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7a85579917
The `digest` data type, used throughout docker for image verification and identity, has been broken out into `opencontainers/go-digest`. This PR updates the dependencies and moves uses over to the new type. Signed-off-by: Stephen J Day <stephen.day@docker.com>
286 lines
7.5 KiB
Go
286 lines
7.5 KiB
Go
package reference
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import (
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"encoding/json"
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"errors"
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"fmt"
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"os"
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"path/filepath"
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"sort"
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"sync"
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"github.com/docker/docker/pkg/ioutils"
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"github.com/opencontainers/go-digest"
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)
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var (
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// ErrDoesNotExist is returned if a reference is not found in the
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// store.
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ErrDoesNotExist = errors.New("reference does not exist")
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)
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// An Association is a tuple associating a reference with an image ID.
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type Association struct {
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Ref Named
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ID digest.Digest
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}
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// Store provides the set of methods which can operate on a tag store.
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type Store interface {
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References(id digest.Digest) []Named
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ReferencesByName(ref Named) []Association
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AddTag(ref Named, id digest.Digest, force bool) error
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AddDigest(ref Canonical, id digest.Digest, force bool) error
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Delete(ref Named) (bool, error)
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Get(ref Named) (digest.Digest, error)
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}
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type store struct {
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mu sync.RWMutex
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// jsonPath is the path to the file where the serialized tag data is
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// stored.
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jsonPath string
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// Repositories is a map of repositories, indexed by name.
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Repositories map[string]repository
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// referencesByIDCache is a cache of references indexed by ID, to speed
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// up References.
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referencesByIDCache map[digest.Digest]map[string]Named
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}
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// Repository maps tags to digests. The key is a stringified Reference,
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// including the repository name.
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type repository map[string]digest.Digest
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type lexicalRefs []Named
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func (a lexicalRefs) Len() int { return len(a) }
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func (a lexicalRefs) Swap(i, j int) { a[i], a[j] = a[j], a[i] }
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func (a lexicalRefs) Less(i, j int) bool { return a[i].String() < a[j].String() }
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type lexicalAssociations []Association
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func (a lexicalAssociations) Len() int { return len(a) }
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func (a lexicalAssociations) Swap(i, j int) { a[i], a[j] = a[j], a[i] }
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func (a lexicalAssociations) Less(i, j int) bool { return a[i].Ref.String() < a[j].Ref.String() }
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// NewReferenceStore creates a new reference store, tied to a file path where
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// the set of references are serialized in JSON format.
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func NewReferenceStore(jsonPath string) (Store, error) {
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abspath, err := filepath.Abs(jsonPath)
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if err != nil {
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return nil, err
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}
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store := &store{
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jsonPath: abspath,
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Repositories: make(map[string]repository),
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referencesByIDCache: make(map[digest.Digest]map[string]Named),
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}
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// Load the json file if it exists, otherwise create it.
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if err := store.reload(); os.IsNotExist(err) {
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if err := store.save(); err != nil {
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return nil, err
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}
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} else if err != nil {
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return nil, err
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}
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return store, nil
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}
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// AddTag adds a tag reference to the store. If force is set to true, existing
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// references can be overwritten. This only works for tags, not digests.
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func (store *store) AddTag(ref Named, id digest.Digest, force bool) error {
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if _, isCanonical := ref.(Canonical); isCanonical {
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return errors.New("refusing to create a tag with a digest reference")
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}
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return store.addReference(WithDefaultTag(ref), id, force)
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}
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// AddDigest adds a digest reference to the store.
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func (store *store) AddDigest(ref Canonical, id digest.Digest, force bool) error {
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return store.addReference(ref, id, force)
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}
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func (store *store) addReference(ref Named, id digest.Digest, force bool) error {
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if ref.Name() == string(digest.Canonical) {
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return errors.New("refusing to create an ambiguous tag using digest algorithm as name")
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}
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store.mu.Lock()
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defer store.mu.Unlock()
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repository, exists := store.Repositories[ref.Name()]
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if !exists || repository == nil {
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repository = make(map[string]digest.Digest)
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store.Repositories[ref.Name()] = repository
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}
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refStr := ref.String()
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oldID, exists := repository[refStr]
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if exists {
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// force only works for tags
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if digested, isDigest := ref.(Canonical); isDigest {
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return fmt.Errorf("Cannot overwrite digest %s", digested.Digest().String())
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}
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if !force {
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return fmt.Errorf("Conflict: Tag %s is already set to image %s, if you want to replace it, please use -f option", ref.String(), oldID.String())
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}
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if store.referencesByIDCache[oldID] != nil {
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delete(store.referencesByIDCache[oldID], refStr)
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if len(store.referencesByIDCache[oldID]) == 0 {
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delete(store.referencesByIDCache, oldID)
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}
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}
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}
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repository[refStr] = id
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if store.referencesByIDCache[id] == nil {
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store.referencesByIDCache[id] = make(map[string]Named)
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}
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store.referencesByIDCache[id][refStr] = ref
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return store.save()
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}
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// Delete deletes a reference from the store. It returns true if a deletion
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// happened, or false otherwise.
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func (store *store) Delete(ref Named) (bool, error) {
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ref = WithDefaultTag(ref)
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store.mu.Lock()
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defer store.mu.Unlock()
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repoName := ref.Name()
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repository, exists := store.Repositories[repoName]
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if !exists {
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return false, ErrDoesNotExist
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}
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refStr := ref.String()
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if id, exists := repository[refStr]; exists {
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delete(repository, refStr)
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if len(repository) == 0 {
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delete(store.Repositories, repoName)
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}
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if store.referencesByIDCache[id] != nil {
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delete(store.referencesByIDCache[id], refStr)
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if len(store.referencesByIDCache[id]) == 0 {
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delete(store.referencesByIDCache, id)
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}
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}
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return true, store.save()
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}
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return false, ErrDoesNotExist
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}
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// Get retrieves an item from the store by reference
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func (store *store) Get(ref Named) (digest.Digest, error) {
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ref = WithDefaultTag(ref)
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store.mu.RLock()
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defer store.mu.RUnlock()
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repository, exists := store.Repositories[ref.Name()]
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if !exists || repository == nil {
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return "", ErrDoesNotExist
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}
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id, exists := repository[ref.String()]
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if !exists {
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return "", ErrDoesNotExist
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}
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return id, nil
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}
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// References returns a slice of references to the given ID. The slice
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// will be nil if there are no references to this ID.
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func (store *store) References(id digest.Digest) []Named {
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store.mu.RLock()
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defer store.mu.RUnlock()
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// Convert the internal map to an array for two reasons:
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// 1) We must not return a mutable
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// 2) It would be ugly to expose the extraneous map keys to callers.
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var references []Named
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for _, ref := range store.referencesByIDCache[id] {
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references = append(references, ref)
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}
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sort.Sort(lexicalRefs(references))
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return references
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}
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// ReferencesByName returns the references for a given repository name.
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// If there are no references known for this repository name,
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// ReferencesByName returns nil.
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func (store *store) ReferencesByName(ref Named) []Association {
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store.mu.RLock()
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defer store.mu.RUnlock()
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repository, exists := store.Repositories[ref.Name()]
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if !exists {
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return nil
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}
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var associations []Association
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for refStr, refID := range repository {
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ref, err := ParseNamed(refStr)
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if err != nil {
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// Should never happen
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return nil
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}
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associations = append(associations,
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Association{
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Ref: ref,
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ID: refID,
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})
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}
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sort.Sort(lexicalAssociations(associations))
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return associations
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}
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func (store *store) save() error {
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// Store the json
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jsonData, err := json.Marshal(store)
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if err != nil {
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return err
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}
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return ioutils.AtomicWriteFile(store.jsonPath, jsonData, 0600)
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}
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func (store *store) reload() error {
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f, err := os.Open(store.jsonPath)
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if err != nil {
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return err
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}
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defer f.Close()
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if err := json.NewDecoder(f).Decode(&store); err != nil {
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return err
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}
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for _, repository := range store.Repositories {
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for refStr, refID := range repository {
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ref, err := ParseNamed(refStr)
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if err != nil {
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// Should never happen
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continue
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}
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if store.referencesByIDCache[refID] == nil {
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store.referencesByIDCache[refID] = make(map[string]Named)
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}
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store.referencesByIDCache[refID][refStr] = ref
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}
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}
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return nil
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}
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