[AR1]display ip interface brief GigabitEthernet0/0/0 14.1.1.1/24 up up GigabitEthernet0/0/1 10.0.12.1/24 up up GigabitEthernet0/0/2 10.0.13.1/24 up up [AR2]display ip interface brief GigabitEthernet0/0/0 10.0.12.2/24 up up GigabitEthernet0/0/1 192.168.2.254/24 up up [AR3]display ip interface brief GigabitEthernet0/0/0 10.0.13.3/24 up up GigabitEthernet0/0/1 192.168.3.254/24 up up [AR4]display ip interface brief GigabitEthernet0/0/0 14.1.1.4/24 up up GigabitEthernet0/0/1 192.168.4.254/24 up up 搭建B区域rip网络 [AR1]rip 1 [AR1-rip-1]undo summary [AR1-rip-1]version 2 [AR1-rip-1]network 10.0.0.0 [AR2]rip 1 [AR2-rip-1]undo summary [AR2-rip-1]version 2 [AR2-rip-1]network 10.0.0.0 [AR2-rip-1]network 192.168.2.0 [AR3]rip 1 [AR3-rip-1]undo summary [AR3-rip-1]version 2 [AR3-rip-1]network 10.0.0.0 [AR3-rip-1]network 192.168.3.0 查看AR1的路由表 [AR1]display ip routing-table 192.168.2.0/24 RIP 100 1 D 10.0.12.2 GigabitEthernet 0/0/1 192.168.3.0/24 RIP 100 1 D 10.0.13.3 GigabitEthernet 0/0/2 此时B区的AR1已经成功接到192.168.2.0/24和192.168.3.0/24的路由条目
优化B区的RIP网络,在AR2的GE0/0/1接口抓取数据包,如图:网络
能够观察到,此时AR2上链接PC2终端一侧的接口上会通告RIP路由信息,而这些
RIP报文对终端PC1而言是毫无用处的。缘由是使用network命令通告PC1所在网
段后,AR2的GE0/0/1接口就会收发RIP协议报文,无论对端设备是否利用。为了
使PC1不接收这些无用RIP更新报文,能够在AR2的RIP进程中不使用network命
令通告该网段,而采用引入直连路由的方式来替代,将PC1的网段做为外部路由
发布到公司RIP网络中。ide
在AR2上使用import-route 命令配置路由引入,指定引入的源路由协议为直连
路由。在一台设备上配置路由引入时,须要保证被引入的路由条目已经存在当前
设备的路由表中。oop
[AR2]rip 1 [AR2-rip-1]undo network 192.168.2.0 [AR2-rip-1]import-route direct
再次在AR2的GE0/0/0接口抓包,发现没有发送任何RIP更新报文,此时已经完
成优化,PC1终端不在收到与其无关的RIP更新报文。
在AR2的GE0/0/1接口抓包,发现该接口上仍然正常发送RIP更新报文,将引入
后的192.168.2.0/24网段通告出去。PC2也有一样的问题,收到对用户无用的
RIP报文,一样采用引入直连路由的方式来解决。学习
[AR3]rip 1 [AR3-rip-1]undo network 192.168.3.0 [AR3-rip-1]import-route direct [AR1]display ip routing-table 192.168.2.0/24 RIP 100 1 D 10.0.12.2 GigabitEthernet 0/0/1 192.168.3.0/24 RIP 100 1 D 10.0.13.3 GigabitEthernet 0/0/2
链接A区与B区网络
在B区网关设备AR1上配置目的为192.168.4.0/24网段的静态路由,并在RIP
进程中引入该条静态路由,引入后B区RIP网络内的全部路由器会经过RIP协议
自动学习到该路由。测试
[AR1]ip route-static 192.168.4.0 24 14.1.1.4 [AR1]rip 1 [AR1-rip-1]import-route static [AR2]display ip routing-table Route Flags: R - relay, D - download to fib ------------------------------------------------------------------------------ Routing Tables: Public Destinations : 9 Routes : 9 Destination/Mask Proto Pre Cost Flags NextHop Interface 10.0.12.0/24 Direct 0 0 D 10.0.12.2 GigabitEthernet 0/0/0 10.0.12.2/32 Direct 0 0 D 127.0.0.1 GigabitEthernet 0/0/0 10.0.13.0/24 RIP 100 1 D 10.0.12.1 GigabitEthernet 0/0/0 127.0.0.0/8 Direct 0 0 D 127.0.0.1 InLoopBack0 127.0.0.1/32 Direct 0 0 D 127.0.0.1 InLoopBack0 192.168.2.0/24 Direct 0 0 D 192.168.2.254 GigabitEthernet 0/0/1 192.168.2.254/32 Direct 0 0 D 127.0.0.1 GigabitEthernet 0/0/1 192.168.3.0/24 RIP 100 2 D 10.0.12.1 GigabitEthernet 0/0/0 192.168.4.0/24 RIP 100 1 D 10.0.12.1 GigabitEthernet 0/0/0 在AR4上配置一条默认路由,下一跳为AR1 [AR4]ip route-static 0.0.0.0 0.0.0.0 14.1.1.1 [AR4]display ip routing-table Route Flags: R - relay, D - download to fib ------------------------------------------------------------------------------ Routing Tables: Public Destinations : 7 Routes : 7 Destination/Mask Proto Pre Cost Flags NextHop Interface 0.0.0.0/0 Static 60 0 RD 14.1.1.1 GigabitEthernet 0/0/0 14.1.1.0/24 Direct 0 0 D 14.1.1.4 GigabitEthernet 0/0/0 14.1.1.4/32 Direct 0 0 D 127.0.0.1 GigabitEthernet 0/0/0 127.0.0.0/8 Direct 0 0 D 127.0.0.1 InLoopBack0 127.0.0.1/32 Direct 0 0 D 127.0.0.1 InLoopBack0 192.168.4.0/24 Direct 0 0 D 192.168.4.254 GigabitEthernet 0/0/1 192.168.4.254/32 Direct 0 0 D 127.0.0.1 GigabitEthernet 0/0/1
测试PC1和PC3的连通性优化