mirror of https://gitea.com/gitea/tea.git
238 lines
6.0 KiB
Go
238 lines
6.0 KiB
Go
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// Package object contains implementations of all Git objects and utility
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// functions to work with them.
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package object
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import (
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"bytes"
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"errors"
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"fmt"
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"io"
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"strconv"
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"time"
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"gopkg.in/src-d/go-git.v4/plumbing"
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"gopkg.in/src-d/go-git.v4/plumbing/storer"
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)
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// ErrUnsupportedObject trigger when a non-supported object is being decoded.
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var ErrUnsupportedObject = errors.New("unsupported object type")
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// Object is a generic representation of any git object. It is implemented by
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// Commit, Tree, Blob, and Tag, and includes the functions that are common to
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// them.
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//
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// Object is returned when an object can be of any type. It is frequently used
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// with a type cast to acquire the specific type of object:
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//
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// func process(obj Object) {
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// switch o := obj.(type) {
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// case *Commit:
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// // o is a Commit
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// case *Tree:
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// // o is a Tree
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// case *Blob:
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// // o is a Blob
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// case *Tag:
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// // o is a Tag
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// }
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// }
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//
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// This interface is intentionally different from plumbing.EncodedObject, which
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// is a lower level interface used by storage implementations to read and write
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// objects in its encoded form.
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type Object interface {
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ID() plumbing.Hash
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Type() plumbing.ObjectType
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Decode(plumbing.EncodedObject) error
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Encode(plumbing.EncodedObject) error
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}
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// GetObject gets an object from an object storer and decodes it.
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func GetObject(s storer.EncodedObjectStorer, h plumbing.Hash) (Object, error) {
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o, err := s.EncodedObject(plumbing.AnyObject, h)
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if err != nil {
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return nil, err
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}
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return DecodeObject(s, o)
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}
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// DecodeObject decodes an encoded object into an Object and associates it to
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// the given object storer.
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func DecodeObject(s storer.EncodedObjectStorer, o plumbing.EncodedObject) (Object, error) {
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switch o.Type() {
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case plumbing.CommitObject:
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return DecodeCommit(s, o)
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case plumbing.TreeObject:
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return DecodeTree(s, o)
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case plumbing.BlobObject:
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return DecodeBlob(o)
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case plumbing.TagObject:
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return DecodeTag(s, o)
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default:
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return nil, plumbing.ErrInvalidType
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}
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}
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// DateFormat is the format being used in the original git implementation
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const DateFormat = "Mon Jan 02 15:04:05 2006 -0700"
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// Signature is used to identify who and when created a commit or tag.
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type Signature struct {
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// Name represents a person name. It is an arbitrary string.
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Name string
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// Email is an email, but it cannot be assumed to be well-formed.
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Email string
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// When is the timestamp of the signature.
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When time.Time
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}
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// Decode decodes a byte slice into a signature
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func (s *Signature) Decode(b []byte) {
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open := bytes.LastIndexByte(b, '<')
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close := bytes.LastIndexByte(b, '>')
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if open == -1 || close == -1 {
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return
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}
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if close < open {
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return
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}
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s.Name = string(bytes.Trim(b[:open], " "))
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s.Email = string(b[open+1 : close])
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hasTime := close+2 < len(b)
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if hasTime {
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s.decodeTimeAndTimeZone(b[close+2:])
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}
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}
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// Encode encodes a Signature into a writer.
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func (s *Signature) Encode(w io.Writer) error {
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if _, err := fmt.Fprintf(w, "%s <%s> ", s.Name, s.Email); err != nil {
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return err
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}
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if err := s.encodeTimeAndTimeZone(w); err != nil {
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return err
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}
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return nil
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}
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var timeZoneLength = 5
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func (s *Signature) decodeTimeAndTimeZone(b []byte) {
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space := bytes.IndexByte(b, ' ')
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if space == -1 {
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space = len(b)
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}
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ts, err := strconv.ParseInt(string(b[:space]), 10, 64)
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if err != nil {
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return
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}
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s.When = time.Unix(ts, 0).In(time.UTC)
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var tzStart = space + 1
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if tzStart >= len(b) || tzStart+timeZoneLength > len(b) {
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return
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}
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// Include a dummy year in this time.Parse() call to avoid a bug in Go:
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// https://github.com/golang/go/issues/19750
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//
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// Parsing the timezone with no other details causes the tl.Location() call
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// below to return time.Local instead of the parsed zone in some cases
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tl, err := time.Parse("2006 -0700", "1970 "+string(b[tzStart:tzStart+timeZoneLength]))
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if err != nil {
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return
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}
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s.When = s.When.In(tl.Location())
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}
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func (s *Signature) encodeTimeAndTimeZone(w io.Writer) error {
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u := s.When.Unix()
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if u < 0 {
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u = 0
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}
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_, err := fmt.Fprintf(w, "%d %s", u, s.When.Format("-0700"))
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return err
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}
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func (s *Signature) String() string {
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return fmt.Sprintf("%s <%s>", s.Name, s.Email)
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}
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// ObjectIter provides an iterator for a set of objects.
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type ObjectIter struct {
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storer.EncodedObjectIter
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s storer.EncodedObjectStorer
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}
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// NewObjectIter takes a storer.EncodedObjectStorer and a
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// storer.EncodedObjectIter and returns an *ObjectIter that iterates over all
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// objects contained in the storer.EncodedObjectIter.
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func NewObjectIter(s storer.EncodedObjectStorer, iter storer.EncodedObjectIter) *ObjectIter {
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return &ObjectIter{iter, s}
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}
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// Next moves the iterator to the next object and returns a pointer to it. If
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// there are no more objects, it returns io.EOF.
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func (iter *ObjectIter) Next() (Object, error) {
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for {
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obj, err := iter.EncodedObjectIter.Next()
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if err != nil {
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return nil, err
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}
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o, err := iter.toObject(obj)
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if err == plumbing.ErrInvalidType {
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continue
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}
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if err != nil {
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return nil, err
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}
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return o, nil
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}
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}
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// ForEach call the cb function for each object contained on this iter until
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// an error happens or the end of the iter is reached. If ErrStop is sent
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// the iteration is stop but no error is returned. The iterator is closed.
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func (iter *ObjectIter) ForEach(cb func(Object) error) error {
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return iter.EncodedObjectIter.ForEach(func(obj plumbing.EncodedObject) error {
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o, err := iter.toObject(obj)
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if err == plumbing.ErrInvalidType {
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return nil
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}
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if err != nil {
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return err
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}
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return cb(o)
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})
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}
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func (iter *ObjectIter) toObject(obj plumbing.EncodedObject) (Object, error) {
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switch obj.Type() {
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case plumbing.BlobObject:
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blob := &Blob{}
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return blob, blob.Decode(obj)
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case plumbing.TreeObject:
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tree := &Tree{s: iter.s}
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return tree, tree.Decode(obj)
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case plumbing.CommitObject:
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commit := &Commit{}
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return commit, commit.Decode(obj)
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case plumbing.TagObject:
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tag := &Tag{}
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return tag, tag.Decode(obj)
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default:
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return nil, plumbing.ErrInvalidType
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}
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}
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