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281 lines
7.6 KiB
281 lines
7.6 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 EthereumHost.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 "EthereumHost.h"
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#include <set>
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#include <chrono>
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#include <thread>
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#include <libdevcore/Common.h>
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#include <libp2p/Host.h>
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#include <libp2p/Session.h>
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#include <libethcore/Exceptions.h>
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#include "BlockChain.h"
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#include "TransactionQueue.h"
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#include "BlockQueue.h"
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#include "EthereumPeer.h"
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#include "DownloadMan.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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using namespace p2p;
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EthereumHost::EthereumHost(BlockChain const& _ch, TransactionQueue& _tq, BlockQueue& _bq, u256 _networkId):
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HostCapability<EthereumPeer>(),
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Worker ("ethsync"),
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m_chain (_ch),
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m_tq (_tq),
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m_bq (_bq),
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m_networkId (_networkId)
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{
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m_latestBlockSent = _ch.currentHash();
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}
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EthereumHost::~EthereumHost()
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{
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for (auto const& i: peers())
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i->cap<EthereumPeer>()->giveUpOnFetch();
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}
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bool EthereumHost::ensureInitialised(TransactionQueue& _tq)
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{
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if (!m_latestBlockSent)
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{
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// First time - just initialise.
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m_latestBlockSent = m_chain.currentHash();
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clog(NetNote) << "Initialising: latest=" << m_latestBlockSent.abridged();
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for (auto const& i: _tq.transactions())
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m_transactionsSent.insert(i.first);
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return true;
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}
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return false;
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}
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void EthereumHost::noteHavePeerState(EthereumPeer* _who)
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{
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clog(NetAllDetail) << "Have peer state.";
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// if already downloading hash-chain, ignore.
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if (m_grabbing != Grabbing::Nothing)
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{
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clog(NetAllDetail) << "Already downloading chain. Just set to help out.";
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_who->ensureGettingChain();
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return;
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}
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// otherwise check to see if we should be downloading...
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_who->tryGrabbingHashChain();
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}
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void EthereumHost::updateGrabbing(Grabbing _g)
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{
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m_grabbing = _g;
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if (_g == Grabbing::Nothing)
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readyForSync();
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else if (_g == Grabbing::Chain)
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for (auto j: peers())
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j->cap<EthereumPeer>()->ensureGettingChain();
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}
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void EthereumHost::noteHaveChain(EthereumPeer* _from)
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{
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auto td = _from->m_totalDifficulty;
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if (_from->m_neededBlocks.empty())
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{
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_from->m_grabbing = Grabbing::Nothing;
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updateGrabbing(Grabbing::Nothing);
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return;
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}
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clog(NetNote) << "Hash-chain COMPLETE:" << _from->m_totalDifficulty << "vs" << m_chain.details().totalDifficulty << ";" << _from->m_neededBlocks.size() << " blocks, ends" << _from->m_neededBlocks.back().abridged();
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if (td < m_chain.details().totalDifficulty || (td == m_chain.details().totalDifficulty && m_chain.currentHash() == _from->m_latestHash))
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{
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clog(NetNote) << "Difficulty of hashchain not HIGHER. Ignoring.";
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_from->m_grabbing = Grabbing::Nothing;
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updateGrabbing(Grabbing::Nothing);
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return;
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}
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clog(NetNote) << "Difficulty of hashchain HIGHER. Replacing fetch queue [latest now" << _from->m_latestHash.abridged() << ", was" << m_latestBlockSent.abridged() << "]";
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// Looks like it's the best yet for total difficulty. Set to download.
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m_man.resetToChain(_from->m_neededBlocks);
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m_latestBlockSent = _from->m_latestHash;
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_from->m_grabbing = Grabbing::Chain;
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updateGrabbing(Grabbing::Chain);
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}
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void EthereumHost::readyForSync()
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{
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// start grabbing next hash chain if there is one.
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for (auto j: peers())
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{
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j->cap<EthereumPeer>()->tryGrabbingHashChain();
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if (j->cap<EthereumPeer>()->m_grabbing == Grabbing::Hashes)
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{
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m_grabbing = Grabbing::Hashes;
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return;
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}
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}
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clog(NetNote) << "No more peers to sync with.";
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}
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void EthereumHost::noteDoneBlocks(EthereumPeer* _who)
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{
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if (m_man.isComplete())
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{
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// Done our chain-get.
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clog(NetNote) << "Chain download complete.";
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updateGrabbing(Grabbing::Nothing);
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}
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if (_who->m_grabbing == Grabbing::Chain)
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{
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// Done our chain-get.
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clog(NetNote) << "Chain download failed. Peer with blocks didn't have them all. This peer is bad and should be punished.";
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// TODO: note that peer is BADBADBAD!
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updateGrabbing(Grabbing::Nothing);
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}
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}
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bool EthereumHost::noteBlock(h256 _hash, bytesConstRef _data)
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{
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if (!m_chain.details(_hash))
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{
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lock_guard<recursive_mutex> l(m_incomingLock);
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m_incomingBlocks.push_back(_data.toBytes());
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return true;
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}
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return false;
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}
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void EthereumHost::doWork()
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{
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bool netChange = ensureInitialised(m_tq);
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auto h = m_chain.currentHash();
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maintainTransactions(m_tq, h);
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maintainBlocks(m_bq, h);
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// return netChange;
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// TODO: Figure out what to do with netChange.
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(void)netChange;
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}
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void EthereumHost::maintainTransactions(TransactionQueue& _tq, h256 _currentHash)
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{
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bool resendAll = (m_grabbing == Grabbing::Nothing && m_chain.isKnown(m_latestBlockSent) && _currentHash != m_latestBlockSent);
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{
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lock_guard<recursive_mutex> l(m_incomingLock);
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for (auto it = m_incomingTransactions.begin(); it != m_incomingTransactions.end(); ++it)
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if (_tq.import(&*it))
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{}//ret = true; // just putting a transaction in the queue isn't enough to change the state - it might have an invalid nonce...
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else
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m_transactionsSent.insert(sha3(*it)); // if we already had the transaction, then don't bother sending it on.
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m_incomingTransactions.clear();
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}
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// Send any new transactions.
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for (auto const& p: peers())
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{
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auto ep = p->cap<EthereumPeer>();
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if (ep)
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{
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bytes b;
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unsigned n = 0;
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for (auto const& i: _tq.transactions())
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if ((!m_transactionsSent.count(i.first) && !ep->m_knownTransactions.count(i.first)) || ep->m_requireTransactions || resendAll)
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{
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b += i.second;
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++n;
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m_transactionsSent.insert(i.first);
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}
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ep->clearKnownTransactions();
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if (n)
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{
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RLPStream ts;
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EthereumPeer::prep(ts);
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ts.appendList(n + 1) << TransactionsPacket;
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ts.appendRaw(b, n).swapOut(b);
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seal(b);
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ep->send(&b);
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}
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ep->m_requireTransactions = false;
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}
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}
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}
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void EthereumHost::reset()
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{
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m_grabbing = Grabbing::Nothing;
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m_man.resetToChain(h256s());
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m_incomingTransactions.clear();
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m_incomingBlocks.clear();
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m_latestBlockSent = h256();
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m_transactionsSent.clear();
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}
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void EthereumHost::maintainBlocks(BlockQueue& _bq, h256 _currentHash)
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{
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// Import new blocks
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{
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lock_guard<recursive_mutex> l(m_incomingLock);
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for (auto it = m_incomingBlocks.rbegin(); it != m_incomingBlocks.rend(); ++it)
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if (_bq.import(&*it, m_chain))
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{}
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else{} // TODO: don't forward it.
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m_incomingBlocks.clear();
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}
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// If we've finished our initial sync send any new blocks.
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if (m_grabbing == Grabbing::Nothing && m_chain.isKnown(m_latestBlockSent) && m_chain.details(m_latestBlockSent).totalDifficulty < m_chain.details(_currentHash).totalDifficulty)
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{
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RLPStream ts;
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EthereumPeer::prep(ts);
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bytes bs;
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unsigned c = 0;
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for (auto h: m_chain.treeRoute(m_latestBlockSent, _currentHash, nullptr, false, true))
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{
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bs += m_chain.block(h);
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++c;
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}
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clog(NetMessageSummary) << "Sending" << c << "new blocks (current is" << _currentHash << ", was" << m_latestBlockSent << ")";
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ts.appendList(1 + c).append(BlocksPacket).appendRaw(bs, c);
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bytes b;
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ts.swapOut(b);
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seal(b);
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for (auto j: peers())
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{
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auto p = j->cap<EthereumPeer>();
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Guard l(p->x_knownBlocks);
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if (!p->m_knownBlocks.count(_currentHash))
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p->send(&b);
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p->m_knownBlocks.clear();
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}
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m_latestBlockSent = _currentHash;
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}
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}
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