Merge pull request #41 from archshift/itr

Changed iterators to use auto, many of which using range-based loops
master
bunnei 2014-08-12 10:12:39 +07:00
commit 0ccd026a6d
3 changed files with 82 additions and 93 deletions

@ -21,14 +21,14 @@ void SaveHotkeys(QSettings& settings)
{
settings.beginGroup("Shortcuts");
for (HotkeyGroupMap::iterator group = hotkey_groups.begin(); group != hotkey_groups.end(); ++group)
for (auto group : hotkey_groups)
{
settings.beginGroup(group->first);
for (HotkeyMap::iterator hotkey = group->second.begin(); hotkey != group->second.end(); ++hotkey)
settings.beginGroup(group.first);
for (auto hotkey : group.second)
{
settings.beginGroup(hotkey->first);
settings.setValue(QString("KeySeq"), hotkey->second.keyseq.toString());
settings.setValue(QString("Context"), hotkey->second.context);
settings.beginGroup(hotkey.first);
settings.setValue(QString("KeySeq"), hotkey.second.keyseq.toString());
settings.setValue(QString("Context"), hotkey.second.context);
settings.endGroup();
}
settings.endGroup();
@ -42,17 +42,17 @@ void LoadHotkeys(QSettings& settings)
// Make sure NOT to use a reference here because it would become invalid once we call beginGroup()
QStringList groups = settings.childGroups();
for (QList<QString>::iterator group = groups.begin(); group != groups.end(); ++group)
for (auto group : groups)
{
settings.beginGroup(*group);
settings.beginGroup(group);
QStringList hotkeys = settings.childGroups();
for (QList<QString>::iterator hotkey = hotkeys.begin(); hotkey != hotkeys.end(); ++hotkey)
for (auto hotkey : hotkeys)
{
settings.beginGroup(*hotkey);
settings.beginGroup(hotkey);
// RegisterHotkey assigns default keybindings, so use old values as default parameters
Hotkey& hk = hotkey_groups[*group][*hotkey];
Hotkey& hk = hotkey_groups[group][hotkey];
hk.keyseq = QKeySequence::fromString(settings.value("KeySeq", hk.keyseq.toString()).toString());
hk.context = (Qt::ShortcutContext)settings.value("Context", hk.context).toInt();
if (hk.shortcut)
@ -91,13 +91,13 @@ GHotkeysDialog::GHotkeysDialog(QWidget* parent): QDialog(parent)
{
ui.setupUi(this);
for (HotkeyGroupMap::iterator group = hotkey_groups.begin(); group != hotkey_groups.end(); ++group)
for (auto group : hotkey_groups)
{
QTreeWidgetItem* toplevel_item = new QTreeWidgetItem(QStringList(group->first));
for (HotkeyMap::iterator hotkey = group->second.begin(); hotkey != group->second.end(); ++hotkey)
QTreeWidgetItem* toplevel_item = new QTreeWidgetItem(QStringList(group.first));
for (auto hotkey : group.second)
{
QStringList columns;
columns << hotkey->first << hotkey->second.keyseq.toString();
columns << hotkey.first << hotkey.second.keyseq.toString();
QTreeWidgetItem* item = new QTreeWidgetItem(columns);
toplevel_item->addChild(item);
}

@ -9,32 +9,29 @@
#include <sstream>
#include <algorithm>
bool BreakPoints::IsAddressBreakPoint(u32 _iAddress)
bool BreakPoints::IsAddressBreakPoint(u32 iAddress)
{
for (TBreakPoints::iterator i = m_BreakPoints.begin(); i != m_BreakPoints.end(); ++i)
if (i->iAddress == _iAddress)
return true;
return false;
auto cond = [&iAddress](const TBreakPoint& bp) { return bp.iAddress == iAddress; };
auto it = std::find_if(m_BreakPoints.begin(), m_BreakPoints.end(), cond);
return it != m_BreakPoints.end();
}
bool BreakPoints::IsTempBreakPoint(u32 _iAddress)
bool BreakPoints::IsTempBreakPoint(u32 iAddress)
{
for (TBreakPoints::iterator i = m_BreakPoints.begin(); i != m_BreakPoints.end(); ++i)
if (i->iAddress == _iAddress && i->bTemporary)
return true;
return false;
auto cond = [&iAddress](const TBreakPoint& bp) { return bp.iAddress == iAddress && bp.bTemporary; };
auto it = std::find_if(m_BreakPoints.begin(), m_BreakPoints.end(), cond);
return it != m_BreakPoints.end();
}
BreakPoints::TBreakPointsStr BreakPoints::GetStrings() const
{
TBreakPointsStr bps;
for (TBreakPoints::const_iterator i = m_BreakPoints.begin();
i != m_BreakPoints.end(); ++i)
for (auto breakpoint : m_BreakPoints)
{
if (!i->bTemporary)
if (!breakpoint.bTemporary)
{
std::stringstream bp;
bp << std::hex << i->iAddress << " " << (i->bOn ? "n" : "");
bp << std::hex << breakpoint.iAddress << " " << (breakpoint.bOn ? "n" : "");
bps.push_back(bp.str());
}
}
@ -44,13 +41,13 @@ BreakPoints::TBreakPointsStr BreakPoints::GetStrings() const
void BreakPoints::AddFromStrings(const TBreakPointsStr& bps)
{
for (TBreakPointsStr::const_iterator i = bps.begin(); i != bps.end(); ++i)
for (auto bps_item : bps)
{
TBreakPoint bp;
std::stringstream bpstr;
bpstr << std::hex << *i;
bpstr << std::hex << bps_item;
bpstr >> bp.iAddress;
bp.bOn = i->find("n") != i->npos;
bp.bOn = bps_item.find("n") != bps_item.npos;
bp.bTemporary = false;
Add(bp);
}
@ -84,16 +81,10 @@ void BreakPoints::Add(u32 em_address, bool temp)
void BreakPoints::Remove(u32 em_address)
{
for (TBreakPoints::iterator i = m_BreakPoints.begin(); i != m_BreakPoints.end(); ++i)
{
if (i->iAddress == em_address)
{
m_BreakPoints.erase(i);
//if (jit)
// jit->GetBlockCache()->InvalidateICache(em_address, 4);
return;
}
}
auto cond = [&em_address](const TBreakPoint& bp) { return bp.iAddress == em_address; };
auto it = std::find_if(m_BreakPoints.begin(), m_BreakPoints.end(), cond);
if (it != m_BreakPoints.end())
m_BreakPoints.erase(it);
}
void BreakPoints::Clear()
@ -107,21 +98,23 @@ void BreakPoints::Clear()
// }
// );
//}
m_BreakPoints.clear();
}
MemChecks::TMemChecksStr MemChecks::GetStrings() const
{
TMemChecksStr mcs;
for (TMemChecks::const_iterator i = m_MemChecks.begin();
i != m_MemChecks.end(); ++i)
for (auto memcheck : m_MemChecks)
{
std::stringstream mc;
mc << std::hex << i->StartAddress;
mc << " " << (i->bRange ? i->EndAddress : i->StartAddress) << " " <<
(i->bRange ? "n" : "") << (i->OnRead ? "r" : "") <<
(i->OnWrite ? "w" : "") << (i->Log ? "l" : "") << (i->Break ? "p" : "");
mc << std::hex << memcheck.StartAddress;
mc << " " << (memcheck.bRange ? memcheck.EndAddress : memcheck.StartAddress) << " "
<< (memcheck.bRange ? "n" : "")
<< (memcheck.OnRead ? "r" : "")
<< (memcheck.OnWrite ? "w" : "")
<< (memcheck.Log ? "l" : "")
<< (memcheck.Break ? "p" : "");
mcs.push_back(mc.str());
}
@ -130,17 +123,17 @@ MemChecks::TMemChecksStr MemChecks::GetStrings() const
void MemChecks::AddFromStrings(const TMemChecksStr& mcs)
{
for (TMemChecksStr::const_iterator i = mcs.begin(); i != mcs.end(); ++i)
for (auto mcs_item : mcs)
{
TMemCheck mc;
std::stringstream mcstr;
mcstr << std::hex << *i;
mcstr << std::hex << mcs_item;
mcstr >> mc.StartAddress;
mc.bRange = i->find("n") != i->npos;
mc.OnRead = i->find("r") != i->npos;
mc.OnWrite = i->find("w") != i->npos;
mc.Log = i->find("l") != i->npos;
mc.Break = i->find("p") != i->npos;
mc.bRange = mcs_item.find("n") != mcs_item.npos;
mc.OnRead = mcs_item.find("r") != mcs_item.npos;
mc.OnWrite = mcs_item.find("w") != mcs_item.npos;
mc.Log = mcs_item.find("l") != mcs_item.npos;
mc.Break = mcs_item.find("p") != mcs_item.npos;
if (mc.bRange)
mcstr >> mc.EndAddress;
else
@ -149,27 +142,23 @@ void MemChecks::AddFromStrings(const TMemChecksStr& mcs)
}
}
void MemChecks::Add(const TMemCheck& _rMemoryCheck)
void MemChecks::Add(const TMemCheck& rMemoryCheck)
{
if (GetMemCheck(_rMemoryCheck.StartAddress) == 0)
m_MemChecks.push_back(_rMemoryCheck);
if (GetMemCheck(rMemoryCheck.StartAddress) == 0)
m_MemChecks.push_back(rMemoryCheck);
}
void MemChecks::Remove(u32 _Address)
void MemChecks::Remove(u32 Address)
{
for (TMemChecks::iterator i = m_MemChecks.begin(); i != m_MemChecks.end(); ++i)
{
if (i->StartAddress == _Address)
{
m_MemChecks.erase(i);
return;
}
}
auto cond = [&Address](const TMemCheck& mc) { return mc.StartAddress == Address; };
auto it = std::find_if(m_MemChecks.begin(), m_MemChecks.end(), cond);
if (it != m_MemChecks.end())
m_MemChecks.erase(it);
}
TMemCheck *MemChecks::GetMemCheck(u32 address)
{
for (TMemChecks::iterator i = m_MemChecks.begin(); i != m_MemChecks.end(); ++i)
for (auto i = m_MemChecks.begin(); i != m_MemChecks.end(); ++i)
{
if (i->bRange)
{

@ -14,32 +14,33 @@ class DebugInterface;
struct TBreakPoint
{
u32 iAddress;
bool bOn;
bool bTemporary;
u32 iAddress;
bool bOn;
bool bTemporary;
};
struct TMemCheck
{
TMemCheck() {
numHits = 0;
StartAddress = EndAddress = 0;
bRange = OnRead = OnWrite = Log = Break = false;
}
u32 StartAddress;
u32 EndAddress;
TMemCheck():
StartAddress(0), EndAddress(0),
bRange(false), OnRead(false), OnWrite(false),
Log(false), Break(false), numHits(0)
{ }
bool bRange;
u32 StartAddress;
u32 EndAddress;
bool OnRead;
bool OnWrite;
bool bRange;
bool Log;
bool Break;
bool OnRead;
bool OnWrite;
u32 numHits;
bool Log;
bool Break;
void Action(DebugInterface *dbg_interface, u32 _iValue, u32 addr,
u32 numHits;
void Action(DebugInterface *dbg_interface, u32 iValue, u32 addr,
bool write, int size, u32 pc);
};
@ -56,22 +57,22 @@ public:
void AddFromStrings(const TBreakPointsStr& bps);
// is address breakpoint
bool IsAddressBreakPoint(u32 _iAddress);
bool IsTempBreakPoint(u32 _iAddress);
bool IsAddressBreakPoint(u32 iAddress);
bool IsTempBreakPoint(u32 iAddress);
// Add BreakPoint
void Add(u32 em_address, bool temp=false);
void Add(const TBreakPoint& bp);
// Remove Breakpoint
void Remove(u32 _iAddress);
void Remove(u32 iAddress);
void Clear();
void DeleteByAddress(u32 _Address);
void DeleteByAddress(u32 Address);
private:
TBreakPoints m_BreakPoints;
u32 m_iBreakOnCount;
u32 m_iBreakOnCount;
};
@ -89,7 +90,7 @@ public:
TMemChecksStr GetStrings() const;
void AddFromStrings(const TMemChecksStr& mcs);
void Add(const TMemCheck& _rMemoryCheck);
void Add(const TMemCheck& rMemoryCheck);
// memory breakpoint
TMemCheck *GetMemCheck(u32 address);
@ -99,4 +100,3 @@ public:
};
#endif