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# 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.

"""IPv6 keywords"""

*** Settings ***
| Library | resources.libraries.python.IPv6Util
| Library | resources.libraries.python.IPv6Setup
| Library | resources.libraries.python.TrafficScriptExecutor
| Library | resources.libraries.python.NodePath
| Library | resources.libraries.python.Routing
| Library | resources.libraries.python.InterfaceUtil
| Library | resources.libraries.python.topology.Topology
| Resource | resources/libraries/robot/shared/default.robot
| Resource | resources/libraries/robot/shared/counters.robot
| Documentation | IPv6 keywords

*** Keywords ***
| Send IPv6 icmp echo request to DUT1 ingress inteface and verify answer
| | [Documentation] | Type of the src_node must be TG and dst_node must be DUT
| | [Arguments] | ${tg_node} | ${dut_node} | ${nodes_addr}
| | Append Nodes | ${tg_node} | ${dut_node}
| | Compute Path
| | ${src_port} | ${src_node}= | First Interface
| | ${dst_port} | ${dst_node}= | Last Interface
| | ${src_ip}= | Get Node Port Ipv6 Address | ${src_node} | ${src_port} | ${nodes_addr}
| | ${dst_ip}= | Get Node Port Ipv6 Address | ${dst_node} | ${dst_port} | ${nodes_addr}
| | ${src_mac}= | Get Interface Mac | ${src_node} | ${src_port}
| | ${dst_mac}= | Get Interface Mac | ${dst_node} | ${dst_port}
| | ${src_port_name}= | Get interface name | ${src_node} | ${src_port}
| | ${args}= | Traffic Script Gen Arg | ${src_port_name} | ${src_port_name} | ${src_mac}
| | ... | ${dst_mac} | ${src_ip} | ${dst_ip}
| | Run Traffic Script On Node | icmpv6_echo.py | ${tg_node} | ${args}
| | Vpp Dump Stats Table | ${dst_node}
| | ${ipv6_counter}= | Vpp Get Ipv6 Interface Counter | ${dst_node}
| | ... | ${dst_port}
| | Should Be Equal | ${ipv6_counter} | ${2}
| | ... | #ICMPv6 neighbor advertisement + ICMPv6 echo request

| Execute IPv6 ICMP echo sweep
| | [Documentation] | Type of the src_node must be TG and dst_node must be DUT
| | [Arguments] | ${src_node} | ${dst_node} | ${start_size} | ${end_size}
| | ... | ${step} | ${nodes_addr}
| | Append Nodes | ${src_node} | ${dst_node}
| | Compute Path
| | ${src_port} | ${src_node}= | First Interface
| | ${dst_port} | ${dst_node}= | Last Interface
| | ${src_ip}= | Get Node Port Ipv6 Address | ${src_node} | ${src_port}
| | ... | ${nodes_addr}
| | ${dst_ip}= | Get Node Port Ipv6 Address | ${dst_node} | ${dst_port}
| | ... | ${nodes_addr}
| | ${src_mac}= | Get Interface Mac | ${src_node} | ${src_port}
| | ${dst_mac}= | Get Interface Mac | ${dst_node} | ${dst_port}
| | ${src_port_name}= | Get interface name | ${src_node} | ${src_port}
| | ${args}= | Traffic Script Gen Arg | ${src_port_name} | ${src_port_name}
| | ... | ${src_mac} | ${dst_mac} | ${src_ip} | ${dst_ip}
| | ${args}= | Set Variable
| | ... | ${args} --start_size ${start_size} --end_size ${end_size} --step ${step}
| | Run Traffic Script On Node | ipv6_sweep_ping.py | ${src_node} | ${args}
| | ... | timeout=${180}

| Send IPv6 ICMP echo request to DUT1 egress interface and verify answer
| | [Documentation] | Send traffic from TG to first DUT egress interface
| | [Arguments] | ${tg_node} | ${first_dut} | ${second_dut} | ${nodes_addr}
| | Append Nodes | ${tg_node} | ${first_dut} | ${second_dut}
| | Compute Path
| | ${src_port} | ${src_node}= | First Interface
| | ${dst_port} | ${dst_node}= | Last Egress Interface
| | ${hop_port} | ${hop_node}= | First Ingress Interface
| | ${src_ip}= | Get Node Port Ipv6 Address | ${src_node} | ${src_port} | ${nodes_addr}
| | ${dst_ip}= | Get Node Port Ipv6 Address | ${dst_node} | ${dst_port} | ${nodes_addr}
| | ${src_mac}= | Get Interface Mac | ${src_node} | ${src_port}
| | ${dst_mac}= | Get Interface Mac | ${hop_node} | ${hop_port}
| | ${src_port_name}= | Get interface name | ${src_node} | ${src_port}
| | ${args}= | Traffic Script Gen Arg | ${src_port_name} | ${src_port_name} | ${src_mac}
| | ... | ${dst_mac} | ${src_ip} | ${dst_ip}
| | Run Traffic Script On Node | icmpv6_echo.py | ${tg_node} | ${args}


| Send IPv6 ICMP echo request to DUT2 via DUT1 and verify answer
| | [Documentation] | Send traffic from TG to second DUT through first DUT
| | [Arguments] | ${tg_node} | ${first_dut} | ${second_dut} | ${nodes_addr}
| | Append Nodes | ${tg_node} | ${first_dut} | ${second_dut}
| | Compute Path
| | ${src_port} | ${src_node}= | First Interface
| | ${dst_port} | ${dst_node}= | Last Interface
| | ${hop_port} | ${hop_node}= | First Ingress Interface
| | ${src_ip}= | Get Node Port Ipv6 Address | ${src_node} | ${src_port} | ${nodes_addr}
| | ${dst_ip}= | Get Node Port Ipv6 Address | ${dst_node} | ${dst_port} | ${nodes_addr}
| | ${src_mac}= | Get Interface Mac | ${src_node} | ${src_port}
| | ${dst_mac}= | Get Interface Mac | ${hop_node} | ${hop_port}
| | ${src_port_name}= | Get interface name | ${src_node} | ${src_port}
| | ${args}= | Traffic Script Gen Arg | ${src_port_name} | ${src_port_name} | ${src_mac}
| | ... | ${dst_mac} | ${src_ip} | ${dst_ip}
| | Run Traffic Script On Node | icmpv6_echo.py | ${tg_node} | ${args}

| Send IPv6 ICMP echo request to DUT2 egress interface via DUT1 and verify answer
| | [Documentation] | Send traffic from TG to second DUT egress interface through first DUT
| | [Arguments] | ${tg_node} | ${first_dut} | ${second_dut} | ${nodes_addr}
| | Append Nodes | ${tg_node} | ${first_dut} | ${second_dut} | ${tg_node}
| | Compute Path
| | ${src_port} | ${src_node}= | First Interface
| | ${dst_port} | ${dst_node}= | Last Egress Interface
| | ${hop_port} | ${hop_node}= | First Ingress Interface
| | ${src_ip}= | Get Node Port Ipv6 Address | ${src_node} | ${src_port} | ${nodes_addr}
| | ${dst_ip}= | Get Node Port Ipv6 Address | ${dst_node} | ${dst_port} | ${nodes_addr}
| | ${src_mac}= | Get Interface Mac | ${src_node} | ${src_port}
| | ${dst_mac}= | Get Interface Mac | ${hop_node} | ${hop_port}
| | ${src_port_name}= | Get interface name | ${src_node} | ${src_port}
| | ${args}= | Traffic Script Gen Arg | ${src_port_name} | ${src_port_name} | ${src_mac}
| | ... | ${dst_mac} | ${src_ip} | ${dst_ip}
| | Run Traffic Script On Node | icmpv6_echo.py | ${tg_node} | ${args}

| Ipv6 tg to tg routed
| | [Documentation] | Send traffic from one TG port to another through DUT nodes
| | ... | and send reply back, also verify hop limit processing
| | [Arguments] | ${tg_node} | ${first_dut} | ${second_dut} | ${nodes_addr}
| | Append Nodes | ${tg_node} | ${first_dut} | ${second_dut} | ${tg_node}
| | Compute Path
| | ${src_port} | ${src_node}= | First Interface
| | ${dst_port} | ${dst_node}= | Last Interface
| | ${src_nh_port} | ${src_nh_node}= | First Ingress Interface
| | ${dst_nh_port} | ${dst_nh_node}= | Last Egress Interface
| | ${src_ip}= | Get Node Port Ipv6 Address | ${src_node} | ${src_port} | ${nodes_addr}
| | ${dst_ip}= | Get Node Port Ipv6 Address | ${dst_node} | ${dst_port} | ${nodes_addr}
| | ${src_mac}= | Get Interface Mac | ${src_node} | ${src_port}
| | ${dst_mac}= | Get Interface Mac | ${src_node} | ${dst_port}
| | ${src_nh_mac}= | Get Interface Mac | ${src_nh_node} | ${src_nh_port}
| | ${dst_nh_mac}= | Get Interface Mac | ${dst_nh_node} | ${dst_nh_port}
| | ${src_port_name}= | Get interface name | ${src_node} | ${src_port}
| | ${dst_port_name}= | Get interface name | ${dst_node} | ${dst_port}
| | ${args}= | Traffic Script Gen Arg | ${src_port_name} | ${dst_port_name} | ${src_mac}
| | ... | ${dst_mac} | ${src_ip} | ${dst_ip}
| | ${args}= | Catenate | ${args} | --src_nh_mac ${src_nh_mac}
| | ... | --dst_nh_mac ${dst_nh_mac} | --h_num 2
| | Run Traffic Script On Node | icmpv6_echo_req_resp.py | ${tg_node} | ${args}

| Send IPv6 neighbor solicitation and verify answer
| | [Documentation] | Send IPv6 neighbor solicitation from TG to DUT
| | [Arguments] | ${tg_node} | ${dut_node} | ${nodes_addr}
| | Append Nodes | ${tg_node} | ${dut_node}
| | Compute Path
| | ${src_port} | ${src_node}= | First Interface
| | ${dst_port} | ${dst_node}= | Last Interface
| | ${src_ip}= | Get Node Port Ipv6 Address | ${src_node} | ${src_port} | ${nodes_addr}
| | ${dst_ip}= | Get Node Port Ipv6 Address | ${dst_node} | ${dst_port} | ${nodes_addr}
| | ${src_mac}= | Get Interface Mac | ${src_node} | ${src_port}
| | ${dst_mac}= | Get Interface Mac | ${dst_node} | ${dst_port}
| | ${src_port_name}= | Get interface name | ${src_node} | ${src_port}
| | ${args}= | Traffic Script Gen Arg | ${src_port_name} | ${src_port_name} | ${src_mac}
| | ... | ${dst_mac} | ${src_ip} | ${dst_ip}
| | Run Traffic Script On Node | ipv6_ns.py | ${src_node} | ${args}

| Configure IPv6 on all DUTs in topology
| | [Documentation] | Setup IPv6 address on all DUTs
| | [Arguments] | ${nodes} | ${nodes_addr}
| | Configure all DUTs before test
| | ${interfaces}= | Nodes Set Ipv6 Addresses | ${nodes} | ${nodes_addr}
| | :FOR | ${interface} | IN | @{interfaces}
| | | Set Interface State | @{interface} | up | if_type=name
| | All Vpp Interfaces Ready Wait | ${nodes}

| Suppress ICMPv6 router advertisement message
| | [Documentation] | Suppress ICMPv6 router advertisement message for link scope address
| | [Arguments] | ${nodes}
| | Vpp All Ra Suppress Link Layer | ${nodes}

| Configure IPv6 routing on all DUTs
| | [Documentation] | Setup routing on all VPP nodes required for IPv6 tests
| | [Arguments] | ${nodes} | ${nodes_addr}
| | Append Nodes | ${nodes['DUT1']} | ${nodes['DUT2']}
| | Compute Path
| | ${tg}= | Set Variable | ${nodes['TG']}
| | ${dut1_if} | ${dut1}= | First Interface
| | ${dut2_if} | ${dut2}= | Last Interface
| | ${dut1_if_addr}= | Get Node Port Ipv6 Address | ${dut1} | ${dut1_if} | ${nodes_addr}
| | ${dut2_if_addr}= | Get Node Port Ipv6 Address | ${dut2} | ${dut2_if} | ${nodes_addr}
| | @{tg_dut1_links}= | Get active links connecting "${tg}" and "${dut1}"
| | @{tg_dut2_links}= | Get active links connecting "${tg}" and "${dut2}"
| | :FOR | ${link} | IN | @{tg_dut1_links}
| | | ${net}= | Get Link Address | ${link} | ${nodes_addr}
| | | ${prefix}= | Get Link Prefix | ${link} | ${nodes_addr}
| | | Vpp Route Add | ${dut2} | ${net} | ${prefix} | ${dut1_if_addr} | ${dut2_if}
| | :FOR | ${link} | IN | @{tg_dut2_links}
| | | ${net}= | Get Link Address | ${link} | ${nodes_addr}
| | | ${prefix}= | Get Link Prefix | ${link} | ${nodes_addr}
| | | Vpp Route Add | ${dut1} | ${net} | ${prefix} | ${dut2_if_addr} | ${dut1_if}
">| | No operation | Initialize layer driver | | [Documentation] | | ... | Initialize driver based interfaces on each DUT. Interfaces are | | ... | brought up. | | ... | | ... | *Arguments:* | | ... | - driver - NIC driver used in test [vfio-pci|avf|rdma-core]. | | ... | Type: string | | ... | | ... | *Example:* | | ... | | ... | \| Initialize layer driver \| vfio-pci \| | | ... | | [Arguments] | ${driver} | | ... | | :FOR | ${dut} | IN | @{duts} | | | Run Keyword | Initialize layer ${driver} on node | ${dut} | | Set Test Variable | ${prev_layer} | vf | | Set interfaces in path up | Initialize layer vfio-pci on node | | [Documentation] | | ... | Initialize vfio-pci interfaces on DUT. Currently no operation. | | ... | | ... | *Arguments:* | | ... | - dut - DUT node. Type: string | | ... | | ... | *Example:* | | ... | | ... | \| Initialize layer vfio-pci on node \| DUT1 \| | | ... | | [Arguments] | ${dut} | | ... | | No operation | Initialize layer avf on node | | [Documentation] | | ... | Initialize AVF interfaces on DUT. | | ... | | ... | *Arguments:* | | ... | - dut - DUT node. Type: string | | ... | | ... | *Example:* | | ... | | ... | \| Initialize layer avf on node \| DUT1 \| | | ... | | [Arguments] | ${dut} | | ... | | ${dut_str}= | Convert To Lowercase | ${dut} | | ${if1_vlan}= | Get Interface Vlan | ${nodes['${dut}']} | ${${dut}_if1} | | ${if2_vlan}= | Get Interface Vlan | ${nodes['${dut}']} | ${${dut}_if2} | | Set Test Variable | ${${dut_str}_vlan1} | ${if1_vlan} | | Set Test Variable | ${${dut_str}_vlan2} | ${if2_vlan} | | ${if1_pci}= | Get Interface PCI Addr | ${nodes['${dut}']} | | ... | ${${dut}_if1_vf0} | | ${if2_pci}= | Get Interface PCI Addr | ${nodes['${dut}']} | | ... | ${${dut}_if2_vf0} | | ${dut_new_if1}= | VPP Create AVF Interface | ${nodes['${dut}']} | | ... | ${if1_pci} | ${rxq_count_int} | | ${dut_new_if1_mac}= | Get Interface MAC | ${nodes['${dut}']} | | ... | ${dut_new_if1} | | ${dut_new_if2}= | VPP Create AVF Interface | ${nodes['${dut}']} | | ... | ${if2_pci} | ${rxq_count_int} | | ${dut_new_if2_mac}= | Get Interface MAC | ${nodes['${dut}']} | | ... | ${dut_new_if2} | | Set Test Variable | ${${dut_str}_if1} | ${dut_new_if1} | | Set Test Variable | ${${dut_str}_if2} | ${dut_new_if2} | | Set Test Variable | ${${dut_str}_if1_mac} | ${dut_new_if1_mac} | | Set Test Variable | ${${dut_str}_if2_mac} | ${dut_new_if2_mac} | Initialize layer rdma-core on node | | [Documentation] | | ... | Initialize rdma-core (MLX) interfaces on DUT. | | ... | | ... | *Arguments:* | | ... | - dut - DUT node. Type: string | | ... | | ... | *Example:* | | ... | | ... | \| Initialize layer rdma-core on node \| DUT1 \| | | ... | | [Arguments] | ${dut} | | ... | | ${dut_str}= | Convert To Lowercase | ${dut} | | ${if1_vlan}= | Get Interface Vlan | ${nodes['${dut}']} | ${${dut}_if1} | | ${if2_vlan}= | Get Interface Vlan | ${nodes['${dut}']} | ${${dut}_if2} | | Set Test Variable | ${${dut_str}_vlan1} | ${if1_vlan} | | Set Test Variable | ${${dut_str}_vlan2} | ${if2_vlan} | | ${if1_pci}= | Get Interface PCI Addr | ${nodes['${dut}']} | | ... | ${${dut}_if1} | | ${if2_pci}= | Get Interface PCI Addr | ${nodes['${dut}']} | | ... | ${${dut}_if2} | | ${dut_new_if1}= | VPP Create Rdma Interface | ${nodes['${dut}']} | | ... | ${if1_pci} | ${rxq_count_int} | | ${dut_new_if1_mac}= | Get Interface MAC | ${nodes['${dut}']} | | ... | ${dut_new_if1} | | ${dut_new_if2}= | VPP Create Rdma Interface | ${nodes['${dut}']} | | ... | ${if2_pci} | ${rxq_count_int} | | ${dut_new_if2_mac}= | Get Interface MAC | ${nodes['${dut}']} | | ... | ${dut_new_if2} | | Set Test Variable | ${${dut_str}_if1} | ${dut_new_if1} | | Set Test Variable | ${${dut_str}_if2} | ${dut_new_if2} | | Set Test Variable | ${${dut_str}_if1_mac} | ${dut_new_if1_mac} | | Set Test Variable | ${${dut_str}_if2_mac} | ${dut_new_if2_mac} | Initialize layer bonding on node | | [Documentation] | | ... | Bonded interface and variables to be created on across east and | | ... | west DUT's node interfaces. | | ... | | ... | *Arguments:* | | ... | - dut - DUT node. Type: string | | ... | - bond_mode - Link bonding mode. Type: string | | ... | - lb_mode - Load balance mode. Type: string | | ... | - count - Number of bond interface variables. Type: integer | | ... | | ... | *Example:* | | ... | | ... | \| Initialize layer bonding on node \| DUT1 \| xor \| l34 \| 1 \| | | ... | | [Arguments] | ${dut} | ${bond_mode}=xor | ${lb_mode}=l34 | ${count}=${1} | | ... | | ${dut_str}= | Convert To Lowercase | ${dut} | | ${if_index}= | VPP Create Bond Interface | | ... | ${nodes['${dut}']} | ${bond_mode} | load_balance=${lb_mode} | | ... | mac=00:00:00:01:01:01 | | Set Interface State | ${nodes['${dut}']} | ${if_index} | up | | VPP Enslave Physical Interface | | ... | ${nodes['${dut}']} | ${${dut_str}_${prev_layer}_1_1} | ${if_index} | | VPP Enslave Physical Interface | | ... | ${nodes['${dut}']} | ${${dut_str}_${prev_layer}_1_2} | ${if_index} | | :FOR | ${id} | IN RANGE | 1 | ${count} + 1 | | | Set Test Variable | ${${dut_str}_bond_${id}_1} | ${if_index} | | | Set Test Variable | ${${dut_str}_bond_${id}_2} | ${if_index} | Initialize layer bonding | | [Documentation] | | ... | Bonded interfaces and variables to be created on all DUT's interfaces. | | ... | | ... | *Arguments:* | | ... | - bond_mode - Link bonding mode. Type: string | | ... | - lb_mode - Load balance mode. Type: string | | ... | - count - Number of bond interface variables. Type: integer | | ... | | ... | *Example:* | | ... | | ... | \| Initialize layer bonding \| xor \| l34 \| 1 \| | | ... | | [Arguments] | ${bond_mode}=xor | ${lb_mode}=l34 | ${count}=${1} | | ... | | :FOR | ${dut} | IN | @{duts} | | | Initialize layer bonding on node | | | ... | ${dut} | bond_mode=${bond_mode} | lb_mode=${lb_mode} | | | ... | count=${count} | | Set Test Variable | ${prev_layer} | bond | Initialize layer dot1q on node for chain | | [Documentation] | | ... | Optionally create tag popping subinterface per chain. | | ... | Return interface indices for dot1q layer interfaces, | | ... | or Nones if subinterfaces are not created. | | ... | | ... | *Arguments:* | | ... | - dut - DUT node. Type: string | | ... | - id - Positive index of the chain. Type: integer | | ... | - vlan_per_chain - Whether to create vlan subinterface for each chain. | | ... | Type: boolean | | ... | | ... | *Example:* | | ... | | ... | \| Initialize layer dot1q on node for chain \| DUT1 \| 1 \| True \| | | ... | | [Arguments] | ${dut} | ${id} | ${vlan_per_chain}=${True} | | ... | | ${dut_str}= | Convert To Lowercase | ${dut} | | Return From Keyword If | ${id} != ${1} and not ${vlan_per_chain} | | ... | ${NONE} | ${NONE} | | # TODO: Is it worth creating Get Variable Value If Not None keyword? | | ${default}= | Evaluate | ${100} + ${id} - ${1} | | ${if1_vlan}= | Get Variable Value | \${${dut_str}_vlan1} | | ${if1_vlan}= | Set Variable If | '${if1_vlan}' != '${NONE}' | | ... | ${if1_vlan} | ${default} | | ${default}= | Evaluate | ${200} + ${id} - ${1} | | ${if2_vlan}= | Get Variable Value | \${${dut_str}_vlan2} | | ${if2_vlan}= | Set Variable If | '${if2_vlan}' != '${NONE}' | | ... | ${if2_vlan} | ${default} | | ${if1_name} | ${if1_index}= | Create Vlan Subinterface | | ... | ${nodes['${dut}']} | ${${dut_str}_${prev_layer}_${id}_1} | | ... | ${if1_vlan} | | ${if2_name} | ${if2_index}= | Create Vlan Subinterface | | ... | ${nodes['${dut}']} | ${${dut_str}_${prev_layer}_${id}_2} | | ... | ${if2_vlan} | | Set Interface State | ${nodes['${dut}']} | ${if1_index} | up | | Set Interface State | ${nodes['${dut}']} | ${if2_index} | up | | Configure L2 tag rewrite method on interfaces | | ... | ${nodes['${dut}']} | ${if1_index} | TAG_REWRITE_METHOD=pop-1 | | Configure L2 tag rewrite method on interfaces | | ... | ${nodes['${dut}']} | ${if2_index} | TAG_REWRITE_METHOD=pop-1 | | Return From Keyword | ${if1_index} | ${if2_index} | Initialize layer dot1q on node | | [Documentation] | | ... | Dot1q interfaces and variables to be created on all DUT's node | | ... | interfaces. | | ... | | ... | TODO: Unify names for number of chains/pipelines/instances/interfaces. | | ... | Chose names and descriptions that makes sense for both | | ... | nf_density and older tests. | | ... | Note that with vlan_per_chain=False it is not a number of interfaces. | | ... | At least not number of real interfaces, just number of aliases. | | ... | This TODO applies also to all keywords with nf_chains argument. | | ... | | ... | *Arguments:* | | ... | - dut - DUT node. Type: string | | ... | - count - Number of chains. Type: integer | | ... | - vlan_per_chain - Whether to create vlan subinterface for each chain. | | ... | Type: boolean | | ... | - start - Id of first chain, allows adding chains during test. | | ... | Type: integer | | ... | | ... | *Example:* | | ... | | ... | \| Initialize layer dot1q on node \| DUT1 \| 3 \| True \| 2 \| | | ... | | [Arguments] | ${dut} | ${count}=${1} | ${vlan_per_chain}=${True} | | ... | ${start}=${1} | | ... | | ${dut_str}= | Convert To Lowercase | ${dut} | | :FOR | ${id} | IN RANGE | ${start} | ${count} + 1 | | | ${if1_index} | ${if2_index}= | Initialize layer dot1q on node for chain | | | ... | dut=${dut} | id=${id} | vlan_per_chain=${vlan_per_chain} | | | # First id results in non-None indices, after that _1_ are defined. | | | ${if1_index}= | Set Variable If | '${if1_index}' == '${NONE}' | | | ... | ${${dut_str}_dot1q_1_1} | ${if1_index} | | | ${if2_index}= | Set Variable If | '${if2_index}' == '${NONE}' | | | ... | ${${dut_str}_dot1q_1_2} | ${if2_index} | | | Set Test Variable | ${${dut_str}_dot1q_${id}_1} | ${if1_index} | | | Set Test Variable | ${${dut_str}_dot1q_${id}_2} | ${if2_index} | Initialize layer dot1q | | [Documentation] | | ... | Dot1q interfaces and variables to be created on all DUT's interfaces. | | ... | | ... | *Arguments:* | | ... | - count - Number of chains. Type: integer | | ... | - vlan_per_chain - Whether to create vlan subinterface for each chain. | | ... | Type: boolean | | ... | - start - Id of first chain, allows adding chains during test. | | ... | Type: integer | | ... | | ... | \| Initialize layer dot1q \| 3 \| True \| 2 \| | | ... | | [Arguments] | ${count}=${1} | ${vlan_per_chain}=${True} | ${start}=${1} | | ... | | :FOR | ${dut} | IN | @{duts} | | | Initialize layer dot1q on node | ${dut} | count=${count} | | | ... | vlan_per_chain=${vlan_per_chain} | start=${start} | | Set Test Variable | ${prev_layer} | dot1q | Initialize layer ip4vxlan on node | | [Documentation] | | ... | Setup VXLANoIPv4 between TG and DUTs and DUT to DUT by connecting | | ... | physical and vxlan interfaces on each DUT. All interfaces are brought | | ... | up. IPv4 addresses with prefix /24 are configured on interfaces | | ... | towards TG. VXLAN sub-interfaces has same IPv4 address as interfaces. | | ... | | ... | *Arguments:* | | ... | - dut - DUT node. Type: string | | ... | - count - Number of vxlan interfaces. Type: integer | | ... | - start - Id of first chain, allows adding chains during test. | | ... | Type: integer | | ... | | ... | *Example:* | | ... | | ... | \| Initialize layer ip4vxlan on node \| DUT1 \| 3 \| 2 \| | | ... | | [Arguments] | ${dut} | ${count}=${1} | ${start}=${1} | | ... | | ${dut_str}= | Convert To Lowercase | ${dut} | | Run Keyword If | "${start}" == "1" | VPP Interface Set IP Address | | ... | ${nodes['${dut}']} | ${${dut_str}_${prev_layer}_1_1} | | ... | 172.16.0.1 | 24 | | Run Keyword If | "${start}" == "1" | VPP Interface Set IP Address | | ... | ${nodes['${dut}']} | ${${dut_str}_${prev_layer}_1_2} | | ... | 172.26.0.1 | 24 | | :FOR | ${id} | IN RANGE | ${start} | ${count} + 1 | | | ${subnet}= | Evaluate | ${id} - 1 | | | ${vni}= | Evaluate | ${id} - 1 | | | ${ip4vxlan_1}= | Create VXLAN interface | | | ... | ${nodes['${dut}']} | ${vni} | 172.16.0.1 | 172.17.${subnet}.2 | | | ${ip4vxlan_2}= | Create VXLAN interface | | | ... | ${nodes['${dut}']} | ${vni} | 172.26.0.1 | 172.27.${subnet}.2 | | | ${prev_mac}= | Set Variable If | '${dut}' == 'DUT1' | | | ... | ${tg_if1_mac} | ${dut1_if2_mac} | | | ${next_mac}= | Set Variable If | '${dut}' == 'DUT1' and ${duts_count} == 2 | | | ... | ${dut2_if1_mac} | ${tg_if2_mac} | | | VPP Add IP Neighbor | | | ... | ${nodes['${dut}']} | ${${dut_str}_${prev_layer}_${id}_1} | | | ... | 172.16.${subnet}.2 | ${prev_mac} | | | VPP Add IP Neighbor | | | ... | ${nodes['${dut}']} | ${${dut_str}_${prev_layer}_${id}_2} | | | ... | 172.26.${subnet}.2 | ${next_mac} | | | VPP Route Add | | | ... | ${nodes['${dut}']} | 172.17.${subnet}.0 | 24 | | | ... | gateway=172.16.${subnet}.2 | | | ... | interface=${${dut_str}_${prev_layer}_${id}_1} | | | VPP Route Add | | | ... | ${nodes['${dut}']} | 172.27.${subnet}.0 | 24 | | | ... | gateway=172.26.${subnet}.2 | | | ... | interface=${${dut_str}_${prev_layer}_${id}_2} | | | Set VXLAN Bypass | | | ... | ${nodes['${dut}']} | ${${dut_str}_${prev_layer}_${id}_1} | | | Set VXLAN Bypass | | | ... | ${nodes['${dut}']} | ${${dut_str}_${prev_layer}_${id}_2} | | | Set Test Variable | | | ... | ${${dut_str}_ip4vxlan_${id}_1} | ${ip4vxlan_1} | | | Set Test Variable | | | ... | ${${dut_str}_ip4vxlan_${id}_2} | ${ip4vxlan_2} | Initialize layer ip4vxlan | | [Documentation] | | ... | VXLAN interfaces and variables to be created on all DUT's interfaces. | | ... | | ... | *Arguments:* | | ... | - count - Number of vxlan interfaces. Type: integer | | ... | - start - Id of first chain, allows adding chains during test. | | ... | Type: integer | | ... | | ... | \| Initialize layer ip4vxlan \| 3 \| 2 \| | | ... | | [Arguments] | ${count}=${1} | ${start}=${1} | | ... | | :FOR | ${dut} | IN | @{duts} | | | Initialize layer ip4vxlan on node | ${dut} | count=${count} | | ... | start=${start} | | Set Test Variable | ${prev_layer} | ip4vxlan | Configure vhost interfaces | | [Documentation] | | ... | Create two Vhost-User interfaces on defined VPP node. | | ... | | ... | *Arguments:* | | ... | - ${dut_node} - DUT node. Type: dictionary | | ... | - ${sock1} - Socket path for first Vhost-User interface. Type: string | | ... | - ${sock2} - Socket path for second Vhost-User interface. Type: string | | ... | - ${vhost_if1} - Name of the first Vhost-User interface (Optional). | | ... | Type: string | | ... | - ${vhost_if2} - Name of the second Vhost-User interface (Optional). | | ... | Type: string | | ... | | ... | _NOTE:_ This KW sets following test case variable: | | ... | - ${${vhost_if1}} - First Vhost-User interface. | | ... | - ${${vhost_if2}} - Second Vhost-User interface. | | ... | | ... | *Example:* | | ... | | ... | \| Configure vhost interfaces \ | | ... | \| ${nodes['DUT1']} \| /tmp/sock1 \| /tmp/sock2 \| | | ... | \| Configure vhost interfaces \ | | ... | \| ${nodes['DUT2']} \| /tmp/sock1 \| /tmp/sock2 \| dut2_vhost_if1 \ | | ... | \| dut2_vhost_if2 \| | | ... | | [Arguments] | ${dut_node} | ${sock1} | ${sock2} | ${vhost_if1}=vhost_if1 | | ... | ${vhost_if2}=vhost_if2 | | ... | | ${vhost_1}= | Vpp Create Vhost User Interface | ${dut_node} | ${sock1} | | ${vhost_2}= | Vpp Create Vhost User Interface | ${dut_node} | ${sock2} | | ${vhost_1_key}= | Get Interface By SW Index | ${dut_node} | ${vhost_1} | | ${vhost_2_key}= | Get Interface By SW Index | ${dut_node} | ${vhost_2} | | ${vhost_1_mac}= | Get Interface MAC | ${dut_node} | ${vhost_1_key} | | ${vhost_2_mac}= | Get Interface MAC | ${dut_node} | ${vhost_2_key} | | Set Interface State | ${dut_node} | ${vhost_1} | up | | Set Interface State | ${dut_node} | ${vhost_2} | up | | Set Test Variable | ${${vhost_if1}} | ${vhost_1} | | Set Test Variable | ${${vhost_if2}} | ${vhost_2} | | Set Test Variable | ${${vhost_if1}_mac} | ${vhost_1_mac} | | Set Test Variable | ${${vhost_if2}_mac} | ${vhost_2_mac}