2849e465f9
It is not an error: removing virtual object is expected and should be just skipped. Getting a virtual object with `raw` flag is considered as an impossible action, all the virtual objects removals will be handled via their children's removals implicitly. Signed-off-by: Pavel Karpy <carpawell@nspcc.ru>
346 lines
8.5 KiB
Go
346 lines
8.5 KiB
Go
package meta
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import (
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"bytes"
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"errors"
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"fmt"
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"github.com/nspcc-dev/neofs-node/pkg/core/object"
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storagelog "github.com/nspcc-dev/neofs-node/pkg/local_object_storage/internal/log"
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apistatus "github.com/nspcc-dev/neofs-sdk-go/client/status"
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objectSDK "github.com/nspcc-dev/neofs-sdk-go/object"
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oid "github.com/nspcc-dev/neofs-sdk-go/object/id"
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"go.etcd.io/bbolt"
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)
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// DeletePrm groups the parameters of Delete operation.
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type DeletePrm struct {
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addrs []oid.Address
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}
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// DeleteRes groups the resulting values of Delete operation.
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type DeleteRes struct {
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rawRemoved uint64
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availableRemoved uint64
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}
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// AvailableObjectsRemoved returns the number of removed available
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// objects.
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func (d DeleteRes) AvailableObjectsRemoved() uint64 {
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return d.availableRemoved
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}
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// RawObjectsRemoved returns the number of removed raw objects.
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func (d DeleteRes) RawObjectsRemoved() uint64 {
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return d.rawRemoved
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}
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// SetAddresses is a Delete option to set the addresses of the objects to delete.
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//
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// Option is required.
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func (p *DeletePrm) SetAddresses(addrs ...oid.Address) {
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p.addrs = addrs
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}
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type referenceNumber struct {
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all, cur int
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addr oid.Address
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obj *objectSDK.Object
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}
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type referenceCounter map[string]*referenceNumber
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// Delete removed object records from metabase indexes.
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func (db *DB) Delete(prm DeletePrm) (DeleteRes, error) {
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db.modeMtx.RLock()
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defer db.modeMtx.RUnlock()
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var rawRemoved uint64
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var availableRemoved uint64
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var err error
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err = db.boltDB.Update(func(tx *bbolt.Tx) error {
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rawRemoved, availableRemoved, err = db.deleteGroup(tx, prm.addrs)
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return err
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})
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if err == nil {
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for i := range prm.addrs {
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storagelog.Write(db.log,
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storagelog.AddressField(prm.addrs[i]),
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storagelog.OpField("metabase DELETE"))
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}
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}
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return DeleteRes{
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rawRemoved: rawRemoved,
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availableRemoved: availableRemoved,
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}, err
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}
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// deleteGroup deletes object from the metabase. Handles removal of the
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// references of the split objects.
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// The first return value is a physical objects removed number: physical
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// objects that were stored. The second return value is a logical objects
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// removed number: objects that were available (without Tombstones, GCMarks
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// non-expired, etc.)
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func (db *DB) deleteGroup(tx *bbolt.Tx, addrs []oid.Address) (uint64, uint64, error) {
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refCounter := make(referenceCounter, len(addrs))
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currEpoch := db.epochState.CurrentEpoch()
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var rawDeleted uint64
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var availableDeleted uint64
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for i := range addrs {
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removed, available, err := db.delete(tx, addrs[i], refCounter, currEpoch)
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if err != nil {
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return 0, 0, err // maybe log and continue?
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}
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if removed {
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rawDeleted++
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}
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if available {
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availableDeleted++
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}
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}
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if rawDeleted > 0 {
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err := db.updateCounter(tx, phy, rawDeleted, false)
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if err != nil {
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return 0, 0, fmt.Errorf("could not decrease phy object counter: %w", err)
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}
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}
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if availableDeleted > 0 {
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err := db.updateCounter(tx, logical, availableDeleted, false)
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if err != nil {
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return 0, 0, fmt.Errorf("could not decrease logical object counter: %w", err)
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}
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}
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for _, refNum := range refCounter {
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if refNum.cur == refNum.all {
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err := db.deleteObject(tx, refNum.obj, true)
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if err != nil {
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return rawDeleted, availableDeleted, err // maybe log and continue?
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}
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}
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}
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return rawDeleted, availableDeleted, nil
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}
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// delete removes object indexes from the metabase. Counts the references
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// of the object that is being removed.
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// The first return value indicates if an object has been removed. (removing a
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// non-exist object is error-free). The second return value indicates if an
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// object was available before the removal (for calculating the logical object
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// counter).
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func (db *DB) delete(tx *bbolt.Tx, addr oid.Address, refCounter referenceCounter, currEpoch uint64) (bool, bool, error) {
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key := make([]byte, addressKeySize)
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addrKey := addressKey(addr, key)
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garbageBKT := tx.Bucket(garbageBucketName)
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graveyardBKT := tx.Bucket(graveyardBucketName)
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removeAvailableObject := inGraveyardWithKey(addrKey, graveyardBKT, garbageBKT) == 0
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// remove record from the garbage bucket
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if garbageBKT != nil {
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err := garbageBKT.Delete(addrKey)
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if err != nil {
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return false, false, fmt.Errorf("could not remove from garbage bucket: %w", err)
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}
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}
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// unmarshal object, work only with physically stored (raw == true) objects
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obj, err := db.get(tx, addr, key, false, true, currEpoch)
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if err != nil {
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var siErr *objectSDK.SplitInfoError
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var notFoundErr apistatus.ObjectNotFound
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if errors.As(err, ¬FoundErr) || errors.As(err, &siErr) {
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return false, false, nil
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}
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return false, false, err
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}
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// if object is an only link to a parent, then remove parent
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if parent := obj.Parent(); parent != nil {
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parAddr := object.AddressOf(parent)
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sParAddr := addressKey(parAddr, key)
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k := string(sParAddr)
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nRef, ok := refCounter[k]
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if !ok {
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nRef = &referenceNumber{
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all: parentLength(tx, parAddr),
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addr: parAddr,
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obj: parent,
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}
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refCounter[k] = nRef
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}
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nRef.cur++
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}
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// remove object
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err = db.deleteObject(tx, obj, false)
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if err != nil {
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return false, false, fmt.Errorf("could not remove object: %w", err)
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}
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return true, removeAvailableObject, nil
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}
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func (db *DB) deleteObject(
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tx *bbolt.Tx,
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obj *objectSDK.Object,
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isParent bool,
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) error {
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err := delUniqueIndexes(tx, obj, isParent)
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if err != nil {
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return fmt.Errorf("can't remove unique indexes")
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}
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err = updateListIndexes(tx, obj, delListIndexItem)
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if err != nil {
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return fmt.Errorf("can't remove list indexes: %w", err)
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}
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err = updateFKBTIndexes(tx, obj, delFKBTIndexItem)
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if err != nil {
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return fmt.Errorf("can't remove fake bucket tree indexes: %w", err)
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}
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return nil
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}
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// parentLength returns amount of available children from parentid index.
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func parentLength(tx *bbolt.Tx, addr oid.Address) int {
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bucketName := make([]byte, bucketKeySize)
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bkt := tx.Bucket(parentBucketName(addr.Container(), bucketName[:]))
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if bkt == nil {
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return 0
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}
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lst, err := decodeList(bkt.Get(objectKey(addr.Object(), bucketName[:])))
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if err != nil {
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return 0
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}
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return len(lst)
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}
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func delUniqueIndexItem(tx *bbolt.Tx, item namedBucketItem) {
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bkt := tx.Bucket(item.name)
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if bkt != nil {
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_ = bkt.Delete(item.key) // ignore error, best effort there
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}
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}
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func delFKBTIndexItem(tx *bbolt.Tx, item namedBucketItem) error {
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bkt := tx.Bucket(item.name)
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if bkt == nil {
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return nil
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}
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fkbtRoot := bkt.Bucket(item.key)
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if fkbtRoot == nil {
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return nil
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}
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_ = fkbtRoot.Delete(item.val) // ignore error, best effort there
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return nil
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}
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func delListIndexItem(tx *bbolt.Tx, item namedBucketItem) error {
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bkt := tx.Bucket(item.name)
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if bkt == nil {
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return nil
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}
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lst, err := decodeList(bkt.Get(item.key))
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if err != nil || len(lst) == 0 {
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return nil
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}
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// remove element from the list
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for i := range lst {
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if bytes.Equal(item.val, lst[i]) {
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copy(lst[i:], lst[i+1:])
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lst = lst[:len(lst)-1]
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break
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}
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}
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// if list empty, remove the key from <list> bucket
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if len(lst) == 0 {
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_ = bkt.Delete(item.key) // ignore error, best effort there
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return nil
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}
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// if list is not empty, then update it
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encodedLst, err := encodeList(lst)
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if err != nil {
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return nil // ignore error, best effort there
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}
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_ = bkt.Put(item.key, encodedLst) // ignore error, best effort there
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return nil
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}
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func delUniqueIndexes(tx *bbolt.Tx, obj *objectSDK.Object, isParent bool) error {
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addr := object.AddressOf(obj)
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objKey := objectKey(addr.Object(), make([]byte, objectKeySize))
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addrKey := addressKey(addr, make([]byte, addressKeySize))
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cnr := addr.Container()
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bucketName := make([]byte, bucketKeySize)
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// add value to primary unique bucket
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if !isParent {
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switch obj.Type() {
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case objectSDK.TypeRegular:
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bucketName = primaryBucketName(cnr, bucketName)
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case objectSDK.TypeTombstone:
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bucketName = tombstoneBucketName(cnr, bucketName)
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case objectSDK.TypeStorageGroup:
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bucketName = storageGroupBucketName(cnr, bucketName)
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case objectSDK.TypeLock:
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bucketName = bucketNameLockers(cnr, bucketName)
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default:
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return ErrUnknownObjectType
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}
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delUniqueIndexItem(tx, namedBucketItem{
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name: bucketName,
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key: objKey,
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})
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} else {
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delUniqueIndexItem(tx, namedBucketItem{
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name: parentBucketName(cnr, bucketName),
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key: objKey,
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})
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}
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delUniqueIndexItem(tx, namedBucketItem{ // remove from storage id index
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name: smallBucketName(cnr, bucketName),
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key: objKey,
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})
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delUniqueIndexItem(tx, namedBucketItem{ // remove from root index
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name: rootBucketName(cnr, bucketName),
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key: objKey,
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})
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delUniqueIndexItem(tx, namedBucketItem{ // remove from ToMoveIt index
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name: toMoveItBucketName,
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key: addrKey,
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})
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return nil
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}
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