mirror of
https://github.com/octoleo/restic.git
synced 2024-12-28 21:02:47 +00:00
327 lines
8.5 KiB
Go
327 lines
8.5 KiB
Go
package restorer
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import (
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"bytes"
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"context"
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"io"
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"math"
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"path/filepath"
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"sync"
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"github.com/restic/restic/internal/crypto"
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"github.com/restic/restic/internal/debug"
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"github.com/restic/restic/internal/errors"
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"github.com/restic/restic/internal/restic"
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)
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// TODO if a blob is corrupt, there may be good blob copies in other packs
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// TODO evaluate if it makes sense to split download and processing workers
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// pro: can (slowly) read network and decrypt/write files concurrently
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// con: each worker needs to keep one pack in memory
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const (
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workerCount = 8
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// fileInfo flags
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fileProgress = 1
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fileError = 2
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largeFileBlobCount = 25
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)
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// information about regular file being restored
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type fileInfo struct {
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lock sync.Mutex
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flags int
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size int64
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location string // file on local filesystem relative to restorer basedir
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blobs interface{} // blobs of the file
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}
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type fileBlobInfo struct {
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id restic.ID // the blob id
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offset int64 // blob offset in the file
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}
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// information about a data pack required to restore one or more files
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type packInfo struct {
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id restic.ID // the pack id
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files map[*fileInfo]struct{} // set of files that use blobs from this pack
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}
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// fileRestorer restores set of files
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type fileRestorer struct {
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key *crypto.Key
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idx func(restic.BlobHandle) []restic.PackedBlob
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packLoader func(ctx context.Context, h restic.Handle, length int, offset int64, fn func(rd io.Reader) error) error
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filesWriter *filesWriter
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dst string
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files []*fileInfo
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}
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func newFileRestorer(dst string,
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packLoader func(ctx context.Context, h restic.Handle, length int, offset int64, fn func(rd io.Reader) error) error,
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key *crypto.Key,
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idx func(restic.BlobHandle) []restic.PackedBlob) *fileRestorer {
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return &fileRestorer{
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key: key,
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idx: idx,
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packLoader: packLoader,
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filesWriter: newFilesWriter(workerCount),
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dst: dst,
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}
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}
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func (r *fileRestorer) addFile(location string, content restic.IDs, size int64) {
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r.files = append(r.files, &fileInfo{location: location, blobs: content, size: size})
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}
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func (r *fileRestorer) targetPath(location string) string {
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return filepath.Join(r.dst, location)
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}
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func (r *fileRestorer) forEachBlob(blobIDs []restic.ID, fn func(packID restic.ID, packBlob restic.Blob)) error {
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if len(blobIDs) == 0 {
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return nil
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}
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for _, blobID := range blobIDs {
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packs := r.idx(restic.BlobHandle{ID: blobID, Type: restic.DataBlob})
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if len(packs) == 0 {
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return errors.Errorf("Unknown blob %s", blobID.String())
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}
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fn(packs[0].PackID, packs[0].Blob)
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}
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return nil
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}
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func (r *fileRestorer) restoreFiles(ctx context.Context) error {
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packs := make(map[restic.ID]*packInfo) // all packs
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// Process packs in order of first access. While this cannot guarantee
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// that file chunks are restored sequentially, it offers a good enough
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// approximation to shorten restore times by up to 19% in some test.
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var packOrder restic.IDs
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// create packInfo from fileInfo
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for _, file := range r.files {
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fileBlobs := file.blobs.(restic.IDs)
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largeFile := len(fileBlobs) > largeFileBlobCount
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var packsMap map[restic.ID][]fileBlobInfo
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if largeFile {
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packsMap = make(map[restic.ID][]fileBlobInfo)
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}
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fileOffset := int64(0)
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err := r.forEachBlob(fileBlobs, func(packID restic.ID, blob restic.Blob) {
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if largeFile {
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packsMap[packID] = append(packsMap[packID], fileBlobInfo{id: blob.ID, offset: fileOffset})
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fileOffset += int64(blob.Length) - crypto.Extension
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}
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pack, ok := packs[packID]
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if !ok {
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pack = &packInfo{
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id: packID,
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files: make(map[*fileInfo]struct{}),
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}
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packs[packID] = pack
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packOrder = append(packOrder, packID)
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}
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pack.files[file] = struct{}{}
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})
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if err != nil {
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// repository index is messed up, can't do anything
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return err
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}
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if largeFile {
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file.blobs = packsMap
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}
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}
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var wg sync.WaitGroup
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downloadCh := make(chan *packInfo)
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worker := func() {
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defer wg.Done()
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for {
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select {
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case <-ctx.Done():
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return // context cancelled
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case pack, ok := <-downloadCh:
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if !ok {
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return // channel closed
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}
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r.downloadPack(ctx, pack)
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}
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}
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}
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for i := 0; i < workerCount; i++ {
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wg.Add(1)
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go worker()
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}
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// the main restore loop
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for _, id := range packOrder {
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pack := packs[id]
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select {
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case <-ctx.Done():
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return ctx.Err()
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case downloadCh <- pack:
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debug.Log("Scheduled download pack %s", pack.id.Str())
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}
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}
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close(downloadCh)
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wg.Wait()
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return nil
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}
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func (r *fileRestorer) downloadPack(ctx context.Context, pack *packInfo) {
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// calculate pack byte range and blob->[]files->[]offsets mappings
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start, end := int64(math.MaxInt64), int64(0)
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blobs := make(map[restic.ID]struct {
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offset int64 // offset of the blob in the pack
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length int // length of the blob
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files map[*fileInfo][]int64 // file -> offsets (plural!) of the blob in the file
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})
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for file := range pack.files {
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addBlob := func(blob restic.Blob, fileOffset int64) {
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if start > int64(blob.Offset) {
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start = int64(blob.Offset)
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}
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if end < int64(blob.Offset+blob.Length) {
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end = int64(blob.Offset + blob.Length)
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}
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blobInfo, ok := blobs[blob.ID]
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if !ok {
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blobInfo.offset = int64(blob.Offset)
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blobInfo.length = int(blob.Length)
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blobInfo.files = make(map[*fileInfo][]int64)
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blobs[blob.ID] = blobInfo
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}
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blobInfo.files[file] = append(blobInfo.files[file], fileOffset)
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}
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if fileBlobs, ok := file.blobs.(restic.IDs); ok {
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fileOffset := int64(0)
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r.forEachBlob(fileBlobs, func(packID restic.ID, blob restic.Blob) {
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if packID.Equal(pack.id) {
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addBlob(blob, fileOffset)
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}
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fileOffset += int64(blob.Length) - crypto.Extension
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})
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} else if packsMap, ok := file.blobs.(map[restic.ID][]fileBlobInfo); ok {
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for _, blob := range packsMap[pack.id] {
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idxPacks := r.idx(restic.BlobHandle{ID: blob.id, Type: restic.DataBlob})
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for _, idxPack := range idxPacks {
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if idxPack.PackID.Equal(pack.id) {
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addBlob(idxPack.Blob, blob.offset)
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break
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}
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}
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}
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}
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}
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packData := make([]byte, int(end-start))
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h := restic.Handle{Type: restic.PackFile, Name: pack.id.String()}
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err := r.packLoader(ctx, h, int(end-start), start, func(rd io.Reader) error {
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l, err := io.ReadFull(rd, packData)
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if err != nil {
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return err
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}
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if l != len(packData) {
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return errors.Errorf("unexpected pack size: expected %d but got %d", len(packData), l)
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}
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return nil
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})
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markFileError := func(file *fileInfo, err error) {
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file.lock.Lock()
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defer file.lock.Unlock()
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if file.flags&fileError == 0 {
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file.flags |= fileError
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}
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}
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if err != nil {
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for file := range pack.files {
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markFileError(file, err)
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}
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return
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}
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rd := bytes.NewReader(packData)
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for blobID, blob := range blobs {
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blobData, err := r.loadBlob(rd, blobID, blob.offset-start, blob.length)
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if err != nil {
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for file := range blob.files {
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markFileError(file, err)
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}
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continue
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}
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for file, offsets := range blob.files {
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for _, offset := range offsets {
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writeToFile := func() error {
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// this looks overly complicated and needs explanation
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// two competing requirements:
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// - must create the file once and only once
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// - should allow concurrent writes to the file
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// so write the first blob while holding file lock
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// write other blobs after releasing the lock
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file.lock.Lock()
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create := file.flags&fileProgress == 0
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createSize := int64(-1)
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if create {
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defer file.lock.Unlock()
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file.flags |= fileProgress
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createSize = file.size
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} else {
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file.lock.Unlock()
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}
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return r.filesWriter.writeToFile(r.targetPath(file.location), blobData, offset, createSize)
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}
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err := writeToFile()
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if err != nil {
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markFileError(file, err)
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break
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}
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}
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}
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}
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}
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func (r *fileRestorer) loadBlob(rd io.ReaderAt, blobID restic.ID, offset int64, length int) ([]byte, error) {
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// TODO reconcile with Repository#loadBlob implementation
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buf := make([]byte, length)
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n, err := rd.ReadAt(buf, offset)
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if err != nil {
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return nil, err
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}
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if n != length {
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return nil, errors.Errorf("error loading blob %v: wrong length returned, want %d, got %d", blobID.Str(), length, n)
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}
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// decrypt
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nonce, ciphertext := buf[:r.key.NonceSize()], buf[r.key.NonceSize():]
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plaintext, err := r.key.Open(ciphertext[:0], nonce, ciphertext, nil)
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if err != nil {
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return nil, errors.Errorf("decrypting blob %v failed: %v", blobID, err)
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}
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// check hash
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if !restic.Hash(plaintext).Equal(blobID) {
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return nil, errors.Errorf("blob %v returned invalid hash", blobID)
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}
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return plaintext, nil
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}
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