mirror of https://github.com/k3s-io/k3s
384 lines
12 KiB
Go
384 lines
12 KiB
Go
/*
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Copyright 2014 The Kubernetes Authors All rights reserved.
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Licensed under the Apache License, Version 2.0 (the "License");
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you may not use this file except in compliance with the License.
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You may obtain a copy of the License at
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http://www.apache.org/licenses/LICENSE-2.0
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Unless required by applicable law or agreed to in writing, software
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distributed under the License is distributed on an "AS IS" BASIS,
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WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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See the License for the specific language governing permissions and
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limitations under the License.
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*/
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package gce_pd
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import (
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"fmt"
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"os"
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"path"
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"strconv"
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"github.com/golang/glog"
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"k8s.io/kubernetes/pkg/api"
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"k8s.io/kubernetes/pkg/api/resource"
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"k8s.io/kubernetes/pkg/types"
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"k8s.io/kubernetes/pkg/util/mount"
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"k8s.io/kubernetes/pkg/util/strings"
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"k8s.io/kubernetes/pkg/volume"
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)
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// This is the primary entrypoint for volume plugins.
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func ProbeVolumePlugins() []volume.VolumePlugin {
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return []volume.VolumePlugin{&gcePersistentDiskPlugin{nil}}
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}
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type gcePersistentDiskPlugin struct {
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host volume.VolumeHost
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}
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var _ volume.VolumePlugin = &gcePersistentDiskPlugin{}
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var _ volume.PersistentVolumePlugin = &gcePersistentDiskPlugin{}
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var _ volume.DeletableVolumePlugin = &gcePersistentDiskPlugin{}
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var _ volume.ProvisionableVolumePlugin = &gcePersistentDiskPlugin{}
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const (
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gcePersistentDiskPluginName = "kubernetes.io/gce-pd"
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)
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func getPath(uid types.UID, volName string, host volume.VolumeHost) string {
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return host.GetPodVolumeDir(uid, strings.EscapeQualifiedNameForDisk(gcePersistentDiskPluginName), volName)
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}
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func (plugin *gcePersistentDiskPlugin) Init(host volume.VolumeHost) error {
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plugin.host = host
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return nil
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}
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func (plugin *gcePersistentDiskPlugin) Name() string {
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return gcePersistentDiskPluginName
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}
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func (plugin *gcePersistentDiskPlugin) CanSupport(spec *volume.Spec) bool {
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return (spec.PersistentVolume != nil && spec.PersistentVolume.Spec.GCEPersistentDisk != nil) ||
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(spec.Volume != nil && spec.Volume.GCEPersistentDisk != nil)
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}
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func (plugin *gcePersistentDiskPlugin) GetAccessModes() []api.PersistentVolumeAccessMode {
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return []api.PersistentVolumeAccessMode{
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api.ReadWriteOnce,
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api.ReadOnlyMany,
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}
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}
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func (plugin *gcePersistentDiskPlugin) NewMounter(spec *volume.Spec, pod *api.Pod, _ volume.VolumeOptions) (volume.Mounter, error) {
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// Inject real implementations here, test through the internal function.
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return plugin.newMounterInternal(spec, pod.UID, &GCEDiskUtil{}, plugin.host.GetMounter())
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}
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func getVolumeSource(spec *volume.Spec) (*api.GCEPersistentDiskVolumeSource, bool) {
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var readOnly bool
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var volumeSource *api.GCEPersistentDiskVolumeSource
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if spec.Volume != nil && spec.Volume.GCEPersistentDisk != nil {
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volumeSource = spec.Volume.GCEPersistentDisk
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readOnly = volumeSource.ReadOnly
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} else {
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volumeSource = spec.PersistentVolume.Spec.GCEPersistentDisk
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readOnly = spec.ReadOnly
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}
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return volumeSource, readOnly
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}
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func (plugin *gcePersistentDiskPlugin) newMounterInternal(spec *volume.Spec, podUID types.UID, manager pdManager, mounter mount.Interface) (volume.Mounter, error) {
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// GCEPDs used directly in a pod have a ReadOnly flag set by the pod author.
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// GCEPDs used as a PersistentVolume gets the ReadOnly flag indirectly through the persistent-claim volume used to mount the PV
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volumeSource, readOnly := getVolumeSource(spec)
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pdName := volumeSource.PDName
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partition := ""
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if volumeSource.Partition != 0 {
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partition = strconv.Itoa(int(volumeSource.Partition))
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}
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return &gcePersistentDiskMounter{
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gcePersistentDisk: &gcePersistentDisk{
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podUID: podUID,
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volName: spec.Name(),
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pdName: pdName,
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partition: partition,
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mounter: mounter,
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manager: manager,
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plugin: plugin,
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MetricsProvider: volume.NewMetricsStatFS(getPath(podUID, spec.Name(), plugin.host)),
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},
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readOnly: readOnly}, nil
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}
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func (plugin *gcePersistentDiskPlugin) NewUnmounter(volName string, podUID types.UID) (volume.Unmounter, error) {
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// Inject real implementations here, test through the internal function.
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return plugin.newUnmounterInternal(volName, podUID, &GCEDiskUtil{}, plugin.host.GetMounter())
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}
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func (plugin *gcePersistentDiskPlugin) newUnmounterInternal(volName string, podUID types.UID, manager pdManager, mounter mount.Interface) (volume.Unmounter, error) {
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return &gcePersistentDiskUnmounter{&gcePersistentDisk{
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podUID: podUID,
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volName: volName,
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manager: manager,
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mounter: mounter,
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plugin: plugin,
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MetricsProvider: volume.NewMetricsStatFS(getPath(podUID, volName, plugin.host)),
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}}, nil
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}
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func (plugin *gcePersistentDiskPlugin) NewDeleter(spec *volume.Spec) (volume.Deleter, error) {
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return plugin.newDeleterInternal(spec, &GCEDiskUtil{})
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}
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func (plugin *gcePersistentDiskPlugin) newDeleterInternal(spec *volume.Spec, manager pdManager) (volume.Deleter, error) {
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if spec.PersistentVolume != nil && spec.PersistentVolume.Spec.GCEPersistentDisk == nil {
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return nil, fmt.Errorf("spec.PersistentVolumeSource.GCEPersistentDisk is nil")
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}
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return &gcePersistentDiskDeleter{
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gcePersistentDisk: &gcePersistentDisk{
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volName: spec.Name(),
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pdName: spec.PersistentVolume.Spec.GCEPersistentDisk.PDName,
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manager: manager,
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plugin: plugin,
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}}, nil
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}
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func (plugin *gcePersistentDiskPlugin) NewProvisioner(options volume.VolumeOptions) (volume.Provisioner, error) {
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if len(options.AccessModes) == 0 {
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options.AccessModes = plugin.GetAccessModes()
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}
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return plugin.newProvisionerInternal(options, &GCEDiskUtil{})
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}
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func (plugin *gcePersistentDiskPlugin) newProvisionerInternal(options volume.VolumeOptions, manager pdManager) (volume.Provisioner, error) {
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return &gcePersistentDiskProvisioner{
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gcePersistentDisk: &gcePersistentDisk{
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manager: manager,
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plugin: plugin,
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},
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options: options,
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}, nil
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}
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// Abstract interface to PD operations.
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type pdManager interface {
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// Creates a volume
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CreateVolume(provisioner *gcePersistentDiskProvisioner) (volumeID string, volumeSizeGB int, labels map[string]string, err error)
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// Deletes a volume
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DeleteVolume(deleter *gcePersistentDiskDeleter) error
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}
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// gcePersistentDisk volumes are disk resources provided by Google Compute Engine
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// that are attached to the kubelet's host machine and exposed to the pod.
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type gcePersistentDisk struct {
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volName string
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podUID types.UID
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// Unique identifier of the PD, used to find the disk resource in the provider.
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pdName string
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// Specifies the partition to mount
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partition string
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// Utility interface to provision and delete disks
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manager pdManager
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// Mounter interface that provides system calls to mount the global path to the pod local path.
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mounter mount.Interface
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plugin *gcePersistentDiskPlugin
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volume.MetricsProvider
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}
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type gcePersistentDiskMounter struct {
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*gcePersistentDisk
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// Specifies whether the disk will be mounted as read-only.
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readOnly bool
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}
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var _ volume.Mounter = &gcePersistentDiskMounter{}
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func (b *gcePersistentDiskMounter) GetAttributes() volume.Attributes {
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return volume.Attributes{
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ReadOnly: b.readOnly,
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Managed: !b.readOnly,
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SupportsSELinux: true,
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}
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}
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// SetUp bind mounts the disk global mount to the volume path.
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func (b *gcePersistentDiskMounter) SetUp(fsGroup *int64) error {
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return b.SetUpAt(b.GetPath(), fsGroup)
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}
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// SetUp bind mounts the disk global mount to the give volume path.
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func (b *gcePersistentDiskMounter) SetUpAt(dir string, fsGroup *int64) error {
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// TODO: handle failed mounts here.
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notMnt, err := b.mounter.IsLikelyNotMountPoint(dir)
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glog.V(4).Infof("PersistentDisk set up: %s %v %v", dir, !notMnt, err)
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if err != nil && !os.IsNotExist(err) {
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return err
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}
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if !notMnt {
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return nil
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}
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if err := os.MkdirAll(dir, 0750); err != nil {
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return err
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}
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// Perform a bind mount to the full path to allow duplicate mounts of the same PD.
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options := []string{"bind"}
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if b.readOnly {
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options = append(options, "ro")
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}
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globalPDPath := makeGlobalPDName(b.plugin.host, b.pdName)
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err = b.mounter.Mount(globalPDPath, dir, "", options)
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if err != nil {
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notMnt, mntErr := b.mounter.IsLikelyNotMountPoint(dir)
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if mntErr != nil {
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glog.Errorf("IsLikelyNotMountPoint check failed: %v", mntErr)
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return err
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}
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if !notMnt {
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if mntErr = b.mounter.Unmount(dir); mntErr != nil {
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glog.Errorf("Failed to unmount: %v", mntErr)
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return err
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}
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notMnt, mntErr := b.mounter.IsLikelyNotMountPoint(dir)
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if mntErr != nil {
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glog.Errorf("IsLikelyNotMountPoint check failed: %v", mntErr)
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return err
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}
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if !notMnt {
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// This is very odd, we don't expect it. We'll try again next sync loop.
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glog.Errorf("%s is still mounted, despite call to unmount(). Will try again next sync loop.", dir)
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return err
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}
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}
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os.Remove(dir)
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return err
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}
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if !b.readOnly {
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volume.SetVolumeOwnership(b, fsGroup)
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}
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return nil
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}
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func makeGlobalPDName(host volume.VolumeHost, devName string) string {
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return path.Join(host.GetPluginDir(gcePersistentDiskPluginName), "mounts", devName)
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}
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func (b *gcePersistentDiskMounter) GetPath() string {
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return getPath(b.podUID, b.volName, b.plugin.host)
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}
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type gcePersistentDiskUnmounter struct {
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*gcePersistentDisk
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}
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var _ volume.Unmounter = &gcePersistentDiskUnmounter{}
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func (c *gcePersistentDiskUnmounter) GetPath() string {
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return getPath(c.podUID, c.volName, c.plugin.host)
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}
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// Unmounts the bind mount, and detaches the disk only if the PD
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// resource was the last reference to that disk on the kubelet.
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func (c *gcePersistentDiskUnmounter) TearDown() error {
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return c.TearDownAt(c.GetPath())
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}
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// TearDownAt unmounts the bind mount
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func (c *gcePersistentDiskUnmounter) TearDownAt(dir string) error {
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notMnt, err := c.mounter.IsLikelyNotMountPoint(dir)
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if err != nil {
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return err
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}
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if notMnt {
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return os.Remove(dir)
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}
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if err := c.mounter.Unmount(dir); err != nil {
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return err
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}
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notMnt, mntErr := c.mounter.IsLikelyNotMountPoint(dir)
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if mntErr != nil {
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glog.Errorf("IsLikelyNotMountPoint check failed: %v", mntErr)
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return err
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}
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if notMnt {
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return os.Remove(dir)
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}
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return fmt.Errorf("Failed to unmount volume dir")
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}
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type gcePersistentDiskDeleter struct {
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*gcePersistentDisk
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}
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var _ volume.Deleter = &gcePersistentDiskDeleter{}
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func (d *gcePersistentDiskDeleter) GetPath() string {
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return getPath(d.podUID, d.volName, d.plugin.host)
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}
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func (d *gcePersistentDiskDeleter) Delete() error {
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return d.manager.DeleteVolume(d)
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}
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type gcePersistentDiskProvisioner struct {
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*gcePersistentDisk
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options volume.VolumeOptions
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}
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var _ volume.Provisioner = &gcePersistentDiskProvisioner{}
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func (c *gcePersistentDiskProvisioner) Provision() (*api.PersistentVolume, error) {
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volumeID, sizeGB, labels, err := c.manager.CreateVolume(c)
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if err != nil {
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return nil, err
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}
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pv := &api.PersistentVolume{
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ObjectMeta: api.ObjectMeta{
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Name: c.options.PVName,
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Labels: map[string]string{},
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Annotations: map[string]string{
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"kubernetes.io/createdby": "gce-pd-dynamic-provisioner",
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},
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},
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Spec: api.PersistentVolumeSpec{
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PersistentVolumeReclaimPolicy: c.options.PersistentVolumeReclaimPolicy,
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AccessModes: c.options.AccessModes,
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Capacity: api.ResourceList{
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api.ResourceName(api.ResourceStorage): resource.MustParse(fmt.Sprintf("%dGi", sizeGB)),
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},
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PersistentVolumeSource: api.PersistentVolumeSource{
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GCEPersistentDisk: &api.GCEPersistentDiskVolumeSource{
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PDName: volumeID,
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Partition: 0,
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ReadOnly: false,
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},
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},
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},
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}
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if len(labels) != 0 {
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if pv.Labels == nil {
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pv.Labels = make(map[string]string)
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}
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for k, v := range labels {
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pv.Labels[k] = v
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}
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}
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return pv, nil
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}
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