Files
velero/pkg/exposer/generic_restore_test.go
T
b7d83a6f2b Cherry pick the in-place restore implementation PRs from feature branch to main (#10415)
* 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>
2026-08-26 10:21:32 -04:00

1693 lines
50 KiB
Go

/*
Copyright The Velero Contributors.
Licensed under the Apache License, Version 2.0 (the "License");
you may not use this file except in compliance with the License.
You may obtain a copy of the License at
http://www.apache.org/licenses/LICENSE-2.0
Unless required by applicable law or agreed to in writing, software
distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
limitations under the License.
*/
package exposer
import (
"testing"
"time"
"github.com/cockroachdb/errors"
"github.com/stretchr/testify/assert"
"github.com/stretchr/testify/require"
appsv1api "k8s.io/api/apps/v1"
corev1api "k8s.io/api/core/v1"
storagev1api "k8s.io/api/storage/v1"
apierrors "k8s.io/apimachinery/pkg/api/errors"
metav1 "k8s.io/apimachinery/pkg/apis/meta/v1"
"k8s.io/apimachinery/pkg/runtime"
"k8s.io/client-go/kubernetes/fake"
clientTesting "k8s.io/client-go/testing"
velerov1 "github.com/vmware-tanzu/velero/pkg/apis/velero/v1"
velerotest "github.com/vmware-tanzu/velero/pkg/test"
velerotypes "github.com/vmware-tanzu/velero/pkg/types"
"github.com/vmware-tanzu/velero/pkg/util/datamover"
"github.com/vmware-tanzu/velero/pkg/util/kube"
)
func TestRestoreExpose(t *testing.T) {
scName := "fake-sc"
restore := &velerov1.Restore{
TypeMeta: metav1.TypeMeta{
APIVersion: velerov1.SchemeGroupVersion.String(),
Kind: "Restore",
},
ObjectMeta: metav1.ObjectMeta{
Namespace: velerov1.DefaultNamespace,
Name: "fake-restore",
UID: "fake-uid",
},
}
targetPVCObj := &corev1api.PersistentVolumeClaim{
ObjectMeta: metav1.ObjectMeta{
Namespace: "fake-ns",
Name: "fake-target-pvc",
},
Spec: corev1api.PersistentVolumeClaimSpec{
StorageClassName: &scName,
},
}
targetPVObj := &corev1api.PersistentVolume{
ObjectMeta: metav1.ObjectMeta{
Name: "fake-target-pv",
},
}
modeBlock := corev1api.PersistentVolumeBlock
targetPVObjWithDifferentVolumeMode := &corev1api.PersistentVolume{
ObjectMeta: metav1.ObjectMeta{
Name: "fake-target-pv",
},
Spec: corev1api.PersistentVolumeSpec{
VolumeMode: &modeBlock,
},
}
modeFilesystem := corev1api.PersistentVolumeFilesystem
targetPVCObjWithVolumeMode := &corev1api.PersistentVolumeClaim{
ObjectMeta: metav1.ObjectMeta{
Namespace: "fake-ns",
Name: "fake-target-pvc",
},
Spec: corev1api.PersistentVolumeClaimSpec{
StorageClassName: &scName,
VolumeMode: &modeFilesystem,
},
}
storageClass := &storagev1api.StorageClass{
ObjectMeta: metav1.ObjectMeta{
Name: "fake-sc",
},
}
targetPVCObjBound := &corev1api.PersistentVolumeClaim{
ObjectMeta: metav1.ObjectMeta{
Namespace: "fake-ns",
Name: "fake-target-pvc",
},
Spec: corev1api.PersistentVolumeClaimSpec{
VolumeName: "fake-pv",
},
}
daemonSet := &appsv1api.DaemonSet{
ObjectMeta: metav1.ObjectMeta{
Namespace: "velero",
Name: "node-agent",
},
TypeMeta: metav1.TypeMeta{
Kind: "DaemonSet",
APIVersion: appsv1api.SchemeGroupVersion.String(),
},
Spec: appsv1api.DaemonSetSpec{
Template: corev1api.PodTemplateSpec{
Spec: corev1api.PodSpec{
Containers: []corev1api.Container{
{
Image: "fake-image",
},
},
},
},
},
}
tests := []struct {
name string
kubeClientObj []runtime.Object
ownerRestore *velerov1.Restore
targetPVCName string
targetNamespace string
targetPVName string
kubeReactors []reactor
cacheVolume *CacheConfigs
dataMover string
expectBackupPod bool
expectBackupPVC bool
expectCachePVC bool
expectBackupPV bool
err string
}{
{
name: "wait target pvc consumed fail",
targetPVCName: "fake-target-pvc",
targetNamespace: "fake-ns",
ownerRestore: restore,
err: "error to wait target PVC consumed, fake-ns/fake-target-pvc: error to wait for PVC: error to get pvc fake-ns/fake-target-pvc: persistentvolumeclaims \"fake-target-pvc\" not found",
},
{
name: "target pvc is already bound",
targetPVCName: "fake-target-pvc",
targetNamespace: "fake-ns",
ownerRestore: restore,
kubeClientObj: []runtime.Object{
targetPVCObjBound,
storageClass,
},
err: "Target PVC fake-ns/fake-target-pvc has already been bound, abort",
},
{
name: "create restore pod fail",
targetPVCName: "fake-target-pvc",
targetNamespace: "fake-ns",
ownerRestore: restore,
kubeClientObj: []runtime.Object{
targetPVCObj,
daemonSet,
storageClass,
},
kubeReactors: []reactor{
{
verb: "create",
resource: "pods",
reactorFunc: func(action clientTesting.Action) (handled bool, ret runtime.Object, err error) {
return true, nil, errors.New("fake-create-error")
},
},
},
err: "error to create restore pod: fake-create-error",
},
{
name: "create restore pvc fail",
targetPVCName: "fake-target-pvc",
targetNamespace: "fake-ns",
ownerRestore: restore,
kubeClientObj: []runtime.Object{
targetPVCObj,
daemonSet,
storageClass,
},
kubeReactors: []reactor{
{
verb: "create",
resource: "persistentvolumeclaims",
reactorFunc: func(action clientTesting.Action) (handled bool, ret runtime.Object, err error) {
return true, nil, errors.New("fake-create-error")
},
},
},
err: "error to create restore pvc: fail to create the restore PVC fake-restore in namespace velero: fake-create-error",
},
{
name: "succeed",
targetPVCName: "fake-target-pvc",
targetNamespace: "fake-ns",
ownerRestore: restore,
kubeClientObj: []runtime.Object{
targetPVCObj,
daemonSet,
storageClass,
},
expectBackupPod: true,
expectBackupPVC: true,
},
{
name: "succeed with target PV set",
targetPVCName: "fake-target-pvc",
targetNamespace: "fake-ns",
targetPVName: "fake-target-pv",
ownerRestore: restore,
kubeClientObj: []runtime.Object{
targetPVCObj,
targetPVObj,
daemonSet,
storageClass,
},
kubeReactors: []reactor{
{
verb: "get",
resource: "persistentvolumeclaims",
reactorFunc: func(action clientTesting.Action) (handled bool, ret runtime.Object, err error) {
getAction := action.(clientTesting.GetAction)
if getAction.GetName() == "fake-restore" {
return true, &corev1api.PersistentVolumeClaim{
ObjectMeta: metav1.ObjectMeta{
Name: "fake-restore",
Namespace: velerov1.DefaultNamespace,
},
Spec: corev1api.PersistentVolumeClaimSpec{
VolumeName: "fake-target-pv",
},
Status: corev1api.PersistentVolumeClaimStatus{
Phase: corev1api.ClaimBound,
},
}, nil
}
return false, nil, nil
},
},
},
expectBackupPod: true,
expectBackupPVC: true,
},
{
name: "create temporary PV fail",
targetPVCName: "fake-target-pvc",
targetNamespace: "fake-ns",
targetPVName: "fake-target-pv",
ownerRestore: restore,
kubeClientObj: []runtime.Object{
targetPVCObj,
targetPVObjWithDifferentVolumeMode,
daemonSet,
storageClass,
},
kubeReactors: []reactor{
{
verb: "create",
resource: "persistentvolumes",
reactorFunc: func(action clientTesting.Action) (handled bool, ret runtime.Object, err error) {
return true, nil, errors.New("fake-create-pv-error")
},
},
},
err: "error to create restore pvc: fail to create the temporary PV fake-restore: fake-create-pv-error",
},
{
name: "delete original PV fail",
targetPVCName: "fake-target-pvc",
targetNamespace: "fake-ns",
targetPVName: "fake-target-pv",
ownerRestore: restore,
kubeClientObj: []runtime.Object{
targetPVCObj,
targetPVObjWithDifferentVolumeMode,
daemonSet,
storageClass,
},
kubeReactors: []reactor{
{
verb: "delete",
resource: "persistentvolumes",
reactorFunc: func(action clientTesting.Action) (handled bool, ret runtime.Object, err error) {
deleteAction := action.(clientTesting.DeleteAction)
if deleteAction.GetName() == "fake-target-pv" {
return true, nil, errors.New("fake-delete-pv-error")
}
return false, nil, nil
},
},
},
err: "error to create restore pvc: fail to delete the target PV fake-target-pv: fake-delete-pv-error",
},
{
name: "succeed with target PV set and different volume mode",
targetPVCName: "fake-target-pvc",
targetNamespace: "fake-ns",
targetPVName: "fake-target-pv",
ownerRestore: restore,
kubeClientObj: []runtime.Object{
targetPVCObj,
targetPVObjWithDifferentVolumeMode,
daemonSet,
storageClass,
},
kubeReactors: []reactor{
{
verb: "get",
resource: "persistentvolumeclaims",
reactorFunc: func(action clientTesting.Action) (handled bool, ret runtime.Object, err error) {
getAction := action.(clientTesting.GetAction)
if getAction.GetName() == "fake-restore" {
return true, &corev1api.PersistentVolumeClaim{
ObjectMeta: metav1.ObjectMeta{
Name: "fake-restore",
Namespace: velerov1.DefaultNamespace,
},
Spec: corev1api.PersistentVolumeClaimSpec{
VolumeName: "fake-restore",
},
Status: corev1api.PersistentVolumeClaimStatus{
Phase: corev1api.ClaimBound,
},
}, nil
}
return false, nil, nil
},
},
},
expectBackupPod: true,
expectBackupPVC: true,
expectBackupPV: true,
},
{
name: "succeed, cache config, no cache volume",
targetPVCName: "fake-target-pvc",
targetNamespace: "fake-ns",
ownerRestore: restore,
kubeClientObj: []runtime.Object{
targetPVCObj,
daemonSet,
storageClass,
},
cacheVolume: &CacheConfigs{},
expectBackupPod: true,
expectBackupPVC: true,
},
{
name: "create cache volume fail",
targetPVCName: "fake-target-pvc",
targetNamespace: "fake-ns",
ownerRestore: restore,
kubeClientObj: []runtime.Object{
targetPVCObj,
daemonSet,
storageClass,
},
cacheVolume: &CacheConfigs{Limit: 1024},
kubeReactors: []reactor{
{
verb: "create",
resource: "persistentvolumeclaims",
reactorFunc: func(action clientTesting.Action) (handled bool, ret runtime.Object, err error) {
return true, nil, errors.New("fake-create-error")
},
},
},
err: "error to create cache pvc: fake-create-error",
},
{
name: "succeed with cache volume",
targetPVCName: "fake-target-pvc",
targetNamespace: "fake-ns",
ownerRestore: restore,
kubeClientObj: []runtime.Object{
targetPVCObj,
daemonSet,
storageClass,
},
cacheVolume: &CacheConfigs{Limit: 1024},
expectBackupPod: true,
expectBackupPVC: true,
expectCachePVC: true,
},
{
name: "succeed with velero-block data mover",
targetPVCName: "fake-target-pvc",
targetNamespace: "fake-ns",
ownerRestore: restore,
kubeClientObj: []runtime.Object{
targetPVCObj,
daemonSet,
storageClass,
},
dataMover: datamover.DataMoverTypeVeleroBlock,
expectBackupPod: true,
expectBackupPVC: true,
},
{
name: "succeed with velero-block data mover and existing volume mode",
targetPVCName: "fake-target-pvc",
targetNamespace: "fake-ns",
ownerRestore: restore,
kubeClientObj: []runtime.Object{
targetPVCObjWithVolumeMode,
daemonSet,
storageClass,
},
dataMover: datamover.DataMoverTypeVeleroBlock,
expectBackupPod: true,
expectBackupPVC: true,
},
}
for _, test := range tests {
t.Run(test.name, func(t *testing.T) {
fakeKubeClient := fake.NewSimpleClientset(test.kubeClientObj...)
for _, reactor := range test.kubeReactors {
fakeKubeClient.Fake.PrependReactor(reactor.verb, reactor.resource, reactor.reactorFunc)
}
exposer := genericRestoreExposer{
kubeClient: fakeKubeClient,
log: velerotest.NewLogger(),
}
var ownerObject corev1api.ObjectReference
if test.ownerRestore != nil {
ownerObject = corev1api.ObjectReference{
Kind: test.ownerRestore.Kind,
Namespace: test.ownerRestore.Namespace,
Name: test.ownerRestore.Name,
UID: test.ownerRestore.UID,
APIVersion: test.ownerRestore.APIVersion,
}
}
err := exposer.Expose(
t.Context(),
ownerObject,
GenericRestoreExposeParam{
TargetPVCName: test.targetPVCName,
TargetNamespace: test.targetNamespace,
TargetPVName: test.targetPVName,
HostingPodLabels: map[string]string{},
Resources: corev1api.ResourceRequirements{},
ExposeTimeout: time.Millisecond,
LoadAffinity: nil,
CacheVolume: test.cacheVolume,
DataMover: test.dataMover,
},
)
if test.err != "" {
require.EqualError(t, err, test.err)
} else {
require.NoError(t, err)
}
_, err = exposer.kubeClient.CoreV1().Pods(ownerObject.Namespace).Get(t.Context(), ownerObject.Name, metav1.GetOptions{})
if test.expectBackupPod {
require.NoError(t, err)
} else {
require.True(t, apierrors.IsNotFound(err), "expected IsNotFound, got %v", err)
}
pvc, err := exposer.kubeClient.CoreV1().PersistentVolumeClaims(ownerObject.Namespace).Get(t.Context(), ownerObject.Name, metav1.GetOptions{})
if test.expectBackupPVC {
require.NoError(t, err)
if test.dataMover == datamover.DataMoverTypeVeleroBlock {
require.NotNil(t, pvc.Spec.VolumeMode)
require.Equal(t, corev1api.PersistentVolumeBlock, *pvc.Spec.VolumeMode)
}
} else {
require.True(t, apierrors.IsNotFound(err), "expected IsNotFound, got %v", err)
}
_, err = exposer.kubeClient.CoreV1().PersistentVolumeClaims(ownerObject.Namespace).Get(t.Context(), getCachePVCName(ownerObject), metav1.GetOptions{})
if test.expectCachePVC {
require.NoError(t, err)
} else {
require.True(t, apierrors.IsNotFound(err), "expected IsNotFound, got %v", err)
}
_, err = exposer.kubeClient.CoreV1().PersistentVolumes().Get(t.Context(), ownerObject.Name, metav1.GetOptions{})
if test.expectBackupPV {
require.NoError(t, err)
} else {
require.True(t, apierrors.IsNotFound(err), "expected IsNotFound, got %v", err)
}
if test.targetPVName != "" && !test.expectBackupPV && test.err == "" {
// if targetPVName was provided, and sameVolumeMode was true, the original PV should still exist
_, err = exposer.kubeClient.CoreV1().PersistentVolumes().Get(t.Context(), test.targetPVName, metav1.GetOptions{})
require.NoError(t, err)
} else if test.targetPVName != "" && test.expectBackupPV {
// if targetPVName was provided, and sameVolumeMode was false (expectBackupPV is true), the original PV should be deleted
_, err = exposer.kubeClient.CoreV1().PersistentVolumes().Get(t.Context(), test.targetPVName, metav1.GetOptions{})
require.True(t, apierrors.IsNotFound(err), "expected original PV %s to be deleted, but it still exists", test.targetPVName)
}
})
}
}
func TestRestoreExpose_SecretCopy(t *testing.T) {
scName := "fake-sc"
restore := &velerov1.Restore{
TypeMeta: metav1.TypeMeta{APIVersion: velerov1.SchemeGroupVersion.String(), Kind: "Restore"},
ObjectMeta: metav1.ObjectMeta{Namespace: velerov1.DefaultNamespace, Name: "fake-restore", UID: "fake-uid"},
}
ownerObject := corev1api.ObjectReference{
Kind: restore.Kind,
Namespace: restore.Namespace,
Name: restore.Name,
UID: restore.UID,
APIVersion: restore.APIVersion,
}
targetPVCObj := &corev1api.PersistentVolumeClaim{
ObjectMeta: metav1.ObjectMeta{Namespace: "fake-ns", Name: "fake-target-pvc"},
Spec: corev1api.PersistentVolumeClaimSpec{StorageClassName: &scName},
}
storageClass := &storagev1api.StorageClass{ObjectMeta: metav1.ObjectMeta{Name: "fake-sc"}}
daemonSet := &appsv1api.DaemonSet{
ObjectMeta: metav1.ObjectMeta{Namespace: "velero", Name: "node-agent"},
TypeMeta: metav1.TypeMeta{Kind: "DaemonSet", APIVersion: appsv1api.SchemeGroupVersion.String()},
Spec: appsv1api.DaemonSetSpec{
Template: corev1api.PodTemplateSpec{
Spec: corev1api.PodSpec{Containers: []corev1api.Container{{Image: "fake-image"}}},
},
},
}
t.Run("copies secret and configmap from target namespace", func(t *testing.T) {
srcSecret := &corev1api.Secret{
ObjectMeta: metav1.ObjectMeta{Name: "kms-token", Namespace: "fake-ns"},
Data: map[string][]byte{"token": []byte("vault-token")},
Type: corev1api.SecretTypeOpaque,
}
srcCM := &corev1api.ConfigMap{
ObjectMeta: metav1.ObjectMeta{Name: "kms-config", Namespace: "fake-ns"},
Data: map[string]string{"vaultAddress": "https://vault.example.com"},
}
fakeKubeClient := fake.NewSimpleClientset(targetPVCObj, storageClass, daemonSet, srcSecret, srcCM)
exposer := genericRestoreExposer{kubeClient: fakeKubeClient, log: velerotest.NewLogger()}
err := exposer.Expose(t.Context(), ownerObject, GenericRestoreExposeParam{
TargetPVCName: "fake-target-pvc",
TargetNamespace: "fake-ns",
HostingPodLabels: map[string]string{},
Resources: corev1api.ResourceRequirements{},
ExposeTimeout: time.Millisecond,
RestorePVCConfig: velerotypes.RestorePVC{
SecretNames: []string{"kms-token"},
ConfigMapNames: []string{"kms-config"},
},
})
require.NoError(t, err)
copiedSecret, err := fakeKubeClient.CoreV1().Secrets(ownerObject.Namespace).Get(t.Context(), "kms-token", metav1.GetOptions{})
require.NoError(t, err)
assert.Equal(t, []byte("vault-token"), copiedSecret.Data["token"])
assert.Equal(t, string(ownerObject.UID), copiedSecret.Labels[BackupPVCSecretLabel])
copiedCM, err := fakeKubeClient.CoreV1().ConfigMaps(ownerObject.Namespace).Get(t.Context(), "kms-config", metav1.GetOptions{})
require.NoError(t, err)
assert.Equal(t, "https://vault.example.com", copiedCM.Data["vaultAddress"])
assert.Equal(t, string(ownerObject.UID), copiedCM.Labels[BackupPVCSecretLabel])
})
t.Run("returns error when source secret missing", func(t *testing.T) {
fakeKubeClient := fake.NewSimpleClientset(targetPVCObj, storageClass, daemonSet)
exposer := genericRestoreExposer{kubeClient: fakeKubeClient, log: velerotest.NewLogger()}
err := exposer.Expose(t.Context(), ownerObject, GenericRestoreExposeParam{
TargetPVCName: "fake-target-pvc",
TargetNamespace: "fake-ns",
HostingPodLabels: map[string]string{},
Resources: corev1api.ResourceRequirements{},
ExposeTimeout: time.Millisecond,
RestorePVCConfig: velerotypes.RestorePVC{SecretNames: []string{"missing-secret"}},
})
require.Error(t, err)
assert.Contains(t, err.Error(), "error copying secret")
})
}
func TestRebindVolume(t *testing.T) {
restore := &velerov1.Restore{
TypeMeta: metav1.TypeMeta{
APIVersion: velerov1.SchemeGroupVersion.String(),
Kind: "Restore",
},
ObjectMeta: metav1.ObjectMeta{
Namespace: velerov1.DefaultNamespace,
Name: "fake-restore",
UID: "fake-uid",
},
}
modeFilesystem := corev1api.PersistentVolumeFilesystem
modeBlock := corev1api.PersistentVolumeBlock
targetPVCObjChangeMode := &corev1api.PersistentVolumeClaim{
ObjectMeta: metav1.ObjectMeta{
Namespace: "fake-ns",
Name: "fake-target-pvc",
},
Spec: corev1api.PersistentVolumeClaimSpec{
VolumeMode: &modeBlock,
},
}
targetPVCObjSameMode := &corev1api.PersistentVolumeClaim{
ObjectMeta: metav1.ObjectMeta{
Namespace: "fake-ns",
Name: "fake-target-pvc",
},
Spec: corev1api.PersistentVolumeClaimSpec{
VolumeMode: &modeFilesystem,
},
}
restorePVCObj := &corev1api.PersistentVolumeClaim{
ObjectMeta: metav1.ObjectMeta{
Namespace: velerov1.DefaultNamespace,
Name: "fake-restore",
},
Spec: corev1api.PersistentVolumeClaimSpec{
VolumeName: "fake-restore-pv",
},
Status: corev1api.PersistentVolumeClaimStatus{
Phase: corev1api.ClaimBound,
},
}
restorePVObj := &corev1api.PersistentVolume{
ObjectMeta: metav1.ObjectMeta{
Name: "fake-restore-pv",
},
Spec: corev1api.PersistentVolumeSpec{
PersistentVolumeReclaimPolicy: corev1api.PersistentVolumeReclaimDelete,
VolumeMode: &modeFilesystem,
},
}
restorePod := &corev1api.Pod{
ObjectMeta: metav1.ObjectMeta{
Namespace: velerov1.DefaultNamespace,
Name: "fake-restore",
},
}
tests := []struct {
name string
kubeClientObj []runtime.Object
ownerRestore *velerov1.Restore
targetPVCName string
targetNamespace string
kubeReactors []reactor
err string
}{
{
name: "get target pvc fail",
targetPVCName: "fake-target-pvc",
targetNamespace: "fake-ns",
ownerRestore: restore,
err: "error to get target PVC fake-ns/fake-target-pvc: persistentvolumeclaims \"fake-target-pvc\" not found",
},
{
name: "wait restore pvc bound fail",
targetPVCName: "fake-target-pvc",
targetNamespace: "fake-ns",
ownerRestore: restore,
kubeClientObj: []runtime.Object{
targetPVCObjSameMode,
},
err: "error to get PV from restore PVC fake-restore: error to wait for rediness of PVC: error to get pvc velero/fake-restore: persistentvolumeclaims \"fake-restore\" not found",
},
{
name: "[change mode] retain target pv fail",
targetPVCName: "fake-target-pvc",
targetNamespace: "fake-ns",
ownerRestore: restore,
kubeClientObj: []runtime.Object{
targetPVCObjChangeMode,
restorePVCObj,
restorePVObj,
},
kubeReactors: []reactor{
{
verb: "patch",
resource: "persistentvolumes",
reactorFunc: func(action clientTesting.Action) (handled bool, ret runtime.Object, err error) {
return true, nil, errors.New("fake-patch-error")
},
},
},
err: "error to retain PV fake-restore-pv: error patching PV: fake-patch-error",
},
{
name: "[change mode] delete restore pod fail",
targetPVCName: "fake-target-pvc",
targetNamespace: "fake-ns",
ownerRestore: restore,
kubeClientObj: []runtime.Object{
targetPVCObjChangeMode,
restorePVCObj,
restorePVObj,
restorePod,
},
kubeReactors: []reactor{
{
verb: "delete",
resource: "pods",
reactorFunc: func(action clientTesting.Action) (handled bool, ret runtime.Object, err error) {
return true, nil, errors.New("fake-delete-error")
},
},
},
err: "error to delete restore pod fake-restore: error to delete pod fake-restore: fake-delete-error",
},
{
name: "[change mode] delete restore pvc fail",
targetPVCName: "fake-target-pvc",
targetNamespace: "fake-ns",
ownerRestore: restore,
kubeClientObj: []runtime.Object{
targetPVCObjChangeMode,
restorePVCObj,
restorePVObj,
restorePod,
},
kubeReactors: []reactor{
{
verb: "delete",
resource: "persistentvolumeclaims",
reactorFunc: func(action clientTesting.Action) (handled bool, ret runtime.Object, err error) {
return true, nil, errors.New("fake-delete-error")
},
},
},
err: "error to delete restore PVC fake-restore: error to delete pvc fake-restore: fake-delete-error",
},
{
name: "[change mode] wait volume detached fail",
targetPVCName: "fake-target-pvc",
targetNamespace: "fake-ns",
ownerRestore: restore,
kubeClientObj: []runtime.Object{
targetPVCObjChangeMode,
restorePVCObj,
restorePVObj,
restorePod,
},
kubeReactors: []reactor{
{
verb: "list",
resource: "volumeattachments",
reactorFunc: func(action clientTesting.Action) (handled bool, ret runtime.Object, err error) {
return true, nil, errors.New("fake-list-error")
},
},
},
err: "error waiting for restore PV fake-restore-pv to detach: error listing volumeattachment: error listing volumeattachment: fake-list-error",
},
{
name: "[change mode] rebind pv fail",
targetPVCName: "fake-target-pvc",
targetNamespace: "fake-ns",
ownerRestore: restore,
kubeClientObj: []runtime.Object{
targetPVCObjChangeMode,
restorePVCObj,
restorePVObj,
restorePod,
},
kubeReactors: []reactor{
{
verb: "create",
resource: "persistentvolumes",
reactorFunc: func(action clientTesting.Action) (handled bool, ret runtime.Object, err error) {
return true, nil, errors.New("fake-create-error")
},
},
},
err: "error rebinding PV for target PVC fake-target-pvc: fake-create-error",
},
{
name: "[change mode] delete retained pv fail",
targetPVCName: "fake-target-pvc",
targetNamespace: "fake-ns",
ownerRestore: restore,
kubeClientObj: []runtime.Object{
targetPVCObjChangeMode,
restorePVCObj,
restorePVObj,
restorePod,
},
kubeReactors: []reactor{
{
verb: "delete",
resource: "persistentvolumes",
reactorFunc: func(action clientTesting.Action) (handled bool, ret runtime.Object, err error) {
// we want it to fail on the PV deletion but not the pod/pvc deletions
if action.(clientTesting.DeleteAction).GetName() == "fake-restore-pv" {
return true, nil, errors.New("fake-delete-error")
}
return false, nil, nil
},
},
},
err: "error deleting restore PV fake-restore-pv: error to delete pv fake-restore-pv: fake-delete-error",
},
{
name: "[change mode] rebind target pvc fail",
targetPVCName: "fake-target-pvc",
targetNamespace: "fake-ns",
ownerRestore: restore,
kubeClientObj: []runtime.Object{
targetPVCObjChangeMode,
restorePVCObj,
restorePVObj,
restorePod,
},
kubeReactors: []reactor{
{
verb: "patch",
resource: "persistentvolumeclaims",
reactorFunc: func(action clientTesting.Action) (handled bool, ret runtime.Object, err error) {
return true, nil, errors.New("fake-patch-error")
},
},
},
err: "error to rebind target PVC fake-ns/fake-target-pvc to",
},
{
name: "[change mode] wait rebind PV ready fail",
targetPVCName: "fake-target-pvc",
targetNamespace: "fake-ns",
ownerRestore: restore,
kubeClientObj: []runtime.Object{
targetPVCObjChangeMode,
restorePVCObj,
restorePVObj,
restorePod,
},
err: "error to wait rebind PV ready, rebind PV",
},
{
name: "[same mode] retain target pv fail",
targetPVCName: "fake-target-pvc",
targetNamespace: "fake-ns",
ownerRestore: restore,
kubeClientObj: []runtime.Object{
targetPVCObjSameMode,
restorePVCObj,
restorePVObj,
},
kubeReactors: []reactor{
{
verb: "patch",
resource: "persistentvolumes",
reactorFunc: func(action clientTesting.Action) (handled bool, ret runtime.Object, err error) {
return true, nil, errors.New("fake-patch-error")
},
},
},
err: "error to retain PV fake-restore-pv: error patching PV: fake-patch-error",
},
{
name: "[same mode] delete restore pod fail",
targetPVCName: "fake-target-pvc",
targetNamespace: "fake-ns",
ownerRestore: restore,
kubeClientObj: []runtime.Object{
targetPVCObjSameMode,
restorePVCObj,
restorePVObj,
restorePod,
},
kubeReactors: []reactor{
{
verb: "delete",
resource: "pods",
reactorFunc: func(action clientTesting.Action) (handled bool, ret runtime.Object, err error) {
return true, nil, errors.New("fake-delete-error")
},
},
},
err: "error to delete restore pod fake-restore: error to delete pod fake-restore: fake-delete-error",
},
{
name: "[same mode] delete restore pvc fail",
targetPVCName: "fake-target-pvc",
targetNamespace: "fake-ns",
ownerRestore: restore,
kubeClientObj: []runtime.Object{
targetPVCObjSameMode,
restorePVCObj,
restorePVObj,
restorePod,
},
kubeReactors: []reactor{
{
verb: "delete",
resource: "persistentvolumeclaims",
reactorFunc: func(action clientTesting.Action) (handled bool, ret runtime.Object, err error) {
return true, nil, errors.New("fake-delete-error")
},
},
},
err: "error to delete restore PVC fake-restore: error to delete pvc fake-restore: fake-delete-error",
},
{
name: "[same mode] wait volume detached fail",
targetPVCName: "fake-target-pvc",
targetNamespace: "fake-ns",
ownerRestore: restore,
kubeClientObj: []runtime.Object{
targetPVCObjSameMode,
restorePVCObj,
restorePVObj,
restorePod,
},
kubeReactors: []reactor{
{
verb: "list",
resource: "volumeattachments",
reactorFunc: func(action clientTesting.Action) (handled bool, ret runtime.Object, err error) {
return true, nil, errors.New("fake-list-error")
},
},
},
err: "error waiting for restore PV fake-restore-pv to detach: error listing volumeattachment: error listing volumeattachment: fake-list-error",
},
{
name: "[same mode] rebind target pvc fail",
targetPVCName: "fake-target-pvc",
targetNamespace: "fake-ns",
ownerRestore: restore,
kubeClientObj: []runtime.Object{
targetPVCObjSameMode,
restorePVCObj,
restorePVObj,
restorePod,
},
kubeReactors: []reactor{
{
verb: "patch",
resource: "persistentvolumeclaims",
reactorFunc: func(action clientTesting.Action) (handled bool, ret runtime.Object, err error) {
return true, nil, errors.New("fake-patch-error")
},
},
},
err: "error to rebind target PVC fake-ns/fake-target-pvc to fake-restore-pv: error patching PVC: fake-patch-error",
},
{
name: "[same mode] reset pv binding fail",
targetPVCName: "fake-target-pvc",
targetNamespace: "fake-ns",
ownerRestore: restore,
kubeClientObj: []runtime.Object{
targetPVCObjSameMode,
restorePVCObj,
restorePVObj,
restorePod,
},
kubeReactors: []reactor{
{
verb: "patch",
resource: "persistentvolumes",
reactorFunc: func(action clientTesting.Action) (handled bool, ret runtime.Object, err error) {
// we need it to succeed on set reclaim policy, but fail on reset binding
patchAction := action.(clientTesting.PatchAction)
patchString := string(patchAction.GetPatch())
if patchString != `{"spec":{"persistentVolumeReclaimPolicy":"Retain"}}` {
return true, nil, errors.New("fake-patch-error-reset")
}
return false, nil, nil
},
},
},
err: "error to reset binding info for restore PV fake-restore-pv: error patching PV: fake-patch-error-reset",
},
{
name: "[same mode] wait restore PV bound fail",
targetPVCName: "fake-target-pvc",
targetNamespace: "fake-ns",
ownerRestore: restore,
kubeClientObj: []runtime.Object{
targetPVCObjSameMode,
restorePVCObj,
restorePVObj,
restorePod,
},
err: "error to wait restore PV bound, restore PV fake-restore-pv: error to wait for bound of PV: context deadline exceeded",
},
}
for _, test := range tests {
t.Run(test.name, func(t *testing.T) {
fakeKubeClient := fake.NewSimpleClientset(test.kubeClientObj...)
for _, reactor := range test.kubeReactors {
fakeKubeClient.Fake.PrependReactor(reactor.verb, reactor.resource, reactor.reactorFunc)
}
exposer := genericRestoreExposer{
kubeClient: fakeKubeClient,
log: velerotest.NewLogger(),
}
var ownerObject corev1api.ObjectReference
if test.ownerRestore != nil {
ownerObject = corev1api.ObjectReference{
Kind: test.ownerRestore.Kind,
Namespace: test.ownerRestore.Namespace,
Name: test.ownerRestore.Name,
UID: test.ownerRestore.UID,
APIVersion: test.ownerRestore.APIVersion,
}
}
err := exposer.RebindVolume(t.Context(), ownerObject, GenericRestoreRebindVolumeParam{
TargetPVCName: test.targetPVCName,
TargetNamespace: test.targetNamespace,
OperationTimeout: time.Millisecond,
})
if test.err != "" {
assert.ErrorContains(t, err, test.err)
} else {
assert.NoError(t, err)
}
})
}
}
func TestRestorePeekExpose(t *testing.T) {
restore := &velerov1.Restore{
TypeMeta: metav1.TypeMeta{
APIVersion: velerov1.SchemeGroupVersion.String(),
Kind: "Restore",
},
ObjectMeta: metav1.ObjectMeta{
Namespace: velerov1.DefaultNamespace,
Name: "fake-restore",
UID: "fake-uid",
},
}
restorePodUrecoverable := &corev1api.Pod{
ObjectMeta: metav1.ObjectMeta{
Namespace: restore.Namespace,
Name: restore.Name,
},
Status: corev1api.PodStatus{
Phase: corev1api.PodFailed,
},
}
restorePod := &corev1api.Pod{
ObjectMeta: metav1.ObjectMeta{
Namespace: restore.Namespace,
Name: restore.Name,
},
}
tests := []struct {
name string
kubeClientObj []runtime.Object
ownerRestore *velerov1.Restore
err string
}{
{
name: "restore pod is not found",
ownerRestore: restore,
},
{
name: "pod is unrecoverable",
ownerRestore: restore,
kubeClientObj: []runtime.Object{
restorePodUrecoverable,
},
err: "Pod is in abnormal state [Failed], message []",
},
{
name: "succeed",
ownerRestore: restore,
kubeClientObj: []runtime.Object{
restorePod,
},
},
}
for _, test := range tests {
t.Run(test.name, func(t *testing.T) {
fakeKubeClient := fake.NewSimpleClientset(test.kubeClientObj...)
exposer := genericRestoreExposer{
kubeClient: fakeKubeClient,
log: velerotest.NewLogger(),
}
var ownerObject corev1api.ObjectReference
if test.ownerRestore != nil {
ownerObject = corev1api.ObjectReference{
Kind: test.ownerRestore.Kind,
Namespace: test.ownerRestore.Namespace,
Name: test.ownerRestore.Name,
UID: test.ownerRestore.UID,
APIVersion: test.ownerRestore.APIVersion,
}
}
err := exposer.PeekExposed(t.Context(), ownerObject)
if test.err == "" {
assert.NoError(t, err)
} else {
assert.EqualError(t, err, test.err)
}
})
}
}
func Test_ReastoreDiagnoseExpose(t *testing.T) {
restore := &velerov1.Restore{
TypeMeta: metav1.TypeMeta{
APIVersion: velerov1.SchemeGroupVersion.String(),
Kind: "Restore",
},
ObjectMeta: metav1.ObjectMeta{
Namespace: velerov1.DefaultNamespace,
Name: "fake-restore",
UID: "fake-uid",
},
}
restorePodWithoutNodeName := corev1api.Pod{
ObjectMeta: metav1.ObjectMeta{
Namespace: velerov1.DefaultNamespace,
Name: "fake-restore",
UID: "fake-pod-uid",
OwnerReferences: []metav1.OwnerReference{
{
APIVersion: restore.APIVersion,
Kind: restore.Kind,
Name: restore.Name,
UID: restore.UID,
},
},
},
Status: corev1api.PodStatus{
Phase: corev1api.PodPending,
Conditions: []corev1api.PodCondition{
{
Type: corev1api.PodInitialized,
Status: corev1api.ConditionTrue,
Message: "fake-pod-message",
},
},
Message: "fake-pod-message-1",
},
}
restorePodWithNodeName := corev1api.Pod{
ObjectMeta: metav1.ObjectMeta{
Namespace: velerov1.DefaultNamespace,
Name: "fake-restore",
UID: "fake-pod-uid",
OwnerReferences: []metav1.OwnerReference{
{
APIVersion: restore.APIVersion,
Kind: restore.Kind,
Name: restore.Name,
UID: restore.UID,
},
},
},
Spec: corev1api.PodSpec{
NodeName: "fake-node",
},
Status: corev1api.PodStatus{
Phase: corev1api.PodPending,
Conditions: []corev1api.PodCondition{
{
Type: corev1api.PodInitialized,
Status: corev1api.ConditionTrue,
Message: "fake-pod-message",
},
},
},
}
restorePVCWithoutVolumeName := corev1api.PersistentVolumeClaim{
ObjectMeta: metav1.ObjectMeta{
Namespace: velerov1.DefaultNamespace,
Name: "fake-restore",
UID: "fake-pvc-uid",
OwnerReferences: []metav1.OwnerReference{
{
APIVersion: restore.APIVersion,
Kind: restore.Kind,
Name: restore.Name,
UID: restore.UID,
},
},
},
Status: corev1api.PersistentVolumeClaimStatus{
Phase: corev1api.ClaimPending,
},
}
restorePVCWithVolumeName := corev1api.PersistentVolumeClaim{
ObjectMeta: metav1.ObjectMeta{
Namespace: velerov1.DefaultNamespace,
Name: "fake-restore",
UID: "fake-pvc-uid",
OwnerReferences: []metav1.OwnerReference{
{
APIVersion: restore.APIVersion,
Kind: restore.Kind,
Name: restore.Name,
UID: restore.UID,
},
},
},
Spec: corev1api.PersistentVolumeClaimSpec{
VolumeName: "fake-pv",
},
Status: corev1api.PersistentVolumeClaimStatus{
Phase: corev1api.ClaimPending,
},
}
restorePV := corev1api.PersistentVolume{
ObjectMeta: metav1.ObjectMeta{
Name: "fake-pv",
},
Status: corev1api.PersistentVolumeStatus{
Phase: corev1api.VolumePending,
Message: "fake-pv-message",
},
}
cachePVCWithVolumeName := corev1api.PersistentVolumeClaim{
ObjectMeta: metav1.ObjectMeta{
Namespace: velerov1.DefaultNamespace,
Name: "fake-restore-cache",
UID: "fake-cache-pvc-uid",
OwnerReferences: []metav1.OwnerReference{
{
APIVersion: restore.APIVersion,
Kind: restore.Kind,
Name: restore.Name,
UID: restore.UID,
},
},
},
Spec: corev1api.PersistentVolumeClaimSpec{
VolumeName: "fake-pv-cache",
},
Status: corev1api.PersistentVolumeClaimStatus{
Phase: corev1api.ClaimPending,
},
}
cachePV := corev1api.PersistentVolume{
ObjectMeta: metav1.ObjectMeta{
Name: "fake-pv-cache",
},
Status: corev1api.PersistentVolumeStatus{
Phase: corev1api.VolumePending,
Message: "fake-pv-message",
},
}
nodeAgentPod := corev1api.Pod{
ObjectMeta: metav1.ObjectMeta{
Namespace: velerov1.DefaultNamespace,
Name: "node-agent-pod-1",
Labels: map[string]string{"role": "node-agent"},
},
Spec: corev1api.PodSpec{
NodeName: "fake-node",
},
Status: corev1api.PodStatus{
Phase: corev1api.PodRunning,
},
}
tests := []struct {
name string
ownerRestore *velerov1.Restore
kubeClientObj []runtime.Object
expected string
}{
{
name: "no pod, pvc",
ownerRestore: restore,
expected: `begin diagnose restore exposer
error getting restore pod fake-restore, err: pods "fake-restore" not found
error getting restore pvc fake-restore, err: persistentvolumeclaims "fake-restore" not found
end diagnose restore exposer`,
},
{
name: "pod without node name, pvc without volume name, vs without status",
ownerRestore: restore,
kubeClientObj: []runtime.Object{
&restorePodWithoutNodeName,
&restorePVCWithoutVolumeName,
},
expected: `begin diagnose restore exposer
Pod velero/fake-restore, phase Pending, node name , message fake-pod-message-1
Pod condition Initialized, status True, reason , message fake-pod-message
PVC velero/fake-restore, phase Pending, binding to
end diagnose restore exposer`,
},
{
name: "pod without node name, pvc without volume name",
ownerRestore: restore,
kubeClientObj: []runtime.Object{
&restorePodWithoutNodeName,
&restorePVCWithoutVolumeName,
},
expected: `begin diagnose restore exposer
Pod velero/fake-restore, phase Pending, node name , message fake-pod-message-1
Pod condition Initialized, status True, reason , message fake-pod-message
PVC velero/fake-restore, phase Pending, binding to
end diagnose restore exposer`,
},
{
name: "pod with node name, no node agent",
ownerRestore: restore,
kubeClientObj: []runtime.Object{
&restorePodWithNodeName,
&restorePVCWithoutVolumeName,
},
expected: `begin diagnose restore exposer
Pod velero/fake-restore, phase Pending, node name fake-node, message
Pod condition Initialized, status True, reason , message fake-pod-message
node-agent is not running in node fake-node, err: daemonset pod not found in running state in node fake-node
PVC velero/fake-restore, phase Pending, binding to
end diagnose restore exposer`,
},
{
name: "pod with node name, node agent is running",
ownerRestore: restore,
kubeClientObj: []runtime.Object{
&restorePodWithNodeName,
&restorePVCWithoutVolumeName,
&nodeAgentPod,
},
expected: `begin diagnose restore exposer
Pod velero/fake-restore, phase Pending, node name fake-node, message
Pod condition Initialized, status True, reason , message fake-pod-message
PVC velero/fake-restore, phase Pending, binding to
end diagnose restore exposer`,
},
{
name: "pvc with volume name, no pv",
ownerRestore: restore,
kubeClientObj: []runtime.Object{
&restorePodWithNodeName,
&restorePVCWithVolumeName,
&nodeAgentPod,
},
expected: `begin diagnose restore exposer
Pod velero/fake-restore, phase Pending, node name fake-node, message
Pod condition Initialized, status True, reason , message fake-pod-message
PVC velero/fake-restore, phase Pending, binding to fake-pv
error getting restore pv fake-pv, err: persistentvolumes "fake-pv" not found
end diagnose restore exposer`,
},
{
name: "pvc with volume name, pv exists",
ownerRestore: restore,
kubeClientObj: []runtime.Object{
&restorePodWithNodeName,
&restorePVCWithVolumeName,
&restorePV,
&nodeAgentPod,
},
expected: `begin diagnose restore exposer
Pod velero/fake-restore, phase Pending, node name fake-node, message
Pod condition Initialized, status True, reason , message fake-pod-message
PVC velero/fake-restore, phase Pending, binding to fake-pv
PV fake-pv, phase Pending, reason , message fake-pv-message
end diagnose restore exposer`,
},
{
name: "cache pvc with volume name, no pv",
ownerRestore: restore,
kubeClientObj: []runtime.Object{
&restorePodWithNodeName,
&restorePVCWithVolumeName,
&cachePVCWithVolumeName,
&nodeAgentPod,
},
expected: `begin diagnose restore exposer
Pod velero/fake-restore, phase Pending, node name fake-node, message
Pod condition Initialized, status True, reason , message fake-pod-message
PVC velero/fake-restore, phase Pending, binding to fake-pv
error getting restore pv fake-pv, err: persistentvolumes "fake-pv" not found
PVC velero/fake-restore-cache, phase Pending, binding to fake-pv-cache
error getting cache pv fake-pv-cache, err: persistentvolumes "fake-pv-cache" not found
end diagnose restore exposer`,
},
{
name: "cache pvc with volume name, pv exists",
ownerRestore: restore,
kubeClientObj: []runtime.Object{
&restorePodWithNodeName,
&restorePVCWithVolumeName,
&cachePVCWithVolumeName,
&restorePV,
&cachePV,
&nodeAgentPod,
},
expected: `begin diagnose restore exposer
Pod velero/fake-restore, phase Pending, node name fake-node, message
Pod condition Initialized, status True, reason , message fake-pod-message
PVC velero/fake-restore, phase Pending, binding to fake-pv
PV fake-pv, phase Pending, reason , message fake-pv-message
PVC velero/fake-restore-cache, phase Pending, binding to fake-pv-cache
PV fake-pv-cache, phase Pending, reason , message fake-pv-message
end diagnose restore exposer`,
},
{
name: "with events",
ownerRestore: restore,
kubeClientObj: []runtime.Object{
&restorePodWithNodeName,
&restorePVCWithVolumeName,
&restorePV,
&nodeAgentPod,
&corev1api.Event{
ObjectMeta: metav1.ObjectMeta{Namespace: velerov1.DefaultNamespace, Name: "event-1"},
Type: corev1api.EventTypeWarning,
InvolvedObject: corev1api.ObjectReference{UID: "fake-uid-1"},
Reason: "reason-1",
Message: "message-1",
},
&corev1api.Event{
ObjectMeta: metav1.ObjectMeta{Namespace: velerov1.DefaultNamespace, Name: "event-2"},
Type: corev1api.EventTypeWarning,
InvolvedObject: corev1api.ObjectReference{UID: "fake-pod-uid"},
Reason: "reason-2",
Message: "message-2",
},
&corev1api.Event{
ObjectMeta: metav1.ObjectMeta{Namespace: velerov1.DefaultNamespace, Name: "event-3"},
Type: corev1api.EventTypeWarning,
InvolvedObject: corev1api.ObjectReference{UID: "fake-pvc-uid"},
Reason: "reason-3",
Message: "message-3",
},
&corev1api.Event{
ObjectMeta: metav1.ObjectMeta{Namespace: "other-namespace", Name: "event-4"},
Type: corev1api.EventTypeWarning,
InvolvedObject: corev1api.ObjectReference{UID: "fake-pod-uid"},
Reason: "reason-4",
Message: "message-4",
},
&corev1api.Event{
ObjectMeta: metav1.ObjectMeta{Namespace: velerov1.DefaultNamespace, Name: "event-5"},
Type: corev1api.EventTypeWarning,
InvolvedObject: corev1api.ObjectReference{UID: "fake-pod-uid"},
Reason: "reason-5",
Message: "message-5",
},
},
expected: `begin diagnose restore exposer
Pod velero/fake-restore, phase Pending, node name fake-node, message
Pod condition Initialized, status True, reason , message fake-pod-message
Pod event reason reason-2, message message-2
Pod event reason reason-5, message message-5
PVC velero/fake-restore, phase Pending, binding to fake-pv
PVC event reason reason-3, message message-3
PV fake-pv, phase Pending, reason , message fake-pv-message
end diagnose restore exposer`,
},
}
for _, test := range tests {
t.Run(test.name, func(t *testing.T) {
fakeKubeClient := fake.NewSimpleClientset(test.kubeClientObj...)
e := genericRestoreExposer{
kubeClient: fakeKubeClient,
log: velerotest.NewLogger(),
}
var ownerObject corev1api.ObjectReference
if test.ownerRestore != nil {
ownerObject = corev1api.ObjectReference{
Kind: test.ownerRestore.Kind,
Namespace: test.ownerRestore.Namespace,
Name: test.ownerRestore.Name,
UID: test.ownerRestore.UID,
APIVersion: test.ownerRestore.APIVersion,
}
}
diag := e.DiagnoseExpose(t.Context(), ownerObject)
assert.Equal(t, test.expected, diag)
})
}
}
func TestCreateRestorePod(t *testing.T) {
scName := "storage-class-01"
daemonSet := &appsv1api.DaemonSet{
ObjectMeta: metav1.ObjectMeta{
Namespace: "velero",
Name: "node-agent",
},
TypeMeta: metav1.TypeMeta{
Kind: "DaemonSet",
APIVersion: appsv1api.SchemeGroupVersion.String(),
},
Spec: appsv1api.DaemonSetSpec{
Template: corev1api.PodTemplateSpec{
Spec: corev1api.PodSpec{
Containers: []corev1api.Container{
{
Image: "fake-image",
},
},
},
},
},
}
daemonSetWin := &appsv1api.DaemonSet{
ObjectMeta: metav1.ObjectMeta{
Namespace: "velero",
Name: "node-agent-windows",
},
TypeMeta: metav1.TypeMeta{
Kind: "DaemonSet",
APIVersion: appsv1api.SchemeGroupVersion.String(),
},
Spec: appsv1api.DaemonSetSpec{
Template: corev1api.PodTemplateSpec{
Spec: corev1api.PodSpec{
Containers: []corev1api.Container{
{
Image: "fake-image",
},
},
},
},
},
}
targetPVCObj := &corev1api.PersistentVolumeClaim{
ObjectMeta: metav1.ObjectMeta{
Namespace: "fake-ns",
Name: "fake-target-pvc",
},
Spec: corev1api.PersistentVolumeClaimSpec{
StorageClassName: &scName,
},
}
tests := []struct {
name string
kubeClientObj []runtime.Object
selectedNode string
affinity *kube.LoadAffinity
nodeOS string
expectedPod *corev1api.Pod
expectedNodeSelector map[string]string
}{
{
name: "linux",
kubeClientObj: []runtime.Object{daemonSet, daemonSetWin, targetPVCObj},
selectedNode: "",
affinity: &kube.LoadAffinity{
NodeSelector: metav1.LabelSelector{
MatchExpressions: []metav1.LabelSelectorRequirement{
{
Key: corev1api.LabelOSStable,
Operator: metav1.LabelSelectorOpIn,
Values: []string{"linux"},
},
},
},
StorageClass: scName,
},
nodeOS: "linux",
},
{
name: "windows",
kubeClientObj: []runtime.Object{daemonSet, daemonSetWin, targetPVCObj},
selectedNode: "",
affinity: &kube.LoadAffinity{
NodeSelector: metav1.LabelSelector{
MatchExpressions: []metav1.LabelSelectorRequirement{
{
Key: corev1api.LabelOSStable,
Operator: metav1.LabelSelectorOpIn,
Values: []string{"windows"},
},
},
},
StorageClass: scName,
},
nodeOS: "windows",
},
{
// A selected node is pinned through the node selector, and the
// affinity from the node-agent config is ignored.
name: "selected node",
kubeClientObj: []runtime.Object{daemonSet, daemonSetWin, targetPVCObj},
selectedNode: "fake-selected-node",
affinity: &kube.LoadAffinity{
NodeSelector: metav1.LabelSelector{
MatchExpressions: []metav1.LabelSelectorRequirement{
{
Key: corev1api.LabelOSStable,
Operator: metav1.LabelSelectorOpIn,
Values: []string{"linux"},
},
},
},
StorageClass: scName,
},
nodeOS: "linux",
expectedNodeSelector: map[string]string{
corev1api.LabelHostname: "fake-selected-node",
},
},
}
for _, test := range tests {
t.Run(test.name, func(t *testing.T) {
fakeKubeClient := fake.NewSimpleClientset(test.kubeClientObj...)
exposer := genericRestoreExposer{
kubeClient: fakeKubeClient,
log: velerotest.NewLogger(),
}
pod, err := exposer.createRestorePod(
t.Context(),
corev1api.ObjectReference{
Namespace: velerov1.DefaultNamespace,
Name: "data-download",
},
targetPVCObj,
time.Second*3,
nil,
nil,
nil,
test.selectedNode,
corev1api.ResourceRequirements{},
test.nodeOS,
test.affinity,
"", // priority class name
nil,
"", // volumeSnapshotNamespace
"", // volumeID
nil,
)
require.NoError(t, err)
if test.expectedPod != nil {
assert.Equal(t, test.expectedPod, pod)
}
if test.expectedNodeSelector != nil {
assert.Equal(t, test.expectedNodeSelector, pod.Spec.NodeSelector)
}
})
}
}