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Store the total sig op count of a tx.
Store sum of legacy and P2SH sig op counts. This is calculated in AcceptToMemory pool and storing it saves redoing the expensive calculation in block template creation.
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16f4a6e0fe
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@ -964,7 +964,7 @@ bool AcceptToMemoryPool(CTxMemPool& pool, CValidationState &state, const CTransa
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}
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}
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CTxMemPoolEntry entry(tx, nFees, GetTime(), dPriority, chainActive.Height(), pool.HasNoInputsOf(tx), inChainInputValue, fSpendsCoinbase);
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CTxMemPoolEntry entry(tx, nFees, GetTime(), dPriority, chainActive.Height(), pool.HasNoInputsOf(tx), inChainInputValue, fSpendsCoinbase, nSigOps);
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unsigned int nSize = entry.GetTxSize();
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// Don't accept it if it can't get into a block
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@ -150,7 +150,7 @@ CTxMemPoolEntry TestMemPoolEntryHelper::FromTx(CMutableTransaction &tx, CTxMemPo
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CAmount inChainValue = hasNoDependencies ? txn.GetValueOut() : 0;
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return CTxMemPoolEntry(txn, nFee, nTime, dPriority, nHeight,
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hasNoDependencies, inChainValue, spendsCoinbase);
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hasNoDependencies, inChainValue, spendsCoinbase, sigOpCount);
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}
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void Shutdown(void* parg)
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@ -66,10 +66,11 @@ struct TestMemPoolEntryHelper
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unsigned int nHeight;
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bool hadNoDependencies;
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bool spendsCoinbase;
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unsigned int sigOpCount;
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TestMemPoolEntryHelper() :
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nFee(0), nTime(0), dPriority(0.0), nHeight(1),
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hadNoDependencies(false), spendsCoinbase(false) { }
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hadNoDependencies(false), spendsCoinbase(false), sigOpCount(1) { }
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CTxMemPoolEntry FromTx(CMutableTransaction &tx, CTxMemPool *pool = NULL);
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@ -80,5 +81,6 @@ struct TestMemPoolEntryHelper
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TestMemPoolEntryHelper &Height(unsigned int _height) { nHeight = _height; return *this; }
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TestMemPoolEntryHelper &HadNoDependencies(bool _hnd) { hadNoDependencies = _hnd; return *this; }
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TestMemPoolEntryHelper &SpendsCoinbase(bool _flag) { spendsCoinbase = _flag; return *this; }
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TestMemPoolEntryHelper &SigOps(unsigned int _sigops) { sigOpCount = _sigops; return *this; }
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};
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#endif
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@ -22,10 +22,10 @@ using namespace std;
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CTxMemPoolEntry::CTxMemPoolEntry(const CTransaction& _tx, const CAmount& _nFee,
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int64_t _nTime, double _entryPriority, unsigned int _entryHeight,
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bool poolHasNoInputsOf, CAmount _inChainInputValue,
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bool _spendsCoinbase):
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bool _spendsCoinbase, unsigned int _sigOps):
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tx(_tx), nFee(_nFee), nTime(_nTime), entryPriority(_entryPriority), entryHeight(_entryHeight),
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hadNoDependencies(poolHasNoInputsOf), inChainInputValue(_inChainInputValue),
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spendsCoinbase(_spendsCoinbase)
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spendsCoinbase(_spendsCoinbase), sigOpCount(_sigOps)
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{
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nTxSize = ::GetSerializeSize(tx, SER_NETWORK, PROTOCOL_VERSION);
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nModSize = tx.CalculateModifiedSize(nTxSize);
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@ -68,6 +68,7 @@ private:
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bool hadNoDependencies; //! Not dependent on any other txs when it entered the mempool
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CAmount inChainInputValue; //! Sum of all txin values that are already in blockchain
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bool spendsCoinbase; //! keep track of transactions that spend a coinbase
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unsigned int sigOpCount; //! Legacy sig ops plus P2SH sig op count
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// Information about descendants of this transaction that are in the
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// mempool; if we remove this transaction we must remove all of these
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@ -81,7 +82,8 @@ private:
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public:
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CTxMemPoolEntry(const CTransaction& _tx, const CAmount& _nFee,
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int64_t _nTime, double _entryPriority, unsigned int _entryHeight,
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bool poolHasNoInputsOf, CAmount _inChainInputValue, bool spendsCoinbase);
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bool poolHasNoInputsOf, CAmount _inChainInputValue, bool spendsCoinbase,
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unsigned int nSigOps);
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CTxMemPoolEntry(const CTxMemPoolEntry& other);
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const CTransaction& GetTx() const { return this->tx; }
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@ -95,6 +97,7 @@ public:
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int64_t GetTime() const { return nTime; }
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unsigned int GetHeight() const { return entryHeight; }
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bool WasClearAtEntry() const { return hadNoDependencies; }
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unsigned int GetSigOpCount() const { return sigOpCount; }
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size_t DynamicMemoryUsage() const { return nUsageSize; }
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// Adjusts the descendant state, if this entry is not dirty.
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