![网络组建与运维](https://wfqqreader-1252317822.image.myqcloud.com/cover/26/50418026/b_50418026.jpg)
1.3.2 任务二:RSTP技术配置
【任务描述】
为了提高网络的可靠性,在交换机SWA和SWB上用两条链路实现互联,以增加网络骨干链路的带宽,运行RSTP,使网络避免环路。其网络拓扑结构如图1-16所示。
![](https://epubservercos.yuewen.com/A27875/29686795507508906/epubprivate/OEBPS/Images/32_03.jpg?sign=1739276930-rFV3zcI2eSGetHEf4w5arm76mvF3U8Ih-0-16410500e50dbab9ce866ff155cdadbc)
图1-16 RSTP技术配置的网络拓扑结构
【任务实施】
1.在交换机SWA和SWB上完成Trunk链路配置
(1)在交换机SWA上完成Trunk配置
![](https://epubservercos.yuewen.com/A27875/29686795507508906/epubprivate/OEBPS/Images/33_01.jpg?sign=1739276930-CLcgJlFRAGp964RmYSdETjPXurepButi-0-a8276e92f26202d22bccc5f7e9cb4b66)
(2)在交换机SWB上完成Trunk配置
![](https://epubservercos.yuewen.com/A27875/29686795507508906/epubprivate/OEBPS/Images/33_02.jpg?sign=1739276930-5sbSE3bQlJBibkTpPFuPPccbqTLza9pZ-0-4ecb3159a12e56f64affbd637bb41dde)
2.在交换机SWA和SWB上配置RSTP
(1)在交换机SWA上配置STP
![](https://epubservercos.yuewen.com/A27875/29686795507508906/epubprivate/OEBPS/Images/33_03.jpg?sign=1739276930-rZ045Ez5HQNqcZ7mWwneGv948xefuazC-0-126ae3917cc148b14b0c89bcebcca15a)
(2)在交换机SWB上配置STP
![](https://epubservercos.yuewen.com/A27875/29686795507508906/epubprivate/OEBPS/Images/33_04.jpg?sign=1739276930-RABa97iGWeCdR5lcYDbuEmcQzKQvyCb7-0-0f226f83937d5e49c71394628528ee99)
3.指定交换机SWA为根交换机
![](https://epubservercos.yuewen.com/A27875/29686795507508906/epubprivate/OEBPS/Images/33_05.jpg?sign=1739276930-BJV4VjRTKnxSoJuiWwvH9qSugugd6OUs-0-938095d86fac09b54a84a85bbd92b784)
4.查看交换机及端口的状态
![](https://epubservercos.yuewen.com/A27875/29686795507508906/epubprivate/OEBPS/Images/33_06.jpg?sign=1739276930-BLlcXJecwYIagq3xfE94G5TmvYsr6rBu-0-58e28e3026ad8dd31fbea62abbd39ee2)
![](https://epubservercos.yuewen.com/A27875/29686795507508906/epubprivate/OEBPS/Images/34_01.jpg?sign=1739276930-cJM0fNpKkqhz9R5qPTE4nZTqZxFVgErj-0-a7a4457ebb7225f2aa7073801d8c51be)
上述show命令输出结果显示交换机SWB为非根交换机,到根交换机的路径开销为200000,根端口为F0/1。
![](https://epubservercos.yuewen.com/A27875/29686795507508906/epubprivate/OEBPS/Images/34_02.jpg?sign=1739276930-iQtMBZ5lPITWT8YO1RzdTch8v2qDuh2W-0-5c81704fee79e1fbf4f5c44263c6477a)
上述show命令输出结果显示交换机SWB的端口为F0/1角色为根端口,处于转发状态。
![](https://epubservercos.yuewen.com/A27875/29686795507508906/epubprivate/OEBPS/Images/34_03.jpg?sign=1739276930-fzNbkzVXldzqKiVeLwCx9O9slgLBCU6U-0-36367f5bb8a539d09ba015b2f5517bcd)
![](https://epubservercos.yuewen.com/A27875/29686795507508906/epubprivate/OEBPS/Images/35_01.jpg?sign=1739276930-Kqq3XIocSoDu0xecePx0iS3o1YoMqYxs-0-78da308df9a74eece99f1e582b014a4c)
上述show命令输出结果显示交换机SWB的端口F0/2为替换端口,状态为阻塞状态。
5.设置交换机SWB的端口F0/2为根端口
![](https://epubservercos.yuewen.com/A27875/29686795507508906/epubprivate/OEBPS/Images/35_02.jpg?sign=1739276930-E375V20G4QSbGBFEEpxTshy9sFitG25t-0-882ee8dc8aa453378e12760121ea2072)
6.查看交换机及端口的状态
![](https://epubservercos.yuewen.com/A27875/29686795507508906/epubprivate/OEBPS/Images/35_03.jpg?sign=1739276930-FDbmkwdIY1RkHu8hjPhVWs3K9XEbxgT3-0-869b571b3e25e3b13208868a8af86167)
![](https://epubservercos.yuewen.com/A27875/29686795507508906/epubprivate/OEBPS/Images/36_01.jpg?sign=1739276930-mCVAGx2oMVFxRMcqj7FT9rznY0UWqgv9-0-bb300bc3e6e138f491b054e22ce30235)
上述show命令输出结果显示交换机SWA为根交换机。
![](https://epubservercos.yuewen.com/A27875/29686795507508906/epubprivate/OEBPS/Images/36_02.jpg?sign=1739276930-zWRkfIZ1p8Hd74KSYQGW6FJpcfiiNtn6-0-a7c51634e553742a5b1cb73520eb6f50)
上述show命令输出结果显示交换机SWB的端口F0/2为根端口,处于转发状态。
7.验证测试
按图1-16所示连接拓扑,将PC1的IP地址设置为192.168.1.10/24,将PC2的IP地址设置为192.168.1.20/24。
(1)让交换机SWA与SWB之间的端口F0/1所连接备用链路down掉(如拔掉网线),观察PC1 ping PC2结果
![](https://epubservercos.yuewen.com/A27875/29686795507508906/epubprivate/OEBPS/Images/36_03.jpg?sign=1739276930-QlDIBIEYRrfDEIbtGsLw1y7RXwesemkx-0-04d623ac50fa1203b0326ff449da7a66)
![](https://epubservercos.yuewen.com/A27875/29686795507508906/epubprivate/OEBPS/Images/37_01.jpg?sign=1739276930-lBnTY8DDUr9kvv2ddhOyaoZyIYwKZsXa-0-689e8ef9fc5cbb795fb8144c275ba8ab)
(2)重新接上端口F0/1所连接链路,待网络稳定后,让交换机SWA与SWB之间的端口F0/2所连接主链路down掉,观察PC1 ping PC2结果
![](https://epubservercos.yuewen.com/A27875/29686795507508906/epubprivate/OEBPS/Images/37_02.jpg?sign=1739276930-R4mOCxE7Iyvj6GJQu9XzRLmbLJuVzJSD-0-cccb1eee18470a9801c7b6ba57f265e9)
以上结果显示丢包数为一个。
【小结】
通过生成树技术的学习,主要掌握STP、RSTP等配置与管理工作。
STP通过逻辑上阻塞一些冗余端口来消除环路,将物理环路改变为逻辑上无环路的拓扑,而一旦活动链路故障,被阻塞的端口能够立即启用,以达到冗余备份的目的。