2018-12-30 03:53:11 +00:00
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// -*- mode: rust; -*-
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//
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// This file is part of ed25519-dalek.
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2019-01-17 23:28:13 +00:00
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// Copyright (c) 2017-2019 isis lovecruft
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2018-12-30 03:53:11 +00:00
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// See LICENSE for licensing information.
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//
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// Authors:
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// - isis agora lovecruft <isis@patternsinthevoid.net>
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//! ed25519 public keys.
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2020-03-17 17:25:33 +00:00
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use core::convert::TryFrom;
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2018-12-30 03:53:11 +00:00
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use core::fmt::Debug;
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use curve25519_dalek::constants;
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use curve25519_dalek::digest::generic_array::typenum::U64;
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2018-12-30 04:07:50 +00:00
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use curve25519_dalek::digest::Digest;
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2018-12-30 03:53:11 +00:00
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use curve25519_dalek::edwards::CompressedEdwardsY;
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use curve25519_dalek::edwards::EdwardsPoint;
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use curve25519_dalek::scalar::Scalar;
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2020-03-17 17:25:33 +00:00
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use ed25519::signature::Verifier;
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2018-12-30 03:53:11 +00:00
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pub use sha2::Sha512;
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2022-12-13 23:19:31 +00:00
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#[cfg(feature = "pkcs8")]
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use ed25519::pkcs8::{self, DecodePublicKey};
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2018-12-30 03:53:11 +00:00
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#[cfg(feature = "serde")]
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use serde::de::Error as SerdeError;
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#[cfg(feature = "serde")]
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2020-09-22 01:26:16 +00:00
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use serde::{Deserialize, Deserializer, Serialize, Serializer};
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2018-12-30 04:07:50 +00:00
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#[cfg(feature = "serde")]
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use serde_bytes::{ByteBuf as SerdeByteBuf, Bytes as SerdeBytes};
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2018-12-30 03:53:11 +00:00
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use crate::constants::*;
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use crate::errors::*;
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use crate::signature::*;
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2022-12-18 06:24:58 +00:00
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use crate::signing::*;
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2018-12-30 03:53:11 +00:00
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/// An ed25519 public key.
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#[derive(Copy, Clone, Default, Eq, PartialEq)]
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2022-12-18 06:24:58 +00:00
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pub struct VerifyingKey(pub(crate) CompressedEdwardsY, pub(crate) EdwardsPoint);
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2018-12-30 03:53:11 +00:00
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impl Debug for VerifyingKey {
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2018-12-30 03:53:11 +00:00
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fn fmt(&self, f: &mut ::core::fmt::Formatter<'_>) -> ::core::fmt::Result {
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2022-12-18 06:24:58 +00:00
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write!(f, "VerifyingKey({:?}), {:?})", self.0, self.1)
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2018-12-30 03:53:11 +00:00
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}
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}
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2022-12-18 06:24:58 +00:00
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impl AsRef<[u8]> for VerifyingKey {
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2018-12-30 03:53:11 +00:00
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fn as_ref(&self) -> &[u8] {
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self.as_bytes()
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}
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}
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2022-12-18 06:24:58 +00:00
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impl From<&SecretKey> for VerifyingKey {
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2018-12-30 03:53:11 +00:00
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/// Derive this public key from its corresponding `SecretKey`.
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fn from(secret_key: &SecretKey) -> VerifyingKey {
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2018-12-30 04:07:50 +00:00
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let mut h: Sha512 = Sha512::new();
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let mut hash: [u8; 64] = [0u8; 64];
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2018-12-30 03:53:11 +00:00
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let mut digest: [u8; 32] = [0u8; 32];
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2022-12-18 06:24:58 +00:00
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h.update(secret_key);
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2020-08-19 21:58:00 +00:00
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hash.copy_from_slice(h.finalize().as_slice());
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2018-12-30 03:53:11 +00:00
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digest.copy_from_slice(&hash[..32]);
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2022-12-18 06:24:58 +00:00
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VerifyingKey::mangle_scalar_bits_and_multiply_by_basepoint_to_produce_public_key(
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&mut digest,
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)
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2018-12-30 03:53:11 +00:00
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}
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}
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2022-12-18 06:24:58 +00:00
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impl From<&ExpandedSecretKey> for VerifyingKey {
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2018-12-30 03:53:11 +00:00
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/// Derive this public key from its corresponding `ExpandedSecretKey`.
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fn from(expanded_secret_key: &ExpandedSecretKey) -> VerifyingKey {
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2018-12-30 03:53:11 +00:00
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let mut bits: [u8; 32] = expanded_secret_key.key.to_bytes();
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2022-12-18 06:24:58 +00:00
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VerifyingKey::mangle_scalar_bits_and_multiply_by_basepoint_to_produce_public_key(&mut bits)
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2018-12-30 03:53:11 +00:00
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}
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}
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2022-12-18 06:24:58 +00:00
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impl VerifyingKey {
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/// Convert this public key to a byte array.
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#[inline]
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pub fn to_bytes(&self) -> [u8; PUBLIC_KEY_LENGTH] {
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self.0.to_bytes()
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}
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/// View this public key as a byte array.
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#[inline]
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pub fn as_bytes<'a>(&'a self) -> &'a [u8; PUBLIC_KEY_LENGTH] {
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&(self.0).0
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}
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2022-12-18 06:24:58 +00:00
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/// Construct a `VerifyingKey` from a slice of bytes.
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2018-12-30 03:53:11 +00:00
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///
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/// # Warning
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///
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/// The caller is responsible for ensuring that the bytes passed into this
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/// method actually represent a `curve25519_dalek::curve::CompressedEdwardsY`
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/// and that said compressed point is actually a point on the curve.
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///
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/// # Example
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///
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/// ```
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/// use ed25519_dalek::VerifyingKey;
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2018-12-30 03:53:11 +00:00
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/// use ed25519_dalek::PUBLIC_KEY_LENGTH;
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/// use ed25519_dalek::SignatureError;
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///
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2022-12-18 06:24:58 +00:00
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/// # fn doctest() -> Result<VerifyingKey, SignatureError> {
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2018-12-30 03:53:11 +00:00
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/// let public_key_bytes: [u8; PUBLIC_KEY_LENGTH] = [
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/// 215, 90, 152, 1, 130, 177, 10, 183, 213, 75, 254, 211, 201, 100, 7, 58,
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/// 14, 225, 114, 243, 218, 166, 35, 37, 175, 2, 26, 104, 247, 7, 81, 26];
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///
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/// let public_key = VerifyingKey::from_bytes(&public_key_bytes)?;
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2018-12-30 03:53:11 +00:00
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/// #
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/// # Ok(public_key)
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/// # }
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/// #
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/// # fn main() {
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/// # doctest();
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/// # }
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/// ```
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///
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/// # Returns
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///
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/// A `Result` whose okay value is an EdDSA `VerifyingKey` or whose error value
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/// is an `SignatureError` describing the error that occurred.
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#[inline]
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pub fn from_bytes(bytes: &[u8]) -> Result<VerifyingKey, SignatureError> {
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if bytes.len() != PUBLIC_KEY_LENGTH {
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return Err(InternalError::BytesLengthError {
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name: "VerifyingKey",
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length: PUBLIC_KEY_LENGTH,
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2022-12-08 07:39:48 +00:00
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}
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.into());
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}
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let mut bits: [u8; 32] = [0u8; 32];
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bits.copy_from_slice(&bytes[..32]);
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let compressed = CompressedEdwardsY(bits);
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let point = compressed
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.decompress()
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.ok_or(InternalError::PointDecompressionError)?;
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2018-12-30 03:53:11 +00:00
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2022-12-18 06:24:58 +00:00
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Ok(VerifyingKey(compressed, point))
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}
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/// Internal utility function for mangling the bits of a (formerly
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/// mathematically well-defined) "scalar" and multiplying it to produce a
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/// public key.
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2018-12-30 04:07:50 +00:00
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fn mangle_scalar_bits_and_multiply_by_basepoint_to_produce_public_key(
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bits: &mut [u8; 32],
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) -> VerifyingKey {
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bits[0] &= 248;
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bits[31] &= 127;
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bits[31] |= 64;
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let point = &Scalar::from_bits(*bits) * &constants::ED25519_BASEPOINT_TABLE;
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let compressed = point.compress();
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2022-12-18 06:24:58 +00:00
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VerifyingKey(compressed, point)
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}
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/// Verify a `signature` on a `prehashed_message` using the Ed25519ph algorithm.
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///
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/// # Inputs
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///
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/// * `prehashed_message` is an instantiated hash digest with 512-bits of
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/// output which has had the message to be signed previously fed into its
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/// state.
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/// * `context` is an optional context string, up to 255 bytes inclusive,
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/// which may be used to provide additional domain separation. If not
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/// set, this will default to an empty string.
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/// * `signature` is a purported Ed25519ph [`Signature`] on the `prehashed_message`.
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///
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/// # Returns
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///
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/// Returns `true` if the `signature` was a valid signature created by this
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/// `Keypair` on the `prehashed_message`.
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///
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/// [rfc8032]: https://tools.ietf.org/html/rfc8032#section-5.1
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#[allow(non_snake_case)]
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pub fn verify_prehashed<D>(
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&self,
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prehashed_message: D,
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context: Option<&[u8]>,
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2020-03-17 17:25:33 +00:00
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signature: &ed25519::Signature,
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2018-12-30 03:53:11 +00:00
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) -> Result<(), SignatureError>
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2018-12-30 04:07:50 +00:00
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where
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D: Digest<OutputSize = U64>,
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{
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2020-03-17 17:25:33 +00:00
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let signature = InternalSignature::try_from(signature)?;
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2018-12-30 03:53:11 +00:00
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let mut h: Sha512 = Sha512::default();
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let R: EdwardsPoint;
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let k: Scalar;
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let ctx: &[u8] = context.unwrap_or(b"");
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2022-12-08 07:39:48 +00:00
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debug_assert!(
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ctx.len() <= 255,
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"The context must not be longer than 255 octets."
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);
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let minus_A: EdwardsPoint = -self.1;
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2020-08-19 21:58:00 +00:00
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h.update(b"SigEd25519 no Ed25519 collisions");
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h.update(&[1]); // Ed25519ph
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h.update(&[ctx.len() as u8]);
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h.update(ctx);
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h.update(signature.R.as_bytes());
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h.update(self.as_bytes());
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h.update(prehashed_message.finalize().as_slice());
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2018-12-30 03:53:11 +00:00
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k = Scalar::from_hash(h);
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R = EdwardsPoint::vartime_double_scalar_mul_basepoint(&k, &(minus_A), &signature.s);
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if R.compress() == signature.R {
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Ok(())
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} else {
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2020-03-17 17:25:33 +00:00
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Err(InternalError::VerifyError.into())
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2018-12-30 03:53:11 +00:00
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}
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}
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2019-09-27 00:37:30 +00:00
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/// Strictly verify a signature on a message with this keypair's public key.
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///
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/// # On The (Multiple) Sources of Malleability in Ed25519 Signatures
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///
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/// This version of verification is technically non-RFC8032 compliant. The
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/// following explains why.
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///
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/// 1. Scalar Malleability
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///
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/// The authors of the RFC explicitly stated that verification of an ed25519
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/// signature must fail if the scalar `s` is not properly reduced mod \ell:
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///
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/// > To verify a signature on a message M using public key A, with F
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/// > being 0 for Ed25519ctx, 1 for Ed25519ph, and if Ed25519ctx or
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/// > Ed25519ph is being used, C being the context, first split the
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/// > signature into two 32-octet halves. Decode the first half as a
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/// > point R, and the second half as an integer S, in the range
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/// > 0 <= s < L. Decode the public key A as point A'. If any of the
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/// > decodings fail (including S being out of range), the signature is
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/// > invalid.)
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///
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/// All `verify_*()` functions within ed25519-dalek perform this check.
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///
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/// 2. Point malleability
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///
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/// The authors of the RFC added in a malleability check to step #3 in
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/// §5.1.7, for small torsion components in the `R` value of the signature,
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/// *which is not strictly required*, as they state:
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///
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2019-11-14 22:01:34 +00:00
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/// > Check the group equation \[8\]\[S\]B = \[8\]R + \[8\]\[k\]A'. It's
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/// > sufficient, but not required, to instead check \[S\]B = R + \[k\]A'.
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2019-09-27 00:37:30 +00:00
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///
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/// # History of Malleability Checks
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///
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/// As originally defined (cf. the "Malleability" section in the README of
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/// this repo), ed25519 signatures didn't consider *any* form of
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/// malleability to be an issue. Later the scalar malleability was
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/// considered important. Still later, particularly with interests in
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/// cryptocurrency design and in unique identities (e.g. for Signal users,
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/// Tor onion services, etc.), the group element malleability became a
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/// concern.
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///
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/// However, libraries had already been created to conform to the original
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/// definition. One well-used library in particular even implemented the
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/// group element malleability check, *but only for batch verification*!
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/// Which meant that even using the same library, a single signature could
|
|
|
|
|
/// verify fine individually, but suddenly, when verifying it with a bunch
|
|
|
|
|
/// of other signatures, the whole batch would fail!
|
|
|
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|
///
|
|
|
|
|
/// # "Strict" Verification
|
|
|
|
|
///
|
|
|
|
|
/// This method performs *both* of the above signature malleability checks.
|
|
|
|
|
///
|
|
|
|
|
/// It must be done as a separate method because one doesn't simply get to
|
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|
|
|
/// change the definition of a cryptographic primitive ten years
|
|
|
|
|
/// after-the-fact with zero consideration for backwards compatibility in
|
|
|
|
|
/// hardware and protocols which have it already have the older definition
|
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|
|
|
/// baked in.
|
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|
|
|
///
|
|
|
|
|
/// # Return
|
|
|
|
|
///
|
|
|
|
|
/// Returns `Ok(())` if the signature is valid, and `Err` otherwise.
|
|
|
|
|
#[allow(non_snake_case)]
|
|
|
|
|
pub fn verify_strict(
|
|
|
|
|
&self,
|
|
|
|
|
message: &[u8],
|
2020-03-17 17:25:33 +00:00
|
|
|
signature: &ed25519::Signature,
|
2022-12-08 07:39:48 +00:00
|
|
|
) -> Result<(), SignatureError> {
|
2020-03-17 17:25:33 +00:00
|
|
|
let signature = InternalSignature::try_from(signature)?;
|
|
|
|
|
|
2019-09-27 00:37:30 +00:00
|
|
|
let mut h: Sha512 = Sha512::new();
|
|
|
|
|
let R: EdwardsPoint;
|
|
|
|
|
let k: Scalar;
|
|
|
|
|
let minus_A: EdwardsPoint = -self.1;
|
|
|
|
|
let signature_R: EdwardsPoint;
|
|
|
|
|
|
|
|
|
|
match signature.R.decompress() {
|
2020-03-17 17:25:33 +00:00
|
|
|
None => return Err(InternalError::VerifyError.into()),
|
2019-09-27 00:37:30 +00:00
|
|
|
Some(x) => signature_R = x,
|
|
|
|
|
}
|
|
|
|
|
|
|
|
|
|
// Logical OR is fine here as we're not trying to be constant time.
|
|
|
|
|
if signature_R.is_small_order() || self.1.is_small_order() {
|
2020-03-17 17:25:33 +00:00
|
|
|
return Err(InternalError::VerifyError.into());
|
2019-09-27 00:37:30 +00:00
|
|
|
}
|
|
|
|
|
|
2020-08-19 21:58:00 +00:00
|
|
|
h.update(signature.R.as_bytes());
|
|
|
|
|
h.update(self.as_bytes());
|
|
|
|
|
h.update(&message);
|
2019-09-27 00:37:30 +00:00
|
|
|
|
|
|
|
|
k = Scalar::from_hash(h);
|
|
|
|
|
R = EdwardsPoint::vartime_double_scalar_mul_basepoint(&k, &(minus_A), &signature.s);
|
|
|
|
|
|
|
|
|
|
if R == signature_R {
|
|
|
|
|
Ok(())
|
|
|
|
|
} else {
|
2020-03-17 17:25:33 +00:00
|
|
|
Err(InternalError::VerifyError.into())
|
|
|
|
|
}
|
|
|
|
|
}
|
|
|
|
|
}
|
|
|
|
|
|
2022-12-18 06:24:58 +00:00
|
|
|
impl Verifier<ed25519::Signature> for VerifyingKey {
|
2020-03-17 17:25:33 +00:00
|
|
|
/// Verify a signature on a message with this keypair's public key.
|
|
|
|
|
///
|
|
|
|
|
/// # Return
|
|
|
|
|
///
|
|
|
|
|
/// Returns `Ok(())` if the signature is valid, and `Err` otherwise.
|
|
|
|
|
#[allow(non_snake_case)]
|
2022-12-08 07:39:48 +00:00
|
|
|
fn verify(&self, message: &[u8], signature: &ed25519::Signature) -> Result<(), SignatureError> {
|
2020-03-17 17:25:33 +00:00
|
|
|
let signature = InternalSignature::try_from(signature)?;
|
|
|
|
|
|
|
|
|
|
let mut h: Sha512 = Sha512::new();
|
|
|
|
|
let R: EdwardsPoint;
|
|
|
|
|
let k: Scalar;
|
|
|
|
|
let minus_A: EdwardsPoint = -self.1;
|
|
|
|
|
|
2020-08-19 21:58:00 +00:00
|
|
|
h.update(signature.R.as_bytes());
|
|
|
|
|
h.update(self.as_bytes());
|
|
|
|
|
h.update(&message);
|
2020-03-17 17:25:33 +00:00
|
|
|
|
|
|
|
|
k = Scalar::from_hash(h);
|
|
|
|
|
R = EdwardsPoint::vartime_double_scalar_mul_basepoint(&k, &(minus_A), &signature.s);
|
|
|
|
|
|
|
|
|
|
if R.compress() == signature.R {
|
|
|
|
|
Ok(())
|
|
|
|
|
} else {
|
|
|
|
|
Err(InternalError::VerifyError.into())
|
2019-09-27 00:37:30 +00:00
|
|
|
}
|
|
|
|
|
}
|
2018-12-30 03:53:11 +00:00
|
|
|
}
|
|
|
|
|
|
2022-12-18 06:24:58 +00:00
|
|
|
impl TryFrom<&[u8]> for VerifyingKey {
|
2022-12-13 23:19:31 +00:00
|
|
|
type Error = SignatureError;
|
|
|
|
|
|
2022-12-18 06:24:58 +00:00
|
|
|
fn try_from(bytes: &[u8]) -> Result<VerifyingKey, SignatureError> {
|
|
|
|
|
VerifyingKey::from_bytes(bytes)
|
2022-12-13 23:19:31 +00:00
|
|
|
}
|
|
|
|
|
}
|
|
|
|
|
|
|
|
|
|
#[cfg(feature = "pkcs8")]
|
2022-12-18 06:24:58 +00:00
|
|
|
impl DecodePublicKey for VerifyingKey {}
|
2022-12-13 23:19:31 +00:00
|
|
|
|
|
|
|
|
#[cfg(all(feature = "alloc", feature = "pkcs8"))]
|
2022-12-18 06:24:58 +00:00
|
|
|
impl pkcs8::EncodePublicKey for VerifyingKey {
|
2022-12-13 23:19:31 +00:00
|
|
|
fn to_public_key_der(&self) -> pkcs8::spki::Result<pkcs8::Document> {
|
|
|
|
|
pkcs8::PublicKeyBytes::from(self).to_public_key_der()
|
|
|
|
|
}
|
|
|
|
|
}
|
|
|
|
|
|
|
|
|
|
#[cfg(feature = "pkcs8")]
|
2022-12-18 06:24:58 +00:00
|
|
|
impl TryFrom<pkcs8::PublicKeyBytes> for VerifyingKey {
|
2022-12-13 23:19:31 +00:00
|
|
|
type Error = pkcs8::spki::Error;
|
|
|
|
|
|
|
|
|
|
fn try_from(pkcs8_key: pkcs8::PublicKeyBytes) -> pkcs8::spki::Result<Self> {
|
2022-12-18 06:24:58 +00:00
|
|
|
VerifyingKey::try_from(&pkcs8_key)
|
2022-12-13 23:19:31 +00:00
|
|
|
}
|
|
|
|
|
}
|
|
|
|
|
|
|
|
|
|
#[cfg(feature = "pkcs8")]
|
2022-12-18 06:24:58 +00:00
|
|
|
impl TryFrom<&pkcs8::PublicKeyBytes> for VerifyingKey {
|
2022-12-13 23:19:31 +00:00
|
|
|
type Error = pkcs8::spki::Error;
|
|
|
|
|
|
|
|
|
|
fn try_from(pkcs8_key: &pkcs8::PublicKeyBytes) -> pkcs8::spki::Result<Self> {
|
2022-12-18 06:24:58 +00:00
|
|
|
VerifyingKey::from_bytes(pkcs8_key.as_ref()).map_err(|_| pkcs8::spki::Error::KeyMalformed)
|
2022-12-13 23:19:31 +00:00
|
|
|
}
|
|
|
|
|
}
|
|
|
|
|
|
|
|
|
|
#[cfg(feature = "pkcs8")]
|
2022-12-18 06:24:58 +00:00
|
|
|
impl From<VerifyingKey> for pkcs8::PublicKeyBytes {
|
|
|
|
|
fn from(verifying_key: VerifyingKey) -> pkcs8::PublicKeyBytes {
|
|
|
|
|
pkcs8::PublicKeyBytes::from(&verifying_key)
|
2022-12-13 23:19:31 +00:00
|
|
|
}
|
|
|
|
|
}
|
|
|
|
|
|
|
|
|
|
#[cfg(feature = "pkcs8")]
|
2022-12-18 06:24:58 +00:00
|
|
|
impl From<&VerifyingKey> for pkcs8::PublicKeyBytes {
|
|
|
|
|
fn from(verifying_key: &VerifyingKey) -> pkcs8::PublicKeyBytes {
|
|
|
|
|
pkcs8::PublicKeyBytes(verifying_key.to_bytes())
|
2022-12-13 23:19:31 +00:00
|
|
|
}
|
|
|
|
|
}
|
|
|
|
|
|
|
|
|
|
#[cfg(feature = "pkcs8")]
|
2022-12-18 06:24:58 +00:00
|
|
|
impl TryFrom<pkcs8::spki::SubjectPublicKeyInfo<'_>> for VerifyingKey {
|
2022-12-13 23:19:31 +00:00
|
|
|
type Error = pkcs8::spki::Error;
|
|
|
|
|
|
|
|
|
|
fn try_from(public_key: pkcs8::spki::SubjectPublicKeyInfo<'_>) -> pkcs8::spki::Result<Self> {
|
|
|
|
|
pkcs8::PublicKeyBytes::try_from(public_key)?.try_into()
|
|
|
|
|
}
|
|
|
|
|
}
|
|
|
|
|
|
2018-12-30 03:53:11 +00:00
|
|
|
#[cfg(feature = "serde")]
|
2022-12-18 06:24:58 +00:00
|
|
|
impl Serialize for VerifyingKey {
|
2018-12-30 04:07:50 +00:00
|
|
|
fn serialize<S>(&self, serializer: S) -> Result<S::Ok, S::Error>
|
|
|
|
|
where
|
|
|
|
|
S: Serializer,
|
|
|
|
|
{
|
2020-09-22 01:26:16 +00:00
|
|
|
SerdeBytes::new(self.as_bytes()).serialize(serializer)
|
2018-12-30 03:53:11 +00:00
|
|
|
}
|
|
|
|
|
}
|
|
|
|
|
|
|
|
|
|
#[cfg(feature = "serde")]
|
2022-12-18 06:24:58 +00:00
|
|
|
impl<'d> Deserialize<'d> for VerifyingKey {
|
2018-12-30 04:07:50 +00:00
|
|
|
fn deserialize<D>(deserializer: D) -> Result<Self, D::Error>
|
|
|
|
|
where
|
|
|
|
|
D: Deserializer<'d>,
|
|
|
|
|
{
|
2020-09-22 01:26:16 +00:00
|
|
|
let bytes = <SerdeByteBuf>::deserialize(deserializer)?;
|
2022-12-18 06:24:58 +00:00
|
|
|
VerifyingKey::from_bytes(bytes.as_ref()).map_err(SerdeError::custom)
|
2018-12-30 03:53:11 +00:00
|
|
|
}
|
|
|
|
|
}
|