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121 lines
4 KiB
Go
121 lines
4 KiB
Go
// This test verifies that two nodes, which can't connect using the local network, are
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// able to still connect using the node-external-ip. In real life, node-external-ip
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// would be a public IP. In the test, we create two networks, one sets the node
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// internal-ip and the other sets the node-external-ip. Traffic is blocked on the former
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package multus
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import (
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"flag"
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"fmt"
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"os"
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"testing"
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"time"
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"github.com/k3s-io/k3s/tests"
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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: bento/ubuntu-24.04, opensuse/Leap-15.6.x86_64
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var nodeOS = flag.String("nodeOS", "bento/ubuntu-24.04", "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", 1, "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_E2EMultus(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, "Multus config Suite", suiteConfig, reporterConfig)
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}
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var tc *e2e.TestConfig
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var _ = ReportAfterEach(e2e.GenReport)
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var _ = Describe("Verify Multus config", Ordered, func() {
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Context("Cluster comes up with Multus enabled", 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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tc, err = e2e.CreateLocalCluster(*nodeOS, *serverCount, *agentCount)
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} else {
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tc, 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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By("CLUSTER CONFIG")
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By("OS: " + *nodeOS)
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By(tc.Status())
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})
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It("Checks Node Status", func() {
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Eventually(func() error {
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return tests.NodesReady(tc.KubeconfigFile, e2e.VagrantSlice(tc.AllNodes()))
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}, "620s", "5s").Should(Succeed())
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e2e.DumpNodes(tc.KubeconfigFile)
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})
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It("Checks pod status", func() {
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By("Fetching pod status")
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Eventually(func() error {
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return tests.AllPodsUp(tc.KubeconfigFile, "kube-system")
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}, "620s", "10s").Should(Succeed())
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})
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})
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Context("Deploy workloads to check cluster connectivity of the nodes", func() {
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It("Verifies that each node has vagrant IP", func() {
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nodeIPs, err := e2e.GetNodeIPs(tc.KubeconfigFile)
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fmt.Printf("nodeIPs: %v", nodeIPs)
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Expect(err).NotTo(HaveOccurred())
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for _, node := range nodeIPs {
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Expect(node.IPv4).Should(ContainSubstring("10.10."))
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}
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})
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It("Verifies that each pod has vagrant IP or clusterCIDR IP", func() {
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podIPs, err := e2e.GetPodIPs(tc.KubeconfigFile)
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Expect(err).NotTo(HaveOccurred())
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for _, pod := range podIPs {
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Expect(pod.IPv4).Should(Or(ContainSubstring("10.10."), ContainSubstring("10.42.")), pod.Name)
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}
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})
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It("Verifies multus daemonset comes up", func() {
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Eventually(func() (string, error) {
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cmd := "kubectl get ds multus -n kube-system -o jsonpath='{.status.numberReady}' --kubeconfig=" + tc.KubeconfigFile
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return tests.RunCommand(cmd)
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}, "120s", "5s").Should(ContainSubstring("2"))
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})
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It("Deploys Multus NetworkAttachmentDefinition and test pods", func() {
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_, err := tc.DeployWorkload("multus_test.yaml")
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Expect(err).NotTo(HaveOccurred())
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time.Sleep(5 * time.Second)
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})
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It("Verifies internode connectivity over multus network", func() {
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cmd := "kubectl exec pod-macvlan --kubeconfig=" + tc.KubeconfigFile + " -- ping -c 1 -w 2 10.1.1.102"
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Eventually(func() (string, error) {
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return tests.RunCommand(cmd)
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}, "20s", "3s").Should(ContainSubstring("0% packet loss"), "failed cmd: "+cmd)
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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 {
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Expect(e2e.SaveJournalLogs(tc.AllNodes())).To(Succeed())
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Expect(e2e.TailPodLogs(50, tc.AllNodes())).To(Succeed())
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} else {
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Expect(e2e.GetCoverageReport(tc.AllNodes())).To(Succeed())
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}
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if !failed || *ci {
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Expect(e2e.DestroyCluster()).To(Succeed())
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Expect(os.Remove(tc.KubeconfigFile)).To(Succeed())
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}
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})
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