mirror of
https://github.com/luxfi/zapdb.git
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237 lines
6.0 KiB
Go
237 lines
6.0 KiB
Go
/*
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* SPDX-FileCopyrightText: © Hypermode Inc. <hello@hypermode.com>
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* SPDX-License-Identifier: Apache-2.0
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*/
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package badger
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import (
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"sync"
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"sync/atomic"
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"github.com/pkg/errors"
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"google.golang.org/protobuf/proto"
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"github.com/dgraph-io/badger/v4/pb"
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"github.com/dgraph-io/badger/v4/y"
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"github.com/dgraph-io/ristretto/v2/z"
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)
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// WriteBatch holds the necessary info to perform batched writes.
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type WriteBatch struct {
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sync.Mutex
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txn *Txn
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db *DB
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throttle *y.Throttle
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err atomic.Value
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isManaged bool
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commitTs uint64
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finished bool
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}
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// NewWriteBatch creates a new WriteBatch. This provides a way to conveniently do a lot of writes,
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// batching them up as tightly as possible in a single transaction and using callbacks to avoid
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// waiting for them to commit, thus achieving good performance. This API hides away the logic of
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// creating and committing transactions. Due to the nature of SSI guaratees provided by Badger,
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// blind writes can never encounter transaction conflicts (ErrConflict).
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func (db *DB) NewWriteBatch() *WriteBatch {
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if db.opt.managedTxns {
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panic("cannot use NewWriteBatch in managed mode. Use NewWriteBatchAt instead")
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}
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return db.newWriteBatch(false)
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}
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func (db *DB) newWriteBatch(isManaged bool) *WriteBatch {
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return &WriteBatch{
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db: db,
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isManaged: isManaged,
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txn: db.newTransaction(true, isManaged),
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throttle: y.NewThrottle(16),
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}
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}
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// SetMaxPendingTxns sets a limit on maximum number of pending transactions while writing batches.
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// This function should be called before using WriteBatch. Default value of MaxPendingTxns is
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// 16 to minimise memory usage.
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func (wb *WriteBatch) SetMaxPendingTxns(max int) {
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wb.throttle = y.NewThrottle(max)
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}
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// Cancel function must be called if there's a chance that Flush might not get
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// called. If neither Flush or Cancel is called, the transaction oracle would
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// never get a chance to clear out the row commit timestamp map, thus causing an
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// unbounded memory consumption. Typically, you can call Cancel as a defer
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// statement right after NewWriteBatch is called.
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//
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// Note that any committed writes would still go through despite calling Cancel.
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func (wb *WriteBatch) Cancel() {
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wb.Lock()
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defer wb.Unlock()
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wb.finished = true
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if err := wb.throttle.Finish(); err != nil {
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wb.db.opt.Errorf("WatchBatch.Cancel error while finishing: %v", err)
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}
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wb.txn.Discard()
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}
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func (wb *WriteBatch) callback(err error) {
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// sync.WaitGroup is thread-safe, so it doesn't need to be run inside wb.Lock.
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defer wb.throttle.Done(err)
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if err == nil {
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return
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}
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if err := wb.Error(); err != nil {
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return
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}
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wb.err.Store(err)
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}
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func (wb *WriteBatch) writeKV(kv *pb.KV) error {
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e := Entry{Key: kv.Key, Value: kv.Value}
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if len(kv.UserMeta) > 0 {
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e.UserMeta = kv.UserMeta[0]
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}
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y.AssertTrue(kv.Version != 0)
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e.version = kv.Version
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return wb.handleEntry(&e)
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}
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func (wb *WriteBatch) Write(buf *z.Buffer) error {
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wb.Lock()
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defer wb.Unlock()
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err := buf.SliceIterate(func(s []byte) error {
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kv := &pb.KV{}
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if err := proto.Unmarshal(s, kv); err != nil {
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return err
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}
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return wb.writeKV(kv)
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})
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return err
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}
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func (wb *WriteBatch) WriteList(kvList *pb.KVList) error {
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wb.Lock()
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defer wb.Unlock()
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for _, kv := range kvList.Kv {
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if err := wb.writeKV(kv); err != nil {
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return err
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}
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}
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return nil
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}
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// SetEntryAt is the equivalent of Txn.SetEntry but it also allows setting version for the entry.
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// SetEntryAt can be used only in managed mode.
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func (wb *WriteBatch) SetEntryAt(e *Entry, ts uint64) error {
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if !wb.db.opt.managedTxns {
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return errors.New("SetEntryAt can only be used in managed mode. Use SetEntry instead")
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}
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e.version = ts
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return wb.SetEntry(e)
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}
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// Should be called with lock acquired.
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func (wb *WriteBatch) handleEntry(e *Entry) error {
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if err := wb.txn.SetEntry(e); err != ErrTxnTooBig {
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return err
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}
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// Txn has reached it's zenith. Commit now.
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if cerr := wb.commit(); cerr != nil {
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return cerr
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}
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// This time the error must not be ErrTxnTooBig, otherwise, we make the
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// error permanent.
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if err := wb.txn.SetEntry(e); err != nil {
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wb.err.Store(err)
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return err
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}
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return nil
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}
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// SetEntry is the equivalent of Txn.SetEntry.
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func (wb *WriteBatch) SetEntry(e *Entry) error {
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wb.Lock()
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defer wb.Unlock()
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return wb.handleEntry(e)
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}
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// Set is equivalent of Txn.Set().
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func (wb *WriteBatch) Set(k, v []byte) error {
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e := &Entry{Key: k, Value: v}
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return wb.SetEntry(e)
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}
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// DeleteAt is equivalent of Txn.Delete but accepts a delete timestamp.
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func (wb *WriteBatch) DeleteAt(k []byte, ts uint64) error {
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e := Entry{Key: k, meta: bitDelete, version: ts}
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return wb.SetEntry(&e)
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}
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// Delete is equivalent of Txn.Delete.
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func (wb *WriteBatch) Delete(k []byte) error {
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wb.Lock()
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defer wb.Unlock()
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if err := wb.txn.Delete(k); err != ErrTxnTooBig {
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return err
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}
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if err := wb.commit(); err != nil {
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return err
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}
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if err := wb.txn.Delete(k); err != nil {
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wb.err.Store(err)
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return err
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}
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return nil
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}
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// Caller to commit must hold a write lock.
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func (wb *WriteBatch) commit() error {
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if err := wb.Error(); err != nil {
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return err
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}
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if wb.finished {
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return y.ErrCommitAfterFinish
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}
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if err := wb.throttle.Do(); err != nil {
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wb.err.Store(err)
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return err
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}
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wb.txn.CommitWith(wb.callback)
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wb.txn = wb.db.newTransaction(true, wb.isManaged)
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wb.txn.commitTs = wb.commitTs
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return wb.Error()
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}
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// Flush must be called at the end to ensure that any pending writes get committed to Badger. Flush
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// returns any error stored by WriteBatch.
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func (wb *WriteBatch) Flush() error {
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wb.Lock()
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err := wb.commit()
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if err != nil {
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wb.Unlock()
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return err
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}
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wb.finished = true
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wb.txn.Discard()
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wb.Unlock()
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if err := wb.throttle.Finish(); err != nil {
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if wb.Error() != nil {
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return errors.Errorf("wb.err: %s err: %s", wb.Error(), err)
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}
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return err
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}
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return wb.Error()
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}
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// Error returns any errors encountered so far. No commits would be run once an error is detected.
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func (wb *WriteBatch) Error() error {
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// If the interface conversion fails, the err will be nil.
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err, _ := wb.err.Load().(error)
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return err
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}
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