ad47e2a985
- Meta now supports (and requires) inc/dec labeled counters - The new logic counter is incremented on `Put` operations and is decremented on `Inhume` and `Delete` operations that are performed on _stored_ objects only - Allow force counters sync. "Force" mode should be used on metabase resync and should not be used on a regular meta start Signed-off-by: Pavel Karpy <carpawell@nspcc.ru>
237 lines
6 KiB
Go
237 lines
6 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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apistatus "github.com/nspcc-dev/neofs-sdk-go/client/status"
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"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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// InhumePrm encapsulates parameters for Inhume operation.
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type InhumePrm struct {
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tomb *oid.Address
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target []oid.Address
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lockObjectHandling bool
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forceRemoval bool
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}
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// InhumeRes encapsulates results of Inhume operation.
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type InhumeRes struct {
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deletedLockObj []oid.Address
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availableImhumed uint64
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}
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// AvailableInhumed return number of available object
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// that have been inhumed.
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func (i InhumeRes) AvailableInhumed() uint64 {
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return i.availableImhumed
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}
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// DeletedLockObjects returns deleted object of LOCK
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// type. Returns always nil if WithoutLockObjectHandling
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// was provided to the InhumePrm.
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func (i InhumeRes) DeletedLockObjects() []oid.Address {
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return i.deletedLockObj
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}
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// SetAddresses sets a list of object addresses that should be inhumed.
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func (p *InhumePrm) SetAddresses(addrs ...oid.Address) {
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p.target = addrs
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}
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// SetTombstoneAddress sets tombstone address as the reason for inhume operation.
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//
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// addr should not be nil.
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// Should not be called along with SetGCMark.
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func (p *InhumePrm) SetTombstoneAddress(addr oid.Address) {
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p.tomb = &addr
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}
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// SetGCMark marks the object to be physically removed.
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//
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// Should not be called along with SetTombstoneAddress.
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func (p *InhumePrm) SetGCMark() {
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p.tomb = nil
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}
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// SetLockObjectHandling checks if there were
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// any LOCK object among the targets set via WithAddresses.
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func (p *InhumePrm) SetLockObjectHandling() {
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p.lockObjectHandling = true
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}
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// SetForceGCMark allows removal any object. Expected to be
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// called only in control service.
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func (p *InhumePrm) SetForceGCMark() {
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p.tomb = nil
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p.forceRemoval = true
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}
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var errBreakBucketForEach = errors.New("bucket ForEach break")
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// ErrLockObjectRemoval is returned when inhume operation is being
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// performed on lock object, and it is not a forced object removal.
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var ErrLockObjectRemoval = errors.New("lock object removal")
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// Inhume marks objects as removed but not removes it from metabase.
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//
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// Allows inhuming non-locked objects only. Returns apistatus.ObjectLocked
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// if at least one object is locked. Returns ErrLockObjectRemoval if inhuming
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// is being performed on lock (not locked) object.
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//
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// NOTE: Marks any object with GC mark (despite any prohibitions on operations
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// with that object) if WithForceGCMark option has been provided.
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func (db *DB) Inhume(prm InhumePrm) (res InhumeRes, err error) {
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db.modeMtx.RLock()
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defer db.modeMtx.RUnlock()
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currEpoch := db.epochState.CurrentEpoch()
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var inhumed uint64
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err = db.boltDB.Update(func(tx *bbolt.Tx) error {
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garbageBKT := tx.Bucket(garbageBucketName)
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graveyardBKT := tx.Bucket(graveyardBucketName)
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var (
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// target bucket of the operation, one of the:
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// 1. Graveyard if Inhume was called with a Tombstone
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// 2. Garbage if Inhume was called with a GC mark
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bkt *bbolt.Bucket
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// value that will be put in the bucket, one of the:
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// 1. tombstone address if Inhume was called with
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// a Tombstone
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// 2. zeroValue if Inhume was called with a GC mark
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value []byte
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)
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if prm.tomb != nil {
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bkt = graveyardBKT
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tombKey := addressKey(*prm.tomb)
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// it is forbidden to have a tomb-on-tomb in NeoFS,
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// so graveyard keys must not be addresses of tombstones
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data := bkt.Get(tombKey)
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if data != nil {
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err := bkt.Delete(tombKey)
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if err != nil {
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return fmt.Errorf("could not remove grave with tombstone key: %w", err)
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}
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}
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value = tombKey
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} else {
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bkt = garbageBKT
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value = zeroValue
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}
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for i := range prm.target {
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id := prm.target[i].Object()
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cnr := prm.target[i].Container()
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// prevent locked objects to be inhumed
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if objectLocked(tx, cnr, id) {
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return apistatus.ObjectLocked{}
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}
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var lockWasChecked bool
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// prevent lock objects to be inhumed
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// if `Inhume` was called not with the
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// `WithForceGCMark` option
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if !prm.forceRemoval {
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if isLockObject(tx, cnr, id) {
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return ErrLockObjectRemoval
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}
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lockWasChecked = true
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}
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targetKey := addressKey(prm.target[i])
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obj, err := db.get(tx, prm.target[i], false, true, currEpoch)
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if err == nil {
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if inGraveyardWithKey(targetKey, graveyardBKT, garbageBKT) == 0 {
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// object is available, decrement the
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// logical counter
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inhumed++
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}
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// if object is stored, and it is regular object then update bucket
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// with container size estimations
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if obj.Type() == object.TypeRegular {
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err := changeContainerSize(tx, cnr, obj.PayloadSize(), false)
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if err != nil {
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return err
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}
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}
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}
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if prm.tomb != nil {
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targetIsTomb := false
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// iterate over graveyard and check if target address
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// is the address of tombstone in graveyard.
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err = bkt.ForEach(func(k, v []byte) error {
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// check if graveyard has record with key corresponding
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// to tombstone address (at least one)
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targetIsTomb = bytes.Equal(v, targetKey)
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if targetIsTomb {
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// break bucket iterator
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return errBreakBucketForEach
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}
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return nil
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})
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if err != nil && !errors.Is(err, errBreakBucketForEach) {
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return err
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}
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// do not add grave if target is a tombstone
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if targetIsTomb {
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continue
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}
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// if tombstone appears object must be
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// additionally marked with GC
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err = garbageBKT.Put(targetKey, zeroValue)
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if err != nil {
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return err
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}
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}
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// consider checking if target is already in graveyard?
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err = bkt.Put(targetKey, value)
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if err != nil {
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return err
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}
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if prm.lockObjectHandling {
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// do not perform lock check if
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// it was already called
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if lockWasChecked {
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// inhumed object is not of
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// the LOCK type
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continue
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}
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if isLockObject(tx, cnr, id) {
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res.deletedLockObj = append(res.deletedLockObj, prm.target[i])
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}
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}
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}
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return db.updateCounter(tx, logical, inhumed, false)
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})
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res.availableImhumed = inhumed
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return
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}
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