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319 lines
12 KiB
319 lines
12 KiB
/*
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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 Client.h
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* @author Gav Wood <i@gavwood.com>
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* @date 2014
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*/
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#pragma once
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#include <thread>
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#include <condition_variable>
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#include <mutex>
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#include <list>
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#include <atomic>
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#include <string>
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#include <array>
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#include <boost/utility.hpp>
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#include <libdevcore/Common.h>
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#include <libdevcore/CommonIO.h>
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#include <libdevcore/Guards.h>
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#include <libdevcore/Worker.h>
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#include <libethcore/Params.h>
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#include <libethcore/ABI.h>
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#include <libp2p/Common.h>
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#include "CanonBlockChain.h"
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#include "TransactionQueue.h"
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#include "State.h"
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#include "CommonNet.h"
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#include "Farm.h"
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#include "ClientBase.h"
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namespace dev
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{
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namespace eth
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{
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class Client;
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class DownloadMan;
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enum ClientWorkState
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{
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Active = 0,
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Deleting,
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Deleted
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};
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class VersionChecker
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{
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public:
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VersionChecker(std::string const& _dbPath);
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void setOk();
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WithExisting action() const { return m_action; }
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private:
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WithExisting m_action;
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std::string m_path;
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};
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class BasicGasPricer: public GasPricer
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{
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public:
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explicit BasicGasPricer(u256 _weiPerRef, u256 _refsPerBlock): m_weiPerRef(_weiPerRef), m_refsPerBlock(_refsPerBlock) {}
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void setRefPrice(u256 _weiPerRef) { if ((bigint)m_refsPerBlock * _weiPerRef > std::numeric_limits<u256>::max() ) BOOST_THROW_EXCEPTION(Overflow() << errinfo_comment("ether price * block fees is larger than 2**256-1, choose a smaller number.") ); else m_weiPerRef = _weiPerRef; }
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void setRefBlockFees(u256 _refsPerBlock) { if ((bigint)m_weiPerRef * _refsPerBlock > std::numeric_limits<u256>::max() ) BOOST_THROW_EXCEPTION(Overflow() << errinfo_comment("ether price * block fees is larger than 2**256-1, choose a smaller number.") ); else m_refsPerBlock = _refsPerBlock; }
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u256 ask(State const&) const override { return m_weiPerRef * m_refsPerBlock / m_gasPerBlock; }
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u256 bid(TransactionPriority _p = TransactionPriority::Medium) const override { return m_octiles[(int)_p] > 0 ? m_octiles[(int)_p] : (m_weiPerRef * m_refsPerBlock / m_gasPerBlock); }
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void update(BlockChain const& _bc) override;
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private:
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u256 m_weiPerRef;
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u256 m_refsPerBlock;
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u256 m_gasPerBlock = 3141592;
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std::array<u256, 9> m_octiles;
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};
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struct ClientNote: public LogChannel { static const char* name(); static const int verbosity = 2; };
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struct ClientChat: public LogChannel { static const char* name(); static const int verbosity = 4; };
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struct ClientTrace: public LogChannel { static const char* name(); static const int verbosity = 7; };
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struct ClientDetail: public LogChannel { static const char* name(); static const int verbosity = 14; };
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struct ActivityReport
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{
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unsigned ticks = 0;
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std::chrono::system_clock::time_point since = std::chrono::system_clock::now();
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};
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std::ostream& operator<<(std::ostream& _out, ActivityReport const& _r);
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/**
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* @brief Main API hub for interfacing with Ethereum.
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*/
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class Client: public ClientBase, Worker
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{
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public:
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/// New-style Constructor.
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explicit Client(
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p2p::Host* _host,
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std::string const& _dbPath = std::string(),
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WithExisting _forceAction = WithExisting::Trust,
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u256 _networkId = 0
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);
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explicit Client(
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p2p::Host* _host,
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std::shared_ptr<GasPricer> _gpForAdoption, // pass it in with new.
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std::string const& _dbPath = std::string(),
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WithExisting _forceAction = WithExisting::Trust,
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u256 _networkId = 0
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);
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/// Destructor.
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virtual ~Client();
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/// Resets the gas pricer to some other object.
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void setGasPricer(std::shared_ptr<GasPricer> _gp) { m_gp = _gp; }
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/// Blocks until all pending transactions have been processed.
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virtual void flushTransactions() override;
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using Interface::call; // to remove warning about hiding virtual function
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/// Makes the given call. Nothing is recorded into the state. This cheats by creating a null address and endowing it with a lot of ETH.
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ExecutionResult call(Address _dest, bytes const& _data = bytes(), u256 _gas = 125000, u256 _value = 0, u256 _gasPrice = 1 * ether, Address const& _from = Address());
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/// Get the remaining gas limit in this block.
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virtual u256 gasLimitRemaining() const { return m_postMine.gasLimitRemaining(); }
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// [PRIVATE API - only relevant for base clients, not available in general]
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dev::eth::State state(unsigned _txi, h256 _block) const;
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dev::eth::State state(h256 _block) const;
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dev::eth::State state(unsigned _txi) const;
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/// Get the object representing the current state of Ethereum.
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dev::eth::State postState() const { ReadGuard l(x_postMine); return m_postMine; }
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/// Get the object representing the current canonical blockchain.
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CanonBlockChain const& blockChain() const { return m_bc; }
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/// Get some information on the block queue.
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BlockQueueStatus blockQueueStatus() const { return m_bq.status(); }
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// Mining stuff:
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void setAddress(Address _us) { WriteGuard l(x_preMine); m_preMine.setAddress(_us); }
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/// Check block validity prior to mining.
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bool miningParanoia() const { return m_paranoia; }
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/// Change whether we check block validity prior to mining.
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void setParanoia(bool _p) { m_paranoia = _p; }
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/// Should we force mining to happen, even without transactions?
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bool forceMining() const { return m_forceMining; }
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/// Enable/disable forcing of mining to happen, even without transactions.
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void setForceMining(bool _enable);
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/// Are we allowed to GPU mine?
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bool turboMining() const { return m_turboMining; }
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/// Enable/disable GPU mining.
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void setTurboMining(bool _enable = true) { m_turboMining = _enable; if (isMining()) startMining(); }
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/// Start mining.
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/// NOT thread-safe - call it & stopMining only from a single thread
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void startMining() override;
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/// Stop mining.
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/// NOT thread-safe
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void stopMining() override { m_farm.stop(); }
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/// Are we mining now?
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bool isMining() const override { return m_farm.isMining(); }
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/// The hashrate...
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uint64_t hashrate() const override;
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/// Check the progress of the mining.
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MiningProgress miningProgress() const override;
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/// Get and clear the mining history.
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std::list<MineInfo> miningHistory();
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/// Update to the latest transactions and get hash of the current block to be mined minus the
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/// nonce (the 'work hash') and the difficulty to be met.
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virtual ProofOfWork::WorkPackage getWork() override;
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/** @brief Submit the proof for the proof-of-work.
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* @param _s A valid solution.
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* @return true if the solution was indeed valid and accepted.
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*/
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virtual bool submitWork(ProofOfWork::Solution const& _proof) override;
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// Debug stuff:
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DownloadMan const* downloadMan() const;
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bool isSyncing() const;
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/// Sets the network id.
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void setNetworkId(u256 _n);
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/// Clears pending transactions. Just for debug use.
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void clearPending();
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/// Kills the blockchain. Just for debug use.
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void killChain();
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/// Retries all blocks with unknown parents.
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void retryUnkonwn() { m_bq.retryAllUnknown(); }
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/// Get a report of activity.
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ActivityReport activityReport() { ActivityReport ret; std::swap(m_report, ret); return ret; }
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protected:
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/// InterfaceStub methods
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virtual BlockChain& bc() override { return m_bc; }
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virtual BlockChain const& bc() const override { return m_bc; }
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/// Returns the state object for the full block (i.e. the terminal state) for index _h.
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/// Works properly with LatestBlock and PendingBlock.
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using ClientBase::asOf;
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virtual State asOf(h256 const& _block) const override;
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virtual State preMine() const override { ReadGuard l(x_preMine); return m_preMine; }
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virtual State postMine() const override { ReadGuard l(x_postMine); return m_postMine; }
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virtual void prepareForTransaction() override;
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/// Collate the changed filters for the bloom filter of the given pending transaction.
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/// Insert any filters that are activated into @a o_changed.
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void appendFromNewPending(TransactionReceipt const& _receipt, h256Hash& io_changed, h256 _sha3);
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/// Collate the changed filters for the hash of the given block.
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/// Insert any filters that are activated into @a o_changed.
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void appendFromNewBlock(h256 const& _blockHash, h256Hash& io_changed);
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/// Record that the set of filters @a _filters have changed.
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/// This doesn't actually make any callbacks, but incrememnts some counters in m_watches.
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void noteChanged(h256Hash const& _filters);
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private:
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/// Called when Worker is starting.
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void startedWorking() override;
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/// Do some work. Handles blockchain maintenance and mining.
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void doWork() override;
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/// Called when Worker is exiting.
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void doneWorking() override;
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/// Magically called when the chain has changed. An import route is provided.
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/// Called by either submitWork() or in our main thread through syncBlockQueue().
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void onChainChanged(ImportRoute const& _ir);
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/// Signal handler for when the block queue needs processing.
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void syncBlockQueue();
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/// Signal handler for when the block queue needs processing.
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void syncTransactionQueue();
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/// Magically called when m_tq needs syncing. Be nice and don't block.
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void onTransactionQueueReady() { m_syncTransactionQueue = true; m_signalled.notify_all(); }
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/// Magically called when m_tq needs syncing. Be nice and don't block.
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void onBlockQueueReady() { m_syncBlockQueue = true; m_signalled.notify_all(); }
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/// Called when the post state has changed (i.e. when more transactions are in it or we're mining on a new block).
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/// This updates m_miningInfo.
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void onPostStateChanged();
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/// Does garbage collection on watches.
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void checkWatchGarbage();
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/// Ticks various system-level objects.
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void tick();
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VersionChecker m_vc; ///< Dummy object to check & update the protocol version.
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CanonBlockChain m_bc; ///< Maintains block database.
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BlockQueue m_bq; ///< Maintains a list of incoming blocks not yet on the blockchain (to be imported).
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std::shared_ptr<GasPricer> m_gp; ///< The gas pricer.
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OverlayDB m_stateDB; ///< Acts as the central point for the state database, so multiple States can share it.
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mutable SharedMutex x_preMine; ///< Lock on m_preMine.
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State m_preMine; ///< The present state of the client.
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mutable SharedMutex x_postMine; ///< Lock on m_postMine.
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State m_postMine; ///< The state of the client which we're mining (i.e. it'll have all the rewards added).
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mutable SharedMutex x_working; ///< Lock on m_working.
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State m_working; ///< The state of the client which we're mining (i.e. it'll have all the rewards added), while we're actually working on it.
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BlockInfo m_miningInfo; ///< The header we're attempting to mine on (derived from m_postMine).
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bool remoteActive() const; ///< Is there an active and valid remote worker?
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bool m_remoteWorking = false; ///< Has the remote worker recently been reset?
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std::chrono::system_clock::time_point m_lastGetWork = std::chrono::system_clock::time_point::min(); ///< Is there an active and valid remote worker?
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std::weak_ptr<EthereumHost> m_host; ///< Our Ethereum Host. Don't do anything if we can't lock.
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GenericFarm<ProofOfWork> m_farm; ///< Our mining farm.
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Handler m_tqReady;
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Handler m_bqReady;
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bool m_turboMining = false; ///< Don't squander all of our time mining actually just sleeping.
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bool m_forceMining = false; ///< Mine even when there are no transactions pending?
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bool m_paranoia = false; ///< Should we be paranoid about our state?
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mutable std::chrono::system_clock::time_point m_lastGarbageCollection;
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///< When did we last both doing GC on the watches?
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mutable std::chrono::system_clock::time_point m_lastTick = std::chrono::system_clock::now();
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///< When did we last tick()?
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ActivityReport m_report;
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std::condition_variable m_signalled;
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Mutex x_signalled;
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std::atomic<bool> m_syncTransactionQueue = {false};
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std::atomic<bool> m_syncBlockQueue = {false};
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};
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}
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}
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