• 产品与解决方案
  • 行业解决方案
  • 服务
  • 支持
  • 合作伙伴
  • 新华三人才研学中心
  • 关于我们

H3C交换机 典型配置举例-6W100

49-CFD典型配置举例

本章节下载 49-CFD典型配置举例  (155.58 KB)

docurl=/cn/Service/Document_Software/Document_Center/Switches/Catalog/S10500/S10500/Configure/Typical_Configuration_Example/H3C_Typical_Configuration_Example-6W100/201312/807776_30005_0.htm

49-CFD典型配置举例


1  CFD典型配置举例

1.1  简介

本章主要介绍了通过在网络中使用CFD功能,可以实现在二层网络中检测链路连通性,确认故障并确定故障发生的位置。

1.2  使用限制

请确保同一维护域内的设备所采用的CFD协议版本的一致性,否则CFD协议报文将无法互通。

1.3  CFD典型配置举例

1.3.1  适用产品和版本

表1 配置适用的产品与软件版本关系

产品

软件版本

S10500系列以太网交换机

Release 1120系列,Release 1130系列,Release 1200系列

S5820X&S5800系列以太网交换机

Release 1808

S5830系列以太网交换机

Release 1115,Release 1118

S5500-EI&S5500-SI系列以太网交换机

Release 2220

 

1.3.2  组网需求

图1所示,设备Device A、Device D、Device E由ISP 1管理,设备Device B、Device C由ISP 2管理。

现要求在该网络中配置CFD功能,实现检测链路连通性,确认故障并对故障进行定位。

图1 CFD组网示意图

 

1.3.3  配置思路

·     为了较好的规划CFD功能所作用的区域,可以根据设备所属的ISP来划分MD,把同一ISP管理下的设备划分在同一MD中,并根据各MD的范围来确定MD的级别,确保低级别MD嵌套于高级别MD中。本案例将ISP 1划分为MD_A(level 5),将ISP 2划分为MD_B(level 3)。

·     为了较好的规划CFD功能所作用的区域,可以根据业务流量所属的VLAN来划分MA。

·     为了检测MD_A和MD_B中所有MA内的MEP之间的连通状态,需要开启CC功能。

1.3.4  配置注意事项

·     在创建维护端点时,该维护端点ID必须已包含在对应服务实例的维护端点列表中,否则不能创建成功。

·     一个维护域内可以有多个维护集,但一个维护集只能与一个检测VLAN进行关联。

1.3.5  配置准备

Device A~Device E的MAC地址依次为0010-FC00-6511、0010-FC00-6512、0010-FC00-6513、0010-FC00-6514和0010-FC00-6515。

1.3.6  配置步骤

1. 开启CFD功能

# 在Device A上开启CFD功能。

<DeviceA> system-view

[DeviceA] cfd enable

Device B~Device E的配置与Device A相同,配置过程略。

2. 配置端口所属VLAN

根据1.3.2  图1,在各设备上创建对应VLAN;配置各设备上相关端口的属性,并将其加入到对应的VLAN中。具体配置过程略。

3. 配置服务实例

根据组网图中每台设备上的端点所属的MD中的MA,共需要完成表2配置:

表2 关系对应表

设备

MD

MD级别

MA

VLAN

服务实例

Device A

MD_A

5

MA_A_1

20

1

MA_A_2

30

2

Device B

MD_B

3

MA_B_1

20

3

Device C

MD_B

3

MA_B_1

20

3

Device D

MD_A

5

MA_A_1

20

1

MD_B

3

MA_B_1

20

3

Device E

MD_A

5

MA_A_2

30

2

 

(1)     Device A的配置

# Device A上创建级别为5的MD,MD名称为MD_A

[DeviceA] cfd md MD_A level 5

# MD_A中创建服务于VLAN 20MAMA的名称为MA_A_1

[DeviceA] cfd ma MA_A_1 md MD_A vlan 20

# MD_AMA_A_1创建服务实例1

[DeviceA] cfd service-instance 1 md MD_A ma MA_A_1

# 在MD_A中创建服务于VLAN 30的MA,MA的名称为MA_A_2。

[DeviceA] cfd ma MA_A_2 md MD_A vlan 30

# MD_AMA_A_2创建服务实例2

[DeviceA] cfd service-instance 2 md MD_A ma MA_A_2

Device BDevice E的配置与Device A相似。

(2)     Device B的配置

[DeviceB] cfd md MD_B level 3

[DeviceB] cfd ma MA_B_1 md MD_B vlan 20

[DeviceB] cfd service-instance 3 md MD_B ma MA_B_1

(3)     Device C的配置

[DeviceC] cfd md MD_B level 3

[DeviceC] cfd ma MA_B_1 md MD_B vlan 20

[DeviceC] cfd service-instance 3 md MD_B ma MA_B_1

(4)     Device D的配置

[DeviceD] cfd md MD_A level 5

[DeviceD] cfd ma MA_A_1 md MD_A vlan 20

[DeviceD] cfd service-instance 1 md MD_A ma MA_A_1

[DeviceD] cfd md MD_B level 3

[DeviceD] cfd ma MA_B_1 md MD_B vlan 20

[DeviceD] cfd service-instance 3 md MD_B ma MA_B_1

(5)     Device E的配置

[DeviceE] cfd md MD_A level 5

[DeviceE] cfd ma MA_A_2 md MD_A vlan 30

[DeviceE] cfd service-instance 2 md MD_A ma MA_A_2

4. 配置MEP

MEP ID分配如表3所示。

表3 MEP ID分配表

服务实例

设备

端口

MEP ID

MEP 方向

1

DeviceA

GigabitEthernet1/0/1

1001

内向MEP

DeviceD

GigabitEthernet1/0/2

1002

内向MEP

2

DeviceA

GigabitEthernet1/0/2

2001

内向MEP

DeviceE

GigabitEthernet1/0/1

2002

内向MEP

3

DeviceB

GigabitEthernet1/0/1

3001

内向MEP

DeviceD

GigabitEthernet1/0/1

3002

外向MEP

 

(1)     Device A的配置

# 在Device A的服务实例1和2内分别配置MEP列表。

[DeviceA] cfd meplist 1001 1002 service-instance 1

[DeviceA] cfd meplist 2001 2002 service-instance 2

# 在端口GigabitEthernet1/0/1上创建并开启服务实例1内的内向MEP 1001。

[DeviceA] interface GigabitEthernet 1/0/1

[DeviceA-GigabitEthernet1/0/1] cfd mep 1001 service-instance 1 inbound

[DeviceA-GigabitEthernet1/0/1] cfd mep service-instance 1 mep 1001 enable

[DeviceA-GigabitEthernet1/0/1] quit

# 在端口GigabitEthernet1/0/2上创建并开启服务实例2内的内向MEP 2001。

[DeviceA] interface GigabitEthernet 1/0/2

[DeviceA-GigabitEthernet1/0/2] cfd mep 2001 service-instance 2 inbound

[DeviceA-GigabitEthernet1/0/2] cfd mep service-instance 2 mep 2001 enable

[DeviceA-GigabitEthernet1/0/2] quit

Device B、Device D和Device E的配置与Device A相似。

(2)     Device B的配置

[DeviceB] cfd meplist 3001 3002 service-instance 3

[DeviceB] interface GigabitEthernet 1/0/1

[DeviceB-GigabitEthernet1/0/1] cfd mep 3001 service-instance 3 inbound

[DeviceB-GigabitEthernet1/0/1] cfd mep service-instance 3 mep 3001 enable

[DeviceB-GigabitEthernet1/0/1] quit

(3)     Device D的配置

[DeviceD] cfd meplist 1001 1002 service-instance 1

[DeviceD] cfd meplist 3001 3002 service-instance 3

[DeviceD] interface GigabitEthernet 1/0/2

[DeviceD-GigabitEthernet1/0/2] cfd mep 1002 service-instance 1 inbound

[DeviceD-GigabitEthernet1/0/2] cfd mep service-instance 1 mep 1002 enable

[DeviceD-GigabitEthernet1/0/2] quit

[DeviceD] interface GigabitEthernet 1/0/1

[DeviceD-GigabitEthernet1/0/1] cfd mep 3002 service-instance 3 outbound

[DeviceD-GigabitEthernet1/0/1] cfd mep service-instance 3 mep 3002 enable

[DeviceD-GigabitEthernet1/0/1] quit

(4)     Device E的配置

[DeviceE] cfd meplist 2001 2002 service-instance 2

[DeviceE] interface GigabitEthernet 1/0/1

[DeviceE-GigabitEthernet1/0/1] cfd mep 2002 service-instance 2 inbound

[DeviceE-GigabitEthernet1/0/1] cfd mep service-instance 2 mep 2002 enable

[DeviceE-GigabitEthernet1/0/1] quit

5. 配置MIP的创建规则

MIP的配置是可选项,MIP可处理LTM及LBM报文,合理的配置MIP,将方便管理员对链路故障进行确认和定位。

# 在Device C的服务实例3内配置MIP的创建规则为Default规则。

[DeviceC] cfd mip-rule default service-instance 3

6. 启用MEP的CC功能

(1)     Device A的配置

# 在端口GigabitEthernet1/0/1上开启服务实例1内MEP 1001的CCM报文发送功能。

[DeviceA] interface GigabitEthernet 1/0/1

[DeviceA-GigabitEthernet1/0/1] cfd cc service-instance 1 mep 1001 enable

[DeviceA-GigabitEthernet1/0/1] quit

# 在端口GigabitEthernet1/0/2上开启服务实例2内MEP 2001的CCM报文发送功能。

[DeviceA] interface GigabitEthernet 1/0/2

[DeviceA-GigabitEthernet1/0/2] cfd cc service-instance 2 mep 2001 enable

[DeviceA-GigabitEthernet1/0/2] quit

Device B、Device D和Device E的配置与Device A相似。

(2)     Device B的配置

[DeviceB] interface GigabitEthernet 1/0/1

[DeviceB-GigabitEthernet1/0/1] cfd cc service-instance 3 mep 3001 enable

[DeviceB-GigabitEthernet1/0/1] quit

(3)     Device D的配置

[DeviceD] interface GigabitEthernet 1/0/1

[DeviceD-GigabitEthernet1/0/1] cfd cc service-instance 3 mep 3002 enable

[DeviceD-GigabitEthernet1/0/1] interface GigabitEthernet 1/0/2

[DeviceD-GigabitEthernet1/0/2] cfd cc service-instance 1 mep 1002 enable

[DeviceD-GigabitEthernet1/0/2] quit

(4)     Device E的配置

[DeviceE] interface GigabitEthernet 1/0/1

[DeviceE-GigabitEthernet1/0/1] cfd cc service-instance 2 mep 2002 enable

[DeviceE-GigabitEthernet1/0/1] quit

1.3.7  验证配置

# 在Device A上察看服务实例1内MEP 1001的远端MEP的信息。

[DeviceA] display cfd remote-mep service-instance 1 mep 1001

MEP ID   MAC Address      State        Time                  MAC Status

1002     0010-FC00-6514   OK           2013/02/01 12:54:52   UP

结果显示远端MEP运行状态正常。

# 在Device A上启用环回功能,检查服务实例1内MEP 1001到MEP 1002的链路状况。

[DeviceA] cfd loopback service-instance 1 mep 1001 target-mep 1002

Loopback to 0010-FC00-6514 with the sequence number start from 1001-43404:

Reply from 0010-FC00-6514: sequence number=1001-43404

Reply from 0010-FC00-6514: sequence number=1001-43405

Reply from 0010-FC00-6514: sequence number=1001-43406

Reply from 0010-FC00-6514: sequence number=1001-43407

Reply from 0010-FC00-6514: sequence number=1001-43408

Send:5        Received:5        Lost:0

结果显示服务实例1内的MEP 1001和MEP 1002间的链路无故障。

# 在Device B的服务实例3内查找MEP 3001到MEP 3002的路径。

[DeviceB] cfd linktrace service-instance 3 mep 3001 target-mep 3002

Linktrace to MEP 3002 with the sequence number 3001-34

MAC Address               TTL     Last MAC         Relay Action

0010-FC00-6513            63      0010-FC00-6512   FDB

0010-FC00-6514            62      0010-FC00-6513   Hit

结果显示服务实例3内的MEP 3001找到了远端MEP 3002,且当MIP及远端MEP收到源MEP发送的LTM报文后,都向源MEP反馈LTR报文。源MEP从而获悉MEP 3001到MEP 3002链路的路径。

1.3.8  配置文件

说明

S5500-SI系列交换机不支持port link-mode bridge命令。

 

·     Device A

#

 cfd enable

 cfd md MD_A level 5

 cfd ma MA_A_1 md MD_A vlan 20

 cfd service-instance 1 md MD_A ma MA_A_1

 cfd meplist 1001 to 1002 service-instance 1

 cfd ma MA_A_2 md MD_A vlan 30

 cfd service-instance 2 md MD_A ma MA_A_2

 cfd meplist 2001 to 2002 service-instance 2

#

vlan 20

#

vlan 30

#

interface GigabitEthernet1/0/1

 port link-mode bridge

 port access vlan 20

 cfd mep 1001 service-instance 1 inbound

 cfd mep service-instance 1 mep 1001 enable

 cfd cc service-instance 1 mep 1001 enable

#

interface GigabitEthernet1/0/2

 port link-mode bridge

 port access vlan 30

 cfd mep 2001 service-instance 2 inbound

 cfd mep service-instance 2 mep 2001 enable

 cfd cc service-instance 2 mep 2001 enable

#

interface GigabitEthernet1/0/3

 port link-mode bridge

 port link-type trunk

 port trunk permit vlan 20 30

·     Device B

#

 cfd enable

 cfd md MD_B level 3

 cfd ma MA_B_1 md MD_B vlan 20

 cfd service-instance 3 md MD_B ma MA_B_1

 cfd meplist 3001 to 3002 service-instance 3

#

vlan 20

#

vlan 30

#

interface GigabitEthernet1/0/1

 port link-mode bridge

 port link-type trunk

 port trunk permit vlan 20 30

 cfd mep 3001 service-instance 3 inbound

 cfd mep service-instance 3 mep 3001 enable

 cfd cc service-instance 3 mep 3001 enable

#

interface GigabitEthernet1/0/2

 port link-mode bridge

 port link-type trunk

 port trunk permit vlan 20 30

#

interface GigabitEthernet1/0/3

 port link-mode bridge

 port link-type trunk

 port trunk permit vlan 20

#

interface GigabitEthernet1/0/4

 port link-mode bridge

 port link-type trunk

 port trunk permit vlan 30

·     Device C

#

 cfd enable

 cfd md MD_B level 3

 cfd ma MA_B_1 md MD_B vlan 20

 cfd service-instance 3 md MD_B ma MA_B_1

 cfd mip-rule default service-instance 3

#

vlan 20

#

interface GigabitEthernet1/0/1

 port link-mode bridge

 port link-type trunk

 port trunk permit vlan 20

#

interface GigabitEthernet1/0/2

 port link-mode bridge

 port link-type trunk

 port trunk permit vlan 20

#

interface GigabitEthernet1/0/3

 port link-mode bridge

 port link-type trunk

 port trunk permit vlan 20

#

interface GigabitEthernet1/0/4

 port link-mode bridge

 port link-type trunk

 port trunk permit vlan 30

·     Device D

#

 cfd enable

 cfd md MD_B level 3

 cfd ma MA_B_1 md MD_B vlan 20

 cfd service-instance 3 md MD_B ma MA_B_1

 cfd meplist 3001 to 3002 service-instance 3

 cfd md MD_A level 5

 cfd ma MA_A_1 md MD_A vlan 20

 cfd service-instance 1 md MD_A ma MA_A_1

 cfd meplist 1001 to 1002 service-instance 1

#

vlan 20

#

interface GigabitEthernet1/0/1

 port link-mode bridge

 port link-type trunk

 port trunk permit vlan 20

 cfd mep 3002 service-instance 3 outbound

 cfd mep service-instance 3 mep 3002 enable

 cfd cc service-instance 3 mep 3002 enable

#

interface GigabitEthernet1/0/2

 port link-mode bridge

 port access vlan 20

 cfd mep 1002 service-instance 1 inbound

 cfd mep service-instance 1 mep 1002 enable

 cfd cc service-instance 1 mep 1002 enable

·     Device E

#

 cfd enable

 cfd md MD_A level 5

 cfd ma MA_A_2 md MD_A vlan 30

 cfd service-instance 2 md MD_A ma MA_A_2

 cfd meplist 2001 to 2002 service-instance 2

#

vlan 30

#

interface GigabitEthernet1/0/1

 port link-mode bridge

 port access vlan 30

 cfd mep 2002 service-instance 2 inbound

 cfd mep service-instance 2 mep 2002 enable

 cfd cc service-instance 2 mep 2002 enable

#

interface GigabitEthernet1/0/2

 port link-mode bridge

 port link-type trunk

 port trunk permit vlan 30

 

不同款型规格的资料略有差异, 详细信息请向具体销售和400咨询。H3C保留在没有任何通知或提示的情况下对资料内容进行修改的权利!

新华三官网
联系我们