mirror of https://github.com/k3s-io/k3s
Add a e2e test that runs some demo WebAssembly applications using the dedicated containerd shims. Note: this is not an integration test because we need to install some binaries (the special containerd shims) on the host. Signed-off-by: Flavio Castelli <fcastelli@suse.com>pull/9648/head
parent
64e4f0e6e7
commit
f82d438f39
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apiVersion: apps/v1
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kind: Deployment
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metadata:
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name: wasm-slight
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namespace: default
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spec:
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replicas: 1
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selector:
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matchLabels:
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app: wasm-slight
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template:
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metadata:
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labels:
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app: wasm-slight
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spec:
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runtimeClassName: slight
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containers:
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- name: slight-hello
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image: ghcr.io/deislabs/containerd-wasm-shims/examples/slight-rust-hello:v0.9.1
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command: ["/"]
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resources:
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limits:
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cpu: 100m
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memory: 128Mi
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requests:
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cpu: 100m
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memory: 128Mi
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---
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apiVersion: apps/v1
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kind: Deployment
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metadata:
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name: wasm-spin
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namespace: default
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spec:
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replicas: 1
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selector:
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matchLabels:
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app: wasm-spin
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template:
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metadata:
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labels:
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app: wasm-spin
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spec:
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runtimeClassName: spin
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containers:
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- name: spin-hello
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image: ghcr.io/deislabs/containerd-wasm-shims/examples/spin-rust-hello:v0.11.1
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command: ["/"]
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resources:
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limits:
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cpu: 100m
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memory: 128Mi
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requests:
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cpu: 100m
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memory: 128Mi
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---
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# create a traefik middleware
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apiVersion: traefik.containo.us/v1alpha1
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kind: Middleware
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metadata:
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name: strip-prefix
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namespace: default
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spec:
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stripPrefix:
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forceSlash: false
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prefixes:
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- /spin
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- /slight
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---
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# define the slight service
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apiVersion: v1
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kind: Service
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metadata:
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name: wasm-slight
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namespace: default
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spec:
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ports:
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- protocol: TCP
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port: 80
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targetPort: 3000
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selector:
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app: wasm-slight
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---
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# define the spin service
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apiVersion: v1
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kind: Service
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metadata:
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name: wasm-spin
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namespace: default
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spec:
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ports:
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- protocol: TCP
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port: 80
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targetPort: 80
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selector:
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app: wasm-spin
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---
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# define a single ingress, that exposes both services
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# using a path route
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apiVersion: networking.k8s.io/v1
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kind: Ingress
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metadata:
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name: ingress
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namespace: default
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annotations:
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ingress.kubernetes.io/ssl-redirect: "false"
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kubernetes.io/ingress.class: traefik
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traefik.ingress.kubernetes.io/router.middlewares: default-strip-prefix@kubernetescrd
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spec:
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rules:
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- http:
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paths:
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- path: /slight
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pathType: Prefix
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backend:
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service:
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name: wasm-slight
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port:
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number: 80
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- path: /spin
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pathType: Prefix
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backend:
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service:
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name: wasm-spin
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port:
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number: 80
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@ -0,0 +1,96 @@
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ENV['VAGRANT_NO_PARALLEL'] = 'no'
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NODE_ROLES = (ENV['E2E_NODE_ROLES'] ||
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["server-0"])
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NODE_BOXES = (ENV['E2E_NODE_BOXES'] ||
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['generic/ubuntu2004'])
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GITHUB_BRANCH = (ENV['E2E_GITHUB_BRANCH'] || "master")
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RELEASE_VERSION = (ENV['E2E_RELEASE_VERSION'] || "")
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GOCOVER = (ENV['E2E_GOCOVER'] || "")
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NODE_CPUS = (ENV['E2E_NODE_CPUS'] || 2).to_i
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NODE_MEMORY = (ENV['E2E_NODE_MEMORY'] || 2048).to_i
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# Virtualbox >= 6.1.28 require `/etc/vbox/network.conf` for expanded private networks
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NETWORK_PREFIX = "10.10.10"
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install_type = ""
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SPIN_DOWNLOAD_URL = "https://github.com/deislabs/containerd-wasm-shims/releases/download/v0.11.1/containerd-wasm-shims-v2-spin-linux-x86_64.tar.gz"
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SLIGHT_DOWNLOAD_URL = "https://github.com/deislabs/containerd-wasm-shims/releases/download/v0.11.1/containerd-wasm-shims-v1-slight-linux-x86_64.tar.gz"
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INSTALL_WASM_SHIMS = <<-SCRIPT
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curl -fsSL -o spin.tar.gz #{SPIN_DOWNLOAD_URL}
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tar xf spin.tar.gz
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curl -fsSL -o slight.tar.gz #{SLIGHT_DOWNLOAD_URL}
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tar xf slight.tar.gz
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mv containerd-shim-* /usr/bin
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rm *tar.gz
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SCRIPT
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def provision(vm, role, role_num, node_num)
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vm.box = NODE_BOXES[node_num]
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vm.hostname = role
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# An expanded netmask is required to allow VM<-->VM communication, virtualbox defaults to /32
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node_ip = "#{NETWORK_PREFIX}.#{100+node_num}"
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vm.network "private_network", ip: node_ip, netmask: "255.255.255.0"
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scripts_location = Dir.exists?("./scripts") ? "./scripts" : "../scripts"
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vagrant_defaults = File.exists?("./vagrantdefaults.rb") ? "./vagrantdefaults.rb" : "../vagrantdefaults.rb"
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load vagrant_defaults
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defaultOSConfigure(vm)
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addCoverageDir(vm, role, GOCOVER)
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install_type = getInstallType(vm, RELEASE_VERSION, GITHUB_BRANCH)
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vm.provision "shell", inline: "ping -c 2 k3s.io"
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vm.provision "Install run-wasi containerd shims", type: "shell", inline: INSTALL_WASM_SHIMS
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if role.include?("server") && role_num == 0
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dockerInstall(vm)
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vm.provision 'k3s-primary-server', type: 'k3s', run: 'once' do |k3s|
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k3s.args = "server "
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k3s.config = <<~YAML
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cluster-init: true
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node-external-ip: #{NETWORK_PREFIX}.100
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token: vagrant
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flannel-iface: eth1
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YAML
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k3s.env = %W[K3S_KUBECONFIG_MODE=0644 #{install_type}]
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k3s.config_mode = '0644' # side-step https://github.com/k3s-io/k3s/issues/4321
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end
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end
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if vm.box.to_s.include?("microos")
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vm.provision 'k3s-reload', type: 'reload', run: 'once'
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end
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end
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Vagrant.configure("2") do |config|
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config.vagrant.plugins = ["vagrant-k3s", "vagrant-reload"]
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# Default provider is libvirt, virtualbox is only provided as a backup
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config.vm.provider "libvirt" do |v|
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v.cpus = NODE_CPUS
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v.memory = NODE_MEMORY
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end
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config.vm.provider "virtualbox" do |v|
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v.cpus = NODE_CPUS
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v.memory = NODE_MEMORY
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end
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if NODE_ROLES.kind_of?(String)
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NODE_ROLES = NODE_ROLES.split(" ", -1)
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end
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if NODE_BOXES.kind_of?(String)
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NODE_BOXES = NODE_BOXES.split(" ", -1)
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end
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# Must iterate on the index, vagrant does not understand iterating
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# over the node roles themselves
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NODE_ROLES.length.times do |i|
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name = NODE_ROLES[i]
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role_num = name.split("-", -1).pop.to_i
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config.vm.define name do |node|
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provision(node.vm, name, role_num, i)
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end
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end
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end
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package wasm
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import (
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"flag"
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"fmt"
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"os"
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"strings"
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"testing"
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"github.com/k3s-io/k3s/tests/e2e"
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. "github.com/onsi/ginkgo/v2"
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. "github.com/onsi/gomega"
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)
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// Valid nodeOS: generic/ubuntu2004, opensuse/Leap-15.3.x86_64
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var nodeOS = flag.String("nodeOS", "generic/ubuntu2004", "VM operating system")
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var serverCount = flag.Int("serverCount", 1, "number of server nodes")
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var agentCount = flag.Int("agentCount", 0, "number of agent nodes")
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var ci = flag.Bool("ci", false, "running on CI")
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var local = flag.Bool("local", false, "deploy a locally built K3s binary")
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func Test_E2EWasm(t *testing.T) {
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flag.Parse()
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RegisterFailHandler(Fail)
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suiteConfig, reporterConfig := GinkgoConfiguration()
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RunSpecs(t, "Run WebAssenbly Workloads Test Suite", suiteConfig, reporterConfig)
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}
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var (
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kubeConfigFile string
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serverNodeNames []string
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agentNodeNames []string
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)
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var _ = ReportAfterEach(e2e.GenReport)
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var _ = Describe("Verify Can run Wasm workloads", Ordered, func() {
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It("Starts up with no issues", func() {
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var err error
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if *local {
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serverNodeNames, agentNodeNames, err = e2e.CreateLocalCluster(*nodeOS, *serverCount, *agentCount)
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} else {
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serverNodeNames, agentNodeNames, err = e2e.CreateCluster(*nodeOS, *serverCount, *agentCount)
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}
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Expect(err).NotTo(HaveOccurred(), e2e.GetVagrantLog(err))
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fmt.Println("CLUSTER CONFIG")
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fmt.Println("OS:", *nodeOS)
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fmt.Println("Server Nodes:", serverNodeNames)
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fmt.Println("Agent Nodes:", agentNodeNames)
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kubeConfigFile, err = e2e.GenKubeConfigFile(serverNodeNames[0])
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Expect(err).NotTo(HaveOccurred())
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})
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// Server node needs to be ready before we continue
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It("Checks Node and Pod Status", func() {
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fmt.Printf("\nFetching node status\n")
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Eventually(func(g Gomega) {
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nodes, err := e2e.ParseNodes(kubeConfigFile, false)
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g.Expect(err).NotTo(HaveOccurred())
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for _, node := range nodes {
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g.Expect(node.Status).Should(Equal("Ready"))
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}
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}, "620s", "5s").Should(Succeed())
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_, _ = e2e.ParseNodes(kubeConfigFile, true)
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fmt.Printf("\nFetching Pods status\n")
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Eventually(func(g Gomega) {
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pods, err := e2e.ParsePods(kubeConfigFile, false)
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g.Expect(err).NotTo(HaveOccurred())
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for _, pod := range pods {
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if strings.Contains(pod.Name, "helm-install") {
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g.Expect(pod.Status).Should(Equal("Completed"), pod.Name)
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} else {
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g.Expect(pod.Status).Should(Equal("Running"), pod.Name)
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}
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}
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}, "620s", "5s").Should(Succeed())
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_, _ = e2e.ParsePods(kubeConfigFile, true)
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})
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It("Verify wasm-related containerd shims are installed", func() {
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expected_shims := []string{"containerd-shim-spin-v2", "containerd-shim-slight-v1"}
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for _, node := range append(serverNodeNames, agentNodeNames...) {
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for _, shim := range expected_shims {
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cmd := fmt.Sprintf("which %s", shim)
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_, err := e2e.RunCmdOnNode(cmd, node)
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Expect(err).NotTo(HaveOccurred())
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}
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}
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})
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Context("Verify Wasm workloads can run on the cluster", func() {
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It("Deploy Wasm workloads", func() {
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out, err := e2e.DeployWorkload("wasm-workloads.yaml", kubeConfigFile, false)
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Expect(err).NotTo(HaveOccurred(), out)
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})
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It("Wait for slight Pod to be up and running", func() {
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Eventually(func() (string, error) {
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cmd := "kubectl get pods -o=name -l app=wasm-slight --field-selector=status.phase=Running --kubeconfig=" + kubeConfigFile
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return e2e.RunCommand(cmd)
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}, "240s", "5s").Should(ContainSubstring("pod/wasm-slight"))
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})
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It("Wait for spin Pod to be up and running", func() {
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Eventually(func() (string, error) {
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cmd := "kubectl get pods -o=name -l app=wasm-spin --field-selector=status.phase=Running --kubeconfig=" + kubeConfigFile
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return e2e.RunCommand(cmd)
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}, "120s", "5s").Should(ContainSubstring("pod/wasm-spin"))
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})
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It("Interact with Wasm applications", func() {
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ingressIPs, err := e2e.FetchIngressIP(kubeConfigFile)
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Expect(err).NotTo(HaveOccurred())
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Expect(ingressIPs).To(HaveLen(1))
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endpoints := []string{"slight/hello", "spin/go-hello", "spin/hello"}
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for _, endpoint := range endpoints {
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url := fmt.Sprintf("http://%s/%s", ingressIPs[0], endpoint)
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fmt.Printf("Connecting to Wasm web application at: %s\n", url)
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cmd := "curl -sfv " + url
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Eventually(func() (string, error) {
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return e2e.RunCommand(cmd)
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}, "120s", "5s").Should(ContainSubstring("200 OK"))
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}
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})
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})
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})
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var failed bool
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var _ = AfterEach(func() {
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failed = failed || CurrentSpecReport().Failed()
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})
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var _ = AfterSuite(func() {
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if failed && !*ci {
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fmt.Println("FAILED!")
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} else {
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Expect(e2e.GetCoverageReport(append(serverNodeNames, agentNodeNames...))).To(Succeed())
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Expect(e2e.DestroyCluster()).To(Succeed())
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Expect(os.Remove(kubeConfigFile)).To(Succeed())
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}
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})
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Loading…
Reference in new issue