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/*
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This file is part of cpp-ethereum.
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cpp-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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cpp-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 cpp-ethereum. If not, see <http://www.gnu.org/licenses/>.
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*/
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/** @file MixClient.cpp
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* @author Yann yann@ethdev.com
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* @author Arkadiy Paronyan arkadiy@ethdev.com
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* @date 2015
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* Ethereum IDE client.
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*/
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#include <vector>
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#include <libdevcore/Exceptions.h>
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#include <libethereum/BlockChain.h>
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#include <libethereum/Transaction.h>
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#include <libethereum/Executive.h>
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#include <libethereum/ExtVM.h>
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#include <libevm/VM.h>
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#include "MixClient.h"
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using namespace dev;
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using namespace dev::eth;
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using namespace dev::mix;
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MixClient::MixClient():
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m_userAccount(KeyPair::create())
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{
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resetState(10000000 * ether);
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}
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void MixClient::resetState(u256 _balance)
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{
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WriteGuard l(x_state);
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m_state = eth::State(Address(), m_stateDB, BaseState::Empty);
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m_state.addBalance(m_userAccount.address(), _balance);
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}
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void MixClient::executeTransaction(bytesConstRef _rlp, State& _state)
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{
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Executive execution(_state, LastHashes(), 0);
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execution.setup(_rlp);
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bytes code;
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bytesConstRef data;
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bool firstIteration = true;
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std::vector<MachineState> machineStates;
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std::vector<MachineState const*> levels;
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auto onOp = [&](uint64_t steps, Instruction inst, dev::bigint newMemSize, dev::bigint gasCost, void* voidVM, void const* voidExt)
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{
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VM& vm = *(VM*)voidVM;
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ExtVM const& ext = *(ExtVM const*)voidExt;
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if (firstIteration)
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{
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code = ext.code;
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data = ext.data;
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firstIteration = false;
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}
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if (levels.size() < ext.depth)
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levels.push_back(&machineStates.back());
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else
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levels.resize(ext.depth);
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machineStates.push_back(MachineState({steps, ext.myAddress, vm.curPC(), inst, newMemSize, vm.gas(),
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vm.stack(), vm.memory(), gasCost, ext.state().storage(ext.myAddress), levels}));
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};
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execution.go(onOp);
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execution.finalize();
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ExecutionResult d;
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d.returnValue = execution.out().toVector();
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d.machineStates = machineStates;
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d.executionCode = code;
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d.executionData = data;
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d.contentAvailable = true;
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d.message = "ok";
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d.contractAddress = m_lastExecutionResult.contractAddress;
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m_lastExecutionResult = d;
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}
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void MixClient::validateBlock(int _block) const
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{
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//TODO: throw exception here if _block != 0
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(void)_block;
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}
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void MixClient::transact(Secret _secret, u256 _value, Address _dest, bytes const& _data, u256 _gas, u256 _gasPrice)
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{
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WriteGuard l(x_state);
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u256 n = m_state.transactionsFrom(toAddress(_secret));
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Transaction t(_value, _gasPrice, _gas, _dest, _data, n, _secret);
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bytes rlp = t.rlp();
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executeTransaction(&rlp, m_state);
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}
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Address MixClient::transact(Secret _secret, u256 _endowment, bytes const& _init, u256 _gas, u256 _gasPrice)
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{
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WriteGuard l(x_state);
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u256 n = m_state.transactionsFrom(toAddress(_secret));
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eth::Transaction t(_endowment, _gasPrice, _gas, _init, n, _secret);
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bytes rlp = t.rlp();
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executeTransaction(&rlp, m_state);
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Address address = right160(sha3(rlpList(t.sender(), t.nonce())));
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m_lastExecutionResult.contractAddress = address;
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return address;
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}
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void MixClient::inject(bytesConstRef _rlp)
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{
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WriteGuard l(x_state);
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executeTransaction(_rlp, m_state);
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}
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void MixClient::flushTransactions()
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{
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}
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bytes MixClient::call(Secret _secret, u256 _value, Address _dest, bytes const& _data, u256 _gas, u256 _gasPrice)
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{
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u256 n;
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State temp;
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{
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ReadGuard lr(x_state);
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temp = m_state;
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n = temp.transactionsFrom(toAddress(_secret));
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}
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Transaction t(_value, _gasPrice, _gas, _dest, _data, n, _secret);
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bytes rlp = t.rlp();
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WriteGuard lw(x_state); //TODO: lock is required only for last executoin state
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executeTransaction(&rlp, temp);
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return m_lastExecutionResult.returnValue;
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}
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u256 MixClient::balanceAt(Address _a, int _block) const
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{
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validateBlock(_block);
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ReadGuard l(x_state);
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return m_state.balance(_a);
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}
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u256 MixClient::countAt(Address _a, int _block) const
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{
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validateBlock(_block);
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ReadGuard l(x_state);
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return m_state.transactionsFrom(_a);
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}
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u256 MixClient::stateAt(Address _a, u256 _l, int _block) const
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{
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validateBlock(_block);
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ReadGuard l(x_state);
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return m_state.storage(_a, _l);
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}
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bytes MixClient::codeAt(Address _a, int _block) const
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{
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validateBlock(_block);
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ReadGuard l(x_state);
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return m_state.code(_a);
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}
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std::map<u256, u256> MixClient::storageAt(Address _a, int _block) const
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{
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validateBlock(_block);
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ReadGuard l(x_state);
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return m_state.storage(_a);
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}
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eth::LocalisedLogEntries MixClient::logs(unsigned _watchId) const
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{
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(void)_watchId;
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return LocalisedLogEntries();
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}
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eth::LocalisedLogEntries MixClient::logs(eth::LogFilter const& _filter) const
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{
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(void)_filter;
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return LocalisedLogEntries();
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}
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unsigned MixClient::installWatch(eth::LogFilter const& _filter)
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{
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(void)_filter;
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BOOST_THROW_EXCEPTION(InterfaceNotSupported("dev::eth::Interface::installWatch"));
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}
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unsigned MixClient::installWatch(h256 _filterId)
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{
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(void)_filterId;
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BOOST_THROW_EXCEPTION(InterfaceNotSupported("dev::eth::Interface::installWatch"));
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}
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void MixClient::uninstallWatch(unsigned _watchId)
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{
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(void)_watchId;
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BOOST_THROW_EXCEPTION(InterfaceNotSupported("dev::eth::Interface::uninstallWatch"));
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}
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eth::LocalisedLogEntries MixClient::peekWatch(unsigned _watchId) const
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{
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(void)_watchId;
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BOOST_THROW_EXCEPTION(InterfaceNotSupported("dev::eth::Interface::peekWatch"));
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}
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eth::LocalisedLogEntries MixClient::checkWatch(unsigned _watchId)
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{
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(void)_watchId;
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BOOST_THROW_EXCEPTION(InterfaceNotSupported("dev::eth::Interface::checkWatch"));
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}
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h256 MixClient::hashFromNumber(unsigned _number) const
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{
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(void)_number;
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BOOST_THROW_EXCEPTION(InterfaceNotSupported("dev::eth::Interface::hashFromNumber"));
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}
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eth::BlockInfo MixClient::blockInfo(h256 _hash) const
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{
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(void)_hash;
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BOOST_THROW_EXCEPTION(InterfaceNotSupported("dev::eth::Interface::blockInfo"));
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}
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eth::BlockDetails MixClient::blockDetails(h256 _hash) const
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{
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(void)_hash;
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BOOST_THROW_EXCEPTION(InterfaceNotSupported("dev::eth::Interface::blockDetails"));
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}
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eth::Transaction MixClient::transaction(h256 _blockHash, unsigned _i) const
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{
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(void)_blockHash;
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(void)_i;
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BOOST_THROW_EXCEPTION(InterfaceNotSupported("dev::eth::Interface::transaction"));
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}
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eth::BlockInfo MixClient::uncle(h256 _blockHash, unsigned _i) const
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{
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(void)_blockHash;
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(void)_i;
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BOOST_THROW_EXCEPTION(InterfaceNotSupported("dev::eth::Interface::uncle"));
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}
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unsigned MixClient::number() const
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{
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return 0;
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}
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eth::Transactions MixClient::pending() const
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{
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return eth::Transactions();
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}
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eth::StateDiff MixClient::diff(unsigned _txi, h256 _block) const
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{
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(void)_txi;
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(void)_block;
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BOOST_THROW_EXCEPTION(InterfaceNotSupported("dev::eth::Interface::diff"));
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}
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eth::StateDiff MixClient::diff(unsigned _txi, int _block) const
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{
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(void)_txi;
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(void)_block;
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BOOST_THROW_EXCEPTION(InterfaceNotSupported("dev::eth::Interface::diff"));
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}
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Addresses MixClient::addresses(int _block) const
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{
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validateBlock(_block);
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ReadGuard l(x_state);
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Addresses ret;
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for (auto const& i: m_state.addresses())
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ret.push_back(i.first);
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return ret;
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}
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u256 MixClient::gasLimitRemaining() const
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{
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ReadGuard l(x_state);
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return m_state.gasLimitRemaining();
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}
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void MixClient::setAddress(Address _us)
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{
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WriteGuard l(x_state);
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m_state.setAddress(_us);
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}
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Address MixClient::address() const
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{
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ReadGuard l(x_state);
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return m_state.address();
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}
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void MixClient::setMiningThreads(unsigned _threads)
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{
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(void)_threads;
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BOOST_THROW_EXCEPTION(InterfaceNotSupported("dev::eth::Interface::setMiningThreads"));
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}
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unsigned MixClient::miningThreads() const
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{
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return 0;
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}
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void MixClient::startMining()
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{
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BOOST_THROW_EXCEPTION(InterfaceNotSupported("dev::eth::Interface::startMining"));
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}
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void MixClient::stopMining()
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{
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BOOST_THROW_EXCEPTION(InterfaceNotSupported("dev::eth::Interface::stopMining"));
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}
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bool MixClient::isMining()
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{
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return false;
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}
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eth::MineProgress MixClient::miningProgress() const
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{
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return eth::MineProgress();
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}
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