* Move `elliptic-curve` implementation to points to allow `Zeroize` * Simplify `Ristretto255::random_scalar` implementation * Fix `Ristretto255` deserialization * Remove unnecessary check in `Ristretto255::random_scalar` * Base `X25519` implementation on `curve25519-dalek` * Constrain public and secret key to `Copy` * Replace manual `ZeroizeOnDrop` implementation with `derive` * Update dependencies * Add `warn(unused_crate_dependencies)` * Sync crate feature naming with `voprf` * Remove unnecessary dependency crate features * Never produce a zero scalar * Rename `OprfGroup` to `OprfCs` * Rename `TripleDH` to `TripleDh` * Remove `slow-hash` crate feature * Rename `NoOpHash` to `Identity` * Rename `SlowHash` to `Ksf` * Move `KeyExchange` type definitions down * Deserialize secret and public keys from slices * Remove `PrivateKey::from_bytes` * Rename `From/ToBytes` to `De/Serialize` * Re-export `serde_` as `serde` * Custom `De/Serialize` implementation for keys * Remove custom `De/Serialize` implementation * Run Taplo v0.6
389 lines
12 KiB
Rust
389 lines
12 KiB
Rust
// Copyright (c) Facebook, Inc. and its affiliates.
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//
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// This source code is licensed under both the MIT license found in the
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// LICENSE-MIT file in the root directory of this source tree and the Apache
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// License, Version 2.0 found in the LICENSE-APACHE file in the root directory
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// of this source tree.
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//! Contains the keypair types that must be supplied for the OPAQUE API
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#![allow(unsafe_code)]
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use derive_where::derive_where;
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use generic_array::{ArrayLength, GenericArray};
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use rand::{CryptoRng, RngCore};
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use crate::errors::{InternalError, ProtocolError};
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use crate::key_exchange::group::KeGroup;
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/// A Keypair trait with public-private verification
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#[cfg_attr(
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feature = "serde",
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derive(serde::Deserialize, serde::Serialize),
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serde(
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bound(
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deserialize = "S: serde::Deserialize<'de>",
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serialize = "S: serde::Serialize"
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),
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crate = "serde"
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)
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)]
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#[derive_where(Clone)]
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#[derive_where(Debug, Eq, Hash, Ord, PartialEq, PartialOrd; KG::Pk, S)]
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pub struct KeyPair<KG: KeGroup, S: SecretKey<KG> = PrivateKey<KG>> {
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pk: PublicKey<KG>,
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sk: S,
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}
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impl<KG: KeGroup, S: SecretKey<KG>> KeyPair<KG, S> {
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/// The public key component
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pub fn public(&self) -> &PublicKey<KG> {
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&self.pk
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}
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/// The private key component
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pub fn private(&self) -> &S {
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&self.sk
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}
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/// Obtains a KeyPair from a slice representing the private key
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pub fn from_private_key_slice(input: &[u8]) -> Result<Self, ProtocolError<S::Error>> {
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Self::from_private_key(S::deserialize(input)?)
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}
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/// Obtains a KeyPair from a private key
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pub fn from_private_key(sk: S) -> Result<Self, ProtocolError<S::Error>> {
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let pk = sk.public_key()?;
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Ok(Self { pk, sk })
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}
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}
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impl<KG: KeGroup> KeyPair<KG> {
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/// Generating a random key pair given a cryptographic rng
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pub(crate) fn generate_random<R: RngCore + CryptoRng>(rng: &mut R) -> Self {
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let sk = KG::random_sk(rng);
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let pk = KG::public_key(sk);
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Self {
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pk: PublicKey(pk),
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sk: PrivateKey(sk),
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}
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}
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}
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#[cfg(test)]
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impl<KG: KeGroup> KeyPair<KG>
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where
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KG::Pk: std::fmt::Debug,
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KG::Sk: std::fmt::Debug,
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{
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/// Test-only strategy returning a proptest Strategy based on
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/// generate_random
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fn uniform_keypair_strategy() -> proptest::prelude::BoxedStrategy<Self> {
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use proptest::prelude::*;
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use rand::rngs::StdRng;
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use rand::SeedableRng;
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// The no_shrink is because keypairs should be fixed -- shrinking would cause a
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// different keypair to be generated, which appears to not be very useful.
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any::<[u8; 32]>()
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.prop_filter_map("valid random keypair", |seed| {
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let mut rng = StdRng::from_seed(seed);
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Some(Self::generate_random(&mut rng))
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})
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.no_shrink()
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.boxed()
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}
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}
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/// Wrapper around a Key to enforce that it's a private one.
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#[derive_where(Clone, ZeroizeOnDrop)]
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#[derive_where(Debug, Eq, Hash, Ord, PartialEq, PartialOrd; KG::Sk)]
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pub struct PrivateKey<KG: KeGroup>(KG::Sk);
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/// A trait specifying the requirements for a private key container
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pub trait SecretKey<KG: KeGroup>: Clone + Sized {
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/// Custom error type that can be passed down to `InternalError::Custom`
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type Error;
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/// Serialization size in bytes.
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type Len: ArrayLength<u8>;
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/// Diffie-Hellman key exchange implementation
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fn diffie_hellman(
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&self,
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pk: PublicKey<KG>,
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) -> Result<GenericArray<u8, KG::PkLen>, InternalError<Self::Error>>;
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/// Returns public key from private key
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fn public_key(&self) -> Result<PublicKey<KG>, InternalError<Self::Error>>;
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/// Serialization into bytes
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fn serialize(&self) -> GenericArray<u8, Self::Len>;
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/// Deserialization from bytes
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fn deserialize(input: &[u8]) -> Result<Self, InternalError<Self::Error>>;
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}
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impl<KG: KeGroup> SecretKey<KG> for PrivateKey<KG> {
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type Error = core::convert::Infallible;
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type Len = KG::SkLen;
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fn diffie_hellman(
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&self,
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pk: PublicKey<KG>,
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) -> Result<GenericArray<u8, KG::PkLen>, InternalError> {
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Ok(KG::diffie_hellman(pk.0, self.0))
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}
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fn public_key(&self) -> Result<PublicKey<KG>, InternalError> {
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Ok(PublicKey(KG::public_key(self.0)))
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}
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fn serialize(&self) -> GenericArray<u8, Self::Len> {
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KG::serialize_sk(self.0)
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}
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fn deserialize(input: &[u8]) -> Result<Self, InternalError> {
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KG::deserialize_sk(input).map(Self)
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}
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}
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#[cfg(feature = "serde")]
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impl<'de, KG: KeGroup> serde::Deserialize<'de> for PrivateKey<KG> {
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fn deserialize<D>(deserializer: D) -> Result<Self, D::Error>
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where
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D: serde::Deserializer<'de>,
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{
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use serde::de::Error;
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KG::deserialize_sk(&GenericArray::<_, KG::SkLen>::deserialize(deserializer)?)
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.map(Self)
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.map_err(D::Error::custom)
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}
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}
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#[cfg(feature = "serde")]
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impl<KG: KeGroup> serde::Serialize for PrivateKey<KG> {
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fn serialize<S>(&self, serializer: S) -> Result<S::Ok, S::Error>
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where
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S: serde::Serializer,
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{
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KG::serialize_sk(self.0).serialize(serializer)
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}
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}
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/// Wrapper around a Key to enforce that it's a public one.
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#[derive_where(Clone, ZeroizeOnDrop)]
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#[derive_where(Debug, Eq, Hash, Ord, PartialEq, PartialOrd; KG::Pk)]
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pub struct PublicKey<KG: KeGroup>(KG::Pk);
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impl<KG: KeGroup> PublicKey<KG> {
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/// Convert from bytes
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pub fn deserialize(key_bytes: &[u8]) -> Result<Self, InternalError> {
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KG::deserialize_pk(key_bytes).map(Self)
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}
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/// Convert to bytes
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pub fn serialize(&self) -> GenericArray<u8, KG::PkLen> {
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KG::serialize_pk(self.0)
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}
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}
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#[cfg(feature = "serde")]
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impl<'de, KG: KeGroup> serde::Deserialize<'de> for PublicKey<KG> {
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fn deserialize<D>(deserializer: D) -> Result<Self, D::Error>
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where
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D: serde::Deserializer<'de>,
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{
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use serde::de::Error;
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KG::deserialize_pk(&GenericArray::<_, KG::PkLen>::deserialize(deserializer)?)
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.map(Self)
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.map_err(D::Error::custom)
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}
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}
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#[cfg(feature = "serde")]
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impl<KG: KeGroup> serde::Serialize for PublicKey<KG> {
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fn serialize<S>(&self, serializer: S) -> Result<S::Ok, S::Error>
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where
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S: serde::Serializer,
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{
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KG::serialize_pk(self.0).serialize(serializer)
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}
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}
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#[cfg(test)]
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mod tests {
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use rand::rngs::OsRng;
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use super::*;
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use crate::errors::*;
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use crate::util;
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#[test]
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fn test_zeroize_key() {
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fn inner<G: KeGroup>() {
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let mut rng = OsRng;
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let mut key = PrivateKey::<G>(G::random_sk(&mut rng));
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util::test_zeroize_on_drop(&mut key);
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}
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#[cfg(feature = "ristretto255")]
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inner::<crate::Ristretto255>();
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inner::<::p256::NistP256>();
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}
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macro_rules! test {
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($mod:ident, $point:ty) => {
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mod $mod {
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use std::format;
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use proptest::prelude::*;
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use super::*;
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proptest! {
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#[test]
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fn pub_from_priv(kp in KeyPair::<$point>::uniform_keypair_strategy()) {
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let pk = kp.public();
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let sk = kp.private();
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prop_assert_eq!(&sk.public_key()?, pk);
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}
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#[test]
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fn dh(kp1 in KeyPair::<$point>::uniform_keypair_strategy(),
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kp2 in KeyPair::<$point>::uniform_keypair_strategy()) {
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let dh1 = kp2.private().diffie_hellman(kp1.public().clone())?;
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let dh2 = kp1.private().diffie_hellman(kp2.public().clone())?;
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prop_assert_eq!(dh1, dh2);
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}
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#[test]
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fn private_key_slice(kp in KeyPair::<$point>::uniform_keypair_strategy()) {
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let sk_bytes = kp.private().serialize().to_vec();
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let kp2 = KeyPair::<$point>::from_private_key_slice(&sk_bytes)?;
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let kp2_private_bytes = kp2.private().serialize().to_vec();
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prop_assert_eq!(sk_bytes, kp2_private_bytes);
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}
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}
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}
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};
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}
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#[cfg(feature = "ristretto255")]
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test!(ristretto, crate::Ristretto255);
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test!(p256, ::p256::NistP256);
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#[test]
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fn remote_key() {
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use rand::rngs::OsRng;
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use crate::{
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CipherSuite, ClientLogin, ClientLoginFinishParameters, ClientLoginFinishResult,
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ClientLoginStartResult, ClientRegistration, ClientRegistrationFinishParameters,
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ClientRegistrationFinishResult, ClientRegistrationStartResult, ServerLogin,
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ServerLoginStartParameters, ServerLoginStartResult, ServerRegistration,
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ServerRegistrationStartResult, ServerSetup,
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};
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struct Default;
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impl CipherSuite for Default {
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#[cfg(feature = "ristretto255")]
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type OprfCs = crate::Ristretto255;
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#[cfg(not(feature = "ristretto255"))]
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type OprfCs = ::p256::NistP256;
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#[cfg(feature = "ristretto255")]
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type KeGroup = crate::Ristretto255;
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#[cfg(not(feature = "ristretto255"))]
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type KeGroup = ::p256::NistP256;
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type KeyExchange = crate::key_exchange::tripledh::TripleDh;
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type Ksf = crate::ksf::Identity;
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}
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type KeCurve = <Default as CipherSuite>::KeGroup;
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#[derive(Clone)]
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struct RemoteKey(PrivateKey<KeCurve>);
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impl SecretKey<KeCurve> for RemoteKey {
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type Error = core::convert::Infallible;
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type Len = <KeCurve as KeGroup>::SkLen;
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fn diffie_hellman(
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&self,
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pk: PublicKey<KeCurve>,
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) -> Result<GenericArray<u8, <KeCurve as KeGroup>::PkLen>, InternalError<Self::Error>>
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{
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self.0.diffie_hellman(pk)
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}
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fn public_key(&self) -> Result<PublicKey<KeCurve>, InternalError<Self::Error>> {
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self.0.public_key()
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}
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fn serialize(&self) -> GenericArray<u8, Self::Len> {
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self.0.serialize()
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}
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fn deserialize(input: &[u8]) -> Result<Self, InternalError<Self::Error>> {
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PrivateKey::deserialize(input).map(Self)
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}
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}
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const PASSWORD: &str = "password";
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let sk = KeCurve::random_sk(&mut OsRng);
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let sk = RemoteKey(PrivateKey(sk));
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let keypair = KeyPair::from_private_key(sk).unwrap();
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let server_setup = ServerSetup::<Default, RemoteKey>::new_with_key(&mut OsRng, keypair);
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let ClientRegistrationStartResult {
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message,
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state: client,
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} = ClientRegistration::<Default>::start(&mut OsRng, PASSWORD.as_bytes()).unwrap();
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let ServerRegistrationStartResult { message, .. } =
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ServerRegistration::start(&server_setup, message, &[]).unwrap();
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let ClientRegistrationFinishResult { message, .. } = client
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.finish(
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&mut OsRng,
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PASSWORD.as_bytes(),
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message,
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ClientRegistrationFinishParameters::default(),
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)
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.unwrap();
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let file = ServerRegistration::finish(message);
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let ClientLoginStartResult {
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message,
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state: client,
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} = ClientLogin::<Default>::start(&mut OsRng, PASSWORD.as_bytes()).unwrap();
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let ServerLoginStartResult {
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message,
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state: server,
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..
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} = ServerLogin::start(
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&mut OsRng,
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&server_setup,
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Some(file),
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message,
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&[],
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ServerLoginStartParameters::default(),
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)
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.unwrap();
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let ClientLoginFinishResult { message, .. } = client
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.finish(
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PASSWORD.as_bytes(),
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message,
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ClientLoginFinishParameters::default(),
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)
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.unwrap();
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server.finish(message).unwrap();
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}
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}
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