Generic PublicKey and PrivateKey

This commit is contained in:
daxpedda
2021-07-08 18:55:53 -07:00
committed by Kevin Lewi
parent 349329cdeb
commit dd97a81641
9 changed files with 185 additions and 107 deletions
+4 -4
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@@ -32,9 +32,9 @@ const NONCE_LEN: usize = 32;
fn build_inner_envelope_internal<CS: CipherSuite>( fn build_inner_envelope_internal<CS: CipherSuite>(
random_pwd: &[u8], random_pwd: &[u8],
nonce: &[u8], nonce: &[u8],
) -> Result<PublicKey, InternalPakeError> { ) -> Result<PublicKey<CS::Group>, InternalPakeError> {
let h = Hkdf::<CS::Hash>::new(None, random_pwd); let h = Hkdf::<CS::Hash>::new(None, random_pwd);
let mut keypair_seed = vec![0u8; <PrivateKey as SizedBytes>::Len::to_usize()]; let mut keypair_seed = vec![0u8; <PrivateKey<CS::Group> as SizedBytes>::Len::to_usize()];
h.expand(&[nonce, STR_PRIVATE_KEY].concat(), &mut keypair_seed) h.expand(&[nonce, STR_PRIVATE_KEY].concat(), &mut keypair_seed)
.map_err(|_| InternalPakeError::HkdfError)?; .map_err(|_| InternalPakeError::HkdfError)?;
let client_static_keypair = let client_static_keypair =
@@ -50,7 +50,7 @@ fn recover_keys_internal<CS: CipherSuite>(
nonce: &[u8], nonce: &[u8],
) -> Result<KeyPair<CS::Group>, InternalPakeError> { ) -> Result<KeyPair<CS::Group>, InternalPakeError> {
let h = Hkdf::<CS::Hash>::new(None, random_pwd); let h = Hkdf::<CS::Hash>::new(None, random_pwd);
let mut keypair_seed = vec![0u8; <PrivateKey as SizedBytes>::Len::to_usize()]; let mut keypair_seed = vec![0u8; <PrivateKey<CS::Group> as SizedBytes>::Len::to_usize()];
h.expand(&[nonce, STR_PRIVATE_KEY].concat(), &mut keypair_seed) h.expand(&[nonce, STR_PRIVATE_KEY].concat(), &mut keypair_seed)
.map_err(|_| InternalPakeError::HkdfError)?; .map_err(|_| InternalPakeError::HkdfError)?;
let client_static_keypair = let client_static_keypair =
@@ -185,7 +185,7 @@ impl<CS: CipherSuite> Envelope<CS> {
) -> Result< ) -> Result<
( (
Self, Self,
PublicKey, PublicKey<CS::Group>,
GenericArray<u8, <CS::Hash as Digest>::OutputSize>, GenericArray<u8, <CS::Hash as Digest>::OutputSize>,
), ),
InternalPakeError, InternalPakeError,
+2 -2
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@@ -30,7 +30,7 @@ pub trait Group: Copy + Sized + for<'a> Mul<&'a <Self as Group>::Scalar, Output
/// The type of base field scalars /// The type of base field scalars
type Scalar: Zeroize + Clone; type Scalar: Zeroize + Clone;
/// The byte length necessary to represent scalars /// The byte length necessary to represent scalars
type ScalarLen: ArrayLength<u8>; type ScalarLen: ArrayLength<u8> + 'static;
/// Return a scalar from its fixed-length bytes representation /// Return a scalar from its fixed-length bytes representation
fn from_scalar_slice( fn from_scalar_slice(
scalar_bits: &GenericArray<u8, Self::ScalarLen>, scalar_bits: &GenericArray<u8, Self::ScalarLen>,
@@ -43,7 +43,7 @@ pub trait Group: Copy + Sized + for<'a> Mul<&'a <Self as Group>::Scalar, Output
fn scalar_invert(scalar: &Self::Scalar) -> Self::Scalar; fn scalar_invert(scalar: &Self::Scalar) -> Self::Scalar;
/// The byte length necessary to represent group elements /// The byte length necessary to represent group elements
type ElemLen: ArrayLength<u8>; type ElemLen: ArrayLength<u8> + 'static;
/// Return an element from its fixed-length bytes representation /// Return an element from its fixed-length bytes representation
fn from_element_slice( fn from_element_slice(
element_bits: &GenericArray<u8, Self::ElemLen>, element_bits: &GenericArray<u8, Self::ElemLen>,
+4 -4
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@@ -30,8 +30,8 @@ pub trait KeyExchange<D: Hash, G: Group> {
l1_bytes: Vec<u8>, l1_bytes: Vec<u8>,
l2_bytes: Vec<u8>, l2_bytes: Vec<u8>,
ke1_message: Self::KE1Message, ke1_message: Self::KE1Message,
client_s_pk: PublicKey, client_s_pk: PublicKey<G>,
server_s_sk: PrivateKey, server_s_sk: PrivateKey<G>,
id_u: Vec<u8>, id_u: Vec<u8>,
id_s: Vec<u8>, id_s: Vec<u8>,
context: Vec<u8>, context: Vec<u8>,
@@ -43,8 +43,8 @@ pub trait KeyExchange<D: Hash, G: Group> {
ke2_message: Self::KE2Message, ke2_message: Self::KE2Message,
ke1_state: &Self::KE1State, ke1_state: &Self::KE1State,
serialized_credential_request: &[u8], serialized_credential_request: &[u8],
server_s_pk: PublicKey, server_s_pk: PublicKey<G>,
client_s_sk: PrivateKey, client_s_sk: PrivateKey<G>,
id_u: Vec<u8>, id_u: Vec<u8>,
id_s: Vec<u8>, id_s: Vec<u8>,
context: Vec<u8>, context: Vec<u8>,
+52 -31
View File
@@ -43,10 +43,10 @@ static STR_OPAQUE: &[u8] = b"OPAQUE-";
pub struct TripleDH; pub struct TripleDH;
impl<D: Hash, G: Group> KeyExchange<D, G> for TripleDH { impl<D: Hash, G: Group> KeyExchange<D, G> for TripleDH {
type KE1State = Ke1State; type KE1State = Ke1State<G>;
type KE2State = Ke2State<<D as FixedOutput>::OutputSize>; type KE2State = Ke2State<<D as FixedOutput>::OutputSize>;
type KE1Message = Ke1Message; type KE1Message = Ke1Message<G>;
type KE2Message = Ke2Message<<D as FixedOutput>::OutputSize>; type KE2Message = Ke2Message<G, <D as FixedOutput>::OutputSize>;
type KE3Message = Ke3Message<<D as FixedOutput>::OutputSize>; type KE3Message = Ke3Message<<D as FixedOutput>::OutputSize>;
fn generate_ke1<R: RngCore + CryptoRng>( fn generate_ke1<R: RngCore + CryptoRng>(
@@ -75,8 +75,8 @@ impl<D: Hash, G: Group> KeyExchange<D, G> for TripleDH {
serialized_credential_request: Vec<u8>, serialized_credential_request: Vec<u8>,
l2_bytes: Vec<u8>, l2_bytes: Vec<u8>,
ke1_message: Self::KE1Message, ke1_message: Self::KE1Message,
client_s_pk: PublicKey, client_s_pk: PublicKey<G>,
server_s_sk: PrivateKey, server_s_sk: PrivateKey<G>,
id_u: Vec<u8>, id_u: Vec<u8>,
id_s: Vec<u8>, id_s: Vec<u8>,
context: Vec<u8>, context: Vec<u8>,
@@ -133,8 +133,8 @@ impl<D: Hash, G: Group> KeyExchange<D, G> for TripleDH {
ke2_message: Self::KE2Message, ke2_message: Self::KE2Message,
ke1_state: &Self::KE1State, ke1_state: &Self::KE1State,
serialized_credential_request: &[u8], serialized_credential_request: &[u8],
server_s_pk: PublicKey, server_s_pk: PublicKey<G>,
client_s_sk: PrivateKey, client_s_sk: PrivateKey<G>,
id_u: Vec<u8>, id_u: Vec<u8>,
id_s: Vec<u8>, id_s: Vec<u8>,
context: Vec<u8>, context: Vec<u8>,
@@ -208,23 +208,44 @@ impl<D: Hash, G: Group> KeyExchange<D, G> for TripleDH {
} }
/// The client state produced after the first key exchange message /// The client state produced after the first key exchange message
#[derive(PartialEq, Eq, Debug, Hash, Zeroize, Clone)]
#[cfg_attr(feature = "serialize", derive(serde::Deserialize, serde::Serialize))] #[cfg_attr(feature = "serialize", derive(serde::Deserialize, serde::Serialize))]
#[zeroize(drop)] pub struct Ke1State<G> {
pub struct Ke1State { client_e_sk: PrivateKey<G>,
client_e_sk: PrivateKey,
client_nonce: GenericArray<u8, NonceLen>, client_nonce: GenericArray<u8, NonceLen>,
} }
impl_clone_for!(
struct Ke1State<G>,
[client_e_sk, client_nonce],
);
impl_debug_eq_hash_for!(
struct Ke1State<G>,
[client_e_sk, client_nonce],
);
// This can't be derived because of the use of a generic parameter
impl<G> Zeroize for Ke1State<G> {
fn zeroize(&mut self) {
self.client_e_sk.zeroize();
self.client_nonce.zeroize();
}
}
impl<G> Drop for Ke1State<G> {
fn drop(&mut self) {
self.zeroize();
}
}
/// The first key exchange message /// The first key exchange message
#[derive(PartialEq, Eq, Debug, Hash, Clone)] #[derive(PartialEq, Eq, Debug, Hash, Clone)]
#[cfg_attr(feature = "serialize", derive(serde::Deserialize, serde::Serialize))] #[cfg_attr(feature = "serialize", derive(serde::Deserialize, serde::Serialize))]
pub struct Ke1Message { pub struct Ke1Message<G> {
pub(crate) client_nonce: GenericArray<u8, NonceLen>, pub(crate) client_nonce: GenericArray<u8, NonceLen>,
pub(crate) client_e_pk: PublicKey, pub(crate) client_e_pk: PublicKey<G>,
} }
impl FromBytes for Ke1State { impl<G: Group> FromBytes for Ke1State<G> {
fn from_bytes<CS: CipherSuite>(bytes: &[u8]) -> Result<Self, PakeError> { fn from_bytes<CS: CipherSuite>(bytes: &[u8]) -> Result<Self, PakeError> {
let nonce_len = NonceLen::to_usize(); let nonce_len = NonceLen::to_usize();
let checked_bytes = check_slice_size_atleast(bytes, KEY_LEN + nonce_len, "ke1_state")?; let checked_bytes = check_slice_size_atleast(bytes, KEY_LEN + nonce_len, "ke1_state")?;
@@ -238,7 +259,7 @@ impl FromBytes for Ke1State {
} }
} }
impl ToBytesWithPointers for Ke1State { impl<G: Group> ToBytesWithPointers for Ke1State<G> {
fn to_bytes(&self) -> Vec<u8> { fn to_bytes(&self) -> Vec<u8> {
let output: Vec<u8> = [&self.client_e_sk.to_arr(), &self.client_nonce[..]].concat(); let output: Vec<u8> = [&self.client_e_sk.to_arr(), &self.client_nonce[..]].concat();
output output
@@ -249,20 +270,20 @@ impl ToBytesWithPointers for Ke1State {
vec![ vec![
( (
self.client_e_sk.as_ptr(), self.client_e_sk.as_ptr(),
<PrivateKey as SizedBytes>::Len::to_usize(), <PrivateKey<G> as SizedBytes>::Len::to_usize(),
), ),
(self.client_nonce.as_ptr(), NonceLen::to_usize()), (self.client_nonce.as_ptr(), NonceLen::to_usize()),
] ]
} }
} }
impl ToBytes for Ke1Message { impl<G: Group> ToBytes for Ke1Message<G> {
fn to_bytes(&self) -> Vec<u8> { fn to_bytes(&self) -> Vec<u8> {
[&self.client_nonce[..], &self.client_e_pk.to_arr()].concat() [&self.client_nonce[..], &self.client_e_pk.to_arr()].concat()
} }
} }
impl FromBytes for Ke1Message { impl<G: Group> FromBytes for Ke1Message<G> {
fn from_bytes<CS: CipherSuite>(ke1_message_bytes: &[u8]) -> Result<Self, PakeError> { fn from_bytes<CS: CipherSuite>(ke1_message_bytes: &[u8]) -> Result<Self, PakeError> {
let nonce_len = NonceLen::to_usize(); let nonce_len = NonceLen::to_usize();
let checked_nonce = let checked_nonce =
@@ -323,9 +344,9 @@ impl<HashLen: ArrayLength<u8>> ToBytesWithPointers for Ke2State<HashLen> {
#[derive(Clone, Debug, Eq, Hash, PartialEq)] #[derive(Clone, Debug, Eq, Hash, PartialEq)]
#[cfg_attr(feature = "serialize", derive(serde::Deserialize, serde::Serialize))] #[cfg_attr(feature = "serialize", derive(serde::Deserialize, serde::Serialize))]
#[cfg_attr(feature = "serialize", serde(bound = ""))] #[cfg_attr(feature = "serialize", serde(bound = ""))]
pub struct Ke2Message<HashLen: ArrayLength<u8>> { pub struct Ke2Message<G, HashLen: ArrayLength<u8>> {
server_nonce: GenericArray<u8, NonceLen>, server_nonce: GenericArray<u8, NonceLen>,
server_e_pk: PublicKey, server_e_pk: PublicKey<G>,
mac: GenericArray<u8, HashLen>, mac: GenericArray<u8, HashLen>,
} }
@@ -344,19 +365,19 @@ impl<HashLen: ArrayLength<u8>> FromBytes for Ke2State<HashLen> {
} }
} }
impl<HashLen: ArrayLength<u8>> ToBytes for Ke2Message<HashLen> { impl<G: Group, HashLen: ArrayLength<u8>> ToBytes for Ke2Message<G, HashLen> {
fn to_bytes(&self) -> Vec<u8> { fn to_bytes(&self) -> Vec<u8> {
[&self.to_bytes_without_info_or_mac(), &self.mac[..]].concat() [&self.to_bytes_without_info_or_mac(), &self.mac[..]].concat()
} }
} }
impl<HashLen: ArrayLength<u8>> Ke2Message<HashLen> { impl<G: Group, HashLen: ArrayLength<u8>> Ke2Message<G, HashLen> {
fn to_bytes_without_info_or_mac(&self) -> Vec<u8> { fn to_bytes_without_info_or_mac(&self) -> Vec<u8> {
[&self.server_nonce[..], &self.server_e_pk.to_arr()].concat() [&self.server_nonce[..], &self.server_e_pk.to_arr()].concat()
} }
} }
impl<HashLen: ArrayLength<u8>> FromBytes for Ke2Message<HashLen> { impl<G: Group, HashLen: ArrayLength<u8>> FromBytes for Ke2Message<G, HashLen> {
fn from_bytes<CS: CipherSuite>(input: &[u8]) -> Result<Self, PakeError> { fn from_bytes<CS: CipherSuite>(input: &[u8]) -> Result<Self, PakeError> {
let nonce_len = NonceLen::to_usize(); let nonce_len = NonceLen::to_usize();
let checked_nonce = check_slice_size_atleast(input, nonce_len, "ke2_message nonce")?; let checked_nonce = check_slice_size_atleast(input, nonce_len, "ke2_message nonce")?;
@@ -387,13 +408,13 @@ impl<HashLen: ArrayLength<u8>> FromBytes for Ke2Message<HashLen> {
#[allow(clippy::upper_case_acronyms)] #[allow(clippy::upper_case_acronyms)]
// The triple of public and private components used in the 3DH computation // The triple of public and private components used in the 3DH computation
struct TripleDHComponents { struct TripleDHComponents<G> {
pk1: PublicKey, pk1: PublicKey<G>,
sk1: PrivateKey, sk1: PrivateKey<G>,
pk2: PublicKey, pk2: PublicKey<G>,
sk2: PrivateKey, sk2: PrivateKey<G>,
pk3: PublicKey, pk3: PublicKey<G>,
sk3: PrivateKey, sk3: PrivateKey<G>,
} }
#[allow(clippy::upper_case_acronyms)] #[allow(clippy::upper_case_acronyms)]
@@ -433,7 +454,7 @@ impl<HashLen: ArrayLength<u8>> FromBytes for Ke3Message<HashLen> {
// Internal function which takes the public and private components of the client and server keypairs, along // Internal function which takes the public and private components of the client and server keypairs, along
// with some auxiliary metadata, to produce the session key and two MAC keys // with some auxiliary metadata, to produce the session key and two MAC keys
fn derive_3dh_keys<D: Hash, G: Group>( fn derive_3dh_keys<D: Hash, G: Group>(
dh: TripleDHComponents, dh: TripleDHComponents<G>,
hashed_derivation_transcript: &[u8], hashed_derivation_transcript: &[u8],
) -> Result<TripleDHDerivationResult<D>, ProtocolError> { ) -> Result<TripleDHDerivationResult<D>, ProtocolError> {
let ikm: Vec<u8> = [ let ikm: Vec<u8> = [
+107 -50
View File
@@ -11,7 +11,7 @@ use crate::errors::InternalPakeError;
use crate::group::Group; use crate::group::Group;
#[cfg(test)] #[cfg(test)]
use generic_array::typenum::Unsigned; use generic_array::typenum::Unsigned;
use generic_array::{typenum::U32, GenericArray}; use generic_array::{ArrayLength, GenericArray};
use generic_bytes::{SizedBytes, TryFromSizedBytesError}; use generic_bytes::{SizedBytes, TryFromSizedBytesError};
#[cfg(test)] #[cfg(test)]
use proptest::prelude::*; use proptest::prelude::*;
@@ -35,20 +35,19 @@ pub trait SizedBytesExt: SizedBytes {
impl<T> SizedBytesExt for T where T: SizedBytes {} impl<T> SizedBytesExt for T where T: SizedBytes {}
/// A Keypair trait with public-private verification /// A Keypair trait with public-private verification
#[cfg_attr(feature = "serialize", derive(serde::Deserialize, serde::Serialize))] #[cfg_attr(feature = "serialize", derive(serde::Deserialize, serde::Serialize), serde(bound = ""))]
pub struct KeyPair<G> { pub struct KeyPair<G> {
pk: PublicKey, pk: PublicKey<G>,
sk: PrivateKey, sk: PrivateKey<G>,
_g: PhantomData<G>,
} }
impl_clone_for!( impl_clone_for!(
struct KeyPair<G>, struct KeyPair<G>,
[pk, sk, _g], [pk, sk],
); );
impl_debug_eq_hash_for!( impl_debug_eq_hash_for!(
struct KeyPair<G>, struct KeyPair<G>,
[pk, sk, _g], [pk, sk],
); );
// This can't be derived because of the use of a phantom parameter // This can't be derived because of the use of a phantom parameter
@@ -67,12 +66,12 @@ impl<G> Drop for KeyPair<G> {
impl<G: Group> KeyPair<G> { impl<G: Group> KeyPair<G> {
/// The public key component /// The public key component
pub fn public(&self) -> &PublicKey { pub fn public(&self) -> &PublicKey<G> {
&self.pk &self.pk
} }
/// The private key component /// The private key component
pub fn private(&self) -> &PrivateKey { pub fn private(&self) -> &PrivateKey<G> {
&self.sk &self.sk
} }
@@ -82,17 +81,16 @@ impl<G: Group> KeyPair<G> {
let sk_bytes = G::scalar_as_bytes(&sk); let sk_bytes = G::scalar_as_bytes(&sk);
let pk = G::base_point().mult_by_slice(sk_bytes); let pk = G::base_point().mult_by_slice(sk_bytes);
Self { Self {
pk: PublicKey(Key(pk.to_arr().to_vec())), pk: PublicKey::new(Key(pk.to_arr().to_vec())),
sk: PrivateKey(Key(sk_bytes.to_vec())), sk: PrivateKey::new(Key(sk_bytes.to_vec())),
_g: PhantomData,
} }
} }
/// Obtaining a public key from secret bytes. At all times, we should have /// Obtaining a public key from secret bytes. At all times, we should have
/// &public_from_private(self.private()) == self.public() /// &public_from_private(self.private()) == self.public()
pub(crate) fn public_from_private(bytes: &PrivateKey) -> PublicKey { pub(crate) fn public_from_private(bytes: &PrivateKey<G>) -> PublicKey<G> {
let bytes_data = GenericArray::<u8, G::ScalarLen>::from_slice(&bytes.0[..]); let bytes_data = GenericArray::<u8, G::ScalarLen>::from_slice(&bytes.0[..]);
PublicKey(Key(G::base_point() PublicKey::new(Key(G::base_point()
.mult_by_slice(bytes_data) .mult_by_slice(bytes_data)
.to_arr() .to_arr()
.to_vec())) .to_vec()))
@@ -102,14 +100,14 @@ impl<G: Group> KeyPair<G> {
/// material provided through the network which fits the key /// material provided through the network which fits the key
/// representation (i.e. can be mapped to a curve point), but presents /// representation (i.e. can be mapped to a curve point), but presents
/// some risk - e.g. small subgroup check /// some risk - e.g. small subgroup check
pub(crate) fn check_public_key(key: PublicKey) -> Result<PublicKey, InternalPakeError> { pub(crate) fn check_public_key(key: PublicKey<G>) -> Result<PublicKey<G>, InternalPakeError> {
G::from_element_slice(GenericArray::from_slice(&key.0)).map(|_| key) G::from_element_slice(GenericArray::from_slice(&key.0)).map(|_| key)
} }
/// Computes the diffie hellman function on a public key and private key /// Computes the diffie hellman function on a public key and private key
pub(crate) fn diffie_hellman( pub(crate) fn diffie_hellman(
pk: PublicKey, pk: PublicKey<G>,
sk: PrivateKey, sk: PrivateKey<G>,
) -> Result<Vec<u8>, InternalPakeError> { ) -> Result<Vec<u8>, InternalPakeError> {
let pk_data = GenericArray::<u8, G::ElemLen>::from_slice(&pk.0[..]); let pk_data = GenericArray::<u8, G::ElemLen>::from_slice(&pk.0[..]);
let point = G::from_element_slice(pk_data)?; let point = G::from_element_slice(pk_data)?;
@@ -119,20 +117,19 @@ impl<G: Group> KeyPair<G> {
/// Obtains a KeyPair from a slice representing the private key /// Obtains a KeyPair from a slice representing the private key
pub fn from_private_key_slice(input: &[u8]) -> Result<Self, InternalPakeError> { pub fn from_private_key_slice(input: &[u8]) -> Result<Self, InternalPakeError> {
let sk = PrivateKey(Key::from_arr(GenericArray::from_slice(input))?); let sk = PrivateKey::new(Key::from_arr::<G::ScalarLen>(GenericArray::from_slice(input))?);
let pk = Self::public_from_private(&sk); let pk = Self::public_from_private(&sk);
Ok(Self { Ok(Self {
pk, pk,
sk, sk,
_g: PhantomData,
}) })
} }
#[cfg(test)] #[cfg(test)]
pub fn as_byte_ptrs(&self) -> Vec<(*const u8, usize)> { pub fn as_byte_ptrs(&self) -> Vec<(*const u8, usize)> {
vec![ vec![
(self.pk.as_ptr(), KeyLen::to_usize()), (self.pk.as_ptr(), G::ElemLen::to_usize()),
(self.sk.as_ptr(), KeyLen::to_usize()), (self.sk.as_ptr(), G::ScalarLen::to_usize()),
] ]
} }
} }
@@ -154,8 +151,6 @@ impl<G: Group + Debug> KeyPair<G> {
} }
} }
type KeyLen = U32;
/// A minimalist key type built around a \[u8; 32\] /// A minimalist key type built around a \[u8; 32\]
#[derive(Debug, PartialEq, Eq, Clone, Hash, Zeroize)] #[derive(Debug, PartialEq, Eq, Clone, Hash, Zeroize)]
#[cfg_attr(feature = "serialize", derive(serde::Deserialize, serde::Serialize))] #[cfg_attr(feature = "serialize", derive(serde::Deserialize, serde::Serialize))]
@@ -174,69 +169,131 @@ impl Deref for Key {
// Don't make it implement SizedBytes so that it's not constructible outside of this module. // Don't make it implement SizedBytes so that it's not constructible outside of this module.
impl Key { impl Key {
fn to_arr(&self) -> GenericArray<u8, KeyLen> { fn to_arr<L: ArrayLength<u8>>(&self) -> GenericArray<u8, L> {
GenericArray::clone_from_slice(&self.0[..]) GenericArray::clone_from_slice(&self.0[..])
} }
#[allow(clippy::unnecessary_wraps)] #[allow(clippy::unnecessary_wraps)]
fn from_arr(key_bytes: &GenericArray<u8, KeyLen>) -> Result<Self, TryFromSizedBytesError> { fn from_arr<L: ArrayLength<u8>>(key_bytes: &GenericArray<u8, L>) -> Result<Self, TryFromSizedBytesError> {
Ok(Key(key_bytes.to_vec())) Ok(Key(key_bytes.to_vec()))
} }
} }
/// Wrapper around a Key to enforce that it's a private one. /// Wrapper around a Key to enforce that it's a private one.
#[derive(Debug, PartialEq, Eq, Clone, Hash, Zeroize)]
#[cfg_attr(feature = "serialize", derive(serde::Deserialize, serde::Serialize))] #[cfg_attr(feature = "serialize", derive(serde::Deserialize, serde::Serialize))]
// Ensure Key material is zeroed after use.
#[zeroize(drop)]
#[repr(transparent)] #[repr(transparent)]
pub struct PrivateKey(Key); pub struct PrivateKey<G> {
key: Key,
_g: PhantomData<G>,
}
impl Deref for PrivateKey { impl_clone_for!(
type Target = Key; struct PrivateKey<G>,
[key, _g],
);
impl_debug_eq_hash_for!(
struct PrivateKey<G>,
[key, _g],
);
fn deref(&self) -> &Self::Target { // This can't be derived because of the use of a phantom parameter
&self.0 impl<G> Zeroize for PrivateKey<G> {
fn zeroize(&mut self) {
self.key.zeroize();
} }
} }
impl SizedBytes for PrivateKey { impl<G> Drop for PrivateKey<G> {
type Len = KeyLen; fn drop(&mut self) {
self.zeroize();
}
}
impl<G> Deref for PrivateKey<G> {
type Target = Key;
fn deref(&self) -> &Self::Target {
&self.key
}
}
impl<G> PrivateKey<G> {
fn new(key: Key) -> Self {
Self {
key,
_g: PhantomData,
}
}
}
impl<G: Group> SizedBytes for PrivateKey<G> {
type Len = G::ScalarLen;
fn to_arr(&self) -> GenericArray<u8, Self::Len> { fn to_arr(&self) -> GenericArray<u8, Self::Len> {
self.0.to_arr() self.key.to_arr()
} }
fn from_arr(key_bytes: &GenericArray<u8, Self::Len>) -> Result<Self, TryFromSizedBytesError> { fn from_arr(key_bytes: &GenericArray<u8, Self::Len>) -> Result<Self, TryFromSizedBytesError> {
Ok(PrivateKey(Key::from_arr(key_bytes)?)) Ok(PrivateKey::new(Key::from_arr(key_bytes)?))
} }
} }
/// Wrapper around a Key to enforce that it's a public one. /// Wrapper around a Key to enforce that it's a public one.
#[derive(Debug, PartialEq, Eq, Clone, Hash, Zeroize)]
#[cfg_attr(feature = "serialize", derive(serde::Deserialize, serde::Serialize))] #[cfg_attr(feature = "serialize", derive(serde::Deserialize, serde::Serialize))]
// Ensure Key material is zeroed after use.
#[zeroize(drop)]
#[repr(transparent)] #[repr(transparent)]
pub struct PublicKey(Key); pub struct PublicKey<G> {
key: Key,
_g: PhantomData<G>,
}
impl Deref for PublicKey { impl_clone_for!(
type Target = Key; struct PublicKey<G>,
[key, _g],
);
impl_debug_eq_hash_for!(
struct PublicKey<G>,
[key, _g],
);
fn deref(&self) -> &Self::Target { // This can't be derived because of the use of a phantom parameter
&self.0 impl<G> Zeroize for PublicKey<G> {
fn zeroize(&mut self) {
self.key.zeroize();
} }
} }
impl SizedBytes for PublicKey { impl<G> Drop for PublicKey<G> {
type Len = KeyLen; fn drop(&mut self) {
self.zeroize();
}
}
impl<G> Deref for PublicKey<G> {
type Target = Key;
fn deref(&self) -> &Self::Target {
&self.key
}
}
impl<G> PublicKey<G> {
fn new(key: Key) -> Self {
Self {
key,
_g: PhantomData,
}
}
}
impl<G: Group> SizedBytes for PublicKey<G> {
type Len = G::ElemLen;
fn to_arr(&self) -> GenericArray<u8, Self::Len> { fn to_arr(&self) -> GenericArray<u8, Self::Len> {
self.0.to_arr() self.key.to_arr()
} }
fn from_arr(key_bytes: &GenericArray<u8, Self::Len>) -> Result<Self, TryFromSizedBytesError> { fn from_arr(key_bytes: &GenericArray<u8, Self::Len>) -> Result<Self, TryFromSizedBytesError> {
Ok(PublicKey(Key::from_arr(key_bytes)?)) Ok(PublicKey::new(Key::from_arr(key_bytes)?))
} }
} }
@@ -251,7 +308,7 @@ mod tests {
#[test] #[test]
fn test_zeroize_key() -> Result<(), ProtocolError> { fn test_zeroize_key() -> Result<(), ProtocolError> {
let key_len = KeyLen::to_usize(); let key_len = <RistrettoPoint as Group>::ElemLen::to_usize();
let mut key = Key(vec![1u8; key_len]); let mut key = Key(vec![1u8; key_len]);
let ptr = key.as_ptr(); let ptr = key.as_ptr();
+5 -5
View File
@@ -79,7 +79,7 @@ pub struct RegistrationResponse<CS: CipherSuite> {
/// The server's oprf output /// The server's oprf output
pub(crate) beta: CS::Group, pub(crate) beta: CS::Group,
/// Server's static public key /// Server's static public key
pub(crate) server_s_pk: PublicKey, pub(crate) server_s_pk: PublicKey<CS::Group>,
} }
// Cannot be derived because it would require for CS to be Clone. // Cannot be derived because it would require for CS to be Clone.
@@ -107,7 +107,7 @@ impl<CS: CipherSuite> RegistrationResponse<CS> {
/// Deserialization from bytes /// Deserialization from bytes
pub fn deserialize(input: &[u8]) -> Result<Self, ProtocolError> { pub fn deserialize(input: &[u8]) -> Result<Self, ProtocolError> {
let elem_len = <CS::Group as Group>::ElemLen::to_usize(); let elem_len = <CS::Group as Group>::ElemLen::to_usize();
let key_len = <PublicKey as SizedBytes>::Len::to_usize(); let key_len = <PublicKey<CS::Group> as SizedBytes>::Len::to_usize();
let checked_slice = let checked_slice =
check_slice_size(input, elem_len + key_len, "registration_response_bytes")?; check_slice_size(input, elem_len + key_len, "registration_response_bytes")?;
@@ -141,7 +141,7 @@ pub struct RegistrationUpload<CS: CipherSuite> {
/// The masking key used to mask the envelope /// The masking key used to mask the envelope
pub(crate) masking_key: GenericArray<u8, <CS::Hash as Digest>::OutputSize>, pub(crate) masking_key: GenericArray<u8, <CS::Hash as Digest>::OutputSize>,
/// The user's public key /// The user's public key
pub(crate) client_s_pk: PublicKey, pub(crate) client_s_pk: PublicKey<CS::Group>,
} }
impl_clone_for!( impl_clone_for!(
@@ -166,7 +166,7 @@ impl<CS: CipherSuite> RegistrationUpload<CS> {
/// Deserialization from bytes /// Deserialization from bytes
pub fn deserialize(input: &[u8]) -> Result<Self, ProtocolError> { pub fn deserialize(input: &[u8]) -> Result<Self, ProtocolError> {
let key_len = <PublicKey as SizedBytes>::Len::to_usize(); let key_len = <PublicKey<CS::Group> as SizedBytes>::Len::to_usize();
let hash_len = <CS::Hash as Digest>::OutputSize::to_usize(); let hash_len = <CS::Hash as Digest>::OutputSize::to_usize();
let checked_slice = let checked_slice =
check_slice_size_atleast(input, key_len + hash_len, "registration_upload_bytes")?; check_slice_size_atleast(input, key_len + hash_len, "registration_upload_bytes")?;
@@ -311,7 +311,7 @@ impl<CS: CipherSuite> CredentialResponse<CS> {
/// Deserialization from bytes /// Deserialization from bytes
pub fn deserialize(input: &[u8]) -> Result<Self, ProtocolError> { pub fn deserialize(input: &[u8]) -> Result<Self, ProtocolError> {
let elem_len = <CS::Group as Group>::ElemLen::to_usize(); let elem_len = <CS::Group as Group>::ElemLen::to_usize();
let key_len = <PublicKey as SizedBytes>::Len::to_usize(); let key_len = <PublicKey<CS::Group> as SizedBytes>::Len::to_usize();
let nonce_len: usize = 32; let nonce_len: usize = 32;
let envelope_len = Envelope::<CS>::len(); let envelope_len = Envelope::<CS>::len();
let masked_response_len = key_len + envelope_len; let masked_response_len = key_len + envelope_len;
+9 -9
View File
@@ -69,7 +69,7 @@ impl<CS: CipherSuite> ServerSetup<CS> {
/// Deserialization from bytes /// Deserialization from bytes
pub fn deserialize(input: &[u8]) -> Result<Self, ProtocolError> { pub fn deserialize(input: &[u8]) -> Result<Self, ProtocolError> {
let seed_len = <CS::Hash as Digest>::OutputSize::to_usize(); let seed_len = <CS::Hash as Digest>::OutputSize::to_usize();
let key_len = <PrivateKey as SizedBytes>::Len::to_usize(); let key_len = <PrivateKey<CS::Group> as SizedBytes>::Len::to_usize();
let checked_slice = check_slice_size(input, seed_len + key_len + key_len, "server_setup")?; let checked_slice = check_slice_size(input, seed_len + key_len + key_len, "server_setup")?;
Ok(Self { Ok(Self {
@@ -242,7 +242,7 @@ pub struct ClientRegistrationFinishResult<CS: CipherSuite> {
/// The export key output by client registration /// The export key output by client registration
pub export_key: GenericArray<u8, <CS::Hash as Digest>::OutputSize>, pub export_key: GenericArray<u8, <CS::Hash as Digest>::OutputSize>,
/// The server's static public key /// The server's static public key
pub server_s_pk: PublicKey, pub server_s_pk: PublicKey<CS::Group>,
/// Instance of the ClientRegistration, only used in tests for checking zeroize /// Instance of the ClientRegistration, only used in tests for checking zeroize
#[cfg(test)] #[cfg(test)]
pub state: ClientRegistration<CS>, pub state: ClientRegistration<CS>,
@@ -517,7 +517,7 @@ pub struct ClientLoginFinishResult<CS: CipherSuite> {
/// The client-side export key /// The client-side export key
pub export_key: GenericArray<u8, <CS::Hash as Digest>::OutputSize>, pub export_key: GenericArray<u8, <CS::Hash as Digest>::OutputSize>,
/// The server's static public key /// The server's static public key
pub server_s_pk: PublicKey, pub server_s_pk: PublicKey<CS::Group>,
/// Instance of the ClientLogin, only used in tests for checking zeroize /// Instance of the ClientLogin, only used in tests for checking zeroize
#[cfg(test)] #[cfg(test)]
pub state: ClientLogin<CS>, pub state: ClientLogin<CS>,
@@ -915,7 +915,7 @@ fn oprf_key_from_seed<G: GroupWithMapToCurve, D: Hash>(
oprf_seed: &GenericArray<u8, D::OutputSize>, oprf_seed: &GenericArray<u8, D::OutputSize>,
credential_identifier: &[u8], credential_identifier: &[u8],
) -> Result<G::Scalar, InternalPakeError> { ) -> Result<G::Scalar, InternalPakeError> {
let mut oprf_key_bytes = vec![0u8; <PrivateKey as SizedBytes>::Len::to_usize()]; let mut oprf_key_bytes = vec![0u8; <PrivateKey<G> as SizedBytes>::Len::to_usize()];
Hkdf::<D>::from_prk(oprf_seed) Hkdf::<D>::from_prk(oprf_seed)
.map_err(|_| InternalPakeError::HkdfError)? .map_err(|_| InternalPakeError::HkdfError)?
.expand( .expand(
@@ -929,10 +929,10 @@ fn oprf_key_from_seed<G: GroupWithMapToCurve, D: Hash>(
fn mask_response<CS: CipherSuite>( fn mask_response<CS: CipherSuite>(
masking_key: &[u8], masking_key: &[u8],
masking_nonce: &[u8], masking_nonce: &[u8],
server_s_pk: &PublicKey, server_s_pk: &PublicKey<CS::Group>,
envelope: &Envelope<CS>, envelope: &Envelope<CS>,
) -> Result<Vec<u8>, ProtocolError> { ) -> Result<Vec<u8>, ProtocolError> {
let mut xor_pad = vec![0u8; <PublicKey as SizedBytes>::Len::to_usize() + Envelope::<CS>::len()]; let mut xor_pad = vec![0u8; <PublicKey<CS::Group> as SizedBytes>::Len::to_usize() + Envelope::<CS>::len()];
Hkdf::<CS::Hash>::from_prk(masking_key) Hkdf::<CS::Hash>::from_prk(masking_key)
.map_err(|_| InternalPakeError::HkdfError)? .map_err(|_| InternalPakeError::HkdfError)?
.expand( .expand(
@@ -954,8 +954,8 @@ fn unmask_response<CS: CipherSuite>(
masking_key: &[u8], masking_key: &[u8],
masking_nonce: &[u8], masking_nonce: &[u8],
masked_response: &[u8], masked_response: &[u8],
) -> Result<(PublicKey, Envelope<CS>), ProtocolError> { ) -> Result<(PublicKey<CS::Group>, Envelope<CS>), ProtocolError> {
let mut xor_pad = vec![0u8; <PublicKey as SizedBytes>::Len::to_usize() + Envelope::<CS>::len()]; let mut xor_pad = vec![0u8; <PublicKey<CS::Group> as SizedBytes>::Len::to_usize() + Envelope::<CS>::len()];
Hkdf::<CS::Hash>::from_prk(masking_key) Hkdf::<CS::Hash>::from_prk(masking_key)
.map_err(|_| InternalPakeError::HkdfError)? .map_err(|_| InternalPakeError::HkdfError)?
.expand( .expand(
@@ -968,7 +968,7 @@ fn unmask_response<CS: CipherSuite>(
.zip(masked_response.iter()) .zip(masked_response.iter())
.map(|(&x1, &x2)| x1 ^ x2) .map(|(&x1, &x2)| x1 ^ x2)
.collect(); .collect();
let key_len = <PublicKey as SizedBytes>::Len::to_usize(); let key_len = <PublicKey<CS::Group> as SizedBytes>::Len::to_usize();
let unchecked_server_s_pk = let unchecked_server_s_pk =
PublicKey::from_arr(&GenericArray::clone_from_slice(&plaintext[..key_len]))?; PublicKey::from_arr(&GenericArray::clone_from_slice(&plaintext[..key_len]))?;
let envelope = Envelope::deserialize(&plaintext[key_len..])?; let envelope = Envelope::deserialize(&plaintext[key_len..])?;
+1 -1
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@@ -212,7 +212,7 @@ fn credential_response_roundtrip() {
rng.fill_bytes(&mut masking_nonce); rng.fill_bytes(&mut masking_nonce);
let mut masked_response = let mut masked_response =
vec![0u8; <PublicKey as SizedBytes>::Len::to_usize() + Envelope::<Default>::len()]; vec![0u8; <PublicKey<RistrettoPoint> as SizedBytes>::Len::to_usize() + Envelope::<Default>::len()];
rng.fill_bytes(&mut masked_response); rng.fill_bytes(&mut masked_response);
let server_e_kp = KeyPair::<<Default as CipherSuite>::Group>::generate_random(&mut rng); let server_e_kp = KeyPair::<<Default as CipherSuite>::Group>::generate_random(&mut rng);
+1 -1
View File
@@ -445,7 +445,7 @@ fn populate_test_vectors(values: &Value) -> TestVectorParameters {
dummy_private_key: parse_default!( dummy_private_key: parse_default!(
values, values,
"client_private_key", "client_private_key",
vec![0u8; <PrivateKey as SizedBytes>::Len::to_usize()] vec![0u8; <PrivateKey<RistrettoPoint> as SizedBytes>::Len::to_usize()]
), ),
dummy_masking_key: parse_default!(values, "masking_key", vec![0u8; 64]), dummy_masking_key: parse_default!(values, "masking_key", vec![0u8; 64]),
context: parse!(values, "Context"), context: parse!(values, "Context"),