]> Git Repo - VerusCoin.git/blame - src/wallet.cpp
Merge pull request #636 from gavinandresen/master
[VerusCoin.git] / src / wallet.cpp
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1// Copyright (c) 2009-2010 Satoshi Nakamoto
2// Copyright (c) 2011 The Bitcoin developers
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3// Distributed under the MIT/X11 software license, see the accompanying
4// file license.txt or http://www.opensource.org/licenses/mit-license.php.
5
6#include "headers.h"
7#include "db.h"
4e87d341 8#include "crypter.h"
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9
10using namespace std;
11
12
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13//////////////////////////////////////////////////////////////////////////////
14//
15// mapWallet
16//
17
18bool CWallet::AddKey(const CKey& key)
19{
4e87d341 20 if (!CCryptoKeyStore::AddKey(key))
acd65016 21 return false;
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22 if (!fFileBacked)
23 return true;
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24 if (!IsCrypted())
25 return CWalletDB(strWalletFile).WriteKey(key.GetPubKey(), key.GetPrivKey());
84c3c2eb 26 return true;
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27}
28
29bool CWallet::AddCryptedKey(const vector<unsigned char> &vchPubKey, const vector<unsigned char> &vchCryptedSecret)
30{
31 if (!CCryptoKeyStore::AddCryptedKey(vchPubKey, vchCryptedSecret))
32 return false;
33 if (!fFileBacked)
34 return true;
6cc4a62c 35 CRITICAL_BLOCK(cs_wallet)
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36 {
37 if (pwalletdbEncryption)
38 return pwalletdbEncryption->WriteCryptedKey(vchPubKey, vchCryptedSecret);
39 else
40 return CWalletDB(strWalletFile).WriteCryptedKey(vchPubKey, vchCryptedSecret);
41 }
0767e691 42 return false;
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43}
44
45bool CWallet::Unlock(const string& strWalletPassphrase)
46{
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47 if (!IsLocked())
48 return false;
4e87d341 49
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50 CCrypter crypter;
51 CKeyingMaterial vMasterKey;
4e87d341 52
6cc4a62c 53 CRITICAL_BLOCK(cs_wallet)
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54 BOOST_FOREACH(const MasterKeyMap::value_type& pMasterKey, mapMasterKeys)
55 {
56 if(!crypter.SetKeyFromPassphrase(strWalletPassphrase, pMasterKey.second.vchSalt, pMasterKey.second.nDeriveIterations, pMasterKey.second.nDerivationMethod))
57 return false;
58 if (!crypter.Decrypt(pMasterKey.second.vchCryptedKey, vMasterKey))
59 return false;
60 if (CCryptoKeyStore::Unlock(vMasterKey))
61 return true;
62 }
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63 return false;
64}
65
66bool CWallet::ChangeWalletPassphrase(const string& strOldWalletPassphrase, const string& strNewWalletPassphrase)
67{
6cc4a62c 68 bool fWasLocked = IsLocked();
4e87d341 69
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70 CRITICAL_BLOCK(cs_wallet)
71 {
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72 Lock();
73
74 CCrypter crypter;
75 CKeyingMaterial vMasterKey;
76 BOOST_FOREACH(MasterKeyMap::value_type& pMasterKey, mapMasterKeys)
77 {
78 if(!crypter.SetKeyFromPassphrase(strOldWalletPassphrase, pMasterKey.second.vchSalt, pMasterKey.second.nDeriveIterations, pMasterKey.second.nDerivationMethod))
79 return false;
6cc4a62c 80 if (!crypter.Decrypt(pMasterKey.second.vchCryptedKey, vMasterKey))
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81 return false;
82 if (CCryptoKeyStore::Unlock(vMasterKey))
83 {
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84 int64 nStartTime = GetTimeMillis();
85 crypter.SetKeyFromPassphrase(strNewWalletPassphrase, pMasterKey.second.vchSalt, pMasterKey.second.nDeriveIterations, pMasterKey.second.nDerivationMethod);
86 pMasterKey.second.nDeriveIterations = pMasterKey.second.nDeriveIterations * (100 / ((double)(GetTimeMillis() - nStartTime)));
87
88 nStartTime = GetTimeMillis();
89 crypter.SetKeyFromPassphrase(strNewWalletPassphrase, pMasterKey.second.vchSalt, pMasterKey.second.nDeriveIterations, pMasterKey.second.nDerivationMethod);
90 pMasterKey.second.nDeriveIterations = (pMasterKey.second.nDeriveIterations + pMasterKey.second.nDeriveIterations * 100 / ((double)(GetTimeMillis() - nStartTime))) / 2;
91
92 if (pMasterKey.second.nDeriveIterations < 25000)
93 pMasterKey.second.nDeriveIterations = 25000;
94
95 printf("Wallet passphrase changed to an nDeriveIterations of %i\n", pMasterKey.second.nDeriveIterations);
96
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97 if (!crypter.SetKeyFromPassphrase(strNewWalletPassphrase, pMasterKey.second.vchSalt, pMasterKey.second.nDeriveIterations, pMasterKey.second.nDerivationMethod))
98 return false;
99 if (!crypter.Encrypt(vMasterKey, pMasterKey.second.vchCryptedKey))
100 return false;
101 CWalletDB(strWalletFile).WriteMasterKey(pMasterKey.first, pMasterKey.second);
102 if (fWasLocked)
103 Lock();
104 return true;
105 }
106 }
107 }
6cc4a62c 108
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109 return false;
110}
111
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112
113// This class implements an addrIncoming entry that causes pre-0.4
114// clients to crash on startup if reading a private-key-encrypted wallet.
115class CCorruptAddress
116{
117public:
118 IMPLEMENT_SERIALIZE
119 (
120 if (nType & SER_DISK)
121 READWRITE(nVersion);
122 )
123};
124
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125bool CWallet::EncryptWallet(const string& strWalletPassphrase)
126{
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127 if (IsCrypted())
128 return false;
4e87d341 129
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130 CKeyingMaterial vMasterKey;
131 RandAddSeedPerfmon();
4e87d341 132
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133 vMasterKey.resize(WALLET_CRYPTO_KEY_SIZE);
134 RAND_bytes(&vMasterKey[0], WALLET_CRYPTO_KEY_SIZE);
4e87d341 135
6cc4a62c 136 CMasterKey kMasterKey;
4e87d341 137
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138 RandAddSeedPerfmon();
139 kMasterKey.vchSalt.resize(WALLET_CRYPTO_SALT_SIZE);
140 RAND_bytes(&kMasterKey.vchSalt[0], WALLET_CRYPTO_SALT_SIZE);
4e87d341 141
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142 CCrypter crypter;
143 int64 nStartTime = GetTimeMillis();
144 crypter.SetKeyFromPassphrase(strWalletPassphrase, kMasterKey.vchSalt, 25000, kMasterKey.nDerivationMethod);
145 kMasterKey.nDeriveIterations = 2500000 / ((double)(GetTimeMillis() - nStartTime));
ddebdd9a 146
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147 nStartTime = GetTimeMillis();
148 crypter.SetKeyFromPassphrase(strWalletPassphrase, kMasterKey.vchSalt, kMasterKey.nDeriveIterations, kMasterKey.nDerivationMethod);
149 kMasterKey.nDeriveIterations = (kMasterKey.nDeriveIterations + kMasterKey.nDeriveIterations * 100 / ((double)(GetTimeMillis() - nStartTime))) / 2;
ddebdd9a 150
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151 if (kMasterKey.nDeriveIterations < 25000)
152 kMasterKey.nDeriveIterations = 25000;
ddebdd9a 153
6cc4a62c 154 printf("Encrypting Wallet with an nDeriveIterations of %i\n", kMasterKey.nDeriveIterations);
ddebdd9a 155
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156 if (!crypter.SetKeyFromPassphrase(strWalletPassphrase, kMasterKey.vchSalt, kMasterKey.nDeriveIterations, kMasterKey.nDerivationMethod))
157 return false;
158 if (!crypter.Encrypt(vMasterKey, kMasterKey.vchCryptedKey))
159 return false;
4e87d341 160
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161 CRITICAL_BLOCK(cs_wallet)
162 {
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163 mapMasterKeys[++nMasterKeyMaxID] = kMasterKey;
164 if (fFileBacked)
165 {
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166 pwalletdbEncryption = new CWalletDB(strWalletFile);
167 pwalletdbEncryption->TxnBegin();
168 pwalletdbEncryption->WriteMasterKey(nMasterKeyMaxID, kMasterKey);
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169 }
170
171 if (!EncryptKeys(vMasterKey))
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172 {
173 if (fFileBacked)
174 pwalletdbEncryption->TxnAbort();
175 exit(1); //We now probably have half of our keys encrypted in memory, and half not...die and let the user reload their unencrypted wallet.
176 }
177
178 if (fFileBacked)
179 {
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180 CCorruptAddress corruptAddress;
181 pwalletdbEncryption->WriteSetting("addrIncoming", corruptAddress);
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182 if (!pwalletdbEncryption->TxnCommit())
183 exit(1); //We now have keys encrypted in memory, but no on disk...die to avoid confusion and let the user reload their unencrypted wallet.
184
185 pwalletdbEncryption->Close();
186 pwalletdbEncryption = NULL;
187 }
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188
189 Lock();
6cc4a62c 190
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191 // Need to completely rewrite the wallet file; if we don't, bdb might keep
192 // bits of the unencrypted private key in slack space in the database file.
193 setKeyPool.clear();
194 CDB::Rewrite(strWalletFile, "\x04pool");
195 }
9e9869d0 196
4e87d341 197 return true;
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198}
199
200void CWallet::WalletUpdateSpent(const CTransaction &tx)
201{
202 // Anytime a signature is successfully verified, it's proof the outpoint is spent.
203 // Update the wallet spent flag if it doesn't know due to wallet.dat being
204 // restored from backup or the user making copies of wallet.dat.
6cc4a62c 205 CRITICAL_BLOCK(cs_wallet)
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206 {
207 BOOST_FOREACH(const CTxIn& txin, tx.vin)
208 {
209 map<uint256, CWalletTx>::iterator mi = mapWallet.find(txin.prevout.hash);
210 if (mi != mapWallet.end())
211 {
212 CWalletTx& wtx = (*mi).second;
213 if (!wtx.IsSpent(txin.prevout.n) && IsMine(wtx.vout[txin.prevout.n]))
214 {
215 printf("WalletUpdateSpent found spent coin %sbc %s\n", FormatMoney(wtx.GetCredit()).c_str(), wtx.GetHash().ToString().c_str());
216 wtx.MarkSpent(txin.prevout.n);
217 wtx.WriteToDisk();
218 vWalletUpdated.push_back(txin.prevout.hash);
219 }
220 }
221 }
222 }
223}
224
225bool CWallet::AddToWallet(const CWalletTx& wtxIn)
226{
227 uint256 hash = wtxIn.GetHash();
6cc4a62c 228 CRITICAL_BLOCK(cs_wallet)
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229 {
230 // Inserts only if not already there, returns tx inserted or tx found
231 pair<map<uint256, CWalletTx>::iterator, bool> ret = mapWallet.insert(make_pair(hash, wtxIn));
232 CWalletTx& wtx = (*ret.first).second;
233 wtx.pwallet = this;
234 bool fInsertedNew = ret.second;
235 if (fInsertedNew)
236 wtx.nTimeReceived = GetAdjustedTime();
237
238 bool fUpdated = false;
239 if (!fInsertedNew)
240 {
241 // Merge
242 if (wtxIn.hashBlock != 0 && wtxIn.hashBlock != wtx.hashBlock)
243 {
244 wtx.hashBlock = wtxIn.hashBlock;
245 fUpdated = true;
246 }
247 if (wtxIn.nIndex != -1 && (wtxIn.vMerkleBranch != wtx.vMerkleBranch || wtxIn.nIndex != wtx.nIndex))
248 {
249 wtx.vMerkleBranch = wtxIn.vMerkleBranch;
250 wtx.nIndex = wtxIn.nIndex;
251 fUpdated = true;
252 }
253 if (wtxIn.fFromMe && wtxIn.fFromMe != wtx.fFromMe)
254 {
255 wtx.fFromMe = wtxIn.fFromMe;
256 fUpdated = true;
257 }
258 fUpdated |= wtx.UpdateSpent(wtxIn.vfSpent);
259 }
260
261 //// debug print
262 printf("AddToWallet %s %s%s\n", wtxIn.GetHash().ToString().substr(0,10).c_str(), (fInsertedNew ? "new" : ""), (fUpdated ? "update" : ""));
263
264 // Write to disk
265 if (fInsertedNew || fUpdated)
266 if (!wtx.WriteToDisk())
267 return false;
b8f174a5 268#ifndef QT_GUI
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269 // If default receiving address gets used, replace it with a new one
270 CScript scriptDefaultKey;
271 scriptDefaultKey.SetBitcoinAddress(vchDefaultKey);
272 BOOST_FOREACH(const CTxOut& txout, wtx.vout)
273 {
274 if (txout.scriptPubKey == scriptDefaultKey)
d5115a71 275 {
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276 std::vector<unsigned char> newDefaultKey;
277 if (GetKeyFromPool(newDefaultKey, false))
278 {
279 SetDefaultKey(newDefaultKey);
280 SetAddressBookName(CBitcoinAddress(vchDefaultKey), "");
281 }
d5115a71 282 }
e8ef3da7 283 }
b8f174a5 284#endif
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285 // Notify UI
286 vWalletUpdated.push_back(hash);
287
288 // since AddToWallet is called directly for self-originating transactions, check for consumption of own coins
289 WalletUpdateSpent(wtx);
290 }
291
292 // Refresh UI
293 MainFrameRepaint();
294 return true;
295}
296
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297// Add a transaction to the wallet, or update it.
298// pblock is optional, but should be provided if the transaction is known to be in a block.
299// If fUpdate is true, existing transactions will be updated.
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300bool CWallet::AddToWalletIfInvolvingMe(const CTransaction& tx, const CBlock* pblock, bool fUpdate)
301{
302 uint256 hash = tx.GetHash();
6cc4a62c 303 CRITICAL_BLOCK(cs_wallet)
e8ef3da7 304 {
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305 bool fExisted = mapWallet.count(hash);
306 if (fExisted && !fUpdate) return false;
307 if (fExisted || IsMine(tx) || IsFromMe(tx))
308 {
309 CWalletTx wtx(this,tx);
310 // Get merkle branch if transaction was found in a block
311 if (pblock)
312 wtx.SetMerkleBranch(pblock);
313 return AddToWallet(wtx);
314 }
315 else
316 WalletUpdateSpent(tx);
e8ef3da7 317 }
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318 return false;
319}
320
321bool CWallet::EraseFromWallet(uint256 hash)
322{
323 if (!fFileBacked)
324 return false;
6cc4a62c 325 CRITICAL_BLOCK(cs_wallet)
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326 {
327 if (mapWallet.erase(hash))
328 CWalletDB(strWalletFile).EraseTx(hash);
329 }
330 return true;
331}
332
333
334bool CWallet::IsMine(const CTxIn &txin) const
335{
6cc4a62c 336 CRITICAL_BLOCK(cs_wallet)
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337 {
338 map<uint256, CWalletTx>::const_iterator mi = mapWallet.find(txin.prevout.hash);
339 if (mi != mapWallet.end())
340 {
341 const CWalletTx& prev = (*mi).second;
342 if (txin.prevout.n < prev.vout.size())
343 if (IsMine(prev.vout[txin.prevout.n]))
344 return true;
345 }
346 }
347 return false;
348}
349
350int64 CWallet::GetDebit(const CTxIn &txin) const
351{
6cc4a62c 352 CRITICAL_BLOCK(cs_wallet)
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353 {
354 map<uint256, CWalletTx>::const_iterator mi = mapWallet.find(txin.prevout.hash);
355 if (mi != mapWallet.end())
356 {
357 const CWalletTx& prev = (*mi).second;
358 if (txin.prevout.n < prev.vout.size())
359 if (IsMine(prev.vout[txin.prevout.n]))
360 return prev.vout[txin.prevout.n].nValue;
361 }
362 }
363 return 0;
364}
365
366int64 CWalletTx::GetTxTime() const
367{
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368 return nTimeReceived;
369}
370
371int CWalletTx::GetRequestCount() const
372{
373 // Returns -1 if it wasn't being tracked
374 int nRequests = -1;
6cc4a62c 375 CRITICAL_BLOCK(pwallet->cs_wallet)
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376 {
377 if (IsCoinBase())
378 {
379 // Generated block
380 if (hashBlock != 0)
381 {
382 map<uint256, int>::const_iterator mi = pwallet->mapRequestCount.find(hashBlock);
383 if (mi != pwallet->mapRequestCount.end())
384 nRequests = (*mi).second;
385 }
386 }
387 else
388 {
389 // Did anyone request this transaction?
390 map<uint256, int>::const_iterator mi = pwallet->mapRequestCount.find(GetHash());
391 if (mi != pwallet->mapRequestCount.end())
392 {
393 nRequests = (*mi).second;
394
395 // How about the block it's in?
396 if (nRequests == 0 && hashBlock != 0)
397 {
398 map<uint256, int>::const_iterator mi = pwallet->mapRequestCount.find(hashBlock);
399 if (mi != pwallet->mapRequestCount.end())
400 nRequests = (*mi).second;
401 else
402 nRequests = 1; // If it's in someone else's block it must have got out
403 }
404 }
405 }
406 }
407 return nRequests;
408}
409
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410void CWalletTx::GetAmounts(int64& nGeneratedImmature, int64& nGeneratedMature, list<pair<CBitcoinAddress, int64> >& listReceived,
411 list<pair<CBitcoinAddress, int64> >& listSent, int64& nFee, string& strSentAccount) const
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412{
413 nGeneratedImmature = nGeneratedMature = nFee = 0;
414 listReceived.clear();
415 listSent.clear();
416 strSentAccount = strFromAccount;
417
418 if (IsCoinBase())
419 {
420 if (GetBlocksToMaturity() > 0)
421 nGeneratedImmature = pwallet->GetCredit(*this);
422 else
423 nGeneratedMature = GetCredit();
424 return;
425 }
426
427 // Compute fee:
428 int64 nDebit = GetDebit();
429 if (nDebit > 0) // debit>0 means we signed/sent this transaction
430 {
431 int64 nValueOut = GetValueOut();
432 nFee = nDebit - nValueOut;
433 }
434
435 // Sent/received. Standard client will never generate a send-to-multiple-recipients,
436 // but non-standard clients might (so return a list of address/amount pairs)
437 BOOST_FOREACH(const CTxOut& txout, vout)
438 {
2ffba736 439 CBitcoinAddress address;
e8ef3da7 440 vector<unsigned char> vchPubKey;
b63241d4 441 if (!ExtractAddress(txout.scriptPubKey, NULL, address))
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442 {
443 printf("CWalletTx::GetAmounts: Unknown transaction type found, txid %s\n",
444 this->GetHash().ToString().c_str());
445 address = " unknown ";
446 }
447
448 // Don't report 'change' txouts
449 if (nDebit > 0 && pwallet->IsChange(txout))
450 continue;
451
452 if (nDebit > 0)
453 listSent.push_back(make_pair(address, txout.nValue));
454
455 if (pwallet->IsMine(txout))
456 listReceived.push_back(make_pair(address, txout.nValue));
457 }
458
459}
460
461void CWalletTx::GetAccountAmounts(const string& strAccount, int64& nGenerated, int64& nReceived,
462 int64& nSent, int64& nFee) const
463{
464 nGenerated = nReceived = nSent = nFee = 0;
465
466 int64 allGeneratedImmature, allGeneratedMature, allFee;
467 allGeneratedImmature = allGeneratedMature = allFee = 0;
468 string strSentAccount;
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469 list<pair<CBitcoinAddress, int64> > listReceived;
470 list<pair<CBitcoinAddress, int64> > listSent;
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471 GetAmounts(allGeneratedImmature, allGeneratedMature, listReceived, listSent, allFee, strSentAccount);
472
473 if (strAccount == "")
474 nGenerated = allGeneratedMature;
475 if (strAccount == strSentAccount)
476 {
2ffba736 477 BOOST_FOREACH(const PAIRTYPE(CBitcoinAddress,int64)& s, listSent)
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478 nSent += s.second;
479 nFee = allFee;
480 }
6cc4a62c 481 CRITICAL_BLOCK(pwallet->cs_wallet)
e8ef3da7 482 {
2ffba736 483 BOOST_FOREACH(const PAIRTYPE(CBitcoinAddress,int64)& r, listReceived)
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484 {
485 if (pwallet->mapAddressBook.count(r.first))
486 {
2ffba736 487 map<CBitcoinAddress, string>::const_iterator mi = pwallet->mapAddressBook.find(r.first);
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488 if (mi != pwallet->mapAddressBook.end() && (*mi).second == strAccount)
489 nReceived += r.second;
490 }
491 else if (strAccount.empty())
492 {
493 nReceived += r.second;
494 }
495 }
496 }
497}
498
499void CWalletTx::AddSupportingTransactions(CTxDB& txdb)
500{
501 vtxPrev.clear();
502
503 const int COPY_DEPTH = 3;
504 if (SetMerkleBranch() < COPY_DEPTH)
505 {
506 vector<uint256> vWorkQueue;
507 BOOST_FOREACH(const CTxIn& txin, vin)
508 vWorkQueue.push_back(txin.prevout.hash);
509
510 // This critsect is OK because txdb is already open
6cc4a62c 511 CRITICAL_BLOCK(pwallet->cs_wallet)
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512 {
513 map<uint256, const CMerkleTx*> mapWalletPrev;
514 set<uint256> setAlreadyDone;
515 for (int i = 0; i < vWorkQueue.size(); i++)
516 {
517 uint256 hash = vWorkQueue[i];
518 if (setAlreadyDone.count(hash))
519 continue;
520 setAlreadyDone.insert(hash);
521
522 CMerkleTx tx;
523 map<uint256, CWalletTx>::const_iterator mi = pwallet->mapWallet.find(hash);
524 if (mi != pwallet->mapWallet.end())
525 {
526 tx = (*mi).second;
527 BOOST_FOREACH(const CMerkleTx& txWalletPrev, (*mi).second.vtxPrev)
528 mapWalletPrev[txWalletPrev.GetHash()] = &txWalletPrev;
529 }
530 else if (mapWalletPrev.count(hash))
531 {
532 tx = *mapWalletPrev[hash];
533 }
534 else if (!fClient && txdb.ReadDiskTx(hash, tx))
535 {
536 ;
537 }
538 else
539 {
540 printf("ERROR: AddSupportingTransactions() : unsupported transaction\n");
541 continue;
542 }
543
544 int nDepth = tx.SetMerkleBranch();
545 vtxPrev.push_back(tx);
546
547 if (nDepth < COPY_DEPTH)
548 BOOST_FOREACH(const CTxIn& txin, tx.vin)
549 vWorkQueue.push_back(txin.prevout.hash);
550 }
551 }
552 }
553
554 reverse(vtxPrev.begin(), vtxPrev.end());
555}
556
557bool CWalletTx::WriteToDisk()
558{
559 return CWalletDB(pwallet->strWalletFile).WriteTx(GetHash(), *this);
560}
561
d825e6a3
PW
562// Scan the block chain (starting in pindexStart) for transactions
563// from or to us. If fUpdate is true, found transactions that already
564// exist in the wallet will be updated.
e8ef3da7
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565int CWallet::ScanForWalletTransactions(CBlockIndex* pindexStart, bool fUpdate)
566{
567 int ret = 0;
568
569 CBlockIndex* pindex = pindexStart;
6cc4a62c 570 CRITICAL_BLOCK(cs_wallet)
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571 {
572 while (pindex)
573 {
574 CBlock block;
575 block.ReadFromDisk(pindex, true);
576 BOOST_FOREACH(CTransaction& tx, block.vtx)
577 {
578 if (AddToWalletIfInvolvingMe(tx, &block, fUpdate))
579 ret++;
580 }
581 pindex = pindex->pnext;
582 }
583 }
584 return ret;
585}
586
587void CWallet::ReacceptWalletTransactions()
588{
589 CTxDB txdb("r");
590 bool fRepeat = true;
6cc4a62c 591 while (fRepeat) CRITICAL_BLOCK(cs_wallet)
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592 {
593 fRepeat = false;
594 vector<CDiskTxPos> vMissingTx;
595 BOOST_FOREACH(PAIRTYPE(const uint256, CWalletTx)& item, mapWallet)
596 {
597 CWalletTx& wtx = item.second;
598 if (wtx.IsCoinBase() && wtx.IsSpent(0))
599 continue;
600
601 CTxIndex txindex;
602 bool fUpdated = false;
603 if (txdb.ReadTxIndex(wtx.GetHash(), txindex))
604 {
605 // Update fSpent if a tx got spent somewhere else by a copy of wallet.dat
606 if (txindex.vSpent.size() != wtx.vout.size())
607 {
608 printf("ERROR: ReacceptWalletTransactions() : txindex.vSpent.size() %d != wtx.vout.size() %d\n", txindex.vSpent.size(), wtx.vout.size());
609 continue;
610 }
611 for (int i = 0; i < txindex.vSpent.size(); i++)
612 {
613 if (wtx.IsSpent(i))
614 continue;
615 if (!txindex.vSpent[i].IsNull() && IsMine(wtx.vout[i]))
616 {
617 wtx.MarkSpent(i);
618 fUpdated = true;
619 vMissingTx.push_back(txindex.vSpent[i]);
620 }
621 }
622 if (fUpdated)
623 {
624 printf("ReacceptWalletTransactions found spent coin %sbc %s\n", FormatMoney(wtx.GetCredit()).c_str(), wtx.GetHash().ToString().c_str());
625 wtx.MarkDirty();
626 wtx.WriteToDisk();
627 }
628 }
629 else
630 {
631 // Reaccept any txes of ours that aren't already in a block
632 if (!wtx.IsCoinBase())
633 wtx.AcceptWalletTransaction(txdb, false);
634 }
635 }
636 if (!vMissingTx.empty())
637 {
638 // TODO: optimize this to scan just part of the block chain?
639 if (ScanForWalletTransactions(pindexGenesisBlock))
640 fRepeat = true; // Found missing transactions: re-do Reaccept.
641 }
642 }
643}
644
645void CWalletTx::RelayWalletTransaction(CTxDB& txdb)
646{
647 BOOST_FOREACH(const CMerkleTx& tx, vtxPrev)
648 {
649 if (!tx.IsCoinBase())
650 {
651 uint256 hash = tx.GetHash();
652 if (!txdb.ContainsTx(hash))
653 RelayMessage(CInv(MSG_TX, hash), (CTransaction)tx);
654 }
655 }
656 if (!IsCoinBase())
657 {
658 uint256 hash = GetHash();
659 if (!txdb.ContainsTx(hash))
660 {
661 printf("Relaying wtx %s\n", hash.ToString().substr(0,10).c_str());
662 RelayMessage(CInv(MSG_TX, hash), (CTransaction)*this);
663 }
664 }
665}
666
667void CWalletTx::RelayWalletTransaction()
668{
669 CTxDB txdb("r");
670 RelayWalletTransaction(txdb);
671}
672
673void CWallet::ResendWalletTransactions()
674{
675 // Do this infrequently and randomly to avoid giving away
676 // that these are our transactions.
677 static int64 nNextTime;
678 if (GetTime() < nNextTime)
679 return;
680 bool fFirst = (nNextTime == 0);
681 nNextTime = GetTime() + GetRand(30 * 60);
682 if (fFirst)
683 return;
684
685 // Only do it if there's been a new block since last time
686 static int64 nLastTime;
687 if (nTimeBestReceived < nLastTime)
688 return;
689 nLastTime = GetTime();
690
691 // Rebroadcast any of our txes that aren't in a block yet
692 printf("ResendWalletTransactions()\n");
693 CTxDB txdb("r");
6cc4a62c 694 CRITICAL_BLOCK(cs_wallet)
e8ef3da7
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695 {
696 // Sort them in chronological order
697 multimap<unsigned int, CWalletTx*> mapSorted;
698 BOOST_FOREACH(PAIRTYPE(const uint256, CWalletTx)& item, mapWallet)
699 {
700 CWalletTx& wtx = item.second;
701 // Don't rebroadcast until it's had plenty of time that
702 // it should have gotten in already by now.
703 if (nTimeBestReceived - (int64)wtx.nTimeReceived > 5 * 60)
704 mapSorted.insert(make_pair(wtx.nTimeReceived, &wtx));
705 }
706 BOOST_FOREACH(PAIRTYPE(const unsigned int, CWalletTx*)& item, mapSorted)
707 {
708 CWalletTx& wtx = *item.second;
709 wtx.RelayWalletTransaction(txdb);
710 }
711 }
712}
713
714
715
716
717
718
719//////////////////////////////////////////////////////////////////////////////
720//
721// Actions
722//
723
724
725int64 CWallet::GetBalance() const
726{
e8ef3da7 727 int64 nTotal = 0;
6cc4a62c 728 CRITICAL_BLOCK(cs_wallet)
e8ef3da7
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729 {
730 for (map<uint256, CWalletTx>::const_iterator it = mapWallet.begin(); it != mapWallet.end(); ++it)
731 {
732 const CWalletTx* pcoin = &(*it).second;
733 if (!pcoin->IsFinal() || !pcoin->IsConfirmed())
734 continue;
735 nTotal += pcoin->GetAvailableCredit();
736 }
737 }
738
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739 return nTotal;
740}
741
df5ccbd2
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742int64 CWallet::GetUnconfirmedBalance() const
743{
744 int64 nTotal = 0;
c5aa1b13 745 CRITICAL_BLOCK(cs_wallet)
df5ccbd2
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746 {
747 for (map<uint256, CWalletTx>::const_iterator it = mapWallet.begin(); it != mapWallet.end(); ++it)
748 {
749 const CWalletTx* pcoin = &(*it).second;
750 if (pcoin->IsFinal() && pcoin->IsConfirmed())
751 continue;
752 nTotal += pcoin->GetAvailableCredit();
753 }
754 }
755 return nTotal;
756}
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757
758bool CWallet::SelectCoinsMinConf(int64 nTargetValue, int nConfMine, int nConfTheirs, set<pair<const CWalletTx*,unsigned int> >& setCoinsRet, int64& nValueRet) const
759{
760 setCoinsRet.clear();
761 nValueRet = 0;
762
763 // List of values less than target
764 pair<int64, pair<const CWalletTx*,unsigned int> > coinLowestLarger;
765 coinLowestLarger.first = INT64_MAX;
766 coinLowestLarger.second.first = NULL;
767 vector<pair<int64, pair<const CWalletTx*,unsigned int> > > vValue;
768 int64 nTotalLower = 0;
769
6cc4a62c 770 CRITICAL_BLOCK(cs_wallet)
e8ef3da7
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771 {
772 vector<const CWalletTx*> vCoins;
773 vCoins.reserve(mapWallet.size());
774 for (map<uint256, CWalletTx>::const_iterator it = mapWallet.begin(); it != mapWallet.end(); ++it)
775 vCoins.push_back(&(*it).second);
776 random_shuffle(vCoins.begin(), vCoins.end(), GetRandInt);
777
778 BOOST_FOREACH(const CWalletTx* pcoin, vCoins)
779 {
780 if (!pcoin->IsFinal() || !pcoin->IsConfirmed())
781 continue;
782
783 if (pcoin->IsCoinBase() && pcoin->GetBlocksToMaturity() > 0)
784 continue;
785
786 int nDepth = pcoin->GetDepthInMainChain();
787 if (nDepth < (pcoin->IsFromMe() ? nConfMine : nConfTheirs))
788 continue;
789
790 for (int i = 0; i < pcoin->vout.size(); i++)
791 {
792 if (pcoin->IsSpent(i) || !IsMine(pcoin->vout[i]))
793 continue;
794
795 int64 n = pcoin->vout[i].nValue;
796
797 if (n <= 0)
798 continue;
799
800 pair<int64,pair<const CWalletTx*,unsigned int> > coin = make_pair(n,make_pair(pcoin,i));
801
802 if (n == nTargetValue)
803 {
804 setCoinsRet.insert(coin.second);
805 nValueRet += coin.first;
806 return true;
807 }
808 else if (n < nTargetValue + CENT)
809 {
810 vValue.push_back(coin);
811 nTotalLower += n;
812 }
813 else if (n < coinLowestLarger.first)
814 {
815 coinLowestLarger = coin;
816 }
817 }
818 }
819 }
820
821 if (nTotalLower == nTargetValue || nTotalLower == nTargetValue + CENT)
822 {
823 for (int i = 0; i < vValue.size(); ++i)
824 {
825 setCoinsRet.insert(vValue[i].second);
826 nValueRet += vValue[i].first;
827 }
828 return true;
829 }
830
831 if (nTotalLower < nTargetValue + (coinLowestLarger.second.first ? CENT : 0))
832 {
833 if (coinLowestLarger.second.first == NULL)
834 return false;
835 setCoinsRet.insert(coinLowestLarger.second);
836 nValueRet += coinLowestLarger.first;
837 return true;
838 }
839
840 if (nTotalLower >= nTargetValue + CENT)
841 nTargetValue += CENT;
842
843 // Solve subset sum by stochastic approximation
844 sort(vValue.rbegin(), vValue.rend());
845 vector<char> vfIncluded;
846 vector<char> vfBest(vValue.size(), true);
847 int64 nBest = nTotalLower;
848
849 for (int nRep = 0; nRep < 1000 && nBest != nTargetValue; nRep++)
850 {
851 vfIncluded.assign(vValue.size(), false);
852 int64 nTotal = 0;
853 bool fReachedTarget = false;
854 for (int nPass = 0; nPass < 2 && !fReachedTarget; nPass++)
855 {
856 for (int i = 0; i < vValue.size(); i++)
857 {
858 if (nPass == 0 ? rand() % 2 : !vfIncluded[i])
859 {
860 nTotal += vValue[i].first;
861 vfIncluded[i] = true;
862 if (nTotal >= nTargetValue)
863 {
864 fReachedTarget = true;
865 if (nTotal < nBest)
866 {
867 nBest = nTotal;
868 vfBest = vfIncluded;
869 }
870 nTotal -= vValue[i].first;
871 vfIncluded[i] = false;
872 }
873 }
874 }
875 }
876 }
877
878 // If the next larger is still closer, return it
879 if (coinLowestLarger.second.first && coinLowestLarger.first - nTargetValue <= nBest - nTargetValue)
880 {
881 setCoinsRet.insert(coinLowestLarger.second);
882 nValueRet += coinLowestLarger.first;
883 }
884 else {
885 for (int i = 0; i < vValue.size(); i++)
886 if (vfBest[i])
887 {
888 setCoinsRet.insert(vValue[i].second);
889 nValueRet += vValue[i].first;
890 }
891
892 //// debug print
893 printf("SelectCoins() best subset: ");
894 for (int i = 0; i < vValue.size(); i++)
895 if (vfBest[i])
896 printf("%s ", FormatMoney(vValue[i].first).c_str());
897 printf("total %s\n", FormatMoney(nBest).c_str());
898 }
899
900 return true;
901}
902
903bool CWallet::SelectCoins(int64 nTargetValue, set<pair<const CWalletTx*,unsigned int> >& setCoinsRet, int64& nValueRet) const
904{
905 return (SelectCoinsMinConf(nTargetValue, 1, 6, setCoinsRet, nValueRet) ||
906 SelectCoinsMinConf(nTargetValue, 1, 1, setCoinsRet, nValueRet) ||
907 SelectCoinsMinConf(nTargetValue, 0, 1, setCoinsRet, nValueRet));
908}
909
910
911
912
913bool CWallet::CreateTransaction(const vector<pair<CScript, int64> >& vecSend, CWalletTx& wtxNew, CReserveKey& reservekey, int64& nFeeRet)
914{
915 int64 nValue = 0;
916 BOOST_FOREACH (const PAIRTYPE(CScript, int64)& s, vecSend)
917 {
918 if (nValue < 0)
919 return false;
920 nValue += s.second;
921 }
922 if (vecSend.empty() || nValue < 0)
923 return false;
924
925 wtxNew.pwallet = this;
926
927 CRITICAL_BLOCK(cs_main)
6cc4a62c 928 CRITICAL_BLOCK(cs_wallet)
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929 {
930 // txdb must be opened before the mapWallet lock
931 CTxDB txdb("r");
e8ef3da7
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932 {
933 nFeeRet = nTransactionFee;
934 loop
935 {
936 wtxNew.vin.clear();
937 wtxNew.vout.clear();
938 wtxNew.fFromMe = true;
939
940 int64 nTotalValue = nValue + nFeeRet;
941 double dPriority = 0;
942 // vouts to the payees
943 BOOST_FOREACH (const PAIRTYPE(CScript, int64)& s, vecSend)
944 wtxNew.vout.push_back(CTxOut(s.second, s.first));
945
946 // Choose coins to use
947 set<pair<const CWalletTx*,unsigned int> > setCoins;
948 int64 nValueIn = 0;
949 if (!SelectCoins(nTotalValue, setCoins, nValueIn))
950 return false;
951 BOOST_FOREACH(PAIRTYPE(const CWalletTx*, unsigned int) pcoin, setCoins)
952 {
953 int64 nCredit = pcoin.first->vout[pcoin.second].nValue;
954 dPriority += (double)nCredit * pcoin.first->GetDepthInMainChain();
955 }
956
a7dd11c6
PW
957 int64 nChange = nValueIn - nValue - nFeeRet;
958 // if sub-cent change is required, the fee must be raised to at least MIN_TX_FEE
959 // or until nChange becomes zero
960 if (nFeeRet < MIN_TX_FEE && nChange > 0 && nChange < CENT)
961 {
962 int64 nMoveToFee = min(nChange, MIN_TX_FEE - nFeeRet);
963 nChange -= nMoveToFee;
964 nFeeRet += nMoveToFee;
965 }
966
967 if (nChange > 0)
e8ef3da7
WL
968 {
969 // Note: We use a new key here to keep it from being obvious which side is the change.
970 // The drawback is that by not reusing a previous key, the change may be lost if a
971 // backup is restored, if the backup doesn't have the new private key for the change.
972 // If we reused the old key, it would be possible to add code to look for and
973 // rediscover unknown transactions that were written with keys of ours to recover
974 // post-backup change.
975
976 // Reserve a new key pair from key pool
977 vector<unsigned char> vchPubKey = reservekey.GetReservedKey();
acd65016 978 // assert(mapKeys.count(vchPubKey));
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979
980 // Fill a vout to ourself, using same address type as the payment
981 CScript scriptChange;
2ffba736 982 if (vecSend[0].first.GetBitcoinAddress().IsValid())
e8ef3da7
WL
983 scriptChange.SetBitcoinAddress(vchPubKey);
984 else
985 scriptChange << vchPubKey << OP_CHECKSIG;
986
987 // Insert change txn at random position:
988 vector<CTxOut>::iterator position = wtxNew.vout.begin()+GetRandInt(wtxNew.vout.size());
989 wtxNew.vout.insert(position, CTxOut(nChange, scriptChange));
990 }
991 else
992 reservekey.ReturnKey();
993
994 // Fill vin
995 BOOST_FOREACH(const PAIRTYPE(const CWalletTx*,unsigned int)& coin, setCoins)
996 wtxNew.vin.push_back(CTxIn(coin.first->GetHash(),coin.second));
997
998 // Sign
999 int nIn = 0;
1000 BOOST_FOREACH(const PAIRTYPE(const CWalletTx*,unsigned int)& coin, setCoins)
1001 if (!SignSignature(*this, *coin.first, wtxNew, nIn++))
1002 return false;
1003
1004 // Limit size
1005 unsigned int nBytes = ::GetSerializeSize(*(CTransaction*)&wtxNew, SER_NETWORK);
1006 if (nBytes >= MAX_BLOCK_SIZE_GEN/5)
1007 return false;
1008 dPriority /= nBytes;
1009
1010 // Check that enough fee is included
1011 int64 nPayFee = nTransactionFee * (1 + (int64)nBytes / 1000);
1012 bool fAllowFree = CTransaction::AllowFree(dPriority);
1013 int64 nMinFee = wtxNew.GetMinFee(1, fAllowFree);
1014 if (nFeeRet < max(nPayFee, nMinFee))
1015 {
1016 nFeeRet = max(nPayFee, nMinFee);
1017 continue;
1018 }
1019
1020 // Fill vtxPrev by copying from previous transactions vtxPrev
1021 wtxNew.AddSupportingTransactions(txdb);
1022 wtxNew.fTimeReceivedIsTxTime = true;
1023
1024 break;
1025 }
1026 }
1027 }
1028 return true;
1029}
1030
1031bool CWallet::CreateTransaction(CScript scriptPubKey, int64 nValue, CWalletTx& wtxNew, CReserveKey& reservekey, int64& nFeeRet)
1032{
1033 vector< pair<CScript, int64> > vecSend;
1034 vecSend.push_back(make_pair(scriptPubKey, nValue));
1035 return CreateTransaction(vecSend, wtxNew, reservekey, nFeeRet);
1036}
1037
1038// Call after CreateTransaction unless you want to abort
1039bool CWallet::CommitTransaction(CWalletTx& wtxNew, CReserveKey& reservekey)
1040{
1041 CRITICAL_BLOCK(cs_main)
6cc4a62c 1042 CRITICAL_BLOCK(cs_wallet)
e8ef3da7
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1043 {
1044 printf("CommitTransaction:\n%s", wtxNew.ToString().c_str());
e8ef3da7
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1045 {
1046 // This is only to keep the database open to defeat the auto-flush for the
1047 // duration of this scope. This is the only place where this optimization
1048 // maybe makes sense; please don't do it anywhere else.
1049 CWalletDB* pwalletdb = fFileBacked ? new CWalletDB(strWalletFile,"r") : NULL;
1050
1051 // Take key pair from key pool so it won't be used again
1052 reservekey.KeepKey();
1053
1054 // Add tx to wallet, because if it has change it's also ours,
1055 // otherwise just for transaction history.
1056 AddToWallet(wtxNew);
1057
1058 // Mark old coins as spent
1059 set<CWalletTx*> setCoins;
1060 BOOST_FOREACH(const CTxIn& txin, wtxNew.vin)
1061 {
1062 CWalletTx &coin = mapWallet[txin.prevout.hash];
1063 coin.pwallet = this;
1064 coin.MarkSpent(txin.prevout.n);
1065 coin.WriteToDisk();
1066 vWalletUpdated.push_back(coin.GetHash());
1067 }
1068
1069 if (fFileBacked)
1070 delete pwalletdb;
1071 }
1072
1073 // Track how many getdata requests our transaction gets
6cc4a62c 1074 mapRequestCount[wtxNew.GetHash()] = 0;
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1075
1076 // Broadcast
1077 if (!wtxNew.AcceptToMemoryPool())
1078 {
1079 // This must not fail. The transaction has already been signed and recorded.
1080 printf("CommitTransaction() : Error: Transaction not valid");
1081 return false;
1082 }
1083 wtxNew.RelayWalletTransaction();
1084 }
1085 MainFrameRepaint();
1086 return true;
1087}
1088
1089
1090
1091
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1092string CWallet::SendMoney(CScript scriptPubKey, int64 nValue, CWalletTx& wtxNew, bool fAskFee)
1093{
1094 CReserveKey reservekey(this);
1095 int64 nFeeRequired;
6cc4a62c
GA
1096
1097 if (IsLocked())
e8ef3da7 1098 {
6cc4a62c
GA
1099 string strError = _("Error: Wallet locked, unable to create transaction ");
1100 printf("SendMoney() : %s", strError.c_str());
1101 return strError;
1102 }
1103 if (!CreateTransaction(scriptPubKey, nValue, wtxNew, reservekey, nFeeRequired))
1104 {
1105 string strError;
1106 if (nValue + nFeeRequired > GetBalance())
1107 strError = strprintf(_("Error: This transaction requires a transaction fee of at least %s because of its amount, complexity, or use of recently received funds "), FormatMoney(nFeeRequired).c_str());
1108 else
1109 strError = _("Error: Transaction creation failed ");
1110 printf("SendMoney() : %s", strError.c_str());
1111 return strError;
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1112 }
1113
1114 if (fAskFee && !ThreadSafeAskFee(nFeeRequired, _("Sending..."), NULL))
1115 return "ABORTED";
1116
1117 if (!CommitTransaction(wtxNew, reservekey))
1118 return _("Error: The transaction was rejected. This might happen if some of the coins in your wallet were already spent, such as if you used a copy of wallet.dat and coins were spent in the copy but not marked as spent here.");
1119
1120 MainFrameRepaint();
1121 return "";
1122}
1123
1124
1125
2ffba736 1126string CWallet::SendMoneyToBitcoinAddress(const CBitcoinAddress& address, int64 nValue, CWalletTx& wtxNew, bool fAskFee)
e8ef3da7
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1127{
1128 // Check amount
1129 if (nValue <= 0)
1130 return _("Invalid amount");
1131 if (nValue + nTransactionFee > GetBalance())
1132 return _("Insufficient funds");
1133
1134 // Parse bitcoin address
1135 CScript scriptPubKey;
2ffba736 1136 scriptPubKey.SetBitcoinAddress(address);
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1137
1138 return SendMoney(scriptPubKey, nValue, wtxNew, fAskFee);
1139}
1140
1141
1142
1143
116df55e 1144int CWallet::LoadWallet(bool& fFirstRunRet)
e8ef3da7
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1145{
1146 if (!fFileBacked)
1147 return false;
1148 fFirstRunRet = false;
7ec55267 1149 int nLoadWalletRet = CWalletDB(strWalletFile,"cr+").LoadWallet(this);
d764d916 1150 if (nLoadWalletRet == DB_NEED_REWRITE)
9e9869d0 1151 {
d764d916
GA
1152 if (CDB::Rewrite(strWalletFile, "\x04pool"))
1153 {
1154 setKeyPool.clear();
1155 // Note: can't top-up keypool here, because wallet is locked.
1156 // User will be prompted to unlock wallet the next operation
1157 // the requires a new key.
1158 }
1159 nLoadWalletRet = DB_NEED_REWRITE;
9e9869d0
PW
1160 }
1161
7ec55267
MC
1162 if (nLoadWalletRet != DB_LOAD_OK)
1163 return nLoadWalletRet;
e8ef3da7
WL
1164 fFirstRunRet = vchDefaultKey.empty();
1165
03fbd790 1166 if (!HaveKey(Hash160(vchDefaultKey)))
e8ef3da7 1167 {
acd65016 1168 // Create new keyUser and set as default key
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1169 RandAddSeedPerfmon();
1170
7db3b75b
GA
1171 std::vector<unsigned char> newDefaultKey;
1172 if (!GetKeyFromPool(newDefaultKey, false))
1173 return DB_LOAD_FAIL;
1174 SetDefaultKey(newDefaultKey);
2ffba736 1175 if (!SetAddressBookName(CBitcoinAddress(vchDefaultKey), ""))
116df55e 1176 return DB_LOAD_FAIL;
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1177 }
1178
1179 CreateThread(ThreadFlushWalletDB, &strWalletFile);
116df55e 1180 return DB_LOAD_OK;
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1181}
1182
ae3d0aba 1183
2ffba736 1184bool CWallet::SetAddressBookName(const CBitcoinAddress& address, const string& strName)
ae3d0aba 1185{
2ffba736 1186 mapAddressBook[address] = strName;
ae3d0aba
WL
1187 if (!fFileBacked)
1188 return false;
2ffba736 1189 return CWalletDB(strWalletFile).WriteName(address.ToString(), strName);
ae3d0aba
WL
1190}
1191
2ffba736 1192bool CWallet::DelAddressBookName(const CBitcoinAddress& address)
ae3d0aba 1193{
2ffba736 1194 mapAddressBook.erase(address);
ae3d0aba
WL
1195 if (!fFileBacked)
1196 return false;
2ffba736 1197 return CWalletDB(strWalletFile).EraseName(address.ToString());
ae3d0aba
WL
1198}
1199
1200
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1201void CWallet::PrintWallet(const CBlock& block)
1202{
6cc4a62c 1203 CRITICAL_BLOCK(cs_wallet)
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1204 {
1205 if (mapWallet.count(block.vtx[0].GetHash()))
1206 {
1207 CWalletTx& wtx = mapWallet[block.vtx[0].GetHash()];
1208 printf(" mine: %d %d %d", wtx.GetDepthInMainChain(), wtx.GetBlocksToMaturity(), wtx.GetCredit());
1209 }
1210 }
1211 printf("\n");
1212}
1213
1214bool CWallet::GetTransaction(const uint256 &hashTx, CWalletTx& wtx)
1215{
6cc4a62c 1216 CRITICAL_BLOCK(cs_wallet)
e8ef3da7
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1217 {
1218 map<uint256, CWalletTx>::iterator mi = mapWallet.find(hashTx);
1219 if (mi != mapWallet.end())
1220 {
1221 wtx = (*mi).second;
1222 return true;
1223 }
1224 }
1225 return false;
1226}
1227
ae3d0aba
WL
1228bool CWallet::SetDefaultKey(const std::vector<unsigned char> &vchPubKey)
1229{
1230 if (fFileBacked)
1231 {
1232 if (!CWalletDB(strWalletFile).WriteDefaultKey(vchPubKey))
1233 return false;
1234 }
1235 vchDefaultKey = vchPubKey;
1236 return true;
1237}
1238
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1239bool GetWalletFile(CWallet* pwallet, string &strWalletFileOut)
1240{
1241 if (!pwallet->fFileBacked)
1242 return false;
1243 strWalletFileOut = pwallet->strWalletFile;
1244 return true;
1245}
1246
4e87d341 1247bool CWallet::TopUpKeyPool()
e8ef3da7 1248{
6cc4a62c 1249 CRITICAL_BLOCK(cs_wallet)
e8ef3da7 1250 {
4e87d341
MC
1251 if (IsLocked())
1252 return false;
1253
e8ef3da7
WL
1254 CWalletDB walletdb(strWalletFile);
1255
1256 // Top up key pool
1257 int64 nTargetSize = max(GetArg("-keypool", 100), (int64)0);
1258 while (setKeyPool.size() < nTargetSize+1)
1259 {
1260 int64 nEnd = 1;
1261 if (!setKeyPool.empty())
1262 nEnd = *(--setKeyPool.end()) + 1;
1263 if (!walletdb.WritePool(nEnd, CKeyPool(GenerateNewKey())))
4e87d341 1264 throw runtime_error("TopUpKeyPool() : writing generated key failed");
e8ef3da7
WL
1265 setKeyPool.insert(nEnd);
1266 printf("keypool added key %"PRI64d", size=%d\n", nEnd, setKeyPool.size());
1267 }
4e87d341
MC
1268 }
1269 return true;
1270}
1271
1272void CWallet::ReserveKeyFromKeyPool(int64& nIndex, CKeyPool& keypool)
1273{
1274 nIndex = -1;
1275 keypool.vchPubKey.clear();
6cc4a62c 1276 CRITICAL_BLOCK(cs_wallet)
4e87d341
MC
1277 {
1278 if (!IsLocked())
1279 TopUpKeyPool();
e8ef3da7
WL
1280
1281 // Get the oldest key
4e87d341
MC
1282 if(setKeyPool.empty())
1283 return;
1284
1285 CWalletDB walletdb(strWalletFile);
1286
e8ef3da7
WL
1287 nIndex = *(setKeyPool.begin());
1288 setKeyPool.erase(setKeyPool.begin());
1289 if (!walletdb.ReadPool(nIndex, keypool))
1290 throw runtime_error("ReserveKeyFromKeyPool() : read failed");
03fbd790 1291 if (!HaveKey(Hash160(keypool.vchPubKey)))
e8ef3da7
WL
1292 throw runtime_error("ReserveKeyFromKeyPool() : unknown key in key pool");
1293 assert(!keypool.vchPubKey.empty());
1294 printf("keypool reserve %"PRI64d"\n", nIndex);
1295 }
1296}
1297
1298void CWallet::KeepKey(int64 nIndex)
1299{
1300 // Remove from key pool
1301 if (fFileBacked)
1302 {
1303 CWalletDB walletdb(strWalletFile);
6cc4a62c 1304 walletdb.ErasePool(nIndex);
e8ef3da7
WL
1305 }
1306 printf("keypool keep %"PRI64d"\n", nIndex);
1307}
1308
1309void CWallet::ReturnKey(int64 nIndex)
1310{
1311 // Return to key pool
6cc4a62c 1312 CRITICAL_BLOCK(cs_wallet)
e8ef3da7
WL
1313 setKeyPool.insert(nIndex);
1314 printf("keypool return %"PRI64d"\n", nIndex);
1315}
1316
7db3b75b 1317bool CWallet::GetKeyFromPool(vector<unsigned char>& result, bool fAllowReuse)
e8ef3da7
WL
1318{
1319 int64 nIndex = 0;
1320 CKeyPool keypool;
ed02c95d 1321 CRITICAL_BLOCK(cs_wallet)
7db3b75b 1322 {
ed02c95d
GA
1323 ReserveKeyFromKeyPool(nIndex, keypool);
1324 if (nIndex == -1)
7db3b75b 1325 {
ed02c95d
GA
1326 if (fAllowReuse && !vchDefaultKey.empty())
1327 {
1328 result = vchDefaultKey;
1329 return true;
1330 }
1331 if (IsLocked()) return false;
1332 result = GenerateNewKey();
7db3b75b
GA
1333 return true;
1334 }
ed02c95d
GA
1335 KeepKey(nIndex);
1336 result = keypool.vchPubKey;
7db3b75b 1337 }
7db3b75b 1338 return true;
e8ef3da7
WL
1339}
1340
1341int64 CWallet::GetOldestKeyPoolTime()
1342{
1343 int64 nIndex = 0;
1344 CKeyPool keypool;
1345 ReserveKeyFromKeyPool(nIndex, keypool);
4e87d341
MC
1346 if (nIndex == -1)
1347 return GetTime();
e8ef3da7
WL
1348 ReturnKey(nIndex);
1349 return keypool.nTime;
1350}
1351
1352vector<unsigned char> CReserveKey::GetReservedKey()
1353{
1354 if (nIndex == -1)
1355 {
1356 CKeyPool keypool;
1357 pwallet->ReserveKeyFromKeyPool(nIndex, keypool);
0d7b28e5
MC
1358 if (nIndex != -1)
1359 vchPubKey = keypool.vchPubKey;
1360 else
cee69980
MC
1361 {
1362 printf("CReserveKey::GetReservedKey(): Warning: using default key instead of a new key, top up your keypool.");
a2606bad 1363 vchPubKey = pwallet->vchDefaultKey;
cee69980 1364 }
e8ef3da7
WL
1365 }
1366 assert(!vchPubKey.empty());
1367 return vchPubKey;
1368}
1369
1370void CReserveKey::KeepKey()
1371{
1372 if (nIndex != -1)
1373 pwallet->KeepKey(nIndex);
1374 nIndex = -1;
1375 vchPubKey.clear();
1376}
1377
1378void CReserveKey::ReturnKey()
1379{
1380 if (nIndex != -1)
1381 pwallet->ReturnKey(nIndex);
1382 nIndex = -1;
1383 vchPubKey.clear();
1384}
ae3d0aba 1385
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