forked from TrueCloudLab/distribution
cf77113795
Signed-off-by: Guillaume Rose <guillaume.rose@docker.com>
487 lines
16 KiB
Go
487 lines
16 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/opencontainers/go-digest"
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)
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const (
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storagePathVersion = "v2" // fixed storage layout version
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storagePathRoot = "/docker/registry/" // all driver paths have a prefix
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// TODO(stevvooe): Get rid of the "storagePathRoot". Initially, we though
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// storage path root would configurable for all drivers through this
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// package. In reality, we've found it simpler to do this on a per driver
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// basis.
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)
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// pathFor maps paths based on "object names" and their ids. The "object
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// names" mapped by 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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// 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/<id>
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// data
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// startedat
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// hashstates/<algorithm>/<offset>
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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 controlled 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 id. 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.
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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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// manifestRevisionsPathSpec: <root>/v2/repositories/<name>/_manifests/revisions/
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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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//
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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>/
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// manifestTagIndexEntryLinkPathSpec: <root>/v2/repositories/<name>/_manifests/tags/<tag>/index/<algorithm>/<hex digest>/link
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//
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// Blobs:
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//
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// layerLinkPathSpec: <root>/v2/repositories/<name>/_layers/<algorithm>/<hex digest>/link
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// layersPathSpec: <root>/v2/repositories/<name>/_layers
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//
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// Uploads:
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//
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// uploadDataPathSpec: <root>/v2/repositories/<name>/_uploads/<id>/data
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// uploadStartedAtPathSpec: <root>/v2/repositories/<name>/_uploads/<id>/startedat
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// uploadHashStatePathSpec: <root>/v2/repositories/<name>/_uploads/<id>/hashstates/<algorithm>/<offset>
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//
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// Blob Store:
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//
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// blobsPathSpec: <root>/v2/blobs/
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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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// blobMediaTypePathSpec: <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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func pathFor(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{storagePathRoot, storagePathVersion}
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repoPrefix := append(rootPrefix, "repositories")
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switch v := spec.(type) {
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case manifestRevisionsPathSpec:
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return path.Join(append(repoPrefix, v.name, "_manifests", "revisions")...), nil
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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 := pathFor(manifestRevisionPathSpec(v))
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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 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 := pathFor(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 := pathFor(manifestTagPathSpec(v))
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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 := pathFor(manifestTagPathSpec(v))
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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 manifestTagIndexEntryLinkPathSpec:
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root, err := pathFor(manifestTagIndexEntryPathSpec(v))
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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 manifestTagIndexEntryPathSpec:
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root, err := pathFor(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(components...)), 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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// TODO(stevvooe): Right now, all blobs are linked under "_layers". If
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// we have future migrations, we may want to rename this to "_blobs".
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// A migration strategy would simply leave existing items in place and
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// write the new paths, commit a file then delete the old files.
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blobLinkPathComponents := append(repoPrefix, v.name, "_layers")
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return path.Join(path.Join(append(blobLinkPathComponents, components...)...), "link"), nil
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case layersPathSpec:
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return append(repoPrefix, v.repo, "_layers")
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case blobsPathSpec:
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blobsPathPrefix := append(rootPrefix, "blobs")
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return path.Join(blobsPathPrefix...), nil
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case blobPathSpec:
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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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blobPathPrefix := append(rootPrefix, "blobs")
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return path.Join(append(blobPathPrefix, components...)...), 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.id, "data")...), nil
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case uploadStartedAtPathSpec:
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return path.Join(append(repoPrefix, v.name, "_uploads", v.id, "startedat")...), nil
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case uploadHashStatePathSpec:
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offset := fmt.Sprintf("%d", v.offset)
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if v.list {
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offset = "" // Limit to the prefix for listing offsets.
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}
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return path.Join(append(repoPrefix, v.name, "_uploads", v.id, "hashstates", string(v.alg), offset)...), nil
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case repositoriesRootPathSpec:
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return path.Join(repoPrefix...), 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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// manifestRevisionsPathSpec describes the directory path for
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// a manifest revision.
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type manifestRevisionsPathSpec struct {
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name string
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}
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func (manifestRevisionsPathSpec) pathSpec() {}
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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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// 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 contains the entries of the index by revision.
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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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// manifestTagIndexEntryLinkPathSpec describes the link to a revisions of a
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// manifest with given tag within the index.
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type manifestTagIndexEntryLinkPathSpec 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 (manifestTagIndexEntryLinkPathSpec) pathSpec() {}
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// layersPathSpec contains the path for the layers inside a repo
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type layersPathSpec struct {
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repo string
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}
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func (layersPathSpec) pathSpec() {}
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// blobLinkPathSpec specifies a path for a blob link, which is a file with a
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// blob id. The blob 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 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. Paths should be "safe" before getting this far due to strict digest
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// requirements 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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// blobsPathSpec contains the path for the blobs directory
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type blobsPathSpec struct{}
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func (blobsPathSpec) pathSpec() {}
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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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id 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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id string
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}
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func (uploadStartedAtPathSpec) pathSpec() {}
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// uploadHashStatePathSpec defines the path parameters for the file that stores
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// the hash function state of an upload at a specific byte offset. If `list` is
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// set, then the path mapper will generate a list prefix for all hash state
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// offsets for the upload identified by the name, id, and alg.
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type uploadHashStatePathSpec struct {
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name string
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id string
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alg digest.Algorithm
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offset int64
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list bool
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}
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func (uploadHashStatePathSpec) pathSpec() {}
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// repositoriesRootPathSpec returns the root of repositories
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type repositoriesRootPathSpec struct {
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}
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func (repositoriesRootPathSpec) 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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// 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(string(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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return append(prefix, suffix...), nil
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}
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// Reconstructs a digest from a path
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func digestFromPath(digestPath string) (digest.Digest, error) {
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digestPath = strings.TrimSuffix(digestPath, "/data")
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dir, hex := path.Split(digestPath)
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dir = path.Dir(dir)
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dir, next := path.Split(dir)
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// next is either the algorithm OR the first two characters in the hex string
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var algo string
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if next == hex[:2] {
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algo = path.Base(dir)
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} else {
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algo = next
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}
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dgst := digest.NewDigestFromHex(algo, hex)
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return dgst, dgst.Validate()
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}
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