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实验7:基于REST API的SDN北向应用实践

时间:2022-11-06 22:03:55浏览次数:40  
标签:__ self flow REST json API SDN type requests

1.基础要求
a)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;

#创建拓扑
sudo mn --topo=single,3 --controller=remote,ip=127.0.0.1,port=6633 --switch ovsk,protocols=OpenFlow13 
#启动ODL
./distribution-karaf-0.6.4-Carbon/bin/karaf 

![](/i/l/?n=22&i=blog/2149803/202211/2149803-20221106212612607-727991711.png)

(2) 下发指令删除s1上的流表数据。
相应Python代码

        #!/usr/bin/python
        import requests
        from requests.auth import HTTPBasicAuth
        if __name__ == "__main__":
            url = 'http://127.0.0.1:8181/restconf/config/opendaylight-inventory:nodes/node/openflow:1/'
            headers = {'Content-Type': 'application/json'}
            res = requests.delete(url, headers=headers, auth=HTTPBasicAuth('admin', 'admin'))
            print (res.content)


(3) 下发硬超时流表,实现拓扑内主机h1和h3网络中断20s。
相应Python代码
hardtime.py

  import requests
  from requests.auth import HTTPBasicAuth
  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("./flow.json") as file:
          str = file.read()
      headers = {'Content-Type': 'application/json'}
      res = requests.put(url, str, headers=headers, auth=HTTPBasicAuth('admin', 'admin'))
      print (res.content)

flow.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": "flow1",
    "priority": "65535",
    "hard-timeout": "20",
    "cookie": "2",
    "table_id": "0"
      }
    ]
  }


(4) 获取s1上活动的流表数。
相应Python代码

  #!/usr/bin/python
  import requests
  from requests.auth import HTTPBasicAuth

  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'
      headers = {'Content-Type': 'application/json'}
      res = requests.get(url,headers=headers, auth=HTTPBasicAuth('admin', 'admin'))
      print (res.content)

b)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。
相应Python代码
·ryu_timeout.py 代码
import requests
from requests.auth import HTTPBasicAuth

  if __name__ == '__main__':
      url = 'http://127.0.0.1:8080/stats/flowentry/add'
      headers = {'Content-Type': 'application/json'}
      json = open('ryu_timeout.json').read()
      response = requests.post(url, data=json, headers=headers)
      print(response.content)

·ryu_timeout.json 代码

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



删流表

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'}
      f = open('ryu_vlan.json').read()
      flows = json.loads(f)['flows']
      [requests.post(url, data=json.dumps(flows[i]), headers=headers) for i in range(0, 8)]

ryu_vlan.json

      {
      	"flows": [
              {
      			"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
      				}
      			]
      		},
      		{
      			"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
      				}
      			]
      		},
      		{
      			"dpid": 1,
      			"priority": 1,
      			"match": {
      				"vlan_vid": 0
      			},
      			"actions": [{
      					"type": "POP_VLAN",
      					"ethertype": 33024
      				},
      				{
      					"type": "OUTPUT",
      					"port": 1
      				}
      			]
      		},
      		{
      			"dpid": 1,
      			"priority": 1,
      			"match": {
      				"vlan_vid": 1
      			},
      			"actions": [{
      					"type": "POP_VLAN",
      					"ethertype": 33024
      				},
      				{
      					"type": "OUTPUT",
      					"port": 2
      				}
      			]
      		},
      		{
      			"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
      				}
      			]
      		}, 
              {
      			"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
      				}
      			]
      		},
      		{
      			"dpid": 2,
      			"priority": 1,
      			"match": {
      				"vlan_vid": 0
      			},
      			"actions": [{
      					"type": "POP_VLAN",
      					"ethertype": 33024
      				},
      				{
      					"type": "OUTPUT",
      					"port": 1
      				}
      			]
      		},
      		{
      			"dpid": 2,
      			"priority": 1,
      			"match": {
      				"vlan_vid": 1
      			},
      			"actions": [{
      					"type": "POP_VLAN",
      					"ethertype": 33024
      				},
      				{
      					"type": "OUTPUT",
      					"port": 2
      				}
      			]
      		}
      	]
      }

ryu_topo.py

  from mininet.topo import Topo
   
  class ryu_topo(Topo):
      def __init__(self):
          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 = {'ryu_topo': (lambda: ryu_topo())}



2.进阶要求
OpenDaylight或Ryu任选其一,编程实现查看前序VLAN实验拓扑中所有节点(含交换机、主机)的名称,以及显示每台交换机的所有流表项。
相应Python代码
·ryu_show.py

  import requests
  import time
  import re
  class GetNodes:
      def __init__(self, ip):
          self.ip = ip
          
      def get_switch_id(self): #查找所有节点名称
          url = 'http://' + self.ip + '/stats/switches'
          re_switch_id = requests.get(url=url).json()
          switch_id_hex = []
          for i in re_switch_id:
              switch_id_hex.append(hex(i))

          return switch_id_hex

      def getflow(self):  #查找所有交换机流表项
          url = 'http://' + self.ip + '/stats/flow/%d'
          switch_list = self.get_switch_id()
          ret_flow = []
          for switch in switch_list:
              new_url = format(url % int(switch, 16))
              re_switch_flow = requests.get(url=new_url).json()
              ret_flow.append(re_switch_flow)
          return ret_flow

      def show(self):
          flow_list = self.getflow()
          for flow in flow_list:
              for dpid in flow.keys():
                  dp_id = dpid
                  switchnum= '{1}'.format(hex(int(dp_id)), int(dp_id))        
                  print('s'+switchnum)
                  switchnum = int(switchnum)
              for list_table in flow.values():
                  for table in list_table:          
                      string1 = str(table)
                      if re.search("'dl_vlan': '(.*?)'", string1) is not None:
                         num = re.search("'dl_vlan': '(.*?)'", string1).group(1);
                         if num == '0' and switchnum == 1:
                            print('h1')
                         if num == '1' and switchnum == 1:
                            print('h2')
                         if num == '0' and switchnum == 2:
                            print('h3')
                         if num == '1' and switchnum == 2:
                            print('h4')
                            
          flow_list = self.getflow()
          for flow in flow_list:
              for dpid in flow.keys():
                  dp_id = dpid
                  print('switch:s{1}'.format(hex(int(dp_id)), int(dp_id)))
              for list_table in flow.values():
                  for table in list_table:
                      print(table)
  s1 = GetNodes("127.0.0.1:8080")
  s1.show()

个人总结
a)实验感想
本次实验的难度较大,多在与前几次实验的综合以及代码的编写。在进阶部分中,我学习参考了前面同学的代码,对于整个代码的流程还需要再理解及进一步的学习。
b)遇到问题
ImportError: No module named requests 后来发现是python版本问题 后来在运行时候改为python3 XXX.py即可
ryu实验一开始不是很顺利 后来发现是前面odl没关
删除流表应提前下载curl sudo apt install curl

标签:__,self,flow,REST,json,API,SDN,type,requests
From: https://www.cnblogs.com/dmcity3/p/16864270.html

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