HAfullNetPartition at 08 Apr 2019 06:30:37

<img src="https://jenkins.onosproject.org/view/QA/job/postjob-VM/lastSuccessfulBuild/artifact/HAfullNetPartition_onos-2.0_20-builds_graph.jpg", alt="HAfullNetPartition", style="width:525px;height:350px;border:0">
commit 1b3a008de49f902131f15174439f89b86832e73e (HEAD -] onos-2.0, origin/onos-2.0)
Author: Andrea Campanella [andrea@opennetworking.org]
AuthorDate: Fri Apr 5 09:54:12 2019 +0200
Commit: Andrea Campanella [andrea@opennetworking.org]
CommitDate: Mon Apr 8 07:19:38 2019 +0000

Fixing port discovery in REST provider
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(cherry picked from commit e288e5b5087d8061988efff5dfddab4f2ae99955)

Case 1: Constructing test variables and building ONOS package - PASS

For loading from params file, and pull and build the latest ONOS package

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.

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

Compare topology objects between Mininet and ONOS

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'

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

Compare topology objects between Mininet and ONOS

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

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

Case 5: Setting up and gathering data for current state - PASS

Case 14: Start Leadership Election app - PASS

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

Case 16: Install Primitives app - PASS

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

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

Case 61: Partition ONOS nodes into two distinct partitions - PASS

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

Compare topology objects between Mininet and ONOS

Case 7: Running ONOS Constant State Tests - PASS

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

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

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

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

Case 62: Healing Partition - PASS

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

Compare topology objects between Mininet and ONOS

Case 7: Running ONOS Constant State Tests - FAIL

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

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

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

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

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

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

Compare topology objects between Mininet and ONOS

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

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

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

Compare topology objects between Mininet and ONOS

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

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

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

Compare topology objects between Mininet and ONOS

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

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

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

Compare topology objects between Mininet and ONOS

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

Case 13: Test Cleanup - PASS