mirror of
https://github.com/ceph/ceph-csi.git
synced 2024-11-26 08:10:20 +00:00
rbd: read clusterID and PoolID from mapping
Whenever Ceph-CSI receives a CSI/Replication request it will first decode the volumeHandle and try to get the required OMAP details if it is not able to retrieve, receives a `Not Found` error message and Ceph-CSI will check for the clusterID mapping. If the old volumeID `0001-00013-site1-storage-0000000000000001 -b0285c97-a0ce-11eb-8c66-0242ac110002` contains the `site1-storage` as the clusterID, now Ceph-CSI will look for the corresponding clusterID `site2-storage` from the above configmap. If the clusterID mapping is found now Ceph-CSI will look for the poolID mapping ie mapping between `1` and `2`. Example:- pool with name exists on both the clusters with different ID's Replicapool with ID `1` on site1 and Replicapool with ID `2` on site2. After getting the required mapping Ceph-CSI has the required information to get more details from the rados OMAP. If we have multiple clusterID mapping it will loop through all the mapping and checks the corresponding pool to get the OMAP data. If the clusterID mapping does not exist Ceph-CSI will return an `Not Found` error message to the caller. Signed-off-by: Madhu Rajanna <madhupr007@gmail.com>
This commit is contained in:
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ac11d71e19
commit
92ad2ceec9
@ -932,11 +932,11 @@ func genSnapFromSnapID(
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func generateVolumeFromVolumeID(
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func generateVolumeFromVolumeID(
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ctx context.Context,
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ctx context.Context,
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volumeID string,
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volumeID string,
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vi util.CSIIdentifier,
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cr *util.Credentials,
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cr *util.Credentials,
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secrets map[string]string) (*rbdVolume, error) {
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secrets map[string]string) (*rbdVolume, error) {
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var (
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var (
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options map[string]string
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options map[string]string
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vi util.CSIIdentifier
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rbdVol *rbdVolume
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rbdVol *rbdVolume
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err error
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err error
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)
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)
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@ -946,13 +946,6 @@ func generateVolumeFromVolumeID(
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// Mounter, MultiNodeWritable
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// Mounter, MultiNodeWritable
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rbdVol = &rbdVolume{}
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rbdVol = &rbdVolume{}
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rbdVol.VolID = volumeID
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rbdVol.VolID = volumeID
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err = vi.DecomposeCSIID(rbdVol.VolID)
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if err != nil {
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return rbdVol, fmt.Errorf("%w: error decoding volume ID (%s) (%s)",
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ErrInvalidVolID, err, rbdVol.VolID)
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}
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// TODO check clusterID mapping exists
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// TODO check clusterID mapping exists
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rbdVol.ClusterID = vi.ClusterID
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rbdVol.ClusterID = vi.ClusterID
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@ -1031,12 +1024,37 @@ func genVolFromVolID(
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volumeID string,
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volumeID string,
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cr *util.Credentials,
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cr *util.Credentials,
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secrets map[string]string) (*rbdVolume, error) {
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secrets map[string]string) (*rbdVolume, error) {
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vol, err := generateVolumeFromVolumeID(ctx, volumeID, cr, secrets)
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var (
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vi util.CSIIdentifier
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vol *rbdVolume
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)
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err := vi.DecomposeCSIID(volumeID)
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if err != nil {
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return vol, fmt.Errorf("%w: error decoding volume ID (%s) (%s)",
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ErrInvalidVolID, err, volumeID)
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}
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vol, err = generateVolumeFromVolumeID(ctx, volumeID, vi, cr, secrets)
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if !errors.Is(err, util.ErrKeyNotFound) && !errors.Is(err, util.ErrPoolNotFound) &&
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if !errors.Is(err, util.ErrKeyNotFound) && !errors.Is(err, util.ErrPoolNotFound) &&
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!errors.Is(err, ErrImageNotFound) {
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!errors.Is(err, ErrImageNotFound) {
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return vol, err
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return vol, err
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}
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}
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// Check clusterID mapping exists
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mapping, mErr := util.GetClusterMappingInfo(vi.ClusterID)
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if mErr != nil {
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return vol, mErr
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}
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if mapping != nil {
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rbdVol, vErr := generateVolumeFromMapping(ctx, mapping, volumeID, vi, cr, secrets)
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if !errors.Is(vErr, util.ErrKeyNotFound) && !errors.Is(vErr, util.ErrPoolNotFound) &&
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!errors.Is(vErr, ErrImageNotFound) {
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return rbdVol, vErr
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}
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}
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// TODO: remove extracting volumeID from PV annotations.
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// If the volume details are not found in the OMAP it can be a mirrored RBD
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// If the volume details are not found in the OMAP it can be a mirrored RBD
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// image and the OMAP is already generated and the volumeHandle might not
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// image and the OMAP is already generated and the volumeHandle might not
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// be the same in the PV.Spec.CSI.VolumeHandle. Check the PV annotation for
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// be the same in the PV.Spec.CSI.VolumeHandle. Check the PV annotation for
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@ -1054,8 +1072,13 @@ func genVolFromVolID(
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if pvlist.Items[i].Spec.CSI != nil && pvlist.Items[i].Spec.CSI.VolumeHandle == volumeID {
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if pvlist.Items[i].Spec.CSI != nil && pvlist.Items[i].Spec.CSI.VolumeHandle == volumeID {
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if v, ok := pvlist.Items[i].Annotations[PVVolumeHandleAnnotationKey]; ok {
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if v, ok := pvlist.Items[i].Annotations[PVVolumeHandleAnnotationKey]; ok {
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util.UsefulLog(ctx, "found new volumeID %s for existing volumeID %s", v, volumeID)
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util.UsefulLog(ctx, "found new volumeID %s for existing volumeID %s", v, volumeID)
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err = vi.DecomposeCSIID(v)
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if err != nil {
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return vol, fmt.Errorf("%w: error decoding volume ID (%s) (%s)",
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ErrInvalidVolID, err, v)
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}
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return generateVolumeFromVolumeID(ctx, v, cr, secrets)
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return generateVolumeFromVolumeID(ctx, v, vi, cr, secrets)
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}
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}
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}
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}
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}
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}
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@ -1063,6 +1086,76 @@ func genVolFromVolID(
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return vol, err
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return vol, err
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}
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}
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// generateVolumeFromMapping checks the clusterID and poolID mapping and
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// generates retrieves the OMAP information from the poolID got from the
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// mapping.
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func generateVolumeFromMapping(
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ctx context.Context,
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mapping *[]util.ClusterMappingInfo,
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volumeID string,
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vi util.CSIIdentifier,
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cr *util.Credentials,
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secrets map[string]string) (*rbdVolume, error) {
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nvi := vi
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vol := &rbdVolume{}
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// extract clusterID mapping
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for _, cm := range *mapping {
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for key, val := range cm.ClusterIDMapping {
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mappedClusterID := getMappedID(key, val, vi.ClusterID)
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if mappedClusterID == "" {
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continue
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}
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util.DebugLog(ctx,
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"found new clusterID mapping %s for existing clusterID %s",
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mappedClusterID,
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vi.ClusterID)
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// Add mapping clusterID to Identifier
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nvi.ClusterID = mappedClusterID
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poolID := fmt.Sprintf("%d", (vi.LocationID))
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for _, pools := range cm.RBDpoolIDMappingInfo {
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for key, val := range pools {
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mappedPoolID := getMappedID(key, val, poolID)
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if mappedPoolID == "" {
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continue
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}
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util.DebugLog(ctx,
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"found new poolID mapping %s for existing pooID %s",
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mappedPoolID,
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poolID)
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pID, err := strconv.ParseInt(mappedPoolID, 10, 64)
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if err != nil {
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return vol, err
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}
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// Add mapping poolID to Identifier
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nvi.LocationID = pID
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vol, err = generateVolumeFromVolumeID(ctx, volumeID, nvi, cr, secrets)
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if !errors.Is(err, util.ErrKeyNotFound) && !errors.Is(err, util.ErrPoolNotFound) &&
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!errors.Is(err, ErrImageNotFound) {
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return vol, err
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}
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}
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}
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}
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}
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return vol, util.ErrPoolNotFound
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}
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// getMappedID check the input id is matching key or value.
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// If key==id the value will be returned.
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// If value==id the key will be returned.
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func getMappedID(key, value, id string) string {
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if key == id {
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return value
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}
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if value == id {
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return key
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}
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return ""
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}
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func genVolFromVolumeOptions(
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func genVolFromVolumeOptions(
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ctx context.Context,
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ctx context.Context,
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volOptions, credentials map[string]string,
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volOptions, credentials map[string]string,
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@ -137,3 +137,55 @@ func TestValidateImageFeatures(t *testing.T) {
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assert.Nil(t, err)
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assert.Nil(t, err)
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}
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}
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}
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}
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func TestGetMappedID(t *testing.T) {
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t.Parallel()
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type args struct {
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key string
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value string
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id string
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}
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tests := []struct {
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name string
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args args
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expected string
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}{
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{
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name: "test for matching key",
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args: args{
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key: "cluster1",
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value: "cluster2",
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id: "cluster1",
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},
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expected: "cluster2",
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},
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{
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name: "test for matching value",
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args: args{
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key: "cluster1",
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value: "cluster2",
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id: "cluster2",
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},
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expected: "cluster1",
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},
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{
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name: "test for invalid match",
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args: args{
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key: "cluster1",
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value: "cluster2",
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id: "cluster3",
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},
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expected: "",
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},
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}
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for _, tt := range tests {
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tt := tt
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t.Run(tt.name, func(t *testing.T) {
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t.Parallel()
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val := getMappedID(tt.args.key, tt.args.value, tt.args.id)
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if val != tt.expected {
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t.Errorf("getMappedID() got = %v, expected %v", val, tt.expected)
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}
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})
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}
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}
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