mirror of
https://github.com/yuzu-emu/yuzu-mainline.git
synced 2024-12-27 06:26:04 +00:00
vm_manager: Remove cheat-specific ranges from VMManager
This commit is contained in:
parent
7053546687
commit
52ac6419da
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@ -450,8 +450,10 @@ Tegra::DebugContext* System::GetGPUDebugContext() const {
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}
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void System::RegisterCheatList(const std::vector<FileSys::CheatList>& list,
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const std::string& build_id) {
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impl->cheat_engine = std::make_unique<FileSys::CheatEngine>(list, build_id);
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const std::string& build_id, VAddr code_region_start,
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VAddr code_region_end) {
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impl->cheat_engine =
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std::make_unique<FileSys::CheatEngine>(list, build_id, code_region_start, code_region_end);
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}
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void System::SetFilesystem(std::shared_ptr<FileSys::VfsFilesystem> vfs) {
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@ -254,8 +254,8 @@ public:
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std::shared_ptr<FileSys::VfsFilesystem> GetFilesystem() const;
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void RegisterCheatList(const std::vector<FileSys::CheatList>& list,
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const std::string& build_id);
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void RegisterCheatList(const std::vector<FileSys::CheatList>& list, const std::string& build_id,
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VAddr code_region_start, VAddr code_region_end);
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void SetProfileSelector(std::unique_ptr<Frontend::ProfileSelectApplet> applet);
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@ -18,7 +18,7 @@
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namespace FileSys {
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constexpr u64 CHEAT_ENGINE_TICKS = CoreTiming::BASE_CLOCK_RATE / 60;
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constexpr u64 CHEAT_ENGINE_TICKS = Core::Timing::BASE_CLOCK_RATE / 60;
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constexpr u32 KEYPAD_BITMASK = 0x3FFFFFF;
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u64 Cheat::Address() const {
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@ -82,7 +82,7 @@ CheatList::CheatList(ProgramSegment master, ProgramSegment standard)
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bool CheatList::EvaluateConditional(const Cheat& cheat) const {
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using ComparisonFunction = bool (*)(u64, u64);
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constexpr ComparisonFunction comparison_functions[] = {
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constexpr std::array<ComparisonFunction, 6> comparison_functions{
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[](u64 a, u64 b) { return a > b; }, [](u64 a, u64 b) { return a >= b; },
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[](u64 a, u64 b) { return a < b; }, [](u64 a, u64 b) { return a <= b; },
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[](u64 a, u64 b) { return a == b; }, [](u64 a, u64 b) { return a != b; },
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@ -103,7 +103,7 @@ bool CheatList::EvaluateConditional(const Cheat& cheat) const {
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const auto press_state =
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applet_resource
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->GetController<Service::HID::Controller_NPad>(Service::HID::HidController::NPad)
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.GetPressState();
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.GetAndResetPressState();
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return ((press_state & cheat.KeypadValue()) & KEYPAD_BITMASK) != 0;
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}
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@ -112,7 +112,7 @@ bool CheatList::EvaluateConditional(const Cheat& cheat) const {
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const auto offset =
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cheat.memory_type == MemoryType::MainNSO ? main_region_begin : heap_region_begin;
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ASSERT(static_cast<u8>(cheat.comparison_op.Value()) < 6);
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const auto* function = comparison_functions[static_cast<u8>(cheat.comparison_op.Value())];
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auto* function = comparison_functions[static_cast<u8>(cheat.comparison_op.Value())];
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const auto addr = cheat.Address() + offset;
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return function(reader(cheat.width, SanitizeAddress(addr)), cheat.ValueWidth(8));
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@ -157,7 +157,7 @@ void CheatList::ProcessBlockPairs(const Block& block) {
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void CheatList::WriteImmediate(const Cheat& cheat) {
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const auto offset =
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cheat.memory_type == MemoryType::MainNSO ? main_region_begin : heap_region_begin;
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auto& register_3 = scratch.at(cheat.register_3);
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const auto& register_3 = scratch.at(cheat.register_3);
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const auto addr = cheat.Address() + offset + register_3;
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LOG_DEBUG(Common_Filesystem, "writing value={:016X} to addr={:016X}", addr,
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@ -166,11 +166,13 @@ void CheatList::WriteImmediate(const Cheat& cheat) {
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}
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void CheatList::BeginConditional(const Cheat& cheat) {
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if (!EvaluateConditional(cheat)) {
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if (EvaluateConditional(cheat)) {
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return;
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}
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const auto iter = block_pairs.find(current_index);
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ASSERT(iter != block_pairs.end());
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current_index = iter->second - 1;
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}
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}
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void CheatList::EndConditional(const Cheat& cheat) {
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@ -218,7 +220,7 @@ void CheatList::LoadIndexed(const Cheat& cheat) {
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}
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void CheatList::StoreIndexed(const Cheat& cheat) {
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auto& register_3 = scratch.at(cheat.register_3);
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const auto& register_3 = scratch.at(cheat.register_3);
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const auto addr =
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register_3 + (cheat.add_additional_register.Value() ? scratch.at(cheat.register_6) : 0);
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@ -229,14 +231,14 @@ void CheatList::StoreIndexed(const Cheat& cheat) {
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void CheatList::RegisterArithmetic(const Cheat& cheat) {
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using ArithmeticFunction = u64 (*)(u64, u64);
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constexpr ArithmeticFunction arithmetic_functions[] = {
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constexpr std::array<ArithmeticFunction, 5> arithmetic_functions{
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[](u64 a, u64 b) { return a + b; }, [](u64 a, u64 b) { return a - b; },
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[](u64 a, u64 b) { return a * b; }, [](u64 a, u64 b) { return a << b; },
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[](u64 a, u64 b) { return a >> b; },
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};
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using ArithmeticOverflowCheck = bool (*)(u64, u64);
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constexpr ArithmeticOverflowCheck arithmetic_overflow_checks[] = {
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constexpr std::array<ArithmeticOverflowCheck, 5> arithmetic_overflow_checks{
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[](u64 a, u64 b) { return a > (std::numeric_limits<u64>::max() - b); }, // a + b
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[](u64 a, u64 b) { return a > (std::numeric_limits<u64>::max() + b); }, // a - b
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[](u64 a, u64 b) { return a > (std::numeric_limits<u64>::max() / b); }, // a * b
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@ -250,8 +252,8 @@ void CheatList::RegisterArithmetic(const Cheat& cheat) {
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auto& register_3 = scratch.at(cheat.register_3);
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ASSERT(static_cast<u8>(cheat.arithmetic_op.Value()) < 5);
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const auto* function = arithmetic_functions[static_cast<u8>(cheat.arithmetic_op.Value())];
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const auto* overflow_function =
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auto* function = arithmetic_functions[static_cast<u8>(cheat.arithmetic_op.Value())];
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auto* overflow_function =
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arithmetic_overflow_checks[static_cast<u8>(cheat.arithmetic_op.Value())];
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LOG_DEBUG(Common_Filesystem, "performing arithmetic with register={:01X}, value={:016X}",
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cheat.register_3, cheat.ValueWidth(4));
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@ -267,11 +269,12 @@ void CheatList::RegisterArithmetic(const Cheat& cheat) {
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}
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void CheatList::BeginConditionalInput(const Cheat& cheat) {
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if (!EvaluateConditional(cheat)) {
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if (EvaluateConditional(cheat))
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return;
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const auto iter = block_pairs.find(current_index);
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ASSERT(iter != block_pairs.end());
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current_index = iter->second - 1;
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}
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}
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VAddr CheatList::SanitizeAddress(VAddr in) const {
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@ -290,7 +293,7 @@ VAddr CheatList::SanitizeAddress(VAddr in) const {
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void CheatList::ExecuteSingleCheat(const Cheat& cheat) {
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using CheatOperationFunction = void (CheatList::*)(const Cheat&);
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constexpr CheatOperationFunction cheat_operation_functions[] = {
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constexpr std::array<CheatOperationFunction, 9> cheat_operation_functions{
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&CheatList::WriteImmediate, &CheatList::BeginConditional,
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&CheatList::EndConditional, &CheatList::Loop,
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&CheatList::LoadImmediate, &CheatList::LoadIndexed,
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@ -346,7 +349,7 @@ CheatList TextCheatParser::Parse(const std::vector<u8>& data) const {
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if (!line.empty() && (line[0] == '[' || line[0] == '{')) {
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const auto master = line[0] == '{';
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const auto begin = master ? line.find('{') : line.find('[');
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const auto end = master ? line.find_last_of('}') : line.find_last_of(']');
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const auto end = master ? line.rfind('}') : line.rfind(']');
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ASSERT(begin != std::string::npos && end != std::string::npos);
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@ -422,7 +425,7 @@ std::array<u8, 16> TextCheatParser::ParseSingleLineCheat(const std::string& line
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return out;
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}
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u64 MemoryReadImpl(u8 width, VAddr addr) {
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u64 MemoryReadImpl(u32 width, VAddr addr) {
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switch (width) {
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case 1:
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return Memory::Read8(addr);
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@ -438,7 +441,7 @@ u64 MemoryReadImpl(u8 width, VAddr addr) {
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}
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}
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void MemoryWriteImpl(u8 width, VAddr addr, u64 value) {
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void MemoryWriteImpl(u32 width, VAddr addr, u64 value) {
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switch (width) {
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case 1:
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Memory::Write8(addr, static_cast<u8>(value));
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@ -457,31 +460,34 @@ void MemoryWriteImpl(u8 width, VAddr addr, u64 value) {
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}
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}
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CheatEngine::CheatEngine(std::vector<CheatList> cheats, const std::string& build_id)
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CheatEngine::CheatEngine(std::vector<CheatList> cheats, const std::string& build_id,
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VAddr code_region_start, VAddr code_region_end)
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: cheats(std::move(cheats)) {
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event = CoreTiming::RegisterEvent(
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auto& core_timing{Core::System::GetInstance().CoreTiming()};
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event = core_timing.RegisterEvent(
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"CheatEngine::FrameCallback::" + build_id,
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[this](u64 userdata, s64 cycles_late) { FrameCallback(userdata, cycles_late); });
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CoreTiming::ScheduleEvent(CHEAT_ENGINE_TICKS, event);
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core_timing.ScheduleEvent(CHEAT_ENGINE_TICKS, event);
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const auto& vm_manager = Core::System::GetInstance().CurrentProcess()->VMManager();
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for (auto& list : this->cheats) {
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list.SetMemoryParameters(
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vm_manager.GetMainCodeRegionBaseAddress(), vm_manager.GetHeapRegionBaseAddress(),
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vm_manager.GetMainCodeRegionEndAddress(), vm_manager.GetHeapRegionEndAddress(),
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list.SetMemoryParameters(code_region_start, vm_manager.GetHeapRegionBaseAddress(),
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code_region_end, vm_manager.GetHeapRegionEndAddress(),
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&MemoryWriteImpl, &MemoryReadImpl);
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}
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}
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CheatEngine::~CheatEngine() {
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CoreTiming::UnscheduleEvent(event, 0);
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auto& core_timing{Core::System::GetInstance().CoreTiming()};
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core_timing.UnscheduleEvent(event, 0);
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}
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void CheatEngine::FrameCallback(u64 userdata, int cycles_late) {
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for (auto& list : cheats)
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list.Execute();
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CoreTiming::ScheduleEvent(CHEAT_ENGINE_TICKS - cycles_late, event);
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auto& core_timing{Core::System::GetInstance().CoreTiming()};
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core_timing.ScheduleEvent(CHEAT_ENGINE_TICKS - cycles_late, event);
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}
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} // namespace FileSys
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@ -11,7 +11,7 @@
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#include "common/bit_field.h"
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#include "common/common_types.h"
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namespace CoreTiming {
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namespace Core::Timing {
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struct EventType;
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}
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@ -123,9 +123,9 @@ public:
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using ProgramSegment = std::vector<std::pair<std::string, Block>>;
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// (width in bytes, address, value)
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using MemoryWriter = void (*)(u8, VAddr, u64);
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using MemoryWriter = void (*)(u32, VAddr, u64);
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// (width in bytes, address) -> value
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using MemoryReader = u64 (*)(u8, VAddr);
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using MemoryReader = u64 (*)(u32, VAddr);
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void SetMemoryParameters(VAddr main_begin, VAddr heap_begin, VAddr main_end, VAddr heap_end,
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MemoryWriter writer, MemoryReader reader);
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@ -212,13 +212,14 @@ private:
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// Class that encapsulates a CheatList and manages its interaction with memory and CoreTiming
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class CheatEngine final {
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public:
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CheatEngine(std::vector<CheatList> cheats, const std::string& build_id);
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CheatEngine(std::vector<CheatList> cheats, const std::string& build_id, VAddr code_region_start,
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VAddr code_region_end);
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~CheatEngine();
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private:
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void FrameCallback(u64 userdata, int cycles_late);
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CoreTiming::EventType* event;
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Core::Timing::EventType* event;
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std::vector<CheatList> cheats;
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};
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@ -786,23 +786,6 @@ u64 VMManager::GetNewMapRegionSize() const {
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return new_map_region_end - new_map_region_base;
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}
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void VMManager::SetMainCodeRegion(VAddr begin, VAddr end) {
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main_code_region_base = begin;
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main_code_region_end = end;
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}
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VAddr VMManager::GetMainCodeRegionBaseAddress() const {
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return main_code_region_base;
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}
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VAddr VMManager::GetMainCodeRegionEndAddress() const {
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return main_code_region_end;
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}
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u64 VMManager::GetMainCodeRegionSize() const {
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return main_code_region_end - main_code_region_base;
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}
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VAddr VMManager::GetTLSIORegionBaseAddress() const {
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return tls_io_region_base;
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}
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@ -480,14 +480,6 @@ public:
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/// Gets the total size of the new map region in bytes.
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u64 GetNewMapRegionSize() const;
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void SetMainCodeRegion(VAddr begin, VAddr end);
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VAddr GetMainCodeRegionBaseAddress() const;
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VAddr GetMainCodeRegionEndAddress() const;
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u64 GetMainCodeRegionSize() const;
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/// Gets the base address of the TLS IO region.
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VAddr GetTLSIORegionBaseAddress() const;
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@ -3,6 +3,8 @@
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// Refer to the license.txt file included.
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#pragma once
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#include "core/hle/service/hid/controllers/controller_base.h"
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#include "core/hle/service/service.h"
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#include "controllers/controller_base.h"
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@ -147,10 +147,8 @@ ResultStatus AppLoader_DeconstructedRomDirectory::Load(Kernel::Process& process)
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const VAddr load_addr = next_load_addr;
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const bool should_pass_arguments = std::strcmp(module, "rtld") == 0;
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const bool should_register_data_segment = std::strcmp(module, "main") == 0;
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const auto tentative_next_load_addr =
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AppLoader_NSO::LoadModule(process, *module_file, load_addr, should_pass_arguments,
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should_register_data_segment, pm);
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AppLoader_NSO::LoadModule(process, *module_file, load_addr, should_pass_arguments, pm);
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if (!tentative_next_load_addr) {
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return ResultStatus::ErrorLoadingNSO;
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}
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@ -97,7 +97,6 @@ static constexpr u32 PageAlignSize(u32 size) {
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std::optional<VAddr> AppLoader_NSO::LoadModule(Kernel::Process& process,
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const FileSys::VfsFile& file, VAddr load_base,
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bool should_pass_arguments,
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bool should_register_data_region,
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std::optional<FileSys::PatchManager> pm) {
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if (file.GetSize() < sizeof(NsoHeader))
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return {};
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@ -156,10 +155,6 @@ std::optional<VAddr> AppLoader_NSO::LoadModule(Kernel::Process& process,
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const u32 image_size{PageAlignSize(static_cast<u32>(program_image.size()) + bss_size)};
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program_image.resize(image_size);
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if (should_register_data_region) {
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process.VMManager().SetMainCodeRegion(load_base, load_base + program_image.size());
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}
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// Apply patches if necessary
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if (pm && (pm->HasNSOPatch(nso_header.build_id) || Settings::values.dump_nso)) {
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std::vector<u8> pi_header(program_image.size() + 0x100);
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@ -176,7 +171,8 @@ std::optional<VAddr> AppLoader_NSO::LoadModule(Kernel::Process& process,
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const auto cheats = pm->CreateCheatList(nso_header.build_id);
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if (!cheats.empty()) {
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Core::System::GetInstance().RegisterCheatList(
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cheats, Common::HexArrayToString(nso_header.build_id));
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cheats, Common::HexArrayToString(nso_header.build_id), load_base,
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load_base + program_image.size());
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}
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}
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@ -197,7 +193,7 @@ ResultStatus AppLoader_NSO::Load(Kernel::Process& process) {
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// Load module
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const VAddr base_address = process.VMManager().GetCodeRegionBaseAddress();
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if (!LoadModule(process, *file, base_address, true, true)) {
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if (!LoadModule(process, *file, base_address, true)) {
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return ResultStatus::ErrorLoadingNSO;
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}
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LOG_DEBUG(Loader, "loaded module {} @ 0x{:X}", file->GetName(), base_address);
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@ -43,7 +43,6 @@ public:
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static std::optional<VAddr> LoadModule(Kernel::Process& process, const FileSys::VfsFile& file,
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VAddr load_base, bool should_pass_arguments,
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bool should_register_data_segment,
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std::optional<FileSys::PatchManager> pm = {});
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ResultStatus Load(Kernel::Process& process) override;
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