2016-03-13 17:01:50 +01:00
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// Copyright 2015, 2016 Ethcore (UK) Ltd.
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// This file is part of Parity.
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// Parity 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 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. If not, see <http://www.gnu.org/licenses/>.
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2016-03-18 19:16:46 +01:00
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//! Test implementation of miner service.
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2016-04-28 21:47:44 +02:00
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use util::{Address, H256, Bytes, U256, FixedHash, Uint};
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2016-03-13 17:01:50 +01:00
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use util::standard::*;
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2016-05-14 14:28:44 +02:00
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use ethcore::error::{Error, ExecutionError};
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2016-04-28 21:47:44 +02:00
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use ethcore::client::{BlockChainClient, Executed};
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use ethcore::block::{ClosedBlock, IsBlock};
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2016-03-13 17:01:50 +01:00
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use ethcore::transaction::SignedTransaction;
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2016-05-24 21:56:32 +02:00
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use ethcore::receipt::Receipt;
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2016-04-17 18:26:15 +02:00
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use ethminer::{MinerService, MinerStatus, AccountDetails, TransactionImportResult};
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2016-03-13 17:01:50 +01:00
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2016-03-18 19:16:46 +01:00
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/// Test miner service.
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2016-03-16 10:37:08 +01:00
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pub struct TestMinerService {
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/// Imported transactions.
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pub imported_transactions: Mutex<Vec<SignedTransaction>>,
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/// Latest closed block.
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pub latest_closed_block: Mutex<Option<ClosedBlock>>,
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2016-03-27 16:16:15 +02:00
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/// Pre-existed pending transactions
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pub pending_transactions: Mutex<HashMap<H256, SignedTransaction>>,
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2016-05-24 21:56:32 +02:00
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/// Pre-existed pending receipts
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pub pending_receipts: Mutex<BTreeMap<H256, Receipt>>,
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2016-04-06 12:15:20 +02:00
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/// Last nonces.
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pub last_nonces: RwLock<HashMap<Address, U256>>,
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2016-04-13 00:04:40 +02:00
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min_gas_price: RwLock<U256>,
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gas_floor_target: RwLock<U256>,
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author: RwLock<Address>,
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extra_data: RwLock<Bytes>,
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2016-04-18 23:13:38 +02:00
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limit: RwLock<usize>,
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}
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impl Default for TestMinerService {
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fn default() -> TestMinerService {
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TestMinerService {
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imported_transactions: Mutex::new(Vec::new()),
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latest_closed_block: Mutex::new(None),
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pending_transactions: Mutex::new(HashMap::new()),
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2016-05-24 21:56:32 +02:00
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pending_receipts: Mutex::new(BTreeMap::new()),
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2016-04-06 12:15:20 +02:00
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last_nonces: RwLock::new(HashMap::new()),
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min_gas_price: RwLock::new(U256::from(20_000_000)),
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gas_floor_target: RwLock::new(U256::from(12345)),
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author: RwLock::new(Address::zero()),
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extra_data: RwLock::new(vec![1, 2, 3, 4]),
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2016-04-18 23:13:38 +02:00
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limit: RwLock::new(1024),
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}
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}
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}
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impl MinerService for TestMinerService {
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/// Returns miner's status.
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fn status(&self) -> MinerStatus {
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MinerStatus {
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transactions_in_pending_queue: 0,
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transactions_in_future_queue: 0,
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transactions_in_pending_block: 1
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}
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}
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2016-04-13 00:04:40 +02:00
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fn set_author(&self, author: Address) {
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*self.author.write().unwrap() = author;
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}
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fn set_extra_data(&self, extra_data: Bytes) {
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*self.extra_data.write().unwrap() = extra_data;
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}
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/// Set the gas limit we wish to target when sealing a new block.
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fn set_gas_floor_target(&self, target: U256) {
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*self.gas_floor_target.write().unwrap() = target;
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}
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fn set_minimal_gas_price(&self, min_gas_price: U256) {
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*self.min_gas_price.write().unwrap() = min_gas_price;
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}
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2016-04-18 23:13:38 +02:00
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fn set_transactions_limit(&self, limit: usize) {
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*self.limit.write().unwrap() = limit;
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}
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fn transactions_limit(&self) -> usize {
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*self.limit.read().unwrap()
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}
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2016-04-13 00:04:40 +02:00
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fn author(&self) -> Address {
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*self.author.read().unwrap()
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}
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fn minimal_gas_price(&self) -> U256 {
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*self.min_gas_price.read().unwrap()
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}
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fn extra_data(&self) -> Bytes {
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self.extra_data.read().unwrap().clone()
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}
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fn gas_floor_target(&self) -> U256 {
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*self.gas_floor_target.read().unwrap()
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}
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2016-03-13 17:01:50 +01:00
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/// Imports transactions to transaction queue.
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fn import_transactions<T>(&self, transactions: Vec<SignedTransaction>, _fetch_account: T) ->
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Vec<Result<TransactionImportResult, Error>>
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where T: Fn(&Address) -> AccountDetails {
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// lets assume that all txs are valid
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self.imported_transactions.lock().unwrap().extend_from_slice(&transactions);
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transactions
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.iter()
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.map(|_| Ok(TransactionImportResult::Current))
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.collect()
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}
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2016-04-17 18:26:15 +02:00
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/// Imports transactions to transaction queue.
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2016-04-28 17:36:53 +02:00
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fn import_own_transaction<T>(&self, _chain: &BlockChainClient, transaction: SignedTransaction, _fetch_account: T) ->
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Result<TransactionImportResult, Error>
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where T: Fn(&Address) -> AccountDetails {
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// lets assume that all txs are valid
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self.imported_transactions.lock().unwrap().push(transaction);
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Ok(TransactionImportResult::Current)
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}
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2016-03-13 17:01:50 +01:00
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/// Returns hashes of transactions currently in pending
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fn pending_transactions_hashes(&self) -> Vec<H256> {
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vec![]
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}
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/// Removes all transactions from the queue and restart mining operation.
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2016-04-06 12:15:20 +02:00
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fn clear_and_reset(&self, _chain: &BlockChainClient) {
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unimplemented!();
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}
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/// Called when blocks are imported to chain, updates transactions queue.
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2016-04-06 12:15:20 +02:00
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fn chain_new_blocks(&self, _chain: &BlockChainClient, _imported: &[H256], _invalid: &[H256], _enacted: &[H256], _retracted: &[H256]) {
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unimplemented!();
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}
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2016-03-13 17:01:50 +01:00
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/// New chain head event. Restart mining operation.
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2016-04-06 12:15:20 +02:00
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fn update_sealing(&self, _chain: &BlockChainClient) {
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unimplemented!();
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}
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2016-03-13 17:01:50 +01:00
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2016-04-06 12:15:20 +02:00
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fn map_sealing_work<F, T>(&self, _chain: &BlockChainClient, _f: F) -> Option<T> where F: FnOnce(&ClosedBlock) -> T {
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unimplemented!();
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}
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2016-03-13 17:01:50 +01:00
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2016-03-27 16:16:15 +02:00
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fn transaction(&self, hash: &H256) -> Option<SignedTransaction> {
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2016-04-06 12:15:20 +02:00
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self.pending_transactions.lock().unwrap().get(hash).cloned()
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}
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2016-05-24 21:56:32 +02:00
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fn all_transactions(&self) -> Vec<SignedTransaction> {
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self.pending_transactions.lock().unwrap().values().cloned().collect()
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}
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2016-04-06 23:03:07 +02:00
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fn pending_transactions(&self) -> Vec<SignedTransaction> {
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self.pending_transactions.lock().unwrap().values().cloned().collect()
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}
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2016-05-24 21:56:32 +02:00
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fn pending_receipts(&self) -> BTreeMap<H256, Receipt> {
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self.pending_receipts.lock().unwrap().clone()
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}
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2016-04-06 12:15:20 +02:00
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fn last_nonce(&self, address: &Address) -> Option<U256> {
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self.last_nonces.read().unwrap().get(address).cloned()
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2016-03-27 15:12:21 +02:00
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}
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2016-03-13 17:01:50 +01:00
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/// Submit `seal` as a valid solution for the header of `pow_hash`.
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/// Will check the seal, but not actually insert the block into the chain.
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2016-04-06 12:15:20 +02:00
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fn submit_seal(&self, _chain: &BlockChainClient, _pow_hash: H256, _seal: Vec<Bytes>) -> Result<(), Error> {
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unimplemented!();
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}
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2016-04-28 21:47:44 +02:00
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fn balance(&self, _chain: &BlockChainClient, address: &Address) -> U256 {
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self.latest_closed_block.lock().unwrap().as_ref().map_or_else(U256::zero, |b| b.block().fields().state.balance(address).clone())
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}
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2016-05-14 14:28:44 +02:00
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fn call(&self, _chain: &BlockChainClient, _t: &SignedTransaction) -> Result<Executed, ExecutionError> {
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2016-04-28 21:47:44 +02:00
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unimplemented!();
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}
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fn storage_at(&self, _chain: &BlockChainClient, address: &Address, position: &H256) -> H256 {
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self.latest_closed_block.lock().unwrap().as_ref().map_or_else(H256::default, |b| b.block().fields().state.storage_at(address, position).clone())
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}
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fn nonce(&self, _chain: &BlockChainClient, address: &Address) -> U256 {
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self.latest_closed_block.lock().unwrap().as_ref().map_or_else(U256::zero, |b| b.block().fields().state.nonce(address).clone())
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}
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fn code(&self, _chain: &BlockChainClient, address: &Address) -> Option<Bytes> {
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self.latest_closed_block.lock().unwrap().as_ref().map_or(None, |b| b.block().fields().state.code(address).clone())
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}
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2016-03-16 10:37:08 +01:00
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}
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