mirror of
https://github.com/ceph/ceph-csi.git
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466 lines
14 KiB
Go
466 lines
14 KiB
Go
/*
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Copyright 2015 The Kubernetes Authors.
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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 fc
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import (
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"fmt"
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"strconv"
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"strings"
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"github.com/golang/glog"
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"k8s.io/api/core/v1"
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metav1 "k8s.io/apimachinery/pkg/apis/meta/v1"
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"k8s.io/apimachinery/pkg/types"
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utilfeature "k8s.io/apiserver/pkg/util/feature"
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"k8s.io/kubernetes/pkg/features"
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"k8s.io/kubernetes/pkg/util/mount"
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utilstrings "k8s.io/kubernetes/pkg/util/strings"
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"k8s.io/kubernetes/pkg/volume"
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"k8s.io/kubernetes/pkg/volume/util"
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"k8s.io/kubernetes/pkg/volume/util/volumehelper"
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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{&fcPlugin{nil}}
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}
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type fcPlugin struct {
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host volume.VolumeHost
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}
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var _ volume.VolumePlugin = &fcPlugin{}
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var _ volume.PersistentVolumePlugin = &fcPlugin{}
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var _ volume.BlockVolumePlugin = &fcPlugin{}
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const (
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fcPluginName = "kubernetes.io/fc"
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)
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func (plugin *fcPlugin) 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 *fcPlugin) GetPluginName() string {
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return fcPluginName
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}
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func (plugin *fcPlugin) GetVolumeName(spec *volume.Spec) (string, error) {
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volumeSource, _, err := getVolumeSource(spec)
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if err != nil {
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return "", err
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}
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// API server validates these parameters beforehand but attach/detach
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// controller creates volumespec without validation. They may be nil
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// or zero length. We should check again to avoid unexpected conditions.
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if len(volumeSource.TargetWWNs) != 0 && volumeSource.Lun != nil {
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// TargetWWNs are the FibreChannel target worldwide names
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return fmt.Sprintf("%v:%v", volumeSource.TargetWWNs, *volumeSource.Lun), nil
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} else if len(volumeSource.WWIDs) != 0 {
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// WWIDs are the FibreChannel World Wide Identifiers
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return fmt.Sprintf("%v", volumeSource.WWIDs), nil
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}
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return "", err
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}
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func (plugin *fcPlugin) CanSupport(spec *volume.Spec) bool {
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if (spec.Volume != nil && spec.Volume.FC == nil) || (spec.PersistentVolume != nil && spec.PersistentVolume.Spec.FC == nil) {
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return false
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}
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return true
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}
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func (plugin *fcPlugin) RequiresRemount() bool {
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return false
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}
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func (plugin *fcPlugin) SupportsMountOption() bool {
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return false
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}
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func (plugin *fcPlugin) SupportsBulkVolumeVerification() bool {
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return false
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}
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func (plugin *fcPlugin) GetAccessModes() []v1.PersistentVolumeAccessMode {
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return []v1.PersistentVolumeAccessMode{
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v1.ReadWriteOnce,
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v1.ReadOnlyMany,
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}
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}
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func (plugin *fcPlugin) NewMounter(spec *volume.Spec, pod *v1.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, &FCUtil{}, plugin.host.GetMounter(plugin.GetPluginName()), plugin.host.GetExec(plugin.GetPluginName()))
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}
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func (plugin *fcPlugin) newMounterInternal(spec *volume.Spec, podUID types.UID, manager diskManager, mounter mount.Interface, exec mount.Exec) (volume.Mounter, error) {
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// fc volumes used directly in a pod have a ReadOnly flag set by the pod author.
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// fc volumes used as a PersistentVolume gets the ReadOnly flag indirectly through the persistent-claim volume used to mount the PV
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fc, readOnly, err := getVolumeSource(spec)
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if err != nil {
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return nil, err
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}
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wwns, lun, wwids, err := getWwnsLunWwids(fc)
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if err != nil {
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return nil, fmt.Errorf("fc: no fc disk information found. failed to make a new mounter")
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}
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fcDisk := &fcDisk{
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podUID: podUID,
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volName: spec.Name(),
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wwns: wwns,
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lun: lun,
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wwids: wwids,
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manager: manager,
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io: &osIOHandler{},
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plugin: plugin,
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}
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// TODO: remove feature gate check after no longer needed
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if utilfeature.DefaultFeatureGate.Enabled(features.BlockVolume) {
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volumeMode, err := volumehelper.GetVolumeMode(spec)
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if err != nil {
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return nil, err
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}
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glog.V(5).Infof("fc: newMounterInternal volumeMode %s", volumeMode)
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return &fcDiskMounter{
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fcDisk: fcDisk,
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fsType: fc.FSType,
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volumeMode: volumeMode,
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readOnly: readOnly,
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mounter: &mount.SafeFormatAndMount{Interface: mounter, Exec: exec},
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}, nil
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}
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return &fcDiskMounter{
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fcDisk: fcDisk,
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fsType: fc.FSType,
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readOnly: readOnly,
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mounter: &mount.SafeFormatAndMount{Interface: mounter, Exec: exec},
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}, nil
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}
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func (plugin *fcPlugin) NewBlockVolumeMapper(spec *volume.Spec, pod *v1.Pod, _ volume.VolumeOptions) (volume.BlockVolumeMapper, error) {
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// If this called via GenerateUnmapDeviceFunc(), pod is nil.
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// Pass empty string as dummy uid since uid isn't used in the case.
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var uid types.UID
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if pod != nil {
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uid = pod.UID
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}
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return plugin.newBlockVolumeMapperInternal(spec, uid, &FCUtil{}, plugin.host.GetMounter(plugin.GetPluginName()), plugin.host.GetExec(plugin.GetPluginName()))
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}
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func (plugin *fcPlugin) newBlockVolumeMapperInternal(spec *volume.Spec, podUID types.UID, manager diskManager, mounter mount.Interface, exec mount.Exec) (volume.BlockVolumeMapper, error) {
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fc, readOnly, err := getVolumeSource(spec)
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if err != nil {
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return nil, err
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}
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wwns, lun, wwids, err := getWwnsLunWwids(fc)
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if err != nil {
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return nil, fmt.Errorf("fc: no fc disk information found. failed to make a new mapper")
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}
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return &fcDiskMapper{
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fcDisk: &fcDisk{
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podUID: podUID,
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volName: spec.Name(),
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wwns: wwns,
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lun: lun,
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wwids: wwids,
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manager: manager,
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io: &osIOHandler{},
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plugin: plugin},
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readOnly: readOnly,
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mounter: &mount.SafeFormatAndMount{Interface: mounter, Exec: exec},
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}, nil
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}
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func (plugin *fcPlugin) 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, &FCUtil{}, plugin.host.GetMounter(plugin.GetPluginName()))
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}
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func (plugin *fcPlugin) newUnmounterInternal(volName string, podUID types.UID, manager diskManager, mounter mount.Interface) (volume.Unmounter, error) {
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return &fcDiskUnmounter{
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fcDisk: &fcDisk{
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podUID: podUID,
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volName: volName,
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manager: manager,
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plugin: plugin,
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io: &osIOHandler{},
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},
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mounter: mounter,
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}, nil
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}
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func (plugin *fcPlugin) NewBlockVolumeUnmapper(volName string, podUID types.UID) (volume.BlockVolumeUnmapper, error) {
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return plugin.newUnmapperInternal(volName, podUID, &FCUtil{})
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}
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func (plugin *fcPlugin) newUnmapperInternal(volName string, podUID types.UID, manager diskManager) (volume.BlockVolumeUnmapper, error) {
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return &fcDiskUnmapper{
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fcDisk: &fcDisk{
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podUID: podUID,
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volName: volName,
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manager: manager,
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plugin: plugin,
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io: &osIOHandler{},
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},
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}, nil
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}
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func (plugin *fcPlugin) ConstructVolumeSpec(volumeName, mountPath string) (*volume.Spec, error) {
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fcVolume := &v1.Volume{
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Name: volumeName,
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VolumeSource: v1.VolumeSource{
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FC: &v1.FCVolumeSource{},
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},
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}
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return volume.NewSpecFromVolume(fcVolume), nil
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}
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// ConstructBlockVolumeSpec creates a new volume.Spec with following steps.
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// - Searchs a file whose name is {pod uuid} under volume plugin directory.
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// - If a file is found, then retreives volumePluginDependentPath from globalMapPathUUID.
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// - Once volumePluginDependentPath is obtained, store volume information to VolumeSource
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// examples:
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// mapPath: pods/{podUid}}/{DefaultKubeletVolumeDevicesDirName}/{escapeQualifiedPluginName}/{volumeName}
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// globalMapPathUUID : plugins/kubernetes.io/{PluginName}/{DefaultKubeletVolumeDevicesDirName}/{volumePluginDependentPath}/{pod uuid}
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func (plugin *fcPlugin) ConstructBlockVolumeSpec(podUID types.UID, volumeName, mapPath string) (*volume.Spec, error) {
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pluginDir := plugin.host.GetVolumeDevicePluginDir(fcPluginName)
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blkutil := util.NewBlockVolumePathHandler()
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globalMapPathUUID, err := blkutil.FindGlobalMapPathUUIDFromPod(pluginDir, mapPath, podUID)
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if err != nil {
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return nil, err
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}
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glog.V(5).Infof("globalMapPathUUID: %v, err: %v", globalMapPathUUID, err)
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// Retreive volumePluginDependentPath from globalMapPathUUID
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// globalMapPathUUID examples:
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// wwn+lun: plugins/kubernetes.io/fc/volumeDevices/50060e801049cfd1-lun-0/{pod uuid}
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// wwid: plugins/kubernetes.io/fc/volumeDevices/3600508b400105e210000900000490000/{pod uuid}
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arr := strings.Split(globalMapPathUUID, "/")
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if len(arr) < 2 {
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return nil, fmt.Errorf("Fail to retreive volume plugin information from globalMapPathUUID: %v", globalMapPathUUID)
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}
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l := len(arr) - 2
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volumeInfo := arr[l]
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// Create volume from wwn+lun or wwid
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var fcPV *v1.PersistentVolume
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if strings.Contains(volumeInfo, "-lun-") {
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wwnLun := strings.Split(volumeInfo, "-lun-")
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lun, err := strconv.Atoi(wwnLun[1])
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if err != nil {
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return nil, err
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}
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lun32 := int32(lun)
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fcPV = createPersistentVolumeFromFCVolumeSource(volumeName,
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v1.FCVolumeSource{TargetWWNs: []string{wwnLun[0]}, Lun: &lun32})
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glog.V(5).Infof("ConstructBlockVolumeSpec: TargetWWNs: %v, Lun: %v",
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fcPV.Spec.PersistentVolumeSource.FC.TargetWWNs,
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fcPV.Spec.PersistentVolumeSource.FC.Lun)
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} else {
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fcPV = createPersistentVolumeFromFCVolumeSource(volumeName,
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v1.FCVolumeSource{WWIDs: []string{volumeInfo}})
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glog.V(5).Infof("ConstructBlockVolumeSpec: WWIDs: %v", fcPV.Spec.PersistentVolumeSource.FC.WWIDs)
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}
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return volume.NewSpecFromPersistentVolume(fcPV, false), nil
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}
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type fcDisk struct {
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volName string
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podUID types.UID
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portal string
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wwns []string
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lun string
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wwids []string
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plugin *fcPlugin
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// Utility interface that provides API calls to the provider to attach/detach disks.
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manager diskManager
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// io handler interface
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io ioHandler
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volume.MetricsNil
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}
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func (fc *fcDisk) GetPath() string {
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name := fcPluginName
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// safe to use PodVolumeDir now: volume teardown occurs before pod is cleaned up
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return fc.plugin.host.GetPodVolumeDir(fc.podUID, utilstrings.EscapeQualifiedNameForDisk(name), fc.volName)
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}
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func (fc *fcDisk) fcGlobalMapPath(spec *volume.Spec) (string, error) {
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mounter, err := volumeSpecToMounter(spec, fc.plugin.host)
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if err != nil {
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glog.Warningf("failed to get fc mounter: %v", err)
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return "", err
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}
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return fc.manager.MakeGlobalVDPDName(*mounter.fcDisk), nil
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}
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func (fc *fcDisk) fcPodDeviceMapPath() (string, string) {
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name := fcPluginName
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return fc.plugin.host.GetPodVolumeDeviceDir(fc.podUID, utilstrings.EscapeQualifiedNameForDisk(name)), fc.volName
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}
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type fcDiskMounter struct {
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*fcDisk
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readOnly bool
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fsType string
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volumeMode v1.PersistentVolumeMode
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mounter *mount.SafeFormatAndMount
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}
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var _ volume.Mounter = &fcDiskMounter{}
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func (b *fcDiskMounter) 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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// Checks prior to mount operations to verify that the required components (binaries, etc.)
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// to mount the volume are available on the underlying node.
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// If not, it returns an error
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func (b *fcDiskMounter) CanMount() error {
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return nil
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}
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func (b *fcDiskMounter) SetUp(fsGroup *int64) error {
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return b.SetUpAt(b.GetPath(), fsGroup)
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}
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func (b *fcDiskMounter) SetUpAt(dir string, fsGroup *int64) error {
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// diskSetUp checks mountpoints and prevent repeated calls
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err := diskSetUp(b.manager, *b, dir, b.mounter, fsGroup)
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if err != nil {
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glog.Errorf("fc: failed to setup")
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}
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return err
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}
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type fcDiskUnmounter struct {
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*fcDisk
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mounter mount.Interface
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}
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var _ volume.Unmounter = &fcDiskUnmounter{}
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// Unmounts the bind mount, and detaches the disk only if the disk
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// resource was the last reference to that disk on the kubelet.
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func (c *fcDiskUnmounter) TearDown() error {
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return c.TearDownAt(c.GetPath())
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}
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func (c *fcDiskUnmounter) TearDownAt(dir string) error {
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return util.UnmountPath(dir, c.mounter)
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}
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// Block Volumes Support
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type fcDiskMapper struct {
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*fcDisk
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readOnly bool
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mounter mount.Interface
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}
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var _ volume.BlockVolumeMapper = &fcDiskMapper{}
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func (b *fcDiskMapper) SetUpDevice() (string, error) {
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return "", nil
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}
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type fcDiskUnmapper struct {
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*fcDisk
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}
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var _ volume.BlockVolumeUnmapper = &fcDiskUnmapper{}
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func (c *fcDiskUnmapper) TearDownDevice(_, devicePath string) error {
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// Remove scsi device from the node.
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if !strings.HasPrefix(devicePath, "/dev/") {
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return fmt.Errorf("fc detach disk: invalid device name: %s", devicePath)
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}
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arr := strings.Split(devicePath, "/")
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dev := arr[len(arr)-1]
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removeFromScsiSubsystem(dev, c.io)
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return nil
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}
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// GetGlobalMapPath returns global map path and error
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// path: plugins/kubernetes.io/{PluginName}/volumeDevices/{WWID}/{podUid}
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func (fc *fcDisk) GetGlobalMapPath(spec *volume.Spec) (string, error) {
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return fc.fcGlobalMapPath(spec)
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}
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// GetPodDeviceMapPath returns pod device map path and volume name
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// path: pods/{podUid}/volumeDevices/kubernetes.io~fc
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// volumeName: pv0001
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func (fc *fcDisk) GetPodDeviceMapPath() (string, string) {
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return fc.fcPodDeviceMapPath()
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}
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func getVolumeSource(spec *volume.Spec) (*v1.FCVolumeSource, bool, error) {
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// fc volumes used directly in a pod have a ReadOnly flag set by the pod author.
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// fc volumes used as a PersistentVolume gets the ReadOnly flag indirectly through the persistent-claim volume used to mount the PV
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if spec.Volume != nil && spec.Volume.FC != nil {
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return spec.Volume.FC, spec.Volume.FC.ReadOnly, nil
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} else if spec.PersistentVolume != nil &&
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spec.PersistentVolume.Spec.FC != nil {
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return spec.PersistentVolume.Spec.FC, spec.ReadOnly, nil
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}
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return nil, false, fmt.Errorf("Spec does not reference a FibreChannel volume type")
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}
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func createPersistentVolumeFromFCVolumeSource(volumeName string, fc v1.FCVolumeSource) *v1.PersistentVolume {
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block := v1.PersistentVolumeBlock
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return &v1.PersistentVolume{
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ObjectMeta: metav1.ObjectMeta{
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Name: volumeName,
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},
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Spec: v1.PersistentVolumeSpec{
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PersistentVolumeSource: v1.PersistentVolumeSource{
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FC: &fc,
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},
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VolumeMode: &block,
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},
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}
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}
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func getWwnsLunWwids(fc *v1.FCVolumeSource) ([]string, string, []string, error) {
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var lun string
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var wwids []string
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if fc.Lun != nil && len(fc.TargetWWNs) != 0 {
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lun = strconv.Itoa(int(*fc.Lun))
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return fc.TargetWWNs, lun, wwids, nil
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}
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if len(fc.WWIDs) != 0 {
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for _, wwid := range fc.WWIDs {
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wwids = append(wwids, strings.Replace(wwid, " ", "_", -1))
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}
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return fc.TargetWWNs, lun, wwids, nil
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}
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return nil, "", nil, fmt.Errorf("fc: no fc disk information found")
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}
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