首页 > 其他分享 >实验7:基于REST API的SDN北向应用实践

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:43  
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

相关文章

  • 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......
  • 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
    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......
  • 实验7:基于REST API的SDN北向应用实践
    (一)基本要求编写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;建立拓扑sudomn--topo=single,3--cont......
  • 4.RestFul和控制器
    4.RestFul和控制器1.控制器Controller控制器复杂提供访问应用程序的行为,通常通过接口定义或注解定义两种方法实现控制器负责解析用户的请求并将其转换为一个模型在Spr......
  • 实验7:基于REST API的SDN北向应用实践
    一、实验目的1.能够编写程序调用OpenDaylightRESTAPI实现特定网络功能;2.能够编写程序调用RyuRESTAPI实现特定网络功能。二、实验环境1.下载虚拟机软件OracleVisua......
  • 实验7:基于REST API的SDN北向应用实践
    一、实验目的1.能够编写程序调用OpenDaylightRESTAPI实现特定网络功能;2.能够编写程序调用RyuRESTAPI实现特定网络功能。二、实验环境1.下载虚拟机软件OracleVisua......
  • 实验7:基于REST API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、实验环境下载虚拟机软件OracleVisualBox或......
  • API网关第三章-分治处理会话流程
    API网关第三章-分治处理会话流程一、前言这一章所做的就是让职责更加分明,Netty服务端只负责接受网络连接调用Session,Session单独拿出来去处理具体的调用逻辑。二、......
  • 通过 SAP UI5 ODataModel API 在 JavaScript 代码里访问 OData 元数据试读版
    在本教程第24个步骤里,我们介绍了SAPUI5OData模型最基本的使用方法:SAPUI5应用开发教程之二十四-如何使用OData数据模型我们通过urlhttp://localhost:8080/w......