[WARNING]: Could not match supplied host pattern, ignoring: unprovisioned PLAY [Deploy initial device configuration] ************************************* TASK [Set variables that cannot be set with VARS] ****************************** ok: [dut] ok: [h1] ok: [h2] ok: [h3] ok: [h4] TASK [Find device readiness script] ******************************************** ok: [dut] ok: [h1] ok: [h2] ok: [h3] ok: [h4] TASK [Wait for device to become ready] ***************************************** skipping: [dut] skipping: [h1] skipping: [h2] skipping: [h3] skipping: [h4] TASK [Deploy initial configuration] ******************************************** included: /home/pipi/net101/tools/netsim/ansible/tasks/deploy-module.yml for dut, h1, h2, h3, h4 TASK [Figure out whether to deploy the module initial on current device] ******* ok: [dut] ok: [h1] ok: [h2] ok: [h3] ok: [h4] TASK [Find configuration template for initial] ********************************* ok: [dut] ok: [h1] ok: [h2] ok: [h4] ok: [h3] TASK [Print deployed configuration when running in verbose mode] *************** ok: [dut] => msg: |- initial configuration for dut ========================================= - set: system: hostname: dut interface: eth0: ip: vrf: mgmt address: dhcp: {} type: eth swp1: type: swp link: mtu: 1500 state: up: {} description: "dut -> h1 [stub]" ip: address: 2001:db8:2::5/64: {} ipv6: forward: on neighbor-discovery: enable: on router-advertisement: enable: on interval: 5000 swp2: type: swp link: mtu: 1500 state: up: {} description: "dut -> h2 [stub]" ip: address: 2001:db8:2:1::5/64: {} ipv6: forward: on neighbor-discovery: enable: on router-advertisement: enable: on interval: 5000 swp3: type: swp link: mtu: 1500 state: up: {} description: "dut -> h3 [stub]" ip: address: 2001:db8:2:2::5/64: {} ipv6: forward: on neighbor-discovery: enable: on router-advertisement: enable: on interval: 5000 swp4: type: swp link: mtu: 1500 state: up: {} description: "dut -> h4 [stub]" ip: address: 2001:db8:2:3::5/64: {} ipv6: forward: on neighbor-discovery: enable: on router-advertisement: enable: on interval: 5000 - set: interface: lo: type: loopback ip: address: 127.0.0.1/8: {} 2001:db8:1:5::1/64: {} ok: [h1] => msg: |- initial configuration for h1 ========================================= #!/bin/bash # # This script contains the 'ip' commands needed to set up container # interfaces and route table. It's executed within the container # network namespace on the container host. # # /etc/hosts file is generated as a clab bind. # set -e ### One-Shot configuration (non-Ubuntu VM or container) # # Disable IPv4 and IPv6 forwarding # sysctl -w net.ipv4.ip_forward=0 sysctl -w net.ipv6.conf.all.forwarding=0 # # Interface addressing # ip link set dev eth1 up sysctl -w net.ipv6.conf.eth1.disable_ipv6=0 set +e ip -6 addr del 2001:db8:2::1/64 dev eth1 2>/dev/null set -e ip -6 addr add 2001:db8:2::1/64 dev eth1 ip link set eth1 mtu 1500 # # Add routes to IPv4 address pools pointing to the first neighbor on the first link # # If you need anything better, use FRR instead of Linux and start routing (or use IPv6) # # # Print the final routing table ip route ok: [h2] => msg: |- initial configuration for h2 ========================================= #!/bin/bash # # This script contains the 'ip' commands needed to set up container # interfaces and route table. It's executed within the container # network namespace on the container host. # # /etc/hosts file is generated as a clab bind. # set -e ### One-Shot configuration (non-Ubuntu VM or container) # # Disable IPv4 and IPv6 forwarding # sysctl -w net.ipv4.ip_forward=0 sysctl -w net.ipv6.conf.all.forwarding=0 # # Interface addressing # ip link set dev eth1 up sysctl -w net.ipv6.conf.eth1.disable_ipv6=0 set +e ip -6 addr del 2001:db8:2:1::2/64 dev eth1 2>/dev/null set -e ip -6 addr add 2001:db8:2:1::2/64 dev eth1 ip link set eth1 mtu 1500 # # Add routes to IPv4 address pools pointing to the first neighbor on the first link # # If you need anything better, use FRR instead of Linux and start routing (or use IPv6) # # # Print the final routing table ip route ok: [h3] => msg: |- initial configuration for h3 ========================================= #!/bin/bash # # This script contains the 'ip' commands needed to set up container # interfaces and route table. It's executed within the container # network namespace on the container host. # # /etc/hosts file is generated as a clab bind. # set -e ### One-Shot configuration (non-Ubuntu VM or container) # # Disable IPv4 and IPv6 forwarding # sysctl -w net.ipv4.ip_forward=0 sysctl -w net.ipv6.conf.all.forwarding=0 # # Interface addressing # ip link set dev eth1 up sysctl -w net.ipv6.conf.eth1.disable_ipv6=0 set +e ip -6 addr del 2001:db8:2:2::3/64 dev eth1 2>/dev/null set -e ip -6 addr add 2001:db8:2:2::3/64 dev eth1 ip link set eth1 mtu 1500 # # Add routes to IPv4 address pools pointing to the first neighbor on the first link # # If you need anything better, use FRR instead of Linux and start routing (or use IPv6) # # # Print the final routing table ip route ok: [h4] => msg: |- initial configuration for h4 ========================================= #!/bin/bash # # This script contains the 'ip' commands needed to set up container # interfaces and route table. It's executed within the container # network namespace on the container host. # # /etc/hosts file is generated as a clab bind. # set -e ### One-Shot configuration (non-Ubuntu VM or container) # # Disable IPv4 and IPv6 forwarding # sysctl -w net.ipv4.ip_forward=0 sysctl -w net.ipv6.conf.all.forwarding=0 # # Interface addressing # ip link set dev eth1 up sysctl -w net.ipv6.conf.eth1.disable_ipv6=0 set +e ip -6 addr del 2001:db8:2:3::4/64 dev eth1 2>/dev/null set -e ip -6 addr add 2001:db8:2:3::4/64 dev eth1 ip link set eth1 mtu 1500 # # Add routes to IPv4 address pools pointing to the first neighbor on the first link # # If you need anything better, use FRR instead of Linux and start routing (or use IPv6) # # # Print the final routing table ip route TASK [Find configuration deployment deploy_script for initial] ***************** ok: [dut] ok: [h1] ok: [h2] ok: [h3] ok: [h4] TASK [Deploy initial configuration] ******************************************** included: /home/pipi/net101/tools/netsim/ansible/tasks/deploy-config/cumulus_nvue.yml for dut included: /home/pipi/net101/tools/netsim/ansible/tasks/linux/initial-clab.yml for h1, h2, h3, h4 TASK [set_fact] **************************************************************** ok: [dut] TASK [copy the cumulus nvue YAML initial config file to switch (generated from /home/pipi/net101/tools/netsim/ansible/templates/initial/cumulus_nvue.j2)] *** changed: [dut] TASK [Wait for nvued to start] ************************************************* ok: [dut] TASK [set_fact] **************************************************************** ok: [dut] TASK [execute on cumulus: 'nv config patch' for initial config] **************** changed: [dut] TASK [execute on cumulus: 'nv config apply -y' for initial config] ************* changed: [dut] TASK [set_fact] **************************************************************** ok: [h1] ok: [h2] ok: [h3] ok: [h4] TASK [Create initial container setup from /home/pipi/net101/tools/netsim/ansible/templates/initial/linux-clab.j2] *** changed: [h1 -> localhost] changed: [h2 -> localhost] changed: [h4 -> localhost] changed: [h3 -> localhost] TASK [Initial container configuration via /tmp/config-ssQhRgUr-h1.sh] ********** changed: [h1 -> localhost] changed: [h2 -> localhost] changed: [h3 -> localhost] changed: [h4 -> localhost] TASK [file] ******************************************************************** changed: [h3 -> localhost] changed: [h1 -> localhost] changed: [h4 -> localhost] changed: [h2 -> localhost] PLAY [Deploy module-specific configurations] *********************************** TASK [Set variables that cannot be set with VARS] ****************************** ok: [dut] TASK [Deploy individual configuration modules] ********************************* included: /home/pipi/net101/tools/netsim/ansible/tasks/deploy-module.yml for dut => (item=vrf) TASK [Figure out whether to deploy the module vrf on current device] *********** ok: [dut] TASK [Find configuration template for vrf] ************************************* ok: [dut] TASK [Print deployed configuration when running in verbose mode] *************** ok: [dut] => msg: |- vrf configuration for dut ========================================= - set: vrf: blue: table: auto red: table: auto - set: interface: swp1: ip: vrf: red - set: interface: swp2: ip: vrf: red - set: interface: swp3: ip: vrf: blue - set: interface: swp4: ip: vrf: blue - set: vrf: red: loopback: ip: address: 2001:db8:c001:cafe::1/64: {} - set: vrf: blue: loopback: ip: address: 2001:db8:c001:cafe::1/64: {} TASK [Find configuration deployment deploy_script for vrf] ********************* ok: [dut] TASK [Deploy vrf configuration] ************************************************ included: /home/pipi/net101/tools/netsim/ansible/tasks/deploy-config/cumulus_nvue.yml for dut TASK [set_fact] **************************************************************** ok: [dut] TASK [copy the cumulus nvue YAML vrf config file to switch (generated from /home/pipi/net101/tools/netsim/ansible/templates/vrf/cumulus_nvue.j2)] *** changed: [dut] TASK [Wait for nvued to start] ************************************************* skipping: [dut] TASK [set_fact] **************************************************************** ok: [dut] TASK [execute on cumulus: 'nv config patch' for vrf config] ******************** changed: [dut] TASK [execute on cumulus: 'nv config apply -y' for vrf config] ***************** changed: [dut] PLAY [Deploy custom deployment templates] ************************************** skipping: no hosts matched PLAY RECAP ********************************************************************* dut : ok=26 changed=6 unreachable=0 failed=0 skipped=2 rescued=0 ignored=0 h1 : ok=12 changed=3 unreachable=0 failed=0 skipped=1 rescued=0 ignored=0 h2 : ok=12 changed=3 unreachable=0 failed=0 skipped=1 rescued=0 ignored=0 h3 : ok=12 changed=3 unreachable=0 failed=0 skipped=1 rescued=0 ignored=0 h4 : ok=12 changed=3 unreachable=0 failed=0 skipped=1 rescued=0 ignored=0 The device under test has two VRFs with two interfaces in each VRF. Each VRF has a loopback interface. * h1 and h2 should be able to ping each other and the VRF loopback interface * h3 and h4 should be able to ping each other and the VRF loopback interface * h1 should not be able to reach h3