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ba206d2c63
* This removes block-size-limiting code in favor of GBT clients doing the limiting themselves (if at all). * -blockmaxsize is deprecated and only used to calculate an implied blockmaxweight, addressing confusion from multiple users. * getmininginfo's currentblocksize return value was returning garbage values, and has been removed, also removing a GetSerializeSize call in some block generation inner loops and potentially addressing some performance edge cases.
210 lines
7.5 KiB
C++
210 lines
7.5 KiB
C++
// Copyright (c) 2009-2010 Satoshi Nakamoto
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// Copyright (c) 2009-2016 The Bitcoin Core developers
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// Distributed under the MIT software license, see the accompanying
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// file COPYING or http://www.opensource.org/licenses/mit-license.php.
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#ifndef BITCOIN_MINER_H
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#define BITCOIN_MINER_H
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#include "primitives/block.h"
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#include "txmempool.h"
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#include <stdint.h>
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#include <memory>
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#include <boost/multi_index_container.hpp>
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#include <boost/multi_index/ordered_index.hpp>
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class CBlockIndex;
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class CChainParams;
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class CScript;
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namespace Consensus { struct Params; };
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static const bool DEFAULT_PRINTPRIORITY = false;
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struct CBlockTemplate
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{
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CBlock block;
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std::vector<CAmount> vTxFees;
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std::vector<int64_t> vTxSigOpsCost;
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std::vector<unsigned char> vchCoinbaseCommitment;
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};
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// Container for tracking updates to ancestor feerate as we include (parent)
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// transactions in a block
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struct CTxMemPoolModifiedEntry {
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explicit CTxMemPoolModifiedEntry(CTxMemPool::txiter entry)
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{
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iter = entry;
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nSizeWithAncestors = entry->GetSizeWithAncestors();
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nModFeesWithAncestors = entry->GetModFeesWithAncestors();
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nSigOpCostWithAncestors = entry->GetSigOpCostWithAncestors();
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}
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CTxMemPool::txiter iter;
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uint64_t nSizeWithAncestors;
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CAmount nModFeesWithAncestors;
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int64_t nSigOpCostWithAncestors;
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};
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/** Comparator for CTxMemPool::txiter objects.
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* It simply compares the internal memory address of the CTxMemPoolEntry object
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* pointed to. This means it has no meaning, and is only useful for using them
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* as key in other indexes.
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*/
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struct CompareCTxMemPoolIter {
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bool operator()(const CTxMemPool::txiter& a, const CTxMemPool::txiter& b) const
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{
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return &(*a) < &(*b);
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}
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};
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struct modifiedentry_iter {
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typedef CTxMemPool::txiter result_type;
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result_type operator() (const CTxMemPoolModifiedEntry &entry) const
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{
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return entry.iter;
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}
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};
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// This matches the calculation in CompareTxMemPoolEntryByAncestorFee,
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// except operating on CTxMemPoolModifiedEntry.
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// TODO: refactor to avoid duplication of this logic.
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struct CompareModifiedEntry {
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bool operator()(const CTxMemPoolModifiedEntry &a, const CTxMemPoolModifiedEntry &b)
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{
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double f1 = (double)a.nModFeesWithAncestors * b.nSizeWithAncestors;
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double f2 = (double)b.nModFeesWithAncestors * a.nSizeWithAncestors;
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if (f1 == f2) {
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return CTxMemPool::CompareIteratorByHash()(a.iter, b.iter);
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}
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return f1 > f2;
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}
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};
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// A comparator that sorts transactions based on number of ancestors.
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// This is sufficient to sort an ancestor package in an order that is valid
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// to appear in a block.
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struct CompareTxIterByAncestorCount {
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bool operator()(const CTxMemPool::txiter &a, const CTxMemPool::txiter &b)
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{
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if (a->GetCountWithAncestors() != b->GetCountWithAncestors())
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return a->GetCountWithAncestors() < b->GetCountWithAncestors();
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return CTxMemPool::CompareIteratorByHash()(a, b);
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}
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};
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typedef boost::multi_index_container<
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CTxMemPoolModifiedEntry,
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boost::multi_index::indexed_by<
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boost::multi_index::ordered_unique<
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modifiedentry_iter,
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CompareCTxMemPoolIter
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>,
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// sorted by modified ancestor fee rate
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boost::multi_index::ordered_non_unique<
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// Reuse same tag from CTxMemPool's similar index
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boost::multi_index::tag<ancestor_score>,
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boost::multi_index::identity<CTxMemPoolModifiedEntry>,
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CompareModifiedEntry
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>
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>
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> indexed_modified_transaction_set;
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typedef indexed_modified_transaction_set::nth_index<0>::type::iterator modtxiter;
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typedef indexed_modified_transaction_set::index<ancestor_score>::type::iterator modtxscoreiter;
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struct update_for_parent_inclusion
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{
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explicit update_for_parent_inclusion(CTxMemPool::txiter it) : iter(it) {}
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void operator() (CTxMemPoolModifiedEntry &e)
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{
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e.nModFeesWithAncestors -= iter->GetFee();
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e.nSizeWithAncestors -= iter->GetTxSize();
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e.nSigOpCostWithAncestors -= iter->GetSigOpCost();
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}
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CTxMemPool::txiter iter;
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};
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/** Generate a new block, without valid proof-of-work */
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class BlockAssembler
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{
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private:
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// The constructed block template
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std::unique_ptr<CBlockTemplate> pblocktemplate;
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// A convenience pointer that always refers to the CBlock in pblocktemplate
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CBlock* pblock;
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// Configuration parameters for the block size
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bool fIncludeWitness;
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unsigned int nBlockMaxWeight;
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CFeeRate blockMinFeeRate;
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// Information on the current status of the block
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uint64_t nBlockWeight;
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uint64_t nBlockTx;
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uint64_t nBlockSigOpsCost;
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CAmount nFees;
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CTxMemPool::setEntries inBlock;
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// Chain context for the block
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int nHeight;
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int64_t nLockTimeCutoff;
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const CChainParams& chainparams;
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public:
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struct Options {
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Options();
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size_t nBlockMaxWeight;
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size_t nBlockMaxSize;
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CFeeRate blockMinFeeRate;
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};
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explicit BlockAssembler(const CChainParams& params);
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BlockAssembler(const CChainParams& params, const Options& options);
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/** Construct a new block template with coinbase to scriptPubKeyIn */
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std::unique_ptr<CBlockTemplate> CreateNewBlock(const CScript& scriptPubKeyIn, bool fMineWitnessTx=true);
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private:
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// utility functions
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/** Clear the block's state and prepare for assembling a new block */
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void resetBlock();
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/** Add a tx to the block */
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void AddToBlock(CTxMemPool::txiter iter);
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// Methods for how to add transactions to a block.
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/** Add transactions based on feerate including unconfirmed ancestors
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* Increments nPackagesSelected / nDescendantsUpdated with corresponding
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* statistics from the package selection (for logging statistics). */
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void addPackageTxs(int &nPackagesSelected, int &nDescendantsUpdated);
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// helper functions for addPackageTxs()
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/** Remove confirmed (inBlock) entries from given set */
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void onlyUnconfirmed(CTxMemPool::setEntries& testSet);
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/** Test if a new package would "fit" in the block */
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bool TestPackage(uint64_t packageSize, int64_t packageSigOpsCost) const;
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/** Perform checks on each transaction in a package:
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* locktime, premature-witness, serialized size (if necessary)
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* These checks should always succeed, and they're here
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* only as an extra check in case of suboptimal node configuration */
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bool TestPackageTransactions(const CTxMemPool::setEntries& package);
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/** Return true if given transaction from mapTx has already been evaluated,
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* or if the transaction's cached data in mapTx is incorrect. */
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bool SkipMapTxEntry(CTxMemPool::txiter it, indexed_modified_transaction_set &mapModifiedTx, CTxMemPool::setEntries &failedTx);
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/** Sort the package in an order that is valid to appear in a block */
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void SortForBlock(const CTxMemPool::setEntries& package, CTxMemPool::txiter entry, std::vector<CTxMemPool::txiter>& sortedEntries);
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/** Add descendants of given transactions to mapModifiedTx with ancestor
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* state updated assuming given transactions are inBlock. Returns number
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* of updated descendants. */
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int UpdatePackagesForAdded(const CTxMemPool::setEntries& alreadyAdded, indexed_modified_transaction_set &mapModifiedTx);
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};
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/** Modify the extranonce in a block */
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void IncrementExtraNonce(CBlock* pblock, const CBlockIndex* pindexPrev, unsigned int& nExtraNonce);
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int64_t UpdateTime(CBlockHeader* pblock, const Consensus::Params& consensusParams, const CBlockIndex* pindexPrev);
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#endif // BITCOIN_MINER_H
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