/*
Copyright (C) 2012 Sebastian Herbord. All rights reserved.
This file is part of Mod Organizer.
Mod Organizer is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
Mod Organizer is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with Mod Organizer. If not, see .
*/
#include "util.h"
#include "windows_error.h"
#include "error_report.h"
#include "executableslist.h"
#include "instancemanager.h"
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#include
#pragma comment(lib, "Wbemuuid.lib")
using MOBase::formatSystemMessage;
using MOBase::formatSystemMessageQ;
namespace fs = std::filesystem;
namespace MOShared {
bool FileExists(const std::string &filename)
{
DWORD dwAttrib = ::GetFileAttributesA(filename.c_str());
return (dwAttrib != INVALID_FILE_ATTRIBUTES);
}
bool FileExists(const std::wstring &filename)
{
DWORD dwAttrib = ::GetFileAttributesW(filename.c_str());
return (dwAttrib != INVALID_FILE_ATTRIBUTES);
}
bool FileExists(const std::wstring &searchPath, const std::wstring &filename)
{
std::wstringstream stream;
stream << searchPath << "\\" << filename;
return FileExists(stream.str());
}
std::string ToString(const std::wstring &source, bool utf8)
{
std::string result;
if (source.length() > 0) {
UINT codepage = CP_UTF8;
if (!utf8) {
codepage = AreFileApisANSI() ? GetACP() : GetOEMCP();
}
int sizeRequired = ::WideCharToMultiByte(codepage, 0, &source[0], -1, nullptr, 0, nullptr, nullptr);
if (sizeRequired == 0) {
throw windows_error("failed to convert string to multibyte");
}
// the size returned by WideCharToMultiByte contains zero termination IF -1 is specified for the length.
// we don't want that \0 in the string because then the length field would be wrong. Because madness
result.resize(sizeRequired - 1, '\0');
::WideCharToMultiByte(codepage, 0, &source[0], (int)source.size(), &result[0], sizeRequired, nullptr, nullptr);
}
return result;
}
std::wstring ToWString(const std::string &source, bool utf8)
{
std::wstring result;
if (source.length() > 0) {
UINT codepage = CP_UTF8;
if (!utf8) {
codepage = AreFileApisANSI() ? GetACP() : GetOEMCP();
}
int sizeRequired
= ::MultiByteToWideChar(codepage, 0, source.c_str(),
static_cast(source.length()), nullptr, 0);
if (sizeRequired == 0) {
throw windows_error("failed to convert string to wide character");
}
result.resize(sizeRequired, L'\0');
::MultiByteToWideChar(codepage, 0, source.c_str(),
static_cast(source.length()), &result[0],
sizeRequired);
}
return result;
}
static std::locale loc("");
static auto locToLowerW = [] (wchar_t in) -> wchar_t {
return std::tolower(in, loc);
};
static auto locToLower = [] (char in) -> char {
return std::tolower(in, loc);
};
std::string &ToLower(std::string &text)
{
//std::transform(text.begin(), text.end(), text.begin(), locToLower);
CharLowerBuffA(const_cast(text.c_str()), static_cast(text.size()));
return text;
}
std::string ToLower(const std::string &text)
{
std::string result(text);
//std::transform(result.begin(), result.end(), result.begin(), locToLower);
CharLowerBuffA(const_cast(result.c_str()), static_cast(result.size()));
return result;
}
std::wstring &ToLower(std::wstring &text)
{
//std::transform(text.begin(), text.end(), text.begin(), locToLowerW);
CharLowerBuffW(const_cast(text.c_str()), static_cast(text.size()));
return text;
}
std::wstring ToLower(const std::wstring &text)
{
std::wstring result(text);
//std::transform(result.begin(), result.end(), result.begin(), locToLowerW);
CharLowerBuffW(const_cast(result.c_str()), static_cast(result.size()));
return result;
}
bool CaseInsenstiveComparePred(wchar_t lhs, wchar_t rhs)
{
return std::tolower(lhs, loc) == std::tolower(rhs, loc);
}
bool CaseInsensitiveEqual(const std::wstring &lhs, const std::wstring &rhs)
{
return (lhs.length() == rhs.length())
&& std::equal(lhs.begin(), lhs.end(),
rhs.begin(),
[] (wchar_t lhs, wchar_t rhs) -> bool {
return std::tolower(lhs, loc) == std::tolower(rhs, loc);
});
}
VS_FIXEDFILEINFO GetFileVersion(const std::wstring &fileName)
{
DWORD handle = 0UL;
DWORD size = ::GetFileVersionInfoSizeW(fileName.c_str(), &handle);
if (size == 0) {
throw windows_error("failed to determine file version info size");
}
boost::scoped_array buffer(new char[size]);
try {
handle = 0UL;
if (!::GetFileVersionInfoW(fileName.c_str(), handle, size, buffer.get())) {
throw windows_error("failed to determine file version info");
}
void *versionInfoPtr = nullptr;
UINT versionInfoLength = 0;
if (!::VerQueryValue(buffer.get(), L"\\", &versionInfoPtr, &versionInfoLength)) {
throw windows_error("failed to determine file version");
}
VS_FIXEDFILEINFO result = *(VS_FIXEDFILEINFO*)versionInfoPtr;
return result;
} catch (...) {
throw;
}
}
std::wstring GetFileVersionString(const std::wstring &fileName)
{
DWORD handle = 0UL;
DWORD size = ::GetFileVersionInfoSizeW(fileName.c_str(), &handle);
if (size == 0) {
throw windows_error("failed to determine file version info size");
}
boost::scoped_array buffer(new char[size]);
try {
handle = 0UL;
if (!::GetFileVersionInfoW(fileName.c_str(), handle, size, buffer.get())) {
throw windows_error("failed to determine file version info");
}
LPVOID strBuffer = nullptr;
UINT strLength = 0;
if (!::VerQueryValue(buffer.get(), L"\\StringFileInfo\\040904B0\\ProductVersion", &strBuffer, &strLength)) {
throw windows_error("failed to determine file version");
}
return std::wstring((LPCTSTR)strBuffer);
}
catch (...) {
throw;
}
}
MOBase::VersionInfo createVersionInfo()
{
VS_FIXEDFILEINFO version = GetFileVersion(QApplication::applicationFilePath().toStdWString());
if (version.dwFileFlags & VS_FF_PRERELEASE)
{
// Pre-release builds need annotating
QString versionString = QString::fromStdWString(GetFileVersionString(QApplication::applicationFilePath().toStdWString()));
// The pre-release flag can be set without the string specifying what type of pre-release
bool noLetters = true;
for (QChar character : versionString)
{
if (character.isLetter())
{
noLetters = false;
break;
}
}
if (noLetters)
{
// Default to pre-alpha when release type is unspecified
return MOBase::VersionInfo(version.dwFileVersionMS >> 16,
version.dwFileVersionMS & 0xFFFF,
version.dwFileVersionLS >> 16,
version.dwFileVersionLS & 0xFFFF,
MOBase::VersionInfo::RELEASE_PREALPHA);
}
else
{
// Trust the string to make sense
return MOBase::VersionInfo(versionString);
}
}
else
{
// Non-pre-release builds just need their version numbers reading
return MOBase::VersionInfo(version.dwFileVersionMS >> 16,
version.dwFileVersionMS & 0xFFFF,
version.dwFileVersionLS >> 16,
version.dwFileVersionLS & 0xFFFF);
}
}
namespace env
{
struct HandleCloser
{
using pointer = HANDLE;
void operator()(HANDLE h)
{
if (h != INVALID_HANDLE_VALUE) {
::CloseHandle(h);
}
}
};
using HandlePtr = std::unique_ptr;
struct LibraryFreer
{
using pointer = HINSTANCE;
void operator()(HINSTANCE h)
{
if (h != 0) {
::FreeLibrary(h);
}
}
};
struct COMReleaser
{
void operator()(IUnknown* p)
{
if (p) {
p->Release();
}
}
};
template
using COMPtr = std::unique_ptr;
class ShellLinkException {};
// just a wrapper around IShellLink operations that throws ShellLinkException
// on errors
//
class ShellLinkWrapper
{
public:
ShellLinkWrapper()
{
m_link = createShellLink();
m_file = createPersistFile();
}
void setPath(const QString& s)
{
if (s.isEmpty()) {
critical() << "path cannot be empty";
throw ShellLinkException();
}
const auto r = m_link->SetPath(s.toStdWString().c_str());
throwOnFail(r, QString("failed to set target path '%1'").arg(s));
}
void setArguments(const QString& s)
{
const auto r = m_link->SetArguments(s.toStdWString().c_str());
throwOnFail(r, QString("failed to set arguments '%1'").arg(s));
}
void setDescription(const QString& s)
{
if (s.isEmpty()) {
return;
}
const auto r = m_link->SetDescription(s.toStdWString().c_str());
throwOnFail(r, QString("failed to set description '%1'").arg(s));
}
void setIcon(const QString& file, int i)
{
if (file.isEmpty()) {
return;
}
const auto r = m_link->SetIconLocation(file.toStdWString().c_str(), i);
throwOnFail(r, QString("failed to set icon '%1' @ %2").arg(file).arg(i));
}
void setWorkingDirectory(const QString& s)
{
if (s.isEmpty()) {
return;
}
const auto r = m_link->SetWorkingDirectory(s.toStdWString().c_str());
throwOnFail(r, QString("failed to set working directory '%1'").arg(s));
}
void save(const QString& path)
{
const auto r = m_file->Save(path.toStdWString().c_str(), TRUE);
throwOnFail(r, QString("failed to save link '%1'").arg(path));
}
private:
COMPtr m_link;
COMPtr m_file;
QDebug critical()
{
return qCritical().noquote().nospace() << "system shortcut: ";
}
void throwOnFail(HRESULT r, const QString& s)
{
if (FAILED(r)) {
critical() << s << ", " << formatSystemMessageQ(r);
throw ShellLinkException();
}
}
COMPtr createShellLink()
{
void* link = nullptr;
const auto r = CoCreateInstance(
CLSID_ShellLink, nullptr, CLSCTX_INPROC_SERVER,
IID_IShellLink, &link);
throwOnFail(r, "failed to create IShellLink instance");
if (!link) {
critical() << "creating IShellLink worked, but pointer is null";
throw ShellLinkException();
}
return COMPtr(static_cast(link));
}
COMPtr createPersistFile()
{
void* file = nullptr;
const auto r = m_link->QueryInterface(IID_IPersistFile, &file);
throwOnFail(r, "failed to get IPersistFile interface");
if (!file) {
critical() << "querying IPersistFile worked, but pointer is null";
throw ShellLinkException();
}
return COMPtr(static_cast(file));
}
};
Shortcut::Shortcut()
: m_iconIndex(0)
{
}
Shortcut::Shortcut(const Executable& exe)
: Shortcut()
{
m_name = exe.title();
m_target = QFileInfo(qApp->applicationFilePath()).absoluteFilePath();
m_arguments = QString("\"moshortcut://%1:%2\"")
.arg(InstanceManager::instance().currentInstance())
.arg(exe.title());
m_description = QString("Run %1 with ModOrganizer").arg(exe.title());
if (exe.usesOwnIcon()) {
m_icon = exe.binaryInfo().absoluteFilePath();
}
m_workingDirectory = qApp->applicationDirPath();
}
Shortcut& Shortcut::name(const QString& s)
{
m_name = s;
return *this;
}
Shortcut& Shortcut::target(const QString& s)
{
m_target = s;
return *this;
}
Shortcut& Shortcut::arguments(const QString& s)
{
m_arguments = s;
return *this;
}
Shortcut& Shortcut::description(const QString& s)
{
m_description = s;
return *this;
}
Shortcut& Shortcut::icon(const QString& s, int index)
{
m_icon = s;
m_iconIndex = index;
return *this;
}
Shortcut& Shortcut::workingDirectory(const QString& s)
{
m_workingDirectory = s;
return *this;
}
bool Shortcut::exists(Locations loc) const
{
const auto path = shortcutPath(loc);
if (path.isEmpty()) {
return false;
}
return QFileInfo(path).exists();
}
bool Shortcut::toggle(Locations loc)
{
if (exists(loc)) {
return remove(loc);
} else {
return add(loc);
}
}
bool Shortcut::add(Locations loc)
{
const auto path = shortcutPath(loc);
if (path.isEmpty()) {
return false;
}
if (m_target.isEmpty()) {
qCritical() << "system shortcut: target is empty";
return false;
}
try
{
ShellLinkWrapper link;
link.setPath(m_target);
link.setArguments(m_arguments);
link.setDescription(m_description);
link.setIcon(m_icon, m_iconIndex);
link.setWorkingDirectory(m_workingDirectory);
link.save(path);
return true;
}
catch(ShellLinkException&)
{
}
return false;
}
bool Shortcut::remove(Locations loc)
{
const auto path = shortcutPath(loc);
if (path.isEmpty()) {
return false;
}
if (!QFile::exists(path)) {
qCritical().nospace().noquote()
<< "system shortcut: can't remove '" << path << "', file not found";
return false;
}
if (!QFile::remove(path)) {
qCritical().nospace().noquote()
<< "system shortcut: failed to remove '" << path << "'";
return false;
}
return true;
}
QString Shortcut::shortcutPath(Locations loc) const
{
const auto dir = shortcutDirectory(loc);
if (dir.isEmpty()) {
return {};
}
const auto file = shortcutFilename();
if (file.isEmpty()) {
return {};
}
return dir + QDir::separator() + file;
}
QString Shortcut::shortcutDirectory(Locations loc) const
{
QString dir;
try
{
switch (loc)
{
case Desktop:
dir = MOBase::getDesktopDirectory();
break;
case StartMenu:
dir = MOBase::getStartMenuDirectory();
break;
case None:
default:
qCritical() << "system shortcut: bad location " << loc;
return {};
}
}
catch(std::exception&)
{
return {};
}
return QDir::toNativeSeparators(dir);
}
QString Shortcut::shortcutFilename() const
{
if (m_name.isEmpty()) {
qCritical() << "system shortcut: name is empty";
return {};
}
return m_name + ".lnk";
}
class WMI
{
public:
class failed {};
WMI(const std::string& ns)
{
try
{
createLocator();
createService(ns);
setSecurity();
}
catch(failed&)
{
}
}
template
void query(const std::string& q, F&& f)
{
if (!m_locator || !m_service) {
return;
}
auto enumerator = getEnumerator(q);
if (!enumerator) {
return;
}
for (;;)
{
COMPtr object;
{
IWbemClassObject* rawObject = nullptr;
ULONG count = 0;
auto ret = enumerator->Next(WBEM_INFINITE, 1, &rawObject, &count);
if (count == 0 || !rawObject) {
break;
}
if (FAILED(ret)) {
qCritical()
<< "enumerator->next() failed, " << formatSystemMessageQ(ret);
break;
}
object.reset(rawObject);
}
f(object.get());
}
}
private:
COMPtr m_locator;
COMPtr m_service;
void createLocator()
{
void* rawLocator = nullptr;
const auto ret = CoCreateInstance(
CLSID_WbemLocator, nullptr, CLSCTX_INPROC_SERVER,
IID_IWbemLocator, &rawLocator);
if (FAILED(ret) || !rawLocator) {
qCritical()
<< "CoCreateInstance for WbemLocator failed, "
<< formatSystemMessageQ(ret);
throw failed();
}
m_locator.reset(static_cast(rawLocator));
}
void createService(const std::string& ns)
{
IWbemServices* rawService = nullptr;
const auto res = m_locator->ConnectServer(
_bstr_t(ns.c_str()),
nullptr, nullptr, nullptr, 0, nullptr, nullptr,
&rawService);
if (FAILED(res) || !rawService) {
qCritical()
<< "locator->ConnectServer() failed for namespace "
<< "'" << QString::fromStdString(ns) << "', "
<< formatSystemMessageQ(res);
throw failed();
}
m_service.reset(rawService);
}
void setSecurity()
{
auto ret = CoSetProxyBlanket(
m_service.get(), RPC_C_AUTHN_WINNT, RPC_C_AUTHZ_NONE, nullptr,
RPC_C_AUTHN_LEVEL_CALL, RPC_C_IMP_LEVEL_IMPERSONATE, 0, EOAC_NONE);
if (FAILED(ret))
{
qCritical()
<< "CoSetProxyBlanket() failed, " << formatSystemMessageQ(ret);
throw failed();
}
}
COMPtr getEnumerator(
const std::string& query)
{
IEnumWbemClassObject* rawEnumerator = NULL;
auto ret = m_service->ExecQuery(
bstr_t("WQL"),
bstr_t(query.c_str()),
WBEM_FLAG_FORWARD_ONLY | WBEM_FLAG_RETURN_IMMEDIATELY,
NULL,
&rawEnumerator);
if (FAILED(ret) || !rawEnumerator)
{
qCritical()
<< "query '" << QString::fromStdString(query) << "' failed, "
<< formatSystemMessageQ(ret);
return {};
}
return COMPtr(rawEnumerator);
}
};
Environment::Environment()
{
m_modules = getLoadedModules();
m_security = getSecurityProducts();
}
const std::vector& Environment::loadedModules()
{
return m_modules;
}
const WindowsInfo& Environment::windowsInfo() const
{
return m_windows;
}
const std::vector& Environment::securityProducts() const
{
return m_security;
}
std::vector Environment::getLoadedModules() const
{
HandlePtr snapshot(CreateToolhelp32Snapshot(
TH32CS_SNAPMODULE32 | TH32CS_SNAPMODULE, GetCurrentProcessId()));
if (snapshot.get() == INVALID_HANDLE_VALUE)
{
const auto e = GetLastError();
qCritical().nospace().noquote()
<< "CreateToolhelp32Snapshot() failed, "
<< formatSystemMessageQ(e);
return {};
}
MODULEENTRY32 me = {};
me.dwSize = sizeof(me);
// first module, this shouldn't fail because there's at least the executable
if (!Module32First(snapshot.get(), &me))
{
const auto e = GetLastError();
qCritical().nospace().noquote()
<< "Module32First() failed, " << formatSystemMessageQ(e);
return {};
}
std::vector v;
for (;;)
{
const auto path = QString::fromWCharArray(me.szExePath);
if (!path.isEmpty()) {
v.push_back(Module(path, me.modBaseSize));
}
// next module
if (!Module32Next(snapshot.get(), &me)) {
const auto e = GetLastError();
// no more modules is not an error
if (e != ERROR_NO_MORE_FILES) {
qCritical().nospace().noquote()
<< "Module32Next() failed, " << formatSystemMessageQ(e);
}
break;
}
}
// sorting by display name
std::sort(v.begin(), v.end(), [](auto&& a, auto&& b) {
return (a.displayPath().compare(b.displayPath(), Qt::CaseInsensitive) < 0);
});
return v;
}
std::vector Environment::getSecurityProducts() const
{
std::vector v;
{
auto fromWMI = getSecurityProductsFromWMI();
v.insert(
v.end(),
std::make_move_iterator(fromWMI.begin()),
std::make_move_iterator(fromWMI.end()));
}
if (auto p=getWindowsFirewall()) {
v.push_back(std::move(*p));
}
return v;
}
std::vector Environment::getSecurityProductsFromWMI() const
{
// some products may be present in multiple queries, such as a product marked
// as both antivirus and antispyware, but they'll have the same GUID, so use
// that to avoid duplicating entries
std::map map;
auto handleProduct = [&](auto* o) {
VARIANT prop;
// display name
auto ret = o->Get(L"displayName", 0, &prop, 0, 0);
if (FAILED(ret)) {
qCritical()
<< "failed to get displayName, "
<< formatSystemMessageQ(ret);
return;
}
if (prop.vt != VT_BSTR) {
qCritical() << "displayName is a " << prop.vt << ", not a bstr";
return;
}
const std::wstring name = prop.bstrVal;
VariantClear(&prop);
// product state
ret = o->Get(L"productState", 0, &prop, 0, 0);
if (FAILED(ret)) {
qCritical()
<< "failed to get productState, "
<< formatSystemMessageQ(ret);
return;
}
if (prop.vt != VT_UI4 && prop.vt != VT_I4) {
qCritical() << "productState is a " << prop.vt << ", is not a VT_UI4";
return;
}
DWORD state = 0;
if (prop.vt == VT_I4) {
state = prop.lVal;
} else {
state = prop.ulVal;
}
VariantClear(&prop);
// guid
ret = o->Get(L"instanceGuid", 0, &prop, 0, 0);
if (FAILED(ret)) {
qCritical()
<< "failed to get instanceGuid, "
<< formatSystemMessageQ(ret);
return;
}
if (prop.vt != VT_BSTR) {
qCritical() << "instanceGuid is a " << prop.vt << ", is not a bstr";
return;
}
const QUuid guid(QString::fromWCharArray(prop.bstrVal));
VariantClear(&prop);
const auto provider = static_cast((state >> 16) & 0xff);
const auto scanner = (state >> 8) & 0xff;
const auto definitions = state & 0xff;
const bool active = ((scanner & 0x10) != 0);
const bool upToDate = (definitions == 0);
map.insert({
guid,
{QString::fromStdWString(name), provider, active, upToDate}});
};
{
WMI wmi("root\\SecurityCenter2");
wmi.query("select * from AntivirusProduct", handleProduct);
wmi.query("select * from FirewallProduct", handleProduct);
wmi.query("select * from AntiSpywareProduct", handleProduct);
}
{
WMI wmi("root\\SecurityCenter");
wmi.query("select * from AntivirusProduct", handleProduct);
wmi.query("select * from FirewallProduct", handleProduct);
wmi.query("select * from AntiSpywareProduct", handleProduct);
}
std::vector v;
for (auto&& p : map) {
v.push_back(p.second);
}
return v;
}
std::optional Environment::getWindowsFirewall() const
{
HRESULT hr = 0;
COMPtr policy;
{
void* rawPolicy = nullptr;
hr = CoCreateInstance(
__uuidof(NetFwPolicy2), nullptr, CLSCTX_INPROC_SERVER,
__uuidof(INetFwPolicy2), &rawPolicy);
if (FAILED(hr) || !rawPolicy) {
qCritical()
<< "CoCreateInstance for NetFwPolicy2 failed, "
<< formatSystemMessageQ(hr);
return {};
}
policy.reset(static_cast(rawPolicy));
}
VARIANT_BOOL enabledVariant;
if (policy) {
hr = policy->get_FirewallEnabled(NET_FW_PROFILE2_PUBLIC, &enabledVariant);
if (FAILED(hr))
{
qCritical()
<< "get_FirewallEnabled failed, "
<< formatSystemMessageQ(hr);
return {};
}
}
const auto enabled = (enabledVariant != VARIANT_FALSE);
if (!enabled) {
return {};
}
return SecurityProduct(
"Windows Firewall", WSC_SECURITY_PROVIDER_FIREWALL, true, true);
}
Module::Module(QString path, std::size_t fileSize)
: m_path(std::move(path)), m_fileSize(fileSize)
{
const auto fi = getFileInfo();
m_version = getVersion(fi.ffi);
m_timestamp = getTimestamp(fi.ffi);
m_versionString = fi.fileDescription;
m_md5 = getMD5();
}
const QString& Module::path() const
{
return m_path;
}
QString Module::displayPath() const
{
return QDir::fromNativeSeparators(m_path.toLower());
}
std::size_t Module::fileSize() const
{
return m_fileSize;
}
const QString& Module::version() const
{
return m_version;
}
const QString& Module::versionString() const
{
return m_versionString;
}
const QDateTime& Module::timestamp() const
{
return m_timestamp;
}
const QString& Module::md5() const
{
return m_md5;
}
QString Module::timestampString() const
{
if (!m_timestamp.isValid()) {
return "(no timestamp)";
}
return m_timestamp.toString(Qt::DateFormat::ISODate);
}
QString Module::toString() const
{
QStringList sl;
// file size
sl.push_back(displayPath());
sl.push_back(QString("%1 B").arg(m_fileSize));
// version
if (m_version.isEmpty() && m_versionString.isEmpty()) {
sl.push_back("(no version)");
} else {
if (!m_version.isEmpty()) {
sl.push_back(m_version);
}
if (!m_versionString.isEmpty() && m_versionString != m_version) {
sl.push_back(versionString());
}
}
// timestamp
if (m_timestamp.isValid()) {
sl.push_back(m_timestamp.toString(Qt::DateFormat::ISODate));
} else {
sl.push_back("(no timestamp)");
}
// md5
if (!m_md5.isEmpty()) {
sl.push_back(m_md5);
}
return sl.join(", ");
}
Module::FileInfo Module::getFileInfo() const
{
const auto wspath = m_path.toStdWString();
// getting version info size
DWORD dummy = 0;
const DWORD size = GetFileVersionInfoSizeW(wspath.c_str(), &dummy);
if (size == 0) {
const auto e = GetLastError();
if (e == ERROR_RESOURCE_TYPE_NOT_FOUND) {
// not an error, no version information built into that module
return {};
}
qCritical().nospace().noquote()
<< "GetFileVersionInfoSizeW() failed on '" << m_path << "', "
<< formatSystemMessageQ(e);
return {};
}
// getting version info
auto buffer = std::make_unique(size);
if (!GetFileVersionInfoW(wspath.c_str(), 0, size, buffer.get())) {
const auto e = GetLastError();
qCritical().nospace().noquote()
<< "GetFileVersionInfoW() failed on '" << m_path << "', "
<< formatSystemMessageQ(e);
return {};
}
// the version info has two major parts: a fixed version and a localizable
// set of strings
FileInfo fi;
fi.ffi = getFixedFileInfo(buffer.get());
fi.fileDescription = getFileDescription(buffer.get());
return fi;
}
VS_FIXEDFILEINFO Module::getFixedFileInfo(std::byte* buffer) const
{
void* valuePointer = nullptr;
unsigned int valueSize = 0;
// the fixed version info is in the root
const auto ret = VerQueryValueW(buffer, L"\\", &valuePointer, &valueSize);
if (!ret || !valuePointer || valueSize == 0) {
// not an error, no fixed file info
return {};
}
const auto* fi = static_cast(valuePointer);
// signature is always 0xfeef04bd
if (fi->dwSignature != 0xfeef04bd) {
qCritical().nospace().noquote()
<< "bad file info signature 0x" << hex << fi->dwSignature << " for "
<< "'" << m_path << "'";
return {};
}
return *fi;
}
QString Module::getFileDescription(std::byte* buffer) const
{
struct LANGANDCODEPAGE
{
WORD wLanguage;
WORD wCodePage;
};
void* valuePointer = nullptr;
unsigned int valueSize = 0;
// getting list of available languages
auto ret = VerQueryValueW(
buffer, L"\\VarFileInfo\\Translation", &valuePointer, &valueSize);
if (!ret || !valuePointer || valueSize == 0) {
qCritical().nospace().noquote()
<< "VerQueryValueW() for translations failed on '" << m_path << "'";
return {};
}
// number of languages
const auto count = valueSize / sizeof(LANGANDCODEPAGE);
if (count == 0) {
return {};
}
// using the first language in the list to get FileVersion
const auto* lcp = static_cast(valuePointer);
const auto subBlock = QString("\\StringFileInfo\\%1%2\\FileVersion")
.arg(lcp->wLanguage, 4, 16, QChar('0'))
.arg(lcp->wCodePage, 4, 16, QChar('0'));
ret = VerQueryValueW(
buffer, subBlock.toStdWString().c_str(), &valuePointer, &valueSize);
if (!ret || !valuePointer || valueSize == 0) {
// not an error, no file version
return {};
}
// valueSize includes the null terminator
return QString::fromWCharArray(
static_cast(valuePointer), valueSize - 1);
}
QString Module::getVersion(const VS_FIXEDFILEINFO& fi) const
{
if (fi.dwSignature == 0) {
return {};
}
const DWORD major = (fi.dwFileVersionMS >> 16 ) & 0xffff;
const DWORD minor = (fi.dwFileVersionMS >> 0 ) & 0xffff;
const DWORD maintenance = (fi.dwFileVersionLS >> 16 ) & 0xffff;
const DWORD build = (fi.dwFileVersionLS >> 0 ) & 0xffff;
if (major == 0 && minor == 0 && maintenance == 0 && build == 0) {
return {};
}
return QString("%1.%2.%3.%4")
.arg(major).arg(minor).arg(maintenance).arg(build);
}
QDateTime Module::getTimestamp(const VS_FIXEDFILEINFO& fi) const
{
FILETIME ft = {};
if (fi.dwSignature == 0 || (fi.dwFileDateMS == 0 && fi.dwFileDateLS == 0)) {
// if the file info is invalid or doesn't have a date, use the creation
// time on the file
// opening the file
HandlePtr h(CreateFileW(
m_path.toStdWString().c_str(), GENERIC_READ, FILE_SHARE_READ, nullptr,
OPEN_EXISTING, FILE_ATTRIBUTE_NORMAL, 0));
if (h.get() == INVALID_HANDLE_VALUE) {
const auto e = GetLastError();
qCritical().nospace().noquote()
<< "can't open file '" << m_path << "' for timestamp, "
<< formatSystemMessageQ(e);
return {};
}
// getting the file time
if (!GetFileTime(h.get(), &ft, nullptr, nullptr)) {
const auto e = GetLastError();
qCritical().nospace().noquote()
<< "can't get file time for '" << m_path << "', "
<< formatSystemMessageQ(e);
return {};
}
} else {
// use the time from the file info
ft.dwHighDateTime = fi.dwFileDateMS;
ft.dwLowDateTime = fi.dwFileDateLS;
}
// converting to SYSTEMTIME
SYSTEMTIME utc = {};
if (!FileTimeToSystemTime(&ft, &utc)) {
qCritical().nospace().noquote()
<< "FileTimeToSystemTime() failed on timestamp "
<< "high=0x" << hex << ft.dwHighDateTime << " "
<< "low=0x" << hex << ft.dwLowDateTime << " for "
<< "'" << m_path << "'";
return {};
}
return QDateTime(
QDate(utc.wYear, utc.wMonth, utc.wDay),
QTime(utc.wHour, utc.wMinute, utc.wSecond, utc.wMilliseconds));
}
QString Module::getMD5() const
{
if (m_path.contains("\\windows\\", Qt::CaseInsensitive)) {
// don't calculate md5 for system files, it's not really relevant and
// it takes a while
return {};
}
// opening the file
QFile f(m_path);
if (!f.open(QFile::ReadOnly)) {
qCritical().nospace().noquote()
<< "failed to open file '" << m_path << "' for md5";
return {};
}
// hashing
QCryptographicHash hash(QCryptographicHash::Md5);
if (!hash.addData(&f)) {
qCritical().nospace().noquote()
<< "failed to calculate md5 for '" << m_path << "'";
return {};
}
return hash.result().toHex();
}
WindowsInfo::WindowsInfo()
{
// loading ntdll.dll, the functions will be found with GetProcAddress()
std::unique_ptr ntdll(LoadLibraryW(L"ntdll.dll"));
if (!ntdll) {
qCritical() << "failed to load ntdll.dll while getting version";
return;
} else {
m_reported = getReportedVersion(ntdll.get());
m_real = getRealVersion(ntdll.get());
}
m_release = getRelease();
m_elevated = getElevated();
}
bool WindowsInfo::compatibilityMode() const
{
if (m_real == Version()) {
// don't know the real version, can't guess compatibility mode
return false;
}
return (m_real != m_reported);
}
const WindowsInfo::Version& WindowsInfo::reportedVersion() const
{
return m_reported;
}
const WindowsInfo::Version& WindowsInfo::realVersion() const
{
return m_real;
}
const WindowsInfo::Release& WindowsInfo::release() const
{
return m_release;
}
std::optional WindowsInfo::isElevated() const
{
return m_elevated;
}
QString WindowsInfo::toString() const
{
QStringList sl;
const QString reported = m_reported.toString();
const QString real = m_real.toString();
// version
sl.push_back("version: " + reported);
// real version if different
if (compatibilityMode()) {
sl.push_back("real version: " + real);
}
// build.UBR, such as 17763.557
if (m_release.UBR != 0) {
DWORD build = 0;
if (compatibilityMode()) {
build = m_real.build;
} else {
build = m_reported.build;
}
sl.push_back(QString("%1.%2").arg(build).arg(m_release.UBR));
}
// release ID
if (!m_release.ID.isEmpty()) {
sl.push_back("release " + m_release.ID);
}
// buildlab string
if (!m_release.buildLab.isEmpty()) {
sl.push_back(m_release.buildLab);
}
// product name
if (!m_release.productName.isEmpty()) {
sl.push_back(m_release.productName);
}
// elevated
QString elevated = "?";
if (m_elevated.has_value()) {
elevated = (*m_elevated ? "yes" : "no");
}
sl.push_back("elevated: " + elevated);
return sl.join(", ");
}
WindowsInfo::Version WindowsInfo::getReportedVersion(HINSTANCE ntdll) const
{
// windows has been deprecating pretty much all the functions having to do
// with getting version information because apparently, people keep misusing
// them for feature detection
//
// there's still RtlGetVersion() though
using RtlGetVersionType = NTSTATUS (NTAPI)(PRTL_OSVERSIONINFOW);
auto* RtlGetVersion = reinterpret_cast(
GetProcAddress(ntdll, "RtlGetVersion"));
if (!RtlGetVersion) {
qCritical() << "RtlGetVersion() not found in ntdll.dll";
return {};
}
OSVERSIONINFOEX vi = {};
vi.dwOSVersionInfoSize = sizeof(vi);
// this apparently never fails
RtlGetVersion((RTL_OSVERSIONINFOW*)&vi);
return {vi.dwMajorVersion, vi.dwMinorVersion, vi.dwBuildNumber};
}
WindowsInfo::Version WindowsInfo::getRealVersion(HINSTANCE ntdll) const
{
// getting the actual windows version is more difficult because all the
// functions are lying when running in compatibility mode
//
// RtlGetNtVersionNumbers() is an undocumented function that seems to work
// fine, but it might not in the future
using RtlGetNtVersionNumbersType = void (NTAPI)(DWORD*, DWORD*, DWORD*);
auto* RtlGetNtVersionNumbers = reinterpret_cast(
GetProcAddress(ntdll, "RtlGetNtVersionNumbers"));
if (!RtlGetNtVersionNumbers) {
qCritical() << "RtlGetNtVersionNumbers not found in ntdll.dll";
return {};
}
DWORD major=0, minor=0, build=0;
RtlGetNtVersionNumbers(&major, &minor, &build);
// for whatever reason, the build number has 0xf0000000 set
build = 0x0fffffff & build;
return {major, minor, build};
}
WindowsInfo::Release WindowsInfo::getRelease() const
{
// there are several interesting items in the registry, but most of them
// are undocumented, not always available, and localizable
//
// most of them are used to provide as much information as possible in case
// any of the other versions fail to work
QSettings settings(
R"(HKEY_LOCAL_MACHINE\SOFTWARE\Microsoft\Windows NT\CurrentVersion)",
QSettings::NativeFormat);
Release r;
// buildlab seems to be an internal name from the build system
r.buildLab = settings.value("BuildLabEx", "").toString();
if (r.buildLab.isEmpty()) {
r.buildLab = settings.value("BuildLab", "").toString();
if (r.buildLab.isEmpty()) {
r.buildLab = settings.value("BuildBranch", "").toString();
}
}
// localized name of windows, such as "Windows 10 Pro"
r.productName = settings.value("ProductName", "").toString();
// release ID, such as 1803
r.ID = settings.value("ReleaseId", "").toString();
// some other build number, shown in winver.exe
r.UBR = settings.value("UBR", 0).toUInt();
return r;
}
std::optional WindowsInfo::getElevated() const
{
HandlePtr token;
{
HANDLE rawToken = 0;
if (!OpenProcessToken(GetCurrentProcess( ), TOKEN_QUERY, &rawToken)) {
const auto e = GetLastError();
qCritical()
<< "while trying to check if process is elevated, "
<< "OpenProcessToken() failed: " << formatSystemMessageQ(e);
return {};
}
token.reset(rawToken);
}
TOKEN_ELEVATION e = {};
DWORD size = sizeof(TOKEN_ELEVATION);
if (!GetTokenInformation(token.get(), TokenElevation, &e, sizeof(e), &size)) {
const auto e = GetLastError();
qCritical()
<< "while trying to check if process is elevated, "
<< "GetTokenInformation() failed: " << formatSystemMessageQ(e);
return {};
}
return (e.TokenIsElevated != 0);
}
SecurityProduct::SecurityProduct(
QString name, int provider,
bool active, bool upToDate) :
m_name(std::move(name)), m_provider(provider),
m_active(active), m_upToDate(upToDate)
{
}
const QString& SecurityProduct::name() const
{
return m_name;
}
int SecurityProduct::provider() const
{
return m_provider;
}
bool SecurityProduct::active() const
{
return m_active;
}
bool SecurityProduct::upToDate() const
{
return m_upToDate;
}
QString SecurityProduct::toString() const
{
QString s;
s += m_name + " ";
QStringList ps;
if (m_provider & WSC_SECURITY_PROVIDER_FIREWALL) {
ps.push_back("firewall");
}
if (m_provider & WSC_SECURITY_PROVIDER_AUTOUPDATE_SETTINGS) {
ps.push_back("autoupdate");
}
if (m_provider & WSC_SECURITY_PROVIDER_ANTIVIRUS) {
ps.push_back("antivirus");
}
if (m_provider & WSC_SECURITY_PROVIDER_ANTISPYWARE) {
ps.push_back("antispyware");
}
if (m_provider & WSC_SECURITY_PROVIDER_INTERNET_SETTINGS) {
ps.push_back("settings");
}
if (m_provider & WSC_SECURITY_PROVIDER_USER_ACCOUNT_CONTROL) {
ps.push_back("uac");
}
if (m_provider & WSC_SECURITY_PROVIDER_SERVICE) {
ps.push_back("service");
}
if (ps.empty()) {
s += "(doesn't provide anything)";
} else {
s += "(" + ps.join("|") + ")";
}
if (m_active) {
s += ", active";
} else {
s += ", inactive";
}
if (!m_upToDate) {
s += ", definitions outdated";
}
return s;
}
struct Process
{
std::wstring filename;
DWORD pid;
Process(std::wstring f, DWORD id)
: filename(std::move(f)), pid(id)
{
}
};
// returns the filename of the given process or the current one
//
std::wstring processFilename(HANDLE process=INVALID_HANDLE_VALUE)
{
// double the buffer size 10 times
const int MaxTries = 10;
DWORD bufferSize = MAX_PATH;
for (int tries=0; tries(bufferSize + 1);
std::fill(buffer.get(), buffer.get() + bufferSize + 1, 0);
DWORD writtenSize = 0;
if (process == INVALID_HANDLE_VALUE) {
// query this process
writtenSize = GetModuleFileNameW(0, buffer.get(), bufferSize);
} else {
// query another process
writtenSize = GetModuleBaseNameW(process, 0, buffer.get(), bufferSize);
}
if (writtenSize == 0) {
// hard failure
const auto e = GetLastError();
std::wcerr << formatSystemMessage(e) << L"\n";
break;
} else if (writtenSize >= bufferSize) {
// buffer is too small, try again
bufferSize *= 2;
} else {
// if GetModuleFileName() works, `writtenSize` does not include the null
// terminator
const std::wstring s(buffer.get(), writtenSize);
const fs::path path(s);
return path.filename().native();
}
}
// something failed or the path is way too long to make sense
std::wstring what;
if (process == INVALID_HANDLE_VALUE) {
what = L"the current process";
} else {
what = L"pid " + std::to_wstring(reinterpret_cast(process));
}
std::wcerr << L"failed to get filename for " << what << L"\n";
return {};
}
std::vector runningProcessesIds()
{
// double the buffer size 10 times
const int MaxTries = 10;
// initial size of 300 processes, unlikely to be more than that
std::size_t size = 300;
for (int tries=0; tries(size);
std::fill(ids.get(), ids.get() + size, 0);
DWORD bytesGiven = static_cast(size * sizeof(ids[0]));
DWORD bytesWritten = 0;
if (!EnumProcesses(ids.get(), bytesGiven, &bytesWritten))
{
const auto e = GetLastError();
std::wcerr
<< L"failed to enumerate processes, "
<< formatSystemMessage(e) << L"\n";
return {};
}
if (bytesWritten == bytesGiven) {
// no way to distinguish between an exact fit and not enough space,
// just try again
size *= 2;
continue;
}
const auto count = bytesWritten / sizeof(ids[0]);
return std::vector(ids.get(), ids.get() + count);
}
std::cerr << L"too many processes to enumerate";
return {};
}
std::vector runningProcesses()
{
const auto pids = runningProcessesIds();
std::vector v;
for (const auto& pid : pids) {
if (pid == 0) {
// the idle process has pid 0 and seems to be picked up by EnumProcesses()
continue;
}
HandlePtr h(OpenProcess(
PROCESS_QUERY_INFORMATION | PROCESS_VM_READ, FALSE, pid));
if (!h) {
const auto e = GetLastError();
if (e != ERROR_ACCESS_DENIED) {
// don't log access denied, will happen a lot for system processes, even
// when elevated
std::wcerr
<< L"failed to open process " << pid << L", "
<< formatSystemMessage(e) << L"\n";
}
continue;
}
auto filename = processFilename(h.get());
if (!filename.empty()) {
v.emplace_back(std::move(filename), pid);
}
}
return v;
}
DWORD findOtherPid()
{
const std::wstring defaultName = L"ModOrganizer.exe";
std::wclog << L"looking for the other process...\n";
// used to skip the current process below
const auto thisPid = GetCurrentProcessId();
std::wclog << L"this process id is " << thisPid << L"\n";
// getting the filename for this process, assumes the other process has the
// smae one
auto filename = processFilename();
if (filename.empty()) {
std::wcerr
<< L"can't get current process filename, defaulting to "
<< defaultName << L"\n";
filename = defaultName;
} else {
std::wclog << L"this process filename is " << filename << L"\n";
}
// getting all running processes
const auto processes = runningProcesses();
std::wclog << L"there are " << processes.size() << L" processes running\n";
// going through processes, trying to find one with the same name and a
// different pid than this process has
for (const auto& p : processes) {
if (p.filename == filename) {
if (p.pid != thisPid) {
return p.pid;
}
}
}
std::wclog
<< L"no process with this filename\n"
<< L"MO may not be running, or it may be running as administrator\n"
<< L"you can try running this again as administrator\n";
return 0;
}
std::wstring tempDir()
{
const DWORD bufferSize = MAX_PATH + 1;
wchar_t buffer[bufferSize + 1] = {};
const auto written = GetTempPathW(bufferSize, buffer);
if (written == 0) {
const auto e = GetLastError();
std::wcerr
<< L"failed to get temp path, " << formatSystemMessage(e) << L"\n";
return {};
}
// `written` does not include the null terminator
return std::wstring(buffer, buffer + written);
}
HandlePtr tempFile(const std::wstring dir)
{
// maximum tries of incrementing the counter
const int MaxTries = 100;
// UTC time and date will be in the filename
const auto now = std::time(0);
const auto tm = std::gmtime(&now);
// "ModOrganizer-YYYYMMDDThhmmss.dmp", with a possible "-i" appended, where
// i can go until MaxTries
std::wostringstream oss;
oss
<< L"ModOrganizer-"
<< std::setw(4) << (1900 + tm->tm_year)
<< std::setw(2) << std::setfill(L'0') << (tm->tm_mon + 1)
<< std::setw(2) << std::setfill(L'0') << tm->tm_mday << "T"
<< std::setw(2) << std::setfill(L'0') << tm->tm_hour
<< std::setw(2) << std::setfill(L'0') << tm->tm_min
<< std::setw(2) << std::setfill(L'0') << tm->tm_sec;
const std::wstring prefix = oss.str();
const std::wstring ext = L".dmp";
// first path to try, without counter in it
std::wstring path = dir + L"\\" + prefix + ext;
for (int i=0; i