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Stricter handling of orphan transactions
Prevent denial-of-service attacks by banning peers that send us invalid orphan transactions and only storing orphan transactions given to us by a peer while the peer is connected.
This commit is contained in:
parent
def2fdb4b9
commit
c74332c678
65
src/main.cpp
65
src/main.cpp
@ -63,8 +63,13 @@ struct COrphanBlock {
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map<uint256, COrphanBlock*> mapOrphanBlocks;
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multimap<uint256, COrphanBlock*> mapOrphanBlocksByPrev;
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map<uint256, CTransaction> mapOrphanTransactions;
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struct COrphanTx {
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CTransaction tx;
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NodeId fromPeer;
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};
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map<uint256, COrphanTx> mapOrphanTransactions;
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map<uint256, set<uint256> > mapOrphanTransactionsByPrev;
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void EraseOrphansFor(NodeId peer);
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// Constant stuff for coinbase transactions we create:
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CScript COINBASE_FLAGS;
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@ -264,6 +269,7 @@ void FinalizeNode(NodeId nodeid) {
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mapBlocksInFlight.erase(entry.hash);
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BOOST_FOREACH(const uint256& hash, state->vBlocksToDownload)
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mapBlocksToDownload.erase(hash);
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EraseOrphansFor(nodeid);
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mapNodeState.erase(nodeid);
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}
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@ -461,7 +467,7 @@ CBlockTreeDB *pblocktree = NULL;
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// mapOrphanTransactions
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//
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bool AddOrphanTx(const CTransaction& tx)
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bool AddOrphanTx(const CTransaction& tx, NodeId peer)
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{
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uint256 hash = tx.GetHash();
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if (mapOrphanTransactions.count(hash))
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@ -481,21 +487,22 @@ bool AddOrphanTx(const CTransaction& tx)
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return false;
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}
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mapOrphanTransactions[hash] = tx;
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mapOrphanTransactions[hash].tx = tx;
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mapOrphanTransactions[hash].fromPeer = peer;
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BOOST_FOREACH(const CTxIn& txin, tx.vin)
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mapOrphanTransactionsByPrev[txin.prevout.hash].insert(hash);
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LogPrint("mempool", "stored orphan tx %s (mapsz %u)\n", hash.ToString(),
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mapOrphanTransactions.size());
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LogPrint("mempool", "stored orphan tx %s (mapsz %u prevsz %u)\n", hash.ToString(),
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mapOrphanTransactions.size(), mapOrphanTransactionsByPrev.size());
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return true;
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}
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void static EraseOrphanTx(uint256 hash)
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{
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map<uint256, CTransaction>::iterator it = mapOrphanTransactions.find(hash);
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map<uint256, COrphanTx>::iterator it = mapOrphanTransactions.find(hash);
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if (it == mapOrphanTransactions.end())
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return;
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BOOST_FOREACH(const CTxIn& txin, it->second.vin)
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BOOST_FOREACH(const CTxIn& txin, it->second.tx.vin)
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{
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map<uint256, set<uint256> >::iterator itPrev = mapOrphanTransactionsByPrev.find(txin.prevout.hash);
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if (itPrev == mapOrphanTransactionsByPrev.end())
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@ -507,6 +514,23 @@ void static EraseOrphanTx(uint256 hash)
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mapOrphanTransactions.erase(it);
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}
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void EraseOrphansFor(NodeId peer)
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{
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int nErased = 0;
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map<uint256, COrphanTx>::iterator iter = mapOrphanTransactions.begin();
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while (iter != mapOrphanTransactions.end())
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{
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map<uint256, COrphanTx>::iterator maybeErase = iter++; // increment to avoid iterator becoming invalid
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if (maybeErase->second.fromPeer == peer)
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{
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EraseOrphanTx(maybeErase->second.tx.GetHash());
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++nErased;
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}
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}
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if (nErased > 0) LogPrint("mempool", "Erased %d orphan tx from peer %d\n", nErased, peer);
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}
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unsigned int LimitOrphanTxSize(unsigned int nMaxOrphans)
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{
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unsigned int nEvicted = 0;
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@ -514,7 +538,7 @@ unsigned int LimitOrphanTxSize(unsigned int nMaxOrphans)
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{
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// Evict a random orphan:
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uint256 randomhash = GetRandHash();
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map<uint256, CTransaction>::iterator it = mapOrphanTransactions.lower_bound(randomhash);
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map<uint256, COrphanTx>::iterator it = mapOrphanTransactions.lower_bound(randomhash);
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if (it == mapOrphanTransactions.end())
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it = mapOrphanTransactions.begin();
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EraseOrphanTx(it->first);
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@ -3777,6 +3801,7 @@ bool static ProcessMessage(CNode* pfrom, string strCommand, CDataStream& vRecv,
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mempool.mapTx.size());
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// Recursively process any orphan transactions that depended on this one
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set<NodeId> setMisbehaving;
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for (unsigned int i = 0; i < vWorkQueue.size(); i++)
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{
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map<uint256, set<uint256> >::iterator itByPrev = mapOrphanTransactionsByPrev.find(vWorkQueue[i]);
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@ -3787,25 +3812,36 @@ bool static ProcessMessage(CNode* pfrom, string strCommand, CDataStream& vRecv,
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++mi)
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{
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const uint256& orphanHash = *mi;
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const CTransaction& orphanTx = mapOrphanTransactions[orphanHash];
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const CTransaction& orphanTx = mapOrphanTransactions[orphanHash].tx;
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NodeId fromPeer = mapOrphanTransactions[orphanHash].fromPeer;
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bool fMissingInputs2 = false;
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// Use a dummy CValidationState so someone can't setup nodes to counter-DoS based on orphan
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// resolution (that is, feeding people an invalid transaction based on LegitTxX in order to get
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// anyone relaying LegitTxX banned)
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CValidationState stateDummy;
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vEraseQueue.push_back(orphanHash);
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if (setMisbehaving.count(fromPeer))
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continue;
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if (AcceptToMemoryPool(mempool, stateDummy, orphanTx, true, &fMissingInputs2))
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{
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LogPrint("mempool", " accepted orphan tx %s\n", orphanHash.ToString());
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RelayTransaction(orphanTx);
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mapAlreadyAskedFor.erase(CInv(MSG_TX, orphanHash));
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vWorkQueue.push_back(orphanHash);
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vEraseQueue.push_back(orphanHash);
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}
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else if (!fMissingInputs2)
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{
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// invalid or too-little-fee orphan
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vEraseQueue.push_back(orphanHash);
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int nDos = 0;
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if (stateDummy.IsInvalid(nDos) && nDos > 0)
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{
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// Punish peer that gave us an invalid orphan tx
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Misbehaving(fromPeer, nDos);
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setMisbehaving.insert(fromPeer);
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LogPrint("mempool", " invalid orphan tx %s\n", orphanHash.ToString());
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}
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// too-little-fee orphan
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LogPrint("mempool", " removed orphan tx %s\n", orphanHash.ToString());
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}
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mempool.check(pcoinsTip);
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@ -3817,7 +3853,7 @@ bool static ProcessMessage(CNode* pfrom, string strCommand, CDataStream& vRecv,
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}
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else if (fMissingInputs)
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{
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AddOrphanTx(tx);
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AddOrphanTx(tx, pfrom->GetId());
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// DoS prevention: do not allow mapOrphanTransactions to grow unbounded
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unsigned int nEvicted = LimitOrphanTxSize(MAX_ORPHAN_TRANSACTIONS);
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@ -4324,7 +4360,9 @@ bool SendMessages(CNode* pto, bool fSendTrickle)
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if (pto->addr.IsLocal())
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LogPrintf("Warning: not banning local peer %s!\n", pto->addr.ToString());
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else
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{
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CNode::Ban(pto->addr);
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}
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}
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state.fShouldBan = false;
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}
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@ -4538,5 +4576,6 @@ public:
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// orphan transactions
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mapOrphanTransactions.clear();
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mapOrphanTransactionsByPrev.clear();
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}
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} instance_of_cmaincleanup;
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@ -24,7 +24,8 @@
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#include <boost/test/unit_test.hpp>
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// Tests this internal-to-main.cpp method:
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extern bool AddOrphanTx(const CTransaction& tx);
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extern bool AddOrphanTx(const CTransaction& tx, NodeId peer);
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extern void EraseOrphansFor(NodeId peer);
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extern unsigned int LimitOrphanTxSize(unsigned int nMaxOrphans);
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extern std::map<uint256, CTransaction> mapOrphanTransactions;
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extern std::map<uint256, std::set<uint256> > mapOrphanTransactionsByPrev;
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@ -174,7 +175,7 @@ BOOST_AUTO_TEST_CASE(DoS_mapOrphans)
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tx.vout[0].nValue = 1*CENT;
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tx.vout[0].scriptPubKey.SetDestination(key.GetPubKey().GetID());
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AddOrphanTx(tx);
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AddOrphanTx(tx, i);
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}
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// ... and 50 that depend on other orphans:
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@ -191,7 +192,7 @@ BOOST_AUTO_TEST_CASE(DoS_mapOrphans)
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tx.vout[0].scriptPubKey.SetDestination(key.GetPubKey().GetID());
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SignSignature(keystore, txPrev, tx, 0);
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AddOrphanTx(tx);
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AddOrphanTx(tx, i);
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}
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// This really-big orphan should be ignored:
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@ -215,7 +216,15 @@ BOOST_AUTO_TEST_CASE(DoS_mapOrphans)
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for (unsigned int j = 1; j < tx.vin.size(); j++)
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tx.vin[j].scriptSig = tx.vin[0].scriptSig;
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BOOST_CHECK(!AddOrphanTx(tx));
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BOOST_CHECK(!AddOrphanTx(tx, i));
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}
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// Test EraseOrphansFor:
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for (NodeId i = 0; i < 3; i++)
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{
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size_t sizeBefore = mapOrphanTransactions.size();
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EraseOrphansFor(i);
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BOOST_CHECK(mapOrphanTransactions.size() < sizeBefore);
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}
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// Test LimitOrphanTxSize() function:
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