mtp/crypto/src/aead.rs

185 lines
5.4 KiB
Rust

use crate::error::CryptoError;
#[cfg(any(feature = "chacha20poly1305", feature = "aes-gcm"))]
use zeroize::Zeroizing;
#[cfg(any(feature = "chacha20poly1305", feature = "aes-gcm"))]
use getrandom::fill;
/// Authentication-tag length shared by the supported AEAD constructions.
pub const AUTH_TAG_LEN: usize = 16;
/// Nonce length stored at the front of an XChaCha20-Poly1305 output.
pub const XCHACHA20POLY1305_NONCE_LEN: usize = 24;
/// Nonce length stored at the front of an AES-256-GCM output.
pub const AES256GCM_NONCE_LEN: usize = 12;
pub trait AeadEncrypt {
fn encrypt(&self, plaintext: &[u8], aad: &[u8]) -> Result<Vec<u8>, CryptoError>;
}
pub trait AeadDecrypt {
fn decrypt(&self, ciphertext: &[u8], aad: &[u8]) -> Result<Vec<u8>, CryptoError>;
}
pub trait AeadCipher: AeadEncrypt + AeadDecrypt {
fn key_size() -> usize;
}
#[cfg(any(feature = "chacha20poly1305", feature = "aes-gcm"))]
fn prepend_nonce(nonce: &[u8], ciphertext: &mut Vec<u8>) -> Vec<u8> {
let mut out = Vec::with_capacity(nonce.len() + ciphertext.len());
out.extend_from_slice(nonce);
out.append(ciphertext);
out
}
#[cfg(feature = "chacha20poly1305")]
pub struct XChaCha20Poly1305 {
key: Zeroizing<[u8; 32]>,
}
#[cfg(feature = "chacha20poly1305")]
impl XChaCha20Poly1305 {
pub fn new(key: [u8; 32]) -> Self {
Self {
key: Zeroizing::new(key),
}
}
}
#[cfg(feature = "chacha20poly1305")]
impl AeadEncrypt for XChaCha20Poly1305 {
fn encrypt(&self, plaintext: &[u8], aad: &[u8]) -> Result<Vec<u8>, CryptoError> {
use chacha20poly1305::XChaCha20Poly1305;
use chacha20poly1305::XNonce;
use chacha20poly1305::aead::{Aead, KeyInit, Payload};
let key = chacha20poly1305::Key::from_slice(self.key.as_ref());
let cipher = XChaCha20Poly1305::new(key);
let mut nonce = [0u8; XCHACHA20POLY1305_NONCE_LEN];
fill(&mut nonce).map_err(|_| CryptoError::EncryptionFailed)?;
let nonce_ref = XNonce::from_slice(&nonce);
let payload = Payload {
msg: plaintext,
aad,
};
let mut ciphertext = cipher
.encrypt(nonce_ref, payload)
.map_err(|_| CryptoError::EncryptionFailed)?;
Ok(prepend_nonce(&nonce, &mut ciphertext))
}
}
#[cfg(feature = "chacha20poly1305")]
impl AeadDecrypt for XChaCha20Poly1305 {
fn decrypt(&self, ciphertext: &[u8], aad: &[u8]) -> Result<Vec<u8>, CryptoError> {
use chacha20poly1305::XChaCha20Poly1305;
use chacha20poly1305::XNonce;
use chacha20poly1305::aead::{Aead, KeyInit, Payload};
if ciphertext.len() < XCHACHA20POLY1305_NONCE_LEN + AUTH_TAG_LEN {
return Err(CryptoError::InvalidNonceLength);
}
let (nonce, ct) = ciphertext.split_at(XCHACHA20POLY1305_NONCE_LEN);
let key = chacha20poly1305::Key::from_slice(self.key.as_ref());
let cipher = XChaCha20Poly1305::new(key);
let nonce_ref = XNonce::from_slice(nonce);
let payload = Payload { msg: ct, aad };
cipher
.decrypt(nonce_ref, payload)
.map_err(|_| CryptoError::DecryptionFailed)
}
}
#[cfg(feature = "chacha20poly1305")]
impl AeadCipher for XChaCha20Poly1305 {
fn key_size() -> usize {
32
}
}
/// Compatibility alias for the original public name. The implementation is
/// XChaCha20-Poly1305, including its 24-byte nonce format.
#[cfg(feature = "chacha20poly1305")]
pub type ChaCha20Poly1305 = XChaCha20Poly1305;
#[cfg(feature = "aes-gcm")]
pub struct Aes256Gcm {
key: Zeroizing<[u8; 32]>,
}
#[cfg(feature = "aes-gcm")]
impl Aes256Gcm {
pub fn new(key: [u8; 32]) -> Self {
Self {
key: Zeroizing::new(key),
}
}
}
#[cfg(feature = "aes-gcm")]
impl AeadEncrypt for Aes256Gcm {
fn encrypt(&self, plaintext: &[u8], aad: &[u8]) -> Result<Vec<u8>, CryptoError> {
use aes_gcm::Aes256Gcm as AesGcmInner;
use aes_gcm::Nonce;
use aes_gcm::aead::{Aead, KeyInit, Payload};
let key = aes_gcm::Key::<AesGcmInner>::from_slice(self.key.as_ref());
let cipher = AesGcmInner::new(key);
let mut nonce = [0u8; AES256GCM_NONCE_LEN];
fill(&mut nonce).map_err(|_| CryptoError::EncryptionFailed)?;
let nonce_ref = Nonce::from_slice(&nonce);
let payload = Payload {
msg: plaintext,
aad,
};
let mut ciphertext = cipher
.encrypt(nonce_ref, payload)
.map_err(|_| CryptoError::EncryptionFailed)?;
Ok(prepend_nonce(&nonce, &mut ciphertext))
}
}
#[cfg(feature = "aes-gcm")]
impl AeadDecrypt for Aes256Gcm {
fn decrypt(&self, ciphertext: &[u8], aad: &[u8]) -> Result<Vec<u8>, CryptoError> {
use aes_gcm::Aes256Gcm as AesGcmInner;
use aes_gcm::Nonce;
use aes_gcm::aead::{Aead, KeyInit, Payload};
if ciphertext.len() < AES256GCM_NONCE_LEN + AUTH_TAG_LEN {
return Err(CryptoError::InvalidNonceLength);
}
let (nonce, ct) = ciphertext.split_at(AES256GCM_NONCE_LEN);
let key = aes_gcm::Key::<AesGcmInner>::from_slice(self.key.as_ref());
let cipher = AesGcmInner::new(key);
let nonce_ref = Nonce::from_slice(nonce);
let payload = Payload { msg: ct, aad };
cipher
.decrypt(nonce_ref, payload)
.map_err(|_| CryptoError::DecryptionFailed)
}
}
#[cfg(feature = "aes-gcm")]
impl AeadCipher for Aes256Gcm {
fn key_size() -> usize {
32
}
}