OSPF , it will automatically generate a summary route pointing to null0 locally . The reason is explained above. the same. Image Address-family ipv6 8 bits Now, we have to go through the calculations to get a summary of the segments that are just "inclusive". LSA flooding and aging mechanisms are the same 16 bits [Experiment 2 ] Both IPv6 islands use ordinary IPv6 global addresses. Encapsulating Security Payload header Encapsulating Security Payload Header (Protocol 51 ) Access-list 1 permit 10.1.1.0 0.0.0.255 route-map test permit 10 The fragment reassembly function is performed by the source end itself, and the path MTU is discovered through the PMTU mechanism. Neighbor FE80::CE01:8FF:FED8:10 update-source FastEthernet0/0 192.168.1.0/24 The AD value of 11.11.11.0/24 is adjusted to be larger than OSPF , for example 130 . So the configuration is as follows: Image R3 re-releases the incoming A route, so R2 , R3 , and R4 form a routing loop. Use route summarization! Looking at the picture above, in the previous scenario, we need to use 3 fine routes, but here we can achieve the same effect by using only one route. This route is the summary route of the three detailed routes in the previous scenario . A direct benefit of this configuration is that the router's routing table entries are greatly reduced. This mode of operation is called route summarization. Route summarization is a very important network design idea. Usually in a large and medium-sized network design, network and routing optimisation must be considered at all times. Route summarization is a time we need to shut down.
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CCNA Routing & Switching Written Exam
Exam Number : 200-125 CCNA
Associated Certification : CCNA Routing & Switching
Duration : 75 minutes (55 - 65 questions)
Available Languages: English, Japanese
NOTE: This exam tests a candidate's knowledge and skills related to: Network fundamentals, LAN switching technologies, IPv4 and IPv6 routing technologies, WAN technologies, Infrastructure services, Infrastructure security, Infrastructure management.
Exam Code: 200-125
Certification Provider: Cisco
Certification Exam Name:CCNA Routing & Switching
Update Date: Dec 21,2024
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