mirror of
https://github.com/libp2p/go-libp2p-core.git
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156 lines
3.8 KiB
Go
156 lines
3.8 KiB
Go
package crypto
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import (
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"bytes"
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"errors"
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"fmt"
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"io"
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pb "github.com/libp2p/go-libp2p-core/crypto/pb"
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"golang.org/x/crypto/ed25519"
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)
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// Ed25519PrivateKey is an ed25519 private key.
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type Ed25519PrivateKey struct {
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k ed25519.PrivateKey
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}
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// Ed25519PublicKey is an ed25519 public key.
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type Ed25519PublicKey struct {
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k ed25519.PublicKey
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}
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// GenerateEd25519Key generates a new ed25519 private and public key pair.
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func GenerateEd25519Key(src io.Reader) (PrivKey, PubKey, error) {
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pub, priv, err := ed25519.GenerateKey(src)
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if err != nil {
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return nil, nil, err
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}
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return &Ed25519PrivateKey{
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k: priv,
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},
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&Ed25519PublicKey{
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k: pub,
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},
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nil
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}
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// Type of the private key (Ed25519).
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func (k *Ed25519PrivateKey) Type() pb.KeyType {
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return pb.KeyType_Ed25519
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}
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// Bytes marshals an ed25519 private key to protobuf bytes.
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func (k *Ed25519PrivateKey) Bytes() ([]byte, error) {
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return MarshalPrivateKey(k)
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}
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// Raw private key bytes.
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func (k *Ed25519PrivateKey) Raw() ([]byte, error) {
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// The Ed25519 private key contains two 32-bytes curve points, the private
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// key and the public key.
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// It makes it more efficient to get the public key without re-computing an
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// elliptic curve multiplication.
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buf := make([]byte, len(k.k))
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copy(buf, k.k)
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return buf, nil
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}
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func (k *Ed25519PrivateKey) pubKeyBytes() []byte {
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return k.k[ed25519.PrivateKeySize-ed25519.PublicKeySize:]
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}
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// Equals compares two ed25519 private keys.
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func (k *Ed25519PrivateKey) Equals(o Key) bool {
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edk, ok := o.(*Ed25519PrivateKey)
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if !ok {
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return false
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}
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return bytes.Equal(k.k, edk.k)
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}
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// GetPublic returns an ed25519 public key from a private key.
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func (k *Ed25519PrivateKey) GetPublic() PubKey {
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return &Ed25519PublicKey{k: k.pubKeyBytes()}
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}
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// Sign returns a signature from an input message.
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func (k *Ed25519PrivateKey) Sign(msg []byte) ([]byte, error) {
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return ed25519.Sign(k.k, msg), nil
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}
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// Type of the public key (Ed25519).
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func (k *Ed25519PublicKey) Type() pb.KeyType {
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return pb.KeyType_Ed25519
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}
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// Bytes returns a ed25519 public key as protobuf bytes.
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func (k *Ed25519PublicKey) Bytes() ([]byte, error) {
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return MarshalPublicKey(k)
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}
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// Raw public key bytes.
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func (k *Ed25519PublicKey) Raw() ([]byte, error) {
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return k.k, nil
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}
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// Equals compares two ed25519 public keys.
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func (k *Ed25519PublicKey) Equals(o Key) bool {
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edk, ok := o.(*Ed25519PublicKey)
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if !ok {
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return false
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}
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return bytes.Equal(k.k, edk.k)
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}
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// Verify checks a signature agains the input data.
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func (k *Ed25519PublicKey) Verify(data []byte, sig []byte) (bool, error) {
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return ed25519.Verify(k.k, data, sig), nil
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}
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// UnmarshalEd25519PublicKey returns a public key from input bytes.
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func UnmarshalEd25519PublicKey(data []byte) (PubKey, error) {
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if len(data) != 32 {
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return nil, errors.New("expect ed25519 public key data size to be 32")
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}
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return &Ed25519PublicKey{
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k: ed25519.PublicKey(data),
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}, nil
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}
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// UnmarshalEd25519PrivateKey returns a private key from input bytes.
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func UnmarshalEd25519PrivateKey(data []byte) (PrivKey, error) {
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switch len(data) {
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case ed25519.PrivateKeySize + ed25519.PublicKeySize:
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// Remove the redundant public key. See issue #36.
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redundantPk := data[ed25519.PrivateKeySize:]
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pk := data[ed25519.PrivateKeySize-ed25519.PublicKeySize : ed25519.PrivateKeySize]
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if !bytes.Equal(pk, redundantPk) {
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return nil, errors.New("expected redundant ed25519 public key to be redundant")
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}
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// No point in storing the extra data.
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newKey := make([]byte, ed25519.PrivateKeySize)
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copy(newKey, data[:ed25519.PrivateKeySize])
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data = newKey
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case ed25519.PrivateKeySize:
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default:
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return nil, fmt.Errorf(
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"expected ed25519 data size to be %d or %d, got %d",
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ed25519.PrivateKeySize,
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ed25519.PrivateKeySize+ed25519.PublicKeySize,
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len(data),
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)
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}
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return &Ed25519PrivateKey{
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k: ed25519.PrivateKey(data),
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}, nil
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}
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