99271db9d3
* Use parity-crypto updated to use upstream rust-secp256k1 * Fetch dependency from git * Missed a session ID * Add free-standing inversion function that uses `libsecp256k1` * fixed tests * Update deps * Use parity-crypto 0.5.0 Use libsecp256k1 0.3.5 * Review grumble Co-authored-by: Svyatoslav Nikolsky <svyatonik@gmail.com>
161 lines
5.9 KiB
Rust
161 lines
5.9 KiB
Rust
// Copyright 2015-2020 Parity Technologies (UK) Ltd.
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// This file is part of Parity Ethereum.
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// Parity Ethereum is free software: you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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// Parity Ethereum is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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// You should have received a copy of the GNU General Public License
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// along with Parity Ethereum. If not, see <http://www.gnu.org/licenses/>.
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extern crate rand;
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extern crate ethstore;
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extern crate ethereum_types;
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extern crate parity_crypto;
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mod util;
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use ethstore::{EthStore, SimpleSecretStore, SecretVaultRef, StoreAccountRef};
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use parity_crypto::publickey::{Random, Generator, Secret, KeyPair, verify_address};
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use ethstore::accounts_dir::RootDiskDirectory;
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use util::TransientDir;
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use ethereum_types::Address;
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use std::str::FromStr;
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#[test]
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fn secret_store_create() {
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let dir = TransientDir::create().unwrap();
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let _ = EthStore::open(Box::new(dir)).unwrap();
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}
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#[test]
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#[should_panic]
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fn secret_store_open_not_existing() {
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let dir = TransientDir::open();
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let _ = EthStore::open(Box::new(dir)).unwrap();
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}
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fn random_secret() -> Secret {
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Random.generate().secret().clone()
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}
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#[test]
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fn secret_store_create_account() {
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let dir = TransientDir::create().unwrap();
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let store = EthStore::open(Box::new(dir)).unwrap();
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assert_eq!(store.accounts().unwrap().len(), 0);
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assert!(store.insert_account(SecretVaultRef::Root, random_secret(), &"".into()).is_ok());
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assert_eq!(store.accounts().unwrap().len(), 1);
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assert!(store.insert_account(SecretVaultRef::Root, random_secret(), &"".into()).is_ok());
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assert_eq!(store.accounts().unwrap().len(), 2);
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}
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#[test]
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fn secret_store_sign() {
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let dir = TransientDir::create().unwrap();
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let store = EthStore::open(Box::new(dir)).unwrap();
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assert!(store.insert_account(SecretVaultRef::Root, random_secret(), &"".into()).is_ok());
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let accounts = store.accounts().unwrap();
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let message = [1u8; 32].into();
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assert_eq!(accounts.len(), 1);
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assert!(store.sign(&accounts[0], &"".into(), &message).is_ok());
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assert!(store.sign(&accounts[0], &"1".into(), &message).is_err());
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}
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#[test]
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fn secret_store_change_password() {
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let dir = TransientDir::create().unwrap();
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let store = EthStore::open(Box::new(dir)).unwrap();
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assert!(store.insert_account(SecretVaultRef::Root, random_secret(), &"".into()).is_ok());
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let accounts = store.accounts().unwrap();
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let message = [1u8; 32].into();
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assert_eq!(accounts.len(), 1);
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assert!(store.sign(&accounts[0], &"".into(), &message).is_ok());
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assert!(store.change_password(&accounts[0], &"".into(), &"1".into()).is_ok());
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assert!(store.sign(&accounts[0], &"".into(), &message).is_err());
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assert!(store.sign(&accounts[0], &"1".into(), &message).is_ok());
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}
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#[test]
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fn secret_store_remove_account() {
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let dir = TransientDir::create().unwrap();
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let store = EthStore::open(Box::new(dir)).unwrap();
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assert!(store.insert_account(SecretVaultRef::Root, random_secret(), &"".into()).is_ok());
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let accounts = store.accounts().unwrap();
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assert_eq!(accounts.len(), 1);
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assert!(store.remove_account(&accounts[0], &"".into()).is_ok());
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assert_eq!(store.accounts().unwrap().len(), 0);
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assert!(store.remove_account(&accounts[0], &"".into()).is_err());
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}
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fn test_path() -> &'static str {
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match ::std::fs::metadata("ethstore") {
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Ok(_) => "ethstore/tests/res/geth_keystore",
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Err(_) => "tests/res/geth_keystore",
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}
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}
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fn pat_path() -> &'static str {
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match ::std::fs::metadata("ethstore") {
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Ok(_) => "ethstore/tests/res/pat",
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Err(_) => "tests/res/pat",
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}
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}
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fn ciphertext_path() -> &'static str {
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match ::std::fs::metadata("ethstore") {
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Ok(_) => "ethstore/tests/res/ciphertext",
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Err(_) => "tests/res/ciphertext",
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}
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}
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#[test]
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fn secret_store_laod_geth_files() {
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let dir = RootDiskDirectory::at(test_path());
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let store = EthStore::open(Box::new(dir)).unwrap();
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assert_eq!(store.accounts().unwrap(), vec![
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StoreAccountRef::root(Address::from_str("3f49624084b67849c7b4e805c5988c21a430f9d9").unwrap()),
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StoreAccountRef::root(Address::from_str("5ba4dcf897e97c2bdf8315b9ef26c13c085988cf").unwrap()),
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StoreAccountRef::root(Address::from_str("63121b431a52f8043c16fcf0d1df9cb7b5f66649").unwrap()),
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]);
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}
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#[test]
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fn secret_store_load_pat_files() {
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let dir = RootDiskDirectory::at(pat_path());
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let store = EthStore::open(Box::new(dir)).unwrap();
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assert_eq!(store.accounts().unwrap(), vec![
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StoreAccountRef::root(Address::from_str("3f49624084b67849c7b4e805c5988c21a430f9d9").unwrap()),
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StoreAccountRef::root(Address::from_str("5ba4dcf897e97c2bdf8315b9ef26c13c085988cf").unwrap()),
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]);
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}
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#[test]
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fn test_decrypting_files_with_short_ciphertext() {
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// 31e9d1e6d844bd3a536800ef8d8be6a9975db509, 30
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let kp1 = KeyPair::from_secret("000081c29e8142bb6a81bef5a92bda7a8328a5c85bb2f9542e76f9b0f94fc018".parse().unwrap()).unwrap();
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// d1e64e5480bfaf733ba7d48712decb8227797a4e , 31
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let kp2 = KeyPair::from_secret("00fa7b3db73dc7dfdf8c5fbdb796d741e4488628c41fc4febd9160a866ba0f35".parse().unwrap()).unwrap();
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let dir = RootDiskDirectory::at(ciphertext_path());
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let store = EthStore::open(Box::new(dir)).unwrap();
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let accounts = store.accounts().unwrap();
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assert_eq!(accounts, vec![
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StoreAccountRef::root(Address::from_str("31e9d1e6d844bd3a536800ef8d8be6a9975db509").unwrap()),
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StoreAccountRef::root(Address::from_str("d1e64e5480bfaf733ba7d48712decb8227797a4e").unwrap()),
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]);
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let message = [1u8; 32].into();
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let s1 = store.sign(&accounts[0], &"foo".into(), &message).unwrap();
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let s2 = store.sign(&accounts[1], &"foo".into(), &message).unwrap();
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assert!(verify_address(&accounts[0].address, &s1, &message).unwrap());
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assert!(verify_address(&kp1.address(), &s1, &message).unwrap());
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assert!(verify_address(&kp2.address(), &s2, &message).unwrap());
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}
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