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scripted-diff: Fully remove BOOST_FOREACH

-BEGIN VERIFY SCRIPT-
sed -i 's/BOOST_FOREACH *(\(.*\),/for (\1 :/' ./src/*.h ./src/*.cpp ./src/*/*.h ./src/*/*.cpp ./src/*/*/*.h ./src/*/*/*.cpp ;
-END VERIFY SCRIPT-
0.15
Jorge Timón 7 years ago
parent
commit
7c00c26726
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GPG Key ID: 8866C18EA1C944A2
  1. 2
      src/bench/coin_selection.cpp
  2. 2
      src/bitcoin-tx.cpp
  3. 2
      src/bloom.cpp
  4. 4
      src/checkqueue.h
  5. 2
      src/core_write.cpp
  6. 2
      src/httprpc.cpp
  7. 18
      src/init.cpp
  8. 6
      src/miner.cpp
  9. 68
      src/net.cpp
  10. 34
      src/net_processing.cpp
  11. 4
      src/policy/policy.cpp
  12. 4
      src/policy/rbf.cpp
  13. 2
      src/qt/addresstablemodel.cpp
  14. 6
      src/qt/coincontroldialog.cpp
  15. 2
      src/qt/peertablemodel.cpp
  16. 2
      src/qt/recentrequeststablemodel.cpp
  17. 18
      src/qt/transactiondesc.cpp
  18. 4
      src/qt/transactionrecord.cpp
  19. 2
      src/qt/walletmodel.cpp
  20. 6
      src/rest.cpp
  21. 20
      src/rpc/blockchain.cpp
  22. 2
      src/rpc/mining.cpp
  23. 2
      src/rpc/misc.cpp
  24. 10
      src/rpc/net.cpp
  25. 8
      src/rpc/rawtransaction.cpp
  26. 6
      src/rpc/server.cpp
  27. 2
      src/script/ismine.cpp
  28. 8
      src/script/sign.cpp
  29. 4
      src/script/standard.cpp
  30. 10
      src/sync.cpp
  31. 2
      src/test/bip32_tests.cpp
  32. 2
      src/test/coins_tests.cpp
  33. 2
      src/test/getarg_tests.cpp
  34. 2
      src/test/multisig_tests.cpp
  35. 4
      src/test/prevector_tests.cpp
  36. 4
      src/test/script_tests.cpp
  37. 2
      src/test/test_bitcoin.cpp
  38. 4
      src/test/transaction_tests.cpp
  39. 4
      src/timedata.cpp
  40. 6
      src/torcontrol.cpp
  41. 54
      src/txmempool.cpp
  42. 40
      src/validation.cpp
  43. 2
      src/wallet/crypter.cpp
  44. 2
      src/wallet/db.cpp
  45. 4
      src/wallet/rpcdump.cpp
  46. 34
      src/wallet/rpcwallet.cpp
  47. 2
      src/wallet/test/accounting_tests.cpp
  48. 90
      src/wallet/wallet.cpp
  49. 10
      src/wallet/walletdb.cpp

2
src/bench/coin_selection.cpp

@ -39,7 +39,7 @@ static void CoinSelection(benchmark::State& state)
while (state.KeepRunning()) { while (state.KeepRunning()) {
// Empty wallet. // Empty wallet.
BOOST_FOREACH (COutput output, vCoins) for (COutput output : vCoins)
delete output.tx; delete output.tx;
vCoins.clear(); vCoins.clear();

2
src/bitcoin-tx.cpp

@ -611,7 +611,7 @@ static void MutateTxSign(CMutableTransaction& tx, const std::string& flagStr)
ProduceSignature(MutableTransactionSignatureCreator(&keystore, &mergedTx, i, amount, nHashType), prevPubKey, sigdata); ProduceSignature(MutableTransactionSignatureCreator(&keystore, &mergedTx, i, amount, nHashType), prevPubKey, sigdata);
// ... and merge in other signatures: // ... and merge in other signatures:
BOOST_FOREACH(const CTransaction& txv, txVariants) for (const CTransaction& txv : txVariants)
sigdata = CombineSignatures(prevPubKey, MutableTransactionSignatureChecker(&mergedTx, i, amount), sigdata, DataFromTransaction(txv, i)); sigdata = CombineSignatures(prevPubKey, MutableTransactionSignatureChecker(&mergedTx, i, amount), sigdata, DataFromTransaction(txv, i));
UpdateTransaction(mergedTx, i, sigdata); UpdateTransaction(mergedTx, i, sigdata);

2
src/bloom.cpp

@ -179,7 +179,7 @@ bool CBloomFilter::IsRelevantAndUpdate(const CTransaction& tx)
if (fFound) if (fFound)
return true; return true;
BOOST_FOREACH(const CTxIn& txin, tx.vin) for (const CTxIn& txin : tx.vin)
{ {
// Match if the filter contains an outpoint tx spends // Match if the filter contains an outpoint tx spends
if (contains(txin.prevout)) if (contains(txin.prevout))

4
src/checkqueue.h

@ -121,7 +121,7 @@ private:
fOk = fAllOk; fOk = fAllOk;
} }
// execute work // execute work
BOOST_FOREACH (T& check, vChecks) for (T& check : vChecks)
if (fOk) if (fOk)
fOk = check(); fOk = check();
vChecks.clear(); vChecks.clear();
@ -151,7 +151,7 @@ public:
void Add(std::vector<T>& vChecks) void Add(std::vector<T>& vChecks)
{ {
boost::unique_lock<boost::mutex> lock(mutex); boost::unique_lock<boost::mutex> lock(mutex);
BOOST_FOREACH (T& check, vChecks) { for (T& check : vChecks) {
queue.push_back(T()); queue.push_back(T());
check.swap(queue.back()); check.swap(queue.back());
} }

2
src/core_write.cpp

@ -141,7 +141,7 @@ void ScriptPubKeyToUniv(const CScript& scriptPubKey,
out.pushKV("type", GetTxnOutputType(type)); out.pushKV("type", GetTxnOutputType(type));
UniValue a(UniValue::VARR); UniValue a(UniValue::VARR);
BOOST_FOREACH(const CTxDestination& addr, addresses) for (const CTxDestination& addr : addresses)
a.push_back(CBitcoinAddress(addr).ToString()); a.push_back(CBitcoinAddress(addr).ToString());
out.pushKV("addresses", a); out.pushKV("addresses", a);
} }

2
src/httprpc.cpp

@ -95,7 +95,7 @@ static bool multiUserAuthorized(std::string strUserPass)
if (gArgs.IsArgSet("-rpcauth")) { if (gArgs.IsArgSet("-rpcauth")) {
//Search for multi-user login/pass "rpcauth" from config //Search for multi-user login/pass "rpcauth" from config
BOOST_FOREACH(std::string strRPCAuth, gArgs.GetArgs("-rpcauth")) for (std::string strRPCAuth : gArgs.GetArgs("-rpcauth"))
{ {
std::vector<std::string> vFields; std::vector<std::string> vFields;
boost::split(vFields, strRPCAuth, boost::is_any_of(":$")); boost::split(vFields, strRPCAuth, boost::is_any_of(":$"));

18
src/init.cpp

@ -611,7 +611,7 @@ void CleanupBlockRevFiles()
// keeping a separate counter. Once we hit a gap (or if 0 doesn't exist) // keeping a separate counter. Once we hit a gap (or if 0 doesn't exist)
// start removing block files. // start removing block files.
int nContigCounter = 0; int nContigCounter = 0;
BOOST_FOREACH(const PAIRTYPE(std::string, fs::path)& item, mapBlockFiles) { for (const PAIRTYPE(std::string, fs::path)& item : mapBlockFiles) {
if (atoi(item.first) == nContigCounter) { if (atoi(item.first) == nContigCounter) {
nContigCounter++; nContigCounter++;
continue; continue;
@ -664,7 +664,7 @@ void ThreadImport(std::vector<fs::path> vImportFiles)
} }
// -loadblock= // -loadblock=
BOOST_FOREACH(const fs::path& path, vImportFiles) { for (const fs::path& path : vImportFiles) {
FILE *file = fsbridge::fopen(path, "rb"); FILE *file = fsbridge::fopen(path, "rb");
if (file) { if (file) {
LogPrintf("Importing blocks file %s...\n", path.string()); LogPrintf("Importing blocks file %s...\n", path.string());
@ -1258,7 +1258,7 @@ bool AppInitMain(boost::thread_group& threadGroup, CScheduler& scheduler)
// sanitize comments per BIP-0014, format user agent and check total size // sanitize comments per BIP-0014, format user agent and check total size
std::vector<std::string> uacomments; std::vector<std::string> uacomments;
if (gArgs.IsArgSet("-uacomment")) { if (gArgs.IsArgSet("-uacomment")) {
BOOST_FOREACH(std::string cmt, gArgs.GetArgs("-uacomment")) for (std::string cmt : gArgs.GetArgs("-uacomment"))
{ {
if (cmt != SanitizeString(cmt, SAFE_CHARS_UA_COMMENT)) if (cmt != SanitizeString(cmt, SAFE_CHARS_UA_COMMENT))
return InitError(strprintf(_("User Agent comment (%s) contains unsafe characters."), cmt)); return InitError(strprintf(_("User Agent comment (%s) contains unsafe characters."), cmt));
@ -1273,7 +1273,7 @@ bool AppInitMain(boost::thread_group& threadGroup, CScheduler& scheduler)
if (gArgs.IsArgSet("-onlynet")) { if (gArgs.IsArgSet("-onlynet")) {
std::set<enum Network> nets; std::set<enum Network> nets;
BOOST_FOREACH(const std::string& snet, gArgs.GetArgs("-onlynet")) { for (const std::string& snet : gArgs.GetArgs("-onlynet")) {
enum Network net = ParseNetwork(snet); enum Network net = ParseNetwork(snet);
if (net == NET_UNROUTABLE) if (net == NET_UNROUTABLE)
return InitError(strprintf(_("Unknown network specified in -onlynet: '%s'"), snet)); return InitError(strprintf(_("Unknown network specified in -onlynet: '%s'"), snet));
@ -1287,7 +1287,7 @@ bool AppInitMain(boost::thread_group& threadGroup, CScheduler& scheduler)
} }
if (gArgs.IsArgSet("-whitelist")) { if (gArgs.IsArgSet("-whitelist")) {
BOOST_FOREACH(const std::string& net, gArgs.GetArgs("-whitelist")) { for (const std::string& net : gArgs.GetArgs("-whitelist")) {
CSubNet subnet; CSubNet subnet;
LookupSubNet(net.c_str(), subnet); LookupSubNet(net.c_str(), subnet);
if (!subnet.IsValid()) if (!subnet.IsValid())
@ -1349,7 +1349,7 @@ bool AppInitMain(boost::thread_group& threadGroup, CScheduler& scheduler)
if (fListen) { if (fListen) {
bool fBound = false; bool fBound = false;
if (gArgs.IsArgSet("-bind")) { if (gArgs.IsArgSet("-bind")) {
BOOST_FOREACH(const std::string& strBind, gArgs.GetArgs("-bind")) { for (const std::string& strBind : gArgs.GetArgs("-bind")) {
CService addrBind; CService addrBind;
if (!Lookup(strBind.c_str(), addrBind, GetListenPort(), false)) if (!Lookup(strBind.c_str(), addrBind, GetListenPort(), false))
return InitError(ResolveErrMsg("bind", strBind)); return InitError(ResolveErrMsg("bind", strBind));
@ -1357,7 +1357,7 @@ bool AppInitMain(boost::thread_group& threadGroup, CScheduler& scheduler)
} }
} }
if (gArgs.IsArgSet("-whitebind")) { if (gArgs.IsArgSet("-whitebind")) {
BOOST_FOREACH(const std::string& strBind, gArgs.GetArgs("-whitebind")) { for (const std::string& strBind : gArgs.GetArgs("-whitebind")) {
CService addrBind; CService addrBind;
if (!Lookup(strBind.c_str(), addrBind, 0, false)) if (!Lookup(strBind.c_str(), addrBind, 0, false))
return InitError(ResolveErrMsg("whitebind", strBind)); return InitError(ResolveErrMsg("whitebind", strBind));
@ -1377,7 +1377,7 @@ bool AppInitMain(boost::thread_group& threadGroup, CScheduler& scheduler)
} }
if (gArgs.IsArgSet("-externalip")) { if (gArgs.IsArgSet("-externalip")) {
BOOST_FOREACH(const std::string& strAddr, gArgs.GetArgs("-externalip")) { for (const std::string& strAddr : gArgs.GetArgs("-externalip")) {
CService addrLocal; CService addrLocal;
if (Lookup(strAddr.c_str(), addrLocal, GetListenPort(), fNameLookup) && addrLocal.IsValid()) if (Lookup(strAddr.c_str(), addrLocal, GetListenPort(), fNameLookup) && addrLocal.IsValid())
AddLocal(addrLocal, LOCAL_MANUAL); AddLocal(addrLocal, LOCAL_MANUAL);
@ -1616,7 +1616,7 @@ bool AppInitMain(boost::thread_group& threadGroup, CScheduler& scheduler)
std::vector<fs::path> vImportFiles; std::vector<fs::path> vImportFiles;
if (gArgs.IsArgSet("-loadblock")) if (gArgs.IsArgSet("-loadblock"))
{ {
BOOST_FOREACH(const std::string& strFile, gArgs.GetArgs("-loadblock")) for (const std::string& strFile : gArgs.GetArgs("-loadblock"))
vImportFiles.push_back(strFile); vImportFiles.push_back(strFile);
} }

6
src/miner.cpp

@ -242,7 +242,7 @@ bool BlockAssembler::TestPackage(uint64_t packageSize, int64_t packageSigOpsCost
bool BlockAssembler::TestPackageTransactions(const CTxMemPool::setEntries& package) bool BlockAssembler::TestPackageTransactions(const CTxMemPool::setEntries& package)
{ {
uint64_t nPotentialBlockSize = nBlockSize; // only used with fNeedSizeAccounting uint64_t nPotentialBlockSize = nBlockSize; // only used with fNeedSizeAccounting
BOOST_FOREACH (const CTxMemPool::txiter it, package) { for (const CTxMemPool::txiter it : package) {
if (!IsFinalTx(it->GetTx(), nHeight, nLockTimeCutoff)) if (!IsFinalTx(it->GetTx(), nHeight, nLockTimeCutoff))
return false; return false;
if (!fIncludeWitness && it->GetTx().HasWitness()) if (!fIncludeWitness && it->GetTx().HasWitness())
@ -284,11 +284,11 @@ int BlockAssembler::UpdatePackagesForAdded(const CTxMemPool::setEntries& already
indexed_modified_transaction_set &mapModifiedTx) indexed_modified_transaction_set &mapModifiedTx)
{ {
int nDescendantsUpdated = 0; int nDescendantsUpdated = 0;
BOOST_FOREACH(const CTxMemPool::txiter it, alreadyAdded) { for (const CTxMemPool::txiter it : alreadyAdded) {
CTxMemPool::setEntries descendants; CTxMemPool::setEntries descendants;
mempool.CalculateDescendants(it, descendants); mempool.CalculateDescendants(it, descendants);
// Insert all descendants (not yet in block) into the modified set // Insert all descendants (not yet in block) into the modified set
BOOST_FOREACH(CTxMemPool::txiter desc, descendants) { for (CTxMemPool::txiter desc : descendants) {
if (alreadyAdded.count(desc)) if (alreadyAdded.count(desc))
continue; continue;
++nDescendantsUpdated; ++nDescendantsUpdated;

68
src/net.cpp

@ -295,7 +295,7 @@ bool IsReachable(const CNetAddr& addr)
CNode* CConnman::FindNode(const CNetAddr& ip) CNode* CConnman::FindNode(const CNetAddr& ip)
{ {
LOCK(cs_vNodes); LOCK(cs_vNodes);
BOOST_FOREACH(CNode* pnode, vNodes) for (CNode* pnode : vNodes)
if ((CNetAddr)pnode->addr == ip) if ((CNetAddr)pnode->addr == ip)
return (pnode); return (pnode);
return NULL; return NULL;
@ -304,7 +304,7 @@ CNode* CConnman::FindNode(const CNetAddr& ip)
CNode* CConnman::FindNode(const CSubNet& subNet) CNode* CConnman::FindNode(const CSubNet& subNet)
{ {
LOCK(cs_vNodes); LOCK(cs_vNodes);
BOOST_FOREACH(CNode* pnode, vNodes) for (CNode* pnode : vNodes)
if (subNet.Match((CNetAddr)pnode->addr)) if (subNet.Match((CNetAddr)pnode->addr))
return (pnode); return (pnode);
return NULL; return NULL;
@ -313,7 +313,7 @@ CNode* CConnman::FindNode(const CSubNet& subNet)
CNode* CConnman::FindNode(const std::string& addrName) CNode* CConnman::FindNode(const std::string& addrName)
{ {
LOCK(cs_vNodes); LOCK(cs_vNodes);
BOOST_FOREACH(CNode* pnode, vNodes) { for (CNode* pnode : vNodes) {
if (pnode->GetAddrName() == addrName) { if (pnode->GetAddrName() == addrName) {
return (pnode); return (pnode);
} }
@ -324,7 +324,7 @@ CNode* CConnman::FindNode(const std::string& addrName)
CNode* CConnman::FindNode(const CService& addr) CNode* CConnman::FindNode(const CService& addr)
{ {
LOCK(cs_vNodes); LOCK(cs_vNodes);
BOOST_FOREACH(CNode* pnode, vNodes) for (CNode* pnode : vNodes)
if ((CService)pnode->addr == addr) if ((CService)pnode->addr == addr)
return (pnode); return (pnode);
return NULL; return NULL;
@ -333,7 +333,7 @@ CNode* CConnman::FindNode(const CService& addr)
bool CConnman::CheckIncomingNonce(uint64_t nonce) bool CConnman::CheckIncomingNonce(uint64_t nonce)
{ {
LOCK(cs_vNodes); LOCK(cs_vNodes);
BOOST_FOREACH(CNode* pnode, vNodes) { for (CNode* pnode : vNodes) {
if (!pnode->fSuccessfullyConnected && !pnode->fInbound && pnode->GetLocalNonce() == nonce) if (!pnode->fSuccessfullyConnected && !pnode->fInbound && pnode->GetLocalNonce() == nonce)
return false; return false;
} }
@ -528,7 +528,7 @@ void CConnman::Ban(const CSubNet& subNet, const BanReason &banReason, int64_t ba
clientInterface->BannedListChanged(); clientInterface->BannedListChanged();
{ {
LOCK(cs_vNodes); LOCK(cs_vNodes);
BOOST_FOREACH(CNode* pnode, vNodes) { for (CNode* pnode : vNodes) {
if (subNet.Match((CNetAddr)pnode->addr)) if (subNet.Match((CNetAddr)pnode->addr))
pnode->fDisconnect = true; pnode->fDisconnect = true;
} }
@ -606,7 +606,7 @@ void CConnman::SetBannedSetDirty(bool dirty)
bool CConnman::IsWhitelistedRange(const CNetAddr &addr) { bool CConnman::IsWhitelistedRange(const CNetAddr &addr) {
LOCK(cs_vWhitelistedRange); LOCK(cs_vWhitelistedRange);
BOOST_FOREACH(const CSubNet& subnet, vWhitelistedRange) { for (const CSubNet& subnet : vWhitelistedRange) {
if (subnet.Match(addr)) if (subnet.Match(addr))
return true; return true;
} }
@ -959,7 +959,7 @@ bool CConnman::AttemptToEvictConnection()
{ {
LOCK(cs_vNodes); LOCK(cs_vNodes);
BOOST_FOREACH(CNode *node, vNodes) { for (CNode *node : vNodes) {
if (node->fWhitelisted) if (node->fWhitelisted)
continue; continue;
if (!node->fInbound) if (!node->fInbound)
@ -1019,7 +1019,7 @@ bool CConnman::AttemptToEvictConnection()
unsigned int nMostConnections = 0; unsigned int nMostConnections = 0;
int64_t nMostConnectionsTime = 0; int64_t nMostConnectionsTime = 0;
std::map<uint64_t, std::vector<NodeEvictionCandidate> > mapNetGroupNodes; std::map<uint64_t, std::vector<NodeEvictionCandidate> > mapNetGroupNodes;
BOOST_FOREACH(const NodeEvictionCandidate &node, vEvictionCandidates) { for (const NodeEvictionCandidate &node : vEvictionCandidates) {
mapNetGroupNodes[node.nKeyedNetGroup].push_back(node); mapNetGroupNodes[node.nKeyedNetGroup].push_back(node);
int64_t grouptime = mapNetGroupNodes[node.nKeyedNetGroup][0].nTimeConnected; int64_t grouptime = mapNetGroupNodes[node.nKeyedNetGroup][0].nTimeConnected;
size_t groupsize = mapNetGroupNodes[node.nKeyedNetGroup].size(); size_t groupsize = mapNetGroupNodes[node.nKeyedNetGroup].size();
@ -1063,7 +1063,7 @@ void CConnman::AcceptConnection(const ListenSocket& hListenSocket) {
bool whitelisted = hListenSocket.whitelisted || IsWhitelistedRange(addr); bool whitelisted = hListenSocket.whitelisted || IsWhitelistedRange(addr);
{ {
LOCK(cs_vNodes); LOCK(cs_vNodes);
BOOST_FOREACH(CNode* pnode, vNodes) for (CNode* pnode : vNodes)
if (pnode->fInbound) if (pnode->fInbound)
nInbound++; nInbound++;
} }
@ -1139,7 +1139,7 @@ void CConnman::ThreadSocketHandler()
LOCK(cs_vNodes); LOCK(cs_vNodes);
// Disconnect unused nodes // Disconnect unused nodes
std::vector<CNode*> vNodesCopy = vNodes; std::vector<CNode*> vNodesCopy = vNodes;
BOOST_FOREACH(CNode* pnode, vNodesCopy) for (CNode* pnode : vNodesCopy)
{ {
if (pnode->fDisconnect) if (pnode->fDisconnect)
{ {
@ -1161,7 +1161,7 @@ void CConnman::ThreadSocketHandler()
{ {
// Delete disconnected nodes // Delete disconnected nodes
std::list<CNode*> vNodesDisconnectedCopy = vNodesDisconnected; std::list<CNode*> vNodesDisconnectedCopy = vNodesDisconnected;
BOOST_FOREACH(CNode* pnode, vNodesDisconnectedCopy) for (CNode* pnode : vNodesDisconnectedCopy)
{ {
// wait until threads are done using it // wait until threads are done using it
if (pnode->GetRefCount() <= 0) { if (pnode->GetRefCount() <= 0) {
@ -1209,7 +1209,7 @@ void CConnman::ThreadSocketHandler()
SOCKET hSocketMax = 0; SOCKET hSocketMax = 0;
bool have_fds = false; bool have_fds = false;
BOOST_FOREACH(const ListenSocket& hListenSocket, vhListenSocket) { for (const ListenSocket& hListenSocket : vhListenSocket) {
FD_SET(hListenSocket.socket, &fdsetRecv); FD_SET(hListenSocket.socket, &fdsetRecv);
hSocketMax = std::max(hSocketMax, hListenSocket.socket); hSocketMax = std::max(hSocketMax, hListenSocket.socket);
have_fds = true; have_fds = true;
@ -1217,7 +1217,7 @@ void CConnman::ThreadSocketHandler()
{ {
LOCK(cs_vNodes); LOCK(cs_vNodes);
BOOST_FOREACH(CNode* pnode, vNodes) for (CNode* pnode : vNodes)
{ {
// Implement the following logic: // Implement the following logic:
// * If there is data to send, select() for sending data. As this only // * If there is data to send, select() for sending data. As this only
@ -1278,7 +1278,7 @@ void CConnman::ThreadSocketHandler()
// //
// Accept new connections // Accept new connections
// //
BOOST_FOREACH(const ListenSocket& hListenSocket, vhListenSocket) for (const ListenSocket& hListenSocket : vhListenSocket)
{ {
if (hListenSocket.socket != INVALID_SOCKET && FD_ISSET(hListenSocket.socket, &fdsetRecv)) if (hListenSocket.socket != INVALID_SOCKET && FD_ISSET(hListenSocket.socket, &fdsetRecv))
{ {
@ -1293,10 +1293,10 @@ void CConnman::ThreadSocketHandler()
{ {
LOCK(cs_vNodes); LOCK(cs_vNodes);
vNodesCopy = vNodes; vNodesCopy = vNodes;
BOOST_FOREACH(CNode* pnode, vNodesCopy) for (CNode* pnode : vNodesCopy)
pnode->AddRef(); pnode->AddRef();
} }
BOOST_FOREACH(CNode* pnode, vNodesCopy) for (CNode* pnode : vNodesCopy)
{ {
if (interruptNet) if (interruptNet)
return; return;
@ -1417,7 +1417,7 @@ void CConnman::ThreadSocketHandler()
} }
{ {
LOCK(cs_vNodes); LOCK(cs_vNodes);
BOOST_FOREACH(CNode* pnode, vNodesCopy) for (CNode* pnode : vNodesCopy)
pnode->Release(); pnode->Release();
} }
} }
@ -1598,7 +1598,7 @@ void CConnman::ThreadDNSAddressSeed()
LogPrintf("Loading addresses from DNS seeds (could take a while)\n"); LogPrintf("Loading addresses from DNS seeds (could take a while)\n");
BOOST_FOREACH(const CDNSSeedData &seed, vSeeds) { for (const CDNSSeedData &seed : vSeeds) {
if (interruptNet) { if (interruptNet) {
return; return;
} }
@ -1610,7 +1610,7 @@ void CConnman::ThreadDNSAddressSeed()
ServiceFlags requiredServiceBits = nRelevantServices; ServiceFlags requiredServiceBits = nRelevantServices;
if (LookupHost(GetDNSHost(seed, &requiredServiceBits).c_str(), vIPs, 0, true)) if (LookupHost(GetDNSHost(seed, &requiredServiceBits).c_str(), vIPs, 0, true))
{ {
BOOST_FOREACH(const CNetAddr& ip, vIPs) for (const CNetAddr& ip : vIPs)
{ {
int nOneDay = 24*3600; int nOneDay = 24*3600;
CAddress addr = CAddress(CService(ip, Params().GetDefaultPort()), requiredServiceBits); CAddress addr = CAddress(CService(ip, Params().GetDefaultPort()), requiredServiceBits);
@ -1691,7 +1691,7 @@ void CConnman::ThreadOpenConnections()
for (int64_t nLoop = 0;; nLoop++) for (int64_t nLoop = 0;; nLoop++)
{ {
ProcessOneShot(); ProcessOneShot();
BOOST_FOREACH(const std::string& strAddr, gArgs.GetArgs("-connect")) for (const std::string& strAddr : gArgs.GetArgs("-connect"))
{ {
CAddress addr(CService(), NODE_NONE); CAddress addr(CService(), NODE_NONE);
OpenNetworkConnection(addr, false, NULL, strAddr.c_str()); OpenNetworkConnection(addr, false, NULL, strAddr.c_str());
@ -1746,7 +1746,7 @@ void CConnman::ThreadOpenConnections()
std::set<std::vector<unsigned char> > setConnected; std::set<std::vector<unsigned char> > setConnected;
{ {
LOCK(cs_vNodes); LOCK(cs_vNodes);
BOOST_FOREACH(CNode* pnode, vNodes) { for (CNode* pnode : vNodes) {
if (!pnode->fInbound && !pnode->fAddnode) { if (!pnode->fInbound && !pnode->fAddnode) {
// Count the peers that have all relevant services // Count the peers that have all relevant services
@ -1863,7 +1863,7 @@ std::vector<AddedNodeInfo> CConnman::GetAddedNodeInfo()
{ {
LOCK(cs_vAddedNodes); LOCK(cs_vAddedNodes);
ret.reserve(vAddedNodes.size()); ret.reserve(vAddedNodes.size());
BOOST_FOREACH(const std::string& strAddNode, vAddedNodes) for (const std::string& strAddNode : vAddedNodes)
lAddresses.push_back(strAddNode); lAddresses.push_back(strAddNode);
} }
@ -1884,7 +1884,7 @@ std::vector<AddedNodeInfo> CConnman::GetAddedNodeInfo()
} }
} }
BOOST_FOREACH(const std::string& strAddNode, lAddresses) { for (const std::string& strAddNode : lAddresses) {
CService service(LookupNumeric(strAddNode.c_str(), Params().GetDefaultPort())); CService service(LookupNumeric(strAddNode.c_str(), Params().GetDefaultPort()));
if (service.IsValid()) { if (service.IsValid()) {
// strAddNode is an IP:port // strAddNode is an IP:port
@ -1993,14 +1993,14 @@ void CConnman::ThreadMessageHandler()
{ {
LOCK(cs_vNodes); LOCK(cs_vNodes);
vNodesCopy = vNodes; vNodesCopy = vNodes;
BOOST_FOREACH(CNode* pnode, vNodesCopy) { for (CNode* pnode : vNodesCopy) {
pnode->AddRef(); pnode->AddRef();
} }
} }
bool fMoreWork = false; bool fMoreWork = false;
BOOST_FOREACH(CNode* pnode, vNodesCopy) for (CNode* pnode : vNodesCopy)
{ {
if (pnode->fDisconnect) if (pnode->fDisconnect)
continue; continue;
@ -2022,7 +2022,7 @@ void CConnman::ThreadMessageHandler()
{ {
LOCK(cs_vNodes); LOCK(cs_vNodes);
BOOST_FOREACH(CNode* pnode, vNodesCopy) for (CNode* pnode : vNodesCopy)
pnode->Release(); pnode->Release();
} }
@ -2150,7 +2150,7 @@ void Discover(boost::thread_group& threadGroup)
std::vector<CNetAddr> vaddr; std::vector<CNetAddr> vaddr;
if (LookupHost(pszHostName, vaddr, 0, true)) if (LookupHost(pszHostName, vaddr, 0, true))
{ {
BOOST_FOREACH (const CNetAddr &addr, vaddr) for (const CNetAddr &addr : vaddr)
{ {
if (AddLocal(addr, LOCAL_IF)) if (AddLocal(addr, LOCAL_IF))
LogPrintf("%s: %s - %s\n", __func__, pszHostName, addr.ToString()); LogPrintf("%s: %s - %s\n", __func__, pszHostName, addr.ToString());
@ -2197,7 +2197,7 @@ void CConnman::SetNetworkActive(bool active)
LOCK(cs_vNodes); LOCK(cs_vNodes);
// Close sockets to all nodes // Close sockets to all nodes
BOOST_FOREACH(CNode* pnode, vNodes) { for (CNode* pnode : vNodes) {
pnode->CloseSocketDisconnect(); pnode->CloseSocketDisconnect();
} }
} else { } else {
@ -2399,18 +2399,18 @@ void CConnman::Stop()
} }
// Close sockets // Close sockets
BOOST_FOREACH(CNode* pnode, vNodes) for (CNode* pnode : vNodes)
pnode->CloseSocketDisconnect(); pnode->CloseSocketDisconnect();
BOOST_FOREACH(ListenSocket& hListenSocket, vhListenSocket) for (ListenSocket& hListenSocket : vhListenSocket)
if (hListenSocket.socket != INVALID_SOCKET) if (hListenSocket.socket != INVALID_SOCKET)
if (!CloseSocket(hListenSocket.socket)) if (!CloseSocket(hListenSocket.socket))
LogPrintf("CloseSocket(hListenSocket) failed with error %s\n", NetworkErrorString(WSAGetLastError())); LogPrintf("CloseSocket(hListenSocket) failed with error %s\n", NetworkErrorString(WSAGetLastError()));
// clean up some globals (to help leak detection) // clean up some globals (to help leak detection)
BOOST_FOREACH(CNode *pnode, vNodes) { for (CNode *pnode : vNodes) {
DeleteNode(pnode); DeleteNode(pnode);
} }
BOOST_FOREACH(CNode *pnode, vNodesDisconnected) { for (CNode *pnode : vNodesDisconnected) {
DeleteNode(pnode); DeleteNode(pnode);
} }
vNodes.clear(); vNodes.clear();
@ -2722,7 +2722,7 @@ CNode::CNode(NodeId idIn, ServiceFlags nLocalServicesIn, int nMyStartingHeightIn
fPauseSend = false; fPauseSend = false;
nProcessQueueSize = 0; nProcessQueueSize = 0;
BOOST_FOREACH(const std::string &msg, getAllNetMessageTypes()) for (const std::string &msg : getAllNetMessageTypes())
mapRecvBytesPerMsgCmd[msg] = 0; mapRecvBytesPerMsgCmd[msg] = 0;
mapRecvBytesPerMsgCmd[NET_MESSAGE_COMMAND_OTHER] = 0; mapRecvBytesPerMsgCmd[NET_MESSAGE_COMMAND_OTHER] = 0;

34
src/net_processing.cpp

@ -287,7 +287,7 @@ void FinalizeNode(NodeId nodeid, bool& fUpdateConnectionTime) {
fUpdateConnectionTime = true; fUpdateConnectionTime = true;
} }
BOOST_FOREACH(const QueuedBlock& entry, state->vBlocksInFlight) { for (const QueuedBlock& entry : state->vBlocksInFlight) {
mapBlocksInFlight.erase(entry.hash); mapBlocksInFlight.erase(entry.hash);
} }
EraseOrphansFor(nodeid); EraseOrphansFor(nodeid);
@ -522,7 +522,7 @@ void FindNextBlocksToDownload(NodeId nodeid, unsigned int count, std::vector<con
// are not yet downloaded and not in flight to vBlocks. In the mean time, update // are not yet downloaded and not in flight to vBlocks. In the mean time, update
// pindexLastCommonBlock as long as all ancestors are already downloaded, or if it's // pindexLastCommonBlock as long as all ancestors are already downloaded, or if it's
// already part of our chain (and therefore don't need it even if pruned). // already part of our chain (and therefore don't need it even if pruned).
BOOST_FOREACH(const CBlockIndex* pindex, vToFetch) { for (const CBlockIndex* pindex : vToFetch) {
if (!pindex->IsValid(BLOCK_VALID_TREE)) { if (!pindex->IsValid(BLOCK_VALID_TREE)) {
// We consider the chain that this peer is on invalid. // We consider the chain that this peer is on invalid.
return; return;
@ -566,7 +566,7 @@ bool GetNodeStateStats(NodeId nodeid, CNodeStateStats &stats) {
stats.nMisbehavior = state->nMisbehavior; stats.nMisbehavior = state->nMisbehavior;
stats.nSyncHeight = state->pindexBestKnownBlock ? state->pindexBestKnownBlock->nHeight : -1; stats.nSyncHeight = state->pindexBestKnownBlock ? state->pindexBestKnownBlock->nHeight : -1;
stats.nCommonHeight = state->pindexLastCommonBlock ? state->pindexLastCommonBlock->nHeight : -1; stats.nCommonHeight = state->pindexLastCommonBlock ? state->pindexLastCommonBlock->nHeight : -1;
BOOST_FOREACH(const QueuedBlock& queue, state->vBlocksInFlight) { for (const QueuedBlock& queue : state->vBlocksInFlight) {
if (queue.pindex) if (queue.pindex)
stats.vHeightInFlight.push_back(queue.pindex->nHeight); stats.vHeightInFlight.push_back(queue.pindex->nHeight);
} }
@ -627,7 +627,7 @@ bool AddOrphanTx(const CTransactionRef& tx, NodeId peer) EXCLUSIVE_LOCKS_REQUIRE
auto ret = mapOrphanTransactions.emplace(hash, COrphanTx{tx, peer, GetTime() + ORPHAN_TX_EXPIRE_TIME}); auto ret = mapOrphanTransactions.emplace(hash, COrphanTx{tx, peer, GetTime() + ORPHAN_TX_EXPIRE_TIME});
assert(ret.second); assert(ret.second);
BOOST_FOREACH(const CTxIn& txin, tx->vin) { for (const CTxIn& txin : tx->vin) {
mapOrphanTransactionsByPrev[txin.prevout].insert(ret.first); mapOrphanTransactionsByPrev[txin.prevout].insert(ret.first);
} }
@ -643,7 +643,7 @@ int static EraseOrphanTx(uint256 hash) EXCLUSIVE_LOCKS_REQUIRED(cs_main)
std::map<uint256, COrphanTx>::iterator it = mapOrphanTransactions.find(hash); std::map<uint256, COrphanTx>::iterator it = mapOrphanTransactions.find(hash);
if (it == mapOrphanTransactions.end()) if (it == mapOrphanTransactions.end())
return 0; return 0;
BOOST_FOREACH(const CTxIn& txin, it->second.tx->vin) for (const CTxIn& txin : it->second.tx->vin)
{ {
auto itPrev = mapOrphanTransactionsByPrev.find(txin.prevout); auto itPrev = mapOrphanTransactionsByPrev.find(txin.prevout);
if (itPrev == mapOrphanTransactionsByPrev.end()) if (itPrev == mapOrphanTransactionsByPrev.end())
@ -768,7 +768,7 @@ void PeerLogicValidation::BlockConnected(const std::shared_ptr<const CBlock>& pb
// Erase orphan transactions include or precluded by this block // Erase orphan transactions include or precluded by this block
if (vOrphanErase.size()) { if (vOrphanErase.size()) {
int nErased = 0; int nErased = 0;
BOOST_FOREACH(uint256 &orphanHash, vOrphanErase) { for (uint256 &orphanHash : vOrphanErase) {
nErased += EraseOrphanTx(orphanHash); nErased += EraseOrphanTx(orphanHash);
} }
LogPrint(BCLog::MEMPOOL, "Erased %d orphan tx included or conflicted by block\n", nErased); LogPrint(BCLog::MEMPOOL, "Erased %d orphan tx included or conflicted by block\n", nErased);
@ -1078,7 +1078,7 @@ void static ProcessGetData(CNode* pfrom, const Consensus::Params& consensusParam
// Thus, the protocol spec specified allows for us to provide duplicate txn here, // Thus, the protocol spec specified allows for us to provide duplicate txn here,
// however we MUST always provide at least what the remote peer needs // however we MUST always provide at least what the remote peer needs
typedef std::pair<unsigned int, uint256> PairType; typedef std::pair<unsigned int, uint256> PairType;
BOOST_FOREACH(PairType& pair, merkleBlock.vMatchedTxn) for (PairType& pair : merkleBlock.vMatchedTxn)
connman.PushMessage(pfrom, msgMaker.Make(SERIALIZE_TRANSACTION_NO_WITNESS, NetMsgType::TX, *pblock->vtx[pair.first])); connman.PushMessage(pfrom, msgMaker.Make(SERIALIZE_TRANSACTION_NO_WITNESS, NetMsgType::TX, *pblock->vtx[pair.first]));
} }
// else // else
@ -1473,7 +1473,7 @@ bool static ProcessMessage(CNode* pfrom, const std::string& strCommand, CDataStr
std::vector<CAddress> vAddrOk; std::vector<CAddress> vAddrOk;
int64_t nNow = GetAdjustedTime(); int64_t nNow = GetAdjustedTime();
int64_t nSince = nNow - 10 * 60; int64_t nSince = nNow - 10 * 60;
BOOST_FOREACH(CAddress& addr, vAddr) for (CAddress& addr : vAddr)
{ {
if (interruptMsgProc) if (interruptMsgProc)
return true; return true;
@ -1883,13 +1883,13 @@ bool static ProcessMessage(CNode* pfrom, const std::string& strCommand, CDataStr
} }
} }
BOOST_FOREACH(uint256 hash, vEraseQueue) for (uint256 hash : vEraseQueue)
EraseOrphanTx(hash); EraseOrphanTx(hash);
} }
else if (fMissingInputs) else if (fMissingInputs)
{ {
bool fRejectedParents = false; // It may be the case that the orphans parents have all been rejected bool fRejectedParents = false; // It may be the case that the orphans parents have all been rejected
BOOST_FOREACH(const CTxIn& txin, tx.vin) { for (const CTxIn& txin : tx.vin) {
if (recentRejects->contains(txin.prevout.hash)) { if (recentRejects->contains(txin.prevout.hash)) {
fRejectedParents = true; fRejectedParents = true;
break; break;
@ -1897,7 +1897,7 @@ bool static ProcessMessage(CNode* pfrom, const std::string& strCommand, CDataStr
} }
if (!fRejectedParents) { if (!fRejectedParents) {
uint32_t nFetchFlags = GetFetchFlags(pfrom); uint32_t nFetchFlags = GetFetchFlags(pfrom);
BOOST_FOREACH(const CTxIn& txin, tx.vin) { for (const CTxIn& txin : tx.vin) {
CInv _inv(MSG_TX | nFetchFlags, txin.prevout.hash); CInv _inv(MSG_TX | nFetchFlags, txin.prevout.hash);
pfrom->AddInventoryKnown(_inv); pfrom->AddInventoryKnown(_inv);
if (!AlreadyHave(_inv)) pfrom->AskFor(_inv); if (!AlreadyHave(_inv)) pfrom->AskFor(_inv);
@ -2433,7 +2433,7 @@ bool static ProcessMessage(CNode* pfrom, const std::string& strCommand, CDataStr
pfrom->vAddrToSend.clear(); pfrom->vAddrToSend.clear();
std::vector<CAddress> vAddr = connman.GetAddresses(); std::vector<CAddress> vAddr = connman.GetAddresses();
FastRandomContext insecure_rand; FastRandomContext insecure_rand;
BOOST_FOREACH(const CAddress &addr, vAddr) for (const CAddress &addr : vAddr)
pfrom->PushAddress(addr, insecure_rand); pfrom->PushAddress(addr, insecure_rand);
} }
@ -2627,7 +2627,7 @@ static bool SendRejectsAndCheckIfBanned(CNode* pnode, CConnman& connman)
AssertLockHeld(cs_main); AssertLockHeld(cs_main);
CNodeState &state = *State(pnode->GetId()); CNodeState &state = *State(pnode->GetId());
BOOST_FOREACH(const CBlockReject& reject, state.rejects) { for (const CBlockReject& reject : state.rejects) {
connman.PushMessage(pnode, CNetMsgMaker(INIT_PROTO_VERSION).Make(NetMsgType::REJECT, (std::string)NetMsgType::BLOCK, reject.chRejectCode, reject.strRejectReason, reject.hashBlock)); connman.PushMessage(pnode, CNetMsgMaker(INIT_PROTO_VERSION).Make(NetMsgType::REJECT, (std::string)NetMsgType::BLOCK, reject.chRejectCode, reject.strRejectReason, reject.hashBlock));
} }
state.rejects.clear(); state.rejects.clear();
@ -2851,7 +2851,7 @@ bool SendMessages(CNode* pto, CConnman& connman, const std::atomic<bool>& interr
pto->nNextAddrSend = PoissonNextSend(nNow, AVG_ADDRESS_BROADCAST_INTERVAL); pto->nNextAddrSend = PoissonNextSend(nNow, AVG_ADDRESS_BROADCAST_INTERVAL);
std::vector<CAddress> vAddr; std::vector<CAddress> vAddr;
vAddr.reserve(pto->vAddrToSend.size()); vAddr.reserve(pto->vAddrToSend.size());
BOOST_FOREACH(const CAddress& addr, pto->vAddrToSend) for (const CAddress& addr : pto->vAddrToSend)
{ {
if (!pto->addrKnown.contains(addr.GetKey())) if (!pto->addrKnown.contains(addr.GetKey()))
{ {
@ -2929,7 +2929,7 @@ bool SendMessages(CNode* pto, CConnman& connman, const std::atomic<bool>& interr
// Try to find first header that our peer doesn't have, and // Try to find first header that our peer doesn't have, and
// then send all headers past that one. If we come across any // then send all headers past that one. If we come across any
// headers that aren't on chainActive, give up. // headers that aren't on chainActive, give up.
BOOST_FOREACH(const uint256 &hash, pto->vBlockHashesToAnnounce) { for (const uint256 &hash : pto->vBlockHashesToAnnounce) {
BlockMap::iterator mi = mapBlockIndex.find(hash); BlockMap::iterator mi = mapBlockIndex.find(hash);
assert(mi != mapBlockIndex.end()); assert(mi != mapBlockIndex.end());
const CBlockIndex *pindex = mi->second; const CBlockIndex *pindex = mi->second;
@ -3055,7 +3055,7 @@ bool SendMessages(CNode* pto, CConnman& connman, const std::atomic<bool>& interr
vInv.reserve(std::max<size_t>(pto->vInventoryBlockToSend.size(), INVENTORY_BROADCAST_MAX)); vInv.reserve(std::max<size_t>(pto->vInventoryBlockToSend.size(), INVENTORY_BROADCAST_MAX));
// Add blocks // Add blocks
BOOST_FOREACH(const uint256& hash, pto->vInventoryBlockToSend) { for (const uint256& hash : pto->vInventoryBlockToSend) {
vInv.push_back(CInv(MSG_BLOCK, hash)); vInv.push_back(CInv(MSG_BLOCK, hash));
if (vInv.size() == MAX_INV_SZ) { if (vInv.size() == MAX_INV_SZ) {
connman.PushMessage(pto, msgMaker.Make(NetMsgType::INV, vInv)); connman.PushMessage(pto, msgMaker.Make(NetMsgType::INV, vInv));
@ -3213,7 +3213,7 @@ bool SendMessages(CNode* pto, CConnman& connman, const std::atomic<bool>& interr
std::vector<const CBlockIndex*> vToDownload; std::vector<const CBlockIndex*> vToDownload;
NodeId staller = -1; NodeId staller = -1;
FindNextBlocksToDownload(pto->GetId(), MAX_BLOCKS_IN_TRANSIT_PER_PEER - state.nBlocksInFlight, vToDownload, staller, consensusParams); FindNextBlocksToDownload(pto->GetId(), MAX_BLOCKS_IN_TRANSIT_PER_PEER - state.nBlocksInFlight, vToDownload, staller, consensusParams);
BOOST_FOREACH(const CBlockIndex *pindex, vToDownload) { for (const CBlockIndex *pindex : vToDownload) {
uint32_t nFetchFlags = GetFetchFlags(pto); uint32_t nFetchFlags = GetFetchFlags(pto);
vGetData.push_back(CInv(MSG_BLOCK | nFetchFlags, pindex->GetBlockHash())); vGetData.push_back(CInv(MSG_BLOCK | nFetchFlags, pindex->GetBlockHash()));
MarkBlockAsInFlight(pto->GetId(), pindex->GetBlockHash(), pindex); MarkBlockAsInFlight(pto->GetId(), pindex->GetBlockHash(), pindex);

4
src/policy/policy.cpp

@ -111,7 +111,7 @@ bool IsStandardTx(const CTransaction& tx, std::string& reason, const bool witnes
return false; return false;
} }
BOOST_FOREACH(const CTxIn& txin, tx.vin) for (const CTxIn& txin : tx.vin)
{ {
// Biggest 'standard' txin is a 15-of-15 P2SH multisig with compressed // Biggest 'standard' txin is a 15-of-15 P2SH multisig with compressed
// keys (remember the 520 byte limit on redeemScript size). That works // keys (remember the 520 byte limit on redeemScript size). That works
@ -132,7 +132,7 @@ bool IsStandardTx(const CTransaction& tx, std::string& reason, const bool witnes
unsigned int nDataOut = 0; unsigned int nDataOut = 0;
txnouttype whichType; txnouttype whichType;
BOOST_FOREACH(const CTxOut& txout, tx.vout) { for (const CTxOut& txout : tx.vout) {
if (!::IsStandard(txout.scriptPubKey, whichType, witnessEnabled)) { if (!::IsStandard(txout.scriptPubKey, whichType, witnessEnabled)) {
reason = "scriptpubkey"; reason = "scriptpubkey";
return false; return false;

4
src/policy/rbf.cpp

@ -6,7 +6,7 @@
bool SignalsOptInRBF(const CTransaction &tx) bool SignalsOptInRBF(const CTransaction &tx)
{ {
BOOST_FOREACH(const CTxIn &txin, tx.vin) { for (const CTxIn &txin : tx.vin) {
if (txin.nSequence < std::numeric_limits<unsigned int>::max()-1) { if (txin.nSequence < std::numeric_limits<unsigned int>::max()-1) {
return true; return true;
} }
@ -38,7 +38,7 @@ RBFTransactionState IsRBFOptIn(const CTransaction &tx, CTxMemPool &pool)
CTxMemPoolEntry entry = *pool.mapTx.find(tx.GetHash()); CTxMemPoolEntry entry = *pool.mapTx.find(tx.GetHash());
pool.CalculateMemPoolAncestors(entry, setAncestors, noLimit, noLimit, noLimit, noLimit, dummy, false); pool.CalculateMemPoolAncestors(entry, setAncestors, noLimit, noLimit, noLimit, noLimit, dummy, false);
BOOST_FOREACH(CTxMemPool::txiter it, setAncestors) { for (CTxMemPool::txiter it : setAncestors) {
if (SignalsOptInRBF(it->GetTx())) { if (SignalsOptInRBF(it->GetTx())) {
return RBF_TRANSACTIONSTATE_REPLACEABLE_BIP125; return RBF_TRANSACTIONSTATE_REPLACEABLE_BIP125;
} }

2
src/qt/addresstablemodel.cpp

@ -81,7 +81,7 @@ public:
cachedAddressTable.clear(); cachedAddressTable.clear();
{ {
LOCK(wallet->cs_wallet); LOCK(wallet->cs_wallet);
BOOST_FOREACH(const PAIRTYPE(CTxDestination, CAddressBookData)& item, wallet->mapAddressBook) for (const PAIRTYPE(CTxDestination, CAddressBookData)& item : wallet->mapAddressBook)
{ {
const CBitcoinAddress& address = item.first; const CBitcoinAddress& address = item.first;
bool fMine = IsMine(*wallet, address.Get()); bool fMine = IsMine(*wallet, address.Get());

6
src/qt/coincontroldialog.cpp

@ -452,7 +452,7 @@ void CoinControlDialog::updateLabels(WalletModel *model, QDialog* dialog)
coinControl->ListSelected(vCoinControl); coinControl->ListSelected(vCoinControl);
model->getOutputs(vCoinControl, vOutputs); model->getOutputs(vCoinControl, vOutputs);
BOOST_FOREACH(const COutput& out, vOutputs) { for (const COutput& out : vOutputs) {
// unselect already spent, very unlikely scenario, this could happen // unselect already spent, very unlikely scenario, this could happen
// when selected are spent elsewhere, like rpc or another computer // when selected are spent elsewhere, like rpc or another computer
uint256 txhash = out.tx->GetHash(); uint256 txhash = out.tx->GetHash();
@ -628,7 +628,7 @@ void CoinControlDialog::updateView()
std::map<QString, std::vector<COutput> > mapCoins; std::map<QString, std::vector<COutput> > mapCoins;
model->listCoins(mapCoins); model->listCoins(mapCoins);
BOOST_FOREACH(const PAIRTYPE(QString, std::vector<COutput>)& coins, mapCoins) { for (const PAIRTYPE(QString, std::vector<COutput>)& coins : mapCoins) {
CCoinControlWidgetItem *itemWalletAddress = new CCoinControlWidgetItem(); CCoinControlWidgetItem *itemWalletAddress = new CCoinControlWidgetItem();
itemWalletAddress->setCheckState(COLUMN_CHECKBOX, Qt::Unchecked); itemWalletAddress->setCheckState(COLUMN_CHECKBOX, Qt::Unchecked);
QString sWalletAddress = coins.first; QString sWalletAddress = coins.first;
@ -653,7 +653,7 @@ void CoinControlDialog::updateView()
CAmount nSum = 0; CAmount nSum = 0;
int nChildren = 0; int nChildren = 0;
BOOST_FOREACH(const COutput& out, coins.second) { for (const COutput& out : coins.second) {
nSum += out.tx->tx->vout[out.i].nValue; nSum += out.tx->tx->vout[out.i].nValue;
nChildren++; nChildren++;

2
src/qt/peertablemodel.cpp

@ -79,7 +79,7 @@ public:
TRY_LOCK(cs_main, lockMain); TRY_LOCK(cs_main, lockMain);
if (lockMain) if (lockMain)
{ {
BOOST_FOREACH(CNodeCombinedStats &stats, cachedNodeStats) for (CNodeCombinedStats &stats : cachedNodeStats)
stats.fNodeStateStatsAvailable = GetNodeStateStats(stats.nodeStats.nodeid, stats.nodeStateStats); stats.fNodeStateStatsAvailable = GetNodeStateStats(stats.nodeStats.nodeid, stats.nodeStateStats);
} }
} }

2
src/qt/recentrequeststablemodel.cpp

@ -22,7 +22,7 @@ RecentRequestsTableModel::RecentRequestsTableModel(CWallet *wallet, WalletModel
// Load entries from wallet // Load entries from wallet
std::vector<std::string> vReceiveRequests; std::vector<std::string> vReceiveRequests;
parent->loadReceiveRequests(vReceiveRequests); parent->loadReceiveRequests(vReceiveRequests);
BOOST_FOREACH(const std::string& request, vReceiveRequests) for (const std::string& request : vReceiveRequests)
addNewRequest(request); addNewRequest(request);
/* These columns must match the indices in the ColumnIndex enumeration */ /* These columns must match the indices in the ColumnIndex enumeration */

18
src/qt/transactiondesc.cpp

@ -133,7 +133,7 @@ QString TransactionDesc::toHTML(CWallet *wallet, CWalletTx &wtx, TransactionReco
// Coinbase // Coinbase
// //
CAmount nUnmatured = 0; CAmount nUnmatured = 0;
BOOST_FOREACH(const CTxOut& txout, wtx.tx->vout) for (const CTxOut& txout : wtx.tx->vout)
nUnmatured += wallet->GetCredit(txout, ISMINE_ALL); nUnmatured += wallet->GetCredit(txout, ISMINE_ALL);
strHTML += "<b>" + tr("Credit") + ":</b> "; strHTML += "<b>" + tr("Credit") + ":</b> ";
if (wtx.IsInMainChain()) if (wtx.IsInMainChain())
@ -152,14 +152,14 @@ QString TransactionDesc::toHTML(CWallet *wallet, CWalletTx &wtx, TransactionReco
else else
{ {
isminetype fAllFromMe = ISMINE_SPENDABLE; isminetype fAllFromMe = ISMINE_SPENDABLE;
BOOST_FOREACH(const CTxIn& txin, wtx.tx->vin) for (const CTxIn& txin : wtx.tx->vin)
{ {
isminetype mine = wallet->IsMine(txin); isminetype mine = wallet->IsMine(txin);
if(fAllFromMe > mine) fAllFromMe = mine; if(fAllFromMe > mine) fAllFromMe = mine;
} }
isminetype fAllToMe = ISMINE_SPENDABLE; isminetype fAllToMe = ISMINE_SPENDABLE;
BOOST_FOREACH(const CTxOut& txout, wtx.tx->vout) for (const CTxOut& txout : wtx.tx->vout)
{ {
isminetype mine = wallet->IsMine(txout); isminetype mine = wallet->IsMine(txout);
if(fAllToMe > mine) fAllToMe = mine; if(fAllToMe > mine) fAllToMe = mine;
@ -173,7 +173,7 @@ QString TransactionDesc::toHTML(CWallet *wallet, CWalletTx &wtx, TransactionReco
// //
// Debit // Debit
// //
BOOST_FOREACH(const CTxOut& txout, wtx.tx->vout) for (const CTxOut& txout : wtx.tx->vout)
{ {
// Ignore change // Ignore change
isminetype toSelf = wallet->IsMine(txout); isminetype toSelf = wallet->IsMine(txout);
@ -221,10 +221,10 @@ QString TransactionDesc::toHTML(CWallet *wallet, CWalletTx &wtx, TransactionReco
// //
// Mixed debit transaction // Mixed debit transaction
// //
BOOST_FOREACH(const CTxIn& txin, wtx.tx->vin) for (const CTxIn& txin : wtx.tx->vin)
if (wallet->IsMine(txin)) if (wallet->IsMine(txin))
strHTML += "<b>" + tr("Debit") + ":</b> " + BitcoinUnits::formatHtmlWithUnit(unit, -wallet->GetDebit(txin, ISMINE_ALL)) + "<br>"; strHTML += "<b>" + tr("Debit") + ":</b> " + BitcoinUnits::formatHtmlWithUnit(unit, -wallet->GetDebit(txin, ISMINE_ALL)) + "<br>";
BOOST_FOREACH(const CTxOut& txout, wtx.tx->vout) for (const CTxOut& txout : wtx.tx->vout)
if (wallet->IsMine(txout)) if (wallet->IsMine(txout))
strHTML += "<b>" + tr("Credit") + ":</b> " + BitcoinUnits::formatHtmlWithUnit(unit, wallet->GetCredit(txout, ISMINE_ALL)) + "<br>"; strHTML += "<b>" + tr("Credit") + ":</b> " + BitcoinUnits::formatHtmlWithUnit(unit, wallet->GetCredit(txout, ISMINE_ALL)) + "<br>";
} }
@ -276,10 +276,10 @@ QString TransactionDesc::toHTML(CWallet *wallet, CWalletTx &wtx, TransactionReco
if (logCategories != BCLog::NONE) if (logCategories != BCLog::NONE)
{ {
strHTML += "<hr><br>" + tr("Debug information") + "<br><br>"; strHTML += "<hr><br>" + tr("Debug information") + "<br><br>";
BOOST_FOREACH(const CTxIn& txin, wtx.tx->vin) for (const CTxIn& txin : wtx.tx->vin)
if(wallet->IsMine(txin)) if(wallet->IsMine(txin))
strHTML += "<b>" + tr("Debit") + ":</b> " + BitcoinUnits::formatHtmlWithUnit(unit, -wallet->GetDebit(txin, ISMINE_ALL)) + "<br>"; strHTML += "<b>" + tr("Debit") + ":</b> " + BitcoinUnits::formatHtmlWithUnit(unit, -wallet->GetDebit(txin, ISMINE_ALL)) + "<br>";
BOOST_FOREACH(const CTxOut& txout, wtx.tx->vout) for (const CTxOut& txout : wtx.tx->vout)
if(wallet->IsMine(txout)) if(wallet->IsMine(txout))
strHTML += "<b>" + tr("Credit") + ":</b> " + BitcoinUnits::formatHtmlWithUnit(unit, wallet->GetCredit(txout, ISMINE_ALL)) + "<br>"; strHTML += "<b>" + tr("Credit") + ":</b> " + BitcoinUnits::formatHtmlWithUnit(unit, wallet->GetCredit(txout, ISMINE_ALL)) + "<br>";
@ -289,7 +289,7 @@ QString TransactionDesc::toHTML(CWallet *wallet, CWalletTx &wtx, TransactionReco
strHTML += "<br><b>" + tr("Inputs") + ":</b>"; strHTML += "<br><b>" + tr("Inputs") + ":</b>";
strHTML += "<ul>"; strHTML += "<ul>";
BOOST_FOREACH(const CTxIn& txin, wtx.tx->vin) for (const CTxIn& txin : wtx.tx->vin)
{ {
COutPoint prevout = txin.prevout; COutPoint prevout = txin.prevout;

4
src/qt/transactionrecord.cpp

@ -78,7 +78,7 @@ QList<TransactionRecord> TransactionRecord::decomposeTransaction(const CWallet *
{ {
bool involvesWatchAddress = false; bool involvesWatchAddress = false;
isminetype fAllFromMe = ISMINE_SPENDABLE; isminetype fAllFromMe = ISMINE_SPENDABLE;
BOOST_FOREACH(const CTxIn& txin, wtx.tx->vin) for (const CTxIn& txin : wtx.tx->vin)
{ {
isminetype mine = wallet->IsMine(txin); isminetype mine = wallet->IsMine(txin);
if(mine & ISMINE_WATCH_ONLY) involvesWatchAddress = true; if(mine & ISMINE_WATCH_ONLY) involvesWatchAddress = true;
@ -86,7 +86,7 @@ QList<TransactionRecord> TransactionRecord::decomposeTransaction(const CWallet *
} }
isminetype fAllToMe = ISMINE_SPENDABLE; isminetype fAllToMe = ISMINE_SPENDABLE;
BOOST_FOREACH(const CTxOut& txout, wtx.tx->vout) for (const CTxOut& txout : wtx.tx->vout)
{ {
isminetype mine = wallet->IsMine(txout); isminetype mine = wallet->IsMine(txout);
if(mine & ISMINE_WATCH_ONLY) involvesWatchAddress = true; if(mine & ISMINE_WATCH_ONLY) involvesWatchAddress = true;

2
src/qt/walletmodel.cpp

@ -574,7 +574,7 @@ bool WalletModel::getPrivKey(const CKeyID &address, CKey& vchPrivKeyOut) const
void WalletModel::getOutputs(const std::vector<COutPoint>& vOutpoints, std::vector<COutput>& vOutputs) void WalletModel::getOutputs(const std::vector<COutPoint>& vOutpoints, std::vector<COutput>& vOutputs)
{ {
LOCK2(cs_main, wallet->cs_wallet); LOCK2(cs_main, wallet->cs_wallet);
BOOST_FOREACH(const COutPoint& outpoint, vOutpoints) for (const COutPoint& outpoint : vOutpoints)
{ {
if (!wallet->mapWallet.count(outpoint.hash)) continue; if (!wallet->mapWallet.count(outpoint.hash)) continue;
int nDepth = wallet->mapWallet[outpoint.hash].GetDepthInMainChain(); int nDepth = wallet->mapWallet[outpoint.hash].GetDepthInMainChain();

6
src/rest.cpp

@ -158,7 +158,7 @@ static bool rest_headers(HTTPRequest* req,
} }
CDataStream ssHeader(SER_NETWORK, PROTOCOL_VERSION); CDataStream ssHeader(SER_NETWORK, PROTOCOL_VERSION);
BOOST_FOREACH(const CBlockIndex *pindex, headers) { for (const CBlockIndex *pindex : headers) {
ssHeader << pindex->GetBlockHeader(); ssHeader << pindex->GetBlockHeader();
} }
@ -178,7 +178,7 @@ static bool rest_headers(HTTPRequest* req,
} }
case RF_JSON: { case RF_JSON: {
UniValue jsonHeaders(UniValue::VARR); UniValue jsonHeaders(UniValue::VARR);
BOOST_FOREACH(const CBlockIndex *pindex, headers) { for (const CBlockIndex *pindex : headers) {
jsonHeaders.push_back(blockheaderToJSON(pindex)); jsonHeaders.push_back(blockheaderToJSON(pindex));
} }
std::string strJSON = jsonHeaders.write() + "\n"; std::string strJSON = jsonHeaders.write() + "\n";
@ -558,7 +558,7 @@ static bool rest_getutxos(HTTPRequest* req, const std::string& strURIPart)
objGetUTXOResponse.push_back(Pair("bitmap", bitmapStringRepresentation)); objGetUTXOResponse.push_back(Pair("bitmap", bitmapStringRepresentation));
UniValue utxos(UniValue::VARR); UniValue utxos(UniValue::VARR);
BOOST_FOREACH (const CCoin& coin, outs) { for (const CCoin& coin : outs) {
UniValue utxo(UniValue::VOBJ); UniValue utxo(UniValue::VOBJ);
utxo.push_back(Pair("height", (int32_t)coin.nHeight)); utxo.push_back(Pair("height", (int32_t)coin.nHeight));
utxo.push_back(Pair("value", ValueFromAmount(coin.out.nValue))); utxo.push_back(Pair("value", ValueFromAmount(coin.out.nValue)));

20
src/rpc/blockchain.cpp

@ -364,14 +364,14 @@ void entryToJSON(UniValue &info, const CTxMemPoolEntry &e)
info.push_back(Pair("ancestorfees", e.GetModFeesWithAncestors())); info.push_back(Pair("ancestorfees", e.GetModFeesWithAncestors()));
const CTransaction& tx = e.GetTx(); const CTransaction& tx = e.GetTx();
std::set<std::string> setDepends; std::set<std::string> setDepends;
BOOST_FOREACH(const CTxIn& txin, tx.vin) for (const CTxIn& txin : tx.vin)
{ {
if (mempool.exists(txin.prevout.hash)) if (mempool.exists(txin.prevout.hash))
setDepends.insert(txin.prevout.hash.ToString()); setDepends.insert(txin.prevout.hash.ToString());
} }
UniValue depends(UniValue::VARR); UniValue depends(UniValue::VARR);
BOOST_FOREACH(const std::string& dep, setDepends) for (const std::string& dep : setDepends)
{ {
depends.push_back(dep); depends.push_back(dep);
} }
@ -385,7 +385,7 @@ UniValue mempoolToJSON(bool fVerbose)
{ {
LOCK(mempool.cs); LOCK(mempool.cs);
UniValue o(UniValue::VOBJ); UniValue o(UniValue::VOBJ);
BOOST_FOREACH(const CTxMemPoolEntry& e, mempool.mapTx) for (const CTxMemPoolEntry& e : mempool.mapTx)
{ {
const uint256& hash = e.GetTx().GetHash(); const uint256& hash = e.GetTx().GetHash();
UniValue info(UniValue::VOBJ); UniValue info(UniValue::VOBJ);
@ -400,7 +400,7 @@ UniValue mempoolToJSON(bool fVerbose)
mempool.queryHashes(vtxid); mempool.queryHashes(vtxid);
UniValue a(UniValue::VARR); UniValue a(UniValue::VARR);
BOOST_FOREACH(const uint256& hash, vtxid) for (const uint256& hash : vtxid)
a.push_back(hash.ToString()); a.push_back(hash.ToString());
return a; return a;
@ -485,14 +485,14 @@ UniValue getmempoolancestors(const JSONRPCRequest& request)
if (!fVerbose) { if (!fVerbose) {
UniValue o(UniValue::VARR); UniValue o(UniValue::VARR);
BOOST_FOREACH(CTxMemPool::txiter ancestorIt, setAncestors) { for (CTxMemPool::txiter ancestorIt : setAncestors) {
o.push_back(ancestorIt->GetTx().GetHash().ToString()); o.push_back(ancestorIt->GetTx().GetHash().ToString());
} }
return o; return o;
} else { } else {
UniValue o(UniValue::VOBJ); UniValue o(UniValue::VOBJ);
BOOST_FOREACH(CTxMemPool::txiter ancestorIt, setAncestors) { for (CTxMemPool::txiter ancestorIt : setAncestors) {
const CTxMemPoolEntry &e = *ancestorIt; const CTxMemPoolEntry &e = *ancestorIt;
const uint256& _hash = e.GetTx().GetHash(); const uint256& _hash = e.GetTx().GetHash();
UniValue info(UniValue::VOBJ); UniValue info(UniValue::VOBJ);
@ -549,14 +549,14 @@ UniValue getmempooldescendants(const JSONRPCRequest& request)
if (!fVerbose) { if (!fVerbose) {
UniValue o(UniValue::VARR); UniValue o(UniValue::VARR);
BOOST_FOREACH(CTxMemPool::txiter descendantIt, setDescendants) { for (CTxMemPool::txiter descendantIt : setDescendants) {
o.push_back(descendantIt->GetTx().GetHash().ToString()); o.push_back(descendantIt->GetTx().GetHash().ToString());
} }
return o; return o;
} else { } else {
UniValue o(UniValue::VOBJ); UniValue o(UniValue::VOBJ);
BOOST_FOREACH(CTxMemPool::txiter descendantIt, setDescendants) { for (CTxMemPool::txiter descendantIt : setDescendants) {
const CTxMemPoolEntry &e = *descendantIt; const CTxMemPoolEntry &e = *descendantIt;
const uint256& _hash = e.GetTx().GetHash(); const uint256& _hash = e.GetTx().GetHash();
UniValue info(UniValue::VOBJ); UniValue info(UniValue::VOBJ);
@ -1256,7 +1256,7 @@ UniValue getchaintips(const JSONRPCRequest& request)
std::set<const CBlockIndex*> setOrphans; std::set<const CBlockIndex*> setOrphans;
std::set<const CBlockIndex*> setPrevs; std::set<const CBlockIndex*> setPrevs;
BOOST_FOREACH(const PAIRTYPE(const uint256, CBlockIndex*)& item, mapBlockIndex) for (const PAIRTYPE(const uint256, CBlockIndex*)& item : mapBlockIndex)
{ {
if (!chainActive.Contains(item.second)) { if (!chainActive.Contains(item.second)) {
setOrphans.insert(item.second); setOrphans.insert(item.second);
@ -1276,7 +1276,7 @@ UniValue getchaintips(const JSONRPCRequest& request)
/* Construct the output array. */ /* Construct the output array. */
UniValue res(UniValue::VARR); UniValue res(UniValue::VARR);
BOOST_FOREACH(const CBlockIndex* block, setTips) for (const CBlockIndex* block : setTips)
{ {
UniValue obj(UniValue::VOBJ); UniValue obj(UniValue::VOBJ);
obj.push_back(Pair("height", block->nHeight)); obj.push_back(Pair("height", block->nHeight));

2
src/rpc/mining.cpp

@ -580,7 +580,7 @@ UniValue getblocktemplate(const JSONRPCRequest& request)
entry.push_back(Pair("hash", tx.GetWitnessHash().GetHex())); entry.push_back(Pair("hash", tx.GetWitnessHash().GetHex()));
UniValue deps(UniValue::VARR); UniValue deps(UniValue::VARR);
BOOST_FOREACH (const CTxIn &in, tx.vin) for (const CTxIn &in : tx.vin)
{ {
if (setTxIndex.count(in.prevout.hash)) if (setTxIndex.count(in.prevout.hash))
deps.push_back(setTxIndex[in.prevout.hash]); deps.push_back(setTxIndex[in.prevout.hash]);

2
src/rpc/misc.cpp

@ -149,7 +149,7 @@ public:
obj.push_back(Pair("script", GetTxnOutputType(whichType))); obj.push_back(Pair("script", GetTxnOutputType(whichType)));
obj.push_back(Pair("hex", HexStr(subscript.begin(), subscript.end()))); obj.push_back(Pair("hex", HexStr(subscript.begin(), subscript.end())));
UniValue a(UniValue::VARR); UniValue a(UniValue::VARR);
BOOST_FOREACH(const CTxDestination& addr, addresses) for (const CTxDestination& addr : addresses)
a.push_back(CBitcoinAddress(addr).ToString()); a.push_back(CBitcoinAddress(addr).ToString());
obj.push_back(Pair("addresses", a)); obj.push_back(Pair("addresses", a));
if (whichType == TX_MULTISIG) if (whichType == TX_MULTISIG)

10
src/rpc/net.cpp

@ -126,7 +126,7 @@ UniValue getpeerinfo(const JSONRPCRequest& request)
UniValue ret(UniValue::VARR); UniValue ret(UniValue::VARR);
BOOST_FOREACH(const CNodeStats& stats, vstats) { for (const CNodeStats& stats : vstats) {
UniValue obj(UniValue::VOBJ); UniValue obj(UniValue::VOBJ);
CNodeStateStats statestats; CNodeStateStats statestats;
bool fStateStats = GetNodeStateStats(stats.nodeid, statestats); bool fStateStats = GetNodeStateStats(stats.nodeid, statestats);
@ -163,7 +163,7 @@ UniValue getpeerinfo(const JSONRPCRequest& request)
obj.push_back(Pair("synced_headers", statestats.nSyncHeight)); obj.push_back(Pair("synced_headers", statestats.nSyncHeight));
obj.push_back(Pair("synced_blocks", statestats.nCommonHeight)); obj.push_back(Pair("synced_blocks", statestats.nCommonHeight));
UniValue heights(UniValue::VARR); UniValue heights(UniValue::VARR);
BOOST_FOREACH(int height, statestats.vHeightInFlight) { for (int height : statestats.vHeightInFlight) {
heights.push_back(height); heights.push_back(height);
} }
obj.push_back(Pair("inflight", heights)); obj.push_back(Pair("inflight", heights));
@ -171,14 +171,14 @@ UniValue getpeerinfo(const JSONRPCRequest& request)
obj.push_back(Pair("whitelisted", stats.fWhitelisted)); obj.push_back(Pair("whitelisted", stats.fWhitelisted));
UniValue sendPerMsgCmd(UniValue::VOBJ); UniValue sendPerMsgCmd(UniValue::VOBJ);
BOOST_FOREACH(const mapMsgCmdSize::value_type &i, stats.mapSendBytesPerMsgCmd) { for (const mapMsgCmdSize::value_type &i : stats.mapSendBytesPerMsgCmd) {
if (i.second > 0) if (i.second > 0)
sendPerMsgCmd.push_back(Pair(i.first, i.second)); sendPerMsgCmd.push_back(Pair(i.first, i.second));
} }
obj.push_back(Pair("bytessent_per_msg", sendPerMsgCmd)); obj.push_back(Pair("bytessent_per_msg", sendPerMsgCmd));
UniValue recvPerMsgCmd(UniValue::VOBJ); UniValue recvPerMsgCmd(UniValue::VOBJ);
BOOST_FOREACH(const mapMsgCmdSize::value_type &i, stats.mapRecvBytesPerMsgCmd) { for (const mapMsgCmdSize::value_type &i : stats.mapRecvBytesPerMsgCmd) {
if (i.second > 0) if (i.second > 0)
recvPerMsgCmd.push_back(Pair(i.first, i.second)); recvPerMsgCmd.push_back(Pair(i.first, i.second));
} }
@ -474,7 +474,7 @@ UniValue getnetworkinfo(const JSONRPCRequest& request)
UniValue localAddresses(UniValue::VARR); UniValue localAddresses(UniValue::VARR);
{ {
LOCK(cs_mapLocalHost); LOCK(cs_mapLocalHost);
BOOST_FOREACH(const PAIRTYPE(CNetAddr, LocalServiceInfo) &item, mapLocalHost) for (const PAIRTYPE(CNetAddr, LocalServiceInfo) &item : mapLocalHost)
{ {
UniValue rec(UniValue::VOBJ); UniValue rec(UniValue::VOBJ);
rec.push_back(Pair("address", item.first.ToString())); rec.push_back(Pair("address", item.first.ToString()));

8
src/rpc/rawtransaction.cpp

@ -282,7 +282,7 @@ UniValue verifytxoutproof(const JSONRPCRequest& request)
if (!mapBlockIndex.count(merkleBlock.header.GetHash()) || !chainActive.Contains(mapBlockIndex[merkleBlock.header.GetHash()])) if (!mapBlockIndex.count(merkleBlock.header.GetHash()) || !chainActive.Contains(mapBlockIndex[merkleBlock.header.GetHash()]))
throw JSONRPCError(RPC_INVALID_ADDRESS_OR_KEY, "Block not found in chain"); throw JSONRPCError(RPC_INVALID_ADDRESS_OR_KEY, "Block not found in chain");
BOOST_FOREACH(const uint256& hash, vMatch) for (const uint256& hash : vMatch)
res.push_back(hash.GetHex()); res.push_back(hash.GetHex());
return res; return res;
} }
@ -373,7 +373,7 @@ UniValue createrawtransaction(const JSONRPCRequest& request)
std::set<CBitcoinAddress> setAddress; std::set<CBitcoinAddress> setAddress;
std::vector<std::string> addrList = sendTo.getKeys(); std::vector<std::string> addrList = sendTo.getKeys();
BOOST_FOREACH(const std::string& name_, addrList) { for (const std::string& name_ : addrList) {
if (name_ == "data") { if (name_ == "data") {
std::vector<unsigned char> data = ParseHexV(sendTo[name_].getValStr(),"Data"); std::vector<unsigned char> data = ParseHexV(sendTo[name_].getValStr(),"Data");
@ -637,7 +637,7 @@ UniValue signrawtransaction(const JSONRPCRequest& request)
CCoinsViewMemPool viewMempool(&viewChain, mempool); CCoinsViewMemPool viewMempool(&viewChain, mempool);
view.SetBackend(viewMempool); // temporarily switch cache backend to db+mempool view view.SetBackend(viewMempool); // temporarily switch cache backend to db+mempool view
BOOST_FOREACH(const CTxIn& txin, mergedTx.vin) { for (const CTxIn& txin : mergedTx.vin) {
view.AccessCoin(txin.prevout); // Load entries from viewChain into view; can fail. view.AccessCoin(txin.prevout); // Load entries from viewChain into view; can fail.
} }
@ -781,7 +781,7 @@ UniValue signrawtransaction(const JSONRPCRequest& request)
ProduceSignature(MutableTransactionSignatureCreator(&keystore, &mergedTx, i, amount, nHashType), prevPubKey, sigdata); ProduceSignature(MutableTransactionSignatureCreator(&keystore, &mergedTx, i, amount, nHashType), prevPubKey, sigdata);
// ... and merge in other signatures: // ... and merge in other signatures:
BOOST_FOREACH(const CMutableTransaction& txv, txVariants) { for (const CMutableTransaction& txv : txVariants) {
if (txv.vin.size() > i) { if (txv.vin.size() > i) {
sigdata = CombineSignatures(prevPubKey, TransactionSignatureChecker(&txConst, i, amount), sigdata, DataFromTransaction(txv, i)); sigdata = CombineSignatures(prevPubKey, TransactionSignatureChecker(&txConst, i, amount), sigdata, DataFromTransaction(txv, i));
} }

6
src/rpc/server.cpp

@ -64,7 +64,7 @@ void RPCTypeCheck(const UniValue& params,
bool fAllowNull) bool fAllowNull)
{ {
unsigned int i = 0; unsigned int i = 0;
BOOST_FOREACH(UniValue::VType t, typesExpected) for (UniValue::VType t : typesExpected)
{ {
if (params.size() <= i) if (params.size() <= i)
break; break;
@ -103,7 +103,7 @@ void RPCTypeCheckObj(const UniValue& o,
if (fStrict) if (fStrict)
{ {
BOOST_FOREACH(const std::string& k, o.getKeys()) for (const std::string& k : o.getKeys())
{ {
if (typesExpected.count(k) == 0) if (typesExpected.count(k) == 0)
{ {
@ -186,7 +186,7 @@ std::string CRPCTable::help(const std::string& strCommand, const JSONRPCRequest&
jreq.fHelp = true; jreq.fHelp = true;
jreq.params = UniValue(); jreq.params = UniValue();
BOOST_FOREACH(const PAIRTYPE(std::string, const CRPCCommand*)& command, vCommands) for (const PAIRTYPE(std::string, const CRPCCommand*)& command : vCommands)
{ {
const CRPCCommand *pcmd = command.second; const CRPCCommand *pcmd = command.second;
std::string strMethod = pcmd->name; std::string strMethod = pcmd->name;

2
src/script/ismine.cpp

@ -18,7 +18,7 @@ typedef std::vector<unsigned char> valtype;
unsigned int HaveKeys(const std::vector<valtype>& pubkeys, const CKeyStore& keystore) unsigned int HaveKeys(const std::vector<valtype>& pubkeys, const CKeyStore& keystore)
{ {
unsigned int nResult = 0; unsigned int nResult = 0;
BOOST_FOREACH(const valtype& pubkey, pubkeys) for (const valtype& pubkey : pubkeys)
{ {
CKeyID keyID = CPubKey(pubkey).GetID(); CKeyID keyID = CPubKey(pubkey).GetID();
if (keystore.HaveKey(keyID)) if (keystore.HaveKey(keyID))

8
src/script/sign.cpp

@ -126,7 +126,7 @@ static bool SignStep(const BaseSignatureCreator& creator, const CScript& scriptP
static CScript PushAll(const std::vector<valtype>& values) static CScript PushAll(const std::vector<valtype>& values)
{ {
CScript result; CScript result;
BOOST_FOREACH(const valtype& v, values) { for (const valtype& v : values) {
if (v.size() == 0) { if (v.size() == 0) {
result << OP_0; result << OP_0;
} else if (v.size() == 1 && v[0] >= 1 && v[0] <= 16) { } else if (v.size() == 1 && v[0] >= 1 && v[0] <= 16) {
@ -232,12 +232,12 @@ static std::vector<valtype> CombineMultisig(const CScript& scriptPubKey, const B
{ {
// Combine all the signatures we've got: // Combine all the signatures we've got:
std::set<valtype> allsigs; std::set<valtype> allsigs;
BOOST_FOREACH(const valtype& v, sigs1) for (const valtype& v : sigs1)
{ {
if (!v.empty()) if (!v.empty())
allsigs.insert(v); allsigs.insert(v);
} }
BOOST_FOREACH(const valtype& v, sigs2) for (const valtype& v : sigs2)
{ {
if (!v.empty()) if (!v.empty())
allsigs.insert(v); allsigs.insert(v);
@ -248,7 +248,7 @@ static std::vector<valtype> CombineMultisig(const CScript& scriptPubKey, const B
unsigned int nSigsRequired = vSolutions.front()[0]; unsigned int nSigsRequired = vSolutions.front()[0];
unsigned int nPubKeys = vSolutions.size()-2; unsigned int nPubKeys = vSolutions.size()-2;
std::map<valtype, valtype> sigs; std::map<valtype, valtype> sigs;
BOOST_FOREACH(const valtype& sig, allsigs) for (const valtype& sig : allsigs)
{ {
for (unsigned int i = 0; i < nPubKeys; i++) for (unsigned int i = 0; i < nPubKeys; i++)
{ {

4
src/script/standard.cpp

@ -94,7 +94,7 @@ bool Solver(const CScript& scriptPubKey, txnouttype& typeRet, std::vector<std::v
// Scan templates // Scan templates
const CScript& script1 = scriptPubKey; const CScript& script1 = scriptPubKey;
BOOST_FOREACH(const PAIRTYPE(txnouttype, CScript)& tplate, mTemplates) for (const PAIRTYPE(txnouttype, CScript)& tplate : mTemplates)
{ {
const CScript& script2 = tplate.second; const CScript& script2 = tplate.second;
vSolutionsRet.clear(); vSolutionsRet.clear();
@ -293,7 +293,7 @@ CScript GetScriptForMultisig(int nRequired, const std::vector<CPubKey>& keys)
CScript script; CScript script;
script << CScript::EncodeOP_N(nRequired); script << CScript::EncodeOP_N(nRequired);
BOOST_FOREACH(const CPubKey& key, keys) for (const CPubKey& key : keys)
script << ToByteVector(key); script << ToByteVector(key);
script << CScript::EncodeOP_N(keys.size()) << OP_CHECKMULTISIG; script << CScript::EncodeOP_N(keys.size()) << OP_CHECKMULTISIG;
return script; return script;

10
src/sync.cpp

@ -77,7 +77,7 @@ static void potential_deadlock_detected(const std::pair<void*, void*>& mismatch,
{ {
LogPrintf("POTENTIAL DEADLOCK DETECTED\n"); LogPrintf("POTENTIAL DEADLOCK DETECTED\n");
LogPrintf("Previous lock order was:\n"); LogPrintf("Previous lock order was:\n");
BOOST_FOREACH (const PAIRTYPE(void*, CLockLocation) & i, s2) { for (const PAIRTYPE(void*, CLockLocation) & i : s2) {
if (i.first == mismatch.first) { if (i.first == mismatch.first) {
LogPrintf(" (1)"); LogPrintf(" (1)");
} }
@ -87,7 +87,7 @@ static void potential_deadlock_detected(const std::pair<void*, void*>& mismatch,
LogPrintf(" %s\n", i.second.ToString()); LogPrintf(" %s\n", i.second.ToString());
} }
LogPrintf("Current lock order is:\n"); LogPrintf("Current lock order is:\n");
BOOST_FOREACH (const PAIRTYPE(void*, CLockLocation) & i, s1) { for (const PAIRTYPE(void*, CLockLocation) & i : s1) {
if (i.first == mismatch.first) { if (i.first == mismatch.first) {
LogPrintf(" (1)"); LogPrintf(" (1)");
} }
@ -108,7 +108,7 @@ static void push_lock(void* c, const CLockLocation& locklocation, bool fTry)
(*lockstack).push_back(std::make_pair(c, locklocation)); (*lockstack).push_back(std::make_pair(c, locklocation));
BOOST_FOREACH (const PAIRTYPE(void*, CLockLocation) & i, (*lockstack)) { for (const PAIRTYPE(void*, CLockLocation) & i : (*lockstack)) {
if (i.first == c) if (i.first == c)
break; break;
@ -142,14 +142,14 @@ void LeaveCritical()
std::string LocksHeld() std::string LocksHeld()
{ {
std::string result; std::string result;
BOOST_FOREACH (const PAIRTYPE(void*, CLockLocation) & i, *lockstack) for (const PAIRTYPE(void*, CLockLocation) & i : *lockstack)
result += i.second.ToString() + std::string("\n"); result += i.second.ToString() + std::string("\n");
return result; return result;
} }
void AssertLockHeldInternal(const char* pszName, const char* pszFile, int nLine, void* cs) void AssertLockHeldInternal(const char* pszName, const char* pszFile, int nLine, void* cs)
{ {
BOOST_FOREACH (const PAIRTYPE(void*, CLockLocation) & i, *lockstack) for (const PAIRTYPE(void*, CLockLocation) & i : *lockstack)
if (i.first == cs) if (i.first == cs)
return; return;
fprintf(stderr, "Assertion failed: lock %s not held in %s:%i; locks held:\n%s", pszName, pszFile, nLine, LocksHeld().c_str()); fprintf(stderr, "Assertion failed: lock %s not held in %s:%i; locks held:\n%s", pszName, pszFile, nLine, LocksHeld().c_str());

2
src/test/bip32_tests.cpp

@ -93,7 +93,7 @@ void RunTest(const TestVector &test) {
CExtPubKey pubkey; CExtPubKey pubkey;
key.SetMaster(&seed[0], seed.size()); key.SetMaster(&seed[0], seed.size());
pubkey = key.Neuter(); pubkey = key.Neuter();
BOOST_FOREACH(const TestDerivation &derive, test.vDerive) { for (const TestDerivation &derive : test.vDerive) {
unsigned char data[74]; unsigned char data[74];
key.Encode(data); key.Encode(data);
pubkey.Encode(data); pubkey.Encode(data);

2
src/test/coins_tests.cpp

@ -194,7 +194,7 @@ BOOST_AUTO_TEST_CASE(coins_cache_simulation_test)
found_an_entry = true; found_an_entry = true;
} }
} }
BOOST_FOREACH(const CCoinsViewCacheTest *test, stack) { for (const CCoinsViewCacheTest *test : stack) {
test->SelfTest(); test->SelfTest();
} }
} }

2
src/test/getarg_tests.cpp

@ -25,7 +25,7 @@ static void ResetArgs(const std::string& strArg)
// Convert to char*: // Convert to char*:
std::vector<const char*> vecChar; std::vector<const char*> vecChar;
BOOST_FOREACH(std::string& s, vecArg) for (std::string& s : vecArg)
vecChar.push_back(s.c_str()); vecChar.push_back(s.c_str());
ParseParameters(vecChar.size(), &vecChar[0]); ParseParameters(vecChar.size(), &vecChar[0]);

2
src/test/multisig_tests.cpp

@ -28,7 +28,7 @@ sign_multisig(CScript scriptPubKey, std::vector<CKey> keys, CTransaction transac
CScript result; CScript result;
result << OP_0; // CHECKMULTISIG bug workaround result << OP_0; // CHECKMULTISIG bug workaround
BOOST_FOREACH(const CKey &key, keys) for (const CKey &key : keys)
{ {
std::vector<unsigned char> vchSig; std::vector<unsigned char> vchSig;
BOOST_CHECK(key.Sign(hash, vchSig)); BOOST_CHECK(key.Sign(hash, vchSig));

4
src/test/prevector_tests.cpp

@ -54,13 +54,13 @@ class prevector_tester {
local_check(pretype(real_vector.begin(), real_vector.end()) == pre_vector); local_check(pretype(real_vector.begin(), real_vector.end()) == pre_vector);
local_check(pretype(pre_vector.begin(), pre_vector.end()) == pre_vector); local_check(pretype(pre_vector.begin(), pre_vector.end()) == pre_vector);
size_t pos = 0; size_t pos = 0;
BOOST_FOREACH(const T& v, pre_vector) { for (const T& v : pre_vector) {
local_check(v == real_vector[pos++]); local_check(v == real_vector[pos++]);
} }
BOOST_REVERSE_FOREACH(const T& v, pre_vector) { BOOST_REVERSE_FOREACH(const T& v, pre_vector) {
local_check(v == real_vector[--pos]); local_check(v == real_vector[--pos]);
} }
BOOST_FOREACH(const T& v, const_pre_vector) { for (const T& v : const_pre_vector) {
local_check(v == real_vector[pos++]); local_check(v == real_vector[pos++]);
} }
BOOST_REVERSE_FOREACH(const T& v, const_pre_vector) { BOOST_REVERSE_FOREACH(const T& v, const_pre_vector) {

4
src/test/script_tests.cpp

@ -927,7 +927,7 @@ BOOST_AUTO_TEST_CASE(script_build)
std::string strGen; std::string strGen;
BOOST_FOREACH(TestBuilder& test, tests) { for (TestBuilder& test : tests) {
test.Test(); test.Test();
std::string str = JSONPrettyPrint(test.GetJSON()); std::string str = JSONPrettyPrint(test.GetJSON());
#ifndef UPDATE_JSON_TESTS #ifndef UPDATE_JSON_TESTS
@ -1033,7 +1033,7 @@ sign_multisig(CScript scriptPubKey, std::vector<CKey> keys, CTransaction transac
// and vice-versa) // and vice-versa)
// //
result << OP_0; result << OP_0;
BOOST_FOREACH(const CKey &key, keys) for (const CKey &key : keys)
{ {
std::vector<unsigned char> vchSig; std::vector<unsigned char> vchSig;
BOOST_CHECK(key.Sign(hash, vchSig)); BOOST_CHECK(key.Sign(hash, vchSig));

2
src/test/test_bitcoin.cpp

@ -121,7 +121,7 @@ TestChain100Setup::CreateAndProcessBlock(const std::vector<CMutableTransaction>&
// Replace mempool-selected txns with just coinbase plus passed-in txns: // Replace mempool-selected txns with just coinbase plus passed-in txns:
block.vtx.resize(1); block.vtx.resize(1);
BOOST_FOREACH(const CMutableTransaction& tx, txns) for (const CMutableTransaction& tx : txns)
block.vtx.push_back(MakeTransactionRef(tx)); block.vtx.push_back(MakeTransactionRef(tx));
// IncrementExtraNonce creates a valid coinbase and merkleRoot // IncrementExtraNonce creates a valid coinbase and merkleRoot
unsigned int extraNonce = 0; unsigned int extraNonce = 0;

4
src/test/transaction_tests.cpp

@ -66,7 +66,7 @@ unsigned int ParseScriptFlags(std::string strFlags)
std::vector<std::string> words; std::vector<std::string> words;
boost::algorithm::split(words, strFlags, boost::algorithm::is_any_of(",")); boost::algorithm::split(words, strFlags, boost::algorithm::is_any_of(","));
BOOST_FOREACH(std::string word, words) for (std::string word : words)
{ {
if (!mapFlagNames.count(word)) if (!mapFlagNames.count(word))
BOOST_ERROR("Bad test: unknown verification flag '" << word << "'"); BOOST_ERROR("Bad test: unknown verification flag '" << word << "'");
@ -394,7 +394,7 @@ void CheckWithFlag(const CTransactionRef& output, const CMutableTransaction& inp
static CScript PushAll(const std::vector<valtype>& values) static CScript PushAll(const std::vector<valtype>& values)
{ {
CScript result; CScript result;
BOOST_FOREACH(const valtype& v, values) { for (const valtype& v : values) {
if (v.size() == 0) { if (v.size() == 0) {
result << OP_0; result << OP_0;
} else if (v.size() == 1 && v[0] >= 1 && v[0] <= 16) { } else if (v.size() == 1 && v[0] >= 1 && v[0] <= 16) {

4
src/timedata.cpp

@ -95,7 +95,7 @@ void AddTimeData(const CNetAddr& ip, int64_t nOffsetSample)
{ {
// If nobody has a time different than ours but within 5 minutes of ours, give a warning // If nobody has a time different than ours but within 5 minutes of ours, give a warning
bool fMatch = false; bool fMatch = false;
BOOST_FOREACH(int64_t nOffset, vSorted) for (int64_t nOffset : vSorted)
if (nOffset != 0 && abs64(nOffset) < 5 * 60) if (nOffset != 0 && abs64(nOffset) < 5 * 60)
fMatch = true; fMatch = true;
@ -110,7 +110,7 @@ void AddTimeData(const CNetAddr& ip, int64_t nOffsetSample)
} }
if (LogAcceptCategory(BCLog::NET)) { if (LogAcceptCategory(BCLog::NET)) {
BOOST_FOREACH(int64_t n, vSorted) { for (int64_t n : vSorted) {
LogPrint(BCLog::NET, "%+d ", n); LogPrint(BCLog::NET, "%+d ", n);
} }
LogPrint(BCLog::NET, "| "); LogPrint(BCLog::NET, "| ");

6
src/torcontrol.cpp

@ -487,7 +487,7 @@ void TorController::add_onion_cb(TorControlConnection& _conn, const TorControlRe
{ {
if (reply.code == 250) { if (reply.code == 250) {
LogPrint(BCLog::TOR, "tor: ADD_ONION successful\n"); LogPrint(BCLog::TOR, "tor: ADD_ONION successful\n");
BOOST_FOREACH(const std::string &s, reply.lines) { for (const std::string &s : reply.lines) {
std::map<std::string,std::string> m = ParseTorReplyMapping(s); std::map<std::string,std::string> m = ParseTorReplyMapping(s);
std::map<std::string,std::string>::iterator i; std::map<std::string,std::string>::iterator i;
if ((i = m.find("ServiceID")) != m.end()) if ((i = m.find("ServiceID")) != m.end())
@ -617,7 +617,7 @@ void TorController::protocolinfo_cb(TorControlConnection& _conn, const TorContro
* 250-AUTH METHODS=NULL * 250-AUTH METHODS=NULL
* 250-AUTH METHODS=HASHEDPASSWORD * 250-AUTH METHODS=HASHEDPASSWORD
*/ */
BOOST_FOREACH(const std::string &s, reply.lines) { for (const std::string &s : reply.lines) {
std::pair<std::string,std::string> l = SplitTorReplyLine(s); std::pair<std::string,std::string> l = SplitTorReplyLine(s);
if (l.first == "AUTH") { if (l.first == "AUTH") {
std::map<std::string,std::string> m = ParseTorReplyMapping(l.second); std::map<std::string,std::string> m = ParseTorReplyMapping(l.second);
@ -634,7 +634,7 @@ void TorController::protocolinfo_cb(TorControlConnection& _conn, const TorContro
} }
} }
} }
BOOST_FOREACH(const std::string &s, methods) { for (const std::string &s : methods) {
LogPrint(BCLog::TOR, "tor: Supported authentication method: %s\n", s); LogPrint(BCLog::TOR, "tor: Supported authentication method: %s\n", s);
} }
// Prefer NULL, otherwise SAFECOOKIE. If a password is provided, use HASHEDPASSWORD // Prefer NULL, otherwise SAFECOOKIE. If a password is provided, use HASHEDPASSWORD

54
src/txmempool.cpp

@ -73,12 +73,12 @@ void CTxMemPool::UpdateForDescendants(txiter updateIt, cacheMap &cachedDescendan
setAllDescendants.insert(cit); setAllDescendants.insert(cit);
stageEntries.erase(cit); stageEntries.erase(cit);
const setEntries &setChildren = GetMemPoolChildren(cit); const setEntries &setChildren = GetMemPoolChildren(cit);
BOOST_FOREACH(const txiter childEntry, setChildren) { for (const txiter childEntry : setChildren) {
cacheMap::iterator cacheIt = cachedDescendants.find(childEntry); cacheMap::iterator cacheIt = cachedDescendants.find(childEntry);
if (cacheIt != cachedDescendants.end()) { if (cacheIt != cachedDescendants.end()) {
// We've already calculated this one, just add the entries for this set // We've already calculated this one, just add the entries for this set
// but don't traverse again. // but don't traverse again.
BOOST_FOREACH(const txiter cacheEntry, cacheIt->second) { for (const txiter cacheEntry : cacheIt->second) {
setAllDescendants.insert(cacheEntry); setAllDescendants.insert(cacheEntry);
} }
} else if (!setAllDescendants.count(childEntry)) { } else if (!setAllDescendants.count(childEntry)) {
@ -92,7 +92,7 @@ void CTxMemPool::UpdateForDescendants(txiter updateIt, cacheMap &cachedDescendan
int64_t modifySize = 0; int64_t modifySize = 0;
CAmount modifyFee = 0; CAmount modifyFee = 0;
int64_t modifyCount = 0; int64_t modifyCount = 0;
BOOST_FOREACH(txiter cit, setAllDescendants) { for (txiter cit : setAllDescendants) {
if (!setExclude.count(cit->GetTx().GetHash())) { if (!setExclude.count(cit->GetTx().GetHash())) {
modifySize += cit->GetTxSize(); modifySize += cit->GetTxSize();
modifyFee += cit->GetModifiedFee(); modifyFee += cit->GetModifiedFee();
@ -202,7 +202,7 @@ bool CTxMemPool::CalculateMemPoolAncestors(const CTxMemPoolEntry &entry, setEntr
} }
const setEntries & setMemPoolParents = GetMemPoolParents(stageit); const setEntries & setMemPoolParents = GetMemPoolParents(stageit);
BOOST_FOREACH(const txiter &phash, setMemPoolParents) { for (const txiter &phash : setMemPoolParents) {
// If this is a new ancestor, add it. // If this is a new ancestor, add it.
if (setAncestors.count(phash) == 0) { if (setAncestors.count(phash) == 0) {
parentHashes.insert(phash); parentHashes.insert(phash);
@ -221,13 +221,13 @@ void CTxMemPool::UpdateAncestorsOf(bool add, txiter it, setEntries &setAncestors
{ {
setEntries parentIters = GetMemPoolParents(it); setEntries parentIters = GetMemPoolParents(it);
// add or remove this tx as a child of each parent // add or remove this tx as a child of each parent
BOOST_FOREACH(txiter piter, parentIters) { for (txiter piter : parentIters) {
UpdateChild(piter, it, add); UpdateChild(piter, it, add);
} }
const int64_t updateCount = (add ? 1 : -1); const int64_t updateCount = (add ? 1 : -1);
const int64_t updateSize = updateCount * it->GetTxSize(); const int64_t updateSize = updateCount * it->GetTxSize();
const CAmount updateFee = updateCount * it->GetModifiedFee(); const CAmount updateFee = updateCount * it->GetModifiedFee();
BOOST_FOREACH(txiter ancestorIt, setAncestors) { for (txiter ancestorIt : setAncestors) {
mapTx.modify(ancestorIt, update_descendant_state(updateSize, updateFee, updateCount)); mapTx.modify(ancestorIt, update_descendant_state(updateSize, updateFee, updateCount));
} }
} }
@ -238,7 +238,7 @@ void CTxMemPool::UpdateEntryForAncestors(txiter it, const setEntries &setAncesto
int64_t updateSize = 0; int64_t updateSize = 0;
CAmount updateFee = 0; CAmount updateFee = 0;
int64_t updateSigOpsCost = 0; int64_t updateSigOpsCost = 0;
BOOST_FOREACH(txiter ancestorIt, setAncestors) { for (txiter ancestorIt : setAncestors) {
updateSize += ancestorIt->GetTxSize(); updateSize += ancestorIt->GetTxSize();
updateFee += ancestorIt->GetModifiedFee(); updateFee += ancestorIt->GetModifiedFee();
updateSigOpsCost += ancestorIt->GetSigOpCost(); updateSigOpsCost += ancestorIt->GetSigOpCost();
@ -249,7 +249,7 @@ void CTxMemPool::UpdateEntryForAncestors(txiter it, const setEntries &setAncesto
void CTxMemPool::UpdateChildrenForRemoval(txiter it) void CTxMemPool::UpdateChildrenForRemoval(txiter it)
{ {
const setEntries &setMemPoolChildren = GetMemPoolChildren(it); const setEntries &setMemPoolChildren = GetMemPoolChildren(it);
BOOST_FOREACH(txiter updateIt, setMemPoolChildren) { for (txiter updateIt : setMemPoolChildren) {
UpdateParent(updateIt, it, false); UpdateParent(updateIt, it, false);
} }
} }
@ -266,19 +266,19 @@ void CTxMemPool::UpdateForRemoveFromMempool(const setEntries &entriesToRemove, b
// Here we only update statistics and not data in mapLinks (which // Here we only update statistics and not data in mapLinks (which
// we need to preserve until we're finished with all operations that // we need to preserve until we're finished with all operations that
// need to traverse the mempool). // need to traverse the mempool).
BOOST_FOREACH(txiter removeIt, entriesToRemove) { for (txiter removeIt : entriesToRemove) {
setEntries setDescendants; setEntries setDescendants;
CalculateDescendants(removeIt, setDescendants); CalculateDescendants(removeIt, setDescendants);
setDescendants.erase(removeIt); // don't update state for self setDescendants.erase(removeIt); // don't update state for self
int64_t modifySize = -((int64_t)removeIt->GetTxSize()); int64_t modifySize = -((int64_t)removeIt->GetTxSize());
CAmount modifyFee = -removeIt->GetModifiedFee(); CAmount modifyFee = -removeIt->GetModifiedFee();
int modifySigOps = -removeIt->GetSigOpCost(); int modifySigOps = -removeIt->GetSigOpCost();
BOOST_FOREACH(txiter dit, setDescendants) { for (txiter dit : setDescendants) {
mapTx.modify(dit, update_ancestor_state(modifySize, modifyFee, -1, modifySigOps)); mapTx.modify(dit, update_ancestor_state(modifySize, modifyFee, -1, modifySigOps));
} }
} }
} }
BOOST_FOREACH(txiter removeIt, entriesToRemove) { for (txiter removeIt : entriesToRemove) {
setEntries setAncestors; setEntries setAncestors;
const CTxMemPoolEntry &entry = *removeIt; const CTxMemPoolEntry &entry = *removeIt;
std::string dummy; std::string dummy;
@ -307,7 +307,7 @@ void CTxMemPool::UpdateForRemoveFromMempool(const setEntries &entriesToRemove, b
// After updating all the ancestor sizes, we can now sever the link between each // After updating all the ancestor sizes, we can now sever the link between each
// transaction being removed and any mempool children (ie, update setMemPoolParents // transaction being removed and any mempool children (ie, update setMemPoolParents
// for each direct child of a transaction being removed). // for each direct child of a transaction being removed).
BOOST_FOREACH(txiter removeIt, entriesToRemove) { for (txiter removeIt : entriesToRemove) {
UpdateChildrenForRemoval(removeIt); UpdateChildrenForRemoval(removeIt);
} }
} }
@ -401,7 +401,7 @@ bool CTxMemPool::addUnchecked(const uint256& hash, const CTxMemPoolEntry &entry,
// to clean up the mess we're leaving here. // to clean up the mess we're leaving here.
// Update ancestors with information about this tx // Update ancestors with information about this tx
BOOST_FOREACH (const uint256 &phash, setParentTransactions) { for (const uint256 &phash : setParentTransactions) {
txiter pit = mapTx.find(phash); txiter pit = mapTx.find(phash);
if (pit != mapTx.end()) { if (pit != mapTx.end()) {
UpdateParent(newit, pit, true); UpdateParent(newit, pit, true);
@ -424,7 +424,7 @@ void CTxMemPool::removeUnchecked(txiter it, MemPoolRemovalReason reason)
{ {
NotifyEntryRemoved(it->GetSharedTx(), reason); NotifyEntryRemoved(it->GetSharedTx(), reason);
const uint256 hash = it->GetTx().GetHash(); const uint256 hash = it->GetTx().GetHash();
BOOST_FOREACH(const CTxIn& txin, it->GetTx().vin) for (const CTxIn& txin : it->GetTx().vin)
mapNextTx.erase(txin.prevout); mapNextTx.erase(txin.prevout);
if (vTxHashes.size() > 1) { if (vTxHashes.size() > 1) {
@ -466,7 +466,7 @@ void CTxMemPool::CalculateDescendants(txiter entryit, setEntries &setDescendants
stage.erase(it); stage.erase(it);
const setEntries &setChildren = GetMemPoolChildren(it); const setEntries &setChildren = GetMemPoolChildren(it);
BOOST_FOREACH(const txiter &childiter, setChildren) { for (const txiter &childiter : setChildren) {
if (!setDescendants.count(childiter)) { if (!setDescendants.count(childiter)) {
stage.insert(childiter); stage.insert(childiter);
} }
@ -498,7 +498,7 @@ void CTxMemPool::removeRecursive(const CTransaction &origTx, MemPoolRemovalReaso
} }
} }
setEntries setAllRemoves; setEntries setAllRemoves;
BOOST_FOREACH(txiter it, txToRemove) { for (txiter it : txToRemove) {
CalculateDescendants(it, setAllRemoves); CalculateDescendants(it, setAllRemoves);
} }
@ -520,7 +520,7 @@ void CTxMemPool::removeForReorg(const CCoinsViewCache *pcoins, unsigned int nMem
// So it's critical that we remove the tx and not depend on the LockPoints. // So it's critical that we remove the tx and not depend on the LockPoints.
txToRemove.insert(it); txToRemove.insert(it);
} else if (it->GetSpendsCoinbase()) { } else if (it->GetSpendsCoinbase()) {
BOOST_FOREACH(const CTxIn& txin, tx.vin) { for (const CTxIn& txin : tx.vin) {
indexed_transaction_set::const_iterator it2 = mapTx.find(txin.prevout.hash); indexed_transaction_set::const_iterator it2 = mapTx.find(txin.prevout.hash);
if (it2 != mapTx.end()) if (it2 != mapTx.end())
continue; continue;
@ -547,7 +547,7 @@ void CTxMemPool::removeConflicts(const CTransaction &tx)
{ {
// Remove transactions which depend on inputs of tx, recursively // Remove transactions which depend on inputs of tx, recursively
LOCK(cs); LOCK(cs);
BOOST_FOREACH(const CTxIn &txin, tx.vin) { for (const CTxIn &txin : tx.vin) {
auto it = mapNextTx.find(txin.prevout); auto it = mapNextTx.find(txin.prevout);
if (it != mapNextTx.end()) { if (it != mapNextTx.end()) {
const CTransaction &txConflict = *it->second; const CTransaction &txConflict = *it->second;
@ -642,7 +642,7 @@ void CTxMemPool::check(const CCoinsViewCache *pcoins) const
setEntries setParentCheck; setEntries setParentCheck;
int64_t parentSizes = 0; int64_t parentSizes = 0;
int64_t parentSigOpCost = 0; int64_t parentSigOpCost = 0;
BOOST_FOREACH(const CTxIn &txin, tx.vin) { for (const CTxIn &txin : tx.vin) {
// Check that every mempool transaction's inputs refer to available coins, or other mempool tx's. // Check that every mempool transaction's inputs refer to available coins, or other mempool tx's.
indexed_transaction_set::const_iterator it2 = mapTx.find(txin.prevout.hash); indexed_transaction_set::const_iterator it2 = mapTx.find(txin.prevout.hash);
if (it2 != mapTx.end()) { if (it2 != mapTx.end()) {
@ -674,7 +674,7 @@ void CTxMemPool::check(const CCoinsViewCache *pcoins) const
CAmount nFeesCheck = it->GetModifiedFee(); CAmount nFeesCheck = it->GetModifiedFee();
int64_t nSigOpCheck = it->GetSigOpCost(); int64_t nSigOpCheck = it->GetSigOpCost();
BOOST_FOREACH(txiter ancestorIt, setAncestors) { for (txiter ancestorIt : setAncestors) {
nSizeCheck += ancestorIt->GetTxSize(); nSizeCheck += ancestorIt->GetTxSize();
nFeesCheck += ancestorIt->GetModifiedFee(); nFeesCheck += ancestorIt->GetModifiedFee();
nSigOpCheck += ancestorIt->GetSigOpCost(); nSigOpCheck += ancestorIt->GetSigOpCost();
@ -848,14 +848,14 @@ void CTxMemPool::PrioritiseTransaction(const uint256& hash, const CAmount& nFeeD
uint64_t nNoLimit = std::numeric_limits<uint64_t>::max(); uint64_t nNoLimit = std::numeric_limits<uint64_t>::max();
std::string dummy; std::string dummy;
CalculateMemPoolAncestors(*it, setAncestors, nNoLimit, nNoLimit, nNoLimit, nNoLimit, dummy, false); CalculateMemPoolAncestors(*it, setAncestors, nNoLimit, nNoLimit, nNoLimit, nNoLimit, dummy, false);
BOOST_FOREACH(txiter ancestorIt, setAncestors) { for (txiter ancestorIt : setAncestors) {
mapTx.modify(ancestorIt, update_descendant_state(0, nFeeDelta, 0)); mapTx.modify(ancestorIt, update_descendant_state(0, nFeeDelta, 0));
} }
// Now update all descendants' modified fees with ancestors // Now update all descendants' modified fees with ancestors
setEntries setDescendants; setEntries setDescendants;
CalculateDescendants(it, setDescendants); CalculateDescendants(it, setDescendants);
setDescendants.erase(it); setDescendants.erase(it);
BOOST_FOREACH(txiter descendantIt, setDescendants) { for (txiter descendantIt : setDescendants) {
mapTx.modify(descendantIt, update_ancestor_state(0, nFeeDelta, 0, 0)); mapTx.modify(descendantIt, update_ancestor_state(0, nFeeDelta, 0, 0));
} }
++nTransactionsUpdated; ++nTransactionsUpdated;
@ -919,7 +919,7 @@ size_t CTxMemPool::DynamicMemoryUsage() const {
void CTxMemPool::RemoveStaged(setEntries &stage, bool updateDescendants, MemPoolRemovalReason reason) { void CTxMemPool::RemoveStaged(setEntries &stage, bool updateDescendants, MemPoolRemovalReason reason) {
AssertLockHeld(cs); AssertLockHeld(cs);
UpdateForRemoveFromMempool(stage, updateDescendants); UpdateForRemoveFromMempool(stage, updateDescendants);
BOOST_FOREACH(const txiter& it, stage) { for (const txiter& it : stage) {
removeUnchecked(it, reason); removeUnchecked(it, reason);
} }
} }
@ -933,7 +933,7 @@ int CTxMemPool::Expire(int64_t time) {
it++; it++;
} }
setEntries stage; setEntries stage;
BOOST_FOREACH(txiter removeit, toremove) { for (txiter removeit : toremove) {
CalculateDescendants(removeit, stage); CalculateDescendants(removeit, stage);
} }
RemoveStaged(stage, false, MemPoolRemovalReason::EXPIRY); RemoveStaged(stage, false, MemPoolRemovalReason::EXPIRY);
@ -1042,13 +1042,13 @@ void CTxMemPool::TrimToSize(size_t sizelimit, std::vector<COutPoint>* pvNoSpends
std::vector<CTransaction> txn; std::vector<CTransaction> txn;
if (pvNoSpendsRemaining) { if (pvNoSpendsRemaining) {
txn.reserve(stage.size()); txn.reserve(stage.size());
BOOST_FOREACH(txiter iter, stage) for (txiter iter : stage)
txn.push_back(iter->GetTx()); txn.push_back(iter->GetTx());
} }
RemoveStaged(stage, false, MemPoolRemovalReason::SIZELIMIT); RemoveStaged(stage, false, MemPoolRemovalReason::SIZELIMIT);
if (pvNoSpendsRemaining) { if (pvNoSpendsRemaining) {
BOOST_FOREACH(const CTransaction& tx, txn) { for (const CTransaction& tx : txn) {
BOOST_FOREACH(const CTxIn& txin, tx.vin) { for (const CTxIn& txin : tx.vin) {
if (exists(txin.prevout.hash)) continue; if (exists(txin.prevout.hash)) continue;
if (!mapNextTx.count(txin.prevout)) { if (!mapNextTx.count(txin.prevout)) {
pvNoSpendsRemaining->push_back(txin.prevout); pvNoSpendsRemaining->push_back(txin.prevout);

40
src/validation.cpp

@ -160,7 +160,7 @@ namespace {
CBlockIndex* FindForkInGlobalIndex(const CChain& chain, const CBlockLocator& locator) CBlockIndex* FindForkInGlobalIndex(const CChain& chain, const CBlockLocator& locator)
{ {
// Find the first block the caller has in the main chain // Find the first block the caller has in the main chain
BOOST_FOREACH(const uint256& hash, locator.vHave) { for (const uint256& hash : locator.vHave) {
BlockMap::iterator mi = mapBlockIndex.find(hash); BlockMap::iterator mi = mapBlockIndex.find(hash);
if (mi != mapBlockIndex.end()) if (mi != mapBlockIndex.end())
{ {
@ -297,7 +297,7 @@ bool CheckSequenceLocks(const CTransaction &tx, int flags, LockPoints* lp, bool
// lock on a mempool input, so we can use the return value of // lock on a mempool input, so we can use the return value of
// CheckSequenceLocks to indicate the LockPoints validity // CheckSequenceLocks to indicate the LockPoints validity
int maxInputHeight = 0; int maxInputHeight = 0;
BOOST_FOREACH(int height, prevheights) { for (int height : prevheights) {
// Can ignore mempool inputs since we'll fail if they had non-zero locks // Can ignore mempool inputs since we'll fail if they had non-zero locks
if (height != tip->nHeight+1) { if (height != tip->nHeight+1) {
maxInputHeight = std::max(maxInputHeight, height); maxInputHeight = std::max(maxInputHeight, height);
@ -317,7 +317,7 @@ void LimitMempoolSize(CTxMemPool& pool, size_t limit, unsigned long age) {
std::vector<COutPoint> vNoSpendsRemaining; std::vector<COutPoint> vNoSpendsRemaining;
pool.TrimToSize(limit, &vNoSpendsRemaining); pool.TrimToSize(limit, &vNoSpendsRemaining);
BOOST_FOREACH(const COutPoint& removed, vNoSpendsRemaining) for (const COutPoint& removed : vNoSpendsRemaining)
pcoinsTip->Uncache(removed); pcoinsTip->Uncache(removed);
} }
@ -434,7 +434,7 @@ bool AcceptToMemoryPoolWorker(CTxMemPool& pool, CValidationState& state, const C
std::set<uint256> setConflicts; std::set<uint256> setConflicts;
{ {
LOCK(pool.cs); // protect pool.mapNextTx LOCK(pool.cs); // protect pool.mapNextTx
BOOST_FOREACH(const CTxIn &txin, tx.vin) for (const CTxIn &txin : tx.vin)
{ {
auto itConflicting = pool.mapNextTx.find(txin.prevout); auto itConflicting = pool.mapNextTx.find(txin.prevout);
if (itConflicting != pool.mapNextTx.end()) if (itConflicting != pool.mapNextTx.end())
@ -457,7 +457,7 @@ bool AcceptToMemoryPoolWorker(CTxMemPool& pool, CValidationState& state, const C
bool fReplacementOptOut = true; bool fReplacementOptOut = true;
if (fEnableReplacement) if (fEnableReplacement)
{ {
BOOST_FOREACH(const CTxIn &_txin, ptxConflicting->vin) for (const CTxIn &_txin : ptxConflicting->vin)
{ {
if (_txin.nSequence < std::numeric_limits<unsigned int>::max()-1) if (_txin.nSequence < std::numeric_limits<unsigned int>::max()-1)
{ {
@ -499,7 +499,7 @@ bool AcceptToMemoryPoolWorker(CTxMemPool& pool, CValidationState& state, const C
} }
// do all inputs exist? // do all inputs exist?
BOOST_FOREACH(const CTxIn txin, tx.vin) { for (const CTxIn txin : tx.vin) {
if (!pcoinsTip->HaveCoinInCache(txin.prevout)) { if (!pcoinsTip->HaveCoinInCache(txin.prevout)) {
coins_to_uncache.push_back(txin.prevout); coins_to_uncache.push_back(txin.prevout);
} }
@ -547,7 +547,7 @@ bool AcceptToMemoryPoolWorker(CTxMemPool& pool, CValidationState& state, const C
// Keep track of transactions that spend a coinbase, which we re-scan // Keep track of transactions that spend a coinbase, which we re-scan
// during reorgs to ensure COINBASE_MATURITY is still met. // during reorgs to ensure COINBASE_MATURITY is still met.
bool fSpendsCoinbase = false; bool fSpendsCoinbase = false;
BOOST_FOREACH(const CTxIn &txin, tx.vin) { for (const CTxIn &txin : tx.vin) {
const Coin &coin = view.AccessCoin(txin.prevout); const Coin &coin = view.AccessCoin(txin.prevout);
if (coin.IsCoinBase()) { if (coin.IsCoinBase()) {
fSpendsCoinbase = true; fSpendsCoinbase = true;
@ -598,7 +598,7 @@ bool AcceptToMemoryPoolWorker(CTxMemPool& pool, CValidationState& state, const C
// that we have the set of all ancestors we can detect this // that we have the set of all ancestors we can detect this
// pathological case by making sure setConflicts and setAncestors don't // pathological case by making sure setConflicts and setAncestors don't
// intersect. // intersect.
BOOST_FOREACH(CTxMemPool::txiter ancestorIt, setAncestors) for (CTxMemPool::txiter ancestorIt : setAncestors)
{ {
const uint256 &hashAncestor = ancestorIt->GetTx().GetHash(); const uint256 &hashAncestor = ancestorIt->GetTx().GetHash();
if (setConflicts.count(hashAncestor)) if (setConflicts.count(hashAncestor))
@ -629,7 +629,7 @@ bool AcceptToMemoryPoolWorker(CTxMemPool& pool, CValidationState& state, const C
std::set<uint256> setConflictsParents; std::set<uint256> setConflictsParents;
const int maxDescendantsToVisit = 100; const int maxDescendantsToVisit = 100;
CTxMemPool::setEntries setIterConflicting; CTxMemPool::setEntries setIterConflicting;
BOOST_FOREACH(const uint256 &hashConflicting, setConflicts) for (const uint256 &hashConflicting : setConflicts)
{ {
CTxMemPool::txiter mi = pool.mapTx.find(hashConflicting); CTxMemPool::txiter mi = pool.mapTx.find(hashConflicting);
if (mi == pool.mapTx.end()) if (mi == pool.mapTx.end())
@ -665,7 +665,7 @@ bool AcceptToMemoryPoolWorker(CTxMemPool& pool, CValidationState& state, const C
oldFeeRate.ToString())); oldFeeRate.ToString()));
} }
BOOST_FOREACH(const CTxIn &txin, mi->GetTx().vin) for (const CTxIn &txin : mi->GetTx().vin)
{ {
setConflictsParents.insert(txin.prevout.hash); setConflictsParents.insert(txin.prevout.hash);
} }
@ -678,10 +678,10 @@ bool AcceptToMemoryPoolWorker(CTxMemPool& pool, CValidationState& state, const C
if (nConflictingCount <= maxDescendantsToVisit) { if (nConflictingCount <= maxDescendantsToVisit) {
// If not too many to replace, then calculate the set of // If not too many to replace, then calculate the set of
// transactions that would have to be evicted // transactions that would have to be evicted
BOOST_FOREACH(CTxMemPool::txiter it, setIterConflicting) { for (CTxMemPool::txiter it : setIterConflicting) {
pool.CalculateDescendants(it, allConflicting); pool.CalculateDescendants(it, allConflicting);
} }
BOOST_FOREACH(CTxMemPool::txiter it, allConflicting) { for (CTxMemPool::txiter it : allConflicting) {
nConflictingFees += it->GetModifiedFee(); nConflictingFees += it->GetModifiedFee();
nConflictingSize += it->GetTxSize(); nConflictingSize += it->GetTxSize();
} }
@ -775,7 +775,7 @@ bool AcceptToMemoryPoolWorker(CTxMemPool& pool, CValidationState& state, const C
} }
// Remove conflicting transactions from the mempool // Remove conflicting transactions from the mempool
BOOST_FOREACH(const CTxMemPool::txiter it, allConflicting) for (const CTxMemPool::txiter it : allConflicting)
{ {
LogPrint(BCLog::MEMPOOL, "replacing tx %s with %s for %s BTC additional fees, %d delta bytes\n", LogPrint(BCLog::MEMPOOL, "replacing tx %s with %s for %s BTC additional fees, %d delta bytes\n",
it->GetTx().GetHash().ToString(), it->GetTx().GetHash().ToString(),
@ -816,7 +816,7 @@ bool AcceptToMemoryPoolWithTime(CTxMemPool& pool, CValidationState &state, const
std::vector<COutPoint> coins_to_uncache; std::vector<COutPoint> coins_to_uncache;
bool res = AcceptToMemoryPoolWorker(pool, state, tx, fLimitFree, pfMissingInputs, nAcceptTime, plTxnReplaced, fOverrideMempoolLimit, nAbsurdFee, coins_to_uncache); bool res = AcceptToMemoryPoolWorker(pool, state, tx, fLimitFree, pfMissingInputs, nAcceptTime, plTxnReplaced, fOverrideMempoolLimit, nAbsurdFee, coins_to_uncache);
if (!res) { if (!res) {
BOOST_FOREACH(const COutPoint& hashTx, coins_to_uncache) for (const COutPoint& hashTx : coins_to_uncache)
pcoinsTip->Uncache(hashTx); pcoinsTip->Uncache(hashTx);
} }
// After we've (potentially) uncached entries, ensure our coins cache is still within its size limits // After we've (potentially) uncached entries, ensure our coins cache is still within its size limits
@ -1116,7 +1116,7 @@ void UpdateCoins(const CTransaction& tx, CCoinsViewCache& inputs, CTxUndo &txund
// mark inputs spent // mark inputs spent
if (!tx.IsCoinBase()) { if (!tx.IsCoinBase()) {
txundo.vprevout.reserve(tx.vin.size()); txundo.vprevout.reserve(tx.vin.size());
BOOST_FOREACH(const CTxIn &txin, tx.vin) { for (const CTxIn &txin : tx.vin) {
txundo.vprevout.emplace_back(); txundo.vprevout.emplace_back();
inputs.SpendCoin(txin.prevout, &txundo.vprevout.back()); inputs.SpendCoin(txin.prevout, &txundo.vprevout.back());
} }
@ -3097,7 +3097,7 @@ bool TestBlockValidity(CValidationState& state, const CChainParams& chainparams,
uint64_t CalculateCurrentUsage() uint64_t CalculateCurrentUsage()
{ {
uint64_t retval = 0; uint64_t retval = 0;
BOOST_FOREACH(const CBlockFileInfo &file, vinfoBlockFile) { for (const CBlockFileInfo &file : vinfoBlockFile) {
retval += file.nSize + file.nUndoSize; retval += file.nSize + file.nUndoSize;
} }
return retval; return retval;
@ -3300,13 +3300,13 @@ bool static LoadBlockIndexDB(const CChainParams& chainparams)
// Calculate nChainWork // Calculate nChainWork
std::vector<std::pair<int, CBlockIndex*> > vSortedByHeight; std::vector<std::pair<int, CBlockIndex*> > vSortedByHeight;
vSortedByHeight.reserve(mapBlockIndex.size()); vSortedByHeight.reserve(mapBlockIndex.size());
BOOST_FOREACH(const PAIRTYPE(uint256, CBlockIndex*)& item, mapBlockIndex) for (const PAIRTYPE(uint256, CBlockIndex*)& item : mapBlockIndex)
{ {
CBlockIndex* pindex = item.second; CBlockIndex* pindex = item.second;
vSortedByHeight.push_back(std::make_pair(pindex->nHeight, pindex)); vSortedByHeight.push_back(std::make_pair(pindex->nHeight, pindex));
} }
sort(vSortedByHeight.begin(), vSortedByHeight.end()); sort(vSortedByHeight.begin(), vSortedByHeight.end());
BOOST_FOREACH(const PAIRTYPE(int, CBlockIndex*)& item, vSortedByHeight) for (const PAIRTYPE(int, CBlockIndex*)& item : vSortedByHeight)
{ {
CBlockIndex* pindex = item.second; CBlockIndex* pindex = item.second;
pindex->nChainWork = (pindex->pprev ? pindex->pprev->nChainWork : 0) + GetBlockProof(*pindex); pindex->nChainWork = (pindex->pprev ? pindex->pprev->nChainWork : 0) + GetBlockProof(*pindex);
@ -3355,7 +3355,7 @@ bool static LoadBlockIndexDB(const CChainParams& chainparams)
// Check presence of blk files // Check presence of blk files
LogPrintf("Checking all blk files are present...\n"); LogPrintf("Checking all blk files are present...\n");
std::set<int> setBlkDataFiles; std::set<int> setBlkDataFiles;
BOOST_FOREACH(const PAIRTYPE(uint256, CBlockIndex*)& item, mapBlockIndex) for (const PAIRTYPE(uint256, CBlockIndex*)& item : mapBlockIndex)
{ {
CBlockIndex* pindex = item.second; CBlockIndex* pindex = item.second;
if (pindex->nStatus & BLOCK_HAVE_DATA) { if (pindex->nStatus & BLOCK_HAVE_DATA) {
@ -3611,7 +3611,7 @@ void UnloadBlockIndex()
warningcache[b].clear(); warningcache[b].clear();
} }
BOOST_FOREACH(BlockMap::value_type& entry, mapBlockIndex) { for (BlockMap::value_type& entry : mapBlockIndex) {
delete entry.second; delete entry.second;
} }
mapBlockIndex.clear(); mapBlockIndex.clear();

2
src/wallet/crypter.cpp

@ -285,7 +285,7 @@ bool CCryptoKeyStore::EncryptKeys(CKeyingMaterial& vMasterKeyIn)
return false; return false;
fUseCrypto = true; fUseCrypto = true;
BOOST_FOREACH(KeyMap::value_type& mKey, mapKeys) for (KeyMap::value_type& mKey : mapKeys)
{ {
const CKey &key = mKey.second; const CKey &key = mKey.second;
CPubKey vchPubKey = key.GetPubKey(); CPubKey vchPubKey = key.GetPubKey();

2
src/wallet/db.cpp

@ -205,7 +205,7 @@ bool CDB::Recover(const std::string& filename, void *callbackDataIn, bool (*reco
} }
DbTxn* ptxn = bitdb.TxnBegin(); DbTxn* ptxn = bitdb.TxnBegin();
BOOST_FOREACH(CDBEnv::KeyValPair& row, salvagedData) for (CDBEnv::KeyValPair& row : salvagedData)
{ {
if (recoverKVcallback) if (recoverKVcallback)
{ {

4
src/wallet/rpcdump.cpp

@ -48,7 +48,7 @@ int64_t static DecodeDumpTime(const std::string &str) {
std::string static EncodeDumpString(const std::string &str) { std::string static EncodeDumpString(const std::string &str) {
std::stringstream ret; std::stringstream ret;
BOOST_FOREACH(unsigned char c, str) { for (unsigned char c : str) {
if (c <= 32 || c >= 128 || c == '%') { if (c <= 32 || c >= 128 || c == '%') {
ret << '%' << HexStr(&c, &c + 1); ret << '%' << HexStr(&c, &c + 1);
} else { } else {
@ -1106,7 +1106,7 @@ UniValue importmulti(const JSONRPCRequest& mainRequest)
UniValue response(UniValue::VARR); UniValue response(UniValue::VARR);
BOOST_FOREACH (const UniValue& data, requests.getValues()) { for (const UniValue& data : requests.getValues()) {
const int64_t timestamp = std::max(GetImportTimestamp(data, now), minimumTimestamp); const int64_t timestamp = std::max(GetImportTimestamp(data, now), minimumTimestamp);
const UniValue result = ProcessImport(pwallet, data, timestamp); const UniValue result = ProcessImport(pwallet, data, timestamp);
response.push_back(result); response.push_back(result);

34
src/wallet/rpcwallet.cpp

@ -78,7 +78,7 @@ void WalletTxToJSON(const CWalletTx& wtx, UniValue& entry)
uint256 hash = wtx.GetHash(); uint256 hash = wtx.GetHash();
entry.push_back(Pair("txid", hash.GetHex())); entry.push_back(Pair("txid", hash.GetHex()));
UniValue conflicts(UniValue::VARR); UniValue conflicts(UniValue::VARR);
BOOST_FOREACH(const uint256& conflict, wtx.GetConflicts()) for (const uint256& conflict : wtx.GetConflicts())
conflicts.push_back(conflict.GetHex()); conflicts.push_back(conflict.GetHex());
entry.push_back(Pair("walletconflicts", conflicts)); entry.push_back(Pair("walletconflicts", conflicts));
entry.push_back(Pair("time", wtx.GetTxTime())); entry.push_back(Pair("time", wtx.GetTxTime()));
@ -96,7 +96,7 @@ void WalletTxToJSON(const CWalletTx& wtx, UniValue& entry)
} }
entry.push_back(Pair("bip125-replaceable", rbfStatus)); entry.push_back(Pair("bip125-replaceable", rbfStatus));
BOOST_FOREACH(const PAIRTYPE(std::string, std::string)& item, wtx.mapValue) for (const PAIRTYPE(std::string, std::string)& item : wtx.mapValue)
entry.push_back(Pair(item.first, item.second)); entry.push_back(Pair(item.first, item.second));
} }
@ -490,7 +490,7 @@ UniValue listaddressgroupings(const JSONRPCRequest& request)
std::map<CTxDestination, CAmount> balances = pwallet->GetAddressBalances(); std::map<CTxDestination, CAmount> balances = pwallet->GetAddressBalances();
for (std::set<CTxDestination> grouping : pwallet->GetAddressGroupings()) { for (std::set<CTxDestination> grouping : pwallet->GetAddressGroupings()) {
UniValue jsonGrouping(UniValue::VARR); UniValue jsonGrouping(UniValue::VARR);
BOOST_FOREACH(CTxDestination address, grouping) for (CTxDestination address : grouping)
{ {
UniValue addressInfo(UniValue::VARR); UniValue addressInfo(UniValue::VARR);
addressInfo.push_back(CBitcoinAddress(address).ToString()); addressInfo.push_back(CBitcoinAddress(address).ToString());
@ -616,7 +616,7 @@ UniValue getreceivedbyaddress(const JSONRPCRequest& request)
if (wtx.IsCoinBase() || !CheckFinalTx(*wtx.tx)) if (wtx.IsCoinBase() || !CheckFinalTx(*wtx.tx))
continue; continue;
BOOST_FOREACH(const CTxOut& txout, wtx.tx->vout) for (const CTxOut& txout : wtx.tx->vout)
if (txout.scriptPubKey == scriptPubKey) if (txout.scriptPubKey == scriptPubKey)
if (wtx.GetDepthInMainChain() >= nMinDepth) if (wtx.GetDepthInMainChain() >= nMinDepth)
nAmount += txout.nValue; nAmount += txout.nValue;
@ -671,7 +671,7 @@ UniValue getreceivedbyaccount(const JSONRPCRequest& request)
if (wtx.IsCoinBase() || !CheckFinalTx(*wtx.tx)) if (wtx.IsCoinBase() || !CheckFinalTx(*wtx.tx))
continue; continue;
BOOST_FOREACH(const CTxOut& txout, wtx.tx->vout) for (const CTxOut& txout : wtx.tx->vout)
{ {
CTxDestination address; CTxDestination address;
if (ExtractDestination(txout.scriptPubKey, address) && IsMine(*pwallet, address) && setAddress.count(address)) { if (ExtractDestination(txout.scriptPubKey, address) && IsMine(*pwallet, address) && setAddress.count(address)) {
@ -950,7 +950,7 @@ UniValue sendmany(const JSONRPCRequest& request)
CAmount totalAmount = 0; CAmount totalAmount = 0;
std::vector<std::string> keys = sendTo.getKeys(); std::vector<std::string> keys = sendTo.getKeys();
BOOST_FOREACH(const std::string& name_, keys) for (const std::string& name_ : keys)
{ {
CBitcoinAddress address(name_); CBitcoinAddress address(name_);
if (!address.IsValid()) if (!address.IsValid())
@ -1191,7 +1191,7 @@ UniValue ListReceived(CWallet * const pwallet, const UniValue& params, bool fByA
if (nDepth < nMinDepth) if (nDepth < nMinDepth)
continue; continue;
BOOST_FOREACH(const CTxOut& txout, wtx.tx->vout) for (const CTxOut& txout : wtx.tx->vout)
{ {
CTxDestination address; CTxDestination address;
if (!ExtractDestination(txout.scriptPubKey, address)) if (!ExtractDestination(txout.scriptPubKey, address))
@ -1251,7 +1251,7 @@ UniValue ListReceived(CWallet * const pwallet, const UniValue& params, bool fByA
UniValue transactions(UniValue::VARR); UniValue transactions(UniValue::VARR);
if (it != mapTally.end()) if (it != mapTally.end())
{ {
BOOST_FOREACH(const uint256& _item, (*it).second.txids) for (const uint256& _item : (*it).second.txids)
{ {
transactions.push_back(_item.GetHex()); transactions.push_back(_item.GetHex());
} }
@ -1385,7 +1385,7 @@ void ListTransactions(CWallet* const pwallet, const CWalletTx& wtx, const std::s
// Sent // Sent
if ((!listSent.empty() || nFee != 0) && (fAllAccounts || strAccount == strSentAccount)) if ((!listSent.empty() || nFee != 0) && (fAllAccounts || strAccount == strSentAccount))
{ {
BOOST_FOREACH(const COutputEntry& s, listSent) for (const COutputEntry& s : listSent)
{ {
UniValue entry(UniValue::VOBJ); UniValue entry(UniValue::VOBJ);
if (involvesWatchonly || (::IsMine(*pwallet, s.destination) & ISMINE_WATCH_ONLY)) { if (involvesWatchonly || (::IsMine(*pwallet, s.destination) & ISMINE_WATCH_ONLY)) {
@ -1410,7 +1410,7 @@ void ListTransactions(CWallet* const pwallet, const CWalletTx& wtx, const std::s
// Received // Received
if (listReceived.size() > 0 && wtx.GetDepthInMainChain() >= nMinDepth) if (listReceived.size() > 0 && wtx.GetDepthInMainChain() >= nMinDepth)
{ {
BOOST_FOREACH(const COutputEntry& r, listReceived) for (const COutputEntry& r : listReceived)
{ {
std::string account; std::string account;
if (pwallet->mapAddressBook.count(r.destination)) { if (pwallet->mapAddressBook.count(r.destination)) {
@ -1655,11 +1655,11 @@ UniValue listaccounts(const JSONRPCRequest& request)
continue; continue;
wtx.GetAmounts(listReceived, listSent, nFee, strSentAccount, includeWatchonly); wtx.GetAmounts(listReceived, listSent, nFee, strSentAccount, includeWatchonly);
mapAccountBalances[strSentAccount] -= nFee; mapAccountBalances[strSentAccount] -= nFee;
BOOST_FOREACH(const COutputEntry& s, listSent) for (const COutputEntry& s : listSent)
mapAccountBalances[strSentAccount] -= s.amount; mapAccountBalances[strSentAccount] -= s.amount;
if (nDepth >= nMinDepth) if (nDepth >= nMinDepth)
{ {
BOOST_FOREACH(const COutputEntry& r, listReceived) for (const COutputEntry& r : listReceived)
if (pwallet->mapAddressBook.count(r.destination)) { if (pwallet->mapAddressBook.count(r.destination)) {
mapAccountBalances[pwallet->mapAddressBook[r.destination].name] += r.amount; mapAccountBalances[pwallet->mapAddressBook[r.destination].name] += r.amount;
} }
@ -1669,11 +1669,11 @@ UniValue listaccounts(const JSONRPCRequest& request)
} }
const std::list<CAccountingEntry>& acentries = pwallet->laccentries; const std::list<CAccountingEntry>& acentries = pwallet->laccentries;
BOOST_FOREACH(const CAccountingEntry& entry, acentries) for (const CAccountingEntry& entry : acentries)
mapAccountBalances[entry.strAccount] += entry.nCreditDebit; mapAccountBalances[entry.strAccount] += entry.nCreditDebit;
UniValue ret(UniValue::VOBJ); UniValue ret(UniValue::VOBJ);
BOOST_FOREACH(const PAIRTYPE(std::string, CAmount)& accountBalance, mapAccountBalances) { for (const PAIRTYPE(std::string, CAmount)& accountBalance : mapAccountBalances) {
ret.push_back(Pair(accountBalance.first, ValueFromAmount(accountBalance.second))); ret.push_back(Pair(accountBalance.first, ValueFromAmount(accountBalance.second)));
} }
return ret; return ret;
@ -2338,7 +2338,7 @@ UniValue listlockunspent(const JSONRPCRequest& request)
UniValue ret(UniValue::VARR); UniValue ret(UniValue::VARR);
BOOST_FOREACH(COutPoint &outpt, vOutpts) { for (COutPoint &outpt : vOutpts) {
UniValue o(UniValue::VOBJ); UniValue o(UniValue::VOBJ);
o.push_back(Pair("txid", outpt.hash.GetHex())); o.push_back(Pair("txid", outpt.hash.GetHex()));
@ -2456,7 +2456,7 @@ UniValue resendwallettransactions(const JSONRPCRequest& request)
std::vector<uint256> txids = pwallet->ResendWalletTransactionsBefore(GetTime(), g_connman.get()); std::vector<uint256> txids = pwallet->ResendWalletTransactionsBefore(GetTime(), g_connman.get());
UniValue result(UniValue::VARR); UniValue result(UniValue::VARR);
BOOST_FOREACH(const uint256& txid, txids) for (const uint256& txid : txids)
{ {
result.push_back(txid.ToString()); result.push_back(txid.ToString());
} }
@ -2581,7 +2581,7 @@ UniValue listunspent(const JSONRPCRequest& request)
LOCK2(cs_main, pwallet->cs_wallet); LOCK2(cs_main, pwallet->cs_wallet);
pwallet->AvailableCoins(vecOutputs, !include_unsafe, NULL, nMinimumAmount, nMaximumAmount, nMinimumSumAmount, nMaximumCount, nMinDepth, nMaxDepth); pwallet->AvailableCoins(vecOutputs, !include_unsafe, NULL, nMinimumAmount, nMaximumAmount, nMinimumSumAmount, nMaximumCount, nMinDepth, nMaxDepth);
BOOST_FOREACH(const COutput& out, vecOutputs) { for (const COutput& out : vecOutputs) {
CTxDestination address; CTxDestination address;
const CScript& scriptPubKey = out.tx->tx->vout[out.i].scriptPubKey; const CScript& scriptPubKey = out.tx->tx->vout[out.i].scriptPubKey;
bool fValidAddress = ExtractDestination(scriptPubKey, address); bool fValidAddress = ExtractDestination(scriptPubKey, address);

2
src/wallet/test/accounting_tests.cpp

@ -23,7 +23,7 @@ GetResults(std::map<CAmount, CAccountingEntry>& results)
results.clear(); results.clear();
BOOST_CHECK(pwalletMain->ReorderTransactions() == DB_LOAD_OK); BOOST_CHECK(pwalletMain->ReorderTransactions() == DB_LOAD_OK);
pwalletMain->ListAccountCreditDebit("", aes); pwalletMain->ListAccountCreditDebit("", aes);
BOOST_FOREACH(CAccountingEntry& ae, aes) for (CAccountingEntry& ae : aes)
{ {
results[ae.nOrderPos] = ae; results[ae.nOrderPos] = ae;
} }

90
src/wallet/wallet.cpp

@ -297,7 +297,7 @@ bool CWallet::Unlock(const SecureString& strWalletPassphrase)
{ {
LOCK(cs_wallet); LOCK(cs_wallet);
BOOST_FOREACH(const MasterKeyMap::value_type& pMasterKey, mapMasterKeys) for (const MasterKeyMap::value_type& pMasterKey : mapMasterKeys)
{ {
if(!crypter.SetKeyFromPassphrase(strWalletPassphrase, pMasterKey.second.vchSalt, pMasterKey.second.nDeriveIterations, pMasterKey.second.nDerivationMethod)) if(!crypter.SetKeyFromPassphrase(strWalletPassphrase, pMasterKey.second.vchSalt, pMasterKey.second.nDeriveIterations, pMasterKey.second.nDerivationMethod))
return false; return false;
@ -320,7 +320,7 @@ bool CWallet::ChangeWalletPassphrase(const SecureString& strOldWalletPassphrase,
CCrypter crypter; CCrypter crypter;
CKeyingMaterial _vMasterKey; CKeyingMaterial _vMasterKey;
BOOST_FOREACH(MasterKeyMap::value_type& pMasterKey, mapMasterKeys) for (MasterKeyMap::value_type& pMasterKey : mapMasterKeys)
{ {
if(!crypter.SetKeyFromPassphrase(strOldWalletPassphrase, pMasterKey.second.vchSalt, pMasterKey.second.nDeriveIterations, pMasterKey.second.nDerivationMethod)) if(!crypter.SetKeyFromPassphrase(strOldWalletPassphrase, pMasterKey.second.vchSalt, pMasterKey.second.nDeriveIterations, pMasterKey.second.nDerivationMethod))
return false; return false;
@ -412,7 +412,7 @@ std::set<uint256> CWallet::GetConflicts(const uint256& txid) const
std::pair<TxSpends::const_iterator, TxSpends::const_iterator> range; std::pair<TxSpends::const_iterator, TxSpends::const_iterator> range;
BOOST_FOREACH(const CTxIn& txin, wtx.tx->vin) for (const CTxIn& txin : wtx.tx->vin)
{ {
if (mapTxSpends.count(txin.prevout) <= 1) if (mapTxSpends.count(txin.prevout) <= 1)
continue; // No conflict if zero or one spends continue; // No conflict if zero or one spends
@ -544,7 +544,7 @@ void CWallet::AddToSpends(const uint256& wtxid)
if (thisTx.IsCoinBase()) // Coinbases don't spend anything! if (thisTx.IsCoinBase()) // Coinbases don't spend anything!
return; return;
BOOST_FOREACH(const CTxIn& txin, thisTx.tx->vin) for (const CTxIn& txin : thisTx.tx->vin)
AddToSpends(txin.prevout, wtxid); AddToSpends(txin.prevout, wtxid);
} }
@ -659,7 +659,7 @@ DBErrors CWallet::ReorderTransactions()
} }
std::list<CAccountingEntry> acentries; std::list<CAccountingEntry> acentries;
walletdb.ListAccountCreditDebit("", acentries); walletdb.ListAccountCreditDebit("", acentries);
BOOST_FOREACH(CAccountingEntry& entry, acentries) for (CAccountingEntry& entry : acentries)
{ {
txByTime.insert(std::make_pair(entry.nTime, TxPair((CWalletTx*)0, &entry))); txByTime.insert(std::make_pair(entry.nTime, TxPair((CWalletTx*)0, &entry)));
} }
@ -689,7 +689,7 @@ DBErrors CWallet::ReorderTransactions()
else else
{ {
int64_t nOrderPosOff = 0; int64_t nOrderPosOff = 0;
BOOST_FOREACH(const int64_t& nOffsetStart, nOrderPosOffsets) for (const int64_t& nOffsetStart : nOrderPosOffsets)
{ {
if (nOrderPos >= nOffsetStart) if (nOrderPos >= nOffsetStart)
++nOrderPosOff; ++nOrderPosOff;
@ -778,7 +778,7 @@ bool CWallet::GetAccountPubkey(CPubKey &pubKey, std::string strAccount, bool bFo
for (std::map<uint256, CWalletTx>::iterator it = mapWallet.begin(); for (std::map<uint256, CWalletTx>::iterator it = mapWallet.begin();
it != mapWallet.end() && account.vchPubKey.IsValid(); it != mapWallet.end() && account.vchPubKey.IsValid();
++it) ++it)
BOOST_FOREACH(const CTxOut& txout, (*it).second.tx->vout) for (const CTxOut& txout : (*it).second.tx->vout)
if (txout.scriptPubKey == scriptPubKey) { if (txout.scriptPubKey == scriptPubKey) {
bForceNew = true; bForceNew = true;
break; break;
@ -804,7 +804,7 @@ void CWallet::MarkDirty()
{ {
{ {
LOCK(cs_wallet); LOCK(cs_wallet);
BOOST_FOREACH(PAIRTYPE(const uint256, CWalletTx)& item, mapWallet) for (PAIRTYPE(const uint256, CWalletTx)& item : mapWallet)
item.second.MarkDirty(); item.second.MarkDirty();
} }
} }
@ -922,7 +922,7 @@ bool CWallet::LoadToWallet(const CWalletTx& wtxIn)
wtx.BindWallet(this); wtx.BindWallet(this);
wtxOrdered.insert(std::make_pair(wtx.nOrderPos, TxPair(&wtx, (CAccountingEntry*)0))); wtxOrdered.insert(std::make_pair(wtx.nOrderPos, TxPair(&wtx, (CAccountingEntry*)0)));
AddToSpends(hash); AddToSpends(hash);
BOOST_FOREACH(const CTxIn& txin, wtx.tx->vin) { for (const CTxIn& txin : wtx.tx->vin) {
if (mapWallet.count(txin.prevout.hash)) { if (mapWallet.count(txin.prevout.hash)) {
CWalletTx& prevtx = mapWallet[txin.prevout.hash]; CWalletTx& prevtx = mapWallet[txin.prevout.hash];
if (prevtx.nIndex == -1 && !prevtx.hashUnset()) { if (prevtx.nIndex == -1 && !prevtx.hashUnset()) {
@ -954,7 +954,7 @@ bool CWallet::AddToWalletIfInvolvingMe(const CTransactionRef& ptx, const CBlockI
AssertLockHeld(cs_wallet); AssertLockHeld(cs_wallet);
if (pIndex != NULL) { if (pIndex != NULL) {
BOOST_FOREACH(const CTxIn& txin, tx.vin) { for (const CTxIn& txin : tx.vin) {
std::pair<TxSpends::const_iterator, TxSpends::const_iterator> range = mapTxSpends.equal_range(txin.prevout); std::pair<TxSpends::const_iterator, TxSpends::const_iterator> range = mapTxSpends.equal_range(txin.prevout);
while (range.first != range.second) { while (range.first != range.second) {
if (range.first->second != tx.GetHash()) { if (range.first->second != tx.GetHash()) {
@ -1035,7 +1035,7 @@ bool CWallet::AbandonTransaction(const uint256& hashTx)
} }
// If a transaction changes 'conflicted' state, that changes the balance // If a transaction changes 'conflicted' state, that changes the balance
// available of the outputs it spends. So force those to be recomputed // available of the outputs it spends. So force those to be recomputed
BOOST_FOREACH(const CTxIn& txin, wtx.tx->vin) for (const CTxIn& txin : wtx.tx->vin)
{ {
if (mapWallet.count(txin.prevout.hash)) if (mapWallet.count(txin.prevout.hash))
mapWallet[txin.prevout.hash].MarkDirty(); mapWallet[txin.prevout.hash].MarkDirty();
@ -1096,7 +1096,7 @@ void CWallet::MarkConflicted(const uint256& hashBlock, const uint256& hashTx)
} }
// If a transaction changes 'conflicted' state, that changes the balance // If a transaction changes 'conflicted' state, that changes the balance
// available of the outputs it spends. So force those to be recomputed // available of the outputs it spends. So force those to be recomputed
BOOST_FOREACH(const CTxIn& txin, wtx.tx->vin) for (const CTxIn& txin : wtx.tx->vin)
{ {
if (mapWallet.count(txin.prevout.hash)) if (mapWallet.count(txin.prevout.hash))
mapWallet[txin.prevout.hash].MarkDirty(); mapWallet[txin.prevout.hash].MarkDirty();
@ -1114,7 +1114,7 @@ void CWallet::SyncTransaction(const CTransactionRef& ptx, const CBlockIndex *pin
// If a transaction changes 'conflicted' state, that changes the balance // If a transaction changes 'conflicted' state, that changes the balance
// available of the outputs it spends. So force those to be // available of the outputs it spends. So force those to be
// recomputed, also: // recomputed, also:
BOOST_FOREACH(const CTxIn& txin, tx.vin) for (const CTxIn& txin : tx.vin)
{ {
if (mapWallet.count(txin.prevout.hash)) if (mapWallet.count(txin.prevout.hash))
mapWallet[txin.prevout.hash].MarkDirty(); mapWallet[txin.prevout.hash].MarkDirty();
@ -1230,7 +1230,7 @@ CAmount CWallet::GetChange(const CTxOut& txout) const
bool CWallet::IsMine(const CTransaction& tx) const bool CWallet::IsMine(const CTransaction& tx) const
{ {
BOOST_FOREACH(const CTxOut& txout, tx.vout) for (const CTxOut& txout : tx.vout)
if (IsMine(txout)) if (IsMine(txout))
return true; return true;
return false; return false;
@ -1244,7 +1244,7 @@ bool CWallet::IsFromMe(const CTransaction& tx) const
CAmount CWallet::GetDebit(const CTransaction& tx, const isminefilter& filter) const CAmount CWallet::GetDebit(const CTransaction& tx, const isminefilter& filter) const
{ {
CAmount nDebit = 0; CAmount nDebit = 0;
BOOST_FOREACH(const CTxIn& txin, tx.vin) for (const CTxIn& txin : tx.vin)
{ {
nDebit += GetDebit(txin, filter); nDebit += GetDebit(txin, filter);
if (!MoneyRange(nDebit)) if (!MoneyRange(nDebit))
@ -1257,7 +1257,7 @@ bool CWallet::IsAllFromMe(const CTransaction& tx, const isminefilter& filter) co
{ {
LOCK(cs_wallet); LOCK(cs_wallet);
BOOST_FOREACH(const CTxIn& txin, tx.vin) for (const CTxIn& txin : tx.vin)
{ {
auto mi = mapWallet.find(txin.prevout.hash); auto mi = mapWallet.find(txin.prevout.hash);
if (mi == mapWallet.end()) if (mi == mapWallet.end())
@ -1277,7 +1277,7 @@ bool CWallet::IsAllFromMe(const CTransaction& tx, const isminefilter& filter) co
CAmount CWallet::GetCredit(const CTransaction& tx, const isminefilter& filter) const CAmount CWallet::GetCredit(const CTransaction& tx, const isminefilter& filter) const
{ {
CAmount nCredit = 0; CAmount nCredit = 0;
BOOST_FOREACH(const CTxOut& txout, tx.vout) for (const CTxOut& txout : tx.vout)
{ {
nCredit += GetCredit(txout, filter); nCredit += GetCredit(txout, filter);
if (!MoneyRange(nCredit)) if (!MoneyRange(nCredit))
@ -1289,7 +1289,7 @@ CAmount CWallet::GetCredit(const CTransaction& tx, const isminefilter& filter) c
CAmount CWallet::GetChange(const CTransaction& tx) const CAmount CWallet::GetChange(const CTransaction& tx) const
{ {
CAmount nChange = 0; CAmount nChange = 0;
BOOST_FOREACH(const CTxOut& txout, tx.vout) for (const CTxOut& txout : tx.vout)
{ {
nChange += GetChange(txout); nChange += GetChange(txout);
if (!MoneyRange(nChange)) if (!MoneyRange(nChange))
@ -1525,7 +1525,7 @@ void CWallet::ReacceptWalletTransactions()
std::map<int64_t, CWalletTx*> mapSorted; std::map<int64_t, CWalletTx*> mapSorted;
// Sort pending wallet transactions based on their initial wallet insertion order // Sort pending wallet transactions based on their initial wallet insertion order
BOOST_FOREACH(PAIRTYPE(const uint256, CWalletTx)& item, mapWallet) for (PAIRTYPE(const uint256, CWalletTx)& item : mapWallet)
{ {
const uint256& wtxid = item.first; const uint256& wtxid = item.first;
CWalletTx& wtx = item.second; CWalletTx& wtx = item.second;
@ -1539,7 +1539,7 @@ void CWallet::ReacceptWalletTransactions()
} }
// Try to add wallet transactions to memory pool // Try to add wallet transactions to memory pool
BOOST_FOREACH(PAIRTYPE(const int64_t, CWalletTx*)& item, mapSorted) for (PAIRTYPE(const int64_t, CWalletTx*)& item : mapSorted)
{ {
CWalletTx& wtx = *(item.second); CWalletTx& wtx = *(item.second);
@ -1767,7 +1767,7 @@ bool CWalletTx::IsTrusted() const
return false; return false;
// Trusted if all inputs are from us and are in the mempool: // Trusted if all inputs are from us and are in the mempool:
BOOST_FOREACH(const CTxIn& txin, tx->vin) for (const CTxIn& txin : tx->vin)
{ {
// Transactions not sent by us: not trusted // Transactions not sent by us: not trusted
const CWalletTx* parent = pwallet->GetWalletTx(txin.prevout.hash); const CWalletTx* parent = pwallet->GetWalletTx(txin.prevout.hash);
@ -1796,7 +1796,7 @@ std::vector<uint256> CWallet::ResendWalletTransactionsBefore(int64_t nTime, CCon
LOCK(cs_wallet); LOCK(cs_wallet);
// Sort them in chronological order // Sort them in chronological order
std::multimap<unsigned int, CWalletTx*> mapSorted; std::multimap<unsigned int, CWalletTx*> mapSorted;
BOOST_FOREACH(PAIRTYPE(const uint256, CWalletTx)& item, mapWallet) for (PAIRTYPE(const uint256, CWalletTx)& item : mapWallet)
{ {
CWalletTx& wtx = item.second; CWalletTx& wtx = item.second;
// Don't rebroadcast if newer than nTime: // Don't rebroadcast if newer than nTime:
@ -1804,7 +1804,7 @@ std::vector<uint256> CWallet::ResendWalletTransactionsBefore(int64_t nTime, CCon
continue; continue;
mapSorted.insert(std::make_pair(wtx.nTimeReceived, &wtx)); mapSorted.insert(std::make_pair(wtx.nTimeReceived, &wtx));
} }
BOOST_FOREACH(PAIRTYPE(const unsigned int, CWalletTx*)& item, mapSorted) for (PAIRTYPE(const unsigned int, CWalletTx*)& item : mapSorted)
{ {
CWalletTx& wtx = *item.second; CWalletTx& wtx = *item.second;
if (wtx.RelayWalletTransaction(connman)) if (wtx.RelayWalletTransaction(connman))
@ -2228,7 +2228,7 @@ bool CWallet::SelectCoinsMinConf(const CAmount& nTargetValue, const int nConfMin
random_shuffle(vCoins.begin(), vCoins.end(), GetRandInt); random_shuffle(vCoins.begin(), vCoins.end(), GetRandInt);
BOOST_FOREACH(const COutput &output, vCoins) for (const COutput &output : vCoins)
{ {
if (!output.fSpendable) if (!output.fSpendable)
continue; continue;
@ -2328,7 +2328,7 @@ bool CWallet::SelectCoins(const std::vector<COutput>& vAvailableCoins, const CAm
// coin control -> return all selected outputs (we want all selected to go into the transaction for sure) // coin control -> return all selected outputs (we want all selected to go into the transaction for sure)
if (coinControl && coinControl->HasSelected() && !coinControl->fAllowOtherInputs) if (coinControl && coinControl->HasSelected() && !coinControl->fAllowOtherInputs)
{ {
BOOST_FOREACH(const COutput& out, vCoins) for (const COutput& out : vCoins)
{ {
if (!out.fSpendable) if (!out.fSpendable)
continue; continue;
@ -2345,7 +2345,7 @@ bool CWallet::SelectCoins(const std::vector<COutput>& vAvailableCoins, const CAm
std::vector<COutPoint> vPresetInputs; std::vector<COutPoint> vPresetInputs;
if (coinControl) if (coinControl)
coinControl->ListSelected(vPresetInputs); coinControl->ListSelected(vPresetInputs);
BOOST_FOREACH(const COutPoint& outpoint, vPresetInputs) for (const COutPoint& outpoint : vPresetInputs)
{ {
std::map<uint256, CWalletTx>::const_iterator it = mapWallet.find(outpoint.hash); std::map<uint256, CWalletTx>::const_iterator it = mapWallet.find(outpoint.hash);
if (it != mapWallet.end()) if (it != mapWallet.end())
@ -2433,7 +2433,7 @@ bool CWallet::FundTransaction(CMutableTransaction& tx, CAmount& nFeeRet, bool ov
coinControl.fOverrideFeeRate = overrideEstimatedFeeRate; coinControl.fOverrideFeeRate = overrideEstimatedFeeRate;
coinControl.nFeeRate = specificFeeRate; coinControl.nFeeRate = specificFeeRate;
BOOST_FOREACH(const CTxIn& txin, tx.vin) for (const CTxIn& txin : tx.vin)
coinControl.Select(txin.prevout); coinControl.Select(txin.prevout);
CReserveKey reservekey(this); CReserveKey reservekey(this);
@ -2449,7 +2449,7 @@ bool CWallet::FundTransaction(CMutableTransaction& tx, CAmount& nFeeRet, bool ov
tx.vout[idx].nValue = wtx.tx->vout[idx].nValue; tx.vout[idx].nValue = wtx.tx->vout[idx].nValue;
// Add new txins (keeping original txin scriptSig/order) // Add new txins (keeping original txin scriptSig/order)
BOOST_FOREACH(const CTxIn& txin, wtx.tx->vin) for (const CTxIn& txin : wtx.tx->vin)
{ {
if (!coinControl.IsSelected(txin.prevout)) if (!coinControl.IsSelected(txin.prevout))
{ {
@ -2832,7 +2832,7 @@ bool CWallet::CommitTransaction(CWalletTx& wtxNew, CReserveKey& reservekey, CCon
AddToWallet(wtxNew); AddToWallet(wtxNew);
// Notify that old coins are spent // Notify that old coins are spent
BOOST_FOREACH(const CTxIn& txin, wtxNew.tx->vin) for (const CTxIn& txin : wtxNew.tx->vin)
{ {
CWalletTx &coin = mapWallet[txin.prevout.hash]; CWalletTx &coin = mapWallet[txin.prevout.hash];
coin.BindWallet(this); coin.BindWallet(this);
@ -3010,7 +3010,7 @@ bool CWallet::DelAddressBook(const CTxDestination& address)
// Delete destdata tuples associated with address // Delete destdata tuples associated with address
std::string strAddress = CBitcoinAddress(address).ToString(); std::string strAddress = CBitcoinAddress(address).ToString();
BOOST_FOREACH(const PAIRTYPE(std::string, std::string) &item, mapAddressBook[address].destdata) for (const PAIRTYPE(std::string, std::string) &item : mapAddressBook[address].destdata)
{ {
CWalletDB(*dbw).EraseDestData(strAddress, item.first); CWalletDB(*dbw).EraseDestData(strAddress, item.first);
} }
@ -3055,7 +3055,7 @@ bool CWallet::NewKeyPool()
{ {
LOCK(cs_wallet); LOCK(cs_wallet);
CWalletDB walletdb(*dbw); CWalletDB walletdb(*dbw);
BOOST_FOREACH(int64_t nIndex, setKeyPool) for (int64_t nIndex : setKeyPool)
walletdb.ErasePool(nIndex); walletdb.ErasePool(nIndex);
setKeyPool.clear(); setKeyPool.clear();
@ -3305,7 +3305,7 @@ std::set< std::set<CTxDestination> > CWallet::GetAddressGroupings()
{ {
bool any_mine = false; bool any_mine = false;
// group all input addresses with each other // group all input addresses with each other
BOOST_FOREACH(CTxIn txin, pcoin->tx->vin) for (CTxIn txin : pcoin->tx->vin)
{ {
CTxDestination address; CTxDestination address;
if(!IsMine(txin)) /* If this input isn't mine, ignore it */ if(!IsMine(txin)) /* If this input isn't mine, ignore it */
@ -3319,7 +3319,7 @@ std::set< std::set<CTxDestination> > CWallet::GetAddressGroupings()
// group change with input addresses // group change with input addresses
if (any_mine) if (any_mine)
{ {
BOOST_FOREACH(CTxOut txout, pcoin->tx->vout) for (CTxOut txout : pcoin->tx->vout)
if (IsChange(txout)) if (IsChange(txout))
{ {
CTxDestination txoutAddr; CTxDestination txoutAddr;
@ -3350,18 +3350,18 @@ std::set< std::set<CTxDestination> > CWallet::GetAddressGroupings()
std::set< std::set<CTxDestination>* > uniqueGroupings; // a set of pointers to groups of addresses std::set< std::set<CTxDestination>* > uniqueGroupings; // a set of pointers to groups of addresses
std::map< CTxDestination, std::set<CTxDestination>* > setmap; // map addresses to the unique group containing it std::map< CTxDestination, std::set<CTxDestination>* > setmap; // map addresses to the unique group containing it
BOOST_FOREACH(std::set<CTxDestination> _grouping, groupings) for (std::set<CTxDestination> _grouping : groupings)
{ {
// make a set of all the groups hit by this new group // make a set of all the groups hit by this new group
std::set< std::set<CTxDestination>* > hits; std::set< std::set<CTxDestination>* > hits;
std::map< CTxDestination, std::set<CTxDestination>* >::iterator it; std::map< CTxDestination, std::set<CTxDestination>* >::iterator it;
BOOST_FOREACH(CTxDestination address, _grouping) for (CTxDestination address : _grouping)
if ((it = setmap.find(address)) != setmap.end()) if ((it = setmap.find(address)) != setmap.end())
hits.insert((*it).second); hits.insert((*it).second);
// merge all hit groups into a new single group and delete old groups // merge all hit groups into a new single group and delete old groups
std::set<CTxDestination>* merged = new std::set<CTxDestination>(_grouping); std::set<CTxDestination>* merged = new std::set<CTxDestination>(_grouping);
BOOST_FOREACH(std::set<CTxDestination>* hit, hits) for (std::set<CTxDestination>* hit : hits)
{ {
merged->insert(hit->begin(), hit->end()); merged->insert(hit->begin(), hit->end());
uniqueGroupings.erase(hit); uniqueGroupings.erase(hit);
@ -3370,12 +3370,12 @@ std::set< std::set<CTxDestination> > CWallet::GetAddressGroupings()
uniqueGroupings.insert(merged); uniqueGroupings.insert(merged);
// update setmap // update setmap
BOOST_FOREACH(CTxDestination element, *merged) for (CTxDestination element : *merged)
setmap[element] = merged; setmap[element] = merged;
} }
std::set< std::set<CTxDestination> > ret; std::set< std::set<CTxDestination> > ret;
BOOST_FOREACH(std::set<CTxDestination>* uniqueGrouping, uniqueGroupings) for (std::set<CTxDestination>* uniqueGrouping : uniqueGroupings)
{ {
ret.insert(*uniqueGrouping); ret.insert(*uniqueGrouping);
delete uniqueGrouping; delete uniqueGrouping;
@ -3388,7 +3388,7 @@ std::set<CTxDestination> CWallet::GetAccountAddresses(const std::string& strAcco
{ {
LOCK(cs_wallet); LOCK(cs_wallet);
std::set<CTxDestination> result; std::set<CTxDestination> result;
BOOST_FOREACH(const PAIRTYPE(CTxDestination, CAddressBookData)& item, mapAddressBook) for (const PAIRTYPE(CTxDestination, CAddressBookData)& item : mapAddressBook)
{ {
const CTxDestination& address = item.first; const CTxDestination& address = item.first;
const std::string& strName = item.second.name; const std::string& strName = item.second.name;
@ -3438,7 +3438,7 @@ void CWallet::GetAllReserveKeys(std::set<CKeyID>& setAddress) const
CWalletDB walletdb(*dbw); CWalletDB walletdb(*dbw);
LOCK2(cs_main, cs_wallet); LOCK2(cs_main, cs_wallet);
BOOST_FOREACH(const int64_t& id, setKeyPool) for (const int64_t& id : setKeyPool)
{ {
CKeyPool keypool; CKeyPool keypool;
if (!walletdb.ReadPool(id, keypool)) if (!walletdb.ReadPool(id, keypool))
@ -3513,7 +3513,7 @@ public:
std::vector<CTxDestination> vDest; std::vector<CTxDestination> vDest;
int nRequired; int nRequired;
if (ExtractDestinations(script, type, vDest, nRequired)) { if (ExtractDestinations(script, type, vDest, nRequired)) {
BOOST_FOREACH(const CTxDestination &dest, vDest) for (const CTxDestination &dest : vDest)
boost::apply_visitor(*this, dest); boost::apply_visitor(*this, dest);
} }
} }
@ -3548,7 +3548,7 @@ void CWallet::GetKeyBirthTimes(std::map<CTxDestination, int64_t> &mapKeyBirth) c
std::map<CKeyID, CBlockIndex*> mapKeyFirstBlock; std::map<CKeyID, CBlockIndex*> mapKeyFirstBlock;
std::set<CKeyID> setKeys; std::set<CKeyID> setKeys;
GetKeys(setKeys); GetKeys(setKeys);
BOOST_FOREACH(const CKeyID &keyid, setKeys) { for (const CKeyID &keyid : setKeys) {
if (mapKeyBirth.count(keyid) == 0) if (mapKeyBirth.count(keyid) == 0)
mapKeyFirstBlock[keyid] = pindexMax; mapKeyFirstBlock[keyid] = pindexMax;
} }
@ -3567,10 +3567,10 @@ void CWallet::GetKeyBirthTimes(std::map<CTxDestination, int64_t> &mapKeyBirth) c
if (blit != mapBlockIndex.end() && chainActive.Contains(blit->second)) { if (blit != mapBlockIndex.end() && chainActive.Contains(blit->second)) {
// ... which are already in a block // ... which are already in a block
int nHeight = blit->second->nHeight; int nHeight = blit->second->nHeight;
BOOST_FOREACH(const CTxOut &txout, wtx.tx->vout) { for (const CTxOut &txout : wtx.tx->vout) {
// iterate over all their outputs // iterate over all their outputs
CAffectedKeysVisitor(*this, vAffected).Process(txout.scriptPubKey); CAffectedKeysVisitor(*this, vAffected).Process(txout.scriptPubKey);
BOOST_FOREACH(const CKeyID &keyid, vAffected) { for (const CKeyID &keyid : vAffected) {
// ... and all their affected keys // ... and all their affected keys
std::map<CKeyID, CBlockIndex*>::iterator rit = mapKeyFirstBlock.find(keyid); std::map<CKeyID, CBlockIndex*>::iterator rit = mapKeyFirstBlock.find(keyid);
if (rit != mapKeyFirstBlock.end() && nHeight < rit->second->nHeight) if (rit != mapKeyFirstBlock.end() && nHeight < rit->second->nHeight)
@ -3891,7 +3891,7 @@ CWallet* CWallet::CreateWalletFromFile(const std::string walletFile)
{ {
CWalletDB walletdb(*walletInstance->dbw); CWalletDB walletdb(*walletInstance->dbw);
BOOST_FOREACH(const CWalletTx& wtxOld, vWtx) for (const CWalletTx& wtxOld : vWtx)
{ {
uint256 hash = wtxOld.GetHash(); uint256 hash = wtxOld.GetHash();
std::map<uint256, CWalletTx>::iterator mi = walletInstance->mapWallet.find(hash); std::map<uint256, CWalletTx>::iterator mi = walletInstance->mapWallet.find(hash);

10
src/wallet/walletdb.cpp

@ -208,7 +208,7 @@ CAmount CWalletDB::GetAccountCreditDebit(const std::string& strAccount)
ListAccountCreditDebit(strAccount, entries); ListAccountCreditDebit(strAccount, entries);
CAmount nCreditDebit = 0; CAmount nCreditDebit = 0;
BOOST_FOREACH (const CAccountingEntry& entry, entries) for (const CAccountingEntry& entry : entries)
nCreditDebit += entry.nCreditDebit; nCreditDebit += entry.nCreditDebit;
return nCreditDebit; return nCreditDebit;
@ -635,7 +635,7 @@ DBErrors CWalletDB::LoadWallet(CWallet* pwallet)
if ((wss.nKeys + wss.nCKeys + wss.nWatchKeys) != wss.nKeyMeta) if ((wss.nKeys + wss.nCKeys + wss.nWatchKeys) != wss.nKeyMeta)
pwallet->UpdateTimeFirstKey(1); pwallet->UpdateTimeFirstKey(1);
BOOST_FOREACH(uint256 hash, wss.vWalletUpgrade) for (uint256 hash : wss.vWalletUpgrade)
WriteTx(pwallet->mapWallet[hash]); WriteTx(pwallet->mapWallet[hash]);
// Rewrite encrypted wallets of versions 0.4.0 and 0.5.0rc: // Rewrite encrypted wallets of versions 0.4.0 and 0.5.0rc:
@ -650,7 +650,7 @@ DBErrors CWalletDB::LoadWallet(CWallet* pwallet)
pwallet->laccentries.clear(); pwallet->laccentries.clear();
ListAccountCreditDebit("*", pwallet->laccentries); ListAccountCreditDebit("*", pwallet->laccentries);
BOOST_FOREACH(CAccountingEntry& entry, pwallet->laccentries) { for (CAccountingEntry& entry : pwallet->laccentries) {
pwallet->wtxOrdered.insert(make_pair(entry.nOrderPos, CWallet::TxPair((CWalletTx*)0, &entry))); pwallet->wtxOrdered.insert(make_pair(entry.nOrderPos, CWallet::TxPair((CWalletTx*)0, &entry)));
} }
@ -736,7 +736,7 @@ DBErrors CWalletDB::ZapSelectTx(std::vector<uint256>& vTxHashIn, std::vector<uin
// erase each matching wallet TX // erase each matching wallet TX
bool delerror = false; bool delerror = false;
std::vector<uint256>::iterator it = vTxHashIn.begin(); std::vector<uint256>::iterator it = vTxHashIn.begin();
BOOST_FOREACH (uint256 hash, vTxHash) { for (uint256 hash : vTxHash) {
while (it < vTxHashIn.end() && (*it) < hash) { while (it < vTxHashIn.end() && (*it) < hash) {
it++; it++;
} }
@ -767,7 +767,7 @@ DBErrors CWalletDB::ZapWalletTx(std::vector<CWalletTx>& vWtx)
return err; return err;
// erase each wallet TX // erase each wallet TX
BOOST_FOREACH (uint256& hash, vTxHash) { for (uint256& hash : vTxHash) {
if (!EraseTx(hash)) if (!EraseTx(hash))
return DB_CORRUPT; return DB_CORRUPT;
} }

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