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* Update CRDs and CLI to support in-place restore (#10038) Update CRDs(Restore, DataDownload, PodVolumeRestore) and restore create CLI to support in-place restore Signed-off-by: Wenkai Yin(尹文开) <yinw@vmware.com> * Update Kopia(filesystem) uploader to support incremental and deleteExtraFile during restore (#10066) Update Kopia(filesystem) uploader to support incremental and deleteExtraFile during restore Signed-off-by: Wenkai Yin(尹文开) <yinw@vmware.com> * Update Restore Exposer and PVC CSI to support in-place restore (#10104) 1. Update Restore Exposer to support exposing with existing PV for in-place restore 2. Update PVC CSI RIA to continue the restore process for in-place restore Signed-off-by: Wenkai Yin(尹文开) <yinw@vmware.com> * Update Block uploader to support increase restore (#10244) Update Block uploader to support increase restore Signed-off-by: Wenkai Yin(尹文开) <yinw@vmware.com> * Update Exposer to recreate the target PV if the volume mode is different with the restore PVC (#10257) Update Exposer to recreate the target PV if the volume mode is different with t he restore PVC Signed-off-by: Wenkai Yin(尹文开) <yinw@vmware.com> * Preserve PVC selected-node annotation via carrier annotation for in-place restore For in-place volume data restore, the existing PVC is deleted and recreated. For StorageClasses with the WaitForFirstConsumer volume binding mode, losing the volume.kubernetes.io/selected-node annotation could let the scheduler place the recreated workload Pod in a different zone than the original PV, leaving it stuck in ContainerCreating. Instead of relying on RestoreItemAction execution order (the generic PVC RIA unconditionally strips the selected-node annotation), the PVC CSI RIA now captures the annotation from the existing PVC right before deleting it and carries it on the target PVC via the Velero-internal restore.velero.io/inplace-restore-selected-node annotation. The restore engine translates the carrier back to the Kubernetes annotation after all RestoreItemActions have run and always strips the carrier so it never lands on the cluster. This makes the behavior independent of RIA ordering: the Kubernetes annotation is stripped by default on every path (including when the target PVC does not exist and Velero falls back to provisioning a new PVC), and preservation only happens when the CSI RIA explicitly captured a value from the existing PVC. Signed-off-by: chlins <chlins.zhang@gmail.com> * Update the control path to make the in-place incremental restore with block data mover work E2E (#10410) Update the control path to make the in-place incremental restore with block data mover work E2E Signed-off-by: Wenkai Yin(尹文开) <yinw@vmware.com> --------- Signed-off-by: Wenkai Yin(尹文开) <yinw@vmware.com> Signed-off-by: chlins <chlins.zhang@gmail.com> Co-authored-by: chlins <chlins.zhang@gmail.com>
1037 lines
36 KiB
Go
1037 lines
36 KiB
Go
/*
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Copyright the Velero contributors.
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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 exposer
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import (
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"context"
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"fmt"
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"time"
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"github.com/cockroachdb/errors"
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"github.com/google/uuid"
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snapshotv1api "github.com/kubernetes-csi/external-snapshotter/client/v8/apis/volumesnapshot/v1"
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"github.com/sirupsen/logrus"
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corev1api "k8s.io/api/core/v1"
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apierrors "k8s.io/apimachinery/pkg/api/errors"
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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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"k8s.io/client-go/kubernetes"
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"sigs.k8s.io/controller-runtime/pkg/client"
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velerov2alpha1api "github.com/vmware-tanzu/velero/pkg/apis/velero/v2alpha1"
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"github.com/vmware-tanzu/velero/pkg/nodeagent"
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velerotypes "github.com/vmware-tanzu/velero/pkg/types"
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"github.com/vmware-tanzu/velero/pkg/util/boolptr"
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"github.com/vmware-tanzu/velero/pkg/util/csi"
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"github.com/vmware-tanzu/velero/pkg/util/datamover"
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"github.com/vmware-tanzu/velero/pkg/util/kube"
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)
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// GenericRestoreExposeCSI define the CSI specific input param for Generic Restore Expose
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type GenericRestoreExposeCSI struct {
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// Snapshot is the CSI snapshot spec
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Snapshot *velerov2alpha1api.CSISnapshotSpec
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// SnapshotMetadataServiceConfigs is the config for CSI snapshot metadata service
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SnapshotMetadataServiceConfigs *velerotypes.CSISnapshotMetadataService
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}
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// GenericRestoreExposeParam define the input param for Generic Restore Expose
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type GenericRestoreExposeParam struct {
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// TargetPVCName is the target volume name to be restored
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TargetPVCName string
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// TargetPVName is the target persistent volume name to be restored
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TargetPVName string
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// TargetNamespace is the namespace of the volume to be restored
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TargetNamespace string
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// HostingPodLabels is the labels that are going to apply to the hosting pod
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HostingPodLabels map[string]string
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// HostingPodAnnotations is the annotations that are going to apply to the hosting pod
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HostingPodAnnotations map[string]string
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// HostingPodTolerations is the tolerations that are going to apply to the hosting pod
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HostingPodTolerations []corev1api.Toleration
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// Resources defines the resource requirements of the hosting pod
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Resources corev1api.ResourceRequirements
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// ExposeTimeout specifies the timeout for the entire expose process
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ExposeTimeout time.Duration
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// OperationTimeout specifies the time wait for resources operations in Expose
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OperationTimeout time.Duration
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// NodeOS specifies the OS of node that the volume should be attached
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NodeOS string
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// RestorePVCConfig is the config for restorePVC (intermediate PVC) of generic restore
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RestorePVCConfig velerotypes.RestorePVC
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// LoadAffinity specifies the node affinity of the backup pod
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LoadAffinity []*kube.LoadAffinity
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// PriorityClassName is the priority class name for the data mover pod
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PriorityClassName string
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// RestoreSize specifies the data size for the volume to be restored
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RestoreSize int64
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// CacheVolume specifies the info for cache volumes
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CacheVolume *CacheConfigs
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// DataMover is the data mover type, e.g., velero-fs, velero-block
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DataMover string
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// SnapshotMetadataServiceConfigs is the config for CSI snapshot metadata service
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CSI *GenericRestoreExposeCSI
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}
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// GenericRestoreRebindVolumeParam define the input param for Generic Restore Rebind Volume
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type GenericRestoreRebindVolumeParam struct {
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// TargetPVCName is the target volume name to be restored
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TargetPVCName string
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// TargetNamespace is the namespace of the volume to be restored
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TargetNamespace string
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// OperationTimeout specifies the time wait for resources operations in Expose
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OperationTimeout time.Duration
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// TargetFSType is the file system type of the target volume
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TargetFSType string
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}
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// GenericRestoreCleanUpParam define the input param for Generic Restore CleanUp
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type GenericRestoreCleanUpParam struct {
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Snapshot *velerov2alpha1api.CSISnapshotSpec
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}
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// GenericRestoreExposer is the interfaces for a generic restore exposer
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type GenericRestoreExposer interface {
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// Expose starts the process to a restore expose, the expose process may take long time
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Expose(context.Context, corev1api.ObjectReference, GenericRestoreExposeParam) error
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// GetExposed polls the status of the expose.
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// If the expose is accessible by the current caller, it waits the expose ready and returns the expose result.
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// Otherwise, it returns nil as the expose result without an error.
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GetExposed(context.Context, corev1api.ObjectReference, client.Client, string, time.Duration) (*ExposeResult, error)
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// PeekExposed tests the status of the expose.
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// If the expose is incomplete but not recoverable, it returns an error.
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// Otherwise, it returns nil immediately.
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PeekExposed(context.Context, corev1api.ObjectReference) error
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// DiagnoseExpose generate the diagnostic info when the expose is not finished for a long time.
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// If it finds any problem, it returns an string about the problem.
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DiagnoseExpose(context.Context, corev1api.ObjectReference) string
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// RebindVolume unexposes the restored PV and rebind it to the target PVC
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RebindVolume(context.Context, corev1api.ObjectReference, GenericRestoreRebindVolumeParam) error
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// CleanUp cleans up any objects generated during the restore expose
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CleanUp(context.Context, corev1api.ObjectReference, *GenericRestoreCleanUpParam)
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}
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// NewGenericRestoreExposer creates a new instance of generic restore exposer
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func NewGenericRestoreExposer(kubeClient kubernetes.Interface, ctrlClient client.Client, log logrus.FieldLogger) GenericRestoreExposer {
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return &genericRestoreExposer{
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kubeClient: kubeClient,
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ctrlClient: ctrlClient,
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log: log,
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}
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}
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type genericRestoreExposer struct {
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kubeClient kubernetes.Interface
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ctrlClient client.Client
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log logrus.FieldLogger
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}
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func (e *genericRestoreExposer) Expose(ctx context.Context, ownerObject corev1api.ObjectReference, param GenericRestoreExposeParam) error {
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curLog := e.log.WithFields(logrus.Fields{
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"owner": ownerObject.Name,
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"target PVC": param.TargetPVCName,
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"target PV": param.TargetPVName,
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"target namespace": param.TargetNamespace,
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})
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curLog.Info("Waiting for target PVC to be consumed")
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selectedNode, targetPVC, err := kube.WaitPVCConsumed(
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ctx,
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e.kubeClient.CoreV1(),
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param.TargetPVCName,
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param.TargetNamespace,
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e.kubeClient.StorageV1(),
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param.ExposeTimeout,
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param.RestorePVCConfig.IgnoreDelayBinding,
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)
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if err != nil {
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return errors.Wrapf(err, "error to wait target PVC consumed, %s/%s", param.TargetNamespace, param.TargetPVCName)
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}
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curLog.WithField("target PVC", param.TargetPVCName).WithField("selected node", selectedNode).Info("Target PVC is consumed")
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if kube.IsPVCBound(targetPVC) {
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return errors.Errorf("Target PVC %s/%s has already been bound, abort", param.TargetNamespace, param.TargetPVCName)
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}
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// Data mover allows the StorageClass name not set for PVC.
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storageClassName := ""
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if targetPVC.Spec.StorageClassName != nil {
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storageClassName = *targetPVC.Spec.StorageClassName
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}
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affinity := kube.GetLoadAffinityByStorageClass(param.LoadAffinity, storageClassName, curLog)
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var cachePVC *corev1api.PersistentVolumeClaim
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if param.CacheVolume != nil {
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cacheVolumeSize := getCacheVolumeSize(param.RestoreSize, param.CacheVolume)
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if cacheVolumeSize > 0 {
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curLog.Infof("Creating cache PVC with size %v", cacheVolumeSize)
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if pvc, err := createCachePVC(ctx, e.kubeClient.CoreV1(), ownerObject, param.CacheVolume.StorageClass, cacheVolumeSize, selectedNode); err != nil {
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return errors.Wrap(err, "error to create cache pvc")
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} else {
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cachePVC = pvc
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}
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defer func() {
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if err != nil {
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kube.DeletePVAndPVCIfAny(ctx, e.kubeClient.CoreV1(), cachePVC.Name, cachePVC.Namespace, 0, curLog)
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}
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}()
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} else {
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curLog.Infof("Don't need to create cache volume, restore size %v, cache info %v", param.RestoreSize, param.CacheVolume)
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}
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}
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// Copy secrets and configmaps from the target namespace to the Velero namespace if configured.
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// These are needed by CSI drivers that require namespace-scoped resources for volume
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// provisioning of the restorePVC (e.g., encrypted volumes with KMS tokens and tenant Vault configs).
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copyLabels := map[string]string{BackupPVCSecretLabel: string(ownerObject.UID)}
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for _, secretName := range param.RestorePVCConfig.SecretNames {
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if copyErr := kube.CopySecret(ctx, e.kubeClient.CoreV1(), secretName,
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param.TargetNamespace, ownerObject.Namespace, copyLabels, curLog); copyErr != nil {
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err = errors.Wrapf(copyErr, "error copying secret %s from %s to %s",
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secretName, param.TargetNamespace, ownerObject.Namespace)
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return err
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}
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}
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for _, cmName := range param.RestorePVCConfig.ConfigMapNames {
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if copyErr := kube.CopyConfigMap(ctx, e.kubeClient.CoreV1(), cmName,
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param.TargetNamespace, ownerObject.Namespace, copyLabels, curLog); copyErr != nil {
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err = errors.Wrapf(copyErr, "error copying configmap %s from %s to %s",
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cmName, param.TargetNamespace, ownerObject.Namespace)
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return err
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}
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}
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defer func() {
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if err != nil {
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kube.DeleteSecretsWithLabel(ctx, e.kubeClient.CoreV1(), ownerObject.Namespace,
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BackupPVCSecretLabel, string(ownerObject.UID), curLog)
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kube.DeleteConfigMapsWithLabel(ctx, e.kubeClient.CoreV1(), ownerObject.Namespace,
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BackupPVCSecretLabel, string(ownerObject.UID), curLog)
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}
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}()
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curLog.Info("Creating restore PVC")
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var targetPV *corev1api.PersistentVolume
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if len(param.TargetPVName) > 0 {
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targetPV, err = e.kubeClient.CoreV1().PersistentVolumes().Get(ctx, param.TargetPVName, metav1.GetOptions{})
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if err != nil {
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return errors.Wrapf(err, "fail to get the target PV %s", param.TargetPVName)
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}
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}
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restorePVC, err := e.createRestorePVC(ctx, ownerObject, targetPVC, targetPV, selectedNode, param.DataMover, param.ExposeTimeout)
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if err != nil {
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return errors.Wrap(err, "error to create restore pvc")
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}
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curLog.WithField("pvc name", restorePVC.Name).Info("Restore PVC is created")
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defer func() {
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if err != nil {
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if len(param.TargetPVName) == 0 {
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kube.DeletePVAndPVCIfAny(ctx, e.kubeClient.CoreV1(), restorePVC.Name, restorePVC.Namespace, 0, curLog)
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} else {
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// cannot delete PV if param.TargetPVName is set because the PV is not created by the Expose process.
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// It's the existing PV used for in-place restore.
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kube.DeletePVCIfAny(ctx, e.kubeClient.CoreV1(), restorePVC.Name, restorePVC.Namespace, 0, curLog)
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}
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}
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}()
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curLog.Info("Creating restore pod")
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var volumeID string
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if param.CSI != nil && param.CSI.Snapshot != nil {
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vs := &snapshotv1api.VolumeSnapshot{}
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if err := e.ctrlClient.Get(ctx, client.ObjectKey{
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Namespace: param.CSI.Snapshot.VolumeSnapshotNamespace,
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Name: param.CSI.Snapshot.VolumeSnapshot,
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}, vs); err != nil {
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return errors.Wrapf(err, "error to get volume snapshot %s/%s", param.CSI.Snapshot.VolumeSnapshotNamespace, param.CSI.Snapshot.VolumeSnapshot)
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}
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vsc, err := csi.GetVSCForVS(ctx, vs, e.ctrlClient)
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if err != nil {
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return errors.Wrapf(err, "error to get volume snapshot content for volume snapshot %s/%s", vs.Namespace, vs.Name)
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}
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var cbtInfo csi.CBTInfo
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cbtInfo, err = csi.GetCBTInfo(ctx, e.kubeClient, e.log, vs, vsc, param.TargetPVName)
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if err != nil {
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return errors.Wrap(err, "error to get CBT info")
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}
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curLog.Debugf("CBT info: %+v", cbtInfo)
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volumeID = cbtInfo.VolumeID
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}
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var csiSnapshotMetadataServiceConfigs *velerotypes.CSISnapshotMetadataService
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if param.CSI != nil {
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csiSnapshotMetadataServiceConfigs = param.CSI.SnapshotMetadataServiceConfigs
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}
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restorePod, err := e.createRestorePod(
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ctx,
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ownerObject,
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restorePVC,
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param.OperationTimeout,
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param.HostingPodLabels,
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param.HostingPodAnnotations,
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param.HostingPodTolerations,
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selectedNode,
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param.Resources,
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param.NodeOS,
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affinity,
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param.PriorityClassName,
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cachePVC,
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param.TargetNamespace,
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volumeID,
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csiSnapshotMetadataServiceConfigs,
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)
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if err != nil {
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return errors.Wrapf(err, "error to create restore pod")
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}
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curLog.WithField("pod name", restorePod.Name).Info("Restore pod is created")
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defer func() {
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if err != nil {
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kube.DeletePodIfAny(ctx, e.kubeClient.CoreV1(), restorePod.Name, restorePod.Namespace, curLog)
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}
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}()
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return nil
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}
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func (e *genericRestoreExposer) GetExposed(ctx context.Context, ownerObject corev1api.ObjectReference, nodeClient client.Client, nodeName string, timeout time.Duration) (*ExposeResult, error) {
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restorePodName := ownerObject.Name
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restorePVCName := ownerObject.Name
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containerName := string(ownerObject.UID)
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volumeName := string(ownerObject.UID)
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curLog := e.log.WithFields(logrus.Fields{
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"owner": ownerObject.Name,
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"node": nodeName,
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})
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pod := &corev1api.Pod{}
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err := nodeClient.Get(ctx, types.NamespacedName{
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Namespace: ownerObject.Namespace,
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Name: restorePodName,
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}, pod)
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if err != nil {
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if apierrors.IsNotFound(err) {
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curLog.WithField("restore pod", restorePodName).Debug("Restore pod is not running in the current node")
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return nil, nil
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} else {
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return nil, errors.Wrapf(err, "error to get restore pod %s", restorePodName)
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}
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}
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curLog.WithField("pod", pod.Name).Infof("Restore pod is in running state in node %s", pod.Spec.NodeName)
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_, err = kube.WaitPVCBound(ctx, e.kubeClient.CoreV1(), e.kubeClient.CoreV1(), restorePVCName, ownerObject.Namespace, timeout)
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if err != nil {
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return nil, errors.Wrapf(err, "error to wait restore PVC bound, %s", restorePVCName)
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}
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curLog.WithField("restore pvc", restorePVCName).Info("Restore PVC is bound")
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i := 0
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for i = 0; i < len(pod.Spec.Volumes); i++ {
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if pod.Spec.Volumes[i].Name == volumeName {
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break
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}
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}
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if i == len(pod.Spec.Volumes) {
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return nil, errors.Errorf("restore pod %s doesn't have the expected restore volume", pod.Name)
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}
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curLog.WithField("pod", pod.Name).Infof("Restore volume is found in pod at index %v", i)
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return &ExposeResult{ByPod: ExposeByPod{
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HostingPod: pod,
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HostingContainer: containerName,
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VolumeName: volumeName,
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}}, nil
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}
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func (e *genericRestoreExposer) PeekExposed(ctx context.Context, ownerObject corev1api.ObjectReference) error {
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restorePodName := ownerObject.Name
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curLog := e.log.WithFields(logrus.Fields{
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"owner": ownerObject.Name,
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})
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pod, err := e.kubeClient.CoreV1().Pods(ownerObject.Namespace).Get(ctx, restorePodName, metav1.GetOptions{})
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if apierrors.IsNotFound(err) {
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return nil
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}
|
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|
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if err != nil {
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curLog.WithError(err).Warnf("error to peek restore pod %s", restorePodName)
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return nil
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}
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if podFailed, message := kube.IsPodUnrecoverable(pod, curLog); podFailed {
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return errors.New(message)
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}
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return nil
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}
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|
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func (e *genericRestoreExposer) DiagnoseExpose(ctx context.Context, ownerObject corev1api.ObjectReference) string {
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restorePodName := ownerObject.Name
|
|
restorePVCName := ownerObject.Name
|
|
|
|
diag := "begin diagnose restore exposer\n"
|
|
|
|
pod, err := e.kubeClient.CoreV1().Pods(ownerObject.Namespace).Get(ctx, restorePodName, metav1.GetOptions{})
|
|
if err != nil {
|
|
pod = nil
|
|
diag += fmt.Sprintf("error getting restore pod %s, err: %v\n", restorePodName, err)
|
|
}
|
|
|
|
pvc, err := e.kubeClient.CoreV1().PersistentVolumeClaims(ownerObject.Namespace).Get(ctx, restorePVCName, metav1.GetOptions{})
|
|
if err != nil {
|
|
pvc = nil
|
|
diag += fmt.Sprintf("error getting restore pvc %s, err: %v\n", restorePVCName, err)
|
|
}
|
|
|
|
cachePVC, err := e.kubeClient.CoreV1().PersistentVolumeClaims(ownerObject.Namespace).Get(ctx, getCachePVCName(ownerObject), metav1.GetOptions{})
|
|
if err != nil {
|
|
cachePVC = nil
|
|
|
|
if !apierrors.IsNotFound(err) {
|
|
diag += fmt.Sprintf("error getting cache pvc %s, err: %v\n", getCachePVCName(ownerObject), err)
|
|
}
|
|
}
|
|
|
|
events, err := e.kubeClient.CoreV1().Events(ownerObject.Namespace).List(ctx, metav1.ListOptions{})
|
|
if err != nil {
|
|
diag += fmt.Sprintf("error listing events, err: %v\n", err)
|
|
}
|
|
|
|
if pod != nil {
|
|
diag += kube.DiagnosePod(pod, events)
|
|
|
|
if pod.Spec.NodeName != "" {
|
|
if err := nodeagent.KbClientIsRunningInNode(ctx, ownerObject.Namespace, pod.Spec.NodeName, e.kubeClient); err != nil {
|
|
diag += fmt.Sprintf("node-agent is not running in node %s, err: %v\n", pod.Spec.NodeName, err)
|
|
}
|
|
}
|
|
}
|
|
|
|
if pvc != nil {
|
|
diag += kube.DiagnosePVC(pvc, events)
|
|
|
|
if pvc.Spec.VolumeName != "" {
|
|
if pv, err := e.kubeClient.CoreV1().PersistentVolumes().Get(ctx, pvc.Spec.VolumeName, metav1.GetOptions{}); err != nil {
|
|
diag += fmt.Sprintf("error getting restore pv %s, err: %v\n", pvc.Spec.VolumeName, err)
|
|
} else {
|
|
diag += kube.DiagnosePV(pv)
|
|
}
|
|
}
|
|
}
|
|
|
|
if cachePVC != nil {
|
|
diag += kube.DiagnosePVC(cachePVC, events)
|
|
|
|
if cachePVC.Spec.VolumeName != "" {
|
|
if pv, err := e.kubeClient.CoreV1().PersistentVolumes().Get(ctx, cachePVC.Spec.VolumeName, metav1.GetOptions{}); err != nil {
|
|
diag += fmt.Sprintf("error getting cache pv %s, err: %v\n", cachePVC.Spec.VolumeName, err)
|
|
} else {
|
|
diag += kube.DiagnosePV(pv)
|
|
}
|
|
}
|
|
}
|
|
|
|
diag += "end diagnose restore exposer"
|
|
|
|
return diag
|
|
}
|
|
|
|
func (e *genericRestoreExposer) CleanUp(ctx context.Context, ownerObject corev1api.ObjectReference, param *GenericRestoreCleanUpParam) {
|
|
restorePodName := ownerObject.Name
|
|
restorePVCName := ownerObject.Name
|
|
cachePVCName := getCachePVCName(ownerObject)
|
|
|
|
kube.DeletePodIfAny(ctx, e.kubeClient.CoreV1(), restorePodName, ownerObject.Namespace, e.log)
|
|
kube.DeletePVAndPVCIfAny(ctx, e.kubeClient.CoreV1(), restorePVCName, ownerObject.Namespace, 0, e.log)
|
|
kube.DeletePVAndPVCIfAny(ctx, e.kubeClient.CoreV1(), cachePVCName, ownerObject.Namespace, 0, e.log)
|
|
|
|
kube.DeleteSecretsWithLabel(ctx, e.kubeClient.CoreV1(), ownerObject.Namespace,
|
|
BackupPVCSecretLabel, string(ownerObject.UID), e.log)
|
|
kube.DeleteConfigMapsWithLabel(ctx, e.kubeClient.CoreV1(), ownerObject.Namespace,
|
|
BackupPVCSecretLabel, string(ownerObject.UID), e.log)
|
|
|
|
if param.Snapshot != nil {
|
|
kube.EnsureDeleteVolumeSnapshotIfAny(ctx, e.ctrlClient, param.Snapshot.VolumeSnapshotNamespace,
|
|
param.Snapshot.VolumeSnapshot, 0, e.log)
|
|
}
|
|
}
|
|
|
|
func (e *genericRestoreExposer) RebindVolume(ctx context.Context, ownerObject corev1api.ObjectReference, param GenericRestoreRebindVolumeParam) error {
|
|
restorePVCName := ownerObject.Name
|
|
|
|
curLog := e.log.WithFields(logrus.Fields{
|
|
"owner": ownerObject.Name,
|
|
"target PVC": param.TargetPVCName,
|
|
"target namespace": param.TargetNamespace,
|
|
})
|
|
|
|
targetPVC, err := e.kubeClient.CoreV1().PersistentVolumeClaims(param.TargetNamespace).Get(ctx, param.TargetPVCName, metav1.GetOptions{})
|
|
if err != nil {
|
|
return errors.Wrapf(err, "error to get target PVC %s/%s", param.TargetNamespace, param.TargetPVCName)
|
|
}
|
|
|
|
restorePV, err := kube.WaitPVCBound(ctx, e.kubeClient.CoreV1(), e.kubeClient.CoreV1(), restorePVCName, ownerObject.Namespace, param.OperationTimeout)
|
|
if err != nil {
|
|
return errors.Wrapf(err, "error to get PV from restore PVC %s", restorePVCName)
|
|
}
|
|
|
|
if kube.GetVolumeModeByPVC(targetPVC) != kube.GetVolumeModeByPV(restorePV) {
|
|
return e.rebindVolumeChangeMode(ctx, ownerObject, param, targetPVC, restorePV, curLog)
|
|
} else {
|
|
return e.rebindVolumeSameMode(ctx, ownerObject, param, targetPVC, restorePV, curLog)
|
|
}
|
|
}
|
|
|
|
func (e *genericRestoreExposer) rebindVolumeChangeMode(ctx context.Context, ownerObject corev1api.ObjectReference, param GenericRestoreRebindVolumeParam, targetPVC *corev1api.PersistentVolumeClaim, restorePV *corev1api.PersistentVolume, curLog logrus.FieldLogger) error {
|
|
restorePodName := ownerObject.Name
|
|
restorePVCName := ownerObject.Name
|
|
|
|
orgReclaim := restorePV.Spec.PersistentVolumeReclaimPolicy
|
|
|
|
curLog.WithField("restore PV", restorePV.Name).Info("Restore PV is retrieved")
|
|
|
|
retained, err := kube.SetPVReclaimPolicy(ctx, e.kubeClient.CoreV1(), restorePV, corev1api.PersistentVolumeReclaimRetain)
|
|
if err != nil {
|
|
return errors.Wrapf(err, "error to retain PV %s", restorePV.Name)
|
|
}
|
|
|
|
curLog.WithField("restore PV", restorePV.Name).WithField("retained", (retained != nil)).Info("Restore PV is retained")
|
|
|
|
var rebindPV *corev1api.PersistentVolume
|
|
|
|
defer func() {
|
|
if retained != nil {
|
|
curLog.WithField("retained PV", retained.Name).Info("Deleting retained PV on error")
|
|
kube.DeletePVIfAny(ctx, e.kubeClient.CoreV1(), retained.Name, curLog)
|
|
}
|
|
|
|
if rebindPV != nil {
|
|
curLog.WithField("rebind PV", rebindPV.Name).Info("Deleting rebind PV on error")
|
|
kube.DeletePVIfAny(ctx, e.kubeClient.CoreV1(), rebindPV.Name, curLog)
|
|
}
|
|
}()
|
|
|
|
if retained != nil {
|
|
restorePV = retained
|
|
}
|
|
|
|
err = kube.EnsureDeletePod(ctx, e.kubeClient.CoreV1(), restorePodName, ownerObject.Namespace, param.OperationTimeout)
|
|
if err != nil {
|
|
return errors.Wrapf(err, "error to delete restore pod %s", restorePodName)
|
|
}
|
|
|
|
err = kube.WaitVolumeDetached(ctx, e.kubeClient.StorageV1(), restorePV.Name, param.OperationTimeout)
|
|
if err != nil {
|
|
return errors.Wrapf(err, "error waiting for restore PV %s to detach", restorePV.Name)
|
|
}
|
|
|
|
curLog.WithField("restore PV", restorePV.Name).Info("Restore PV is detached")
|
|
|
|
err = kube.EnsureDeletePVC(ctx, e.kubeClient.CoreV1(), restorePVCName, ownerObject.Namespace, param.OperationTimeout)
|
|
if err != nil {
|
|
return errors.Wrapf(err, "error to delete restore PVC %s", restorePVCName)
|
|
}
|
|
|
|
curLog.WithField("restore PVC", restorePVCName).Info("Restore PVC is deleted")
|
|
|
|
err = kube.EnsureDeletePV(ctx, e.kubeClient.CoreV1(), restorePV.Name, param.OperationTimeout)
|
|
if err != nil {
|
|
return errors.Wrapf(err, "error deleting restore PV %s", restorePV.Name)
|
|
}
|
|
|
|
curLog.WithField("restore PV", restorePV.Name).Info("Restore PV is deleted")
|
|
|
|
retained = nil
|
|
|
|
rebindPV, err = kube.RebindPV(ctx, e.kubeClient.CoreV1(), uuid.NewString(), restorePV, targetPVC, orgReclaim, param.TargetFSType)
|
|
if err != nil {
|
|
return errors.Wrapf(err, "error rebinding PV for target PVC %s", param.TargetPVCName)
|
|
}
|
|
|
|
curLog.WithField("rebind PV", rebindPV.Name).Info("Rebind PV is created")
|
|
|
|
_, err = kube.RebindPVC(ctx, e.kubeClient.CoreV1(), targetPVC, rebindPV.Name)
|
|
if err != nil {
|
|
return errors.Wrapf(err, "error to rebind target PVC %s/%s to %s", targetPVC.Namespace, targetPVC.Name, rebindPV.Name)
|
|
}
|
|
|
|
curLog.WithField("rebind PV", rebindPV.Name).Info("Target PVC is rebound to rebind PV")
|
|
|
|
_, err = kube.WaitPVBound(ctx, e.kubeClient.CoreV1(), rebindPV.Name, targetPVC.Name, targetPVC.Namespace, param.OperationTimeout)
|
|
if err != nil {
|
|
return errors.Wrapf(err, "error to wait rebind PV ready, rebind PV %s", rebindPV.Name)
|
|
}
|
|
|
|
curLog.WithField("rebind PV", rebindPV.Name).Info("Rebind PV is ready")
|
|
|
|
rebindPV = nil
|
|
|
|
return nil
|
|
}
|
|
|
|
func (e *genericRestoreExposer) rebindVolumeSameMode(ctx context.Context, ownerObject corev1api.ObjectReference, param GenericRestoreRebindVolumeParam, targetPVC *corev1api.PersistentVolumeClaim, restorePV *corev1api.PersistentVolume, curLog logrus.FieldLogger) error {
|
|
restorePodName := ownerObject.Name
|
|
restorePVCName := ownerObject.Name
|
|
|
|
orgReclaim := restorePV.Spec.PersistentVolumeReclaimPolicy
|
|
|
|
curLog.WithField("restore PV", restorePV.Name).Info("Restore PV is retrieved")
|
|
|
|
retained, err := kube.SetPVReclaimPolicy(ctx, e.kubeClient.CoreV1(), restorePV, corev1api.PersistentVolumeReclaimRetain)
|
|
if err != nil {
|
|
return errors.Wrapf(err, "error to retain PV %s", restorePV.Name)
|
|
}
|
|
|
|
curLog.WithField("restore PV", restorePV.Name).WithField("retained", (retained != nil)).Info("Restore PV is retained")
|
|
|
|
defer func() {
|
|
if retained != nil {
|
|
curLog.WithField("retained PV", retained.Name).Info("Deleting retained PV on error")
|
|
kube.DeletePVIfAny(ctx, e.kubeClient.CoreV1(), retained.Name, curLog)
|
|
}
|
|
}()
|
|
|
|
if retained != nil {
|
|
restorePV = retained
|
|
}
|
|
|
|
err = kube.EnsureDeletePod(ctx, e.kubeClient.CoreV1(), restorePodName, ownerObject.Namespace, param.OperationTimeout)
|
|
if err != nil {
|
|
return errors.Wrapf(err, "error to delete restore pod %s", restorePodName)
|
|
}
|
|
|
|
err = kube.WaitVolumeDetached(ctx, e.kubeClient.StorageV1(), restorePV.Name, param.OperationTimeout)
|
|
if err != nil {
|
|
return errors.Wrapf(err, "error waiting for restore PV %s to detach", restorePV.Name)
|
|
}
|
|
|
|
curLog.WithField("restore PV", restorePV.Name).Info("Restore PV is detached")
|
|
|
|
err = kube.EnsureDeletePVC(ctx, e.kubeClient.CoreV1(), restorePVCName, ownerObject.Namespace, param.OperationTimeout)
|
|
if err != nil {
|
|
return errors.Wrapf(err, "error to delete restore PVC %s", restorePVCName)
|
|
}
|
|
|
|
curLog.WithField("restore PVC", restorePVCName).Info("Restore PVC is deleted")
|
|
|
|
_, err = kube.RebindPVC(ctx, e.kubeClient.CoreV1(), targetPVC, restorePV.Name)
|
|
if err != nil {
|
|
return errors.Wrapf(err, "error to rebind target PVC %s/%s to %s", targetPVC.Namespace, targetPVC.Name, restorePV.Name)
|
|
}
|
|
|
|
curLog.WithField("tartet PVC", fmt.Sprintf("%s/%s", targetPVC.Namespace, targetPVC.Name)).WithField("restore PV", restorePV.Name).Info("Target PVC is rebound to restore PV")
|
|
|
|
var matchLabel map[string]string
|
|
if targetPVC.Spec.Selector != nil {
|
|
matchLabel = targetPVC.Spec.Selector.MatchLabels
|
|
}
|
|
|
|
restorePVName := restorePV.Name
|
|
restorePV, err = kube.ResetPVBinding(ctx, e.kubeClient.CoreV1(), restorePV, matchLabel, targetPVC)
|
|
if err != nil {
|
|
return errors.Wrapf(err, "error to reset binding info for restore PV %s", restorePVName)
|
|
}
|
|
|
|
curLog.WithField("restore PV", restorePV.Name).Info("Restore PV is rebound")
|
|
|
|
restorePV, err = kube.WaitPVBound(ctx, e.kubeClient.CoreV1(), restorePV.Name, targetPVC.Name, targetPVC.Namespace, param.OperationTimeout)
|
|
if err != nil {
|
|
return errors.Wrapf(err, "error to wait restore PV bound, restore PV %s", restorePVName)
|
|
}
|
|
|
|
curLog.WithField("restore PV", restorePV.Name).Info("Restore PV is ready")
|
|
|
|
retained = nil
|
|
|
|
_, err = kube.SetPVReclaimPolicy(ctx, e.kubeClient.CoreV1(), restorePV, orgReclaim)
|
|
if err != nil {
|
|
curLog.WithField("restore PV", restorePV.Name).WithError(err).Warn("Restore PV's reclaim policy is not restored")
|
|
} else {
|
|
curLog.WithField("restore PV", restorePV.Name).Info("Restore PV's reclaim policy is restored")
|
|
}
|
|
|
|
return nil
|
|
}
|
|
|
|
func (e *genericRestoreExposer) createRestorePod(
|
|
ctx context.Context,
|
|
ownerObject corev1api.ObjectReference,
|
|
targetPVC *corev1api.PersistentVolumeClaim,
|
|
operationTimeout time.Duration,
|
|
label map[string]string,
|
|
annotation map[string]string,
|
|
toleration []corev1api.Toleration,
|
|
selectedNode string,
|
|
resources corev1api.ResourceRequirements,
|
|
nodeOS string,
|
|
affinity *kube.LoadAffinity,
|
|
priorityClassName string,
|
|
cachePVC *corev1api.PersistentVolumeClaim,
|
|
volumeSnapshotNamespace string,
|
|
volumeID string,
|
|
csiSnapshotMetadataServiceConfigs *velerotypes.CSISnapshotMetadataService,
|
|
) (*corev1api.Pod, error) {
|
|
restorePodName := ownerObject.Name
|
|
restorePVCName := ownerObject.Name
|
|
|
|
containerName := string(ownerObject.UID)
|
|
volumeName := string(ownerObject.UID)
|
|
|
|
nodeSelector := map[string]string{}
|
|
if selectedNode != "" {
|
|
affinity = nil
|
|
nodeSelector[corev1api.LabelHostname] = selectedNode
|
|
e.log.Infof("Selected node for restore pod. Ignore affinity from the node-agent config.")
|
|
}
|
|
|
|
if affinity == nil {
|
|
affinity = &kube.LoadAffinity{}
|
|
}
|
|
|
|
// The restore pod writes the data through the restore PVC only, so the node-agent's host
|
|
// path volumes to the kubelet root directory are not inherited.
|
|
podInfo, err := getInheritedPodInfo(ctx, e.kubeClient, ownerObject.Namespace, nodeOS, excludeHostPathVolumes)
|
|
if err != nil {
|
|
return nil, errors.Wrap(err, "error to get inherited pod info from node-agent")
|
|
}
|
|
|
|
// Log the priority class if it's set
|
|
if priorityClassName != "" {
|
|
e.log.Debugf("Setting priority class %q for data mover pod %s", priorityClassName, restorePodName)
|
|
}
|
|
|
|
var gracePeriod int64
|
|
volumeMounts, volumeDevices, volumePath := kube.MakePodPVCAttachment(volumeName, targetPVC.Spec.VolumeMode, false)
|
|
|
|
volumes := []corev1api.Volume{{
|
|
Name: volumeName,
|
|
VolumeSource: corev1api.VolumeSource{
|
|
PersistentVolumeClaim: &corev1api.PersistentVolumeClaimVolumeSource{
|
|
ClaimName: restorePVCName,
|
|
},
|
|
},
|
|
}}
|
|
|
|
cacheVolumePath := ""
|
|
if cachePVC != nil {
|
|
mnt, _, path := kube.MakePodPVCAttachment(cacheVolumeName, nil, false)
|
|
volumeMounts = append(volumeMounts, mnt...)
|
|
|
|
volumes = append(volumes, corev1api.Volume{
|
|
Name: cacheVolumeName,
|
|
VolumeSource: corev1api.VolumeSource{
|
|
PersistentVolumeClaim: &corev1api.PersistentVolumeClaimVolumeSource{
|
|
ClaimName: cachePVC.Name,
|
|
},
|
|
},
|
|
})
|
|
|
|
cacheVolumePath = path
|
|
}
|
|
|
|
volumeMounts = append(volumeMounts, podInfo.volumeMounts...)
|
|
volumes = append(volumes, podInfo.volumes...)
|
|
|
|
if label == nil {
|
|
label = make(map[string]string)
|
|
}
|
|
label[podGroupLabel] = podGroupGenericRestore
|
|
|
|
volumeMode := corev1api.PersistentVolumeFilesystem
|
|
if targetPVC.Spec.VolumeMode != nil {
|
|
volumeMode = *targetPVC.Spec.VolumeMode
|
|
}
|
|
|
|
args := []string{
|
|
fmt.Sprintf("--volume-path=%s", volumePath),
|
|
fmt.Sprintf("--volume-mode=%s", volumeMode),
|
|
fmt.Sprintf("--data-download=%s", ownerObject.Name),
|
|
fmt.Sprintf("--resource-timeout=%s", operationTimeout.String()),
|
|
fmt.Sprintf("--cache-volume-path=%s", cacheVolumePath),
|
|
}
|
|
|
|
if len(volumeID) > 0 {
|
|
args = append(args, fmt.Sprintf("--vs-namespace=%s", volumeSnapshotNamespace))
|
|
args = append(args, fmt.Sprintf("--volume-id=%s", volumeID))
|
|
}
|
|
if csiSnapshotMetadataServiceConfigs != nil && csiSnapshotMetadataServiceConfigs.SAName != "" {
|
|
args = append(args, fmt.Sprintf("--cbt-sa-name=%s", csiSnapshotMetadataServiceConfigs.SAName))
|
|
}
|
|
|
|
args = append(args, podInfo.logFormatArgs...)
|
|
args = append(args, podInfo.logLevelArgs...)
|
|
|
|
var securityCtx *corev1api.PodSecurityContext
|
|
podOS := corev1api.PodOS{}
|
|
if nodeOS == kube.NodeOSWindows {
|
|
userID := "ContainerAdministrator"
|
|
securityCtx = &corev1api.PodSecurityContext{
|
|
WindowsOptions: &corev1api.WindowsSecurityContextOptions{
|
|
RunAsUserName: &userID,
|
|
},
|
|
}
|
|
|
|
podOS.Name = kube.NodeOSWindows
|
|
|
|
affinity.NodeSelector.MatchExpressions = append(affinity.NodeSelector.MatchExpressions, metav1.LabelSelectorRequirement{
|
|
Key: kube.NodeOSLabel,
|
|
Values: []string{kube.NodeOSWindows},
|
|
Operator: metav1.LabelSelectorOpIn,
|
|
})
|
|
|
|
toleration = append(toleration, []corev1api.Toleration{
|
|
{
|
|
Key: "os",
|
|
Operator: "Equal",
|
|
Effect: "NoSchedule",
|
|
Value: "windows",
|
|
},
|
|
{
|
|
Key: "os",
|
|
Operator: "Equal",
|
|
Effect: "NoExecute",
|
|
Value: "windows",
|
|
},
|
|
}...)
|
|
} else {
|
|
userID := int64(0)
|
|
securityCtx = &corev1api.PodSecurityContext{
|
|
RunAsUser: &userID,
|
|
}
|
|
|
|
podOS.Name = kube.NodeOSLinux
|
|
|
|
affinity.NodeSelector.MatchExpressions = append(affinity.NodeSelector.MatchExpressions, metav1.LabelSelectorRequirement{
|
|
Key: kube.NodeOSLabel,
|
|
Values: []string{kube.NodeOSWindows},
|
|
Operator: metav1.LabelSelectorOpNotIn,
|
|
})
|
|
}
|
|
|
|
podAffinity := kube.ToSystemAffinity(affinity, nil)
|
|
|
|
pod := &corev1api.Pod{
|
|
ObjectMeta: metav1.ObjectMeta{
|
|
Name: restorePodName,
|
|
Namespace: ownerObject.Namespace,
|
|
OwnerReferences: []metav1.OwnerReference{
|
|
{
|
|
APIVersion: ownerObject.APIVersion,
|
|
Kind: ownerObject.Kind,
|
|
Name: ownerObject.Name,
|
|
UID: ownerObject.UID,
|
|
Controller: boolptr.True(),
|
|
},
|
|
},
|
|
Labels: label,
|
|
Annotations: annotation,
|
|
},
|
|
Spec: corev1api.PodSpec{
|
|
TopologySpreadConstraints: []corev1api.TopologySpreadConstraint{
|
|
{
|
|
MaxSkew: 1,
|
|
TopologyKey: corev1api.LabelHostname,
|
|
WhenUnsatisfiable: corev1api.ScheduleAnyway,
|
|
LabelSelector: &metav1.LabelSelector{
|
|
MatchLabels: map[string]string{
|
|
podGroupLabel: podGroupGenericRestore,
|
|
},
|
|
},
|
|
},
|
|
},
|
|
NodeSelector: nodeSelector,
|
|
OS: &podOS,
|
|
Containers: []corev1api.Container{
|
|
{
|
|
Name: containerName,
|
|
Image: podInfo.image,
|
|
ImagePullPolicy: corev1api.PullNever,
|
|
Command: []string{
|
|
"/velero",
|
|
"data-mover",
|
|
"restore",
|
|
},
|
|
Args: args,
|
|
VolumeMounts: volumeMounts,
|
|
VolumeDevices: volumeDevices,
|
|
Env: podInfo.env,
|
|
EnvFrom: podInfo.envFrom,
|
|
Resources: resources,
|
|
},
|
|
},
|
|
PriorityClassName: priorityClassName,
|
|
ServiceAccountName: podInfo.serviceAccount,
|
|
TerminationGracePeriodSeconds: &gracePeriod,
|
|
Volumes: volumes,
|
|
RestartPolicy: corev1api.RestartPolicyNever,
|
|
SecurityContext: securityCtx,
|
|
Tolerations: toleration,
|
|
DNSPolicy: podInfo.dnsPolicy,
|
|
DNSConfig: podInfo.dnsConfig,
|
|
Affinity: podAffinity,
|
|
ImagePullSecrets: podInfo.imagePullSecrets,
|
|
},
|
|
}
|
|
|
|
return e.kubeClient.CoreV1().Pods(ownerObject.Namespace).Create(ctx, pod, metav1.CreateOptions{})
|
|
}
|
|
|
|
func (e *genericRestoreExposer) createRestorePVC(ctx context.Context, ownerObject corev1api.ObjectReference, targetPVC *corev1api.PersistentVolumeClaim, targetPV *corev1api.PersistentVolume, selectedNode string, dataMover string, operationTimeout time.Duration) (*corev1api.PersistentVolumeClaim, error) {
|
|
restorePVCName := ownerObject.Name
|
|
|
|
pvcObj := &corev1api.PersistentVolumeClaim{
|
|
ObjectMeta: metav1.ObjectMeta{
|
|
Namespace: ownerObject.Namespace,
|
|
Name: restorePVCName,
|
|
Labels: targetPVC.Labels,
|
|
Annotations: targetPVC.Annotations,
|
|
OwnerReferences: []metav1.OwnerReference{
|
|
{
|
|
APIVersion: ownerObject.APIVersion,
|
|
Kind: ownerObject.Kind,
|
|
Name: ownerObject.Name,
|
|
UID: ownerObject.UID,
|
|
Controller: boolptr.True(),
|
|
},
|
|
},
|
|
},
|
|
Spec: corev1api.PersistentVolumeClaimSpec{
|
|
AccessModes: targetPVC.Spec.AccessModes,
|
|
StorageClassName: targetPVC.Spec.StorageClassName,
|
|
VolumeMode: targetPVC.Spec.VolumeMode,
|
|
Resources: targetPVC.Spec.Resources,
|
|
},
|
|
}
|
|
|
|
if selectedNode != "" {
|
|
if pvcObj.Annotations == nil {
|
|
pvcObj.Annotations = make(map[string]string)
|
|
}
|
|
pvcObj.Annotations[kube.KubeAnnSelectedNode] = selectedNode
|
|
}
|
|
|
|
if dataMover == datamover.DataMoverTypeVeleroBlock {
|
|
if pvcObj.Spec.VolumeMode == nil {
|
|
pvcObj.Spec.VolumeMode = new(corev1api.PersistentVolumeMode)
|
|
}
|
|
|
|
*pvcObj.Spec.VolumeMode = corev1api.PersistentVolumeBlock
|
|
}
|
|
|
|
volumeName := ""
|
|
sameVolumeMode := true
|
|
if targetPV != nil {
|
|
volumeName = targetPV.Name
|
|
sameVolumeMode = kube.GetVolumeModeByPVC(pvcObj) == kube.GetVolumeModeByPV(targetPV)
|
|
if !sameVolumeMode {
|
|
volumeName = ownerObject.Name
|
|
}
|
|
pvcObj.Spec.VolumeName = volumeName
|
|
}
|
|
|
|
restorePVC, err := e.kubeClient.CoreV1().PersistentVolumeClaims(pvcObj.Namespace).Create(ctx, pvcObj, metav1.CreateOptions{})
|
|
if err != nil {
|
|
return nil, errors.Wrapf(err, "fail to create the restore PVC %s in namespace %s", pvcObj.Name, pvcObj.Namespace)
|
|
}
|
|
|
|
defer func() {
|
|
if err != nil {
|
|
kube.DeletePVCIfAny(ctx, e.kubeClient.CoreV1(), pvcObj.Name, pvcObj.Namespace, 0, e.log)
|
|
}
|
|
}()
|
|
|
|
if targetPV != nil {
|
|
if !sameVolumeMode {
|
|
tmpPV := &corev1api.PersistentVolume{
|
|
ObjectMeta: metav1.ObjectMeta{
|
|
Name: volumeName,
|
|
},
|
|
Spec: *targetPV.Spec.DeepCopy(),
|
|
}
|
|
tmpPV.Spec.VolumeMode = restorePVC.Spec.VolumeMode
|
|
e.log.Infof("the volume mode is different, creating temporary PV %s with volume mode %s", tmpPV.Name, tmpPV.Spec.VolumeMode)
|
|
tmpPV, err = e.kubeClient.CoreV1().PersistentVolumes().Create(ctx, tmpPV, metav1.CreateOptions{})
|
|
if err != nil {
|
|
return nil, errors.Wrapf(err, "fail to create the temporary PV %s", volumeName)
|
|
}
|
|
|
|
defer func() {
|
|
if err != nil {
|
|
kube.DeletePVIfAny(ctx, e.kubeClient.CoreV1(), tmpPV.Name, e.log)
|
|
}
|
|
}()
|
|
|
|
e.log.Infof("deleting the target PV %s", targetPV.Name)
|
|
if err = e.kubeClient.CoreV1().PersistentVolumes().Delete(ctx, targetPV.Name, metav1.DeleteOptions{}); err != nil {
|
|
return nil, errors.Wrapf(err, "fail to delete the target PV %s", targetPV.Name)
|
|
}
|
|
targetPV = tmpPV
|
|
}
|
|
|
|
if _, err = kube.ResetPVBinding(ctx, e.kubeClient.CoreV1(), targetPV, nil, restorePVC); err != nil {
|
|
return nil, errors.Wrapf(err, "fail to reset PV %s binding to restore PVC %s/%s", targetPV.Name, restorePVC.Namespace, restorePVC.Name)
|
|
}
|
|
|
|
if _, err = kube.WaitPVCBound(ctx, e.kubeClient.CoreV1(), e.kubeClient.CoreV1(), restorePVC.Name, restorePVC.Namespace, operationTimeout); err != nil {
|
|
return nil, errors.Wrapf(err, "fail to wait restore PVC %s/%s bound", restorePVC.Namespace, restorePVC.Name)
|
|
}
|
|
}
|
|
|
|
return restorePVC, nil
|
|
}
|