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a4d6195244
This change brings public data-types such that we can ask projects to implement gateway projects externally than maintaining in our repo. All publicly exported structs are maintained in object-api-datatypes.go completePart --> CompletePart uploadMetadata --> MultipartInfo All other exported errors are at object-api-errors.go
419 lines
12 KiB
Go
419 lines
12 KiB
Go
/*
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* Minio Cloud Storage, (C) 2016, 2017 Minio, Inc.
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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package cmd
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import (
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"path/filepath"
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"sort"
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"strings"
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)
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func listDirHealFactory(isLeaf isLeafFunc, disks ...StorageAPI) listDirFunc {
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// Returns sorted merged entries from all the disks.
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listDir := func(bucket, prefixDir, prefixEntry string) (mergedEntries []string, delayIsLeaf bool, err error) {
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for _, disk := range disks {
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if disk == nil {
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continue
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}
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var entries []string
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var newEntries []string
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entries, err = disk.ListDir(bucket, prefixDir)
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if err != nil {
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continue
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}
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// Filter entries that have the prefix prefixEntry.
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entries = filterMatchingPrefix(entries, prefixEntry)
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// isLeaf() check has to happen here so that
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// trailing "/" for objects can be removed.
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for i, entry := range entries {
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if isLeaf(bucket, pathJoin(prefixDir, entry)) {
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entries[i] = strings.TrimSuffix(entry, slashSeparator)
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}
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}
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// Find elements in entries which are not in mergedEntries
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for _, entry := range entries {
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idx := sort.SearchStrings(mergedEntries, entry)
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// if entry is already present in mergedEntries don't add.
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if idx < len(mergedEntries) && mergedEntries[idx] == entry {
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continue
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}
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newEntries = append(newEntries, entry)
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}
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if len(newEntries) > 0 {
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// Merge the entries and sort it.
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mergedEntries = append(mergedEntries, newEntries...)
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sort.Strings(mergedEntries)
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}
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}
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return mergedEntries, false, nil
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}
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return listDir
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}
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// listObjectsHeal - wrapper function implemented over file tree walk.
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func (xl xlObjects) listObjectsHeal(bucket, prefix, marker, delimiter string, maxKeys int) (loi ListObjectsInfo, e error) {
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// Default is recursive, if delimiter is set then list non recursive.
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recursive := true
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if delimiter == slashSeparator {
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recursive = false
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}
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// "heal" true for listObjectsHeal() and false for listObjects()
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heal := true
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walkResultCh, endWalkCh := xl.listPool.Release(listParams{bucket, recursive, marker, prefix, heal})
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if walkResultCh == nil {
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endWalkCh = make(chan struct{})
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isLeaf := xl.isObject
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listDir := listDirHealFactory(isLeaf, xl.storageDisks...)
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walkResultCh = startTreeWalk(bucket, prefix, marker, recursive, listDir, nil, endWalkCh)
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}
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var objInfos []ObjectInfo
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var eof bool
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var nextMarker string
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for i := 0; i < maxKeys; {
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walkResult, ok := <-walkResultCh
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if !ok {
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// Closed channel.
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eof = true
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break
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}
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// For any walk error return right away.
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if walkResult.err != nil {
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return loi, toObjectErr(walkResult.err, bucket, prefix)
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}
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entry := walkResult.entry
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var objInfo ObjectInfo
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if hasSuffix(entry, slashSeparator) {
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// Object name needs to be full path.
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objInfo.Bucket = bucket
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objInfo.Name = entry
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objInfo.IsDir = true
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} else {
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var err error
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objInfo, err = xl.getObjectInfo(bucket, entry)
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if err != nil {
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// Ignore errFileNotFound
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if errorCause(err) == errFileNotFound {
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continue
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}
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return loi, toObjectErr(err, bucket, prefix)
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}
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}
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nextMarker = objInfo.Name
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objInfos = append(objInfos, objInfo)
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i++
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if walkResult.end {
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eof = true
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break
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}
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}
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params := listParams{bucket, recursive, nextMarker, prefix, heal}
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if !eof {
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xl.listPool.Set(params, walkResultCh, endWalkCh)
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}
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result := ListObjectsInfo{IsTruncated: !eof}
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for _, objInfo := range objInfos {
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result.NextMarker = objInfo.Name
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if objInfo.IsDir {
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result.Prefixes = append(result.Prefixes, objInfo.Name)
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continue
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}
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// Check if the current object needs healing
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objectLock := globalNSMutex.NewNSLock(bucket, objInfo.Name)
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if err := objectLock.GetRLock(globalHealingTimeout); err != nil {
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return loi, err
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}
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partsMetadata, errs := readAllXLMetadata(xl.storageDisks, bucket, objInfo.Name)
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if xlShouldHeal(xl.storageDisks, partsMetadata, errs, bucket, objInfo.Name) {
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healStat := xlHealStat(xl, partsMetadata, errs)
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result.Objects = append(result.Objects, ObjectInfo{
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Name: objInfo.Name,
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ModTime: objInfo.ModTime,
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Size: objInfo.Size,
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IsDir: false,
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HealObjectInfo: &healStat,
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})
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}
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objectLock.RUnlock()
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}
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return result, nil
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}
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// ListObjects - list all objects at prefix, delimited by '/'.
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func (xl xlObjects) ListObjectsHeal(bucket, prefix, marker, delimiter string, maxKeys int) (loi ListObjectsInfo, e error) {
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if err := checkListObjsArgs(bucket, prefix, marker, delimiter, xl); err != nil {
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return loi, err
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}
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// With max keys of zero we have reached eof, return right here.
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if maxKeys == 0 {
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return loi, nil
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}
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// For delimiter and prefix as '/' we do not list anything at all
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// since according to s3 spec we stop at the 'delimiter' along
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// with the prefix. On a flat namespace with 'prefix' as '/'
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// we don't have any entries, since all the keys are of form 'keyName/...'
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if delimiter == slashSeparator && prefix == slashSeparator {
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return loi, nil
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}
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// Over flowing count - reset to maxObjectList.
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if maxKeys < 0 || maxKeys > maxObjectList {
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maxKeys = maxObjectList
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}
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// Initiate a list operation, if successful filter and return quickly.
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listObjInfo, err := xl.listObjectsHeal(bucket, prefix, marker, delimiter, maxKeys)
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if err == nil {
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// We got the entries successfully return.
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return listObjInfo, nil
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}
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// Return error at the end.
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return loi, toObjectErr(err, bucket, prefix)
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}
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// ListUploadsHeal - lists ongoing multipart uploads that require
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// healing in one or more disks.
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func (xl xlObjects) ListUploadsHeal(bucket, prefix, marker, uploadIDMarker,
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delimiter string, maxUploads int) (lmi ListMultipartsInfo, e error) {
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// For delimiter and prefix as '/' we do not list anything at all
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// since according to s3 spec we stop at the 'delimiter' along
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// with the prefix. On a flat namespace with 'prefix' as '/'
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// we don't have any entries, since all the keys are of form 'keyName/...'
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if delimiter == slashSeparator && prefix == slashSeparator {
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return lmi, nil
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}
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// Initiate a list operation.
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listMultipartInfo, err := xl.listMultipartUploadsHeal(bucket, prefix,
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marker, uploadIDMarker, delimiter, maxUploads)
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if err != nil {
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return lmi, toObjectErr(err, bucket, prefix)
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}
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// We got the entries successfully return.
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return listMultipartInfo, nil
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}
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// Fetches list of multipart uploadIDs given bucket, keyMarker, uploadIDMarker.
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func fetchMultipartUploadIDs(bucket, keyMarker, uploadIDMarker string,
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maxUploads int, disks []StorageAPI) (uploads []MultipartInfo, end bool,
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err error) {
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// Hold a read lock on keyMarker path.
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keyMarkerLock := globalNSMutex.NewNSLock(minioMetaMultipartBucket,
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pathJoin(bucket, keyMarker))
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if err = keyMarkerLock.GetRLock(globalHealingTimeout); err != nil {
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return uploads, end, err
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}
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for _, disk := range disks {
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if disk == nil {
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continue
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}
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uploads, end, err = listMultipartUploadIDs(bucket, keyMarker,
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uploadIDMarker, maxUploads, disk)
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if err == nil ||
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!isErrIgnored(err, objMetadataOpIgnoredErrs...) {
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break
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}
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}
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keyMarkerLock.RUnlock()
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return uploads, end, err
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}
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// listMultipartUploadsHeal - Returns a list of incomplete multipart
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// uploads that need to be healed.
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func (xl xlObjects) listMultipartUploadsHeal(bucket, prefix, keyMarker,
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uploadIDMarker, delimiter string, maxUploads int) (lmi ListMultipartsInfo, e error) {
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result := ListMultipartsInfo{
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IsTruncated: true,
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MaxUploads: maxUploads,
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KeyMarker: keyMarker,
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Prefix: prefix,
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Delimiter: delimiter,
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}
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recursive := delimiter != slashSeparator
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var uploads []MultipartInfo
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var err error
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// List all upload ids for the given keyMarker, starting from
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// uploadIDMarker.
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if uploadIDMarker != "" {
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uploads, _, err = fetchMultipartUploadIDs(bucket, keyMarker,
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uploadIDMarker, maxUploads, xl.getLoadBalancedDisks())
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if err != nil {
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return lmi, err
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}
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maxUploads = maxUploads - len(uploads)
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}
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// We can't use path.Join() as it strips off the trailing '/'.
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multipartPrefixPath := pathJoin(bucket, prefix)
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// multipartPrefixPath should have a trailing '/' when prefix = "".
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if prefix == "" {
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multipartPrefixPath += slashSeparator
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}
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multipartMarkerPath := ""
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if keyMarker != "" {
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multipartMarkerPath = pathJoin(bucket, keyMarker)
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}
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// `heal bool` is used to differentiate listing of incomplete
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// uploads (and parts) from a regular listing of incomplete
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// parts by client SDKs or mc-like commands, within a treewalk
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// pool.
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heal := true
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// The listing is truncated if we have maxUploads entries and
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// there are more entries to be listed.
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truncated := true
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var walkerCh chan treeWalkResult
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var walkerDoneCh chan struct{}
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// Check if we have room left to send more uploads.
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if maxUploads > 0 {
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uploadsLeft := maxUploads
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walkerCh, walkerDoneCh = xl.listPool.Release(listParams{
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bucket: minioMetaMultipartBucket,
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recursive: recursive,
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marker: multipartMarkerPath,
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prefix: multipartPrefixPath,
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heal: heal,
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})
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if walkerCh == nil {
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walkerDoneCh = make(chan struct{})
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isLeaf := xl.isMultipartUpload
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listDir := listDirFactory(isLeaf, xlTreeWalkIgnoredErrs,
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xl.getLoadBalancedDisks()...)
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walkerCh = startTreeWalk(minioMetaMultipartBucket,
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multipartPrefixPath, multipartMarkerPath,
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recursive, listDir, isLeaf, walkerDoneCh)
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}
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// Collect uploads until leftUploads limit is reached.
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for {
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walkResult, ok := <-walkerCh
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if !ok {
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truncated = false
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break
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}
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// For any error during tree walk, we should return right away.
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if walkResult.err != nil {
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return lmi, walkResult.err
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}
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entry := strings.TrimPrefix(walkResult.entry,
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retainSlash(bucket))
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// Skip entries that are not object directory.
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if hasSuffix(walkResult.entry, slashSeparator) {
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uploads = append(uploads, MultipartInfo{
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Object: entry,
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})
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uploadsLeft--
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if uploadsLeft == 0 {
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break
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}
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continue
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}
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// For an object entry we get all its pending
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// uploadIDs.
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var newUploads []MultipartInfo
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var end bool
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uploadIDMarker = ""
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newUploads, end, err = fetchMultipartUploadIDs(bucket, entry, uploadIDMarker,
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uploadsLeft, xl.getLoadBalancedDisks())
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if err != nil {
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return lmi, err
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}
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uploads = append(uploads, newUploads...)
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uploadsLeft -= len(newUploads)
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if end && walkResult.end {
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truncated = false
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break
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}
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if uploadsLeft == 0 {
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break
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}
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}
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}
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// For all received uploads fill in the multiparts result.
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for _, upload := range uploads {
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var objectName string
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var uploadID string
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if hasSuffix(upload.Object, slashSeparator) {
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// All directory entries are common
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// prefixes. For common prefixes, upload ids
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// are empty.
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uploadID = ""
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objectName = upload.Object
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result.CommonPrefixes = append(result.CommonPrefixes, objectName)
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} else {
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// Check if upload needs healing.
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uploadIDPath := filepath.Join(bucket, upload.Object, upload.UploadID)
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partsMetadata, errs := readAllXLMetadata(xl.storageDisks,
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minioMetaMultipartBucket, uploadIDPath)
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if xlShouldHeal(xl.storageDisks, partsMetadata, errs,
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minioMetaMultipartBucket, uploadIDPath) {
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healUploadInfo := xlHealStat(xl, partsMetadata, errs)
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upload.HealUploadInfo = &healUploadInfo
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result.Uploads = append(result.Uploads, upload)
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}
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uploadID = upload.UploadID
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objectName = upload.Object
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}
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result.NextKeyMarker = objectName
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result.NextUploadIDMarker = uploadID
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}
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if truncated {
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// Put back the tree walk go-routine into the pool for
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// subsequent use.
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xl.listPool.Set(listParams{
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bucket: bucket,
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recursive: recursive,
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marker: result.NextKeyMarker,
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prefix: prefix,
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heal: heal,
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}, walkerCh, walkerDoneCh)
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}
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result.IsTruncated = truncated
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// Result is not truncated, reset the markers.
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if !result.IsTruncated {
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result.NextKeyMarker = ""
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result.NextUploadIDMarker = ""
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}
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return result, nil
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}
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