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  • 2019 SDN上机第7次作业

    1.根据P4教程,将basic和basic_tunnel两个案例程序补充完整,成功运行

    /* -*- P4_16 -*- */
    #include <core.p4>
    #include <v1model.p4>
    
    const bit<16> TYPE_IPV4 = 0x800;
    
    /*************************************************************************
    *********************** H E A D E R S  ***********************************
    *************************************************************************/
    
    typedef bit<9>  egressSpec_t;
    typedef bit<48> macAddr_t;
    typedef bit<32> ip4Addr_t;
    
    header ethernet_t {
        macAddr_t dstAddr;
        macAddr_t srcAddr;
        bit<16>   etherType;
    }
    
    header ipv4_t {
        bit<4>    version;
        bit<4>    ihl;
        bit<8>    diffserv;
        bit<16>   totalLen;
        bit<16>   identification;
        bit<3>    flags;
        bit<13>   fragOffset;
        bit<8>    ttl;
        bit<8>    protocol;
        bit<16>   hdrChecksum;
        ip4Addr_t srcAddr;
        ip4Addr_t dstAddr;
    }
    
    struct metadata {
        /* empty */
    }
    
    struct headers {
        ethernet_t   ethernet;
        ipv4_t       ipv4;
    }
    
    /*************************************************************************
    *********************** P A R S E R  ***********************************
    *************************************************************************/
    
    parser MyParser(packet_in packet,
                    out headers hdr,
                    inout metadata meta,
                    inout standard_metadata_t standard_metadata){
    
        state start {
            transition parser_ethernet; //转移到以太网包头的状态
        }
            
        state packet_ethernet{
            packet.extract(hdr.ethernet);   //提取以太网包头
            transition select(hdr.ethernet.etherType){   //由协议转移到相关状态
                0x0800: parser_ipv4; //ipv4协议
                default: accept;
            }
        }
        state parser_ipv4{
            packet.extract(hdr.ipv4);   //提取ipv4包头
            transition accept;
        }
    }
    
    
    /*************************************************************************
    ************   C H E C K S U M    V E R I F I C A T I O N   *************
    *************************************************************************/
    
    control MyVerifyChecksum(inout headers hdr, inout metadata meta) {   
        apply {  }
    }
    
    
    /*************************************************************************
    **************  I N G R E S S   P R O C E S S I N G   *******************
    *************************************************************************/
    
    control MyIngress(inout headers hdr,
                      inout metadata meta,
                      inout standard_metadata_t standard_metadata) {
        action drop() {
            mark_to_drop(standard_metadata);
        }
        
        action ipv4_forward(macAddr_t dstAddr, egressSpec_t port) {
            //转发步骤
            standard_metadata.egress_spec = port;   //设置下一跳的出口端口
            hdr.ethernet.srcAddr = hdr.ethernet.dstAddr;    //更新源地址(到达下一跳)
            hdr.ethernet.dstAddr = dstAddr; //更新目标地址
            hdr.ipv4.ttl = hdr.ipv4.ttl - 1;    //ttl减1
        }
        
        table ipv4_lpm {
            key = {
                hdr.ipv4.dstAddr: lpm;
            }
            actions = {
                ipv4_forward;
                drop;
                NoAction;
            }
            size = 1024;
            default_action = NoAction();
        }
        
        apply {
            if (hdr.ipv4.isValid()) {
                ipv4_lpm.apply();
            }
        }
    }
    
    /*************************************************************************
    ****************  E G R E S S   P R O C E S S I N G   *******************
    *************************************************************************/
    
    control MyEgress(inout headers hdr,
                     inout metadata meta,
                     inout standard_metadata_t standard_metadata) {
        apply {  }
    }
    
    /*************************************************************************
    *************   C H E C K S U M    C O M P U T A T I O N   **************
    *************************************************************************/
    
    control MyComputeChecksum(inout headers hdr, inout metadata meta) {
         apply {
        update_checksum(
            hdr.ipv4.isValid(),
                { hdr.ipv4.version,
              hdr.ipv4.ihl,
                  hdr.ipv4.diffserv,
                  hdr.ipv4.totalLen,
                  hdr.ipv4.identification,
                  hdr.ipv4.flags,
                  hdr.ipv4.fragOffset,
                  hdr.ipv4.ttl,
                  hdr.ipv4.protocol,
                  hdr.ipv4.srcAddr,
                  hdr.ipv4.dstAddr },
                hdr.ipv4.hdrChecksum,
                HashAlgorithm.csum16);
        }
    }
    
    
    /*************************************************************************
    ***********************  D E P A R S E R  *******************************
    *************************************************************************/
    
    control MyDeparser(packet_out packet, in headers hdr) {
        //数据包重组
        apply {
            packet.emit(hdr.ethernet);  // 这里要注意先后顺序
            packet.emit(hdr.ipv4);
        }
    }
    
    /*************************************************************************
    ***********************  S W I T C H  *******************************
    *************************************************************************/
    
    V1Switch(
    MyParser(),
    MyVerifyChecksum(),
    MyIngress(),
    MyEgress(),
    MyComputeChecksum(),
    MyDeparser()
    ) main;
    
    终端打开basic文件夹,终端输入make run
    


    net查看拓扑结构

    pingall查看连通性

    二、补充并运行basic_tunnel案例程序(basic_tunnel程序主要功能是定义新的头部类型并修改交换机部分的代码,从而将消息封装进IP数据包并让目标端口使用新的头部类型)

    补充的代码如下所示

    /* -*- P4_16 -*- */
    #include <core.p4>
    #include <v1model.p4>
    
    const bit<16> TYPE_MYTUNNEL = 0x1212;
    const bit<16> TYPE_IPV4 = 0x800;
    
    /*************************************************************************
    *********************** H E A D E R S  ***********************************
    *************************************************************************/
    
    typedef bit<9>  egressSpec_t;
    typedef bit<48> macAddr_t;
    typedef bit<32> ip4Addr_t;
    
    header ethernet_t {
        macAddr_t dstAddr;
        macAddr_t srcAddr;
        bit<16>   etherType;
    }
    
    header myTunnel_t {
        bit<16> proto_id;
        bit<16> dst_id;
    }
    
    header ipv4_t {
        bit<4>    version;
        bit<4>    ihl;
        bit<8>    diffserv;
        bit<16>   totalLen;
        bit<16>   identification;
        bit<3>    flags;
        bit<13>   fragOffset;
        bit<8>    ttl;
        bit<8>    protocol;
        bit<16>   hdrChecksum;
        ip4Addr_t srcAddr;
        ip4Addr_t dstAddr;
    }
    
    struct metadata {
        /* empty */
    }
    
    struct headers {
        ethernet_t   ethernet;
        myTunnel_t   myTunnel;
        ipv4_t       ipv4;
    }
    
    /*************************************************************************
    *********************** P A R S E R  ***********************************
    *************************************************************************/
    
    parser MyParser(packet_in packet,
                    out headers hdr,
                    inout metadata meta,
                    inout standard_metadata_t standard_metadata) {
    
        state start {
            transition parse_ethernet;
        }
    
        state parse_ethernet {
            packet.extract(hdr.ethernet);
            transition select(hdr.ethernet.etherType) {
                TYPE_MYTUNNEL: parse_myTunnel;
                TYPE_IPV4: parse_ipv4;
                default: accept;
            }
        }
    
        state parse_myTunnel {
            packet.extract(hdr.myTunnel);
            transition select(hdr.myTunnel.proto_id) {
                TYPE_IPV4: parse_ipv4;
                default: accept;
            }
        }
    
        state parse_ipv4 {
            packet.extract(hdr.ipv4);
            transition accept;
        }
    
    }
    
    /*************************************************************************
    ************   C H E C K S U M    V E R I F I C A T I O N   *************
    *************************************************************************/
    
    control MyVerifyChecksum(inout headers hdr, inout metadata meta) {   
        apply {  }
    }
    
    
    /*************************************************************************
    **************  I N G R E S S   P R O C E S S I N G   *******************
    *************************************************************************/
    
    control MyIngress(inout headers hdr,
                      inout metadata meta,
                      inout standard_metadata_t standard_metadata) {
        action drop() {
            mark_to_drop(standard_metadata);
        }
        
        action ipv4_forward(macAddr_t dstAddr, egressSpec_t port) {
            standard_metadata.egress_spec = port;
            hdr.ethernet.srcAddr = hdr.ethernet.dstAddr;
            hdr.ethernet.dstAddr = dstAddr;
            hdr.ipv4.ttl = hdr.ipv4.ttl - 1;
        }
        
        table ipv4_lpm {
            key = {
                hdr.ipv4.dstAddr: lpm;
            }
            actions = {
                ipv4_forward;
                drop;
                NoAction;
            }
            size = 1024;
            default_action = drop();
        }
        
        action myTunnel_forward(egressSpec_t port) {
            standard_metadata.egress_spec = port;
        }
    
        table myTunnel_exact {
            key = {
                hdr.myTunnel.dst_id: exact;
            }
            actions = {
                myTunnel_forward;
                drop;
            }
            size = 1024;
            default_action = drop();
        }
    
        apply {
            if (hdr.ipv4.isValid() && !hdr.myTunnel.isValid()) {
                // Process only non-tunneled IPv4 packets
                ipv4_lpm.apply();
            }
    
            if (hdr.myTunnel.isValid()) {
                // process tunneled packets
                myTunnel_exact.apply();
            }
        }
    }
    
    /*************************************************************************
    ****************  E G R E S S   P R O C E S S I N G   *******************
    *************************************************************************/
    
    control MyEgress(inout headers hdr,
                     inout metadata meta,
                     inout standard_metadata_t standard_metadata) {
        apply {  }
    }
    
    /*************************************************************************
    *************   C H E C K S U M    C O M P U T A T I O N   **************
    *************************************************************************/
    
    control MyComputeChecksum(inout headers  hdr, inout metadata meta) {
         apply {
        update_checksum(
            hdr.ipv4.isValid(),
                { hdr.ipv4.version,
              hdr.ipv4.ihl,
                  hdr.ipv4.diffserv,
                  hdr.ipv4.totalLen,
                  hdr.ipv4.identification,
                  hdr.ipv4.flags,
                  hdr.ipv4.fragOffset,
                  hdr.ipv4.ttl,
                  hdr.ipv4.protocol,
                  hdr.ipv4.srcAddr,
                  hdr.ipv4.dstAddr },
                hdr.ipv4.hdrChecksum,
                HashAlgorithm.csum16);
        }
    }
    
    /*************************************************************************
    ***********************  D E P A R S E R  *******************************
    *************************************************************************/
    
    control MyDeparser(packet_out packet, in headers hdr) {
        apply {
            packet.emit(hdr.ethernet);
            packet.emit(hdr.myTunnel);
            packet.emit(hdr.ipv4);
        }
    }
    
    /*************************************************************************
    ***********************  S W I T C H  *******************************
    *************************************************************************/
    
    V1Switch(
    MyParser(),
    MyVerifyChecksum(),
    MyIngress(),
    MyEgress(),
    MyComputeChecksum(),
    MyDeparser()
    ) main;
    
    

    终端打开basic_tunnel文件,终端输入make run命令运行


    pingall测试连通性

    在mininet命令提示符界面输入xterm h1 h2来模拟两个终端在主机h2的xterm界面运行receive.py文件

    通过主机h1向主机h2发送信息

    ./send.py 10.0.2.2 "P4 is cool!"
    

    主机1的xterm界面修改IP地址,再一次发送信息

    ./send.py 10.0.1.1 "I receive the message!"--dst_id 2
    

    3、对P4的认识和体会

    SDN是网络的未来,P4是SDN的未来,基于openflow的传统SDN专注于可编程的控制平面,数据平面仍然是由固定功能的ASIC组成,也就是说openflow的实现仍然需要配套的芯片支持,openflow是与目标硬件相关的。而P4专注于可编程的数据平面,可以自定义芯片对于数据包的处理方式,添加自己的新功能,新协议,或者对原有协议栈进行优化,更合理的分配片上资源。openflow利用匹配域可抽象整个TCP/IP协议栈的绝大部分功能,而P4可以完整描述openflow的功能。

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  • 原文地址:https://www.cnblogs.com/ljc01/p/12038126.html
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