Add rules--presently disabled--for using GetMedianTimePast as endpoint for lock-time calculations
The lock-time code currently uses CBlock::nTime as the cutoff point for time based locked transactions. This has the unfortunate outcome of creating a perverse incentive for miners to lie about the time of a block in order to collect more fees by including transactions that by wall clock determination have not yet matured. By using CBlockIndex::GetMedianTimePast from the prior block instead, the self-interested miner no longer gains from generating blocks with fraudulent timestamps. Users can compensate for this change by simply adding an hour (3600 seconds) to their time-based lock times. If enforced, this would be a soft-fork change. This commit only adds the functionality on an unexecuted code path, without changing the behaviour of Bitcoin Core.
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46f74379b8
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5 changed files with 54 additions and 7 deletions
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@ -13,4 +13,10 @@ static const unsigned int MAX_BLOCK_SIGOPS = MAX_BLOCK_SIZE/50;
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/** Coinbase transaction outputs can only be spent after this number of new blocks (network rule) */
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static const int COINBASE_MATURITY = 100;
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/** Flags for LockTime() */
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enum {
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/* Use GetMedianTimePast() instead of nTime for end point timestamp. */
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LOCKTIME_MEDIAN_TIME_PAST = (1 << 1),
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};
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#endif // BITCOIN_CONSENSUS_CONSENSUS_H
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40
src/main.cpp
40
src/main.cpp
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@ -650,10 +650,35 @@ bool IsFinalTx(const CTransaction &tx, int nBlockHeight, int64_t nBlockTime)
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return true;
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}
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bool CheckFinalTx(const CTransaction &tx)
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bool CheckFinalTx(const CTransaction &tx, int flags)
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{
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AssertLockHeld(cs_main);
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return IsFinalTx(tx, chainActive.Height() + 1, GetAdjustedTime());
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// By convention a negative value for flags indicates that the
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// current network-enforced consensus rules should be used. In
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// a future soft-fork scenario that would mean checking which
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// rules would be enforced for the next block and setting the
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// appropriate flags. At the present time no soft-forks are
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// scheduled, so no flags are set.
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flags = std::max(flags, 0);
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// CheckFinalTx() uses chainActive.Height()+1 to evaluate
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// nLockTime because when IsFinalTx() is called within
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// CBlock::AcceptBlock(), the height of the block *being*
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// evaluated is what is used. Thus if we want to know if a
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// transaction can be part of the *next* block, we need to call
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// IsFinalTx() with one more than chainActive.Height().
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const int nBlockHeight = chainActive.Height() + 1;
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// Timestamps on the other hand don't get any special treatment,
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// because we can't know what timestamp the next block will have,
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// and there aren't timestamp applications where it matters.
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// However this changes once median past time-locks are enforced:
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const int64_t nBlockTime = (flags & LOCKTIME_MEDIAN_TIME_PAST)
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? chainActive.Tip()->GetMedianTimePast()
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: GetAdjustedTime();
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return IsFinalTx(tx, nBlockHeight, nBlockTime);
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}
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unsigned int GetLegacySigOpCount(const CTransaction& tx)
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@ -797,7 +822,7 @@ bool AcceptToMemoryPool(CTxMemPool& pool, CValidationState &state, const CTransa
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// Only accept nLockTime-using transactions that can be mined in the next
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// block; we don't want our mempool filled up with transactions that can't
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// be mined yet.
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if (!CheckFinalTx(tx))
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if (!CheckFinalTx(tx, STANDARD_LOCKTIME_VERIFY_FLAGS))
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return state.DoS(0, false, REJECT_NONSTANDARD, "non-final");
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// is it already in the memory pool?
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@ -2723,10 +2748,15 @@ bool ContextualCheckBlock(const CBlock& block, CValidationState& state, CBlockIn
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const Consensus::Params& consensusParams = Params().GetConsensus();
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// Check that all transactions are finalized
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BOOST_FOREACH(const CTransaction& tx, block.vtx)
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if (!IsFinalTx(tx, nHeight, block.GetBlockTime())) {
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BOOST_FOREACH(const CTransaction& tx, block.vtx) {
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int nLockTimeFlags = 0;
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int64_t nLockTimeCutoff = (nLockTimeFlags & LOCKTIME_MEDIAN_TIME_PAST)
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? pindexPrev->GetMedianTimePast()
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: block.GetBlockTime();
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if (!IsFinalTx(tx, nHeight, nLockTimeCutoff)) {
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return state.DoS(10, error("%s: contains a non-final transaction", __func__), REJECT_INVALID, "bad-txns-nonfinal");
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}
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}
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// Enforce block.nVersion=2 rule that the coinbase starts with serialized block height
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// if 750 of the last 1,000 blocks are version 2 or greater (51/100 if testnet):
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@ -308,8 +308,10 @@ bool IsFinalTx(const CTransaction &tx, int nBlockHeight, int64_t nBlockTime);
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* Check if transaction will be final in the next block to be created.
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*
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* Calls IsFinalTx() with current block height and appropriate block time.
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*
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* See consensus/consensus.h for flag definitions.
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*/
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bool CheckFinalTx(const CTransaction &tx);
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bool CheckFinalTx(const CTransaction &tx, int flags = -1);
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/**
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* Closure representing one script verification
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@ -148,6 +148,7 @@ CBlockTemplate* CreateNewBlock(const CScript& scriptPubKeyIn)
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CBlockIndex* pindexPrev = chainActive.Tip();
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const int nHeight = pindexPrev->nHeight + 1;
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pblock->nTime = GetAdjustedTime();
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const int64_t nMedianTimePast = pindexPrev->GetMedianTimePast();
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CCoinsViewCache view(pcoinsTip);
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// Priority order to process transactions
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@ -162,7 +163,12 @@ CBlockTemplate* CreateNewBlock(const CScript& scriptPubKeyIn)
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mi != mempool.mapTx.end(); ++mi)
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{
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const CTransaction& tx = mi->GetTx();
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if (tx.IsCoinBase() || !IsFinalTx(tx, nHeight, pblock->nTime))
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int64_t nLockTimeCutoff = (STANDARD_LOCKTIME_VERIFY_FLAGS & LOCKTIME_MEDIAN_TIME_PAST)
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? nMedianTimePast
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: pblock->GetBlockTime();
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if (tx.IsCoinBase() || !IsFinalTx(tx, nHeight, nLockTimeCutoff))
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continue;
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COrphan* porphan = NULL;
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@ -43,6 +43,9 @@ static const unsigned int STANDARD_SCRIPT_VERIFY_FLAGS = MANDATORY_SCRIPT_VERIFY
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/** For convenience, standard but not mandatory verify flags. */
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static const unsigned int STANDARD_NOT_MANDATORY_VERIFY_FLAGS = STANDARD_SCRIPT_VERIFY_FLAGS & ~MANDATORY_SCRIPT_VERIFY_FLAGS;
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/** Used as the flags parameter to CheckFinalTx() in non-consensus code */
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static const unsigned int STANDARD_LOCKTIME_VERIFY_FLAGS = 0;
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bool IsStandard(const CScript& scriptPubKey, txnouttype& whichType);
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/**
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* Check for standard transaction types
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