031902518王佳明

导航

 

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OpenDaylight REST API实现特定网络功能
2.能够编写程序调用Ryu REST API实现特定网络功能

二、实验环境

1.下载虚拟机软件Oracle VisualBox或VMware;
2.在虚拟机中安装Ubuntu 20.04 Desktop amd64,并完整安装Mininet、OpenDaylight(Carbon版本)、Postman和Ryu;

三、实验要求

(一)基本要求

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

(2) 编写Python程序,调用OpenDaylight的北向接口下发指令删除s1上的流表数据。

import requests
headers = {'Content-Type': 'application/json'}
def del_flowtable(url):
    resp = requests.delete(url, headers=headers)
    return resp
if __name__ == "__main__":
    url = "http://127.0.0.1:8181/restconf/config/opendaylight-inventory:nodes/node/openflow:1/"
    resp = del_flowtable(url)
    print(resp.content)

结果如下

(3) 编写Python程序,调用OpenDaylight的北向接口下发硬超时流表,实现拓扑内主机h1和h3网络中断20s。
timeout1.py

#!/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/flow-node-inventory:table/0/flow/1'
    with open("./flowtable.json") as f:
        jstr = f.read()
    headers = {'Content-Type': 'application/json'}
    res = requests.put(url, jstr, headers=headers, auth=HTTPBasicAuth('admin', 'admin'))
    print (res.content)

flowtable.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"
    }
  ]
}

结果如下

(4) 编写Python程序,调用OpenDaylight的北向接口获取s1上活动的流表数。

#!/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)

截图

2.Ryu
(1) 编写Python程序,调用Ryu的北向接口,实现上述OpenDaylight实验拓扑上相同的硬超时流表下发。
timeout2.py

#!/usr/bin/python
import requests

if __name__ == "__main__":
    url = 'http://127.0.0.1:8080/stats/flowentry/add'
    with open("./flowtable2.json") as f:
        jstr = f.read()
    headers = {'Content-Type': 'application/json'}
    res = requests.post(url, jstr, headers=headers)
    print (res.content)

flowtable2.json

{
    "dpid": 1,
    "cookie": 1,
    "cookie_mask": 1,
    "table_id": 0,
    "hard_timeout": 20,
    "priority": 65535,
    "flags": 1,
    "match":{
        "in_port":1
    },
    "actions":[
        {
            "type":"OUTPUT",
            "port": 2
        }
    ]
 }

截图


(2) 利用Mininet平台搭建下图所示网络拓扑,要求支持OpenFlow 1.3协议,主机名、交换机名以及端口对应正确。拓扑生成后需连接Ryu,且Ryu应能够提供REST API服务

拓扑

#!/usr/bin/env python
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())}

3) 整理一个Shell脚本,参考Ryu REST API的文档,利用curl命令,实现和实验2相同的VLAN。

VLAN_ID Hosts
0 h1 h3
1 h2 h4

删除流表

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

脚本

# 将主机1,2发送来的包打上vlan标记
curl -X POST -d '{
    "dpid": 1,
    "priority": 1,
    "match":{
        "in_port": 1
    },
    "actions":[
        {
            "type": "PUSH_VLAN",     # Push a new VLAN tag if a input frame is non-VLAN-tagged
            "ethertype": 33024       # Ethertype 0x8100(=33024): IEEE 802.1Q VLAN-tagged frame
        },
        {
            "type": "SET_FIELD",
            "field": "vlan_vid",     # Set VLAN ID
            "value": 4096            # Describe sum of vlan_id(e.g. 6) | OFPVID_PRESENT(0x1000=4096)
        },
        {
            "type": "OUTPUT",
            "port": 3
        }
    ]
 }' http://localhost:8080/stats/flowentry/add
 
 curl -X POST -d '{
    "dpid": 1,
    "priority": 1,
    "match":{
        "in_port": 2
    },
    "actions":[
        {
            "type": "PUSH_VLAN",     # Push a new VLAN tag if a input frame is non-VLAN-tagged
            "ethertype": 33024       # Ethertype 0x8100(=33024): IEEE 802.1Q VLAN-tagged frame
        },
        {
            "type": "SET_FIELD",
            "field": "vlan_vid",     # Set VLAN ID
            "value": 4097            # Describe sum of vlan_id(e.g. 6) | OFPVID_PRESENT(0x1000=4096)
        },
        {
            "type": "OUTPUT",
            "port": 3
        }
    ]
 }' http://localhost:8080/stats/flowentry/add
 
# 将主机3,4发送来的包取出vlan标记
 curl -X POST -d '{
    "dpid": 1,
    "priority": 1,
    "match":{
        "vlan_vid": 0
    },
    "actions":[
        {
            "type": "POP_VLAN",     # Push a new VLAN tag if a input frame is non-VLAN-tagged
            "ethertype": 33024       # Ethertype 0x8100(=33024): IEEE 802.1Q VLAN-tagged frame
        },
        {
            "type": "OUTPUT",
            "port": 1
        }
    ]
 }' http://localhost:8080/stats/flowentry/add
 
 curl -X POST -d '{
    "dpid": 1,
    "priority": 1,
    "match":{
        "vlan_vid": 1
    },
    "actions":[
        {
            "type": "POP_VLAN",     # Push a new VLAN tag if a input frame is non-VLAN-tagged
            "ethertype": 33024       # Ethertype 0x8100(=33024): IEEE 802.1Q VLAN-tagged frame
        },
        {
            "type": "OUTPUT",
            "port": 2
        }
    ]
 }' http://localhost:8080/stats/flowentry/add
 
# 将主机3,4发送来的包打上vlan标记
 curl -X POST -d '{
    "dpid": 2,
    "priority": 1,
    "match":{
        "in_port": 1
    },
    "actions":[
        {
            "type": "PUSH_VLAN",     # Push a new VLAN tag if a input frame is non-VLAN-tagged
            "ethertype": 33024       # Ethertype 0x8100(=33024): IEEE 802.1Q VLAN-tagged frame
        },
        {
            "type": "SET_FIELD",
            "field": "vlan_vid",     # Set VLAN ID
            "value": 4096            # Describe sum of vlan_id(e.g. 6) | OFPVID_PRESENT(0x1000=4096)
        },
        {
            "type": "OUTPUT",
            "port": 3
        }
    ]
 }' http://localhost:8080/stats/flowentry/add
 
 curl -X POST -d '{
    "dpid": 2,
    "priority": 1,
    "match":{
        "in_port": 2
    },
    "actions":[
        {
            "type": "PUSH_VLAN",     # Push a new VLAN tag if a input frame is non-VLAN-tagged
            "ethertype": 33024       # Ethertype 0x8100(=33024): IEEE 802.1Q VLAN-tagged frame
        },
        {
            "type": "SET_FIELD",
            "field": "vlan_vid",     # Set VLAN ID
            "value": 4097            # Describe sum of vlan_id(e.g. 6) | OFPVID_PRESENT(0x1000=4096)
        },
        {
            "type": "OUTPUT",
            "port": 3
        }
    ]
 }' http://localhost:8080/stats/flowentry/add
 
 curl -X POST -d '{
    "dpid": 2,
    "priority": 1,
    "match":{
        "vlan_vid": 0
    },
    "actions":[
        {
            "type": "POP_VLAN",     # Push a new VLAN tag if a input frame is non-VLAN-tagged
            "ethertype": 33024       # Ethertype 0x8100(=33024): IEEE 802.1Q VLAN-tagged frame
        },
        {
            "type": "OUTPUT",
            "port": 1
        }
    ]
 }' http://localhost:8080/stats/flowentry/add
 
 curl -X POST -d '{
    "dpid": 2,
    "priority": 1,
    "match":{
        "vlan_vid": 1
    },
    "actions":[
        {
            "type": "POP_VLAN",     # Push a new VLAN tag if a input frame is non-VLAN-tagged
            "ethertype": 33024       # Ethertype 0x8100(=33024): IEEE 802.1Q VLAN-tagged frame
        },
        {
            "type": "OUTPUT",
            "port": 2
        }
    ]
 }' http://localhost:8080/stats/flowentry/add

截图


(二)进阶要求

编程实现基本要求第2部分Ryu(3)中的VLAN划分。
删除流表

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

编程的代码

      #!/usr/bin/python
      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",     # Push a new VLAN tag if a input frame is non-VLAN-tagged
                      "ethertype": 33024       # Ethertype 0x8100(=33024): IEEE 802.1Q VLAN-tagged frame
                  },
                  {
                      "type": "SET_FIELD",
                      "field": "vlan_vid",     # Set VLAN ID
                      "value": 4096            # Describe sum of vlan_id(e.g. 6) | OFPVID_PRESENT(0x1000=4096)
                  },
                  {
                      "type": "OUTPUT",
                      "port": 3
                  }
              ]
          }
          flow2 = {
              "dpid": 1,
              "priority": 1,
              "match":{
                  "in_port": 2
              },
              "actions":[
                  {
                      "type": "PUSH_VLAN",     # Push a new VLAN tag if a input frame is non-VLAN-tagged
                      "ethertype": 33024       # Ethertype 0x8100(=33024): IEEE 802.1Q VLAN-tagged frame
                  },
                  {
                      "type": "SET_FIELD",
                      "field": "vlan_vid",     # Set VLAN ID
                      "value": 4097            # Describe sum of vlan_id(e.g. 6) | OFPVID_PRESENT(0x1000=4096)
                  },
                  {
                      "type": "OUTPUT",
                      "port": 3
                  }
              ]
          }
          flow3 = {
              "dpid": 1,
              "priority": 1,
              "match":{
                  "vlan_vid": 0
              },
              "actions":[
                  {
                      "type": "POP_VLAN",     # Push a new VLAN tag if a input frame is non-VLAN-tagged
                      "ethertype": 33024       # Ethertype 0x8100(=33024): IEEE 802.1Q VLAN-tagged frame
                  },
                  {
                      "type": "OUTPUT",
                      "port": 1
                  }
              ]
          }
          flow4 = {
              "dpid": 1,
              "priority": 1,
              "match": {
                  "vlan_vid": 1
              },
              "actions": [
                  {
                      "type": "POP_VLAN",  # Push a new VLAN tag if a input frame is non-VLAN-tagged
                      "ethertype": 33024  # Ethertype 0x8100(=33024): IEEE 802.1Q VLAN-tagged frame
                  },
                  {
                      "type": "OUTPUT",
                      "port": 2
                  }
              ]
          }
          flow5 = {
              "dpid": 2,
              "priority": 1,
              "match": {
                  "in_port": 1
              },
              "actions": [
                  {
                      "type": "PUSH_VLAN",  # Push a new VLAN tag if a input frame is non-VLAN-tagged
                      "ethertype": 33024  # Ethertype 0x8100(=33024): IEEE 802.1Q VLAN-tagged frame
                  },
                  {
                      "type": "SET_FIELD",
                      "field": "vlan_vid",  # Set VLAN ID
                      "value": 4096  # Describe sum of vlan_id(e.g. 6) | OFPVID_PRESENT(0x1000=4096)
                  },
                  {
                      "type": "OUTPUT",
                      "port": 3
                  }
              ]
          }
          flow6 = {
              "dpid": 2,
              "priority": 1,
              "match": {
                  "in_port": 2
              },
              "actions": [
                  {
                      "type": "PUSH_VLAN",  # Push a new VLAN tag if a input frame is non-VLAN-tagged
                      "ethertype": 33024  # Ethertype 0x8100(=33024): IEEE 802.1Q VLAN-tagged frame
                  },
                  {
                      "type": "SET_FIELD",
                      "field": "vlan_vid",  # Set VLAN ID
                      "value": 4097  # Describe sum of vlan_id(e.g. 6) | OFPVID_PRESENT(0x1000=4096)
                  },
                  {
                      "type": "OUTPUT",
                      "port": 3
                  }
              ]
          }
          flow7 = {
              "dpid": 2,
              "priority": 1,
              "match": {
                  "vlan_vid": 0
              },
              "actions": [
                  {
                      "type": "POP_VLAN",  # Push a new VLAN tag if a input frame is non-VLAN-tagged
                      "ethertype": 33024  # Ethertype 0x8100(=33024): IEEE 802.1Q VLAN-tagged frame
                  },
                  {
                      "type": "OUTPUT",
                      "port": 1
                  }
              ]
          }
          flow8 = {
              "dpid": 2,
              "priority": 1,
              "match": {
                  "vlan_vid": 0
              },
              "actions": [
                  {
                      "type": "POP_VLAN",  # Push a new VLAN tag if a input frame is non-VLAN-tagged
                      "ethertype": 33024  # Ethertype 0x8100(=33024): IEEE 802.1Q VLAN-tagged frame
                  },
                  {
                      "type": "OUTPUT",
                      "port": 1
                  }
              ]
          }
          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)

结果的截图

总结

1.实验难度:
这次作业难度有点难吧,主要想让我们熟悉ODL和Ryu。忘记了之前是怎么用的,找了一下以前的实验pdf并且翻阅以前的博客才想起来是怎么用的。。。不过知道之后再往下做就不是很难了,还算可以
2.实验过程遇到的困难及解决办法
(1)执行完python文件之后不要马上进行下一步,应该要等待几秒钟,待程序完全执行完之后再进行下一步操作不然有可能遇到下面的情况,再次pingall之后h1就可以和h1ping通了

(2)这次需要下载curl,一开始我还以为自己指令打错了后来才看到是因为自己curl没下,还有就是做完ODL的实验之后要把流表删除,防止对RYU实验产生影响。
3.个人感想
本次实验通过调用了OpenDaylight REST API和Ryu复习了如何运行OpenDaylight和Ryu,但是开启Ryu时需要带上ryu.app.ofctl_rest,否则将无法使用8080端口进行操作,之前忘记了一直试来试去也没正确连通,后来看了一下同学的博客才明白,浪费了挺多时间导致交的比较晚

posted on 2021-10-25 23:36  031902518王佳明  阅读(106)  评论(0编辑  收藏  举报