blob: 00b895cc685d4589c6bd2015d8be2b812800a98e [file] [log] [blame]
shahshreyaa47ebf42015-05-20 13:29:18 -07001
2# Testing the basic functionality of ONOS Next
3# For sanity and driver functionality excercises only.
4
5import time
6# import sys
7# import os
8# import re
9import json
10
11time.sleep( 1 )
12
13
14class ProdFunc:
15
16 def __init__( self ):
17 self.default = ''
18
19 def CASE1( self, main ):
20 import time
21 """
22 Startup sequence:
23 cell <name>
24 onos-verify-cell
25 onos-remove-raft-log
26 git pull
27 mvn clean install
28 onos-package
29 onos-install -f
30 onos-wait-for-start
31 """
32 cellName = main.params[ 'ENV' ][ 'cellName' ]
33 ONOS1Ip = main.params[ 'CTRL' ][ 'ip1' ]
34
35 main.case( "Setting up test environment" )
36 main.log.report(
37 "This testcase is testing setting up test environment" )
38 main.log.report( "__________________________________" )
39
40 main.step( "Applying cell variable to environment" )
41 cellResult = main.ONOSbench.setCell( cellName )
42 verifyResult = main.ONOSbench.verifyCell()
43
44 main.step( "Removing raft logs before a clen installation of ONOS" )
45 main.ONOSbench.onosRemoveRaftLogs()
46
47 main.step( "Git checkout and get version" )
48 #main.ONOSbench.gitCheckout( "master" )
49 gitPullResult = main.ONOSbench.gitPull()
50 main.log.info( "git_pull_result = " + str( gitPullResult ))
51 main.ONOSbench.getVersion( report=True )
52
53 if gitPullResult == 1:
54 main.step( "Using mvn clean & install" )
55 main.ONOSbench.cleanInstall()
56 elif gitPullResult == 0:
57 main.log.report(
58 "Git Pull Failed, look into logs for detailed reason" )
59 main.cleanup()
60 main.exit()
61
62 main.step( "Creating ONOS package" )
63 packageResult = main.ONOSbench.onosPackage()
64
65 main.step( "Installing ONOS package" )
66 onosInstallResult = main.ONOSbench.onosInstall()
67 if onosInstallResult == main.TRUE:
68 main.log.report( "Installing ONOS package successful" )
69 else:
70 main.log.report( "Installing ONOS package failed" )
71
72 onos1Isup = main.ONOSbench.isup()
73 if onos1Isup == main.TRUE:
74 main.log.report( "ONOS instance is up and ready" )
75 else:
76 main.log.report( "ONOS instance may not be up" )
77
78 main.step( "Starting ONOS service" )
79 startResult = main.ONOSbench.onosStart( ONOS1Ip )
80
81 main.ONOS2.startOnosCli( ONOSIp=main.params[ 'CTRL' ][ 'ip1' ] )
82 main.step( "Starting Mininet CLI..." )
83
84 # Starting the mininet using the old way
85 main.step( "Starting Mininet ..." )
86 netIsUp = main.Mininet1.startNet()
87 if netIsUp:
88 main.log.info("Mininet CLI is up")
89
90 case1Result = ( packageResult and
91 cellResult and verifyResult
92 and onosInstallResult and
93 onos1Isup and startResult )
94 utilities.assert_equals( expect=main.TRUE, actual=case1Result,
95 onpass="Test startup successful",
96 onfail="Test startup NOT successful" )
97
98 def CASE2( self, main ):
99 """
100 Switch Down
101 """
102 # NOTE: You should probably run a topology check after this
103 import time
104
105 main.case( "Switch down discovery" )
106 main.log.report( "This testcase is testing a switch down discovery" )
107 main.log.report( "__________________________________" )
108
109 switchSleep = int( main.params[ 'timers' ][ 'SwitchDiscovery' ] )
110
111 description = "Killing a switch to ensure it is discovered correctly"
112 main.log.report( description )
113 main.case( description )
114
115 # TODO: Make this switch parameterizable
116 main.step( "Kill s28 " )
117 main.log.report( "Deleting s28" )
118 # FIXME: use new dynamic topo functions
119 main.Mininet1.delSwitch( "s28" )
120 main.log.info(
121 "Waiting " +
122 str( switchSleep ) +
123 " seconds for switch down to be discovered" )
124 time.sleep( switchSleep )
125 # Peek at the deleted switch
126 device = main.ONOS2.getDevice( dpid="0028" )
127 print "device = ", device
128 if device[ u'available' ] == 'False':
129 case2Result = main.FALSE
130 else:
131 case2Result = main.TRUE
132 utilities.assert_equals( expect=main.TRUE, actual=case2Result,
133 onpass="Switch down discovery successful",
134 onfail="Switch down discovery failed" )
135
136 def CASE101( self, main ):
137 """
138 Cleanup sequence:
139 onos-service <nodeIp> stop
140 onos-uninstall
141
142 TODO: Define rest of cleanup
143
144 """
145 ONOS1Ip = main.params[ 'CTRL' ][ 'ip1' ]
146
147 main.case( "Cleaning up test environment" )
148
149 main.step( "Testing ONOS kill function" )
150 killResult = main.ONOSbench.onosKill( ONOS1Ip )
151
152 main.step( "Stopping ONOS service" )
153 stopResult = main.ONOSbench.onosStop( ONOS1Ip )
154
155 main.step( "Uninstalling ONOS service" )
156 uninstallResult = main.ONOSbench.onosUninstall()
157
158 case11Result = killResult and stopResult and uninstallResult
159 utilities.assert_equals( expect=main.TRUE, actual=case11Result,
160 onpass="Cleanup successful",
161 onfail="Cleanup failed" )
162
163 def CASE3( self, main ):
164 """
165 Test 'onos' command and its functionality in driver
166 """
167 ONOS1Ip = main.params[ 'CTRL' ][ 'ip1' ]
168
169 main.case( "Testing 'onos' command" )
170
171 main.step( "Sending command 'onos -w <onos-ip> system:name'" )
172 cmdstr1 = "system:name"
173 cmdResult1 = main.ONOSbench.onosCli( ONOS1Ip, cmdstr1 )
174 main.log.info( "onos command returned: " + cmdResult1 )
175
176 main.step( "Sending command 'onos -w <onos-ip> onos:topology'" )
177 cmdstr2 = "onos:topology"
178 cmdResult2 = main.ONOSbench.onosCli( ONOS1Ip, cmdstr2 )
179 main.log.info( "onos command returned: " + cmdResult2 )
180
181 def CASE20( self ):
182 """
183 Exit from mininet cli
184 reinstall ONOS
185 """
186 cellName = main.params[ 'ENV' ][ 'cellName' ]
187 ONOS1Ip = main.params[ 'CTRL' ][ 'ip1' ]
188
189 main.log.report( "This testcase exits the mininet cli and reinstalls" +
190 "ONOS to switch over to Packet Optical topology" )
191 main.log.report( "_____________________________________________" )
192 main.case( "Disconnecting mininet and restarting ONOS" )
193 main.step( "Disconnecting mininet and restarting ONOS" )
194 mininetDisconnect = main.Mininet1.disconnect()
195 print "mininetDisconnect = ", mininetDisconnect
196
197 main.step( "Removing raft logs before a clen installation of ONOS" )
198 main.ONOSbench.onosRemoveRaftLogs()
199
200 main.step( "Applying cell variable to environment" )
201 cellResult = main.ONOSbench.setCell( cellName )
202 verifyResult = main.ONOSbench.verifyCell()
203
204 onosInstallResult = main.ONOSbench.onosInstall()
205 if onosInstallResult == main.TRUE:
206 main.log.report( "Installing ONOS package successful" )
207 else:
208 main.log.report( "Installing ONOS package failed" )
209
210 onos1Isup = main.ONOSbench.isup()
211 if onos1Isup == main.TRUE:
212 main.log.report( "ONOS instance is up and ready" )
213 else:
214 main.log.report( "ONOS instance may not be up" )
215
216 main.step( "Starting ONOS service" )
217 startResult = main.ONOSbench.onosStart( ONOS1Ip )
218
219 main.ONOS2.startOnosCli( ONOSIp=main.params[ 'CTRL' ][ 'ip1' ] )
220 case20Result = mininetDisconnect and cellResult and verifyResult \
221 and onosInstallResult and onos1Isup and \
222 startResult
223 utilities.assert_equals(
224 expect=main.TRUE,
225 actual=case20Result,
226 onpass= "Exiting functionality mininet topology and reinstalling" +
227 " ONOS successful",
228 onfail= "Exiting functionality mininet topology and reinstalling" +
229 " ONOS failed" )
230
231 def CASE21( self, main ):
232 """
233 On ONOS bench, run this command:
234 ./~/ONOS/tools/test/bin/onos-topo-cfg
235 which starts the rest and copies the links
236 json file to the onos instance.
237 Note that in case of Packet Optical, the links are not learnt
238 from the topology, instead the links are learnt
239 from the json config file
240 """
241 main.log.report(
242 "This testcase starts the packet layer topology and REST" )
243 main.log.report( "_____________________________________________" )
244 main.case( "Starting LINC-OE and other components" )
245 main.step( "Starting LINC-OE and other components" )
246 startConsoleResult = main.LincOE1.startConsole()
247 opticalMnScript = main.LincOE2.runOpticalMnScript()
248 onosTopoCfgResult = main.ONOSbench.runOnosTopoCfg(
249 instanceName=main.params[ 'CTRL' ][ 'ip1' ],
250 jsonFile=main.params[ 'OPTICAL' ][ 'jsonfile' ] )
251
252 print "start_console_result =", startConsoleResult
253 print "optical_mn_script = ", opticalMnScript
254 print "onos_topo_cfg_result =", onosTopoCfgResult
255
256 case21Result = startConsoleResult and opticalMnScript and \
257 onosTopoCfgResult
258 utilities.assert_equals(
259 expect=main.TRUE,
260 actual=case21Result,
261 onpass="Packet optical topology spawned successsfully",
262 onfail="Packet optical topology spawning failed" )
263
264 def CASE22( self, main ):
265 """
266 Curretly we use, 4 linear switch optical topology and
267 2 packet layer mininet switches each with one host.
268 Therefore, the roadmCount variable = 4,
269 packetLayerSWCount variable = 2 and hostCount = 2
270 and this is hardcoded in the testcase. If the topology changes,
271 these hardcoded values need to be changed
272 """
273 main.log.report(
274 "This testcase compares the optical+packet topology against what" +
275 " is expected" )
276 main.case( "Topology comparision" )
277 main.step( "Topology comparision" )
278 main.ONOS3.startOnosCli( ONOSIp=main.params[ 'CTRL' ][ 'ip1' ] )
279 devicesResult = main.ONOS3.devices( jsonFormat=False )
280
281 print "devices_result = ", devicesResult
282 devicesLinewise = devicesResult.split( "\n" )
283 devicesLinewise = devicesLinewise[ 1: ]
284 roadmCount = 0
285 packetLayerSWCount = 0
286 for line in devicesLinewise:
287 components = line.split( "," )
288 availability = components[ 1 ].split( "=" )[ 1 ]
289 type = components[ 3 ].split( "=" )[ 1 ]
290 if availability == 'true' and type == 'ROADM':
291 roadmCount += 1
292 elif availability == 'true' and type == 'SWITCH':
293 packetLayerSWCount += 1
294 if roadmCount == 4:
295 print "Number of Optical Switches = %d and is" % roadmCount +\
296 " correctly detected"
297 main.log.info(
298 "Number of Optical Switches = " +
299 str( roadmCount ) +
300 " and is correctly detected" )
301 opticalSWResult = main.TRUE
302 else:
303 print "Number of Optical Switches = %d and is wrong" % roadmCount
304 main.log.info(
305 "Number of Optical Switches = " +
306 str( roadmCount ) +
307 " and is wrong" )
308 opticalSWResult = main.FALSE
309
310 if packetLayerSWCount == 2:
311 print "Number of Packet layer or mininet Switches = %d "\
312 % packetLayerSWCount + "and is correctly detected"
313 main.log.info(
314 "Number of Packet layer or mininet Switches = " +
315 str( packetLayerSWCount ) +
316 " and is correctly detected" )
317 packetSWResult = main.TRUE
318 else:
319 print "Number of Packet layer or mininet Switches = %d and"\
320 % packetLayerSWCount + " is wrong"
321 main.log.info(
322 "Number of Packet layer or mininet Switches = " +
323 str( packetLayerSWCount ) +
324 " and is wrong" )
325 packetSWResult = main.FALSE
326 print "_________________________________"
327
328 linksResult = main.ONOS3.links( jsonFormat=False )
329 print "links_result = ", linksResult
330 print "_________________________________"
331
332 # NOTE:Since only point intents are added, there is no
333 # requirement to discover the hosts
334 # Therfore, the below portion of the code is commented.
335 """
336 #Discover hosts using pingall
337 pingallResult = main.LincOE2.pingall()
338
339 hostsResult = main.ONOS3.hosts( jsonFormat=False )
340 main.log.info( "hosts_result = "+hostsResult )
341 main.log.info( "_________________________________" )
342 hostsLinewise = hostsResult.split( "\n" )
343 hostsLinewise = hostsLinewise[ 1:-1 ]
344 hostCount = 0
345 for line in hostsLinewise:
346 hostid = line.split( "," )[ 0 ].split( "=" )[ 1 ]
347 hostCount +=1
348 if hostCount ==2:
349 print "Number of hosts = %d and is correctly detected" %hostCount
350 main.log.info( "Number of hosts = " + str( hostCount ) +" and \
351 is correctly detected" )
352 hostDiscovery = main.TRUE
353 else:
354 print "Number of hosts = %d and is wrong" %hostCount
355 main.log.info( "Number of hosts = " + str( hostCount ) +" and \
356 is wrong" )
357 hostDiscovery = main.FALSE
358 """
359 case22Result = opticalSWResult and packetSWResult
360 utilities.assert_equals(
361 expect=main.TRUE,
362 actual=case22Result,
363 onpass="Packet optical topology discovery successful",
364 onfail="Packet optical topology discovery failed" )
365
366 def CASE23( self, main ):
367 import time
368 """
369 Add bidirectional point intents between 2 packet layer( mininet )
370 devices and
371 ping mininet hosts
372 """
373 main.log.report(
374 "This testcase adds bidirectional point intents between 2 " +
375 "packet layer( mininet ) devices and ping mininet hosts" )
376 main.case( "Topology comparision" )
377 main.step( "Adding point intents" )
378 ptpIntentResult = main.ONOS3.addPointIntent(
379 "of:0000ffffffff0001/1",
380 "of:0000ffffffff0002/1" )
381 if ptpIntentResult == main.TRUE:
382 main.ONOS3.intents( jsonFormat=False )
383 main.log.info( "Point to point intent install successful" )
384
385 ptpIntentResult = main.ONOS3.addPointIntent(
386 "of:0000ffffffff0002/1",
387 "of:0000ffffffff0001/1" )
388 if ptpIntentResult == main.TRUE:
389 main.ONOS3.intents( jsonFormat=False )
390 main.log.info( "Point to point intent install successful" )
391
392 time.sleep( 10 )
393 flowHandle = main.ONOS3.flows()
394 main.log.info( "flows :" + flowHandle )
395
396 # Sleep for 30 seconds to provide time for the intent state to change
397 time.sleep( 30 )
398 intentHandle = main.ONOS3.intents( jsonFormat=False )
399 main.log.info( "intents :" + intentHandle )
400
401 PingResult = main.TRUE
402 count = 1
403 main.log.info( "\n\nh1 is Pinging h2" )
404 ping = main.LincOE2.pingHostOptical( src="h1", target="h2" )
405 # ping = main.LincOE2.pinghost()
406 if ping == main.FALSE and count < 5:
407 count += 1
408 PingResult = main.FALSE
409 main.log.info(
410 "Ping between h1 and h2 failed. Making attempt number " +
411 str( count ) +
412 " in 2 seconds" )
413 time.sleep( 2 )
414 elif ping == main.FALSE:
415 main.log.info( "All ping attempts between h1 and h2 have failed" )
416 PingResult = main.FALSE
417 elif ping == main.TRUE:
418 main.log.info( "Ping test between h1 and h2 passed!" )
419 PingResult = main.TRUE
420 else:
421 main.log.info( "Unknown error" )
422 PingResult = main.ERROR
423
424 if PingResult == main.FALSE:
425 main.log.report(
426 "Point intents for packet optical have not ben installed" +
427 " correctly. Cleaning up" )
428 if PingResult == main.TRUE:
429 main.log.report(
430 "Point Intents for packet optical have been " +
431 "installed correctly" )
432
433 case23Result = PingResult
434 utilities.assert_equals(
435 expect=main.TRUE,
436 actual=case23Result,
437 onpass= "Point intents addition for packet optical and" +
438 "Pingall Test successful",
439 onfail= "Point intents addition for packet optical and" +
440 "Pingall Test NOT successful" )
441
442 def CASE24( self, main ):
443 import time
444 import json
445 """
446 Test Rerouting of Packet Optical by bringing a port down
447 ( port 22 ) of a switch( switchID=1 ), so that link
448 ( between switch1 port22 - switch4-port30 ) is inactive
449 and do a ping test. If rerouting is successful,
450 ping should pass. also check the flows
451 """
452 main.log.report(
453 "This testcase tests rerouting and pings mininet hosts" )
454 main.case( "Test rerouting and pings mininet hosts" )
455 main.step( "Bring a port down and verify the link state" )
456 main.LincOE1.portDown( swId="1", ptId="22" )
457 linksNonjson = main.ONOS3.links( jsonFormat=False )
458 main.log.info( "links = " + linksNonjson )
459
460 links = main.ONOS3.links()
461 main.log.info( "links = " + links )
462
463 linksResult = json.loads( links )
464 linksStateResult = main.FALSE
465 for item in linksResult:
466 if item[ 'src' ][ 'device' ] == "of:0000ffffffffff01" and item[
467 'src' ][ 'port' ] == "22":
468 if item[ 'dst' ][ 'device' ] == "of:0000ffffffffff04" and item[
469 'dst' ][ 'port' ] == "30":
470 linksState = item[ 'state' ]
471 if linksState == "INACTIVE":
472 main.log.info(
473 "Links state is inactive as expected due to one" +
474 " of the ports being down" )
475 main.log.report(
476 "Links state is inactive as expected due to one" +
477 " of the ports being down" )
478 linksStateResult = main.TRUE
479 break
480 else:
481 main.log.info(
482 "Links state is not inactive as expected" )
483 main.log.report(
484 "Links state is not inactive as expected" )
485 linksStateResult = main.FALSE
486
487 print "links_state_result = ", linksStateResult
488 time.sleep( 10 )
489 flowHandle = main.ONOS3.flows()
490 main.log.info( "flows :" + flowHandle )
491
492 main.step( "Verify Rerouting by a ping test" )
493 PingResult = main.TRUE
494 count = 1
495 main.log.info( "\n\nh1 is Pinging h2" )
496 ping = main.LincOE2.pingHostOptical( src="h1", target="h2" )
497 # ping = main.LincOE2.pinghost()
498 if ping == main.FALSE and count < 5:
499 count += 1
500 PingResult = main.FALSE
501 main.log.info(
502 "Ping between h1 and h2 failed. Making attempt number " +
503 str( count ) +
504 " in 2 seconds" )
505 time.sleep( 2 )
506 elif ping == main.FALSE:
507 main.log.info( "All ping attempts between h1 and h2 have failed" )
508 PingResult = main.FALSE
509 elif ping == main.TRUE:
510 main.log.info( "Ping test between h1 and h2 passed!" )
511 PingResult = main.TRUE
512 else:
513 main.log.info( "Unknown error" )
514 PingResult = main.ERROR
515
516 if PingResult == main.TRUE:
517 main.log.report( "Ping test successful " )
518 if PingResult == main.FALSE:
519 main.log.report( "Ping test failed" )
520
521 case24Result = PingResult and linksStateResult
522 utilities.assert_equals( expect=main.TRUE, actual=case24Result,
523 onpass="Packet optical rerouting successful",
524 onfail="Packet optical rerouting failed" )
525
526 def CASE4( self, main ):
527 import re
528 import time
529 main.log.report( "This testcase is testing the assignment of" +
530 " all the switches to all the controllers and" +
531 " discovering the hosts in reactive mode" )
532 main.log.report( "__________________________________" )
533 main.case( "Pingall Test" )
534 main.step( "Assigning switches to controllers" )
535 ONOS1Ip = main.params[ 'CTRL' ][ 'ip1' ]
536 ONOS1Port = main.params[ 'CTRL' ][ 'port1' ]
537 for i in range( 1, 29 ):
538 if i == 1:
539 main.Mininet1.assignSwController(
540 sw=str( i ),
541 ip1=ONOS1Ip,
542 port1=ONOS1Port )
543 elif i >= 2 and i < 5:
544 main.Mininet1.assignSwController(
545 sw=str( i ),
546 ip1=ONOS1Ip,
547 port1=ONOS1Port )
548 elif i >= 5 and i < 8:
549 main.Mininet1.assignSwController(
550 sw=str( i ),
551 ip1=ONOS1Ip,
552 port1=ONOS1Port )
553 elif i >= 8 and i < 18:
554 main.Mininet1.assignSwController(
555 sw=str( i ),
556 ip1=ONOS1Ip,
557 port1=ONOS1Port )
558 elif i >= 18 and i < 28:
559 main.Mininet1.assignSwController(
560 sw=str( i ),
561 ip1=ONOS1Ip,
562 port1=ONOS1Port )
563 else:
564 main.Mininet1.assignSwController(
565 sw=str( i ),
566 ip1=ONOS1Ip,
567 port1=ONOS1Port )
568 SwitchMastership = main.TRUE
569 for i in range( 1, 29 ):
570 if i == 1:
571 response = main.Mininet1.getSwController( "s" + str( i ) )
572 print( "Response is " + str( response ) )
573 if re.search( "tcp:" + ONOS1Ip, response ):
574 SwitchMastership = SwitchMastership and main.TRUE
575 else:
576 SwitchMastership = main.FALSE
577 elif i >= 2 and i < 5:
578 response = main.Mininet1.getSwController( "s" + str( i ) )
579 print( "Response is " + str( response ) )
580 if re.search( "tcp:" + ONOS1Ip, response ):
581 SwitchMastership = SwitchMastership and main.TRUE
582 else:
583 SwitchMastership = main.FALSE
584 elif i >= 5 and i < 8:
585 response = main.Mininet1.getSwController( "s" + str( i ) )
586 print( "Response is " + str( response ) )
587 if re.search( "tcp:" + ONOS1Ip, response ):
588 SwitchMastership = SwitchMastership and main.TRUE
589 else:
590 SwitchMastership = main.FALSE
591 elif i >= 8 and i < 18:
592 response = main.Mininet1.getSwController( "s" + str( i ) )
593 print( "Response is " + str( response ) )
594 if re.search( "tcp:" + ONOS1Ip, response ):
595 SwitchMastership = SwitchMastership and main.TRUE
596 else:
597 SwitchMastership = main.FALSE
598 elif i >= 18 and i < 28:
599 response = main.Mininet1.getSwController( "s" + str( i ) )
600 print( "Response is " + str( response ) )
601 if re.search( "tcp:" + ONOS1Ip, response ):
602 SwitchMastership = SwitchMastership and main.TRUE
603 else:
604 SwitchMastership = main.FALSE
605 else:
606 response = main.Mininet1.getSwController( "s" + str( i ) )
607 print( "Response is" + str( response ) )
608 if re.search( "tcp:" + ONOS1Ip, response ):
609 SwitchMastership = SwitchMastership and main.TRUE
610 else:
611 SwitchMastership = main.FALSE
612
613 if SwitchMastership == main.TRUE:
614 main.log.report( "Controller assignmnet successful" )
615 else:
616 main.log.report( "Controller assignmnet failed" )
617 utilities.assert_equals(
618 expect=main.TRUE,
619 actual=SwitchMastership,
620 onpass="MasterControllers assigned correctly" )
621 """
622 for i in range ( 1,29 ):
623 main.Mininet1.assignSwController( sw=str( i ),count=5,
624 ip1=ONOS1Ip,port1=ONOS1Port,
625 ip2=ONOS2Ip,port2=ONOS2Port,
626 ip3=ONOS3Ip,port3=ONOS3Port,
627 ip4=ONOS4Ip,port4=ONOS4Port,
628 ip5=ONOS5Ip,port5=ONOS5Port )
629 """
630 # REACTIVE FWD test
631
632 main.step( "Get list of hosts from Mininet" )
633 hostList = main.Mininet1.getHosts()
634 main.log.info( hostList )
635
636 main.step( "Get host list in ONOS format" )
637 hostOnosList = main.ONOS2.getHostsId( hostList )
638 main.log.info( hostOnosList )
639 # time.sleep( 5 )
640
641 main.step( "Pingall" )
642 pingResult = main.FALSE
643 time1 = time.time()
644 pingResult = main.Mininet1.pingall()
645 time2 = time.time()
646 print "Time for pingall: %2f seconds" % ( time2 - time1 )
647
648 # Start onos cli again because u might have dropped out of
649 # onos prompt to the shell prompt
650 # if there was no activity
651 main.ONOS2.startOnosCli( ONOSIp=main.params[ 'CTRL' ][ 'ip1' ] )
652
653 case4Result = SwitchMastership and pingResult
654 if pingResult == main.TRUE:
655 main.log.report( "Pingall Test in reactive mode to" +
656 " discover the hosts successful" )
657 else:
658 main.log.report( "Pingall Test in reactive mode to" +
659 " discover the hosts failed" )
660
661 utilities.assert_equals(
662 expect=main.TRUE,
663 actual=case4Result,
664 onpass="Controller assignment and Pingall Test successful",
665 onfail="Controller assignment and Pingall Test NOT successful" )
666
667 def CASE10( self ):
668 main.log.report(
669 "This testcase uninstalls the reactive forwarding app" )
670 main.log.report( "__________________________________" )
671 main.case( "Uninstalling reactive forwarding app" )
672 # Unistall onos-app-fwd app to disable reactive forwarding
673 appUninstallResult = main.ONOS2.featureUninstall( "onos-app-fwd" )
674 main.log.info( "onos-app-fwd uninstalled" )
675
676 # After reactive forwarding is disabled, the reactive flows on
677 # switches timeout in 10-15s
678 # So sleep for 15s
679 time.sleep( 15 )
680
681 flows = main.ONOS2.flows()
682 main.log.info( flows )
683
684 case10Result = appUninstallResult
685 utilities.assert_equals(
686 expect=main.TRUE,
687 actual=case10Result,
688 onpass="Reactive forwarding app uninstallation successful",
689 onfail="Reactive forwarding app uninstallation failed" )
690
691
692 def CASE11( self ):
693 # NOTE: This testcase require reactive forwarding mode enabled
694 # NOTE: in the beginning and then uninstall it before adding
695 # NOTE: point intents. Again the app is installed so that
696 # NOTE: testcase 10 can be ran successively
697 import time
698 main.log.report(
699 "This testcase moves a host from one switch to another to add" +
700 "point intents between them and then perform ping" )
701 main.log.report( "__________________________________" )
702 main.log.info( "Moving host from one switch to another" )
703 main.case( "Moving host from a device and attach it to another device" )
704 main.step( "Moving host h9 from device s9 and attach it to s8" )
705 main.Mininet1.moveHost(host = 'h9', oldSw = 's9', newSw = 's8')
706
707 time.sleep(15) #Time delay to have all the flows ready
708 main.step( "Pingall" )
709 pingResult = main.FALSE
710 time1 = time.time()
711 pingResult = main.Mininet1.pingall()
712 time2 = time.time()
713 print "Time for pingall: %2f seconds" % ( time2 - time1 )
714
715 hosts = main.ONOS2.hosts( jsonFormat = False )
716 main.log.info( hosts )
717
718 main.case( "Uninstalling reactive forwarding app" )
719 # Unistall onos-app-fwd app to disable reactive forwarding
720 appUninstallResult = main.ONOS2.featureUninstall( "onos-app-fwd" )
721 main.log.info( "onos-app-fwd uninstalled" )
722
723 main.step( "Add point intents between hosts on the same device")
724 ptpIntentResult = main.ONOS2.addPointIntent(
725 "of:0000000000003008/1",
726 "of:0000000000003008/3" )
727 if ptpIntentResult == main.TRUE:
728 getIntentResult = main.ONOS2.intents()
729 main.log.info( "Point to point intent install successful" )
730 # main.log.info( getIntentResult )
731
732 ptpIntentResult = main.ONOS2.addPointIntent(
733 "of:0000000000003008/3",
734 "of:0000000000003008/1" )
735 if ptpIntentResult == main.TRUE:
736 getIntentResult = main.ONOS2.intents()
737 main.log.info( "Point to point intent install successful" )
738 # main.log.info( getIntentResult )
739
740 main.case( "Ping hosts on the same devices" )
741 ping = main.Mininet1.pingHost( src = 'h8', target = 'h9' )
742
743 '''
744 main.case( "Installing reactive forwarding app" )
745 # Install onos-app-fwd app to enable reactive forwarding
746 appUninstallResult = main.ONOS2.featureInstall( "onos-app-fwd" )
747 main.log.info( "onos-app-fwd installed" )
748 '''
749
750 if ping == main.FALSE:
751 main.log.report(
752 "Point intents for hosts on same devices haven't" +
753 " been installed correctly. Cleaning up" )
754 if ping == main.TRUE:
755 main.log.report(
756 "Point intents for hosts on same devices" +
757 "installed correctly. Cleaning up" )
758
759 case11Result = ping and pingResult
760 utilities.assert_equals(
761 expect = main.TRUE,
762 actual = case11Result,
763 onpass = "Point intents for hosts on same devices" +
764 "Ping Test successful",
765 onfail = "Point intents for hosts on same devices" +
766 "Ping Test NOT successful" )
767
768
769 def CASE12( self ):
770 """
771 Verify the default flows on each switch in proactive mode
772 """
773 main.log.report( "This testcase is verifying num of default" +
774 " flows on each switch" )
775 main.log.report( "__________________________________" )
776 main.case( "Verify num of default flows on each switch" )
777 main.step( "Obtaining the device id's and flowrule count on them" )
778
779 case12Result = main.TRUE
780 idList = main.ONOS2.getAllDevicesId()
781 for id in idList:
782 count = main.ONOS2.FlowAddedCount( id )
783 main.log.info("count = " +count)
784 if int(count) != 3:
785 case12Result = main.FALSE
786 break
787 utilities.assert_equals(
788 expect=main.TRUE,
789 actual=case12Result,
790 onpass = "Expected default num of flows exist",
791 onfail = "Expected default num of flows do not exist")
792
793
794
795
796 def CASE6( self ):
797 import time
798 main.log.report( "This testcase is testing the addition of" +
799 " host intents and then does pingall" )
800 main.log.report( "__________________________________" )
801 main.case( "Obtaining host id's" )
802 main.step( "Get hosts" )
803 hosts = main.ONOS2.hosts()
804 main.log.info( hosts )
805
806 main.step( "Get all devices id" )
807 devicesIdList = main.ONOS2.getAllDevicesId()
808 main.log.info( devicesIdList )
809
810 # ONOS displays the hosts in hex format unlike mininet which does
811 # in decimal format
812 # So take care while adding intents
813 """
814 main.step( "Add host-to-host intents for mininet hosts h8 and h18 or
815 ONOS hosts h8 and h12" )
816 hthIntentResult = main.ONOS2.addHostIntent(
817 "00:00:00:00:00:08/-1", "00:00:00:00:00:12/-1" )
818 hthIntentResult = main.ONOS2.addHostIntent(
819 "00:00:00:00:00:09/-1", "00:00:00:00:00:13/-1" )
820 hthIntentResult = main.ONOS2.addHostIntent(
821 "00:00:00:00:00:0A/-1", "00:00:00:00:00:14/-1" )
822 hthIntentResult = main.ONOS2.addHostIntent(
823 "00:00:00:00:00:0B/-1", "00:00:00:00:00:15/-1" )
824 hthIntentResult = main.ONOS2.addHostIntent(
825 "00:00:00:00:00:0C/-1", "00:00:00:00:00:16/-1" )
826 hthIntentResult = main.ONOS2.addHostIntent(
827 "00:00:00:00:00:0D/-1", "00:00:00:00:00:17/-1" )
828 hthIntentResult = main.ONOS2.addHostIntent(
829 "00:00:00:00:00:0E/-1", "00:00:00:00:00:18/-1" )
830 hthIntentResult = main.ONOS2.addHostIntent(
831 "00:00:00:00:00:0F/-1", "00:00:00:00:00:19/-1" )
832 hthIntentResult = main.ONOS2.addHostIntent(
833 "00:00:00:00:00:10/-1", "00:00:00:00:00:1A/-1" )
834 hthIntentResult = main.ONOS2.addHostIntent(
835 "00:00:00:00:00:11/-1", "00:00:00:00:00:1B/-1" )
836 print "______________________________________________________"
837 """
838 for i in range( 8, 18 ):
839 main.log.info(
840 "Adding host intent between h" + str( i ) +
841 " and h" + str( i + 10 ) )
842 host1 = "00:00:00:00:00:" + \
843 str( hex( i )[ 2: ] ).zfill( 2 ).upper()
844 host2 = "00:00:00:00:00:" + \
845 str( hex( i + 10 )[ 2: ] ).zfill( 2 ).upper()
846 # NOTE: get host can return None
847 # TODO: handle this
848 host1Id = main.ONOS2.getHost( host1 )[ 'id' ]
849
850 host2Id = main.ONOS2.getHost( host2 )[ 'id' ]
851 main.ONOS2.addHostIntent( host1Id, host2Id )
852
853 time.sleep( 10 )
854 hIntents = main.ONOS2.intents( jsonFormat=False )
855 main.log.info( "intents:" + hIntents )
856 flows = main.ONOS2.flows()
857 main.log.info( "flows:" + flows )
858
859 count = 1
860 i = 8
861 PingResult = main.TRUE
862 # while i<10:
863 while i < 18:
864 main.log.info(
865 "\n\nh" + str( i ) + " is Pinging h" + str( i + 10 ) )
866 ping = main.Mininet1.pingHost(
867 src="h" + str( i ), target="h" + str( i + 10 ) )
868 if ping == main.FALSE and count < 5:
869 count += 1
870 # i = 8
871 PingResult = main.FALSE
872 main.log.report( "Ping between h" +
873 str( i ) +
874 " and h" +
875 str( i +
876 10 ) +
877 " failed. Making attempt number " +
878 str( count ) +
879 " in 2 seconds" )
880 time.sleep( 2 )
881 elif ping == main.FALSE:
882 main.log.report( "All ping attempts between h" +
883 str( i ) +
884 " and h" +
885 str( i +
886 10 ) +
887 "have failed" )
888 i = 19
889 PingResult = main.FALSE
890 elif ping == main.TRUE:
891 main.log.info( "Ping test between h" +
892 str( i ) +
893 " and h" +
894 str( i +
895 10 ) +
896 "passed!" )
897 i += 1
898 PingResult = main.TRUE
899 else:
900 main.log.info( "Unknown error" )
901 PingResult = main.ERROR
902 if PingResult == main.FALSE:
903 main.log.report(
904 "Ping all test after Host intent addition failed.Cleaning up" )
905 # main.cleanup()
906 # main.exit()
907 if PingResult == main.TRUE:
908 main.log.report(
909 "Ping all test after Host intent addition successful" )
910
911 case6Result = PingResult
912 utilities.assert_equals(
913 expect=main.TRUE,
914 actual=case6Result,
915 onpass="Pingall Test after Host intents addition successful",
916 onfail="Pingall Test after Host intents addition failed" )
917
918 def CASE5( self, main ):
919 import json
920 # assumes that sts is already in you PYTHONPATH
921 from sts.topology.teston_topology import TestONTopology
922 # main.ONOS2.startOnosCli( ONOSIp=main.params[ 'CTRL' ][ 'ip1' ] )
923 main.log.report( "This testcase is testing if all ONOS nodes" +
924 " are in topology sync with mininet" )
925 main.log.report( "__________________________________" )
926 main.case( "Comparing Mininet topology with the topology of ONOS" )
927 main.step( "Start continuous pings" )
928 main.Mininet2.pingLong(
929 src=main.params[ 'PING' ][ 'source1' ],
930 target=main.params[ 'PING' ][ 'target1' ],
931 pingTime=500 )
932 main.Mininet2.pingLong(
933 src=main.params[ 'PING' ][ 'source2' ],
934 target=main.params[ 'PING' ][ 'target2' ],
935 pingTime=500 )
936 main.Mininet2.pingLong(
937 src=main.params[ 'PING' ][ 'source3' ],
938 target=main.params[ 'PING' ][ 'target3' ],
939 pingTime=500 )
940 main.Mininet2.pingLong(
941 src=main.params[ 'PING' ][ 'source4' ],
942 target=main.params[ 'PING' ][ 'target4' ],
943 pingTime=500 )
944 main.Mininet2.pingLong(
945 src=main.params[ 'PING' ][ 'source5' ],
946 target=main.params[ 'PING' ][ 'target5' ],
947 pingTime=500 )
948 main.Mininet2.pingLong(
949 src=main.params[ 'PING' ][ 'source6' ],
950 target=main.params[ 'PING' ][ 'target6' ],
951 pingTime=500 )
952 main.Mininet2.pingLong(
953 src=main.params[ 'PING' ][ 'source7' ],
954 target=main.params[ 'PING' ][ 'target7' ],
955 pingTime=500 )
956 main.Mininet2.pingLong(
957 src=main.params[ 'PING' ][ 'source8' ],
958 target=main.params[ 'PING' ][ 'target8' ],
959 pingTime=500 )
960 main.Mininet2.pingLong(
961 src=main.params[ 'PING' ][ 'source9' ],
962 target=main.params[ 'PING' ][ 'target9' ],
963 pingTime=500 )
964 main.Mininet2.pingLong(
965 src=main.params[ 'PING' ][ 'source10' ],
966 target=main.params[ 'PING' ][ 'target10' ],
967 pingTime=500 )
968
969 main.step( "Create TestONTopology object" )
970 global ctrls
971 ctrls = []
972 count = 1
973 while True:
974 temp = ()
975 if ( 'ip' + str( count ) ) in main.params[ 'CTRL' ]:
976 temp = temp + ( getattr( main, ( 'ONOS' + str( count ) ) ), )
977 temp = temp + ( "ONOS" + str( count ), )
978 temp = temp + ( main.params[ 'CTRL' ][ 'ip' + str( count ) ], )
979 temp = temp + \
980 ( eval( main.params[ 'CTRL' ][ 'port' + str( count ) ] ), )
981 ctrls.append( temp )
982 count = count + 1
983 else:
984 break
985 global MNTopo
986 Topo = TestONTopology(
987 main.Mininet1,
988 ctrls ) # can also add Intent API info for intent operations
989 MNTopo = Topo
990
991 TopologyCheck = main.TRUE
992 main.step( "Compare ONOS Topology to MN Topology" )
993 devicesJson = main.ONOS2.devices()
994 linksJson = main.ONOS2.links()
995 # portsJson = main.ONOS2.ports()
996
997 result1 = main.Mininet1.compareSwitches(
998 MNTopo,
999 json.loads( devicesJson ) )
1000 result2 = main.Mininet1.compareLinks(
1001 MNTopo,
1002 json.loads( linksJson ) )
1003 # result3 = main.Mininet1.comparePorts(
1004 # MNTopo, json.loads( portsJson ) )
1005
1006 # result = result1 and result2 and result3
1007 result = result1 and result2
1008
1009 print "***********************"
1010pr if result == main.TRUE:
1011 main.log.report( "ONOS" + " Topology matches MN Topology" )
1012 else:
1013 main.log.report( "ONOS" + " Topology does not match MN Topology" )
1014
1015 utilities.assert_equals(
1016 expect=main.TRUE,
1017 actual=result,
1018 onpass="ONOS" +
1019 " Topology matches MN Topology",
1020 onfail="ONOS" +
1021 " Topology does not match MN Topology" )
1022
1023 TopologyCheck = TopologyCheck and result
1024 utilities.assert_equals(
1025 expect=main.TRUE,
1026 actual=TopologyCheck,
1027 onpass="Topology checks passed",
1028 onfail="Topology checks failed" )
1029
1030 def CASE7( self, main ):
1031 from sts.topology.teston_topology import TestONTopology
1032
1033 linkSleep = int( main.params[ 'timers' ][ 'LinkDiscovery' ] )
1034
1035 main.log.report( "This testscase is killing a link to ensure that" +
1036 " link discovery is consistent" )
1037 main.log.report( "__________________________________" )
1038 main.log.report( "Killing a link to ensure that link discovery" +
1039 " is consistent" )
1040 main.case( "Killing a link to Ensure that Link Discovery" +
1041 "is Working Properly" )
1042 """
1043 main.step( "Start continuous pings" )
1044
1045 main.Mininet2.pingLong( src=main.params[ 'PING' ][ 'source1' ],
1046 target=main.params[ 'PING' ][ 'target1' ],
1047 pingTime=500 )
1048 main.Mininet2.pingLong( src=main.params[ 'PING' ][ 'source2' ],
1049 target=main.params[ 'PING' ][ 'target2' ],
1050 pingTime=500 )
1051 main.Mininet2.pingLong( src=main.params[ 'PING' ][ 'source3' ],
1052 target=main.params[ 'PING' ][ 'target3' ],
1053 pingTime=500 )
1054 main.Mininet2.pingLong( src=main.params[ 'PING' ][ 'source4' ],
1055 target=main.params[ 'PING' ][ 'target4' ],
1056 pingTime=500 )
1057 main.Mininet2.pingLong( src=main.params[ 'PING' ][ 'source5' ],
1058 target=main.params[ 'PING' ][ 'target5' ],
1059 pingTime=500 )
1060 main.Mininet2.pingLong( src=main.params[ 'PING' ][ 'source6' ],
1061 target=main.params[ 'PING' ][ 'target6' ],
1062 pingTime=500 )
1063 main.Mininet2.pingLong( src=main.params[ 'PING' ][ 'source7' ],
1064 target=main.params[ 'PING' ][ 'target7' ],
1065 pingTime=500 )
1066 main.Mininet2.pingLong( src=main.params[ 'PING' ][ 'source8' ],
1067 target=main.params[ 'PING' ][ 'target8' ],
1068 pingTime=500 )
1069 main.Mininet2.pingLong( src=main.params[ 'PING' ][ 'source9' ],
1070 target=main.params[ 'PING' ][ 'target9' ],
1071 pingTime=500 )
1072 main.Mininet2.pingLong( src=main.params[ 'PING' ][ 'source10' ],
1073 target=main.params[ 'PING' ][ 'target10' ],
1074 pingTime=500 )
1075 """
1076 main.step( "Determine the current number of switches and links" )
1077 topologyOutput = main.ONOS2.topology()
1078 topologyResult = main.ONOS1.getTopology( topologyOutput )
1079 activeSwitches = topologyResult[ 'deviceCount' ]
1080 links = topologyResult[ 'linkCount' ]
1081 print "activeSwitches = ", type( activeSwitches )
1082 print "links = ", type( links )
1083 main.log.info(
1084 "Currently there are %s switches and %s links" %
1085 ( str( activeSwitches ), str( links ) ) )
1086
1087 main.step( "Kill Link between s3 and s28" )
1088 main.Mininet1.link( END1="s3", END2="s28", OPTION="down" )
1089 time.sleep( linkSleep )
1090 topologyOutput = main.ONOS2.topology()
1091 LinkDown = main.ONOS1.checkStatus(
1092 topologyOutput, activeSwitches, str(
1093 int( links ) - 2 ) )
1094 if LinkDown == main.TRUE:
1095 main.log.report( "Link Down discovered properly" )
1096 utilities.assert_equals(
1097 expect=main.TRUE,
1098 actual=LinkDown,
1099 onpass="Link Down discovered properly",
1100 onfail="Link down was not discovered in " +
1101 str( linkSleep ) +
1102 " seconds" )
1103
1104 # Check ping result here..add code for it
1105
1106 main.step( "Bring link between s3 and s28 back up" )
1107 LinkUp = main.Mininet1.link( END1="s3", END2="s28", OPTION="up" )
1108 time.sleep( linkSleep )
1109 topologyOutput = main.ONOS2.topology()
1110 LinkUp = main.ONOS1.checkStatus(
1111 topologyOutput,
1112 activeSwitches,
1113 str( links ) )
1114 if LinkUp == main.TRUE:
1115 main.log.report( "Link up discovered properly" )
1116 utilities.assert_equals(
1117 expect=main.TRUE,
1118 actual=LinkUp,
1119 onpass="Link up discovered properly",
1120 onfail="Link up was not discovered in " +
1121 str( linkSleep ) +
1122 " seconds" )
1123
1124 # NOTE Check ping result here..add code for it
1125
1126 main.step( "Compare ONOS Topology to MN Topology" )
1127 Topo = TestONTopology(
1128 main.Mininet1,
1129 ctrls ) # can also add Intent API info for intent operations
1130 MNTopo = Topo
1131 TopologyCheck = main.TRUE
1132
1133 devicesJson = main.ONOS2.devices()
1134 linksJson = main.ONOS2.links()
1135 portsJson = main.ONOS2.ports()
1136
1137 result1 = main.Mininet1.compareSwitches(
1138 MNTopo,
1139 json.loads( devicesJson ) )
1140 result2 = main.Mininet1.compareLinks(
1141 MNTopo,
1142 json.loads( linksJson ) )
1143 # result3 = main.Mininet1.comparePorts(
1144 # MNTopo, json.loads( portsJson ) )
1145
1146 # result = result1 and result2 and result3
1147 result = result1 and result2
1148 print "***********************"
1149
1150 if result == main.TRUE:
1151 main.log.report( "ONOS" + " Topology matches MN Topology" )
1152 utilities.assert_equals(
1153 expect=main.TRUE,
1154 actual=result,
1155 onpass="ONOS" +
1156 " Topology matches MN Topology",
1157 onfail="ONOS" +
1158 " Topology does not match MN Topology" )
1159
1160 TopologyCheck = TopologyCheck and result
1161 utilities.assert_equals(
1162 expect=main.TRUE,
1163 actual=TopologyCheck,
1164 onpass="Topology checks passed",
1165 onfail="Topology checks failed" )
1166
1167 result = LinkDown and LinkUp and TopologyCheck
1168 utilities.assert_equals( expect=main.TRUE, actual=result,
1169 onpass="Link failure is discovered correctly",
1170 onfail="Link Discovery failed" )
1171
1172 def CASE8( self ):
1173 """
1174 Intent removal
1175 """
1176 import time
1177 main.log.report( "This testcase removes any previously added intents" +
1178 " before adding any new set of intents" )
1179 main.log.report( "__________________________________" )
1180 main.log.info( "intent removal" )
1181 main.case( "Removing installed intents" )
1182 main.step( "Obtain the intent id's" )
1183 intentResult = main.ONOS2.intents( jsonFormat=False )
1184 main.log.info( "intent_result = " + intentResult )
1185 intentLinewise = intentResult.split( "\n" )
1186
1187 intentList = [line for line in intentLinewise \
1188 if line.startswith( "id=")]
1189 intentids = [line.split( "," )[ 0 ].split( "=" )[ 1 ] for line in \
1190 intentList]
1191 for id in intentids:
1192 print "id = ", id
1193
1194 main.step(
1195 "Iterate through the intentids list and remove each intent" )
1196 for id in intentids:
1197 main.ONOS2.removeIntent( intentId=id )
1198
1199 intentResult = main.ONOS2.intents( jsonFormat=False )
1200 main.log.info( "intent_result = " + intentResult )
1201
1202 intentList = [line for line in intentResult.split( "\n" ) \
1203 if line.startswith( "id=")]
1204 intentState = [line.split( "," )[ 1 ].split( "=" )[ 1 ] for line in \
1205 intentList]
1206 for state in intentState:
1207 print state
1208
1209 case8Result = main.TRUE
1210 for state in intentState:
1211 if state != 'WITHDRAWN':
1212 case8Result = main.FALSE
1213 break
1214
1215 if case8Result == main.TRUE:
1216 main.log.report( "Intent removal successful" )
1217 else:
1218 main.log.report( "Intent removal failed" )
1219
1220 PingResult = main.TRUE
1221 if case8Result == main.TRUE:
1222 i = 8
1223 while i < 18:
1224 main.log.info(
1225 "\n\nh" + str( i ) + " is Pinging h" + str( i + 10 ) )
1226 ping = main.Mininet1.pingHost(
1227 src="h" + str( i ), target="h" + str( i + 10 ) )
1228 if ping == main.TRUE:
1229 i = 19
1230 PingResult = PingResult and main.TRUE
1231 elif ping == main.FALSE:
1232 i += 1
1233 PingResult = PingResult and main.FALSE
1234 else:
1235 main.log.info( "Unknown error" )
1236 PingResult = main.ERROR
1237
1238 # Note: If the ping result failed, that means the intents have been
1239 # withdrawn correctly.
1240 if PingResult == main.TRUE:
1241 main.log.report( "Installed intents have not been withdrawn correctly" )
1242 # main.cleanup()
1243 # main.exit()
1244 if PingResult == main.FALSE:
1245 main.log.report( "Installed intents have been withdrawn correctly" )
1246
1247 case8Result = case8Result and PingResult
1248
1249 if case8Result == main.FALSE:
1250 main.log.report( "Intent removal successful" )
1251 else:
1252 main.log.report( "Intent removal failed" )
1253
1254 utilities.assert_equals( expect=main.FALSE, actual=case8Result,
1255 onpass="Intent removal test passed",
1256 onfail="Intent removal test failed" )
1257
1258 def CASE9( self ):
1259 main.log.report(
1260 "This testcase adds point intents and then does pingall" )
1261 main.log.report( "__________________________________" )
1262 main.log.info( "Adding point intents" )
1263 main.case(
1264 "Adding bidirectional point for mn hosts" +
1265 "( h8-h18, h9-h19, h10-h20, h11-h21, h12-h22, " +
1266 "h13-h23, h14-h24, h15-h25, h16-h26, h17-h27 )" )
1267
1268 main.step( "Add point intents for mn hosts h8 and h18 or" +
1269 "ONOS hosts h8 and h12" )
1270 # main.step(var1)
1271 ptpIntentResult = main.ONOS2.addPointIntent(
1272 "of:0000000000003008/1",
1273 "of:0000000000006018/1" )
1274 if ptpIntentResult == main.TRUE:
1275 getIntentResult = main.ONOS2.intents()
1276 main.log.info( "Point to point intent install successful" )
1277 # main.log.info( getIntentResult )
1278
1279 ptpIntentResult = main.ONOS2.addPointIntent(
1280 "of:0000000000006018/1",
1281 "of:0000000000003008/1" )
1282 if ptpIntentResult == main.TRUE:
1283 getIntentResult = main.ONOS2.intents()
1284 main.log.info( "Point to point intent install successful" )
1285 # main.log.info( getIntentResult )
1286
1287 var2 = "Add point intents for mn hosts h9&h19 or ONOS hosts h9&h13"
1288 main.step(var2)
1289 ptpIntentResult = main.ONOS2.addPointIntent(
1290 "of:0000000000003009/1",
1291 "of:0000000000006019/1" )
1292 if ptpIntentResult == main.TRUE:
1293 getIntentResult = main.ONOS2.intents()
1294 main.log.info( "Point to point intent install successful" )
1295 # main.log.info( getIntentResult )
1296
1297 ptpIntentResult = main.ONOS2.addPointIntent(
1298 "of:0000000000006019/1",
1299 "of:0000000000003009/1" )
1300 if ptpIntentResult == main.TRUE:
1301 getIntentResult = main.ONOS2.intents()
1302 main.log.info( "Point to point intent install successful" )
1303 # main.log.info( getIntentResult )
1304
1305 var3 = "Add point intents for MN hosts h10&h20 or ONOS hosts hA&h14"
1306 main.step(var3)
1307 ptpIntentResult = main.ONOS2.addPointIntent(
1308 "of:0000000000003010/1",
1309 "of:0000000000006020/1" )
1310 if ptpIntentResult == main.TRUE:
1311 getIntentResult = main.ONOS2.intents()
1312 main.log.info( "Point to point intent install successful" )
1313 # main.log.info( getIntentResult )
1314
1315 ptpIntentResult = main.ONOS2.addPointIntent(
1316 "of:0000000000006020/1",
1317 "of:0000000000003010/1" )
1318 if ptpIntentResult == main.TRUE:
1319 getIntentResult = main.ONOS2.intents()
1320 main.log.info( "Point to point intent install successful" )
1321 # main.log.info( getIntentResult )
1322
1323 var4 = "Add point intents for mininet hosts h11 and h21 or" +\
1324 " ONOS hosts hB and h15"
1325 main.case(var4)
1326 ptpIntentResult = main.ONOS2.addPointIntent(
1327 "of:0000000000003011/1",
1328 "of:0000000000006021/1" )
1329 if ptpIntentResult == main.TRUE:
1330 getIntentResult = main.ONOS2.intents()
1331 main.log.info( "Point to point intent install successful" )
1332 # main.log.info( getIntentResult )
1333
1334 ptpIntentResult = main.ONOS2.addPointIntent(
1335 "of:0000000000006021/1",
1336 "of:0000000000003011/1" )
1337 if ptpIntentResult == main.TRUE:
1338 getIntentResult = main.ONOS2.intents()
1339 main.log.info( "Point to point intent install successful" )
1340 # main.log.info( getIntentResult )
1341
1342 var5 = "Add point intents for mininet hosts h12 and h22 " +\
1343 "ONOS hosts hC and h16"
1344 main.case(var5)
1345 ptpIntentResult = main.ONOS2.addPointIntent(
1346 "of:0000000000003012/1",
1347 "of:0000000000006022/1" )
1348 if ptpIntentResult == main.TRUE:
1349 getIntentResult = main.ONOS2.intents()
1350 main.log.info( "Point to point intent install successful" )
1351 # main.log.info( getIntentResult )
1352
1353 ptpIntentResult = main.ONOS2.addPointIntent(
1354 "of:0000000000006022/1",
1355 "of:0000000000003012/1" )
1356 if ptpIntentResult == main.TRUE:
1357 getIntentResult = main.ONOS2.intents()
1358 main.log.info( "Point to point intent install successful" )
1359 # main.log.info( getIntentResult )
1360
1361 var6 = "Add point intents for mininet hosts h13 and h23 or" +\
1362 " ONOS hosts hD and h17"
1363 main.case(var6)
1364 ptpIntentResult = main.ONOS2.addPointIntent(
1365 "of:0000000000003013/1",
1366 "of:0000000000006023/1" )
1367 if ptpIntentResult == main.TRUE:
1368 getIntentResult = main.ONOS2.intents()
1369 main.log.info( "Point to point intent install successful" )
1370 # main.log.info( getIntentResult )
1371
1372 ptpIntentResult = main.ONOS2.addPointIntent(
1373 "of:0000000000006023/1",
1374 "of:0000000000003013/1" )
1375 if ptpIntentResult == main.TRUE:
1376 getIntentResult = main.ONOS2.intents()
1377 main.log.info( "Point to point intent install successful" )
1378 # main.log.info( getIntentResult )
1379
1380 var7 = "Add point intents for mininet hosts h14 and h24 or" +\
1381 " ONOS hosts hE and h18"
1382 main.case(var7)
1383 ptpIntentResult = main.ONOS2.addPointIntent(
1384 "of:0000000000003014/1",
1385 "of:0000000000006024/1" )
1386 if ptpIntentResult == main.TRUE:
1387 getIntentResult = main.ONOS2.intents()
1388 main.log.info( "Point to point intent install successful" )
1389 # main.log.info( getIntentResult )
1390
1391 ptpIntentResult = main.ONOS2.addPointIntent(
1392 "of:0000000000006024/1",
1393 "of:0000000000003014/1" )
1394 if ptpIntentResult == main.TRUE:
1395 getIntentResult = main.ONOS2.intents()
1396 main.log.info( "Point to point intent install successful" )
1397 # main.log.info( getIntentResult )
1398
1399 var8 = "Add point intents for mininet hosts h15 and h25 or" +\
1400 " ONOS hosts hF and h19"
1401 main.case(var8)
1402 ptpIntentResult = main.ONOS2.addPointIntent(
1403 "of:0000000000003015/1",
1404 "of:0000000000006025/1" )
1405 if ptpIntentResult == main.TRUE:
1406 getIntentResult = main.ONOS2.intents()
1407 main.log.info( "Point to point intent install successful" )
1408 # main.log.info( getIntentResult )
1409
1410 ptpIntentResult = main.ONOS2.addPointIntent(
1411 "of:0000000000006025/1",
1412 "of:0000000000003015/1" )
1413 if ptpIntentResult == main.TRUE:
1414 getIntentResult = main.ONOS2.intents()
1415 main.log.info( "Point to point intent install successful" )
1416 # main.log.info( getIntentResult )
1417
1418 var9 = "Add intents for mininet hosts h16 and h26 or" +\
1419 " ONOS hosts h10 and h1A"
1420 main.case(var9)
1421 ptpIntentResult = main.ONOS2.addPointIntent(
1422 "of:0000000000003016/1",
1423 "of:0000000000006026/1" )
1424 if ptpIntentResult == main.TRUE:
1425 getIntentResult = main.ONOS2.intents()
1426 main.log.info( "Point to point intent install successful" )
1427 # main.log.info( getIntentResult )
1428
1429 ptpIntentResult = main.ONOS2.addPointIntent(
1430 "of:0000000000006026/1",
1431 "of:0000000000003016/1" )
1432 if ptpIntentResult == main.TRUE:
1433 getIntentResult = main.ONOS2.intents()
1434 main.log.info( "Point to point intent install successful" )
1435 # main.log.info( getIntentResult )
1436
1437 var10 = "Add point intents for mininet hosts h17 and h27 or" +\
1438 " ONOS hosts h11 and h1B"
1439 main.case(var10)
1440 ptpIntentResult = main.ONOS2.addPointIntent(
1441 "of:0000000000003017/1",
1442 "of:0000000000006027/1" )
1443 if ptpIntentResult == main.TRUE:
1444 getIntentResult = main.ONOS2.intents()
1445 main.log.info( "Point to point intent install successful" )
1446 #main.log.info( getIntentResult )
1447
1448 ptpIntentResult = main.ONOS2.addPointIntent(
1449 "of:0000000000006027/1",
1450 "of:0000000000003017/1" )
1451 if ptpIntentResult == main.TRUE:
1452 getIntentResult = main.ONOS2.intents()
1453 main.log.info( "Point to point intent install successful" )
1454 #main.log.info( getIntentResult )
1455
1456 print(
1457 "___________________________________________________________" )
1458
1459 flowHandle = main.ONOS2.flows()
1460 #main.log.info( "flows :" + flowHandle )
1461
1462 count = 1
1463 i = 8
1464 PingResult = main.TRUE
1465 while i < 18:
1466 main.log.info(
1467 "\n\nh" + str( i ) + " is Pinging h" + str( i + 10 ) )
1468 ping = main.Mininet1.pingHost(
1469 src="h" + str( i ), target="h" + str( i + 10 ) )
1470 if ping == main.FALSE and count < 5:
1471 count += 1
1472 # i = 8
1473 PingResult = main.FALSE
1474 main.log.report( "Ping between h" +
1475 str( i ) +
1476 " and h" +
1477 str( i +
1478 10 ) +
1479 " failed. Making attempt number " +
1480 str( count ) +
1481 " in 2 seconds" )
1482 time.sleep( 2 )
1483 elif ping == main.FALSE:
1484 main.log.report( "All ping attempts between h" +
1485 str( i ) +
1486 " and h" +
1487 str( i +
1488 10 ) +
1489 "have failed" )
1490 i = 19
1491 PingResult = main.FALSE
1492 elif ping == main.TRUE:
1493 main.log.info( "Ping test between h" +
1494 str( i ) +
1495 " and h" +
1496 str( i +
1497 10 ) +
1498 "passed!" )
1499 i += 1
1500 PingResult = main.TRUE
1501 else:
1502 main.log.info( "Unknown error" )
1503 PingResult = main.ERROR
1504
1505 if PingResult == main.FALSE:
1506 main.log.report(
1507 "Point intents have not ben installed correctly. Cleaning up" )
1508 # main.cleanup()
1509 # main.exit()
1510 if PingResult == main.TRUE:
1511 main.log.report( "Point Intents have been installed correctly" )
1512
1513 case9Result = PingResult
1514 utilities.assert_equals(
1515 expect=main.TRUE,
1516 actual=case9Result,
1517 onpass="Point intents addition and Pingall Test successful",
1518 onfail="Point intents addition and Pingall Test NOT successful" )