#include "llvm/IR/Module.h"
#include "SymbolTableListTraitsImpl.h"
#include "llvm/ADT/Optional.h"
#include "llvm/ADT/SmallString.h"
#include "llvm/ADT/SmallVector.h"
#include "llvm/ADT/StringMap.h"
#include "llvm/ADT/StringRef.h"
#include "llvm/ADT/Twine.h"
#include "llvm/IR/Attributes.h"
#include "llvm/IR/Comdat.h"
#include "llvm/IR/Constants.h"
#include "llvm/IR/DataLayout.h"
#include "llvm/IR/DebugInfoMetadata.h"
#include "llvm/IR/DerivedTypes.h"
#include "llvm/IR/Function.h"
#include "llvm/IR/GVMaterializer.h"
#include "llvm/IR/GlobalAlias.h"
#include "llvm/IR/GlobalIFunc.h"
#include "llvm/IR/GlobalValue.h"
#include "llvm/IR/GlobalVariable.h"
#include "llvm/IR/LLVMContext.h"
#include "llvm/IR/Metadata.h"
#include "llvm/IR/ModuleSummaryIndex.h"
#include "llvm/IR/SymbolTableListTraits.h"
#include "llvm/IR/Type.h"
#include "llvm/IR/TypeFinder.h"
#include "llvm/IR/Value.h"
#include "llvm/IR/ValueSymbolTable.h"
#include "llvm/Support/Casting.h"
#include "llvm/Support/CodeGen.h"
#include "llvm/Support/Error.h"
#include "llvm/Support/MemoryBuffer.h"
#include "llvm/Support/Path.h"
#include "llvm/Support/RandomNumberGenerator.h"
#include "llvm/Support/VersionTuple.h"
#include <algorithm>
#include <cassert>
#include <cstdint>
#include <memory>
#include <utility>
#include <vector>
using namespace llvm;
template class llvm::SymbolTableListTraits<Function>;
template class llvm::SymbolTableListTraits<GlobalVariable>;
template class llvm::SymbolTableListTraits<GlobalAlias>;
template class llvm::SymbolTableListTraits<GlobalIFunc>;
Module::Module(StringRef MID, LLVMContext &C)
: Context(C), ValSymTab(std::make_unique<ValueSymbolTable>(-1)),
ModuleID(std::string(MID)), SourceFileName(std::string(MID)), DL("") {
Context.addModule(this);
}
Module::~Module() {
Context.removeModule(this);
dropAllReferences();
GlobalList.clear();
FunctionList.clear();
AliasList.clear();
IFuncList.clear();
}
std::unique_ptr<RandomNumberGenerator>
Module::createRNG(const StringRef Name) const {
SmallString<32> Salt(Name);
Salt += sys::path::filename(getModuleIdentifier());
return std::unique_ptr<RandomNumberGenerator>(
new RandomNumberGenerator(Salt));
}
GlobalValue *Module::getNamedValue(StringRef Name) const {
return cast_or_null<GlobalValue>(getValueSymbolTable().lookup(Name));
}
unsigned Module::getNumNamedValues() const {
return getValueSymbolTable().size();
}
unsigned Module::getMDKindID(StringRef Name) const {
return Context.getMDKindID(Name);
}
void Module::getMDKindNames(SmallVectorImpl<StringRef> &Result) const {
return Context.getMDKindNames(Result);
}
void Module::getOperandBundleTags(SmallVectorImpl<StringRef> &Result) const {
return Context.getOperandBundleTags(Result);
}
FunctionCallee Module::getOrInsertFunction(StringRef Name, FunctionType *Ty,
AttributeList AttributeList) {
GlobalValue *F = getNamedValue(Name);
if (!F) {
Function *New = Function::Create(Ty, GlobalVariable::ExternalLinkage,
DL.getProgramAddressSpace(), Name);
if (!New->isIntrinsic()) New->setAttributes(AttributeList);
FunctionList.push_back(New);
return {Ty, New}; }
auto *PTy = PointerType::get(Ty, F->getAddressSpace());
if (F->getType() != PTy)
return {Ty, ConstantExpr::getBitCast(F, PTy)};
return {Ty, F};
}
FunctionCallee Module::getOrInsertFunction(StringRef Name, FunctionType *Ty) {
return getOrInsertFunction(Name, Ty, AttributeList());
}
Function *Module::getFunction(StringRef Name) const {
return dyn_cast_or_null<Function>(getNamedValue(Name));
}
GlobalVariable *Module::getGlobalVariable(StringRef Name,
bool AllowLocal) const {
if (GlobalVariable *Result =
dyn_cast_or_null<GlobalVariable>(getNamedValue(Name)))
if (AllowLocal || !Result->hasLocalLinkage())
return Result;
return nullptr;
}
Constant *Module::getOrInsertGlobal(
StringRef Name, Type *Ty,
function_ref<GlobalVariable *()> CreateGlobalCallback) {
GlobalVariable *GV = dyn_cast_or_null<GlobalVariable>(getNamedValue(Name));
if (!GV)
GV = CreateGlobalCallback();
assert(GV && "The CreateGlobalCallback is expected to create a global");
Type *GVTy = GV->getType();
PointerType *PTy = PointerType::get(Ty, GVTy->getPointerAddressSpace());
if (GVTy != PTy)
return ConstantExpr::getBitCast(GV, PTy);
return GV;
}
Constant *Module::getOrInsertGlobal(StringRef Name, Type *Ty) {
return getOrInsertGlobal(Name, Ty, [&] {
return new GlobalVariable(*this, Ty, false, GlobalVariable::ExternalLinkage,
nullptr, Name);
});
}
GlobalAlias *Module::getNamedAlias(StringRef Name) const {
return dyn_cast_or_null<GlobalAlias>(getNamedValue(Name));
}
GlobalIFunc *Module::getNamedIFunc(StringRef Name) const {
return dyn_cast_or_null<GlobalIFunc>(getNamedValue(Name));
}
NamedMDNode *Module::getNamedMetadata(const Twine &Name) const {
SmallString<256> NameData;
StringRef NameRef = Name.toStringRef(NameData);
return NamedMDSymTab.lookup(NameRef);
}
NamedMDNode *Module::getOrInsertNamedMetadata(StringRef Name) {
NamedMDNode *&NMD = NamedMDSymTab[Name];
if (!NMD) {
NMD = new NamedMDNode(Name);
NMD->setParent(this);
NamedMDList.push_back(NMD);
}
return NMD;
}
void Module::eraseNamedMetadata(NamedMDNode *NMD) {
NamedMDSymTab.erase(NMD->getName());
NamedMDList.erase(NMD->getIterator());
}
bool Module::isValidModFlagBehavior(Metadata *MD, ModFlagBehavior &MFB) {
if (ConstantInt *Behavior = mdconst::dyn_extract_or_null<ConstantInt>(MD)) {
uint64_t Val = Behavior->getLimitedValue();
if (Val >= ModFlagBehaviorFirstVal && Val <= ModFlagBehaviorLastVal) {
MFB = static_cast<ModFlagBehavior>(Val);
return true;
}
}
return false;
}
bool Module::isValidModuleFlag(const MDNode &ModFlag, ModFlagBehavior &MFB,
MDString *&Key, Metadata *&Val) {
if (ModFlag.getNumOperands() < 3)
return false;
if (!isValidModFlagBehavior(ModFlag.getOperand(0), MFB))
return false;
MDString *K = dyn_cast_or_null<MDString>(ModFlag.getOperand(1));
if (!K)
return false;
Key = K;
Val = ModFlag.getOperand(2);
return true;
}
void Module::
getModuleFlagsMetadata(SmallVectorImpl<ModuleFlagEntry> &Flags) const {
const NamedMDNode *ModFlags = getModuleFlagsMetadata();
if (!ModFlags) return;
for (const MDNode *Flag : ModFlags->operands()) {
ModFlagBehavior MFB;
MDString *Key = nullptr;
Metadata *Val = nullptr;
if (isValidModuleFlag(*Flag, MFB, Key, Val)) {
Flags.push_back(ModuleFlagEntry(MFB, Key, Val));
}
}
}
Metadata *Module::getModuleFlag(StringRef Key) const {
SmallVector<Module::ModuleFlagEntry, 8> ModuleFlags;
getModuleFlagsMetadata(ModuleFlags);
for (const ModuleFlagEntry &MFE : ModuleFlags) {
if (Key == MFE.Key->getString())
return MFE.Val;
}
return nullptr;
}
NamedMDNode *Module::getModuleFlagsMetadata() const {
return getNamedMetadata("llvm.module.flags");
}
NamedMDNode *Module::getOrInsertModuleFlagsMetadata() {
return getOrInsertNamedMetadata("llvm.module.flags");
}
void Module::addModuleFlag(ModFlagBehavior Behavior, StringRef Key,
Metadata *Val) {
Type *Int32Ty = Type::getInt32Ty(Context);
Metadata *Ops[3] = {
ConstantAsMetadata::get(ConstantInt::get(Int32Ty, Behavior)),
MDString::get(Context, Key), Val};
getOrInsertModuleFlagsMetadata()->addOperand(MDNode::get(Context, Ops));
}
void Module::addModuleFlag(ModFlagBehavior Behavior, StringRef Key,
Constant *Val) {
addModuleFlag(Behavior, Key, ConstantAsMetadata::get(Val));
}
void Module::addModuleFlag(ModFlagBehavior Behavior, StringRef Key,
uint32_t Val) {
Type *Int32Ty = Type::getInt32Ty(Context);
addModuleFlag(Behavior, Key, ConstantInt::get(Int32Ty, Val));
}
void Module::addModuleFlag(MDNode *Node) {
assert(Node->getNumOperands() == 3 &&
"Invalid number of operands for module flag!");
assert(mdconst::hasa<ConstantInt>(Node->getOperand(0)) &&
isa<MDString>(Node->getOperand(1)) &&
"Invalid operand types for module flag!");
getOrInsertModuleFlagsMetadata()->addOperand(Node);
}
void Module::setModuleFlag(ModFlagBehavior Behavior, StringRef Key,
Metadata *Val) {
NamedMDNode *ModFlags = getOrInsertModuleFlagsMetadata();
for (unsigned I = 0, E = ModFlags->getNumOperands(); I != E; ++I) {
MDNode *Flag = ModFlags->getOperand(I);
ModFlagBehavior MFB;
MDString *K = nullptr;
Metadata *V = nullptr;
if (isValidModuleFlag(*Flag, MFB, K, V) && K->getString() == Key) {
Flag->replaceOperandWith(2, Val);
return;
}
}
addModuleFlag(Behavior, Key, Val);
}
void Module::setDataLayout(StringRef Desc) {
DL.reset(Desc);
}
void Module::setDataLayout(const DataLayout &Other) { DL = Other; }
const DataLayout &Module::getDataLayout() const { return DL; }
DICompileUnit *Module::debug_compile_units_iterator::operator*() const {
return cast<DICompileUnit>(CUs->getOperand(Idx));
}
DICompileUnit *Module::debug_compile_units_iterator::operator->() const {
return cast<DICompileUnit>(CUs->getOperand(Idx));
}
void Module::debug_compile_units_iterator::SkipNoDebugCUs() {
while (CUs && (Idx < CUs->getNumOperands()) &&
((*this)->getEmissionKind() == DICompileUnit::NoDebug))
++Idx;
}
iterator_range<Module::global_object_iterator> Module::global_objects() {
return concat<GlobalObject>(functions(), globals());
}
iterator_range<Module::const_global_object_iterator>
Module::global_objects() const {
return concat<const GlobalObject>(functions(), globals());
}
iterator_range<Module::global_value_iterator> Module::global_values() {
return concat<GlobalValue>(functions(), globals(), aliases(), ifuncs());
}
iterator_range<Module::const_global_value_iterator>
Module::global_values() const {
return concat<const GlobalValue>(functions(), globals(), aliases(), ifuncs());
}
void Module::setMaterializer(GVMaterializer *GVM) {
assert(!Materializer &&
"Module already has a GVMaterializer. Call materializeAll"
" to clear it out before setting another one.");
Materializer.reset(GVM);
}
Error Module::materialize(GlobalValue *GV) {
if (!Materializer)
return Error::success();
return Materializer->materialize(GV);
}
Error Module::materializeAll() {
if (!Materializer)
return Error::success();
std::unique_ptr<GVMaterializer> M = std::move(Materializer);
return M->materializeModule();
}
Error Module::materializeMetadata() {
if (!Materializer)
return Error::success();
return Materializer->materializeMetadata();
}
std::vector<StructType *> Module::getIdentifiedStructTypes() const {
if (Materializer)
return Materializer->getIdentifiedStructTypes();
std::vector<StructType *> Ret;
TypeFinder SrcStructTypes;
SrcStructTypes.run(*this, true);
Ret.assign(SrcStructTypes.begin(), SrcStructTypes.end());
return Ret;
}
std::string Module::getUniqueIntrinsicName(StringRef BaseName, Intrinsic::ID Id,
const FunctionType *Proto) {
auto Encode = [&BaseName](unsigned Suffix) {
return (Twine(BaseName) + "." + Twine(Suffix)).str();
};
{
auto UinItInserted = UniquedIntrinsicNames.insert({{Id, Proto}, 0});
if (!UinItInserted.second)
return Encode(UinItInserted.first->second);
}
auto NiidItInserted = CurrentIntrinsicIds.insert({BaseName, 0});
unsigned Count = NiidItInserted.first->second;
std::string NewName;
while (true) {
NewName = Encode(Count);
GlobalValue *F = getNamedValue(NewName);
if (!F) {
UniquedIntrinsicNames[{Id, Proto}] = Count;
break;
}
FunctionType *FT = dyn_cast<FunctionType>(F->getValueType());
auto UinItInserted = UniquedIntrinsicNames.insert({{Id, FT}, Count});
if (FT == Proto) {
UinItInserted.first->second = Count;
break;
}
++Count;
}
NiidItInserted.first->second = Count + 1;
return NewName;
}
void Module::dropAllReferences() {
for (Function &F : *this)
F.dropAllReferences();
for (GlobalVariable &GV : globals())
GV.dropAllReferences();
for (GlobalAlias &GA : aliases())
GA.dropAllReferences();
for (GlobalIFunc &GIF : ifuncs())
GIF.dropAllReferences();
}
unsigned Module::getNumberRegisterParameters() const {
auto *Val =
cast_or_null<ConstantAsMetadata>(getModuleFlag("NumRegisterParameters"));
if (!Val)
return 0;
return cast<ConstantInt>(Val->getValue())->getZExtValue();
}
unsigned Module::getDwarfVersion() const {
auto *Val = cast_or_null<ConstantAsMetadata>(getModuleFlag("Dwarf Version"));
if (!Val)
return 0;
return cast<ConstantInt>(Val->getValue())->getZExtValue();
}
bool Module::isDwarf64() const {
auto *Val = cast_or_null<ConstantAsMetadata>(getModuleFlag("DWARF64"));
return Val && cast<ConstantInt>(Val->getValue())->isOne();
}
unsigned Module::getCodeViewFlag() const {
auto *Val = cast_or_null<ConstantAsMetadata>(getModuleFlag("CodeView"));
if (!Val)
return 0;
return cast<ConstantInt>(Val->getValue())->getZExtValue();
}
unsigned Module::getInstructionCount() const {
unsigned NumInstrs = 0;
for (const Function &F : FunctionList)
NumInstrs += F.getInstructionCount();
return NumInstrs;
}
Comdat *Module::getOrInsertComdat(StringRef Name) {
auto &Entry = *ComdatSymTab.insert(std::make_pair(Name, Comdat())).first;
Entry.second.Name = &Entry;
return &Entry.second;
}
PICLevel::Level Module::getPICLevel() const {
auto *Val = cast_or_null<ConstantAsMetadata>(getModuleFlag("PIC Level"));
if (!Val)
return PICLevel::NotPIC;
return static_cast<PICLevel::Level>(
cast<ConstantInt>(Val->getValue())->getZExtValue());
}
void Module::setPICLevel(PICLevel::Level PL) {
addModuleFlag(ModFlagBehavior::Max, "PIC Level", PL);
}
PIELevel::Level Module::getPIELevel() const {
auto *Val = cast_or_null<ConstantAsMetadata>(getModuleFlag("PIE Level"));
if (!Val)
return PIELevel::Default;
return static_cast<PIELevel::Level>(
cast<ConstantInt>(Val->getValue())->getZExtValue());
}
void Module::setPIELevel(PIELevel::Level PL) {
addModuleFlag(ModFlagBehavior::Max, "PIE Level", PL);
}
Optional<CodeModel::Model> Module::getCodeModel() const {
auto *Val = cast_or_null<ConstantAsMetadata>(getModuleFlag("Code Model"));
if (!Val)
return None;
return static_cast<CodeModel::Model>(
cast<ConstantInt>(Val->getValue())->getZExtValue());
}
void Module::setCodeModel(CodeModel::Model CL) {
addModuleFlag(ModFlagBehavior::Error, "Code Model", CL);
}
void Module::setProfileSummary(Metadata *M, ProfileSummary::Kind Kind) {
if (Kind == ProfileSummary::PSK_CSInstr)
setModuleFlag(ModFlagBehavior::Error, "CSProfileSummary", M);
else
setModuleFlag(ModFlagBehavior::Error, "ProfileSummary", M);
}
Metadata *Module::getProfileSummary(bool IsCS) const {
return (IsCS ? getModuleFlag("CSProfileSummary")
: getModuleFlag("ProfileSummary"));
}
bool Module::getSemanticInterposition() const {
Metadata *MF = getModuleFlag("SemanticInterposition");
auto *Val = cast_or_null<ConstantAsMetadata>(MF);
if (!Val)
return false;
return cast<ConstantInt>(Val->getValue())->getZExtValue();
}
void Module::setSemanticInterposition(bool SI) {
addModuleFlag(ModFlagBehavior::Error, "SemanticInterposition", SI);
}
void Module::setOwnedMemoryBuffer(std::unique_ptr<MemoryBuffer> MB) {
OwnedMemoryBuffer = std::move(MB);
}
bool Module::getRtLibUseGOT() const {
auto *Val = cast_or_null<ConstantAsMetadata>(getModuleFlag("RtLibUseGOT"));
return Val && (cast<ConstantInt>(Val->getValue())->getZExtValue() > 0);
}
void Module::setRtLibUseGOT() {
addModuleFlag(ModFlagBehavior::Max, "RtLibUseGOT", 1);
}
UWTableKind Module::getUwtable() const {
if (auto *Val = cast_or_null<ConstantAsMetadata>(getModuleFlag("uwtable")))
return UWTableKind(cast<ConstantInt>(Val->getValue())->getZExtValue());
return UWTableKind::None;
}
void Module::setUwtable(UWTableKind Kind) {
addModuleFlag(ModFlagBehavior::Max, "uwtable", uint32_t(Kind));
}
FramePointerKind Module::getFramePointer() const {
auto *Val = cast_or_null<ConstantAsMetadata>(getModuleFlag("frame-pointer"));
return static_cast<FramePointerKind>(
Val ? cast<ConstantInt>(Val->getValue())->getZExtValue() : 0);
}
void Module::setFramePointer(FramePointerKind Kind) {
addModuleFlag(ModFlagBehavior::Max, "frame-pointer", static_cast<int>(Kind));
}
StringRef Module::getStackProtectorGuard() const {
Metadata *MD = getModuleFlag("stack-protector-guard");
if (auto *MDS = dyn_cast_or_null<MDString>(MD))
return MDS->getString();
return {};
}
void Module::setStackProtectorGuard(StringRef Kind) {
MDString *ID = MDString::get(getContext(), Kind);
addModuleFlag(ModFlagBehavior::Error, "stack-protector-guard", ID);
}
StringRef Module::getStackProtectorGuardReg() const {
Metadata *MD = getModuleFlag("stack-protector-guard-reg");
if (auto *MDS = dyn_cast_or_null<MDString>(MD))
return MDS->getString();
return {};
}
void Module::setStackProtectorGuardReg(StringRef Reg) {
MDString *ID = MDString::get(getContext(), Reg);
addModuleFlag(ModFlagBehavior::Error, "stack-protector-guard-reg", ID);
}
StringRef Module::getStackProtectorGuardSymbol() const {
Metadata *MD = getModuleFlag("stack-protector-guard-symbol");
if (auto *MDS = dyn_cast_or_null<MDString>(MD))
return MDS->getString();
return {};
}
void Module::setStackProtectorGuardSymbol(StringRef Symbol) {
MDString *ID = MDString::get(getContext(), Symbol);
addModuleFlag(ModFlagBehavior::Error, "stack-protector-guard-symbol", ID);
}
int Module::getStackProtectorGuardOffset() const {
Metadata *MD = getModuleFlag("stack-protector-guard-offset");
if (auto *CI = mdconst::dyn_extract_or_null<ConstantInt>(MD))
return CI->getSExtValue();
return INT_MAX;
}
void Module::setStackProtectorGuardOffset(int Offset) {
addModuleFlag(ModFlagBehavior::Error, "stack-protector-guard-offset", Offset);
}
unsigned Module::getOverrideStackAlignment() const {
Metadata *MD = getModuleFlag("override-stack-alignment");
if (auto *CI = mdconst::dyn_extract_or_null<ConstantInt>(MD))
return CI->getZExtValue();
return 0;
}
void Module::setOverrideStackAlignment(unsigned Align) {
addModuleFlag(ModFlagBehavior::Error, "override-stack-alignment", Align);
}
static void addSDKVersionMD(const VersionTuple &V, Module &M, StringRef Name) {
SmallVector<unsigned, 3> Entries;
Entries.push_back(V.getMajor());
if (auto Minor = V.getMinor()) {
Entries.push_back(*Minor);
if (auto Subminor = V.getSubminor())
Entries.push_back(*Subminor);
}
M.addModuleFlag(Module::ModFlagBehavior::Warning, Name,
ConstantDataArray::get(M.getContext(), Entries));
}
void Module::setSDKVersion(const VersionTuple &V) {
addSDKVersionMD(V, *this, "SDK Version");
}
static VersionTuple getSDKVersionMD(Metadata *MD) {
auto *CM = dyn_cast_or_null<ConstantAsMetadata>(MD);
if (!CM)
return {};
auto *Arr = dyn_cast_or_null<ConstantDataArray>(CM->getValue());
if (!Arr)
return {};
auto getVersionComponent = [&](unsigned Index) -> Optional<unsigned> {
if (Index >= Arr->getNumElements())
return None;
return (unsigned)Arr->getElementAsInteger(Index);
};
auto Major = getVersionComponent(0);
if (!Major)
return {};
VersionTuple Result = VersionTuple(*Major);
if (auto Minor = getVersionComponent(1)) {
Result = VersionTuple(*Major, *Minor);
if (auto Subminor = getVersionComponent(2)) {
Result = VersionTuple(*Major, *Minor, *Subminor);
}
}
return Result;
}
VersionTuple Module::getSDKVersion() const {
return getSDKVersionMD(getModuleFlag("SDK Version"));
}
GlobalVariable *llvm::collectUsedGlobalVariables(
const Module &M, SmallVectorImpl<GlobalValue *> &Vec, bool CompilerUsed) {
const char *Name = CompilerUsed ? "llvm.compiler.used" : "llvm.used";
GlobalVariable *GV = M.getGlobalVariable(Name);
if (!GV || !GV->hasInitializer())
return GV;
const ConstantArray *Init = cast<ConstantArray>(GV->getInitializer());
for (Value *Op : Init->operands()) {
GlobalValue *G = cast<GlobalValue>(Op->stripPointerCasts());
Vec.push_back(G);
}
return GV;
}
void Module::setPartialSampleProfileRatio(const ModuleSummaryIndex &Index) {
if (auto *SummaryMD = getProfileSummary( false)) {
std::unique_ptr<ProfileSummary> ProfileSummary(
ProfileSummary::getFromMD(SummaryMD));
if (ProfileSummary) {
if (ProfileSummary->getKind() != ProfileSummary::PSK_Sample ||
!ProfileSummary->isPartialProfile())
return;
uint64_t BlockCount = Index.getBlockCount();
uint32_t NumCounts = ProfileSummary->getNumCounts();
if (!NumCounts)
return;
double Ratio = (double)BlockCount / NumCounts;
ProfileSummary->setPartialProfileRatio(Ratio);
setProfileSummary(ProfileSummary->getMD(getContext()),
ProfileSummary::PSK_Sample);
}
}
}
StringRef Module::getDarwinTargetVariantTriple() const {
if (const auto *MD = getModuleFlag("darwin.target_variant.triple"))
return cast<MDString>(MD)->getString();
return "";
}
void Module::setDarwinTargetVariantTriple(StringRef T) {
addModuleFlag(ModFlagBehavior::Override, "darwin.target_variant.triple",
MDString::get(getContext(), T));
}
VersionTuple Module::getDarwinTargetVariantSDKVersion() const {
return getSDKVersionMD(getModuleFlag("darwin.target_variant.SDK Version"));
}
void Module::setDarwinTargetVariantSDKVersion(VersionTuple Version) {
addSDKVersionMD(Version, *this, "darwin.target_variant.SDK Version");
}