首页 > 其他分享 >实验7

实验7

时间:2022-11-02 20:03:30浏览次数:37  
标签:__ url headers json 实验 requests type

(一)基本要求

编写Python程序,调用OpenDaylight的北向接口实现以下功能

利用Mininet平台搭建下图所示网络拓扑,并连接OpenDaylight;



下发指令删除s1上的流表数据

import requests
from requests.auth import HTTPBasicAuth

def http_delete(url):
    url= url
    headers = {'Content-Type':'application/json'}
    resp = requests.delete(url,headers=headers,auth=HTTPBasicAuth('admin', 'admin'))
    return resp

if __name__ == "__main__":
    url='http://127.0.0.1:8181/restconf/config/opendaylight-inventory:nodes/node/openflow:1/'
    resp = http_delete(url)
    print (resp.content)


下发硬超时流表,实现拓扑内主机h1和h3网络中断20s。

timeout.py

import requests
from requests.auth import HTTPBasicAuth
def http_put(url,jstr):
    url= url
    headers = {'Content-Type':'application/json'}
    resp = requests.put(url,jstr,headers=headers,auth=HTTPBasicAuth('admin', 'admin'))
    return resp

if __name__ == "__main__":
    url='http://127.0.0.1:8181/restconf/config/opendaylight-inventory:nodes/node/openflow:1/flow-node-inventory:table/0/flow/1'
    with open('timeout.json') as f:
        jstr = f.read()
    resp = http_put(url,jstr)
    print (resp.content)

timeout.json

{
    "flow": [
      {
        "id": "1",
        "match": {
          "in-port": "1",
          "ethernet-match": {
            "ethernet-type": {
              "type": "0x0800"
            }
          },
          "ipv4-destination": "10.0.0.3/32"
        },
        "instructions": {
          "instruction": [
            {
              "order": "0",
              "apply-actions": {
                "action": [
                  {
                    "order": "0",
                    "drop-action": {}
                  }
                ]
              }
            }
          ]
        },
        "flow-name": "flow",
        "priority": "65535",
        "hard-timeout": "20",
        "cookie": "2",
        "table_id": "0"
      }
    ]
  }


获取s1上活动的流表数。

getflow.py代码

#!/usr/bin/python
import requests
from requests.auth import HTTPBasicAuth
def http_get(url):
	url = url
	headers = {'Content-Type':'application/json'}
	resp = requests.get(url,headers=headers,auth=HTTPBasicAuth('admin', 'admin'))
	return resp 

if __name__ == "__main__":
	url = 'http://127.0.0.1:8181/restconf/operational/opendaylight-inventory:nodes/node/openflow:1/flow-node-inventory:table/0/opendaylight-flow-table-statistics:flow-table-statistics'
	resp = http_get(url)
	print (resp.content)

编写Python程序,调用Ryu的北向接口实现以下功能
(1) 实现上述OpenDaylight实验拓扑上相同的硬超时流表下发。

ryu_timeout.py

import requests
if __name__ == "__main__":
    url = 'http://127.0.0.1:8080/stats/flowentry/add'
    with open("ryu_timeout.json") as file:
        str = file.read()
    headers = {'Content-Type': 'application/json'}
    res = requests.post(url, str, headers=headers)
    print (res.content)

ryu_timeout.json

{
    "dpid": 1,
    "cookie": 1,
    "cookie_mask": 1,
    "table_id": 0,
    "hard_timeout": 20,
    "priority": 65535,
    "flags": 1,
    "match":{
        "in_port":1
    },
    "actions":[

    ]
 }

参考Ryu REST API的文档,基于VLAN实验的网络拓扑,编程实现相同的VLAN配置。提示:拓扑生成后需连接Ryu,且Ryu应能够提供REST API服务

ryu_topo.py

from mininet.topo import Topo

class MyTopo(Topo):
    def __init__(self):
        # initilaize topology
        Topo.__init__(self)

        self.addSwitch("s1")
        self.addSwitch("s2")

        self.addHost("h1")
        self.addHost("h2")
        self.addHost("h3")
        self.addHost("h4")

        self.addLink("s1", "h1")
        self.addLink("s1", "h2")
        self.addLink("s2", "h3")
        self.addLink("s2", "h4")
        self.addLink("s1", "s2")

topos = {'mytopo': (lambda: MyTopo())}

ryu_vlan.py

# ryu_vlan.py
import json

import requests

if __name__ == "__main__":
    url = 'http://127.0.0.1:8080/stats/flowentry/add'
    headers = {'Content-Type': 'application/json'}
    flow1 = {
        "dpid": 1,
        "priority": 1,
        "match":{
            "in_port": 1
        },
        "actions":[
            {
                "type": "PUSH_VLAN",    
                "ethertype": 33024      
            },
            {
                "type": "SET_FIELD",
                "field": "vlan_vid",    
                "value": 4096           
            },
            {
                "type": "OUTPUT",
                "port": 3
            }
        ]
    }
    flow2 = {
        "dpid": 1,
        "priority": 1,
        "match":{
            "in_port": 2
        },
        "actions":[
            {
                "type": "PUSH_VLAN",     
                "ethertype": 33024      
            },
            {
                "type": "SET_FIELD",
                "field": "vlan_vid",     
                "value": 4097           
            },
            {
                "type": "OUTPUT",
                "port": 3
            }
        ]
    }
    flow3 = {
        "dpid": 1,
        "priority": 1,
        "match":{
            "vlan_vid": 0
        },
        "actions":[
            {
                "type": "POP_VLAN",    
                "ethertype": 33024     
            },
            {
                "type": "OUTPUT",
                "port": 1
            }
        ]
    }
    flow4 = {
        "dpid": 1,
        "priority": 1,
        "match": {
            "vlan_vid": 1
        },
        "actions": [
            {
                "type": "POP_VLAN", 
                "ethertype": 33024  
            },
            {
                "type": "OUTPUT",
                "port": 2
            }
        ]
    }
    flow5 = {
        "dpid": 2,
        "priority": 1,
        "match": {
            "in_port": 1
        },
        "actions": [
            {
                "type": "PUSH_VLAN", 
                "ethertype": 33024 
            },
            {
                "type": "SET_FIELD",
                "field": "vlan_vid", 
                "value": 4096  
            },
            {
                "type": "OUTPUT",
                "port": 3
            }
        ]
    }
    flow6 = {
        "dpid": 2,
        "priority": 1,
        "match": {
            "in_port": 2
        },
        "actions": [
            {
                "type": "PUSH_VLAN",  
                "ethertype": 33024  
            },
            {
                "type": "SET_FIELD",
                "field": "vlan_vid",  
                "value": 4097 
            },
            {
                "type": "OUTPUT",
                "port": 3
            }
        ]
    }
    flow7 = {
        "dpid": 2,
        "priority": 1,
        "match": {
            "vlan_vid": 0
        },
        "actions": [
            {
                "type": "POP_VLAN", 
                "ethertype": 33024  
            },
            {
                "type": "OUTPUT",
                "port": 1
            }
        ]
    }
    flow8 = {
        "dpid": 2,
        "priority": 1,
        "match": {
            "vlan_vid": 1
        },
        "actions": [
            {
                "type": "POP_VLAN", 
                "ethertype": 33024  
            },
            {
                "type": "OUTPUT",
                "port": 2
            }
        ]
    }
    res1 = requests.post(url, json.dumps(flow1), headers=headers)
    res2 = requests.post(url, json.dumps(flow2), headers=headers)
    res3 = requests.post(url, json.dumps(flow3), headers=headers)
    res4 = requests.post(url, json.dumps(flow4), headers=headers)
    res5 = requests.post(url, json.dumps(flow5), headers=headers)
    res6 = requests.post(url, json.dumps(flow6), headers=headers)
    res7 = requests.post(url, json.dumps(flow7), headers=headers)
    res8 = requests.post(url, json.dumps(flow8), headers=headers)

用ryu_topo.py生成拓扑:

sudo mn --custom ryu_topo.py --topo mytopo --mac --controller=remote,ip=127.0.0.1,port=6633 --switch ovsk,protocols=OpenFlow13

连接Ryu,同时开启REST API和运行一个支持OpenFlow 1.3的交换机命令:

ryu-manager ryu/ryu/app/ofctl_rest.py ryu/ryu/app/simple_switch_13.py

删除流表

curl -X DELETE http://localhost:8080/stats/flowentry/clear/1
curl -X DELETE http://localhost:8080/stats/flowentry/clear/2

标签:__,url,headers,json,实验,requests,type
From: https://www.cnblogs.com/wenjj/p/16852199.html

相关文章

  • 实验6:开源控制器实践——RYU
    一、实验目的1、能够独立部署RYU控制器;2、能够理解RYU控制器实现软件定义的集线器原理;3、能够理解RYU控制器实现软件定义的交换机原理。二、实验环境Ubuntu20.04Des......
  • 实验四:类与数组、指针
    实验任务五vectorInt.hpp#pragma#include<iostream>usingstd::cout;usingstd::endl;classvectorInt{public:vectorInt(intn);vectorInt......
  • 实验7:基于REST API的SDN北向应用实践
    实验7:基于RESTAPI的SDN北向应用实践一、实验目的能够编写程序调用OpenDaylightRESTAPI实现特定网络功能;能够编写程序调用RyuRESTAPI实现特定网络功能。二、实......
  • 实验7:基于REST API的SDN北向应用实践
    (一)基本要求1.编写Python程序,调用OpenDaylight的北向接口实现以下功能(1)利用Mininet平台搭建下图所示网络拓扑,并连接OpenDaylight;生成拓扑:sudomn--topo=single,3--......
  • 实验7:基于REST API的SDN北向应用实践
    一.将所有本实验相关文件保存在目录/home/用户名/学号/lab7/中二.(一)只需要提交实现相应Python代码和执行结果截图,其余文字请勿赘述;(二)不做必须要求,有完成的同学请提交Pyth......
  • 实验4 类与数组、指针
    task5//vectorInt.hpp#pragmaonce#include<iostream>usingnamespacestd;classvectorInt{public:vectorInt(intlen):size{len}{cout......
  • 实验4 类与数组、指针
    实验任务1程序源码point.hpp#pragmaonce#include<iostream>usingstd::cout;usingstd::endl;classPoint{public:Point():x{0},y{0}{}Point(i......
  • 实验2:Open vSwitch虚拟交换机实践
    实验2:OpenvSwitch虚拟交换机实践一、实验目的能够对OpenvSwitch进行基本操作;能够通过命令行终端使用OVS命令操作OpenvSwitch交换机,管理流表;能够通过Mininet的Pytho......
  • 实验四 类与数组、指针
    task5.1#pragmaonce2#include<bits/stdc++.h>3usingnamespacestd;4classvectorInt{5public:6vectorInt(intn);7vectorInt(intn,int......
  • 实验7:基于REST API的SDN北向应用实践
    实验7:基于RESTAPI的SDN北向应用实践一、实验目的能够编写程序调用OpenDaylightRESTAPI实现特定网络功能;能够编写程序调用RyuRESTAPI实现特定网络功能。二、实验......