Bridge domain tests and user keywords refactor.
[csit.git] / tests / suites / bridge_domain / test.robot
diff --git a/tests/suites/bridge_domain/test.robot b/tests/suites/bridge_domain/test.robot
deleted file mode 100644 (file)
index a2cf0c0..0000000
+++ /dev/null
@@ -1,71 +0,0 @@
-# Copyright (c) 2016 Cisco and/or its affiliates.
-# Licensed under the Apache License, Version 2.0 (the "License");
-# you may not use this file except in compliance with the License.
-# You may obtain a copy of the License at:
-#
-#     http://www.apache.org/licenses/LICENSE-2.0
-#
-# Unless required by applicable law or agreed to in writing, software
-# distributed under the License is distributed on an "AS IS" BASIS,
-# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
-# See the License for the specific language governing permissions and
-# limitations under the License.
-
-*** Settings ***
-| Resource | resources/libraries/robot/default.robot
-| Resource | resources/libraries/robot/interfaces.robot
-| Resource | resources/libraries/robot/bridge_domain.robot
-| Resource | resources/libraries/robot/l2_traffic.robot
-| Library | resources.libraries.python.NodePath
-| Force Tags | HW_ENV | VM_ENV
-| Suite Setup | Setup all TGs before traffic script
-| Test Setup | Setup all DUTs before test
-
-*** Test Cases ***
-| VPP reports interfaces
-| | [Tags] | 3_NODE_DOUBLE_LINK_TOPO | 3_NODE_SINGLE_LINK_TOPO
-| | VPP reports interfaces on | ${nodes['DUT1']}
-
-| Vpp forwards packets via L2 bridge domain 2 ports
-| | [Tags] | 3_NODE_DOUBLE_LINK_TOPO
-| | Append Nodes | ${nodes['TG']} | ${nodes['DUT1']} | ${nodes['TG']}
-| | Compute Path | always_same_link=${FALSE}
-| | ${tg_if1} | ${tmp}= | First Interface
-| | ${tg_if2} | ${tmp}= | Last Interface
-| | ${bd_if1} | ${tmp}= | First Ingress Interface
-| | ${bd_if2} | ${tmp}= | Last Egress Interface
-| | Vpp l2bd forwarding setup | ${nodes['DUT1']} | ${bd_if1} | ${bd_if2}
-| | Send and receive ICMPv4 bidirectionally | ${nodes['TG']} | ${tg_if1} | ${tg_if2}
-
-| Vpp forwards packets via L2 bridge domain in circular topology
-| | [Tags] | 3_NODE_SINGLE_LINK_TOPO
-| | Append Nodes | ${nodes['TG']} | ${nodes['DUT1']} | ${nodes['DUT2']}
-| | ...          | ${nodes['TG']}
-| | Compute Path
-| | ${tg_if1} | ${tg}= | Next Interface
-| | ${dut1_if1} | ${dut1}= | Next Interface
-| | ${dut1_if2} | ${dut1}= | Next Interface
-| | ${dut2_if1} | ${dut2}= | Next Interface
-| | ${dut2_if2} | ${dut2}= | Next Interface
-| | ${tg_if2} | ${tg}= | Next Interface
-| | Vpp l2bd forwarding setup | ${dut1} | ${dut1_if1} | ${dut1_if2}
-| | Vpp l2bd forwarding setup | ${dut2} | ${dut2_if1} | ${dut2_if2}
-| | Send and receive ICMPv4 bidirectionally | ${tg} | ${tg_if1} | ${tg_if2}
-
-| Vpp forwards packets via L2 bridge domain in circular topology with static L2FIB entries
-| | [Tags] | 3_NODE_SINGLE_LINK_TOPO
-| | Append Nodes | ${nodes['TG']} | ${nodes['DUT1']} | ${nodes['DUT2']}
-| | ...          | ${nodes['TG']}
-| | Compute Path
-| | ${tg_if1} | ${tg}= | Next Interface
-| | ${dut1_if1} | ${dut1}= | Next Interface
-| | ${dut1_if2} | ${dut1}= | Next Interface
-| | ${dut2_if1} | ${dut2}= | Next Interface
-| | ${dut2_if2} | ${dut2}= | Next Interface
-| | ${tg_if2} | ${tg}= | Next Interface
-| | ${mac}= | Get Interface Mac | ${tg} | ${tg_if2}
-| | Vpp l2bd forwarding setup | ${dut1} | ${dut1_if1} | ${dut1_if2} | ${FALSE}
-| | ...                       | ${mac}
-| | Vpp l2bd forwarding setup | ${dut2} | ${dut2_if1} | ${dut2_if2} | ${FALSE}
-| | ...                       | ${mac}
-| | Send and receive ICMPv4 bidirectionally | ${tg} | ${tg_if1} | ${tg_if2}