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@ -23,10 +23,8 @@ set<CWallet*> setpwalletRegistered;
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CCriticalSection cs_main;
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static map<uint256, CTransaction> mapTransactions;
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CCriticalSection cs_mapTransactions;
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CTxMemPool mempool;
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unsigned int nTransactionsUpdated = 0;
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map<COutPoint, CInPoint> mapNextTx;
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map<uint256, CBlockIndex*> mapBlockIndex;
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uint256 hashGenesisBlock("0x000000000019d6689c085ae165831e934ff763ae46a2a6c172b3f1b60a8ce26f");
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@ -451,31 +449,32 @@ bool CTransaction::CheckTransaction() const
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return true;
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}
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bool CTransaction::AcceptToMemoryPool(CTxDB& txdb, bool fCheckInputs, bool* pfMissingInputs)
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bool CTxMemPool::accept(CTxDB& txdb, CTransaction &tx, bool fCheckInputs,
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bool* pfMissingInputs)
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{
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if (pfMissingInputs)
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*pfMissingInputs = false;
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if (!CheckTransaction())
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return error("AcceptToMemoryPool() : CheckTransaction failed");
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if (!tx.CheckTransaction())
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return error("CTxMemPool::accept() : CheckTransaction failed");
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// Coinbase is only valid in a block, not as a loose transaction
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if (IsCoinBase())
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return DoS(100, error("AcceptToMemoryPool() : coinbase as individual tx"));
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if (tx.IsCoinBase())
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return tx.DoS(100, error("CTxMemPool::accept() : coinbase as individual tx"));
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// To help v0.1.5 clients who would see it as a negative number
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if ((int64)nLockTime > std::numeric_limits<int>::max())
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return error("AcceptToMemoryPool() : not accepting nLockTime beyond 2038 yet");
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if ((int64)tx.nLockTime > std::numeric_limits<int>::max())
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return error("CTxMemPool::accept() : not accepting nLockTime beyond 2038 yet");
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// Rather not work on nonstandard transactions (unless -testnet)
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if (!fTestNet && !IsStandard())
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return error("AcceptToMemoryPool() : nonstandard transaction type");
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if (!fTestNet && !tx.IsStandard())
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return error("CTxMemPool::accept() : nonstandard transaction type");
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// Do we already have it?
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uint256 hash = GetHash();
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uint256 hash = tx.GetHash();
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{
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LOCK(cs_mapTransactions);
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if (mapTransactions.count(hash))
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LOCK(cs);
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if (mapTx.count(hash))
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return false;
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}
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if (fCheckInputs)
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@ -484,9 +483,9 @@ bool CTransaction::AcceptToMemoryPool(CTxDB& txdb, bool fCheckInputs, bool* pfMi
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// Check for conflicts with in-memory transactions
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CTransaction* ptxOld = NULL;
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for (unsigned int i = 0; i < vin.size(); i++)
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for (unsigned int i = 0; i < tx.vin.size(); i++)
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{
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COutPoint outpoint = vin[i].prevout;
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COutPoint outpoint = tx.vin[i].prevout;
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if (mapNextTx.count(outpoint))
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{
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// Disable replacement feature for now
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@ -498,11 +497,11 @@ bool CTransaction::AcceptToMemoryPool(CTxDB& txdb, bool fCheckInputs, bool* pfMi
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ptxOld = mapNextTx[outpoint].ptx;
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if (ptxOld->IsFinal())
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return false;
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if (!IsNewerThan(*ptxOld))
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if (!tx.IsNewerThan(*ptxOld))
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return false;
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for (unsigned int i = 0; i < vin.size(); i++)
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for (unsigned int i = 0; i < tx.vin.size(); i++)
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{
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COutPoint outpoint = vin[i].prevout;
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COutPoint outpoint = tx.vin[i].prevout;
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if (!mapNextTx.count(outpoint) || mapNextTx[outpoint].ptx != ptxOld)
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return false;
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}
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@ -515,29 +514,29 @@ bool CTransaction::AcceptToMemoryPool(CTxDB& txdb, bool fCheckInputs, bool* pfMi
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MapPrevTx mapInputs;
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map<uint256, CTxIndex> mapUnused;
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bool fInvalid = false;
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if (!FetchInputs(txdb, mapUnused, false, false, mapInputs, fInvalid))
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if (!tx.FetchInputs(txdb, mapUnused, false, false, mapInputs, fInvalid))
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{
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if (fInvalid)
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return error("AcceptToMemoryPool() : FetchInputs found invalid tx %s", hash.ToString().substr(0,10).c_str());
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return error("CTxMemPool::accept() : FetchInputs found invalid tx %s", hash.ToString().substr(0,10).c_str());
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if (pfMissingInputs)
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*pfMissingInputs = true;
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return error("AcceptToMemoryPool() : FetchInputs failed %s", hash.ToString().substr(0,10).c_str());
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return error("CTxMemPool::accept() : FetchInputs failed %s", hash.ToString().substr(0,10).c_str());
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}
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// Check for non-standard pay-to-script-hash in inputs
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if (!AreInputsStandard(mapInputs) && !fTestNet)
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return error("AcceptToMemoryPool() : nonstandard transaction input");
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if (!tx.AreInputsStandard(mapInputs) && !fTestNet)
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return error("CTxMemPool::accept() : nonstandard transaction input");
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// Note: if you modify this code to accept non-standard transactions, then
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// you should add code here to check that the transaction does a
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// reasonable number of ECDSA signature verifications.
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int64 nFees = GetValueIn(mapInputs)-GetValueOut();
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unsigned int nSize = ::GetSerializeSize(*this, SER_NETWORK, PROTOCOL_VERSION);
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int64 nFees = tx.GetValueIn(mapInputs)-tx.GetValueOut();
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unsigned int nSize = ::GetSerializeSize(tx, SER_NETWORK, PROTOCOL_VERSION);
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// Don't accept it if it can't get into a block
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if (nFees < GetMinFee(1000, true, GMF_RELAY))
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return error("AcceptToMemoryPool() : not enough fees");
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if (nFees < tx.GetMinFee(1000, true, GMF_RELAY))
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return error("CTxMemPool::accept() : not enough fees");
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// Continuously rate-limit free transactions
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// This mitigates 'penny-flooding' -- sending thousands of free transactions just to
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@ -556,8 +555,8 @@ bool CTransaction::AcceptToMemoryPool(CTxDB& txdb, bool fCheckInputs, bool* pfMi
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nLastTime = nNow;
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// -limitfreerelay unit is thousand-bytes-per-minute
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// At default rate it would take over a month to fill 1GB
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if (dFreeCount > GetArg("-limitfreerelay", 15)*10*1000 && !IsFromMe(*this))
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return error("AcceptToMemoryPool() : free transaction rejected by rate limiter");
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if (dFreeCount > GetArg("-limitfreerelay", 15)*10*1000 && !IsFromMe(tx))
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return error("CTxMemPool::accept() : free transaction rejected by rate limiter");
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if (fDebug)
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printf("Rate limit dFreeCount: %g => %g\n", dFreeCount, dFreeCount+nSize);
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dFreeCount += nSize;
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@ -566,21 +565,21 @@ bool CTransaction::AcceptToMemoryPool(CTxDB& txdb, bool fCheckInputs, bool* pfMi
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// Check against previous transactions
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// This is done last to help prevent CPU exhaustion denial-of-service attacks.
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if (!ConnectInputs(mapInputs, mapUnused, CDiskTxPos(1,1,1), pindexBest, false, false))
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if (!tx.ConnectInputs(mapInputs, mapUnused, CDiskTxPos(1,1,1), pindexBest, false, false))
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{
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return error("AcceptToMemoryPool() : ConnectInputs failed %s", hash.ToString().substr(0,10).c_str());
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return error("CTxMemPool::accept() : ConnectInputs failed %s", hash.ToString().substr(0,10).c_str());
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}
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}
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// Store transaction in memory
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{
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LOCK(cs_mapTransactions);
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LOCK(cs);
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if (ptxOld)
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{
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printf("AcceptToMemoryPool() : replacing tx %s with new version\n", ptxOld->GetHash().ToString().c_str());
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ptxOld->RemoveFromMemoryPool();
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printf("CTxMemPool::accept() : replacing tx %s with new version\n", ptxOld->GetHash().ToString().c_str());
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remove(*ptxOld);
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}
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AddToMemoryPoolUnchecked();
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addUnchecked(tx);
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}
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///// are we sure this is ok when loading transactions or restoring block txes
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@ -588,43 +587,44 @@ bool CTransaction::AcceptToMemoryPool(CTxDB& txdb, bool fCheckInputs, bool* pfMi
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if (ptxOld)
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EraseFromWallets(ptxOld->GetHash());
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printf("AcceptToMemoryPool(): accepted %s\n", hash.ToString().substr(0,10).c_str());
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printf("CTxMemPool::accept() : accepted %s\n", hash.ToString().substr(0,10).c_str());
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return true;
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}
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uint64 nPooledTx = 0;
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bool CTransaction::AcceptToMemoryPool(CTxDB& txdb, bool fCheckInputs, bool* pfMissingInputs)
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{
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return mempool.accept(txdb, *this, fCheckInputs, pfMissingInputs);
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}
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bool CTransaction::AddToMemoryPoolUnchecked()
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bool CTxMemPool::addUnchecked(CTransaction &tx)
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{
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printf("AcceptToMemoryPoolUnchecked(): size %lu\n", mapTransactions.size());
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printf("addUnchecked(): size %lu\n", mapTx.size());
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// Add to memory pool without checking anything. Don't call this directly,
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// call AcceptToMemoryPool to properly check the transaction first.
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// call CTxMemPool::accept to properly check the transaction first.
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{
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LOCK(cs_mapTransactions);
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uint256 hash = GetHash();
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mapTransactions[hash] = *this;
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for (unsigned int i = 0; i < vin.size(); i++)
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mapNextTx[vin[i].prevout] = CInPoint(&mapTransactions[hash], i);
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LOCK(cs);
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uint256 hash = tx.GetHash();
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mapTx[hash] = tx;
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for (unsigned int i = 0; i < tx.vin.size(); i++)
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mapNextTx[tx.vin[i].prevout] = CInPoint(&mapTx[hash], i);
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nTransactionsUpdated++;
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++nPooledTx;
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}
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return true;
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}
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bool CTransaction::RemoveFromMemoryPool()
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bool CTxMemPool::remove(CTransaction &tx)
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{
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// Remove transaction from memory pool
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{
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LOCK(cs_mapTransactions);
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uint256 hash = GetHash();
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if (mapTransactions.count(hash))
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LOCK(cs);
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uint256 hash = tx.GetHash();
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if (mapTx.count(hash))
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{
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BOOST_FOREACH(const CTxIn& txin, vin)
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BOOST_FOREACH(const CTxIn& txin, tx.vin)
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mapNextTx.erase(txin.prevout);
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mapTransactions.erase(hash);
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mapTx.erase(hash);
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nTransactionsUpdated++;
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--nPooledTx;
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}
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}
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return true;
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@ -695,14 +695,14 @@ bool CWalletTx::AcceptWalletTransaction(CTxDB& txdb, bool fCheckInputs)
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{
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{
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LOCK(cs_mapTransactions);
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LOCK(mempool.cs);
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// Add previous supporting transactions first
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BOOST_FOREACH(CMerkleTx& tx, vtxPrev)
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{
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if (!tx.IsCoinBase())
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{
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uint256 hash = tx.GetHash();
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if (!mapTransactions.count(hash) && !txdb.ContainsTx(hash))
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if (!mempool.exists(hash) && !txdb.ContainsTx(hash))
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tx.AcceptToMemoryPool(txdb, fCheckInputs);
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}
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}
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@ -1017,10 +1017,10 @@ bool CTransaction::FetchInputs(CTxDB& txdb, const map<uint256, CTxIndex>& mapTes
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{
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// Get prev tx from single transactions in memory
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{
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LOCK(cs_mapTransactions);
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if (!mapTransactions.count(prevout.hash))
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return error("FetchInputs() : %s mapTransactions prev not found %s", GetHash().ToString().substr(0,10).c_str(), prevout.hash.ToString().substr(0,10).c_str());
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txPrev = mapTransactions[prevout.hash];
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LOCK(mempool.cs);
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if (!mempool.exists(prevout.hash))
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return error("FetchInputs() : %s mempool Tx prev not found %s", GetHash().ToString().substr(0,10).c_str(), prevout.hash.ToString().substr(0,10).c_str());
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txPrev = mempool.lookup(prevout.hash);
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}
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if (!fFound)
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txindex.vSpent.resize(txPrev.vout.size());
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@ -1183,15 +1183,15 @@ bool CTransaction::ClientConnectInputs()
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// Take over previous transactions' spent pointers
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{
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LOCK(cs_mapTransactions);
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LOCK(mempool.cs);
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int64 nValueIn = 0;
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for (unsigned int i = 0; i < vin.size(); i++)
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{
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// Get prev tx from single transactions in memory
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COutPoint prevout = vin[i].prevout;
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if (!mapTransactions.count(prevout.hash))
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if (!mempool.exists(prevout.hash))
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return false;
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CTransaction& txPrev = mapTransactions[prevout.hash];
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CTransaction& txPrev = mempool.lookup(prevout.hash);
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if (prevout.n >= txPrev.vout.size())
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return false;
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@ -1200,7 +1200,8 @@ bool CTransaction::ClientConnectInputs()
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if (!VerifySignature(txPrev, *this, i, true, 0))
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return error("ConnectInputs() : VerifySignature failed");
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///// this is redundant with the mapNextTx stuff, not sure which I want to get rid of
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///// this is redundant with the mempool.mapNextTx stuff,
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///// not sure which I want to get rid of
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///// this has to go away now that posNext is gone
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// // Check for conflicts
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// if (!txPrev.vout[prevout.n].posNext.IsNull())
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@ -1436,7 +1437,7 @@ bool static Reorganize(CTxDB& txdb, CBlockIndex* pindexNew)
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// Delete redundant memory transactions that are in the connected branch
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BOOST_FOREACH(CTransaction& tx, vDelete)
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tx.RemoveFromMemoryPool();
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mempool.remove(tx);
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printf("REORGANIZE: done\n");
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@ -1472,7 +1473,7 @@ bool CBlock::SetBestChainInner(CTxDB& txdb, CBlockIndex *pindexNew)
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// Delete redundant memory transactions
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BOOST_FOREACH(CTransaction& tx, vtx)
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tx.RemoveFromMemoryPool();
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mempool.remove(tx);
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return true;
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}
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@ -2139,8 +2140,8 @@ bool static AlreadyHave(CTxDB& txdb, const CInv& inv)
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{
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bool txInMap = false;
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{
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LOCK(cs_mapTransactions);
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txInMap = (mapTransactions.count(inv.hash) != 0);
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LOCK(mempool.cs);
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txInMap = (mempool.exists(inv.hash));
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}
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return txInMap ||
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mapOrphanTransactions.count(inv.hash) ||
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@ -3129,14 +3130,14 @@ CBlock* CreateNewBlock(CReserveKey& reservekey)
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// Collect memory pool transactions into the block
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int64 nFees = 0;
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{
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LOCK2(cs_main, cs_mapTransactions);
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LOCK2(cs_main, mempool.cs);
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CTxDB txdb("r");
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// Priority order to process transactions
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list<COrphan> vOrphan; // list memory doesn't move
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map<uint256, vector<COrphan*> > mapDependers;
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multimap<double, CTransaction*> mapPriority;
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for (map<uint256, CTransaction>::iterator mi = mapTransactions.begin(); mi != mapTransactions.end(); ++mi)
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for (map<uint256, CTransaction>::iterator mi = mempool.mapTx.begin(); mi != mempool.mapTx.end(); ++mi)
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{
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CTransaction& tx = (*mi).second;
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if (tx.IsCoinBase() || !tx.IsFinal())
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