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265 lines
7.7 KiB
265 lines
7.7 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 EthashAux.cpp
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* @author Gav Wood <i@gavwood.com>
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* @date 2014
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*/
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#include "EthashAux.h"
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#include <boost/detail/endian.hpp>
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#include <boost/filesystem.hpp>
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#include <chrono>
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#include <array>
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#include <random>
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#include <thread>
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#include <libdevcore/Common.h>
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#include <libdevcore/Guards.h>
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#include <libdevcore/Log.h>
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#include <libdevcrypto/CryptoPP.h>
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#include <libdevcore/SHA3.h>
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#include <libdevcore/FileSystem.h>
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#include <libethash/internal.h>
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#include "BlockInfo.h"
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#include "Exceptions.h"
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using namespace std;
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using namespace chrono;
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using namespace dev;
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using namespace eth;
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const char* DAGChannel::name() { return EthGreen "DAG"; }
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EthashAux* dev::eth::EthashAux::s_this = nullptr;
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const unsigned EthashProofOfWork::defaultLocalWorkSize = 64;
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const unsigned EthashProofOfWork::defaultGlobalWorkSizeMultiplier = 4096; // * CL_DEFAULT_LOCAL_WORK_SIZE
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const unsigned EthashProofOfWork::defaultMSPerBatch = 0;
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const EthashProofOfWork::WorkPackage EthashProofOfWork::NullWorkPackage = EthashProofOfWork::WorkPackage();
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EthashAux::~EthashAux()
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{
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}
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EthashAux* EthashAux::get()
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{
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static std::once_flag flag;
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std::call_once(flag, []{s_this = new EthashAux();});
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return s_this;
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}
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uint64_t EthashAux::cacheSize(BlockInfo const& _header)
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{
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return ethash_get_cachesize((uint64_t)_header.number());
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}
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uint64_t EthashAux::dataSize(uint64_t _blockNumber)
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{
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return ethash_get_datasize(_blockNumber);
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}
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h256 EthashAux::seedHash(unsigned _number)
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{
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unsigned epoch = _number / ETHASH_EPOCH_LENGTH;
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Guard l(get()->x_epochs);
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if (epoch >= get()->m_seedHashes.size())
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{
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h256 ret;
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unsigned n = 0;
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if (!get()->m_seedHashes.empty())
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{
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ret = get()->m_seedHashes.back();
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n = get()->m_seedHashes.size() - 1;
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}
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get()->m_seedHashes.resize(epoch + 1);
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// cdebug << "Searching for seedHash of epoch " << epoch;
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for (; n <= epoch; ++n, ret = sha3(ret))
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{
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get()->m_seedHashes[n] = ret;
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// cdebug << "Epoch" << n << "is" << ret;
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}
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}
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return get()->m_seedHashes[epoch];
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}
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uint64_t EthashAux::number(h256 const& _seedHash)
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{
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Guard l(get()->x_epochs);
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unsigned epoch = 0;
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auto epochIter = get()->m_epochs.find(_seedHash);
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if (epochIter == get()->m_epochs.end())
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{
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// cdebug << "Searching for seedHash " << _seedHash;
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for (h256 h; h != _seedHash && epoch < 2048; ++epoch, h = sha3(h), get()->m_epochs[h] = epoch) {}
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if (epoch == 2048)
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{
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std::ostringstream error;
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error << "apparent block number for " << _seedHash << " is too high; max is " << (ETHASH_EPOCH_LENGTH * 2048);
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throw std::invalid_argument(error.str());
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}
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}
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else
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epoch = epochIter->second;
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return epoch * ETHASH_EPOCH_LENGTH;
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}
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void EthashAux::killCache(h256 const& _s)
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{
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WriteGuard l(x_lights);
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m_lights.erase(_s);
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}
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EthashAux::LightType EthashAux::light(h256 const& _seedHash)
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{
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UpgradableGuard l(get()->x_lights);
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if (get()->m_lights.count(_seedHash))
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return get()->m_lights.at(_seedHash);
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UpgradeGuard l2(l);
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return (get()->m_lights[_seedHash] = make_shared<LightAllocation>(_seedHash));
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}
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EthashAux::LightAllocation::LightAllocation(h256 const& _seedHash)
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{
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uint64_t blockNumber = EthashAux::number(_seedHash);
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light = ethash_light_new(blockNumber);
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if (!light)
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BOOST_THROW_EXCEPTION(ExternalFunctionFailure("ethash_light_new()"));
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size = ethash_get_cachesize(blockNumber);
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}
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EthashAux::LightAllocation::~LightAllocation()
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{
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ethash_light_delete(light);
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}
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bytesConstRef EthashAux::LightAllocation::data() const
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{
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return bytesConstRef((byte const*)light->cache, size);
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}
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EthashAux::FullAllocation::FullAllocation(ethash_light_t _light, ethash_callback_t _cb)
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{
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// cdebug << "About to call ethash_full_new...";
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full = ethash_full_new(_light, _cb);
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// cdebug << "Called OK.";
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if (!full)
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{
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clog(DAGChannel) << "DAG Generation Failure. Reason: " << strerror(errno);
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BOOST_THROW_EXCEPTION(ExternalFunctionFailure("ethash_full_new"));
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}
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}
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EthashAux::FullAllocation::~FullAllocation()
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{
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ethash_full_delete(full);
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}
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bytesConstRef EthashAux::FullAllocation::data() const
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{
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return bytesConstRef((byte const*)ethash_full_dag(full), size());
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}
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static std::function<int(unsigned)> s_dagCallback;
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static int dagCallbackShim(unsigned _p)
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{
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clog(DAGChannel) << "Generating DAG file. Progress: " << toString(_p) << "%";
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return s_dagCallback ? s_dagCallback(_p) : 0;
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}
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EthashAux::FullType EthashAux::full(h256 const& _seedHash, bool _createIfMissing, function<int(unsigned)> const& _f)
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{
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FullType ret;
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auto l = light(_seedHash);
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DEV_GUARDED(get()->x_fulls)
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if ((ret = get()->m_fulls[_seedHash].lock()))
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{
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get()->m_lastUsedFull = ret;
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return ret;
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}
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if (_createIfMissing || computeFull(_seedHash, false) == 100)
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{
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s_dagCallback = _f;
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// cnote << "Loading from libethash...";
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ret = make_shared<FullAllocation>(l->light, dagCallbackShim);
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// cnote << "Done loading.";
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DEV_GUARDED(get()->x_fulls)
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get()->m_fulls[_seedHash] = get()->m_lastUsedFull = ret;
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}
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return ret;
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}
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unsigned EthashAux::computeFull(h256 const& _seedHash, bool _createIfMissing)
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{
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Guard l(get()->x_fulls);
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uint64_t blockNumber;
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DEV_IF_THROWS(blockNumber = EthashAux::number(_seedHash))
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{
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return 0;
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}
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if (FullType ret = get()->m_fulls[_seedHash].lock())
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{
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get()->m_lastUsedFull = ret;
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return 100;
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}
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if (_createIfMissing && (!get()->m_fullGenerator || !get()->m_fullGenerator->joinable()))
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{
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get()->m_fullProgress = 0;
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get()->m_generatingFullNumber = blockNumber / ETHASH_EPOCH_LENGTH * ETHASH_EPOCH_LENGTH;
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get()->m_fullGenerator = unique_ptr<thread>(new thread([=](){
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cnote << "Loading full DAG of seedhash: " << _seedHash;
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get()->full(_seedHash, true, [](unsigned p){ get()->m_fullProgress = p; return 0; });
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cnote << "Full DAG loaded";
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get()->m_fullProgress = 0;
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get()->m_generatingFullNumber = NotGenerating;
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}));
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}
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return (get()->m_generatingFullNumber == blockNumber) ? get()->m_fullProgress : 0;
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}
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EthashProofOfWork::Result EthashAux::FullAllocation::compute(h256 const& _headerHash, Nonce const& _nonce) const
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{
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ethash_return_value_t r = ethash_full_compute(full, *(ethash_h256_t*)_headerHash.data(), (uint64_t)(u64)_nonce);
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if (!r.success)
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BOOST_THROW_EXCEPTION(DAGCreationFailure());
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return EthashProofOfWork::Result{h256((uint8_t*)&r.result, h256::ConstructFromPointer), h256((uint8_t*)&r.mix_hash, h256::ConstructFromPointer)};
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}
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EthashProofOfWork::Result EthashAux::LightAllocation::compute(h256 const& _headerHash, Nonce const& _nonce) const
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{
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ethash_return_value r = ethash_light_compute(light, *(ethash_h256_t*)_headerHash.data(), (uint64_t)(u64)_nonce);
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if (!r.success)
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BOOST_THROW_EXCEPTION(DAGCreationFailure());
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return EthashProofOfWork::Result{h256((uint8_t*)&r.result, h256::ConstructFromPointer), h256((uint8_t*)&r.mix_hash, h256::ConstructFromPointer)};
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}
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EthashProofOfWork::Result EthashAux::eval(h256 const& _seedHash, h256 const& _headerHash, Nonce const& _nonce)
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{
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DEV_GUARDED(get()->x_fulls)
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if (FullType dag = get()->m_fulls[_seedHash].lock())
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return dag->compute(_headerHash, _nonce);
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DEV_IF_THROWS(return EthashAux::get()->light(_seedHash)->compute(_headerHash, _nonce))
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{
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return EthashProofOfWork::Result{ ~h256(), h256() };
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}
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}
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