7c335e8764
* misc: bump license header to 2019 * misc: remove_duplicate_empty_lines.sh * misc: run license header script * commit cargo lock
522 lines
17 KiB
Rust
522 lines
17 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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//! Set of different helpers for client tests
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use std::path::Path;
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use std::sync::Arc;
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use std::{fs, io};
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use blockchain::{BlockChain, BlockChainDB, BlockChainDBHandler, Config as BlockChainConfig, ExtrasInsert};
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use blooms_db;
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use bytes::Bytes;
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use ethereum_types::{H256, U256, Address};
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use ethkey::KeyPair;
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use evm::Factory as EvmFactory;
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use hash::keccak;
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use io::IoChannel;
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use kvdb::KeyValueDB;
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use kvdb_rocksdb::{self, Database, DatabaseConfig};
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use parking_lot::RwLock;
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use rlp::{self, RlpStream};
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use tempdir::TempDir;
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use types::transaction::{Action, Transaction, SignedTransaction};
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use types::encoded;
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use types::header::Header;
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use types::view;
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use types::views::BlockView;
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use account_provider::AccountProvider;
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use block::{OpenBlock, Drain};
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use client::{Client, ClientConfig, ChainInfo, ImportBlock, ChainNotify, ChainMessageType, PrepareOpenBlock};
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use factory::Factories;
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use miner::Miner;
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use spec::Spec;
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use state::*;
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use state_db::StateDB;
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use verification::queue::kind::blocks::Unverified;
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/// Creates test block with corresponding header
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pub fn create_test_block(header: &Header) -> Bytes {
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let mut rlp = RlpStream::new_list(3);
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rlp.append(header);
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rlp.append_raw(&rlp::EMPTY_LIST_RLP, 1);
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rlp.append_raw(&rlp::EMPTY_LIST_RLP, 1);
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rlp.out()
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}
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fn create_unverifiable_block_header(order: u32, parent_hash: H256) -> Header {
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let mut header = Header::new();
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header.set_gas_limit(0.into());
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header.set_difficulty((order * 100).into());
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header.set_timestamp((order * 10) as u64);
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header.set_number(order as u64);
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header.set_parent_hash(parent_hash);
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header.set_state_root(H256::zero());
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header
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}
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fn create_unverifiable_block_with_extra(order: u32, parent_hash: H256, extra: Option<Bytes>) -> Bytes {
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let mut header = create_unverifiable_block_header(order, parent_hash);
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header.set_extra_data(match extra {
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Some(extra_data) => extra_data,
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None => {
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let base = (order & 0x000000ff) as u8;
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let generated: Vec<u8> = vec![base + 1, base + 2, base + 3];
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generated
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}
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});
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create_test_block(&header)
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}
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fn create_unverifiable_block(order: u32, parent_hash: H256) -> Bytes {
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create_test_block(&create_unverifiable_block_header(order, parent_hash))
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}
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/// Creates test block with corresponding header and data
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pub fn create_test_block_with_data(header: &Header, transactions: &[SignedTransaction], uncles: &[Header]) -> Bytes {
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let mut rlp = RlpStream::new_list(3);
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rlp.append(header);
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rlp.begin_list(transactions.len());
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for t in transactions {
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rlp.append_raw(&rlp::encode(t), 1);
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}
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rlp.append_list(&uncles);
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rlp.out()
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}
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/// Generates dummy client (not test client) with corresponding amount of blocks
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pub fn generate_dummy_client(block_number: u32) -> Arc<Client> {
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generate_dummy_client_with_spec_and_data(Spec::new_test, block_number, 0, &[])
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}
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/// Generates dummy client (not test client) with corresponding amount of blocks and txs per every block
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pub fn generate_dummy_client_with_data(block_number: u32, txs_per_block: usize, tx_gas_prices: &[U256]) -> Arc<Client> {
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generate_dummy_client_with_spec_and_data(Spec::new_null, block_number, txs_per_block, tx_gas_prices)
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}
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/// Generates dummy client (not test client) with corresponding amount of blocks, txs per block and spec
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pub fn generate_dummy_client_with_spec_and_data<F>(test_spec: F, block_number: u32, txs_per_block: usize, tx_gas_prices: &[U256]) -> Arc<Client> where F: Fn()->Spec {
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generate_dummy_client_with_spec_accounts_and_data(test_spec, None, block_number, txs_per_block, tx_gas_prices)
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}
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/// Generates dummy client (not test client) with corresponding spec and accounts
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pub fn generate_dummy_client_with_spec_and_accounts<F>(test_spec: F, accounts: Option<Arc<AccountProvider>>) -> Arc<Client> where F: Fn()->Spec {
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generate_dummy_client_with_spec_accounts_and_data(test_spec, accounts, 0, 0, &[])
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}
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/// Generates dummy client (not test client) with corresponding blocks, accounts and spec
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pub fn generate_dummy_client_with_spec_accounts_and_data<F>(test_spec: F, accounts: Option<Arc<AccountProvider>>, block_number: u32, txs_per_block: usize, tx_gas_prices: &[U256]) -> Arc<Client> where F: Fn()->Spec {
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let test_spec = test_spec();
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let client_db = new_db();
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let client = Client::new(
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ClientConfig::default(),
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&test_spec,
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client_db,
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Arc::new(Miner::new_for_tests(&test_spec, accounts)),
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IoChannel::disconnected(),
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).unwrap();
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let test_engine = &*test_spec.engine;
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let mut db = test_spec.ensure_db_good(get_temp_state_db(), &Default::default()).unwrap();
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let genesis_header = test_spec.genesis_header();
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let mut rolling_timestamp = 40;
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let mut last_hashes = vec![];
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let mut last_header = genesis_header.clone();
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let kp = KeyPair::from_secret_slice(&keccak("")).unwrap();
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let author = kp.address();
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let mut n = 0;
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for _ in 0..block_number {
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last_hashes.push(last_header.hash());
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// forge block.
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let mut b = OpenBlock::new(
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test_engine,
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Default::default(),
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false,
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db,
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&last_header,
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Arc::new(last_hashes.clone()),
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author.clone(),
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(3141562.into(), 31415620.into()),
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vec![],
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false,
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&mut Vec::new().into_iter(),
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).unwrap();
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rolling_timestamp += 10;
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b.set_timestamp(rolling_timestamp);
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// first block we don't have any balance, so can't send any transactions.
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for _ in 0..txs_per_block {
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b.push_transaction(Transaction {
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nonce: n.into(),
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gas_price: tx_gas_prices[n % tx_gas_prices.len()],
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gas: 100000.into(),
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action: Action::Create,
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data: vec![],
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value: U256::zero(),
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}.sign(kp.secret(), Some(test_spec.chain_id())), None).unwrap();
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n += 1;
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}
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let b = b.close_and_lock().unwrap().seal(test_engine, vec![]).unwrap();
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if let Err(e) = client.import_block(Unverified::from_rlp(b.rlp_bytes()).unwrap()) {
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panic!("error importing block which is valid by definition: {:?}", e);
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}
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last_header = view!(BlockView, &b.rlp_bytes()).header();
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db = b.drain().state.drop().1;
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}
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client.flush_queue();
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client.import_verified_blocks();
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client
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}
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/// Adds blocks to the client
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pub fn push_blocks_to_client(client: &Arc<Client>, timestamp_salt: u64, starting_number: usize, block_number: usize) {
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let test_spec = Spec::new_test();
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let state_root = test_spec.genesis_header().state_root().clone();
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let genesis_gas = test_spec.genesis_header().gas_limit().clone();
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let mut rolling_hash = client.chain_info().best_block_hash;
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let mut rolling_block_number = starting_number as u64;
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let mut rolling_timestamp = timestamp_salt + starting_number as u64 * 10;
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for _ in 0..block_number {
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let mut header = Header::new();
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header.set_gas_limit(genesis_gas);
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header.set_difficulty(U256::from(0x20000));
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header.set_timestamp(rolling_timestamp);
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header.set_number(rolling_block_number);
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header.set_parent_hash(rolling_hash);
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header.set_state_root(state_root);
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rolling_hash = header.hash();
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rolling_block_number = rolling_block_number + 1;
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rolling_timestamp = rolling_timestamp + 10;
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if let Err(e) = client.import_block(Unverified::from_rlp(create_test_block(&header)).unwrap()) {
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panic!("error importing block which is valid by definition: {:?}", e);
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}
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}
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}
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/// Adds one block with transactions
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pub fn push_block_with_transactions(client: &Arc<Client>, transactions: &[SignedTransaction]) {
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let test_spec = Spec::new_test();
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let test_engine = &*test_spec.engine;
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let block_number = client.chain_info().best_block_number as u64 + 1;
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let mut b = client.prepare_open_block(Address::default(), (0.into(), 5000000.into()), Bytes::new()).unwrap();
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b.set_timestamp(block_number * 10);
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for t in transactions {
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b.push_transaction(t.clone(), None).unwrap();
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}
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let b = b.close_and_lock().unwrap().seal(test_engine, vec![]).unwrap();
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if let Err(e) = client.import_block(Unverified::from_rlp(b.rlp_bytes()).unwrap()) {
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panic!("error importing block which is valid by definition: {:?}", e);
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}
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client.flush_queue();
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client.import_verified_blocks();
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}
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/// Creates dummy client (not test client) with corresponding blocks
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pub fn get_test_client_with_blocks(blocks: Vec<Bytes>) -> Arc<Client> {
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let test_spec = Spec::new_test();
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let client_db = new_db();
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let client = Client::new(
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ClientConfig::default(),
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&test_spec,
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client_db,
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Arc::new(Miner::new_for_tests(&test_spec, None)),
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IoChannel::disconnected(),
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).unwrap();
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for block in blocks {
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if let Err(e) = client.import_block(Unverified::from_rlp(block).unwrap()) {
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panic!("error importing block which is well-formed: {:?}", e);
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}
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}
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client.flush_queue();
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client.import_verified_blocks();
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client
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}
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struct TestBlockChainDB {
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_blooms_dir: TempDir,
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_trace_blooms_dir: TempDir,
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blooms: blooms_db::Database,
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trace_blooms: blooms_db::Database,
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key_value: Arc<KeyValueDB>,
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}
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impl BlockChainDB for TestBlockChainDB {
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fn key_value(&self) -> &Arc<KeyValueDB> {
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&self.key_value
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}
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fn blooms(&self) -> &blooms_db::Database {
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&self.blooms
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}
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fn trace_blooms(&self) -> &blooms_db::Database {
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&self.trace_blooms
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}
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}
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/// Creates new test instance of `BlockChainDB`
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pub fn new_db() -> Arc<BlockChainDB> {
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let blooms_dir = TempDir::new("").unwrap();
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let trace_blooms_dir = TempDir::new("").unwrap();
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let db = TestBlockChainDB {
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blooms: blooms_db::Database::open(blooms_dir.path()).unwrap(),
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trace_blooms: blooms_db::Database::open(trace_blooms_dir.path()).unwrap(),
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_blooms_dir: blooms_dir,
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_trace_blooms_dir: trace_blooms_dir,
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key_value: Arc::new(::kvdb_memorydb::create(::db::NUM_COLUMNS.unwrap()))
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};
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Arc::new(db)
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}
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/// Creates a new temporary `BlockChainDB` on FS
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pub fn new_temp_db(tempdir: &Path) -> Arc<BlockChainDB> {
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let blooms_dir = TempDir::new("").unwrap();
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let trace_blooms_dir = TempDir::new("").unwrap();
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let key_value_dir = tempdir.join("key_value");
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let db_config = DatabaseConfig::with_columns(::db::NUM_COLUMNS);
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let key_value_db = Database::open(&db_config, key_value_dir.to_str().unwrap()).unwrap();
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let db = TestBlockChainDB {
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blooms: blooms_db::Database::open(blooms_dir.path()).unwrap(),
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trace_blooms: blooms_db::Database::open(trace_blooms_dir.path()).unwrap(),
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_blooms_dir: blooms_dir,
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_trace_blooms_dir: trace_blooms_dir,
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key_value: Arc::new(key_value_db)
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};
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Arc::new(db)
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}
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/// Creates new instance of KeyValueDBHandler
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pub fn restoration_db_handler(config: kvdb_rocksdb::DatabaseConfig) -> Box<BlockChainDBHandler> {
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struct RestorationDBHandler {
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config: kvdb_rocksdb::DatabaseConfig,
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}
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struct RestorationDB {
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blooms: blooms_db::Database,
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trace_blooms: blooms_db::Database,
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key_value: Arc<KeyValueDB>,
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}
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impl BlockChainDB for RestorationDB {
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fn key_value(&self) -> &Arc<KeyValueDB> {
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&self.key_value
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}
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fn blooms(&self) -> &blooms_db::Database {
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&self.blooms
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}
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fn trace_blooms(&self) -> &blooms_db::Database {
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&self.trace_blooms
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}
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}
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impl BlockChainDBHandler for RestorationDBHandler {
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fn open(&self, db_path: &Path) -> io::Result<Arc<BlockChainDB>> {
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let key_value = Arc::new(kvdb_rocksdb::Database::open(&self.config, &db_path.to_string_lossy())?);
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let blooms_path = db_path.join("blooms");
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let trace_blooms_path = db_path.join("trace_blooms");
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fs::create_dir_all(&blooms_path)?;
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fs::create_dir_all(&trace_blooms_path)?;
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let blooms = blooms_db::Database::open(blooms_path).unwrap();
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let trace_blooms = blooms_db::Database::open(trace_blooms_path).unwrap();
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let db = RestorationDB {
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blooms,
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trace_blooms,
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key_value,
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};
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Ok(Arc::new(db))
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}
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}
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Box::new(RestorationDBHandler { config })
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}
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/// Generates dummy blockchain with corresponding amount of blocks
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pub fn generate_dummy_blockchain(block_number: u32) -> BlockChain {
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let db = new_db();
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let bc = BlockChain::new(BlockChainConfig::default(), &create_unverifiable_block(0, H256::zero()), db.clone());
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let mut batch = db.key_value().transaction();
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for block_order in 1..block_number {
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// Total difficulty is always 0 here.
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bc.insert_block(&mut batch, encoded::Block::new(create_unverifiable_block(block_order, bc.best_block_hash())), vec![], ExtrasInsert {
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fork_choice: ::engines::ForkChoice::New,
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is_finalized: false,
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});
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bc.commit();
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}
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db.key_value().write(batch).unwrap();
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bc
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}
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/// Generates dummy blockchain with corresponding amount of blocks (using creation with extra method for blocks creation)
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pub fn generate_dummy_blockchain_with_extra(block_number: u32) -> BlockChain {
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let db = new_db();
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let bc = BlockChain::new(BlockChainConfig::default(), &create_unverifiable_block(0, H256::zero()), db.clone());
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let mut batch = db.key_value().transaction();
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for block_order in 1..block_number {
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// Total difficulty is always 0 here.
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bc.insert_block(&mut batch, encoded::Block::new(create_unverifiable_block_with_extra(block_order, bc.best_block_hash(), None)), vec![], ExtrasInsert {
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fork_choice: ::engines::ForkChoice::New,
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is_finalized: false,
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});
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bc.commit();
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}
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db.key_value().write(batch).unwrap();
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bc
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}
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/// Returns empty dummy blockchain
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pub fn generate_dummy_empty_blockchain() -> BlockChain {
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let db = new_db();
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let bc = BlockChain::new(BlockChainConfig::default(), &create_unverifiable_block(0, H256::zero()), db.clone());
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bc
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}
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/// Returns temp state
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pub fn get_temp_state() -> State<::state_db::StateDB> {
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let journal_db = get_temp_state_db();
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State::new(journal_db, U256::from(0), Default::default())
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}
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/// Returns temp state using coresponding factory
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pub fn get_temp_state_with_factory(factory: EvmFactory) -> State<::state_db::StateDB> {
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let journal_db = get_temp_state_db();
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let mut factories = Factories::default();
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factories.vm = factory.into();
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State::new(journal_db, U256::from(0), factories)
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}
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/// Returns temp state db
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pub fn get_temp_state_db() -> StateDB {
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let db = new_db();
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let journal_db = ::journaldb::new(db.key_value().clone(), ::journaldb::Algorithm::EarlyMerge, ::db::COL_STATE);
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StateDB::new(journal_db, 5 * 1024 * 1024)
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}
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/// Returns sequence of hashes of the dummy blocks
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pub fn get_good_dummy_block_seq(count: usize) -> Vec<Bytes> {
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let test_spec = Spec::new_test();
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get_good_dummy_block_fork_seq(1, count, &test_spec.genesis_header().hash())
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}
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/// Returns sequence of hashes of the dummy blocks beginning from corresponding parent
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pub fn get_good_dummy_block_fork_seq(start_number: usize, count: usize, parent_hash: &H256) -> Vec<Bytes> {
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let test_spec = Spec::new_test();
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let genesis_gas = test_spec.genesis_header().gas_limit().clone();
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let mut rolling_timestamp = start_number as u64 * 10;
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let mut parent = *parent_hash;
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let mut r = Vec::new();
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for i in start_number .. start_number + count + 1 {
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let mut block_header = Header::new();
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block_header.set_gas_limit(genesis_gas);
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block_header.set_difficulty(U256::from(i) * U256([0, 1, 0, 0]));
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block_header.set_timestamp(rolling_timestamp);
|
|
block_header.set_number(i as u64);
|
|
block_header.set_parent_hash(parent);
|
|
block_header.set_state_root(test_spec.genesis_header().state_root().clone());
|
|
|
|
parent = block_header.hash();
|
|
rolling_timestamp = rolling_timestamp + 10;
|
|
|
|
r.push(create_test_block(&block_header));
|
|
}
|
|
r
|
|
}
|
|
|
|
/// Returns hash and header of the correct dummy block
|
|
pub fn get_good_dummy_block_hash() -> (H256, Bytes) {
|
|
let mut block_header = Header::new();
|
|
let test_spec = Spec::new_test();
|
|
let genesis_gas = test_spec.genesis_header().gas_limit().clone();
|
|
block_header.set_gas_limit(genesis_gas);
|
|
block_header.set_difficulty(U256::from(0x20000));
|
|
block_header.set_timestamp(40);
|
|
block_header.set_number(1);
|
|
block_header.set_parent_hash(test_spec.genesis_header().hash());
|
|
block_header.set_state_root(test_spec.genesis_header().state_root().clone());
|
|
|
|
(block_header.hash(), create_test_block(&block_header))
|
|
}
|
|
|
|
/// Returns hash of the correct dummy block
|
|
pub fn get_good_dummy_block() -> Bytes {
|
|
let (_, bytes) = get_good_dummy_block_hash();
|
|
bytes
|
|
}
|
|
|
|
/// Returns hash of the dummy block with incorrect state root
|
|
pub fn get_bad_state_dummy_block() -> Bytes {
|
|
let mut block_header = Header::new();
|
|
let test_spec = Spec::new_test();
|
|
let genesis_gas = test_spec.genesis_header().gas_limit().clone();
|
|
|
|
block_header.set_gas_limit(genesis_gas);
|
|
block_header.set_difficulty(U256::from(0x20000));
|
|
block_header.set_timestamp(40);
|
|
block_header.set_number(1);
|
|
block_header.set_parent_hash(test_spec.genesis_header().hash());
|
|
block_header.set_state_root(0xbad.into());
|
|
|
|
create_test_block(&block_header)
|
|
}
|
|
|
|
/// Test actor for chain events
|
|
#[derive(Default)]
|
|
pub struct TestNotify {
|
|
/// Messages store
|
|
pub messages: RwLock<Vec<Bytes>>,
|
|
}
|
|
|
|
impl ChainNotify for TestNotify {
|
|
fn broadcast(&self, message: ChainMessageType) {
|
|
let data = match message {
|
|
ChainMessageType::Consensus(data) => data,
|
|
ChainMessageType::SignedPrivateTransaction(_, data) => data,
|
|
ChainMessageType::PrivateTransaction(_, data) => data,
|
|
};
|
|
self.messages.write().push(data);
|
|
}
|
|
}
|