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package repository
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import (
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"bytes"
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"context"
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"fmt"
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"io"
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"math"
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"os"
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"runtime"
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"sort"
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"sync"
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"github.com/klauspost/compress/zstd"
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"github.com/restic/chunker"
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"github.com/restic/restic/internal/backend"
backup: add --dry-run/-n flag to show what would happen.
This can be used to check how large a backup is or validate exclusions.
It does not actually write any data to the underlying backend. This is
implemented as a simple overlay backend that accepts writes without
forwarding them, passes through reads, and generally does the minimal
necessary to pretend that progress is actually happening.
Fixes #1542
Example usage:
$ restic -vv --dry-run . | grep add
new /changelog/unreleased/issue-1542, saved in 0.000s (350 B added)
modified /cmd/restic/cmd_backup.go, saved in 0.000s (16.543 KiB added)
modified /cmd/restic/global.go, saved in 0.000s (0 B added)
new /internal/backend/dry/dry_backend_test.go, saved in 0.000s (3.866 KiB added)
new /internal/backend/dry/dry_backend.go, saved in 0.000s (3.744 KiB added)
modified /internal/backend/test/tests.go, saved in 0.000s (0 B added)
modified /internal/repository/repository.go, saved in 0.000s (20.707 KiB added)
modified /internal/ui/backup.go, saved in 0.000s (9.110 KiB added)
modified /internal/ui/jsonstatus/status.go, saved in 0.001s (11.055 KiB added)
modified /restic, saved in 0.131s (25.542 MiB added)
Would add to the repo: 25.892 MiB
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"github.com/restic/restic/internal/backend/dryrun"
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"github.com/restic/restic/internal/cache"
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"github.com/restic/restic/internal/crypto"
"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/index"
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"github.com/restic/restic/internal/pack"
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"github.com/restic/restic/internal/restic"
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"github.com/restic/restic/internal/ui/progress"
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"golang.org/x/sync/errgroup"
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)
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const MinPackSize = 4 * 1024 * 1024
const DefaultPackSize = 16 * 1024 * 1024
const MaxPackSize = 128 * 1024 * 1024
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// Repository is used to access a repository in a backend.
type Repository struct {
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be backend . Backend
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cfg restic . Config
key * crypto . Key
keyID restic . ID
idx * index . MasterIndex
Cache * cache . Cache
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opts Options
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noAutoIndexUpdate bool
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packerWg * errgroup . Group
uploader * packerUploader
treePM * packerManager
dataPM * packerManager
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allocEnc sync . Once
allocDec sync . Once
enc * zstd . Encoder
dec * zstd . Decoder
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}
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type Options struct {
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Compression CompressionMode
PackSize uint
NoExtraVerify bool
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}
// CompressionMode configures if data should be compressed.
type CompressionMode uint
// Constants for the different compression levels.
const (
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CompressionAuto CompressionMode = 0
CompressionOff CompressionMode = 1
CompressionMax CompressionMode = 2
CompressionInvalid CompressionMode = 3
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)
// Set implements the method needed for pflag command flag parsing.
func ( c * CompressionMode ) Set ( s string ) error {
switch s {
case "auto" :
* c = CompressionAuto
case "off" :
* c = CompressionOff
case "max" :
* c = CompressionMax
default :
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* c = CompressionInvalid
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return fmt . Errorf ( "invalid compression mode %q, must be one of (auto|off|max)" , s )
}
return nil
}
func ( c * CompressionMode ) String ( ) string {
switch * c {
case CompressionAuto :
return "auto"
case CompressionOff :
return "off"
case CompressionMax :
return "max"
default :
return "invalid"
}
}
func ( c * CompressionMode ) Type ( ) string {
return "mode"
}
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// New returns a new repository with backend be.
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func New ( be backend . Backend , opts Options ) ( * Repository , error ) {
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if opts . Compression == CompressionInvalid {
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return nil , errors . New ( "invalid compression mode" )
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}
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if opts . PackSize == 0 {
opts . PackSize = DefaultPackSize
}
if opts . PackSize > MaxPackSize {
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return nil , fmt . Errorf ( "pack size larger than limit of %v MiB" , MaxPackSize / 1024 / 1024 )
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} else if opts . PackSize < MinPackSize {
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return nil , fmt . Errorf ( "pack size smaller than minimum of %v MiB" , MinPackSize / 1024 / 1024 )
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}
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repo := & Repository {
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be : be ,
opts : opts ,
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idx : index . NewMasterIndex ( ) ,
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}
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return repo , nil
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}
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// DisableAutoIndexUpdate deactives the automatic finalization and upload of new
// indexes once these are full
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func ( r * Repository ) DisableAutoIndexUpdate ( ) {
r . noAutoIndexUpdate = true
}
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// setConfig assigns the given config and updates the repository parameters accordingly
func ( r * Repository ) setConfig ( cfg restic . Config ) {
r . cfg = cfg
}
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// Config returns the repository configuration.
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func ( r * Repository ) Config ( ) restic . Config {
return r . cfg
}
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// PackSize return the target size of a pack file when uploading
func ( r * Repository ) PackSize ( ) uint {
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return r . opts . PackSize
}
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// UseCache replaces the backend with the wrapped cache.
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func ( r * Repository ) UseCache ( c * cache . Cache ) {
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if c == nil {
return
}
debug . Log ( "using cache" )
r . Cache = c
r . be = c . Wrap ( r . be )
}
backup: add --dry-run/-n flag to show what would happen.
This can be used to check how large a backup is or validate exclusions.
It does not actually write any data to the underlying backend. This is
implemented as a simple overlay backend that accepts writes without
forwarding them, passes through reads, and generally does the minimal
necessary to pretend that progress is actually happening.
Fixes #1542
Example usage:
$ restic -vv --dry-run . | grep add
new /changelog/unreleased/issue-1542, saved in 0.000s (350 B added)
modified /cmd/restic/cmd_backup.go, saved in 0.000s (16.543 KiB added)
modified /cmd/restic/global.go, saved in 0.000s (0 B added)
new /internal/backend/dry/dry_backend_test.go, saved in 0.000s (3.866 KiB added)
new /internal/backend/dry/dry_backend.go, saved in 0.000s (3.744 KiB added)
modified /internal/backend/test/tests.go, saved in 0.000s (0 B added)
modified /internal/repository/repository.go, saved in 0.000s (20.707 KiB added)
modified /internal/ui/backup.go, saved in 0.000s (9.110 KiB added)
modified /internal/ui/jsonstatus/status.go, saved in 0.001s (11.055 KiB added)
modified /restic, saved in 0.131s (25.542 MiB added)
Would add to the repo: 25.892 MiB
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// SetDryRun sets the repo backend into dry-run mode.
func ( r * Repository ) SetDryRun ( ) {
r . be = dryrun . New ( r . be )
}
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// LoadUnpacked loads and decrypts the file with the given type and ID.
func ( r * Repository ) LoadUnpacked ( ctx context . Context , t restic . FileType , id restic . ID ) ( [ ] byte , error ) {
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debug . Log ( "load %v with id %v" , t , id )
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if t == restic . ConfigFile {
id = restic . ID { }
}
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buf , err := r . LoadRaw ( ctx , t , id )
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if err != nil {
return nil , err
}
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nonce , ciphertext := buf [ : r . key . NonceSize ( ) ] , buf [ r . key . NonceSize ( ) : ]
plaintext , err := r . key . Open ( ciphertext [ : 0 ] , nonce , ciphertext , nil )
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if err != nil {
return nil , err
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}
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if t != restic . ConfigFile {
return r . decompressUnpacked ( plaintext )
}
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return plaintext , nil
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}
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type haver interface {
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Has ( backend . Handle ) bool
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}
// sortCachedPacksFirst moves all cached pack files to the front of blobs.
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func sortCachedPacksFirst ( cache haver , blobs [ ] restic . PackedBlob ) {
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if cache == nil {
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return
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}
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// no need to sort a list with one element
if len ( blobs ) == 1 {
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return
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}
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cached := blobs [ : 0 ]
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noncached := make ( [ ] restic . PackedBlob , 0 , len ( blobs ) / 2 )
for _ , blob := range blobs {
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if cache . Has ( backend . Handle { Type : restic . PackFile , Name : blob . PackID . String ( ) } ) {
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cached = append ( cached , blob )
continue
}
noncached = append ( noncached , blob )
}
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copy ( blobs [ len ( cached ) : ] , noncached )
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}
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// LoadBlob loads a blob of type t from the repository.
// It may use all of buf[:cap(buf)] as scratch space.
func ( r * Repository ) LoadBlob ( ctx context . Context , t restic . BlobType , id restic . ID , buf [ ] byte ) ( [ ] byte , error ) {
debug . Log ( "load %v with id %v (buf len %v, cap %d)" , t , id , len ( buf ) , cap ( buf ) )
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// lookup packs
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blobs := r . idx . Lookup ( restic . BlobHandle { ID : id , Type : t } )
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if len ( blobs ) == 0 {
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debug . Log ( "id %v not found in index" , id )
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return nil , errors . Errorf ( "id %v not found in repository" , id )
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}
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// try cached pack files first
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sortCachedPacksFirst ( r . Cache , blobs )
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buf , err := r . loadBlob ( ctx , blobs , buf )
if err != nil {
if r . Cache != nil {
for _ , blob := range blobs {
h := backend . Handle { Type : restic . PackFile , Name : blob . PackID . String ( ) , IsMetadata : blob . Type . IsMetadata ( ) }
// ignore errors as there's not much we can do here
_ = r . Cache . Forget ( h )
}
}
buf , err = r . loadBlob ( ctx , blobs , buf )
}
return buf , err
}
func ( r * Repository ) loadBlob ( ctx context . Context , blobs [ ] restic . PackedBlob , buf [ ] byte ) ( [ ] byte , error ) {
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var lastError error
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for _ , blob := range blobs {
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debug . Log ( "blob %v found: %v" , blob . BlobHandle , blob )
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// load blob from pack
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h := backend . Handle { Type : restic . PackFile , Name : blob . PackID . String ( ) , IsMetadata : blob . Type . IsMetadata ( ) }
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switch {
case cap ( buf ) < int ( blob . Length ) :
buf = make ( [ ] byte , blob . Length )
case len ( buf ) != int ( blob . Length ) :
buf = buf [ : blob . Length ]
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}
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_ , err := backend . ReadAt ( ctx , r . be , h , int64 ( blob . Offset ) , buf )
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if err != nil {
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debug . Log ( "error loading blob %v: %v" , blob , err )
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lastError = err
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continue
}
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it := newPackBlobIterator ( blob . PackID , newByteReader ( buf ) , uint ( blob . Offset ) , [ ] restic . Blob { blob . Blob } , r . key , r . getZstdDecoder ( ) )
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pbv , err := it . Next ( )
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if err == nil {
err = pbv . Err
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}
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if err != nil {
debug . Log ( "error decoding blob %v: %v" , blob , err )
lastError = err
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continue
}
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plaintext := pbv . Plaintext
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if len ( plaintext ) > cap ( buf ) {
return plaintext , nil
}
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// move decrypted data to the start of the buffer
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buf = buf [ : len ( plaintext ) ]
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copy ( buf , plaintext )
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return buf , nil
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}
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if lastError != nil {
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return nil , lastError
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}
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return nil , errors . Errorf ( "loading %v from %v packs failed" , blobs [ 0 ] . BlobHandle , len ( blobs ) )
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}
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// LookupBlobSize returns the size of blob id.
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func ( r * Repository ) LookupBlobSize ( id restic . ID , tpe restic . BlobType ) ( uint , bool ) {
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return r . idx . LookupSize ( restic . BlobHandle { ID : id , Type : tpe } )
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}
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func ( r * Repository ) getZstdEncoder ( ) * zstd . Encoder {
r . allocEnc . Do ( func ( ) {
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level := zstd . SpeedDefault
if r . opts . Compression == CompressionMax {
level = zstd . SpeedBestCompression
}
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opts := [ ] zstd . EOption {
// Set the compression level configured.
zstd . WithEncoderLevel ( level ) ,
// Disable CRC, we have enough checks in place, makes the
// compressed data four bytes shorter.
zstd . WithEncoderCRC ( false ) ,
// Set a window of 512kbyte, so we have good lookbehind for usual
// blob sizes.
zstd . WithWindowSize ( 512 * 1024 ) ,
}
enc , err := zstd . NewWriter ( nil , opts ... )
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if err != nil {
panic ( err )
}
r . enc = enc
} )
return r . enc
}
func ( r * Repository ) getZstdDecoder ( ) * zstd . Decoder {
r . allocDec . Do ( func ( ) {
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opts := [ ] zstd . DOption {
// Use all available cores.
zstd . WithDecoderConcurrency ( 0 ) ,
// Limit the maximum decompressed memory. Set to a very high,
// conservative value.
zstd . WithDecoderMaxMemory ( 16 * 1024 * 1024 * 1024 ) ,
}
dec , err := zstd . NewReader ( nil , opts ... )
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if err != nil {
panic ( err )
}
r . dec = dec
} )
return r . dec
}
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// saveAndEncrypt encrypts data and stores it to the backend as type t. If data
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// is small enough, it will be packed together with other small blobs. The
// caller must ensure that the id matches the data. Returned is the size data
// occupies in the repo (compressed or not, including the encryption overhead).
func ( r * Repository ) saveAndEncrypt ( ctx context . Context , t restic . BlobType , data [ ] byte , id restic . ID ) ( size int , err error ) {
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debug . Log ( "save id %v (%v, %d bytes)" , id , t , len ( data ) )
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uncompressedLength := 0
if r . cfg . Version > 1 {
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// we have a repo v2, so compression is available. if the user opts to
// not compress, we won't compress any data, but everything else is
// compressed.
if r . opts . Compression != CompressionOff || t != restic . DataBlob {
uncompressedLength = len ( data )
data = r . getZstdEncoder ( ) . EncodeAll ( data , nil )
}
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}
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nonce := crypto . NewRandomNonce ( )
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ciphertext := make ( [ ] byte , 0 , crypto . CiphertextLength ( len ( data ) ) )
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ciphertext = append ( ciphertext , nonce ... )
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// encrypt blob
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ciphertext = r . key . Seal ( ciphertext , nonce , data , nil )
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if err := r . verifyCiphertext ( ciphertext , uncompressedLength , id ) ; err != nil {
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//nolint:revive // ignore linter warnings about error message spelling
return 0 , fmt . Errorf ( "Detected data corruption while saving blob %v: %w\nCorrupted blobs are either caused by hardware issues or software bugs. Please open an issue at https://github.com/restic/restic/issues/new/choose for further troubleshooting." , id , err )
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}
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// find suitable packer and add blob
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var pm * packerManager
switch t {
case restic . TreeBlob :
pm = r . treePM
case restic . DataBlob :
pm = r . dataPM
default :
panic ( fmt . Sprintf ( "invalid type: %v" , t ) )
}
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return pm . SaveBlob ( ctx , t , id , ciphertext , uncompressedLength )
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}
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func ( r * Repository ) verifyCiphertext ( buf [ ] byte , uncompressedLength int , id restic . ID ) error {
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if r . opts . NoExtraVerify {
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return nil
}
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nonce , ciphertext := buf [ : r . key . NonceSize ( ) ] , buf [ r . key . NonceSize ( ) : ]
plaintext , err := r . key . Open ( nil , nonce , ciphertext , nil )
if err != nil {
return fmt . Errorf ( "decryption failed: %w" , err )
}
if uncompressedLength != 0 {
// DecodeAll will allocate a slice if it is not large enough since it
// knows the decompressed size (because we're using EncodeAll)
plaintext , err = r . getZstdDecoder ( ) . DecodeAll ( plaintext , nil )
if err != nil {
return fmt . Errorf ( "decompression failed: %w" , err )
}
}
if ! restic . Hash ( plaintext ) . Equal ( id ) {
return errors . New ( "hash mismatch" )
}
return nil
}
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func ( r * Repository ) compressUnpacked ( p [ ] byte ) ( [ ] byte , error ) {
// compression is only available starting from version 2
if r . cfg . Version < 2 {
return p , nil
}
// version byte
out := [ ] byte { 2 }
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out = r . getZstdEncoder ( ) . EncodeAll ( p , out )
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return out , nil
}
func ( r * Repository ) decompressUnpacked ( p [ ] byte ) ( [ ] byte , error ) {
// compression is only available starting from version 2
if r . cfg . Version < 2 {
return p , nil
}
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if len ( p ) == 0 {
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// too short for version header
return p , nil
}
if p [ 0 ] == '[' || p [ 0 ] == '{' {
// probably raw JSON
return p , nil
}
// version
if p [ 0 ] != 2 {
return nil , errors . New ( "not supported encoding format" )
}
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return r . getZstdDecoder ( ) . DecodeAll ( p [ 1 : ] , nil )
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}
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// SaveUnpacked encrypts data and stores it in the backend. Returned is the
// storage hash.
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func ( r * Repository ) SaveUnpacked ( ctx context . Context , t restic . FileType , buf [ ] byte ) ( id restic . ID , err error ) {
p := buf
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if t != restic . ConfigFile {
p , err = r . compressUnpacked ( p )
if err != nil {
return restic . ID { } , err
}
}
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ciphertext := crypto . NewBlobBuffer ( len ( p ) )
2017-10-29 10:33:57 +00:00
ciphertext = ciphertext [ : 0 ]
nonce := crypto . NewRandomNonce ( )
ciphertext = append ( ciphertext , nonce ... )
ciphertext = r . key . Seal ( ciphertext , nonce , p , nil )
2015-02-15 16:26:08 +00:00
2024-02-03 16:30:58 +00:00
if err := r . verifyUnpacked ( ciphertext , t , buf ) ; err != nil {
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//nolint:revive // ignore linter warnings about error message spelling
return restic . ID { } , fmt . Errorf ( "Detected data corruption while saving file of type %v: %w\nCorrupted data is either caused by hardware issues or software bugs. Please open an issue at https://github.com/restic/restic/issues/new/choose for further troubleshooting." , t , err )
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}
2019-12-05 13:29:34 +00:00
if t == restic . ConfigFile {
id = restic . ID { }
} else {
id = restic . Hash ( ciphertext )
}
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h := backend . Handle { Type : t , Name : id . String ( ) }
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2023-10-01 09:40:12 +00:00
err = r . be . Save ( ctx , h , backend . NewByteReader ( ciphertext , r . be . Hasher ( ) ) )
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if err != nil {
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debug . Log ( "error saving blob %v: %v" , h , err )
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return restic . ID { } , err
2015-02-15 16:26:08 +00:00
}
2016-09-27 20:35:08 +00:00
debug . Log ( "blob %v saved" , h )
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return id , nil
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}
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func ( r * Repository ) verifyUnpacked ( buf [ ] byte , t restic . FileType , expected [ ] byte ) error {
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if r . opts . NoExtraVerify {
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return nil
}
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nonce , ciphertext := buf [ : r . key . NonceSize ( ) ] , buf [ r . key . NonceSize ( ) : ]
plaintext , err := r . key . Open ( nil , nonce , ciphertext , nil )
if err != nil {
return fmt . Errorf ( "decryption failed: %w" , err )
}
if t != restic . ConfigFile {
plaintext , err = r . decompressUnpacked ( plaintext )
if err != nil {
return fmt . Errorf ( "decompression failed: %w" , err )
}
}
if ! bytes . Equal ( plaintext , expected ) {
return errors . New ( "data mismatch" )
}
return nil
}
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func ( r * Repository ) RemoveUnpacked ( ctx context . Context , t restic . FileType , id restic . ID ) error {
// TODO prevent everything except removing snapshots for non-repository code
return r . be . Remove ( ctx , backend . Handle { Type : t , Name : id . String ( ) } )
}
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// Flush saves all remaining packs and the index
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func ( r * Repository ) Flush ( ctx context . Context ) error {
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if err := r . flushPacks ( ctx ) ; err != nil {
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return err
}
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// Save index after flushing only if noAutoIndexUpdate is not set
if r . noAutoIndexUpdate {
return nil
}
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return r . idx . SaveIndex ( ctx , r )
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}
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func ( r * Repository ) StartPackUploader ( ctx context . Context , wg * errgroup . Group ) {
if r . packerWg != nil {
panic ( "uploader already started" )
2017-07-16 18:24:37 +00:00
}
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innerWg , ctx := errgroup . WithContext ( ctx )
r . packerWg = innerWg
r . uploader = newPackerUploader ( ctx , innerWg , r , r . be . Connections ( ) )
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r . treePM = newPackerManager ( r . key , restic . TreeBlob , r . PackSize ( ) , r . uploader . QueuePacker )
r . dataPM = newPackerManager ( r . key , restic . DataBlob , r . PackSize ( ) , r . uploader . QueuePacker )
2017-07-16 18:16:02 +00:00
2021-08-07 20:52:05 +00:00
wg . Go ( func ( ) error {
return innerWg . Wait ( )
} )
}
// FlushPacks saves all remaining packs.
func ( r * Repository ) flushPacks ( ctx context . Context ) error {
if r . packerWg == nil {
return nil
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}
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err := r . treePM . Flush ( ctx )
if err != nil {
return err
}
err = r . dataPM . Flush ( ctx )
if err != nil {
return err
}
r . uploader . TriggerShutdown ( )
err = r . packerWg . Wait ( )
r . treePM = nil
r . dataPM = nil
r . uploader = nil
r . packerWg = nil
return err
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}
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func ( r * Repository ) Connections ( ) uint {
return r . be . Connections ( )
}
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// Index returns the currently used MasterIndex.
2020-07-25 19:19:46 +00:00
func ( r * Repository ) Index ( ) restic . MasterIndex {
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return r . idx
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}
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// SetIndex instructs the repository to use the given index.
2020-07-25 19:19:46 +00:00
func ( r * Repository ) SetIndex ( i restic . MasterIndex ) error {
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r . idx = i . ( * index . MasterIndex )
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r . configureIndex ( )
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return r . prepareCache ( )
2015-02-08 21:54:45 +00:00
}
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func ( r * Repository ) ClearIndex ( ) {
r . idx = index . NewMasterIndex ( )
r . configureIndex ( )
}
func ( r * Repository ) configureIndex ( ) {
if r . cfg . Version >= 2 {
r . idx . MarkCompressed ( )
}
}
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// LoadIndex loads all index files from the backend in parallel and stores them
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func ( r * Repository ) LoadIndex ( ctx context . Context , p * progress . Counter ) error {
2016-09-27 20:35:08 +00:00
debug . Log ( "Loading index" )
2015-04-26 15:44:38 +00:00
2023-10-01 11:05:56 +00:00
indexList , err := restic . MemorizeList ( ctx , r , restic . IndexFile )
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if err != nil {
return err
}
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if p != nil {
var numIndexFiles uint64
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err := indexList . List ( ctx , restic . IndexFile , func ( _ restic . ID , _ int64 ) error {
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numIndexFiles ++
return nil
} )
if err != nil {
return err
}
p . SetMax ( numIndexFiles )
defer p . Done ( )
}
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// reset in-memory index before loading it from the repository
r . ClearIndex ( )
2024-02-10 21:58:10 +00:00
err = index . ForAllIndexes ( ctx , indexList , r , func ( _ restic . ID , idx * index . Index , _ bool , err error ) error {
2020-11-07 17:50:19 +00:00
if err != nil {
return err
2015-07-04 16:38:32 +00:00
}
2020-11-07 17:50:19 +00:00
r . idx . Insert ( idx )
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if p != nil {
p . Add ( 1 )
}
2019-03-24 20:27:28 +00:00
return nil
} )
if err != nil {
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return err
2015-07-04 16:38:32 +00:00
}
2021-01-30 15:35:05 +00:00
err = r . idx . MergeFinalIndexes ( )
if err != nil {
return err
}
2020-11-07 17:50:19 +00:00
2023-06-02 19:56:14 +00:00
// Trigger GC to reset garbage collection threshold
runtime . GC ( )
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if r . cfg . Version < 2 {
// sanity check
ctx , cancel := context . WithCancel ( ctx )
defer cancel ( )
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invalidIndex := false
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err := r . idx . Each ( ctx , func ( blob restic . PackedBlob ) {
2022-02-13 16:24:09 +00:00
if blob . IsCompressed ( ) {
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invalidIndex = true
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}
2022-08-19 18:04:39 +00:00
} )
2024-04-05 20:20:14 +00:00
if err != nil {
return err
}
2022-08-19 18:04:39 +00:00
if invalidIndex {
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return errors . New ( "index uses feature not supported by repository version 1" )
2022-02-13 16:24:09 +00:00
}
}
2024-03-29 23:19:58 +00:00
if ctx . Err ( ) != nil {
return ctx . Err ( )
}
2022-02-13 16:24:09 +00:00
2019-03-24 20:27:28 +00:00
// remove index files from the cache which have been removed in the repo
2022-06-12 12:47:30 +00:00
return r . prepareCache ( )
2018-03-31 07:50:45 +00:00
}
2017-07-18 21:16:50 +00:00
2020-10-10 19:31:40 +00:00
// CreateIndexFromPacks creates a new index by reading all given pack files (with sizes).
// The index is added to the MasterIndex but not marked as finalized.
// Returned is the list of pack files which could not be read.
func ( r * Repository ) CreateIndexFromPacks ( ctx context . Context , packsize map [ restic . ID ] int64 , p * progress . Counter ) ( invalid restic . IDs , err error ) {
var m sync . Mutex
debug . Log ( "Loading index from pack files" )
// track spawned goroutines using wg, create a new context which is
// cancelled as soon as an error occurs.
wg , ctx := errgroup . WithContext ( ctx )
type FileInfo struct {
restic . ID
Size int64
}
ch := make ( chan FileInfo )
// send list of pack files through ch, which is closed afterwards
wg . Go ( func ( ) error {
defer close ( ch )
for id , size := range packsize {
select {
case <- ctx . Done ( ) :
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return ctx . Err ( )
2020-10-10 19:31:40 +00:00
case ch <- FileInfo { id , size } :
}
}
return nil
} )
// a worker receives an pack ID from ch, reads the pack contents, and adds them to idx
worker := func ( ) error {
for fi := range ch {
entries , _ , err := r . ListPack ( ctx , fi . ID , fi . Size )
if err != nil {
debug . Log ( "unable to list pack file %v" , fi . ID . Str ( ) )
m . Lock ( )
invalid = append ( invalid , fi . ID )
m . Unlock ( )
}
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r . idx . StorePack ( fi . ID , entries )
2020-10-10 19:31:40 +00:00
p . Add ( 1 )
}
return nil
}
2021-08-07 22:38:17 +00:00
// decoding the pack header is usually quite fast, thus we are primarily IO-bound
workerCount := int ( r . Connections ( ) )
2020-10-10 19:31:40 +00:00
// run workers on ch
2021-08-07 22:38:17 +00:00
for i := 0 ; i < workerCount ; i ++ {
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wg . Go ( worker )
}
2020-10-10 19:31:40 +00:00
err = wg . Wait ( )
if err != nil {
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return invalid , err
2020-10-10 19:31:40 +00:00
}
return invalid , nil
}
2022-06-12 12:47:30 +00:00
// prepareCache initializes the local cache. indexIDs is the list of IDs of
2018-03-31 07:50:45 +00:00
// index files still present in the repo.
2022-06-12 12:47:30 +00:00
func ( r * Repository ) prepareCache ( ) error {
2018-03-31 07:50:45 +00:00
if r . Cache == nil {
return nil
}
2021-08-16 14:00:36 +00:00
indexIDs := r . idx . IDs ( )
2018-03-31 08:02:09 +00:00
debug . Log ( "prepare cache with %d index files" , len ( indexIDs ) )
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// clear old index files
err := r . Cache . Clear ( restic . IndexFile , indexIDs )
if err != nil {
fmt . Fprintf ( os . Stderr , "error clearing index files in cache: %v\n" , err )
}
2021-08-16 14:01:11 +00:00
packs := r . idx . Packs ( restic . NewIDSet ( ) )
2017-09-24 20:54:04 +00:00
2020-08-16 09:16:38 +00:00
// clear old packs
err = r . Cache . Clear ( restic . PackFile , packs )
2018-03-31 07:50:45 +00:00
if err != nil {
2020-08-16 09:16:38 +00:00
fmt . Fprintf ( os . Stderr , "error clearing pack files in cache: %v\n" , err )
2018-03-31 07:50:45 +00:00
}
return nil
2015-04-26 15:44:38 +00:00
}
2015-05-04 18:39:45 +00:00
// SearchKey finds a key with the supplied password, afterwards the config is
2016-08-21 11:09:31 +00:00
// read and parsed. It tries at most maxKeys key files in the repo.
2018-11-25 14:10:45 +00:00
func ( r * Repository ) SearchKey ( ctx context . Context , password string , maxKeys int , keyHint string ) error {
key , err := SearchKey ( ctx , r , password , maxKeys , keyHint )
2014-12-21 17:10:19 +00:00
if err != nil {
return err
}
2024-01-21 19:38:42 +00:00
oldKey := r . key
oldKeyID := r . keyID
2015-07-02 19:52:57 +00:00
r . key = key . master
2022-10-15 14:01:38 +00:00
r . keyID = key . ID ( )
2022-04-29 21:12:43 +00:00
cfg , err := restic . LoadConfig ( ctx , r )
2024-01-21 19:38:42 +00:00
if err != nil {
r . key = oldKey
r . keyID = oldKeyID
if err == crypto . ErrUnauthenticated {
return fmt . Errorf ( "config or key %v is damaged: %w" , key . ID ( ) , err )
}
2023-05-13 20:43:42 +00:00
return fmt . Errorf ( "config cannot be loaded: %w" , err )
2018-03-09 20:05:14 +00:00
}
2022-04-29 21:12:43 +00:00
r . setConfig ( cfg )
2018-03-09 20:05:14 +00:00
return nil
2015-05-03 14:36:52 +00:00
}
2014-12-21 17:10:19 +00:00
2015-07-02 20:36:31 +00:00
// Init creates a new master key with the supplied password, initializes and
// saves the repository config.
2022-02-12 23:52:03 +00:00
func ( r * Repository ) Init ( ctx context . Context , version uint , password string , chunkerPolynomial * chunker . Pol ) error {
if version > restic . MaxRepoVersion {
2022-05-07 20:23:59 +00:00
return fmt . Errorf ( "repository version %v too high" , version )
2022-02-12 23:52:03 +00:00
}
if version < restic . MinRepoVersion {
2022-05-07 20:23:59 +00:00
return fmt . Errorf ( "repository version %v too low" , version )
2022-02-12 23:52:03 +00:00
}
2023-10-01 09:40:12 +00:00
_ , err := r . be . Stat ( ctx , backend . Handle { Type : restic . ConfigFile } )
2022-12-03 10:28:10 +00:00
if err != nil && ! r . be . IsNotExist ( err ) {
2015-05-03 15:46:18 +00:00
return err
}
2022-12-03 10:28:10 +00:00
if err == nil {
2015-05-03 15:46:18 +00:00
return errors . New ( "repository master key and config already initialized" )
}
2022-02-12 23:52:03 +00:00
cfg , err := restic . CreateConfig ( version )
2016-07-31 14:27:36 +00:00
if err != nil {
return err
}
2020-09-19 10:41:52 +00:00
if chunkerPolynomial != nil {
cfg . ChunkerPolynomial = * chunkerPolynomial
}
2016-07-31 14:27:36 +00:00
2017-06-04 09:16:55 +00:00
return r . init ( ctx , password , cfg )
2016-07-31 14:27:36 +00:00
}
// init creates a new master key with the supplied password and uses it to save
// the config into the repo.
2017-06-04 09:16:55 +00:00
func ( r * Repository ) init ( ctx context . Context , password string , cfg restic . Config ) error {
2020-04-10 09:37:39 +00:00
key , err := createMasterKey ( ctx , r , password )
2015-05-03 14:36:52 +00:00
if err != nil {
return err
}
2015-07-02 19:52:57 +00:00
r . key = key . master
2022-10-15 14:01:38 +00:00
r . keyID = key . ID ( )
2022-04-29 21:12:43 +00:00
r . setConfig ( cfg )
2022-06-12 12:38:19 +00:00
return restic . SaveConfig ( ctx , r , cfg )
2014-12-21 17:10:19 +00:00
}
2015-07-02 20:53:03 +00:00
// Key returns the current master key.
2015-07-02 19:52:57 +00:00
func ( r * Repository ) Key ( ) * crypto . Key {
return r . key
2014-12-21 17:10:19 +00:00
}
2022-10-15 14:01:38 +00:00
// KeyID returns the id of the current key in the backend.
func ( r * Repository ) KeyID ( ) restic . ID {
return r . keyID
2015-05-03 16:04:13 +00:00
}
2018-01-21 16:25:36 +00:00
// List runs fn for all files of type t in the repo.
func ( r * Repository ) List ( ctx context . Context , t restic . FileType , fn func ( restic . ID , int64 ) error ) error {
2023-10-01 09:40:12 +00:00
return r . be . List ( ctx , t , func ( fi backend . FileInfo ) error {
2018-01-21 16:25:36 +00:00
id , err := restic . ParseID ( fi . Name )
if err != nil {
debug . Log ( "unable to parse %v as an ID" , fi . Name )
2018-02-26 19:53:38 +00:00
return nil
2017-03-06 21:19:38 +00:00
}
2018-01-21 16:25:36 +00:00
return fn ( id , fi . Size )
} )
2014-12-21 16:02:49 +00:00
}
2016-08-07 19:56:42 +00:00
// ListPack returns the list of blobs saved in the pack id and the length of
2023-10-27 16:56:00 +00:00
// the pack header.
2020-11-16 03:03:45 +00:00
func ( r * Repository ) ListPack ( ctx context . Context , id restic . ID , size int64 ) ( [ ] restic . Blob , uint32 , error ) {
2023-10-01 09:40:12 +00:00
h := backend . Handle { Type : restic . PackFile , Name : id . String ( ) }
2016-08-07 19:56:42 +00:00
2024-05-10 15:05:16 +00:00
entries , hdrSize , err := pack . List ( r . Key ( ) , backend . ReaderAt ( ctx , r . be , h ) , size )
2024-05-09 13:44:27 +00:00
if err != nil {
if r . Cache != nil {
// ignore error as there is not much we can do here
_ = r . Cache . Forget ( h )
}
// retry on error
2024-05-10 15:05:16 +00:00
entries , hdrSize , err = pack . List ( r . Key ( ) , backend . ReaderAt ( ctx , r . be , h ) , size )
2024-05-09 13:44:27 +00:00
}
return entries , hdrSize , err
2016-05-08 11:51:21 +00:00
}
2015-07-02 20:53:03 +00:00
// Delete calls backend.Delete() if implemented, and returns an error
// otherwise.
2017-06-04 09:16:55 +00:00
func ( r * Repository ) Delete ( ctx context . Context ) error {
2017-10-14 13:56:38 +00:00
return r . be . Delete ( ctx )
2014-12-21 16:02:49 +00:00
}
2015-03-14 10:56:45 +00:00
2015-07-02 20:53:03 +00:00
// Close closes the repository by closing the backend.
2015-07-02 19:52:57 +00:00
func ( r * Repository ) Close ( ) error {
return r . be . Close ( )
2015-03-28 10:50:23 +00:00
}
2016-09-03 09:22:01 +00:00
2020-06-06 20:20:44 +00:00
// SaveBlob saves a blob of type t into the repository.
// It takes care that no duplicates are saved; this can be overwritten
// by setting storeDuplicate to true.
// If id is the null id, it will be computed and returned.
2022-05-01 12:26:57 +00:00
// Also returns if the blob was already known before.
// If the blob was not known before, it returns the number of bytes the blob
// occupies in the repo (compressed or not, including encryption overhead).
func ( r * Repository ) SaveBlob ( ctx context . Context , t restic . BlobType , buf [ ] byte , id restic . ID , storeDuplicate bool ) ( newID restic . ID , known bool , size int , err error ) {
2020-06-06 20:20:44 +00:00
2024-04-19 18:48:43 +00:00
if int64 ( len ( buf ) ) > math . MaxUint32 {
return restic . ID { } , false , 0 , fmt . Errorf ( "blob is larger than 4GB" )
}
2020-06-06 20:20:44 +00:00
// compute plaintext hash if not already set
if id . IsNull ( ) {
2022-09-04 08:49:16 +00:00
// Special case the hash calculation for all zero chunks. This is especially
// useful for sparse files containing large all zero regions. For these we can
// process chunks as fast as we can read the from disk.
if len ( buf ) == chunker . MinSize && restic . ZeroPrefixLen ( buf ) == chunker . MinSize {
newID = ZeroChunk ( )
} else {
newID = restic . Hash ( buf )
}
2020-06-06 20:20:44 +00:00
} else {
newID = id
}
// first try to add to pending blobs; if not successful, this blob is already known
2022-06-12 12:43:43 +00:00
known = ! r . idx . AddPending ( restic . BlobHandle { ID : newID , Type : t } )
2020-06-06 20:20:44 +00:00
2020-10-05 21:13:38 +00:00
// only save when needed or explicitly told
2020-06-06 20:20:44 +00:00
if ! known || storeDuplicate {
2022-05-01 12:26:57 +00:00
size , err = r . saveAndEncrypt ( ctx , t , buf , newID )
2016-09-03 18:55:22 +00:00
}
2020-06-06 20:20:44 +00:00
2022-05-01 12:26:57 +00:00
return newID , known , size , err
2016-09-03 18:55:22 +00:00
}
2023-12-31 11:07:19 +00:00
type backendLoadFn func ( ctx context . Context , h backend . Handle , length int , offset int64 , fn func ( rd io . Reader ) error ) error
2023-12-31 14:27:36 +00:00
type loadBlobFn func ( ctx context . Context , t restic . BlobType , id restic . ID , buf [ ] byte ) ( [ ] byte , error )
2021-08-20 21:21:05 +00:00
2024-04-22 19:12:20 +00:00
// Skip sections with more than 1MB unused blobs
const maxUnusedRange = 1 * 1024 * 1024
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// LoadBlobsFromPack loads the listed blobs from the specified pack file. The plaintext blob is passed to
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// the handleBlobFn callback or an error if decryption failed or the blob hash does not match.
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// handleBlobFn is called at most once for each blob. If the callback returns an error,
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// then LoadBlobsFromPack will abort and not retry it. The buf passed to the callback is only valid within
// this specific call. The callback must not keep a reference to buf.
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func ( r * Repository ) LoadBlobsFromPack ( ctx context . Context , packID restic . ID , blobs [ ] restic . Blob , handleBlobFn func ( blob restic . BlobHandle , buf [ ] byte , err error ) error ) error {
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return streamPack ( ctx , r . be . Load , r . LoadBlob , r . getZstdDecoder ( ) , r . key , packID , blobs , handleBlobFn )
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}
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func streamPack ( ctx context . Context , beLoad backendLoadFn , loadBlobFn loadBlobFn , dec * zstd . Decoder , key * crypto . Key , packID restic . ID , blobs [ ] restic . Blob , handleBlobFn func ( blob restic . BlobHandle , buf [ ] byte , err error ) error ) error {
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if len ( blobs ) == 0 {
// nothing to do
return nil
}
sort . Slice ( blobs , func ( i , j int ) bool {
return blobs [ i ] . Offset < blobs [ j ] . Offset
} )
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lowerIdx := 0
lastPos := blobs [ 0 ] . Offset
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const maxChunkSize = 2 * DefaultPackSize
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for i := 0 ; i < len ( blobs ) ; i ++ {
if blobs [ i ] . Offset < lastPos {
// don't wait for streamPackPart to fail
return errors . Errorf ( "overlapping blobs in pack %v" , packID )
}
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chunkSizeAfter := ( blobs [ i ] . Offset + blobs [ i ] . Length ) - blobs [ lowerIdx ] . Offset
split := false
// split if the chunk would become larger than maxChunkSize. Oversized chunks are
// handled by the requirement that the chunk contains at least one blob (i > lowerIdx)
if i > lowerIdx && chunkSizeAfter >= maxChunkSize {
split = true
}
// skip too large gaps as a new request is typically much cheaper than data transfers
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if blobs [ i ] . Offset - lastPos > maxUnusedRange {
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split = true
}
if split {
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// load everything up to the skipped file section
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err := streamPackPart ( ctx , beLoad , loadBlobFn , dec , key , packID , blobs [ lowerIdx : i ] , handleBlobFn )
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if err != nil {
return err
}
lowerIdx = i
}
lastPos = blobs [ i ] . Offset + blobs [ i ] . Length
}
// load remainder
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return streamPackPart ( ctx , beLoad , loadBlobFn , dec , key , packID , blobs [ lowerIdx : ] , handleBlobFn )
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}
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func streamPackPart ( ctx context . Context , beLoad backendLoadFn , loadBlobFn loadBlobFn , dec * zstd . Decoder , key * crypto . Key , packID restic . ID , blobs [ ] restic . Blob , handleBlobFn func ( blob restic . BlobHandle , buf [ ] byte , err error ) error ) error {
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h := backend . Handle { Type : restic . PackFile , Name : packID . String ( ) , IsMetadata : blobs [ 0 ] . Type . IsMetadata ( ) }
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dataStart := blobs [ 0 ] . Offset
dataEnd := blobs [ len ( blobs ) - 1 ] . Offset + blobs [ len ( blobs ) - 1 ] . Length
debug . Log ( "streaming pack %v (%d to %d bytes), blobs: %v" , packID , dataStart , dataEnd , len ( blobs ) )
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data := make ( [ ] byte , int ( dataEnd - dataStart ) )
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err := beLoad ( ctx , h , int ( dataEnd - dataStart ) , int64 ( dataStart ) , func ( rd io . Reader ) error {
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_ , cerr := io . ReadFull ( rd , data )
return cerr
} )
// prevent callbacks after cancellation
if ctx . Err ( ) != nil {
return ctx . Err ( )
}
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if err != nil {
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// the context is only still valid if handleBlobFn never returned an error
if loadBlobFn != nil {
// check whether we can get the remaining blobs somewhere else
for _ , entry := range blobs {
buf , ierr := loadBlobFn ( ctx , entry . Type , entry . ID , nil )
err = handleBlobFn ( entry . BlobHandle , buf , ierr )
if err != nil {
break
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}
}
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}
return errors . Wrap ( err , "StreamPack" )
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}
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it := newPackBlobIterator ( packID , newByteReader ( data ) , dataStart , blobs , key , dec )
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for {
val , err := it . Next ( )
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if err == errPackEOF {
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break
} else if err != nil {
return err
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}
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if val . Err != nil && loadBlobFn != nil {
var ierr error
// check whether we can get a valid copy somewhere else
buf , ierr := loadBlobFn ( ctx , val . Handle . Type , val . Handle . ID , nil )
if ierr == nil {
// success
val . Plaintext = buf
val . Err = nil
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}
}
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err = handleBlobFn ( val . Handle , val . Plaintext , val . Err )
if err != nil {
return err
}
// ensure that each blob is only passed once to handleBlobFn
blobs = blobs [ 1 : ]
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}
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return errors . Wrap ( err , "StreamPack" )
}
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// discardReader allows the PackBlobIterator to perform zero copy
// reads if the underlying data source is a byte slice.
type discardReader interface {
Discard ( n int ) ( discarded int , err error )
// ReadFull reads the next n bytes into a byte slice. The caller must not
// retain a reference to the byte. Modifications are only allowed within
// the boundaries of the returned slice.
ReadFull ( n int ) ( buf [ ] byte , err error )
}
type byteReader struct {
buf [ ] byte
}
func newByteReader ( buf [ ] byte ) * byteReader {
return & byteReader {
buf : buf ,
}
}
func ( b * byteReader ) Discard ( n int ) ( discarded int , err error ) {
if len ( b . buf ) < n {
return 0 , io . ErrUnexpectedEOF
}
b . buf = b . buf [ n : ]
return n , nil
}
func ( b * byteReader ) ReadFull ( n int ) ( buf [ ] byte , err error ) {
if len ( b . buf ) < n {
return nil , io . ErrUnexpectedEOF
}
buf = b . buf [ : n ]
b . buf = b . buf [ n : ]
return buf , nil
}
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type packBlobIterator struct {
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packID restic . ID
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rd discardReader
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currentOffset uint
blobs [ ] restic . Blob
key * crypto . Key
dec * zstd . Decoder
decode [ ] byte
}
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type packBlobValue struct {
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Handle restic . BlobHandle
Plaintext [ ] byte
Err error
}
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var errPackEOF = errors . New ( "reached EOF of pack file" )
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func newPackBlobIterator ( packID restic . ID , rd discardReader , currentOffset uint ,
blobs [ ] restic . Blob , key * crypto . Key , dec * zstd . Decoder ) * packBlobIterator {
return & packBlobIterator {
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packID : packID ,
rd : rd ,
currentOffset : currentOffset ,
blobs : blobs ,
key : key ,
dec : dec ,
}
}
// Next returns the next blob, an error or ErrPackEOF if all blobs were read
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func ( b * packBlobIterator ) Next ( ) ( packBlobValue , error ) {
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if len ( b . blobs ) == 0 {
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return packBlobValue { } , errPackEOF
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}
entry := b . blobs [ 0 ]
b . blobs = b . blobs [ 1 : ]
skipBytes := int ( entry . Offset - b . currentOffset )
if skipBytes < 0 {
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return packBlobValue { } , fmt . Errorf ( "overlapping blobs in pack %v" , b . packID )
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}
_ , err := b . rd . Discard ( skipBytes )
if err != nil {
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return packBlobValue { } , err
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}
b . currentOffset = entry . Offset
h := restic . BlobHandle { ID : entry . ID , Type : entry . Type }
debug . Log ( " process blob %v, skipped %d, %v" , h , skipBytes , entry )
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buf , err := b . rd . ReadFull ( int ( entry . Length ) )
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if err != nil {
debug . Log ( " read error %v" , err )
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return packBlobValue { } , fmt . Errorf ( "readFull: %w" , err )
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}
b . currentOffset = entry . Offset + entry . Length
if int ( entry . Length ) <= b . key . NonceSize ( ) {
debug . Log ( "%v" , b . blobs )
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return packBlobValue { } , fmt . Errorf ( "invalid blob length %v" , entry )
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}
// decryption errors are likely permanent, give the caller a chance to skip them
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nonce , ciphertext := buf [ : b . key . NonceSize ( ) ] , buf [ b . key . NonceSize ( ) : ]
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plaintext , err := b . key . Open ( ciphertext [ : 0 ] , nonce , ciphertext , nil )
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if err != nil {
err = fmt . Errorf ( "decrypting blob %v from %v failed: %w" , h , b . packID . Str ( ) , err )
}
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if err == nil && entry . IsCompressed ( ) {
// DecodeAll will allocate a slice if it is not large enough since it
// knows the decompressed size (because we're using EncodeAll)
b . decode , err = b . dec . DecodeAll ( plaintext , b . decode [ : 0 ] )
plaintext = b . decode
if err != nil {
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err = fmt . Errorf ( "decompressing blob %v from %v failed: %w" , h , b . packID . Str ( ) , err )
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}
}
if err == nil {
id := restic . Hash ( plaintext )
if ! id . Equal ( entry . ID ) {
debug . Log ( "read blob %v/%v from %v: wrong data returned, hash is %v" ,
h . Type , h . ID , b . packID . Str ( ) , id )
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err = fmt . Errorf ( "read blob %v from %v: wrong data returned, hash is %v" ,
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h , b . packID . Str ( ) , id )
}
}
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return packBlobValue { entry . BlobHandle , plaintext , err } , nil
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}
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var zeroChunkOnce sync . Once
var zeroChunkID restic . ID
// ZeroChunk computes and returns (cached) the ID of an all-zero chunk with size chunker.MinSize
func ZeroChunk ( ) restic . ID {
zeroChunkOnce . Do ( func ( ) {
zeroChunkID = restic . Hash ( make ( [ ] byte , chunker . MinSize ) )
} )
return zeroChunkID
}