285 lines
5.9 KiB
Go
285 lines
5.9 KiB
Go
package rootfs
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import (
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"archive/tar"
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"bytes"
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"encoding/json"
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"io"
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"testing"
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"github.com/stretchr/testify/assert"
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"github.com/stretchr/testify/require"
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)
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func TestRootFS(t *testing.T) {
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layer0 := tarball{
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dir{name: "/", uid: 0},
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file{name: "/file", uid: 0, contents: bytes.NewBufferString("from 0")},
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}
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layer1 := tarball{
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file{name: "/file", uid: 1, contents: bytes.NewBufferString("from 1")},
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}
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layer2 := tarball{
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dir{name: "/", uid: 2},
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}
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tests := []struct {
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name string
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image tarball
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want []extractable
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wantErr string
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}{
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{
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name: "empty tarball",
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image: tarball{manifest{}},
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want: []extractable{},
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},
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{
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name: "missing layer",
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image: tarball{manifest{"layer0/layer.tar"}},
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wantErr: "bad or missing manifest.json",
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},
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{
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name: "basic file overwrite, layer order mixed",
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image: tarball{
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file{name: "layer1/layer.tar", contents: layer1},
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file{name: "layer0/layer.tar", contents: layer0},
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manifest{"layer0/layer.tar", "layer1/layer.tar"},
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},
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want: []extractable{
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dir{name: "/", uid: 0},
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file{name: "/file", uid: 1, contents: bytes.NewBufferString("from 1")},
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},
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},
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{
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name: "directory overwrite retains original dir",
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image: tarball{
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file{name: "layer2/layer.tar", contents: layer2},
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file{name: "layer0/layer.tar", contents: layer0},
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file{name: "layer1/layer.tar", contents: layer1},
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manifest{"layer0/layer.tar", "layer1/layer.tar", "layer2/layer.tar"},
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},
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want: []extractable{
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dir{name: "/", uid: 0},
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file{name: "/file", uid: 1, contents: bytes.NewBufferString("from 1")},
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dir{name: "/", uid: 2},
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},
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},
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{
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name: "simple whiteout",
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image: tarball{
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file{name: "layer0/layer.tar", contents: tarball{
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file{name: "filea"},
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file{name: "fileb"},
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dir{name: "dira"},
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dir{name: "dirb"},
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}},
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file{name: "layer1/layer.tar", contents: tarball{
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hardlink{name: ".wh.filea"},
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hardlink{name: ".wh.dira"},
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}},
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manifest{"layer0/layer.tar", "layer1/layer.tar"},
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},
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want: []extractable{
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file{name: "fileb"},
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dir{name: "dirb"},
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},
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},
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{
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name: "whiteout with override",
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image: tarball{
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file{name: "layer0/layer.tar", contents: tarball{
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file{name: "file", contents: bytes.NewBufferString("from 0")},
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}},
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file{name: "layer1/layer.tar", contents: tarball{
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hardlink{name: ".wh.file"},
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}},
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file{name: "layer2/layer.tar", contents: tarball{
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file{name: "file", contents: bytes.NewBufferString("from 3")},
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}},
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manifest{
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"layer0/layer.tar",
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"layer1/layer.tar",
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"layer2/layer.tar",
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},
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},
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want: []extractable{
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file{name: "file", contents: bytes.NewBufferString("from 3")},
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},
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},
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{
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name: "directories do not whiteout",
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image: tarball{
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file{name: "layer0/layer.tar", contents: tarball{
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dir{name: "dir"},
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}},
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file{name: "layer1/layer.tar", contents: tarball{
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dir{name: ".wh.dir"},
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}},
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manifest{"layer0/layer.tar", "layer1/layer.tar"},
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},
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want: []extractable{
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dir{name: "dir"},
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dir{name: ".wh.dir"},
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},
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},
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{
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name: "simple readdir whiteout",
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image: tarball{
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file{name: "layer0/layer.tar", contents: tarball{
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dir{name: "a"},
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file{name: "a/filea"},
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}},
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file{name: "layer1/layer.tar", contents: tarball{
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dir{name: "a"},
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file{name: "a/fileb"},
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hardlink{name: "a/.wh..wh..opq"},
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}},
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manifest{"layer0/layer.tar", "layer1/layer.tar"},
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},
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want: []extractable{
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dir{name: "a"},
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file{name: "a/fileb"},
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},
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},
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}
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for _, tt := range tests {
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t.Run(tt.name, func(t *testing.T) {
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in := bytes.NewReader(tt.image.Bytes())
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out := bytes.Buffer{}
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err := RootFS(in, &out)
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if tt.wantErr != "" {
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assert.EqualError(t, err, tt.wantErr)
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return
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}
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require.NoError(t, err)
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got := extract(t, &out)
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assert.Equal(t, tt.want, got)
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})
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}
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}
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// Helpers
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type tarrer interface {
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tar(*tar.Writer)
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}
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type byter interface {
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Bytes() []byte
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}
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type tarball []tarrer
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func (tb tarball) Bytes() []byte {
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buf := bytes.Buffer{}
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tw := tar.NewWriter(&buf)
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for _, member := range tb {
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member.tar(tw)
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}
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tw.Close()
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return buf.Bytes()
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}
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// extractable is an empty interface for comparing extracted outputs in tests.
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// Using that just to avoid the ugly `interface{}`.
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type extractable interface{}
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type dir struct {
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name string
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uid int
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}
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func (d dir) tar(tw *tar.Writer) {
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hdr := &tar.Header{
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Typeflag: tar.TypeDir,
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Name: d.name,
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Mode: 0644,
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Uid: d.uid,
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}
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tw.WriteHeader(hdr)
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}
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type file struct {
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name string
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uid int
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contents byter
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}
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func (f file) tar(tw *tar.Writer) {
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var contentbytes []byte
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if f.contents != nil {
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contentbytes = f.contents.Bytes()
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}
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hdr := &tar.Header{
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Typeflag: tar.TypeReg,
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Name: f.name,
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Mode: 0644,
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Uid: f.uid,
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Size: int64(len(contentbytes)),
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}
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tw.WriteHeader(hdr)
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tw.Write(contentbytes)
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}
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type manifest []string
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func (m manifest) tar(tw *tar.Writer) {
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b, err := json.Marshal(dockerManifestJSON{{Layers: m}})
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if err != nil {
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panic("testerr")
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}
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file{
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name: "manifest.json",
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uid: 0,
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contents: bytes.NewBuffer(b),
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}.tar(tw)
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}
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type hardlink struct {
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name string
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uid int
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}
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func (h hardlink) tar(tw *tar.Writer) {
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tw.WriteHeader(&tar.Header{
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Typeflag: tar.TypeLink,
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Name: h.name,
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Mode: 0644,
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Uid: h.uid,
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})
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}
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func extract(t *testing.T, r io.Reader) []extractable {
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t.Helper()
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ret := []extractable{}
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tr := tar.NewReader(r)
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for {
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hdr, err := tr.Next()
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if err == io.EOF {
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break
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}
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require.NoError(t, err)
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var elem extractable
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switch hdr.Typeflag {
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case tar.TypeDir:
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elem = dir{name: hdr.Name, uid: hdr.Uid}
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case tar.TypeReg:
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f := file{name: hdr.Name, uid: hdr.Uid}
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if hdr.Size > 0 {
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var buf bytes.Buffer
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io.Copy(&buf, tr)
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f.contents = &buf
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}
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elem = f
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}
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ret = append(ret, elem)
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}
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return ret
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}
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