279 lines
6.8 KiB
C++
279 lines
6.8 KiB
C++
#include "nt.hpp"
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namespace utilities::nt
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{
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library library::load(const char* name)
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{
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return library(LoadLibraryA(name));
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}
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library library::load(const std::string& name)
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{
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return library::load(name.data());
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}
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library library::load(const std::filesystem::path& path)
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{
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return library::load(path.generic_string());
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}
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library library::get_by_address(const void* address)
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{
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HMODULE handle = nullptr;
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GetModuleHandleExA(GET_MODULE_HANDLE_EX_FLAG_FROM_ADDRESS | GET_MODULE_HANDLE_EX_FLAG_UNCHANGED_REFCOUNT,
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static_cast<LPCSTR>(address), &handle);
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return library(handle);
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}
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library::library()
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{
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this->module_ = GetModuleHandleA(nullptr);
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}
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library::library(const std::string& name)
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{
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this->module_ = GetModuleHandleA(name.data());
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}
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library::library(const HMODULE handle)
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{
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this->module_ = handle;
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}
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bool library::operator==(const library& obj) const
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{
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return this->module_ == obj.module_;
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}
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library::operator bool() const
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{
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return this->is_valid();
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}
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library::operator HMODULE() const
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{
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return this->get_handle();
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}
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PIMAGE_NT_HEADERS library::get_nt_headers() const
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{
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if (!this->is_valid()) return nullptr;
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return reinterpret_cast<PIMAGE_NT_HEADERS>(this->get_ptr() + this->get_dos_header()->e_lfanew);
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}
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PIMAGE_DOS_HEADER library::get_dos_header() const
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{
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return reinterpret_cast<PIMAGE_DOS_HEADER>(this->get_ptr());
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}
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PIMAGE_OPTIONAL_HEADER library::get_optional_header() const
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{
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if (!this->is_valid()) return nullptr;
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return &this->get_nt_headers()->OptionalHeader;
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}
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std::vector<PIMAGE_SECTION_HEADER> library::get_section_headers() const
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{
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std::vector<PIMAGE_SECTION_HEADER> headers;
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auto nt_headers = this->get_nt_headers();
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auto section = IMAGE_FIRST_SECTION(nt_headers);
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for (uint16_t i = 0; i < nt_headers->FileHeader.NumberOfSections; ++i, ++section)
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{
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if (section) headers.push_back(section);
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else OutputDebugStringA("There was an invalid section :O");
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}
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return headers;
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}
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std::uint8_t* library::get_ptr() const
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{
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return reinterpret_cast<std::uint8_t*>(this->module_);
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}
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void library::unprotect() const
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{
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if (!this->is_valid()) return;
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DWORD protection;
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VirtualProtect(this->get_ptr(), this->get_optional_header()->SizeOfImage, PAGE_EXECUTE_READWRITE,
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&protection);
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}
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size_t library::get_relative_entry_point() const
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{
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if (!this->is_valid()) return 0;
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return this->get_nt_headers()->OptionalHeader.AddressOfEntryPoint;
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}
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void* library::get_entry_point() const
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{
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if (!this->is_valid()) return nullptr;
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return this->get_ptr() + this->get_relative_entry_point();
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}
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bool library::is_valid() const
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{
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return this->module_ != nullptr && this->get_dos_header()->e_magic == IMAGE_DOS_SIGNATURE;
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}
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std::string library::get_name() const
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{
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if (!this->is_valid()) return "";
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auto path = this->get_path();
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const auto pos = path.find_last_of("/\\");
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if (pos == std::string::npos) return path;
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return path.substr(pos + 1);
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}
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std::string library::get_path() const
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{
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if (!this->is_valid()) return "";
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char name[MAX_PATH] = {0};
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GetModuleFileNameA(this->module_, name, sizeof name);
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return name;
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}
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std::string library::get_folder() const
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{
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if (!this->is_valid()) return "";
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const auto path = std::filesystem::path(this->get_path());
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return path.parent_path().generic_string();
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}
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void library::free()
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{
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if (this->is_valid())
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{
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FreeLibrary(this->module_);
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this->module_ = nullptr;
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}
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}
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HMODULE library::get_handle() const
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{
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return this->module_;
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}
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void** library::get_iat_entry(const std::string& module_name, const std::string& proc_name) const
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{
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if (!this->is_valid()) return nullptr;
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const library other_module(module_name);
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if (!other_module.is_valid()) return nullptr;
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auto* const target_function = other_module.get_proc<void*>(proc_name);
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if (!target_function) return nullptr;
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auto* header = this->get_optional_header();
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if (!header) return nullptr;
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auto* import_descriptor = reinterpret_cast<PIMAGE_IMPORT_DESCRIPTOR>(this->get_ptr() + header->DataDirectory
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[IMAGE_DIRECTORY_ENTRY_IMPORT].VirtualAddress);
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while (import_descriptor->Name)
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{
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if (!_stricmp(reinterpret_cast<char*>(this->get_ptr() + import_descriptor->Name), module_name.data()))
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{
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auto* original_thunk_data = reinterpret_cast<PIMAGE_THUNK_DATA>(import_descriptor->
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OriginalFirstThunk + this->get_ptr());
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auto* thunk_data = reinterpret_cast<PIMAGE_THUNK_DATA>(import_descriptor->FirstThunk + this->
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get_ptr());
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while (original_thunk_data->u1.AddressOfData)
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{
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if (thunk_data->u1.Function == (uint64_t)target_function)
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{
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return reinterpret_cast<void**>(&thunk_data->u1.Function);
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}
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const size_t ordinal_number = original_thunk_data->u1.AddressOfData & 0xFFFFFFF;
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if (ordinal_number <= 0xFFFF)
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{
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if (GetProcAddress(other_module.module_, reinterpret_cast<char*>(ordinal_number)) ==
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target_function)
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{
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return reinterpret_cast<void**>(&thunk_data->u1.Function);
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}
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}
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++original_thunk_data;
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++thunk_data;
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}
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//break;
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}
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++import_descriptor;
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}
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return nullptr;
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}
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bool is_shutdown_in_progress()
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{
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static auto* shutdown_in_progress = []
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{
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const library ntdll("ntdll.dll");
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return ntdll.get_proc<BOOLEAN(*)()>("RtlDllShutdownInProgress");
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}();
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return shutdown_in_progress();
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}
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void raise_hard_exception()
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{
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int data = false;
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const library ntdll("ntdll.dll");
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ntdll.invoke_pascal<void>("RtlAdjustPrivilege", 19, true, false, &data);
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ntdll.invoke_pascal<void>("NtRaiseHardError", 0xC000007B, 0, nullptr, nullptr, 6, &data);
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}
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std::string load_resource(const int id)
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{
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const auto lib = library::get_by_address(load_resource);
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auto* const res = FindResource(lib, MAKEINTRESOURCE(id), RT_RCDATA);
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if (!res) return {};
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auto* const handle = LoadResource(lib, res);
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if (!handle) return {};
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return std::string(LPSTR(LockResource(handle)), SizeofResource(lib, res));
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}
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void relaunch_self()
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{
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const utilities::nt::library self;
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STARTUPINFOA startup_info;
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PROCESS_INFORMATION process_info;
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ZeroMemory(&startup_info, sizeof(startup_info));
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ZeroMemory(&process_info, sizeof(process_info));
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startup_info.cb = sizeof(startup_info);
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char current_dir[MAX_PATH];
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GetCurrentDirectoryA(sizeof(current_dir), current_dir);
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auto* const command_line = GetCommandLineA();
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CreateProcessA(self.get_path().data(), command_line, nullptr, nullptr, false, NULL, nullptr, current_dir,
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&startup_info, &process_info);
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if (process_info.hThread && process_info.hThread != INVALID_HANDLE_VALUE) CloseHandle(process_info.hThread);
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if (process_info.hProcess && process_info.hProcess != INVALID_HANDLE_VALUE) CloseHandle(process_info.hProcess);
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}
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void terminate(const uint32_t code)
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{
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TerminateProcess(GetCurrentProcess(), code);
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}
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}
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