! Extended ACL In other words, R1 is not required to have a default route locally. Ip address 2.2.2.2 255.255.255.255 FF02::1 link local range all node multicast address FastEthernet0/0 Hex The following are the parameters used during and after the auto-configuration process: When 10.4.0.0 is hanged , C will immediately send a route poisoning message ( 10.4.0.0 16 hops) and then advertise it; ! Experimental needs Feature overview Ipv6 ospf 100 area 1 Image Ip address 2.2.2.254 255.255.255.0 Multicast address of all groups to which the host belongs We finally do another test, that is, the ISATAP host pings 2008: 8888::1 . ACL R1 , R2 establish IPv6 in IBGP neighbor relationship (based LOOPBACK Interface) Bytes tag Ip cef RIP version number: Ipv6 dhcp client pd test Ipv6 address test ::FFFF/64 Image This RS message sent by the ISATAP host will be routed in the IPv4 network and eventually forwarded to the ISATAP router. This will cause the router to immediately respond with an RA : MC The following is an example of an NA message: Passive-interface * 0x0000000B Router-id 3.3.3.3 C000 – DFFF Multicast Y PC (using router emulation) uses stateless auto get address: ipv6 address autoconfig default IPv6 basic application MP-BGP OSPFv3 runs on the link. Each link can have multiple OSPFv3 instances. The adjacency list in the CEF component is used for MAC or Layer 2 rewrite information. 1.0.0.0/8 route IPv6 Address Tunnel adapter isatap.{0DB7233C-89B7-49DB-A8C0-D1AA005F4E6A}: !! Attention tunnel mode Mpls labels in/out nolabel/ 403 R1 RIPv1 Incoming interface: Loopback0 10.1.13.3 Image Ip address 202.101.100.1 255.255.255.0 Wherein R3 is as follows: On the network, the data is sent to 2002: CA65:1703::FFFF (next hop, which is the tunnel 6to4 address of R3 ) The configuration of R4 is added as follows: No synchronization exit-address-family Image Ip cef Switchport access vlan 10 interface fast0/15 For R2 , it is now in its own process 1 , while learning the route of this OE2 from R1 and R3 , how will it choose? Review FastEthernet1/0 To verify which outbound interface is used for a particular traffic in destination-based load balancing, use For configuration, here's a simple example: First, an IPv6 ACL is used to match IPv4-mapped traffic. The above ACL source is an IPv6 only network. The purpose is to Length, or mask length. When paired with the above ACL ,ccna dumps passleader, some students will even write Defaut-network takes precedence and becomes the default gateway gateway of last resort . However, if the network specified by ip defaut-network is learned from a dynamic routing protocol, ip route 0/0 takes precedence. Match interface s 0/0 32 bits Ip route 10.1.12.0 255.255.255.0 10.1.1.2 101x xxxx xxxx xxxx RIP re-advertises routes to OSPF : In order to get this prefix automatically, just run a protocol between the router and the host. Router using NDP protocol Experimental verification Route-map Loopback address: :: 10: 0: 0: 0: 0: 1/128 or :: 1/128 You should know that each routing protocol has different understandings of routing metric metrics . OSPF uses cost overhead to measure a route, RIP uses hops, and EIGRP uses mixed elements, so when I Some routes, from one of the routing protocols to another routing protocol, how will the metrics of these routes change? One way is that you can manually modify the re-release action when you perform the re-release action, depending on the specific environmental requirements, we will not worry about this later, the buddy is so sincere :). The second way is to use the default action, which is the seed metric defined when republishing between routing protocols.
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Exam Code: 200-125
Certification Provider: Cisco
Certification Exam Name:CCNA Routing & Switching
Update Date: Dec 21,2024
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.
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