• SDN第一次上机作业


    SDN第一次上机作业

    1.安装mininet
    (1). 参考链接1
    (2). 参考链接2我主要是参考这个博客来做的
    (3).

    如果ubantu没有安装git,需要安装git

    apt install git

    获取源码

    git clone git://github.com/mininet/mininet

    获取源码树并安装Mininet

    cat INSTALL

    切换到mininet文件下

    cd mininet

    完整安装命令

    ./util/install.sh -a

    2.用字符命令生成拓扑,并测试连通性,截图
    参考链接:http://www.sdnlab.com/15077.html

    sudo mn --topo tree,fanout=3,depth=2

    3.用可视化界面生成拓扑,并测试连通性,截图
    参考链接:http://www.sdnlab.com/15096.html

    sudo ./mininet/mininet/examples/miniedit.py 注意sudo

    4.用Python脚本生成一个Fat-tree型的拓扑,截图
    参考链接:http://www.sdnlab.com/15128.html



    #!/usr/bin/python
    #
    """Custom topology example
    Adding the 'topos' dict with a key/value pair to generate our newly defined
    topology enables one to pass in '--topo=mytopo' from the command line.
    """
     
    from mininet.topo import Topo
    from mininet.net import Mininet
    from mininet.node import RemoteController,CPULimitedHost
    from mininet.link import TCLink
    from mininet.util import dumpNodeConnections
     
    class MyTopo( Topo ):
        "Simple topology example."
     
        def __init__( self ):
            "Create custom topo."
     
            # Initialize topology
            Topo.__init__( self )
            L1 = 2
            L2 = L1 * 2 
            L3 = L2
            c = []
            a = []
            e = []
              
            # add core ovs  
            for i in range( L1 ):
                    sw = self.addSwitch( 'c{}'.format( i + 1 ) )
                    c.append( sw )
        
            # add aggregation ovs
            for i in range( L2 ):
                    sw = self.addSwitch( 'a{}'.format( L1 + i + 1 ) )
                    a.append( sw )
        
            # add edge ovs
            for i in range( L3 ):
                    sw = self.addSwitch( 'e{}'.format( L1 + L2 + i + 1 ) )
                    e.append( sw )
     
            # add links between core and aggregation ovs
            for i in range( L1 ):
                    sw1 = c[i]
                    for sw2 in a[i/2::L1/2]:
                    # self.addLink(sw2, sw1, bw=10, delay='5ms', loss=10, max_queue_size=1000, use_htb=True)
                            self.addLink( sw2, sw1 )
     
            # add links between aggregation and edge ovs
            for i in range( 0, L2, 2 ):
                    for sw1 in a[i:i+2]:
                        for sw2 in e[i:i+2]:
                            self.addLink( sw2, sw1 )
     
            #add hosts and its links with edge ovs
            count = 1
            for sw1 in e:
                    for i in range(2):
                        host = self.addHost( 'h{}'.format( count ) )
                        self.addLink( sw1, host )
                        count += 1
    topos = { 'mytopo': ( lambda: MyTopo() ) }
    

    注意:

    1. 每次要新建拓扑时,需执行以下命令,防止上次操作对本次实验的影响sudo mn -c
    2. floodlight的安装相当麻烦,至少我是这样的···安装后要使用也要执行ifconfig命令获取floodlight所在服务器的IP地址
      sudo mn --custom ~/mininet/fattree.py --topo mytopo --controller=remote,ip=10.0.2.15,port=6633 --switch ovsk,protocols=OpenFlow10
      这句就用到了刚刚获得的IP地址。
    3. floodlight安装参考:
      [http://www.sdnlab.com/19189.html][7]
      [http://blog.csdn.net/damontive/article/details/48972353][8]
      建议自己下载安装包,git要git很久很久很久····
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  • 原文地址:https://www.cnblogs.com/one-one-zero/p/7921655.html
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