forked from TrueCloudLab/distribution
3277d9fc74
Several requirements for storing registry data have been compiled and the backend layout has been refactored to comply. Specifically, we now store most data as blobs that are linked from repositories. All data access is traversed through repositories. Manifest updates are no longer destructive and support references by digest or tag. Signatures for manifests are now stored externally to the manifest payload to allow merging of signatures posted at different time. The design is detailed in the documentation for pathMapper. Signed-off-by: Stephen J Day <stephen.day@docker.com>
458 lines
14 KiB
Go
458 lines
14 KiB
Go
package storage
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import (
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"fmt"
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"path"
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"strings"
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"github.com/docker/distribution/digest"
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)
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const storagePathVersion = "v2"
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// pathMapper maps paths based on "object names" and their ids. The "object
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// names" mapped by pathMapper are internal to the storage system.
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//
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// The path layout in the storage backend is roughly as follows:
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//
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// <root>/v2
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// -> repositories/
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// -><name>/
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// -> manifests/
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// revisions
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// -> <manifest digest path>
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// -> link
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// -> signatures
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// <algorithm>/<digest>/link
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// tags/<tag>
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// -> current/link
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// -> index
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// -> <algorithm>/<hex digest>/link
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// -> layers/
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// <layer links to blob store>
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// -> uploads/<uuid>
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// data
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// startedat
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// -> blob/<algorithm>
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// <split directory content addressable storage>
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//
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// The storage backend layout is broken up into a content- addressable blob
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// store and repositories. The content-addressable blob store holds most data
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// throughout the backend, keyed by algorithm and digests of the underlying
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// content. Access to the blob store is controled through links from the
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// repository to blobstore.
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//
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// A repository is made up of layers, manifests and tags. The layers component
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// is just a directory of layers which are "linked" into a repository. A layer
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// can only be accessed through a qualified repository name if it is linked in
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// the repository. Uploads of layers are managed in the uploads directory,
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// which is key by upload uuid. When all data for an upload is received, the
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// data is moved into the blob store and the upload directory is deleted.
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// Abandoned uploads can be garbage collected by reading the startedat file
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// and removing uploads that have been active for longer than a certain time.
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//
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// The third component of the repository directory is the manifests store,
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// which is made up of a revision store and tag store. Manifests are stored in
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// the blob store and linked into the revision store. Signatures are separated
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// from the manifest payload data and linked into the blob store, as well.
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// While the registry can save all revisions of a manifest, no relationship is
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// implied as to the ordering of changes to a manifest. The tag store provides
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// support for name, tag lookups of manifests, using "current/link" under a
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// named tag directory. An index is maintained to support deletions of all
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// revisions of a given manifest tag.
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//
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// We cover the path formats implemented by this path mapper below.
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//
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// Manifests:
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//
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// manifestRevisionPathSpec: <root>/v2/repositories/<name>/manifests/revisions/<algorithm>/<hex digest>/
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// manifestRevisionLinkPathSpec: <root>/v2/repositories/<name>/manifests/revisions/<algorithm>/<hex digest>/link
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// manifestSignaturesPathSpec: <root>/v2/repositories/<name>/manifests/revisions/<algorithm>/<hex digest>/signatures/
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// manifestSignatureLinkPathSpec: <root>/v2/repositories/<name>/manifests/revisions/<algorithm>/<hex digest>/signatures/<algorithm>/<hex digest>/link
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//
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// Tags:
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//
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// manifestTagsPathSpec: <root>/v2/repositories/<name>/manifests/tags/
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// manifestTagPathSpec: <root>/v2/repositories/<name>/manifests/tags/<tag>/
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// manifestTagCurrentPathSpec: <root>/v2/repositories/<name>/manifests/tags/<tag>/current/link
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// manifestTagIndexPathSpec: <root>/v2/repositories/<name>/manifests/tags/<tag>/index/
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// manifestTagIndexEntryPathSpec: <root>/v2/repositories/<name>/manifests/tags/<tag>/index/<algorithm>/<hex digest>/link
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//
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// Layers:
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//
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// layerLinkPathSpec: <root>/v2/repositories/<name>/layers/tarsum/<tarsum version>/<tarsum hash alg>/<tarsum hash>/link
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//
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// Uploads:
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//
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// uploadDataPathSpec: <root>/v2/repositories/<name>/uploads/<uuid>/data
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// uploadStartedAtPathSpec: <root>/v2/repositories/<name>/uploads/<uuid>/startedat
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//
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// Blob Store:
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//
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// blobPathSpec: <root>/v2/blobs/<algorithm>/<first two hex bytes of digest>/<hex digest>
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// blobDataPathSpec: <root>/v2/blobs/<algorithm>/<first two hex bytes of digest>/<hex digest>/data
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//
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// For more information on the semantic meaning of each path and their
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// contents, please see the path spec documentation.
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type pathMapper struct {
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root string
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version string // should be a constant?
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}
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var defaultPathMapper = &pathMapper{
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root: "/docker/registry/",
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version: storagePathVersion,
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}
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// path returns the path identified by spec.
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func (pm *pathMapper) path(spec pathSpec) (string, error) {
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// Switch on the path object type and return the appropriate path. At
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// first glance, one may wonder why we don't use an interface to
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// accomplish this. By keep the formatting separate from the pathSpec, we
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// keep separate the path generation componentized. These specs could be
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// passed to a completely different mapper implementation and generate a
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// different set of paths.
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//
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// For example, imagine migrating from one backend to the other: one could
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// build a filesystem walker that converts a string path in one version,
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// to an intermediate path object, than can be consumed and mapped by the
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// other version.
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rootPrefix := []string{pm.root, pm.version}
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repoPrefix := append(rootPrefix, "repositories")
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switch v := spec.(type) {
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case manifestRevisionPathSpec:
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components, err := digestPathComponents(v.revision, false)
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if err != nil {
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return "", err
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}
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return path.Join(append(append(repoPrefix, v.name, "manifests", "revisions"), components...)...), nil
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case manifestRevisionLinkPathSpec:
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root, err := pm.path(manifestRevisionPathSpec{
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name: v.name,
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revision: v.revision,
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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 path.Join(root, "link"), nil
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case manifestSignaturesPathSpec:
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root, err := pm.path(manifestRevisionPathSpec{
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name: v.name,
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revision: v.revision,
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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 path.Join(root, "signatures"), nil
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case manifestSignatureLinkPathSpec:
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root, err := pm.path(manifestSignaturesPathSpec{
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name: v.name,
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revision: v.revision,
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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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signatureComponents, err := digestPathComponents(v.signature, false)
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if err != nil {
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return "", err
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}
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return path.Join(root, path.Join(append(signatureComponents, "link")...)), nil
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case manifestTagsPathSpec:
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return path.Join(append(repoPrefix, v.name, "manifests", "tags")...), nil
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case manifestTagPathSpec:
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root, err := pm.path(manifestTagsPathSpec{
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name: v.name,
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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 path.Join(root, v.tag), nil
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case manifestTagCurrentPathSpec:
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root, err := pm.path(manifestTagPathSpec{
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name: v.name,
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tag: v.tag,
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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 path.Join(root, "current/link"), nil
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case manifestTagIndexPathSpec:
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root, err := pm.path(manifestTagPathSpec{
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name: v.name,
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tag: v.tag,
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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 path.Join(root, "index"), nil
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case manifestTagIndexEntryPathSpec:
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root, err := pm.path(manifestTagIndexPathSpec{
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name: v.name,
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tag: v.tag,
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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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components, err := digestPathComponents(v.revision, false)
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if err != nil {
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return "", err
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}
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return path.Join(root, path.Join(append(components, "link")...)), nil
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case layerLinkPathSpec:
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components, err := digestPathComponents(v.digest, false)
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if err != nil {
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return "", err
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}
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// For now, only map tarsum paths.
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if components[0] != "tarsum" {
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// Only tarsum is supported, for now
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return "", fmt.Errorf("unsupported content digest: %v", v.digest)
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}
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layerLinkPathComponents := append(repoPrefix, v.name, "layers")
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return path.Join(path.Join(append(layerLinkPathComponents, components...)...), "link"), nil
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case blobDataPathSpec:
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components, err := digestPathComponents(v.digest, true)
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if err != nil {
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return "", err
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}
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components = append(components, "data")
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blobPathPrefix := append(rootPrefix, "blobs")
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return path.Join(append(blobPathPrefix, components...)...), nil
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case uploadDataPathSpec:
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return path.Join(append(repoPrefix, v.name, "uploads", v.uuid, "data")...), nil
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case uploadStartedAtPathSpec:
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return path.Join(append(repoPrefix, v.name, "uploads", v.uuid, "startedat")...), nil
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default:
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// TODO(sday): This is an internal error. Ensure it doesn't escape (panic?).
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return "", fmt.Errorf("unknown path spec: %#v", v)
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}
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}
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// pathSpec is a type to mark structs as path specs. There is no
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// implementation because we'd like to keep the specs and the mappers
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// decoupled.
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type pathSpec interface {
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pathSpec()
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}
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// manifestRevisionPathSpec describes the components of the directory path for
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// a manifest revision.
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type manifestRevisionPathSpec struct {
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name string
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revision digest.Digest
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}
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func (manifestRevisionPathSpec) pathSpec() {}
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// manifestRevisionLinkPathSpec describes the path components required to look
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// up the data link for a revision of a manifest. If this file is not present,
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// the manifest blob is not available in the given repo. The contents of this
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// file should just be the digest.
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type manifestRevisionLinkPathSpec struct {
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name string
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revision digest.Digest
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}
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func (manifestRevisionLinkPathSpec) pathSpec() {}
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// manifestSignaturesPathSpec decribes the path components for the directory
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// containing all the signatures for the target blob. Entries are named with
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// the underlying key id.
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type manifestSignaturesPathSpec struct {
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name string
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revision digest.Digest
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}
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func (manifestSignaturesPathSpec) pathSpec() {}
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// manifestSignatureLinkPathSpec decribes the path components used to look up
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// a signature file by the hash of its blob.
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type manifestSignatureLinkPathSpec struct {
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name string
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revision digest.Digest
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signature digest.Digest
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}
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func (manifestSignatureLinkPathSpec) pathSpec() {}
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// manifestTagsPathSpec describes the path elements required to point to the
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// manifest tags directory.
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type manifestTagsPathSpec struct {
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name string
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}
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func (manifestTagsPathSpec) pathSpec() {}
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// manifestTagPathSpec describes the path elements required to point to the
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// manifest tag links files under a repository. These contain a blob id that
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// can be used to look up the data and signatures.
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type manifestTagPathSpec struct {
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name string
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tag string
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}
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func (manifestTagPathSpec) pathSpec() {}
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// manifestTagCurrentPathSpec describes the link to the current revision for a
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// given tag.
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type manifestTagCurrentPathSpec struct {
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name string
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tag string
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}
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func (manifestTagCurrentPathSpec) pathSpec() {}
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// manifestTagCurrentPathSpec describes the link to the index of revisions
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// with the given tag.
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type manifestTagIndexPathSpec struct {
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name string
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tag string
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}
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func (manifestTagIndexPathSpec) pathSpec() {}
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// manifestTagIndexEntryPathSpec describes the link to a revisions of a
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// manifest with given tag within the index.
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type manifestTagIndexEntryPathSpec struct {
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name string
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tag string
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revision digest.Digest
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}
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func (manifestTagIndexEntryPathSpec) pathSpec() {}
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// layerLink specifies a path for a layer link, which is a file with a blob
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// id. The layer link will contain a content addressable blob id reference
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// into the blob store. The format of the contents is as follows:
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//
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// <algorithm>:<hex digest of layer data>
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//
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// The following example of the file contents is more illustrative:
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//
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// sha256:96443a84ce518ac22acb2e985eda402b58ac19ce6f91980bde63726a79d80b36
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//
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// This says indicates that there is a blob with the id/digest, calculated via
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// sha256 that can be fetched from the blob store.
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type layerLinkPathSpec struct {
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name string
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digest digest.Digest
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}
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func (layerLinkPathSpec) pathSpec() {}
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// blobAlgorithmReplacer does some very simple path sanitization for user
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// input. Mostly, this is to provide some heirachry for tarsum digests. Paths
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// should be "safe" before getting this far due to strict digest requirements
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// but we can add further path conversion here, if needed.
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var blobAlgorithmReplacer = strings.NewReplacer(
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"+", "/",
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".", "/",
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";", "/",
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)
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// // blobPathSpec contains the path for the registry global blob store.
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// type blobPathSpec struct {
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// digest digest.Digest
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// }
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// func (blobPathSpec) pathSpec() {}
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// blobDataPathSpec contains the path for the registry global blob store. For
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// now, this contains layer data, exclusively.
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type blobDataPathSpec struct {
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digest digest.Digest
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}
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func (blobDataPathSpec) pathSpec() {}
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// uploadDataPathSpec defines the path parameters of the data file for
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// uploads.
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type uploadDataPathSpec struct {
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name string
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uuid string
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}
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func (uploadDataPathSpec) pathSpec() {}
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// uploadDataPathSpec defines the path parameters for the file that stores the
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// start time of an uploads. If it is missing, the upload is considered
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// unknown. Admittedly, the presence of this file is an ugly hack to make sure
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// we have a way to cleanup old or stalled uploads that doesn't rely on driver
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// FileInfo behavior. If we come up with a more clever way to do this, we
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// should remove this file immediately and rely on the startetAt field from
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// the client to enforce time out policies.
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type uploadStartedAtPathSpec struct {
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name string
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uuid string
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}
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func (uploadStartedAtPathSpec) pathSpec() {}
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// digestPathComponents provides a consistent path breakdown for a given
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// digest. For a generic digest, it will be as follows:
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//
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// <algorithm>/<hex digest>
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//
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// Most importantly, for tarsum, the layout looks like this:
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//
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// tarsum/<version>/<digest algorithm>/<full digest>
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//
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// If multilevel is true, the first two bytes of the digest will separate
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// groups of digest folder. It will be as follows:
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//
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// <algorithm>/<first two bytes of digest>/<full digest>
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//
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func digestPathComponents(dgst digest.Digest, multilevel bool) ([]string, error) {
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if err := dgst.Validate(); err != nil {
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return nil, err
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}
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algorithm := blobAlgorithmReplacer.Replace(dgst.Algorithm())
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hex := dgst.Hex()
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prefix := []string{algorithm}
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var suffix []string
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if multilevel {
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suffix = append(suffix, hex[:2])
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}
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suffix = append(suffix, hex)
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if tsi, err := digest.ParseTarSum(dgst.String()); err == nil {
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// We have a tarsum!
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version := tsi.Version
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if version == "" {
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version = "v0"
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}
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prefix = []string{
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"tarsum",
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version,
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tsi.Algorithm,
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}
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}
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return append(prefix, suffix...), nil
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}
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