mirror of https://github.com/PCSX2/pcsx2.git
858 lines
26 KiB
C++
858 lines
26 KiB
C++
// SPDX-FileCopyrightText: 2002-2024 PCSX2 Dev Team
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// SPDX-License-Identifier: GPL-3.0+
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#include "DisassemblyWidget.h"
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#include "DebugTools/DebugInterface.h"
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#include "DebugTools/DisassemblyManager.h"
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#include "DebugTools/Breakpoints.h"
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#include "DebugTools/MipsAssembler.h"
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#include "QtUtils.h"
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#include "QtHost.h"
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#include <QtGui/QMouseEvent>
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#include <QtWidgets/QMenu>
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#include <QtGui/QClipboard>
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#include <QtWidgets/QInputDialog>
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#include <QtWidgets/QMessageBox>
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#include "SymbolTree/NewSymbolDialogs.h"
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using namespace QtUtils;
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DisassemblyWidget::DisassemblyWidget(QWidget* parent)
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: QWidget(parent)
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{
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ui.setupUi(this);
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connect(this, &DisassemblyWidget::customContextMenuRequested, this, &DisassemblyWidget::customMenuRequested);
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}
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DisassemblyWidget::~DisassemblyWidget() = default;
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void DisassemblyWidget::contextCopyAddress()
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{
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QGuiApplication::clipboard()->setText(FetchSelectionInfo(SelectionInfo::ADDRESS));
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}
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void DisassemblyWidget::contextCopyInstructionHex()
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{
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QGuiApplication::clipboard()->setText(FetchSelectionInfo(SelectionInfo::INSTRUCTIONHEX));
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}
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void DisassemblyWidget::contextCopyInstructionText()
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{
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QGuiApplication::clipboard()->setText(FetchSelectionInfo(SelectionInfo::INSTRUCTIONTEXT));
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}
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void DisassemblyWidget::contextAssembleInstruction()
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{
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if (!m_cpu->isCpuPaused())
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{
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QMessageBox::warning(this, tr("Assemble Error"), tr("Unable to change assembly while core is running"));
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return;
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}
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DisassemblyLineInfo line;
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bool ok;
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m_disassemblyManager.getLine(m_selectedAddressStart, false, line);
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QString instruction = QInputDialog::getText(this, tr("Assemble Instruction"), "",
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QLineEdit::Normal, QString("%1 %2").arg(line.name.c_str()).arg(line.params.c_str()), &ok);
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if (!ok)
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return;
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u32 encodedInstruction;
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std::string errorText;
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bool valid = MipsAssembleOpcode(instruction.toLocal8Bit().constData(), m_cpu, m_selectedAddressStart, encodedInstruction, errorText);
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if (!valid)
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{
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QMessageBox::warning(this, tr("Assemble Error"), QString::fromStdString(errorText));
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return;
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}
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else
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{
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Host::RunOnCPUThread([this, start = m_selectedAddressStart, end = m_selectedAddressEnd, cpu = m_cpu, val = encodedInstruction] {
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for (u32 i = start; i <= end; i += 4)
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{
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this->m_nopedInstructions.insert({i, cpu->read32(i)});
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cpu->write32(i, val);
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}
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emit VMUpdate();
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});
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}
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}
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void DisassemblyWidget::contextNoopInstruction()
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{
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Host::RunOnCPUThread([this, start = m_selectedAddressStart, end = m_selectedAddressEnd, cpu = m_cpu] {
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for (u32 i = start; i <= end; i += 4)
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{
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this->m_nopedInstructions.insert({i, cpu->read32(i)});
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cpu->write32(i, 0x00);
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}
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emit VMUpdate();
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});
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}
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void DisassemblyWidget::contextRestoreInstruction()
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{
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Host::RunOnCPUThread([this, start = m_selectedAddressStart, end = m_selectedAddressEnd, cpu = m_cpu] {
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for (u32 i = start; i <= end; i += 4)
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{
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if (this->m_nopedInstructions.find(i) != this->m_nopedInstructions.end())
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{
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cpu->write32(i, this->m_nopedInstructions[i]);
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this->m_nopedInstructions.erase(i);
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}
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}
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emit VMUpdate();
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});
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}
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void DisassemblyWidget::contextRunToCursor()
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{
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const u32 selectedAddressStart = m_selectedAddressStart;
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Host::RunOnCPUThread([cpu = m_cpu, selectedAddressStart] {
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CBreakPoints::AddBreakPoint(cpu->getCpuType(), selectedAddressStart, true);
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cpu->resumeCpu();
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});
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}
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void DisassemblyWidget::contextJumpToCursor()
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{
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m_cpu->setPc(m_selectedAddressStart);
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this->repaint();
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}
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void DisassemblyWidget::contextToggleBreakpoint()
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{
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if (!m_cpu->isAlive())
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return;
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const u32 selectedAddressStart = m_selectedAddressStart;
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const BreakPointCpu cpuType = m_cpu->getCpuType();
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if (CBreakPoints::IsAddressBreakPoint(cpuType, selectedAddressStart))
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{
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Host::RunOnCPUThread([cpuType, selectedAddressStart] { CBreakPoints::RemoveBreakPoint(cpuType, selectedAddressStart); });
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}
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else
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{
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Host::RunOnCPUThread([cpuType, selectedAddressStart] { CBreakPoints::AddBreakPoint(cpuType, selectedAddressStart); });
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}
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breakpointsChanged();
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this->repaint();
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}
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void DisassemblyWidget::contextFollowBranch()
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{
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DisassemblyLineInfo line;
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m_disassemblyManager.getLine(m_selectedAddressStart, true, line);
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if (line.type == DISTYPE_OPCODE || line.type == DISTYPE_MACRO)
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{
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if (line.info.isBranch)
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gotoAddressAndSetFocus(line.info.branchTarget);
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else if (line.info.hasRelevantAddress)
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gotoAddressAndSetFocus(line.info.releventAddress);
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}
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}
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void DisassemblyWidget::contextGoToAddress()
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{
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bool ok;
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const QString targetString = QInputDialog::getText(this, tr("Go To In Disassembly"), "",
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QLineEdit::Normal, "", &ok);
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if (!ok)
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return;
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u64 address = 0;
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std::string error;
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if (!m_cpu->evaluateExpression(targetString.toStdString().c_str(), address, error))
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{
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QMessageBox::warning(this, tr("Cannot Go To"), QString::fromStdString(error));
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return;
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}
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gotoAddressAndSetFocus(static_cast<u32>(address) & ~3);
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}
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void DisassemblyWidget::contextAddFunction()
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{
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NewFunctionDialog* dialog = new NewFunctionDialog(*m_cpu, this);
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dialog->setName(QString("func_%1").arg(m_selectedAddressStart, 8, 16, QChar('0')));
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dialog->setAddress(m_selectedAddressStart);
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if (m_selectedAddressEnd != m_selectedAddressStart)
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dialog->setCustomSize(m_selectedAddressEnd - m_selectedAddressStart + 4);
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if (dialog->exec() == QDialog::Accepted)
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update();
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}
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void DisassemblyWidget::contextCopyFunctionName()
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{
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std::string name = m_cpu->GetSymbolGuardian().FunctionStartingAtAddress(m_selectedAddressStart).name;
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QGuiApplication::clipboard()->setText(QString::fromStdString(name));
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}
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void DisassemblyWidget::contextRemoveFunction()
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{
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m_cpu->GetSymbolGuardian().ReadWrite([&](ccc::SymbolDatabase& database) {
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ccc::Function* curFunc = database.functions.symbol_overlapping_address(m_selectedAddressStart);
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if (!curFunc)
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return;
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ccc::Function* previousFunc = database.functions.symbol_overlapping_address(curFunc->address().value - 4);
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if (previousFunc)
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previousFunc->set_size(curFunc->size() + previousFunc->size());
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database.functions.mark_symbol_for_destruction(curFunc->handle(), &database);
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database.destroy_marked_symbols();
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});
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}
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void DisassemblyWidget::contextRenameFunction()
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{
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const FunctionInfo curFunc = m_cpu->GetSymbolGuardian().FunctionOverlappingAddress(m_selectedAddressStart);
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if (!curFunc.address.valid())
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{
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QMessageBox::warning(this, tr("Rename Function Error"), tr("No function / symbol is currently selected."));
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return;
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}
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QString oldName = QString::fromStdString(curFunc.name);
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bool ok;
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QString newName = QInputDialog::getText(this, tr("Rename Function"), tr("Function name"), QLineEdit::Normal, oldName, &ok);
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if (!ok)
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return;
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if (newName.isEmpty())
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{
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QMessageBox::warning(this, tr("Rename Function Error"), tr("Function name cannot be nothing."));
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return;
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}
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m_cpu->GetSymbolGuardian().ReadWrite([&](ccc::SymbolDatabase& database) {
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database.functions.rename_symbol(curFunc.handle, newName.toStdString());
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});
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}
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void DisassemblyWidget::contextStubFunction()
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{
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FunctionInfo function = m_cpu->GetSymbolGuardian().FunctionOverlappingAddress(m_selectedAddressStart);
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u32 address = function.address.valid() ? function.address.value : m_selectedAddressStart;
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Host::RunOnCPUThread([this, address, cpu = m_cpu] {
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this->m_stubbedFunctions.insert({address, {cpu->read32(address), cpu->read32(address + 4)}});
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cpu->write32(address, 0x03E00008); // jr ra
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cpu->write32(address + 4, 0x00000000); // nop
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emit VMUpdate();
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});
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}
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void DisassemblyWidget::contextRestoreFunction()
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{
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u32 address = m_selectedAddressStart;
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m_cpu->GetSymbolGuardian().Read([&](const ccc::SymbolDatabase& database) {
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const ccc::Function* function = database.functions.symbol_overlapping_address(m_selectedAddressStart);
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if (function)
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address = function->address().value;
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});
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auto stub = m_stubbedFunctions.find(address);
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if (stub != m_stubbedFunctions.end())
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{
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Host::RunOnCPUThread([this, address, cpu = m_cpu, stub] {
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auto [first_instruction, second_instruction] = stub->second;
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cpu->write32(address, first_instruction);
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cpu->write32(address + 4, second_instruction);
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this->m_stubbedFunctions.erase(address);
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emit VMUpdate();
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});
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}
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else
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{
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QMessageBox::warning(this, tr("Restore Function Error"), tr("Unable to stub selected address."));
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}
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}
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void DisassemblyWidget::contextShowOpcode()
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{
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m_showInstructionOpcode = !m_showInstructionOpcode;
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this->repaint();
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}
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void DisassemblyWidget::SetCpu(DebugInterface* cpu)
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{
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m_cpu = cpu;
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m_disassemblyManager.setCpu(cpu);
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}
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QString DisassemblyWidget::GetLineDisasm(u32 address)
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{
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DisassemblyLineInfo lineInfo;
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m_disassemblyManager.getLine(address, true, lineInfo);
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return QString("%1 %2").arg(lineInfo.name.c_str()).arg(lineInfo.params.c_str());
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};
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// Here we go!
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void DisassemblyWidget::paintEvent(QPaintEvent* event)
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{
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QPainter painter(this);
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const u32 w = painter.device()->width() - 1;
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const u32 h = painter.device()->height() - 1;
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// Get the current font size
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const QFontMetrics fm = painter.fontMetrics();
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// Get the row height
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m_rowHeight = fm.height() + 2;
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// Find the amount of visible rows
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m_visibleRows = h / m_rowHeight;
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m_disassemblyManager.analyze(m_visibleStart, m_disassemblyManager.getNthNextAddress(m_visibleStart, m_visibleRows) - m_visibleStart);
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// Draw the rows
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bool inSelectionBlock = false;
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bool alternate = m_visibleStart % 8;
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const u32 curPC = m_cpu->getPC(); // Get the PC here, because it'll change when we are drawing and make it seem like there are two PCs
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for (u32 i = 0; i <= m_visibleRows; i++)
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{
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const u32 rowAddress = (i * 4) + m_visibleStart;
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// Row backgrounds
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if (inSelectionBlock || (m_selectedAddressStart <= rowAddress && rowAddress <= m_selectedAddressEnd))
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{
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painter.fillRect(0, i * m_rowHeight, w, m_rowHeight, this->palette().highlight());
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inSelectionBlock = m_selectedAddressEnd != rowAddress;
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}
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else
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{
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painter.fillRect(0, i * m_rowHeight, w, m_rowHeight, alternate ? this->palette().base() : this->palette().alternateBase());
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}
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// Row text
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painter.setPen(GetAddressFunctionColor(rowAddress));
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QString lineString = DisassemblyStringFromAddress(rowAddress, painter.font(), curPC, rowAddress == m_selectedAddressStart);
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painter.drawText(2, i * m_rowHeight, w, m_rowHeight, Qt::AlignLeft, lineString);
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// Breakpoint marker
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bool enabled;
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if (CBreakPoints::IsAddressBreakPoint(m_cpu->getCpuType(), rowAddress, &enabled) && !CBreakPoints::IsTempBreakPoint(m_cpu->getCpuType(), rowAddress))
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{
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if (enabled)
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{
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painter.setPen(Qt::green);
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painter.drawText(2, i * m_rowHeight, w, m_rowHeight, Qt::AlignLeft, "\u25A0");
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}
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else
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{
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painter.drawText(2, i * m_rowHeight, w, m_rowHeight, Qt::AlignLeft, "\u2612");
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}
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}
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alternate = !alternate;
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}
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// Draw the branch lines
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// This is where it gets a little scary
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// It's been mostly copied from the wx implementation
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u32 visibleEnd = m_disassemblyManager.getNthNextAddress(m_visibleStart, m_visibleRows);
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std::vector<BranchLine> branchLines = m_disassemblyManager.getBranchLines(m_visibleStart, visibleEnd - m_visibleStart);
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s32 branchCount = 0;
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for (const auto& branchLine : branchLines)
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{
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if (branchCount == (m_showInstructionOpcode ? 3 : 5))
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break;
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const int winBottom = this->height();
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const int x = this->width() - 10 - (branchCount * 10);
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int top, bottom;
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// If the start is technically 'above' our address view
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if (branchLine.first < m_visibleStart)
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{
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top = -1;
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}
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// If the start is technically 'below' our address view
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else if (branchLine.first >= visibleEnd)
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{
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top = winBottom + 1;
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}
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else
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{
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// Explaination
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// ((branchLine.first - m_visibleStart) -> Find the amount of bytes from the top of the view
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// / 4 -> Convert that into rowss in instructions
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// * m_rowHeight -> convert that into rows in pixels
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// + (m_rowHeight / 2) -> Add half a row in pixels to center the arrow
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top = (((branchLine.first - m_visibleStart) / 4) * m_rowHeight) + (m_rowHeight / 2);
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}
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if (branchLine.second < m_visibleStart)
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{
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bottom = -1;
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}
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else if (branchLine.second >= visibleEnd)
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{
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bottom = winBottom + 1;
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}
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else
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{
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bottom = (((branchLine.second - m_visibleStart) / 4) * m_rowHeight) + (m_rowHeight / 2);
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}
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branchCount++;
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if (branchLine.first == m_selectedAddressStart || branchLine.second == m_selectedAddressStart)
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{
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painter.setPen(QColor(0xFF257AFA));
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}
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else
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{
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painter.setPen(QColor(0xFFFF3020));
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}
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if (top < 0) // first is not visible, but second is
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{
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painter.drawLine(x - 2, bottom, x + 2, bottom);
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painter.drawLine(x + 2, bottom, x + 2, 0);
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if (branchLine.type == LINE_DOWN)
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{
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painter.drawLine(x, bottom - 4, x - 4, bottom);
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painter.drawLine(x - 4, bottom, x + 1, bottom + 5);
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}
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}
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else if (bottom > winBottom) // second is not visible, but first is
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{
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painter.drawLine(x - 2, top, x + 2, top);
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painter.drawLine(x + 2, top, x + 2, winBottom);
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if (branchLine.type == LINE_UP)
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{
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painter.drawLine(x, top - 4, x - 4, top);
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painter.drawLine(x - 4, top, x + 1, top + 5);
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}
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}
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else
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{ // both are visible
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if (branchLine.type == LINE_UP)
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{
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painter.drawLine(x - 2, bottom, x + 2, bottom);
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painter.drawLine(x + 2, bottom, x + 2, top);
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painter.drawLine(x + 2, top, x - 4, top);
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painter.drawLine(x, top - 4, x - 4, top);
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painter.drawLine(x - 4, top, x + 1, top + 5);
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}
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else
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{
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painter.drawLine(x - 2, top, x + 2, top);
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painter.drawLine(x + 2, top, x + 2, bottom);
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painter.drawLine(x + 2, bottom, x - 4, bottom);
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painter.drawLine(x, bottom - 4, x - 4, bottom);
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painter.drawLine(x - 4, bottom, x + 1, bottom + 5);
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}
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}
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}
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// Draw a border
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painter.setPen(this->palette().shadow().color());
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painter.drawRect(0, 0, w, h);
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}
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void DisassemblyWidget::mousePressEvent(QMouseEvent* event)
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{
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const u32 selectedAddress = (static_cast<int>(event->position().y()) / m_rowHeight * 4) + m_visibleStart;
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if (event->buttons() & Qt::LeftButton)
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{
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if (event->modifiers() & Qt::ShiftModifier)
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{
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if (selectedAddress < m_selectedAddressStart)
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{
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m_selectedAddressStart = selectedAddress;
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}
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else if (selectedAddress > m_visibleStart)
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{
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m_selectedAddressEnd = selectedAddress;
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}
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}
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else
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{
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m_selectedAddressStart = selectedAddress;
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m_selectedAddressEnd = selectedAddress;
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}
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}
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else if (event->buttons() & Qt::RightButton)
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{
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if (m_selectedAddressStart == m_selectedAddressEnd)
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{
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m_selectedAddressStart = selectedAddress;
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m_selectedAddressEnd = selectedAddress;
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}
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}
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this->repaint();
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}
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void DisassemblyWidget::mouseDoubleClickEvent(QMouseEvent* event)
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{
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if (!m_cpu->isAlive())
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return;
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const u32 selectedAddress = (static_cast<int>(event->position().y()) / m_rowHeight * 4) + m_visibleStart;
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const BreakPointCpu cpuType = m_cpu->getCpuType();
|
|
if (CBreakPoints::IsAddressBreakPoint(cpuType, selectedAddress))
|
|
{
|
|
Host::RunOnCPUThread([cpuType, selectedAddress] { CBreakPoints::RemoveBreakPoint(cpuType, selectedAddress); });
|
|
}
|
|
else
|
|
{
|
|
Host::RunOnCPUThread([cpuType, selectedAddress] { CBreakPoints::AddBreakPoint(cpuType, selectedAddress); });
|
|
}
|
|
breakpointsChanged();
|
|
this->repaint();
|
|
}
|
|
|
|
void DisassemblyWidget::wheelEvent(QWheelEvent* event)
|
|
{
|
|
if (event->angleDelta().y() < 0) // todo: max address bounds check?
|
|
{
|
|
m_visibleStart += 4;
|
|
}
|
|
else if (event->angleDelta().y() && m_visibleStart > 0)
|
|
{
|
|
m_visibleStart -= 4;
|
|
}
|
|
this->repaint();
|
|
}
|
|
|
|
void DisassemblyWidget::keyPressEvent(QKeyEvent* event)
|
|
{
|
|
switch (event->key())
|
|
{
|
|
case Qt::Key_Up:
|
|
{
|
|
m_selectedAddressStart -= 4;
|
|
if (!(event->modifiers() & Qt::ShiftModifier))
|
|
m_selectedAddressEnd = m_selectedAddressStart;
|
|
|
|
// Auto scroll
|
|
if (m_visibleStart > m_selectedAddressStart)
|
|
m_visibleStart -= 4;
|
|
}
|
|
break;
|
|
case Qt::Key_PageUp:
|
|
{
|
|
m_selectedAddressStart -= m_visibleRows * 4;
|
|
m_selectedAddressEnd = m_selectedAddressStart;
|
|
m_visibleStart -= m_visibleRows * 4;
|
|
}
|
|
break;
|
|
case Qt::Key_Down:
|
|
{
|
|
m_selectedAddressEnd += 4;
|
|
if (!(event->modifiers() & Qt::ShiftModifier))
|
|
m_selectedAddressStart = m_selectedAddressEnd;
|
|
|
|
// Purposely scroll on the second to last row. It's possible to
|
|
// size the window so part of a row is visible and we don't want to have half a row selected and cut off!
|
|
if (m_visibleStart + ((m_visibleRows - 1) * 4) < m_selectedAddressEnd)
|
|
m_visibleStart += 4;
|
|
|
|
break;
|
|
}
|
|
case Qt::Key_PageDown:
|
|
{
|
|
m_selectedAddressStart += m_visibleRows * 4;
|
|
m_selectedAddressEnd = m_selectedAddressStart;
|
|
m_visibleStart += m_visibleRows * 4;
|
|
break;
|
|
}
|
|
case Qt::Key_G:
|
|
contextGoToAddress();
|
|
break;
|
|
case Qt::Key_J:
|
|
contextJumpToCursor();
|
|
break;
|
|
case Qt::Key_C:
|
|
contextCopyInstructionText();
|
|
break;
|
|
case Qt::Key_B:
|
|
case Qt::Key_Space:
|
|
contextToggleBreakpoint();
|
|
break;
|
|
case Qt::Key_M:
|
|
contextAssembleInstruction();
|
|
break;
|
|
case Qt::Key_Right:
|
|
contextFollowBranch();
|
|
break;
|
|
case Qt::Key_Left:
|
|
gotoAddressAndSetFocus(m_cpu->getPC());
|
|
break;
|
|
case Qt::Key_O:
|
|
m_showInstructionOpcode = !m_showInstructionOpcode;
|
|
break;
|
|
}
|
|
|
|
this->repaint();
|
|
}
|
|
|
|
void DisassemblyWidget::customMenuRequested(QPoint pos)
|
|
{
|
|
if (!m_cpu->isAlive())
|
|
return;
|
|
|
|
QMenu* contextMenu = new QMenu(this);
|
|
|
|
QAction* action = 0;
|
|
contextMenu->addAction(action = new QAction(tr("Copy Address"), this));
|
|
connect(action, &QAction::triggered, this, &DisassemblyWidget::contextCopyAddress);
|
|
contextMenu->addAction(action = new QAction(tr("Copy Instruction Hex"), this));
|
|
connect(action, &QAction::triggered, this, &DisassemblyWidget::contextCopyInstructionHex);
|
|
contextMenu->addAction(action = new QAction(tr("&Copy Instruction Text"), this));
|
|
action->setShortcut(QKeySequence(Qt::Key_C));
|
|
connect(action, &QAction::triggered, this, &DisassemblyWidget::contextCopyInstructionText);
|
|
if (m_cpu->GetSymbolGuardian().FunctionExistsWithStartingAddress(m_selectedAddressStart))
|
|
{
|
|
contextMenu->addAction(action = new QAction(tr("Copy Function Name"), this));
|
|
connect(action, &QAction::triggered, this, &DisassemblyWidget::contextCopyFunctionName);
|
|
}
|
|
contextMenu->addSeparator();
|
|
if (AddressCanRestore(m_selectedAddressStart, m_selectedAddressEnd))
|
|
{
|
|
contextMenu->addAction(action = new QAction(tr("Restore Instruction(s)"), this));
|
|
connect(action, &QAction::triggered, this, &DisassemblyWidget::contextRestoreInstruction);
|
|
}
|
|
contextMenu->addAction(action = new QAction(tr("Asse&mble new Instruction(s)"), this));
|
|
action->setShortcut(QKeySequence(Qt::Key_M));
|
|
connect(action, &QAction::triggered, this, &DisassemblyWidget::contextAssembleInstruction);
|
|
contextMenu->addAction(action = new QAction(tr("NOP Instruction(s)"), this));
|
|
connect(action, &QAction::triggered, this, &DisassemblyWidget::contextNoopInstruction);
|
|
contextMenu->addSeparator();
|
|
contextMenu->addAction(action = new QAction(tr("Run to Cursor"), this));
|
|
connect(action, &QAction::triggered, this, &DisassemblyWidget::contextRunToCursor);
|
|
contextMenu->addAction(action = new QAction(tr("&Jump to Cursor"), this));
|
|
action->setShortcut(QKeySequence(Qt::Key_J));
|
|
connect(action, &QAction::triggered, this, &DisassemblyWidget::contextJumpToCursor);
|
|
contextMenu->addAction(action = new QAction(tr("Toggle &Breakpoint"), this));
|
|
action->setShortcut(QKeySequence(Qt::Key_B));
|
|
connect(action, &QAction::triggered, this, &DisassemblyWidget::contextToggleBreakpoint);
|
|
contextMenu->addAction(action = new QAction(tr("Follow Branch"), this));
|
|
connect(action, &QAction::triggered, this, &DisassemblyWidget::contextFollowBranch);
|
|
contextMenu->addSeparator();
|
|
contextMenu->addAction(action = new QAction(tr("&Go to Address"), this));
|
|
action->setShortcut(QKeySequence(Qt::Key_G));
|
|
connect(action, &QAction::triggered, this, &DisassemblyWidget::contextGoToAddress);
|
|
contextMenu->addAction(action = new QAction(tr("Go to in Memory View"), this));
|
|
connect(action, &QAction::triggered, this, [this]() { gotoInMemory(m_selectedAddressStart); });
|
|
contextMenu->addSeparator();
|
|
contextMenu->addAction(action = new QAction(tr("Add Function"), this));
|
|
connect(action, &QAction::triggered, this, &DisassemblyWidget::contextAddFunction);
|
|
contextMenu->addAction(action = new QAction(tr("Rename Function"), this));
|
|
connect(action, &QAction::triggered, this, &DisassemblyWidget::contextRenameFunction);
|
|
contextMenu->addAction(action = new QAction(tr("Remove Function"), this));
|
|
connect(action, &QAction::triggered, this, &DisassemblyWidget::contextRemoveFunction);
|
|
if (FunctionCanRestore(m_selectedAddressStart))
|
|
{
|
|
contextMenu->addAction(action = new QAction(tr("Restore Function"), this));
|
|
connect(action, &QAction::triggered, this, &DisassemblyWidget::contextRestoreFunction);
|
|
}
|
|
else
|
|
{
|
|
contextMenu->addAction(action = new QAction(tr("Stub (NOP) Function"), this));
|
|
connect(action, &QAction::triggered, this, &DisassemblyWidget::contextStubFunction);
|
|
}
|
|
|
|
contextMenu->addSeparator();
|
|
contextMenu->addAction(action = new QAction(tr("Show &Opcode"), this));
|
|
action->setShortcut(QKeySequence(Qt::Key_O));
|
|
action->setCheckable(true);
|
|
action->setChecked(m_showInstructionOpcode);
|
|
connect(action, &QAction::triggered, this, &DisassemblyWidget::contextShowOpcode);
|
|
|
|
contextMenu->setAttribute(Qt::WA_DeleteOnClose);
|
|
contextMenu->popup(this->mapToGlobal(pos));
|
|
}
|
|
|
|
inline QString DisassemblyWidget::DisassemblyStringFromAddress(u32 address, QFont font, u32 pc, bool selected)
|
|
{
|
|
DisassemblyLineInfo line;
|
|
|
|
if (!m_cpu->isValidAddress(address))
|
|
return tr("%1 NOT VALID ADDRESS").arg(address, 8, 16, QChar('0')).toUpper();
|
|
// Todo? support non symbol view?
|
|
m_disassemblyManager.getLine(address, true, line);
|
|
|
|
const bool isConditional = line.info.isConditional && m_cpu->getPC() == address;
|
|
const bool isConditionalMet = line.info.conditionMet;
|
|
const bool isCurrentPC = m_cpu->getPC() == address;
|
|
|
|
FunctionInfo function = m_cpu->GetSymbolGuardian().FunctionStartingAtAddress(address);
|
|
SymbolInfo symbol = m_cpu->GetSymbolGuardian().SymbolStartingAtAddress(address);
|
|
const bool showOpcode = m_showInstructionOpcode && m_cpu->isAlive();
|
|
|
|
QString lineString;
|
|
if (showOpcode)
|
|
{
|
|
lineString = QString(" %1 %2 %3 %4 %5 %6 %7");
|
|
}
|
|
else
|
|
{
|
|
lineString = QString(" %1 %2 %3 %4 %5 %6");
|
|
}
|
|
|
|
if (function.is_no_return)
|
|
{
|
|
lineString = lineString.arg("NR");
|
|
}
|
|
else
|
|
{
|
|
lineString = lineString.arg(" ");
|
|
}
|
|
|
|
if (symbol.name.empty())
|
|
lineString = lineString.arg(address, 8, 16, QChar('0')).toUpper();
|
|
else
|
|
{
|
|
QFontMetrics metric(font);
|
|
QString symbolString = QString::fromStdString(symbol.name);
|
|
|
|
lineString = lineString.arg(metric.elidedText(symbolString, Qt::ElideRight, (selected ? 32 : 7) * font.pointSize()));
|
|
}
|
|
|
|
if (showOpcode)
|
|
{
|
|
const u32 opcode = m_cpu->read32(address);
|
|
lineString = lineString.arg(QtUtils::FilledQStringFromValue(opcode, 16));
|
|
}
|
|
|
|
lineString = lineString.leftJustified(4, ' ') // Address / symbol
|
|
.arg(line.name.c_str())
|
|
.arg(line.params.c_str()) // opcode + arguments
|
|
.arg(isConditional ? (isConditionalMet ? "# true" : "# false") : "")
|
|
.arg(isCurrentPC ? "<--" : "");
|
|
|
|
return lineString;
|
|
}
|
|
|
|
QColor DisassemblyWidget::GetAddressFunctionColor(u32 address)
|
|
{
|
|
// This is an attempt to figure out if the current palette is dark or light
|
|
// We calculate the luminance of the alternateBase colour
|
|
// and swap between our darker and lighter function colours
|
|
|
|
std::array<QColor, 6> colors;
|
|
const QColor base = this->palette().alternateBase().color();
|
|
|
|
const auto Y = (base.redF() * 0.33) + (0.5 * base.greenF()) + (0.16 * base.blueF());
|
|
|
|
if (Y > 0.5)
|
|
{
|
|
colors = {
|
|
QColor::fromRgba(0xFFFA3434),
|
|
QColor::fromRgba(0xFF206b6b),
|
|
QColor::fromRgba(0xFF858534),
|
|
QColor::fromRgba(0xFF378c37),
|
|
QColor::fromRgba(0xFF783278),
|
|
QColor::fromRgba(0xFF21214a),
|
|
};
|
|
}
|
|
else
|
|
{
|
|
colors = {
|
|
QColor::fromRgba(0xFFe05555),
|
|
QColor::fromRgba(0xFF55e0e0),
|
|
QColor::fromRgba(0xFFe8e855),
|
|
QColor::fromRgba(0xFF55e055),
|
|
QColor::fromRgba(0xFFe055e0),
|
|
QColor::fromRgba(0xFFC2C2F5),
|
|
};
|
|
}
|
|
|
|
// Use the address to pick the colour since the value of the handle may
|
|
// change from run to run.
|
|
ccc::Address function_address =
|
|
m_cpu->GetSymbolGuardian().FunctionOverlappingAddress(address).address;
|
|
if (!function_address.valid())
|
|
return palette().text().color();
|
|
|
|
// Chop off the first few bits of the address since functions will be
|
|
// aligned in memory.
|
|
return colors[(function_address.value >> 4) % colors.size()];
|
|
}
|
|
|
|
QString DisassemblyWidget::FetchSelectionInfo(SelectionInfo selInfo)
|
|
{
|
|
QString infoBlock;
|
|
for (u32 i = m_selectedAddressStart; i <= m_selectedAddressEnd; i += 4)
|
|
{
|
|
if (i != m_selectedAddressStart)
|
|
infoBlock += '\n';
|
|
if (selInfo == SelectionInfo::ADDRESS)
|
|
{
|
|
infoBlock += FilledQStringFromValue(i, 16);
|
|
}
|
|
else if (selInfo == SelectionInfo::INSTRUCTIONTEXT)
|
|
{
|
|
DisassemblyLineInfo line;
|
|
m_disassemblyManager.getLine(i, true, line);
|
|
infoBlock += QString("%1 %2").arg(line.name.c_str()).arg(line.params.c_str());
|
|
}
|
|
else // INSTRUCTIONHEX
|
|
{
|
|
infoBlock += FilledQStringFromValue(m_cpu->read32(i), 16);
|
|
}
|
|
}
|
|
return infoBlock;
|
|
}
|
|
|
|
void DisassemblyWidget::gotoAddressAndSetFocus(u32 address)
|
|
{
|
|
gotoAddress(address, true);
|
|
}
|
|
|
|
void DisassemblyWidget::gotoAddress(u32 address, bool should_set_focus)
|
|
{
|
|
const u32 destAddress = address & ~3;
|
|
// Center the address
|
|
m_visibleStart = (destAddress - (m_visibleRows * 4 / 2)) & ~3;
|
|
m_selectedAddressStart = destAddress;
|
|
m_selectedAddressEnd = destAddress;
|
|
|
|
this->repaint();
|
|
if (should_set_focus)
|
|
this->setFocus();
|
|
}
|
|
|
|
bool DisassemblyWidget::AddressCanRestore(u32 start, u32 end)
|
|
{
|
|
for (u32 i = start; i <= end; i += 4)
|
|
{
|
|
if (this->m_nopedInstructions.find(i) != this->m_nopedInstructions.end())
|
|
{
|
|
return true;
|
|
}
|
|
}
|
|
return false;
|
|
}
|
|
|
|
bool DisassemblyWidget::FunctionCanRestore(u32 address)
|
|
{
|
|
FunctionInfo function = m_cpu->GetSymbolGuardian().FunctionOverlappingAddress(address);
|
|
if (function.address.valid())
|
|
address = function.address.value;
|
|
|
|
return m_stubbedFunctions.find(address) != m_stubbedFunctions.end();
|
|
}
|