mirror of
https://github.com/MichaelMure/git-bug.git
synced 2024-12-14 17:51:44 +03:00
578 lines
15 KiB
Go
578 lines
15 KiB
Go
// Package identity contains the identity data model and low-level related functions
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package identity
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import (
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"encoding/json"
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"fmt"
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"os"
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"strings"
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"time"
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"github.com/pkg/errors"
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"github.com/MichaelMure/git-bug/repository"
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"github.com/MichaelMure/git-bug/util/git"
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"github.com/MichaelMure/git-bug/util/lamport"
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)
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const identityRefPattern = "refs/identities/"
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const identityRemoteRefPattern = "refs/remotes/%s/identities/"
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const versionEntryName = "version"
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const identityConfigKey = "git-bug.identity"
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const idLength = 40
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const humanIdLength = 7
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var ErrNonFastForwardMerge = errors.New("non fast-forward identity merge")
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var ErrNoIdentitySet = errors.New("user identity first needs to be created using \"git bug user create\"")
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var ErrMultipleIdentitiesSet = errors.New("multiple user identities set")
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var _ Interface = &Identity{}
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type Identity struct {
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// Id used as unique identifier
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id string
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lastCommit git.Hash
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// all the successive version of the identity
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versions []*Version
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}
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func NewIdentity(name string, email string) *Identity {
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return &Identity{
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versions: []*Version{
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{
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name: name,
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email: email,
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nonce: makeNonce(20),
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},
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},
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}
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}
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func NewIdentityFull(name string, email string, login string, avatarUrl string) *Identity {
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return &Identity{
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versions: []*Version{
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{
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name: name,
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email: email,
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login: login,
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avatarURL: avatarUrl,
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nonce: makeNonce(20),
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},
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},
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}
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}
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// MarshalJSON will only serialize the id
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func (i *Identity) MarshalJSON() ([]byte, error) {
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return json.Marshal(&IdentityStub{
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id: i.Id(),
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})
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}
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// UnmarshalJSON will only read the id
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// Users of this package are expected to run Load() to load
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// the remaining data from the identities data in git.
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func (i *Identity) UnmarshalJSON(data []byte) error {
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panic("identity should be loaded with identity.UnmarshalJSON")
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}
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// ReadLocal load a local Identity from the identities data available in git
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func ReadLocal(repo repository.Repo, id string) (*Identity, error) {
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ref := fmt.Sprintf("%s%s", identityRefPattern, id)
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return read(repo, ref)
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}
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// ReadRemote load a remote Identity from the identities data available in git
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func ReadRemote(repo repository.Repo, remote string, id string) (*Identity, error) {
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ref := fmt.Sprintf(identityRemoteRefPattern, remote) + id
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return read(repo, ref)
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}
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// read will load and parse an identity from git
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func read(repo repository.Repo, ref string) (*Identity, error) {
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refSplit := strings.Split(ref, "/")
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id := refSplit[len(refSplit)-1]
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if len(id) != idLength {
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return nil, fmt.Errorf("invalid ref length")
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}
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hashes, err := repo.ListCommits(ref)
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// TODO: this is not perfect, it might be a command invoke error
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if err != nil {
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return nil, ErrIdentityNotExist
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}
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i := &Identity{
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id: id,
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}
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for _, hash := range hashes {
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entries, err := repo.ListEntries(hash)
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if err != nil {
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return nil, errors.Wrap(err, "can't list git tree entries")
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}
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if len(entries) != 1 {
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return nil, fmt.Errorf("invalid identity data at hash %s", hash)
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}
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entry := entries[0]
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if entry.Name != versionEntryName {
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return nil, fmt.Errorf("invalid identity data at hash %s", hash)
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}
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data, err := repo.ReadData(entry.Hash)
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if err != nil {
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return nil, errors.Wrap(err, "failed to read git blob data")
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}
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var version Version
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err = json.Unmarshal(data, &version)
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if err != nil {
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return nil, errors.Wrapf(err, "failed to decode Identity version json %s", hash)
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}
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// tag the version with the commit hash
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version.commitHash = hash
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i.lastCommit = hash
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i.versions = append(i.versions, &version)
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}
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return i, nil
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}
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type StreamedIdentity struct {
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Identity *Identity
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Err error
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}
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// ReadAllLocalIdentities read and parse all local Identity
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func ReadAllLocalIdentities(repo repository.ClockedRepo) <-chan StreamedIdentity {
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return readAllIdentities(repo, identityRefPattern)
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}
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// ReadAllRemoteIdentities read and parse all remote Identity for a given remote
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func ReadAllRemoteIdentities(repo repository.ClockedRepo, remote string) <-chan StreamedIdentity {
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refPrefix := fmt.Sprintf(identityRemoteRefPattern, remote)
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return readAllIdentities(repo, refPrefix)
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}
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// Read and parse all available bug with a given ref prefix
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func readAllIdentities(repo repository.ClockedRepo, refPrefix string) <-chan StreamedIdentity {
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out := make(chan StreamedIdentity)
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go func() {
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defer close(out)
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refs, err := repo.ListRefs(refPrefix)
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if err != nil {
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out <- StreamedIdentity{Err: err}
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return
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}
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for _, ref := range refs {
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b, err := read(repo, ref)
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if err != nil {
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out <- StreamedIdentity{Err: err}
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return
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}
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out <- StreamedIdentity{Identity: b}
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}
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}()
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return out
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}
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// NewFromGitUser will query the repository for user detail and
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// build the corresponding Identity
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func NewFromGitUser(repo repository.Repo) (*Identity, error) {
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name, err := repo.GetUserName()
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if err != nil {
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return nil, err
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}
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if name == "" {
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return nil, errors.New("user name is not configured in git yet. Please use `git config --global user.name \"John Doe\"`")
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}
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email, err := repo.GetUserEmail()
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if err != nil {
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return nil, err
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}
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if email == "" {
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return nil, errors.New("user name is not configured in git yet. Please use `git config --global user.email johndoe@example.com`")
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}
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return NewIdentity(name, email), nil
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}
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// IsUserIdentitySet tell if the user identity is correctly set.
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func IsUserIdentitySet(repo repository.RepoCommon) (bool, error) {
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configs, err := repo.ReadConfigs(identityConfigKey)
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if err != nil {
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return false, err
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}
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if len(configs) > 1 {
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return false, ErrMultipleIdentitiesSet
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}
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return len(configs) == 1, nil
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}
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// SetUserIdentity store the user identity's id in the git config
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func SetUserIdentity(repo repository.RepoCommon, identity *Identity) error {
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return repo.StoreConfig(identityConfigKey, identity.Id())
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}
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// GetUserIdentity read the current user identity, set with a git config entry
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func GetUserIdentity(repo repository.Repo) (*Identity, error) {
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configs, err := repo.ReadConfigs(identityConfigKey)
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if err != nil {
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return nil, err
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}
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if len(configs) == 0 {
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return nil, ErrNoIdentitySet
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}
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if len(configs) > 1 {
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return nil, ErrMultipleIdentitiesSet
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}
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var id string
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for _, val := range configs {
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id = val
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}
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i, err := ReadLocal(repo, id)
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if err == ErrIdentityNotExist {
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innerErr := repo.RmConfigs(identityConfigKey)
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if innerErr != nil {
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_, _ = fmt.Fprintln(os.Stderr, errors.Wrap(innerErr, "can't clear user identity").Error())
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}
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return nil, err
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}
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return i, nil
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}
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func (i *Identity) AddVersion(version *Version) {
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i.versions = append(i.versions, version)
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}
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// Write the identity into the Repository. In particular, this ensure that
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// the Id is properly set.
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func (i *Identity) Commit(repo repository.ClockedRepo) error {
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// Todo: check for mismatch between memory and commit data
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if !i.NeedCommit() {
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return fmt.Errorf("can't commit an identity with no pending version")
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}
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if err := i.Validate(); err != nil {
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return errors.Wrap(err, "can't commit an identity with invalid data")
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}
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for _, v := range i.versions {
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if v.commitHash != "" {
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i.lastCommit = v.commitHash
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// ignore already commit versions
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continue
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}
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// get the times where new versions starts to be valid
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v.time = repo.EditTime()
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v.unixTime = time.Now().Unix()
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blobHash, err := v.Write(repo)
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if err != nil {
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return err
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}
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// Make a git tree referencing the blob
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tree := []repository.TreeEntry{
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{ObjectType: repository.Blob, Hash: blobHash, Name: versionEntryName},
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}
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treeHash, err := repo.StoreTree(tree)
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if err != nil {
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return err
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}
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var commitHash git.Hash
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if i.lastCommit != "" {
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commitHash, err = repo.StoreCommitWithParent(treeHash, i.lastCommit)
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} else {
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commitHash, err = repo.StoreCommit(treeHash)
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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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i.lastCommit = commitHash
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v.commitHash = commitHash
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// if it was the first commit, use the commit hash as the Identity id
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if i.id == "" {
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i.id = string(commitHash)
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}
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}
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if i.id == "" {
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panic("identity with no id")
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}
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ref := fmt.Sprintf("%s%s", identityRefPattern, i.id)
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err := repo.UpdateRef(ref, i.lastCommit)
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if err != nil {
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return err
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}
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return nil
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}
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func (i *Identity) CommitAsNeeded(repo repository.ClockedRepo) error {
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if !i.NeedCommit() {
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return nil
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}
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return i.Commit(repo)
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}
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func (i *Identity) NeedCommit() bool {
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for _, v := range i.versions {
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if v.commitHash == "" {
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return true
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}
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}
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return false
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}
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// Merge will merge a different version of the same Identity
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//
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// To make sure that an Identity history can't be altered, a strict fast-forward
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// only policy is applied here. As an Identity should be tied to a single user, this
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// should work in practice but it does leave a possibility that a user would edit his
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// Identity from two different repo concurrently and push the changes in a non-centralized
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// network of repositories. In this case, it would result in some of the repo accepting one
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// version and some other accepting another, preventing the network in general to converge
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// to the same result. This would create a sort of partition of the network, and manual
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// cleaning would be required.
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//
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// An alternative approach would be to have a determinist rebase:
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// - any commits present in both local and remote version would be kept, never changed.
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// - newer commits would be merged in a linear chain of commits, ordered based on the
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// Lamport time
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//
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// However, this approach leave the possibility, in the case of a compromised crypto keys,
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// of forging a new version with a bogus Lamport time to be inserted before a legit version,
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// invalidating the correct version and hijacking the Identity. There would only be a short
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// period of time where this would be possible (before the network converge) but I'm not
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// confident enough to implement that. I choose the strict fast-forward only approach,
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// despite it's potential problem with two different version as mentioned above.
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func (i *Identity) Merge(repo repository.Repo, other *Identity) (bool, error) {
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if i.id != other.id {
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return false, errors.New("merging unrelated identities is not supported")
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}
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if i.lastCommit == "" || other.lastCommit == "" {
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return false, errors.New("can't merge identities that has never been stored")
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}
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/*ancestor, err := repo.FindCommonAncestor(i.lastCommit, other.lastCommit)
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if err != nil {
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return false, errors.Wrap(err, "can't find common ancestor")
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}*/
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modified := false
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for j, otherVersion := range other.versions {
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// if there is more version in other, take them
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if len(i.versions) == j {
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i.versions = append(i.versions, otherVersion)
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i.lastCommit = otherVersion.commitHash
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modified = true
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}
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// we have a non fast-forward merge.
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// as explained in the doc above, refusing to merge
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if i.versions[j].commitHash != otherVersion.commitHash {
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return false, ErrNonFastForwardMerge
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}
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}
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if modified {
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err := repo.UpdateRef(identityRefPattern+i.id, i.lastCommit)
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if err != nil {
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return false, err
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}
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}
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return false, nil
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}
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// Validate check if the Identity data is valid
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func (i *Identity) Validate() error {
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lastTime := lamport.Time(0)
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if len(i.versions) == 0 {
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return fmt.Errorf("no version")
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}
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for _, v := range i.versions {
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if err := v.Validate(); err != nil {
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return err
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}
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if v.commitHash != "" && v.time < lastTime {
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return fmt.Errorf("non-chronological version (%d --> %d)", lastTime, v.time)
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}
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lastTime = v.time
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}
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// The identity ID should be the hash of the first commit
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if i.versions[0].commitHash != "" && string(i.versions[0].commitHash) != i.id {
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return fmt.Errorf("identity id should be the first commit hash")
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}
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return nil
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}
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func (i *Identity) lastVersion() *Version {
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if len(i.versions) <= 0 {
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panic("no version at all")
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}
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return i.versions[len(i.versions)-1]
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}
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// Id return the Identity identifier
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func (i *Identity) Id() string {
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if i.id == "" {
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// simply panic as it would be a coding error
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// (using an id of an identity not stored yet)
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panic("no id yet")
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}
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return i.id
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}
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// HumanId return the Identity identifier truncated for human consumption
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func (i *Identity) HumanId() string {
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return FormatHumanID(i.Id())
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}
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func FormatHumanID(id string) string {
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format := fmt.Sprintf("%%.%ds", humanIdLength)
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return fmt.Sprintf(format, id)
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}
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// Name return the last version of the name
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func (i *Identity) Name() string {
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return i.lastVersion().name
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}
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// Email return the last version of the email
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func (i *Identity) Email() string {
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return i.lastVersion().email
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}
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// Login return the last version of the login
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func (i *Identity) Login() string {
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return i.lastVersion().login
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}
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// AvatarUrl return the last version of the Avatar URL
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func (i *Identity) AvatarUrl() string {
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return i.lastVersion().avatarURL
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}
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// Keys return the last version of the valid keys
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func (i *Identity) Keys() []Key {
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return i.lastVersion().keys
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}
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// IsProtected return true if the chain of git commits started to be signed.
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// If that's the case, only signed commit with a valid key for this identity can be added.
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func (i *Identity) IsProtected() bool {
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// Todo
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return false
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}
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// ValidKeysAtTime return the set of keys valid at a given lamport time
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func (i *Identity) ValidKeysAtTime(time lamport.Time) []Key {
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var result []Key
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for _, v := range i.versions {
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if v.time > time {
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return result
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}
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result = v.keys
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}
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return result
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}
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// DisplayName return a non-empty string to display, representing the
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// identity, based on the non-empty values.
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func (i *Identity) DisplayName() string {
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switch {
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case i.Name() == "" && i.Login() != "":
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return i.Login()
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case i.Name() != "" && i.Login() == "":
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return i.Name()
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case i.Name() != "" && i.Login() != "":
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return fmt.Sprintf("%s (%s)", i.Name(), i.Login())
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}
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panic("invalid person data")
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}
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// SetMetadata store arbitrary metadata along the last defined Version.
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// If the Version has been commit to git already, it won't be overwritten.
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func (i *Identity) SetMetadata(key string, value string) {
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i.lastVersion().SetMetadata(key, value)
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}
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// ImmutableMetadata return all metadata for this Identity, accumulated from each Version.
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// If multiple value are found, the first defined takes precedence.
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func (i *Identity) ImmutableMetadata() map[string]string {
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metadata := make(map[string]string)
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for _, version := range i.versions {
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for key, value := range version.metadata {
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if _, has := metadata[key]; !has {
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metadata[key] = value
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}
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}
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}
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return metadata
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}
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// MutableMetadata return all metadata for this Identity, accumulated from each Version.
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// If multiple value are found, the last defined takes precedence.
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func (i *Identity) MutableMetadata() map[string]string {
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metadata := make(map[string]string)
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for _, version := range i.versions {
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for key, value := range version.metadata {
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metadata[key] = value
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}
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}
|
|
|
|
return metadata
|
|
}
|