479 lines
16 KiB
C++
479 lines
16 KiB
C++
// Copyright (c) 2014-2017 The Dash Core developers
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// Distributed under the MIT/X11 software license, see the accompanying
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// file COPYING or http://www.opensource.org/licenses/mit-license.php.
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#include "privatesend.h"
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#include "activemasternode.h"
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#include "consensus/validation.h"
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#include "governance.h"
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#include "init.h"
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#include "instantx.h"
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#include "masternode-payments.h"
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#include "masternode-sync.h"
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#include "masternodeman.h"
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#include "messagesigner.h"
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#include "netmessagemaker.h"
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#include "script/sign.h"
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#include "txmempool.h"
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#include "util.h"
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#include "utilmoneystr.h"
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#include <boost/lexical_cast.hpp>
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bool CDarkSendEntry::AddScriptSig(const CTxIn& txin)
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{
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BOOST_FOREACH(CTxDSIn& txdsin, vecTxDSIn) {
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if(txdsin.prevout == txin.prevout && txdsin.nSequence == txin.nSequence) {
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if(txdsin.fHasSig) return false;
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txdsin.scriptSig = txin.scriptSig;
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txdsin.fHasSig = true;
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return true;
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}
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}
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return false;
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}
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bool CDarksendQueue::Sign()
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{
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if(!fMasternodeMode) return false;
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std::string strMessage = vin.ToString() + boost::lexical_cast<std::string>(nDenom) + boost::lexical_cast<std::string>(nTime) + boost::lexical_cast<std::string>(fReady);
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if(!CMessageSigner::SignMessage(strMessage, vchSig, activeMasternode.keyMasternode)) {
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LogPrintf("CDarksendQueue::Sign -- SignMessage() failed, %s\n", ToString());
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return false;
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}
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return CheckSignature(activeMasternode.pubKeyMasternode);
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}
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bool CDarksendQueue::CheckSignature(const CPubKey& pubKeyMasternode)
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{
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std::string strMessage = vin.ToString() + boost::lexical_cast<std::string>(nDenom) + boost::lexical_cast<std::string>(nTime) + boost::lexical_cast<std::string>(fReady);
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std::string strError = "";
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if(!CMessageSigner::VerifyMessage(pubKeyMasternode, vchSig, strMessage, strError)) {
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LogPrintf("CDarksendQueue::CheckSignature -- Got bad Masternode queue signature: %s; error: %s\n", ToString(), strError);
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return false;
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}
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return true;
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}
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bool CDarksendQueue::Relay(CConnman& connman)
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{
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std::vector<CNode*> vNodesCopy = connman.CopyNodeVector(CConnman::FullyConnectedOnly);
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BOOST_FOREACH(CNode* pnode, vNodesCopy) {
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CNetMsgMaker msgMaker(pnode->GetSendVersion());
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if (pnode->nVersion >= MIN_PRIVATESEND_PEER_PROTO_VERSION)
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connman.PushMessage(pnode, msgMaker.Make(NetMsgType::DSQUEUE, (*this)));
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}
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connman.ReleaseNodeVector(vNodesCopy);
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return true;
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}
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bool CDarksendBroadcastTx::Sign()
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{
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if(!fMasternodeMode) return false;
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std::string strMessage = tx->GetHash().ToString() + boost::lexical_cast<std::string>(sigTime);
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if(!CMessageSigner::SignMessage(strMessage, vchSig, activeMasternode.keyMasternode)) {
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LogPrintf("CDarksendBroadcastTx::Sign -- SignMessage() failed\n");
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return false;
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}
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return CheckSignature(activeMasternode.pubKeyMasternode);
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}
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bool CDarksendBroadcastTx::CheckSignature(const CPubKey& pubKeyMasternode)
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{
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std::string strMessage = tx->GetHash().ToString() + boost::lexical_cast<std::string>(sigTime);
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std::string strError = "";
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if(!CMessageSigner::VerifyMessage(pubKeyMasternode, vchSig, strMessage, strError)) {
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LogPrintf("CDarksendBroadcastTx::CheckSignature -- Got bad dstx signature, error: %s\n", strError);
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return false;
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}
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return true;
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}
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bool CDarksendBroadcastTx::IsExpired(int nHeight)
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{
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// expire confirmed DSTXes after ~1h since confirmation
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return (nConfirmedHeight != -1) && (nHeight - nConfirmedHeight > 24);
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}
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void CPrivateSendBase::SetNull()
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{
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// Both sides
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nState = POOL_STATE_IDLE;
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nSessionID = 0;
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nSessionDenom = 0;
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vecEntries.clear();
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finalMutableTransaction.vin.clear();
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finalMutableTransaction.vout.clear();
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nTimeLastSuccessfulStep = GetTimeMillis();
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}
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void CPrivateSendBase::CheckQueue()
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{
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TRY_LOCK(cs_darksend, lockDS);
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if(!lockDS) return; // it's ok to fail here, we run this quite frequently
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// check mixing queue objects for timeouts
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std::vector<CDarksendQueue>::iterator it = vecDarksendQueue.begin();
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while(it != vecDarksendQueue.end()) {
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if((*it).IsExpired()) {
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LogPrint("privatesend", "CPrivateSendBase::%s -- Removing expired queue (%s)\n", __func__, (*it).ToString());
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it = vecDarksendQueue.erase(it);
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} else ++it;
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}
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}
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std::string CPrivateSendBase::GetStateString() const
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{
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switch(nState) {
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case POOL_STATE_IDLE: return "IDLE";
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case POOL_STATE_QUEUE: return "QUEUE";
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case POOL_STATE_ACCEPTING_ENTRIES: return "ACCEPTING_ENTRIES";
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case POOL_STATE_SIGNING: return "SIGNING";
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case POOL_STATE_ERROR: return "ERROR";
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case POOL_STATE_SUCCESS: return "SUCCESS";
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default: return "UNKNOWN";
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}
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}
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// Definitions for static data members
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std::vector<CAmount> CPrivateSend::vecStandardDenominations;
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std::map<uint256, CDarksendBroadcastTx> CPrivateSend::mapDSTX;
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CCriticalSection CPrivateSend::cs_mapdstx;
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void CPrivateSend::InitStandardDenominations()
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{
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vecStandardDenominations.clear();
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/* Denominations
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A note about convertability. Within mixing pools, each denomination
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is convertable to another.
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For example:
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1DRK+1000 == (.1DRK+100)*10
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10DRK+10000 == (1DRK+1000)*10
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*/
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/* Disabled
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vecStandardDenominations.push_back( (100 * COIN)+100000 );
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*/
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vecStandardDenominations.push_back( (10 * COIN)+10000 );
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vecStandardDenominations.push_back( (1 * COIN)+1000 );
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vecStandardDenominations.push_back( (.1 * COIN)+100 );
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vecStandardDenominations.push_back( (.01 * COIN)+10 );
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/* Disabled till we need them
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vecStandardDenominations.push_back( (.001 * COIN)+1 );
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*/
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}
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// check to make sure the collateral provided by the client is valid
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bool CPrivateSend::IsCollateralValid(const CTransaction& txCollateral)
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{
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if(txCollateral.vout.empty()) return false;
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if(txCollateral.nLockTime != 0) return false;
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CAmount nValueIn = 0;
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CAmount nValueOut = 0;
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BOOST_FOREACH(const CTxOut txout, txCollateral.vout) {
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nValueOut += txout.nValue;
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if(!txout.scriptPubKey.IsPayToPublicKeyHash()) {
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LogPrintf ("CPrivateSend::IsCollateralValid -- Invalid Script, txCollateral=%s", txCollateral.ToString());
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return false;
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}
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}
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BOOST_FOREACH(const CTxIn txin, txCollateral.vin) {
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Coin coin;
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if(!GetUTXOCoin(txin.prevout, coin)) {
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LogPrint("privatesend", "CPrivateSend::IsCollateralValid -- Unknown inputs in collateral transaction, txCollateral=%s", txCollateral.ToString());
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return false;
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}
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nValueIn += coin.out.nValue;
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}
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//collateral transactions are required to pay out a small fee to the miners
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if(nValueIn - nValueOut < GetCollateralAmount()) {
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LogPrint("privatesend", "CPrivateSend::IsCollateralValid -- did not include enough fees in transaction: fees: %d, txCollateral=%s", nValueOut - nValueIn, txCollateral.ToString());
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return false;
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}
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LogPrint("privatesend", "CPrivateSend::IsCollateralValid -- %s", txCollateral.ToString());
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{
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LOCK(cs_main);
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CValidationState validationState;
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if(!AcceptToMemoryPool(mempool, validationState, MakeTransactionRef(txCollateral), false, NULL, false, maxTxFee, true)) {
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LogPrint("privatesend", "CPrivateSend::IsCollateralValid -- didn't pass AcceptToMemoryPool()\n");
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return false;
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}
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}
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return true;
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}
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bool CPrivateSend::IsCollateralAmount(CAmount nInputAmount)
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{
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// collateral inputs should always be a 2x..4x of mixing collateral
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return nInputAmount > GetCollateralAmount() &&
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nInputAmount <= GetMaxCollateralAmount() &&
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nInputAmount % GetCollateralAmount() == 0;
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}
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/* Create a nice string to show the denominations
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Function returns as follows (for 4 denominations):
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( bit on if present )
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bit 0 - 100
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bit 1 - 10
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bit 2 - 1
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bit 3 - .1
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bit 4 and so on - out-of-bounds
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none of above - non-denom
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*/
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std::string CPrivateSend::GetDenominationsToString(int nDenom)
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{
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std::string strDenom = "";
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int nMaxDenoms = vecStandardDenominations.size();
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if(nDenom >= (1 << nMaxDenoms)) {
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return "out-of-bounds";
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}
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for (int i = 0; i < nMaxDenoms; ++i) {
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if(nDenom & (1 << i)) {
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strDenom += (strDenom.empty() ? "" : "+") + FormatMoney(vecStandardDenominations[i]);
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}
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}
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if(strDenom.empty()) {
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return "non-denom";
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}
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return strDenom;
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}
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/* Return a bitshifted integer representing the denominations in this list
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Function returns as follows (for 4 denominations):
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( bit on if present )
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100 - bit 0
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10 - bit 1
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1 - bit 2
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.1 - bit 3
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non-denom - 0, all bits off
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*/
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int CPrivateSend::GetDenominations(const std::vector<CTxOut>& vecTxOut, bool fSingleRandomDenom)
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{
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std::vector<std::pair<CAmount, int> > vecDenomUsed;
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// make a list of denominations, with zero uses
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BOOST_FOREACH(CAmount nDenomValue, vecStandardDenominations)
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vecDenomUsed.push_back(std::make_pair(nDenomValue, 0));
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// look for denominations and update uses to 1
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BOOST_FOREACH(CTxOut txout, vecTxOut) {
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bool found = false;
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BOOST_FOREACH (PAIRTYPE(CAmount, int)& s, vecDenomUsed) {
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if(txout.nValue == s.first) {
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s.second = 1;
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found = true;
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}
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}
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if(!found) return 0;
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}
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int nDenom = 0;
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int c = 0;
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// if the denomination is used, shift the bit on
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BOOST_FOREACH (PAIRTYPE(CAmount, int)& s, vecDenomUsed) {
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int bit = (fSingleRandomDenom ? GetRandInt(2) : 1) & s.second;
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nDenom |= bit << c++;
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if(fSingleRandomDenom && bit) break; // use just one random denomination
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}
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return nDenom;
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}
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bool CPrivateSend::GetDenominationsBits(int nDenom, std::vector<int> &vecBitsRet)
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{
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// ( bit on if present, 4 denominations example )
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// bit 0 - 100DASH+1
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// bit 1 - 10DASH+1
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// bit 2 - 1DASH+1
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// bit 3 - .1DASH+1
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int nMaxDenoms = vecStandardDenominations.size();
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if(nDenom >= (1 << nMaxDenoms)) return false;
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vecBitsRet.clear();
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for (int i = 0; i < nMaxDenoms; ++i) {
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if(nDenom & (1 << i)) {
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vecBitsRet.push_back(i);
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}
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}
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return !vecBitsRet.empty();
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}
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int CPrivateSend::GetDenominationsByAmounts(const std::vector<CAmount>& vecAmount)
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{
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CScript scriptTmp = CScript();
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std::vector<CTxOut> vecTxOut;
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BOOST_REVERSE_FOREACH(CAmount nAmount, vecAmount) {
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CTxOut txout(nAmount, scriptTmp);
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vecTxOut.push_back(txout);
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}
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return GetDenominations(vecTxOut, true);
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}
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bool CPrivateSend::IsDenominatedAmount(CAmount nInputAmount)
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{
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for (const auto& nDenomValue : vecStandardDenominations)
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if(nInputAmount == nDenomValue)
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return true;
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return false;
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}
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std::string CPrivateSend::GetMessageByID(PoolMessage nMessageID)
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{
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switch (nMessageID) {
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case ERR_ALREADY_HAVE: return _("Already have that input.");
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case ERR_DENOM: return _("No matching denominations found for mixing.");
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case ERR_ENTRIES_FULL: return _("Entries are full.");
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case ERR_EXISTING_TX: return _("Not compatible with existing transactions.");
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case ERR_FEES: return _("Transaction fees are too high.");
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case ERR_INVALID_COLLATERAL: return _("Collateral not valid.");
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case ERR_INVALID_INPUT: return _("Input is not valid.");
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case ERR_INVALID_SCRIPT: return _("Invalid script detected.");
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case ERR_INVALID_TX: return _("Transaction not valid.");
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case ERR_MAXIMUM: return _("Entry exceeds maximum size.");
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case ERR_MN_LIST: return _("Not in the Masternode list.");
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case ERR_MODE: return _("Incompatible mode.");
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case ERR_NON_STANDARD_PUBKEY: return _("Non-standard public key detected.");
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case ERR_NOT_A_MN: return _("This is not a Masternode."); // not used
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case ERR_QUEUE_FULL: return _("Masternode queue is full.");
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case ERR_RECENT: return _("Last PrivateSend was too recent.");
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case ERR_SESSION: return _("Session not complete!");
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case ERR_MISSING_TX: return _("Missing input transaction information.");
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case ERR_VERSION: return _("Incompatible version.");
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case MSG_NOERR: return _("No errors detected.");
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case MSG_SUCCESS: return _("Transaction created successfully.");
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case MSG_ENTRIES_ADDED: return _("Your entries added successfully.");
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default: return _("Unknown response.");
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}
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}
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void CPrivateSend::AddDSTX(const CDarksendBroadcastTx& dstx)
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{
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LOCK(cs_mapdstx);
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mapDSTX.insert(std::make_pair(dstx.tx->GetHash(), dstx));
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}
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CDarksendBroadcastTx CPrivateSend::GetDSTX(const uint256& hash)
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{
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LOCK(cs_mapdstx);
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auto it = mapDSTX.find(hash);
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return (it == mapDSTX.end()) ? CDarksendBroadcastTx() : it->second;
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}
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void CPrivateSend::CheckDSTXes(int nHeight)
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{
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LOCK(cs_mapdstx);
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std::map<uint256, CDarksendBroadcastTx>::iterator it = mapDSTX.begin();
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while(it != mapDSTX.end()) {
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if (it->second.IsExpired(nHeight)) {
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mapDSTX.erase(it++);
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} else {
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++it;
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}
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}
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LogPrint("privatesend", "CPrivateSend::CheckDSTXes -- mapDSTX.size()=%llu\n", mapDSTX.size());
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}
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void CPrivateSend::UpdatedBlockTip(const CBlockIndex *pindex)
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{
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if(pindex && !fLiteMode && masternodeSync.IsMasternodeListSynced()) {
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CheckDSTXes(pindex->nHeight);
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}
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}
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void CPrivateSend::SyncTransaction(const CTransaction& tx, const CBlockIndex *pindex, int posInBlock)
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{
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if (tx.IsCoinBase()) return;
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LOCK2(cs_main, cs_mapdstx);
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uint256 txHash = tx.GetHash();
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if (!mapDSTX.count(txHash)) return;
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// When tx is 0-confirmed or conflicted, posInBlock is SYNC_TRANSACTION_NOT_IN_BLOCK and nConfirmedHeight should be set to -1
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mapDSTX[txHash].SetConfirmedHeight(posInBlock == CMainSignals::SYNC_TRANSACTION_NOT_IN_BLOCK ? -1 : pindex->nHeight);
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LogPrint("privatesend", "CPrivateSendClient::SyncTransaction -- txid=%s\n", txHash.ToString());
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}
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//TODO: Rename/move to core
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void ThreadCheckPrivateSend(CConnman& connman)
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{
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if(fLiteMode) return; // disable all Dash specific functionality
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static bool fOneThread;
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if(fOneThread) return;
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fOneThread = true;
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// Make this thread recognisable as the PrivateSend thread
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RenameThread("dash-ps");
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unsigned int nTick = 0;
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while (true)
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{
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MilliSleep(1000);
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// try to sync from all available nodes, one step at a time
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masternodeSync.ProcessTick(connman);
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if(masternodeSync.IsBlockchainSynced() && !ShutdownRequested()) {
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nTick++;
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// make sure to check all masternodes first
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mnodeman.Check();
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// check if we should activate or ping every few minutes,
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// slightly postpone first run to give net thread a chance to connect to some peers
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if(nTick % MASTERNODE_MIN_MNP_SECONDS == 15)
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activeMasternode.ManageState(connman);
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if(nTick % 60 == 0) {
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mnodeman.ProcessMasternodeConnections(connman);
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mnodeman.CheckAndRemove(connman);
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mnpayments.CheckAndRemove();
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instantsend.CheckAndRemove();
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}
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if(fMasternodeMode && (nTick % (60 * 5) == 0)) {
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mnodeman.DoFullVerificationStep(connman);
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}
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if(nTick % (60 * 5) == 0) {
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governance.DoMaintenance(connman);
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}
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}
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}
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}
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