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682 lines
23 KiB
682 lines
23 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 cmd
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import (
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"crypto/md5"
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"encoding/hex"
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"fmt"
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"hash"
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"io"
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"path"
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"strings"
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"time"
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"github.com/minio/sha256-simd"
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)
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// listMultipartUploads - lists all multipart uploads.
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func (fs fsObjects) listMultipartUploads(bucket, prefix, keyMarker, uploadIDMarker, delimiter string, maxUploads int) (ListMultipartsInfo, error) {
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result := ListMultipartsInfo{}
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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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result.IsTruncated = true
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result.MaxUploads = maxUploads
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result.KeyMarker = keyMarker
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result.Prefix = prefix
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result.Delimiter = delimiter
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// Not using path.Join() as it strips off the trailing '/'.
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multipartPrefixPath := pathJoin(bucket, prefix)
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if prefix == "" {
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// Should have a trailing "/" if prefix is ""
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// For ex. multipartPrefixPath should be "multipart/bucket/" if prefix is ""
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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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var uploads []uploadMetadata
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var err error
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var eof bool
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if uploadIDMarker != "" {
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keyMarkerLock := globalNSMutex.NewNSLock(minioMetaMultipartBucket,
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pathJoin(bucket, keyMarker))
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keyMarkerLock.RLock()
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uploads, _, err = listMultipartUploadIDs(bucket, keyMarker, uploadIDMarker, maxUploads, fs.storage)
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keyMarkerLock.RUnlock()
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if err != nil {
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return ListMultipartsInfo{}, err
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}
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maxUploads = maxUploads - len(uploads)
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}
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var walkResultCh chan treeWalkResult
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var endWalkCh chan struct{}
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heal := false // true only for xl.ListObjectsHeal()
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if maxUploads > 0 {
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walkResultCh, endWalkCh = fs.listPool.Release(listParams{minioMetaMultipartBucket, recursive, multipartMarkerPath, multipartPrefixPath, heal})
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if walkResultCh == nil {
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endWalkCh = make(chan struct{})
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isLeaf := fs.isMultipartUpload
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listDir := listDirFactory(isLeaf, fsTreeWalkIgnoredErrs, fs.storage)
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walkResultCh = startTreeWalk(minioMetaMultipartBucket, multipartPrefixPath, multipartMarkerPath, recursive, listDir, isLeaf, endWalkCh)
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}
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for maxUploads > 0 {
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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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// File not found or Disk not found is a valid case.
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if isErrIgnored(walkResult.err, fsTreeWalkIgnoredErrs...) {
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eof = true
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break
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}
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return ListMultipartsInfo{}, walkResult.err
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}
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entry := strings.TrimPrefix(walkResult.entry, retainSlash(bucket))
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if strings.HasSuffix(walkResult.entry, slashSeparator) {
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uploads = append(uploads, uploadMetadata{
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Object: entry,
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})
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maxUploads--
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if maxUploads == 0 {
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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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continue
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}
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var tmpUploads []uploadMetadata
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var end bool
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uploadIDMarker = ""
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entryLock := globalNSMutex.NewNSLock(minioMetaMultipartBucket,
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pathJoin(bucket, entry))
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entryLock.RLock()
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tmpUploads, end, err = listMultipartUploadIDs(bucket, entry, uploadIDMarker, maxUploads, fs.storage)
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entryLock.RUnlock()
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if err != nil {
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return ListMultipartsInfo{}, err
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}
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uploads = append(uploads, tmpUploads...)
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maxUploads -= len(tmpUploads)
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if walkResult.end && end {
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eof = true
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break
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}
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}
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}
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// Loop through all the 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 strings.HasSuffix(upload.Object, slashSeparator) {
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// All directory entries are common prefixes.
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uploadID = "" // Upload ids are empty for CommonPrefixes.
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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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uploadID = upload.UploadID
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objectName = upload.Object
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result.Uploads = append(result.Uploads, upload)
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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 !eof {
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// Save the go-routine state in the pool so that it can continue from where it left off on
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// the next request.
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fs.listPool.Set(listParams{bucket, recursive, result.NextKeyMarker, prefix, heal}, walkResultCh, endWalkCh)
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}
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result.IsTruncated = !eof
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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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// ListMultipartUploads - lists all the pending multipart uploads on a
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// bucket. Additionally takes 'prefix, keyMarker, uploadIDmarker and a
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// delimiter' which allows us to list uploads match a particular
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// prefix or lexically starting from 'keyMarker' or delimiting the
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// output to get a directory like listing.
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//
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// Implements S3 compatible ListMultipartUploads API. The resulting
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// ListMultipartsInfo structure is unmarshalled directly into XML and
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// replied back to the client.
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func (fs fsObjects) ListMultipartUploads(bucket, prefix, keyMarker, uploadIDMarker, delimiter string, maxUploads int) (ListMultipartsInfo, error) {
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if err := checkListMultipartArgs(bucket, prefix, keyMarker, uploadIDMarker, delimiter, fs); err != nil {
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return ListMultipartsInfo{}, err
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}
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return fs.listMultipartUploads(bucket, prefix, keyMarker, uploadIDMarker, delimiter, maxUploads)
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}
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// newMultipartUpload - wrapper for initializing a new multipart
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// request, returns back a unique upload id.
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//
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// Internally this function creates 'uploads.json' associated for the
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// incoming object at '.minio.sys/multipart/bucket/object/uploads.json' on
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// all the disks. `uploads.json` carries metadata regarding on going
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// multipart operation on the object.
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func (fs fsObjects) newMultipartUpload(bucket string, object string, meta map[string]string) (uploadID string, err error) {
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// Initialize `fs.json` values.
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fsMeta := newFSMetaV1()
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// Save additional metadata.
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fsMeta.Meta = meta
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// This lock needs to be held for any changes to the directory
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// contents of ".minio.sys/multipart/object/"
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objectMPartPathLock := globalNSMutex.NewNSLock(minioMetaMultipartBucket,
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pathJoin(bucket, object))
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objectMPartPathLock.Lock()
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defer objectMPartPathLock.Unlock()
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uploadID = mustGetUUID()
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initiated := time.Now().UTC()
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// Add upload ID to uploads.json
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if err = fs.addUploadID(bucket, object, uploadID, initiated); err != nil {
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return "", err
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}
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uploadIDPath := path.Join(bucket, object, uploadID)
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if err = writeFSMetadata(fs.storage, minioMetaMultipartBucket, path.Join(uploadIDPath, fsMetaJSONFile), fsMeta); err != nil {
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return "", toObjectErr(err, minioMetaMultipartBucket, uploadIDPath)
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}
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// Return success.
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return uploadID, nil
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}
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// NewMultipartUpload - initialize a new multipart upload, returns a
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// unique id. The unique id returned here is of UUID form, for each
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// subsequent request each UUID is unique.
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//
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// Implements S3 compatible initiate multipart API.
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func (fs fsObjects) NewMultipartUpload(bucket, object string, meta map[string]string) (string, error) {
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if err := checkNewMultipartArgs(bucket, object, fs); err != nil {
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return "", err
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}
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return fs.newMultipartUpload(bucket, object, meta)
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}
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// Returns if a new part can be appended to fsAppendDataFile.
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func partToAppend(fsMeta fsMetaV1, fsAppendMeta fsMetaV1) (part objectPartInfo, appendNeeded bool) {
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if len(fsMeta.Parts) == 0 {
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return
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}
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// As fsAppendMeta.Parts will be sorted len(fsAppendMeta.Parts) will naturally be the next part number
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nextPartNum := len(fsAppendMeta.Parts) + 1
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nextPartIndex := fsMeta.ObjectPartIndex(nextPartNum)
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if nextPartIndex == -1 {
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return
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}
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return fsMeta.Parts[nextPartIndex], true
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}
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// PutObjectPart - reads incoming data until EOF for the part file on
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// an ongoing multipart transaction. Internally incoming data is
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// written to '.minio.sys/tmp' location and safely renamed to
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// '.minio.sys/multipart' for reach parts.
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func (fs fsObjects) PutObjectPart(bucket, object, uploadID string, partID int, size int64, data io.Reader, md5Hex string, sha256sum string) (string, error) {
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if err := checkPutObjectPartArgs(bucket, object, fs); err != nil {
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return "", err
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}
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uploadIDPath := path.Join(bucket, object, uploadID)
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preUploadIDLock := globalNSMutex.NewNSLock(minioMetaMultipartBucket, uploadIDPath)
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preUploadIDLock.RLock()
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// Just check if the uploadID exists to avoid copy if it doesn't.
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uploadIDExists := fs.isUploadIDExists(bucket, object, uploadID)
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preUploadIDLock.RUnlock()
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if !uploadIDExists {
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return "", traceError(InvalidUploadID{UploadID: uploadID})
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}
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partSuffix := fmt.Sprintf("object%d", partID)
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tmpPartPath := uploadID + "." + mustGetUUID() + "." + partSuffix
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// Initialize md5 writer.
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md5Writer := md5.New()
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hashWriters := []io.Writer{md5Writer}
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var sha256Writer hash.Hash
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if sha256sum != "" {
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sha256Writer = sha256.New()
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hashWriters = append(hashWriters, sha256Writer)
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}
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multiWriter := io.MultiWriter(hashWriters...)
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// Limit the reader to its provided size if specified.
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var limitDataReader io.Reader
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if size > 0 {
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// This is done so that we can avoid erroneous clients sending more data than the set content size.
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limitDataReader = io.LimitReader(data, size)
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} else {
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// else we read till EOF.
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limitDataReader = data
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}
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teeReader := io.TeeReader(limitDataReader, multiWriter)
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bufSize := int64(readSizeV1)
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if size > 0 && bufSize > size {
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bufSize = size
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}
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buf := make([]byte, int(bufSize))
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if size > 0 {
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// Prepare file to avoid disk fragmentation
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err := fs.storage.PrepareFile(minioMetaTmpBucket, tmpPartPath, size)
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if err != nil {
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return "", toObjectErr(err, minioMetaTmpBucket, tmpPartPath)
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}
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}
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bytesWritten, cErr := fsCreateFile(fs.storage, teeReader, buf, minioMetaTmpBucket, tmpPartPath)
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if cErr != nil {
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fs.storage.DeleteFile(minioMetaTmpBucket, tmpPartPath)
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return "", toObjectErr(cErr, minioMetaTmpBucket, tmpPartPath)
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}
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// Should return IncompleteBody{} error when reader has fewer
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// bytes than specified in request header.
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if bytesWritten < size {
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fs.storage.DeleteFile(minioMetaTmpBucket, tmpPartPath)
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return "", traceError(IncompleteBody{})
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}
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// Delete temporary part in case of failure. If
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// PutObjectPart succeeds then there would be nothing to
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// delete.
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defer fs.storage.DeleteFile(minioMetaTmpBucket, tmpPartPath)
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newMD5Hex := hex.EncodeToString(md5Writer.Sum(nil))
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if md5Hex != "" {
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if newMD5Hex != md5Hex {
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return "", traceError(BadDigest{md5Hex, newMD5Hex})
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}
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}
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if sha256sum != "" {
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newSHA256sum := hex.EncodeToString(sha256Writer.Sum(nil))
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if newSHA256sum != sha256sum {
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return "", traceError(SHA256Mismatch{})
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}
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}
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// Hold write lock as we are updating fs.json
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postUploadIDLock := globalNSMutex.NewNSLock(minioMetaMultipartBucket, uploadIDPath)
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postUploadIDLock.Lock()
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defer postUploadIDLock.Unlock()
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// Just check if the uploadID exists to avoid copy if it doesn't.
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if !fs.isUploadIDExists(bucket, object, uploadID) {
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return "", traceError(InvalidUploadID{UploadID: uploadID})
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}
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fsMetaPath := pathJoin(uploadIDPath, fsMetaJSONFile)
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fsMeta, err := readFSMetadata(fs.storage, minioMetaMultipartBucket, fsMetaPath)
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if err != nil {
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return "", toObjectErr(err, minioMetaMultipartBucket, fsMetaPath)
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}
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fsMeta.AddObjectPart(partID, partSuffix, newMD5Hex, size)
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partPath := path.Join(bucket, object, uploadID, partSuffix)
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// Lock the part so that another part upload with same part-number gets blocked
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// while the part is getting appended in the background.
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partLock := globalNSMutex.NewNSLock(minioMetaMultipartBucket, partPath)
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partLock.Lock()
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err = fs.storage.RenameFile(minioMetaTmpBucket, tmpPartPath, minioMetaMultipartBucket, partPath)
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if err != nil {
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partLock.Unlock()
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return "", toObjectErr(traceError(err), minioMetaMultipartBucket, partPath)
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}
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uploadIDPath = path.Join(bucket, object, uploadID)
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if err = writeFSMetadata(fs.storage, minioMetaMultipartBucket, path.Join(uploadIDPath, fsMetaJSONFile), fsMeta); err != nil {
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partLock.Unlock()
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return "", toObjectErr(err, minioMetaMultipartBucket, uploadIDPath)
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}
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// Append the part in background.
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errCh := fs.bgAppend.append(fs.storage, bucket, object, uploadID, fsMeta)
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go func() {
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// Also receive the error so that the appendParts go-routine does not block on send.
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// But the error received is ignored as fs.PutObjectPart() would have already
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// returned success to the client.
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<-errCh
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partLock.Unlock()
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}()
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return newMD5Hex, nil
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}
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// listObjectParts - wrapper scanning through
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// '.minio.sys/multipart/bucket/object/UPLOADID'. Lists all the parts
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// saved inside '.minio.sys/multipart/bucket/object/UPLOADID'.
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func (fs fsObjects) listObjectParts(bucket, object, uploadID string, partNumberMarker, maxParts int) (ListPartsInfo, error) {
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result := ListPartsInfo{}
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fsMetaPath := path.Join(bucket, object, uploadID, fsMetaJSONFile)
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fsMeta, err := readFSMetadata(fs.storage, minioMetaMultipartBucket, fsMetaPath)
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if err != nil {
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return ListPartsInfo{}, toObjectErr(err, minioMetaBucket, fsMetaPath)
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}
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// Only parts with higher part numbers will be listed.
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partIdx := fsMeta.ObjectPartIndex(partNumberMarker)
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parts := fsMeta.Parts
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if partIdx != -1 {
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parts = fsMeta.Parts[partIdx+1:]
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}
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count := maxParts
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for _, part := range parts {
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var fi FileInfo
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partNamePath := path.Join(bucket, object, uploadID, part.Name)
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fi, err = fs.storage.StatFile(minioMetaMultipartBucket, partNamePath)
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if err != nil {
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return ListPartsInfo{}, toObjectErr(traceError(err), minioMetaMultipartBucket, partNamePath)
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}
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result.Parts = append(result.Parts, partInfo{
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PartNumber: part.Number,
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ETag: part.ETag,
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LastModified: fi.ModTime,
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Size: fi.Size,
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})
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count--
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if count == 0 {
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break
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}
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}
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// If listed entries are more than maxParts, we set IsTruncated as true.
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if len(parts) > len(result.Parts) {
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result.IsTruncated = true
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// Make sure to fill next part number marker if IsTruncated is
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// true for subsequent listing.
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nextPartNumberMarker := result.Parts[len(result.Parts)-1].PartNumber
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result.NextPartNumberMarker = nextPartNumberMarker
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}
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result.Bucket = bucket
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result.Object = object
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result.UploadID = uploadID
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result.MaxParts = maxParts
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return result, nil
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}
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// ListObjectParts - lists all previously uploaded parts for a given
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// object and uploadID. Takes additional input of part-number-marker
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// to indicate where the listing should begin from.
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//
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// Implements S3 compatible ListObjectParts API. The resulting
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// ListPartsInfo structure is unmarshalled directly into XML and
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// replied back to the client.
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func (fs fsObjects) ListObjectParts(bucket, object, uploadID string, partNumberMarker, maxParts int) (ListPartsInfo, error) {
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if err := checkListPartsArgs(bucket, object, fs); err != nil {
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return ListPartsInfo{}, err
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}
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// Hold lock so that there is no competing
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// abort-multipart-upload or complete-multipart-upload.
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uploadIDLock := globalNSMutex.NewNSLock(minioMetaMultipartBucket,
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pathJoin(bucket, object, uploadID))
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uploadIDLock.Lock()
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defer uploadIDLock.Unlock()
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if !fs.isUploadIDExists(bucket, object, uploadID) {
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return ListPartsInfo{}, traceError(InvalidUploadID{UploadID: uploadID})
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}
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return fs.listObjectParts(bucket, object, uploadID, partNumberMarker, maxParts)
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}
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func (fs fsObjects) totalObjectSize(fsMeta fsMetaV1, parts []completePart) (int64, error) {
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objSize := int64(0)
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for _, part := range parts {
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partIdx := fsMeta.ObjectPartIndex(part.PartNumber)
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if partIdx == -1 {
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return 0, InvalidPart{}
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}
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objSize += fsMeta.Parts[partIdx].Size
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}
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return objSize, nil
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}
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// CompleteMultipartUpload - completes an ongoing multipart
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// transaction after receiving all the parts indicated by the client.
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// Returns an md5sum calculated by concatenating all the individual
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// md5sums of all the parts.
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//
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// Implements S3 compatible Complete multipart API.
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func (fs fsObjects) CompleteMultipartUpload(bucket string, object string, uploadID string, parts []completePart) (string, error) {
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if err := checkCompleteMultipartArgs(bucket, object, fs); err != nil {
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return "", err
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}
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uploadIDPath := path.Join(bucket, object, uploadID)
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|
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// Hold lock so that
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// 1) no one aborts this multipart upload
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// 2) no one does a parallel complete-multipart-upload on this
|
|
// multipart upload
|
|
uploadIDLock := globalNSMutex.NewNSLock(minioMetaMultipartBucket, uploadIDPath)
|
|
uploadIDLock.Lock()
|
|
defer uploadIDLock.Unlock()
|
|
|
|
if !fs.isUploadIDExists(bucket, object, uploadID) {
|
|
return "", traceError(InvalidUploadID{UploadID: uploadID})
|
|
}
|
|
|
|
// Calculate s3 compatible md5sum for complete multipart.
|
|
s3MD5, err := getCompleteMultipartMD5(parts)
|
|
if err != nil {
|
|
return "", err
|
|
}
|
|
|
|
// Read saved fs metadata for ongoing multipart.
|
|
fsMetaPath := pathJoin(uploadIDPath, fsMetaJSONFile)
|
|
fsMeta, err := readFSMetadata(fs.storage, minioMetaMultipartBucket, fsMetaPath)
|
|
if err != nil {
|
|
return "", toObjectErr(err, minioMetaMultipartBucket, fsMetaPath)
|
|
}
|
|
|
|
// This lock is held during rename of the appended tmp file to the actual
|
|
// location so that any competing GetObject/PutObject/DeleteObject do not race.
|
|
appendFallback := true // In case background-append did not append the required parts.
|
|
if isPartsSame(fsMeta.Parts, parts) {
|
|
err = fs.bgAppend.complete(fs.storage, bucket, object, uploadID, fsMeta)
|
|
if err == nil {
|
|
appendFallback = false
|
|
if err = fs.storage.RenameFile(minioMetaTmpBucket, uploadID, bucket, object); err != nil {
|
|
return "", toObjectErr(traceError(err), minioMetaTmpBucket, uploadID)
|
|
}
|
|
}
|
|
}
|
|
|
|
if appendFallback {
|
|
// background append could not do append all the required parts, hence we do it here.
|
|
tempObj := uploadID + "-" + "part.1"
|
|
|
|
// Allocate staging buffer.
|
|
var buf = make([]byte, readSizeV1)
|
|
var objSize int64
|
|
|
|
objSize, err = fs.totalObjectSize(fsMeta, parts)
|
|
if err != nil {
|
|
return "", traceError(err)
|
|
}
|
|
if objSize > 0 {
|
|
// Prepare file to avoid disk fragmentation
|
|
err = fs.storage.PrepareFile(minioMetaTmpBucket, tempObj, objSize)
|
|
if err != nil {
|
|
return "", traceError(err)
|
|
}
|
|
}
|
|
|
|
// Loop through all parts, validate them and then commit to disk.
|
|
for i, part := range parts {
|
|
partIdx := fsMeta.ObjectPartIndex(part.PartNumber)
|
|
if partIdx == -1 {
|
|
return "", traceError(InvalidPart{})
|
|
}
|
|
if fsMeta.Parts[partIdx].ETag != part.ETag {
|
|
return "", traceError(BadDigest{})
|
|
}
|
|
// All parts except the last part has to be atleast 5MB.
|
|
if (i < len(parts)-1) && !isMinAllowedPartSize(fsMeta.Parts[partIdx].Size) {
|
|
return "", traceError(PartTooSmall{
|
|
PartNumber: part.PartNumber,
|
|
PartSize: fsMeta.Parts[partIdx].Size,
|
|
PartETag: part.ETag,
|
|
})
|
|
}
|
|
// Construct part suffix.
|
|
partSuffix := fmt.Sprintf("object%d", part.PartNumber)
|
|
multipartPartFile := path.Join(bucket, object, uploadID, partSuffix)
|
|
offset := int64(0)
|
|
totalLeft := fsMeta.Parts[partIdx].Size
|
|
for totalLeft > 0 {
|
|
curLeft := int64(readSizeV1)
|
|
if totalLeft < readSizeV1 {
|
|
curLeft = totalLeft
|
|
}
|
|
var n int64
|
|
n, err = fs.storage.ReadFile(minioMetaMultipartBucket, multipartPartFile, offset, buf[:curLeft])
|
|
if n > 0 {
|
|
if err = fs.storage.AppendFile(minioMetaTmpBucket, tempObj, buf[:n]); err != nil {
|
|
return "", toObjectErr(traceError(err), minioMetaTmpBucket, tempObj)
|
|
}
|
|
}
|
|
if err != nil {
|
|
if err == io.EOF || err == io.ErrUnexpectedEOF {
|
|
break
|
|
}
|
|
if err == errFileNotFound {
|
|
return "", traceError(InvalidPart{})
|
|
}
|
|
return "", toObjectErr(traceError(err), minioMetaMultipartBucket, multipartPartFile)
|
|
}
|
|
offset += n
|
|
totalLeft -= n
|
|
}
|
|
}
|
|
|
|
// Rename the file back to original location, if not delete the temporary object.
|
|
err = fs.storage.RenameFile(minioMetaTmpBucket, tempObj, bucket, object)
|
|
if err != nil {
|
|
if dErr := fs.storage.DeleteFile(minioMetaTmpBucket, tempObj); dErr != nil {
|
|
return "", toObjectErr(traceError(dErr), minioMetaTmpBucket, tempObj)
|
|
}
|
|
return "", toObjectErr(traceError(err), bucket, object)
|
|
}
|
|
}
|
|
|
|
// No need to save part info, since we have concatenated all parts.
|
|
fsMeta.Parts = nil
|
|
|
|
// Save additional metadata.
|
|
if len(fsMeta.Meta) == 0 {
|
|
fsMeta.Meta = make(map[string]string)
|
|
}
|
|
fsMeta.Meta["md5Sum"] = s3MD5
|
|
|
|
fsMetaPath = path.Join(bucketMetaPrefix, bucket, object, fsMetaJSONFile)
|
|
// Write the metadata to a temp file and rename it to the actual location.
|
|
if err = writeFSMetadata(fs.storage, minioMetaBucket, fsMetaPath, fsMeta); err != nil {
|
|
return "", toObjectErr(err, bucket, object)
|
|
}
|
|
|
|
// Cleanup all the parts if everything else has been safely committed.
|
|
if err = cleanupUploadedParts(bucket, object, uploadID, fs.storage); err != nil {
|
|
return "", toObjectErr(err, bucket, object)
|
|
}
|
|
|
|
// Hold the lock so that two parallel
|
|
// complete-multipart-uploads do not leave a stale
|
|
// uploads.json behind.
|
|
objectMPartPathLock := globalNSMutex.NewNSLock(minioMetaMultipartBucket,
|
|
pathJoin(bucket, object))
|
|
objectMPartPathLock.Lock()
|
|
defer objectMPartPathLock.Unlock()
|
|
|
|
// remove entry from uploads.json
|
|
if err := fs.removeUploadID(bucket, object, uploadID); err != nil {
|
|
return "", toObjectErr(err, minioMetaMultipartBucket, path.Join(bucket, object))
|
|
}
|
|
|
|
// Return md5sum.
|
|
return s3MD5, nil
|
|
}
|
|
|
|
// abortMultipartUpload - wrapper for purging an ongoing multipart
|
|
// transaction, deletes uploadID entry from `uploads.json` and purges
|
|
// the directory at '.minio.sys/multipart/bucket/object/uploadID' holding
|
|
// all the upload parts.
|
|
func (fs fsObjects) abortMultipartUpload(bucket, object, uploadID string) error {
|
|
// Signal appendParts routine to stop waiting for new parts to arrive.
|
|
fs.bgAppend.abort(uploadID)
|
|
// Cleanup all uploaded parts.
|
|
if err := cleanupUploadedParts(bucket, object, uploadID, fs.storage); err != nil {
|
|
return err
|
|
}
|
|
// remove entry from uploads.json with quorum
|
|
if err := fs.removeUploadID(bucket, object, uploadID); err != nil {
|
|
return toObjectErr(err, bucket, object)
|
|
}
|
|
|
|
// success
|
|
return nil
|
|
}
|
|
|
|
// AbortMultipartUpload - aborts an ongoing multipart operation
|
|
// signified by the input uploadID. This is an atomic operation
|
|
// doesn't require clients to initiate multiple such requests.
|
|
//
|
|
// All parts are purged from all disks and reference to the uploadID
|
|
// would be removed from the system, rollback is not possible on this
|
|
// operation.
|
|
//
|
|
// Implements S3 compatible Abort multipart API, slight difference is
|
|
// that this is an atomic idempotent operation. Subsequent calls have
|
|
// no affect and further requests to the same uploadID would not be
|
|
// honored.
|
|
func (fs fsObjects) AbortMultipartUpload(bucket, object, uploadID string) error {
|
|
if err := checkAbortMultipartArgs(bucket, object, fs); err != nil {
|
|
return err
|
|
}
|
|
|
|
// Hold lock so that there is no competing
|
|
// complete-multipart-upload or put-object-part.
|
|
uploadIDLock := globalNSMutex.NewNSLock(minioMetaMultipartBucket,
|
|
pathJoin(bucket, object, uploadID))
|
|
uploadIDLock.Lock()
|
|
defer uploadIDLock.Unlock()
|
|
|
|
if !fs.isUploadIDExists(bucket, object, uploadID) {
|
|
return traceError(InvalidUploadID{UploadID: uploadID})
|
|
}
|
|
|
|
err := fs.abortMultipartUpload(bucket, object, uploadID)
|
|
return err
|
|
}
|
|
|