mirror of
https://github.com/rancher/rke.git
synced 2025-05-08 08:17:57 +00:00
1137 lines
41 KiB
Go
1137 lines
41 KiB
Go
package cluster
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import (
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"context"
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"crypto/md5"
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b64 "encoding/base64"
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"encoding/json"
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"fmt"
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"net"
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"path"
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"strconv"
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"strings"
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"github.com/docker/docker/api/types"
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"github.com/rancher/rke/docker"
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"github.com/rancher/rke/hosts"
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"github.com/rancher/rke/k8s"
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"github.com/rancher/rke/metadata"
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"github.com/rancher/rke/pki"
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"github.com/rancher/rke/services"
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"github.com/rancher/rke/util"
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v3 "github.com/rancher/types/apis/management.cattle.io/v3"
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"github.com/sirupsen/logrus"
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)
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const (
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ClusterCIDREnv = "RKE_CLUSTER_CIDR"
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ClusterServiceCIDREnv = "RKE_CLUSTER_SERVICE_CIDR"
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ClusterDNSServerEnv = "RKE_CLUSTER_DNS_SERVER"
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ClusterDomainEnv = "RKE_CLUSTER_DOMAIN"
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NodeAddressEnv = "RKE_NODE_ADDRESS"
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NodeInternalAddressEnv = "RKE_NODE_INTERNAL_ADDRESS"
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NodeNameOverrideEnv = "RKE_NODE_NAME_OVERRIDE"
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NetworkConfigurationEnv = "RKE_NETWORK_CONFIGURATION"
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EtcdPathPrefix = "/registry"
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CloudConfigSumEnv = "RKE_CLOUD_CONFIG_CHECKSUM"
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CloudProviderNameEnv = "RKE_CLOUD_PROVIDER_NAME"
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DefaultToolsEntrypoint = "/opt/rke-tools/entrypoint.sh"
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DefaultToolsEntrypointVersion = "0.1.13"
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LegacyToolsEntrypoint = "/opt/rke/entrypoint.sh"
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KubeletDockerConfigEnv = "RKE_KUBELET_DOCKER_CONFIG"
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KubeletDockerConfigFileEnv = "RKE_KUBELET_DOCKER_FILE"
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KubeletDockerConfigPath = "/var/lib/kubelet/config.json"
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// MaxEtcdOldEnvVersion The versions are maxed out for minor versions because -rancher1 suffix will cause semver to think its older, example: v1.15.0 > v1.15.0-rancher1
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MaxEtcdOldEnvVersion = "v3.2.99"
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MaxK8s115Version = "v1.15"
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)
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var admissionControlOptionNames = []string{"enable-admission-plugins", "admission-control"}
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func GetServiceOptionData(data map[string]interface{}) map[string]*v3.KubernetesServicesOptions {
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svcOptionsData := map[string]*v3.KubernetesServicesOptions{}
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k8sServiceOptions, _ := data["k8s-service-options"].(*v3.KubernetesServicesOptions)
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if k8sServiceOptions != nil {
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svcOptionsData["k8s-service-options"] = k8sServiceOptions
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}
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k8sWServiceOptions, _ := data["k8s-windows-service-options"].(*v3.KubernetesServicesOptions)
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if k8sWServiceOptions != nil {
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svcOptionsData["k8s-windows-service-options"] = k8sWServiceOptions
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}
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return svcOptionsData
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}
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func GeneratePlan(ctx context.Context, rkeConfig *v3.RancherKubernetesEngineConfig, hostsInfoMap map[string]types.Info, data map[string]interface{}) (v3.RKEPlan, error) {
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clusterPlan := v3.RKEPlan{}
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myCluster, err := InitClusterObject(ctx, rkeConfig, ExternalFlags{}, "")
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if err != nil {
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return clusterPlan, err
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}
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// rkeConfig.Nodes are already unique. But they don't have role flags. So I will use the parsed cluster.Hosts to make use of the role flags.
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uniqHosts := hosts.GetUniqueHostList(myCluster.EtcdHosts, myCluster.ControlPlaneHosts, myCluster.WorkerHosts)
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svcOptionData := GetServiceOptionData(data)
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for _, host := range uniqHosts {
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host.DockerInfo = hostsInfoMap[host.Address]
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clusterPlan.Nodes = append(clusterPlan.Nodes, BuildRKEConfigNodePlan(ctx, myCluster, host, hostsInfoMap[host.Address], svcOptionData))
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}
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return clusterPlan, nil
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}
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func BuildRKEConfigNodePlan(ctx context.Context, myCluster *Cluster, host *hosts.Host, hostDockerInfo types.Info, svcOptionData map[string]*v3.KubernetesServicesOptions) v3.RKEConfigNodePlan {
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prefixPath := hosts.GetPrefixPath(hostDockerInfo.OperatingSystem, myCluster.PrefixPath)
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processes := map[string]v3.Process{}
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portChecks := []v3.PortCheck{}
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// Everybody gets a sidecar and a kubelet..
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processes[services.SidekickContainerName] = myCluster.BuildSidecarProcess(host, prefixPath)
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processes[services.KubeletContainerName] = myCluster.BuildKubeletProcess(host, prefixPath, svcOptionData)
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processes[services.KubeproxyContainerName] = myCluster.BuildKubeProxyProcess(host, prefixPath, svcOptionData)
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portChecks = append(portChecks, BuildPortChecksFromPortList(host, WorkerPortList, ProtocolTCP)...)
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// Do we need an nginxProxy for this one ?
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if !host.IsControl {
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processes[services.NginxProxyContainerName] = myCluster.BuildProxyProcess(host, prefixPath)
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}
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if host.IsControl {
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processes[services.KubeAPIContainerName] = myCluster.BuildKubeAPIProcess(host, prefixPath, svcOptionData)
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processes[services.KubeControllerContainerName] = myCluster.BuildKubeControllerProcess(host, prefixPath, svcOptionData)
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processes[services.SchedulerContainerName] = myCluster.BuildSchedulerProcess(host, prefixPath, svcOptionData)
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portChecks = append(portChecks, BuildPortChecksFromPortList(host, ControlPlanePortList, ProtocolTCP)...)
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}
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if host.IsEtcd {
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processes[services.EtcdContainerName] = myCluster.BuildEtcdProcess(host, myCluster.EtcdReadyHosts, prefixPath)
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portChecks = append(portChecks, BuildPortChecksFromPortList(host, EtcdPortList, ProtocolTCP)...)
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}
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files := []v3.File{
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v3.File{
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Name: cloudConfigFileName,
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Contents: b64.StdEncoding.EncodeToString([]byte(myCluster.CloudConfigFile)),
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},
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}
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if myCluster.IsEncryptionEnabled() {
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files = append(files, v3.File{
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Name: EncryptionProviderFilePath,
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Contents: b64.StdEncoding.EncodeToString([]byte(myCluster.EncryptionConfig.EncryptionProviderFile)),
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})
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}
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return v3.RKEConfigNodePlan{
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Address: host.Address,
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Processes: osLimitationFilter(hostDockerInfo.OSType, processes),
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PortChecks: portChecks,
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Files: files,
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Annotations: map[string]string{
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k8s.ExternalAddressAnnotation: host.Address,
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k8s.InternalAddressAnnotation: host.InternalAddress,
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},
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Labels: host.ToAddLabels,
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}
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}
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func osLimitationFilter(osType string, processes map[string]v3.Process) map[string]v3.Process {
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if osType != "windows" {
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return processes
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}
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// windows limitations
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for name, process := range processes {
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// doesn't support host network on windows
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if process.NetworkMode == "host" {
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process.NetworkMode = ""
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}
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// doesn't support PID on windows
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if process.PidMode != "" {
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process.PidMode = ""
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}
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// doesn't support privileged mode on windows
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if process.Privileged {
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process.Privileged = false
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}
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// doesn't execute health check
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process.HealthCheck = v3.HealthCheck{}
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processes[name] = process
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}
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return processes
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}
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func (c *Cluster) BuildKubeAPIProcess(host *hosts.Host, prefixPath string, svcOptionData map[string]*v3.KubernetesServicesOptions) v3.Process {
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// check if external etcd is used
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etcdConnectionString := services.GetEtcdConnString(c.EtcdHosts, host.InternalAddress)
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etcdPathPrefix := EtcdPathPrefix
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etcdClientCert := pki.GetCertPath(pki.KubeNodeCertName)
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etcdClientKey := pki.GetKeyPath(pki.KubeNodeCertName)
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etcdCAClientCert := pki.GetCertPath(pki.CACertName)
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if len(c.Services.Etcd.ExternalURLs) > 0 {
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etcdConnectionString = strings.Join(c.Services.Etcd.ExternalURLs, ",")
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etcdPathPrefix = c.Services.Etcd.Path
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etcdClientCert = pki.GetCertPath(pki.EtcdClientCertName)
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etcdClientKey = pki.GetKeyPath(pki.EtcdClientCertName)
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etcdCAClientCert = pki.GetCertPath(pki.EtcdClientCACertName)
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}
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Command := []string{
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c.getRKEToolsEntryPoint(),
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"kube-apiserver",
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}
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CommandArgs := map[string]string{
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"client-ca-file": pki.GetCertPath(pki.CACertName),
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"cloud-provider": c.CloudProvider.Name,
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"etcd-cafile": etcdCAClientCert,
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"etcd-certfile": etcdClientCert,
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"etcd-keyfile": etcdClientKey,
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"etcd-prefix": etcdPathPrefix,
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"etcd-servers": etcdConnectionString,
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"kubelet-client-certificate": pki.GetCertPath(pki.KubeAPICertName),
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"kubelet-client-key": pki.GetKeyPath(pki.KubeAPICertName),
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"proxy-client-cert-file": pki.GetCertPath(pki.APIProxyClientCertName),
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"proxy-client-key-file": pki.GetKeyPath(pki.APIProxyClientCertName),
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"requestheader-allowed-names": pki.APIProxyClientCertName,
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"requestheader-client-ca-file": pki.GetCertPath(pki.RequestHeaderCACertName),
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"service-account-key-file": pki.GetKeyPath(pki.ServiceAccountTokenKeyName),
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"service-cluster-ip-range": c.Services.KubeAPI.ServiceClusterIPRange,
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"service-node-port-range": c.Services.KubeAPI.ServiceNodePortRange,
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"tls-cert-file": pki.GetCertPath(pki.KubeAPICertName),
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"tls-private-key-file": pki.GetKeyPath(pki.KubeAPICertName),
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}
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if len(c.CloudProvider.Name) > 0 {
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CommandArgs["cloud-config"] = cloudConfigFileName
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}
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if c.Authentication.Webhook != nil {
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CommandArgs["authentication-token-webhook-config-file"] = authnWebhookFileName
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CommandArgs["authentication-token-webhook-cache-ttl"] = c.Authentication.Webhook.CacheTimeout
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}
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if len(c.CloudProvider.Name) > 0 {
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c.Services.KubeAPI.ExtraEnv = append(
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c.Services.KubeAPI.ExtraEnv,
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fmt.Sprintf("%s=%s", CloudConfigSumEnv, getCloudConfigChecksum(c.CloudConfigFile)))
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}
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if c.EncryptionConfig.EncryptionProviderFile != "" {
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CommandArgs["experimental-encryption-provider-config"] = EncryptionProviderFilePath
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}
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if c.IsKubeletGenerateServingCertificateEnabled() {
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CommandArgs["kubelet-certificate-authority"] = pki.GetCertPath(pki.CACertName)
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}
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serviceOptions := c.GetKubernetesServicesOptions(host.DockerInfo.OSType, svcOptionData)
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if serviceOptions.KubeAPI != nil {
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for k, v := range serviceOptions.KubeAPI {
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// if the value is empty, we remove that option
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if len(v) == 0 {
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delete(CommandArgs, k)
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continue
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}
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CommandArgs[k] = v
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}
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}
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// check api server count for k8s v1.8
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if util.GetTagMajorVersion(c.Version) == "v1.8" {
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CommandArgs["apiserver-count"] = strconv.Itoa(len(c.ControlPlaneHosts))
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}
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if c.Authorization.Mode == services.RBACAuthorizationMode {
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CommandArgs["authorization-mode"] = "Node,RBAC"
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}
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if len(host.InternalAddress) > 0 && net.ParseIP(host.InternalAddress) != nil {
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CommandArgs["advertise-address"] = host.InternalAddress
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}
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admissionControlOptionName := ""
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for _, optionName := range admissionControlOptionNames {
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if _, ok := CommandArgs[optionName]; ok {
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admissionControlOptionName = optionName
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break
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}
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}
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if c.Services.KubeAPI.PodSecurityPolicy {
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CommandArgs["runtime-config"] = "policy/v1beta1/podsecuritypolicy=true"
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CommandArgs[admissionControlOptionName] = CommandArgs[admissionControlOptionName] + ",PodSecurityPolicy"
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}
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if c.Services.KubeAPI.AlwaysPullImages {
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CommandArgs[admissionControlOptionName] = CommandArgs[admissionControlOptionName] + ",AlwaysPullImages"
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}
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if c.Services.KubeAPI.AuditLog != nil {
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if alc := c.Services.KubeAPI.AuditLog.Configuration; alc != nil {
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CommandArgs[KubeAPIArgAuditLogPath] = alc.Path
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CommandArgs[KubeAPIArgAuditLogMaxAge] = strconv.Itoa(alc.MaxAge)
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CommandArgs[KubeAPIArgAuditLogMaxBackup] = strconv.Itoa(alc.MaxBackup)
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CommandArgs[KubeAPIArgAuditLogMaxSize] = strconv.Itoa(alc.MaxSize)
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CommandArgs[KubeAPIArgAuditLogFormat] = alc.Format
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CommandArgs[KubeAPIArgAuditPolicyFile] = DefaultKubeAPIArgAuditPolicyFileValue
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}
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}
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VolumesFrom := []string{
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services.SidekickContainerName,
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}
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Binds := []string{
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fmt.Sprintf("%s:/etc/kubernetes:z", path.Join(prefixPath, "/etc/kubernetes")),
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}
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if c.Services.KubeAPI.AuditLog != nil && c.Services.KubeAPI.AuditLog.Enabled {
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Binds = append(Binds, fmt.Sprintf("%s:/var/log/kube-audit:z", path.Join(prefixPath, "/var/log/kube-audit")))
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}
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// Override args if they exist, add additional args
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for arg, value := range c.Services.KubeAPI.ExtraArgs {
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if _, ok := c.Services.KubeAPI.ExtraArgs[arg]; ok {
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CommandArgs[arg] = value
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}
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}
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for arg, value := range CommandArgs {
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cmd := fmt.Sprintf("--%s=%s", arg, value)
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Command = append(Command, cmd)
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}
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Binds = append(Binds, c.Services.KubeAPI.ExtraBinds...)
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healthCheck := v3.HealthCheck{
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URL: services.GetHealthCheckURL(true, services.KubeAPIPort),
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}
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registryAuthConfig, _, _ := docker.GetImageRegistryConfig(c.Services.KubeAPI.Image, c.PrivateRegistriesMap)
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return v3.Process{
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Name: services.KubeAPIContainerName,
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Command: Command,
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VolumesFrom: VolumesFrom,
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Binds: getUniqStringList(Binds),
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Env: getUniqStringList(c.Services.KubeAPI.ExtraEnv),
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NetworkMode: "host",
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RestartPolicy: "always",
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Image: c.Services.KubeAPI.Image,
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HealthCheck: healthCheck,
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ImageRegistryAuthConfig: registryAuthConfig,
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Labels: map[string]string{
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services.ContainerNameLabel: services.KubeAPIContainerName,
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},
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}
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}
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func (c *Cluster) BuildKubeControllerProcess(host *hosts.Host, prefixPath string, svcOptionData map[string]*v3.KubernetesServicesOptions) v3.Process {
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Command := []string{
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c.getRKEToolsEntryPoint(),
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"kube-controller-manager",
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}
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CommandArgs := map[string]string{
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"cloud-provider": c.CloudProvider.Name,
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"cluster-cidr": c.ClusterCIDR,
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"kubeconfig": pki.GetConfigPath(pki.KubeControllerCertName),
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"root-ca-file": pki.GetCertPath(pki.CACertName),
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"service-account-private-key-file": pki.GetKeyPath(pki.ServiceAccountTokenKeyName),
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"service-cluster-ip-range": c.Services.KubeController.ServiceClusterIPRange,
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}
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// Best security practice is to listen on localhost, but DinD uses private container network instead of Host.
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if c.DinD {
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CommandArgs["address"] = "0.0.0.0"
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}
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if len(c.CloudProvider.Name) > 0 {
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CommandArgs["cloud-config"] = cloudConfigFileName
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}
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if len(c.CloudProvider.Name) > 0 {
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c.Services.KubeController.ExtraEnv = append(
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c.Services.KubeController.ExtraEnv,
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fmt.Sprintf("%s=%s", CloudConfigSumEnv, getCloudConfigChecksum(c.CloudConfigFile)))
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}
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serviceOptions := c.GetKubernetesServicesOptions(host.DockerInfo.OSType, svcOptionData)
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if serviceOptions.KubeController != nil {
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for k, v := range serviceOptions.KubeController {
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// if the value is empty, we remove that option
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if len(v) == 0 {
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delete(CommandArgs, k)
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continue
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}
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CommandArgs[k] = v
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}
|
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}
|
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|
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args := []string{}
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if c.Authorization.Mode == services.RBACAuthorizationMode {
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args = append(args, "--use-service-account-credentials=true")
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}
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VolumesFrom := []string{
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services.SidekickContainerName,
|
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}
|
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Binds := []string{
|
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fmt.Sprintf("%s:/etc/kubernetes:z", path.Join(prefixPath, "/etc/kubernetes")),
|
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}
|
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|
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for arg, value := range c.Services.KubeController.ExtraArgs {
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if _, ok := c.Services.KubeController.ExtraArgs[arg]; ok {
|
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CommandArgs[arg] = value
|
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}
|
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}
|
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|
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for arg, value := range CommandArgs {
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cmd := fmt.Sprintf("--%s=%s", arg, value)
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Command = append(Command, cmd)
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}
|
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|
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Binds = append(Binds, c.Services.KubeController.ExtraBinds...)
|
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|
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healthCheck := v3.HealthCheck{
|
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URL: services.GetHealthCheckURL(false, services.KubeControllerPort),
|
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}
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registryAuthConfig, _, _ := docker.GetImageRegistryConfig(c.Services.KubeController.Image, c.PrivateRegistriesMap)
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return v3.Process{
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Name: services.KubeControllerContainerName,
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Command: Command,
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Args: args,
|
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VolumesFrom: VolumesFrom,
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Binds: getUniqStringList(Binds),
|
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Env: getUniqStringList(c.Services.KubeController.ExtraEnv),
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NetworkMode: "host",
|
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RestartPolicy: "always",
|
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Image: c.Services.KubeController.Image,
|
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HealthCheck: healthCheck,
|
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ImageRegistryAuthConfig: registryAuthConfig,
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Labels: map[string]string{
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services.ContainerNameLabel: services.KubeControllerContainerName,
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},
|
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}
|
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}
|
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|
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func (c *Cluster) BuildKubeletProcess(host *hosts.Host, prefixPath string, svcOptionData map[string]*v3.KubernetesServicesOptions) v3.Process {
|
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Command := []string{
|
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c.getRKEToolsEntryPoint(),
|
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"kubelet",
|
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}
|
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if host.DockerInfo.OSType == "windows" { // compatible with Windows
|
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Command = []string{
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"pwsh", "-NoLogo", "-NonInteractive", "-File", "c:/usr/bin/entrypoint.ps1",
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"kubelet",
|
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}
|
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}
|
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|
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CommandArgs := map[string]string{
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"client-ca-file": pki.GetCertPath(pki.CACertName),
|
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"cloud-provider": c.CloudProvider.Name,
|
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"cluster-dns": c.ClusterDNSServer,
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"cluster-domain": c.ClusterDomain,
|
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"fail-swap-on": strconv.FormatBool(c.Services.Kubelet.FailSwapOn),
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"hostname-override": host.HostnameOverride,
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"kubeconfig": pki.GetConfigPath(pki.KubeNodeCertName),
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"pod-infra-container-image": c.Services.Kubelet.InfraContainerImage,
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"root-dir": path.Join(prefixPath, "/var/lib/kubelet"),
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}
|
|
if host.DockerInfo.OSType == "windows" { // compatible with Windows
|
|
CommandArgs["kubeconfig"] = path.Join(prefixPath, pki.GetConfigPath(pki.KubeNodeCertName))
|
|
CommandArgs["client-ca-file"] = path.Join(prefixPath, pki.GetCertPath(pki.CACertName))
|
|
// this's a stopgap, we could drop this after https://github.com/kubernetes/kubernetes/pull/75618 merged
|
|
CommandArgs["pod-infra-container-image"] = c.SystemImages.WindowsPodInfraContainer
|
|
}
|
|
|
|
if c.DinD {
|
|
CommandArgs["healthz-bind-address"] = "0.0.0.0"
|
|
}
|
|
|
|
if host.IsControl && !host.IsWorker {
|
|
CommandArgs["register-with-taints"] = unschedulableControlTaint
|
|
}
|
|
if host.Address != host.InternalAddress {
|
|
CommandArgs["node-ip"] = host.InternalAddress
|
|
}
|
|
if len(c.CloudProvider.Name) > 0 {
|
|
CommandArgs["cloud-config"] = cloudConfigFileName
|
|
if host.DockerInfo.OSType == "windows" { // compatible with Windows
|
|
CommandArgs["cloud-config"] = path.Join(prefixPath, cloudConfigFileName)
|
|
}
|
|
}
|
|
if c.IsKubeletGenerateServingCertificateEnabled() {
|
|
CommandArgs["tls-cert-file"] = pki.GetCertPath(pki.GetCrtNameForHost(host, pki.KubeletCertName))
|
|
CommandArgs["tls-private-key-file"] = pki.GetCertPath(fmt.Sprintf("%s-key", pki.GetCrtNameForHost(host, pki.KubeletCertName)))
|
|
}
|
|
|
|
if len(c.CloudProvider.Name) > 0 {
|
|
c.Services.Kubelet.ExtraEnv = append(
|
|
c.Services.Kubelet.ExtraEnv,
|
|
fmt.Sprintf("%s=%s", CloudConfigSumEnv, getCloudConfigChecksum(c.CloudConfigFile)))
|
|
}
|
|
if len(c.PrivateRegistriesMap) > 0 {
|
|
kubeletDockerConfig, _ := docker.GetKubeletDockerConfig(c.PrivateRegistriesMap)
|
|
c.Services.Kubelet.ExtraEnv = append(
|
|
c.Services.Kubelet.ExtraEnv,
|
|
fmt.Sprintf("%s=%s", KubeletDockerConfigEnv,
|
|
b64.StdEncoding.EncodeToString([]byte(kubeletDockerConfig))))
|
|
|
|
c.Services.Kubelet.ExtraEnv = append(
|
|
c.Services.Kubelet.ExtraEnv,
|
|
fmt.Sprintf("%s=%s", KubeletDockerConfigFileEnv, path.Join(prefixPath, KubeletDockerConfigPath)))
|
|
}
|
|
serviceOptions := c.GetKubernetesServicesOptions(host.DockerInfo.OSType, svcOptionData)
|
|
if serviceOptions.Kubelet != nil {
|
|
for k, v := range serviceOptions.Kubelet {
|
|
// if the value is empty, we remove that option
|
|
if len(v) == 0 {
|
|
delete(CommandArgs, k)
|
|
continue
|
|
}
|
|
|
|
// if the value is '', we set that option to empty string,
|
|
// e.g.: there's not cgroup on windows, we need to empty `enforce-node-allocatable` option
|
|
if v == "''" {
|
|
CommandArgs[k] = ""
|
|
continue
|
|
}
|
|
|
|
// if the value has [PREFIX_PATH] prefix, we need to replace it with `prefixPath`,
|
|
// e.g.: windows allows to use other drivers than `c:`
|
|
if strings.HasPrefix(v, "[PREFIX_PATH]") {
|
|
CommandArgs[k] = path.Join(prefixPath, strings.Replace(v, "[PREFIX_PATH]", "", -1))
|
|
continue
|
|
}
|
|
|
|
CommandArgs[k] = v
|
|
}
|
|
}
|
|
|
|
VolumesFrom := []string{
|
|
services.SidekickContainerName,
|
|
}
|
|
Binds := []string{
|
|
fmt.Sprintf("%s:/etc/kubernetes:z", path.Join(prefixPath, "/etc/kubernetes")),
|
|
"/etc/cni:/etc/cni:rw,z",
|
|
"/opt/cni:/opt/cni:rw,z",
|
|
fmt.Sprintf("%s:/var/lib/cni:z", path.Join(prefixPath, "/var/lib/cni")),
|
|
"/var/lib/calico:/var/lib/calico:z",
|
|
"/etc/resolv.conf:/etc/resolv.conf",
|
|
"/sys:/sys:rprivate",
|
|
host.DockerInfo.DockerRootDir + ":" + host.DockerInfo.DockerRootDir + ":rw,rslave,z",
|
|
fmt.Sprintf("%s:%s:shared,z", path.Join(prefixPath, "/var/lib/kubelet"), path.Join(prefixPath, "/var/lib/kubelet")),
|
|
"/var/lib/rancher:/var/lib/rancher:shared,z",
|
|
"/var/run:/var/run:rw,rprivate",
|
|
"/run:/run:rprivate",
|
|
fmt.Sprintf("%s:/etc/ceph", path.Join(prefixPath, "/etc/ceph")),
|
|
"/dev:/host/dev:rprivate",
|
|
"/var/log/containers:/var/log/containers:z",
|
|
"/var/log/pods:/var/log/pods:z",
|
|
"/usr:/host/usr:ro",
|
|
"/etc:/host/etc:ro",
|
|
}
|
|
// Special case to simplify using flex volumes
|
|
if path.Join(prefixPath, "/var/lib/kubelet") != "/var/lib/kubelet" {
|
|
Binds = append(Binds, "/var/lib/kubelet/volumeplugins:/var/lib/kubelet/volumeplugins:shared,z")
|
|
}
|
|
if host.DockerInfo.OSType == "windows" { // compatible with Windows
|
|
Binds = []string{
|
|
// put the execution binaries and cloud provider configuration to the host
|
|
fmt.Sprintf("%s:c:/host/etc/kubernetes", path.Join(prefixPath, "/etc/kubernetes")),
|
|
// put the flexvolume plugins or private registry docker configuration to the host
|
|
fmt.Sprintf("%s:c:/host/var/lib/kubelet", path.Join(prefixPath, "/var/lib/kubelet")),
|
|
// exchange resources with other components
|
|
fmt.Sprintf("%s:c:/host/run", path.Join(prefixPath, "/run")),
|
|
}
|
|
}
|
|
|
|
Env := c.Services.Kubelet.ExtraEnv
|
|
if host.DockerInfo.OSType == "windows" { // compatible with Windows
|
|
Env = append(Env,
|
|
fmt.Sprintf("%s=%s", ClusterCIDREnv, c.ClusterCIDR),
|
|
fmt.Sprintf("%s=%s", ClusterDomainEnv, c.ClusterDomain),
|
|
fmt.Sprintf("%s=%s", ClusterDNSServerEnv, c.ClusterDNSServer),
|
|
fmt.Sprintf("%s=%s", ClusterServiceCIDREnv, c.Services.KubeController.ServiceClusterIPRange),
|
|
fmt.Sprintf("%s=%s", NodeAddressEnv, host.Address),
|
|
fmt.Sprintf("%s=%s", NodeInternalAddressEnv, host.InternalAddress),
|
|
fmt.Sprintf("%s=%s", CloudProviderNameEnv, c.CloudProvider.Name),
|
|
)
|
|
}
|
|
|
|
for arg, value := range c.Services.Kubelet.ExtraArgs {
|
|
if _, ok := c.Services.Kubelet.ExtraArgs[arg]; ok {
|
|
CommandArgs[arg] = value
|
|
}
|
|
}
|
|
|
|
for arg, value := range CommandArgs {
|
|
cmd := fmt.Sprintf("--%s=%s", arg, value)
|
|
Command = append(Command, cmd)
|
|
}
|
|
|
|
Binds = append(Binds, c.Services.Kubelet.ExtraBinds...)
|
|
|
|
healthCheck := v3.HealthCheck{
|
|
URL: services.GetHealthCheckURL(false, services.KubeletPort),
|
|
}
|
|
registryAuthConfig, _, _ := docker.GetImageRegistryConfig(c.Services.Kubelet.Image, c.PrivateRegistriesMap)
|
|
|
|
return v3.Process{
|
|
Name: services.KubeletContainerName,
|
|
Command: Command,
|
|
VolumesFrom: VolumesFrom,
|
|
Binds: getUniqStringList(Binds),
|
|
Env: getUniqStringList(Env),
|
|
NetworkMode: "host",
|
|
RestartPolicy: "always",
|
|
Image: c.Services.Kubelet.Image,
|
|
PidMode: "host",
|
|
Privileged: true,
|
|
HealthCheck: healthCheck,
|
|
ImageRegistryAuthConfig: registryAuthConfig,
|
|
Labels: map[string]string{
|
|
services.ContainerNameLabel: services.KubeletContainerName,
|
|
},
|
|
}
|
|
}
|
|
|
|
func (c *Cluster) BuildKubeProxyProcess(host *hosts.Host, prefixPath string, svcOptionData map[string]*v3.KubernetesServicesOptions) v3.Process {
|
|
Command := []string{
|
|
c.getRKEToolsEntryPoint(),
|
|
"kube-proxy",
|
|
}
|
|
if host.DockerInfo.OSType == "windows" { // compatible with Windows
|
|
Command = []string{
|
|
"pwsh", "-NoLogo", "-NonInteractive", "-File", "c:/usr/bin/entrypoint.ps1",
|
|
"kube-proxy",
|
|
}
|
|
}
|
|
|
|
CommandArgs := map[string]string{
|
|
"cluster-cidr": c.ClusterCIDR,
|
|
"hostname-override": host.HostnameOverride,
|
|
"kubeconfig": pki.GetConfigPath(pki.KubeProxyCertName),
|
|
}
|
|
if host.DockerInfo.OSType == "windows" { // compatible with Windows
|
|
CommandArgs["kubeconfig"] = path.Join(prefixPath, pki.GetConfigPath(pki.KubeProxyCertName))
|
|
}
|
|
|
|
serviceOptions := c.GetKubernetesServicesOptions(host.DockerInfo.OSType, svcOptionData)
|
|
if serviceOptions.Kubeproxy != nil {
|
|
for k, v := range serviceOptions.Kubeproxy {
|
|
// if the value is empty, we remove that option
|
|
if len(v) == 0 {
|
|
delete(CommandArgs, k)
|
|
continue
|
|
}
|
|
CommandArgs[k] = v
|
|
}
|
|
}
|
|
// If cloudprovider is set (not empty), set the bind address because the node will not be able to retrieve it's IP address in case cloud provider changes the node object name (i.e. AWS and Openstack)
|
|
if c.CloudProvider.Name != "" {
|
|
if host.InternalAddress != "" && host.Address != host.InternalAddress {
|
|
CommandArgs["bind-address"] = host.InternalAddress
|
|
} else {
|
|
CommandArgs["bind-address"] = host.Address
|
|
}
|
|
}
|
|
|
|
// Best security practice is to listen on localhost, but DinD uses private container network instead of Host.
|
|
if c.DinD {
|
|
CommandArgs["healthz-bind-address"] = "0.0.0.0"
|
|
}
|
|
|
|
VolumesFrom := []string{
|
|
services.SidekickContainerName,
|
|
}
|
|
//TODO: we should reevaluate if any of the bind mounts here should be using read-only mode
|
|
Binds := []string{
|
|
fmt.Sprintf("%s:/etc/kubernetes:z", path.Join(prefixPath, "/etc/kubernetes")),
|
|
"/run:/run",
|
|
fmt.Sprintf("%s:/lib/modules:z,ro", path.Join(prefixPath, "/lib/modules")),
|
|
}
|
|
if host.DockerInfo.OSType == "windows" { // compatible with Windows
|
|
Binds = []string{
|
|
// put the execution binaries to the host
|
|
fmt.Sprintf("%s:c:/host/etc/kubernetes", path.Join(prefixPath, "/etc/kubernetes")),
|
|
// exchange resources with other components
|
|
fmt.Sprintf("%s:c:/host/run", path.Join(prefixPath, "/run")),
|
|
fmt.Sprintf("%s:c:/host/lib/modules", path.Join(prefixPath, "/lib/modules")),
|
|
}
|
|
}
|
|
|
|
Env := c.Services.Kubeproxy.ExtraEnv
|
|
if host.DockerInfo.OSType == "windows" { // compatible with Windows
|
|
Env = append(Env,
|
|
fmt.Sprintf("%s=%s", ClusterCIDREnv, c.ClusterCIDR),
|
|
fmt.Sprintf("%s=%s", ClusterDomainEnv, c.ClusterDomain),
|
|
fmt.Sprintf("%s=%s", ClusterDNSServerEnv, c.ClusterDNSServer),
|
|
fmt.Sprintf("%s=%s", ClusterServiceCIDREnv, c.Services.KubeController.ServiceClusterIPRange),
|
|
fmt.Sprintf("%s=%s", NodeAddressEnv, host.Address),
|
|
fmt.Sprintf("%s=%s", NodeInternalAddressEnv, host.InternalAddress),
|
|
fmt.Sprintf("%s=%s", CloudProviderNameEnv, c.CloudProvider.Name),
|
|
)
|
|
}
|
|
|
|
for arg, value := range c.Services.Kubeproxy.ExtraArgs {
|
|
if _, ok := c.Services.Kubeproxy.ExtraArgs[arg]; ok {
|
|
CommandArgs[arg] = value
|
|
}
|
|
}
|
|
|
|
for arg, value := range CommandArgs {
|
|
cmd := fmt.Sprintf("--%s=%s", arg, value)
|
|
Command = append(Command, cmd)
|
|
}
|
|
|
|
Binds = append(Binds, c.Services.Kubeproxy.ExtraBinds...)
|
|
|
|
healthCheck := v3.HealthCheck{
|
|
URL: services.GetHealthCheckURL(false, services.KubeproxyPort),
|
|
}
|
|
registryAuthConfig, _, _ := docker.GetImageRegistryConfig(c.Services.Kubeproxy.Image, c.PrivateRegistriesMap)
|
|
return v3.Process{
|
|
Name: services.KubeproxyContainerName,
|
|
Command: Command,
|
|
VolumesFrom: VolumesFrom,
|
|
Binds: getUniqStringList(Binds),
|
|
Env: getUniqStringList(Env),
|
|
NetworkMode: "host",
|
|
RestartPolicy: "always",
|
|
PidMode: "host",
|
|
Privileged: true,
|
|
HealthCheck: healthCheck,
|
|
Image: c.Services.Kubeproxy.Image,
|
|
ImageRegistryAuthConfig: registryAuthConfig,
|
|
Labels: map[string]string{
|
|
services.ContainerNameLabel: services.KubeproxyContainerName,
|
|
},
|
|
}
|
|
}
|
|
|
|
func (c *Cluster) BuildProxyProcess(host *hosts.Host, prefixPath string) v3.Process {
|
|
Command := []string{
|
|
"nginx-proxy",
|
|
}
|
|
if host.DockerInfo.OSType == "windows" { // compatible with Windows
|
|
Command = []string{
|
|
"pwsh", "-NoLogo", "-NonInteractive", "-File", "c:/usr/bin/nginx-proxy.ps1",
|
|
}
|
|
}
|
|
|
|
nginxProxyEnv := ""
|
|
for i, host := range c.ControlPlaneHosts {
|
|
nginxProxyEnv += fmt.Sprintf("%s", host.InternalAddress)
|
|
if i < (len(c.ControlPlaneHosts) - 1) {
|
|
nginxProxyEnv += ","
|
|
}
|
|
}
|
|
Env := []string{fmt.Sprintf("%s=%s", services.NginxProxyEnvName, nginxProxyEnv)}
|
|
|
|
VolumesFrom := []string{}
|
|
if host.DockerInfo.OSType == "windows" { // compatible withe Windows
|
|
VolumesFrom = []string{
|
|
services.SidekickContainerName,
|
|
}
|
|
}
|
|
|
|
Binds := []string{}
|
|
if host.DockerInfo.OSType == "windows" { // compatible with Windows
|
|
Binds = []string{
|
|
// put the execution binaries and generate the configuration to the host
|
|
fmt.Sprintf("%s:c:/host/etc/nginx", path.Join(prefixPath, "/etc/nginx")),
|
|
// exchange resources with other components
|
|
fmt.Sprintf("%s:c:/host/run", path.Join(prefixPath, "/run")),
|
|
}
|
|
}
|
|
|
|
registryAuthConfig, _, _ := docker.GetImageRegistryConfig(c.SystemImages.NginxProxy, c.PrivateRegistriesMap)
|
|
return v3.Process{
|
|
Name: services.NginxProxyContainerName,
|
|
Env: Env,
|
|
// we do this to force container update when CP hosts change.
|
|
Args: Env,
|
|
Command: Command,
|
|
NetworkMode: "host",
|
|
RestartPolicy: "always",
|
|
Binds: Binds,
|
|
VolumesFrom: VolumesFrom,
|
|
HealthCheck: v3.HealthCheck{},
|
|
Image: c.SystemImages.NginxProxy,
|
|
ImageRegistryAuthConfig: registryAuthConfig,
|
|
Labels: map[string]string{
|
|
services.ContainerNameLabel: services.NginxProxyContainerName,
|
|
},
|
|
}
|
|
}
|
|
|
|
func (c *Cluster) BuildSchedulerProcess(host *hosts.Host, prefixPath string, svcOptionData map[string]*v3.KubernetesServicesOptions) v3.Process {
|
|
Command := []string{
|
|
c.getRKEToolsEntryPoint(),
|
|
"kube-scheduler",
|
|
}
|
|
|
|
CommandArgs := map[string]string{
|
|
"kubeconfig": pki.GetConfigPath(pki.KubeSchedulerCertName),
|
|
}
|
|
|
|
// Best security practice is to listen on localhost, but DinD uses private container network instead of Host.
|
|
if c.DinD {
|
|
CommandArgs["address"] = "0.0.0.0"
|
|
}
|
|
serviceOptions := c.GetKubernetesServicesOptions(host.DockerInfo.OSType, svcOptionData)
|
|
if serviceOptions.Scheduler != nil {
|
|
for k, v := range serviceOptions.Scheduler {
|
|
// if the value is empty, we remove that option
|
|
if len(v) == 0 {
|
|
delete(CommandArgs, k)
|
|
continue
|
|
}
|
|
CommandArgs[k] = v
|
|
}
|
|
}
|
|
|
|
VolumesFrom := []string{
|
|
services.SidekickContainerName,
|
|
}
|
|
Binds := []string{
|
|
fmt.Sprintf("%s:/etc/kubernetes:z", path.Join(prefixPath, "/etc/kubernetes")),
|
|
}
|
|
|
|
for arg, value := range c.Services.Scheduler.ExtraArgs {
|
|
if _, ok := c.Services.Scheduler.ExtraArgs[arg]; ok {
|
|
CommandArgs[arg] = value
|
|
}
|
|
}
|
|
|
|
for arg, value := range CommandArgs {
|
|
cmd := fmt.Sprintf("--%s=%s", arg, value)
|
|
Command = append(Command, cmd)
|
|
}
|
|
|
|
Binds = append(Binds, c.Services.Scheduler.ExtraBinds...)
|
|
|
|
healthCheck := v3.HealthCheck{
|
|
URL: services.GetHealthCheckURL(false, services.SchedulerPort),
|
|
}
|
|
registryAuthConfig, _, _ := docker.GetImageRegistryConfig(c.Services.Scheduler.Image, c.PrivateRegistriesMap)
|
|
return v3.Process{
|
|
Name: services.SchedulerContainerName,
|
|
Command: Command,
|
|
Binds: getUniqStringList(Binds),
|
|
Env: c.Services.Scheduler.ExtraEnv,
|
|
VolumesFrom: VolumesFrom,
|
|
NetworkMode: "host",
|
|
RestartPolicy: "always",
|
|
Image: c.Services.Scheduler.Image,
|
|
HealthCheck: healthCheck,
|
|
ImageRegistryAuthConfig: registryAuthConfig,
|
|
Labels: map[string]string{
|
|
services.ContainerNameLabel: services.SchedulerContainerName,
|
|
},
|
|
}
|
|
}
|
|
|
|
func (c *Cluster) BuildSidecarProcess(host *hosts.Host, prefixPath string) v3.Process {
|
|
Command := []string{
|
|
"/bin/bash",
|
|
}
|
|
if host.DockerInfo.OSType == "windows" { // compatible with Windows
|
|
// windows docker doesn't support host network mode,
|
|
// so we can't use the network components installed by addon like Linux.
|
|
// we use sidecar container to maintain the network components
|
|
Command = []string{
|
|
"pwsh", "-NoLogo", "-NonInteractive", "-File", "c:/usr/bin/sidecar.ps1",
|
|
}
|
|
}
|
|
|
|
Env := []string{}
|
|
if host.DockerInfo.OSType == "windows" { // compatible with Windows
|
|
Env = append(Env,
|
|
fmt.Sprintf("%s=%s", ClusterCIDREnv, c.ClusterCIDR),
|
|
fmt.Sprintf("%s=%s", ClusterDomainEnv, c.ClusterDomain),
|
|
fmt.Sprintf("%s=%s", ClusterDNSServerEnv, c.ClusterDNSServer),
|
|
fmt.Sprintf("%s=%s", ClusterServiceCIDREnv, c.Services.KubeController.ServiceClusterIPRange),
|
|
fmt.Sprintf("%s=%s", NodeAddressEnv, host.Address),
|
|
fmt.Sprintf("%s=%s", NodeInternalAddressEnv, host.InternalAddress),
|
|
fmt.Sprintf("%s=%s", CloudProviderNameEnv, c.CloudProvider.Name),
|
|
// sidekick needs the node name to drive the cni network management, e.g: flanneld
|
|
fmt.Sprintf("%s=%s", NodeNameOverrideEnv, host.HostnameOverride),
|
|
// sidekick use the network configuration to drive the cni network management, e.g: flanneld
|
|
fmt.Sprintf("%s=%s", NetworkConfigurationEnv, getNetworkJSON(c.Network)),
|
|
)
|
|
}
|
|
|
|
Binds := []string{}
|
|
if host.DockerInfo.OSType == "windows" { // compatible with Windows
|
|
Binds = []string{
|
|
// put the execution binaries and the cni binaries to the host
|
|
fmt.Sprintf("%s:c:/host/opt", path.Join(prefixPath, "/opt")),
|
|
// put the cni configuration to the host
|
|
fmt.Sprintf("%s:c:/host/etc/cni/net.d", path.Join(prefixPath, "/etc/cni/net.d")),
|
|
// put the cni network component configuration to the host
|
|
fmt.Sprintf("%s:c:/host/etc/kube-flannel", path.Join(prefixPath, "/etc/kube-flannel")),
|
|
// exchange resources with other components
|
|
fmt.Sprintf("%s:c:/host/run", path.Join(prefixPath, "/run")),
|
|
}
|
|
}
|
|
|
|
RestartPolicy := ""
|
|
if host.DockerInfo.OSType == "windows" { // compatible with Windows
|
|
RestartPolicy = "always"
|
|
}
|
|
|
|
NetworkMode := "none"
|
|
if host.DockerInfo.OSType == "windows" { // compatible with Windows
|
|
NetworkMode = ""
|
|
}
|
|
|
|
registryAuthConfig, _, _ := docker.GetImageRegistryConfig(c.SystemImages.KubernetesServicesSidecar, c.PrivateRegistriesMap)
|
|
return v3.Process{
|
|
Name: services.SidekickContainerName,
|
|
NetworkMode: NetworkMode,
|
|
RestartPolicy: RestartPolicy,
|
|
Binds: getUniqStringList(Binds),
|
|
Env: getUniqStringList(Env),
|
|
Image: c.SystemImages.KubernetesServicesSidecar,
|
|
HealthCheck: v3.HealthCheck{},
|
|
ImageRegistryAuthConfig: registryAuthConfig,
|
|
Labels: map[string]string{
|
|
services.ContainerNameLabel: services.SidekickContainerName,
|
|
},
|
|
Command: Command,
|
|
}
|
|
}
|
|
|
|
func (c *Cluster) BuildEtcdProcess(host *hosts.Host, etcdHosts []*hosts.Host, prefixPath string) v3.Process {
|
|
nodeName := pki.GetCrtNameForHost(host, pki.EtcdCertName)
|
|
initCluster := ""
|
|
architecture := "amd64"
|
|
if len(etcdHosts) == 0 {
|
|
initCluster = services.GetEtcdInitialCluster(c.EtcdHosts)
|
|
if len(c.EtcdHosts) > 0 {
|
|
architecture = c.EtcdHosts[0].DockerInfo.Architecture
|
|
}
|
|
} else {
|
|
initCluster = services.GetEtcdInitialCluster(etcdHosts)
|
|
architecture = etcdHosts[0].DockerInfo.Architecture
|
|
}
|
|
|
|
clusterState := "new"
|
|
if host.ExistingEtcdCluster {
|
|
clusterState = "existing"
|
|
}
|
|
args := []string{
|
|
"/usr/local/bin/etcd",
|
|
"--peer-client-cert-auth",
|
|
"--client-cert-auth",
|
|
}
|
|
|
|
// If InternalAddress is not explicitly set, it's set to the same value as Address. This is all good until we deploy on a host with a DNATed public address like AWS, in that case we can't bind to that address so we fall back to 0.0.0.0
|
|
listenAddress := host.InternalAddress
|
|
if host.Address == host.InternalAddress {
|
|
listenAddress = "0.0.0.0"
|
|
}
|
|
|
|
CommandArgs := map[string]string{
|
|
"name": "etcd-" + host.HostnameOverride,
|
|
"data-dir": services.EtcdDataDir,
|
|
"advertise-client-urls": "https://" + host.InternalAddress + ":2379,https://" + host.InternalAddress + ":4001",
|
|
"listen-client-urls": "https://" + listenAddress + ":2379",
|
|
"initial-advertise-peer-urls": "https://" + host.InternalAddress + ":2380",
|
|
"listen-peer-urls": "https://" + listenAddress + ":2380",
|
|
"initial-cluster-token": "etcd-cluster-1",
|
|
"initial-cluster": initCluster,
|
|
"initial-cluster-state": clusterState,
|
|
"trusted-ca-file": pki.GetCertPath(pki.CACertName),
|
|
"peer-trusted-ca-file": pki.GetCertPath(pki.CACertName),
|
|
"cert-file": pki.GetCertPath(nodeName),
|
|
"key-file": pki.GetKeyPath(nodeName),
|
|
"peer-cert-file": pki.GetCertPath(nodeName),
|
|
"peer-key-file": pki.GetKeyPath(nodeName),
|
|
}
|
|
|
|
Binds := []string{
|
|
fmt.Sprintf("%s:%s:z", path.Join(prefixPath, "/var/lib/etcd"), services.EtcdDataDir),
|
|
fmt.Sprintf("%s:/etc/kubernetes:z", path.Join(prefixPath, "/etc/kubernetes")),
|
|
}
|
|
|
|
for arg, value := range c.Services.Etcd.ExtraArgs {
|
|
if _, ok := c.Services.Etcd.ExtraArgs[arg]; ok {
|
|
CommandArgs[arg] = value
|
|
}
|
|
}
|
|
|
|
for arg, value := range CommandArgs {
|
|
cmd := fmt.Sprintf("--%s=%s", arg, value)
|
|
args = append(args, cmd)
|
|
}
|
|
|
|
Binds = append(Binds, c.Services.Etcd.ExtraBinds...)
|
|
healthCheck := v3.HealthCheck{
|
|
URL: fmt.Sprintf("https://%s:2379/health", host.InternalAddress),
|
|
}
|
|
registryAuthConfig, _, _ := docker.GetImageRegistryConfig(c.Services.Etcd.Image, c.PrivateRegistriesMap)
|
|
|
|
// Determine etcd version for correct etcdctl environment variables
|
|
etcdTag, err := util.GetImageTagFromImage(c.Services.Etcd.Image)
|
|
if err != nil {
|
|
logrus.Warn(err)
|
|
}
|
|
etcdSemVer, err := util.StrToSemVer(etcdTag)
|
|
if err != nil {
|
|
logrus.Warn(err)
|
|
}
|
|
maxEtcdOldEnvSemVer, err := util.StrToSemVer(MaxEtcdOldEnvVersion)
|
|
if err != nil {
|
|
logrus.Warn(err)
|
|
}
|
|
|
|
// Configure default etcdctl environment variables
|
|
Env := []string{}
|
|
Env = append(Env, "ETCDCTL_API=3")
|
|
Env = append(Env, fmt.Sprintf("ETCDCTL_CACERT=%s", pki.GetCertPath(pki.CACertName)))
|
|
Env = append(Env, fmt.Sprintf("ETCDCTL_CERT=%s", pki.GetCertPath(nodeName)))
|
|
Env = append(Env, fmt.Sprintf("ETCDCTL_KEY=%s", pki.GetKeyPath(nodeName)))
|
|
|
|
// Apply old configuration to avoid replacing etcd container
|
|
if etcdSemVer.LessThan(*maxEtcdOldEnvSemVer) {
|
|
logrus.Debugf("Version [%s] is less than version [%s]", etcdSemVer, maxEtcdOldEnvSemVer)
|
|
Env = append(Env, fmt.Sprintf("ETCDCTL_ENDPOINT=https://%s:2379", listenAddress))
|
|
} else {
|
|
logrus.Debugf("Version [%s] is equal or higher than version [%s]", etcdSemVer, maxEtcdOldEnvSemVer)
|
|
// Point etcdctl to localhost in case we have listen all (0.0.0.0) configured
|
|
if listenAddress == "0.0.0.0" {
|
|
Env = append(Env, "ETCDCTL_ENDPOINTS=https://127.0.0.1:2379")
|
|
// If internal address is configured, set endpoint to that address as well
|
|
} else {
|
|
Env = append(Env, fmt.Sprintf("ETCDCTL_ENDPOINTS=https://%s:2379", listenAddress))
|
|
}
|
|
}
|
|
|
|
if architecture == "aarch64" {
|
|
architecture = "arm64"
|
|
}
|
|
Env = append(Env, fmt.Sprintf("ETCD_UNSUPPORTED_ARCH=%s", architecture))
|
|
|
|
Env = append(Env, c.Services.Etcd.ExtraEnv...)
|
|
var user string
|
|
if c.Services.Etcd.UID != 0 && c.Services.Etcd.GID != 0 {
|
|
user = fmt.Sprintf("%d:%d", c.Services.Etcd.UID, c.Services.Etcd.UID)
|
|
}
|
|
return v3.Process{
|
|
Name: services.EtcdContainerName,
|
|
Args: args,
|
|
Binds: getUniqStringList(Binds),
|
|
Env: Env,
|
|
User: user,
|
|
NetworkMode: "host",
|
|
RestartPolicy: "always",
|
|
Image: c.Services.Etcd.Image,
|
|
HealthCheck: healthCheck,
|
|
ImageRegistryAuthConfig: registryAuthConfig,
|
|
Labels: map[string]string{
|
|
services.ContainerNameLabel: services.EtcdContainerName,
|
|
},
|
|
}
|
|
}
|
|
|
|
func BuildPortChecksFromPortList(host *hosts.Host, portList []string, proto string) []v3.PortCheck {
|
|
portChecks := []v3.PortCheck{}
|
|
for _, port := range portList {
|
|
intPort, _ := strconv.Atoi(port)
|
|
portChecks = append(portChecks, v3.PortCheck{
|
|
Address: host.Address,
|
|
Port: intPort,
|
|
Protocol: proto,
|
|
})
|
|
}
|
|
return portChecks
|
|
}
|
|
|
|
func (c *Cluster) GetKubernetesServicesOptions(osType string, data map[string]*v3.KubernetesServicesOptions) v3.KubernetesServicesOptions {
|
|
if osType == "windows" {
|
|
if svcOption, ok := data["k8s-windows-service-options"]; ok {
|
|
return *svcOption
|
|
}
|
|
} else {
|
|
if svcOption, ok := data["k8s-service-options"]; ok {
|
|
return *svcOption
|
|
}
|
|
}
|
|
return c.getDefaultKubernetesServicesOptions(osType)
|
|
}
|
|
|
|
func (c *Cluster) getDefaultKubernetesServicesOptions(osType string) v3.KubernetesServicesOptions {
|
|
var serviceOptionsTemplate map[string]v3.KubernetesServicesOptions
|
|
switch osType {
|
|
case "windows":
|
|
serviceOptionsTemplate = metadata.K8sVersionToWindowsServiceOptions
|
|
default:
|
|
serviceOptionsTemplate = metadata.K8sVersionToServiceOptions
|
|
}
|
|
|
|
// read service options from minor version first
|
|
if serviceOptions, ok := serviceOptionsTemplate[c.Version]; ok {
|
|
return serviceOptions
|
|
}
|
|
|
|
clusterMajorVersion := util.GetTagMajorVersion(c.Version)
|
|
k8sImageTag, err := util.GetImageTagFromImage(c.SystemImages.Kubernetes)
|
|
if err != nil {
|
|
logrus.Warn(err)
|
|
}
|
|
|
|
k8sImageMajorVersion := util.GetTagMajorVersion(k8sImageTag)
|
|
|
|
if clusterMajorVersion != k8sImageMajorVersion && k8sImageMajorVersion != "" {
|
|
clusterMajorVersion = k8sImageMajorVersion
|
|
}
|
|
|
|
if serviceOptions, ok := serviceOptionsTemplate[clusterMajorVersion]; ok {
|
|
return serviceOptions
|
|
}
|
|
|
|
return v3.KubernetesServicesOptions{}
|
|
}
|
|
|
|
func getCloudConfigChecksum(config string) string {
|
|
configByteSum := md5.Sum([]byte(config))
|
|
return fmt.Sprintf("%x", configByteSum)
|
|
}
|
|
|
|
func getUniqStringList(l []string) []string {
|
|
m := map[string]bool{}
|
|
ul := []string{}
|
|
for _, k := range l {
|
|
if _, ok := m[k]; !ok {
|
|
m[k] = true
|
|
ul = append(ul, k)
|
|
}
|
|
}
|
|
return ul
|
|
}
|
|
|
|
func (c *Cluster) getRKEToolsEntryPoint() string {
|
|
v := strings.Split(c.SystemImages.KubernetesServicesSidecar, ":")
|
|
last := v[len(v)-1]
|
|
|
|
sv, err := util.StrToSemVer(last)
|
|
if err != nil {
|
|
return DefaultToolsEntrypoint
|
|
}
|
|
svdefault, err := util.StrToSemVer(DefaultToolsEntrypointVersion)
|
|
if err != nil {
|
|
return DefaultToolsEntrypoint
|
|
}
|
|
|
|
if sv.LessThan(*svdefault) {
|
|
return LegacyToolsEntrypoint
|
|
}
|
|
return DefaultToolsEntrypoint
|
|
}
|
|
|
|
func getNetworkJSON(netconfig v3.NetworkConfig) string {
|
|
ret, err := json.Marshal(netconfig)
|
|
if err != nil {
|
|
return "{}"
|
|
}
|
|
return string(ret)
|
|
}
|