33ee068d6a
- better names (MASTERNODE_INITIAL was defined twice before that) - move to proper header
317 lines
8.7 KiB
C++
317 lines
8.7 KiB
C++
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// Copyright (c) 2014-2015 The Dash 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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#ifndef MASTERNODE_H
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#define MASTERNODE_H
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#include "sync.h"
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#include "net.h"
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#include "key.h"
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#include "util.h"
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#include "base58.h"
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#include "main.h"
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#include "timedata.h"
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#define MASTERNODE_MIN_CONFIRMATIONS 15
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#define MASTERNODE_MIN_MNP_SECONDS (30*60)
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#define MASTERNODE_MIN_MNB_SECONDS (5*60)
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#define MASTERNODE_PING_SECONDS (15*60)
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#define MASTERNODE_EXPIRATION_SECONDS (65*60)
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#define MASTERNODE_REMOVAL_SECONDS (75*60)
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using namespace std;
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class CMasternode;
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class CMasternodeBroadcast;
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class CMasternodePing;
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extern map<int64_t, uint256> mapCacheBlockHashes;
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bool GetBlockHash(uint256& hash, int nBlockHeight);
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//
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// The Masternode Ping Class : Contains a different serialize method for sending pings from masternodes throughout the network
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//
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class CMasternodePing
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{
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public:
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CTxIn vin;
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uint256 blockHash;
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int64_t sigTime; //mnb message times
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std::vector<unsigned char> vchSig;
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//removed stop
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CMasternodePing();
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CMasternodePing(CTxIn& newVin);
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ADD_SERIALIZE_METHODS;
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template <typename Stream, typename Operation>
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inline void SerializationOp(Stream& s, Operation ser_action, int nType, int nVersion) {
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READWRITE(vin);
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READWRITE(blockHash);
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READWRITE(sigTime);
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READWRITE(vchSig);
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}
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bool CheckAndUpdate(int& nDos);
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bool Sign(CKey& keyMasternode, CPubKey& pubKeyMasternode);
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void Relay();
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uint256 GetHash(){
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CHashWriter ss(SER_GETHASH, PROTOCOL_VERSION);
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ss << vin;
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ss << sigTime;
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return ss.GetHash();
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}
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void swap(CMasternodePing& first, CMasternodePing& second) // nothrow
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{
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// enable ADL (not necessary in our case, but good practice)
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using std::swap;
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// by swapping the members of two classes,
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// the two classes are effectively swapped
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swap(first.vin, second.vin);
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swap(first.blockHash, second.blockHash);
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swap(first.sigTime, second.sigTime);
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swap(first.vchSig, second.vchSig);
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}
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CMasternodePing& operator=(CMasternodePing from)
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{
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swap(*this, from);
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return *this;
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}
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friend bool operator==(const CMasternodePing& a, const CMasternodePing& b)
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{
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return a.vin == b.vin && a.blockHash == b.blockHash;
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}
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friend bool operator!=(const CMasternodePing& a, const CMasternodePing& b)
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{
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return !(a == b);
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}
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};
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//
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// The Masternode Class. For managing the Darksend process. It contains the input of the 1000DRK, signature to prove
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// it's the one who own that ip address and code for calculating the payment election.
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//
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class CMasternode
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{
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private:
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// critical section to protect the inner data structures
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mutable CCriticalSection cs;
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public:
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enum state {
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MASTERNODE_ENABLED = 1,
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MASTERNODE_EXPIRED = 2,
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MASTERNODE_VIN_SPENT = 3,
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MASTERNODE_REMOVE = 4,
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MASTERNODE_POS_ERROR = 5
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};
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CTxIn vin;
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CService addr;
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CPubKey pubkey;
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CPubKey pubkey2;
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std::vector<unsigned char> sig;
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int activeState;
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int64_t sigTime; //mnb message time
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int cacheInputAge;
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int cacheInputAgeBlock;
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bool unitTest;
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bool allowFreeTx;
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int protocolVersion;
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int64_t nLastDsq; //the dsq count from the last dsq broadcast of this node
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int nScanningErrorCount;
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int nLastScanningErrorBlockHeight;
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int nVotedTimes;
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CMasternodePing lastPing;
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CMasternode();
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CMasternode(const CMasternode& other);
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CMasternode(const CMasternodeBroadcast& mnb);
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void swap(CMasternode& first, CMasternode& second) // nothrow
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{
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// enable ADL (not necessary in our case, but good practice)
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using std::swap;
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// by swapping the members of two classes,
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// the two classes are effectively swapped
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swap(first.vin, second.vin);
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swap(first.addr, second.addr);
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swap(first.pubkey, second.pubkey);
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swap(first.pubkey2, second.pubkey2);
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swap(first.sig, second.sig);
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swap(first.activeState, second.activeState);
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swap(first.sigTime, second.sigTime);
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swap(first.lastPing, second.lastPing);
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swap(first.cacheInputAge, second.cacheInputAge);
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swap(first.cacheInputAgeBlock, second.cacheInputAgeBlock);
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swap(first.unitTest, second.unitTest);
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swap(first.allowFreeTx, second.allowFreeTx);
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swap(first.protocolVersion, second.protocolVersion);
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swap(first.nLastDsq, second.nLastDsq);
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swap(first.nScanningErrorCount, second.nScanningErrorCount);
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swap(first.nLastScanningErrorBlockHeight, second.nLastScanningErrorBlockHeight);
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swap(first.nVotedTimes, second.nVotedTimes);
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}
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CMasternode& operator=(CMasternode from)
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{
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swap(*this, from);
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return *this;
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}
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friend bool operator==(const CMasternode& a, const CMasternode& b)
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{
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return a.vin == b.vin;
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}
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friend bool operator!=(const CMasternode& a, const CMasternode& b)
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{
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return !(a.vin == b.vin);
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}
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uint256 CalculateScore(int mod=1, int64_t nBlockHeight=0);
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ADD_SERIALIZE_METHODS;
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template <typename Stream, typename Operation>
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inline void SerializationOp(Stream& s, Operation ser_action, int nType, int nVersion) {
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LOCK(cs);
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READWRITE(vin);
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READWRITE(addr);
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READWRITE(pubkey);
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READWRITE(pubkey2);
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READWRITE(sig);
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READWRITE(sigTime);
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READWRITE(protocolVersion);
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READWRITE(activeState);
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READWRITE(lastPing);
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READWRITE(cacheInputAge);
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READWRITE(cacheInputAgeBlock);
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READWRITE(unitTest);
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READWRITE(allowFreeTx);
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READWRITE(nLastDsq);
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READWRITE(nScanningErrorCount);
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READWRITE(nLastScanningErrorBlockHeight);
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READWRITE(nVotedTimes);
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}
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int64_t SecondsSincePayment();
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void UpdateFromNewBroadcast(CMasternodeBroadcast& mnb);
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inline uint64_t SliceHash(uint256& hash, int slice)
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{
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uint64_t n = 0;
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memcpy(&n, &hash+slice*64, 64);
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return n;
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}
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void Check();
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bool IsBroadcastedWithin(int seconds)
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{
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return (GetAdjustedTime() - sigTime) < seconds;
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}
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bool IsPingedWithin(int seconds, int64_t now = -1)
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{
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now == -1 ? now = GetAdjustedTime() : now;
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return (lastPing == CMasternodePing())
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? false
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: now - lastPing.sigTime < seconds;
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}
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void Disable()
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{
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sigTime = 0;
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lastPing = CMasternodePing();
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}
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bool IsEnabled()
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{
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return activeState == MASTERNODE_ENABLED;
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}
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int GetMasternodeInputAge()
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{
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if(chainActive.Tip() == NULL) return 0;
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if(cacheInputAge == 0){
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cacheInputAge = GetInputAge(vin);
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cacheInputAgeBlock = chainActive.Tip()->nHeight;
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}
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return cacheInputAge+(chainActive.Tip()->nHeight-cacheInputAgeBlock);
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}
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std::string Status() {
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std::string strStatus = "ACTIVE";
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if(activeState == CMasternode::MASTERNODE_ENABLED) strStatus = "ENABLED";
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if(activeState == CMasternode::MASTERNODE_EXPIRED) strStatus = "EXPIRED";
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if(activeState == CMasternode::MASTERNODE_VIN_SPENT) strStatus = "VIN_SPENT";
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if(activeState == CMasternode::MASTERNODE_REMOVE) strStatus = "REMOVE";
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if(activeState == CMasternode::MASTERNODE_POS_ERROR) strStatus = "POS_ERROR";
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return strStatus;
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}
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int64_t GetLastPaid();
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};
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//
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// The Masternode Broadcast Class : Contains a different serialize method for sending masternodes through the network
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//
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class CMasternodeBroadcast : public CMasternode
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{
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public:
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CMasternodeBroadcast();
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CMasternodeBroadcast(CService newAddr, CTxIn newVin, CPubKey newPubkey, CPubKey newPubkey2, int protocolVersionIn);
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CMasternodeBroadcast(const CMasternode& mn);
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bool CheckAndUpdate(int& nDoS);
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bool CheckInputsAndAdd(int& nDos);
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bool Sign(CKey& keyCollateralAddress);
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void Relay();
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ADD_SERIALIZE_METHODS;
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template <typename Stream, typename Operation>
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inline void SerializationOp(Stream& s, Operation ser_action, int nType, int nVersion) {
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READWRITE(vin);
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READWRITE(addr);
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READWRITE(pubkey);
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READWRITE(pubkey2);
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READWRITE(sig);
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READWRITE(sigTime);
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READWRITE(protocolVersion);
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READWRITE(lastPing);
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}
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uint256 GetHash(){
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CHashWriter ss(SER_GETHASH, PROTOCOL_VERSION);
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ss << sigTime;
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ss << pubkey;
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return ss.GetHash();
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}
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};
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#endif
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