mirror of
https://github.com/octoleo/restic.git
synced 2024-12-11 05:42:29 +00:00
596 lines
15 KiB
Go
596 lines
15 KiB
Go
package index
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import (
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"bytes"
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"context"
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"encoding/json"
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"fmt"
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"io"
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"math"
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"sync"
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"time"
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"github.com/restic/restic/internal/crypto"
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"github.com/restic/restic/internal/errors"
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"github.com/restic/restic/internal/feature"
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"github.com/restic/restic/internal/restic"
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"github.com/restic/restic/internal/debug"
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)
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// In large repositories, millions of blobs are stored in the repository
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// and restic needs to store an index entry for each blob in memory for
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// most operations.
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// Hence the index data structure defined here is one of the main contributions
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// to the total memory requirements of restic.
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//
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// We store the index entries in indexMaps. In these maps, entries take 56
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// bytes each, plus 8/4 = 2 bytes of unused pointers on average, not counting
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// malloc and header struct overhead and ignoring duplicates (those are only
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// present in edge cases and are also removed by prune runs).
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//
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// In the index entries, we need to reference the packID. As one pack may
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// contain many blobs the packIDs are saved in a separate array and only the index
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// within this array is saved in the indexEntry
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//
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// We assume on average a minimum of 8 blobs per pack; BP=8.
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// (Note that for large files there should be 3 blobs per pack as the average chunk
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// size is 1.5 MB and the minimum pack size is 4 MB)
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//
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// We have the following sizes:
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// indexEntry: 56 bytes (on amd64)
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// each packID: 32 bytes
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//
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// To save N index entries, we therefore need:
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// N * (56 + 2) bytes + N * 32 bytes / BP = N * 62 bytes,
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// i.e., fewer than 64 bytes per blob in an index.
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// Index holds lookup tables for id -> pack.
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type Index struct {
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m sync.RWMutex
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byType [restic.NumBlobTypes]indexMap
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packs restic.IDs
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final bool // set to true for all indexes read from the backend ("finalized")
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ids restic.IDs // set to the IDs of the contained finalized indexes
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created time.Time
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}
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// NewIndex returns a new index.
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func NewIndex() *Index {
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return &Index{
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created: time.Now(),
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}
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}
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// addToPacks saves the given pack ID and return the index.
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// This procedere allows to use pack IDs which can be easily garbage collected after.
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func (idx *Index) addToPacks(id restic.ID) int {
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idx.packs = append(idx.packs, id)
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return len(idx.packs) - 1
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}
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func (idx *Index) store(packIndex int, blob restic.Blob) {
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// assert that offset and length fit into uint32!
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if blob.Offset > math.MaxUint32 || blob.Length > math.MaxUint32 || blob.UncompressedLength > math.MaxUint32 {
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panic("offset or length does not fit in uint32. You have packs > 4GB!")
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}
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m := &idx.byType[blob.Type]
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m.add(blob.ID, packIndex, uint32(blob.Offset), uint32(blob.Length), uint32(blob.UncompressedLength))
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}
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// Final returns true iff the index is already written to the repository, it is
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// finalized.
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func (idx *Index) Final() bool {
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idx.m.RLock()
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defer idx.m.RUnlock()
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return idx.final
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}
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const (
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indexMaxBlobs = 50000
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indexMaxBlobsCompressed = 3 * indexMaxBlobs
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indexMaxAge = 10 * time.Minute
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)
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// IndexFull returns true iff the index is "full enough" to be saved as a preliminary index.
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var IndexFull = func(idx *Index, compress bool) bool {
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idx.m.RLock()
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defer idx.m.RUnlock()
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debug.Log("checking whether index %p is full", idx)
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var blobs uint
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for typ := range idx.byType {
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blobs += idx.byType[typ].len()
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}
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age := time.Since(idx.created)
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var maxBlobs uint
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if compress {
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maxBlobs = indexMaxBlobsCompressed
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} else {
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maxBlobs = indexMaxBlobs
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}
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switch {
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case age >= indexMaxAge:
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debug.Log("index %p is old enough", idx, age)
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return true
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case blobs >= maxBlobs:
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debug.Log("index %p has %d blobs", idx, blobs)
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return true
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}
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debug.Log("index %p only has %d blobs and is too young (%v)", idx, blobs, age)
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return false
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}
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// StorePack remembers the ids of all blobs of a given pack
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// in the index
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func (idx *Index) StorePack(id restic.ID, blobs []restic.Blob) {
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idx.m.Lock()
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defer idx.m.Unlock()
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if idx.final {
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panic("store new item in finalized index")
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}
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debug.Log("%v", blobs)
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packIndex := idx.addToPacks(id)
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for _, blob := range blobs {
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idx.store(packIndex, blob)
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}
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}
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func (idx *Index) toPackedBlob(e *indexEntry, t restic.BlobType) restic.PackedBlob {
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return restic.PackedBlob{
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Blob: restic.Blob{
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BlobHandle: restic.BlobHandle{
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ID: e.id,
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Type: t},
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Length: uint(e.length),
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Offset: uint(e.offset),
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UncompressedLength: uint(e.uncompressedLength),
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},
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PackID: idx.packs[e.packIndex],
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}
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}
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// Lookup queries the index for the blob ID and returns all entries including
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// duplicates. Adds found entries to blobs and returns the result.
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func (idx *Index) Lookup(bh restic.BlobHandle, pbs []restic.PackedBlob) []restic.PackedBlob {
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idx.m.RLock()
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defer idx.m.RUnlock()
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idx.byType[bh.Type].foreachWithID(bh.ID, func(e *indexEntry) {
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pbs = append(pbs, idx.toPackedBlob(e, bh.Type))
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})
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return pbs
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}
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// Has returns true iff the id is listed in the index.
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func (idx *Index) Has(bh restic.BlobHandle) bool {
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idx.m.RLock()
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defer idx.m.RUnlock()
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return idx.byType[bh.Type].get(bh.ID) != nil
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}
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// LookupSize returns the length of the plaintext content of the blob with the
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// given id.
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func (idx *Index) LookupSize(bh restic.BlobHandle) (plaintextLength uint, found bool) {
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idx.m.RLock()
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defer idx.m.RUnlock()
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e := idx.byType[bh.Type].get(bh.ID)
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if e == nil {
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return 0, false
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}
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if e.uncompressedLength != 0 {
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return uint(e.uncompressedLength), true
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}
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return uint(crypto.PlaintextLength(int(e.length))), true
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}
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// Each passes all blobs known to the index to the callback fn. This blocks any
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// modification of the index.
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func (idx *Index) Each(ctx context.Context, fn func(restic.PackedBlob)) error {
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idx.m.RLock()
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defer idx.m.RUnlock()
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for typ := range idx.byType {
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m := &idx.byType[typ]
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m.foreach(func(e *indexEntry) bool {
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if ctx.Err() != nil {
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return false
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}
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fn(idx.toPackedBlob(e, restic.BlobType(typ)))
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return true
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})
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}
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return ctx.Err()
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}
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type EachByPackResult struct {
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PackID restic.ID
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Blobs []restic.Blob
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}
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// EachByPack returns a channel that yields all blobs known to the index
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// grouped by packID but ignoring blobs with a packID in packPlacklist for
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// finalized indexes.
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// This filtering is used when rebuilding the index where we need to ignore packs
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// from the finalized index which have been re-read into a non-finalized index.
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// When the context is cancelled, the background goroutine
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// terminates. This blocks any modification of the index.
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func (idx *Index) EachByPack(ctx context.Context, packBlacklist restic.IDSet) <-chan EachByPackResult {
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idx.m.RLock()
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ch := make(chan EachByPackResult)
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go func() {
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defer idx.m.RUnlock()
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defer close(ch)
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byPack := make(map[restic.ID][restic.NumBlobTypes][]*indexEntry)
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for typ := range idx.byType {
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m := &idx.byType[typ]
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m.foreach(func(e *indexEntry) bool {
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packID := idx.packs[e.packIndex]
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if !idx.final || !packBlacklist.Has(packID) {
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v := byPack[packID]
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v[typ] = append(v[typ], e)
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byPack[packID] = v
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}
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return true
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})
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}
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for packID, packByType := range byPack {
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var result EachByPackResult
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result.PackID = packID
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for typ, pack := range packByType {
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for _, e := range pack {
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result.Blobs = append(result.Blobs, idx.toPackedBlob(e, restic.BlobType(typ)).Blob)
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}
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}
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// allow GC once entry is no longer necessary
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delete(byPack, packID)
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select {
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case <-ctx.Done():
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return
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case ch <- result:
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}
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}
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}()
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return ch
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}
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// Packs returns all packs in this index
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func (idx *Index) Packs() restic.IDSet {
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idx.m.RLock()
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defer idx.m.RUnlock()
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packs := restic.NewIDSet()
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for _, packID := range idx.packs {
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packs.Insert(packID)
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}
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return packs
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}
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type packJSON struct {
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ID restic.ID `json:"id"`
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Blobs []blobJSON `json:"blobs"`
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}
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type blobJSON struct {
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ID restic.ID `json:"id"`
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Type restic.BlobType `json:"type"`
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Offset uint `json:"offset"`
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Length uint `json:"length"`
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UncompressedLength uint `json:"uncompressed_length,omitempty"`
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}
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// generatePackList returns a list of packs.
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func (idx *Index) generatePackList() ([]packJSON, error) {
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list := make([]packJSON, 0, len(idx.packs))
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packs := make(map[restic.ID]int, len(list)) // Maps to index in list.
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for typ := range idx.byType {
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m := &idx.byType[typ]
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m.foreach(func(e *indexEntry) bool {
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packID := idx.packs[e.packIndex]
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if packID.IsNull() {
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panic("null pack id")
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}
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i, ok := packs[packID]
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if !ok {
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i = len(list)
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list = append(list, packJSON{ID: packID})
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packs[packID] = i
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}
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p := &list[i]
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// add blob
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p.Blobs = append(p.Blobs, blobJSON{
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ID: e.id,
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Type: restic.BlobType(typ),
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Offset: uint(e.offset),
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Length: uint(e.length),
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UncompressedLength: uint(e.uncompressedLength),
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})
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return true
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})
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}
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return list, nil
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}
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type jsonIndex struct {
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// removed: Supersedes restic.IDs `json:"supersedes,omitempty"`
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Packs []packJSON `json:"packs"`
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}
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// Encode writes the JSON serialization of the index to the writer w.
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func (idx *Index) Encode(w io.Writer) error {
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debug.Log("encoding index")
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idx.m.RLock()
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defer idx.m.RUnlock()
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list, err := idx.generatePackList()
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if err != nil {
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return err
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}
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enc := json.NewEncoder(w)
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idxJSON := jsonIndex{
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Packs: list,
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}
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return enc.Encode(idxJSON)
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}
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// SaveIndex saves an index in the repository.
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func (idx *Index) SaveIndex(ctx context.Context, repo restic.SaverUnpacked) (restic.ID, error) {
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buf := bytes.NewBuffer(nil)
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err := idx.Encode(buf)
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if err != nil {
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return restic.ID{}, err
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}
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id, err := repo.SaveUnpacked(ctx, restic.IndexFile, buf.Bytes())
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ierr := idx.SetID(id)
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if ierr != nil {
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// logic bug
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panic(ierr)
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}
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return id, err
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}
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// Finalize sets the index to final.
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func (idx *Index) Finalize() {
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debug.Log("finalizing index")
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idx.m.Lock()
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defer idx.m.Unlock()
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idx.final = true
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}
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// IDs returns the IDs of the index, if available. If the index is not yet
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// finalized, an error is returned.
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func (idx *Index) IDs() (restic.IDs, error) {
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idx.m.RLock()
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defer idx.m.RUnlock()
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if !idx.final {
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return nil, errors.New("index not finalized")
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}
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return idx.ids, nil
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}
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// SetID sets the ID the index has been written to. This requires that
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// Finalize() has been called before, otherwise an error is returned.
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func (idx *Index) SetID(id restic.ID) error {
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idx.m.Lock()
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defer idx.m.Unlock()
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if !idx.final {
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return errors.New("index is not final")
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}
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if len(idx.ids) > 0 {
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return errors.New("ID already set")
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}
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debug.Log("ID set to %v", id)
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idx.ids = append(idx.ids, id)
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return nil
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}
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// Dump writes the pretty-printed JSON representation of the index to w.
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func (idx *Index) Dump(w io.Writer) error {
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debug.Log("dumping index")
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idx.m.RLock()
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defer idx.m.RUnlock()
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list, err := idx.generatePackList()
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if err != nil {
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return err
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}
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outer := jsonIndex{
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Packs: list,
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}
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buf, err := json.MarshalIndent(outer, "", " ")
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if err != nil {
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return err
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}
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_, err = w.Write(append(buf, '\n'))
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if err != nil {
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return errors.Wrap(err, "Write")
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}
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debug.Log("done")
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return nil
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}
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// merge() merges indexes, i.e. idx.merge(idx2) merges the contents of idx2 into idx.
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// During merging exact duplicates are removed; idx2 is not changed by this method.
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func (idx *Index) merge(idx2 *Index) error {
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idx.m.Lock()
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defer idx.m.Unlock()
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idx2.m.Lock()
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defer idx2.m.Unlock()
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if !idx2.final {
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return errors.New("index to merge is not final")
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}
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packlen := len(idx.packs)
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// first append packs as they might be accessed when looking for duplicates below
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idx.packs = append(idx.packs, idx2.packs...)
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// copy all index entries of idx2 to idx
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for typ := range idx2.byType {
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m2 := &idx2.byType[typ]
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m := &idx.byType[typ]
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// helper func to test if identical entry is contained in idx
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hasIdenticalEntry := func(e2 *indexEntry) (found bool) {
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m.foreachWithID(e2.id, func(e *indexEntry) {
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b := idx.toPackedBlob(e, restic.BlobType(typ))
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b2 := idx2.toPackedBlob(e2, restic.BlobType(typ))
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if b == b2 {
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found = true
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}
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})
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return found
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}
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m2.foreach(func(e2 *indexEntry) bool {
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if !hasIdenticalEntry(e2) {
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// packIndex needs to be changed as idx2.pack was appended to idx.pack, see above
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m.add(e2.id, e2.packIndex+packlen, e2.offset, e2.length, e2.uncompressedLength)
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}
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return true
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})
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}
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idx.ids = append(idx.ids, idx2.ids...)
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return nil
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}
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// isErrOldIndex returns true if the error may be caused by an old index
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// format.
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func isErrOldIndex(err error) bool {
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e, ok := err.(*json.UnmarshalTypeError)
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return ok && e.Value == "array"
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}
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// DecodeIndex unserializes an index from buf.
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func DecodeIndex(buf []byte, id restic.ID) (idx *Index, oldFormat bool, err error) {
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debug.Log("Start decoding index")
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idxJSON := &jsonIndex{}
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err = json.Unmarshal(buf, idxJSON)
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if err != nil {
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debug.Log("Error %v", err)
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if isErrOldIndex(err) {
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if feature.Flag.Enabled(feature.DeprecateLegacyIndex) {
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return nil, false, fmt.Errorf("index seems to use the legacy format. update it using `restic repair index`")
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}
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debug.Log("index is probably old format, trying that")
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idx, err = decodeOldIndex(buf)
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idx.ids = append(idx.ids, id)
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return idx, err == nil, err
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}
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return nil, false, errors.Wrap(err, "DecodeIndex")
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}
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idx = NewIndex()
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for _, pack := range idxJSON.Packs {
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packID := idx.addToPacks(pack.ID)
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for _, blob := range pack.Blobs {
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idx.store(packID, restic.Blob{
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BlobHandle: restic.BlobHandle{
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Type: blob.Type,
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ID: blob.ID},
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Offset: blob.Offset,
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Length: blob.Length,
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UncompressedLength: blob.UncompressedLength,
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})
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}
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}
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idx.ids = append(idx.ids, id)
|
|
idx.final = true
|
|
|
|
debug.Log("done")
|
|
return idx, false, nil
|
|
}
|
|
|
|
// DecodeOldIndex loads and unserializes an index in the old format from rd.
|
|
func decodeOldIndex(buf []byte) (idx *Index, err error) {
|
|
debug.Log("Start decoding old index")
|
|
list := []*packJSON{}
|
|
|
|
err = json.Unmarshal(buf, &list)
|
|
if err != nil {
|
|
debug.Log("Error %#v", err)
|
|
return nil, errors.Wrap(err, "Decode")
|
|
}
|
|
|
|
idx = NewIndex()
|
|
for _, pack := range list {
|
|
packID := idx.addToPacks(pack.ID)
|
|
|
|
for _, blob := range pack.Blobs {
|
|
idx.store(packID, restic.Blob{
|
|
BlobHandle: restic.BlobHandle{
|
|
Type: blob.Type,
|
|
ID: blob.ID},
|
|
Offset: blob.Offset,
|
|
Length: blob.Length,
|
|
// no compressed length in the old index format
|
|
})
|
|
}
|
|
}
|
|
idx.final = true
|
|
|
|
debug.Log("done")
|
|
return idx, nil
|
|
}
|
|
|
|
func (idx *Index) BlobIndex(bh restic.BlobHandle) int {
|
|
idx.m.RLock()
|
|
defer idx.m.RUnlock()
|
|
|
|
return idx.byType[bh.Type].firstIndex(bh.ID)
|
|
}
|
|
|
|
func (idx *Index) Len(t restic.BlobType) uint {
|
|
idx.m.RLock()
|
|
defer idx.m.RUnlock()
|
|
|
|
return idx.byType[t].len()
|
|
}
|