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#include "walletmodel.h"
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#include "guiconstants.h"
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#include "optionsmodel.h"
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#include "addresstablemodel.h"
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#include "transactiontablemodel.h"
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#include "headers.h"
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#include <QtGlobal>
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#include <QTimer>
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#include <QSet>
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WalletModel::WalletModel(CWallet *wallet, OptionsModel *optionsModel, QObject *parent) :
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QObject(parent), wallet(wallet), optionsModel(optionsModel), addressTableModel(0),
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transactionTableModel(0),
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cachedBalance(0), cachedUnconfirmedBalance(0), cachedNumTransactions(0),
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cachedEncryptionStatus(Unencrypted)
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{
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// Until signal notifications is built into the bitcoin core,
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// simply update everything after polling using a timer.
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QTimer *timer = new QTimer(this);
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connect(timer, SIGNAL(timeout()), this, SLOT(update()));
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timer->start(MODEL_UPDATE_DELAY);
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addressTableModel = new AddressTableModel(wallet, this);
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transactionTableModel = new TransactionTableModel(wallet, this);
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}
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qint64 WalletModel::getBalance() const
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{
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return wallet->GetBalance();
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}
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qint64 WalletModel::getUnconfirmedBalance() const
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{
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return wallet->GetUnconfirmedBalance();
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}
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int WalletModel::getNumTransactions() const
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{
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int numTransactions = 0;
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CRITICAL_BLOCK(wallet->cs_wallet)
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{
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numTransactions = wallet->mapWallet.size();
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}
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return numTransactions;
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}
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void WalletModel::update()
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{
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qint64 newBalance = getBalance();
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qint64 newUnconfirmedBalance = getUnconfirmedBalance();
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int newNumTransactions = getNumTransactions();
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EncryptionStatus newEncryptionStatus = getEncryptionStatus();
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if(cachedBalance != newBalance || cachedUnconfirmedBalance != newUnconfirmedBalance)
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emit balanceChanged(newBalance, newUnconfirmedBalance);
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if(cachedNumTransactions != newNumTransactions)
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emit numTransactionsChanged(newNumTransactions);
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if(cachedEncryptionStatus != newEncryptionStatus)
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emit encryptionStatusChanged(newEncryptionStatus);
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cachedBalance = newBalance;
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cachedUnconfirmedBalance = newUnconfirmedBalance;
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cachedNumTransactions = newNumTransactions;
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addressTableModel->update();
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}
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bool WalletModel::validateAddress(const QString &address)
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{
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CBitcoinAddress addressParsed(address.toStdString());
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return addressParsed.IsValid();
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}
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WalletModel::SendCoinsReturn WalletModel::sendCoins(const QList<SendCoinsRecipient> &recipients)
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{
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qint64 total = 0;
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QSet<QString> setAddress;
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QString hex;
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if(recipients.empty())
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{
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return OK;
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}
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// Pre-check input data for validity
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foreach(const SendCoinsRecipient &rcp, recipients)
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{
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if(!validateAddress(rcp.address))
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{
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return InvalidAddress;
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}
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setAddress.insert(rcp.address);
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if(rcp.amount <= 0)
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{
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return InvalidAmount;
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}
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total += rcp.amount;
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}
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if(recipients.size() > setAddress.size())
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{
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return DuplicateAddress;
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}
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if(total > getBalance())
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{
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return AmountExceedsBalance;
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}
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if((total + nTransactionFee) > getBalance())
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{
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return SendCoinsReturn(AmountWithFeeExceedsBalance, nTransactionFee);
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}
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CRITICAL_BLOCK(cs_main)
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CRITICAL_BLOCK(wallet->cs_wallet)
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{
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// Sendmany
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std::vector<std::pair<CScript, qint64> > vecSend;
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foreach(const SendCoinsRecipient &rcp, recipients)
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{
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CScript scriptPubKey;
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scriptPubKey.SetBitcoinAddress(rcp.address.toStdString());
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vecSend.push_back(make_pair(scriptPubKey, rcp.amount));
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}
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CWalletTx wtx;
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CReserveKey keyChange(wallet);
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qint64 nFeeRequired = 0;
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bool fCreated = wallet->CreateTransaction(vecSend, wtx, keyChange, nFeeRequired);
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if(!fCreated)
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{
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if((total + nFeeRequired) > wallet->GetBalance())
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{
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return SendCoinsReturn(AmountWithFeeExceedsBalance, nFeeRequired);
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}
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return TransactionCreationFailed;
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}
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if(!ThreadSafeAskFee(nFeeRequired, tr("Sending...").toStdString(), NULL))
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{
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return Aborted;
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}
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if(!wallet->CommitTransaction(wtx, keyChange))
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{
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return TransactionCommitFailed;
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}
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hex = QString::fromStdString(wtx.GetHash().GetHex());
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}
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// Add addresses that we've sent to to the address book
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foreach(const SendCoinsRecipient &rcp, recipients)
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{
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std::string strAddress = rcp.address.toStdString();
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CRITICAL_BLOCK(wallet->cs_wallet)
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{
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if (!wallet->mapAddressBook.count(strAddress))
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wallet->SetAddressBookName(strAddress, rcp.label.toStdString());
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}
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}
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// Update our model of the address table
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addressTableModel->updateList();
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return SendCoinsReturn(OK, 0, hex);
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}
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OptionsModel *WalletModel::getOptionsModel()
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{
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return optionsModel;
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}
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AddressTableModel *WalletModel::getAddressTableModel()
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{
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return addressTableModel;
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}
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TransactionTableModel *WalletModel::getTransactionTableModel()
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{
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return transactionTableModel;
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}
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WalletModel::EncryptionStatus WalletModel::getEncryptionStatus() const
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{
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if(!wallet->IsCrypted())
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{
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return Unencrypted;
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}
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else if(wallet->IsLocked())
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{
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return Locked;
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}
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else
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{
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return Unlocked;
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}
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}
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bool WalletModel::setWalletEncrypted(bool encrypted, const SecureString &passphrase)
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{
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if(encrypted)
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{
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// Encrypt
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return wallet->EncryptWallet(passphrase);
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}
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else
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{
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// Decrypt -- TODO; not supported yet
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return false;
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}
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}
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bool WalletModel::setWalletLocked(bool locked, const SecureString &passPhrase)
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{
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if(locked)
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{
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// Lock
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return wallet->Lock();
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}
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else
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{
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// Unlock
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return wallet->Unlock(passPhrase);
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}
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}
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bool WalletModel::changePassphrase(const SecureString &oldPass, const SecureString &newPass)
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{
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bool retval;
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CRITICAL_BLOCK(wallet->cs_wallet)
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{
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wallet->Lock(); // Make sure wallet is locked before attempting pass change
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retval = wallet->ChangeWalletPassphrase(oldPass, newPass);
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}
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return retval;
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}
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// WalletModel::UnlockContext implementation
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WalletModel::UnlockContext WalletModel::requestUnlock()
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{
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bool was_locked = getEncryptionStatus() == Locked;
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if(was_locked)
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{
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// Request UI to unlock wallet
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emit requireUnlock();
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}
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// If wallet is still locked, unlock was failed or cancelled, mark context as invalid
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bool valid = getEncryptionStatus() != Locked;
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return UnlockContext(this, valid, was_locked);
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}
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WalletModel::UnlockContext::UnlockContext(WalletModel *wallet, bool valid, bool relock):
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wallet(wallet),
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valid(valid),
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relock(relock)
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{
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}
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WalletModel::UnlockContext::~UnlockContext()
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{
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if(valid && relock)
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{
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wallet->setWalletLocked(true);
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}
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}
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void WalletModel::UnlockContext::CopyFrom(const UnlockContext& rhs)
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{
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// Transfer context; old object no longer relocks wallet
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*this = rhs;
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rhs.relock = false;
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}
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