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389 lines
13 KiB
389 lines
13 KiB
/*Package create ...
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Copyright © 2020 The k3d Author(s)
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Permission is hereby granted, free of charge, to any person obtaining a copy
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of this software and associated documentation files (the "Software"), to deal
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in the Software without restriction, including without limitation the rights
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to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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copies of the Software, and to permit persons to whom the Software is
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furnished to do so, subject to the following conditions:
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The above copyright notice and this permission notice shall be included in
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all copies or substantial portions of the Software.
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THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
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THE SOFTWARE.
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*/
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package create
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import (
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"fmt"
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"os"
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"runtime"
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"time"
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"github.com/spf13/cobra"
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cliutil "github.com/rancher/k3d/cmd/util"
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"github.com/rancher/k3d/pkg/cluster"
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k3dCluster "github.com/rancher/k3d/pkg/cluster"
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"github.com/rancher/k3d/pkg/runtimes"
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k3d "github.com/rancher/k3d/pkg/types"
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"github.com/rancher/k3d/version"
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log "github.com/sirupsen/logrus"
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)
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const createClusterDescription = `
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Create a new k3s cluster with containerized nodes (k3s in docker).
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Every cluster will consist of at least 2 containers:
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- 1 master node container (k3s)
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- 1 loadbalancer container as the entrypoint to the cluster (nginx)
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`
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// NewCmdCreateCluster returns a new cobra command
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func NewCmdCreateCluster() *cobra.Command {
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createClusterOpts := &k3d.CreateClusterOpts{}
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var updateKubeconfig bool
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// create new command
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cmd := &cobra.Command{
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Use: "cluster NAME",
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Short: "Create a new k3s cluster in docker",
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Long: createClusterDescription,
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Args: cobra.RangeArgs(0, 1), // exactly one cluster name can be set (default: k3d.DefaultClusterName)
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Run: func(cmd *cobra.Command, args []string) {
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// parse args and flags
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cluster := parseCreateClusterCmd(cmd, args, createClusterOpts)
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// check if a cluster with that name exists already
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if _, err := k3dCluster.GetCluster(cluster, runtimes.SelectedRuntime); err == nil {
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log.Fatalf("Failed to create cluster '%s' because a cluster with that name already exists", cluster.Name)
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}
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// create cluster
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if updateKubeconfig {
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log.Debugln("'--update-kubeconfig set: enabling wait-for-master")
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cluster.CreateClusterOpts.WaitForMaster = true
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}
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if err := k3dCluster.CreateCluster(cmd.Context(), cluster, runtimes.SelectedRuntime); err != nil {
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// rollback if creation failed
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log.Errorln(err)
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log.Errorln("Failed to create cluster >>> Rolling Back")
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if err := k3dCluster.DeleteCluster(cluster, runtimes.SelectedRuntime); err != nil {
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log.Errorln(err)
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log.Fatalln("Cluster creation FAILED, also FAILED to rollback changes!")
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}
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log.Fatalln("Cluster creation FAILED, all changes have been rolled back!")
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}
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log.Infof("Cluster '%s' created successfully!", cluster.Name)
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if updateKubeconfig {
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log.Debugf("Updating default kubeconfig with a new context for cluster %s", cluster.Name)
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if err := k3dCluster.GetAndWriteKubeConfig(runtimes.SelectedRuntime, cluster, "", &k3dCluster.WriteKubeConfigOptions{UpdateExisting: true, OverwriteExisting: false, UpdateCurrentContext: false}); err != nil {
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log.Fatalln(err)
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}
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}
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// print information on how to use the cluster with kubectl
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log.Infoln("You can now use it like this:")
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if updateKubeconfig {
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fmt.Printf("kubectl config use-context %s\n", fmt.Sprintf("%s-%s", k3d.DefaultObjectNamePrefix, cluster.Name))
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} else {
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if runtime.GOOS == "windows" {
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log.Debugf("GOOS is %s", runtime.GOOS)
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fmt.Printf("$env:KUBECONFIG=(%s get kubeconfig %s)\n", os.Args[0], cluster.Name)
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} else {
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fmt.Printf("export KUBECONFIG=$(%s get kubeconfig %s)\n", os.Args[0], cluster.Name)
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}
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fmt.Println("kubectl cluster-info")
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}
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},
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}
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/*********
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* Flags *
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*********/
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cmd.Flags().StringP("api-port", "a", k3d.DefaultAPIPort, "Specify the Kubernetes API server port exposed on the LoadBalancer (Format: `--api-port [HOST:]HOSTPORT`)\n - Example: `k3d create -m 3 -a 0.0.0.0:6550`")
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cmd.Flags().IntP("masters", "m", 1, "Specify how many masters you want to create")
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cmd.Flags().IntP("workers", "w", 0, "Specify how many workers you want to create")
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cmd.Flags().StringP("image", "i", fmt.Sprintf("%s:%s", k3d.DefaultK3sImageRepo, version.GetK3sVersion(false)), "Specify k3s image that you want to use for the nodes")
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cmd.Flags().String("network", "", "Join an existing network")
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cmd.Flags().String("secret", "", "Specify a cluster secret. By default, we generate one.")
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cmd.Flags().StringArrayP("volume", "v", nil, "Mount volumes into the nodes (Format: `--volume [SOURCE:]DEST[@NODEFILTER[;NODEFILTER...]]`\n - Example: `k3d create -w 2 -v /my/path@worker[0,1] -v /tmp/test:/tmp/other@master[0]`")
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cmd.Flags().StringArrayP("port", "p", nil, "Map ports from the node containers to the host (Format: `[HOST:][HOSTPORT:]CONTAINERPORT[/PROTOCOL][@NODEFILTER]`)\n - Example: `k3d create -w 2 -p 8080:80@worker[0] -p 8081@worker[1]`")
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cmd.Flags().BoolVar(&createClusterOpts.WaitForMaster, "wait", false, "Wait for the master(s) to be ready before returning. Use '--timeout DURATION' to not wait forever.")
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cmd.Flags().DurationVar(&createClusterOpts.Timeout, "timeout", 0*time.Second, "Rollback changes if cluster couldn't be created in specified duration.")
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cmd.Flags().BoolVar(&updateKubeconfig, "update-kubeconfig", false, "Directly update the default kubeconfig with the new cluster's context")
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/* Image Importing */
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cmd.Flags().BoolVar(&createClusterOpts.DisableImageVolume, "no-image-volume", false, "Disable the creation of a volume for importing images")
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/* Multi Master Configuration */
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// multi-master - datastore
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// TODO: implement multi-master setups with external data store
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// cmd.Flags().String("datastore-endpoint", "", "[WIP] Specify external datastore endpoint (e.g. for multi master clusters)")
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/*
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cmd.Flags().String("datastore-network", "", "Specify container network where we can find the datastore-endpoint (add a connection)")
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// TODO: set default paths and hint, that one should simply mount the files using --volume flag
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cmd.Flags().String("datastore-cafile", "", "Specify external datastore's TLS Certificate Authority (CA) file")
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cmd.Flags().String("datastore-certfile", "", "Specify external datastore's TLS certificate file'")
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cmd.Flags().String("datastore-keyfile", "", "Specify external datastore's TLS key file'")
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*/
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/* k3s */
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cmd.Flags().StringArrayVar(&createClusterOpts.K3sServerArgs, "k3s-server-arg", nil, "Additional args passed to the `k3s server` command on master nodes (new flag per arg)")
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cmd.Flags().StringArrayVar(&createClusterOpts.K3sAgentArgs, "k3s-agent-arg", nil, "Additional args passed to the `k3s agent` command on worker nodes (new flag per arg)")
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/* Subcommands */
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// done
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return cmd
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}
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// parseCreateClusterCmd parses the command input into variables required to create a cluster
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func parseCreateClusterCmd(cmd *cobra.Command, args []string, createClusterOpts *k3d.CreateClusterOpts) *k3d.Cluster {
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/********************************
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* Parse and validate arguments *
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********************************/
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clustername := k3d.DefaultClusterName
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if len(args) != 0 {
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clustername = args[0]
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}
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if err := cluster.CheckName(clustername); err != nil {
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log.Fatal(err)
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}
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/****************************
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* Parse and validate flags *
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****************************/
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// --image
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image, err := cmd.Flags().GetString("image")
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if err != nil {
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log.Errorln("No image specified")
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log.Fatalln(err)
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}
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if image == "latest" {
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image = version.GetK3sVersion(true)
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}
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// --masters
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masterCount, err := cmd.Flags().GetInt("masters")
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if err != nil {
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log.Fatalln(err)
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}
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// --workers
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workerCount, err := cmd.Flags().GetInt("workers")
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if err != nil {
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log.Fatalln(err)
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}
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// --network
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networkName, err := cmd.Flags().GetString("network")
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if err != nil {
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log.Fatalln(err)
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}
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network := k3d.ClusterNetwork{}
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if networkName != "" {
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network.Name = networkName
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network.External = true
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}
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if networkName == "host" && (masterCount+workerCount) > 1 {
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log.Fatalln("Can only run a single node in hostnetwork mode")
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}
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// --secret
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secret, err := cmd.Flags().GetString("secret")
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if err != nil {
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log.Fatalln(err)
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}
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// --timeout
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if cmd.Flags().Changed("timeout") && createClusterOpts.Timeout <= 0*time.Second {
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log.Fatalln("--timeout DURATION must be >= 1s")
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}
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// --api-port
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apiPort, err := cmd.Flags().GetString("api-port")
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if err != nil {
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log.Fatalln(err)
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}
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// parse the port mapping
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exposeAPI, err := cliutil.ParseAPIPort(apiPort)
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if err != nil {
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log.Fatalln(err)
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}
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if exposeAPI.Host == "" {
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exposeAPI.Host = k3d.DefaultAPIHost
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}
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if exposeAPI.HostIP == "" {
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exposeAPI.HostIP = k3d.DefaultAPIHost
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}
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// --volume
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volumeFlags, err := cmd.Flags().GetStringArray("volume")
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if err != nil {
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log.Fatalln(err)
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}
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// volumeFilterMap will map volume mounts to applied node filters
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volumeFilterMap := make(map[string][]string, 1)
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for _, volumeFlag := range volumeFlags {
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// split node filter from the specified volume
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volume, filters, err := cliutil.SplitFiltersFromFlag(volumeFlag)
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if err != nil {
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log.Fatalln(err)
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}
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// validate the specified volume mount and return it in SRC:DEST format
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volume, err = cliutil.ValidateVolumeMount(volume)
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if err != nil {
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log.Fatalln(err)
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}
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// create new entry or append filter to existing entry
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if _, exists := volumeFilterMap[volume]; exists {
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volumeFilterMap[volume] = append(volumeFilterMap[volume], filters...)
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} else {
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volumeFilterMap[volume] = filters
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}
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}
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// --port
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portFlags, err := cmd.Flags().GetStringArray("port")
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if err != nil {
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log.Fatalln(err)
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}
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portFilterMap := make(map[string][]string, 1)
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for _, portFlag := range portFlags {
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// split node filter from the specified volume
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portmap, filters, err := cliutil.SplitFiltersFromFlag(portFlag)
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if err != nil {
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log.Fatalln(err)
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}
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if len(filters) > 1 {
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log.Fatalln("Can only apply a Portmap to one node")
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}
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// the same portmapping can't be applied to multiple nodes
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// validate the specified volume mount and return it in SRC:DEST format
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portmap, err = cliutil.ValidatePortMap(portmap)
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if err != nil {
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log.Fatalln(err)
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}
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// create new entry or append filter to existing entry
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if _, exists := portFilterMap[portmap]; exists {
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log.Fatalln("Same Portmapping can not be used for multiple nodes")
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} else {
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portFilterMap[portmap] = filters
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}
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}
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log.Debugln(portFilterMap)
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/********************
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* *
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* generate cluster *
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* *
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********************/
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cluster := &k3d.Cluster{
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Name: clustername,
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Network: network,
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Secret: secret,
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CreateClusterOpts: createClusterOpts,
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ExposeAPI: exposeAPI,
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}
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// generate list of nodes
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cluster.Nodes = []*k3d.Node{}
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/****************
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* Master Nodes *
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****************/
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for i := 0; i < masterCount; i++ {
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node := k3d.Node{
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Role: k3d.MasterRole,
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Image: image,
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Args: createClusterOpts.K3sServerArgs,
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MasterOpts: k3d.MasterOpts{},
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}
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// TODO: by default, we don't expose an API port: should we change that?
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// -> if we want to change that, simply add the exposeAPI struct here
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// first master node will be init node if we have more than one master specified but no external datastore
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if i == 0 && masterCount > 1 {
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node.MasterOpts.IsInit = true
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cluster.InitNode = &node
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}
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// append node to list
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cluster.Nodes = append(cluster.Nodes, &node)
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}
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/****************
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* Worker Nodes *
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****************/
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for i := 0; i < workerCount; i++ {
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node := k3d.Node{
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Role: k3d.WorkerRole,
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Image: image,
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Args: createClusterOpts.K3sAgentArgs,
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}
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cluster.Nodes = append(cluster.Nodes, &node)
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}
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// append volumes
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for volume, filters := range volumeFilterMap {
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nodes, err := cliutil.FilterNodes(cluster.Nodes, filters)
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if err != nil {
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log.Fatalln(err)
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}
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for _, node := range nodes {
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node.Volumes = append(node.Volumes, volume)
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}
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}
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// append ports
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for portmap, filters := range portFilterMap {
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if len(filters) == 0 && (masterCount+workerCount) > 1 {
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log.Fatalf("Malformed portmapping '%s' lacks a node filter, but there is more than one node.", portmap)
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}
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nodes, err := cliutil.FilterNodes(cluster.Nodes, filters)
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if err != nil {
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log.Fatalln(err)
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}
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for _, node := range nodes {
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node.Ports = append(node.Ports, portmap)
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}
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}
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/**********************
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* Utility Containers *
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**********************/
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// ...
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return cluster
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}
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