H3C静态链路聚合的典型配置

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H3C交换机配置静态路由的方法

H3C交换机配置静态路由的方法

H3C交换机配置静态路由的方法H3C交换机配置静态路由的方法其实关于配置静态路由的方法有很多,下面YJBYS店铺为大家整理了关于H3C交换机配置静态路由的方法,希望对你有所帮助。

一、组网需求:如下图所示,在三台Switch上通过配置静态路由,使得三台在不同网段的`PC之间可以相互通迅。

二、组网图:配置静态路由典型应用组网图三、配置步骤:软件版本:S9500交换机全系列软件版本硬件版本:S9500交换机全系列硬件版本如上图所示,三、配置步骤:软件版本:S9500交换机全系列软件版本;硬件版本:S9500交换机全系列硬件版本;如上图所示,所有IP地址的掩码均为255.255.255.0。

1)配置交换机SwitchA的配置静态路由[SwitchA]iproute-static1.1.3.0255.255.255.01.1.2.2[SwitchA]iproute-static1.1.4.0255.255.255.01.1.2.2[SwitchA]iproute-static1.1.5.0255.255.255.01.1.2.22)设置交换机SwitchB的配置静态路由。

[SwitchB]iproute-static1.1.2.0255.255.255.01.1.3.1[SwitchB]iproute-static1.1.5.0255.255.255.01.1.3.1[SwitchB]iproute-static1.1.1.0255.255.255.01.1.3.13)设置交换机SwitchC的配置静态路由。

[SwitchC]iproute-static1.1.1.0255.255.255.01.1.2.1[SwitchC]iproute-static1.1.4.0255.255.255.01.1.3.24)在主机A上配缺省网关为1.1.5.2,主机B上配缺省网关为1.1.4.1,主机C上配缺省网关为1.1.1.2。

h3c链路聚合配置及实例

h3c链路聚合配置及实例

1 以太网链路聚合配置任务简介表1-5 以太网链路聚合配置任务简介配置任务说明详细配置配置聚合组配置静态聚合组二者必选其一1.3.1 配置动态聚合组 1.3.2聚合接口相关配置配置聚合接口的描述信息可选 1.4.1 配置三层聚合接口MTU 可选 1.4.2 配置处理或转发三层聚合接口流量的业务处理板可选 1.4.3 开启聚合接口链路状态变化Trap功能可选 1.4.4 限制聚合组内选中端口的数量可选 1.4.5 关闭聚合接口可选 1.4.6 恢复聚合接口的缺省配置可选 1.4.7配置聚合负载分担配置聚合负载分担类型可选 1.5.1配置聚合负载分担为本地转发优先可选 1.5.2 配置聚合流量重定向功能可选 1.6 2 1.3 配置聚合组请根据需要聚合的以太网接口类型来配置相应类型的聚合组:当需要聚合的是二层以太网接口时,请配置二层聚合组;当需要聚合的是三层以太网接口时,请配置三层聚合组。

聚合链路的两端应配置相同的聚合模式。

●配置或使能了下列功能的端口将不能加入二层聚合组:RRPP(请参见“可靠性配置指导/RRPP”)、MAC地址认证(请参见“安全配置指导/MAC地址认证”)、端口安全模式(请参见“安全配置指导/端口安全”)、报文过滤功能(请参见“安全配置指导/防火墙”)、以太网帧过滤功能(请参见“安全配置指导/防火墙”)、IP Source Guard功能(请参见“安全配置指导/IP Source Guard”)、802.1X功能(请参见“安全配置指导/802.1X”)以及Portal免认证规则源接口(请参见“安全配置指导/Portal”)。

●配置或使能了下列功能的接口将不能加入三层聚合组:IP地址(请参见“三层技术-IP业务配置指导/IP地址”)、DHCP客户端(请参见“三层技术-IP业务配置指导/DHCP”)、BOOTP客户端(请参见“三层技术-IP业务配置指导/DHCP”)、VRRP功能(请参见“可靠性配置指导/VRRP”)和Portal功能(请参见“安全配置指导/Portal”)。

H3c路由器静态绑定Mac地址怎么设置

H3c路由器静态绑定Mac地址怎么设置

H3c路由器静态绑定Mac地址怎么设置
H3c路由器配置简单,不过对于没有网络基础的用户来说,完成路由器的安装和静态绑定Mac地址的设置,仍然有一定的困难,本文店铺主要介绍H3c路由器静态绑定Mac地址的设置方法!
H3c路由器静态绑定Mac地址的设置方法
登陆H3C管理后台。

打开浏览器,输入管理后台的地址,一般是192.168.1.1,打开登陆界面输入账号密码进行登陆。

静态绑定。

进入管理后台单击左侧菜单安全专区——ARP安全。

勾选右侧对DHCP分配的地址进行静态绑定。

新增MAC地址。

如图所示,点击新增按钮,新增你要进行绑定的MAC即可。

单击上面的启用按钮即可生效。

接入控制。

单击接入控制选项,勾选启用MAC地址过滤选框,如图所示。

将刚刚绑定的MAC地址加进来就可以了。

启用设置。

所有设置完成不要忘了启用。

H3C 链路聚合配置

H3C 链路聚合配置

操作手册接入分册链路聚合目录目录第1章链路聚合配置..............................................................................................................1-11.1 链路聚合简介.....................................................................................................................1-11.1.1 链路聚合的作用.......................................................................................................1-11.1.2 链路聚合的基本概念................................................................................................1-11.1.3 链路聚合的模式.......................................................................................................1-31.1.4 聚合组的负载分担类型............................................................................................1-51.2 配置静态聚合组..................................................................................................................1-61.3 配置动态聚合组..................................................................................................................1-71.4 聚合接口基本配置............................................................................................................1-101.4.1 配置聚合接口描述信息..........................................................................................1-101.4.2 配置三层聚合接口/三层聚合子接口的最大传输单元MTU......................................1-101.4.3 开启聚合接口链路状态变化Trap功能....................................................................1-111.4.4 关闭聚合接口.........................................................................................................1-111.5 链路聚合显示与维护........................................................................................................1-121.6 链路聚合典型配置举例.....................................................................................................1-121.6.1 组网需求................................................................................................................1-121.6.2 组网图....................................................................................................................1-131.6.3 配置步骤................................................................................................................1-13本文中标有“请以实际情况为准”的特性描述,表示各型号对于此特性的支持情况可能不同,本节将对此进行说明。

[史上最详细]H3C路由器NAT典型配置案例

[史上最详细]H3C路由器NAT典型配置案例

H3C路由器NAT典型配置案列(史上最详细)神马CCIE,H3CIE,HCIE等网络工程师日常实施运维必备,你懂的。

1.11 NAT典型配置举例1.11.1 内网用户通过NAT地址访问外网(静态地址转换)1. 组网需求内部网络用户10.110.10.8/24使用外网地址202.38.1.100访问Internet。

2. 组网图图1-5 静态地址转换典型配置组网图3. 配置步骤# 按照组网图配置各接口的IP地址,具体配置过程略。

# 配置内网IP地址10.110.10.8到外网地址202.38.1.100之间的一对一静态地址转换映射。

<Router> system-view[Router] nat static outbound 10.110.10.8 202.38.1.100# 使配置的静态地址转换在接口GigabitEthernet1/2上生效。

[Router] interface gigabitethernet 1/2[Router-GigabitEthernet1/2] nat static enable[Router-GigabitEthernet1/2] quit4. 验证配置# 以上配置完成后,内网主机可以访问外网服务器。

通过查看如下显示信息,可以验证以上配置成功。

[Router] display nat staticStatic NAT mappings:There are 1 outbound static NAT mappings.IP-to-IP:Local IP : 10.110.10.8Global IP : 202.38.1.100Interfaces enabled with static NAT:There are 1 interfaces enabled with static NAT.Interface: GigabitEthernet1/2# 通过以下显示命令,可以看到Host访问某外网服务器时生成NAT会话信息。

H3C交换机_典型配置举例-6W100-以太网链路聚合典型配置举例

H3C交换机_典型配置举例-6W100-以太网链路聚合典型配置举例
目录
1 链路聚合典型配置举例······················································································································· 1-1 1.1 简介 ···················································································································································1-1 1.2 二层链路聚合配置举例 ······················································································································1-1 1.2.1 适用产品和版本 ······················································································································1-1 1.2.2 组网需求 ·································································································································1-1 1.2.3 配置思路 ·································································································································1-1 1.2.4 配置注意事项 ··························································································································1-2 1.2.5 配置步骤 ·································································································································1-2 1.2.6 验证配置 ································································································································1-3 1.2.7 配置文件 ·································································································································1-4 1.3 二层聚合负载分担配置举例···············································································································1-5 1.3.1 适用产品和版本 ······················································································································1-5 1.3.2 组网需求 ·································································································································1-5 1.3.3 配置思路 ·································································································································1-6 1.3.4 配置注意事项 ··························································································································1-6 1.3.5 配置步骤 ·································································································································1-6 1.3.6 验证配置 ·································································································································1-7 1.3.7 配置文件 ·································································································································1-8 1.4 三层链路聚合配置举例 ······················································································································1-9 1.4.1 适用产品和版本 ······················································································································1-9 1.4.2 组网需求 ·······························································································································1-10 1.4.3 配置思路 ·······························································································································1-10 1.4.4 配置注意事项 ························································································································1-10 1.4.5 配置步骤 ·······························································································································1-10 1.4.6 验证配置 ·······························································································································1-11 1.4.7 配置文件 ·······························································································································1-12

H3C链路聚合

H3C链路聚合

H3C链路聚合端⼝汇聚是将多个以太⽹端⼝汇聚在⼀起形成⼀个逻辑上的汇聚组,使⽤汇聚服务的上层实体把同⼀汇聚组内的多条物理链路视为⼀条逻辑链路。

端⼝汇聚可以实现流量在汇聚组中各个成员端⼝之间进⾏分担,以增加带宽。

同时,同⼀汇聚组的各个成员端⼝之间彼此动态备份,提⾼了连接可靠性。

基于IEEE802.3ad标准的LACP(Link Aggregation Control Protocol,链路汇聚控制协议)是⼀种实现链路动态汇聚与解汇聚的协议。

LACP协议通过LACPDU(Link Aggregation Control Protocol Data Unit,链路汇聚控制协议数据单元)与对端交互信息。

启动某端⼝的LACP协议后,该端⼝将通过发送LACPDU向对端通告⾃⼰的系统优先级、系统MAC、端⼝优先级、端⼝号和操作Key。

对端接收到这些信息后,将这些信息与其它端⼝所保存的信息⽐较以选择能够汇聚的端⼝,从⽽双⽅可以对端⼝加⼊或退出某个动态汇聚组达成⼀致。

按照汇聚⽅式的不同,端⼝汇聚可以分为三类:⼿⼯汇聚、静态LACP汇聚、动态LACP汇聚。

实验环境:两台H3C E126A,Ethernet1/0/24、Ethernet1/0/23汇聚为⼀条链路。

⼿⼯汇聚:第⼀台交换机的配置:[H3CA]link-aggregation group 10 mode manual[H3CA]interface ethernet 1/0/24[H3CA-Ethernet1/0/24]port link-aggregation group 10Can not specify a loopback-detection enable port as aggregation group member ![H3CA-Ethernet1/0/24]undo loopback-detection enable //关闭掉lookback-detection功能[H3CA-Ethernet1/0/24]port link-aggregation group 10[H3CA-Ethernet1/0/24][H3CA]interface ethernet1/0/23[H3CA-Ethernet1/0/23]undo loopback-detection enable[H3CA-Ethernet1/0/23]port link-aggregation group 10[H3CA-Ethernet1/0/23]第⼆台交换机的配置:[H3CB]link-aggregation group 10 mode manual[H3CB]interface ethernet1/0/24[H3CB-Ethernet1/0/24]undo loopback-detection enable[H3CB-Ethernet1/0/24]port link-aggregation group 10[H3CB-Ethernet1/0/24]interface ethernet1/0/23[H3CB-Ethernet1/0/23]undo loopback-detection enable[H3CB-Ethernet1/0/23]port link-aggregation group 10[H3CB-Ethernet1/0/23]显⽰相关信息:[H3CB]display link-aggregation summary //显⽰摘要信息Aggregation Group Type -- Dynamic, S -- Static , M -- ManualLoadsharing Type: Shar -- Loadsharing, NonS -- Non-LoadsharingActor ID: 0x8000, 000f-e2a8-2defAL AL Partner ID Select Unselect Share MasterID Type Ports Ports Type Port--------------------------------------------------------------------------------10 M none 2 0 Shar Ethernet1/0/23[H3CB][H3CB]display link-aggregation interface ethernet1/0/24 //显⽰接⼝信息Ethernet1/0/24:Selected AggID: 10Local:Port-Priority: 32768, Oper key: 1, Flag: 0x00Remote:System ID: 0x0, 0000-0000-0000Port Number: 0, Port-Priority: 0 , Oper-key: 0, Flag: 0x00[H3CB]display link-aggregation interface ethernet1/0/23Ethernet1/0/23:Selected AggID: 10Local:Port-Priority: 32768, Oper key: 1, Flag: 0x00Remote:System ID: 0x0, 0000-0000-0000Port Number: 0, Port-Priority: 0 , Oper-key: 0, Flag: 0x00[H3CB][H3CB]display link-aggregation verbose //显⽰详细信息Loadsharing Type: Shar -- Loadsharing, NonS -- Non-LoadsharingFlags: A -- LACP_Activity, B -- LACP_timeout, C -- Aggregation,D -- Synchronization,E -- Collecting,F -- Distributing,G -- Defaulted, H -- ExpiredAggregation ID: 10, AggregationType: Manual, Loadsharing Type: Shar Aggregation Description:System ID: 0x8000, 000f-e2a8-2defPort Status: S -- Selected, U -- UnselectedLocal:Port Status Priority Key Flag--------------------------------------------------------------------------------Ethernet1/0/23 S 32768 1 {}Ethernet1/0/24 S 32768 1 {}Remote:Actor Partner Priority Key SystemID Flag--------------------------------------------------------------------------------Ethernet1/0/23 0 0 0 0x0000,0000-0000-0000 {}Ethernet1/0/24 0 0 0 0x0000,0000-0000-0000 {}[H3CB]LACP静态配置及显⽰信息:[H3CA]link-aggregation group 10 mode static[H3CA]interface ethernet1/0/24[H3CA-Ethernet1/0/24]port link-aggregation group 10Can not specify a loopback-detection enable port as aggregation group member ![H3CA-Ethernet1/0/24]undo loopback-detection enable[H3CA-Ethernet1/0/24]port link-aggregation group 10%Apr 1 23:58:48:162 2000 H3CA LAGG/3/PartnerNoLacp:- 1 -LACP is not enabled on the remote end of port Ethernet[H3CA-Ethernet1/0/24]interface ethernet1/0/23[H3CA-Ethernet1/0/23]undo loopback-detection enable[H3CA-Ethernet1/0/23]port link-aggregation group 10[H3CA-Ethernet1/0/23]%Apr 1 23:59:52:016 2000 H3CA LAGG/3/PartnerNoLacp:- 1 -LACP is not enabled on the remote end of port Ethernet1/0/23.[H3CA-Ethernet1/0/23][H3CB]link-aggregation group 10 mode static[H3CB]interface ethernet1/0/24[H3CB-Ethernet1/0/24]undo loopback-detection enable[H3CB-Ethernet1/0/24]port link-aggregation group 10[H3CB-Ethernet1/0/24]interface ethernet1/0/23[H3CB-Ethernet1/0/23]undo loopback-detection enable[H3CB-Ethernet1/0/23]port link-aggregation group 10[H3CB-Ethernet1/0/23]quit[H3CB][H3CA-Ethernet1/0/23]display link-aggregation verboseLoadsharing Type: Shar -- Loadsharing, NonS -- Non-LoadsharingFlags: A -- LACP_Activity, B -- LACP_timeout, C -- Aggregation,D -- Synchronization,E -- Collecting,F -- Distributing,G -- Defaulted, H -- ExpiredAggregation ID: 10, AggregationType: Static, Loadsharing Type: Shar Aggregation Description:System ID: 0x8000, 000f-e286-97bePort Status: S -- Selected, U -- UnselectedLocal:Port Status Priority Key Flag--------------------------------------------------------------------------------Ethernet1/0/23 S 32768 1 {ACDEF}Ethernet1/0/24 S 32768 1 {ACDEF}Remote:Actor Partner Priority Key SystemID Flag--------------------------------------------------------------------------------Ethernet1/0/23 23 32768 1 0x8000,000f-e2a8-2def {ACDEF}Ethernet1/0/24 24 32768 1 0x8000,000f-e2a8-2def {ACDEF}[H3CA-Ethernet1/0/23][H3CA]display link-aggregation summaryAggregation Group Type -- Dynamic, S -- Static , M -- ManualLoadsharing Type: Shar -- Loadsharing, NonS -- Non-LoadsharingActor ID: 0x8000, 000f-e286-97beAL AL Partner ID Select Unselect Share MasterID Type Ports Ports Type Port--------------------------------------------------------------------------------10 S 0x8000,000f-e2a8-2def 2 0 Shar Ethernet1/0/23[H3CA]display link-aggregation interface ethernet1/0/24Ethernet1/0/24:Selected AggID: 10Local:Port-Priority: 32768, Oper key: 1, Flag: 0x3dRemote:System ID: 0x8000, 000f-e2a8-2defPort Number: 24, Port-Priority: 32768 , Oper-key: 1, Flag: 0x3dReceived LACP Packets: 16 packet(s), Illegal: 0 packet(s)Sent LACP Packets: 28 packet(s)[H3CA]LACP动态配置:[H3CA]interface ethernet1/0/24[H3CA-Ethernet1/0/24]lacp enableCan not specify a loopback-detection enable port as aggregation group member ![H3CA-Ethernet1/0/24]undo loopback-detection enable[H3CA-Ethernet1/0/24]lacp enable[H3CA-Ethernet1/0/24]quit%Apr 1 23:58:42:156 2000 H3CA LAGG/3/PartnerNoLacp:- 1 -LACP is not enabled onthe remote end of port Ethernet1/0/24.[H3CA]interface ethernet1/0/23[H3CA-Ethernet1/0/23]undo loopback-detection enable[H3CA-Ethernet1/0/23]lacp enable[H3CA-Ethernet1/0/23]%Apr 1 23:59:27:689 2000 H3CA LAGG/3/PartnerNoLacp:- 1 -LACP is not enabled onthe remote end of port Ethernet1/0/23.[H3CA-Ethernet1/0/23][H3CB]interface ethernet1/0/24[H3CB-Ethernet1/0/24]undo loopback-detection enable[H3CB-Ethernet1/0/24]lacp enable[H3CB-Ethernet1/0/24]interface ethernet1/0/23[H3CB-Ethernet1/0/23]undo loopback-detection enable[H3CB-Ethernet1/0/23]lacp enable[H3CB-Ethernet1/0/23]quit配置关键点:1.同⼀个汇聚组中端⼝的基本配置必须保持⼀致,基本配置主要包括STP、QoS、VLAN、端⼝属性等相关配置;2.对于端⼝环回监测(loopback-detection)特性的相关命令和端⼝汇聚的相关命令,不能同时配置;3.对于配置了mac-address max-mac-count命令的端⼝,不能加⼊到汇聚组中;反之,对于已经加⼊到某个汇聚组中的端⼝,也不能再配置mac-address max-mac-count命令;4.对于使能了MAC地址认证或802.1x的端⼝,不能加⼊到汇聚组中;5.对于镜像⽬的端⼝、远程镜象反射端⼝、不能加⼊到汇聚组中;6.对于配置了⿊洞MAC地址、静态MAC地址或配置了静态ARP的端⼝,不能加⼊到汇聚组中;7.对于配置了MAC地址和IP地址绑定的端⼝,不能加⼊到汇聚组中;8.对于已经配置了端⼝安全(Port-Sercurity)特性相关命令的端⼝,不能加⼊到汇聚组中。

H3C交换机配置链路聚合

H3C交换机配置链路聚合

H3C交换机配置链路聚合H3C交换机配置链路聚合如何?要如何弄H3C交换机配置链路聚合.下面是店铺收集整理的H3C交换机配置链路聚合,希望对大家有帮助~~H3C交换机配置链路聚合创建聚合组1(根据具体情况选择下面两种方式之一)。

l采用静态聚合模式:创建二层聚合接口1system-view[SwitchA] interface bridge-aggregation 1[SwitchA-Bridge-Aggregation1] quitl采用动态聚合模式:创建二层聚合接口,并配置动态聚合模式system-view[SwitchA] interface bridge-aggregation 1[SwitchA-Bridge-Aggregation1] link-aggregation mode dynamic# 将以太网端口GigabitEthernet1/0/1至GigabitEthernet1/0/3加入聚合组1。

[SwitchA] interface GigabitEthernet 1/0/1[SwitchA-GigabitEthernet1/0/1] port link-aggregation group 1[SwitchA-GigabitEthernet1/0/1] interface GigabitEthernet 1/0/2[SwitchA-GigabitEthernet1/0/2] port link-aggregation group 1[SwitchA-GigabitEthernet1/0/2] interface GigabitEthernet 1/0/3[SwitchA-GigabitEthernet1/0/3] port link-aggregation group 1[SwitchA-GigabitEthernet1/0/3] quit# 配置二层聚合接口1所属VLAN,并将该配置批量下发到各成员端口上。

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H3C静态链路聚合的典型配置一、组网需求:两台H3C S3500-EA A,B之间做静态链路聚合。

这里假设e1/0/1,e1/0/2,e1/0/3端口都是trunk端口,允许vlan 10,20,30通过。

二、组网图:三、配置步骤:(1)设备A上的配置#创建二层聚合端口[switch-A] interface Bridge-Aggregation 1[switch-A-Bridge-Aggregation1] port link-type trunk[switch-A-Bridge-Aggregation1] port trunk permit vlan 10 20 30 #分别将设备A上端口e1/0/1,e1/0/2,e1/0/3加入到聚合组中[switch-A] interface Ethernet 1/0/1[switch-A-Ethernet1/0/1] port link-type trunk[switch-A-Ethernet1/0/1] port trunk permit vlan 10 20 30[switch-A-Ethernet1/0/1]port link-aggregation group 1[switch-A] interface Ethernet 1/0/2[switch-A-Ethernet1/0/2] port link-type trunk[switch-A-Ethernet1/0/2] port trunk permit vlan 10 20 30[switch-A-Ethernet1/0/2]port link-aggregation group 1[switch-A] interface Ethernet 1/0/3[switch-A-Ethernet1/0/3] port link-type trunk[switch-A-Ethernet1/0/3] port trunk permit vlan 10 20 30[switch-A-Ethernet1/0/3]port link-aggregation group 1(2)设备B上的配置设备B上的配置和A类似,这里从略。

(3)验证链路聚合可以通过命令display link-aggregation verbose 来查看端口是否变成select来验证聚合是否成功。

动态链路聚合的典型配置一、组网需求:两台H3C S3500-EA A,B之间做动态链路聚合。

这里假设e1/0/1,e1/0/2,e1/0/3端口都是trunk端口,允许vlan 10,20,30通过。

二\组网图:三、配置步骤:(1)设备A上的配置#创建二层聚合端口,并配置成动态聚合模式[switch-A] interface Bridge-Aggregation 1[switch-A-Bridge-Aggregation1] port link-type trunk[switch-A-Bridge-Aggregation1] port trunk permit vlan 10 20 30 [switch-A-Bridge-Aggregation1]link-aggregation mode dynamic#分别将设备A上端口e1/0/1,e1/0/2,e1/0/3加入到聚合组中[switch-A] interface Ethernet 1/0/1[switch-A-Ethernet1/0/1] port link-type trunk[switch-A-Ethernet1/0/1] port trunk permit vlan 10 20 30[switch-A-Ethernet1/0/1]port link-aggregation group 1[switch-A] interface Ethernet 1/0/2[switch-A-Ethernet1/0/2] port link-type trunk[switch-A-Ethernet1/0/2] port trunk permit vlan 10 20 30[switch-A-Ethernet1/0/2]port link-aggregation group 1[switch-A] interface Ethernet 1/0/3[switch-A-Ethernet1/0/3] port link-type trunk[switch-A-Ethernet1/0/3] port trunk permit vlan 10 20 30[switch-A-Ethernet1/0/3]port link-aggregation group 1(2)设备B上的配置设备B上的配置和A类似,这里从略。

(3)验证链路聚合可以通过命令display link-aggregation verbose 来查看端口是否变成select来验证聚合是否成功。

四、配置关键点:(1)此链路聚合配置适用于 F5305P02之后版本。

(2)需要特别注意的就是创建的二层聚合端口的配置要和物理成员端口保持一致,如本例中的二层聚合端口trunk属性和允许通过的vlan 10,20,30都与物理成员端口一样。

否则聚合无法成功。

(3)默认聚合方式为静态链路聚合,静态聚合模式中,成员端口的LACP协议为关闭状态。

(4)配置了RRPP的端口、配置为DHCP客户端/BOOTP客户端的端口、配置了VRRP 的端口、配置了MAC地址认证的端口、配置了端口安全模式的端口、启用了IP Source Guard功能的端口以及使能802.1x的端口都不能加入聚合组。

(5)建议不要将镜像反射口加入聚合组。

(6)用户删除动态模式的聚合端口时,系统会自动删除对应的聚合组,且该聚合组中的所有成员端口将全部离开该聚合组。

(7)对于动态聚合模式,系统两端会自动协商同一条链路上的两端端口在各自聚合组中的Selected状态,用户只需保证在一个系统中聚合在一起的端口的对端也同样聚合在一起,聚合功能即可正常使用。

(8)以上配置同样适用于H3C S5510设备。

--------------------------------------------------------------------- 华为链路聚合典型配置指导(版本切换前)链路聚合是将多个物理以太网端口聚合在一起形成一个逻辑上的聚合组,使用链路聚合服务的上层实体把同一聚合组内的多条物理链路视为一条逻辑链路。

链路聚合可以实现出/入负荷在聚合组中各个成员端口之间分担,以增加带宽。

同时,同一聚合组的各个成员端口之间彼此动态备份,提高了连接可靠性。

组网图 Switch A Link aggregation Switch B GE1/0/1 GE1/0/2 GE1/0/3 GE1/0/1 GE1/0/2GE1/0/3 链路聚合配置示例图应用要求设备Switch A用3个端口聚合接入设备Switch B,从而实现出/入负荷在各成员端口中分担。

Switch A的接入端口为GigabitEthernet1/0/1~GigabitEthernet1/0/3。

适用产品、版本配置适用的产品与软硬件版本关系产品软件版本硬件版本 S3610系列以太网交换机 Release 5301软件版本全系列硬件版本 S5510系列以太网交换机 Release 5301软件版本全系列硬件版本 S5500-SI系列以太网交换机 Release 1207软件版本全系列硬件版本(除S5500-20TP-SI)Release 1301软件版本 S5500-20TP-SI S5500-EI系列以太网交换机 Release 2102软件版本全系列硬件版本 S7500E系列以太网交换机 Release 6100软件版本全系列硬件版本配置过程和解释说明:以下只列出对Switch A的配置,对Switch B也需要作相同的配置,才能实现链路聚合。

配置聚合组,实现端口的负载分担(下面两种方式任选其一)采用手工聚合方式# 创建手工聚合组1。

<SwitchA> system-view[SwitchA] link-aggregation group 1 mode manual# 将以太网端口GigabitEthernet1/0/1至GigabitEthernet1/0/3加入聚合组1。

[SwitchA] interface GigabitEthernet 1/0/1[SwitchA-GigabitEthernet1/0/1] port link-aggregation group 1[SwitchA-GigabitEthernet1/0/1] interface GigabitEthernet 1/0/2[SwitchA-GigabitEthernet1/0/2] port link-aggregation group 1[SwitchA-GigabitEthernet1/0/2] interface GigabitEthernet 1/0/3[SwitchA-GigabitEthernet1/0/3] port link-aggregation group 1 采用静态LACP聚合方式# 创建静态LACP聚合组1。

<SwitchA> system-view[SwitchA] link-aggregation group 1 mode static# 将以太网端口GigabitEthernet1/0/1至GigabitEthernet1/0/3加入聚合组1。

[SwitchA] interface GigabitEthernet 1/0/1[SwitchA-GigabitEthernet1/0/1] port link-aggregation group 1[SwitchA-GigabitEthernet1/0/1] interface GigabitEthernet 1/0/2[SwitchA-GigabitEthernet1/0/2] port link-aggregation group 1[SwitchA-GigabitEthernet1/0/2] interface GigabitEthernet 1/0/3[SwitchA-GigabitEthernet1/0/3] port link-aggregation group 1 完整配置采用手工聚合方式:# link-aggregation group 1 mode manual# interface GigabitEthernet1/0/1 port link-aggregation group 1# interface GigabitEthernet1/0/2 port link-aggregation group 1# interface GigabitEthernet1/0/3 port link-aggregation group 1# 采用静态LACP聚合方式:# link-aggregation group 1 mode static interface GigabitEthernet1/0/1 port link-aggregation group 1# interface GigabitEthernet1/0/2 port link-aggregation group 1# interface GigabitEthernet1/0/3 port link-aggregation group 1#配置注意事项不同平台软件对静态聚合方式的实现不同,所以不同平台软件的产品采用静态聚合方式对接时,容易产生问题。

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