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Comment: Published from Jenkins build: https://onos-jenkins.onlab.us/job/HAswapNodes/614/

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commit 8b1b51e4a509a304e04cc4825b4597c7abad5157 f1db284c81355716550c5842bbb21862ce5ee531 (HEAD, origin/master, origin/HEAD, master)
Author: Aaron Kruglikov Carmelo Cascone [aaron@onlabcarmelo@opennetworking.usorg]
AuthorDate: Wed Thu Jul 12 13 17:2654:16 04 2017 -07000400
Commit: Ray Milkey Carmelo Cascone [ray@opennetworkingcarmelo@opennetworking.org]
CommitDate: Thu Fri Jul 13 0114 00:4629:39 27 2017 +0000
Adding a note that Application ID's must be non-negative, this constraint is already written into the default implementation.
Example unit tests for PI criterion translators
HTML
<iframe src="https://onos-jenkins.onlab.us/job/HAswapNodes/plot/Plot-HA/getPlot?index=2&width=500&height=300"noborder="0" width="500" height="300" scrolling="yes" seamless="seamless"></iframe>

Case 1: Setting up test environment - PASS

Setup the test environment including installing ONOS, starting Mininet and ONOScli sessions.

  • 1.1 Create cell file - No Result (warning)
  • 1.2 Applying cell variable to environment - PASS (tick)
  • 1.3 Verify connectivity to cell - PASS (tick)
  • 1.4 Setup server for cluster metadata file - PASS (tick)
  • 1.5 Generate initial metadata file - PASS (tick)
  • 1.6 Starting Mininet - PASS (tick)
  • 1.7 Git checkout and pull master - No Result (warning)
  • 1.8 Copying backup config files - PASS (tick)
  • 1.9 Creating ONOS package - PASS (tick)
  • 1.10 Installing ONOS package - PASS (tick)
  • 1.11 Set up ONOS secure SSH - PASS (tick)
  • 1.12 Checking if ONOS is up yet - PASS (tick)
  • 1.13 Starting ONOS CLI sessions - PASS (tick)
  • 1.14 Checking ONOS nodes - PASS (tick)
  • 1.15 Activate apps defined in the params file - No Result (warning)
  • 1.16 Set ONOS configurations - PASS (tick)
  • 1.17 App Ids check - PASS (tick)

Case 2: Assigning devices to controllers - PASS

Assign switches to ONOS using 'ovs-vsctl' and check that an ONOS node becomes the master of the device.

  • 2.1 Assign switches to controllers - 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 21: Assigning Controller roles for switches - PASS

Check that ONOS is connected to each device. Then manually assign mastership to specific ONOS nodes using 'device-role'

  • 21.1 Assign mastership of switches to specific controllers - PASS (tick)
  • 21.2 Check mastership was correctly assigned - PASS (tick)

Case 3: Adding host Intents - PASS

Discover hosts by using pingall then assign predetermined host-to-host intents. After installation, check that the intent is distributed to all nodes and the state is INSTALLED

  • 3.1 Install reactive forwarding app - PASS (tick)
  • 3.2 Check app ids - PASS (tick)
  • 3.3 Discovering Hosts( Via pingall for now ) - PASS (tick)
  • 3.4 Uninstall reactive forwarding app - PASS (tick)
  • 3.5 Check app ids - PASS (tick)
  • 3.6 Add host intents via cli - PASS (tick)
  • 3.7 Intent Anti-Entropy dispersion - 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 5: Setting up and gathering data for current state - PASS

  • 5.1 Check that each switch has a master - PASS (tick)
  • 5.2 Get the Mastership of each switch from each controller - PASS (tick)
  • 5.3 Check for consistency in roles from each controller - PASS (tick)
  • 5.4 Get the intents from each controller - PASS (tick)
  • 5.5 Check for consistency in Intents from each controller - PASS (tick)
  • 5.6 Get the flows from each controller - PASS (tick)
  • 5.7 Check for consistency in Flows from each controller - PASS (tick)
  • 5.8 Get the OF Table entries - No Result (warning)
  • 5.9 Start continuous pings - No Result (warning)
  • 5.10 Collecting topology information from ONOS - No Result (warning)
  • 5.11 Host view is consistent across ONOS nodes - PASS (tick)
  • 5.12 Each host has an IP address - PASS (tick)
  • 5.13 Cluster view is consistent across ONOS nodes - PASS (tick)
  • 5.14 Cluster view correct across ONOS nodes - PASS (tick)
  • 5.15 Comparing ONOS topology to MN - PASS (tick)
  • 5.16 Device information is correct - PASS (tick)
  • 5.17 Links are correct - PASS (tick)
  • 5.18 Hosts are correct - PASS (tick)

Case 14: Start Leadership Election app - PASS

  • 14.1 Install leadership election app - PASS (tick)
  • 14.2 Run for election on each node - PASS (tick)
  • 14.3 First node was elected leader - PASS (tick)

Case 16: Install Primitives app - PASS

  • 16.1 Install Primitives app - PASS (tick)

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

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

  • 17.1 Increment then get a default counter on each node - 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 a default counter on each node - PASS (tick)
  • 17.6 Get then add 5 to a default counter on each node - PASS (tick)
  • 17.7 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() - PASS (tick)
  • 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: Swap some of the ONOS nodes - FAIL

  • 6.1 Checking ONOS Logs for errors - No Result (warning)
  • 6.2 Generate new metadata file - PASS (tick)
  • 6.3 Start new nodes - PASS (tick)
  • 6.4 Checking if ONOS is up yet - PASS (tick)
  • 6.5 Starting ONOS CLI sessions - PASS (tick)
  • 6.6 Checking ONOS nodes - FAIL (error)
    • Failed to rerun for election
  • 6.7 Reapplying cell variable to environment - PASS (tick)

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

  • 8.1 Comparing ONOS topology to MN topology - FAIL (error)
    • ONOS topology don't match Mininet
  • 8.2 Hosts view is consistent across all ONOS nodes - FAIL (error)
    • ONOS nodes have different views of hosts
  • 8.3 Hosts information is correct - FAIL (error)
    • Host information is incorrect
  • 8.4 Host attachment points to the network - PASS (tick)