7d0bf0bb46
- allows reducing of calls to main.cpp for getting the chaintip during transaction syncing - potentially allows reducing of cs_main locks
925 lines
29 KiB
C++
925 lines
29 KiB
C++
// Copyright (c) 2009-2010 Satoshi Nakamoto
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// Copyright (c) 2009-2014 The Bitcoin Core developers
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// Distributed under the MIT 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 BITCOIN_WALLET_WALLET_H
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#define BITCOIN_WALLET_WALLET_H
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#include "amount.h"
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#include "streams.h"
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#include "tinyformat.h"
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#include "ui_interface.h"
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#include "utilstrencodings.h"
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#include "validationinterface.h"
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#include "wallet/crypter.h"
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#include "wallet/wallet_ismine.h"
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#include "wallet/walletdb.h"
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#include <algorithm>
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#include <map>
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#include <set>
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#include <stdexcept>
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#include <stdint.h>
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#include <string>
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#include <utility>
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#include <vector>
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#include <boost/shared_ptr.hpp>
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/**
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* Settings
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*/
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extern CFeeRate payTxFee;
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extern CAmount maxTxFee;
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extern unsigned int nTxConfirmTarget;
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extern bool bSpendZeroConfChange;
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extern bool fSendFreeTransactions;
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static const unsigned int DEFAULT_KEYPOOL_SIZE = 100;
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//! -paytxfee default
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static const CAmount DEFAULT_TRANSACTION_FEE = 0;
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//! -paytxfee will warn if called with a higher fee than this amount (in satoshis) per KB
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static const CAmount nHighTransactionFeeWarning = 0.01 * COIN;
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//! -mintxfee default
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static const CAmount DEFAULT_TRANSACTION_MINFEE = 1000;
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//! -maxtxfee default
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static const CAmount DEFAULT_TRANSACTION_MAXFEE = 0.1 * COIN;
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//! minimum change amount
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static const CAmount MIN_CHANGE = CENT;
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//! Default for -spendzeroconfchange
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static const bool DEFAULT_SPEND_ZEROCONF_CHANGE = true;
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//! Default for -sendfreetransactions
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static const bool DEFAULT_SEND_FREE_TRANSACTIONS = false;
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//! -txconfirmtarget default
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static const unsigned int DEFAULT_TX_CONFIRM_TARGET = 2;
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//! -maxtxfee will warn if called with a higher fee than this amount (in satoshis)
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static const CAmount nHighTransactionMaxFeeWarning = 100 * nHighTransactionFeeWarning;
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//! Largest (in bytes) free transaction we're willing to create
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static const unsigned int MAX_FREE_TRANSACTION_CREATE_SIZE = 1000;
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static const bool DEFAULT_WALLETBROADCAST = true;
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class CAccountingEntry;
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class CBlockIndex;
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class CCoinControl;
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class COutput;
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class CReserveKey;
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class CScript;
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class CTxMemPool;
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class CWalletTx;
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/** (client) version numbers for particular wallet features */
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enum WalletFeature
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{
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FEATURE_BASE = 10500, // the earliest version new wallets supports (only useful for getinfo's clientversion output)
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FEATURE_WALLETCRYPT = 40000, // wallet encryption
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FEATURE_COMPRPUBKEY = 60000, // compressed public keys
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FEATURE_LATEST = 60000
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};
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/** A key pool entry */
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class CKeyPool
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{
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public:
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int64_t nTime;
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CPubKey vchPubKey;
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CKeyPool();
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CKeyPool(const CPubKey& vchPubKeyIn);
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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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if (!(nType & SER_GETHASH))
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READWRITE(nVersion);
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READWRITE(nTime);
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READWRITE(vchPubKey);
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}
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};
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/** Address book data */
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class CAddressBookData
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{
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public:
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std::string name;
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std::string purpose;
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CAddressBookData()
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{
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purpose = "unknown";
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}
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typedef std::map<std::string, std::string> StringMap;
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StringMap destdata;
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};
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struct CRecipient
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{
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CScript scriptPubKey;
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CAmount nAmount;
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bool fSubtractFeeFromAmount;
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};
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typedef std::map<std::string, std::string> mapValue_t;
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static void ReadOrderPos(int64_t& nOrderPos, mapValue_t& mapValue)
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{
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if (!mapValue.count("n"))
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{
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nOrderPos = -1; // TODO: calculate elsewhere
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return;
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}
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nOrderPos = atoi64(mapValue["n"].c_str());
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}
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static void WriteOrderPos(const int64_t& nOrderPos, mapValue_t& mapValue)
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{
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if (nOrderPos == -1)
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return;
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mapValue["n"] = i64tostr(nOrderPos);
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}
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struct COutputEntry
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{
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CTxDestination destination;
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CAmount amount;
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int vout;
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};
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/** A transaction with a merkle branch linking it to the block chain. */
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class CMerkleTx : public CTransaction
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{
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public:
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uint256 hashBlock;
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/* An nIndex == -1 means that hashBlock (in nonzero) refers to the earliest
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* block in the chain we know this or any in-wallet dependency conflicts
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* with. Older clients interpret nIndex == -1 as unconfirmed for backward
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* compatibility.
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*/
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int nIndex;
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CMerkleTx()
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{
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Init();
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}
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CMerkleTx(const CTransaction& txIn) : CTransaction(txIn)
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{
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Init();
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}
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void Init()
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{
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hashBlock = uint256();
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nIndex = -1;
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}
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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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std::vector<uint256> vMerkleBranch; // For compatibility with older versions.
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READWRITE(*(CTransaction*)this);
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nVersion = this->nVersion;
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READWRITE(hashBlock);
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READWRITE(vMerkleBranch);
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READWRITE(nIndex);
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}
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int SetMerkleBranch(const CBlock& block);
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/**
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* Return depth of transaction in blockchain:
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* <0 : conflicts with a transaction this deep in the blockchain
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* 0 : in memory pool, waiting to be included in a block
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* >=1 : this many blocks deep in the main chain
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*/
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int GetDepthInMainChain(const CBlockIndex* &pindexRet) const;
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int GetDepthInMainChain() const { const CBlockIndex *pindexRet; return GetDepthInMainChain(pindexRet); }
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bool IsInMainChain() const { const CBlockIndex *pindexRet; return GetDepthInMainChain(pindexRet) > 0; }
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int GetBlocksToMaturity() const;
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bool AcceptToMemoryPool(bool fLimitFree=true, bool fRejectAbsurdFee=true);
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};
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/**
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* A transaction with a bunch of additional info that only the owner cares about.
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* It includes any unrecorded transactions needed to link it back to the block chain.
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*/
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class CWalletTx : public CMerkleTx
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{
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private:
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const CWallet* pwallet;
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public:
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mapValue_t mapValue;
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std::vector<std::pair<std::string, std::string> > vOrderForm;
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unsigned int fTimeReceivedIsTxTime;
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unsigned int nTimeReceived; //! time received by this node
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unsigned int nTimeSmart;
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char fFromMe;
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std::string strFromAccount;
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int64_t nOrderPos; //! position in ordered transaction list
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// memory only
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mutable bool fDebitCached;
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mutable bool fCreditCached;
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mutable bool fImmatureCreditCached;
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mutable bool fAvailableCreditCached;
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mutable bool fWatchDebitCached;
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mutable bool fWatchCreditCached;
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mutable bool fImmatureWatchCreditCached;
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mutable bool fAvailableWatchCreditCached;
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mutable bool fChangeCached;
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mutable CAmount nDebitCached;
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mutable CAmount nCreditCached;
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mutable CAmount nImmatureCreditCached;
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mutable CAmount nAvailableCreditCached;
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mutable CAmount nWatchDebitCached;
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mutable CAmount nWatchCreditCached;
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mutable CAmount nImmatureWatchCreditCached;
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mutable CAmount nAvailableWatchCreditCached;
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mutable CAmount nChangeCached;
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CWalletTx()
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{
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Init(NULL);
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}
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CWalletTx(const CWallet* pwalletIn)
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{
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Init(pwalletIn);
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}
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CWalletTx(const CWallet* pwalletIn, const CMerkleTx& txIn) : CMerkleTx(txIn)
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{
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Init(pwalletIn);
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}
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CWalletTx(const CWallet* pwalletIn, const CTransaction& txIn) : CMerkleTx(txIn)
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{
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Init(pwalletIn);
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}
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void Init(const CWallet* pwalletIn)
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{
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pwallet = pwalletIn;
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mapValue.clear();
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vOrderForm.clear();
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fTimeReceivedIsTxTime = false;
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nTimeReceived = 0;
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nTimeSmart = 0;
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fFromMe = false;
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strFromAccount.clear();
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fDebitCached = false;
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fCreditCached = false;
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fImmatureCreditCached = false;
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fAvailableCreditCached = false;
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fWatchDebitCached = false;
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fWatchCreditCached = false;
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fImmatureWatchCreditCached = false;
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fAvailableWatchCreditCached = false;
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fChangeCached = false;
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nDebitCached = 0;
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nCreditCached = 0;
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nImmatureCreditCached = 0;
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nAvailableCreditCached = 0;
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nWatchDebitCached = 0;
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nWatchCreditCached = 0;
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nAvailableWatchCreditCached = 0;
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nImmatureWatchCreditCached = 0;
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nChangeCached = 0;
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nOrderPos = -1;
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}
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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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if (ser_action.ForRead())
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Init(NULL);
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char fSpent = false;
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if (!ser_action.ForRead())
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{
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mapValue["fromaccount"] = strFromAccount;
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WriteOrderPos(nOrderPos, mapValue);
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if (nTimeSmart)
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mapValue["timesmart"] = strprintf("%u", nTimeSmart);
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}
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READWRITE(*(CMerkleTx*)this);
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std::vector<CMerkleTx> vUnused; //! Used to be vtxPrev
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READWRITE(vUnused);
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READWRITE(mapValue);
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READWRITE(vOrderForm);
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READWRITE(fTimeReceivedIsTxTime);
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READWRITE(nTimeReceived);
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READWRITE(fFromMe);
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READWRITE(fSpent);
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if (ser_action.ForRead())
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{
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strFromAccount = mapValue["fromaccount"];
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ReadOrderPos(nOrderPos, mapValue);
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nTimeSmart = mapValue.count("timesmart") ? (unsigned int)atoi64(mapValue["timesmart"]) : 0;
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}
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mapValue.erase("fromaccount");
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mapValue.erase("version");
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mapValue.erase("spent");
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mapValue.erase("n");
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mapValue.erase("timesmart");
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}
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//! make sure balances are recalculated
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void MarkDirty()
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{
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fCreditCached = false;
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fAvailableCreditCached = false;
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fWatchDebitCached = false;
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fWatchCreditCached = false;
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fAvailableWatchCreditCached = false;
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fImmatureWatchCreditCached = false;
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fDebitCached = false;
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fChangeCached = false;
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}
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void BindWallet(CWallet *pwalletIn)
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{
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pwallet = pwalletIn;
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MarkDirty();
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}
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//! filter decides which addresses will count towards the debit
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CAmount GetDebit(const isminefilter& filter) const;
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CAmount GetCredit(const isminefilter& filter) const;
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CAmount GetImmatureCredit(bool fUseCache=true) const;
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CAmount GetAvailableCredit(bool fUseCache=true) const;
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CAmount GetImmatureWatchOnlyCredit(const bool& fUseCache=true) const;
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CAmount GetAvailableWatchOnlyCredit(const bool& fUseCache=true) const;
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CAmount GetChange() const;
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void GetAmounts(std::list<COutputEntry>& listReceived,
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std::list<COutputEntry>& listSent, CAmount& nFee, std::string& strSentAccount, const isminefilter& filter) const;
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void GetAccountAmounts(const std::string& strAccount, CAmount& nReceived,
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CAmount& nSent, CAmount& nFee, const isminefilter& filter) const;
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bool IsFromMe(const isminefilter& filter) const
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{
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return (GetDebit(filter) > 0);
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}
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// True if only scriptSigs are different
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bool IsEquivalentTo(const CWalletTx& tx) const;
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bool IsTrusted() const;
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bool WriteToDisk(CWalletDB *pwalletdb);
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int64_t GetTxTime() const;
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int GetRequestCount() const;
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bool RelayWalletTransaction();
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std::set<uint256> GetConflicts() const;
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};
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class COutput
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{
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public:
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const CWalletTx *tx;
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int i;
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int nDepth;
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bool fSpendable;
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COutput(const CWalletTx *txIn, int iIn, int nDepthIn, bool fSpendableIn)
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{
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tx = txIn; i = iIn; nDepth = nDepthIn; fSpendable = fSpendableIn;
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}
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std::string ToString() const;
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};
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/** Private key that includes an expiration date in case it never gets used. */
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class CWalletKey
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{
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public:
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CPrivKey vchPrivKey;
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int64_t nTimeCreated;
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int64_t nTimeExpires;
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std::string strComment;
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//! todo: add something to note what created it (user, getnewaddress, change)
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//! maybe should have a map<string, string> property map
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CWalletKey(int64_t nExpires=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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if (!(nType & SER_GETHASH))
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READWRITE(nVersion);
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READWRITE(vchPrivKey);
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READWRITE(nTimeCreated);
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READWRITE(nTimeExpires);
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READWRITE(LIMITED_STRING(strComment, 65536));
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}
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};
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/**
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* A CWallet is an extension of a keystore, which also maintains a set of transactions and balances,
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* and provides the ability to create new transactions.
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*/
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class CWallet : public CCryptoKeyStore, public CValidationInterface
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{
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private:
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/**
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* Select a set of coins such that nValueRet >= nTargetValue and at least
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* all coins from coinControl are selected; Never select unconfirmed coins
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* if they are not ours
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*/
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bool SelectCoins(const CAmount& nTargetValue, std::set<std::pair<const CWalletTx*,unsigned int> >& setCoinsRet, CAmount& nValueRet, const CCoinControl *coinControl = NULL) const;
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CWalletDB *pwalletdbEncryption;
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//! the current wallet version: clients below this version are not able to load the wallet
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int nWalletVersion;
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//! the maximum wallet format version: memory-only variable that specifies to what version this wallet may be upgraded
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int nWalletMaxVersion;
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int64_t nNextResend;
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int64_t nLastResend;
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bool fBroadcastTransactions;
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/**
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* Used to keep track of spent outpoints, and
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* detect and report conflicts (double-spends or
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* mutated transactions where the mutant gets mined).
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*/
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typedef std::multimap<COutPoint, uint256> TxSpends;
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TxSpends mapTxSpends;
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void AddToSpends(const COutPoint& outpoint, const uint256& wtxid);
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void AddToSpends(const uint256& wtxid);
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/* Mark a transaction (and its in-wallet descendants) as conflicting with a particular block. */
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void MarkConflicted(const uint256& hashBlock, const uint256& hashTx);
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void SyncMetaData(std::pair<TxSpends::iterator, TxSpends::iterator>);
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public:
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/*
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* Main wallet lock.
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* This lock protects all the fields added by CWallet
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* except for:
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* fFileBacked (immutable after instantiation)
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* strWalletFile (immutable after instantiation)
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*/
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mutable CCriticalSection cs_wallet;
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bool fFileBacked;
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std::string strWalletFile;
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std::set<int64_t> setKeyPool;
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std::map<CKeyID, CKeyMetadata> mapKeyMetadata;
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typedef std::map<unsigned int, CMasterKey> MasterKeyMap;
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MasterKeyMap mapMasterKeys;
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unsigned int nMasterKeyMaxID;
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CWallet()
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{
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SetNull();
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}
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CWallet(const std::string& strWalletFileIn)
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{
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SetNull();
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strWalletFile = strWalletFileIn;
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fFileBacked = true;
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}
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~CWallet()
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{
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delete pwalletdbEncryption;
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pwalletdbEncryption = NULL;
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}
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void SetNull()
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{
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nWalletVersion = FEATURE_BASE;
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nWalletMaxVersion = FEATURE_BASE;
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fFileBacked = false;
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nMasterKeyMaxID = 0;
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pwalletdbEncryption = NULL;
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nOrderPosNext = 0;
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nNextResend = 0;
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nLastResend = 0;
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nTimeFirstKey = 0;
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fBroadcastTransactions = false;
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}
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std::map<uint256, CWalletTx> mapWallet;
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std::list<CAccountingEntry> laccentries;
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typedef std::pair<CWalletTx*, CAccountingEntry*> TxPair;
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typedef std::multimap<int64_t, TxPair > TxItems;
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TxItems wtxOrdered;
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int64_t nOrderPosNext;
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std::map<uint256, int> mapRequestCount;
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std::map<CTxDestination, CAddressBookData> mapAddressBook;
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CPubKey vchDefaultKey;
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std::set<COutPoint> setLockedCoins;
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int64_t nTimeFirstKey;
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const CWalletTx* GetWalletTx(const uint256& hash) const;
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//! check whether we are allowed to upgrade (or already support) to the named feature
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bool CanSupportFeature(enum WalletFeature wf) { AssertLockHeld(cs_wallet); return nWalletMaxVersion >= wf; }
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/**
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* populate vCoins with vector of available COutputs.
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*/
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void AvailableCoins(std::vector<COutput>& vCoins, bool fOnlyConfirmed=true, const CCoinControl *coinControl = NULL, bool fIncludeZeroValue=false) const;
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/**
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* Shuffle and select coins until nTargetValue is reached while avoiding
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* small change; This method is stochastic for some inputs and upon
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* completion the coin set and corresponding actual target value is
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* assembled
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*/
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bool SelectCoinsMinConf(const CAmount& nTargetValue, int nConfMine, int nConfTheirs, std::vector<COutput> vCoins, std::set<std::pair<const CWalletTx*,unsigned int> >& setCoinsRet, CAmount& nValueRet) const;
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bool IsSpent(const uint256& hash, unsigned int n) const;
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bool IsLockedCoin(uint256 hash, unsigned int n) const;
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void LockCoin(COutPoint& output);
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void UnlockCoin(COutPoint& output);
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void UnlockAllCoins();
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void ListLockedCoins(std::vector<COutPoint>& vOutpts);
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/**
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* keystore implementation
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* Generate a new key
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*/
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CPubKey GenerateNewKey();
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//! Adds a key to the store, and saves it to disk.
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bool AddKeyPubKey(const CKey& key, const CPubKey &pubkey);
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//! Adds a key to the store, without saving it to disk (used by LoadWallet)
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bool LoadKey(const CKey& key, const CPubKey &pubkey) { return CCryptoKeyStore::AddKeyPubKey(key, pubkey); }
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//! Load metadata (used by LoadWallet)
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bool LoadKeyMetadata(const CPubKey &pubkey, const CKeyMetadata &metadata);
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bool LoadMinVersion(int nVersion) { AssertLockHeld(cs_wallet); nWalletVersion = nVersion; nWalletMaxVersion = std::max(nWalletMaxVersion, nVersion); return true; }
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//! Adds an encrypted key to the store, and saves it to disk.
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bool AddCryptedKey(const CPubKey &vchPubKey, const std::vector<unsigned char> &vchCryptedSecret);
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//! Adds an encrypted key to the store, without saving it to disk (used by LoadWallet)
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bool LoadCryptedKey(const CPubKey &vchPubKey, const std::vector<unsigned char> &vchCryptedSecret);
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bool AddCScript(const CScript& redeemScript);
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bool LoadCScript(const CScript& redeemScript);
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//! Adds a destination data tuple to the store, and saves it to disk
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bool AddDestData(const CTxDestination &dest, const std::string &key, const std::string &value);
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//! Erases a destination data tuple in the store and on disk
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bool EraseDestData(const CTxDestination &dest, const std::string &key);
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//! Adds a destination data tuple to the store, without saving it to disk
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bool LoadDestData(const CTxDestination &dest, const std::string &key, const std::string &value);
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//! Look up a destination data tuple in the store, return true if found false otherwise
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bool GetDestData(const CTxDestination &dest, const std::string &key, std::string *value) const;
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//! Adds a watch-only address to the store, and saves it to disk.
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bool AddWatchOnly(const CScript &dest);
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bool RemoveWatchOnly(const CScript &dest);
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//! Adds a watch-only address to the store, without saving it to disk (used by LoadWallet)
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bool LoadWatchOnly(const CScript &dest);
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bool Unlock(const SecureString& strWalletPassphrase);
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bool ChangeWalletPassphrase(const SecureString& strOldWalletPassphrase, const SecureString& strNewWalletPassphrase);
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bool EncryptWallet(const SecureString& strWalletPassphrase);
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void GetKeyBirthTimes(std::map<CKeyID, int64_t> &mapKeyBirth) const;
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/**
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* Increment the next transaction order id
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* @return next transaction order id
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*/
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int64_t IncOrderPosNext(CWalletDB *pwalletdb = NULL);
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void MarkDirty();
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bool AddToWallet(const CWalletTx& wtxIn, bool fFromLoadWallet, CWalletDB* pwalletdb);
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void SyncTransaction(const CTransaction& tx, const CBlockIndex *pindex, const CBlock* pblock);
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bool AddToWalletIfInvolvingMe(const CTransaction& tx, const CBlock* pblock, bool fUpdate);
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int ScanForWalletTransactions(CBlockIndex* pindexStart, bool fUpdate = false);
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void ReacceptWalletTransactions();
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void ResendWalletTransactions(int64_t nBestBlockTime);
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std::vector<uint256> ResendWalletTransactionsBefore(int64_t nTime);
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CAmount GetBalance() const;
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CAmount GetUnconfirmedBalance() const;
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CAmount GetImmatureBalance() const;
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CAmount GetWatchOnlyBalance() const;
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CAmount GetUnconfirmedWatchOnlyBalance() const;
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CAmount GetImmatureWatchOnlyBalance() const;
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/**
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* Insert additional inputs into the transaction by
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* calling CreateTransaction();
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*/
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bool FundTransaction(CMutableTransaction& tx, CAmount& nFeeRet, int& nChangePosRet, std::string& strFailReason, bool includeWatching);
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/**
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* Create a new transaction paying the recipients with a set of coins
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* selected by SelectCoins(); Also create the change output, when needed
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*/
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bool CreateTransaction(const std::vector<CRecipient>& vecSend, CWalletTx& wtxNew, CReserveKey& reservekey, CAmount& nFeeRet, int& nChangePosRet,
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std::string& strFailReason, const CCoinControl *coinControl = NULL, bool sign = true);
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bool CommitTransaction(CWalletTx& wtxNew, CReserveKey& reservekey);
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bool AddAccountingEntry(const CAccountingEntry&, CWalletDB & pwalletdb);
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static CFeeRate minTxFee;
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/**
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* Estimate the minimum fee considering user set parameters
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* and the required fee
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*/
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static CAmount GetMinimumFee(unsigned int nTxBytes, unsigned int nConfirmTarget, const CTxMemPool& pool);
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/**
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* Return the minimum required fee taking into account the
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* floating relay fee and user set minimum transaction fee
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*/
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static CAmount GetRequiredFee(unsigned int nTxBytes);
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bool NewKeyPool();
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bool TopUpKeyPool(unsigned int kpSize = 0);
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void ReserveKeyFromKeyPool(int64_t& nIndex, CKeyPool& keypool);
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void KeepKey(int64_t nIndex);
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void ReturnKey(int64_t nIndex);
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bool GetKeyFromPool(CPubKey &key);
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int64_t GetOldestKeyPoolTime();
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void GetAllReserveKeys(std::set<CKeyID>& setAddress) const;
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std::set< std::set<CTxDestination> > GetAddressGroupings();
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std::map<CTxDestination, CAmount> GetAddressBalances();
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std::set<CTxDestination> GetAccountAddresses(const std::string& strAccount) const;
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isminetype IsMine(const CTxIn& txin) const;
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CAmount GetDebit(const CTxIn& txin, const isminefilter& filter) const;
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isminetype IsMine(const CTxOut& txout) const;
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CAmount GetCredit(const CTxOut& txout, const isminefilter& filter) const;
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bool IsChange(const CTxOut& txout) const;
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CAmount GetChange(const CTxOut& txout) const;
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bool IsMine(const CTransaction& tx) const;
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/** should probably be renamed to IsRelevantToMe */
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bool IsFromMe(const CTransaction& tx) const;
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CAmount GetDebit(const CTransaction& tx, const isminefilter& filter) const;
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CAmount GetCredit(const CTransaction& tx, const isminefilter& filter) const;
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CAmount GetChange(const CTransaction& tx) const;
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void SetBestChain(const CBlockLocator& loc);
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DBErrors LoadWallet(bool& fFirstRunRet);
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DBErrors ZapWalletTx(std::vector<CWalletTx>& vWtx);
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bool SetAddressBook(const CTxDestination& address, const std::string& strName, const std::string& purpose);
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bool DelAddressBook(const CTxDestination& address);
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void UpdatedTransaction(const uint256 &hashTx);
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void Inventory(const uint256 &hash)
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{
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{
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LOCK(cs_wallet);
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std::map<uint256, int>::iterator mi = mapRequestCount.find(hash);
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if (mi != mapRequestCount.end())
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(*mi).second++;
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}
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}
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void GetScriptForMining(boost::shared_ptr<CReserveScript> &script);
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void ResetRequestCount(const uint256 &hash)
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{
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LOCK(cs_wallet);
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mapRequestCount[hash] = 0;
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};
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unsigned int GetKeyPoolSize()
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{
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AssertLockHeld(cs_wallet); // setKeyPool
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return setKeyPool.size();
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}
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bool SetDefaultKey(const CPubKey &vchPubKey);
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//! signify that a particular wallet feature is now used. this may change nWalletVersion and nWalletMaxVersion if those are lower
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bool SetMinVersion(enum WalletFeature, CWalletDB* pwalletdbIn = NULL, bool fExplicit = false);
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//! change which version we're allowed to upgrade to (note that this does not immediately imply upgrading to that format)
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bool SetMaxVersion(int nVersion);
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//! get the current wallet format (the oldest client version guaranteed to understand this wallet)
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int GetVersion() { LOCK(cs_wallet); return nWalletVersion; }
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//! Get wallet transactions that conflict with given transaction (spend same outputs)
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std::set<uint256> GetConflicts(const uint256& txid) const;
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//! Flush wallet (bitdb flush)
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void Flush(bool shutdown=false);
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//! Verify the wallet database and perform salvage if required
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static bool Verify(const std::string& walletFile, std::string& warningString, std::string& errorString);
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/**
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* Address book entry changed.
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* @note called with lock cs_wallet held.
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*/
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boost::signals2::signal<void (CWallet *wallet, const CTxDestination
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&address, const std::string &label, bool isMine,
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const std::string &purpose,
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ChangeType status)> NotifyAddressBookChanged;
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/**
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* Wallet transaction added, removed or updated.
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* @note called with lock cs_wallet held.
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*/
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boost::signals2::signal<void (CWallet *wallet, const uint256 &hashTx,
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ChangeType status)> NotifyTransactionChanged;
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/** Show progress e.g. for rescan */
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boost::signals2::signal<void (const std::string &title, int nProgress)> ShowProgress;
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/** Watch-only address added */
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boost::signals2::signal<void (bool fHaveWatchOnly)> NotifyWatchonlyChanged;
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/** Inquire whether this wallet broadcasts transactions. */
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bool GetBroadcastTransactions() const { return fBroadcastTransactions; }
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/** Set whether this wallet broadcasts transactions. */
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void SetBroadcastTransactions(bool broadcast) { fBroadcastTransactions = broadcast; }
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};
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/** A key allocated from the key pool. */
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class CReserveKey : public CReserveScript
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{
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protected:
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CWallet* pwallet;
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int64_t nIndex;
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CPubKey vchPubKey;
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public:
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CReserveKey(CWallet* pwalletIn)
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{
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nIndex = -1;
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pwallet = pwalletIn;
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}
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~CReserveKey()
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{
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ReturnKey();
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}
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void ReturnKey();
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bool GetReservedKey(CPubKey &pubkey);
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void KeepKey();
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void KeepScript() { KeepKey(); }
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};
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/**
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* Account information.
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* Stored in wallet with key "acc"+string account name.
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*/
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class CAccount
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{
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public:
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CPubKey vchPubKey;
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CAccount()
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{
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SetNull();
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}
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void SetNull()
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{
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vchPubKey = CPubKey();
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}
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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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if (!(nType & SER_GETHASH))
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READWRITE(nVersion);
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READWRITE(vchPubKey);
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}
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};
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/**
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* Internal transfers.
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* Database key is acentry<account><counter>.
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*/
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class CAccountingEntry
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{
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public:
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std::string strAccount;
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CAmount nCreditDebit;
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int64_t nTime;
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std::string strOtherAccount;
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std::string strComment;
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mapValue_t mapValue;
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int64_t nOrderPos; //! position in ordered transaction list
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uint64_t nEntryNo;
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CAccountingEntry()
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{
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SetNull();
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}
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void SetNull()
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{
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nCreditDebit = 0;
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nTime = 0;
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strAccount.clear();
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strOtherAccount.clear();
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strComment.clear();
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nOrderPos = -1;
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nEntryNo = 0;
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}
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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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if (!(nType & SER_GETHASH))
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READWRITE(nVersion);
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//! Note: strAccount is serialized as part of the key, not here.
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READWRITE(nCreditDebit);
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READWRITE(nTime);
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READWRITE(LIMITED_STRING(strOtherAccount, 65536));
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if (!ser_action.ForRead())
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{
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WriteOrderPos(nOrderPos, mapValue);
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if (!(mapValue.empty() && _ssExtra.empty()))
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{
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CDataStream ss(nType, nVersion);
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ss.insert(ss.begin(), '\0');
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ss << mapValue;
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ss.insert(ss.end(), _ssExtra.begin(), _ssExtra.end());
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strComment.append(ss.str());
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}
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}
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READWRITE(LIMITED_STRING(strComment, 65536));
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size_t nSepPos = strComment.find("\0", 0, 1);
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if (ser_action.ForRead())
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{
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mapValue.clear();
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if (std::string::npos != nSepPos)
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{
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CDataStream ss(std::vector<char>(strComment.begin() + nSepPos + 1, strComment.end()), nType, nVersion);
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ss >> mapValue;
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_ssExtra = std::vector<char>(ss.begin(), ss.end());
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}
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ReadOrderPos(nOrderPos, mapValue);
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}
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if (std::string::npos != nSepPos)
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strComment.erase(nSepPos);
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mapValue.erase("n");
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}
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private:
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std::vector<char> _ssExtra;
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};
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#endif // BITCOIN_WALLET_WALLET_H
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