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Page 1: Huawei 2014 Tolly Certification Test Cases

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Huawei 2014 Tolly Certification

Test Cases

Interoperability & Replacement V1.0

Huawei Technologies Co., Ltd.

All rights reserved

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Contents

Version: .................................................................................................................................. 3

1. Interoperability and Replacement Test ............................................................................. 10

1.1. Layer 2 Features ....................................................................................................... 10

1.1.1. Interoperation Between LLDP and CDP ..................................................... 10

1.1.2. DLDP ............................................................................................................... 14

1.1.3. Interoperation Between VBST and PVST+ ................................................ 18

1.1.4. VCMP ............................................................................................................... 24

1.1.5. LNP .................................................................................................................. 28

1.2. Layer 3 Features ....................................................................................................... 34

1.2.1. BFD for VRRP ................................................................................................. 34

1.2.2. Interoperability Between OSPF and EIGRP ............................................... 39

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Version:

C2960:

S1720:

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S5700LI:

S5700SI:

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S5720EI:

S5720HI:

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S6700EI:

S7706:

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S9712:

S12708:

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C3560X:

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1. Interoperability and Replacement Test

1.1. Layer 2 Features

1.1.1. Interoperation Between LLDP and CDP

Test Item LLDP

Test

Objective

To validate the DUT supports the LLDP function

Test Setup

Networking Diagram:

Port_1

DUT_1

Port_1

Cisco

DUT_2

Pre-conditions:

1) All devices work normally.

2) Establish the test environment according to the above diagram.

Test

Procedure

1) Enable LLDP globally on DUT_1 and enable LLDP function under Port_1 of DUT_1;

[DUT_1]lldp enable

2) Enable CDP on DUT_2 and enable CDP under Port_1 of DUT_2;

DUT2(config)#lldp run

3) Configure CDP compliance function under Port_1 of DUT_1;

[DUT_1]int GigabitEthernet02/1/16

[DUT_1- GigabitEthernet02/1/16] lldp compliance cdp receive

2) Check the information of DUT_1’s neighbor, and expected result 1 will be displayed.

Excepted

Result

Actual

Result

1) The device information of DUT_2 will be displayed on DUT_1.

S1720-20GFR-4TP截图:

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S5700-52X-PWR-LI截图:

S5700-24TP-PWR-SI截图:

S5720-36C-EI-28S截图:

S5720-56C-PWR-HI截图:

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S6700-48-EI截图:

C2960X截图:

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S7706截图:

S9712截图:

S12700截图:

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C3560X截图:

Remarks

Signature

by

Customer

Signature by Huawei

1.1.2. DLDP

Test Item DLDP Function

Test

Objective To validate the DUT supports the DLDP function

Test Setup

Networking Diagram:

Pre-conditions:

1) All devices work normally;

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2) Establish the test environment according to the above diagram.

Test

Procedure

1) Configure the DLDP function between DUT_1 and DUT_2 and undo negotiation auto on

Port_1 of both DUTS;

[DUT_1]dldp enable [DUT_1]interface GigabitEthernet 1/0/12 [DUT_1- GigabitEthernet 1/0/12] description Port_1 [DUT_1- GigabitEthernet 1/0/12] dldp enable [DUT_2]dldp enable [DUT_2]interface GigabitEthernet 0/0/24 [DUT_1- GigabitEthernet 0/0/24] description Port_1 [DUT_1- GigabitEthernet 0/0/24] dldp enable

2) Pull out one fiber between DUT_1 and DUT_2 and simulate the directional link failure;

3) Check the port status on DUT_1.

display int GigabitEthernet 1/0/12

Expected

Result

1) The status of port on DUT_1 is down.

Actual

Result

1) The status of port on DUT_1 is down.

S7706截图:

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S9712截图:

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S12708截图:

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其余设备S1720、S5700LI、S5700SI、S5720EI、S5720HI、S6700EI现场测试均已确认支持

DLDP的功能,无截图。

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Remarks

Signature

by

Customer

Signature by Huawei

1.1.3. Interoperation Between VBST and PVST+

Test Item Interoperation Between VBST and PVST+

Test

Objective To validate the DUT can interoperate between VBST and PVST+

Test Setup

Networking Diagram:

Port_1 Port_2

DUT_1

Tport_1 Tport_2

Tester

Port_1Port_2

DUT_2

Port_3Port_3

Port_1 Port_2

DUT_3

Cisco

Pre-conditions:

1) All devices work normally;

2) Establish the test environment according to the above diagram.(DUT-1 as

S12700,DUT-2 as S5720HI,DUT-3 as Cisco 3560)

Test

Procedure

1) Enable STP on DUT_3. The mode is pvst. Enable VBST on DUT_1 and DUT_2, and all

the related ports in the loop;

[DUT-1]stp mode vbst

[DUT-2]stp mode vbst

DUT-3(config)#spanning-tree mode pvst

2) Configure 2 protect instance included VLAN 1, and expected result 1 is displayed;

[DUT-1]stp vlan 1 to 127 enable

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[DUT-2]stp vlan 1 to 127 enable

DUT-3(config)#spanning-tree vlan 1-127

3) Configure DUT_3 as a root, and block point is on DUT_1, send stream from Tport_1 to

Tport_2, shutdown the link between DUT_2 and DUT_3, and expected result 2 is

displayed;

DUT-3(config)# spanning-tree vlan 1-127 root primary

4) Undo shutdown the port, and expected result 3 is displayed;

Expected

Result

1) The spanning-tree in each VLAN status is right

2) The switchover status is right, and the switchover time is normal.

3) The switchover status is right, and the switchover time is normal.

Actual

Result

1) spanning-tree in each VLAN is status right. block point is on DUT_1

2) The switchover status is right, and the switchover time is normal

Shutdown Cisco 3560 Fas0/45,result is:

3) switchover status is right, and the switchover time is normal.

No Shutdown Cisco 3560 Fas0/45,result is:

C2960 截图:

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S1720 截图:

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S5700LI截图:

S5700SI截图:

S5720EI截图:

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S5720HI截图:

S6700EI截图:

C3560 截图:

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S7706 截图:

S9712 截图:

S12708 截图:

Remarks

Signature

by

Customer

Signature by Huawei

1.1.4. VCMP

Test Item VCMP

Test To validate the DUT supports the VCMP function

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Objective

Test Setup

Networking Diagram:

Port_1

DUT_1

Port_2

DUT_2

Port_2

Port_1

DUT_3

Tester

Port_2 Port_1

Tport_1 Tport_2

Pre-conditions:

1) All devices work normally;

2) Establish the test environment according to the above diagram.(DUT_1 as

S12700,DUT_2 as S5720HI,DUT3 as S5720EI)

Test

Procedure

1) Configure DUT_1 as VCMP server, DUT_2 as transparent and DUT_3 as client;

[DUT_1] vcmp role server [DUT_2] vcmp role transparent [DUT_3] vcmp role client

2) Configure VCMP domain to vd1, and device-id is server on DUT_1;

[DUT_1]vcmp domain vd1 [DUT_1]vcmp device-id server

3) Configure authentication to sha2-256, and the password is hello on DUT_1;

[DUT_1] vcmp authentication sha2-256 password hello

4) Configure VCMP domain to vd1 on DUT_2 and DUT_3

[DUT_2]vcmp domain vd1 [DUT_3]vcmp domain vd1

5) Configure authentication to sha2-256, and the password is hello on DUT_2 and DUT_3;

[DUT_2] vcmp authentication sha2-256 password hello

[DUT_3] vcmp authentication sha2-256 password hello

6) Configure Port_1 on DUT_1, Port_1 and Port_2 on DUT_2, Port_2 on DUT_3 as Trunk

port and allow VLAN 1, VLAN 10 to pass all ports;

[DUT_1]interface GigabitEthernet 0/0/1 [DUT_1- GigabitEthernet 0/0/1] description Port_1 [DUT_1- GigabitEthernet 0/0/1] port link-type trunk [DUT_1- GigabitEthernet 0/0/1] port trunk allow-pass vlan 1 ,10 [DUT_2]interface GigabitEthernet 0/0/1 [DUT_2- GigabitEthernet 0/0/1] description Port_1 [DUT_2- GigabitEthernet 0/0/1] port link-type trunk [DUT_2- GigabitEthernet 0/0/1] port trunk allow-pass vlan 1 ,10 [DUT_2]interface GigabitEthernet 0/0/2 [DUT_2- GigabitEthernet 0/0/1] description Port_2

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[DUT_2- GigabitEthernet 0/0/1] port link-type trunk [DUT_2- GigabitEthernet 0/0/1] port trunk allow-pass vlan 1 ,10 [DUT_3]interface GigabitEthernet 0/0/2 [DUT_3- GigabitEthernet 0/0/1] description Port_2 [DUT_3- GigabitEthernet 0/0/1] port link-type trunk [DUT_3- GigabitEthernet 0/0/1] port trunk allow-pass vlan 1 ,10

7) Configure Port_2 on DUT_1 and Port_1 on DUT_3 as access port and add them into

VLAN 10. Disable VCMP on these ports;

[DUT_1]interface GigabitEthernet 0/0/1 [DUT_1- GigabitEthernet 0/0/1] description Port_2 [DUT_1- GigabitEthernet 0/0/1] port link-type access [DUT_1- GigabitEthernet 0/0/1] vcmp disable [DUT_1- GigabitEthernet 0/0/1] port default vlan 10 [DUT_3]interface GigabitEthernet 0/0/2 [DUT_1- GigabitEthernet 0/0/1] description Port_1 [DUT_1- GigabitEthernet 0/0/1] port link-type access [DUT_1- GigabitEthernet 0/0/1] vcmp disable [DUT_1- GigabitEthernet 0/0/1] port default vlan 10

8) Create VLAN 10 on DUT_1, Check the VLAN information on DUT_2 and DUT_3, and

expected result 1 is displayed;

[DUT_1]vlan 10

9) Create VLAN 10 on DUT_2, then send a stream from Tport_1 to Tport_2 without tag,

and expected result 2 is displayed;

[DUT_2]vlan 10

Expected

Result

1) There is VLAN 10 information on DUT_3, but not on DUT_2.

2) Tport_2 could receive the stream.

Actual

Result

1) There is VLAN 10 information on DUT_3, but not on DUT_2.

2) Tport_2 could receive the stream.

S7706截图:

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S9712截图:

S12708截图:

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其余设备S1720、S5700LI、S5700SI、S5720EI、S5720HI、S6700EI现场测试均已确认支持

VCMP的功能,无截图。

Remarks

Signature

by

Customer

Signature by Huawei

1.1.5. LNP

Test Item LNP

Test

Objective To validate the DUT supports the LNP function

Test Setup Networking Diagram:

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Port_1 Port_2

DUT_1

Tport_1 Tport_2

Tester

Port_1

Port_2

DUT_2

Pre-conditions:

1) All devices work normally;

2) Establish the test environment according to the above diagram.

Test

Procedure

1) Create VLAN 10, add Port_1 on DUT_1 and Port_1 on DUT_2 into VLAN access port;

[DUT_1]interface GigabitEthernet 0/0/1 [DUT_1- GigabitEthernet 0/0/1] description Port_1 [DUT_1- GigabitEthernet 0/0/1] port link-type access [DUT_1- GigabitEthernet 0/0/1] port default vlan 10 [DUT_2]interface GigabitEthernet 0/0/1 [DUT_2- GigabitEthernet 0/0/1] description Port_1 [DUT_2- GigabitEthernet 0/0/1] port link-type access [DUT_2- GigabitEthernet 0/0/1] port default vlan 10

2) Configure Port_2 on DUT_1 and Port_2 on DUT_2 port link-type as negotiation

desirable;

[DUT_1]interface GigabitEthernet 0/0/2 [DUT_1- GigabitEthernet 0/0/2] description Port_2 [DUT_1- GigabitEthernet 0/0/2] port link-type negotiation-desirable [DUT_2]interface GigabitEthernet 0/0/2 [DUT_2- GigabitEthernet 0/0/2] description Port_2 [DUT_2- GigabitEthernet 0/0/2] port link-type negotiation-desirable

3) Allow only VLAN 10 to pass these ports;

4) Check the negotiation result, and send a stream from Tport_1 to Tport_2, and expected

result 1 is displayed;

5) Configure Port 2 on DUT_1 link-type as negotiation desirable and Port_2 on DUT_2

link-type as access;

[DUT_1]interface GigabitEthernet 0/0/2 [DUT_1- GigabitEthernet 0/0/2] description Port_2 [DUT_1- GigabitEthernet 0/0/2] port link-type negotiation-desirable

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[DUT_2]interface GigabitEthernet 0/0/2 [DUT_2- GigabitEthernet 0/0/2] description Port_2 [DUT_2- GigabitEthernet 0/0/2] port link-type access

6) Configure default VLAN 10 on these ports;

[DUT_1- GigabitEthernet 0/0/2] port default vlan 10 [DUT_2- GigabitEthernet 0/0/2] port default vlan 10

7) Check the negotiation result, and send a stream from Tport_1 to Tport_2, and expected

result 2 is displayed;

8) Configure Port 2 on DUT_1 link-type as negotiation desirable and Port_2 on DUT_2

link-type as trunk;

[DUT_1]interface GigabitEthernet 0/0/2 [DUT_1- GigabitEthernet 0/0/2] description Port_2 [DUT_1- GigabitEthernet 0/0/2] port link-type negotiation-desirable

[DUT_2]interface GigabitEthernet 0/0/2 [DUT_2- GigabitEthernet 0/0/2] description Port_2 [DUT_2- GigabitEthernet 0/0/2] port link-type trunk [DUT_2- GigabitEthernet 0/0/2] port trunk allow vlan 10

9) Allow only VLAN 10 to pass these ports;

10) Check the negotiation result, and expected result 3 is displayed;

11) Configure Port 2 on DUT_1 link-type as negotiation desirable and Port_2 on DUT_2

link-type as hybrid;

[DUT_1]interface GigabitEthernet 0/0/2 [DUT_1- GigabitEthernet 0/0/2] description Port_2 [DUT_1- GigabitEthernet 0/0/2] port link-type negotiation-desirable

[DUT_2]interface GigabitEthernet 0/0/2 [DUT_2- GigabitEthernet 0/0/2] description Port_2 [DUT_2- GigabitEthernet 0/0/2] port link-type hybrid

12) Allow only VLAN 10 to pass these ports;

[DUT_2]interface GigabitEthernet 0/0/2

13) Check the negotiation result, and expected result 4 is displayed;

14) Configure Port 2 on DUT_1 link-type as negotiation desirable and Port_2 on DUT_2

link-type as negotiation auto;

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[DUT_1]interface GigabitEthernet 0/0/2 [DUT_1- GigabitEthernet 0/0/2] description Port_2 [DUT_1- GigabitEthernet 0/0/2] port link-type negotiation-desirable

[DUT_2]interface GigabitEthernet 0/0/2 [DUT_2- GigabitEthernet 0/0/2] description Port_2 [DUT_2- GigabitEthernet 0/0/2] port link-type negotiation-auto

15) Allow only VLAN 10 to pass these ports;

16) Check the negotiation result, and expected result 5 is displayed;

Expected

Result

1) Link Type is Trunk. Tport_2 could receive the stream.

2) Link Type is Access. Tport_2 could receive the stream.

3) Link Type is Trunk. Tport_2 could receive the stream.

4) Link Type is Trunk. Tport_2 could receive the stream.

5) Link Type is Trunk. Tport_2 could receive the stream.

Actual

Result

1) Link Type is Trunk. Tport_2 could receive the stream.

2) Link Type is Access. Tport_2 could receive the stream.

3) Link Type is Trunk. Tport_2 could receive the stream.

4) Link Type is Trunk. Tport_2 could receive the stream.

5) Link Type is Trunk. Tport_2 could receive the stream.

S7706截图:

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S9712截图:

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S12708截图:

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其余设备S1720、S5700LI、S5700SI、S5720EI、S5720HI、S6700EI现场测试均已确认支持

LNP功能,无截图。

Remarks

Signature

by

Customer

Signature by Huawei

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1.2. Layer 3 Features

1.2.1. BFD for VRRP

Test Item BFD for VRRP

Test

Objective To validate the DUT supports the BFD for VRRP function

Test Setup

Networking Diagram:

Pre-conditions:

1) All devices work normally;

2) Establish the test environment according to the above diagram.

Test

Procedure

1) Configure the routing protocol on DUT_1, DUT_2, and DUT_3, which learn route

information from each other;

[DUT_1] interface gigabitethernet 1/0/1

[DUT_1-GigabitEthernet1/0/1] port link-type trunk

[DUT_1-GigabitEthernet1/0/1] port trunk allow-pass vlan 10

[DUT_1-GigabitEthernet1/0/1] quit

[DUT_1] interface gigabitethernet 1/0/2

[DUT_1-GigabitEthernet1/0/2] port link-type trunk

[DUT_1-GigabitEthernet1/0/2] port trunk allow-pass vlan 40

[DUT_1-GigabitEthernet1/0/2] quit

[DUT_2] interface gigabitethernet 1/0/1

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[DUT_2-GigabitEthernet1/0/1] port link-type trunk

[DUT_2-GigabitEthernet1/0/1] port trunk allow-pass vlan 10

[DUT_2-GigabitEthernet1/0/1] quit

[DUT_2] interface gigabitethernet 1/0/2

[DUT_2-GigabitEthernet1/0/2] port link-type trunk

[DUT_2-GigabitEthernet1/0/2] port trunk allow-pass vlan 20

[DUT_2-GigabitEthernet1/0/2] quit

[DUT_2] interface gigabitethernet 1/0/3

[DUT_2-GigabitEthernet1/0/3] port link-type trunk

[DUT_2-GigabitEthernet1/0/3] port trunk allow-pass vlan 30

[DUT_2-GigabitEthernet1/0/3] quit

[DUT_3] interface gigabitethernet 1/0/1

[DUT_3-GigabitEthernet1/0/1] port link-type trunk

[DUT_3-GigabitEthernet1/0/1] port trunk allow-pass vlan 20

[DUT_3-GigabitEthernet1/0/1] quit

[DUT_3] interface gigabitethernet 1/0/2

[DUT_3-GigabitEthernet1/0/2] port link-type trunk

[DUT_3-GigabitEthernet1/0/2] port trunk allow-pass vlan 40

[DUT_3-GigabitEthernet1/0/2] quit

[DUT_4-GigabitEthernet1/0/1] port link-type trunk

[DUT_4-GigabitEthernet1/0/1] port trunk allow-pass vlan 40

[DUT_4-GigabitEthernet1/0/1] quit

[DUT_4] interface gigabitethernet 1/0/2

[DUT_4-GigabitEthernet1/0/2] port link-type trunk

[DUT_4-GigabitEthernet1/0/2] port trunk allow-pass vlan 40

[DUT_4-GigabitEthernet1/0/2] quit

[DUT_4] interface gigabitethernet 1/0/3

[DUT_4-GigabitEthernet1/0/3] port link-type trunk

[DUT_4-GigabitEthernet1/0/3] port trunk allow-pass vlan 40

[DUT_4-GigabitEthernet1/0/3] quit

[DUT_1]interface Vlanif 10

[DUT_1-Vlanif10]ip address 10.1.1.1 24

[DUT_1-Vlanif10]interface Vlanif 30

[DUT_1-Vlanif40]ip address 40.1.1.2 24

[DUT_2]interface Vlanif 10

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[DUT_2-Vlanif10]ip address 10.1.1.2 24

[DUT_2-Vlanif10]interface Vlanif 20

[DUT_2-Vlanif20]ip address 20.1.1.1 24

[DUT_2-Vlanif20]interface Vlanif 30

[DUT_2-Vlanif30]ip address 30.1.1.1 24

[DUT_3]interface Vlanif 20

[DUT_3-Vlanif20]ip address 20.1.1.2 24

[DUT_3-Vlanif20]interface Vlanif 40

[DUT_3-Vlanif30]ip address 40.1.1.3 24

[DUT_1]ospf 1

[DUT_1-ospf-1]area 0

[DUT_1-ospf-1-area-0.0.0.0]network 10.1.1.0 0.0.0.255

[DUT_1-ospf-1-area-0.0.0.0]network 40.1.1.0 0.0.0.255

[DUT_2]ospf 1

[DUT_2-ospf-1]area 0

[DUT_2-ospf-1-area-0.0.0.0]network 10.1.1.0 0.0.0.255

[DUT_2-ospf-1-area-0.0.0.0]network 20.1.1.0 0.0.0.255

[DUT_2-ospf-1-area-0.0.0.0]network 30.1.1.0 0.0.0.255

[DUT_3]ospf 1

[DUT_3-ospf-1]area 0

[DUT_3-ospf-1-area-0.0.0.0]network 20.1.1.0 0.0.0.255

[DUT_3-ospf-1-area-0.0.0.0]network 40.1.1.0 0.0.0.255

2) Configure VRRP protocol between DUT_1 and DUT_3, Set master link between DUT_1

and DUT_4, backup link between DUT_3 and DUT_4;

[DUT_1] interface Vlanif 40

[DUT_1-Vlanif40] vrrp vrid 1 virtual-ip 40.1.1.1

[DUT_1-Vlanif40] vrrp vrid 1 priority 120

[DUT_1-Vlanif40] vrrp vrid 1 preempt-mode timer delay 20

[DUT_1-Vlanif40] quit

[DUT_3] interface Vlanif 40

[DUT_3-Vlanif40] vrrp vrid 1 virtual-ip 40.1.1.1

[DUT_3-Vlanif40] quit

3) Configure BFD function on DUT_1 and DUT_3, and bind the VRRP protocol;

[DUT_1] bfd

[DUT_1-bfd] quit

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[DUT_1] bfd atob bind peer-ip 40.1.1.3 interface VLANIF 30

[DUT_1-bfd-session-atob] discriminator local 1

[DUT_1-bfd-session-atob] discriminator remote 2

[DUT_1-bfd-session-atob] min-rx-interval 100

[DUT_1-bfd-session-atob] min-tx-interval 100

[DUT_1-bfd-session-atob] commit

[DUT_1-bfd-session-atob] quit

[DUT_3] bfd

[DUT_3-bfd] quit

[DUT_3] bfd btoa bind peer-ip 40.1.1.2 interface VLANIF 40

[DUT_3-bfd-session-btoa] discriminator local 2

[DUT_3-bfd-session-btoa] discriminator remote 1

[DUT_3-bfd-session-btoa] min-rx-interval 100

[DUT_3-bfd-session-btoa] min-tx-interval 100

[DUT_3-bfd-session-btoa] commit

[DUT_3-bfd-session-btoa] quit

[DUT_3] interface Vlanif 40

[DUT_3-Vlanif30] vrrp vrid 1 track bfd-session 2 increased 40

4) Send traffic from TPort_1 to Tport_2, and expected result 1 is displayed;

1) Shut down the link between DUT_1 and DUT_4, and expected result 2 is displayed.

Expected

Result

1) Tport_2 can receive the traffic;

2) Latency and packet loss comply with the declared specification.

Actual

Result

1) Tport_2 can receive the traffic;

2) Latency and packet loss comply with the declared specification.

S9712截图:

S12708截图:

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S5720HI设备现场经过测试确认支持BFD for VRRP的功能,组网为两台EI、两台HI。

Remarks

Signature

by

Customer

Signature by Huawei

1.2.2. Interoperability Between OSPF and EIGRP

Test Item Interoperability Between OSPF and EIGRP

Test

Objective

To validate the DUT can interoperate between OSPF and EIGRP

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Test Setup

Networking Diagram:

Port_1 Port_2

DUT_1

Tport_1 Tport_2

Tester

Port_1

Port_2

Cisco

DUT_2

Pre-conditions:

1) All devices work normally.

2) Establish the test environment according to the above diagram.

Test

Procedure

1) Connect some cables to devices according to the above diagram;

2) configure IP address for the interface;

DUT-2 配置

interface FastEthernet0/43

description DUT_2 Port_1

no switchport

ip address 130.1.1.1 255.255.255.0

end

interface FastEthernet0/47

description DUT_2 Port_2

no switchport

ip address 110.1.1.2 255.255.255.0

end

DUT-1 配置

interface GigabitEthernet2/1/16

undo portswitch

description DUT-1 Port_2

ip address 110.1.1.1 255.255.255.0

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lldp compliance cdp receive

#

interface GigabitEthernet1/0/2

description DUT_1 Port_1

undo portswitch

ip address 130.1.1.1 255.255.255.0

#

3) Create an OSPF process as 100 on DUT_1 and DUT_2 to announce routing of network

segments is based on the OSPF area to which the interface belongs;

DUT-2 配置

router ospf 100

log-adjacency-changes

network 110.1.1.0 0.0.0.255 area 0

DUT-1 配置

ospf 100

area 0.0.0.0

network 110.1.1.0 0.0.0.255

network 120.1.1.0 0.0.0.255

4) Create EIGRP process as 100 on DUT_2, to announce routing of network segment base

on EIGRP area which interface belong to;

router eigrp 100

network 130.1.1.0 0.0.0.255

5) On DUT_2, import (redistribute) OSPF and EIGRP between each other.

router eigrp 100

redistribute ospf 100

router ospf 100

redistribute eigrp 100 subnets

6) Observe the status of OSPF neighbor and routing table, and check the connectivity

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between devices. Expected result 1 is displayed.

Expected

Result

1) The routing table contains routes of each network segment. The routing table contains

routes of each network segment

Actual

Result

1) OSPF neighbor and routing table is Correct

2) The routing table contains routes of each network segment

S5720HI截图:

S6700EI截图:

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S9712截图:

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S12708截图:

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C3560截图:

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Remarks

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Signature

by

Customer

Signature by Huawei