check for sanity
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@ -34,16 +34,43 @@ pub const KEY_LENGTH: usize = 32;
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pub const KEY_ITERATIONS: usize = 10240;
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pub const KEY_ITERATIONS: usize = 10240;
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pub const KEY_LENGTH_AES: usize = KEY_LENGTH / 2;
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pub const KEY_LENGTH_AES: usize = KEY_LENGTH / 2;
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#[derive(PartialEq, Debug)]
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pub enum ScryptError {
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// log(N) < r / 16
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InvalidN,
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// p <= (2^31-1 * 32)/(128 * r)
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InvalidP,
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}
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impl fmt::Display for ScryptError {
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fn fmt(&self, f: &mut fmt::Formatter) -> Result<(), fmt::Error> {
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let s = match *self {
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ScryptError::InvalidN => "Invalid N argument of the scrypt encryption" ,
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ScryptError::InvalidP => "Invalid p argument of the scrypt encryption",
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};
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write!(f, "{}", s)
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}
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}
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#[derive(PartialEq, Debug)]
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#[derive(PartialEq, Debug)]
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pub enum Error {
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pub enum Error {
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Secp(SecpError),
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Secp(SecpError),
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Scrypt(ScryptError),
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InvalidMessage,
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InvalidMessage,
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}
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}
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impl From<ScryptError> for Error {
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fn from(err: ScryptError) -> Self {
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Error::Scrypt(err)
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}
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}
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impl fmt::Display for Error {
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impl fmt::Display for Error {
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fn fmt(&self, f: &mut fmt::Formatter) -> Result<(), fmt::Error> {
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fn fmt(&self, f: &mut fmt::Formatter) -> Result<(), fmt::Error> {
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let s = match *self {
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let s = match *self {
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Error::Secp(ref err) => err.to_string(),
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Error::Secp(ref err) => err.to_string(),
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Error::Scrypt(ref err) => err.to_string(),
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Error::InvalidMessage => "Invalid message".into(),
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Error::InvalidMessage => "Invalid message".into(),
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};
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};
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@ -80,13 +107,23 @@ pub fn derive_key_iterations(password: &str, salt: &[u8; 32], c: u32) -> (Vec<u8
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(derived_right_bits.to_vec(), derived_left_bits.to_vec())
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(derived_right_bits.to_vec(), derived_left_bits.to_vec())
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}
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}
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pub fn derive_key_scrypt(password: &str, salt: &[u8; 32], n: u32, p: u32, r: u32) -> (Vec<u8>, Vec<u8>) {
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pub fn derive_key_scrypt(password: &str, salt: &[u8; 32], n: u32, p: u32, r: u32) -> Result<(Vec<u8>, Vec<u8>), Error> {
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// sanity checks
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let log_n = (32 - n.leading_zeros() - 1) as u8;
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if log_n as u32 >= r * 16 {
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return Err(Error::Scrypt(ScryptError::InvalidN));
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}
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if p as u64 > ((u32::max_value() as u64 - 1) * 32)/(128 * (r as u64)) {
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return Err(Error::Scrypt(ScryptError::InvalidP));
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}
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let mut derived_key = vec![0u8; KEY_LENGTH];
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let mut derived_key = vec![0u8; KEY_LENGTH];
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let scrypt_params = ScryptParams::new(n.trailing_zeros() as u8, r, p);
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let scrypt_params = ScryptParams::new(log_n, r, p);
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scrypt(password.as_bytes(), salt, &scrypt_params, &mut derived_key);
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scrypt(password.as_bytes(), salt, &scrypt_params, &mut derived_key);
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let derived_right_bits = &derived_key[0..KEY_LENGTH_AES];
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let derived_right_bits = &derived_key[0..KEY_LENGTH_AES];
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let derived_left_bits = &derived_key[KEY_LENGTH_AES..KEY_LENGTH];
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let derived_left_bits = &derived_key[KEY_LENGTH_AES..KEY_LENGTH];
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(derived_right_bits.to_vec(), derived_left_bits.to_vec())
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Ok((derived_right_bits.to_vec(), derived_left_bits.to_vec()))
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}
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}
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pub fn derive_mac(derived_left_bits: &[u8], cipher_text: &[u8]) -> Vec<u8> {
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pub fn derive_mac(derived_left_bits: &[u8], cipher_text: &[u8]) -> Vec<u8> {
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@ -113,7 +113,7 @@ impl Crypto {
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let (derived_left_bits, derived_right_bits) = match self.kdf {
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let (derived_left_bits, derived_right_bits) = match self.kdf {
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Kdf::Pbkdf2(ref params) => crypto::derive_key_iterations(password, ¶ms.salt, params.c),
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Kdf::Pbkdf2(ref params) => crypto::derive_key_iterations(password, ¶ms.salt, params.c),
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Kdf::Scrypt(ref params) => crypto::derive_key_scrypt(password, ¶ms.salt, params.n, params.p, params.r),
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Kdf::Scrypt(ref params) => try!(crypto::derive_key_scrypt(password, ¶ms.salt, params.n, params.p, params.r)),
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};
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};
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let mac = crypto::derive_mac(&derived_right_bits, &self.ciphertext).keccak256();
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let mac = crypto::derive_mac(&derived_right_bits, &self.ciphertext).keccak256();
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