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209 lines
5.7 KiB
209 lines
5.7 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 BlockInfo.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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#if !ETH_LANGUAGES
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#include <libdevcore/Common.h>
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#include <libdevcore/RLP.h>
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#include <libdevcrypto/TrieDB.h>
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#include "ProofOfWork.h"
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#include "Exceptions.h"
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#include "BlockInfo.h"
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using namespace std;
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using namespace dev;
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using namespace dev::eth;
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u256 dev::eth::c_genesisDifficulty = (u256)1 << 17;
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BlockInfo::BlockInfo(): timestamp(Invalid256)
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{
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}
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BlockInfo::BlockInfo(bytesConstRef _block)
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{
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populate(_block);
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}
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BlockInfo BlockInfo::fromHeader(bytesConstRef _block)
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{
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BlockInfo ret;
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ret.populateFromHeader(RLP(_block));
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return ret;
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}
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h256 BlockInfo::headerHashWithoutNonce() const
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{
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RLPStream s;
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fillStream(s, false);
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return sha3(s.out());
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}
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auto static const c_sha3EmptyList = sha3(RLPEmptyList);
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void BlockInfo::fillStream(RLPStream& _s, bool _nonce) const
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{
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_s.appendList(_nonce ? 13 : 12) << parentHash;
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_s.append(sha3Uncles == c_sha3EmptyList ? h256() : sha3Uncles, false, true);
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_s << coinbaseAddress;
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_s.append(stateRoot, false, true).append(transactionsRoot, false, true);
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_s << difficulty << number << minGasPrice << gasLimit << gasUsed << timestamp << extraData;
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if (_nonce)
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_s << nonce;
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}
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h256 BlockInfo::headerHash(bytesConstRef _block)
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{
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return sha3(RLP(_block)[0].data());
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}
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void BlockInfo::populateFromHeader(RLP const& _header, bool _checkNonce)
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{
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hash = dev::sha3(_header.data());
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int field = 0;
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try
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{
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parentHash = _header[field = 0].toHash<h256>();
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sha3Uncles = _header[field = 1].toHash<h256>();
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if (sha3Uncles == h256())
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sha3Uncles = c_sha3EmptyList;
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coinbaseAddress = _header[field = 2].toHash<Address>();
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stateRoot = _header[field = 3].toHash<h256>();
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transactionsRoot = _header[field = 4].toHash<h256>();
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difficulty = _header[field = 5].toInt<u256>();
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number = _header[field = 6].toInt<u256>();
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minGasPrice = _header[field = 7].toInt<u256>();
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gasLimit = _header[field = 8].toInt<u256>();
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gasUsed = _header[field = 9].toInt<u256>();
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timestamp = _header[field = 10].toInt<u256>();
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extraData = _header[field = 11].toBytes();
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nonce = _header[field = 12].toHash<h256>();
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}
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catch (Exception & _e)
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{
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_e << errinfo_name("invalid block header format") << BadFieldError(field, toHex(_header[field].data().toBytes()));
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throw;
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}
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// check it hashes according to proof of work or that it's the genesis block.
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if (_checkNonce && parentHash && !ProofOfWork::verify(headerHashWithoutNonce(), nonce, difficulty))
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BOOST_THROW_EXCEPTION(InvalidBlockNonce(headerHashWithoutNonce(), nonce, difficulty));
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if (gasUsed > gasLimit)
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BOOST_THROW_EXCEPTION(TooMuchGasUsed());
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if (number && extraData.size() > 1024)
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BOOST_THROW_EXCEPTION(ExtraDataTooBig());
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}
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void BlockInfo::populate(bytesConstRef _block, bool _checkNonce)
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{
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RLP root(_block);
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RLP header = root[0];
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if (!header.isList())
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BOOST_THROW_EXCEPTION(InvalidBlockFormat(0,header.data()));
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populateFromHeader(header, _checkNonce);
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if (!root[1].isList())
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BOOST_THROW_EXCEPTION(InvalidBlockFormat(1, root[1].data()));
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if (!root[2].isList())
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BOOST_THROW_EXCEPTION(InvalidBlockFormat(2, root[2].data()));
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}
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void BlockInfo::verifyInternals(bytesConstRef _block) const
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{
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RLP root(_block);
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u256 mgp = (u256)-1;
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OverlayDB db;
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GenericTrieDB<OverlayDB> t(&db);
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t.init();
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unsigned i = 0;
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for (auto const& tr: root[1])
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{
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bytes k = rlp(i);
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t.insert(&k, tr.data());
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u256 gp = tr[0][1].toInt<u256>();
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mgp = min(mgp, gp);
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++i;
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}
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if (transactionsRoot != t.root())
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BOOST_THROW_EXCEPTION(InvalidTransactionsHash(t.root(), transactionsRoot));
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if (minGasPrice > mgp)
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BOOST_THROW_EXCEPTION(InvalidMinGasPrice(minGasPrice, mgp));
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if (sha3Uncles != sha3(root[2].data()))
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BOOST_THROW_EXCEPTION(InvalidUnclesHash());
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}
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void BlockInfo::populateFromParent(BlockInfo const& _parent)
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{
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stateRoot = _parent.stateRoot;
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parentHash = _parent.hash;
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number = _parent.number + 1;
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gasLimit = calculateGasLimit(_parent);
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gasUsed = 0;
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difficulty = calculateDifficulty(_parent);
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}
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u256 BlockInfo::calculateGasLimit(BlockInfo const& _parent) const
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{
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if (!parentHash)
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return 1000000;
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else
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return max<u256>(125000, (_parent.gasLimit * (1024 - 1) + (_parent.gasUsed * 6 / 5)) / 1024);
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}
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u256 BlockInfo::calculateDifficulty(BlockInfo const& _parent) const
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{
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if (!parentHash)
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return c_genesisDifficulty;
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else
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return timestamp >= _parent.timestamp + 5 ? _parent.difficulty - (_parent.difficulty >> 10) : (_parent.difficulty + (_parent.difficulty >> 10));
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}
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void BlockInfo::verifyParent(BlockInfo const& _parent) const
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{ // Check difficulty is correct given the two timestamps.
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if (difficulty != calculateDifficulty(_parent))
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BOOST_THROW_EXCEPTION(InvalidDifficulty());
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if (gasLimit != calculateGasLimit(_parent))
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BOOST_THROW_EXCEPTION(InvalidGasLimit(gasLimit, calculateGasLimit(_parent)));
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// Check timestamp is after previous timestamp.
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if (parentHash)
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{
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if (parentHash != _parent.hash)
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BOOST_THROW_EXCEPTION(InvalidParentHash());
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if (timestamp < _parent.timestamp)
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BOOST_THROW_EXCEPTION(InvalidTimestamp());
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if (number != _parent.number + 1)
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BOOST_THROW_EXCEPTION(InvalidNumber());
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}
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}
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#endif
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