a422774e59
Remove invalid flush commands, flush should only occur when file has been completely written. This is already handle, remove these calls. Ensure data gets written after EOF in correct order and before close. Remove gname and uname from sum for hash compatibility. Update tarsum tests for gname/uname removal. Return valid length after eof. Signed-off-by: Derek McGowan <derek@mcgstyle.net> Signed-off-by: Sebastiaan van Stijn <github@gone.nl>
301 lines
8 KiB
Go
301 lines
8 KiB
Go
// Package tarsum provides algorithms to perform checksum calculation on
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// filesystem layers.
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//
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// The transportation of filesystems, regarding Docker, is done with tar(1)
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// archives. There are a variety of tar serialization formats [2], and a key
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// concern here is ensuring a repeatable checksum given a set of inputs from a
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// generic tar archive. Types of transportation include distribution to and from a
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// registry endpoint, saving and loading through commands or Docker daemon APIs,
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// transferring the build context from client to Docker daemon, and committing the
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// filesystem of a container to become an image.
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//
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// As tar archives are used for transit, but not preserved in many situations, the
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// focus of the algorithm is to ensure the integrity of the preserved filesystem,
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// while maintaining a deterministic accountability. This includes neither
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// constraining the ordering or manipulation of the files during the creation or
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// unpacking of the archive, nor include additional metadata state about the file
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// system attributes.
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package tarsum // import "github.com/docker/docker/pkg/tarsum"
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import (
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"archive/tar"
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"bytes"
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"compress/gzip"
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"crypto"
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"crypto/sha256"
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"encoding/hex"
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"errors"
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"fmt"
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"hash"
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"io"
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"path"
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"strings"
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)
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const (
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buf8K = 8 * 1024
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buf16K = 16 * 1024
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buf32K = 32 * 1024
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)
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// NewTarSum creates a new interface for calculating a fixed time checksum of a
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// tar archive.
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//
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// This is used for calculating checksums of layers of an image, in some cases
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// including the byte payload of the image's json metadata as well, and for
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// calculating the checksums for buildcache.
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func NewTarSum(r io.Reader, dc bool, v Version) (TarSum, error) {
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return NewTarSumHash(r, dc, v, DefaultTHash)
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}
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// NewTarSumHash creates a new TarSum, providing a THash to use rather than
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// the DefaultTHash.
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func NewTarSumHash(r io.Reader, dc bool, v Version, tHash THash) (TarSum, error) {
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headerSelector, err := getTarHeaderSelector(v)
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if err != nil {
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return nil, err
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}
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ts := &tarSum{Reader: r, DisableCompression: dc, tarSumVersion: v, headerSelector: headerSelector, tHash: tHash}
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err = ts.initTarSum()
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return ts, err
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}
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// NewTarSumForLabel creates a new TarSum using the provided TarSum version+hash label.
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func NewTarSumForLabel(r io.Reader, disableCompression bool, label string) (TarSum, error) {
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parts := strings.SplitN(label, "+", 2)
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if len(parts) != 2 {
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return nil, errors.New("tarsum label string should be of the form: {tarsum_version}+{hash_name}")
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}
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versionName, hashName := parts[0], parts[1]
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version, ok := tarSumVersionsByName[versionName]
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if !ok {
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return nil, fmt.Errorf("unknown TarSum version name: %q", versionName)
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}
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hashConfig, ok := standardHashConfigs[hashName]
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if !ok {
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return nil, fmt.Errorf("unknown TarSum hash name: %q", hashName)
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}
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tHash := NewTHash(hashConfig.name, hashConfig.hash.New)
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return NewTarSumHash(r, disableCompression, version, tHash)
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}
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// TarSum is the generic interface for calculating fixed time
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// checksums of a tar archive.
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type TarSum interface {
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io.Reader
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GetSums() FileInfoSums
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Sum([]byte) string
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Version() Version
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Hash() THash
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}
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// tarSum struct is the structure for a Version0 checksum calculation.
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type tarSum struct {
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io.Reader
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tarR *tar.Reader
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tarW *tar.Writer
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writer writeCloseFlusher
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bufTar *bytes.Buffer
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bufWriter *bytes.Buffer
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bufData []byte
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h hash.Hash
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tHash THash
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sums FileInfoSums
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fileCounter int64
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currentFile string
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finished bool
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first bool
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DisableCompression bool // false by default. When false, the output gzip compressed.
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tarSumVersion Version // this field is not exported so it can not be mutated during use
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headerSelector tarHeaderSelector // handles selecting and ordering headers for files in the archive
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}
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func (ts tarSum) Hash() THash {
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return ts.tHash
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}
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func (ts tarSum) Version() Version {
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return ts.tarSumVersion
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}
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// THash provides a hash.Hash type generator and its name.
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type THash interface {
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Hash() hash.Hash
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Name() string
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}
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// NewTHash is a convenience method for creating a THash.
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func NewTHash(name string, h func() hash.Hash) THash {
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return simpleTHash{n: name, h: h}
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}
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type tHashConfig struct {
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name string
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hash crypto.Hash
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}
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var (
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// NOTE: DO NOT include MD5 or SHA1, which are considered insecure.
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standardHashConfigs = map[string]tHashConfig{
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"sha256": {name: "sha256", hash: crypto.SHA256},
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"sha512": {name: "sha512", hash: crypto.SHA512},
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}
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)
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// DefaultTHash is default TarSum hashing algorithm - "sha256".
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var DefaultTHash = NewTHash("sha256", sha256.New)
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type simpleTHash struct {
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n string
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h func() hash.Hash
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}
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func (sth simpleTHash) Name() string { return sth.n }
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func (sth simpleTHash) Hash() hash.Hash { return sth.h() }
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func (ts *tarSum) encodeHeader(h *tar.Header) error {
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for _, elem := range ts.headerSelector.selectHeaders(h) {
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// Ignore these headers to be compatible with versions
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// before go 1.10
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if elem[0] == "gname" || elem[0] == "uname" {
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elem[1] = ""
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}
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if _, err := ts.h.Write([]byte(elem[0] + elem[1])); err != nil {
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return err
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}
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}
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return nil
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}
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func (ts *tarSum) initTarSum() error {
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ts.bufTar = bytes.NewBuffer([]byte{})
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ts.bufWriter = bytes.NewBuffer([]byte{})
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ts.tarR = tar.NewReader(ts.Reader)
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ts.tarW = tar.NewWriter(ts.bufTar)
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if !ts.DisableCompression {
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ts.writer = gzip.NewWriter(ts.bufWriter)
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} else {
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ts.writer = &nopCloseFlusher{Writer: ts.bufWriter}
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}
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if ts.tHash == nil {
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ts.tHash = DefaultTHash
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}
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ts.h = ts.tHash.Hash()
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ts.h.Reset()
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ts.first = true
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ts.sums = FileInfoSums{}
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return nil
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}
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func (ts *tarSum) Read(buf []byte) (int, error) {
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if ts.finished {
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return ts.bufWriter.Read(buf)
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}
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if len(ts.bufData) < len(buf) {
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switch {
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case len(buf) <= buf8K:
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ts.bufData = make([]byte, buf8K)
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case len(buf) <= buf16K:
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ts.bufData = make([]byte, buf16K)
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case len(buf) <= buf32K:
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ts.bufData = make([]byte, buf32K)
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default:
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ts.bufData = make([]byte, len(buf))
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}
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}
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buf2 := ts.bufData[:len(buf)]
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n, err := ts.tarR.Read(buf2)
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if err != nil {
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if err == io.EOF {
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if _, err := ts.h.Write(buf2[:n]); err != nil {
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return 0, err
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}
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if !ts.first {
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ts.sums = append(ts.sums, fileInfoSum{name: ts.currentFile, sum: hex.EncodeToString(ts.h.Sum(nil)), pos: ts.fileCounter})
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ts.fileCounter++
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ts.h.Reset()
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} else {
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ts.first = false
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}
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if _, err := ts.tarW.Write(buf2[:n]); err != nil {
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return 0, err
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}
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currentHeader, err := ts.tarR.Next()
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if err != nil {
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if err == io.EOF {
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if err := ts.tarW.Close(); err != nil {
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return 0, err
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}
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if _, err := io.Copy(ts.writer, ts.bufTar); err != nil {
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return 0, err
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}
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if err := ts.writer.Close(); err != nil {
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return 0, err
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}
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ts.finished = true
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return ts.bufWriter.Read(buf)
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}
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return 0, err
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}
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ts.currentFile = path.Join(".", path.Join("/", currentHeader.Name))
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if err := ts.encodeHeader(currentHeader); err != nil {
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return 0, err
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}
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if err := ts.tarW.WriteHeader(currentHeader); err != nil {
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return 0, err
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}
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if _, err := io.Copy(ts.writer, ts.bufTar); err != nil {
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return 0, err
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}
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ts.writer.Flush()
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return ts.bufWriter.Read(buf)
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}
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return 0, err
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}
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// Filling the hash buffer
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if _, err = ts.h.Write(buf2[:n]); err != nil {
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return 0, err
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}
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// Filling the tar writer
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if _, err = ts.tarW.Write(buf2[:n]); err != nil {
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return 0, err
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}
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// Filling the output writer
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if _, err = io.Copy(ts.writer, ts.bufTar); err != nil {
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return 0, err
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}
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ts.writer.Flush()
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return ts.bufWriter.Read(buf)
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}
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func (ts *tarSum) Sum(extra []byte) string {
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ts.sums.SortBySums()
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h := ts.tHash.Hash()
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if extra != nil {
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h.Write(extra)
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}
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for _, fis := range ts.sums {
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h.Write([]byte(fis.Sum()))
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}
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checksum := ts.Version().String() + "+" + ts.tHash.Name() + ":" + hex.EncodeToString(h.Sum(nil))
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return checksum
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}
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func (ts *tarSum) GetSums() FileInfoSums {
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return ts.sums
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}
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