RIPv2 OSPF R1 R2 R4 R3 R5 E0 E0 S1 S1S1 S0 S0 S0 S0 S0 3 .0 4 .0 . 35 .0 . 45 .0 2 .0 LOOP 0 LOOP 0 LOOP 0 LOOP 0 实验配置: 实验拓扑如上图, 两个路由选择域,在 R2, R3 上做路由的双向重分布, 使每个区域的路由器都可以达到共识. 实验目的: 解决在多点重分布时出现路径的不优问题. R2配置:! router ospf 1 router-id log-adjacency-changes redistribute rip metric 10000 metric-type 1 work area 0 ! router rip version 2 redistribute ospf 1 metric work no auto-summary ! ip classless no ip http server !! R3配置:! router ospf 1 router-id log-adjacency-changes redistribute rip metric 10000 metric-type 1 work area 0 ! router rip version 2 redistribute ospf 1 metric work no auto-summary ! ip classless no ip http server !! R2 先双向重分布, 然后 R3 再双向重分布. R3 路由表:O [110/128] via , 00:03:19, Serial1 is ted, 1 s O [110/65] via , 00:03:19, Serial1 C is directly connected, Serial1 is ted, 1 s O E1 [110/10128] via , 00:03:19, Serial1 is ted, 1 s C is directly connected, Loopback0 O E1 [110/10128] via , 00:03:19, Serial1 is ted, 1 s O E1 [110/10128] via , 00:03:20, Serial1 is ted, 1 s O E1 [110/10128] via , 00:03:20, Serial1 O E1 [110/10128] via 192
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