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  • 17.1 Increment then get a default counter on each node - FAIL (error)
    • Error incrementing default counter
  • PASS (tick)
  • 17.2 Get then Increment a default counter on each node - PASS (tick)
  • 17.3 Counters we added have the correct values - PASS (tick)
  • 17.4 Add -8 to then get a default counter on each node - PASS (tick)
  • 17.5 Add 5 to then get 17.2 Get then Increment a default counter on each node - FAIL (error)
  • Error incrementing default counter
  • PASS (tick)
  • 17.6 Get then add 5 to a default counter on each node - PASS (tick)
  • 17.3 7 Counters we added have the correct values - PASS (tick)
  • 17.8 Distributed Set get - PASS (tick)
  • 17.9 Distributed Set size - PASS (tick)
  • 17.10 Distributed Set add() - PASS (tick)
  • 17.11 Distributed Set addAll() - PASS (tick)
  • 17.12 Distributed Set contains() - PASS (tick)
  • 17.13 Distributed Set containsAll() - PASS (tick)
  • 17.14 Distributed Set remove() - PASS (tick)
  • 17.15 Distributed Set removeAll() - PASS (tick)
  • 17.16 Distributed Set addAll() - PASS (tick)
  • 17.17 Distributed Set clear() - PASS (tick)
  • 17.18 Distributed Set addAll() - PASS (tick)
  • 17.19 Distributed Set retain() - FAIL (error)
    • Set retain was incorrect
  • 17.20 Partitioned Transactional maps put - PASS (tick)
  • 17.21 Partitioned Transactional maps get - PASS (tick)
  • 17.22 Get the value of a new value - PASS (tick)
  • 17.23 Atomic Value set() - PASS (tick)
  • 17.24 Get the value after set() - PASS (tick)
  • 17.25 Atomic Value compareAndSet() - PASS (tick)
  • 17.26 Get the value after compareAndSet() - PASS (tick)
  • 17.27 Atomic Value getAndSet() - PASS (tick)
  • 17.28 Get the value after getAndSet() - PASS (tick)
  • 17.29 Atomic Value destory() - PASS (tick)
  • 17.30 Get the value after destroy() - PASS (tick)
  • 17.31 Work Queue add() - PASS (tick)
  • 17.32 Check the work queue stats - PASS (tick)
  • 17.33 Work Queue addMultiple() - PASS (tick)
  • 17.34 Check the work queue stats - PASS (tick)
  • 17.35 Work Queue takeAndComplete() 1 - PASS (tick)
  • 17.36 Check the work queue stats - PASS (tick)
  • 17.37 Work Queue takeAndComplete() 2 - PASS (tick)
  • 17.38 Check the work queue stats - PASS (tick)
  • 17.39 Work Queue destroy() - PASS (tick)
  • 17.40 Check the work queue stats - PASS (tick)

Case 6: Wait 60 seconds instead of inducing a failure - PASS

    Case 8: Compare ONOS Topology view to Mininet topology - PASS

    Compare topology objects between Mininet and ONOS

    • 8.1 Comparing ONOS topology to MN topology - PASS (tick)
    • 8.2 Hosts view is consistent across all ONOS nodes - PASS (tick)
    • 8.3 Hosts information is correct - PASS (tick)
    • 8.4 Host attachment points to the network - PASS (tick)
    • 8.5 Clusters view is consistent across all ONOS nodes - PASS (tick)
    • 8.6 There is only one SCC - PASS (tick)
    • 8.7 Device information is correct - PASS (tick)
    • 8.8 Links are correct - PASS (tick)
    • 8.9 Hosts are correct - PASS (tick)
    • 8.10 Checking ONOS nodes - PASS (tick)

    Case 7: Running ONOS Constant State Tests - PASS

    • 7.1 Check that each switch has a master - PASS (tick)
    • 7.2 Read device roles from ONOS - PASS (tick)
    • 7.3 Check for consistency in roles from each controller - PASS (tick)
    • 7.4 Compare switch roles from before failure - PASS (tick)
    • 7.5 Get the intents from each controller - PASS (tick)
    • 7.6 Check for consistency in Intents from each controller - PASS (tick)
    • 7.7 Compare current intents with intents before the failure - PASS (tick)
    • 7.8 Get the OF Table entries and compare to before component failure - PASS (tick)
    • 7.9 Leadership Election is still functional - PASS (tick)

    Case 4: Verify connectivity by sending traffic across Intents - PASS

    Ping across added host intents to check functionality and check the state of the intent

    • 4.1 Check Intent state - PASS (tick)
    • 4.2 Ping across added host intents - PASS (tick)
    • 4.3 Check leadership of topics - PASS (tick)
    • 4.4 Wait a minute then ping again - PASS (tick)

    Case 15: Check that Leadership Election is still functional - PASS

    • 15.1 Run for election on each node - PASS (tick)
    • 15.2 Check that each node shows the same leader and candidates - PASS (tick)
    • 15.3 Find current leader and withdraw - PASS (tick)
    • 15.4 Check that a new node was elected leader - PASS (tick)
    • 15.5 Check that that new leader was the candidate of old leader - PASS (tick)
    • 15.6 Run for election on old leader( just so everyone is in the hat ) - PASS (tick)
    • 15.7 Check that oldLeader is a candidate, and leader if only 1 node - No Result (warning)

    Case 17: Check for basic functionality with distributed primitives - FAIL

    Test the methods of the distributed primitives (counters and sets) throught the cli

    • 17.1 Increment
      • Added counters are incorrect
    • 17.4 Add -8 to then get a default counter on each node - FAIL (error)
    • Error incrementing default counter
    • PASS (tick)
    • 17.2 Get then Increment a default counter on each node - PASS (tick)
    • 17.3 Counters we added have the correct values - PASS (tick)
    • 17.5 4 Add 5 -8 to then get a default counter on each node - FAIL (error)
    • Error incrementing default counter
    • PASS (tick)
    • 17.5 Add 5 to then get a default counter on each node - PASS (tick)
    • 17.6 Get then add 5 to a default counter on each node - FAIL (error)
      • Error incrementing default counter
    • PASS (tick)
    • 17.7 Counters we added have the correct values - FAIL (error)
    • Added counters are incorrect
    • PASS (tick)
    • 17.8 Distributed Set get - FAIL (error)
      • Set elements are incorrect
    • 17.9 Distributed Set size - FAIL (error)
      • Set sizes are incorrect
    • 17.10 Distributed Set add() - FAIL (error)
      • Set add was incorrect
    • PASS (tick)
    • 17.11 Distributed Set addAll() - FAIL (error)
    • Set addAll was incorrect
    • PASS (tick)
    • 17.12 Distributed Set contains() - FAIL (error)
      • Set contains failed
    • PASS (tick)
    • 17.13 Distributed Set containsAll() - PASS (tick)
    • 17.14 Distributed Set remove() - FAIL (error)
    • Set remove was incorrect
    • PASS (tick)
    • 17.15 Distributed Set removeAll() - FAIL (error)
    • Set removeAll was incorrect
    • PASS (tick)
    • 17.16 Distributed Set addAll() - FAIL (error)
      • Set addAll was incorrect
    • PASS (tick)
    • 17.17 Distributed Set clear() - FAIL (error)
      • Set clear was incorrect
    • PASS (tick)
    • 17.18 Distributed Set addAll() - FAIL (error)
      • Set addAll was incorrect
    • PASS (tick)
    • 17.19 Distributed Set retain() - FAIL (error)
      • Set retain was incorrect
    • 17.20 Partitioned Transactional maps put - FAIL (error)
    • Partitioned Transactional Map put values are incorrect
    • PASS (tick)
    • 17.21 Partitioned Transactional maps get - FAIL (error)
      • Partitioned Transactional Map values incorrect
    • PASS (tick)
    • 17.22 Get the value of a new value - FAIL (error)
      • Error getting atomic Value None, found: ['null', 'null', 'null', 'null', None]
    • PASS (tick)
    • 17.23 Atomic Value set() - FAIL (error)
    • Error setting atomic Value[1, 1, 1, 1, -1]
    • PASS (tick)
    • 17.24 Get the value after set() - FAIL (error)
      • Error getting atomic Value foo, found: ['foo', 'foo', 'foo', 'foo', None]
    • PASS (tick)
    • 17.25 Atomic Value compareAndSet() - PASS (tick)
    • 17.26 Get the value after compareAndSet() - FAIL (error)
    • Error getting atomic Value bar, found: ['bar', 'bar', 'bar', 'bar', None]
    • PASS (tick)
    • 17.27 Atomic Value getAndSet() - PASS (tick)
    • 17.28 Get the value after getAndSet() - FAIL (error)
    • Error getting atomic Value: expected baz, found: ['baz', 'baz', 'baz', 'baz', None]
    • PASS (tick)
    • 17.29 Atomic Value destory() - PASS (tick)
    • 17.30 Get the value after destroy() - FAIL (error)
    • Error getting atomic Value None, found: ['null', 'null', 'null', 'null', None]
    • PASS (tick)
    • 17.31 Work Queue add() - PASS (tick)
    • 17.32 Check the work queue stats - PASS (tick)
    • 17.33 Work Queue addMultiple() - PASS (tick)
    • 17.34 Check the work queue stats - PASS (tick)
    • 17.35 Work Queue takeAndComplete() 1 - PASS (tick)
    • 17.36 Check the work queue stats - PASS (tick)
    • 17.37 Work Queue takeAndComplete() 2 - PASS (tick)
    • 17.38 Check the work queue stats - No Result (warning)

    ...

    • - PASS (tick)
    • 17.39 Work Queue destroy() - PASS (tick)
    • 17.40 Check the work queue stats - PASS (tick)

    Case 9: Turn off a link to ensure that Link Discovery is working properly - PASS

    • 9.1 Kill Link between s28 and s3 - PASS (tick)

    Case 8: Compare ONOS Topology view to Mininet topology - PASS

    Compare topology objects between Mininet and ONOS

    • 8.1 Comparing ONOS topology to MN topology - PASS (tick)
    • 8.2 Hosts view is consistent across all ONOS nodes - PASS (tick)
    • 8.3 Hosts information is correct - PASS (tick)
    • 8.4 Host attachment points to the network - PASS (tick)
    • 8.5 Clusters view is consistent across all ONOS nodes - PASS (tick)
    • 8.6 There is only one SCC - PASS (tick)
    • 8.7 Device information is correct - PASS (tick)
    • 8.8 Links are correct - PASS (tick)
    • 8.9 Hosts are correct - PASS (tick)
    • 8.10 Checking ONOS nodes - PASS (tick)

    Case 4: Verify connectivity by sending traffic across Intents - PASS

    Ping across added host intents to check functionality and check the state of the intent

    • 4.1 Check Intent state - PASS (tick)
    • 4.2 Ping across added host intents - PASS (tick)
    • 4.3 Check leadership of topics - PASS (tick)
    • 4.4 Wait a minute then ping again - PASS (tick)

    Case 10: Restore a link to ensure that Link Discovery is working properly - PASS

    • 10.1 Bring link between s28 and s3 back up - PASS (tick)

    Case 8: Compare ONOS Topology view to Mininet topology - PASS

    Compare topology objects between Mininet and ONOS

    • 8.1 Comparing ONOS topology to MN topology - PASS (tick)
    • 8.2 Hosts view is consistent across all ONOS nodes - PASS (tick)
    • 8.3 Hosts information is correct - PASS (tick)
    • 8.4 Host attachment points to the network - PASS (tick)
    • 8.5 Clusters view is consistent across all ONOS nodes - PASS (tick)
    • 8.6 There is only one SCC - PASS (tick)
    • 8.7 Device information is correct - PASS (tick)
    • 8.8 Links are correct - PASS (tick)
    • 8.9 Hosts are correct - PASS (tick)
    • 8.10 Checking ONOS nodes - PASS (tick)

    Case 4: Verify connectivity by sending traffic across Intents - PASS

    Ping across added host intents to check functionality and check the state of the intent

    • 4.1 Check Intent state - PASS (tick)
    • 4.2 Ping across added host intents - PASS (tick)
    • 4.3 Check leadership of topics - PASS (tick)
    • 4.4 Wait a minute then ping again - PASS (tick)

    Case 11: Killing a switch to ensure it is discovered correctly - PASS

    • 11.1 Kill s5 - PASS (tick)

    Case 8: Compare ONOS Topology view to Mininet topology - PASS

    Compare topology objects between Mininet and ONOS

    • 8.1 Comparing ONOS topology to MN topology - PASS (tick)
    • 8.2 Hosts view is consistent across all ONOS nodes - PASS (tick)
    • 8.3 Hosts information is correct - PASS (tick)
    • 8.4 Host attachment points to the network - PASS (tick)
    • 8.5 Clusters view is consistent across all ONOS nodes - PASS (tick)
    • 8.6 There is only one SCC - PASS (tick)
    • 8.7 Device information is correct - PASS (tick)
    • 8.8 Links are correct - PASS (tick)
    • 8.9 Hosts are correct - PASS (tick)
    • 8.10 Checking ONOS nodes - PASS (tick)

    Case 4: Verify connectivity by sending traffic across Intents - PASS

    Ping across added host intents to check functionality and check the state of the intent

    • 4.1 Check Intent state - PASS (tick)
    • 4.2 Ping across added host intents - PASS (tick)
    • 4.3 Check leadership of topics - PASS (tick)
    • 4.4 Wait a minute then ping again - PASS (tick)

    Case 12: Adding a switch to ensure it is discovered correctly - PASS

    • 12.1 Add back s5 - PASS (tick)

    Case 8: Compare ONOS Topology view to Mininet topology - PASS

    Compare topology objects between Mininet and ONOS

    • 8.1 Comparing ONOS topology to MN topology - PASS (tick)
    • 8.2 Hosts view is consistent across all ONOS nodes - PASS (tick)
    • 8.3 Hosts information is correct - PASS (tick)
    • 8.4 Host attachment points to the network - PASS (tick)
    • 8.5 Clusters view is consistent across all ONOS nodes - PASS (tick)
    • 8.6 There is only one SCC - PASS (tick)
    • 8.7 Device information is correct - PASS (tick)
    • 8.8 Links are correct - PASS (tick)
    • 8.9 Hosts are correct - PASS (tick)
    • 8.10 Checking ONOS nodes - PASS (tick)

    Case 4: Verify connectivity by sending traffic across Intents - PASS

    Ping across added host intents to check functionality and check the state of the intent

    • 4.1 Check Intent state - PASS (tick)
    • 4.2 Ping across added host intents - PASS (tick)
    • 4.3 Check leadership of topics - PASS (tick)
    • 4.4 Wait a minute then ping again - PASS (tick)

    Case 13: Test Cleanup - PASS

    • 13.1 Checking raft log size - PASS (tick)
    • 13.2 Killing tcpdumps - No Result (warning)
    • 13.3 Checking ONOS Logs for errors - No Result (warning)
    • 13.4 Stopping Mininet - PASS (tick)