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various typos
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3859072963
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@ -75,7 +75,7 @@ ReadStatus PartiallyDownloadedBlock::InitData(const CBlockHeaderAndShortTxIDs& c
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}
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}
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prefilled_count = cmpctblock.prefilledtxn.size();
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prefilled_count = cmpctblock.prefilledtxn.size();
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// Calculate map of txids -> positions and check mempool to see what we have (or dont)
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// Calculate map of txids -> positions and check mempool to see what we have (or don't)
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// Because well-formed cmpctblock messages will have a (relatively) uniform distribution
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// Because well-formed cmpctblock messages will have a (relatively) uniform distribution
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// of short IDs, any highly-uneven distribution of elements can be safely treated as a
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// of short IDs, any highly-uneven distribution of elements can be safely treated as a
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// READ_STATUS_FAILED.
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// READ_STATUS_FAILED.
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@ -1267,7 +1267,7 @@ bool AppInit2(boost::thread_group& threadGroup, CScheduler& scheduler)
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// cache size calculations
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// cache size calculations
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int64_t nTotalCache = (GetArg("-dbcache", nDefaultDbCache) << 20);
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int64_t nTotalCache = (GetArg("-dbcache", nDefaultDbCache) << 20);
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nTotalCache = std::max(nTotalCache, nMinDbCache << 20); // total cache cannot be less than nMinDbCache
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nTotalCache = std::max(nTotalCache, nMinDbCache << 20); // total cache cannot be less than nMinDbCache
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nTotalCache = std::min(nTotalCache, nMaxDbCache << 20); // total cache cannot be greated than nMaxDbcache
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nTotalCache = std::min(nTotalCache, nMaxDbCache << 20); // total cache cannot be greater than nMaxDbcache
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int64_t nBlockTreeDBCache = nTotalCache / 8;
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int64_t nBlockTreeDBCache = nTotalCache / 8;
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nBlockTreeDBCache = std::min(nBlockTreeDBCache, (GetBoolArg("-txindex", DEFAULT_TXINDEX) ? nMaxBlockDBAndTxIndexCache : nMaxBlockDBCache) << 20);
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nBlockTreeDBCache = std::min(nBlockTreeDBCache, (GetBoolArg("-txindex", DEFAULT_TXINDEX) ? nMaxBlockDBAndTxIndexCache : nMaxBlockDBCache) << 20);
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nTotalCache -= nBlockTreeDBCache;
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nTotalCache -= nBlockTreeDBCache;
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@ -1174,7 +1174,7 @@ bool AcceptToMemoryPoolWorker(CTxMemPool& pool, CValidationState& state, const C
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// nSequence >= maxint-1 on all inputs.
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// nSequence >= maxint-1 on all inputs.
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//
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//
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// maxint-1 is picked to still allow use of nLockTime by
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// maxint-1 is picked to still allow use of nLockTime by
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// non-replacable transactions. All inputs rather than just one
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// non-replaceable transactions. All inputs rather than just one
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// is for the sake of multi-party protocols, where we don't
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// is for the sake of multi-party protocols, where we don't
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// want a single party to be able to disable replacement.
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// want a single party to be able to disable replacement.
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//
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//
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@ -1988,7 +1988,7 @@ bool CheckInputs(const CTransaction& tx, CValidationState &state, const CCoinsVi
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// is safe because block merkle hashes are still computed and checked,
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// is safe because block merkle hashes are still computed and checked,
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// and any change will be caught at the next checkpoint. Of course, if
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// and any change will be caught at the next checkpoint. Of course, if
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// the checkpoint is for a chain that's invalid due to false scriptSigs
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// the checkpoint is for a chain that's invalid due to false scriptSigs
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// this optimisation would allow an invalid chain to be accepted.
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// this optimization would allow an invalid chain to be accepted.
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if (fScriptChecks) {
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if (fScriptChecks) {
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for (unsigned int i = 0; i < tx.vin.size(); i++) {
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for (unsigned int i = 0; i < tx.vin.size(); i++) {
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const COutPoint &prevout = tx.vin[i].prevout;
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const COutPoint &prevout = tx.vin[i].prevout;
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@ -4795,7 +4795,7 @@ void static ProcessGetData(CNode* pfrom, const Consensus::Params& consensusParam
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{
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{
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// If a peer is asking for old blocks, we're almost guaranteed
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// If a peer is asking for old blocks, we're almost guaranteed
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// they wont have a useful mempool to match against a compact block,
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// they wont have a useful mempool to match against a compact block,
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// and we dont feel like constructing the object for them, so
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// and we don't feel like constructing the object for them, so
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// instead we respond with the full, non-compact block.
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// instead we respond with the full, non-compact block.
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if (mi->second->nHeight >= chainActive.Height() - 10) {
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if (mi->second->nHeight >= chainActive.Height() - 10) {
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CBlockHeaderAndShortTxIDs cmpctblock(block);
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CBlockHeaderAndShortTxIDs cmpctblock(block);
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@ -214,7 +214,7 @@ void UnregisterNodeSignals(CNodeSignals& nodeSignals);
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* block is made active. Note that it does not, however, guarantee that the
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* block is made active. Note that it does not, however, guarantee that the
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* specific block passed to it has been checked for validity!
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* specific block passed to it has been checked for validity!
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*
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*
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* @param[out] state This may be set to an Error state if any error occurred processing it, including during validation/connection/etc of otherwise unrelated blocks during reorganisation; or it may be set to an Invalid state if pblock is itself invalid (but this is not guaranteed even when the block is checked). If you want to *possibly* get feedback on whether pblock is valid, you must also install a CValidationInterface (see validationinterface.h) - this will have its BlockChecked method called whenever *any* block completes validation.
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* @param[out] state This may be set to an Error state if any error occurred processing it, including during validation/connection/etc of otherwise unrelated blocks during reorganization; or it may be set to an Invalid state if pblock is itself invalid (but this is not guaranteed even when the block is checked). If you want to *possibly* get feedback on whether pblock is valid, you must also install a CValidationInterface (see validationinterface.h) - this will have its BlockChecked method called whenever *any* block completes validation.
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* @param[in] pfrom The node which we are receiving the block from; it is added to mapBlockSource and may be penalised if the block is invalid.
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* @param[in] pfrom The node which we are receiving the block from; it is added to mapBlockSource and may be penalised if the block is invalid.
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* @param[in] pblock The block we want to process.
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* @param[in] pblock The block we want to process.
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* @param[in] fForceProcessing Process this block even if unrequested; used for non-network block sources and whitelisted peers.
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* @param[in] fForceProcessing Process this block even if unrequested; used for non-network block sources and whitelisted peers.
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@ -1676,7 +1676,7 @@ void ThreadOpenConnections()
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if (nANow - addr.nLastTry < 600 && nTries < 30)
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if (nANow - addr.nLastTry < 600 && nTries < 30)
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continue;
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continue;
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// only consider nodes missing relevant services after 40 failed attemps
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// only consider nodes missing relevant services after 40 failed attempts
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if ((addr.nServices & nRelevantServices) != nRelevantServices && nTries < 40)
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if ((addr.nServices & nRelevantServices) != nRelevantServices && nTries < 40)
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continue;
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continue;
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@ -650,7 +650,7 @@ UniValue getblocktemplate(const UniValue& params, bool fHelp)
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if (nMaxVersionPreVB >= 2) {
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if (nMaxVersionPreVB >= 2) {
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// If VB is supported by the client, nMaxVersionPreVB is -1, so we won't get here
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// If VB is supported by the client, nMaxVersionPreVB is -1, so we won't get here
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// Because BIP 34 changed how the generation transaction is serialised, we can only use version/force back to v2 blocks
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// Because BIP 34 changed how the generation transaction is serialized, we can only use version/force back to v2 blocks
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// This is safe to do [otherwise-]unconditionally only because we are throwing an exception above if a non-force deployment gets activated
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// This is safe to do [otherwise-]unconditionally only because we are throwing an exception above if a non-force deployment gets activated
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// Note that this can probably also be removed entirely after the first BIP9 non-force deployment (ie, probably segwit) gets activated
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// Note that this can probably also be removed entirely after the first BIP9 non-force deployment (ie, probably segwit) gets activated
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aMutable.push_back("version/force");
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aMutable.push_back("version/force");
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@ -3132,7 +3132,7 @@ void CWallet::GetKeyBirthTimes(std::map<CKeyID, int64_t> &mapKeyBirth) const {
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mapKeyBirth[it->first] = it->second.nCreateTime;
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mapKeyBirth[it->first] = it->second.nCreateTime;
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// map in which we'll infer heights of other keys
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// map in which we'll infer heights of other keys
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CBlockIndex *pindexMax = chainActive[std::max(0, chainActive.Height() - 144)]; // the tip can be reorganised; use a 144-block safety margin
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CBlockIndex *pindexMax = chainActive[std::max(0, chainActive.Height() - 144)]; // the tip can be reorganized; use a 144-block safety margin
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std::map<CKeyID, CBlockIndex*> mapKeyFirstBlock;
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std::map<CKeyID, CBlockIndex*> mapKeyFirstBlock;
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std::set<CKeyID> setKeys;
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std::set<CKeyID> setKeys;
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GetKeys(setKeys);
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GetKeys(setKeys);
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