ab07866c8d
When a transaction has multiple outputs that go to the wallet, list these as multiple transactions in the UI. This is also applied to generated (coinbase) transactions. Also makes the code shorter and easier to understand.
249 lines
8.2 KiB
C++
249 lines
8.2 KiB
C++
#include "transactionrecord.h"
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#include "headers.h"
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/* Return positive answer if transaction should be shown in list.
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*/
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bool TransactionRecord::showTransaction(const CWalletTx &wtx)
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{
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if (wtx.IsCoinBase())
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{
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// Don't show generated coin until confirmed by at least one block after it
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// so we don't get the user's hopes up until it looks like it's probably accepted.
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//
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// It is not an error when generated blocks are not accepted. By design,
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// some percentage of blocks, like 10% or more, will end up not accepted.
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// This is the normal mechanism by which the network copes with latency.
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//
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// We display regular transactions right away before any confirmation
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// because they can always get into some block eventually. Generated coins
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// are special because if their block is not accepted, they are not valid.
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//
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if (wtx.GetDepthInMainChain() < 2)
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{
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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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/*
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* Decompose CWallet transaction to model transaction records.
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*/
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QList<TransactionRecord> TransactionRecord::decomposeTransaction(const CWallet *wallet, const CWalletTx &wtx)
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{
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QList<TransactionRecord> parts;
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int64 nTime = wtx.nTimeDisplayed = wtx.GetTxTime();
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int64 nCredit = wtx.GetCredit(true);
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int64 nDebit = wtx.GetDebit();
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int64 nNet = nCredit - nDebit;
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uint256 hash = wtx.GetHash();
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std::map<std::string, std::string> mapValue = wtx.mapValue;
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if (showTransaction(wtx))
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{
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if (nNet > 0 || wtx.IsCoinBase())
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{
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//
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// Credit
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//
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BOOST_FOREACH(const CTxOut& txout, wtx.vout)
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{
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if(wallet->IsMine(txout))
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{
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TransactionRecord sub(hash, nTime);
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CBitcoinAddress address;
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sub.idx = parts.size(); // sequence number
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sub.credit = txout.nValue;
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if (wtx.IsCoinBase())
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{
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// Generated
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sub.type = TransactionRecord::Generated;
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}
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else if (ExtractAddress(txout.scriptPubKey, address) && wallet->HaveKey(address))
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{
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// Received by Bitcoin Address
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sub.type = TransactionRecord::RecvWithAddress;
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sub.address = address.ToString();
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}
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else
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{
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// Received by IP connection (deprecated features), or a multisignature or other non-simple transaction
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sub.type = TransactionRecord::RecvFromOther;
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sub.address = mapValue["from"];
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}
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parts.append(sub);
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}
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}
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}
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else
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{
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bool fAllFromMe = true;
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BOOST_FOREACH(const CTxIn& txin, wtx.vin)
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fAllFromMe = fAllFromMe && wallet->IsMine(txin);
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bool fAllToMe = true;
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BOOST_FOREACH(const CTxOut& txout, wtx.vout)
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fAllToMe = fAllToMe && wallet->IsMine(txout);
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if (fAllFromMe && fAllToMe)
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{
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// Payment to self
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int64 nChange = wtx.GetChange();
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parts.append(TransactionRecord(hash, nTime, TransactionRecord::SendToSelf, "",
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-(nDebit - nChange), nCredit - nChange));
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}
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else if (fAllFromMe)
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{
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//
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// Debit
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//
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int64 nTxFee = nDebit - wtx.GetValueOut();
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for (int nOut = 0; nOut < wtx.vout.size(); nOut++)
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{
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const CTxOut& txout = wtx.vout[nOut];
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TransactionRecord sub(hash, nTime);
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sub.idx = parts.size();
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if(wallet->IsMine(txout))
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{
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// Ignore parts sent to self, as this is usually the change
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// from a transaction sent back to our own address.
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continue;
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}
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CBitcoinAddress address;
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if (ExtractAddress(txout.scriptPubKey, address))
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{
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// Sent to Bitcoin Address
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sub.type = TransactionRecord::SendToAddress;
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sub.address = address.ToString();
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}
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else
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{
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// Sent to IP, or other non-address transaction like OP_EVAL
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sub.type = TransactionRecord::SendToOther;
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sub.address = mapValue["to"];
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}
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int64 nValue = txout.nValue;
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/* Add fee to first output */
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if (nTxFee > 0)
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{
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nValue += nTxFee;
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nTxFee = 0;
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}
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sub.debit = -nValue;
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parts.append(sub);
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}
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}
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else
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{
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//
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// Mixed debit transaction, can't break down payees
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//
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bool fAllMine = true;
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BOOST_FOREACH(const CTxOut& txout, wtx.vout)
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fAllMine = fAllMine && wallet->IsMine(txout);
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BOOST_FOREACH(const CTxIn& txin, wtx.vin)
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fAllMine = fAllMine && wallet->IsMine(txin);
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parts.append(TransactionRecord(hash, nTime, TransactionRecord::Other, "", nNet, 0));
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}
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}
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}
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return parts;
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}
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void TransactionRecord::updateStatus(const CWalletTx &wtx)
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{
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// Determine transaction status
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// Find the block the tx is in
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CBlockIndex* pindex = NULL;
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std::map<uint256, CBlockIndex*>::iterator mi = mapBlockIndex.find(wtx.hashBlock);
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if (mi != mapBlockIndex.end())
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pindex = (*mi).second;
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// Sort order, unrecorded transactions sort to the top
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status.sortKey = strprintf("%010d-%01d-%010u-%03d",
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(pindex ? pindex->nHeight : std::numeric_limits<int>::max()),
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(wtx.IsCoinBase() ? 1 : 0),
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wtx.nTimeReceived,
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idx);
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status.confirmed = wtx.IsConfirmed();
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status.depth = wtx.GetDepthInMainChain();
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status.cur_num_blocks = nBestHeight;
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if (!wtx.IsFinal())
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{
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if (wtx.nLockTime < LOCKTIME_THRESHOLD)
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{
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status.status = TransactionStatus::OpenUntilBlock;
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status.open_for = nBestHeight - wtx.nLockTime;
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}
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else
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{
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status.status = TransactionStatus::OpenUntilDate;
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status.open_for = wtx.nLockTime;
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}
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}
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else
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{
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if (GetAdjustedTime() - wtx.nTimeReceived > 2 * 60 && wtx.GetRequestCount() == 0)
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{
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status.status = TransactionStatus::Offline;
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}
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else if (status.depth < NumConfirmations)
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{
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status.status = TransactionStatus::Unconfirmed;
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}
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else
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{
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status.status = TransactionStatus::HaveConfirmations;
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}
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}
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// For generated transactions, determine maturity
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if(type == TransactionRecord::Generated)
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{
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int64 nCredit = wtx.GetCredit(true);
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if (nCredit == 0)
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{
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status.maturity = TransactionStatus::Immature;
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if (wtx.IsInMainChain())
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{
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status.matures_in = wtx.GetBlocksToMaturity();
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// Check if the block was requested by anyone
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if (GetAdjustedTime() - wtx.nTimeReceived > 2 * 60 && wtx.GetRequestCount() == 0)
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status.maturity = TransactionStatus::MaturesWarning;
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}
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else
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{
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status.maturity = TransactionStatus::NotAccepted;
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}
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}
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else
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{
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status.maturity = TransactionStatus::Mature;
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}
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}
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}
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bool TransactionRecord::statusUpdateNeeded()
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{
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return status.cur_num_blocks != nBestHeight;
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}
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std::string TransactionRecord::getTxID()
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{
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return hash.ToString() + strprintf("-%03d", idx);
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}
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