mirror of
https://github.com/denoland/deno.git
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148 lines
3.4 KiB
Rust
148 lines
3.4 KiB
Rust
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// Copyright 2018-2024 the Deno authors. All rights reserved. MIT license.
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use deno_core::error::custom_error;
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use deno_core::error::AnyError;
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use deno_core::op2;
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use deno_core::ToJsBuffer;
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use ed448_goldilocks::curve::MontgomeryPoint;
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use ed448_goldilocks::Scalar;
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use elliptic_curve::pkcs8::PrivateKeyInfo;
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use elliptic_curve::subtle::ConstantTimeEq;
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use rand::rngs::OsRng;
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use rand::RngCore;
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use spki::der::asn1::BitString;
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use spki::der::Decode;
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use spki::der::Encode;
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#[op2(fast)]
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pub fn op_crypto_generate_x448_keypair(
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#[buffer] pkey: &mut [u8],
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#[buffer] pubkey: &mut [u8],
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) {
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let mut rng = OsRng;
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rng.fill_bytes(pkey);
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// x448(pkey, 5)
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let point = &MontgomeryPoint::generator()
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* &Scalar::from_bytes(pkey.try_into().unwrap());
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pubkey.copy_from_slice(&point.0);
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}
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const MONTGOMERY_IDENTITY: MontgomeryPoint = MontgomeryPoint([0; 56]);
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#[op2(fast)]
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pub fn op_crypto_derive_bits_x448(
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#[buffer] k: &[u8],
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#[buffer] u: &[u8],
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#[buffer] secret: &mut [u8],
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) -> bool {
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let k: [u8; 56] = k.try_into().expect("Expected byteLength 56");
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let u: [u8; 56] = u.try_into().expect("Expected byteLength 56");
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// x448(k, u)
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let point = &MontgomeryPoint(u) * &Scalar::from_bytes(k);
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if point.ct_eq(&MONTGOMERY_IDENTITY).unwrap_u8() == 1 {
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return true;
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}
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secret.copy_from_slice(&point.0);
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false
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}
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// id-X448 OBJECT IDENTIFIER ::= { 1 3 101 111 }
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const X448_OID: const_oid::ObjectIdentifier =
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const_oid::ObjectIdentifier::new_unwrap("1.3.101.111");
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#[op2]
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#[serde]
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pub fn op_crypto_export_spki_x448(
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#[buffer] pubkey: &[u8],
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) -> Result<ToJsBuffer, AnyError> {
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let key_info = spki::SubjectPublicKeyInfo {
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algorithm: spki::AlgorithmIdentifierRef {
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oid: X448_OID,
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parameters: None,
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},
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subject_public_key: BitString::from_bytes(pubkey)?,
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};
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Ok(
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key_info
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.to_der()
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.map_err(|_| {
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custom_error("DOMExceptionOperationError", "Failed to export key")
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})?
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.into(),
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)
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}
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#[op2]
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#[serde]
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pub fn op_crypto_export_pkcs8_x448(
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#[buffer] pkey: &[u8],
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) -> Result<ToJsBuffer, AnyError> {
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use rsa::pkcs1::der::Encode;
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let pk_info = rsa::pkcs8::PrivateKeyInfo {
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public_key: None,
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algorithm: rsa::pkcs8::AlgorithmIdentifierRef {
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oid: X448_OID,
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parameters: None,
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},
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private_key: pkey, // OCTET STRING
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};
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let mut buf = Vec::new();
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pk_info.encode_to_vec(&mut buf)?;
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Ok(buf.into())
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}
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#[op2(fast)]
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pub fn op_crypto_import_spki_x448(
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#[buffer] key_data: &[u8],
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#[buffer] out: &mut [u8],
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) -> bool {
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// 2-3.
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let pk_info = match spki::SubjectPublicKeyInfoRef::try_from(key_data) {
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Ok(pk_info) => pk_info,
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Err(_) => return false,
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};
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// 4.
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let alg = pk_info.algorithm.oid;
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if alg != X448_OID {
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return false;
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}
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// 5.
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if pk_info.algorithm.parameters.is_some() {
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return false;
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}
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out.copy_from_slice(pk_info.subject_public_key.raw_bytes());
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true
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}
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#[op2(fast)]
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pub fn op_crypto_import_pkcs8_x448(
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#[buffer] key_data: &[u8],
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#[buffer] out: &mut [u8],
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) -> bool {
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// 2-3.
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let pk_info = match PrivateKeyInfo::from_der(key_data) {
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Ok(pk_info) => pk_info,
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Err(_) => return false,
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};
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// 4.
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let alg = pk_info.algorithm.oid;
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if alg != X448_OID {
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return false;
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}
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// 5.
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if pk_info.algorithm.parameters.is_some() {
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return false;
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}
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// 6.
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// CurvePrivateKey ::= OCTET STRING
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if pk_info.private_key.len() != 56 {
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return false;
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}
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out.copy_from_slice(&pk_info.private_key[2..]);
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true
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}
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