blob: 853668d316f81fb6219ae941012b1335aebf138d [file] [log] [blame]
YPZhang38fb1192016-08-11 11:03:38 -07001'''
2 Wrapper function for SCPFswitchLat test
3 Assign switch and capture openflow package
4 remove switch and caputer openflow package
5 calculate latency
6'''
7
8
9import time
10import json
11def processPackage( package ):
12 '''
13 split package information to dictionary
14 Args:
15 package: Package String
16
17 Returns:
18
19 '''
20 pacakge = package.split(" ")
21 dic = {}
22 for s in pacakge:
23 try:
24 [key, value] = s.split("=")
25 dic[key] = value
26 except:
27 continue
28 return dic
29
30def findSeqBySeqAck( seq, packageList):
31 '''
32 Find specific Seq of package in packageList
33 Args:
34 seq: seq from last TCP package
35 packageList: find package in packageList
36
37 Returns:
38
39 '''
40 for l in packageList:
41 temp = processPackage(l)
42 tA = temp['Ack']
43 if int(seq) + 1 == int(tA):
44 return temp['Seq']
45
46def captureOfPack( main, deviceName, ofPack, switchStatus, resultDict, warmup ):
47 '''
48
49 Args:
50 main: TestON class
51 deviceName: device name
52 ofPack: openflow package key word
53 switchStatus: Up -- assign, down -- remove
54 resultDict: dictionary to contain result
55 warmup: warm up boolean
56
57 Returns:
58
59 '''
60 for d in ofPack[switchStatus]:
61 main.log.info("Clean up Tshark")
62 with open(main.tsharkResultPath[switchStatus][d], "w") as tshark:
63 tshark.write("")
64 main.log.info( "Starting tshark capture" )
65 main.ONOSbench.tsharkGrep(ofPack[switchStatus][d], main.tsharkResultPath[switchStatus][d])
66 if switchStatus == 'up':
67 # if up, assign switch to controller
68 time.sleep(main.measurementSleep)
69 main.log.info('Assigning {} to controller'.format(deviceName))
70 main.Mininet1.assignSwController(sw=deviceName, ip=main.ONOSip[0])
71 time.sleep(main.measurementSleep)
72 if switchStatus == 'down':
73 # if down, remove switch from topology
74 time.sleep(main.measurementSleep)
75 main.step('Remove switch from controller')
76 main.Mininet1.deleteSwController(deviceName)
77 time.sleep(10)
78 main.log.info( "Stopping all Tshark processes" )
79 main.ONOSbench.tsharkStop()
YPZhang38fb1192016-08-11 11:03:38 -070080 tempResultDict = {}
81 if switchStatus == 'up':
82 for d in main.tsharkResultPath['up']:
83 with open(main.tsharkResultPath[switchStatus][d], "r") as resultFile:
84 # grep tshark result timestamp
85 resultText = resultFile.readlines()
86 resultText = resultText[0]
87 main.log.info("Capture result:" + resultText)
88 resultText = resultText.strip()
89 resultText = resultText.split( " " )
90 if len(resultText) > 1:
91 tempResultDict[d]= int( ( float(resultText[1]) * 1000 ) )
92 resultFile.close()
93 elif switchStatus == 'down':
94 # if state is down, we should capture Fin/Ack and ACK package
95 # Use seq number in FIN/ACK package to located ACK package
96 with open(main.tsharkResultPath['down']['FA']) as resultFile:
97 resultText = resultFile.readlines()
98 FinAckText = resultText.pop(0)
99 resultFile.close()
100 FinAckSeq = processPackage(FinAckText)['Seq']
101 FinAckOFseq = findSeqBySeqAck(FinAckSeq, resultText)
102
103 with open(main.tsharkResultPath['down']['ACK']) as resultFile:
104 ACKlines = resultFile.readlines()
105 resultFile.close()
106
YPZhang3943fbe2016-08-18 14:33:29 -0700107 AckPackage = ""
YPZhang38fb1192016-08-11 11:03:38 -0700108 for l in ACKlines:
109 temp = processPackage(l)
110 if temp['Seq'] == findSeqBySeqAck(FinAckOFseq, ACKlines):
111 AckPackage = l
YPZhang3943fbe2016-08-18 14:33:29 -0700112 if len(AckPackage) > 0:
113 FinAckText = FinAckText.strip()
114 FinAckText = FinAckText.split(" ")
115 AckPackage = AckPackage.strip()
116 AckPackage = AckPackage.split(" ")
117 tempResultDict['ACK'] = float("%.2f" % (float(AckPackage[1]) * 1000) )
118 tempResultDict['FA'] = float("%.2f" % (float(FinAckText[1]) * 1000) )
119 else:
120 return
YPZhang38fb1192016-08-11 11:03:38 -0700121 # calculate latency
122 if switchStatus == "up":
123 # up Latency
124 for d in resultDict[switchStatus]:
125 T_Ftemp = 0
126 F_Rtemp = 0
127 RQ_RRtemp = 0
128 try:
129 T_Ftemp = tempResultDict['Feature'] - tempResultDict['TCP']
130 F_Rtemp = tempResultDict['RQ'] - tempResultDict['Feature']
131 RQ_RRtemp = tempResultDict['RR'] - tempResultDict['RQ']
132 except KeyError:
133 main.log.warn("Tshark Result was incorrect!")
134 main.log.warn(tempResultDict)
135 return
136 if not warmup:
137 resultDict[switchStatus][d][ 'T_F' ].append( T_Ftemp )
138 resultDict[switchStatus][d][ 'F_R' ].append( F_Rtemp )
139 resultDict[switchStatus][d][ 'RQ_RR' ].append( RQ_RRtemp )
140
141 main.log.info("{} TCP to Feature: {}".format(d, str( T_Ftemp ) ) )
142 main.log.info("{} Feature to Role Request: {}".format(d, str(F_Rtemp)))
143 main.log.info("{} Role Request to Role Reply: {}".format(d, str(RQ_RRtemp)))
144
145 for i in range(1, main.numCtrls + 1):
146 RR_Dtemp = 0
147 D_Gtemp = 0
148 E_Etemp = 0
149 main.log.info("================================================")
150 # get onos metrics timestamps
151 try:
152 response = json.loads(main.CLIs[i - 1].topologyEventsMetrics())
153 DeviceTime = int( response.get("topologyDeviceEventTimestamp").get("value") )
154 main.log.info("ONOS{} device Event timestamp: {}".format(i, "%.2f" % DeviceTime))
155 GraphTime = int( response.get("topologyGraphEventTimestamp").get("value") )
156 main.log.info("ONOS{} Graph Event timestamp: {}".format(i, GraphTime))
157 except TypeError:
158 main.log.warn("TypeError")
159 break
160 except ValueError:
161 main.log.warn("Error to decode Json object!")
162 break
163 try:
164 RR_Dtemp = DeviceTime - tempResultDict['RR']
165 D_Gtemp = GraphTime - DeviceTime
166 E_Etemp = GraphTime - tempResultDict['TCP']
167 main.log.info("Role reply to Device:{}".format(RR_Dtemp))
168 main.log.info("Device to Graph:{}".format(D_Gtemp))
169 main.log.info("End to End:{}".format(E_Etemp))
170 main.log.info("================================================")
171 except KeyError:
172 main.log.warn("Tshark Result was incorrect!")
173 main.log.warn(tempResultDict)
174 return
175 except TypeError:
176 main.log.warn("TypeError")
177 break
178 except ValueError:
179 main.log.warn("Error to decode Json object!")
180 break
181 if not warmup:
182 resultDict[switchStatus]['node' + str(i)][ 'RR_D' ].append( RR_Dtemp )
183 resultDict[switchStatus]['node' + str(i)][ 'D_G' ].append( D_Gtemp )
184 resultDict[switchStatus]['node' + str(i)][ 'E_E' ].append( E_Etemp )
185
186 main.log.info( "{} Role Reply to Device: {}".format( d, str(RR_Dtemp) ) )
187 main.log.info( "{} Device to Graph: {}".format( d, str(D_Gtemp) ) )
188 main.log.info( "{} End to End: {}".format( d, str(E_Etemp) ) )
189
190 if switchStatus == "down":
191 # down Latency
192 for d in resultDict[switchStatus]:
193 FA_Atemp = 0
194 try:
195 FA_Atemp = float("%.2f" % (tempResultDict['ACK'] - tempResultDict['FA']) )
196 except KeyError:
197 main.log.warn("Tshark Result was incorrect!")
198 main.log.warn(tempResultDict)
199 return
200 if not warmup:
201 resultDict[switchStatus][d][ 'FA_A' ].append( FA_Atemp )
202 main.log.info( "{} FIN/ACK TO ACK {}:".format(d , FA_Atemp) )
203 for i in range(1, main.numCtrls + 1):
204 A_Dtemp = 0
205 D_Gtemp = 0
206 E_Etemp = 0
207
208 main.log.info("================================================")
209 # get onos metrics timestamps
210 try:
211 response = json.loads(main.CLIs[i - 1].topologyEventsMetrics())
212 DeviceTime = int( response.get("topologyDeviceEventTimestamp").get("value") )
213 main.log.info("ONOS{} device Event timestamp: {}".format(i, DeviceTime))
214 GraphTime = int( response.get("topologyGraphEventTimestamp").get("value") )
215 main.log.info("ONOS{} Graph Event timestamp: {}".format(i, GraphTime))
216 except TypeError:
217 main.log.warn("TypeError")
218 break
219 except ValueError:
220 main.log.warn("Error to decode Json object!")
221 break
222 main.log.info("================================================")
223 try:
224 A_Dtemp = float("%.2f" % (DeviceTime - tempResultDict['ACK']) )
225 D_Gtemp = GraphTime - DeviceTime
226 E_Etemp = float("%.2f" % (GraphTime - tempResultDict['FA']) )
227 main.log.info("ACK to device: {}".format(A_Dtemp))
228 main.log.info("Device ot Graph: {}".format(D_Gtemp))
229 main.log.info("End to End: {}".format(E_Etemp))
230 main.log.info("================================================")
231 except KeyError:
232 main.log.warn("Tshark Result was incorrect!")
233 main.log.warn(tempResultDict)
234 return
235 except TypeError:
236 main.log.warn("TypeError")
237 break
238 except ValueError:
239 main.log.warn("Error to decode Json object!")
240 break
241 if not warmup:
242 resultDict[switchStatus]['node' + str(i)][ 'A_D' ].append( A_Dtemp )
243 resultDict[switchStatus]['node' + str(i)][ 'D_G' ].append( D_Gtemp )
244 resultDict[switchStatus]['node' + str(i)][ 'E_E' ].append( E_Etemp )
245
246