d5c19f8719
* Extract accounts from ethcore. * Fix ethcore. * Get rid of AccountProvider in test_helpers * Fix rest of the code. * Re-use EngineSigner, fix tests. * Simplify EngineSigner to always have an Address. * Fix RPC tests. * Add deprecation notice to RPCs. * Feature to disable accounts. * extract accounts in RPC * Run with accounts in tests. * Fix RPC compilation and tests. * Fix compilation of the binary. * Fix compilation of the binary. * Fix compilation with accounts enabled. * Fix tests. * Update submodule. * Remove android. * Use derive for Default * Don't build secretstore by default. * Add link to issue. * Refresh Cargo.lock. * Fix miner tests. * Update rpc/Cargo.toml Co-Authored-By: tomusdrw <tomusdrw@users.noreply.github.com> * Fix private tests.
752 lines
28 KiB
Rust
752 lines
28 KiB
Rust
// Copyright 2015-2019 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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#![warn(missing_docs)]
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//! Account management.
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mod account_data;
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mod error;
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mod stores;
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#[cfg(not(any(target_os = "linux", target_os = "macos", target_os = "windows")))]
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extern crate fake_hardware_wallet as hardware_wallet;
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use self::account_data::{Unlock, AccountData};
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use self::stores::AddressBook;
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use std::collections::HashMap;
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use std::time::{Instant, Duration};
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use common_types::transaction::{Action, Transaction};
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use ethkey::{Address, Message, Public, Secret, Password, Random, Generator};
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use ethstore::accounts_dir::MemoryDirectory;
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use ethstore::{
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SimpleSecretStore, SecretStore, EthStore, EthMultiStore,
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random_string, SecretVaultRef, StoreAccountRef, OpaqueSecret,
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};
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use log::{warn, debug};
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use parking_lot::RwLock;
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pub use ethkey::Signature;
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pub use ethstore::{Derivation, IndexDerivation, KeyFile, Error};
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pub use hardware_wallet::{Error as HardwareError, HardwareWalletManager, KeyPath, TransactionInfo};
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pub use self::account_data::AccountMeta;
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pub use self::error::SignError;
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type AccountToken = Password;
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/// Account management settings.
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#[derive(Debug, Default)]
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pub struct AccountProviderSettings {
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/// Enable hardware wallet support.
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pub enable_hardware_wallets: bool,
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/// Use the classic chain key on the hardware wallet.
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pub hardware_wallet_classic_key: bool,
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/// Store raw account secret when unlocking the account permanently.
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pub unlock_keep_secret: bool,
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/// Disallowed accounts.
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pub blacklisted_accounts: Vec<Address>,
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}
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/// Account management.
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/// Responsible for unlocking accounts.
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pub struct AccountProvider {
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/// For performance reasons some methods can re-use unlocked secrets.
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unlocked_secrets: RwLock<HashMap<StoreAccountRef, OpaqueSecret>>,
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/// Unlocked account data.
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unlocked: RwLock<HashMap<StoreAccountRef, AccountData>>,
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/// Address book.
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address_book: RwLock<AddressBook>,
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/// Accounts on disk
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sstore: Box<SecretStore>,
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/// Accounts unlocked with rolling tokens
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transient_sstore: EthMultiStore,
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/// Accounts in hardware wallets.
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hardware_store: Option<HardwareWalletManager>,
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/// When unlocking account permanently we additionally keep a raw secret in memory
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/// to increase the performance of transaction signing.
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unlock_keep_secret: bool,
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/// Disallowed accounts.
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blacklisted_accounts: Vec<Address>,
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}
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fn transient_sstore() -> EthMultiStore {
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EthMultiStore::open(Box::new(MemoryDirectory::default())).expect("MemoryDirectory load always succeeds; qed")
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}
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impl AccountProvider {
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/// Creates new account provider.
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pub fn new(sstore: Box<SecretStore>, settings: AccountProviderSettings) -> Self {
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let mut hardware_store = None;
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if settings.enable_hardware_wallets {
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match HardwareWalletManager::new() {
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Ok(manager) => {
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manager.set_key_path(if settings.hardware_wallet_classic_key { KeyPath::EthereumClassic } else { KeyPath::Ethereum });
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hardware_store = Some(manager)
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},
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Err(e) => debug!("Error initializing hardware wallets: {}", e),
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}
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}
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if let Ok(accounts) = sstore.accounts() {
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for account in accounts.into_iter().filter(|a| settings.blacklisted_accounts.contains(&a.address)) {
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warn!("Local Account {} has a blacklisted (known to be weak) address and will be ignored",
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account.address);
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}
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}
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// Remove blacklisted accounts from address book.
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let mut address_book = AddressBook::new(&sstore.local_path());
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for addr in &settings.blacklisted_accounts {
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address_book.remove(*addr);
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}
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AccountProvider {
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unlocked_secrets: RwLock::new(HashMap::new()),
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unlocked: RwLock::new(HashMap::new()),
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address_book: RwLock::new(address_book),
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sstore: sstore,
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transient_sstore: transient_sstore(),
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hardware_store: hardware_store,
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unlock_keep_secret: settings.unlock_keep_secret,
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blacklisted_accounts: settings.blacklisted_accounts,
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}
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}
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/// Creates not disk backed provider.
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pub fn transient_provider() -> Self {
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AccountProvider {
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unlocked_secrets: RwLock::new(HashMap::new()),
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unlocked: RwLock::new(HashMap::new()),
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address_book: RwLock::new(AddressBook::transient()),
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sstore: Box::new(EthStore::open(Box::new(MemoryDirectory::default())).expect("MemoryDirectory load always succeeds; qed")),
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transient_sstore: transient_sstore(),
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hardware_store: None,
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unlock_keep_secret: false,
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blacklisted_accounts: vec![],
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}
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}
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/// Creates new random account.
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pub fn new_account(&self, password: &Password) -> Result<Address, Error> {
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self.new_account_and_public(password).map(|d| d.0)
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}
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/// Creates new random account and returns address and public key
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pub fn new_account_and_public(&self, password: &Password) -> Result<(Address, Public), Error> {
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let acc = Random.generate().expect("secp context has generation capabilities; qed");
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let public = acc.public().clone();
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let secret = acc.secret().clone();
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let account = self.sstore.insert_account(SecretVaultRef::Root, secret, password)?;
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Ok((account.address, public))
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}
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/// Inserts new account into underlying store.
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/// Does not unlock account!
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pub fn insert_account(&self, secret: Secret, password: &Password) -> Result<Address, Error> {
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let account = self.sstore.insert_account(SecretVaultRef::Root, secret, password)?;
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if self.blacklisted_accounts.contains(&account.address) {
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self.sstore.remove_account(&account, password)?;
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return Err(Error::InvalidAccount.into());
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}
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Ok(account.address)
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}
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/// Generates new derived account based on the existing one
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/// If password is not provided, account must be unlocked
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/// New account will be created with the same password (if save: true)
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pub fn derive_account(&self, address: &Address, password: Option<Password>, derivation: Derivation, save: bool)
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-> Result<Address, SignError>
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{
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let account = self.sstore.account_ref(&address)?;
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let password = password.map(Ok).unwrap_or_else(|| self.password(&account))?;
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Ok(
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if save { self.sstore.insert_derived(SecretVaultRef::Root, &account, &password, derivation)?.address }
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else { self.sstore.generate_derived(&account, &password, derivation)? }
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)
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}
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/// Import a new presale wallet.
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pub fn import_presale(&self, presale_json: &[u8], password: &Password) -> Result<Address, Error> {
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let account = self.sstore.import_presale(SecretVaultRef::Root, presale_json, password)?;
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Ok(Address::from(account.address).into())
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}
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/// Import a new wallet.
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pub fn import_wallet(&self, json: &[u8], password: &Password, gen_id: bool) -> Result<Address, Error> {
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let account = self.sstore.import_wallet(SecretVaultRef::Root, json, password, gen_id)?;
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if self.blacklisted_accounts.contains(&account.address) {
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self.sstore.remove_account(&account, password)?;
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return Err(Error::InvalidAccount.into());
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}
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Ok(Address::from(account.address).into())
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}
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/// Checks whether an account with a given address is present.
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pub fn has_account(&self, address: Address) -> bool {
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self.sstore.account_ref(&address).is_ok() && !self.blacklisted_accounts.contains(&address)
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}
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/// Returns addresses of all accounts.
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pub fn accounts(&self) -> Result<Vec<Address>, Error> {
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let accounts = self.sstore.accounts()?;
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Ok(accounts
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.into_iter()
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.map(|a| a.address)
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.filter(|address| !self.blacklisted_accounts.contains(address))
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.collect()
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)
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}
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/// Returns the address of default account.
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pub fn default_account(&self) -> Result<Address, Error> {
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Ok(self.accounts()?.first().cloned().unwrap_or_default())
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}
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/// Returns addresses of hardware accounts.
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pub fn hardware_accounts(&self) -> Result<Vec<Address>, Error> {
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if let Some(accounts) = self.hardware_store.as_ref().map(|h| h.list_wallets()) {
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if !accounts.is_empty() {
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return Ok(accounts.into_iter().map(|a| a.address).collect());
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}
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}
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Err(Error::Custom("No hardware wallet accounts were found".into()))
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}
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/// Get a list of paths to locked hardware wallets
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pub fn locked_hardware_accounts(&self) -> Result<Vec<String>, SignError> {
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match self.hardware_store.as_ref().map(|h| h.list_locked_wallets()) {
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None => Err(SignError::NotFound),
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Some(Err(e)) => Err(SignError::Hardware(e)),
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Some(Ok(s)) => Ok(s),
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}
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}
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/// Provide a pin to a locked hardware wallet on USB path to unlock it
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pub fn hardware_pin_matrix_ack(&self, path: &str, pin: &str) -> Result<bool, SignError> {
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match self.hardware_store.as_ref().map(|h| h.pin_matrix_ack(path, pin)) {
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None => Err(SignError::NotFound),
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Some(Err(e)) => Err(SignError::Hardware(e)),
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Some(Ok(s)) => Ok(s),
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}
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}
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/// Returns each address along with metadata.
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pub fn addresses_info(&self) -> HashMap<Address, AccountMeta> {
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self.address_book.read().get()
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}
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/// Returns each address along with metadata.
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pub fn set_address_name(&self, account: Address, name: String) {
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self.address_book.write().set_name(account, name)
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}
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/// Returns each address along with metadata.
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pub fn set_address_meta(&self, account: Address, meta: String) {
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self.address_book.write().set_meta(account, meta)
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}
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/// Removes and address from the address book
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pub fn remove_address(&self, addr: Address) {
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self.address_book.write().remove(addr)
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}
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/// Returns each account along with name and meta.
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pub fn accounts_info(&self) -> Result<HashMap<Address, AccountMeta>, Error> {
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let r = self.sstore.accounts()?
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.into_iter()
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.filter(|a| !self.blacklisted_accounts.contains(&a.address))
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.map(|a| (a.address.clone(), self.account_meta(a.address).ok().unwrap_or_default()))
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.collect();
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Ok(r)
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}
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/// Returns each hardware account along with name and meta.
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pub fn hardware_accounts_info(&self) -> Result<HashMap<Address, AccountMeta>, Error> {
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let r = self.hardware_accounts()?
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.into_iter()
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.map(|address| (address.clone(), self.account_meta(address).ok().unwrap_or_default()))
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.collect();
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Ok(r)
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}
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/// Returns each hardware account along with name and meta.
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pub fn is_hardware_address(&self, address: &Address) -> bool {
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self.hardware_store.as_ref().and_then(|s| s.wallet_info(address)).is_some()
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}
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/// Returns each account along with name and meta.
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pub fn account_meta(&self, address: Address) -> Result<AccountMeta, Error> {
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if let Some(info) = self.hardware_store.as_ref().and_then(|s| s.wallet_info(&address)) {
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Ok(AccountMeta {
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name: info.name,
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meta: info.manufacturer,
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uuid: None,
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})
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} else {
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let account = self.sstore.account_ref(&address)?;
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Ok(AccountMeta {
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name: self.sstore.name(&account)?,
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meta: self.sstore.meta(&account)?,
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uuid: self.sstore.uuid(&account).ok().map(Into::into), // allowed to not have a Uuid
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})
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}
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}
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/// Returns account public key.
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pub fn account_public(&self, address: Address, password: &Password) -> Result<Public, Error> {
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self.sstore.public(&self.sstore.account_ref(&address)?, password)
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}
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/// Returns each account along with name and meta.
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pub fn set_account_name(&self, address: Address, name: String) -> Result<(), Error> {
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self.sstore.set_name(&self.sstore.account_ref(&address)?, name)?;
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Ok(())
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}
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/// Returns each account along with name and meta.
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pub fn set_account_meta(&self, address: Address, meta: String) -> Result<(), Error> {
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self.sstore.set_meta(&self.sstore.account_ref(&address)?, meta)?;
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Ok(())
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}
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/// Returns `true` if the password for `account` is `password`. `false` if not.
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pub fn test_password(&self, address: &Address, password: &Password) -> Result<bool, Error> {
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self.sstore.test_password(&self.sstore.account_ref(&address)?, password)
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.map_err(Into::into)
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}
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/// Permanently removes an account.
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pub fn kill_account(&self, address: &Address, password: &Password) -> Result<(), Error> {
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self.sstore.remove_account(&self.sstore.account_ref(&address)?, &password)?;
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Ok(())
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}
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/// Changes the password of `account` from `password` to `new_password`. Fails if incorrect `password` given.
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pub fn change_password(&self, address: &Address, password: Password, new_password: Password) -> Result<(), Error> {
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self.sstore.change_password(&self.sstore.account_ref(address)?, &password, &new_password)
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}
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/// Exports an account for given address.
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pub fn export_account(&self, address: &Address, password: Password) -> Result<KeyFile, Error> {
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self.sstore.export_account(&self.sstore.account_ref(address)?, &password)
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}
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/// Helper method used for unlocking accounts.
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fn unlock_account(&self, address: Address, password: Password, unlock: Unlock) -> Result<(), Error> {
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let account = self.sstore.account_ref(&address)?;
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// check if account is already unlocked permanently, if it is, do nothing
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let mut unlocked = self.unlocked.write();
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if let Some(data) = unlocked.get(&account) {
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if let Unlock::Perm = data.unlock {
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return Ok(())
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}
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}
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if self.unlock_keep_secret && unlock == Unlock::Perm {
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// verify password and get the secret
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let secret = self.sstore.raw_secret(&account, &password)?;
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self.unlocked_secrets.write().insert(account.clone(), secret);
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} else {
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// verify password by signing dump message
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// result may be discarded
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let _ = self.sstore.sign(&account, &password, &Default::default())?;
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}
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let data = AccountData {
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unlock: unlock,
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password: password,
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};
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unlocked.insert(account, data);
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Ok(())
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}
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fn password(&self, account: &StoreAccountRef) -> Result<Password, SignError> {
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let mut unlocked = self.unlocked.write();
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let data = unlocked.get(account).ok_or(SignError::NotUnlocked)?.clone();
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if let Unlock::OneTime = data.unlock {
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unlocked.remove(account).expect("data exists: so key must exist: qed");
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}
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if let Unlock::Timed(ref end) = data.unlock {
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if Instant::now() > *end {
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unlocked.remove(account).expect("data exists: so key must exist: qed");
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return Err(SignError::NotUnlocked);
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}
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}
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Ok(data.password)
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}
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/// Unlocks account permanently.
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pub fn unlock_account_permanently(&self, account: Address, password: Password) -> Result<(), Error> {
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self.unlock_account(account, password, Unlock::Perm)
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}
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/// Unlocks account temporarily (for one signing).
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pub fn unlock_account_temporarily(&self, account: Address, password: Password) -> Result<(), Error> {
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self.unlock_account(account, password, Unlock::OneTime)
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}
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/// Unlocks account temporarily with a timeout.
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pub fn unlock_account_timed(&self, account: Address, password: Password, duration: Duration) -> Result<(), Error> {
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self.unlock_account(account, password, Unlock::Timed(Instant::now() + duration))
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}
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/// Checks if given account is unlocked
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pub fn is_unlocked(&self, address: &Address) -> bool {
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let unlocked = self.unlocked.read();
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let unlocked_secrets = self.unlocked_secrets.read();
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self.sstore.account_ref(address)
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.map(|r| unlocked.get(&r).is_some() || unlocked_secrets.get(&r).is_some())
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.unwrap_or(false)
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}
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/// Checks if given account is unlocked permanently
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pub fn is_unlocked_permanently(&self, address: &Address) -> bool {
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let unlocked = self.unlocked.read();
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self.sstore.account_ref(address)
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.map(|r| unlocked.get(&r).map_or(false, |account| account.unlock == Unlock::Perm))
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.unwrap_or(false)
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}
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/// Signs the message. If password is not provided the account must be unlocked.
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pub fn sign(&self, address: Address, password: Option<Password>, message: Message) -> Result<Signature, SignError> {
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let account = self.sstore.account_ref(&address)?;
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match self.unlocked_secrets.read().get(&account) {
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Some(secret) => {
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Ok(self.sstore.sign_with_secret(&secret, &message)?)
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},
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None => {
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let password = password.map(Ok).unwrap_or_else(|| self.password(&account))?;
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Ok(self.sstore.sign(&account, &password, &message)?)
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}
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}
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}
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/// Signs message using the derived secret. If password is not provided the account must be unlocked.
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pub fn sign_derived(&self, address: &Address, password: Option<Password>, derivation: Derivation, message: Message)
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-> Result<Signature, SignError>
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{
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let account = self.sstore.account_ref(address)?;
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let password = password.map(Ok).unwrap_or_else(|| self.password(&account))?;
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Ok(self.sstore.sign_derived(&account, &password, derivation, &message)?)
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}
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|
/// Signs given message with supplied token. Returns a token to use in next signing within this session.
|
|
pub fn sign_with_token(&self, address: Address, token: AccountToken, message: Message) -> Result<(Signature, AccountToken), SignError> {
|
|
let account = self.sstore.account_ref(&address)?;
|
|
let is_std_password = self.sstore.test_password(&account, &token)?;
|
|
|
|
let new_token = Password::from(random_string(16));
|
|
let signature = if is_std_password {
|
|
// Insert to transient store
|
|
self.sstore.copy_account(&self.transient_sstore, SecretVaultRef::Root, &account, &token, &new_token)?;
|
|
// sign
|
|
self.sstore.sign(&account, &token, &message)?
|
|
} else {
|
|
// check transient store
|
|
self.transient_sstore.change_password(&account, &token, &new_token)?;
|
|
// and sign
|
|
self.transient_sstore.sign(&account, &new_token, &message)?
|
|
};
|
|
|
|
Ok((signature, new_token))
|
|
}
|
|
|
|
/// Decrypts a message with given token. Returns a token to use in next operation for this account.
|
|
pub fn decrypt_with_token(&self, address: Address, token: AccountToken, shared_mac: &[u8], message: &[u8])
|
|
-> Result<(Vec<u8>, AccountToken), SignError>
|
|
{
|
|
let account = self.sstore.account_ref(&address)?;
|
|
let is_std_password = self.sstore.test_password(&account, &token)?;
|
|
|
|
let new_token = Password::from(random_string(16));
|
|
let message = if is_std_password {
|
|
// Insert to transient store
|
|
self.sstore.copy_account(&self.transient_sstore, SecretVaultRef::Root, &account, &token, &new_token)?;
|
|
// decrypt
|
|
self.sstore.decrypt(&account, &token, shared_mac, message)?
|
|
} else {
|
|
// check transient store
|
|
self.transient_sstore.change_password(&account, &token, &new_token)?;
|
|
// and decrypt
|
|
self.transient_sstore.decrypt(&account, &token, shared_mac, message)?
|
|
};
|
|
|
|
Ok((message, new_token))
|
|
}
|
|
|
|
/// Decrypts a message. If password is not provided the account must be unlocked.
|
|
pub fn decrypt(&self, address: Address, password: Option<Password>, shared_mac: &[u8], message: &[u8]) -> Result<Vec<u8>, SignError> {
|
|
let account = self.sstore.account_ref(&address)?;
|
|
let password = password.map(Ok).unwrap_or_else(|| self.password(&account))?;
|
|
Ok(self.sstore.decrypt(&account, &password, shared_mac, message)?)
|
|
}
|
|
|
|
/// Agree on shared key.
|
|
pub fn agree(&self, address: Address, password: Option<Password>, other_public: &Public) -> Result<Secret, SignError> {
|
|
let account = self.sstore.account_ref(&address)?;
|
|
let password = password.map(Ok).unwrap_or_else(|| self.password(&account))?;
|
|
Ok(self.sstore.agree(&account, &password, other_public)?)
|
|
}
|
|
|
|
/// Returns the underlying `SecretStore` reference if one exists.
|
|
pub fn list_geth_accounts(&self, testnet: bool) -> Vec<Address> {
|
|
self.sstore.list_geth_accounts(testnet).into_iter().map(|a| Address::from(a).into()).collect()
|
|
}
|
|
|
|
/// Returns the underlying `SecretStore` reference if one exists.
|
|
pub fn import_geth_accounts(&self, desired: Vec<Address>, testnet: bool) -> Result<Vec<Address>, Error> {
|
|
self.sstore.import_geth_accounts(SecretVaultRef::Root, desired, testnet)
|
|
.map(|a| a.into_iter().map(|a| a.address).collect())
|
|
.map_err(Into::into)
|
|
}
|
|
|
|
/// Create new vault.
|
|
pub fn create_vault(&self, name: &str, password: &Password) -> Result<(), Error> {
|
|
self.sstore.create_vault(name, password)
|
|
.map_err(Into::into)
|
|
}
|
|
|
|
/// Open existing vault.
|
|
pub fn open_vault(&self, name: &str, password: &Password) -> Result<(), Error> {
|
|
self.sstore.open_vault(name, password)
|
|
.map_err(Into::into)
|
|
}
|
|
|
|
/// Close previously opened vault.
|
|
pub fn close_vault(&self, name: &str) -> Result<(), Error> {
|
|
self.sstore.close_vault(name)
|
|
.map_err(Into::into)
|
|
}
|
|
|
|
/// List all vaults
|
|
pub fn list_vaults(&self) -> Result<Vec<String>, Error> {
|
|
self.sstore.list_vaults()
|
|
.map_err(Into::into)
|
|
}
|
|
|
|
/// List all currently opened vaults
|
|
pub fn list_opened_vaults(&self) -> Result<Vec<String>, Error> {
|
|
self.sstore.list_opened_vaults()
|
|
.map_err(Into::into)
|
|
}
|
|
|
|
/// Change vault password.
|
|
pub fn change_vault_password(&self, name: &str, new_password: &Password) -> Result<(), Error> {
|
|
self.sstore.change_vault_password(name, new_password)
|
|
.map_err(Into::into)
|
|
}
|
|
|
|
/// Change vault of the given address.
|
|
pub fn change_vault(&self, address: Address, new_vault: &str) -> Result<(), Error> {
|
|
let new_vault_ref = if new_vault.is_empty() { SecretVaultRef::Root } else { SecretVaultRef::Vault(new_vault.to_owned()) };
|
|
let old_account_ref = self.sstore.account_ref(&address)?;
|
|
self.sstore.change_account_vault(new_vault_ref, old_account_ref)
|
|
.map_err(Into::into)
|
|
.map(|_| ())
|
|
}
|
|
|
|
/// Get vault metadata string.
|
|
pub fn get_vault_meta(&self, name: &str) -> Result<String, Error> {
|
|
self.sstore.get_vault_meta(name)
|
|
.map_err(Into::into)
|
|
}
|
|
|
|
/// Set vault metadata string.
|
|
pub fn set_vault_meta(&self, name: &str, meta: &str) -> Result<(), Error> {
|
|
self.sstore.set_vault_meta(name, meta)
|
|
.map_err(Into::into)
|
|
}
|
|
|
|
/// Sign message with hardware wallet.
|
|
pub fn sign_message_with_hardware(&self, address: &Address, message: &[u8]) -> Result<Signature, SignError> {
|
|
match self.hardware_store.as_ref().map(|s| s.sign_message(address, message)) {
|
|
None | Some(Err(HardwareError::KeyNotFound)) => Err(SignError::NotFound),
|
|
Some(Err(e)) => Err(From::from(e)),
|
|
Some(Ok(s)) => Ok(s),
|
|
}
|
|
}
|
|
|
|
/// Sign transaction with hardware wallet.
|
|
pub fn sign_transaction_with_hardware(&self, address: &Address, transaction: &Transaction, chain_id: Option<u64>, rlp_encoded_transaction: &[u8]) -> Result<Signature, SignError> {
|
|
let t_info = TransactionInfo {
|
|
nonce: transaction.nonce,
|
|
gas_price: transaction.gas_price,
|
|
gas_limit: transaction.gas,
|
|
to: match transaction.action {
|
|
Action::Create => None,
|
|
Action::Call(ref to) => Some(to.clone()),
|
|
},
|
|
value: transaction.value,
|
|
data: transaction.data.to_vec(),
|
|
chain_id: chain_id,
|
|
};
|
|
match self.hardware_store.as_ref().map(|s| s.sign_transaction(&address, &t_info, rlp_encoded_transaction)) {
|
|
None | Some(Err(HardwareError::KeyNotFound)) => Err(SignError::NotFound),
|
|
Some(Err(e)) => Err(From::from(e)),
|
|
Some(Ok(s)) => Ok(s),
|
|
}
|
|
}
|
|
}
|
|
|
|
#[cfg(test)]
|
|
mod tests {
|
|
use super::{AccountProvider, Unlock};
|
|
use std::time::{Duration, Instant};
|
|
use ethkey::{Generator, Random, Address};
|
|
use ethstore::{StoreAccountRef, Derivation};
|
|
use ethereum_types::H256;
|
|
|
|
#[test]
|
|
fn unlock_account_temp() {
|
|
let kp = Random.generate().unwrap();
|
|
let ap = AccountProvider::transient_provider();
|
|
assert!(ap.insert_account(kp.secret().clone(), &"test".into()).is_ok());
|
|
assert!(ap.unlock_account_temporarily(kp.address(), "test1".into()).is_err());
|
|
assert!(ap.unlock_account_temporarily(kp.address(), "test".into()).is_ok());
|
|
assert!(ap.sign(kp.address(), None, Default::default()).is_ok());
|
|
assert!(ap.sign(kp.address(), None, Default::default()).is_err());
|
|
}
|
|
|
|
#[test]
|
|
fn derived_account_nosave() {
|
|
let kp = Random.generate().unwrap();
|
|
let ap = AccountProvider::transient_provider();
|
|
assert!(ap.insert_account(kp.secret().clone(), &"base".into()).is_ok());
|
|
assert!(ap.unlock_account_permanently(kp.address(), "base".into()).is_ok());
|
|
|
|
let derived_addr = ap.derive_account(
|
|
&kp.address(),
|
|
None,
|
|
Derivation::SoftHash(H256::from(999)),
|
|
false,
|
|
).expect("Derivation should not fail");
|
|
|
|
assert!(ap.unlock_account_permanently(derived_addr, "base".into()).is_err(),
|
|
"There should be an error because account is not supposed to be saved");
|
|
}
|
|
|
|
#[test]
|
|
fn derived_account_save() {
|
|
let kp = Random.generate().unwrap();
|
|
let ap = AccountProvider::transient_provider();
|
|
assert!(ap.insert_account(kp.secret().clone(), &"base".into()).is_ok());
|
|
assert!(ap.unlock_account_permanently(kp.address(), "base".into()).is_ok());
|
|
|
|
let derived_addr = ap.derive_account(
|
|
&kp.address(),
|
|
None,
|
|
Derivation::SoftHash(H256::from(999)),
|
|
true,
|
|
).expect("Derivation should not fail");
|
|
|
|
assert!(ap.unlock_account_permanently(derived_addr, "base_wrong".into()).is_err(),
|
|
"There should be an error because password is invalid");
|
|
|
|
assert!(ap.unlock_account_permanently(derived_addr, "base".into()).is_ok(),
|
|
"Should be ok because account is saved and password is valid");
|
|
}
|
|
|
|
#[test]
|
|
fn derived_account_sign() {
|
|
let kp = Random.generate().unwrap();
|
|
let ap = AccountProvider::transient_provider();
|
|
assert!(ap.insert_account(kp.secret().clone(), &"base".into()).is_ok());
|
|
assert!(ap.unlock_account_permanently(kp.address(), "base".into()).is_ok());
|
|
|
|
let derived_addr = ap.derive_account(
|
|
&kp.address(),
|
|
None,
|
|
Derivation::SoftHash(H256::from(1999)),
|
|
true,
|
|
).expect("Derivation should not fail");
|
|
ap.unlock_account_permanently(derived_addr, "base".into())
|
|
.expect("Should be ok because account is saved and password is valid");
|
|
|
|
let msg = Default::default();
|
|
let signed_msg1 = ap.sign(derived_addr, None, msg)
|
|
.expect("Signing with existing unlocked account should not fail");
|
|
let signed_msg2 = ap.sign_derived(
|
|
&kp.address(),
|
|
None,
|
|
Derivation::SoftHash(H256::from(1999)),
|
|
msg,
|
|
).expect("Derived signing with existing unlocked account should not fail");
|
|
|
|
assert_eq!(signed_msg1, signed_msg2,
|
|
"Signed messages should match");
|
|
}
|
|
|
|
#[test]
|
|
fn unlock_account_perm() {
|
|
let kp = Random.generate().unwrap();
|
|
let ap = AccountProvider::transient_provider();
|
|
assert!(ap.insert_account(kp.secret().clone(), &"test".into()).is_ok());
|
|
assert!(ap.unlock_account_permanently(kp.address(), "test1".into()).is_err());
|
|
assert!(ap.unlock_account_permanently(kp.address(), "test".into()).is_ok());
|
|
assert!(ap.sign(kp.address(), None, Default::default()).is_ok());
|
|
assert!(ap.sign(kp.address(), None, Default::default()).is_ok());
|
|
assert!(ap.unlock_account_temporarily(kp.address(), "test".into()).is_ok());
|
|
assert!(ap.sign(kp.address(), None, Default::default()).is_ok());
|
|
assert!(ap.sign(kp.address(), None, Default::default()).is_ok());
|
|
}
|
|
|
|
#[test]
|
|
fn unlock_account_timer() {
|
|
let kp = Random.generate().unwrap();
|
|
let ap = AccountProvider::transient_provider();
|
|
assert!(ap.insert_account(kp.secret().clone(), &"test".into()).is_ok());
|
|
assert!(ap.unlock_account_timed(kp.address(), "test1".into(), Duration::from_secs(60)).is_err());
|
|
assert!(ap.unlock_account_timed(kp.address(), "test".into(), Duration::from_secs(60)).is_ok());
|
|
assert!(ap.sign(kp.address(), None, Default::default()).is_ok());
|
|
ap.unlocked.write().get_mut(&StoreAccountRef::root(kp.address())).unwrap().unlock = Unlock::Timed(Instant::now());
|
|
assert!(ap.sign(kp.address(), None, Default::default()).is_err());
|
|
}
|
|
|
|
#[test]
|
|
fn should_sign_and_return_token() {
|
|
// given
|
|
let kp = Random.generate().unwrap();
|
|
let ap = AccountProvider::transient_provider();
|
|
assert!(ap.insert_account(kp.secret().clone(), &"test".into()).is_ok());
|
|
|
|
// when
|
|
let (_signature, token) = ap.sign_with_token(kp.address(), "test".into(), Default::default()).unwrap();
|
|
|
|
// then
|
|
ap.sign_with_token(kp.address(), token.clone(), Default::default())
|
|
.expect("First usage of token should be correct.");
|
|
assert!(ap.sign_with_token(kp.address(), token, Default::default()).is_err(), "Second usage of the same token should fail.");
|
|
}
|
|
|
|
#[test]
|
|
fn should_not_return_blacklisted_account() {
|
|
// given
|
|
let mut ap = AccountProvider::transient_provider();
|
|
let acc = ap.new_account(&"test".into()).unwrap();
|
|
ap.blacklisted_accounts = vec![acc];
|
|
|
|
// then
|
|
assert_eq!(ap.accounts_info().unwrap().keys().cloned().collect::<Vec<Address>>(), vec![]);
|
|
assert_eq!(ap.accounts().unwrap(), vec![]);
|
|
}
|
|
}
|