2024-01-07 04:18:52 +00:00
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#![allow(clippy::implicit_clone)]
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2023-09-07 18:24:07 +00:00
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use crate::{request::*, *};
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2023-09-01 04:10:56 +00:00
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use hex_literal::hex;
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use std::str::FromStr;
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// Pulled from: https://github.com/satoshilabs/slips/blob/master/slip-0010.md
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2023-09-25 22:05:20 +00:00
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use keyfork_slip10_test_data::{test_data, Test};
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2023-09-06 15:21:47 +00:00
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#[cfg(feature = "secp256k1")]
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2023-09-01 04:10:56 +00:00
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#[test]
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2023-09-06 15:21:47 +00:00
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fn secp256k1() {
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use k256::SecretKey;
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2023-09-25 22:05:20 +00:00
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let tests = test_data()
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.unwrap()
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.remove(&"secp256k1".to_string())
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.unwrap();
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for per_seed in tests {
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let seed = &per_seed.seed;
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for test in &per_seed.tests {
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let chain = DerivationPath::from_str(test.chain).unwrap();
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let Test {
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chain_code,
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private_key,
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public_key,
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..
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} = test;
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// Tests for ExtendedPrivateKey
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let xkey = ExtendedPrivateKey::<SecretKey>::new(seed).unwrap();
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let derived_key = xkey.derive_path(&chain).unwrap();
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assert_eq!(
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derived_key.chain_code().as_slice(),
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chain_code,
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"test: {chain}",
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);
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assert_eq!(
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PrivateKey::to_bytes(derived_key.private_key()).as_slice(),
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private_key,
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"test: {chain}",
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);
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assert_eq!(
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PublicKey::to_bytes(&derived_key.public_key()).as_slice(),
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public_key,
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"test: {chain}",
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);
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// Tests for DerivationRequest
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let request = DerivationRequest::new(DerivationAlgorithm::Secp256k1, &chain);
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2024-01-07 04:18:52 +00:00
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let response = request.derive_with_master_seed(seed.clone()).unwrap();
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2023-09-25 22:05:20 +00:00
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assert_eq!(&response.data, private_key, "test: {chain}");
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}
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2023-09-01 04:10:56 +00:00
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}
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}
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2023-09-06 15:21:47 +00:00
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#[cfg(feature = "ed25519")]
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#[test]
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fn ed25519() {
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use ed25519_dalek::SigningKey;
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2023-11-05 06:29:10 +00:00
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let tests = test_data().unwrap().remove(&"ed25519".to_string()).unwrap();
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2023-09-25 22:05:20 +00:00
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for per_seed in tests {
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let seed = &per_seed.seed;
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for test in &per_seed.tests {
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let chain = DerivationPath::from_str(test.chain).unwrap();
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let Test {
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chain_code,
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private_key,
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public_key,
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..
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} = test;
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// Tests for ExtendedPrivateKey
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let xkey = ExtendedPrivateKey::<SigningKey>::new(seed).unwrap();
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let derived_key = xkey.derive_path(&chain).unwrap();
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assert_eq!(
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derived_key.chain_code().as_slice(),
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chain_code,
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"test: {chain}",
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);
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assert_eq!(
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PrivateKey::to_bytes(derived_key.private_key()).as_slice(),
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private_key,
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"test: {chain}",
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);
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assert_eq!(
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PublicKey::to_bytes(&derived_key.public_key()).as_slice(),
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public_key,
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"test: {chain}",
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);
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// Tests for DerivationRequest
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let request = DerivationRequest::new(DerivationAlgorithm::Ed25519, &chain);
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let response = request.derive_with_master_seed(seed.to_vec()).unwrap();
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assert_eq!(&response.data, private_key, "test: {chain}");
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}
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2023-09-06 15:21:47 +00:00
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}
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}
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2023-09-12 06:36:05 +00:00
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2023-09-25 22:11:29 +00:00
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#[cfg(feature = "ed25519")]
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#[test]
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#[should_panic]
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fn panics_with_unhardened_derivation() {
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use ed25519_dalek::SigningKey;
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let seed = hex!("000102030405060708090a0b0c0d0e0f");
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let xkey = ExtendedPrivateKey::<SigningKey>::new(seed).unwrap();
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2023-11-05 06:29:10 +00:00
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xkey.derive_path(&DerivationPath::from_str("m/0").unwrap())
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.unwrap();
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2023-09-25 22:11:29 +00:00
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}
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2023-09-12 06:36:05 +00:00
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#[cfg(feature = "ed25519")]
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#[test]
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#[should_panic]
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fn panics_at_depth() {
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use ed25519_dalek::SigningKey;
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let seed = hex!("000102030405060708090a0b0c0d0e0f");
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let mut xkey = ExtendedPrivateKey::<SigningKey>::new(seed).unwrap();
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2024-01-07 04:18:52 +00:00
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for i in 0..=u32::from(u8::MAX) {
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2023-09-21 22:30:48 +00:00
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xkey = xkey
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.derive_child(&DerivationIndex::new(i, true).unwrap())
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.unwrap();
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2023-09-12 06:36:05 +00:00
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}
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}
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