cisco路由器常用配置
Cisco路由器的基本配置命令

在Boson中添加路由器时,主要根据需要的端口数来选择路由器。如下图所示,当选中Cisco2610路由器时,在左下端的窗口中可看到它的端口情况:
图11-2设备选择
上半部分是固定端口(Ports),可看到有1个Ethernet端口;下半部分是扩展的端口,可看到有2个插槽(Slots),每个插槽上可以有1个或2个Serial端口或1个Bri端口。把2610路由器拖动到绘图区时,会弹出一个对话框,如下图所示:
在两个串口相连后,还需要设置串口的工作方式,其中一个被设置为DCE(数据同步设备),另一个被设置为DTE(数据终端设备)。如下图所示:
图11-5 DCE设备的选择
图中把Router 1的Serial 0端口设置为DCE,当然也可以选择对端的串口作为DCE。
(3)路由器的基本配置
图11-6路由器基本配置命令
2(配置路由器R1的E0和S0端口的IP属性:
3(配置路由器R2的Serial端口(DCE端):
R2(config)# interface s0
R2(config-if)# ip address 10.0.0.2 255.0.0.0
R2(config-if)# clock rate 64000
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Cisco路由器的基本配置命令
Cisco路由器的基本配置命令一(实训目的
1(掌握路由器的连接方式和使用基本规则。
2(掌握路由器的基本配置命令。
二(实训器材及环境
1(安装Windows 2000 Server系统的计算机一台。
2(安装模拟软件Boson Netsim 5.31。
3(模拟环境如下:
图11-1实验拓扑环境ຫໍສະໝຸດ ?用show命令查看路由器的配置文件,并保存配置文件。
cisco路由器基本配置教程

cisco路由器基本配置教程路由器使用很广泛,对路由器有所了解,对于新用户来说cisco路由器基本配置,小编为你奉上具体的教程,欢迎大家阅读。
很多读者都对路由器的概念非常模糊,其实在很多文献中都提到,路由器就是一种具有多个网络接口的计算机。
这种特殊的计算机内部也有CPU、内存、系统总线、输入输出接口等等和PC相似的硬件,只不过它所提供的功能与普通计算机不同而已。
和普通计算机一样,路由器也需要一个软件操作系统,在cisco路由器中,这个操作系统叫做互联网络操作系统,这就是我们最常听到的IOS软件了。
下面就请读者跟着我们来一步步的学习最基本的路由器配置方法。
cisco路由器基本配置:cisco IOS软件简介:大家其实没必要把路由器想的那么复杂,其实路由器就是一个具有多个端口的计算机,只不过它在网络中起到的作用与一般的PC不同而已。
和普通计算机一样,路由器也需要一个操作系统,cisco把这个操作系统叫作cisco互联网络操作系统,也就是我们知道的IOS,所有cisco路由器的IOS都是一个嵌入式软件体系结构。
cisco IOS软件提供以下网络服务:基本的路由和交换功能。
可靠和安全的访问网络资源。
可扩展的网络结构。
cisco命令行界面(CLI)用一个分等级的结构,这个结构需要在不同的模式下来完成特定的任务。
例如配置一个路由器的接口,用户就必须进入到路由器的接口配置模式下,所有的配置都只会应用到这个接口上。
每一个不同的配置模式都会有特定的命令提示符。
EXEC为IOS 软件提供一个命令解释服务,当每一个命令键入后EXEC便会执行该命令。
第一次配置Cisco路由器:在第一次配置cisco路由器的时候,我们需要从console端口来进行配置。
以下,我们就为大家介绍如何连接到控制端口及设置虚拟终端程序。
1、使用rollover线和一个RJ45和DB9或者DB25的转换适配器连接路由器控制端口和终端计算机。
2、配置终端或PC的终端仿真软件。
思科路由器常用配置命令大全

思科路由器常用配置命令大全(A-X) Access-enable允许路由器在动态访问列表中创建临时访问列表入口Access-group把访问控制列表(ACL)应用到接口上Access-list定义一个标准的IP ACLAccess-template在连接的路由器上手动替换临时访问列表入口Appn向APPN子系统发送命令Atmsig执行ATM信令命令B 手动引导操作系统Bandwidth 设置接口的带宽Banner motd 指定日期信息标语Bfe 设置突发事件手册模式Boot system 指定路由器启动时加载的系统映像Calendar 设置硬件日历Cd 更改路径Cdp enable 允许接口运行CDP协议Clear 复位功能Clear counters 清除接口计数器Clear interface 重新启动接口上的件逻辑Clockrate 设置串口硬件连接的时钟速率,如网络接口模块和接口处理器能接受的速率Cmt 开启/关闭FDDI连接管理功能Config-register 修改配置寄存器设置Configure 允许进入存在的配置模式,在中心站点上维护并保存配置信息Configure memory 从NVRAM加载配置信息Configure terminal 从终端进行手动配置Connect 打开一个终端连接Copy 复制配置或映像数据Copy flash tftp 备份系统映像文件到TFTP服务器Copy running-config startup-config 将RAM中的当前配置存储到NVRAMCopy running-config tftp 将RAM中的当前配置存储到网络TFTP服务器上Copy tftp flash 从TFTP服务器上下载新映像到FlashCopy tftp running-config 从TFTP服务器上下载配置文件Debug 使用调试功能Debug dialer 显示接口在拨什么号及诸如此类的信息Debug ip rip 显示RIP路由选择更新数据Debug ipx routing activity 显示关于路由选择协议(RIP)更新数据包的信息Debug ipx sap 显示关于SAP〔业务通告协议〕更新数据包信息Debug isdn q921 显示在路由器D通道ISDN接口上发生的数据链路层〔第2层〕的访问过程Debug ppp 显示在实施PPP中发生的业务和交换信息Delete 删除文件Deny 为一个已命名的IP ACL设置条件Dialer idle-timeout 规定线路断开前的空闲时间的长度Dialer map 设置一个串行接口来呼叫一个或多个地点Dialer wait-for-carrier-time 规定花多长时间等待一个载体Dialer-group 通过对属于一个特定拨号组的接口进行配置来访问控制Dialer-list protocol 定义一个数字数据接受器〔DDR〕拨号表以通过协议或ACL 与协议的组合来控制控制拨号Dir 显示给定设备上的文件Disable 关闭特许模式Disconnect 断开已建立的连接Enable 打开特许模式Enable password 确定一个密码以防止对路由器非授权的访问Enable password 设置本地口令控制不同特权级别的访问Enable secret 为enable password命令定义额外一层安全性(强制安全,密码非明文显示)Encapsulation frame-relayCisco的密码是sapEnd 退出配置模式Erase 删除闪存或配置缓存Erase startup-config 删除NVRAM中的内容Exec-timeout 配置EXEC命令解释器在检测到用户输入前所等待的时间Exit 退出所有配置模式或者关闭一个激活的终端会话和终止一个EXECExit 终止任何配置模式或关闭一个活动的对话和结束EXECformat 格式化设备Frame-relay local-dlci 为使用帧中继封装的串行线路启动本地管理接口〔LMI〕Help 获得交互式帮助系统History 查看历史记录Hostname 使用一个主机名来配置路由器,该主机名以提示符或者缺省文件名的方式使用Interface 设置接口类型并且输入接口配置模式Interface 配置接口类型和进入接口配置模式Interface serial 选择接口并且输入接口配置模式Ip access-group 控制对一个接口的访问Ip address 设定接口的网络逻辑地址Ip address 设置一个接口地址和子网掩码并开始IP处理Ip default-network 建立一条缺省路由Ip domain-lookup 允许路由器缺省使用DNSIp host 定义静态主机名到IP地址映射Ip name-server 指定至多6个进行名字-地址解析的服务器地址Ip route 建立一条静态路由Ip unnumbered 在为给一个接口分配一个明确的IP地址情况下,在串口上启动互联网协议〔IP〕的处理过程Ipx delay 设置点计数Ipx ipxwan 在串口上启动IPXWAN协议Ipx maximum-paths 当转发数据包时设置Cisco IOS软件使用的等价路径数量Ipx network 在一个特定接口上启动互联网数据包交换〔IPX〕的路由选择并且选择封装的类型〔用帧封装〕Ipx router 规定使用的路由选择协议Ipx routing 启动IPX路由选择Ipx sap-interval 在较慢的链路上设置较不频繁的SAP〔业务广告协议〕更新Ipx type-20-input-checks 限制对IPX20类数据包广播的传播的接受Isdn spid1 在路由器上规定已经由ISDN业务供给商为B1信道分配的业务简介号〔SPID〕Isdn spid2 在路由器上规定已经由ISDN业务供给商为B2信道分配的业务简介号〔SPID〕Isdntch-type 规定了在ISDN接口上的中央办公区的交换机的类型Keeplive 为使用帧中继封装的串行线路LMI〔本地管理接口〕机制Lat 打开LAT连接Line 确定一个特定的线路和开始线路配置Line concole 设置控制台端口线路Line vty 为远程控制台访问规定了一个虚拟终端Lock 锁住终端控制台Login 在终端会话登录过程中启动了密码检查Login 以某用户身份登录,登录时允许口令验证Logout 退出EXEC模式Mbranch 向下跟踪组播地址路由至终端Media-type 定义介质类型Metric holddown 把新的IGRP路由选择信息与正在使用的IGRP路由选择信息隔离一段时间Mrbranch 向上解析组播地址路由至枝端Mrinfo 从组播路由器上获取邻居和版本信息Mstat 对组播地址多次路由跟踪后显示统计数字Mtrace 由源向目标跟踪解析组播地址路径Name-connection 命名已存在的网络连接Ncia 开启/关闭NCIA服务器Network 把一个基于NIC的地址分配给一个与它直接相连的路由器把网络与一个IGRP的路由选择的过程联系起来在IPX路由器配置模式下,在网络上启动加强的IGRP Network 指定一个和路由器直接相连的网络地址段Network-number 对一个直接连接的网络进行规定No shutdown 打开一个关闭的接口Pad 开启一个X.29 PAD连接Permit 为一个已命名的IP ACL设置条件Ping 把ICMP响应请求的数据包发送网络上的另一个节点检查主机的可达性和网络的连通性对网络的基本连通性进行诊断Ping 发送回声请求,诊断基本的网络连通性Ppp 开始IETF点到点协议Ppp authentication 启动Challenge握手鉴权协议〔CHAP〕或者密码验证协议〔PAP〕或者将两者都启动,并且对在接口上选择的CHAP和PAP验证的顺序进行规定Ppp chap hostname 当用CHAP进行身份验证时,创建一批好似是同一台主机的拨号路由器Ppp chap password 设置一个密码,该密码被发送到对路由器进行身份验证的主机命令对进入路由器的用户名/密码的数量进行了限制Ppp pap sent-username 对一个接口启动远程PAP支持,并且在PAP对同等层请求数据包验证过程中使用sent-username和passwordProtocol 对一个IP路由选择协议进行定义,该协议可以是RIP,内部网关路由选择协议〔IGRP〕,开放最短路径优先〔OSPF〕,还可以是加强的IGRPPwd 显示当前设备名Reload 关闭并执行冷启动;重启操作系统Rlogin 打开一个活动的网络连接Router 由第一项定义的IP路由协议作为路由进程,例如:router rip 选择RIP 作为路由协议Router igrp 启动一个IGRP的路由选择过程Router rip 选择RIP作为路由选择协议Rsh 执行一个远程命令Sdlc 发送SDLC测试帧Send在tty线路上发送消息Service password-encryption 对口令进行加密Setup 运行Setup命令Show 显示运行系统信息Show access-lists 显示当前所有ACL的内容Show buffers 显示缓存器统计信息Show cdp entry 显示CDP表中所列相邻设备的信息Show cdp interface 显示打开的CDP接口信息Show cdp neighbors 显示CDP查找进程的结果Show dialer 显示为DDR〔数字数据接受器〕设置的串行接口的一般诊断信息Show flash 显示闪存的布局和内容信息Show frame-relay lmi 显示关于本地管理接口〔LMI〕的统计信息Show frame-relay map 显示关于连接的当前映射入口和信息Show frame-relay pvc 显示关于帧中继接口的永久虚电路〔pvc〕的统计信息Show hosts 显示主机名和地址的缓存列表Show interfaces 显示设置在路由器和访问服务器上所有接口的统计信息Show interfaces 显示路由器上配置的所有接口的状态Show interfaces serial 显示关于一个串口的信息Show ip interface 列出一个接口的IP信息和状态的小结Show ip interface 列出接口的状态和全局参数Show ip protocols 显示活动路由协议进程的参数和当前状态Show ip route 显示路由选择表的当前状态Show ip router 显示IP路由表信息Show ipx interface 显示Cisco IOS软件设置的IPX接口的状态以及每个接口中的参数Show ipx route 显示IPX路由选择表的内容Show ipx servers 显示IPX服务器列表Show ipx traffic 显示数据包的数量和类型Show isdn active 显示当前呼叫的信息,包括被叫号码、建立连接前所花费的时间、在呼叫期间使用的自动化操作控制〔AOC〕收费单元以及是否在呼叫期间和呼叫结束时提供AOC信息Show isdn status 显示所有isdn接口的状态、或者一个特定的数字信号链路〔DSL〕的状态或者一个特定isdn接口的状态Show memory 显示路由器内存的大小,包括空闲内存的大小Show processes 显示路由器的进程Show protocols 显示设置的协议Show protocols 显示配置的协议。
Cisco路由器配置实例(经典)

实训报告实训一路由基本配置1、实验目的:路由器基本配置及ip设置2、拓扑结构图Router0 fa0/0: 192.168.11.1Fa0/1:192.168.1.1Router1 fa0/0: 192.168.11.2Fa0/1:192.168.2.1Znn1:192.168.1.2Znn2:192.168.2.23、实验步骤Router1Router>en 用户模式进入特权模式Router#conf t 特权模式进入全局模式Enter configuration commands, one per line. End with CNTL/Z.Router(config)#host rznn1 改名字为rznn1rznn1(config)#int fa0/0 进入fa0/0端口rznn1(config-if)#ip add 192.168.11.1 255.255.255.0 设置ip地址rznn1(config-if)#no sh 激活rznn1(config)#int fa0/1rznn1(config-if)#ip add 192.168.1.1 255.255.255.0rznn1(config-if)#no shrznn1(config-if)#exitrznn1(config)#exitrznn1#copy running-config startup-config 保存Destination filename [startup-config]? startup-configrznn1#conf trznn1(config)#enable secret password 222 设置密文rznn1#show ip interface b 显示Interface IP-Address OK? Method Status Protocol FastEthernet0/0 192.168.11.1 YES manual up up FastEthernet0/1 192.168.1.1 YES manual up upVlan1 unassigned YES manual administratively down downrouter 2outer>enRouter#conf tEnter configuration commands, one per line. End with CNTL/Z.Router(config)#host rznn2rznn2(config)#int fa0/0rznn2(config-if)#ip add 192.168.11.2 255.255.255.0rznn2(config-if)#no shrznn2(config)#int fa0/1rznn2(config-if)#ip add 192.168.2.1 255.255.255.0rznn2(config-if)#no shRznn2#copy running-config startup-config 保存Destination filename [startup-config]? startup-configrznn2(config-if)#exitrznn2(config)#exitrznn2#conf trznn2(config)#enable secret 222rznn2#show ip interface bInterface IP-Address OK? Method Status Protocol FastEthernet0/0 192.168.11.2 YES manual up up FastEthernet0/1 192.168.2.1 YES manual up upVlan1 unassigned YES manual administratively down down实训二1、远程登录、密码设置及验证为路由器开设telnet端口,PC机可以远程登陆到Rznn3(Router 1)拓扑结构图Router0:192.168.1.1Pc:192.168.1.2步骤rznn3>rznn3>enrznn3#conf tEnter configuration commands, one per line. End with CNTL/Z.rznn3(config)#no ip domain lookuprznn3(config)#line cons 0rznn3(config-line)#password znnrznn3(config-line)#loginrznn3(config-line)#no exec-trznn3(config-line)#logg syncrznn3(config-line)#exitrznn3(config)#int fa0/0rznn3(config-if)#ip add 192.168.1.1 255.255.255.0rznn3(config-if)#no shrznn3(config-if)#exitrznn3(config)#line vty 0 4 打通五个端口rznn3(config-line)#password cisco 设置密码rznn3(config-line)#login 保存rznn3(config-line)#exit4、测试:实训三命令组1、目的:八条命令(no ip domain lookup\line cons 0\password\login\no exec-t\logg sync\show version\reload\copy running-config startup-config)\show cdp neighbors)2、拓扑结构图Router0 fa0/0: 192.168.11.1Router1 fa0/0: 192.168.11.23、步骤rznn1#conf tEnter configuration commands, one per line. End with CNTL/Z.1、rznn1(config)#no ip domain lookup 取消域名查找转换2、rznn1(config)#line cons 0 打开cons 0端口3、rznn1(config-line)#password znn 设置密码为znnrznn1(config-line)#login 保存rznn1(config-line)#no exec-t 设置永不超时4、rznn1(config-line)#logg sync 产生日志5、rznn1#show version 显示思科路由系统版本信息Cisco IOS Software, 2800 Software (C2800NM-ADVIPSERVICESK9-M), Version 12.4(15)T1, RELEASE SOFTWARE (fc2)Technical Support: /techsupportCopyright (c) 1986-2007 by Cisco Systems, Inc.Compiled Wed 18-Jul-07 06:21 by pt_rel_team6、rznn1#show cdp neighbors 查看路由器连接的相邻路由器的相关信息Capability Codes: R - Router, T - Trans Bridge, B - Source Route BridgeS - Switch, H - Host, I - IGMP, r - Repeater, P - PhoneDevice ID Local Intrfce Holdtme Capability Platform Port IDrznn2 Fas 0/0 139 R C2800 Fas 0/07、rznn1#copy running-config startup-config 保存刚才指令Destination filename [startup-config]? startup-configBuilding configuration...[OK]8、rznn1#reload 重启路由器Proceed with reload? [confirm]System Bootstrap, Version 12.1(3r)T2, RELEASE SOFTWARE (fc1)Copyright (c) 2000 by cisco Systems, Inc.cisco 2811 (MPC860) processor (revision 0x200) with 60416K/5120K bytes of memorySelf decompressing the image :########################################################################## [OK] Restricted Rights Legendrznn1#show ip interface bInterface IP-Address OK? Method Status Protocol FastEthernet0/0 192.168.11.1 YES manual up up FastEthernet0/1 192.168.1.1 YES manual up upVlan1 unassigned YES manual administratively down down9、rznn1(config-if)#ip add 192.168.3.1 255.255.255.0 重置ip地址rznn1#show ip interface bInterface IP-Address OK? Method Status Protocol FastEthernet0/0 192.168.3.1 YES manual up up FastEthernet0/1 192.168.1.1 YES manual up up Vlan1 unassigned YES manual administratively down down实训四发现协议1、实训目的通过发现协议显示路由器相邻路由的端口信息2、拓扑结构Router0:192.168.11.1Router1:fa0/0 192.168.11.2Fa0/1 192.168.12.1Router2:192.168.12.23、步骤R1路由器Router>enRouter#conf tEnter configuration commands, one per line. End with CNTL/Z.Router(config)#host r1r1(config)#int fa0/0r1(config-if)#ip add 192.168.11.1 255.255.255.0r1(config-if)#no sh%LINK-5-CHANGED: Interface FastEthernet0/0, changed state to upr1(config-if)#r1(config-if)#exitr1(config)#exitr1#%SYS-5-CONFIG_I: Configured from console by consoler1#show ip interface bInterface IP-Address OK? Method Status Protocol FastEthernet0/0 192.168.11.1 YES manual up down FastEthernet0/1 unassigned YES manual administratively down downVlan1 unassigned YES manual administratively down downR2 路由器Router>enRouter#conf tEnter configuration commands, one per line. End with CNTL/Z.Router(config)#host r2r2(config)#int fa0/0r2(config-if)#ip add 192.168.11.2 255.255.255.0r2(config-if)#no sh%LINK-5-CHANGED: Interface FastEthernet0/0, changed state to up%LINEPROTO-5-UPDOWN: Line protocol on Interface FastEthernet0/0, changed state to up r2(config-if)#exitr2(config)#exitr2#%SYS-5-CONFIG_I: Configured from console by consoler2#conf tEnter configuration commands, one per line. End with CNTL/Z.r2(config)#int fa0/0r2(config-if)#int fa0/1r2(config-if)#ip add 192.168.12.1 255.255.255.0r2(config-if)#no sh%LINK-5-CHANGED: Interface FastEthernet0/1, changed state to upr2(config-if)#exitr2(config)#exitr2#%SYS-5-CONFIG_I: Configured from console by consoler2#show ip interface bInterface IP-Address OK? Method Status Protocol FastEthernet0/0 192.168.11.2 YES manual up upFastEthernet0/1 192.168.12.1 YES manual up down Vlan1 unassigned YES manual administratively down downR3路由器Router>enRouter#conf tEnter configuration commands, one per line. End with CNTL/Z.Router(config)#host r3r3(config)#int fa0/0r3(config-if)#ip add 192.168.12.2 255.255.255.0r3(config-if)#no sh%LINK-5-CHANGED: Interface FastEthernet0/0, changed state to up%LINEPROTO-5-UPDOWN: Line protocol on Interface FastEthernet0/0, changed state to up r3(config-if)#exitr3(config)#exitr3#%SYS-5-CONFIG_I: Configured from console by consoler3#show ip interface bInterface IP-Address OK? Method Status Protocol FastEthernet0/0 192.168.12.2 YES manual up up FastEthernet0/1 unassigned YES manual administratively down downVlan1 unassigned YES manual administratively down downR1发现邻居r1#show cdp neighborsCapability Codes: R - Router, T - Trans Bridge, B - Source Route BridgeS - Switch, H - Host, I - IGMP, r - Repeater, P - PhoneDevice ID Local Intrfce Holdtme Capability Platform Port IDr2 Fas 0/0 165 R C2800 Fas 0/0R2发现邻居r2#show cdp neighborsCapability Codes: R - Router, T - Trans Bridge, B - Source Route BridgeS - Switch, H - Host, I - IGMP, r - Repeater, P - PhoneDevice ID Local Intrfce Holdtme Capability Platform Port IDr1 Fas 0/0 176 R C1841 Fas 0/0r3 Fas 0/1 130 R C1841 Fas 0/0R3发现邻居r3#show cdp neighborsCapability Codes: R - Router, T - Trans Bridge, B - Source Route BridgeS - Switch, H - Host, I - IGMP, r - Repeater, P - PhoneDevice ID Local Intrfce Holdtme Capability Platform Port IDr2 Fas 0/0 166 R C2800 Fas 0/14、总结show 命令(1)show ip interface b (显示端口ip信息)(2)show version (显示ios版本信息)(3)show running-config (显示刚才使用的命令配置信息)(4)show cdp neighbors (显示发现邻居直连设备信息)(5)show interface (显示所有端口详细信息)实训五静态路由1、实验目的:将不同网段的网络配通(ip route)Ip route语法:ip route 目标地址子网掩码相邻路由器接口地址Show ip route2、试验拓扑:Router0:192.168.11.1Router1:fa0/0 192.168.11.2Fa0/1 192.168.12.1Router2:192.168.12.23、实验步骤:Router1Router>enRouter#conf tRouter(config)#host r1r1(config)#int fa0/0r1(config-if)#ip add 192.168.11.1 255.255.255.0r1(config-if)#no sh%LINK-5-CHANGED: Interface FastEthernet0/0, changed state to upr1(config-if)#exitr1(config)#exitr1#show ip interface bInterface IP-Address OK? Method Status ProtocolFastEthernet0/0 192.168.11.1 YES manual up downFastEthernet0/1 unassigned YES manual administratively down downVlan1 unassigned YES manual administratively down downr1#%LINEPROTO-5-UPDOWN: Line protocol on Interface FastEthernet0/0, changed state to up r1#ping 192.168.12.1Type escape sequence to abort.Sending 5, 100-byte ICMP Echos to 192.168.12.1, timeout is 2 seconds:.....Success rate is 0 percent (0/5)r1#conf tEnter configuration commands, one per line. End with CNTL/Z.r1(config)#ip route 192.168.12.0 255.255.255.0 192.168.11.2r1(config)#exitr1#ping 192.168.12.1Type escape sequence to abort.Sending 5, 100-byte ICMP Echos to 192.168.12.1, timeout is 2 seconds:Success rate is 100 percent (5/5), round-trip min/avg/max = 31/31/32 msr1#ping 192.168.12.2Type escape sequence to abort.Sending 5, 100-byte ICMP Echos to 192.168.12.2, timeout is 2 seconds:.....Success rate is 0 percent (0/5)r1#ping 192.168.12.2Type escape sequence to abort.Sending 5, 100-byte ICMP Echos to 192.168.12.2, timeout is 2 seconds:Success rate is 100 percent (5/5), round-trip min/avg/max = 47/62/78 msr1#show ip routeCodes: C - connected, S - static, I - IGRP, R - RIP, M - mobile, B - BGPD - EIGRP, EX - EIGRP external, O - OSPF, IA - OSPF inter areaN1 - OSPF NSSA external type 1, N2 - OSPF NSSA external type 2E1 - OSPF external type 1, E2 - OSPF external type 2, E - EGPi - IS-IS, L1 - IS-IS level-1, L2 - IS-IS level-2, ia - IS-IS inter area* - candidate default, U - per-user static route, o - ODRP - periodic downloaded static routeGateway of last resort is not setC 192.168.11.0/24 is directly connected, FastEthernet0/0S 192.168.12.0/24 [1/0] via 192.168.11.2Router3Router>enRouter#conf tEnter configuration commands, one per line. End with CNTL/Z.Router(config)#host r3r3(config)#int fa0/0r3(config-if)#ip add 192.168.12.2 255.255.255.0r3(config-if)#no sh%LINK-5-CHANGED: Interface FastEthernet0/0, changed state to up%LINEPROTO-5-UPDOWN: Line protocol on Interface FastEthernet0/0, changed state to up r3(config-if)#exitr3(config)#exitr3#%SYS-5-CONFIG_I: Configured from console by consoler3#show ip interface bInterface IP-Address OK? Method Status Protocol FastEthernet0/0 192.168.12.2 YES manual up up FastEthernet0/1 unassigned YES manual administratively down downVlan1 unassigned YES manual administratively down downr3#conf tEnter configuration commands, one per line. End with CNTL/Z.r3(config)#ip route 192.168.11.0 255.255.255.0 192.168.12.1r3(config)#exitr3#ping 192.168.11.2Type escape sequence to abort.Sending 5, 100-byte ICMP Echos to 192.168.11.2, timeout is 2 seconds:Success rate is 100 percent (5/5), round-trip min/avg/max = 31/31/32 msr3#ping 192.168.11.1Type escape sequence to abort.Sending 5, 100-byte ICMP Echos to 192.168.11.1, timeout is 2 seconds:Success rate is 100 percent (5/5), round-trip min/avg/max = 62/62/63 msr3#show ip routeCodes: C - connected, S - static, I - IGRP, R - RIP, M - mobile, B - BGPD - EIGRP, EX - EIGRP external, O - OSPF, IA - OSPF inter areaN1 - OSPF NSSA external type 1, N2 - OSPF NSSA external type 2i - IS-IS, L1 - IS-IS level-1, L2 - IS-IS level-2, ia - IS-IS inter area* - candidate default, U - per-user static route, o - ODRP - periodic downloaded static routeGateway of last resort is not setS 192.168.11.0/24 [1/0] via 192.168.12.1C 192.168.12.0/24 is directly connected, FastEthernet0/04、默认路由Route 1r1>enr1#conf tEnter configuration commands, one per line. End with CNTL/Z.r1(config)#no ip route 192.168.12.0 255.255.255.0 192.168.11.2%No matching route to deleter1(config)#exitr1#%SYS-5-CONFIG_I: Configured from console by consoler1#show ip routeCodes: C - connected, S - static, I - IGRP, R - RIP, M - mobile, B - BGPD - EIGRP, EX - EIGRP external, O - OSPF, IA - OSPF inter areaN1 - OSPF NSSA external type 1, N2 - OSPF NSSA external type 2E1 - OSPF external type 1, E2 - OSPF external type 2, E - EGPi - IS-IS, L1 - IS-IS level-1, L2 - IS-IS level-2, ia - IS-IS inter area* - candidate default, U - per-user static route, o - ODRP - periodic downloaded static routeGateway of last resort is not setC 192.168.11.0/24 is directly connected, FastEthernet0/0r1#conf tEnter configuration commands, one per line. End with CNTL/Z.r1(config)#ip route 0.0.0.0 0.0.0.0 192.168.11.2r1(config)#exitr1#%SYS-5-CONFIG_I: Configured from console by consoler1#show ip routeCodes: C - connected, S - static, I - IGRP, R - RIP, M - mobile, B - BGPD - EIGRP, EX - EIGRP external, O - OSPF, IA - OSPF inter areaN1 - OSPF NSSA external type 1, N2 - OSPF NSSA external type 2i - IS-IS, L1 - IS-IS level-1, L2 - IS-IS level-2, ia - IS-IS inter area* - candidate default, U - per-user static route, o - ODRP - periodic downloaded static routeGateway of last resort is 192.168.11.2 to network 0.0.0.0C 192.168.11.0/24 is directly connected, FastEthernet0/0S* 0.0.0.0/0 [1/0] via 192.168.11.2r1#ping 192.168.12.1Type escape sequence to abort.Sending 5, 100-byte ICMP Echos to 192.168.12.1, timeout is 2 seconds:Success rate is 100 percent (5/5), round-trip min/avg/max = 16/28/31 msr1#ping 192.168.12.2Type escape sequence to abort.Sending 5, 100-byte ICMP Echos to 192.168.12.2, timeout is 2 seconds: Success rate is 100 percent (5/5), round-trip min/avg/max = 62/62/63 msRoute 3r1>enr1#conf tEnter configuration commands, one per line. End with CNTL/Z.r1(config)#no ip route 192.168.12.0 255.255.255.0 192.168.11.2%No matching route to deleter1(config)#exitr1#%SYS-5-CONFIG_I: Configured from console by consoler1#show ip routeCodes: C - connected, S - static, I - IGRP, R - RIP, M - mobile, B - BGPD - EIGRP, EX - EIGRP external, O - OSPF, IA - OSPF inter areaN1 - OSPF NSSA external type 1, N2 - OSPF NSSA external type 2E1 - OSPF external type 1, E2 - OSPF external type 2, E - EGPi - IS-IS, L1 - IS-IS level-1, L2 - IS-IS level-2, ia - IS-IS inter area* - candidate default, U - per-user static route, o - ODRP - periodic downloaded static routeGateway of last resort is not setC 192.168.11.0/24 is directly connected, FastEthernet0/0r1#conf tEnter configuration commands, one per line. End with CNTL/Z.r1(config)#ip route 0.0.0.0 0.0.0.0 192.168.11.2r1(config)#exitr1#%SYS-5-CONFIG_I: Configured from console by consoler1#show ip routeCodes: C - connected, S - static, I - IGRP, R - RIP, M - mobile, B - BGPD - EIGRP, EX - EIGRP external, O - OSPF, IA - OSPF inter areaN1 - OSPF NSSA external type 1, N2 - OSPF NSSA external type 2E1 - OSPF external type 1, E2 - OSPF external type 2, E - EGPi - IS-IS, L1 - IS-IS level-1, L2 - IS-IS level-2, ia - IS-IS inter area* - candidate default, U - per-user static route, o - ODRP - periodic downloaded static routeGateway of last resort is 192.168.11.2 to network 0.0.0.0C 192.168.11.0/24 is directly connected, FastEthernet0/0S* 0.0.0.0/0 [1/0] via 192.168.11.2r3#ping 192.168.11.1Type escape sequence to abort.Sending 5, 100-byte ICMP Echos to 192.168.11.1, timeout is 2 seconds: Success rate is 100 percent (5/5), round-trip min/avg/max = 62/62/63 ms实训六动态路由RIP 协议1、实验目的使用配置动态路由启动Rip协议使用到的命令(router rip/network/show ip protocols/show ip route)2、实验拓扑R1 fa0/0 192.168.11.1R2 fa0/0 192.168.11.2fa0/1 192.168.12.1R3 fa0/0 192.168.12.23、实验步骤R1Router>enRouter#conf tEnter configuration commands, one per line. End with CNTL/Z. Router(config)#host r1r1(config)#int fa0/0r1(config-if)#ip add 192.168.11.1 255.255.255.0r1(config-if)#no shr1(config-if)#exitr1(config)#router ripr1(config-router)#network 192.168.11.0r1(config-router)#exitr1(config)#exitr1#%SYS-5-CONFIG_I: Configured from console by consoleR2Router>enRouter#conf tEnter configuration commands, one per line. End with CNTL/Z. Router(config)#host r2r2(config)#int fa0/0r2(config-if)#ip add 192.168.11.2 255.255.255.0r2(config-if)#no shr2(config-if)#exitr2(config)#int fa0/1r2(config-if)#ip add 192.168.12.1 255.255.255.0r2(config-if)#no shr2(config-if)#exitr2(config)#router ripr2(config-router)#network 192.168.11.0r2(config-router)#network 192.168.12.0r2(config-router)#exitr2(config)#exitr2#R3Router>enRouter#conf tEnter configuration commands, one per line. End with CNTL/Z. Router(config)#host r3r3(config)#int fa0/0r3(config-if)#ip add 192.168.12.2 255.255.255.0r3(config-if)#no shr3(config-if)#exitr3(config)#router ripr3(config-router)#network 192.168.12.0r3(config-router)#exitr3(config)#exitr3#%SYS-5-CONFIG_I: Configured from console by console4、实验测试R1r1#show ip protocolsRouting Protocol is "rip"Sending updates every 30 seconds, next due in 10 secondsInvalid after 180 seconds, hold down 180, flushed after 240 Outgoing update filter list for all interfaces is not setIncoming update filter list for all interfaces is not set Redistributing: ripDefault version control: send version 1, receive any version Interface Send Recv Triggered RIP Key-chain FastEthernet0/0 1 2 1Automatic network summarization is in effectMaximum path: 4Routing for Networks:192.168.11.0Passive Interface(s):Routing Information Sources:Gateway Distance Last UpdateDistance: (default is 120)r1#show ip routeCodes: C - connected, S - static, I - IGRP, R - RIP, M - mobile, B - BGPD - EIGRP, EX - EIGRP external, O - OSPF, IA - OSPF inter areaN1 - OSPF NSSA external type 1, N2 - OSPF NSSA external type 2E1 - OSPF external type 1, E2 - OSPF external type 2, E - EGPi - IS-IS, L1 - IS-IS level-1, L2 - IS-IS level-2, ia - IS-IS inter area* - candidate default, U - per-user static route, o - ODRP - periodic downloaded static routeGateway of last resort is not setC 192.168.11.0/24 is directly connected, FastEthernet0/0R 192.168.12.0/24 [120/1] via 192.168.11.2, 00:00:24, FastEthernet0/0 r1#ping 192.168.12.0Type escape sequence to abort.Sending 5, 100-byte ICMP Echos to 192.168.12.0, timeout is 2 seconds: Success rate is 100 percent (5/5), round-trip min/avg/max = 31/31/32 msR2r2#show ip protocolsRouting Protocol is "rip"Sending updates every 30 seconds, next due in 21 secondsInvalid after 180 seconds, hold down 180, flushed after 240Outgoing update filter list for all interfaces is not setIncoming update filter list for all interfaces is not setRedistributing: ripDefault version control: send version 1, receive any versionInterface Send Recv Triggered RIP Key-chain FastEthernet0/0 1 2 1FastEthernet0/1 1 2 1Automatic network summarization is in effectMaximum path: 4Routing for Networks:192.168.11.0192.168.12.0Passive Interface(s):Routing Information Sources:Gateway Distance Last UpdateDistance: (default is 120)r2#show ip routeCodes: C - connected, S - static, I - IGRP, R - RIP, M - mobile, B - BGPD - EIGRP, EX - EIGRP external, O - OSPF, IA - OSPF inter areaN1 - OSPF NSSA external type 1, N2 - OSPF NSSA external type 2E1 - OSPF external type 1, E2 - OSPF external type 2, E - EGPi - IS-IS, L1 - IS-IS level-1, L2 - IS-IS level-2, ia - IS-IS inter area* - candidate default, U - per-user static route, o - ODRP - periodic downloaded static routeGateway of last resort is not setC 192.168.11.0/24 is directly connected, FastEthernet0/0C 192.168.12.0/24 is directly connected, FastEthernet0/1R3r3#show ip protocolsRouting Protocol is "rip"Sending updates every 30 seconds, next due in 15 secondsInvalid after 180 seconds, hold down 180, flushed after 240Outgoing update filter list for all interfaces is not setIncoming update filter list for all interfaces is not setRedistributing: ripDefault version control: send version 1, receive any versionInterface Send Recv Triggered RIP Key-chain FastEthernet0/0 1 2 1Automatic network summarization is in effectMaximum path: 4Routing for Networks:192.168.12.0Passive Interface(s):Routing Information Sources:Gateway Distance Last UpdateDistance: (default is 120)r3#show ip routeCodes: C - connected, S - static, I - IGRP, R - RIP, M - mobile, B - BGPD - EIGRP, EX - EIGRP external, O - OSPF, IA - OSPF inter areaN1 - OSPF NSSA external type 1, N2 - OSPF NSSA external type 2E1 - OSPF external type 1, E2 - OSPF external type 2, E - EGPi - IS-IS, L1 - IS-IS level-1, L2 - IS-IS level-2, ia - IS-IS inter area* - candidate default, U - per-user static route, o - ODRP - periodic downloaded static routeGateway of last resort is not setR 192.168.11.0/24 [120/1] via 192.168.12.1, 00:00:04, FastEthernet0/0 C 192.168.12.0/24 is directly connected, FastEthernet0/0r3#ping 192.168.11.0Type escape sequence to abort.Sending 5, 100-byte ICMP Echos to 192.168.11.0, timeout is 2 seconds: Success rate is 100 percent (5/5), round-trip min/avg/max = 31/31/32 ms实训七负载平衡试训目的实现负载平衡实训拓扑R1 fa0/0 192.168.11.1R2 eth0/0/0 192.168.11.2Fa0/0 192.168.12.1Fa0/0 192.168.13.1R3 fa0/0 192.168.12.2Fa0/1 192.168.14.1R4 fa0/0 192.168.13.2Fa0/1 192.168.15.1R5 fa0/0 192.168.14.2Fa0/1 192.168.15.2实训步骤(R1 )r1>enR1#conf tR1(config)#ip route 0.0.0.0 0.0.0.0 192.168.11.2R1(config)#exitr1#show ip routeCodes: C - connected, S - static, I - IGRP, R - RIP, M - mobile, B - BGPD - EIGRP, EX - EIGRP external, O - OSPF, IA - OSPF inter areaN1 - OSPF NSSA external type 1, N2 - OSPF NSSA external type 2E1 - OSPF external type 1, E2 - OSPF external type 2, E - EGPi - IS-IS, L1 - IS-IS level-1, L2 - IS-IS level-2, ia - IS-IS inter area* - candidate default, U - per-user static route, o - ODRP - periodic downloaded static routeGateway of last resort is 192.168.11.2 to network 0.0.0.0C 192.168.11.0/24 is directly connected, FastEthernet0/0S* 0.0.0.0/0 [1/0] via 192.168.11.2(R2)r2>enr2(config)#ip route 0.0.0.0 0.0.0.0 192.168.12.2r2(config)#ip route 0.0.0.0 0.0.0.0 192.168.13.2r2(config)#exitr2#%SYS-5-CONFIG_I: Configured from console by consoles% Ambiguous command: "s"r2#show ip routeCodes: C - connected, S - static, I - IGRP, R - RIP, M - mobile, B - BGPD - EIGRP, EX - EIGRP external, O - OSPF, IA - OSPF inter areaN1 - OSPF NSSA external type 1, N2 - OSPF NSSA external type 2E1 - OSPF external type 1, E2 - OSPF external type 2, E - EGPi - IS-IS, L1 - IS-IS level-1, L2 - IS-IS level-2, ia - IS-IS inter area* - candidate default, U - per-user static route, o - ODRP - periodic downloaded static routeGateway of last resort is 192.168.12.2 to network 0.0.0.0C 192.168.11.0/24 is directly connected, Ethernet0/0/0C 192.168.12.0/24 is directly connected, FastEthernet0/0C 192.168.13.0/24 is directly connected, FastEthernet0/1S* 0.0.0.0/0 [1/0] via 192.168.12.2[1/0] via 192.168.13.2(R3)r3>enr3#conf tEnter configuration commands, one per line. End with CNTL/Z.r3(config)#ip route 0.0.0.0 0.0.0.0 192.168.12.1r3(config)#exitr3#%SYS-5-CONFIG_I: Configured from console by consoler3#show ip routeCodes: C - connected, S - static, I - IGRP, R - RIP, M - mobile, B - BGPD - EIGRP, EX - EIGRP external, O - OSPF, IA - OSPF inter areaN1 - OSPF NSSA external type 1, N2 - OSPF NSSA external type 2E1 - OSPF external type 1, E2 - OSPF external type 2, E - EGPi - IS-IS, L1 - IS-IS level-1, L2 - IS-IS level-2, ia - IS-IS inter area* - candidate default, U - per-user static route, o - ODRP - periodic downloaded static routeGateway of last resort is 192.168.12.1 to network 0.0.0.0C 192.168.12.0/24 is directly connected, FastEthernet0/0C 192.168.14.0/24 is directly connected, FastEthernet0/1S* 0.0.0.0/0 [1/0] via 192.168.12.1(R4)r4>enr4#conf tEnter configuration commands, one per line. End with CNTL/Z.r4(config)#ip route 0.0.0.0 0.0.0.0 192.168.13.1r4(config)#exitr4#%SYS-5-CONFIG_I: Configured from console by consoler4#show ip routeCodes: C - connected, S - static, I - IGRP, R - RIP, M - mobile, B - BGPD - EIGRP, EX - EIGRP external, O - OSPF, IA - OSPF inter areaN1 - OSPF NSSA external type 1, N2 - OSPF NSSA external type 2E1 - OSPF external type 1, E2 - OSPF external type 2, E - EGPi - IS-IS, L1 - IS-IS level-1, L2 - IS-IS level-2, ia - IS-IS inter area* - candidate default, U - per-user static route, o - ODRP - periodic downloaded static routeGateway of last resort is 192.168.13.1 to network 0.0.0.0C 192.168.13.0/24 is directly connected, FastEthernet0/0C 192.168.15.0/24 is directly connected, FastEthernet0/1S* 0.0.0.0/0 [1/0] via 192.168.13.1(R5)r5>enr5#conf tEnter configuration commands, one per line. End with CNTL/Z.r5(config)#ip route 0.0.0.0 0.0.0.0 192.168.14.1r5(config)#ip route 0.0.0.0 0.0.0.0 192.168.15.1r5(config)#exitr5#%SYS-5-CONFIG_I: Configured from console by consoler5#show ip routeCodes: C - connected, S - static, I - IGRP, R - RIP, M - mobile, B - BGPD - EIGRP, EX - EIGRP external, O - OSPF, IA - OSPF inter areaN1 - OSPF NSSA external type 1, N2 - OSPF NSSA external type 2E1 - OSPF external type 1, E2 - OSPF external type 2, E - EGPi - IS-IS, L1 - IS-IS level-1, L2 - IS-IS level-2, ia - IS-IS inter area* - candidate default, U - per-user static route, o - ODRP - periodic downloaded static routeGateway of last resort is 192.168.14.1 to network 0.0.0.0C 192.168.14.0/24 is directly connected, FastEthernet0/0C 192.168.15.0/24 is directly connected, FastEthernet0/1S* 0.0.0.0/0 [1/0] via 192.168.14.1[1/0] via 192.168.15.1实训测试(R1)r1#ping 192.168.14.1Type escape sequence to abort.Sending 5, 100-byte ICMP Echos to 192.168.14.1, timeout is 2 seconds:Success rate is 100 percent (5/5), round-trip min/avg/max = 62/84/94 ms (R5)r5#ping 192.168.11.1Type escape sequence to abort.Sending 5, 100-byte ICMP Echos to 192.168.11.1, timeout is 2 seconds: Success rate is 100 percent (5/5), round-trip min/avg/max = 79/91/94 ms实训八DHCP 协议配置实训目的全网配通实训拓扑Fa0/0 192.168.11.1Fa0/1 192.168.12.1实训步骤Router>enRouter#conf tEnter configuration commands, one per line. End with CNTL/Z.Router(config)#host r1r1(config)#int fa0/0r1(config-if)#ip add 192.168.11.1 255.255.255.0r1(config-if)#no shr1(config-if)#exitr1(config)#int fa0/1r1(config-if)#ip add 192.168.12.1 255.255.255.0r1(config-if)#no shr1(config-if)#exitr1(config)#ip dhcp pool znn //配置一个根地址池znnr1(dhcp-config)#network 192.168.11.0 255.255.255.0 //为所有客户机动态分配的地址段r1(dhcp-config)#default-router 192.168.11.1 //为客户机配置默认的网关r1(dhcp-config)#dns-server 192.168.11.1 //为客户机配置DNS服务器r1(dhcp-config)#exitr1(config)#ip dhcp pool znn1r1(dhcp-config)#network 192.168.12.0 255.255.255.0r1(dhcp-config)#default-router 192.168.12.1r1(dhcp-config)#dns-server 192.168.12.1r1(dhcp-config)#exit。
思科交换机路由基本配置命令

思科交换机路由基本配置命令常用命令1.配置接口:interface {interface_type} {interface_number}2.配置IP地址:ip address {IP_address} {subnet_mask}3.配置默认网关:ip default-gateway {default_gateway_IP}4.开启接口:no shutdown5.配置路由协议:router {routing_protocol}6.配置路由器ID:router-id {router_ID}7.配置路由信息:network {network_address} {subnet_mask}8.配置静态路由:ip route {destination_network} {subnet_mask}{next-hop_IP}9.配置动态路由:router {routing_protocol} {network_address}10.保存配置:copy running-config startup-config注意:上述命令仅作为参考,具体配置应根据实际环境和设备型号进行调整。
下面是一些基本的 Cisco 交换机路由配置命令:1.配置 hostname: hostname <name>2.配置 IP 地址: interface <interface> 后进入接口模式,再输入 ipaddress <ip address> <subnet mask>3.配置默认路由: ip route 0.0.0.0 0.0.0.0 <next hop IP>4.启用路由协议: router <protocol> (例如: router rip)5.配置路由连接: network <network address> (例如: network192.168.1.0)6.查看路由表: show ip routeCisco 交换机路由配置步骤1.进入配置模式:configure terminal2.配置 IP 地址和子网掩码:interface [interface-name] ; ip address[ip-address] [subnet-mask]3.配置默认路由:ip route 0.0.0.0 0.0.0.0 [next-hop-IP-address]4.启用路由协议:router [protocol-name] (如:router ospf)5.配置路由协议参数: [protocol-name] [process-id] (如:ospf 1)6.配置路由连接:network [network-address] [wildcard-mask] area[area-id] (如:network 192.168.1.0 0.0.0.255 area 0)7.保存配置:copy running-config startup-config8.退出配置模式:exit。
Cisco(思科)路由器静态路由的配置

Cisco(思科)路由器静态路由的配置实验拓扑实验步骤我们要使得 1.1.1.0/24、2.2.2.0/24、3.3.3.0/24 ⽹络之间能够互相通信。
(1)步骤 1:在各路由器上配置 IP 地址、保证直连链路的连通性R1(config)#int loopback0R1(config-if)#ip address 1.1.1.1 255.255.255.0R1(config)#int s0/0/0R1(config-if)#ip address 192.168.12.1 255.255.255.0R1(config-if)#no shutdownR2(config)#int loopback0R2(config-if)#ip address 2.2.2.2 255.255.255.0R2(config)#int s0/0/0R2(config-if)#clock rate 128000R2(config-if)#ip address 192.168.12.2 255.255.255.0R2(config-if)#no shutdownR2(config)#int s0/0/1R2(config-if)#clock rate 128000R2(config-if)#ip address 192.168.23.2 255.255.255.0R2(config-if)#no shutdownR3(config)#int loopback0R3(config-if)#ip address 3.3.3.3 255.255.255.0R3(config)#int s0/0/1R3(config-if)#ip address 192.168.23.3 255.255.255.0R3(config-if)#no shutdown(2)步骤 2:R1上配置静态路由R1(config)#ip route 2.2.2.0 255.255.255.0 s0/0/0//下⼀跳为接⼝形式,s0/0/0 是点对点的链路,注意应该是 R1 上的s0/0/0 接⼝R1(config)#ip route 3.3.3.0 255.255.255.0 192.168.12.2//下⼀跳为IP 地址形式,192.168.12.2 是R2 上的IP 地址(3)步骤 3:R2上配置静态路由R2(config)#ip route 1.1.1.0 255.255.255.0 s0/0/0R2(config)#ip route 3.3.3.0 255.255.255.0 s0/0/1(4)步骤 4:R3上配置静态路由R3(config)#ip route 1.1.1.0 255.255.255.0 s0/0/1R3(config)#ip route 2.2.2.0 255.255.255.0 s0/0/1实验调试(1)在 R1、R2、R3 上查看路由表R1#show ip routeCodes: C - connected, S - static, R - RIP, M - mobile, B - BGPD - EIGRP, EX - EIGRP external, O - OSPF, IA - OSPF inter areaN1 - OSPF NSSA external type 1, N2 - OSPF NSSA external type 2E1 - OSPF external type 1, E2 - OSPF external type 2 i - IS-IS, su - IS-IS summary, L1 - IS-IS level-1, L2 - IS-IS level-2 ia - IS-IS inter area, * - candidate default, U - per-user static routeo - ODR, P - periodic downloaded static routeGateway of last resort is not setC 192.168.12.0/24 is directly connected, Serial0/0/01.0.0.0/24 is subnetted, 1 subnetsC 1.1.1.0 is directly connected, Loopback02.0.0.0/24 is subnetted, 1 subnetsS 2.2.2.0 is directly connected, Serial0/0/03.0.0.0/24 is subnetted, 1 subnetsS 3.3.3.0 [1/0] via 192.168.12.2R2#show ip routeCodes: C - connected, S - static, R - RIP, M - mobile, B - BGPD - EIGRP, EX - EIGRP external, O - OSPF, IA - OSPF inter areaN1 - OSPF NSSA external type 1, N2 - OSPF NSSA external type 2E1 - OSPF external type 1, E2 - OSPF external type 2i - IS-IS, su - IS-IS summary, L1 - IS-IS level-1, L2 - IS-IS level-2ia - IS-IS inter area, * - candidate default, U - per-user static routeo - ODR, P - periodic downloaded static routeGateway of last resort is not setC 192.168.12.0/24 is directly connected, Serial0/0/01.0.0.0/24 is subnetted, 1 subnetsS 1.1.1.0 is directly connected, Serial0/0/02.0.0.0/24 is subnetted, 1 subnetsC 2.2.2.0 is directly connected, Loopback03.0.0.0/24 is subnetted, 1 subnetsS 3.3.3.0 is directly connected, Serial0/0/1C 192.168.23.0/24 is directly connected, Serial0/0/1R3#show ip routeCodes: C - connected, S - static, R - RIP, M - mobile, B - BGPD - EIGRP, EX - EIGRP external, O - OSPF, IA - OSPF inter areaN1 - OSPF NSSA external type 1, N2 - OSPF NSSA external type 2E1 - OSPF external type 1, E2 - OSPF external type 2i - IS-IS, su - IS-IS summary, L1 - IS-IS level-1, L2 - IS-IS level-2ia - IS-IS inter area, * - candidate default, U - per-user static routeo - ODR, P - periodic downloaded static routeGateway of last resort is not set1.0.0.0/24 is subnetted, 1 subnetsS 1.1.1.0 is directly connected, Serial0/0/12.0.0.0/24 is subnetted, 1 subnetsS 2.2.2.0 is directly connected, Serial0/0/13.0.0.0/24 is subnetted, 1 subnets C 3.3.3.0 is directly connected, Loopback0C 192.168.23.0/24 is directly connected, Serial0/0/1(2)从各路由器的环回⼝ ping 其他路由器的环回⼝:R1#ping//不带任何参数的 ping命令,允许我们输⼊更多的参数Protocol [ip]:Target IP address: 2.2.2.2 //⽬标IP地址Repeat count [5]: //发送的ping 次数Datagram size [100]: //ping包的⼤⼩Timeout in seconds [2]: //超时时间Extended commands [n]: y //是否进⼀步扩展命令Source address or interface: 1.1.1.1 //源IP地址Type of service [0]:Set DF bit in IP header? [no]:Validate reply data? [no]:Data pattern [0xABCD]:Loose, Strict, Record, Timestamp, Verbose[none]:Sweep range of sizes [n]:Type escape sequence to abort.Sending 5, 100-byte ICMP Echos to 2.2.2.2, timeout is 2 seconds:Packet sent with a source address of 1.1.1.1Success rate is 100 percent (5/5), round-trip min/avg/max = 12/14/16 ms//以上说明从 R1 的 loopback0 可以ping 通R2 上的 loopback0。
cisco路由器配置说明

Cisco路由器配置3925一、如何配置hwic-4te/e1命令:全局配置模式card type命令1、如何启用加载的s端口2、E1接口可有两种配置:3、l 作为信道化(Channelized)E1接口使用。
4、接口在物理上分为32个时隙,可以任意地将全部时隙分成若干组,每组时隙捆绑以后作为一个接口使用,其逻辑特性与同步串口相同,支持PPP、帧中继、LAPB和X.25等链路层协议。
5、l 作为非信道化(Unchannelized)E1接口使用。
6、接口在物理上作为一个2M速率的G.703同步串口,支持PPP、帧中继、LAPB和X.25等链路层协议。
7、E1接口配置配置E1接口,首先必须在全局配置态下输入controller E1命令。
8、命令作用9、controller E1 <slot>/<group>配置E1接口10、slot为E1控制器所在的槽号,11、group为E1控制器的链路号。
12、注: 3700系列路由器中E1控制器为“controller E1 0/0”,5000系列路由器中对于一口E1控制器,链路号范围为0-0,对于四口E1控制器,链路号范围为0-3。
E1控制器槽号为1-4。
13、举例:14、Router_config#controller E1 0/015、Router_config_controller_E1_0/0#16、E1接口的配置任务包括:17、l 配置E1接口的物理参数,包括帧校验方式、线路编解码格式和线路时钟、回环传输模式等。
一般采用缺省参数即可。
18、l 信道化(Channelized)E1接口要求配置channel-group参数,确定时隙捆绑方式。
19、l 非信道化(Unchannelized)E1接口不需配置channel-group参数。
20、l 配置接口(Interface) 参数,21、配置E1接口的工作方式E1接口缺省为信道化(Channelized)方式。
Cisco路由器配置基本命令

Cisco路由器配置基本命令特权模式:enableRouter1 # show running-configRouter1 # show ip routeRouter # show ip interface briefSwitch # show vlanSwitch # show ip interface配置模式:configure terminal1) console密码SW2(config)#line console 0SW2(config-line)#password ciscoSW2(config-line)#login //启⽤密码认证,默认没有,需要加上去SW2(config-line)#login local //本地开启⽤户认证SW2(config)username xiao password fan //创建本地⽤户SW2(config)username xiao privilege 15 password fan //以该⽤户登⼊设备后直接进⼊特权模式说明---对⽤户的权限定义0-15级,最⾼为15,任何命令都可操作SW2(config)service password-encryption //明⽂密码加密2)特权模式密码(设置全局密码)SW2>enadleSW2(config)#configure terminal1.(config)#enable password en cisco←密码encisco2.(config)#enable secret jmcisco←密码jmcisco #2个同时设,只有secret 有效,因为其优先极⾼(config)#login <--⼀定要加,表⽰启⽤全局密码设置完成exitenable password xiaofan 优先级低enable secret cisco 优先级⾼思科加密⽅式:0 显⽰的是密码本⾝7 密⽂加密,容易破解5 复杂密⽂加密3)虚拟通道密码SW2>enadleSW2(config)#configure terminalSW2(config)#line vty 0 4SW2(config-line)#password telnetciscoSW2(config-line)#login //默认就有SW2(config-line)#login local //开启本地⽤户认证,使⽤本地⽤户数据库SW2(config-line)no login //不需要密码就可登陆路由类(静态路由和动态路由)静态路由:ip route address subnet-mask address默认路由ip route 0.0.0.0 0.0.0.0 address动态路由:rip v2* Router1配置RIP协议Router(config)# router rip !开启RIP协议进程Router(config-router)# network 172.16.1.0 !申明本设备的直连⽹段Router(config-router)# network 172.16.2.0Router(config-router)# version 2Router(config-router)# no auto-summary !关闭路由信息的⾃动汇总功能* 三层交换机配置RIP协议Switch (config)# router rip !开启RIP协议进程Switch (config-router)# network 172.16.1.0 !申明本设备的直连⽹段Switch (config-router)# network 172.16.5.0Switch (config-router)# version 2vlan和trunk*三层交换机基本配置Switch# configure terminalSwitch (config)# vlan 10Switch (config-vlan)# exitSwitch (config)# vlan 50Switch (config-vlan)# exitSwitch (config)# interface f0/1Switch (config-if)# switchport access vlan 10Switch (config-if)# exitSwitch (config)# interface f0/5Switch (config-if)# switchport access vlan 50Switch (config-if)# exitSwitch (config)# interface vlan 10 !创建VLAN虚接⼝,并配置IPSwitch (config-if)# ip address 172.16.1.2255.255.255.0Switch (config-if)# no shutdownSwitch (config-if)# exitSwitch (config)# interface vlan 50 !创建VLAN虚接⼝,并配置IPSwitch (config-if)# no shutdownSwitch (config-if)# exittrunk在sw1、sw2之间使⽤sw1(config)#interface f0/0 进⼊要设置的端⼝(f0/0)sw1(config-if)#switchport mode trunk 将端⼝进⾏trunk设置sw1(config-if)#no shutdown 激活此端⼝访问控制(ACL)标准访问列表配置实例:R1(config)#access-list 10 deny 192.168.2.0 0.0.0.255R1(config)#access-list 10 permit anyR1(config)#int fa0/0.1R1(config-subif)#ip access-group 10 out扩展访问控制列表配置实例:R2(config)#access-list 110 deny tcp any host 192.168.1.12 eq wwwR2(config)#access-list 110 deny tcp any host 192.168.1.12 eq ftpR2(config)#int fa0/0R2(config-if)#ip access-group 110 out上⾯配置的含义是拒绝访问192.168.1.12的www和ftp服务access-list 101 permit tcp any 172.16.4.13 0.0.0.0 eq www //设置ACL101,容许源地址为任意IP,⽬的地址为172.16.4.13主机的80端⼝即WWW服务。
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rommon>TFTP_SERVER=10.65.1.1;指定TFTP服务器IP
rommon>TFTP_FILE=c2600.bin;指定下载的文件
rommon>tftpdnld;从tftp下载
rommon>dir flash:;查看闪存内容
router#show frame pvc;显示永久虚电路
router#show frame map;显示映射
基本访问控制列表:
router(config)#access-list permit|deny
router(config)#interface;default:deny any
router(config-if)#ip access-group in|out;default:out
rommon>boot;引导IOS
静态路由:
ip route;命令格式
router(config)#ip route2.0.0.0 255.0.0.0 1.1.1.2;静态路由举例
router(config)#ip route 0.0.0.0 0.0.0.0 1.1.1.2;默认路由举例
动态路由:
router(config)#ip routing;启动路由转发
Router(config)#ip nat inside source list 1 pool p1
Router(config)#ip nat inside destination list 2 pool p2
Router(config)#ip nat inside source list 2 interface s0/0 overload
router(config-line)#line vty 0 4;进入虚拟终端
router(config-line)#login;要求口令验证
router(config-line)#password xx;设置登录口令xx
router(config)#(Ctrl+z);返回特权模式
router#exit;返回命令
Pix525(config)#route if_name 0 0 gateway_ip [metric];命令格式
路由器显示命令:
router#show run;显示配置信息
router#show interface;显示接口信息
router#show ip route;显示路由信息
router#show cdp nei;显示邻居信息
router#reload;重新起动
路由器口令设置:
router>enable;进入特权模式
router(config)#router rip;启动RIP路由协议。
router(config-router)#network;设置发布路由
router(config-router)#negihbor;点对点帧中继用。
帧中继命令:
router(config)#frame-relay switching;使能帧中继交换
Pix525(config)#ip address outside 133.0.0.1 255.255.255.252
Pix525(config)#global (if_name) natid ip-ip;定义公网IP区间
Pix525(config)#global (outside) 17.0.0.1-7.0.0.15;例句
Router(config)#ip nat pool p2 10.65.1.2 10.65.1.4 255.255.255.0 type rotary
Router#show ip nat translation
rotary参数是轮流的意思,地址池中的IP轮流与NAT分配的地址匹配。
overload参数用于PAT将内部IP映射到一个公网IP不同的端口上。
router(config)#access-list 102 permit ip any any
router(config)#interface s0/1
router(config-if)#ip access-group 102 out
删除访问控制例表:
router(config)#no access-list 102
Pix525(config)#interface ethernet1 100full;设置接口方式
Pix525(config)#interface ethernet1 100full shutdown
Pix525(config)#ip address inside 192.168.0.1 255.255.255.0
router(config)#config-register 0x2142;跳过配置文件
router(config)#config-register 0x2102;正常使用配置文件
router#reload;重新引导
路由器文件操作:
router#copy running-config startup-config;保存配置
Pix525(config)#global (outside) 1 133.0.0.1;例句
Pix525(config)#no global (outside) 1 133.0.0.1;去掉设置
Pix525(config)#nat (if_name) nat_id local_ip [netmark]
router(config)#access-list 4 deny 10.0.0.0 0.255.255.255
router(config)#access-list 4 permit any
router(config)#int f0/0
router(config-if)#ip access-group4 in
router(config)#access-list 101 permit ip any any
router(config)#int s0/0
router(config-if)#ip access-group101 in
例3:
router(config)#access-list 102 deny tcp any 10.65.0.2 0.0.0.0 eq 80
router(config-s0)#frame-relay local-dlci 20;设置虚电路号
router(config-s0)#frame-relay interface-dlci 16;
router(config)#log-adjacency-changes;记录邻接变化
router(config)#int s0/0.1 point-to-point;设置子接口点对点
Router(config)#ip nat inside source static 10.65.1.2 60.1.1.1
Router(config)#ip nat inside source static tcp 10.65.1.3 80 60.1.1.1 80
Router(config)#ip nat pool p1 60.1.1.1 60.1.1.20 255.255.255.0
router#copy running-config tftp;保存配置到tftp
router#copy startup-config tftp;开机配置存到tftp
router#copy tftp flash:;下传文件到flash
router#copy tftp startup-config;下载配置文件
例1:
router(config)#access-list 4 permit10.8.1.1
router(config)#access-list 4 deny 10.8.1.0 0.0.0.255
router(config)#access-list 4 permit 10.8.0.0 0.0.255.255
Pix525(config)#nat (inside) 1 0 0
内网所有主机(0代表0.0.0.0)可以访问global 1指定的外网。
Pix525(config)#nat (inside) 1 172.16.5.0 255.255.0.0
内网/16网段的主机可以访问global 1指定的外网。
router(config-if)#no ip access-group101 in
路由器的nat配置
Router(config-if)#ip nat inside;当前接口指定为内部接口
Router(config-if)#ip nat outside;当前接口指定为外部接口
Router(config)#ip nat inside source static [p] <私有IP><公网IP> [port]
路由器配置:
router(config)#int s0/0;进入Serail接口
router(config-if)#no shutdown;激活当前接口
router(config-if)#clock rate 64000;设置同步时钟
router(config-if)#ip address;设置IP地址
RouterA(config)#int s0
RouterA(config-if)#ppp authentication {chap|pap}
3.PIX防火墙命令
Pix525(config)#nameif ethernet0 outside security0;命名接口和级别
Pix525(config)#interface ethernet0 auto;设置接口方式