1-10
Figure 1-7
Network diagram for inter-provider VPN option A
VPN 1
CE 1
PE 1
PE 3
VPN 1
CE 3
CE 2
VPN 2
VPN 2
PE 2
PE 4
ASBR 1
(PE)
ASBR 2
(PE)
VPN LSP 1
VPN LSP 2
LSP 1
LSP 2
CE 4
IP Forwarding
EBGP
AS 100
AS 200
This kind of solution is easy to carry out because no special configuration is required on the PEs acting
as the ASBRs.
However, it has limited scalability because the PEs acting as the ASBRs have to manage all the VPN
routes and create VPN instances on a per-VPN basis. This leads to excessive VPN-IPv4 routes on the
PEs. Moreover, the requirement to create a separate subinterface for each VPN also calls for higher
performance of the PEs.
Inter-provider VPN option B
In this kind of solution, two ASBRs use MP-EBGP to exchange labeled VPN-IPv4 routes that they have
obtained from the PEs in their respective ASs.
As shown in
Figure 1-8
, the routes are advertised through the following steps:
1) PEs in AS 100 advertise labeled VPN-IPv4 routes to the ASBR PE of AS 100 or the route reflector
(RR) for the ASBR PE through MP-IBGP.
2) The ASBR PE advertises labeled VPN-IPv4 routes to the ASBR PE of AS 200 through MP-EBGP.
3) The ASBR PE of AS 200 advertises labeled VPN-IPv4 routes to PEs in AS 200 or to the RR for the
PEs through MP-IBGP.
The ASBRs must perform the special processing on the labeled VPN-IPv4 routes, which is also called
ASBR extension method.
Summary of Contents for S7906E - Switch
Page 82: ...1 4 DeviceA interface tunnel 1 DeviceA Tunnel1 service loopback group 1...
Page 200: ...1 11 DeviceB display vlan dynamic No dynamic vlans exist...
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Page 2017: ...2 11 Figure 2 3 SFTP client interface...
Page 2238: ...1 16 DeviceA cfd linktrace service instance 1 mep 1001 target mep 4002...