mirror of
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250 lines
6.2 KiB
Go
250 lines
6.2 KiB
Go
package crypto
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import (
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"bytes"
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"time"
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"github.com/ProtonMail/go-crypto/openpgp"
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"github.com/ProtonMail/go-crypto/openpgp/packet"
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"github.com/pkg/errors"
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)
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// KeyRing contains multiple private and public keys.
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type KeyRing struct {
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// PGP entities in this keyring.
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entities openpgp.EntityList
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// FirstKeyID as obtained from API to match salt
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FirstKeyID string
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}
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// Identity contains the name and the email of a key holder.
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type Identity struct {
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Name string
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Email string
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}
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// --- New keyrings
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// NewKeyRing creates a new KeyRing, empty if key is nil.
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func NewKeyRing(key *Key) (*KeyRing, error) {
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keyRing := &KeyRing{}
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var err error
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if key != nil {
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err = keyRing.AddKey(key)
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}
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return keyRing, err
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}
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// AddKey adds the given key to the keyring.
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func (keyRing *KeyRing) AddKey(key *Key) error {
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if key.IsPrivate() {
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unlocked, err := key.IsUnlocked()
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if err != nil || !unlocked {
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return errors.New("gopenpgp: unable to add locked key to a keyring")
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}
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}
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keyRing.appendKey(key)
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return nil
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}
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// --- Extract keys from keyring
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// GetKeys returns openpgp keys contained in this KeyRing.
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func (keyRing *KeyRing) GetKeys() []*Key {
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keys := make([]*Key, keyRing.CountEntities())
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for i, entity := range keyRing.entities {
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keys[i] = &Key{entity}
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}
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return keys
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}
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// GetKey returns the n-th openpgp key contained in this KeyRing.
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func (keyRing *KeyRing) GetKey(n int) (*Key, error) {
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if n >= keyRing.CountEntities() {
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return nil, errors.New("gopenpgp: out of bound when fetching key")
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}
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return &Key{keyRing.entities[n]}, nil
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}
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// getSigningEntity returns first private unlocked signing entity from keyring.
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func (keyRing *KeyRing) getSigningEntity() (*openpgp.Entity, error) {
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var signEntity *openpgp.Entity
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for _, e := range keyRing.entities {
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// Entity.PrivateKey must be a signing key
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if e.PrivateKey != nil {
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if !e.PrivateKey.Encrypted {
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signEntity = e
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break
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}
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}
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}
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if signEntity == nil {
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return nil, errors.New("gopenpgp: cannot sign message, unable to unlock signer key")
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}
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return signEntity, nil
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}
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// --- Extract info from key
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// CountEntities returns the number of entities in the keyring.
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func (keyRing *KeyRing) CountEntities() int {
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return len(keyRing.entities)
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}
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// CountDecryptionEntities returns the number of entities in the keyring.
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func (keyRing *KeyRing) CountDecryptionEntities() int {
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return len(keyRing.entities.DecryptionKeys())
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}
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// GetIdentities returns the list of identities associated with this key ring.
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func (keyRing *KeyRing) GetIdentities() []*Identity {
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var identities []*Identity
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for _, e := range keyRing.entities {
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for _, id := range e.Identities {
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identities = append(identities, &Identity{
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Name: id.UserId.Name,
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Email: id.UserId.Email,
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})
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}
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}
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return identities
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}
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// CanVerify returns true if any of the keys in the keyring can be used for verification.
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func (keyRing *KeyRing) CanVerify() bool {
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keys := keyRing.GetKeys()
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for _, key := range keys {
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if key.CanVerify() {
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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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// CanEncrypt returns true if any of the keys in the keyring can be used for encryption.
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func (keyRing *KeyRing) CanEncrypt() bool {
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keys := keyRing.GetKeys()
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for _, key := range keys {
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if key.CanEncrypt() {
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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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// GetKeyIDs returns array of IDs of keys in this KeyRing.
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func (keyRing *KeyRing) GetKeyIDs() []uint64 {
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var res = make([]uint64, len(keyRing.entities))
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for id, e := range keyRing.entities {
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res[id] = e.PrimaryKey.KeyId
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}
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return res
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}
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// --- Filter keyrings
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// FilterExpiredKeys takes a given KeyRing list and it returns only those
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// KeyRings which contain at least, one unexpired Key. It returns only unexpired
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// parts of these KeyRings.
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func FilterExpiredKeys(contactKeys []*KeyRing) (filteredKeys []*KeyRing, err error) {
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now := time.Now()
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hasExpiredEntity := false //nolint:ifshort
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filteredKeys = make([]*KeyRing, 0)
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for _, contactKeyRing := range contactKeys {
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keyRingHasUnexpiredEntity := false
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keyRingHasTotallyExpiredEntity := false
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for _, entity := range contactKeyRing.entities {
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hasExpired := false
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hasUnexpired := false
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for _, subkey := range entity.Subkeys {
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if subkey.PublicKey.KeyExpired(subkey.Sig, now) {
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hasExpired = true
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} else {
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hasUnexpired = true
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}
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}
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if hasExpired && !hasUnexpired {
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keyRingHasTotallyExpiredEntity = true
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} else if hasUnexpired {
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keyRingHasUnexpiredEntity = true
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}
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}
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if keyRingHasUnexpiredEntity {
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keyRingCopy, err := contactKeyRing.Copy()
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if err != nil {
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return nil, err
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}
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filteredKeys = append(filteredKeys, keyRingCopy)
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} else if keyRingHasTotallyExpiredEntity {
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hasExpiredEntity = true
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}
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}
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if len(filteredKeys) == 0 && hasExpiredEntity {
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return filteredKeys, errors.New("gopenpgp: all contacts keys are expired")
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}
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return filteredKeys, nil
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}
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// FirstKey returns a KeyRing with only the first key of the original one.
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func (keyRing *KeyRing) FirstKey() (*KeyRing, error) {
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if len(keyRing.entities) == 0 {
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return nil, errors.New("gopenpgp: No key available in this keyring")
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}
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newKeyRing := &KeyRing{}
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newKeyRing.entities = keyRing.entities[:1]
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return newKeyRing.Copy()
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}
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// Copy creates a deep copy of the keyring.
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func (keyRing *KeyRing) Copy() (*KeyRing, error) {
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newKeyRing := &KeyRing{}
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entities := make([]*openpgp.Entity, len(keyRing.entities))
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for id, entity := range keyRing.entities {
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var buffer bytes.Buffer
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var err error
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if entity.PrivateKey == nil {
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err = entity.Serialize(&buffer)
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} else {
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err = entity.SerializePrivateWithoutSigning(&buffer, nil)
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}
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if err != nil {
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return nil, errors.Wrap(err, "gopenpgp: unable to copy key: error in serializing entity")
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}
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bt := buffer.Bytes()
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entities[id], err = openpgp.ReadEntity(packet.NewReader(bytes.NewReader(bt)))
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if err != nil {
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return nil, errors.Wrap(err, "gopenpgp: unable to copy key: error in reading entity")
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}
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}
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newKeyRing.entities = entities
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newKeyRing.FirstKeyID = keyRing.FirstKeyID
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return newKeyRing, nil
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}
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func (keyRing *KeyRing) ClearPrivateParams() {
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for _, key := range keyRing.GetKeys() {
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key.ClearPrivateParams()
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}
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}
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// INTERNAL FUNCTIONS
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// appendKey appends a key to the keyring.
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func (keyRing *KeyRing) appendKey(key *Key) {
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keyRing.entities = append(keyRing.entities, key.entity)
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}
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