OSPF+MGRE的配置练习
topo图和题目如下
注:因为模拟器不能实现同一接口使用多个MGRE进程,所以在AR1上使用了两个接口
1、配置IP地址和缺省路由(实现公网通信)
AR1:
[a1-LoopBack0]ip add 1.1.1.1 24
[a1-GigabitEthernet0/0/0]ip add 16.0.0.1 24
[a1-GigabitEthernet0/0/1]ip ad 16.0.1.1 24
[a1]ip route-static 0.0.0.0 0 16.0.0.6
[a1]ip route-static 0.0.0.0 0 16.0.1.6
AR2:
[a2-LoopBack0]ip add 2.2.2.2 24
[a2-GigabitEthernet0/0/0]ip add 26.0.0.2 24
[a2]ip route-static 0.0.0.0 0 26.0.0.6
AR3:
[a3-LoopBack0]ip add 3.3.3.3 24
[a3-GigabitEthernet0/0/0]ip add 36.0.0.3 24
[a3]ip route-static 0.0.0.0 0 36.0.0.6
AR4:
[a4-LoopBack0]ip add 4.4.4.4 24
[a4-GigabitEthernet0/0/0]ip add 46.0.1.4 24
[a4]ip route-static 0.0.0.0 0 46.0.1.6
AR5:
[a5-LoopBack0]ip add 5.5.5.5 24
[a5-GigabitEthernet0/0/0]ip add 56.0.1.5 24
[a5]ip route-static 0.0.0.0 0 56.0.1.6
ISP:
[isp-GigabitEthernet0/0/0]ip add 16.0.0.6 24
[isp-GigabitEthernet0/0/1]ip add 16.0.1.6 24
[isp-GigabitEthernet0/0/2]ip add 26.0.0.6 24
[isp-GigabitEthernet2/0/0]ip add 36.0.0.6 24
[isp-GigabitEthernet3/0/0]ip ad 46.0.1.6 24
[isp-GigabitEthernet4/0/0]ip add 56.0.1.6 24
2、测试公网通:
3、配置隧道:
AR1:
[a1-Tunnel0/0/0]ip add 192.168.0.1 24
[a1-Tunnel0/0/0]tunnel-protocol g p
[a1-Tunnel0/0/0]source 16.0.0.1
[a1-Tunnel0/0/0]nhrp network-id 1
[a1-Tunnel0/0/0]ospf network-type broadcast
[a1-Tunnel0/0/0]nhrp entry multicast dynamic
[a1-Tunnel0/0/1]ip add 192.168.1.1 24
[a1-Tunnel0/0/1]tunnel-protocol gre p
[a1-Tunnel0/0/1]source 16.0.1.1
[a1-Tunnel0/0/1]nhrp network-id 2
[a1-Tunnel0/0/1]ospf network-type broadcast
[a1-Tunnel0/0/1]nhrp entry multicast dynamic
AR2:
[a2-Tunnel0/0/0]ip add 192.168.0.2 24
[a2-Tunnel0/0/0]t g p
[a2-Tunnel0/0/0]so 26.0.0.2
[a2-Tunnel0/0/0]nhrp network-id 1
[a2-Tunnel0/0/0]ospf net b
[a2-Tunnel0/0/0]nhr entry 192.168.0.1 16.0.0.1 register
[a2-Tunnel0/0/0]ospf dr-priority 0
AR3:
[a3-Tunnel0/0/0]ip add 192.168.0.3 24
[a3-Tunnel0/0/0]t g p
[a3-Tunnel0/0/0]so 36.0.0.3
[a3-Tunnel0/0/0]nhr net 1
[a3-Tunnel0/0/0]nhr ent 192.168.0.1 16.0.0.1 register
[a3-Tunnel0/0/0]ospf net b
[a3-Tunnel0/0/0]ospf dr 0
AR4:
[a4-Tunnel0/0/0]ip add 192.168.1.4 24
[a4-Tunnel0/0/0]t g p
[a4-Tunnel0/0/0]so 46.0.1.4
[a4-Tunnel0/0/0]nhrp network-id 2
[a4-Tunnel0/0/0]nhr ent 192.168.1.1 16.0.1.1 re
[a4-Tunnel0/0/0]nhrp entry 192.168.1.5 56.0.1.5 re
[a4-Tunnel0/0/0]ospf network-type b
[a4-Tunnel0/0/0]nhr en m d
AR5:
[a5-Tunnel0/0/0]ip ad 192.168.1.5 24
[a5-Tunnel0/0/0]t g p
[a5-Tunnel0/0/0]so 56.0.1.5
[a5-Tunnel0/0/0]nhr net 2
[a5-Tunnel0/0/0]nhr ent 192.168.1.1 16.0.1.1 re
[a5-Tunnel0/0/0]ospf network-type broadcast
[a5-Tunnel0/0/0]nhr ent mu d
4、测试nhrp peer:
5、配置OSPF:
AR1:
[a1]ospf 1
[a1-ospf-1]a 0
[a1-ospf-1-area-0.0.0.0]network 1.1.1.1 0.0.0.0
[a1-ospf-1-area-0.0.0.0]network 192.168.0.0 0.0.0.255
[a1-ospf-1-area-0.0.0.0]network 192.168.1.0 0.0.0.255
AR2:
[a2]ospf 1
[a2-ospf-1]a 0
[a2-ospf-1-area-0.0.0.0]net 192.168.0.0 0.0.0.255
[a2-ospf-1-area-0.0.0.0]net 2.2.2.2 0.0.0.0
AR3:
[a3-ospf-1]a 0
[a3-ospf-1-area-0.0.0.0]net 192.168.0.0 0.0.0.255
[a3-ospf-1-area-0.0.0.0]net 3.3.3.3 0.0.0.0
AR4:
[a4-ospf-1]a 0
[a4-ospf-1-area-0.0.0.0]net 192.168.1.0 0.0.0.255
[a4-ospf-1-area-0.0.0.0]net 4.4.4.4 0.0.0.0
AR5:
[a5-ospf-1]a 0
[a5-ospf-1-area-0.0.0.0]net 192.168.1.0 0.0.0.255
[a5-ospf-1-area-0.0.0.0]net 5.5.5.5 0.0.0.0
6、网络连通性测试:
7、总结:
在本次实验中,通过修改OSPF的接口类型、修改选举优先级等方式实现了在 hubspoke架构和全连接的MGRE+OSPF 的环境下全网可达
慎用全宣告
在对ar1的OSPF接口宣告时,因为错误使用了net 0.0.0.0 255.255.255.255的全宣告,导致物理网段即GE0/0/0和GE0/0/1接口也被宣告进OSPF进而导致网络无法收敛