2018-02-05 16:05:59 -05:00
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package containerfs // import "github.com/docker/docker/pkg/containerfs"
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2017-08-03 20:22:00 -04:00
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import (
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"archive/tar"
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"fmt"
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"io"
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"os"
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"path/filepath"
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2018-04-02 13:48:34 -04:00
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"time"
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2017-08-03 20:22:00 -04:00
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"github.com/docker/docker/pkg/archive"
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"github.com/docker/docker/pkg/idtools"
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"github.com/docker/docker/pkg/system"
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"github.com/sirupsen/logrus"
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)
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// TarFunc provides a function definition for a custom Tar function
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type TarFunc func(string, *archive.TarOptions) (io.ReadCloser, error)
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// UntarFunc provides a function definition for a custom Untar function
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type UntarFunc func(io.Reader, string, *archive.TarOptions) error
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// Archiver provides a similar implementation of the archive.Archiver package with the rootfs abstraction
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type Archiver struct {
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SrcDriver Driver
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DstDriver Driver
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Tar TarFunc
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Untar UntarFunc
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IDMapping *idtools.IdentityMapping
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}
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// TarUntar is a convenience function which calls Tar and Untar, with the output of one piped into the other.
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// If either Tar or Untar fails, TarUntar aborts and returns the error.
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func (archiver *Archiver) TarUntar(src, dst string) error {
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logrus.Debugf("TarUntar(%s %s)", src, dst)
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tarArchive, err := archiver.Tar(src, &archive.TarOptions{Compression: archive.Uncompressed})
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if err != nil {
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return err
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}
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defer tarArchive.Close()
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options := &archive.TarOptions{
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UIDMaps: archiver.IDMapping.UIDs(),
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GIDMaps: archiver.IDMapping.GIDs(),
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}
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return archiver.Untar(tarArchive, dst, options)
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}
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// UntarPath untar a file from path to a destination, src is the source tar file path.
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func (archiver *Archiver) UntarPath(src, dst string) error {
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tarArchive, err := archiver.SrcDriver.Open(src)
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if err != nil {
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return err
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}
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defer tarArchive.Close()
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options := &archive.TarOptions{
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UIDMaps: archiver.IDMapping.UIDs(),
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GIDMaps: archiver.IDMapping.GIDs(),
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}
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return archiver.Untar(tarArchive, dst, options)
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}
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// CopyWithTar creates a tar archive of filesystem path `src`, and
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// unpacks it at filesystem path `dst`.
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// The archive is streamed directly with fixed buffering and no
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// intermediary disk IO.
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func (archiver *Archiver) CopyWithTar(src, dst string) error {
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srcSt, err := archiver.SrcDriver.Stat(src)
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if err != nil {
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return err
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}
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if !srcSt.IsDir() {
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return archiver.CopyFileWithTar(src, dst)
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}
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// if this archiver is set up with ID mapping we need to create
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// the new destination directory with the remapped root UID/GID pair
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// as owner
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identity := idtools.Identity{UID: archiver.IDMapping.RootPair().UID, GID: archiver.IDMapping.RootPair().GID}
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// Create dst, copy src's content into it
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if err := idtools.MkdirAllAndChownNew(dst, 0755, identity); err != nil {
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return err
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}
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logrus.Debugf("Calling TarUntar(%s, %s)", src, dst)
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return archiver.TarUntar(src, dst)
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}
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// CopyFileWithTar emulates the behavior of the 'cp' command-line
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// for a single file. It copies a regular file from path `src` to
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// path `dst`, and preserves all its metadata.
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func (archiver *Archiver) CopyFileWithTar(src, dst string) (retErr error) {
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logrus.Debugf("CopyFileWithTar(%s, %s)", src, dst)
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srcDriver := archiver.SrcDriver
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dstDriver := archiver.DstDriver
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srcSt, retErr := srcDriver.Stat(src)
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if retErr != nil {
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return retErr
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}
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if srcSt.IsDir() {
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return fmt.Errorf("Can't copy a directory")
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}
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// Clean up the trailing slash. This must be done in an operating
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// system specific manner.
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if dst[len(dst)-1] == dstDriver.Separator() {
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dst = dstDriver.Join(dst, srcDriver.Base(src))
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}
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// The original call was system.MkdirAll, which is just
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// os.MkdirAll on not-Windows and changed for Windows.
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if dstDriver.OS() == "windows" {
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// Now we are WCOW
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if err := system.MkdirAll(filepath.Dir(dst), 0700); err != nil {
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return err
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}
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} else {
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// We can just use the driver.MkdirAll function
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if err := dstDriver.MkdirAll(dstDriver.Dir(dst), 0700); err != nil {
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return err
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}
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}
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r, w := io.Pipe()
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errC := make(chan error, 1)
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go func() {
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defer close(errC)
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errC <- func() error {
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defer w.Close()
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srcF, err := srcDriver.Open(src)
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if err != nil {
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return err
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}
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defer srcF.Close()
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hdr, err := tar.FileInfoHeader(srcSt, "")
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if err != nil {
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return err
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}
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hdr.Format = tar.FormatPAX
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hdr.ModTime = hdr.ModTime.Truncate(time.Second)
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hdr.AccessTime = time.Time{}
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hdr.ChangeTime = time.Time{}
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hdr.Name = dstDriver.Base(dst)
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if dstDriver.OS() == "windows" {
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hdr.Mode = int64(chmodTarEntry(os.FileMode(hdr.Mode)))
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} else {
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hdr.Mode = int64(os.FileMode(hdr.Mode))
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}
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2017-11-16 01:20:33 -05:00
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if err := remapIDs(archiver.IDMapping, hdr); err != nil {
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return err
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}
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tw := tar.NewWriter(w)
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defer tw.Close()
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if err := tw.WriteHeader(hdr); err != nil {
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return err
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}
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if _, err := io.Copy(tw, srcF); 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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}()
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defer func() {
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if err := <-errC; retErr == nil && err != nil {
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retErr = err
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}
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}()
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retErr = archiver.Untar(r, dstDriver.Dir(dst), nil)
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if retErr != nil {
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r.CloseWithError(retErr)
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}
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return retErr
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}
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// IdentityMapping returns the IdentityMapping of the archiver.
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func (archiver *Archiver) IdentityMapping() *idtools.IdentityMapping {
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return archiver.IDMapping
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}
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func remapIDs(idMapping *idtools.IdentityMapping, hdr *tar.Header) error {
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ids, err := idMapping.ToHost(idtools.Identity{UID: hdr.Uid, GID: hdr.Gid})
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hdr.Uid, hdr.Gid = ids.UID, ids.GID
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return err
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}
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// chmodTarEntry is used to adjust the file permissions used in tar header based
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// on the platform the archival is done.
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func chmodTarEntry(perm os.FileMode) os.FileMode {
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// perm &= 0755 // this 0-ed out tar flags (like link, regular file, directory marker etc.)
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permPart := perm & os.ModePerm
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noPermPart := perm &^ os.ModePerm
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// Add the x bit: make everything +x from windows
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permPart |= 0111
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permPart &= 0755
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return noPermPart | permPart
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}
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