mirror of https://github.com/k3s-io/k3s
236 lines
5.6 KiB
Go
236 lines
5.6 KiB
Go
package terraform
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import (
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"bytes"
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"fmt"
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"io/ioutil"
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"log"
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"os/exec"
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"path/filepath"
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"runtime"
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"strings"
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"time"
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"golang.org/x/crypto/ssh"
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)
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type Node struct {
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Name string
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Status string
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Roles string
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Version string
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InternalIP string
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ExternalIP string
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}
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type Pod struct {
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NameSpace string
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Name string
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Ready string
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Status string
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Restarts string
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NodeIP string
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Node string
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}
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var config *ssh.ClientConfig
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var SSHKEY string
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var SSHUSER string
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var err error
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func GetBasepath() string {
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_, b, _, _ := runtime.Caller(0)
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return filepath.Join(filepath.Dir(b), "../..")
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}
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func checkError(e error) {
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if e != nil {
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log.Fatal(err)
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panic(e)
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}
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}
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func publicKey(path string) ssh.AuthMethod {
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key, err := ioutil.ReadFile(path)
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if err != nil {
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panic(err)
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}
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signer, err := ssh.ParsePrivateKey(key)
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if err != nil {
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panic(err)
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}
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return ssh.PublicKeys(signer)
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}
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func ConfigureSSH(host string, SSHUser string, SSHKey string) *ssh.Client {
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config = &ssh.ClientConfig{
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User: SSHUser,
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Auth: []ssh.AuthMethod{
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publicKey(SSHKey),
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},
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HostKeyCallback: ssh.InsecureIgnoreHostKey(),
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}
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conn, err := ssh.Dial("tcp", host, config)
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checkError(err)
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return conn
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}
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func runsshCommand(cmd string, conn *ssh.Client) (string, error) {
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session, err := conn.NewSession()
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if err != nil {
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panic(err)
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}
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defer session.Close()
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var stdoutBuf bytes.Buffer
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var stderrBuf bytes.Buffer
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session.Stdout = &stdoutBuf
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session.Stderr = &stderrBuf
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if err := session.Run(cmd); err != nil {
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log.Println(session.Stdout)
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log.Fatal("Error on command execution", err.Error())
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}
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return fmt.Sprintf("%s", stdoutBuf.String()), err
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}
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// nodeOs: ubuntu centos7 centos8 sles15
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// clusterType arm, etcd externaldb, if external_db var is not "" picks database from the vars file,
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// resourceName: name to resource created timestamp attached
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// RunCmdOnNode executes a command from within the given node
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func RunCmdOnNode(cmd string, ServerIP string, SSHUser string, SSHKey string) (string, error) {
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Server := ServerIP + ":22"
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conn := ConfigureSSH(Server, SSHUser, SSHKey)
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res, err := runsshCommand(cmd, conn)
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res = strings.TrimSpace(res)
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return res, err
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}
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// RunCommand executes a command on the host
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func RunCommand(cmd string) (string, error) {
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c := exec.Command("bash", "-c", cmd)
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out, err := c.CombinedOutput()
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return string(out), err
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}
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//Used to count the pods using prefix passed in the list of pods
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func CountOfStringInSlice(str string, pods []Pod) int {
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count := 0
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for _, pod := range pods {
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if strings.Contains(pod.Name, str) {
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count++
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}
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}
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return count
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}
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func DeployWorkload(workload, kubeconfig string, arch string) (string, error) {
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resourceDir := GetBasepath() + "/tests/terraform/amd64_resource_files"
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if arch == "arm64" {
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resourceDir = GetBasepath() + "/tests/terraform/arm_resource_files"
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}
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files, err := ioutil.ReadDir(resourceDir)
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if err != nil {
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err = fmt.Errorf("%s : Unable to read resource manifest file for %s", err, workload)
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return "", err
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}
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fmt.Println("\nDeploying", workload)
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for _, f := range files {
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filename := filepath.Join(resourceDir, f.Name())
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if strings.TrimSpace(f.Name()) == workload {
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cmd := "kubectl apply -f " + filename + " --kubeconfig=" + kubeconfig
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fmt.Println(cmd)
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return RunCommand(cmd)
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}
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}
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return "", nil
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}
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func FetchClusterIP(kubeconfig string, servicename string) (string, error) {
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cmd := "kubectl get svc " + servicename + " -o jsonpath='{.spec.clusterIP}' --kubeconfig=" + kubeconfig
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fmt.Println(cmd)
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return RunCommand(cmd)
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}
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func FetchNodeExternalIP(kubeconfig string) []string {
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cmd := "kubectl get node --output=jsonpath='{range .items[*]} { .status.addresses[?(@.type==\"ExternalIP\")].address}' --kubeconfig=" + kubeconfig
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time.Sleep(10 * time.Second)
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res, _ := RunCommand(cmd)
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nodeExternalIP := strings.Trim(res, " ")
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nodeExternalIPs := strings.Split(nodeExternalIP, " ")
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return nodeExternalIPs
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}
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func FetchIngressIP(kubeconfig string) ([]string, error) {
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cmd := "kubectl get ingress -o jsonpath='{.items[0].status.loadBalancer.ingress[*].ip}' --kubeconfig=" + kubeconfig
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fmt.Println(cmd)
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res, err := RunCommand(cmd)
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if err != nil {
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return nil, err
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}
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ingressIP := strings.Trim(res, " ")
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fmt.Println(ingressIP)
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ingressIPs := strings.Split(ingressIP, " ")
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return ingressIPs, nil
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}
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func ParseNodes(kubeConfig string, print bool) ([]Node, error) {
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nodes := make([]Node, 0, 10)
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nodeList := ""
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cmd := "kubectl get nodes --no-headers -o wide -A --kubeconfig=" + kubeConfig
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res, err := RunCommand(cmd)
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if err != nil {
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return nil, err
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}
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nodeList = strings.TrimSpace(res)
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split := strings.Split(nodeList, "\n")
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for _, rec := range split {
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if strings.TrimSpace(rec) != "" {
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fields := strings.Fields(rec)
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node := Node{
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Name: fields[0],
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Status: fields[1],
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Roles: fields[2],
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Version: fields[4],
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InternalIP: fields[5],
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ExternalIP: fields[6],
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}
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nodes = append(nodes, node)
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}
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}
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if print {
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fmt.Println(nodeList)
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}
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return nodes, nil
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}
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func ParsePods(kubeconfig string, print bool) ([]Pod, error) {
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pods := make([]Pod, 0, 10)
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podList := ""
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cmd := "kubectl get pods -o wide --no-headers -A --kubeconfig=" + kubeconfig
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res, _ := RunCommand(cmd)
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res = strings.TrimSpace(res)
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podList = res
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split := strings.Split(res, "\n")
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for _, rec := range split {
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fields := strings.Fields(string(rec))
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pod := Pod{
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NameSpace: fields[0],
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Name: fields[1],
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Ready: fields[2],
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Status: fields[3],
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Restarts: fields[4],
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NodeIP: fields[6],
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Node: fields[7],
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}
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pods = append(pods, pod)
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}
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if print {
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fmt.Println(podList)
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}
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return pods, nil
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}
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