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484 lines
14 KiB
484 lines
14 KiB
/*
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* Minio Cloud Storage, (C) 2016 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 main
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import (
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"crypto/md5"
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"encoding/hex"
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"io"
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"path"
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"path/filepath"
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"strings"
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"sync"
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"time"
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"github.com/minio/minio/pkg/mimedb"
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)
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/// Object Operations
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// GetObject - reads an object erasured coded across multiple
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// disks. Supports additional parameters like offset and length
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// which is synonymous with HTTP Range requests.
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//
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// startOffset indicates the location at which the client requested
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// object to be read at. length indicates the total length of the
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// object requested by client.
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func (xl xlObjects) GetObject(bucket, object string, startOffset int64, length int64, writer io.Writer) error {
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// Verify if bucket is valid.
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if !IsValidBucketName(bucket) {
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return BucketNameInvalid{Bucket: bucket}
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}
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// Verify if object is valid.
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if !IsValidObjectName(object) {
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return ObjectNameInvalid{Bucket: bucket, Object: object}
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}
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// Lock the object before reading.
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nsMutex.RLock(bucket, object)
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defer nsMutex.RUnlock(bucket, object)
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// Read metadata associated with the object from all disks.
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metaArr, errs := xl.readAllXLMetadata(bucket, object)
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// List all online disks.
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onlineDisks, highestVersion, err := xl.listOnlineDisks(metaArr, errs)
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if err != nil {
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return toObjectErr(err, bucket, object)
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}
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// Pick latest valid metadata.
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var xlMeta xlMetaV1
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for _, meta := range metaArr {
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if meta.IsValid() && meta.Stat.Version == highestVersion {
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xlMeta = meta
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break
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}
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}
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// Get start part index and offset.
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partIndex, partOffset, err := xlMeta.ObjectToPartOffset(startOffset)
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if err != nil {
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return toObjectErr(err, bucket, object)
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}
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// Get last part index to read given length.
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lastPartIndex, _, err := xlMeta.ObjectToPartOffset(startOffset + length - 1)
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if err != nil {
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return toObjectErr(err, bucket, object)
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}
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// Collect all the previous erasure infos across the disk.
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var eInfos []erasureInfo
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for index := range onlineDisks {
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eInfos = append(eInfos, metaArr[index].Erasure)
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}
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totalBytesRead := int64(0)
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// Read from all parts.
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for ; partIndex <= lastPartIndex; partIndex++ {
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if length == totalBytesRead {
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break
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}
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// Save the current part name and size.
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partName := xlMeta.Parts[partIndex].Name
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partSize := xlMeta.Parts[partIndex].Size
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readSize := partSize - partOffset
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// readSize should be adjusted so that we don't write more data than what was requested.
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if readSize > (length - totalBytesRead) {
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readSize = length - totalBytesRead
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}
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// Start reading the part name.
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n, err := erasureReadFile(writer, onlineDisks, bucket, pathJoin(object, partName), partName, eInfos, partOffset, readSize, partSize)
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if err != nil {
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return err
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}
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totalBytesRead += n
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// partOffset will be valid only for the first part, hence reset it to 0 for
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// the remaining parts.
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partOffset = 0
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} // End of read all parts loop.
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// Return success.
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return nil
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}
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// GetObjectInfo - reads object metadata and replies back ObjectInfo.
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func (xl xlObjects) GetObjectInfo(bucket, object string) (ObjectInfo, error) {
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// Verify if bucket is valid.
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if !IsValidBucketName(bucket) {
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return ObjectInfo{}, BucketNameInvalid{Bucket: bucket}
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}
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// Verify if object is valid.
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if !IsValidObjectName(object) {
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return ObjectInfo{}, ObjectNameInvalid{Bucket: bucket, Object: object}
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}
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nsMutex.RLock(bucket, object)
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defer nsMutex.RUnlock(bucket, object)
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info, err := xl.getObjectInfo(bucket, object)
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if err != nil {
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return ObjectInfo{}, toObjectErr(err, bucket, object)
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}
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return info, nil
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}
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// getObjectInfo - wrapper for reading object metadata and constructs ObjectInfo.
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func (xl xlObjects) getObjectInfo(bucket, object string) (objInfo ObjectInfo, err error) {
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var xlMeta xlMetaV1
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xlMeta, err = xl.readXLMetadata(bucket, object)
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if err != nil {
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// Return error.
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return ObjectInfo{}, err
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}
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objInfo = ObjectInfo{
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IsDir: false,
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Bucket: bucket,
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Name: object,
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Size: xlMeta.Stat.Size,
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ModTime: xlMeta.Stat.ModTime,
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MD5Sum: xlMeta.Meta["md5Sum"],
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ContentType: xlMeta.Meta["content-type"],
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ContentEncoding: xlMeta.Meta["content-encoding"],
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}
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return objInfo, nil
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}
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func (xl xlObjects) undoRename(srcBucket, srcEntry, dstBucket, dstEntry string, isPart bool, errs []error) {
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var wg = &sync.WaitGroup{}
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// Undo rename object on disks where RenameFile succeeded.
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// If srcEntry/dstEntry are objects then add a trailing slash to copy
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// over all the parts inside the object directory
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if !isPart {
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srcEntry = retainSlash(srcEntry)
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dstEntry = retainSlash(dstEntry)
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}
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for index, disk := range xl.storageDisks {
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if disk == nil {
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continue
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}
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// Undo rename object in parallel.
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wg.Add(1)
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go func(index int, disk StorageAPI) {
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defer wg.Done()
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if errs[index] != nil {
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return
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}
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_ = disk.RenameFile(dstBucket, dstEntry, srcBucket, srcEntry)
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}(index, disk)
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}
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wg.Wait()
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}
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// undoRenameObject - renames back the partially successful rename operations.
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func (xl xlObjects) undoRenameObject(srcBucket, srcObject, dstBucket, dstObject string, errs []error) {
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isPart := false
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xl.undoRename(srcBucket, srcObject, dstBucket, dstObject, isPart, errs)
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}
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// undoRenamePart - renames back the partially successful rename operation.
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func (xl xlObjects) undoRenamePart(srcBucket, srcPart, dstBucket, dstPart string, errs []error) {
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isPart := true
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xl.undoRename(srcBucket, srcPart, dstBucket, dstPart, isPart, errs)
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}
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// rename - common function that renamePart and renameObject use to rename
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// the respective underlying storage layer representations.
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func (xl xlObjects) rename(srcBucket, srcEntry, dstBucket, dstEntry string, isPart bool) error {
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// Initialize sync waitgroup.
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var wg = &sync.WaitGroup{}
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// Initialize list of errors.
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var errs = make([]error, len(xl.storageDisks))
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if !isPart {
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dstEntry = retainSlash(dstEntry)
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srcEntry = retainSlash(srcEntry)
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}
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// Rename file on all underlying storage disks.
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for index, disk := range xl.storageDisks {
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if disk == nil {
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errs[index] = errDiskNotFound
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continue
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}
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wg.Add(1)
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go func(index int, disk StorageAPI) {
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defer wg.Done()
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err := disk.RenameFile(srcBucket, srcEntry, dstBucket, dstEntry)
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if err != nil && err != errFileNotFound {
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errs[index] = err
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}
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}(index, disk)
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}
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// Wait for all renames to finish.
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wg.Wait()
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// We can safely allow RenameFile errors up to len(xl.storageDisks) - xl.writeQuorum
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// otherwise return failure. Cleanup successful renames.
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if !isQuorum(errs, xl.writeQuorum) {
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// Check we have successful read quorum.
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if isQuorum(errs, xl.readQuorum) {
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return nil // Return success.
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} // else - failed to acquire read quorum.
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// Undo all the partial rename operations.
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xl.undoRename(srcBucket, srcEntry, dstBucket, dstEntry, isPart, errs)
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return errXLWriteQuorum
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}
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// Return on first error, also undo any partially successful rename operations.
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for _, err := range errs {
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if err != nil && err != errDiskNotFound {
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// Undo all the partial rename operations.
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xl.undoRename(srcBucket, srcEntry, dstBucket, dstEntry, isPart, errs)
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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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// renamePart - renames a part of the source object to the destination
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// across all disks in parallel. Additionally if we have errors and do
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// not have a readQuorum partially renamed files are renamed back to
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// its proper location.
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func (xl xlObjects) renamePart(srcBucket, srcObject, dstBucket, dstObject string) error {
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isPart := true
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return xl.rename(srcBucket, srcObject, dstBucket, dstObject, isPart)
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}
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// renameObject - renames all source objects to destination object
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// across all disks in parallel. Additionally if we have errors and do
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// not have a readQuorum partially renamed files are renamed back to
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// its proper location.
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func (xl xlObjects) renameObject(srcBucket, srcObject, dstBucket, dstObject string) error {
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isPart := false
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return xl.rename(srcBucket, srcObject, dstBucket, dstObject, isPart)
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}
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// PutObject - creates an object upon reading from the input stream
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// until EOF, erasure codes the data across all disk and additionally
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// writes `xl.json` which carries the necessary metadata for future
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// object operations.
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func (xl xlObjects) PutObject(bucket string, object string, size int64, data io.Reader, metadata map[string]string) (string, error) {
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// Verify if bucket is valid.
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if !IsValidBucketName(bucket) {
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return "", BucketNameInvalid{Bucket: bucket}
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}
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// Verify bucket exists.
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if !xl.isBucketExist(bucket) {
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return "", BucketNotFound{Bucket: bucket}
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}
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if !IsValidObjectName(object) {
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return "", ObjectNameInvalid{
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Bucket: bucket,
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Object: object,
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}
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}
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// No metadata is set, allocate a new one.
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if metadata == nil {
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metadata = make(map[string]string)
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}
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nsMutex.Lock(bucket, object)
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defer nsMutex.Unlock(bucket, object)
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uniqueID := getUUID()
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tempErasureObj := path.Join(tmpMetaPrefix, uniqueID, "object1")
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tempObj := path.Join(tmpMetaPrefix, uniqueID)
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// Initialize xl meta.
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xlMeta := newXLMetaV1(xl.dataBlocks, xl.parityBlocks)
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// Read metadata associated with the object from all disks.
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partsMetadata, errs := xl.readAllXLMetadata(bucket, object)
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// List all online disks.
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onlineDisks, higherVersion, err := xl.listOnlineDisks(partsMetadata, errs)
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if err != nil {
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return "", toObjectErr(err, bucket, object)
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}
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// Increment version only if we have online disks less than configured storage disks.
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if diskCount(onlineDisks) < len(xl.storageDisks) {
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higherVersion++
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}
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// Initialize md5 writer.
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md5Writer := md5.New()
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// Tee reader combines incoming data stream and md5, data read
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// from input stream is written to md5.
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teeReader := io.TeeReader(data, md5Writer)
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// Collect all the previous erasure infos across the disk.
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var eInfos []erasureInfo
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for range onlineDisks {
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eInfos = append(eInfos, xlMeta.Erasure)
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}
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// Erasure code and write across all disks.
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newEInfos, n, err := erasureCreateFile(onlineDisks, minioMetaBucket, tempErasureObj, "object1", teeReader, eInfos, xl.writeQuorum)
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if err != nil {
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return "", toObjectErr(err, minioMetaBucket, tempErasureObj)
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}
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if size == -1 {
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size = n
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}
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// Save additional erasureMetadata.
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modTime := time.Now().UTC()
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newMD5Hex := hex.EncodeToString(md5Writer.Sum(nil))
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// Update the md5sum if not set with the newly calculated one.
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if len(metadata["md5Sum"]) == 0 {
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metadata["md5Sum"] = newMD5Hex
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}
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// Guess content-type from the extension if possible.
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if metadata["content-type"] == "" {
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if objectExt := filepath.Ext(object); objectExt != "" {
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if content, ok := mimedb.DB[strings.ToLower(strings.TrimPrefix(objectExt, "."))]; ok {
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metadata["content-type"] = content.ContentType
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}
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}
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}
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// md5Hex representation.
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md5Hex := metadata["md5Sum"]
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if md5Hex != "" {
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if newMD5Hex != md5Hex {
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// MD5 mismatch, delete the temporary object.
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xl.deleteObject(minioMetaBucket, tempObj)
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// Returns md5 mismatch.
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return "", BadDigest{md5Hex, newMD5Hex}
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}
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}
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// Check if an object is present as one of the parent dir.
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// -- FIXME. (needs a new kind of lock).
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if xl.parentDirIsObject(bucket, path.Dir(object)) {
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return "", toObjectErr(errFileAccessDenied, bucket, object)
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}
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// Rename if an object already exists to temporary location.
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newUniqueID := getUUID()
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if xl.isObject(bucket, object) {
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err = xl.renameObject(bucket, object, minioMetaBucket, path.Join(tmpMetaPrefix, newUniqueID))
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if err != nil {
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return "", toObjectErr(err, bucket, object)
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}
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}
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// Fill all the necessary metadata.
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xlMeta.Meta = metadata
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xlMeta.Stat.Size = size
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xlMeta.Stat.ModTime = modTime
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xlMeta.Stat.Version = higherVersion
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// Add the final part.
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xlMeta.AddObjectPart(1, "object1", newMD5Hex, xlMeta.Stat.Size)
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// Update `xl.json` content on each disks.
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for index := range partsMetadata {
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partsMetadata[index] = xlMeta
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partsMetadata[index].Erasure = newEInfos[index]
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}
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// Write unique `xl.json` for each disk.
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if err = xl.writeUniqueXLMetadata(minioMetaBucket, tempObj, partsMetadata); err != nil {
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return "", toObjectErr(err, bucket, object)
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}
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// Rename the successfully written temporary object to final location.
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err = xl.renameObject(minioMetaBucket, tempObj, bucket, object)
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if err != nil {
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return "", toObjectErr(err, bucket, object)
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}
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// Delete the temporary object.
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xl.deleteObject(minioMetaBucket, path.Join(tmpMetaPrefix, newUniqueID))
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// Return md5sum, successfully wrote object.
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return newMD5Hex, nil
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}
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// deleteObject - wrapper for delete object, deletes an object from
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// all the disks in parallel, including `xl.json` associated with the
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// object.
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func (xl xlObjects) deleteObject(bucket, object string) error {
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// Initialize sync waitgroup.
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var wg = &sync.WaitGroup{}
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// Initialize list of errors.
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var dErrs = make([]error, len(xl.storageDisks))
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for index, disk := range xl.storageDisks {
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if disk == nil {
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dErrs[index] = errDiskNotFound
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continue
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}
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wg.Add(1)
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go func(index int, disk StorageAPI) {
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defer wg.Done()
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err := cleanupDir(disk, bucket, object)
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if err != nil && err != errFileNotFound {
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dErrs[index] = err
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}
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}(index, disk)
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}
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// Wait for all routines to finish.
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wg.Wait()
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if !isQuorum(dErrs, xl.writeQuorum) {
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// Return errXLWriteQuorum if errors were more than
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// allowed write quorum.
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return errXLWriteQuorum
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}
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return nil
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}
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// DeleteObject - deletes an object, this call doesn't necessary reply
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// any error as it is not necessary for the handler to reply back a
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// response to the client request.
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func (xl xlObjects) DeleteObject(bucket, object string) (err error) {
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// Verify if bucket is valid.
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if !IsValidBucketName(bucket) {
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return BucketNameInvalid{Bucket: bucket}
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}
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if !IsValidObjectName(object) {
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return ObjectNameInvalid{Bucket: bucket, Object: object}
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}
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nsMutex.Lock(bucket, object)
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defer nsMutex.Unlock(bucket, object)
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// Validate object exists.
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if !xl.isObject(bucket, object) {
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return ObjectNotFound{bucket, object}
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} // else proceed to delete the object.
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// Delete the object on all disks.
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err = xl.deleteObject(bucket, object)
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if err != nil {
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return toObjectErr(err, bucket, object)
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}
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// Success.
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return nil
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}
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