1*0b57cec5SDimitry Andric //===--- CodeGenModule.cpp - Emit LLVM Code from ASTs for a Module --------===//
2*0b57cec5SDimitry Andric //
3*0b57cec5SDimitry Andric // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4*0b57cec5SDimitry Andric // See https://llvm.org/LICENSE.txt for license information.
5*0b57cec5SDimitry Andric // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6*0b57cec5SDimitry Andric //
7*0b57cec5SDimitry Andric //===----------------------------------------------------------------------===//
8*0b57cec5SDimitry Andric //
9*0b57cec5SDimitry Andric // This coordinates the per-module state used while generating code.
10*0b57cec5SDimitry Andric //
11*0b57cec5SDimitry Andric //===----------------------------------------------------------------------===//
12*0b57cec5SDimitry Andric 
13*0b57cec5SDimitry Andric #include "CodeGenModule.h"
14*0b57cec5SDimitry Andric #include "CGBlocks.h"
15*0b57cec5SDimitry Andric #include "CGCUDARuntime.h"
16*0b57cec5SDimitry Andric #include "CGCXXABI.h"
17*0b57cec5SDimitry Andric #include "CGCall.h"
18*0b57cec5SDimitry Andric #include "CGDebugInfo.h"
19*0b57cec5SDimitry Andric #include "CGObjCRuntime.h"
20*0b57cec5SDimitry Andric #include "CGOpenCLRuntime.h"
21*0b57cec5SDimitry Andric #include "CGOpenMPRuntime.h"
22e8d8bef9SDimitry Andric #include "CGOpenMPRuntimeAMDGCN.h"
23*0b57cec5SDimitry Andric #include "CGOpenMPRuntimeNVPTX.h"
24*0b57cec5SDimitry Andric #include "CodeGenFunction.h"
25*0b57cec5SDimitry Andric #include "CodeGenPGO.h"
26*0b57cec5SDimitry Andric #include "ConstantEmitter.h"
27*0b57cec5SDimitry Andric #include "CoverageMappingGen.h"
28*0b57cec5SDimitry Andric #include "TargetInfo.h"
29*0b57cec5SDimitry Andric #include "clang/AST/ASTContext.h"
30*0b57cec5SDimitry Andric #include "clang/AST/CharUnits.h"
31*0b57cec5SDimitry Andric #include "clang/AST/DeclCXX.h"
32*0b57cec5SDimitry Andric #include "clang/AST/DeclObjC.h"
33*0b57cec5SDimitry Andric #include "clang/AST/DeclTemplate.h"
34*0b57cec5SDimitry Andric #include "clang/AST/Mangle.h"
35*0b57cec5SDimitry Andric #include "clang/AST/RecordLayout.h"
36*0b57cec5SDimitry Andric #include "clang/AST/RecursiveASTVisitor.h"
37*0b57cec5SDimitry Andric #include "clang/AST/StmtVisitor.h"
38*0b57cec5SDimitry Andric #include "clang/Basic/Builtins.h"
39*0b57cec5SDimitry Andric #include "clang/Basic/CharInfo.h"
40*0b57cec5SDimitry Andric #include "clang/Basic/CodeGenOptions.h"
41*0b57cec5SDimitry Andric #include "clang/Basic/Diagnostic.h"
425ffd83dbSDimitry Andric #include "clang/Basic/FileManager.h"
43*0b57cec5SDimitry Andric #include "clang/Basic/Module.h"
44*0b57cec5SDimitry Andric #include "clang/Basic/SourceManager.h"
45*0b57cec5SDimitry Andric #include "clang/Basic/TargetInfo.h"
46*0b57cec5SDimitry Andric #include "clang/Basic/Version.h"
47*0b57cec5SDimitry Andric #include "clang/CodeGen/ConstantInitBuilder.h"
48*0b57cec5SDimitry Andric #include "clang/Frontend/FrontendDiagnostic.h"
49*0b57cec5SDimitry Andric #include "llvm/ADT/StringSwitch.h"
50*0b57cec5SDimitry Andric #include "llvm/ADT/Triple.h"
51*0b57cec5SDimitry Andric #include "llvm/Analysis/TargetLibraryInfo.h"
52480093f4SDimitry Andric #include "llvm/Frontend/OpenMP/OMPIRBuilder.h"
53*0b57cec5SDimitry Andric #include "llvm/IR/CallingConv.h"
54*0b57cec5SDimitry Andric #include "llvm/IR/DataLayout.h"
55*0b57cec5SDimitry Andric #include "llvm/IR/Intrinsics.h"
56*0b57cec5SDimitry Andric #include "llvm/IR/LLVMContext.h"
57*0b57cec5SDimitry Andric #include "llvm/IR/Module.h"
58*0b57cec5SDimitry Andric #include "llvm/IR/ProfileSummary.h"
59*0b57cec5SDimitry Andric #include "llvm/ProfileData/InstrProfReader.h"
60*0b57cec5SDimitry Andric #include "llvm/Support/CodeGen.h"
61480093f4SDimitry Andric #include "llvm/Support/CommandLine.h"
62*0b57cec5SDimitry Andric #include "llvm/Support/ConvertUTF.h"
63*0b57cec5SDimitry Andric #include "llvm/Support/ErrorHandling.h"
64*0b57cec5SDimitry Andric #include "llvm/Support/MD5.h"
65*0b57cec5SDimitry Andric #include "llvm/Support/TimeProfiler.h"
66*0b57cec5SDimitry Andric 
67*0b57cec5SDimitry Andric using namespace clang;
68*0b57cec5SDimitry Andric using namespace CodeGen;
69*0b57cec5SDimitry Andric 
70*0b57cec5SDimitry Andric static llvm::cl::opt<bool> LimitedCoverage(
71*0b57cec5SDimitry Andric     "limited-coverage-experimental", llvm::cl::ZeroOrMore, llvm::cl::Hidden,
72*0b57cec5SDimitry Andric     llvm::cl::desc("Emit limited coverage mapping information (experimental)"),
73*0b57cec5SDimitry Andric     llvm::cl::init(false));
74*0b57cec5SDimitry Andric 
75*0b57cec5SDimitry Andric static const char AnnotationSection[] = "llvm.metadata";
76*0b57cec5SDimitry Andric 
77*0b57cec5SDimitry Andric static CGCXXABI *createCXXABI(CodeGenModule &CGM) {
78*0b57cec5SDimitry Andric   switch (CGM.getTarget().getCXXABI().getKind()) {
79e8d8bef9SDimitry Andric   case TargetCXXABI::AppleARM64:
80480093f4SDimitry Andric   case TargetCXXABI::Fuchsia:
81*0b57cec5SDimitry Andric   case TargetCXXABI::GenericAArch64:
82*0b57cec5SDimitry Andric   case TargetCXXABI::GenericARM:
83*0b57cec5SDimitry Andric   case TargetCXXABI::iOS:
84*0b57cec5SDimitry Andric   case TargetCXXABI::WatchOS:
85*0b57cec5SDimitry Andric   case TargetCXXABI::GenericMIPS:
86*0b57cec5SDimitry Andric   case TargetCXXABI::GenericItanium:
87*0b57cec5SDimitry Andric   case TargetCXXABI::WebAssembly:
885ffd83dbSDimitry Andric   case TargetCXXABI::XL:
89*0b57cec5SDimitry Andric     return CreateItaniumCXXABI(CGM);
90*0b57cec5SDimitry Andric   case TargetCXXABI::Microsoft:
91*0b57cec5SDimitry Andric     return CreateMicrosoftCXXABI(CGM);
92*0b57cec5SDimitry Andric   }
93*0b57cec5SDimitry Andric 
94*0b57cec5SDimitry Andric   llvm_unreachable("invalid C++ ABI kind");
95*0b57cec5SDimitry Andric }
96*0b57cec5SDimitry Andric 
97*0b57cec5SDimitry Andric CodeGenModule::CodeGenModule(ASTContext &C, const HeaderSearchOptions &HSO,
98*0b57cec5SDimitry Andric                              const PreprocessorOptions &PPO,
99*0b57cec5SDimitry Andric                              const CodeGenOptions &CGO, llvm::Module &M,
100*0b57cec5SDimitry Andric                              DiagnosticsEngine &diags,
101*0b57cec5SDimitry Andric                              CoverageSourceInfo *CoverageInfo)
102*0b57cec5SDimitry Andric     : Context(C), LangOpts(C.getLangOpts()), HeaderSearchOpts(HSO),
103*0b57cec5SDimitry Andric       PreprocessorOpts(PPO), CodeGenOpts(CGO), TheModule(M), Diags(diags),
104*0b57cec5SDimitry Andric       Target(C.getTargetInfo()), ABI(createCXXABI(*this)),
105*0b57cec5SDimitry Andric       VMContext(M.getContext()), Types(*this), VTables(*this),
106*0b57cec5SDimitry Andric       SanitizerMD(new SanitizerMetadata(*this)) {
107*0b57cec5SDimitry Andric 
108*0b57cec5SDimitry Andric   // Initialize the type cache.
109*0b57cec5SDimitry Andric   llvm::LLVMContext &LLVMContext = M.getContext();
110*0b57cec5SDimitry Andric   VoidTy = llvm::Type::getVoidTy(LLVMContext);
111*0b57cec5SDimitry Andric   Int8Ty = llvm::Type::getInt8Ty(LLVMContext);
112*0b57cec5SDimitry Andric   Int16Ty = llvm::Type::getInt16Ty(LLVMContext);
113*0b57cec5SDimitry Andric   Int32Ty = llvm::Type::getInt32Ty(LLVMContext);
114*0b57cec5SDimitry Andric   Int64Ty = llvm::Type::getInt64Ty(LLVMContext);
115*0b57cec5SDimitry Andric   HalfTy = llvm::Type::getHalfTy(LLVMContext);
1165ffd83dbSDimitry Andric   BFloatTy = llvm::Type::getBFloatTy(LLVMContext);
117*0b57cec5SDimitry Andric   FloatTy = llvm::Type::getFloatTy(LLVMContext);
118*0b57cec5SDimitry Andric   DoubleTy = llvm::Type::getDoubleTy(LLVMContext);
119*0b57cec5SDimitry Andric   PointerWidthInBits = C.getTargetInfo().getPointerWidth(0);
120*0b57cec5SDimitry Andric   PointerAlignInBytes =
121*0b57cec5SDimitry Andric     C.toCharUnitsFromBits(C.getTargetInfo().getPointerAlign(0)).getQuantity();
122*0b57cec5SDimitry Andric   SizeSizeInBytes =
123*0b57cec5SDimitry Andric     C.toCharUnitsFromBits(C.getTargetInfo().getMaxPointerWidth()).getQuantity();
124*0b57cec5SDimitry Andric   IntAlignInBytes =
125*0b57cec5SDimitry Andric     C.toCharUnitsFromBits(C.getTargetInfo().getIntAlign()).getQuantity();
126e8d8bef9SDimitry Andric   CharTy =
127e8d8bef9SDimitry Andric     llvm::IntegerType::get(LLVMContext, C.getTargetInfo().getCharWidth());
128*0b57cec5SDimitry Andric   IntTy = llvm::IntegerType::get(LLVMContext, C.getTargetInfo().getIntWidth());
129*0b57cec5SDimitry Andric   IntPtrTy = llvm::IntegerType::get(LLVMContext,
130*0b57cec5SDimitry Andric     C.getTargetInfo().getMaxPointerWidth());
131*0b57cec5SDimitry Andric   Int8PtrTy = Int8Ty->getPointerTo(0);
132*0b57cec5SDimitry Andric   Int8PtrPtrTy = Int8PtrTy->getPointerTo(0);
133*0b57cec5SDimitry Andric   AllocaInt8PtrTy = Int8Ty->getPointerTo(
134*0b57cec5SDimitry Andric       M.getDataLayout().getAllocaAddrSpace());
135*0b57cec5SDimitry Andric   ASTAllocaAddressSpace = getTargetCodeGenInfo().getASTAllocaAddressSpace();
136*0b57cec5SDimitry Andric 
137*0b57cec5SDimitry Andric   RuntimeCC = getTargetCodeGenInfo().getABIInfo().getRuntimeCC();
138*0b57cec5SDimitry Andric 
139*0b57cec5SDimitry Andric   if (LangOpts.ObjC)
140*0b57cec5SDimitry Andric     createObjCRuntime();
141*0b57cec5SDimitry Andric   if (LangOpts.OpenCL)
142*0b57cec5SDimitry Andric     createOpenCLRuntime();
143*0b57cec5SDimitry Andric   if (LangOpts.OpenMP)
144*0b57cec5SDimitry Andric     createOpenMPRuntime();
145*0b57cec5SDimitry Andric   if (LangOpts.CUDA)
146*0b57cec5SDimitry Andric     createCUDARuntime();
147*0b57cec5SDimitry Andric 
148*0b57cec5SDimitry Andric   // Enable TBAA unless it's suppressed. ThreadSanitizer needs TBAA even at O0.
149*0b57cec5SDimitry Andric   if (LangOpts.Sanitize.has(SanitizerKind::Thread) ||
150*0b57cec5SDimitry Andric       (!CodeGenOpts.RelaxedAliasing && CodeGenOpts.OptimizationLevel > 0))
151*0b57cec5SDimitry Andric     TBAA.reset(new CodeGenTBAA(Context, TheModule, CodeGenOpts, getLangOpts(),
152*0b57cec5SDimitry Andric                                getCXXABI().getMangleContext()));
153*0b57cec5SDimitry Andric 
154*0b57cec5SDimitry Andric   // If debug info or coverage generation is enabled, create the CGDebugInfo
155*0b57cec5SDimitry Andric   // object.
156*0b57cec5SDimitry Andric   if (CodeGenOpts.getDebugInfo() != codegenoptions::NoDebugInfo ||
157*0b57cec5SDimitry Andric       CodeGenOpts.EmitGcovArcs || CodeGenOpts.EmitGcovNotes)
158*0b57cec5SDimitry Andric     DebugInfo.reset(new CGDebugInfo(*this));
159*0b57cec5SDimitry Andric 
160*0b57cec5SDimitry Andric   Block.GlobalUniqueCount = 0;
161*0b57cec5SDimitry Andric 
162*0b57cec5SDimitry Andric   if (C.getLangOpts().ObjC)
163*0b57cec5SDimitry Andric     ObjCData.reset(new ObjCEntrypoints());
164*0b57cec5SDimitry Andric 
165*0b57cec5SDimitry Andric   if (CodeGenOpts.hasProfileClangUse()) {
166*0b57cec5SDimitry Andric     auto ReaderOrErr = llvm::IndexedInstrProfReader::create(
167*0b57cec5SDimitry Andric         CodeGenOpts.ProfileInstrumentUsePath, CodeGenOpts.ProfileRemappingFile);
168*0b57cec5SDimitry Andric     if (auto E = ReaderOrErr.takeError()) {
169*0b57cec5SDimitry Andric       unsigned DiagID = Diags.getCustomDiagID(DiagnosticsEngine::Error,
170*0b57cec5SDimitry Andric                                               "Could not read profile %0: %1");
171*0b57cec5SDimitry Andric       llvm::handleAllErrors(std::move(E), [&](const llvm::ErrorInfoBase &EI) {
172*0b57cec5SDimitry Andric         getDiags().Report(DiagID) << CodeGenOpts.ProfileInstrumentUsePath
173*0b57cec5SDimitry Andric                                   << EI.message();
174*0b57cec5SDimitry Andric       });
175*0b57cec5SDimitry Andric     } else
176*0b57cec5SDimitry Andric       PGOReader = std::move(ReaderOrErr.get());
177*0b57cec5SDimitry Andric   }
178*0b57cec5SDimitry Andric 
179*0b57cec5SDimitry Andric   // If coverage mapping generation is enabled, create the
180*0b57cec5SDimitry Andric   // CoverageMappingModuleGen object.
181*0b57cec5SDimitry Andric   if (CodeGenOpts.CoverageMapping)
182*0b57cec5SDimitry Andric     CoverageMapping.reset(new CoverageMappingModuleGen(*this, *CoverageInfo));
183*0b57cec5SDimitry Andric }
184*0b57cec5SDimitry Andric 
185*0b57cec5SDimitry Andric CodeGenModule::~CodeGenModule() {}
186*0b57cec5SDimitry Andric 
187*0b57cec5SDimitry Andric void CodeGenModule::createObjCRuntime() {
188*0b57cec5SDimitry Andric   // This is just isGNUFamily(), but we want to force implementors of
189*0b57cec5SDimitry Andric   // new ABIs to decide how best to do this.
190*0b57cec5SDimitry Andric   switch (LangOpts.ObjCRuntime.getKind()) {
191*0b57cec5SDimitry Andric   case ObjCRuntime::GNUstep:
192*0b57cec5SDimitry Andric   case ObjCRuntime::GCC:
193*0b57cec5SDimitry Andric   case ObjCRuntime::ObjFW:
194*0b57cec5SDimitry Andric     ObjCRuntime.reset(CreateGNUObjCRuntime(*this));
195*0b57cec5SDimitry Andric     return;
196*0b57cec5SDimitry Andric 
197*0b57cec5SDimitry Andric   case ObjCRuntime::FragileMacOSX:
198*0b57cec5SDimitry Andric   case ObjCRuntime::MacOSX:
199*0b57cec5SDimitry Andric   case ObjCRuntime::iOS:
200*0b57cec5SDimitry Andric   case ObjCRuntime::WatchOS:
201*0b57cec5SDimitry Andric     ObjCRuntime.reset(CreateMacObjCRuntime(*this));
202*0b57cec5SDimitry Andric     return;
203*0b57cec5SDimitry Andric   }
204*0b57cec5SDimitry Andric   llvm_unreachable("bad runtime kind");
205*0b57cec5SDimitry Andric }
206*0b57cec5SDimitry Andric 
207*0b57cec5SDimitry Andric void CodeGenModule::createOpenCLRuntime() {
208*0b57cec5SDimitry Andric   OpenCLRuntime.reset(new CGOpenCLRuntime(*this));
209*0b57cec5SDimitry Andric }
210*0b57cec5SDimitry Andric 
211*0b57cec5SDimitry Andric void CodeGenModule::createOpenMPRuntime() {
212*0b57cec5SDimitry Andric   // Select a specialized code generation class based on the target, if any.
213*0b57cec5SDimitry Andric   // If it does not exist use the default implementation.
214*0b57cec5SDimitry Andric   switch (getTriple().getArch()) {
215*0b57cec5SDimitry Andric   case llvm::Triple::nvptx:
216*0b57cec5SDimitry Andric   case llvm::Triple::nvptx64:
217*0b57cec5SDimitry Andric     assert(getLangOpts().OpenMPIsDevice &&
218*0b57cec5SDimitry Andric            "OpenMP NVPTX is only prepared to deal with device code.");
219*0b57cec5SDimitry Andric     OpenMPRuntime.reset(new CGOpenMPRuntimeNVPTX(*this));
220*0b57cec5SDimitry Andric     break;
221e8d8bef9SDimitry Andric   case llvm::Triple::amdgcn:
222e8d8bef9SDimitry Andric     assert(getLangOpts().OpenMPIsDevice &&
223e8d8bef9SDimitry Andric            "OpenMP AMDGCN is only prepared to deal with device code.");
224e8d8bef9SDimitry Andric     OpenMPRuntime.reset(new CGOpenMPRuntimeAMDGCN(*this));
225e8d8bef9SDimitry Andric     break;
226*0b57cec5SDimitry Andric   default:
227*0b57cec5SDimitry Andric     if (LangOpts.OpenMPSimd)
228*0b57cec5SDimitry Andric       OpenMPRuntime.reset(new CGOpenMPSIMDRuntime(*this));
229*0b57cec5SDimitry Andric     else
230*0b57cec5SDimitry Andric       OpenMPRuntime.reset(new CGOpenMPRuntime(*this));
231*0b57cec5SDimitry Andric     break;
232*0b57cec5SDimitry Andric   }
233*0b57cec5SDimitry Andric }
234*0b57cec5SDimitry Andric 
235*0b57cec5SDimitry Andric void CodeGenModule::createCUDARuntime() {
236*0b57cec5SDimitry Andric   CUDARuntime.reset(CreateNVCUDARuntime(*this));
237*0b57cec5SDimitry Andric }
238*0b57cec5SDimitry Andric 
239*0b57cec5SDimitry Andric void CodeGenModule::addReplacement(StringRef Name, llvm::Constant *C) {
240*0b57cec5SDimitry Andric   Replacements[Name] = C;
241*0b57cec5SDimitry Andric }
242*0b57cec5SDimitry Andric 
243*0b57cec5SDimitry Andric void CodeGenModule::applyReplacements() {
244*0b57cec5SDimitry Andric   for (auto &I : Replacements) {
245*0b57cec5SDimitry Andric     StringRef MangledName = I.first();
246*0b57cec5SDimitry Andric     llvm::Constant *Replacement = I.second;
247*0b57cec5SDimitry Andric     llvm::GlobalValue *Entry = GetGlobalValue(MangledName);
248*0b57cec5SDimitry Andric     if (!Entry)
249*0b57cec5SDimitry Andric       continue;
250*0b57cec5SDimitry Andric     auto *OldF = cast<llvm::Function>(Entry);
251*0b57cec5SDimitry Andric     auto *NewF = dyn_cast<llvm::Function>(Replacement);
252*0b57cec5SDimitry Andric     if (!NewF) {
253*0b57cec5SDimitry Andric       if (auto *Alias = dyn_cast<llvm::GlobalAlias>(Replacement)) {
254*0b57cec5SDimitry Andric         NewF = dyn_cast<llvm::Function>(Alias->getAliasee());
255*0b57cec5SDimitry Andric       } else {
256*0b57cec5SDimitry Andric         auto *CE = cast<llvm::ConstantExpr>(Replacement);
257*0b57cec5SDimitry Andric         assert(CE->getOpcode() == llvm::Instruction::BitCast ||
258*0b57cec5SDimitry Andric                CE->getOpcode() == llvm::Instruction::GetElementPtr);
259*0b57cec5SDimitry Andric         NewF = dyn_cast<llvm::Function>(CE->getOperand(0));
260*0b57cec5SDimitry Andric       }
261*0b57cec5SDimitry Andric     }
262*0b57cec5SDimitry Andric 
263*0b57cec5SDimitry Andric     // Replace old with new, but keep the old order.
264*0b57cec5SDimitry Andric     OldF->replaceAllUsesWith(Replacement);
265*0b57cec5SDimitry Andric     if (NewF) {
266*0b57cec5SDimitry Andric       NewF->removeFromParent();
267*0b57cec5SDimitry Andric       OldF->getParent()->getFunctionList().insertAfter(OldF->getIterator(),
268*0b57cec5SDimitry Andric                                                        NewF);
269*0b57cec5SDimitry Andric     }
270*0b57cec5SDimitry Andric     OldF->eraseFromParent();
271*0b57cec5SDimitry Andric   }
272*0b57cec5SDimitry Andric }
273*0b57cec5SDimitry Andric 
274*0b57cec5SDimitry Andric void CodeGenModule::addGlobalValReplacement(llvm::GlobalValue *GV, llvm::Constant *C) {
275*0b57cec5SDimitry Andric   GlobalValReplacements.push_back(std::make_pair(GV, C));
276*0b57cec5SDimitry Andric }
277*0b57cec5SDimitry Andric 
278*0b57cec5SDimitry Andric void CodeGenModule::applyGlobalValReplacements() {
279*0b57cec5SDimitry Andric   for (auto &I : GlobalValReplacements) {
280*0b57cec5SDimitry Andric     llvm::GlobalValue *GV = I.first;
281*0b57cec5SDimitry Andric     llvm::Constant *C = I.second;
282*0b57cec5SDimitry Andric 
283*0b57cec5SDimitry Andric     GV->replaceAllUsesWith(C);
284*0b57cec5SDimitry Andric     GV->eraseFromParent();
285*0b57cec5SDimitry Andric   }
286*0b57cec5SDimitry Andric }
287*0b57cec5SDimitry Andric 
288*0b57cec5SDimitry Andric // This is only used in aliases that we created and we know they have a
289*0b57cec5SDimitry Andric // linear structure.
290*0b57cec5SDimitry Andric static const llvm::GlobalObject *getAliasedGlobal(
291*0b57cec5SDimitry Andric     const llvm::GlobalIndirectSymbol &GIS) {
292*0b57cec5SDimitry Andric   llvm::SmallPtrSet<const llvm::GlobalIndirectSymbol*, 4> Visited;
293*0b57cec5SDimitry Andric   const llvm::Constant *C = &GIS;
294*0b57cec5SDimitry Andric   for (;;) {
295*0b57cec5SDimitry Andric     C = C->stripPointerCasts();
296*0b57cec5SDimitry Andric     if (auto *GO = dyn_cast<llvm::GlobalObject>(C))
297*0b57cec5SDimitry Andric       return GO;
298*0b57cec5SDimitry Andric     // stripPointerCasts will not walk over weak aliases.
299*0b57cec5SDimitry Andric     auto *GIS2 = dyn_cast<llvm::GlobalIndirectSymbol>(C);
300*0b57cec5SDimitry Andric     if (!GIS2)
301*0b57cec5SDimitry Andric       return nullptr;
302*0b57cec5SDimitry Andric     if (!Visited.insert(GIS2).second)
303*0b57cec5SDimitry Andric       return nullptr;
304*0b57cec5SDimitry Andric     C = GIS2->getIndirectSymbol();
305*0b57cec5SDimitry Andric   }
306*0b57cec5SDimitry Andric }
307*0b57cec5SDimitry Andric 
308*0b57cec5SDimitry Andric void CodeGenModule::checkAliases() {
309*0b57cec5SDimitry Andric   // Check if the constructed aliases are well formed. It is really unfortunate
310*0b57cec5SDimitry Andric   // that we have to do this in CodeGen, but we only construct mangled names
311*0b57cec5SDimitry Andric   // and aliases during codegen.
312*0b57cec5SDimitry Andric   bool Error = false;
313*0b57cec5SDimitry Andric   DiagnosticsEngine &Diags = getDiags();
314*0b57cec5SDimitry Andric   for (const GlobalDecl &GD : Aliases) {
315*0b57cec5SDimitry Andric     const auto *D = cast<ValueDecl>(GD.getDecl());
316*0b57cec5SDimitry Andric     SourceLocation Location;
317*0b57cec5SDimitry Andric     bool IsIFunc = D->hasAttr<IFuncAttr>();
318*0b57cec5SDimitry Andric     if (const Attr *A = D->getDefiningAttr())
319*0b57cec5SDimitry Andric       Location = A->getLocation();
320*0b57cec5SDimitry Andric     else
321*0b57cec5SDimitry Andric       llvm_unreachable("Not an alias or ifunc?");
322*0b57cec5SDimitry Andric     StringRef MangledName = getMangledName(GD);
323*0b57cec5SDimitry Andric     llvm::GlobalValue *Entry = GetGlobalValue(MangledName);
324*0b57cec5SDimitry Andric     auto *Alias  = cast<llvm::GlobalIndirectSymbol>(Entry);
325*0b57cec5SDimitry Andric     const llvm::GlobalValue *GV = getAliasedGlobal(*Alias);
326*0b57cec5SDimitry Andric     if (!GV) {
327*0b57cec5SDimitry Andric       Error = true;
328*0b57cec5SDimitry Andric       Diags.Report(Location, diag::err_cyclic_alias) << IsIFunc;
329*0b57cec5SDimitry Andric     } else if (GV->isDeclaration()) {
330*0b57cec5SDimitry Andric       Error = true;
331*0b57cec5SDimitry Andric       Diags.Report(Location, diag::err_alias_to_undefined)
332*0b57cec5SDimitry Andric           << IsIFunc << IsIFunc;
333*0b57cec5SDimitry Andric     } else if (IsIFunc) {
334*0b57cec5SDimitry Andric       // Check resolver function type.
335*0b57cec5SDimitry Andric       llvm::FunctionType *FTy = dyn_cast<llvm::FunctionType>(
336*0b57cec5SDimitry Andric           GV->getType()->getPointerElementType());
337*0b57cec5SDimitry Andric       assert(FTy);
338*0b57cec5SDimitry Andric       if (!FTy->getReturnType()->isPointerTy())
339*0b57cec5SDimitry Andric         Diags.Report(Location, diag::err_ifunc_resolver_return);
340*0b57cec5SDimitry Andric     }
341*0b57cec5SDimitry Andric 
342*0b57cec5SDimitry Andric     llvm::Constant *Aliasee = Alias->getIndirectSymbol();
343*0b57cec5SDimitry Andric     llvm::GlobalValue *AliaseeGV;
344*0b57cec5SDimitry Andric     if (auto CE = dyn_cast<llvm::ConstantExpr>(Aliasee))
345*0b57cec5SDimitry Andric       AliaseeGV = cast<llvm::GlobalValue>(CE->getOperand(0));
346*0b57cec5SDimitry Andric     else
347*0b57cec5SDimitry Andric       AliaseeGV = cast<llvm::GlobalValue>(Aliasee);
348*0b57cec5SDimitry Andric 
349*0b57cec5SDimitry Andric     if (const SectionAttr *SA = D->getAttr<SectionAttr>()) {
350*0b57cec5SDimitry Andric       StringRef AliasSection = SA->getName();
351*0b57cec5SDimitry Andric       if (AliasSection != AliaseeGV->getSection())
352*0b57cec5SDimitry Andric         Diags.Report(SA->getLocation(), diag::warn_alias_with_section)
353*0b57cec5SDimitry Andric             << AliasSection << IsIFunc << IsIFunc;
354*0b57cec5SDimitry Andric     }
355*0b57cec5SDimitry Andric 
356*0b57cec5SDimitry Andric     // We have to handle alias to weak aliases in here. LLVM itself disallows
357*0b57cec5SDimitry Andric     // this since the object semantics would not match the IL one. For
358*0b57cec5SDimitry Andric     // compatibility with gcc we implement it by just pointing the alias
359*0b57cec5SDimitry Andric     // to its aliasee's aliasee. We also warn, since the user is probably
360*0b57cec5SDimitry Andric     // expecting the link to be weak.
361*0b57cec5SDimitry Andric     if (auto GA = dyn_cast<llvm::GlobalIndirectSymbol>(AliaseeGV)) {
362*0b57cec5SDimitry Andric       if (GA->isInterposable()) {
363*0b57cec5SDimitry Andric         Diags.Report(Location, diag::warn_alias_to_weak_alias)
364*0b57cec5SDimitry Andric             << GV->getName() << GA->getName() << IsIFunc;
365*0b57cec5SDimitry Andric         Aliasee = llvm::ConstantExpr::getPointerBitCastOrAddrSpaceCast(
366*0b57cec5SDimitry Andric             GA->getIndirectSymbol(), Alias->getType());
367*0b57cec5SDimitry Andric         Alias->setIndirectSymbol(Aliasee);
368*0b57cec5SDimitry Andric       }
369*0b57cec5SDimitry Andric     }
370*0b57cec5SDimitry Andric   }
371*0b57cec5SDimitry Andric   if (!Error)
372*0b57cec5SDimitry Andric     return;
373*0b57cec5SDimitry Andric 
374*0b57cec5SDimitry Andric   for (const GlobalDecl &GD : Aliases) {
375*0b57cec5SDimitry Andric     StringRef MangledName = getMangledName(GD);
376*0b57cec5SDimitry Andric     llvm::GlobalValue *Entry = GetGlobalValue(MangledName);
377e8d8bef9SDimitry Andric     auto *Alias = cast<llvm::GlobalIndirectSymbol>(Entry);
378*0b57cec5SDimitry Andric     Alias->replaceAllUsesWith(llvm::UndefValue::get(Alias->getType()));
379*0b57cec5SDimitry Andric     Alias->eraseFromParent();
380*0b57cec5SDimitry Andric   }
381*0b57cec5SDimitry Andric }
382*0b57cec5SDimitry Andric 
383*0b57cec5SDimitry Andric void CodeGenModule::clear() {
384*0b57cec5SDimitry Andric   DeferredDeclsToEmit.clear();
385*0b57cec5SDimitry Andric   if (OpenMPRuntime)
386*0b57cec5SDimitry Andric     OpenMPRuntime->clear();
387*0b57cec5SDimitry Andric }
388*0b57cec5SDimitry Andric 
389*0b57cec5SDimitry Andric void InstrProfStats::reportDiagnostics(DiagnosticsEngine &Diags,
390*0b57cec5SDimitry Andric                                        StringRef MainFile) {
391*0b57cec5SDimitry Andric   if (!hasDiagnostics())
392*0b57cec5SDimitry Andric     return;
393*0b57cec5SDimitry Andric   if (VisitedInMainFile > 0 && VisitedInMainFile == MissingInMainFile) {
394*0b57cec5SDimitry Andric     if (MainFile.empty())
395*0b57cec5SDimitry Andric       MainFile = "<stdin>";
396*0b57cec5SDimitry Andric     Diags.Report(diag::warn_profile_data_unprofiled) << MainFile;
397*0b57cec5SDimitry Andric   } else {
398*0b57cec5SDimitry Andric     if (Mismatched > 0)
399*0b57cec5SDimitry Andric       Diags.Report(diag::warn_profile_data_out_of_date) << Visited << Mismatched;
400*0b57cec5SDimitry Andric 
401*0b57cec5SDimitry Andric     if (Missing > 0)
402*0b57cec5SDimitry Andric       Diags.Report(diag::warn_profile_data_missing) << Visited << Missing;
403*0b57cec5SDimitry Andric   }
404*0b57cec5SDimitry Andric }
405*0b57cec5SDimitry Andric 
406e8d8bef9SDimitry Andric static void setVisibilityFromDLLStorageClass(const clang::LangOptions &LO,
407e8d8bef9SDimitry Andric                                              llvm::Module &M) {
408e8d8bef9SDimitry Andric   if (!LO.VisibilityFromDLLStorageClass)
409e8d8bef9SDimitry Andric     return;
410e8d8bef9SDimitry Andric 
411e8d8bef9SDimitry Andric   llvm::GlobalValue::VisibilityTypes DLLExportVisibility =
412e8d8bef9SDimitry Andric       CodeGenModule::GetLLVMVisibility(LO.getDLLExportVisibility());
413e8d8bef9SDimitry Andric   llvm::GlobalValue::VisibilityTypes NoDLLStorageClassVisibility =
414e8d8bef9SDimitry Andric       CodeGenModule::GetLLVMVisibility(LO.getNoDLLStorageClassVisibility());
415e8d8bef9SDimitry Andric   llvm::GlobalValue::VisibilityTypes ExternDeclDLLImportVisibility =
416e8d8bef9SDimitry Andric       CodeGenModule::GetLLVMVisibility(LO.getExternDeclDLLImportVisibility());
417e8d8bef9SDimitry Andric   llvm::GlobalValue::VisibilityTypes ExternDeclNoDLLStorageClassVisibility =
418e8d8bef9SDimitry Andric       CodeGenModule::GetLLVMVisibility(
419e8d8bef9SDimitry Andric           LO.getExternDeclNoDLLStorageClassVisibility());
420e8d8bef9SDimitry Andric 
421e8d8bef9SDimitry Andric   for (llvm::GlobalValue &GV : M.global_values()) {
422e8d8bef9SDimitry Andric     if (GV.hasAppendingLinkage() || GV.hasLocalLinkage())
423e8d8bef9SDimitry Andric       continue;
424e8d8bef9SDimitry Andric 
425e8d8bef9SDimitry Andric     // Reset DSO locality before setting the visibility. This removes
426e8d8bef9SDimitry Andric     // any effects that visibility options and annotations may have
427e8d8bef9SDimitry Andric     // had on the DSO locality. Setting the visibility will implicitly set
428e8d8bef9SDimitry Andric     // appropriate globals to DSO Local; however, this will be pessimistic
429e8d8bef9SDimitry Andric     // w.r.t. to the normal compiler IRGen.
430e8d8bef9SDimitry Andric     GV.setDSOLocal(false);
431e8d8bef9SDimitry Andric 
432e8d8bef9SDimitry Andric     if (GV.isDeclarationForLinker()) {
433e8d8bef9SDimitry Andric       GV.setVisibility(GV.getDLLStorageClass() ==
434e8d8bef9SDimitry Andric                                llvm::GlobalValue::DLLImportStorageClass
435e8d8bef9SDimitry Andric                            ? ExternDeclDLLImportVisibility
436e8d8bef9SDimitry Andric                            : ExternDeclNoDLLStorageClassVisibility);
437e8d8bef9SDimitry Andric     } else {
438e8d8bef9SDimitry Andric       GV.setVisibility(GV.getDLLStorageClass() ==
439e8d8bef9SDimitry Andric                                llvm::GlobalValue::DLLExportStorageClass
440e8d8bef9SDimitry Andric                            ? DLLExportVisibility
441e8d8bef9SDimitry Andric                            : NoDLLStorageClassVisibility);
442e8d8bef9SDimitry Andric     }
443e8d8bef9SDimitry Andric 
444e8d8bef9SDimitry Andric     GV.setDLLStorageClass(llvm::GlobalValue::DefaultStorageClass);
445e8d8bef9SDimitry Andric   }
446e8d8bef9SDimitry Andric }
447e8d8bef9SDimitry Andric 
448*0b57cec5SDimitry Andric void CodeGenModule::Release() {
449*0b57cec5SDimitry Andric   EmitDeferred();
450*0b57cec5SDimitry Andric   EmitVTablesOpportunistically();
451*0b57cec5SDimitry Andric   applyGlobalValReplacements();
452*0b57cec5SDimitry Andric   applyReplacements();
453*0b57cec5SDimitry Andric   checkAliases();
454*0b57cec5SDimitry Andric   emitMultiVersionFunctions();
455*0b57cec5SDimitry Andric   EmitCXXGlobalInitFunc();
4565ffd83dbSDimitry Andric   EmitCXXGlobalCleanUpFunc();
457*0b57cec5SDimitry Andric   registerGlobalDtorsWithAtExit();
458*0b57cec5SDimitry Andric   EmitCXXThreadLocalInitFunc();
459*0b57cec5SDimitry Andric   if (ObjCRuntime)
460*0b57cec5SDimitry Andric     if (llvm::Function *ObjCInitFunction = ObjCRuntime->ModuleInitFunction())
461*0b57cec5SDimitry Andric       AddGlobalCtor(ObjCInitFunction);
462*0b57cec5SDimitry Andric   if (Context.getLangOpts().CUDA && !Context.getLangOpts().CUDAIsDevice &&
463*0b57cec5SDimitry Andric       CUDARuntime) {
464*0b57cec5SDimitry Andric     if (llvm::Function *CudaCtorFunction =
465*0b57cec5SDimitry Andric             CUDARuntime->makeModuleCtorFunction())
466*0b57cec5SDimitry Andric       AddGlobalCtor(CudaCtorFunction);
467*0b57cec5SDimitry Andric   }
468*0b57cec5SDimitry Andric   if (OpenMPRuntime) {
469*0b57cec5SDimitry Andric     if (llvm::Function *OpenMPRequiresDirectiveRegFun =
470*0b57cec5SDimitry Andric             OpenMPRuntime->emitRequiresDirectiveRegFun()) {
471*0b57cec5SDimitry Andric       AddGlobalCtor(OpenMPRequiresDirectiveRegFun, 0);
472*0b57cec5SDimitry Andric     }
473a7dea167SDimitry Andric     OpenMPRuntime->createOffloadEntriesAndInfoMetadata();
474*0b57cec5SDimitry Andric     OpenMPRuntime->clear();
475*0b57cec5SDimitry Andric   }
476*0b57cec5SDimitry Andric   if (PGOReader) {
477*0b57cec5SDimitry Andric     getModule().setProfileSummary(
478*0b57cec5SDimitry Andric         PGOReader->getSummary(/* UseCS */ false).getMD(VMContext),
479*0b57cec5SDimitry Andric         llvm::ProfileSummary::PSK_Instr);
480*0b57cec5SDimitry Andric     if (PGOStats.hasDiagnostics())
481*0b57cec5SDimitry Andric       PGOStats.reportDiagnostics(getDiags(), getCodeGenOpts().MainFileName);
482*0b57cec5SDimitry Andric   }
483*0b57cec5SDimitry Andric   EmitCtorList(GlobalCtors, "llvm.global_ctors");
484*0b57cec5SDimitry Andric   EmitCtorList(GlobalDtors, "llvm.global_dtors");
485*0b57cec5SDimitry Andric   EmitGlobalAnnotations();
486*0b57cec5SDimitry Andric   EmitStaticExternCAliases();
487*0b57cec5SDimitry Andric   EmitDeferredUnusedCoverageMappings();
488*0b57cec5SDimitry Andric   if (CoverageMapping)
489*0b57cec5SDimitry Andric     CoverageMapping->emit();
490*0b57cec5SDimitry Andric   if (CodeGenOpts.SanitizeCfiCrossDso) {
491*0b57cec5SDimitry Andric     CodeGenFunction(*this).EmitCfiCheckFail();
492*0b57cec5SDimitry Andric     CodeGenFunction(*this).EmitCfiCheckStub();
493*0b57cec5SDimitry Andric   }
494*0b57cec5SDimitry Andric   emitAtAvailableLinkGuard();
4955ffd83dbSDimitry Andric   if (Context.getTargetInfo().getTriple().isWasm() &&
4965ffd83dbSDimitry Andric       !Context.getTargetInfo().getTriple().isOSEmscripten()) {
4975ffd83dbSDimitry Andric     EmitMainVoidAlias();
4985ffd83dbSDimitry Andric   }
499*0b57cec5SDimitry Andric   emitLLVMUsed();
500*0b57cec5SDimitry Andric   if (SanStats)
501*0b57cec5SDimitry Andric     SanStats->finish();
502*0b57cec5SDimitry Andric 
503*0b57cec5SDimitry Andric   if (CodeGenOpts.Autolink &&
504*0b57cec5SDimitry Andric       (Context.getLangOpts().Modules || !LinkerOptionsMetadata.empty())) {
505*0b57cec5SDimitry Andric     EmitModuleLinkOptions();
506*0b57cec5SDimitry Andric   }
507*0b57cec5SDimitry Andric 
508*0b57cec5SDimitry Andric   // On ELF we pass the dependent library specifiers directly to the linker
509*0b57cec5SDimitry Andric   // without manipulating them. This is in contrast to other platforms where
510*0b57cec5SDimitry Andric   // they are mapped to a specific linker option by the compiler. This
511*0b57cec5SDimitry Andric   // difference is a result of the greater variety of ELF linkers and the fact
512*0b57cec5SDimitry Andric   // that ELF linkers tend to handle libraries in a more complicated fashion
513*0b57cec5SDimitry Andric   // than on other platforms. This forces us to defer handling the dependent
514*0b57cec5SDimitry Andric   // libs to the linker.
515*0b57cec5SDimitry Andric   //
516*0b57cec5SDimitry Andric   // CUDA/HIP device and host libraries are different. Currently there is no
517*0b57cec5SDimitry Andric   // way to differentiate dependent libraries for host or device. Existing
518*0b57cec5SDimitry Andric   // usage of #pragma comment(lib, *) is intended for host libraries on
519*0b57cec5SDimitry Andric   // Windows. Therefore emit llvm.dependent-libraries only for host.
520*0b57cec5SDimitry Andric   if (!ELFDependentLibraries.empty() && !Context.getLangOpts().CUDAIsDevice) {
521*0b57cec5SDimitry Andric     auto *NMD = getModule().getOrInsertNamedMetadata("llvm.dependent-libraries");
522*0b57cec5SDimitry Andric     for (auto *MD : ELFDependentLibraries)
523*0b57cec5SDimitry Andric       NMD->addOperand(MD);
524*0b57cec5SDimitry Andric   }
525*0b57cec5SDimitry Andric 
526*0b57cec5SDimitry Andric   // Record mregparm value now so it is visible through rest of codegen.
527*0b57cec5SDimitry Andric   if (Context.getTargetInfo().getTriple().getArch() == llvm::Triple::x86)
528*0b57cec5SDimitry Andric     getModule().addModuleFlag(llvm::Module::Error, "NumRegisterParameters",
529*0b57cec5SDimitry Andric                               CodeGenOpts.NumRegisterParameters);
530*0b57cec5SDimitry Andric 
531*0b57cec5SDimitry Andric   if (CodeGenOpts.DwarfVersion) {
532480093f4SDimitry Andric     getModule().addModuleFlag(llvm::Module::Max, "Dwarf Version",
533*0b57cec5SDimitry Andric                               CodeGenOpts.DwarfVersion);
534*0b57cec5SDimitry Andric   }
5355ffd83dbSDimitry Andric 
5365ffd83dbSDimitry Andric   if (Context.getLangOpts().SemanticInterposition)
5375ffd83dbSDimitry Andric     // Require various optimization to respect semantic interposition.
5385ffd83dbSDimitry Andric     getModule().setSemanticInterposition(1);
5395ffd83dbSDimitry Andric 
540*0b57cec5SDimitry Andric   if (CodeGenOpts.EmitCodeView) {
541*0b57cec5SDimitry Andric     // Indicate that we want CodeView in the metadata.
542*0b57cec5SDimitry Andric     getModule().addModuleFlag(llvm::Module::Warning, "CodeView", 1);
543*0b57cec5SDimitry Andric   }
544*0b57cec5SDimitry Andric   if (CodeGenOpts.CodeViewGHash) {
545*0b57cec5SDimitry Andric     getModule().addModuleFlag(llvm::Module::Warning, "CodeViewGHash", 1);
546*0b57cec5SDimitry Andric   }
547*0b57cec5SDimitry Andric   if (CodeGenOpts.ControlFlowGuard) {
548480093f4SDimitry Andric     // Function ID tables and checks for Control Flow Guard (cfguard=2).
549480093f4SDimitry Andric     getModule().addModuleFlag(llvm::Module::Warning, "cfguard", 2);
550480093f4SDimitry Andric   } else if (CodeGenOpts.ControlFlowGuardNoChecks) {
551480093f4SDimitry Andric     // Function ID tables for Control Flow Guard (cfguard=1).
552480093f4SDimitry Andric     getModule().addModuleFlag(llvm::Module::Warning, "cfguard", 1);
553*0b57cec5SDimitry Andric   }
554*0b57cec5SDimitry Andric   if (CodeGenOpts.OptimizationLevel > 0 && CodeGenOpts.StrictVTablePointers) {
555*0b57cec5SDimitry Andric     // We don't support LTO with 2 with different StrictVTablePointers
556*0b57cec5SDimitry Andric     // FIXME: we could support it by stripping all the information introduced
557*0b57cec5SDimitry Andric     // by StrictVTablePointers.
558*0b57cec5SDimitry Andric 
559*0b57cec5SDimitry Andric     getModule().addModuleFlag(llvm::Module::Error, "StrictVTablePointers",1);
560*0b57cec5SDimitry Andric 
561*0b57cec5SDimitry Andric     llvm::Metadata *Ops[2] = {
562*0b57cec5SDimitry Andric               llvm::MDString::get(VMContext, "StrictVTablePointers"),
563*0b57cec5SDimitry Andric               llvm::ConstantAsMetadata::get(llvm::ConstantInt::get(
564*0b57cec5SDimitry Andric                   llvm::Type::getInt32Ty(VMContext), 1))};
565*0b57cec5SDimitry Andric 
566*0b57cec5SDimitry Andric     getModule().addModuleFlag(llvm::Module::Require,
567*0b57cec5SDimitry Andric                               "StrictVTablePointersRequirement",
568*0b57cec5SDimitry Andric                               llvm::MDNode::get(VMContext, Ops));
569*0b57cec5SDimitry Andric   }
5705ffd83dbSDimitry Andric   if (getModuleDebugInfo())
571*0b57cec5SDimitry Andric     // We support a single version in the linked module. The LLVM
572*0b57cec5SDimitry Andric     // parser will drop debug info with a different version number
573*0b57cec5SDimitry Andric     // (and warn about it, too).
574*0b57cec5SDimitry Andric     getModule().addModuleFlag(llvm::Module::Warning, "Debug Info Version",
575*0b57cec5SDimitry Andric                               llvm::DEBUG_METADATA_VERSION);
576*0b57cec5SDimitry Andric 
577*0b57cec5SDimitry Andric   // We need to record the widths of enums and wchar_t, so that we can generate
578*0b57cec5SDimitry Andric   // the correct build attributes in the ARM backend. wchar_size is also used by
579*0b57cec5SDimitry Andric   // TargetLibraryInfo.
580*0b57cec5SDimitry Andric   uint64_t WCharWidth =
581*0b57cec5SDimitry Andric       Context.getTypeSizeInChars(Context.getWideCharType()).getQuantity();
582*0b57cec5SDimitry Andric   getModule().addModuleFlag(llvm::Module::Error, "wchar_size", WCharWidth);
583*0b57cec5SDimitry Andric 
584*0b57cec5SDimitry Andric   llvm::Triple::ArchType Arch = Context.getTargetInfo().getTriple().getArch();
585*0b57cec5SDimitry Andric   if (   Arch == llvm::Triple::arm
586*0b57cec5SDimitry Andric       || Arch == llvm::Triple::armeb
587*0b57cec5SDimitry Andric       || Arch == llvm::Triple::thumb
588*0b57cec5SDimitry Andric       || Arch == llvm::Triple::thumbeb) {
589*0b57cec5SDimitry Andric     // The minimum width of an enum in bytes
590*0b57cec5SDimitry Andric     uint64_t EnumWidth = Context.getLangOpts().ShortEnums ? 1 : 4;
591*0b57cec5SDimitry Andric     getModule().addModuleFlag(llvm::Module::Error, "min_enum_size", EnumWidth);
592*0b57cec5SDimitry Andric   }
593*0b57cec5SDimitry Andric 
59413138422SDimitry Andric   if (Arch == llvm::Triple::riscv32 || Arch == llvm::Triple::riscv64) {
59513138422SDimitry Andric     StringRef ABIStr = Target.getABI();
59613138422SDimitry Andric     llvm::LLVMContext &Ctx = TheModule.getContext();
59713138422SDimitry Andric     getModule().addModuleFlag(llvm::Module::Error, "target-abi",
59813138422SDimitry Andric                               llvm::MDString::get(Ctx, ABIStr));
59913138422SDimitry Andric   }
60013138422SDimitry Andric 
601*0b57cec5SDimitry Andric   if (CodeGenOpts.SanitizeCfiCrossDso) {
602*0b57cec5SDimitry Andric     // Indicate that we want cross-DSO control flow integrity checks.
603*0b57cec5SDimitry Andric     getModule().addModuleFlag(llvm::Module::Override, "Cross-DSO CFI", 1);
604*0b57cec5SDimitry Andric   }
605*0b57cec5SDimitry Andric 
6065ffd83dbSDimitry Andric   if (CodeGenOpts.WholeProgramVTables) {
6075ffd83dbSDimitry Andric     // Indicate whether VFE was enabled for this module, so that the
6085ffd83dbSDimitry Andric     // vcall_visibility metadata added under whole program vtables is handled
6095ffd83dbSDimitry Andric     // appropriately in the optimizer.
6105ffd83dbSDimitry Andric     getModule().addModuleFlag(llvm::Module::Error, "Virtual Function Elim",
6115ffd83dbSDimitry Andric                               CodeGenOpts.VirtualFunctionElimination);
6125ffd83dbSDimitry Andric   }
6135ffd83dbSDimitry Andric 
614a7dea167SDimitry Andric   if (LangOpts.Sanitize.has(SanitizerKind::CFIICall)) {
615a7dea167SDimitry Andric     getModule().addModuleFlag(llvm::Module::Override,
616a7dea167SDimitry Andric                               "CFI Canonical Jump Tables",
617a7dea167SDimitry Andric                               CodeGenOpts.SanitizeCfiCanonicalJumpTables);
618a7dea167SDimitry Andric   }
619a7dea167SDimitry Andric 
620*0b57cec5SDimitry Andric   if (CodeGenOpts.CFProtectionReturn &&
621*0b57cec5SDimitry Andric       Target.checkCFProtectionReturnSupported(getDiags())) {
622*0b57cec5SDimitry Andric     // Indicate that we want to instrument return control flow protection.
623*0b57cec5SDimitry Andric     getModule().addModuleFlag(llvm::Module::Override, "cf-protection-return",
624*0b57cec5SDimitry Andric                               1);
625*0b57cec5SDimitry Andric   }
626*0b57cec5SDimitry Andric 
627*0b57cec5SDimitry Andric   if (CodeGenOpts.CFProtectionBranch &&
628*0b57cec5SDimitry Andric       Target.checkCFProtectionBranchSupported(getDiags())) {
629*0b57cec5SDimitry Andric     // Indicate that we want to instrument branch control flow protection.
630*0b57cec5SDimitry Andric     getModule().addModuleFlag(llvm::Module::Override, "cf-protection-branch",
631*0b57cec5SDimitry Andric                               1);
632*0b57cec5SDimitry Andric   }
633*0b57cec5SDimitry Andric 
634e8d8bef9SDimitry Andric   if (Arch == llvm::Triple::aarch64 || Arch == llvm::Triple::aarch64_32 ||
635e8d8bef9SDimitry Andric       Arch == llvm::Triple::aarch64_be) {
636e8d8bef9SDimitry Andric     getModule().addModuleFlag(llvm::Module::Error,
637e8d8bef9SDimitry Andric                               "branch-target-enforcement",
638e8d8bef9SDimitry Andric                               LangOpts.BranchTargetEnforcement);
639e8d8bef9SDimitry Andric 
640e8d8bef9SDimitry Andric     getModule().addModuleFlag(llvm::Module::Error, "sign-return-address",
641e8d8bef9SDimitry Andric                               LangOpts.hasSignReturnAddress());
642e8d8bef9SDimitry Andric 
643e8d8bef9SDimitry Andric     getModule().addModuleFlag(llvm::Module::Error, "sign-return-address-all",
644e8d8bef9SDimitry Andric                               LangOpts.isSignReturnAddressScopeAll());
645e8d8bef9SDimitry Andric 
646e8d8bef9SDimitry Andric     getModule().addModuleFlag(llvm::Module::Error,
647e8d8bef9SDimitry Andric                               "sign-return-address-with-bkey",
648e8d8bef9SDimitry Andric                               !LangOpts.isSignReturnAddressWithAKey());
649e8d8bef9SDimitry Andric   }
650e8d8bef9SDimitry Andric 
651e8d8bef9SDimitry Andric   if (!CodeGenOpts.MemoryProfileOutput.empty()) {
652e8d8bef9SDimitry Andric     llvm::LLVMContext &Ctx = TheModule.getContext();
653e8d8bef9SDimitry Andric     getModule().addModuleFlag(
654e8d8bef9SDimitry Andric         llvm::Module::Error, "MemProfProfileFilename",
655e8d8bef9SDimitry Andric         llvm::MDString::get(Ctx, CodeGenOpts.MemoryProfileOutput));
656e8d8bef9SDimitry Andric   }
657e8d8bef9SDimitry Andric 
658*0b57cec5SDimitry Andric   if (LangOpts.CUDAIsDevice && getTriple().isNVPTX()) {
659*0b57cec5SDimitry Andric     // Indicate whether __nvvm_reflect should be configured to flush denormal
660*0b57cec5SDimitry Andric     // floating point values to 0.  (This corresponds to its "__CUDA_FTZ"
661*0b57cec5SDimitry Andric     // property.)
662*0b57cec5SDimitry Andric     getModule().addModuleFlag(llvm::Module::Override, "nvvm-reflect-ftz",
6635ffd83dbSDimitry Andric                               CodeGenOpts.FP32DenormalMode.Output !=
6645ffd83dbSDimitry Andric                                   llvm::DenormalMode::IEEE);
665*0b57cec5SDimitry Andric   }
666*0b57cec5SDimitry Andric 
667*0b57cec5SDimitry Andric   // Emit OpenCL specific module metadata: OpenCL/SPIR version.
668*0b57cec5SDimitry Andric   if (LangOpts.OpenCL) {
669*0b57cec5SDimitry Andric     EmitOpenCLMetadata();
670*0b57cec5SDimitry Andric     // Emit SPIR version.
671*0b57cec5SDimitry Andric     if (getTriple().isSPIR()) {
672*0b57cec5SDimitry Andric       // SPIR v2.0 s2.12 - The SPIR version used by the module is stored in the
673*0b57cec5SDimitry Andric       // opencl.spir.version named metadata.
674*0b57cec5SDimitry Andric       // C++ is backwards compatible with OpenCL v2.0.
675*0b57cec5SDimitry Andric       auto Version = LangOpts.OpenCLCPlusPlus ? 200 : LangOpts.OpenCLVersion;
676*0b57cec5SDimitry Andric       llvm::Metadata *SPIRVerElts[] = {
677*0b57cec5SDimitry Andric           llvm::ConstantAsMetadata::get(llvm::ConstantInt::get(
678*0b57cec5SDimitry Andric               Int32Ty, Version / 100)),
679*0b57cec5SDimitry Andric           llvm::ConstantAsMetadata::get(llvm::ConstantInt::get(
680*0b57cec5SDimitry Andric               Int32Ty, (Version / 100 > 1) ? 0 : 2))};
681*0b57cec5SDimitry Andric       llvm::NamedMDNode *SPIRVerMD =
682*0b57cec5SDimitry Andric           TheModule.getOrInsertNamedMetadata("opencl.spir.version");
683*0b57cec5SDimitry Andric       llvm::LLVMContext &Ctx = TheModule.getContext();
684*0b57cec5SDimitry Andric       SPIRVerMD->addOperand(llvm::MDNode::get(Ctx, SPIRVerElts));
685*0b57cec5SDimitry Andric     }
686*0b57cec5SDimitry Andric   }
687*0b57cec5SDimitry Andric 
688*0b57cec5SDimitry Andric   if (uint32_t PLevel = Context.getLangOpts().PICLevel) {
689*0b57cec5SDimitry Andric     assert(PLevel < 3 && "Invalid PIC Level");
690*0b57cec5SDimitry Andric     getModule().setPICLevel(static_cast<llvm::PICLevel::Level>(PLevel));
691*0b57cec5SDimitry Andric     if (Context.getLangOpts().PIE)
692*0b57cec5SDimitry Andric       getModule().setPIELevel(static_cast<llvm::PIELevel::Level>(PLevel));
693*0b57cec5SDimitry Andric   }
694*0b57cec5SDimitry Andric 
695*0b57cec5SDimitry Andric   if (getCodeGenOpts().CodeModel.size() > 0) {
696*0b57cec5SDimitry Andric     unsigned CM = llvm::StringSwitch<unsigned>(getCodeGenOpts().CodeModel)
697*0b57cec5SDimitry Andric                   .Case("tiny", llvm::CodeModel::Tiny)
698*0b57cec5SDimitry Andric                   .Case("small", llvm::CodeModel::Small)
699*0b57cec5SDimitry Andric                   .Case("kernel", llvm::CodeModel::Kernel)
700*0b57cec5SDimitry Andric                   .Case("medium", llvm::CodeModel::Medium)
701*0b57cec5SDimitry Andric                   .Case("large", llvm::CodeModel::Large)
702*0b57cec5SDimitry Andric                   .Default(~0u);
703*0b57cec5SDimitry Andric     if (CM != ~0u) {
704*0b57cec5SDimitry Andric       llvm::CodeModel::Model codeModel = static_cast<llvm::CodeModel::Model>(CM);
705*0b57cec5SDimitry Andric       getModule().setCodeModel(codeModel);
706*0b57cec5SDimitry Andric     }
707*0b57cec5SDimitry Andric   }
708*0b57cec5SDimitry Andric 
709*0b57cec5SDimitry Andric   if (CodeGenOpts.NoPLT)
710*0b57cec5SDimitry Andric     getModule().setRtLibUseGOT();
711*0b57cec5SDimitry Andric 
712*0b57cec5SDimitry Andric   SimplifyPersonality();
713*0b57cec5SDimitry Andric 
714*0b57cec5SDimitry Andric   if (getCodeGenOpts().EmitDeclMetadata)
715*0b57cec5SDimitry Andric     EmitDeclMetadata();
716*0b57cec5SDimitry Andric 
717*0b57cec5SDimitry Andric   if (getCodeGenOpts().EmitGcovArcs || getCodeGenOpts().EmitGcovNotes)
718*0b57cec5SDimitry Andric     EmitCoverageFile();
719*0b57cec5SDimitry Andric 
7205ffd83dbSDimitry Andric   if (CGDebugInfo *DI = getModuleDebugInfo())
7215ffd83dbSDimitry Andric     DI->finalize();
722*0b57cec5SDimitry Andric 
723*0b57cec5SDimitry Andric   if (getCodeGenOpts().EmitVersionIdentMetadata)
724*0b57cec5SDimitry Andric     EmitVersionIdentMetadata();
725*0b57cec5SDimitry Andric 
726*0b57cec5SDimitry Andric   if (!getCodeGenOpts().RecordCommandLine.empty())
727*0b57cec5SDimitry Andric     EmitCommandLineMetadata();
728*0b57cec5SDimitry Andric 
7295ffd83dbSDimitry Andric   getTargetCodeGenInfo().emitTargetMetadata(*this, MangledDeclNames);
7305ffd83dbSDimitry Andric 
7315ffd83dbSDimitry Andric   EmitBackendOptionsMetadata(getCodeGenOpts());
732e8d8bef9SDimitry Andric 
733e8d8bef9SDimitry Andric   // Set visibility from DLL storage class
734e8d8bef9SDimitry Andric   // We do this at the end of LLVM IR generation; after any operation
735e8d8bef9SDimitry Andric   // that might affect the DLL storage class or the visibility, and
736e8d8bef9SDimitry Andric   // before anything that might act on these.
737e8d8bef9SDimitry Andric   setVisibilityFromDLLStorageClass(LangOpts, getModule());
738*0b57cec5SDimitry Andric }
739*0b57cec5SDimitry Andric 
740*0b57cec5SDimitry Andric void CodeGenModule::EmitOpenCLMetadata() {
741*0b57cec5SDimitry Andric   // SPIR v2.0 s2.13 - The OpenCL version used by the module is stored in the
742*0b57cec5SDimitry Andric   // opencl.ocl.version named metadata node.
743*0b57cec5SDimitry Andric   // C++ is backwards compatible with OpenCL v2.0.
744*0b57cec5SDimitry Andric   // FIXME: We might need to add CXX version at some point too?
745*0b57cec5SDimitry Andric   auto Version = LangOpts.OpenCLCPlusPlus ? 200 : LangOpts.OpenCLVersion;
746*0b57cec5SDimitry Andric   llvm::Metadata *OCLVerElts[] = {
747*0b57cec5SDimitry Andric       llvm::ConstantAsMetadata::get(llvm::ConstantInt::get(
748*0b57cec5SDimitry Andric           Int32Ty, Version / 100)),
749*0b57cec5SDimitry Andric       llvm::ConstantAsMetadata::get(llvm::ConstantInt::get(
750*0b57cec5SDimitry Andric           Int32Ty, (Version % 100) / 10))};
751*0b57cec5SDimitry Andric   llvm::NamedMDNode *OCLVerMD =
752*0b57cec5SDimitry Andric       TheModule.getOrInsertNamedMetadata("opencl.ocl.version");
753*0b57cec5SDimitry Andric   llvm::LLVMContext &Ctx = TheModule.getContext();
754*0b57cec5SDimitry Andric   OCLVerMD->addOperand(llvm::MDNode::get(Ctx, OCLVerElts));
755*0b57cec5SDimitry Andric }
756*0b57cec5SDimitry Andric 
7575ffd83dbSDimitry Andric void CodeGenModule::EmitBackendOptionsMetadata(
7585ffd83dbSDimitry Andric     const CodeGenOptions CodeGenOpts) {
7595ffd83dbSDimitry Andric   switch (getTriple().getArch()) {
7605ffd83dbSDimitry Andric   default:
7615ffd83dbSDimitry Andric     break;
7625ffd83dbSDimitry Andric   case llvm::Triple::riscv32:
7635ffd83dbSDimitry Andric   case llvm::Triple::riscv64:
7645ffd83dbSDimitry Andric     getModule().addModuleFlag(llvm::Module::Error, "SmallDataLimit",
7655ffd83dbSDimitry Andric                               CodeGenOpts.SmallDataLimit);
7665ffd83dbSDimitry Andric     break;
7675ffd83dbSDimitry Andric   }
7685ffd83dbSDimitry Andric }
7695ffd83dbSDimitry Andric 
770*0b57cec5SDimitry Andric void CodeGenModule::UpdateCompletedType(const TagDecl *TD) {
771*0b57cec5SDimitry Andric   // Make sure that this type is translated.
772*0b57cec5SDimitry Andric   Types.UpdateCompletedType(TD);
773*0b57cec5SDimitry Andric }
774*0b57cec5SDimitry Andric 
775*0b57cec5SDimitry Andric void CodeGenModule::RefreshTypeCacheForClass(const CXXRecordDecl *RD) {
776*0b57cec5SDimitry Andric   // Make sure that this type is translated.
777*0b57cec5SDimitry Andric   Types.RefreshTypeCacheForClass(RD);
778*0b57cec5SDimitry Andric }
779*0b57cec5SDimitry Andric 
780*0b57cec5SDimitry Andric llvm::MDNode *CodeGenModule::getTBAATypeInfo(QualType QTy) {
781*0b57cec5SDimitry Andric   if (!TBAA)
782*0b57cec5SDimitry Andric     return nullptr;
783*0b57cec5SDimitry Andric   return TBAA->getTypeInfo(QTy);
784*0b57cec5SDimitry Andric }
785*0b57cec5SDimitry Andric 
786*0b57cec5SDimitry Andric TBAAAccessInfo CodeGenModule::getTBAAAccessInfo(QualType AccessType) {
787*0b57cec5SDimitry Andric   if (!TBAA)
788*0b57cec5SDimitry Andric     return TBAAAccessInfo();
7895ffd83dbSDimitry Andric   if (getLangOpts().CUDAIsDevice) {
7905ffd83dbSDimitry Andric     // As CUDA builtin surface/texture types are replaced, skip generating TBAA
7915ffd83dbSDimitry Andric     // access info.
7925ffd83dbSDimitry Andric     if (AccessType->isCUDADeviceBuiltinSurfaceType()) {
7935ffd83dbSDimitry Andric       if (getTargetCodeGenInfo().getCUDADeviceBuiltinSurfaceDeviceType() !=
7945ffd83dbSDimitry Andric           nullptr)
7955ffd83dbSDimitry Andric         return TBAAAccessInfo();
7965ffd83dbSDimitry Andric     } else if (AccessType->isCUDADeviceBuiltinTextureType()) {
7975ffd83dbSDimitry Andric       if (getTargetCodeGenInfo().getCUDADeviceBuiltinTextureDeviceType() !=
7985ffd83dbSDimitry Andric           nullptr)
7995ffd83dbSDimitry Andric         return TBAAAccessInfo();
8005ffd83dbSDimitry Andric     }
8015ffd83dbSDimitry Andric   }
802*0b57cec5SDimitry Andric   return TBAA->getAccessInfo(AccessType);
803*0b57cec5SDimitry Andric }
804*0b57cec5SDimitry Andric 
805*0b57cec5SDimitry Andric TBAAAccessInfo
806*0b57cec5SDimitry Andric CodeGenModule::getTBAAVTablePtrAccessInfo(llvm::Type *VTablePtrType) {
807*0b57cec5SDimitry Andric   if (!TBAA)
808*0b57cec5SDimitry Andric     return TBAAAccessInfo();
809*0b57cec5SDimitry Andric   return TBAA->getVTablePtrAccessInfo(VTablePtrType);
810*0b57cec5SDimitry Andric }
811*0b57cec5SDimitry Andric 
812*0b57cec5SDimitry Andric llvm::MDNode *CodeGenModule::getTBAAStructInfo(QualType QTy) {
813*0b57cec5SDimitry Andric   if (!TBAA)
814*0b57cec5SDimitry Andric     return nullptr;
815*0b57cec5SDimitry Andric   return TBAA->getTBAAStructInfo(QTy);
816*0b57cec5SDimitry Andric }
817*0b57cec5SDimitry Andric 
818*0b57cec5SDimitry Andric llvm::MDNode *CodeGenModule::getTBAABaseTypeInfo(QualType QTy) {
819*0b57cec5SDimitry Andric   if (!TBAA)
820*0b57cec5SDimitry Andric     return nullptr;
821*0b57cec5SDimitry Andric   return TBAA->getBaseTypeInfo(QTy);
822*0b57cec5SDimitry Andric }
823*0b57cec5SDimitry Andric 
824*0b57cec5SDimitry Andric llvm::MDNode *CodeGenModule::getTBAAAccessTagInfo(TBAAAccessInfo Info) {
825*0b57cec5SDimitry Andric   if (!TBAA)
826*0b57cec5SDimitry Andric     return nullptr;
827*0b57cec5SDimitry Andric   return TBAA->getAccessTagInfo(Info);
828*0b57cec5SDimitry Andric }
829*0b57cec5SDimitry Andric 
830*0b57cec5SDimitry Andric TBAAAccessInfo CodeGenModule::mergeTBAAInfoForCast(TBAAAccessInfo SourceInfo,
831*0b57cec5SDimitry Andric                                                    TBAAAccessInfo TargetInfo) {
832*0b57cec5SDimitry Andric   if (!TBAA)
833*0b57cec5SDimitry Andric     return TBAAAccessInfo();
834*0b57cec5SDimitry Andric   return TBAA->mergeTBAAInfoForCast(SourceInfo, TargetInfo);
835*0b57cec5SDimitry Andric }
836*0b57cec5SDimitry Andric 
837*0b57cec5SDimitry Andric TBAAAccessInfo
838*0b57cec5SDimitry Andric CodeGenModule::mergeTBAAInfoForConditionalOperator(TBAAAccessInfo InfoA,
839*0b57cec5SDimitry Andric                                                    TBAAAccessInfo InfoB) {
840*0b57cec5SDimitry Andric   if (!TBAA)
841*0b57cec5SDimitry Andric     return TBAAAccessInfo();
842*0b57cec5SDimitry Andric   return TBAA->mergeTBAAInfoForConditionalOperator(InfoA, InfoB);
843*0b57cec5SDimitry Andric }
844*0b57cec5SDimitry Andric 
845*0b57cec5SDimitry Andric TBAAAccessInfo
846*0b57cec5SDimitry Andric CodeGenModule::mergeTBAAInfoForMemoryTransfer(TBAAAccessInfo DestInfo,
847*0b57cec5SDimitry Andric                                               TBAAAccessInfo SrcInfo) {
848*0b57cec5SDimitry Andric   if (!TBAA)
849*0b57cec5SDimitry Andric     return TBAAAccessInfo();
850*0b57cec5SDimitry Andric   return TBAA->mergeTBAAInfoForConditionalOperator(DestInfo, SrcInfo);
851*0b57cec5SDimitry Andric }
852*0b57cec5SDimitry Andric 
853*0b57cec5SDimitry Andric void CodeGenModule::DecorateInstructionWithTBAA(llvm::Instruction *Inst,
854*0b57cec5SDimitry Andric                                                 TBAAAccessInfo TBAAInfo) {
855*0b57cec5SDimitry Andric   if (llvm::MDNode *Tag = getTBAAAccessTagInfo(TBAAInfo))
856*0b57cec5SDimitry Andric     Inst->setMetadata(llvm::LLVMContext::MD_tbaa, Tag);
857*0b57cec5SDimitry Andric }
858*0b57cec5SDimitry Andric 
859*0b57cec5SDimitry Andric void CodeGenModule::DecorateInstructionWithInvariantGroup(
860*0b57cec5SDimitry Andric     llvm::Instruction *I, const CXXRecordDecl *RD) {
861*0b57cec5SDimitry Andric   I->setMetadata(llvm::LLVMContext::MD_invariant_group,
862*0b57cec5SDimitry Andric                  llvm::MDNode::get(getLLVMContext(), {}));
863*0b57cec5SDimitry Andric }
864*0b57cec5SDimitry Andric 
865*0b57cec5SDimitry Andric void CodeGenModule::Error(SourceLocation loc, StringRef message) {
866*0b57cec5SDimitry Andric   unsigned diagID = getDiags().getCustomDiagID(DiagnosticsEngine::Error, "%0");
867*0b57cec5SDimitry Andric   getDiags().Report(Context.getFullLoc(loc), diagID) << message;
868*0b57cec5SDimitry Andric }
869*0b57cec5SDimitry Andric 
870*0b57cec5SDimitry Andric /// ErrorUnsupported - Print out an error that codegen doesn't support the
871*0b57cec5SDimitry Andric /// specified stmt yet.
872*0b57cec5SDimitry Andric void CodeGenModule::ErrorUnsupported(const Stmt *S, const char *Type) {
873*0b57cec5SDimitry Andric   unsigned DiagID = getDiags().getCustomDiagID(DiagnosticsEngine::Error,
874*0b57cec5SDimitry Andric                                                "cannot compile this %0 yet");
875*0b57cec5SDimitry Andric   std::string Msg = Type;
876*0b57cec5SDimitry Andric   getDiags().Report(Context.getFullLoc(S->getBeginLoc()), DiagID)
877*0b57cec5SDimitry Andric       << Msg << S->getSourceRange();
878*0b57cec5SDimitry Andric }
879*0b57cec5SDimitry Andric 
880*0b57cec5SDimitry Andric /// ErrorUnsupported - Print out an error that codegen doesn't support the
881*0b57cec5SDimitry Andric /// specified decl yet.
882*0b57cec5SDimitry Andric void CodeGenModule::ErrorUnsupported(const Decl *D, const char *Type) {
883*0b57cec5SDimitry Andric   unsigned DiagID = getDiags().getCustomDiagID(DiagnosticsEngine::Error,
884*0b57cec5SDimitry Andric                                                "cannot compile this %0 yet");
885*0b57cec5SDimitry Andric   std::string Msg = Type;
886*0b57cec5SDimitry Andric   getDiags().Report(Context.getFullLoc(D->getLocation()), DiagID) << Msg;
887*0b57cec5SDimitry Andric }
888*0b57cec5SDimitry Andric 
889*0b57cec5SDimitry Andric llvm::ConstantInt *CodeGenModule::getSize(CharUnits size) {
890*0b57cec5SDimitry Andric   return llvm::ConstantInt::get(SizeTy, size.getQuantity());
891*0b57cec5SDimitry Andric }
892*0b57cec5SDimitry Andric 
893*0b57cec5SDimitry Andric void CodeGenModule::setGlobalVisibility(llvm::GlobalValue *GV,
894*0b57cec5SDimitry Andric                                         const NamedDecl *D) const {
895*0b57cec5SDimitry Andric   if (GV->hasDLLImportStorageClass())
896*0b57cec5SDimitry Andric     return;
897*0b57cec5SDimitry Andric   // Internal definitions always have default visibility.
898*0b57cec5SDimitry Andric   if (GV->hasLocalLinkage()) {
899*0b57cec5SDimitry Andric     GV->setVisibility(llvm::GlobalValue::DefaultVisibility);
900*0b57cec5SDimitry Andric     return;
901*0b57cec5SDimitry Andric   }
902*0b57cec5SDimitry Andric   if (!D)
903*0b57cec5SDimitry Andric     return;
904*0b57cec5SDimitry Andric   // Set visibility for definitions, and for declarations if requested globally
905*0b57cec5SDimitry Andric   // or set explicitly.
906*0b57cec5SDimitry Andric   LinkageInfo LV = D->getLinkageAndVisibility();
907*0b57cec5SDimitry Andric   if (LV.isVisibilityExplicit() || getLangOpts().SetVisibilityForExternDecls ||
908*0b57cec5SDimitry Andric       !GV->isDeclarationForLinker())
909*0b57cec5SDimitry Andric     GV->setVisibility(GetLLVMVisibility(LV.getVisibility()));
910*0b57cec5SDimitry Andric }
911*0b57cec5SDimitry Andric 
912*0b57cec5SDimitry Andric static bool shouldAssumeDSOLocal(const CodeGenModule &CGM,
913*0b57cec5SDimitry Andric                                  llvm::GlobalValue *GV) {
914*0b57cec5SDimitry Andric   if (GV->hasLocalLinkage())
915*0b57cec5SDimitry Andric     return true;
916*0b57cec5SDimitry Andric 
917*0b57cec5SDimitry Andric   if (!GV->hasDefaultVisibility() && !GV->hasExternalWeakLinkage())
918*0b57cec5SDimitry Andric     return true;
919*0b57cec5SDimitry Andric 
920*0b57cec5SDimitry Andric   // DLLImport explicitly marks the GV as external.
921*0b57cec5SDimitry Andric   if (GV->hasDLLImportStorageClass())
922*0b57cec5SDimitry Andric     return false;
923*0b57cec5SDimitry Andric 
924*0b57cec5SDimitry Andric   const llvm::Triple &TT = CGM.getTriple();
925*0b57cec5SDimitry Andric   if (TT.isWindowsGNUEnvironment()) {
926*0b57cec5SDimitry Andric     // In MinGW, variables without DLLImport can still be automatically
927*0b57cec5SDimitry Andric     // imported from a DLL by the linker; don't mark variables that
928*0b57cec5SDimitry Andric     // potentially could come from another DLL as DSO local.
929*0b57cec5SDimitry Andric     if (GV->isDeclarationForLinker() && isa<llvm::GlobalVariable>(GV) &&
930*0b57cec5SDimitry Andric         !GV->isThreadLocal())
931*0b57cec5SDimitry Andric       return false;
932*0b57cec5SDimitry Andric   }
933*0b57cec5SDimitry Andric 
934*0b57cec5SDimitry Andric   // On COFF, don't mark 'extern_weak' symbols as DSO local. If these symbols
935*0b57cec5SDimitry Andric   // remain unresolved in the link, they can be resolved to zero, which is
936*0b57cec5SDimitry Andric   // outside the current DSO.
937*0b57cec5SDimitry Andric   if (TT.isOSBinFormatCOFF() && GV->hasExternalWeakLinkage())
938*0b57cec5SDimitry Andric     return false;
939*0b57cec5SDimitry Andric 
940*0b57cec5SDimitry Andric   // Every other GV is local on COFF.
941*0b57cec5SDimitry Andric   // Make an exception for windows OS in the triple: Some firmware builds use
942*0b57cec5SDimitry Andric   // *-win32-macho triples. This (accidentally?) produced windows relocations
943*0b57cec5SDimitry Andric   // without GOT tables in older clang versions; Keep this behaviour.
944*0b57cec5SDimitry Andric   // FIXME: even thread local variables?
945*0b57cec5SDimitry Andric   if (TT.isOSBinFormatCOFF() || (TT.isOSWindows() && TT.isOSBinFormatMachO()))
946*0b57cec5SDimitry Andric     return true;
947*0b57cec5SDimitry Andric 
948e8d8bef9SDimitry Andric   const auto &CGOpts = CGM.getCodeGenOpts();
949e8d8bef9SDimitry Andric   llvm::Reloc::Model RM = CGOpts.RelocationModel;
950e8d8bef9SDimitry Andric   const auto &LOpts = CGM.getLangOpts();
951e8d8bef9SDimitry Andric 
952e8d8bef9SDimitry Andric   if (TT.isOSBinFormatMachO()) {
953e8d8bef9SDimitry Andric     if (RM == llvm::Reloc::Static)
954e8d8bef9SDimitry Andric       return true;
955e8d8bef9SDimitry Andric     return GV->isStrongDefinitionForLinker();
956e8d8bef9SDimitry Andric   }
957e8d8bef9SDimitry Andric 
958*0b57cec5SDimitry Andric   // Only handle COFF and ELF for now.
959*0b57cec5SDimitry Andric   if (!TT.isOSBinFormatELF())
960*0b57cec5SDimitry Andric     return false;
961*0b57cec5SDimitry Andric 
962e8d8bef9SDimitry Andric   if (RM != llvm::Reloc::Static && !LOpts.PIE) {
963e8d8bef9SDimitry Andric     // On ELF, if -fno-semantic-interposition is specified and the target
964e8d8bef9SDimitry Andric     // supports local aliases, there will be neither CC1
965e8d8bef9SDimitry Andric     // -fsemantic-interposition nor -fhalf-no-semantic-interposition. Set
966e8d8bef9SDimitry Andric     // dso_local if using a local alias is preferable (can avoid GOT
967e8d8bef9SDimitry Andric     // indirection).
968e8d8bef9SDimitry Andric     if (!GV->canBenefitFromLocalAlias())
969*0b57cec5SDimitry Andric       return false;
970e8d8bef9SDimitry Andric     return !(CGM.getLangOpts().SemanticInterposition ||
971e8d8bef9SDimitry Andric              CGM.getLangOpts().HalfNoSemanticInterposition);
972e8d8bef9SDimitry Andric   }
973*0b57cec5SDimitry Andric 
974*0b57cec5SDimitry Andric   // A definition cannot be preempted from an executable.
975*0b57cec5SDimitry Andric   if (!GV->isDeclarationForLinker())
976*0b57cec5SDimitry Andric     return true;
977*0b57cec5SDimitry Andric 
978*0b57cec5SDimitry Andric   // Most PIC code sequences that assume that a symbol is local cannot produce a
979*0b57cec5SDimitry Andric   // 0 if it turns out the symbol is undefined. While this is ABI and relocation
980*0b57cec5SDimitry Andric   // depended, it seems worth it to handle it here.
981*0b57cec5SDimitry Andric   if (RM == llvm::Reloc::PIC_ && GV->hasExternalWeakLinkage())
982*0b57cec5SDimitry Andric     return false;
983*0b57cec5SDimitry Andric 
984e8d8bef9SDimitry Andric   // PowerPC64 prefers TOC indirection to avoid copy relocations.
985e8d8bef9SDimitry Andric   if (TT.isPPC64())
986*0b57cec5SDimitry Andric     return false;
987*0b57cec5SDimitry Andric 
988e8d8bef9SDimitry Andric   if (CGOpts.DirectAccessExternalData) {
989e8d8bef9SDimitry Andric     // If -fdirect-access-external-data (default for -fno-pic), set dso_local
990e8d8bef9SDimitry Andric     // for non-thread-local variables. If the symbol is not defined in the
991e8d8bef9SDimitry Andric     // executable, a copy relocation will be needed at link time. dso_local is
992e8d8bef9SDimitry Andric     // excluded for thread-local variables because they generally don't support
993e8d8bef9SDimitry Andric     // copy relocations.
994*0b57cec5SDimitry Andric     if (auto *Var = dyn_cast<llvm::GlobalVariable>(GV))
995e8d8bef9SDimitry Andric       if (!Var->isThreadLocal())
996*0b57cec5SDimitry Andric         return true;
997*0b57cec5SDimitry Andric 
998e8d8bef9SDimitry Andric     // -fno-pic sets dso_local on a function declaration to allow direct
999e8d8bef9SDimitry Andric     // accesses when taking its address (similar to a data symbol). If the
1000e8d8bef9SDimitry Andric     // function is not defined in the executable, a canonical PLT entry will be
1001e8d8bef9SDimitry Andric     // needed at link time. -fno-direct-access-external-data can avoid the
1002e8d8bef9SDimitry Andric     // canonical PLT entry. We don't generalize this condition to -fpie/-fpic as
1003e8d8bef9SDimitry Andric     // it could just cause trouble without providing perceptible benefits.
1004*0b57cec5SDimitry Andric     if (isa<llvm::Function>(GV) && !CGOpts.NoPLT && RM == llvm::Reloc::Static)
1005*0b57cec5SDimitry Andric       return true;
1006e8d8bef9SDimitry Andric   }
1007e8d8bef9SDimitry Andric 
1008e8d8bef9SDimitry Andric   // If we can use copy relocations we can assume it is local.
1009*0b57cec5SDimitry Andric 
10105ffd83dbSDimitry Andric   // Otherwise don't assume it is local.
1011*0b57cec5SDimitry Andric   return false;
1012*0b57cec5SDimitry Andric }
1013*0b57cec5SDimitry Andric 
1014*0b57cec5SDimitry Andric void CodeGenModule::setDSOLocal(llvm::GlobalValue *GV) const {
1015*0b57cec5SDimitry Andric   GV->setDSOLocal(shouldAssumeDSOLocal(*this, GV));
1016*0b57cec5SDimitry Andric }
1017*0b57cec5SDimitry Andric 
1018*0b57cec5SDimitry Andric void CodeGenModule::setDLLImportDLLExport(llvm::GlobalValue *GV,
1019*0b57cec5SDimitry Andric                                           GlobalDecl GD) const {
1020*0b57cec5SDimitry Andric   const auto *D = dyn_cast<NamedDecl>(GD.getDecl());
1021*0b57cec5SDimitry Andric   // C++ destructors have a few C++ ABI specific special cases.
1022*0b57cec5SDimitry Andric   if (const auto *Dtor = dyn_cast_or_null<CXXDestructorDecl>(D)) {
1023*0b57cec5SDimitry Andric     getCXXABI().setCXXDestructorDLLStorage(GV, Dtor, GD.getDtorType());
1024*0b57cec5SDimitry Andric     return;
1025*0b57cec5SDimitry Andric   }
1026*0b57cec5SDimitry Andric   setDLLImportDLLExport(GV, D);
1027*0b57cec5SDimitry Andric }
1028*0b57cec5SDimitry Andric 
1029*0b57cec5SDimitry Andric void CodeGenModule::setDLLImportDLLExport(llvm::GlobalValue *GV,
1030*0b57cec5SDimitry Andric                                           const NamedDecl *D) const {
1031*0b57cec5SDimitry Andric   if (D && D->isExternallyVisible()) {
1032*0b57cec5SDimitry Andric     if (D->hasAttr<DLLImportAttr>())
1033*0b57cec5SDimitry Andric       GV->setDLLStorageClass(llvm::GlobalVariable::DLLImportStorageClass);
1034*0b57cec5SDimitry Andric     else if (D->hasAttr<DLLExportAttr>() && !GV->isDeclarationForLinker())
1035*0b57cec5SDimitry Andric       GV->setDLLStorageClass(llvm::GlobalVariable::DLLExportStorageClass);
1036*0b57cec5SDimitry Andric   }
1037*0b57cec5SDimitry Andric }
1038*0b57cec5SDimitry Andric 
1039*0b57cec5SDimitry Andric void CodeGenModule::setGVProperties(llvm::GlobalValue *GV,
1040*0b57cec5SDimitry Andric                                     GlobalDecl GD) const {
1041*0b57cec5SDimitry Andric   setDLLImportDLLExport(GV, GD);
1042*0b57cec5SDimitry Andric   setGVPropertiesAux(GV, dyn_cast<NamedDecl>(GD.getDecl()));
1043*0b57cec5SDimitry Andric }
1044*0b57cec5SDimitry Andric 
1045*0b57cec5SDimitry Andric void CodeGenModule::setGVProperties(llvm::GlobalValue *GV,
1046*0b57cec5SDimitry Andric                                     const NamedDecl *D) const {
1047*0b57cec5SDimitry Andric   setDLLImportDLLExport(GV, D);
1048*0b57cec5SDimitry Andric   setGVPropertiesAux(GV, D);
1049*0b57cec5SDimitry Andric }
1050*0b57cec5SDimitry Andric 
1051*0b57cec5SDimitry Andric void CodeGenModule::setGVPropertiesAux(llvm::GlobalValue *GV,
1052*0b57cec5SDimitry Andric                                        const NamedDecl *D) const {
1053*0b57cec5SDimitry Andric   setGlobalVisibility(GV, D);
1054*0b57cec5SDimitry Andric   setDSOLocal(GV);
1055*0b57cec5SDimitry Andric   GV->setPartition(CodeGenOpts.SymbolPartition);
1056*0b57cec5SDimitry Andric }
1057*0b57cec5SDimitry Andric 
1058*0b57cec5SDimitry Andric static llvm::GlobalVariable::ThreadLocalMode GetLLVMTLSModel(StringRef S) {
1059*0b57cec5SDimitry Andric   return llvm::StringSwitch<llvm::GlobalVariable::ThreadLocalMode>(S)
1060*0b57cec5SDimitry Andric       .Case("global-dynamic", llvm::GlobalVariable::GeneralDynamicTLSModel)
1061*0b57cec5SDimitry Andric       .Case("local-dynamic", llvm::GlobalVariable::LocalDynamicTLSModel)
1062*0b57cec5SDimitry Andric       .Case("initial-exec", llvm::GlobalVariable::InitialExecTLSModel)
1063*0b57cec5SDimitry Andric       .Case("local-exec", llvm::GlobalVariable::LocalExecTLSModel);
1064*0b57cec5SDimitry Andric }
1065*0b57cec5SDimitry Andric 
10665ffd83dbSDimitry Andric llvm::GlobalVariable::ThreadLocalMode
10675ffd83dbSDimitry Andric CodeGenModule::GetDefaultLLVMTLSModel() const {
10685ffd83dbSDimitry Andric   switch (CodeGenOpts.getDefaultTLSModel()) {
1069*0b57cec5SDimitry Andric   case CodeGenOptions::GeneralDynamicTLSModel:
1070*0b57cec5SDimitry Andric     return llvm::GlobalVariable::GeneralDynamicTLSModel;
1071*0b57cec5SDimitry Andric   case CodeGenOptions::LocalDynamicTLSModel:
1072*0b57cec5SDimitry Andric     return llvm::GlobalVariable::LocalDynamicTLSModel;
1073*0b57cec5SDimitry Andric   case CodeGenOptions::InitialExecTLSModel:
1074*0b57cec5SDimitry Andric     return llvm::GlobalVariable::InitialExecTLSModel;
1075*0b57cec5SDimitry Andric   case CodeGenOptions::LocalExecTLSModel:
1076*0b57cec5SDimitry Andric     return llvm::GlobalVariable::LocalExecTLSModel;
1077*0b57cec5SDimitry Andric   }
1078*0b57cec5SDimitry Andric   llvm_unreachable("Invalid TLS model!");
1079*0b57cec5SDimitry Andric }
1080*0b57cec5SDimitry Andric 
1081*0b57cec5SDimitry Andric void CodeGenModule::setTLSMode(llvm::GlobalValue *GV, const VarDecl &D) const {
1082*0b57cec5SDimitry Andric   assert(D.getTLSKind() && "setting TLS mode on non-TLS var!");
1083*0b57cec5SDimitry Andric 
1084*0b57cec5SDimitry Andric   llvm::GlobalValue::ThreadLocalMode TLM;
10855ffd83dbSDimitry Andric   TLM = GetDefaultLLVMTLSModel();
1086*0b57cec5SDimitry Andric 
1087*0b57cec5SDimitry Andric   // Override the TLS model if it is explicitly specified.
1088*0b57cec5SDimitry Andric   if (const TLSModelAttr *Attr = D.getAttr<TLSModelAttr>()) {
1089*0b57cec5SDimitry Andric     TLM = GetLLVMTLSModel(Attr->getModel());
1090*0b57cec5SDimitry Andric   }
1091*0b57cec5SDimitry Andric 
1092*0b57cec5SDimitry Andric   GV->setThreadLocalMode(TLM);
1093*0b57cec5SDimitry Andric }
1094*0b57cec5SDimitry Andric 
1095*0b57cec5SDimitry Andric static std::string getCPUSpecificMangling(const CodeGenModule &CGM,
1096*0b57cec5SDimitry Andric                                           StringRef Name) {
1097*0b57cec5SDimitry Andric   const TargetInfo &Target = CGM.getTarget();
1098*0b57cec5SDimitry Andric   return (Twine('.') + Twine(Target.CPUSpecificManglingCharacter(Name))).str();
1099*0b57cec5SDimitry Andric }
1100*0b57cec5SDimitry Andric 
1101*0b57cec5SDimitry Andric static void AppendCPUSpecificCPUDispatchMangling(const CodeGenModule &CGM,
1102*0b57cec5SDimitry Andric                                                  const CPUSpecificAttr *Attr,
1103*0b57cec5SDimitry Andric                                                  unsigned CPUIndex,
1104*0b57cec5SDimitry Andric                                                  raw_ostream &Out) {
1105*0b57cec5SDimitry Andric   // cpu_specific gets the current name, dispatch gets the resolver if IFunc is
1106*0b57cec5SDimitry Andric   // supported.
1107*0b57cec5SDimitry Andric   if (Attr)
1108*0b57cec5SDimitry Andric     Out << getCPUSpecificMangling(CGM, Attr->getCPUName(CPUIndex)->getName());
1109*0b57cec5SDimitry Andric   else if (CGM.getTarget().supportsIFunc())
1110*0b57cec5SDimitry Andric     Out << ".resolver";
1111*0b57cec5SDimitry Andric }
1112*0b57cec5SDimitry Andric 
1113*0b57cec5SDimitry Andric static void AppendTargetMangling(const CodeGenModule &CGM,
1114*0b57cec5SDimitry Andric                                  const TargetAttr *Attr, raw_ostream &Out) {
1115*0b57cec5SDimitry Andric   if (Attr->isDefaultVersion())
1116*0b57cec5SDimitry Andric     return;
1117*0b57cec5SDimitry Andric 
1118*0b57cec5SDimitry Andric   Out << '.';
1119*0b57cec5SDimitry Andric   const TargetInfo &Target = CGM.getTarget();
1120480093f4SDimitry Andric   ParsedTargetAttr Info =
1121*0b57cec5SDimitry Andric       Attr->parse([&Target](StringRef LHS, StringRef RHS) {
1122*0b57cec5SDimitry Andric         // Multiversioning doesn't allow "no-${feature}", so we can
1123*0b57cec5SDimitry Andric         // only have "+" prefixes here.
1124*0b57cec5SDimitry Andric         assert(LHS.startswith("+") && RHS.startswith("+") &&
1125*0b57cec5SDimitry Andric                "Features should always have a prefix.");
1126*0b57cec5SDimitry Andric         return Target.multiVersionSortPriority(LHS.substr(1)) >
1127*0b57cec5SDimitry Andric                Target.multiVersionSortPriority(RHS.substr(1));
1128*0b57cec5SDimitry Andric       });
1129*0b57cec5SDimitry Andric 
1130*0b57cec5SDimitry Andric   bool IsFirst = true;
1131*0b57cec5SDimitry Andric 
1132*0b57cec5SDimitry Andric   if (!Info.Architecture.empty()) {
1133*0b57cec5SDimitry Andric     IsFirst = false;
1134*0b57cec5SDimitry Andric     Out << "arch_" << Info.Architecture;
1135*0b57cec5SDimitry Andric   }
1136*0b57cec5SDimitry Andric 
1137*0b57cec5SDimitry Andric   for (StringRef Feat : Info.Features) {
1138*0b57cec5SDimitry Andric     if (!IsFirst)
1139*0b57cec5SDimitry Andric       Out << '_';
1140*0b57cec5SDimitry Andric     IsFirst = false;
1141*0b57cec5SDimitry Andric     Out << Feat.substr(1);
1142*0b57cec5SDimitry Andric   }
1143*0b57cec5SDimitry Andric }
1144*0b57cec5SDimitry Andric 
1145*0b57cec5SDimitry Andric static std::string getMangledNameImpl(const CodeGenModule &CGM, GlobalDecl GD,
1146*0b57cec5SDimitry Andric                                       const NamedDecl *ND,
1147*0b57cec5SDimitry Andric                                       bool OmitMultiVersionMangling = false) {
1148*0b57cec5SDimitry Andric   SmallString<256> Buffer;
1149*0b57cec5SDimitry Andric   llvm::raw_svector_ostream Out(Buffer);
1150*0b57cec5SDimitry Andric   MangleContext &MC = CGM.getCXXABI().getMangleContext();
11515ffd83dbSDimitry Andric   if (MC.shouldMangleDeclName(ND))
11525ffd83dbSDimitry Andric     MC.mangleName(GD.getWithDecl(ND), Out);
11535ffd83dbSDimitry Andric   else {
1154*0b57cec5SDimitry Andric     IdentifierInfo *II = ND->getIdentifier();
1155*0b57cec5SDimitry Andric     assert(II && "Attempt to mangle unnamed decl.");
1156*0b57cec5SDimitry Andric     const auto *FD = dyn_cast<FunctionDecl>(ND);
1157*0b57cec5SDimitry Andric 
1158*0b57cec5SDimitry Andric     if (FD &&
1159*0b57cec5SDimitry Andric         FD->getType()->castAs<FunctionType>()->getCallConv() == CC_X86RegCall) {
1160*0b57cec5SDimitry Andric       Out << "__regcall3__" << II->getName();
11615ffd83dbSDimitry Andric     } else if (FD && FD->hasAttr<CUDAGlobalAttr>() &&
11625ffd83dbSDimitry Andric                GD.getKernelReferenceKind() == KernelReferenceKind::Stub) {
11635ffd83dbSDimitry Andric       Out << "__device_stub__" << II->getName();
1164*0b57cec5SDimitry Andric     } else {
1165*0b57cec5SDimitry Andric       Out << II->getName();
1166*0b57cec5SDimitry Andric     }
1167*0b57cec5SDimitry Andric   }
1168*0b57cec5SDimitry Andric 
1169*0b57cec5SDimitry Andric   if (const auto *FD = dyn_cast<FunctionDecl>(ND))
1170*0b57cec5SDimitry Andric     if (FD->isMultiVersion() && !OmitMultiVersionMangling) {
1171*0b57cec5SDimitry Andric       switch (FD->getMultiVersionKind()) {
1172*0b57cec5SDimitry Andric       case MultiVersionKind::CPUDispatch:
1173*0b57cec5SDimitry Andric       case MultiVersionKind::CPUSpecific:
1174*0b57cec5SDimitry Andric         AppendCPUSpecificCPUDispatchMangling(CGM,
1175*0b57cec5SDimitry Andric                                              FD->getAttr<CPUSpecificAttr>(),
1176*0b57cec5SDimitry Andric                                              GD.getMultiVersionIndex(), Out);
1177*0b57cec5SDimitry Andric         break;
1178*0b57cec5SDimitry Andric       case MultiVersionKind::Target:
1179*0b57cec5SDimitry Andric         AppendTargetMangling(CGM, FD->getAttr<TargetAttr>(), Out);
1180*0b57cec5SDimitry Andric         break;
1181*0b57cec5SDimitry Andric       case MultiVersionKind::None:
1182*0b57cec5SDimitry Andric         llvm_unreachable("None multiversion type isn't valid here");
1183*0b57cec5SDimitry Andric       }
1184*0b57cec5SDimitry Andric     }
1185*0b57cec5SDimitry Andric 
11865ffd83dbSDimitry Andric   return std::string(Out.str());
1187*0b57cec5SDimitry Andric }
1188*0b57cec5SDimitry Andric 
1189*0b57cec5SDimitry Andric void CodeGenModule::UpdateMultiVersionNames(GlobalDecl GD,
1190*0b57cec5SDimitry Andric                                             const FunctionDecl *FD) {
1191*0b57cec5SDimitry Andric   if (!FD->isMultiVersion())
1192*0b57cec5SDimitry Andric     return;
1193*0b57cec5SDimitry Andric 
1194*0b57cec5SDimitry Andric   // Get the name of what this would be without the 'target' attribute.  This
1195*0b57cec5SDimitry Andric   // allows us to lookup the version that was emitted when this wasn't a
1196*0b57cec5SDimitry Andric   // multiversion function.
1197*0b57cec5SDimitry Andric   std::string NonTargetName =
1198*0b57cec5SDimitry Andric       getMangledNameImpl(*this, GD, FD, /*OmitMultiVersionMangling=*/true);
1199*0b57cec5SDimitry Andric   GlobalDecl OtherGD;
1200*0b57cec5SDimitry Andric   if (lookupRepresentativeDecl(NonTargetName, OtherGD)) {
1201*0b57cec5SDimitry Andric     assert(OtherGD.getCanonicalDecl()
1202*0b57cec5SDimitry Andric                .getDecl()
1203*0b57cec5SDimitry Andric                ->getAsFunction()
1204*0b57cec5SDimitry Andric                ->isMultiVersion() &&
1205*0b57cec5SDimitry Andric            "Other GD should now be a multiversioned function");
1206*0b57cec5SDimitry Andric     // OtherFD is the version of this function that was mangled BEFORE
1207*0b57cec5SDimitry Andric     // becoming a MultiVersion function.  It potentially needs to be updated.
1208*0b57cec5SDimitry Andric     const FunctionDecl *OtherFD = OtherGD.getCanonicalDecl()
1209*0b57cec5SDimitry Andric                                       .getDecl()
1210*0b57cec5SDimitry Andric                                       ->getAsFunction()
1211*0b57cec5SDimitry Andric                                       ->getMostRecentDecl();
1212*0b57cec5SDimitry Andric     std::string OtherName = getMangledNameImpl(*this, OtherGD, OtherFD);
1213*0b57cec5SDimitry Andric     // This is so that if the initial version was already the 'default'
1214*0b57cec5SDimitry Andric     // version, we don't try to update it.
1215*0b57cec5SDimitry Andric     if (OtherName != NonTargetName) {
1216*0b57cec5SDimitry Andric       // Remove instead of erase, since others may have stored the StringRef
1217*0b57cec5SDimitry Andric       // to this.
1218*0b57cec5SDimitry Andric       const auto ExistingRecord = Manglings.find(NonTargetName);
1219*0b57cec5SDimitry Andric       if (ExistingRecord != std::end(Manglings))
1220*0b57cec5SDimitry Andric         Manglings.remove(&(*ExistingRecord));
1221*0b57cec5SDimitry Andric       auto Result = Manglings.insert(std::make_pair(OtherName, OtherGD));
1222*0b57cec5SDimitry Andric       MangledDeclNames[OtherGD.getCanonicalDecl()] = Result.first->first();
1223*0b57cec5SDimitry Andric       if (llvm::GlobalValue *Entry = GetGlobalValue(NonTargetName))
1224*0b57cec5SDimitry Andric         Entry->setName(OtherName);
1225*0b57cec5SDimitry Andric     }
1226*0b57cec5SDimitry Andric   }
1227*0b57cec5SDimitry Andric }
1228*0b57cec5SDimitry Andric 
1229*0b57cec5SDimitry Andric StringRef CodeGenModule::getMangledName(GlobalDecl GD) {
1230*0b57cec5SDimitry Andric   GlobalDecl CanonicalGD = GD.getCanonicalDecl();
1231*0b57cec5SDimitry Andric 
1232*0b57cec5SDimitry Andric   // Some ABIs don't have constructor variants.  Make sure that base and
1233*0b57cec5SDimitry Andric   // complete constructors get mangled the same.
1234*0b57cec5SDimitry Andric   if (const auto *CD = dyn_cast<CXXConstructorDecl>(CanonicalGD.getDecl())) {
1235*0b57cec5SDimitry Andric     if (!getTarget().getCXXABI().hasConstructorVariants()) {
1236*0b57cec5SDimitry Andric       CXXCtorType OrigCtorType = GD.getCtorType();
1237*0b57cec5SDimitry Andric       assert(OrigCtorType == Ctor_Base || OrigCtorType == Ctor_Complete);
1238*0b57cec5SDimitry Andric       if (OrigCtorType == Ctor_Base)
1239*0b57cec5SDimitry Andric         CanonicalGD = GlobalDecl(CD, Ctor_Complete);
1240*0b57cec5SDimitry Andric     }
1241*0b57cec5SDimitry Andric   }
1242*0b57cec5SDimitry Andric 
1243*0b57cec5SDimitry Andric   auto FoundName = MangledDeclNames.find(CanonicalGD);
1244*0b57cec5SDimitry Andric   if (FoundName != MangledDeclNames.end())
1245*0b57cec5SDimitry Andric     return FoundName->second;
1246*0b57cec5SDimitry Andric 
1247*0b57cec5SDimitry Andric   // Keep the first result in the case of a mangling collision.
1248*0b57cec5SDimitry Andric   const auto *ND = cast<NamedDecl>(GD.getDecl());
1249*0b57cec5SDimitry Andric   std::string MangledName = getMangledNameImpl(*this, GD, ND);
1250*0b57cec5SDimitry Andric 
12515ffd83dbSDimitry Andric   // Ensure either we have different ABIs between host and device compilations,
12525ffd83dbSDimitry Andric   // says host compilation following MSVC ABI but device compilation follows
12535ffd83dbSDimitry Andric   // Itanium C++ ABI or, if they follow the same ABI, kernel names after
12545ffd83dbSDimitry Andric   // mangling should be the same after name stubbing. The later checking is
12555ffd83dbSDimitry Andric   // very important as the device kernel name being mangled in host-compilation
12565ffd83dbSDimitry Andric   // is used to resolve the device binaries to be executed. Inconsistent naming
12575ffd83dbSDimitry Andric   // result in undefined behavior. Even though we cannot check that naming
12585ffd83dbSDimitry Andric   // directly between host- and device-compilations, the host- and
12595ffd83dbSDimitry Andric   // device-mangling in host compilation could help catching certain ones.
12605ffd83dbSDimitry Andric   assert(!isa<FunctionDecl>(ND) || !ND->hasAttr<CUDAGlobalAttr>() ||
12615ffd83dbSDimitry Andric          getLangOpts().CUDAIsDevice ||
12625ffd83dbSDimitry Andric          (getContext().getAuxTargetInfo() &&
12635ffd83dbSDimitry Andric           (getContext().getAuxTargetInfo()->getCXXABI() !=
12645ffd83dbSDimitry Andric            getContext().getTargetInfo().getCXXABI())) ||
12655ffd83dbSDimitry Andric          getCUDARuntime().getDeviceSideName(ND) ==
12665ffd83dbSDimitry Andric              getMangledNameImpl(
12675ffd83dbSDimitry Andric                  *this,
12685ffd83dbSDimitry Andric                  GD.getWithKernelReferenceKind(KernelReferenceKind::Kernel),
12695ffd83dbSDimitry Andric                  ND));
1270*0b57cec5SDimitry Andric 
1271*0b57cec5SDimitry Andric   auto Result = Manglings.insert(std::make_pair(MangledName, GD));
1272*0b57cec5SDimitry Andric   return MangledDeclNames[CanonicalGD] = Result.first->first();
1273*0b57cec5SDimitry Andric }
1274*0b57cec5SDimitry Andric 
1275*0b57cec5SDimitry Andric StringRef CodeGenModule::getBlockMangledName(GlobalDecl GD,
1276*0b57cec5SDimitry Andric                                              const BlockDecl *BD) {
1277*0b57cec5SDimitry Andric   MangleContext &MangleCtx = getCXXABI().getMangleContext();
1278*0b57cec5SDimitry Andric   const Decl *D = GD.getDecl();
1279*0b57cec5SDimitry Andric 
1280*0b57cec5SDimitry Andric   SmallString<256> Buffer;
1281*0b57cec5SDimitry Andric   llvm::raw_svector_ostream Out(Buffer);
1282*0b57cec5SDimitry Andric   if (!D)
1283*0b57cec5SDimitry Andric     MangleCtx.mangleGlobalBlock(BD,
1284*0b57cec5SDimitry Andric       dyn_cast_or_null<VarDecl>(initializedGlobalDecl.getDecl()), Out);
1285*0b57cec5SDimitry Andric   else if (const auto *CD = dyn_cast<CXXConstructorDecl>(D))
1286*0b57cec5SDimitry Andric     MangleCtx.mangleCtorBlock(CD, GD.getCtorType(), BD, Out);
1287*0b57cec5SDimitry Andric   else if (const auto *DD = dyn_cast<CXXDestructorDecl>(D))
1288*0b57cec5SDimitry Andric     MangleCtx.mangleDtorBlock(DD, GD.getDtorType(), BD, Out);
1289*0b57cec5SDimitry Andric   else
1290*0b57cec5SDimitry Andric     MangleCtx.mangleBlock(cast<DeclContext>(D), BD, Out);
1291*0b57cec5SDimitry Andric 
1292*0b57cec5SDimitry Andric   auto Result = Manglings.insert(std::make_pair(Out.str(), BD));
1293*0b57cec5SDimitry Andric   return Result.first->first();
1294*0b57cec5SDimitry Andric }
1295*0b57cec5SDimitry Andric 
1296*0b57cec5SDimitry Andric llvm::GlobalValue *CodeGenModule::GetGlobalValue(StringRef Name) {
1297*0b57cec5SDimitry Andric   return getModule().getNamedValue(Name);
1298*0b57cec5SDimitry Andric }
1299*0b57cec5SDimitry Andric 
1300*0b57cec5SDimitry Andric /// AddGlobalCtor - Add a function to the list that will be called before
1301*0b57cec5SDimitry Andric /// main() runs.
1302*0b57cec5SDimitry Andric void CodeGenModule::AddGlobalCtor(llvm::Function *Ctor, int Priority,
1303*0b57cec5SDimitry Andric                                   llvm::Constant *AssociatedData) {
1304*0b57cec5SDimitry Andric   // FIXME: Type coercion of void()* types.
1305*0b57cec5SDimitry Andric   GlobalCtors.push_back(Structor(Priority, Ctor, AssociatedData));
1306*0b57cec5SDimitry Andric }
1307*0b57cec5SDimitry Andric 
1308*0b57cec5SDimitry Andric /// AddGlobalDtor - Add a function to the list that will be called
1309*0b57cec5SDimitry Andric /// when the module is unloaded.
1310e8d8bef9SDimitry Andric void CodeGenModule::AddGlobalDtor(llvm::Function *Dtor, int Priority,
1311e8d8bef9SDimitry Andric                                   bool IsDtorAttrFunc) {
1312e8d8bef9SDimitry Andric   if (CodeGenOpts.RegisterGlobalDtorsWithAtExit &&
1313e8d8bef9SDimitry Andric       (!getContext().getTargetInfo().getTriple().isOSAIX() || IsDtorAttrFunc)) {
1314*0b57cec5SDimitry Andric     DtorsUsingAtExit[Priority].push_back(Dtor);
1315*0b57cec5SDimitry Andric     return;
1316*0b57cec5SDimitry Andric   }
1317*0b57cec5SDimitry Andric 
1318*0b57cec5SDimitry Andric   // FIXME: Type coercion of void()* types.
1319*0b57cec5SDimitry Andric   GlobalDtors.push_back(Structor(Priority, Dtor, nullptr));
1320*0b57cec5SDimitry Andric }
1321*0b57cec5SDimitry Andric 
1322*0b57cec5SDimitry Andric void CodeGenModule::EmitCtorList(CtorList &Fns, const char *GlobalName) {
1323*0b57cec5SDimitry Andric   if (Fns.empty()) return;
1324*0b57cec5SDimitry Andric 
1325*0b57cec5SDimitry Andric   // Ctor function type is void()*.
1326*0b57cec5SDimitry Andric   llvm::FunctionType* CtorFTy = llvm::FunctionType::get(VoidTy, false);
1327*0b57cec5SDimitry Andric   llvm::Type *CtorPFTy = llvm::PointerType::get(CtorFTy,
1328*0b57cec5SDimitry Andric       TheModule.getDataLayout().getProgramAddressSpace());
1329*0b57cec5SDimitry Andric 
1330*0b57cec5SDimitry Andric   // Get the type of a ctor entry, { i32, void ()*, i8* }.
1331*0b57cec5SDimitry Andric   llvm::StructType *CtorStructTy = llvm::StructType::get(
1332*0b57cec5SDimitry Andric       Int32Ty, CtorPFTy, VoidPtrTy);
1333*0b57cec5SDimitry Andric 
1334*0b57cec5SDimitry Andric   // Construct the constructor and destructor arrays.
1335*0b57cec5SDimitry Andric   ConstantInitBuilder builder(*this);
1336*0b57cec5SDimitry Andric   auto ctors = builder.beginArray(CtorStructTy);
1337*0b57cec5SDimitry Andric   for (const auto &I : Fns) {
1338*0b57cec5SDimitry Andric     auto ctor = ctors.beginStruct(CtorStructTy);
1339*0b57cec5SDimitry Andric     ctor.addInt(Int32Ty, I.Priority);
1340*0b57cec5SDimitry Andric     ctor.add(llvm::ConstantExpr::getBitCast(I.Initializer, CtorPFTy));
1341*0b57cec5SDimitry Andric     if (I.AssociatedData)
1342*0b57cec5SDimitry Andric       ctor.add(llvm::ConstantExpr::getBitCast(I.AssociatedData, VoidPtrTy));
1343*0b57cec5SDimitry Andric     else
1344*0b57cec5SDimitry Andric       ctor.addNullPointer(VoidPtrTy);
1345*0b57cec5SDimitry Andric     ctor.finishAndAddTo(ctors);
1346*0b57cec5SDimitry Andric   }
1347*0b57cec5SDimitry Andric 
1348*0b57cec5SDimitry Andric   auto list =
1349*0b57cec5SDimitry Andric     ctors.finishAndCreateGlobal(GlobalName, getPointerAlign(),
1350*0b57cec5SDimitry Andric                                 /*constant*/ false,
1351*0b57cec5SDimitry Andric                                 llvm::GlobalValue::AppendingLinkage);
1352*0b57cec5SDimitry Andric 
1353*0b57cec5SDimitry Andric   // The LTO linker doesn't seem to like it when we set an alignment
1354*0b57cec5SDimitry Andric   // on appending variables.  Take it off as a workaround.
1355a7dea167SDimitry Andric   list->setAlignment(llvm::None);
1356*0b57cec5SDimitry Andric 
1357*0b57cec5SDimitry Andric   Fns.clear();
1358*0b57cec5SDimitry Andric }
1359*0b57cec5SDimitry Andric 
1360*0b57cec5SDimitry Andric llvm::GlobalValue::LinkageTypes
1361*0b57cec5SDimitry Andric CodeGenModule::getFunctionLinkage(GlobalDecl GD) {
1362*0b57cec5SDimitry Andric   const auto *D = cast<FunctionDecl>(GD.getDecl());
1363*0b57cec5SDimitry Andric 
1364*0b57cec5SDimitry Andric   GVALinkage Linkage = getContext().GetGVALinkageForFunction(D);
1365*0b57cec5SDimitry Andric 
1366*0b57cec5SDimitry Andric   if (const auto *Dtor = dyn_cast<CXXDestructorDecl>(D))
1367*0b57cec5SDimitry Andric     return getCXXABI().getCXXDestructorLinkage(Linkage, Dtor, GD.getDtorType());
1368*0b57cec5SDimitry Andric 
1369*0b57cec5SDimitry Andric   if (isa<CXXConstructorDecl>(D) &&
1370*0b57cec5SDimitry Andric       cast<CXXConstructorDecl>(D)->isInheritingConstructor() &&
1371*0b57cec5SDimitry Andric       Context.getTargetInfo().getCXXABI().isMicrosoft()) {
1372*0b57cec5SDimitry Andric     // Our approach to inheriting constructors is fundamentally different from
1373*0b57cec5SDimitry Andric     // that used by the MS ABI, so keep our inheriting constructor thunks
1374*0b57cec5SDimitry Andric     // internal rather than trying to pick an unambiguous mangling for them.
1375*0b57cec5SDimitry Andric     return llvm::GlobalValue::InternalLinkage;
1376*0b57cec5SDimitry Andric   }
1377*0b57cec5SDimitry Andric 
1378*0b57cec5SDimitry Andric   return getLLVMLinkageForDeclarator(D, Linkage, /*IsConstantVariable=*/false);
1379*0b57cec5SDimitry Andric }
1380*0b57cec5SDimitry Andric 
1381*0b57cec5SDimitry Andric llvm::ConstantInt *CodeGenModule::CreateCrossDsoCfiTypeId(llvm::Metadata *MD) {
1382*0b57cec5SDimitry Andric   llvm::MDString *MDS = dyn_cast<llvm::MDString>(MD);
1383*0b57cec5SDimitry Andric   if (!MDS) return nullptr;
1384*0b57cec5SDimitry Andric 
1385*0b57cec5SDimitry Andric   return llvm::ConstantInt::get(Int64Ty, llvm::MD5Hash(MDS->getString()));
1386*0b57cec5SDimitry Andric }
1387*0b57cec5SDimitry Andric 
1388*0b57cec5SDimitry Andric void CodeGenModule::SetLLVMFunctionAttributes(GlobalDecl GD,
1389*0b57cec5SDimitry Andric                                               const CGFunctionInfo &Info,
1390*0b57cec5SDimitry Andric                                               llvm::Function *F) {
1391*0b57cec5SDimitry Andric   unsigned CallingConv;
1392*0b57cec5SDimitry Andric   llvm::AttributeList PAL;
1393*0b57cec5SDimitry Andric   ConstructAttributeList(F->getName(), Info, GD, PAL, CallingConv, false);
1394*0b57cec5SDimitry Andric   F->setAttributes(PAL);
1395*0b57cec5SDimitry Andric   F->setCallingConv(static_cast<llvm::CallingConv::ID>(CallingConv));
1396*0b57cec5SDimitry Andric }
1397*0b57cec5SDimitry Andric 
1398*0b57cec5SDimitry Andric static void removeImageAccessQualifier(std::string& TyName) {
1399*0b57cec5SDimitry Andric   std::string ReadOnlyQual("__read_only");
1400*0b57cec5SDimitry Andric   std::string::size_type ReadOnlyPos = TyName.find(ReadOnlyQual);
1401*0b57cec5SDimitry Andric   if (ReadOnlyPos != std::string::npos)
1402*0b57cec5SDimitry Andric     // "+ 1" for the space after access qualifier.
1403*0b57cec5SDimitry Andric     TyName.erase(ReadOnlyPos, ReadOnlyQual.size() + 1);
1404*0b57cec5SDimitry Andric   else {
1405*0b57cec5SDimitry Andric     std::string WriteOnlyQual("__write_only");
1406*0b57cec5SDimitry Andric     std::string::size_type WriteOnlyPos = TyName.find(WriteOnlyQual);
1407*0b57cec5SDimitry Andric     if (WriteOnlyPos != std::string::npos)
1408*0b57cec5SDimitry Andric       TyName.erase(WriteOnlyPos, WriteOnlyQual.size() + 1);
1409*0b57cec5SDimitry Andric     else {
1410*0b57cec5SDimitry Andric       std::string ReadWriteQual("__read_write");
1411*0b57cec5SDimitry Andric       std::string::size_type ReadWritePos = TyName.find(ReadWriteQual);
1412*0b57cec5SDimitry Andric       if (ReadWritePos != std::string::npos)
1413*0b57cec5SDimitry Andric         TyName.erase(ReadWritePos, ReadWriteQual.size() + 1);
1414*0b57cec5SDimitry Andric     }
1415*0b57cec5SDimitry Andric   }
1416*0b57cec5SDimitry Andric }
1417*0b57cec5SDimitry Andric 
1418*0b57cec5SDimitry Andric // Returns the address space id that should be produced to the
1419*0b57cec5SDimitry Andric // kernel_arg_addr_space metadata. This is always fixed to the ids
1420*0b57cec5SDimitry Andric // as specified in the SPIR 2.0 specification in order to differentiate
1421*0b57cec5SDimitry Andric // for example in clGetKernelArgInfo() implementation between the address
1422*0b57cec5SDimitry Andric // spaces with targets without unique mapping to the OpenCL address spaces
1423*0b57cec5SDimitry Andric // (basically all single AS CPUs).
1424*0b57cec5SDimitry Andric static unsigned ArgInfoAddressSpace(LangAS AS) {
1425*0b57cec5SDimitry Andric   switch (AS) {
1426e8d8bef9SDimitry Andric   case LangAS::opencl_global:
1427e8d8bef9SDimitry Andric     return 1;
1428e8d8bef9SDimitry Andric   case LangAS::opencl_constant:
1429e8d8bef9SDimitry Andric     return 2;
1430e8d8bef9SDimitry Andric   case LangAS::opencl_local:
1431e8d8bef9SDimitry Andric     return 3;
1432e8d8bef9SDimitry Andric   case LangAS::opencl_generic:
1433e8d8bef9SDimitry Andric     return 4; // Not in SPIR 2.0 specs.
1434e8d8bef9SDimitry Andric   case LangAS::opencl_global_device:
1435e8d8bef9SDimitry Andric     return 5;
1436e8d8bef9SDimitry Andric   case LangAS::opencl_global_host:
1437e8d8bef9SDimitry Andric     return 6;
1438*0b57cec5SDimitry Andric   default:
1439*0b57cec5SDimitry Andric     return 0; // Assume private.
1440*0b57cec5SDimitry Andric   }
1441*0b57cec5SDimitry Andric }
1442*0b57cec5SDimitry Andric 
1443*0b57cec5SDimitry Andric void CodeGenModule::GenOpenCLArgMetadata(llvm::Function *Fn,
1444*0b57cec5SDimitry Andric                                          const FunctionDecl *FD,
1445*0b57cec5SDimitry Andric                                          CodeGenFunction *CGF) {
1446*0b57cec5SDimitry Andric   assert(((FD && CGF) || (!FD && !CGF)) &&
1447*0b57cec5SDimitry Andric          "Incorrect use - FD and CGF should either be both null or not!");
1448*0b57cec5SDimitry Andric   // Create MDNodes that represent the kernel arg metadata.
1449*0b57cec5SDimitry Andric   // Each MDNode is a list in the form of "key", N number of values which is
1450*0b57cec5SDimitry Andric   // the same number of values as their are kernel arguments.
1451*0b57cec5SDimitry Andric 
1452*0b57cec5SDimitry Andric   const PrintingPolicy &Policy = Context.getPrintingPolicy();
1453*0b57cec5SDimitry Andric 
1454*0b57cec5SDimitry Andric   // MDNode for the kernel argument address space qualifiers.
1455*0b57cec5SDimitry Andric   SmallVector<llvm::Metadata *, 8> addressQuals;
1456*0b57cec5SDimitry Andric 
1457*0b57cec5SDimitry Andric   // MDNode for the kernel argument access qualifiers (images only).
1458*0b57cec5SDimitry Andric   SmallVector<llvm::Metadata *, 8> accessQuals;
1459*0b57cec5SDimitry Andric 
1460*0b57cec5SDimitry Andric   // MDNode for the kernel argument type names.
1461*0b57cec5SDimitry Andric   SmallVector<llvm::Metadata *, 8> argTypeNames;
1462*0b57cec5SDimitry Andric 
1463*0b57cec5SDimitry Andric   // MDNode for the kernel argument base type names.
1464*0b57cec5SDimitry Andric   SmallVector<llvm::Metadata *, 8> argBaseTypeNames;
1465*0b57cec5SDimitry Andric 
1466*0b57cec5SDimitry Andric   // MDNode for the kernel argument type qualifiers.
1467*0b57cec5SDimitry Andric   SmallVector<llvm::Metadata *, 8> argTypeQuals;
1468*0b57cec5SDimitry Andric 
1469*0b57cec5SDimitry Andric   // MDNode for the kernel argument names.
1470*0b57cec5SDimitry Andric   SmallVector<llvm::Metadata *, 8> argNames;
1471*0b57cec5SDimitry Andric 
1472*0b57cec5SDimitry Andric   if (FD && CGF)
1473*0b57cec5SDimitry Andric     for (unsigned i = 0, e = FD->getNumParams(); i != e; ++i) {
1474*0b57cec5SDimitry Andric       const ParmVarDecl *parm = FD->getParamDecl(i);
1475*0b57cec5SDimitry Andric       QualType ty = parm->getType();
1476*0b57cec5SDimitry Andric       std::string typeQuals;
1477*0b57cec5SDimitry Andric 
1478*0b57cec5SDimitry Andric       if (ty->isPointerType()) {
1479*0b57cec5SDimitry Andric         QualType pointeeTy = ty->getPointeeType();
1480*0b57cec5SDimitry Andric 
1481*0b57cec5SDimitry Andric         // Get address qualifier.
1482*0b57cec5SDimitry Andric         addressQuals.push_back(
1483*0b57cec5SDimitry Andric             llvm::ConstantAsMetadata::get(CGF->Builder.getInt32(
1484*0b57cec5SDimitry Andric                 ArgInfoAddressSpace(pointeeTy.getAddressSpace()))));
1485*0b57cec5SDimitry Andric 
1486*0b57cec5SDimitry Andric         // Get argument type name.
1487*0b57cec5SDimitry Andric         std::string typeName =
1488*0b57cec5SDimitry Andric             pointeeTy.getUnqualifiedType().getAsString(Policy) + "*";
1489*0b57cec5SDimitry Andric 
1490*0b57cec5SDimitry Andric         // Turn "unsigned type" to "utype"
1491*0b57cec5SDimitry Andric         std::string::size_type pos = typeName.find("unsigned");
1492*0b57cec5SDimitry Andric         if (pointeeTy.isCanonical() && pos != std::string::npos)
1493*0b57cec5SDimitry Andric           typeName.erase(pos + 1, 8);
1494*0b57cec5SDimitry Andric 
1495*0b57cec5SDimitry Andric         argTypeNames.push_back(llvm::MDString::get(VMContext, typeName));
1496*0b57cec5SDimitry Andric 
1497*0b57cec5SDimitry Andric         std::string baseTypeName =
1498*0b57cec5SDimitry Andric             pointeeTy.getUnqualifiedType().getCanonicalType().getAsString(
1499*0b57cec5SDimitry Andric                 Policy) +
1500*0b57cec5SDimitry Andric             "*";
1501*0b57cec5SDimitry Andric 
1502*0b57cec5SDimitry Andric         // Turn "unsigned type" to "utype"
1503*0b57cec5SDimitry Andric         pos = baseTypeName.find("unsigned");
1504*0b57cec5SDimitry Andric         if (pos != std::string::npos)
1505*0b57cec5SDimitry Andric           baseTypeName.erase(pos + 1, 8);
1506*0b57cec5SDimitry Andric 
1507*0b57cec5SDimitry Andric         argBaseTypeNames.push_back(
1508*0b57cec5SDimitry Andric             llvm::MDString::get(VMContext, baseTypeName));
1509*0b57cec5SDimitry Andric 
1510*0b57cec5SDimitry Andric         // Get argument type qualifiers:
1511*0b57cec5SDimitry Andric         if (ty.isRestrictQualified())
1512*0b57cec5SDimitry Andric           typeQuals = "restrict";
1513*0b57cec5SDimitry Andric         if (pointeeTy.isConstQualified() ||
1514*0b57cec5SDimitry Andric             (pointeeTy.getAddressSpace() == LangAS::opencl_constant))
1515*0b57cec5SDimitry Andric           typeQuals += typeQuals.empty() ? "const" : " const";
1516*0b57cec5SDimitry Andric         if (pointeeTy.isVolatileQualified())
1517*0b57cec5SDimitry Andric           typeQuals += typeQuals.empty() ? "volatile" : " volatile";
1518*0b57cec5SDimitry Andric       } else {
1519*0b57cec5SDimitry Andric         uint32_t AddrSpc = 0;
1520*0b57cec5SDimitry Andric         bool isPipe = ty->isPipeType();
1521*0b57cec5SDimitry Andric         if (ty->isImageType() || isPipe)
1522*0b57cec5SDimitry Andric           AddrSpc = ArgInfoAddressSpace(LangAS::opencl_global);
1523*0b57cec5SDimitry Andric 
1524*0b57cec5SDimitry Andric         addressQuals.push_back(
1525*0b57cec5SDimitry Andric             llvm::ConstantAsMetadata::get(CGF->Builder.getInt32(AddrSpc)));
1526*0b57cec5SDimitry Andric 
1527*0b57cec5SDimitry Andric         // Get argument type name.
1528*0b57cec5SDimitry Andric         std::string typeName;
1529*0b57cec5SDimitry Andric         if (isPipe)
1530*0b57cec5SDimitry Andric           typeName = ty.getCanonicalType()
15315ffd83dbSDimitry Andric                          ->castAs<PipeType>()
1532*0b57cec5SDimitry Andric                          ->getElementType()
1533*0b57cec5SDimitry Andric                          .getAsString(Policy);
1534*0b57cec5SDimitry Andric         else
1535*0b57cec5SDimitry Andric           typeName = ty.getUnqualifiedType().getAsString(Policy);
1536*0b57cec5SDimitry Andric 
1537*0b57cec5SDimitry Andric         // Turn "unsigned type" to "utype"
1538*0b57cec5SDimitry Andric         std::string::size_type pos = typeName.find("unsigned");
1539*0b57cec5SDimitry Andric         if (ty.isCanonical() && pos != std::string::npos)
1540*0b57cec5SDimitry Andric           typeName.erase(pos + 1, 8);
1541*0b57cec5SDimitry Andric 
1542*0b57cec5SDimitry Andric         std::string baseTypeName;
1543*0b57cec5SDimitry Andric         if (isPipe)
1544*0b57cec5SDimitry Andric           baseTypeName = ty.getCanonicalType()
15455ffd83dbSDimitry Andric                              ->castAs<PipeType>()
1546*0b57cec5SDimitry Andric                              ->getElementType()
1547*0b57cec5SDimitry Andric                              .getCanonicalType()
1548*0b57cec5SDimitry Andric                              .getAsString(Policy);
1549*0b57cec5SDimitry Andric         else
1550*0b57cec5SDimitry Andric           baseTypeName =
1551*0b57cec5SDimitry Andric               ty.getUnqualifiedType().getCanonicalType().getAsString(Policy);
1552*0b57cec5SDimitry Andric 
1553*0b57cec5SDimitry Andric         // Remove access qualifiers on images
1554*0b57cec5SDimitry Andric         // (as they are inseparable from type in clang implementation,
1555*0b57cec5SDimitry Andric         // but OpenCL spec provides a special query to get access qualifier
1556*0b57cec5SDimitry Andric         // via clGetKernelArgInfo with CL_KERNEL_ARG_ACCESS_QUALIFIER):
1557*0b57cec5SDimitry Andric         if (ty->isImageType()) {
1558*0b57cec5SDimitry Andric           removeImageAccessQualifier(typeName);
1559*0b57cec5SDimitry Andric           removeImageAccessQualifier(baseTypeName);
1560*0b57cec5SDimitry Andric         }
1561*0b57cec5SDimitry Andric 
1562*0b57cec5SDimitry Andric         argTypeNames.push_back(llvm::MDString::get(VMContext, typeName));
1563*0b57cec5SDimitry Andric 
1564*0b57cec5SDimitry Andric         // Turn "unsigned type" to "utype"
1565*0b57cec5SDimitry Andric         pos = baseTypeName.find("unsigned");
1566*0b57cec5SDimitry Andric         if (pos != std::string::npos)
1567*0b57cec5SDimitry Andric           baseTypeName.erase(pos + 1, 8);
1568*0b57cec5SDimitry Andric 
1569*0b57cec5SDimitry Andric         argBaseTypeNames.push_back(
1570*0b57cec5SDimitry Andric             llvm::MDString::get(VMContext, baseTypeName));
1571*0b57cec5SDimitry Andric 
1572*0b57cec5SDimitry Andric         if (isPipe)
1573*0b57cec5SDimitry Andric           typeQuals = "pipe";
1574*0b57cec5SDimitry Andric       }
1575*0b57cec5SDimitry Andric 
1576*0b57cec5SDimitry Andric       argTypeQuals.push_back(llvm::MDString::get(VMContext, typeQuals));
1577*0b57cec5SDimitry Andric 
1578*0b57cec5SDimitry Andric       // Get image and pipe access qualifier:
1579*0b57cec5SDimitry Andric       if (ty->isImageType() || ty->isPipeType()) {
1580*0b57cec5SDimitry Andric         const Decl *PDecl = parm;
1581*0b57cec5SDimitry Andric         if (auto *TD = dyn_cast<TypedefType>(ty))
1582*0b57cec5SDimitry Andric           PDecl = TD->getDecl();
1583*0b57cec5SDimitry Andric         const OpenCLAccessAttr *A = PDecl->getAttr<OpenCLAccessAttr>();
1584*0b57cec5SDimitry Andric         if (A && A->isWriteOnly())
1585*0b57cec5SDimitry Andric           accessQuals.push_back(llvm::MDString::get(VMContext, "write_only"));
1586*0b57cec5SDimitry Andric         else if (A && A->isReadWrite())
1587*0b57cec5SDimitry Andric           accessQuals.push_back(llvm::MDString::get(VMContext, "read_write"));
1588*0b57cec5SDimitry Andric         else
1589*0b57cec5SDimitry Andric           accessQuals.push_back(llvm::MDString::get(VMContext, "read_only"));
1590*0b57cec5SDimitry Andric       } else
1591*0b57cec5SDimitry Andric         accessQuals.push_back(llvm::MDString::get(VMContext, "none"));
1592*0b57cec5SDimitry Andric 
1593*0b57cec5SDimitry Andric       // Get argument name.
1594*0b57cec5SDimitry Andric       argNames.push_back(llvm::MDString::get(VMContext, parm->getName()));
1595*0b57cec5SDimitry Andric     }
1596*0b57cec5SDimitry Andric 
1597*0b57cec5SDimitry Andric   Fn->setMetadata("kernel_arg_addr_space",
1598*0b57cec5SDimitry Andric                   llvm::MDNode::get(VMContext, addressQuals));
1599*0b57cec5SDimitry Andric   Fn->setMetadata("kernel_arg_access_qual",
1600*0b57cec5SDimitry Andric                   llvm::MDNode::get(VMContext, accessQuals));
1601*0b57cec5SDimitry Andric   Fn->setMetadata("kernel_arg_type",
1602*0b57cec5SDimitry Andric                   llvm::MDNode::get(VMContext, argTypeNames));
1603*0b57cec5SDimitry Andric   Fn->setMetadata("kernel_arg_base_type",
1604*0b57cec5SDimitry Andric                   llvm::MDNode::get(VMContext, argBaseTypeNames));
1605*0b57cec5SDimitry Andric   Fn->setMetadata("kernel_arg_type_qual",
1606*0b57cec5SDimitry Andric                   llvm::MDNode::get(VMContext, argTypeQuals));
1607*0b57cec5SDimitry Andric   if (getCodeGenOpts().EmitOpenCLArgMetadata)
1608*0b57cec5SDimitry Andric     Fn->setMetadata("kernel_arg_name",
1609*0b57cec5SDimitry Andric                     llvm::MDNode::get(VMContext, argNames));
1610*0b57cec5SDimitry Andric }
1611*0b57cec5SDimitry Andric 
1612*0b57cec5SDimitry Andric /// Determines whether the language options require us to model
1613*0b57cec5SDimitry Andric /// unwind exceptions.  We treat -fexceptions as mandating this
1614*0b57cec5SDimitry Andric /// except under the fragile ObjC ABI with only ObjC exceptions
1615*0b57cec5SDimitry Andric /// enabled.  This means, for example, that C with -fexceptions
1616*0b57cec5SDimitry Andric /// enables this.
1617*0b57cec5SDimitry Andric static bool hasUnwindExceptions(const LangOptions &LangOpts) {
1618*0b57cec5SDimitry Andric   // If exceptions are completely disabled, obviously this is false.
1619*0b57cec5SDimitry Andric   if (!LangOpts.Exceptions) return false;
1620*0b57cec5SDimitry Andric 
1621*0b57cec5SDimitry Andric   // If C++ exceptions are enabled, this is true.
1622*0b57cec5SDimitry Andric   if (LangOpts.CXXExceptions) return true;
1623*0b57cec5SDimitry Andric 
1624*0b57cec5SDimitry Andric   // If ObjC exceptions are enabled, this depends on the ABI.
1625*0b57cec5SDimitry Andric   if (LangOpts.ObjCExceptions) {
1626*0b57cec5SDimitry Andric     return LangOpts.ObjCRuntime.hasUnwindExceptions();
1627*0b57cec5SDimitry Andric   }
1628*0b57cec5SDimitry Andric 
1629*0b57cec5SDimitry Andric   return true;
1630*0b57cec5SDimitry Andric }
1631*0b57cec5SDimitry Andric 
1632*0b57cec5SDimitry Andric static bool requiresMemberFunctionPointerTypeMetadata(CodeGenModule &CGM,
1633*0b57cec5SDimitry Andric                                                       const CXXMethodDecl *MD) {
1634*0b57cec5SDimitry Andric   // Check that the type metadata can ever actually be used by a call.
1635*0b57cec5SDimitry Andric   if (!CGM.getCodeGenOpts().LTOUnit ||
1636*0b57cec5SDimitry Andric       !CGM.HasHiddenLTOVisibility(MD->getParent()))
1637*0b57cec5SDimitry Andric     return false;
1638*0b57cec5SDimitry Andric 
1639*0b57cec5SDimitry Andric   // Only functions whose address can be taken with a member function pointer
1640*0b57cec5SDimitry Andric   // need this sort of type metadata.
1641*0b57cec5SDimitry Andric   return !MD->isStatic() && !MD->isVirtual() && !isa<CXXConstructorDecl>(MD) &&
1642*0b57cec5SDimitry Andric          !isa<CXXDestructorDecl>(MD);
1643*0b57cec5SDimitry Andric }
1644*0b57cec5SDimitry Andric 
1645*0b57cec5SDimitry Andric std::vector<const CXXRecordDecl *>
1646*0b57cec5SDimitry Andric CodeGenModule::getMostBaseClasses(const CXXRecordDecl *RD) {
1647*0b57cec5SDimitry Andric   llvm::SetVector<const CXXRecordDecl *> MostBases;
1648*0b57cec5SDimitry Andric 
1649*0b57cec5SDimitry Andric   std::function<void (const CXXRecordDecl *)> CollectMostBases;
1650*0b57cec5SDimitry Andric   CollectMostBases = [&](const CXXRecordDecl *RD) {
1651*0b57cec5SDimitry Andric     if (RD->getNumBases() == 0)
1652*0b57cec5SDimitry Andric       MostBases.insert(RD);
1653*0b57cec5SDimitry Andric     for (const CXXBaseSpecifier &B : RD->bases())
1654*0b57cec5SDimitry Andric       CollectMostBases(B.getType()->getAsCXXRecordDecl());
1655*0b57cec5SDimitry Andric   };
1656*0b57cec5SDimitry Andric   CollectMostBases(RD);
1657*0b57cec5SDimitry Andric   return MostBases.takeVector();
1658*0b57cec5SDimitry Andric }
1659*0b57cec5SDimitry Andric 
1660*0b57cec5SDimitry Andric void CodeGenModule::SetLLVMFunctionAttributesForDefinition(const Decl *D,
1661*0b57cec5SDimitry Andric                                                            llvm::Function *F) {
1662*0b57cec5SDimitry Andric   llvm::AttrBuilder B;
1663*0b57cec5SDimitry Andric 
1664*0b57cec5SDimitry Andric   if (CodeGenOpts.UnwindTables)
1665*0b57cec5SDimitry Andric     B.addAttribute(llvm::Attribute::UWTable);
1666*0b57cec5SDimitry Andric 
16675ffd83dbSDimitry Andric   if (CodeGenOpts.StackClashProtector)
16685ffd83dbSDimitry Andric     B.addAttribute("probe-stack", "inline-asm");
16695ffd83dbSDimitry Andric 
1670*0b57cec5SDimitry Andric   if (!hasUnwindExceptions(LangOpts))
1671*0b57cec5SDimitry Andric     B.addAttribute(llvm::Attribute::NoUnwind);
1672*0b57cec5SDimitry Andric 
1673*0b57cec5SDimitry Andric   if (!D || !D->hasAttr<NoStackProtectorAttr>()) {
1674*0b57cec5SDimitry Andric     if (LangOpts.getStackProtector() == LangOptions::SSPOn)
1675*0b57cec5SDimitry Andric       B.addAttribute(llvm::Attribute::StackProtect);
1676*0b57cec5SDimitry Andric     else if (LangOpts.getStackProtector() == LangOptions::SSPStrong)
1677*0b57cec5SDimitry Andric       B.addAttribute(llvm::Attribute::StackProtectStrong);
1678*0b57cec5SDimitry Andric     else if (LangOpts.getStackProtector() == LangOptions::SSPReq)
1679*0b57cec5SDimitry Andric       B.addAttribute(llvm::Attribute::StackProtectReq);
1680*0b57cec5SDimitry Andric   }
1681*0b57cec5SDimitry Andric 
1682*0b57cec5SDimitry Andric   if (!D) {
1683*0b57cec5SDimitry Andric     // If we don't have a declaration to control inlining, the function isn't
1684*0b57cec5SDimitry Andric     // explicitly marked as alwaysinline for semantic reasons, and inlining is
1685*0b57cec5SDimitry Andric     // disabled, mark the function as noinline.
1686*0b57cec5SDimitry Andric     if (!F->hasFnAttribute(llvm::Attribute::AlwaysInline) &&
1687*0b57cec5SDimitry Andric         CodeGenOpts.getInlining() == CodeGenOptions::OnlyAlwaysInlining)
1688*0b57cec5SDimitry Andric       B.addAttribute(llvm::Attribute::NoInline);
1689*0b57cec5SDimitry Andric 
1690*0b57cec5SDimitry Andric     F->addAttributes(llvm::AttributeList::FunctionIndex, B);
1691*0b57cec5SDimitry Andric     return;
1692*0b57cec5SDimitry Andric   }
1693*0b57cec5SDimitry Andric 
1694*0b57cec5SDimitry Andric   // Track whether we need to add the optnone LLVM attribute,
1695*0b57cec5SDimitry Andric   // starting with the default for this optimization level.
1696*0b57cec5SDimitry Andric   bool ShouldAddOptNone =
1697*0b57cec5SDimitry Andric       !CodeGenOpts.DisableO0ImplyOptNone && CodeGenOpts.OptimizationLevel == 0;
1698*0b57cec5SDimitry Andric   // We can't add optnone in the following cases, it won't pass the verifier.
1699*0b57cec5SDimitry Andric   ShouldAddOptNone &= !D->hasAttr<MinSizeAttr>();
1700*0b57cec5SDimitry Andric   ShouldAddOptNone &= !D->hasAttr<AlwaysInlineAttr>();
1701*0b57cec5SDimitry Andric 
1702480093f4SDimitry Andric   // Add optnone, but do so only if the function isn't always_inline.
1703480093f4SDimitry Andric   if ((ShouldAddOptNone || D->hasAttr<OptimizeNoneAttr>()) &&
1704480093f4SDimitry Andric       !F->hasFnAttribute(llvm::Attribute::AlwaysInline)) {
1705*0b57cec5SDimitry Andric     B.addAttribute(llvm::Attribute::OptimizeNone);
1706*0b57cec5SDimitry Andric 
1707*0b57cec5SDimitry Andric     // OptimizeNone implies noinline; we should not be inlining such functions.
1708*0b57cec5SDimitry Andric     B.addAttribute(llvm::Attribute::NoInline);
1709*0b57cec5SDimitry Andric 
1710*0b57cec5SDimitry Andric     // We still need to handle naked functions even though optnone subsumes
1711*0b57cec5SDimitry Andric     // much of their semantics.
1712*0b57cec5SDimitry Andric     if (D->hasAttr<NakedAttr>())
1713*0b57cec5SDimitry Andric       B.addAttribute(llvm::Attribute::Naked);
1714*0b57cec5SDimitry Andric 
1715*0b57cec5SDimitry Andric     // OptimizeNone wins over OptimizeForSize and MinSize.
1716*0b57cec5SDimitry Andric     F->removeFnAttr(llvm::Attribute::OptimizeForSize);
1717*0b57cec5SDimitry Andric     F->removeFnAttr(llvm::Attribute::MinSize);
1718*0b57cec5SDimitry Andric   } else if (D->hasAttr<NakedAttr>()) {
1719*0b57cec5SDimitry Andric     // Naked implies noinline: we should not be inlining such functions.
1720*0b57cec5SDimitry Andric     B.addAttribute(llvm::Attribute::Naked);
1721*0b57cec5SDimitry Andric     B.addAttribute(llvm::Attribute::NoInline);
1722*0b57cec5SDimitry Andric   } else if (D->hasAttr<NoDuplicateAttr>()) {
1723*0b57cec5SDimitry Andric     B.addAttribute(llvm::Attribute::NoDuplicate);
1724480093f4SDimitry Andric   } else if (D->hasAttr<NoInlineAttr>() && !F->hasFnAttribute(llvm::Attribute::AlwaysInline)) {
1725480093f4SDimitry Andric     // Add noinline if the function isn't always_inline.
1726*0b57cec5SDimitry Andric     B.addAttribute(llvm::Attribute::NoInline);
1727*0b57cec5SDimitry Andric   } else if (D->hasAttr<AlwaysInlineAttr>() &&
1728*0b57cec5SDimitry Andric              !F->hasFnAttribute(llvm::Attribute::NoInline)) {
1729*0b57cec5SDimitry Andric     // (noinline wins over always_inline, and we can't specify both in IR)
1730*0b57cec5SDimitry Andric     B.addAttribute(llvm::Attribute::AlwaysInline);
1731*0b57cec5SDimitry Andric   } else if (CodeGenOpts.getInlining() == CodeGenOptions::OnlyAlwaysInlining) {
1732*0b57cec5SDimitry Andric     // If we're not inlining, then force everything that isn't always_inline to
1733*0b57cec5SDimitry Andric     // carry an explicit noinline attribute.
1734*0b57cec5SDimitry Andric     if (!F->hasFnAttribute(llvm::Attribute::AlwaysInline))
1735*0b57cec5SDimitry Andric       B.addAttribute(llvm::Attribute::NoInline);
1736*0b57cec5SDimitry Andric   } else {
1737*0b57cec5SDimitry Andric     // Otherwise, propagate the inline hint attribute and potentially use its
1738*0b57cec5SDimitry Andric     // absence to mark things as noinline.
1739*0b57cec5SDimitry Andric     if (auto *FD = dyn_cast<FunctionDecl>(D)) {
1740*0b57cec5SDimitry Andric       // Search function and template pattern redeclarations for inline.
1741*0b57cec5SDimitry Andric       auto CheckForInline = [](const FunctionDecl *FD) {
1742*0b57cec5SDimitry Andric         auto CheckRedeclForInline = [](const FunctionDecl *Redecl) {
1743*0b57cec5SDimitry Andric           return Redecl->isInlineSpecified();
1744*0b57cec5SDimitry Andric         };
1745*0b57cec5SDimitry Andric         if (any_of(FD->redecls(), CheckRedeclForInline))
1746*0b57cec5SDimitry Andric           return true;
1747*0b57cec5SDimitry Andric         const FunctionDecl *Pattern = FD->getTemplateInstantiationPattern();
1748*0b57cec5SDimitry Andric         if (!Pattern)
1749*0b57cec5SDimitry Andric           return false;
1750*0b57cec5SDimitry Andric         return any_of(Pattern->redecls(), CheckRedeclForInline);
1751*0b57cec5SDimitry Andric       };
1752*0b57cec5SDimitry Andric       if (CheckForInline(FD)) {
1753*0b57cec5SDimitry Andric         B.addAttribute(llvm::Attribute::InlineHint);
1754*0b57cec5SDimitry Andric       } else if (CodeGenOpts.getInlining() ==
1755*0b57cec5SDimitry Andric                      CodeGenOptions::OnlyHintInlining &&
1756*0b57cec5SDimitry Andric                  !FD->isInlined() &&
1757*0b57cec5SDimitry Andric                  !F->hasFnAttribute(llvm::Attribute::AlwaysInline)) {
1758*0b57cec5SDimitry Andric         B.addAttribute(llvm::Attribute::NoInline);
1759*0b57cec5SDimitry Andric       }
1760*0b57cec5SDimitry Andric     }
1761*0b57cec5SDimitry Andric   }
1762*0b57cec5SDimitry Andric 
1763*0b57cec5SDimitry Andric   // Add other optimization related attributes if we are optimizing this
1764*0b57cec5SDimitry Andric   // function.
1765*0b57cec5SDimitry Andric   if (!D->hasAttr<OptimizeNoneAttr>()) {
1766*0b57cec5SDimitry Andric     if (D->hasAttr<ColdAttr>()) {
1767*0b57cec5SDimitry Andric       if (!ShouldAddOptNone)
1768*0b57cec5SDimitry Andric         B.addAttribute(llvm::Attribute::OptimizeForSize);
1769*0b57cec5SDimitry Andric       B.addAttribute(llvm::Attribute::Cold);
1770*0b57cec5SDimitry Andric     }
1771e8d8bef9SDimitry Andric     if (D->hasAttr<HotAttr>())
1772e8d8bef9SDimitry Andric       B.addAttribute(llvm::Attribute::Hot);
1773*0b57cec5SDimitry Andric     if (D->hasAttr<MinSizeAttr>())
1774*0b57cec5SDimitry Andric       B.addAttribute(llvm::Attribute::MinSize);
1775*0b57cec5SDimitry Andric   }
1776*0b57cec5SDimitry Andric 
1777*0b57cec5SDimitry Andric   F->addAttributes(llvm::AttributeList::FunctionIndex, B);
1778*0b57cec5SDimitry Andric 
1779*0b57cec5SDimitry Andric   unsigned alignment = D->getMaxAlignment() / Context.getCharWidth();
1780*0b57cec5SDimitry Andric   if (alignment)
1781a7dea167SDimitry Andric     F->setAlignment(llvm::Align(alignment));
1782*0b57cec5SDimitry Andric 
1783*0b57cec5SDimitry Andric   if (!D->hasAttr<AlignedAttr>())
1784*0b57cec5SDimitry Andric     if (LangOpts.FunctionAlignment)
1785a7dea167SDimitry Andric       F->setAlignment(llvm::Align(1ull << LangOpts.FunctionAlignment));
1786*0b57cec5SDimitry Andric 
1787*0b57cec5SDimitry Andric   // Some C++ ABIs require 2-byte alignment for member functions, in order to
1788*0b57cec5SDimitry Andric   // reserve a bit for differentiating between virtual and non-virtual member
1789*0b57cec5SDimitry Andric   // functions. If the current target's C++ ABI requires this and this is a
1790*0b57cec5SDimitry Andric   // member function, set its alignment accordingly.
1791*0b57cec5SDimitry Andric   if (getTarget().getCXXABI().areMemberFunctionsAligned()) {
1792*0b57cec5SDimitry Andric     if (F->getAlignment() < 2 && isa<CXXMethodDecl>(D))
1793a7dea167SDimitry Andric       F->setAlignment(llvm::Align(2));
1794*0b57cec5SDimitry Andric   }
1795*0b57cec5SDimitry Andric 
1796a7dea167SDimitry Andric   // In the cross-dso CFI mode with canonical jump tables, we want !type
1797a7dea167SDimitry Andric   // attributes on definitions only.
1798a7dea167SDimitry Andric   if (CodeGenOpts.SanitizeCfiCrossDso &&
1799a7dea167SDimitry Andric       CodeGenOpts.SanitizeCfiCanonicalJumpTables) {
1800a7dea167SDimitry Andric     if (auto *FD = dyn_cast<FunctionDecl>(D)) {
1801a7dea167SDimitry Andric       // Skip available_externally functions. They won't be codegen'ed in the
1802a7dea167SDimitry Andric       // current module anyway.
1803a7dea167SDimitry Andric       if (getContext().GetGVALinkageForFunction(FD) != GVA_AvailableExternally)
1804*0b57cec5SDimitry Andric         CreateFunctionTypeMetadataForIcall(FD, F);
1805a7dea167SDimitry Andric     }
1806a7dea167SDimitry Andric   }
1807*0b57cec5SDimitry Andric 
1808*0b57cec5SDimitry Andric   // Emit type metadata on member functions for member function pointer checks.
1809*0b57cec5SDimitry Andric   // These are only ever necessary on definitions; we're guaranteed that the
1810*0b57cec5SDimitry Andric   // definition will be present in the LTO unit as a result of LTO visibility.
1811*0b57cec5SDimitry Andric   auto *MD = dyn_cast<CXXMethodDecl>(D);
1812*0b57cec5SDimitry Andric   if (MD && requiresMemberFunctionPointerTypeMetadata(*this, MD)) {
1813*0b57cec5SDimitry Andric     for (const CXXRecordDecl *Base : getMostBaseClasses(MD->getParent())) {
1814*0b57cec5SDimitry Andric       llvm::Metadata *Id =
1815*0b57cec5SDimitry Andric           CreateMetadataIdentifierForType(Context.getMemberPointerType(
1816*0b57cec5SDimitry Andric               MD->getType(), Context.getRecordType(Base).getTypePtr()));
1817*0b57cec5SDimitry Andric       F->addTypeMetadata(0, Id);
1818*0b57cec5SDimitry Andric     }
1819*0b57cec5SDimitry Andric   }
1820*0b57cec5SDimitry Andric }
1821*0b57cec5SDimitry Andric 
1822e8d8bef9SDimitry Andric void CodeGenModule::setLLVMFunctionFEnvAttributes(const FunctionDecl *D,
1823e8d8bef9SDimitry Andric                                                   llvm::Function *F) {
1824e8d8bef9SDimitry Andric   if (D->hasAttr<StrictFPAttr>()) {
1825e8d8bef9SDimitry Andric     llvm::AttrBuilder FuncAttrs;
1826e8d8bef9SDimitry Andric     FuncAttrs.addAttribute("strictfp");
1827e8d8bef9SDimitry Andric     F->addAttributes(llvm::AttributeList::FunctionIndex, FuncAttrs);
1828e8d8bef9SDimitry Andric   }
1829e8d8bef9SDimitry Andric }
1830e8d8bef9SDimitry Andric 
1831*0b57cec5SDimitry Andric void CodeGenModule::SetCommonAttributes(GlobalDecl GD, llvm::GlobalValue *GV) {
1832*0b57cec5SDimitry Andric   const Decl *D = GD.getDecl();
1833*0b57cec5SDimitry Andric   if (dyn_cast_or_null<NamedDecl>(D))
1834*0b57cec5SDimitry Andric     setGVProperties(GV, GD);
1835*0b57cec5SDimitry Andric   else
1836*0b57cec5SDimitry Andric     GV->setVisibility(llvm::GlobalValue::DefaultVisibility);
1837*0b57cec5SDimitry Andric 
1838*0b57cec5SDimitry Andric   if (D && D->hasAttr<UsedAttr>())
1839*0b57cec5SDimitry Andric     addUsedGlobal(GV);
1840*0b57cec5SDimitry Andric 
1841*0b57cec5SDimitry Andric   if (CodeGenOpts.KeepStaticConsts && D && isa<VarDecl>(D)) {
1842*0b57cec5SDimitry Andric     const auto *VD = cast<VarDecl>(D);
1843*0b57cec5SDimitry Andric     if (VD->getType().isConstQualified() &&
1844*0b57cec5SDimitry Andric         VD->getStorageDuration() == SD_Static)
1845*0b57cec5SDimitry Andric       addUsedGlobal(GV);
1846*0b57cec5SDimitry Andric   }
1847*0b57cec5SDimitry Andric }
1848*0b57cec5SDimitry Andric 
1849*0b57cec5SDimitry Andric bool CodeGenModule::GetCPUAndFeaturesAttributes(GlobalDecl GD,
1850*0b57cec5SDimitry Andric                                                 llvm::AttrBuilder &Attrs) {
1851*0b57cec5SDimitry Andric   // Add target-cpu and target-features attributes to functions. If
1852*0b57cec5SDimitry Andric   // we have a decl for the function and it has a target attribute then
1853*0b57cec5SDimitry Andric   // parse that and add it to the feature set.
1854*0b57cec5SDimitry Andric   StringRef TargetCPU = getTarget().getTargetOpts().CPU;
1855e8d8bef9SDimitry Andric   StringRef TuneCPU = getTarget().getTargetOpts().TuneCPU;
1856*0b57cec5SDimitry Andric   std::vector<std::string> Features;
1857*0b57cec5SDimitry Andric   const auto *FD = dyn_cast_or_null<FunctionDecl>(GD.getDecl());
1858*0b57cec5SDimitry Andric   FD = FD ? FD->getMostRecentDecl() : FD;
1859*0b57cec5SDimitry Andric   const auto *TD = FD ? FD->getAttr<TargetAttr>() : nullptr;
1860*0b57cec5SDimitry Andric   const auto *SD = FD ? FD->getAttr<CPUSpecificAttr>() : nullptr;
1861*0b57cec5SDimitry Andric   bool AddedAttr = false;
1862*0b57cec5SDimitry Andric   if (TD || SD) {
1863*0b57cec5SDimitry Andric     llvm::StringMap<bool> FeatureMap;
1864480093f4SDimitry Andric     getContext().getFunctionFeatureMap(FeatureMap, GD);
1865*0b57cec5SDimitry Andric 
1866*0b57cec5SDimitry Andric     // Produce the canonical string for this set of features.
1867*0b57cec5SDimitry Andric     for (const llvm::StringMap<bool>::value_type &Entry : FeatureMap)
1868*0b57cec5SDimitry Andric       Features.push_back((Entry.getValue() ? "+" : "-") + Entry.getKey().str());
1869*0b57cec5SDimitry Andric 
1870*0b57cec5SDimitry Andric     // Now add the target-cpu and target-features to the function.
1871*0b57cec5SDimitry Andric     // While we populated the feature map above, we still need to
1872*0b57cec5SDimitry Andric     // get and parse the target attribute so we can get the cpu for
1873*0b57cec5SDimitry Andric     // the function.
1874*0b57cec5SDimitry Andric     if (TD) {
1875480093f4SDimitry Andric       ParsedTargetAttr ParsedAttr = TD->parse();
1876e8d8bef9SDimitry Andric       if (!ParsedAttr.Architecture.empty() &&
1877e8d8bef9SDimitry Andric           getTarget().isValidCPUName(ParsedAttr.Architecture)) {
1878*0b57cec5SDimitry Andric         TargetCPU = ParsedAttr.Architecture;
1879e8d8bef9SDimitry Andric         TuneCPU = ""; // Clear the tune CPU.
1880e8d8bef9SDimitry Andric       }
1881e8d8bef9SDimitry Andric       if (!ParsedAttr.Tune.empty() &&
1882e8d8bef9SDimitry Andric           getTarget().isValidCPUName(ParsedAttr.Tune))
1883e8d8bef9SDimitry Andric         TuneCPU = ParsedAttr.Tune;
1884*0b57cec5SDimitry Andric     }
1885*0b57cec5SDimitry Andric   } else {
1886*0b57cec5SDimitry Andric     // Otherwise just add the existing target cpu and target features to the
1887*0b57cec5SDimitry Andric     // function.
1888*0b57cec5SDimitry Andric     Features = getTarget().getTargetOpts().Features;
1889*0b57cec5SDimitry Andric   }
1890*0b57cec5SDimitry Andric 
1891e8d8bef9SDimitry Andric   if (!TargetCPU.empty()) {
1892*0b57cec5SDimitry Andric     Attrs.addAttribute("target-cpu", TargetCPU);
1893*0b57cec5SDimitry Andric     AddedAttr = true;
1894*0b57cec5SDimitry Andric   }
1895e8d8bef9SDimitry Andric   if (!TuneCPU.empty()) {
1896e8d8bef9SDimitry Andric     Attrs.addAttribute("tune-cpu", TuneCPU);
1897e8d8bef9SDimitry Andric     AddedAttr = true;
1898e8d8bef9SDimitry Andric   }
1899*0b57cec5SDimitry Andric   if (!Features.empty()) {
1900*0b57cec5SDimitry Andric     llvm::sort(Features);
1901*0b57cec5SDimitry Andric     Attrs.addAttribute("target-features", llvm::join(Features, ","));
1902*0b57cec5SDimitry Andric     AddedAttr = true;
1903*0b57cec5SDimitry Andric   }
1904*0b57cec5SDimitry Andric 
1905*0b57cec5SDimitry Andric   return AddedAttr;
1906*0b57cec5SDimitry Andric }
1907*0b57cec5SDimitry Andric 
1908*0b57cec5SDimitry Andric void CodeGenModule::setNonAliasAttributes(GlobalDecl GD,
1909*0b57cec5SDimitry Andric                                           llvm::GlobalObject *GO) {
1910*0b57cec5SDimitry Andric   const Decl *D = GD.getDecl();
1911*0b57cec5SDimitry Andric   SetCommonAttributes(GD, GO);
1912*0b57cec5SDimitry Andric 
1913*0b57cec5SDimitry Andric   if (D) {
1914*0b57cec5SDimitry Andric     if (auto *GV = dyn_cast<llvm::GlobalVariable>(GO)) {
1915*0b57cec5SDimitry Andric       if (auto *SA = D->getAttr<PragmaClangBSSSectionAttr>())
1916*0b57cec5SDimitry Andric         GV->addAttribute("bss-section", SA->getName());
1917*0b57cec5SDimitry Andric       if (auto *SA = D->getAttr<PragmaClangDataSectionAttr>())
1918*0b57cec5SDimitry Andric         GV->addAttribute("data-section", SA->getName());
1919*0b57cec5SDimitry Andric       if (auto *SA = D->getAttr<PragmaClangRodataSectionAttr>())
1920*0b57cec5SDimitry Andric         GV->addAttribute("rodata-section", SA->getName());
1921a7dea167SDimitry Andric       if (auto *SA = D->getAttr<PragmaClangRelroSectionAttr>())
1922a7dea167SDimitry Andric         GV->addAttribute("relro-section", SA->getName());
1923*0b57cec5SDimitry Andric     }
1924*0b57cec5SDimitry Andric 
1925*0b57cec5SDimitry Andric     if (auto *F = dyn_cast<llvm::Function>(GO)) {
1926*0b57cec5SDimitry Andric       if (auto *SA = D->getAttr<PragmaClangTextSectionAttr>())
1927*0b57cec5SDimitry Andric         if (!D->getAttr<SectionAttr>())
1928*0b57cec5SDimitry Andric           F->addFnAttr("implicit-section-name", SA->getName());
1929*0b57cec5SDimitry Andric 
1930*0b57cec5SDimitry Andric       llvm::AttrBuilder Attrs;
1931*0b57cec5SDimitry Andric       if (GetCPUAndFeaturesAttributes(GD, Attrs)) {
1932*0b57cec5SDimitry Andric         // We know that GetCPUAndFeaturesAttributes will always have the
1933*0b57cec5SDimitry Andric         // newest set, since it has the newest possible FunctionDecl, so the
1934*0b57cec5SDimitry Andric         // new ones should replace the old.
1935e8d8bef9SDimitry Andric         llvm::AttrBuilder RemoveAttrs;
1936e8d8bef9SDimitry Andric         RemoveAttrs.addAttribute("target-cpu");
1937e8d8bef9SDimitry Andric         RemoveAttrs.addAttribute("target-features");
1938e8d8bef9SDimitry Andric         RemoveAttrs.addAttribute("tune-cpu");
1939e8d8bef9SDimitry Andric         F->removeAttributes(llvm::AttributeList::FunctionIndex, RemoveAttrs);
1940*0b57cec5SDimitry Andric         F->addAttributes(llvm::AttributeList::FunctionIndex, Attrs);
1941*0b57cec5SDimitry Andric       }
1942*0b57cec5SDimitry Andric     }
1943*0b57cec5SDimitry Andric 
1944*0b57cec5SDimitry Andric     if (const auto *CSA = D->getAttr<CodeSegAttr>())
1945*0b57cec5SDimitry Andric       GO->setSection(CSA->getName());
1946*0b57cec5SDimitry Andric     else if (const auto *SA = D->getAttr<SectionAttr>())
1947*0b57cec5SDimitry Andric       GO->setSection(SA->getName());
1948*0b57cec5SDimitry Andric   }
1949*0b57cec5SDimitry Andric 
1950*0b57cec5SDimitry Andric   getTargetCodeGenInfo().setTargetAttributes(D, GO, *this);
1951*0b57cec5SDimitry Andric }
1952*0b57cec5SDimitry Andric 
1953*0b57cec5SDimitry Andric void CodeGenModule::SetInternalFunctionAttributes(GlobalDecl GD,
1954*0b57cec5SDimitry Andric                                                   llvm::Function *F,
1955*0b57cec5SDimitry Andric                                                   const CGFunctionInfo &FI) {
1956*0b57cec5SDimitry Andric   const Decl *D = GD.getDecl();
1957*0b57cec5SDimitry Andric   SetLLVMFunctionAttributes(GD, FI, F);
1958*0b57cec5SDimitry Andric   SetLLVMFunctionAttributesForDefinition(D, F);
1959*0b57cec5SDimitry Andric 
1960*0b57cec5SDimitry Andric   F->setLinkage(llvm::Function::InternalLinkage);
1961*0b57cec5SDimitry Andric 
1962*0b57cec5SDimitry Andric   setNonAliasAttributes(GD, F);
1963*0b57cec5SDimitry Andric }
1964*0b57cec5SDimitry Andric 
1965*0b57cec5SDimitry Andric static void setLinkageForGV(llvm::GlobalValue *GV, const NamedDecl *ND) {
1966*0b57cec5SDimitry Andric   // Set linkage and visibility in case we never see a definition.
1967*0b57cec5SDimitry Andric   LinkageInfo LV = ND->getLinkageAndVisibility();
1968*0b57cec5SDimitry Andric   // Don't set internal linkage on declarations.
1969*0b57cec5SDimitry Andric   // "extern_weak" is overloaded in LLVM; we probably should have
1970*0b57cec5SDimitry Andric   // separate linkage types for this.
1971*0b57cec5SDimitry Andric   if (isExternallyVisible(LV.getLinkage()) &&
1972*0b57cec5SDimitry Andric       (ND->hasAttr<WeakAttr>() || ND->isWeakImported()))
1973*0b57cec5SDimitry Andric     GV->setLinkage(llvm::GlobalValue::ExternalWeakLinkage);
1974*0b57cec5SDimitry Andric }
1975*0b57cec5SDimitry Andric 
1976*0b57cec5SDimitry Andric void CodeGenModule::CreateFunctionTypeMetadataForIcall(const FunctionDecl *FD,
1977*0b57cec5SDimitry Andric                                                        llvm::Function *F) {
1978*0b57cec5SDimitry Andric   // Only if we are checking indirect calls.
1979*0b57cec5SDimitry Andric   if (!LangOpts.Sanitize.has(SanitizerKind::CFIICall))
1980*0b57cec5SDimitry Andric     return;
1981*0b57cec5SDimitry Andric 
1982*0b57cec5SDimitry Andric   // Non-static class methods are handled via vtable or member function pointer
1983*0b57cec5SDimitry Andric   // checks elsewhere.
1984*0b57cec5SDimitry Andric   if (isa<CXXMethodDecl>(FD) && !cast<CXXMethodDecl>(FD)->isStatic())
1985*0b57cec5SDimitry Andric     return;
1986*0b57cec5SDimitry Andric 
1987*0b57cec5SDimitry Andric   llvm::Metadata *MD = CreateMetadataIdentifierForType(FD->getType());
1988*0b57cec5SDimitry Andric   F->addTypeMetadata(0, MD);
1989*0b57cec5SDimitry Andric   F->addTypeMetadata(0, CreateMetadataIdentifierGeneralized(FD->getType()));
1990*0b57cec5SDimitry Andric 
1991*0b57cec5SDimitry Andric   // Emit a hash-based bit set entry for cross-DSO calls.
1992*0b57cec5SDimitry Andric   if (CodeGenOpts.SanitizeCfiCrossDso)
1993*0b57cec5SDimitry Andric     if (auto CrossDsoTypeId = CreateCrossDsoCfiTypeId(MD))
1994*0b57cec5SDimitry Andric       F->addTypeMetadata(0, llvm::ConstantAsMetadata::get(CrossDsoTypeId));
1995*0b57cec5SDimitry Andric }
1996*0b57cec5SDimitry Andric 
1997*0b57cec5SDimitry Andric void CodeGenModule::SetFunctionAttributes(GlobalDecl GD, llvm::Function *F,
1998*0b57cec5SDimitry Andric                                           bool IsIncompleteFunction,
1999*0b57cec5SDimitry Andric                                           bool IsThunk) {
2000*0b57cec5SDimitry Andric 
2001*0b57cec5SDimitry Andric   if (llvm::Intrinsic::ID IID = F->getIntrinsicID()) {
2002*0b57cec5SDimitry Andric     // If this is an intrinsic function, set the function's attributes
2003*0b57cec5SDimitry Andric     // to the intrinsic's attributes.
2004*0b57cec5SDimitry Andric     F->setAttributes(llvm::Intrinsic::getAttributes(getLLVMContext(), IID));
2005*0b57cec5SDimitry Andric     return;
2006*0b57cec5SDimitry Andric   }
2007*0b57cec5SDimitry Andric 
2008*0b57cec5SDimitry Andric   const auto *FD = cast<FunctionDecl>(GD.getDecl());
2009*0b57cec5SDimitry Andric 
2010*0b57cec5SDimitry Andric   if (!IsIncompleteFunction)
2011*0b57cec5SDimitry Andric     SetLLVMFunctionAttributes(GD, getTypes().arrangeGlobalDeclaration(GD), F);
2012*0b57cec5SDimitry Andric 
2013*0b57cec5SDimitry Andric   // Add the Returned attribute for "this", except for iOS 5 and earlier
2014*0b57cec5SDimitry Andric   // where substantial code, including the libstdc++ dylib, was compiled with
2015*0b57cec5SDimitry Andric   // GCC and does not actually return "this".
2016*0b57cec5SDimitry Andric   if (!IsThunk && getCXXABI().HasThisReturn(GD) &&
2017*0b57cec5SDimitry Andric       !(getTriple().isiOS() && getTriple().isOSVersionLT(6))) {
2018*0b57cec5SDimitry Andric     assert(!F->arg_empty() &&
2019*0b57cec5SDimitry Andric            F->arg_begin()->getType()
2020*0b57cec5SDimitry Andric              ->canLosslesslyBitCastTo(F->getReturnType()) &&
2021*0b57cec5SDimitry Andric            "unexpected this return");
2022*0b57cec5SDimitry Andric     F->addAttribute(1, llvm::Attribute::Returned);
2023*0b57cec5SDimitry Andric   }
2024*0b57cec5SDimitry Andric 
2025*0b57cec5SDimitry Andric   // Only a few attributes are set on declarations; these may later be
2026*0b57cec5SDimitry Andric   // overridden by a definition.
2027*0b57cec5SDimitry Andric 
2028*0b57cec5SDimitry Andric   setLinkageForGV(F, FD);
2029*0b57cec5SDimitry Andric   setGVProperties(F, FD);
2030*0b57cec5SDimitry Andric 
2031*0b57cec5SDimitry Andric   // Setup target-specific attributes.
2032*0b57cec5SDimitry Andric   if (!IsIncompleteFunction && F->isDeclaration())
2033*0b57cec5SDimitry Andric     getTargetCodeGenInfo().setTargetAttributes(FD, F, *this);
2034*0b57cec5SDimitry Andric 
2035*0b57cec5SDimitry Andric   if (const auto *CSA = FD->getAttr<CodeSegAttr>())
2036*0b57cec5SDimitry Andric     F->setSection(CSA->getName());
2037*0b57cec5SDimitry Andric   else if (const auto *SA = FD->getAttr<SectionAttr>())
2038*0b57cec5SDimitry Andric      F->setSection(SA->getName());
2039*0b57cec5SDimitry Andric 
2040d65cd7a5SDimitry Andric   // If we plan on emitting this inline builtin, we can't treat it as a builtin.
2041480093f4SDimitry Andric   if (FD->isInlineBuiltinDeclaration()) {
2042d65cd7a5SDimitry Andric     const FunctionDecl *FDBody;
2043d65cd7a5SDimitry Andric     bool HasBody = FD->hasBody(FDBody);
2044d65cd7a5SDimitry Andric     (void)HasBody;
2045d65cd7a5SDimitry Andric     assert(HasBody && "Inline builtin declarations should always have an "
2046d65cd7a5SDimitry Andric                       "available body!");
2047d65cd7a5SDimitry Andric     if (shouldEmitFunction(FDBody))
2048480093f4SDimitry Andric       F->addAttribute(llvm::AttributeList::FunctionIndex,
2049480093f4SDimitry Andric                       llvm::Attribute::NoBuiltin);
2050480093f4SDimitry Andric   }
2051480093f4SDimitry Andric 
2052*0b57cec5SDimitry Andric   if (FD->isReplaceableGlobalAllocationFunction()) {
2053*0b57cec5SDimitry Andric     // A replaceable global allocation function does not act like a builtin by
2054*0b57cec5SDimitry Andric     // default, only if it is invoked by a new-expression or delete-expression.
2055*0b57cec5SDimitry Andric     F->addAttribute(llvm::AttributeList::FunctionIndex,
2056*0b57cec5SDimitry Andric                     llvm::Attribute::NoBuiltin);
2057*0b57cec5SDimitry Andric   }
2058*0b57cec5SDimitry Andric 
2059*0b57cec5SDimitry Andric   if (isa<CXXConstructorDecl>(FD) || isa<CXXDestructorDecl>(FD))
2060*0b57cec5SDimitry Andric     F->setUnnamedAddr(llvm::GlobalValue::UnnamedAddr::Global);
2061*0b57cec5SDimitry Andric   else if (const auto *MD = dyn_cast<CXXMethodDecl>(FD))
2062*0b57cec5SDimitry Andric     if (MD->isVirtual())
2063*0b57cec5SDimitry Andric       F->setUnnamedAddr(llvm::GlobalValue::UnnamedAddr::Global);
2064*0b57cec5SDimitry Andric 
2065*0b57cec5SDimitry Andric   // Don't emit entries for function declarations in the cross-DSO mode. This
2066a7dea167SDimitry Andric   // is handled with better precision by the receiving DSO. But if jump tables
2067a7dea167SDimitry Andric   // are non-canonical then we need type metadata in order to produce the local
2068a7dea167SDimitry Andric   // jump table.
2069a7dea167SDimitry Andric   if (!CodeGenOpts.SanitizeCfiCrossDso ||
2070a7dea167SDimitry Andric       !CodeGenOpts.SanitizeCfiCanonicalJumpTables)
2071*0b57cec5SDimitry Andric     CreateFunctionTypeMetadataForIcall(FD, F);
2072*0b57cec5SDimitry Andric 
2073*0b57cec5SDimitry Andric   if (getLangOpts().OpenMP && FD->hasAttr<OMPDeclareSimdDeclAttr>())
2074*0b57cec5SDimitry Andric     getOpenMPRuntime().emitDeclareSimdFunction(FD, F);
2075*0b57cec5SDimitry Andric 
2076*0b57cec5SDimitry Andric   if (const auto *CB = FD->getAttr<CallbackAttr>()) {
2077*0b57cec5SDimitry Andric     // Annotate the callback behavior as metadata:
2078*0b57cec5SDimitry Andric     //  - The callback callee (as argument number).
2079*0b57cec5SDimitry Andric     //  - The callback payloads (as argument numbers).
2080*0b57cec5SDimitry Andric     llvm::LLVMContext &Ctx = F->getContext();
2081*0b57cec5SDimitry Andric     llvm::MDBuilder MDB(Ctx);
2082*0b57cec5SDimitry Andric 
2083*0b57cec5SDimitry Andric     // The payload indices are all but the first one in the encoding. The first
2084*0b57cec5SDimitry Andric     // identifies the callback callee.
2085*0b57cec5SDimitry Andric     int CalleeIdx = *CB->encoding_begin();
2086*0b57cec5SDimitry Andric     ArrayRef<int> PayloadIndices(CB->encoding_begin() + 1, CB->encoding_end());
2087*0b57cec5SDimitry Andric     F->addMetadata(llvm::LLVMContext::MD_callback,
2088*0b57cec5SDimitry Andric                    *llvm::MDNode::get(Ctx, {MDB.createCallbackEncoding(
2089*0b57cec5SDimitry Andric                                                CalleeIdx, PayloadIndices,
2090*0b57cec5SDimitry Andric                                                /* VarArgsArePassed */ false)}));
2091*0b57cec5SDimitry Andric   }
2092*0b57cec5SDimitry Andric }
2093*0b57cec5SDimitry Andric 
2094*0b57cec5SDimitry Andric void CodeGenModule::addUsedGlobal(llvm::GlobalValue *GV) {
2095e8d8bef9SDimitry Andric   assert((isa<llvm::Function>(GV) || !GV->isDeclaration()) &&
2096*0b57cec5SDimitry Andric          "Only globals with definition can force usage.");
2097*0b57cec5SDimitry Andric   LLVMUsed.emplace_back(GV);
2098*0b57cec5SDimitry Andric }
2099*0b57cec5SDimitry Andric 
2100*0b57cec5SDimitry Andric void CodeGenModule::addCompilerUsedGlobal(llvm::GlobalValue *GV) {
2101*0b57cec5SDimitry Andric   assert(!GV->isDeclaration() &&
2102*0b57cec5SDimitry Andric          "Only globals with definition can force usage.");
2103*0b57cec5SDimitry Andric   LLVMCompilerUsed.emplace_back(GV);
2104*0b57cec5SDimitry Andric }
2105*0b57cec5SDimitry Andric 
2106*0b57cec5SDimitry Andric static void emitUsed(CodeGenModule &CGM, StringRef Name,
2107*0b57cec5SDimitry Andric                      std::vector<llvm::WeakTrackingVH> &List) {
2108*0b57cec5SDimitry Andric   // Don't create llvm.used if there is no need.
2109*0b57cec5SDimitry Andric   if (List.empty())
2110*0b57cec5SDimitry Andric     return;
2111*0b57cec5SDimitry Andric 
2112*0b57cec5SDimitry Andric   // Convert List to what ConstantArray needs.
2113*0b57cec5SDimitry Andric   SmallVector<llvm::Constant*, 8> UsedArray;
2114*0b57cec5SDimitry Andric   UsedArray.resize(List.size());
2115*0b57cec5SDimitry Andric   for (unsigned i = 0, e = List.size(); i != e; ++i) {
2116*0b57cec5SDimitry Andric     UsedArray[i] =
2117*0b57cec5SDimitry Andric         llvm::ConstantExpr::getPointerBitCastOrAddrSpaceCast(
2118*0b57cec5SDimitry Andric             cast<llvm::Constant>(&*List[i]), CGM.Int8PtrTy);
2119*0b57cec5SDimitry Andric   }
2120*0b57cec5SDimitry Andric 
2121*0b57cec5SDimitry Andric   if (UsedArray.empty())
2122*0b57cec5SDimitry Andric     return;
2123*0b57cec5SDimitry Andric   llvm::ArrayType *ATy = llvm::ArrayType::get(CGM.Int8PtrTy, UsedArray.size());
2124*0b57cec5SDimitry Andric 
2125*0b57cec5SDimitry Andric   auto *GV = new llvm::GlobalVariable(
2126*0b57cec5SDimitry Andric       CGM.getModule(), ATy, false, llvm::GlobalValue::AppendingLinkage,
2127*0b57cec5SDimitry Andric       llvm::ConstantArray::get(ATy, UsedArray), Name);
2128*0b57cec5SDimitry Andric 
2129*0b57cec5SDimitry Andric   GV->setSection("llvm.metadata");
2130*0b57cec5SDimitry Andric }
2131*0b57cec5SDimitry Andric 
2132*0b57cec5SDimitry Andric void CodeGenModule::emitLLVMUsed() {
2133*0b57cec5SDimitry Andric   emitUsed(*this, "llvm.used", LLVMUsed);
2134*0b57cec5SDimitry Andric   emitUsed(*this, "llvm.compiler.used", LLVMCompilerUsed);
2135*0b57cec5SDimitry Andric }
2136*0b57cec5SDimitry Andric 
2137*0b57cec5SDimitry Andric void CodeGenModule::AppendLinkerOptions(StringRef Opts) {
2138*0b57cec5SDimitry Andric   auto *MDOpts = llvm::MDString::get(getLLVMContext(), Opts);
2139*0b57cec5SDimitry Andric   LinkerOptionsMetadata.push_back(llvm::MDNode::get(getLLVMContext(), MDOpts));
2140*0b57cec5SDimitry Andric }
2141*0b57cec5SDimitry Andric 
2142*0b57cec5SDimitry Andric void CodeGenModule::AddDetectMismatch(StringRef Name, StringRef Value) {
2143*0b57cec5SDimitry Andric   llvm::SmallString<32> Opt;
2144*0b57cec5SDimitry Andric   getTargetCodeGenInfo().getDetectMismatchOption(Name, Value, Opt);
2145480093f4SDimitry Andric   if (Opt.empty())
2146480093f4SDimitry Andric     return;
2147*0b57cec5SDimitry Andric   auto *MDOpts = llvm::MDString::get(getLLVMContext(), Opt);
2148*0b57cec5SDimitry Andric   LinkerOptionsMetadata.push_back(llvm::MDNode::get(getLLVMContext(), MDOpts));
2149*0b57cec5SDimitry Andric }
2150*0b57cec5SDimitry Andric 
2151*0b57cec5SDimitry Andric void CodeGenModule::AddDependentLib(StringRef Lib) {
2152*0b57cec5SDimitry Andric   auto &C = getLLVMContext();
2153*0b57cec5SDimitry Andric   if (getTarget().getTriple().isOSBinFormatELF()) {
2154*0b57cec5SDimitry Andric       ELFDependentLibraries.push_back(
2155*0b57cec5SDimitry Andric         llvm::MDNode::get(C, llvm::MDString::get(C, Lib)));
2156*0b57cec5SDimitry Andric     return;
2157*0b57cec5SDimitry Andric   }
2158*0b57cec5SDimitry Andric 
2159*0b57cec5SDimitry Andric   llvm::SmallString<24> Opt;
2160*0b57cec5SDimitry Andric   getTargetCodeGenInfo().getDependentLibraryOption(Lib, Opt);
2161*0b57cec5SDimitry Andric   auto *MDOpts = llvm::MDString::get(getLLVMContext(), Opt);
2162*0b57cec5SDimitry Andric   LinkerOptionsMetadata.push_back(llvm::MDNode::get(C, MDOpts));
2163*0b57cec5SDimitry Andric }
2164*0b57cec5SDimitry Andric 
2165*0b57cec5SDimitry Andric /// Add link options implied by the given module, including modules
2166*0b57cec5SDimitry Andric /// it depends on, using a postorder walk.
2167*0b57cec5SDimitry Andric static void addLinkOptionsPostorder(CodeGenModule &CGM, Module *Mod,
2168*0b57cec5SDimitry Andric                                     SmallVectorImpl<llvm::MDNode *> &Metadata,
2169*0b57cec5SDimitry Andric                                     llvm::SmallPtrSet<Module *, 16> &Visited) {
2170*0b57cec5SDimitry Andric   // Import this module's parent.
2171*0b57cec5SDimitry Andric   if (Mod->Parent && Visited.insert(Mod->Parent).second) {
2172*0b57cec5SDimitry Andric     addLinkOptionsPostorder(CGM, Mod->Parent, Metadata, Visited);
2173*0b57cec5SDimitry Andric   }
2174*0b57cec5SDimitry Andric 
2175*0b57cec5SDimitry Andric   // Import this module's dependencies.
2176*0b57cec5SDimitry Andric   for (unsigned I = Mod->Imports.size(); I > 0; --I) {
2177*0b57cec5SDimitry Andric     if (Visited.insert(Mod->Imports[I - 1]).second)
2178*0b57cec5SDimitry Andric       addLinkOptionsPostorder(CGM, Mod->Imports[I-1], Metadata, Visited);
2179*0b57cec5SDimitry Andric   }
2180*0b57cec5SDimitry Andric 
2181*0b57cec5SDimitry Andric   // Add linker options to link against the libraries/frameworks
2182*0b57cec5SDimitry Andric   // described by this module.
2183*0b57cec5SDimitry Andric   llvm::LLVMContext &Context = CGM.getLLVMContext();
2184*0b57cec5SDimitry Andric   bool IsELF = CGM.getTarget().getTriple().isOSBinFormatELF();
2185*0b57cec5SDimitry Andric 
2186*0b57cec5SDimitry Andric   // For modules that use export_as for linking, use that module
2187*0b57cec5SDimitry Andric   // name instead.
2188*0b57cec5SDimitry Andric   if (Mod->UseExportAsModuleLinkName)
2189*0b57cec5SDimitry Andric     return;
2190*0b57cec5SDimitry Andric 
2191*0b57cec5SDimitry Andric   for (unsigned I = Mod->LinkLibraries.size(); I > 0; --I) {
2192*0b57cec5SDimitry Andric     // Link against a framework.  Frameworks are currently Darwin only, so we
2193*0b57cec5SDimitry Andric     // don't to ask TargetCodeGenInfo for the spelling of the linker option.
2194*0b57cec5SDimitry Andric     if (Mod->LinkLibraries[I-1].IsFramework) {
2195*0b57cec5SDimitry Andric       llvm::Metadata *Args[2] = {
2196*0b57cec5SDimitry Andric           llvm::MDString::get(Context, "-framework"),
2197*0b57cec5SDimitry Andric           llvm::MDString::get(Context, Mod->LinkLibraries[I - 1].Library)};
2198*0b57cec5SDimitry Andric 
2199*0b57cec5SDimitry Andric       Metadata.push_back(llvm::MDNode::get(Context, Args));
2200*0b57cec5SDimitry Andric       continue;
2201*0b57cec5SDimitry Andric     }
2202*0b57cec5SDimitry Andric 
2203*0b57cec5SDimitry Andric     // Link against a library.
2204*0b57cec5SDimitry Andric     if (IsELF) {
2205*0b57cec5SDimitry Andric       llvm::Metadata *Args[2] = {
2206*0b57cec5SDimitry Andric           llvm::MDString::get(Context, "lib"),
2207*0b57cec5SDimitry Andric           llvm::MDString::get(Context, Mod->LinkLibraries[I - 1].Library),
2208*0b57cec5SDimitry Andric       };
2209*0b57cec5SDimitry Andric       Metadata.push_back(llvm::MDNode::get(Context, Args));
2210*0b57cec5SDimitry Andric     } else {
2211*0b57cec5SDimitry Andric       llvm::SmallString<24> Opt;
2212*0b57cec5SDimitry Andric       CGM.getTargetCodeGenInfo().getDependentLibraryOption(
2213*0b57cec5SDimitry Andric           Mod->LinkLibraries[I - 1].Library, Opt);
2214*0b57cec5SDimitry Andric       auto *OptString = llvm::MDString::get(Context, Opt);
2215*0b57cec5SDimitry Andric       Metadata.push_back(llvm::MDNode::get(Context, OptString));
2216*0b57cec5SDimitry Andric     }
2217*0b57cec5SDimitry Andric   }
2218*0b57cec5SDimitry Andric }
2219*0b57cec5SDimitry Andric 
2220*0b57cec5SDimitry Andric void CodeGenModule::EmitModuleLinkOptions() {
2221*0b57cec5SDimitry Andric   // Collect the set of all of the modules we want to visit to emit link
2222*0b57cec5SDimitry Andric   // options, which is essentially the imported modules and all of their
2223*0b57cec5SDimitry Andric   // non-explicit child modules.
2224*0b57cec5SDimitry Andric   llvm::SetVector<clang::Module *> LinkModules;
2225*0b57cec5SDimitry Andric   llvm::SmallPtrSet<clang::Module *, 16> Visited;
2226*0b57cec5SDimitry Andric   SmallVector<clang::Module *, 16> Stack;
2227*0b57cec5SDimitry Andric 
2228*0b57cec5SDimitry Andric   // Seed the stack with imported modules.
2229*0b57cec5SDimitry Andric   for (Module *M : ImportedModules) {
2230*0b57cec5SDimitry Andric     // Do not add any link flags when an implementation TU of a module imports
2231*0b57cec5SDimitry Andric     // a header of that same module.
2232*0b57cec5SDimitry Andric     if (M->getTopLevelModuleName() == getLangOpts().CurrentModule &&
2233*0b57cec5SDimitry Andric         !getLangOpts().isCompilingModule())
2234*0b57cec5SDimitry Andric       continue;
2235*0b57cec5SDimitry Andric     if (Visited.insert(M).second)
2236*0b57cec5SDimitry Andric       Stack.push_back(M);
2237*0b57cec5SDimitry Andric   }
2238*0b57cec5SDimitry Andric 
2239*0b57cec5SDimitry Andric   // Find all of the modules to import, making a little effort to prune
2240*0b57cec5SDimitry Andric   // non-leaf modules.
2241*0b57cec5SDimitry Andric   while (!Stack.empty()) {
2242*0b57cec5SDimitry Andric     clang::Module *Mod = Stack.pop_back_val();
2243*0b57cec5SDimitry Andric 
2244*0b57cec5SDimitry Andric     bool AnyChildren = false;
2245*0b57cec5SDimitry Andric 
2246*0b57cec5SDimitry Andric     // Visit the submodules of this module.
2247*0b57cec5SDimitry Andric     for (const auto &SM : Mod->submodules()) {
2248*0b57cec5SDimitry Andric       // Skip explicit children; they need to be explicitly imported to be
2249*0b57cec5SDimitry Andric       // linked against.
2250*0b57cec5SDimitry Andric       if (SM->IsExplicit)
2251*0b57cec5SDimitry Andric         continue;
2252*0b57cec5SDimitry Andric 
2253*0b57cec5SDimitry Andric       if (Visited.insert(SM).second) {
2254*0b57cec5SDimitry Andric         Stack.push_back(SM);
2255*0b57cec5SDimitry Andric         AnyChildren = true;
2256*0b57cec5SDimitry Andric       }
2257*0b57cec5SDimitry Andric     }
2258*0b57cec5SDimitry Andric 
2259*0b57cec5SDimitry Andric     // We didn't find any children, so add this module to the list of
2260*0b57cec5SDimitry Andric     // modules to link against.
2261*0b57cec5SDimitry Andric     if (!AnyChildren) {
2262*0b57cec5SDimitry Andric       LinkModules.insert(Mod);
2263*0b57cec5SDimitry Andric     }
2264*0b57cec5SDimitry Andric   }
2265*0b57cec5SDimitry Andric 
2266*0b57cec5SDimitry Andric   // Add link options for all of the imported modules in reverse topological
2267*0b57cec5SDimitry Andric   // order.  We don't do anything to try to order import link flags with respect
2268*0b57cec5SDimitry Andric   // to linker options inserted by things like #pragma comment().
2269*0b57cec5SDimitry Andric   SmallVector<llvm::MDNode *, 16> MetadataArgs;
2270*0b57cec5SDimitry Andric   Visited.clear();
2271*0b57cec5SDimitry Andric   for (Module *M : LinkModules)
2272*0b57cec5SDimitry Andric     if (Visited.insert(M).second)
2273*0b57cec5SDimitry Andric       addLinkOptionsPostorder(*this, M, MetadataArgs, Visited);
2274*0b57cec5SDimitry Andric   std::reverse(MetadataArgs.begin(), MetadataArgs.end());
2275*0b57cec5SDimitry Andric   LinkerOptionsMetadata.append(MetadataArgs.begin(), MetadataArgs.end());
2276*0b57cec5SDimitry Andric 
2277*0b57cec5SDimitry Andric   // Add the linker options metadata flag.
2278*0b57cec5SDimitry Andric   auto *NMD = getModule().getOrInsertNamedMetadata("llvm.linker.options");
2279*0b57cec5SDimitry Andric   for (auto *MD : LinkerOptionsMetadata)
2280*0b57cec5SDimitry Andric     NMD->addOperand(MD);
2281*0b57cec5SDimitry Andric }
2282*0b57cec5SDimitry Andric 
2283*0b57cec5SDimitry Andric void CodeGenModule::EmitDeferred() {
2284*0b57cec5SDimitry Andric   // Emit deferred declare target declarations.
2285*0b57cec5SDimitry Andric   if (getLangOpts().OpenMP && !getLangOpts().OpenMPSimd)
2286*0b57cec5SDimitry Andric     getOpenMPRuntime().emitDeferredTargetDecls();
2287*0b57cec5SDimitry Andric 
2288*0b57cec5SDimitry Andric   // Emit code for any potentially referenced deferred decls.  Since a
2289*0b57cec5SDimitry Andric   // previously unused static decl may become used during the generation of code
2290*0b57cec5SDimitry Andric   // for a static function, iterate until no changes are made.
2291*0b57cec5SDimitry Andric 
2292*0b57cec5SDimitry Andric   if (!DeferredVTables.empty()) {
2293*0b57cec5SDimitry Andric     EmitDeferredVTables();
2294*0b57cec5SDimitry Andric 
2295*0b57cec5SDimitry Andric     // Emitting a vtable doesn't directly cause more vtables to
2296*0b57cec5SDimitry Andric     // become deferred, although it can cause functions to be
2297*0b57cec5SDimitry Andric     // emitted that then need those vtables.
2298*0b57cec5SDimitry Andric     assert(DeferredVTables.empty());
2299*0b57cec5SDimitry Andric   }
2300*0b57cec5SDimitry Andric 
2301e8d8bef9SDimitry Andric   // Emit CUDA/HIP static device variables referenced by host code only.
2302e8d8bef9SDimitry Andric   if (getLangOpts().CUDA)
2303e8d8bef9SDimitry Andric     for (auto V : getContext().CUDAStaticDeviceVarReferencedByHost)
2304e8d8bef9SDimitry Andric       DeferredDeclsToEmit.push_back(V);
2305e8d8bef9SDimitry Andric 
2306*0b57cec5SDimitry Andric   // Stop if we're out of both deferred vtables and deferred declarations.
2307*0b57cec5SDimitry Andric   if (DeferredDeclsToEmit.empty())
2308*0b57cec5SDimitry Andric     return;
2309*0b57cec5SDimitry Andric 
2310*0b57cec5SDimitry Andric   // Grab the list of decls to emit. If EmitGlobalDefinition schedules more
2311*0b57cec5SDimitry Andric   // work, it will not interfere with this.
2312*0b57cec5SDimitry Andric   std::vector<GlobalDecl> CurDeclsToEmit;
2313*0b57cec5SDimitry Andric   CurDeclsToEmit.swap(DeferredDeclsToEmit);
2314*0b57cec5SDimitry Andric 
2315*0b57cec5SDimitry Andric   for (GlobalDecl &D : CurDeclsToEmit) {
2316*0b57cec5SDimitry Andric     // We should call GetAddrOfGlobal with IsForDefinition set to true in order
2317*0b57cec5SDimitry Andric     // to get GlobalValue with exactly the type we need, not something that
2318*0b57cec5SDimitry Andric     // might had been created for another decl with the same mangled name but
2319*0b57cec5SDimitry Andric     // different type.
2320*0b57cec5SDimitry Andric     llvm::GlobalValue *GV = dyn_cast<llvm::GlobalValue>(
2321*0b57cec5SDimitry Andric         GetAddrOfGlobal(D, ForDefinition));
2322*0b57cec5SDimitry Andric 
2323*0b57cec5SDimitry Andric     // In case of different address spaces, we may still get a cast, even with
2324*0b57cec5SDimitry Andric     // IsForDefinition equal to true. Query mangled names table to get
2325*0b57cec5SDimitry Andric     // GlobalValue.
2326*0b57cec5SDimitry Andric     if (!GV)
2327*0b57cec5SDimitry Andric       GV = GetGlobalValue(getMangledName(D));
2328*0b57cec5SDimitry Andric 
2329*0b57cec5SDimitry Andric     // Make sure GetGlobalValue returned non-null.
2330*0b57cec5SDimitry Andric     assert(GV);
2331*0b57cec5SDimitry Andric 
2332*0b57cec5SDimitry Andric     // Check to see if we've already emitted this.  This is necessary
2333*0b57cec5SDimitry Andric     // for a couple of reasons: first, decls can end up in the
2334*0b57cec5SDimitry Andric     // deferred-decls queue multiple times, and second, decls can end
2335*0b57cec5SDimitry Andric     // up with definitions in unusual ways (e.g. by an extern inline
2336*0b57cec5SDimitry Andric     // function acquiring a strong function redefinition).  Just
2337*0b57cec5SDimitry Andric     // ignore these cases.
2338*0b57cec5SDimitry Andric     if (!GV->isDeclaration())
2339*0b57cec5SDimitry Andric       continue;
2340*0b57cec5SDimitry Andric 
2341a7dea167SDimitry Andric     // If this is OpenMP, check if it is legal to emit this global normally.
2342a7dea167SDimitry Andric     if (LangOpts.OpenMP && OpenMPRuntime && OpenMPRuntime->emitTargetGlobal(D))
2343a7dea167SDimitry Andric       continue;
2344a7dea167SDimitry Andric 
2345*0b57cec5SDimitry Andric     // Otherwise, emit the definition and move on to the next one.
2346*0b57cec5SDimitry Andric     EmitGlobalDefinition(D, GV);
2347*0b57cec5SDimitry Andric 
2348*0b57cec5SDimitry Andric     // If we found out that we need to emit more decls, do that recursively.
2349*0b57cec5SDimitry Andric     // This has the advantage that the decls are emitted in a DFS and related
2350*0b57cec5SDimitry Andric     // ones are close together, which is convenient for testing.
2351*0b57cec5SDimitry Andric     if (!DeferredVTables.empty() || !DeferredDeclsToEmit.empty()) {
2352*0b57cec5SDimitry Andric       EmitDeferred();
2353*0b57cec5SDimitry Andric       assert(DeferredVTables.empty() && DeferredDeclsToEmit.empty());
2354*0b57cec5SDimitry Andric     }
2355*0b57cec5SDimitry Andric   }
2356*0b57cec5SDimitry Andric }
2357*0b57cec5SDimitry Andric 
2358*0b57cec5SDimitry Andric void CodeGenModule::EmitVTablesOpportunistically() {
2359*0b57cec5SDimitry Andric   // Try to emit external vtables as available_externally if they have emitted
2360*0b57cec5SDimitry Andric   // all inlined virtual functions.  It runs after EmitDeferred() and therefore
2361*0b57cec5SDimitry Andric   // is not allowed to create new references to things that need to be emitted
2362*0b57cec5SDimitry Andric   // lazily. Note that it also uses fact that we eagerly emitting RTTI.
2363*0b57cec5SDimitry Andric 
2364*0b57cec5SDimitry Andric   assert((OpportunisticVTables.empty() || shouldOpportunisticallyEmitVTables())
2365*0b57cec5SDimitry Andric          && "Only emit opportunistic vtables with optimizations");
2366*0b57cec5SDimitry Andric 
2367*0b57cec5SDimitry Andric   for (const CXXRecordDecl *RD : OpportunisticVTables) {
2368*0b57cec5SDimitry Andric     assert(getVTables().isVTableExternal(RD) &&
2369*0b57cec5SDimitry Andric            "This queue should only contain external vtables");
2370*0b57cec5SDimitry Andric     if (getCXXABI().canSpeculativelyEmitVTable(RD))
2371*0b57cec5SDimitry Andric       VTables.GenerateClassData(RD);
2372*0b57cec5SDimitry Andric   }
2373*0b57cec5SDimitry Andric   OpportunisticVTables.clear();
2374*0b57cec5SDimitry Andric }
2375*0b57cec5SDimitry Andric 
2376*0b57cec5SDimitry Andric void CodeGenModule::EmitGlobalAnnotations() {
2377*0b57cec5SDimitry Andric   if (Annotations.empty())
2378*0b57cec5SDimitry Andric     return;
2379*0b57cec5SDimitry Andric 
2380*0b57cec5SDimitry Andric   // Create a new global variable for the ConstantStruct in the Module.
2381*0b57cec5SDimitry Andric   llvm::Constant *Array = llvm::ConstantArray::get(llvm::ArrayType::get(
2382*0b57cec5SDimitry Andric     Annotations[0]->getType(), Annotations.size()), Annotations);
2383*0b57cec5SDimitry Andric   auto *gv = new llvm::GlobalVariable(getModule(), Array->getType(), false,
2384*0b57cec5SDimitry Andric                                       llvm::GlobalValue::AppendingLinkage,
2385*0b57cec5SDimitry Andric                                       Array, "llvm.global.annotations");
2386*0b57cec5SDimitry Andric   gv->setSection(AnnotationSection);
2387*0b57cec5SDimitry Andric }
2388*0b57cec5SDimitry Andric 
2389*0b57cec5SDimitry Andric llvm::Constant *CodeGenModule::EmitAnnotationString(StringRef Str) {
2390*0b57cec5SDimitry Andric   llvm::Constant *&AStr = AnnotationStrings[Str];
2391*0b57cec5SDimitry Andric   if (AStr)
2392*0b57cec5SDimitry Andric     return AStr;
2393*0b57cec5SDimitry Andric 
2394*0b57cec5SDimitry Andric   // Not found yet, create a new global.
2395*0b57cec5SDimitry Andric   llvm::Constant *s = llvm::ConstantDataArray::getString(getLLVMContext(), Str);
2396*0b57cec5SDimitry Andric   auto *gv =
2397*0b57cec5SDimitry Andric       new llvm::GlobalVariable(getModule(), s->getType(), true,
2398*0b57cec5SDimitry Andric                                llvm::GlobalValue::PrivateLinkage, s, ".str");
2399*0b57cec5SDimitry Andric   gv->setSection(AnnotationSection);
2400*0b57cec5SDimitry Andric   gv->setUnnamedAddr(llvm::GlobalValue::UnnamedAddr::Global);
2401*0b57cec5SDimitry Andric   AStr = gv;
2402*0b57cec5SDimitry Andric   return gv;
2403*0b57cec5SDimitry Andric }
2404*0b57cec5SDimitry Andric 
2405*0b57cec5SDimitry Andric llvm::Constant *CodeGenModule::EmitAnnotationUnit(SourceLocation Loc) {
2406*0b57cec5SDimitry Andric   SourceManager &SM = getContext().getSourceManager();
2407*0b57cec5SDimitry Andric   PresumedLoc PLoc = SM.getPresumedLoc(Loc);
2408*0b57cec5SDimitry Andric   if (PLoc.isValid())
2409*0b57cec5SDimitry Andric     return EmitAnnotationString(PLoc.getFilename());
2410*0b57cec5SDimitry Andric   return EmitAnnotationString(SM.getBufferName(Loc));
2411*0b57cec5SDimitry Andric }
2412*0b57cec5SDimitry Andric 
2413*0b57cec5SDimitry Andric llvm::Constant *CodeGenModule::EmitAnnotationLineNo(SourceLocation L) {
2414*0b57cec5SDimitry Andric   SourceManager &SM = getContext().getSourceManager();
2415*0b57cec5SDimitry Andric   PresumedLoc PLoc = SM.getPresumedLoc(L);
2416*0b57cec5SDimitry Andric   unsigned LineNo = PLoc.isValid() ? PLoc.getLine() :
2417*0b57cec5SDimitry Andric     SM.getExpansionLineNumber(L);
2418*0b57cec5SDimitry Andric   return llvm::ConstantInt::get(Int32Ty, LineNo);
2419*0b57cec5SDimitry Andric }
2420*0b57cec5SDimitry Andric 
2421e8d8bef9SDimitry Andric llvm::Constant *CodeGenModule::EmitAnnotationArgs(const AnnotateAttr *Attr) {
2422e8d8bef9SDimitry Andric   ArrayRef<Expr *> Exprs = {Attr->args_begin(), Attr->args_size()};
2423e8d8bef9SDimitry Andric   if (Exprs.empty())
2424e8d8bef9SDimitry Andric     return llvm::ConstantPointerNull::get(Int8PtrTy);
2425e8d8bef9SDimitry Andric 
2426e8d8bef9SDimitry Andric   llvm::FoldingSetNodeID ID;
2427e8d8bef9SDimitry Andric   for (Expr *E : Exprs) {
2428e8d8bef9SDimitry Andric     ID.Add(cast<clang::ConstantExpr>(E)->getAPValueResult());
2429e8d8bef9SDimitry Andric   }
2430e8d8bef9SDimitry Andric   llvm::Constant *&Lookup = AnnotationArgs[ID.ComputeHash()];
2431e8d8bef9SDimitry Andric   if (Lookup)
2432e8d8bef9SDimitry Andric     return Lookup;
2433e8d8bef9SDimitry Andric 
2434e8d8bef9SDimitry Andric   llvm::SmallVector<llvm::Constant *, 4> LLVMArgs;
2435e8d8bef9SDimitry Andric   LLVMArgs.reserve(Exprs.size());
2436e8d8bef9SDimitry Andric   ConstantEmitter ConstEmiter(*this);
2437e8d8bef9SDimitry Andric   llvm::transform(Exprs, std::back_inserter(LLVMArgs), [&](const Expr *E) {
2438e8d8bef9SDimitry Andric     const auto *CE = cast<clang::ConstantExpr>(E);
2439e8d8bef9SDimitry Andric     return ConstEmiter.emitAbstract(CE->getBeginLoc(), CE->getAPValueResult(),
2440e8d8bef9SDimitry Andric                                     CE->getType());
2441e8d8bef9SDimitry Andric   });
2442e8d8bef9SDimitry Andric   auto *Struct = llvm::ConstantStruct::getAnon(LLVMArgs);
2443e8d8bef9SDimitry Andric   auto *GV = new llvm::GlobalVariable(getModule(), Struct->getType(), true,
2444e8d8bef9SDimitry Andric                                       llvm::GlobalValue::PrivateLinkage, Struct,
2445e8d8bef9SDimitry Andric                                       ".args");
2446e8d8bef9SDimitry Andric   GV->setSection(AnnotationSection);
2447e8d8bef9SDimitry Andric   GV->setUnnamedAddr(llvm::GlobalValue::UnnamedAddr::Global);
2448e8d8bef9SDimitry Andric   auto *Bitcasted = llvm::ConstantExpr::getBitCast(GV, Int8PtrTy);
2449e8d8bef9SDimitry Andric 
2450e8d8bef9SDimitry Andric   Lookup = Bitcasted;
2451e8d8bef9SDimitry Andric   return Bitcasted;
2452e8d8bef9SDimitry Andric }
2453e8d8bef9SDimitry Andric 
2454*0b57cec5SDimitry Andric llvm::Constant *CodeGenModule::EmitAnnotateAttr(llvm::GlobalValue *GV,
2455*0b57cec5SDimitry Andric                                                 const AnnotateAttr *AA,
2456*0b57cec5SDimitry Andric                                                 SourceLocation L) {
2457*0b57cec5SDimitry Andric   // Get the globals for file name, annotation, and the line number.
2458*0b57cec5SDimitry Andric   llvm::Constant *AnnoGV = EmitAnnotationString(AA->getAnnotation()),
2459*0b57cec5SDimitry Andric                  *UnitGV = EmitAnnotationUnit(L),
2460e8d8bef9SDimitry Andric                  *LineNoCst = EmitAnnotationLineNo(L),
2461e8d8bef9SDimitry Andric                  *Args = EmitAnnotationArgs(AA);
2462*0b57cec5SDimitry Andric 
2463480093f4SDimitry Andric   llvm::Constant *ASZeroGV = GV;
2464480093f4SDimitry Andric   if (GV->getAddressSpace() != 0) {
2465480093f4SDimitry Andric     ASZeroGV = llvm::ConstantExpr::getAddrSpaceCast(
2466480093f4SDimitry Andric                    GV, GV->getValueType()->getPointerTo(0));
2467480093f4SDimitry Andric   }
2468480093f4SDimitry Andric 
2469*0b57cec5SDimitry Andric   // Create the ConstantStruct for the global annotation.
2470e8d8bef9SDimitry Andric   llvm::Constant *Fields[] = {
2471480093f4SDimitry Andric       llvm::ConstantExpr::getBitCast(ASZeroGV, Int8PtrTy),
2472*0b57cec5SDimitry Andric       llvm::ConstantExpr::getBitCast(AnnoGV, Int8PtrTy),
2473*0b57cec5SDimitry Andric       llvm::ConstantExpr::getBitCast(UnitGV, Int8PtrTy),
2474e8d8bef9SDimitry Andric       LineNoCst,
2475e8d8bef9SDimitry Andric       Args,
2476*0b57cec5SDimitry Andric   };
2477*0b57cec5SDimitry Andric   return llvm::ConstantStruct::getAnon(Fields);
2478*0b57cec5SDimitry Andric }
2479*0b57cec5SDimitry Andric 
2480*0b57cec5SDimitry Andric void CodeGenModule::AddGlobalAnnotations(const ValueDecl *D,
2481*0b57cec5SDimitry Andric                                          llvm::GlobalValue *GV) {
2482*0b57cec5SDimitry Andric   assert(D->hasAttr<AnnotateAttr>() && "no annotate attribute");
2483*0b57cec5SDimitry Andric   // Get the struct elements for these annotations.
2484*0b57cec5SDimitry Andric   for (const auto *I : D->specific_attrs<AnnotateAttr>())
2485*0b57cec5SDimitry Andric     Annotations.push_back(EmitAnnotateAttr(GV, I, D->getLocation()));
2486*0b57cec5SDimitry Andric }
2487*0b57cec5SDimitry Andric 
2488*0b57cec5SDimitry Andric bool CodeGenModule::isInSanitizerBlacklist(SanitizerMask Kind,
2489*0b57cec5SDimitry Andric                                            llvm::Function *Fn,
2490*0b57cec5SDimitry Andric                                            SourceLocation Loc) const {
2491*0b57cec5SDimitry Andric   const auto &SanitizerBL = getContext().getSanitizerBlacklist();
2492*0b57cec5SDimitry Andric   // Blacklist by function name.
2493*0b57cec5SDimitry Andric   if (SanitizerBL.isBlacklistedFunction(Kind, Fn->getName()))
2494*0b57cec5SDimitry Andric     return true;
2495*0b57cec5SDimitry Andric   // Blacklist by location.
2496*0b57cec5SDimitry Andric   if (Loc.isValid())
2497*0b57cec5SDimitry Andric     return SanitizerBL.isBlacklistedLocation(Kind, Loc);
2498*0b57cec5SDimitry Andric   // If location is unknown, this may be a compiler-generated function. Assume
2499*0b57cec5SDimitry Andric   // it's located in the main file.
2500*0b57cec5SDimitry Andric   auto &SM = Context.getSourceManager();
2501*0b57cec5SDimitry Andric   if (const auto *MainFile = SM.getFileEntryForID(SM.getMainFileID())) {
2502*0b57cec5SDimitry Andric     return SanitizerBL.isBlacklistedFile(Kind, MainFile->getName());
2503*0b57cec5SDimitry Andric   }
2504*0b57cec5SDimitry Andric   return false;
2505*0b57cec5SDimitry Andric }
2506*0b57cec5SDimitry Andric 
2507*0b57cec5SDimitry Andric bool CodeGenModule::isInSanitizerBlacklist(llvm::GlobalVariable *GV,
2508*0b57cec5SDimitry Andric                                            SourceLocation Loc, QualType Ty,
2509*0b57cec5SDimitry Andric                                            StringRef Category) const {
2510*0b57cec5SDimitry Andric   // For now globals can be blacklisted only in ASan and KASan.
2511*0b57cec5SDimitry Andric   const SanitizerMask EnabledAsanMask =
2512*0b57cec5SDimitry Andric       LangOpts.Sanitize.Mask &
2513*0b57cec5SDimitry Andric       (SanitizerKind::Address | SanitizerKind::KernelAddress |
2514*0b57cec5SDimitry Andric        SanitizerKind::HWAddress | SanitizerKind::KernelHWAddress |
2515*0b57cec5SDimitry Andric        SanitizerKind::MemTag);
2516*0b57cec5SDimitry Andric   if (!EnabledAsanMask)
2517*0b57cec5SDimitry Andric     return false;
2518*0b57cec5SDimitry Andric   const auto &SanitizerBL = getContext().getSanitizerBlacklist();
2519*0b57cec5SDimitry Andric   if (SanitizerBL.isBlacklistedGlobal(EnabledAsanMask, GV->getName(), Category))
2520*0b57cec5SDimitry Andric     return true;
2521*0b57cec5SDimitry Andric   if (SanitizerBL.isBlacklistedLocation(EnabledAsanMask, Loc, Category))
2522*0b57cec5SDimitry Andric     return true;
2523*0b57cec5SDimitry Andric   // Check global type.
2524*0b57cec5SDimitry Andric   if (!Ty.isNull()) {
2525*0b57cec5SDimitry Andric     // Drill down the array types: if global variable of a fixed type is
2526*0b57cec5SDimitry Andric     // blacklisted, we also don't instrument arrays of them.
2527*0b57cec5SDimitry Andric     while (auto AT = dyn_cast<ArrayType>(Ty.getTypePtr()))
2528*0b57cec5SDimitry Andric       Ty = AT->getElementType();
2529*0b57cec5SDimitry Andric     Ty = Ty.getCanonicalType().getUnqualifiedType();
2530*0b57cec5SDimitry Andric     // We allow to blacklist only record types (classes, structs etc.)
2531*0b57cec5SDimitry Andric     if (Ty->isRecordType()) {
2532*0b57cec5SDimitry Andric       std::string TypeStr = Ty.getAsString(getContext().getPrintingPolicy());
2533*0b57cec5SDimitry Andric       if (SanitizerBL.isBlacklistedType(EnabledAsanMask, TypeStr, Category))
2534*0b57cec5SDimitry Andric         return true;
2535*0b57cec5SDimitry Andric     }
2536*0b57cec5SDimitry Andric   }
2537*0b57cec5SDimitry Andric   return false;
2538*0b57cec5SDimitry Andric }
2539*0b57cec5SDimitry Andric 
2540*0b57cec5SDimitry Andric bool CodeGenModule::imbueXRayAttrs(llvm::Function *Fn, SourceLocation Loc,
2541*0b57cec5SDimitry Andric                                    StringRef Category) const {
2542*0b57cec5SDimitry Andric   const auto &XRayFilter = getContext().getXRayFilter();
2543*0b57cec5SDimitry Andric   using ImbueAttr = XRayFunctionFilter::ImbueAttribute;
2544*0b57cec5SDimitry Andric   auto Attr = ImbueAttr::NONE;
2545*0b57cec5SDimitry Andric   if (Loc.isValid())
2546*0b57cec5SDimitry Andric     Attr = XRayFilter.shouldImbueLocation(Loc, Category);
2547*0b57cec5SDimitry Andric   if (Attr == ImbueAttr::NONE)
2548*0b57cec5SDimitry Andric     Attr = XRayFilter.shouldImbueFunction(Fn->getName());
2549*0b57cec5SDimitry Andric   switch (Attr) {
2550*0b57cec5SDimitry Andric   case ImbueAttr::NONE:
2551*0b57cec5SDimitry Andric     return false;
2552*0b57cec5SDimitry Andric   case ImbueAttr::ALWAYS:
2553*0b57cec5SDimitry Andric     Fn->addFnAttr("function-instrument", "xray-always");
2554*0b57cec5SDimitry Andric     break;
2555*0b57cec5SDimitry Andric   case ImbueAttr::ALWAYS_ARG1:
2556*0b57cec5SDimitry Andric     Fn->addFnAttr("function-instrument", "xray-always");
2557*0b57cec5SDimitry Andric     Fn->addFnAttr("xray-log-args", "1");
2558*0b57cec5SDimitry Andric     break;
2559*0b57cec5SDimitry Andric   case ImbueAttr::NEVER:
2560*0b57cec5SDimitry Andric     Fn->addFnAttr("function-instrument", "xray-never");
2561*0b57cec5SDimitry Andric     break;
2562*0b57cec5SDimitry Andric   }
2563*0b57cec5SDimitry Andric   return true;
2564*0b57cec5SDimitry Andric }
2565*0b57cec5SDimitry Andric 
2566e8d8bef9SDimitry Andric bool CodeGenModule::isProfileInstrExcluded(llvm::Function *Fn,
2567e8d8bef9SDimitry Andric                                            SourceLocation Loc) const {
2568e8d8bef9SDimitry Andric   const auto &ProfileList = getContext().getProfileList();
2569e8d8bef9SDimitry Andric   // If the profile list is empty, then instrument everything.
2570e8d8bef9SDimitry Andric   if (ProfileList.isEmpty())
2571e8d8bef9SDimitry Andric     return false;
2572e8d8bef9SDimitry Andric   CodeGenOptions::ProfileInstrKind Kind = getCodeGenOpts().getProfileInstr();
2573e8d8bef9SDimitry Andric   // First, check the function name.
2574e8d8bef9SDimitry Andric   Optional<bool> V = ProfileList.isFunctionExcluded(Fn->getName(), Kind);
2575e8d8bef9SDimitry Andric   if (V.hasValue())
2576e8d8bef9SDimitry Andric     return *V;
2577e8d8bef9SDimitry Andric   // Next, check the source location.
2578e8d8bef9SDimitry Andric   if (Loc.isValid()) {
2579e8d8bef9SDimitry Andric     Optional<bool> V = ProfileList.isLocationExcluded(Loc, Kind);
2580e8d8bef9SDimitry Andric     if (V.hasValue())
2581e8d8bef9SDimitry Andric       return *V;
2582e8d8bef9SDimitry Andric   }
2583e8d8bef9SDimitry Andric   // If location is unknown, this may be a compiler-generated function. Assume
2584e8d8bef9SDimitry Andric   // it's located in the main file.
2585e8d8bef9SDimitry Andric   auto &SM = Context.getSourceManager();
2586e8d8bef9SDimitry Andric   if (const auto *MainFile = SM.getFileEntryForID(SM.getMainFileID())) {
2587e8d8bef9SDimitry Andric     Optional<bool> V = ProfileList.isFileExcluded(MainFile->getName(), Kind);
2588e8d8bef9SDimitry Andric     if (V.hasValue())
2589e8d8bef9SDimitry Andric       return *V;
2590e8d8bef9SDimitry Andric   }
2591e8d8bef9SDimitry Andric   return ProfileList.getDefault();
2592e8d8bef9SDimitry Andric }
2593e8d8bef9SDimitry Andric 
2594*0b57cec5SDimitry Andric bool CodeGenModule::MustBeEmitted(const ValueDecl *Global) {
2595*0b57cec5SDimitry Andric   // Never defer when EmitAllDecls is specified.
2596*0b57cec5SDimitry Andric   if (LangOpts.EmitAllDecls)
2597*0b57cec5SDimitry Andric     return true;
2598*0b57cec5SDimitry Andric 
2599*0b57cec5SDimitry Andric   if (CodeGenOpts.KeepStaticConsts) {
2600*0b57cec5SDimitry Andric     const auto *VD = dyn_cast<VarDecl>(Global);
2601*0b57cec5SDimitry Andric     if (VD && VD->getType().isConstQualified() &&
2602*0b57cec5SDimitry Andric         VD->getStorageDuration() == SD_Static)
2603*0b57cec5SDimitry Andric       return true;
2604*0b57cec5SDimitry Andric   }
2605*0b57cec5SDimitry Andric 
2606*0b57cec5SDimitry Andric   return getContext().DeclMustBeEmitted(Global);
2607*0b57cec5SDimitry Andric }
2608*0b57cec5SDimitry Andric 
2609*0b57cec5SDimitry Andric bool CodeGenModule::MayBeEmittedEagerly(const ValueDecl *Global) {
2610a7dea167SDimitry Andric   if (const auto *FD = dyn_cast<FunctionDecl>(Global)) {
2611*0b57cec5SDimitry Andric     if (FD->getTemplateSpecializationKind() == TSK_ImplicitInstantiation)
2612*0b57cec5SDimitry Andric       // Implicit template instantiations may change linkage if they are later
2613*0b57cec5SDimitry Andric       // explicitly instantiated, so they should not be emitted eagerly.
2614*0b57cec5SDimitry Andric       return false;
2615a7dea167SDimitry Andric     // In OpenMP 5.0 function may be marked as device_type(nohost) and we should
2616a7dea167SDimitry Andric     // not emit them eagerly unless we sure that the function must be emitted on
2617a7dea167SDimitry Andric     // the host.
2618a7dea167SDimitry Andric     if (LangOpts.OpenMP >= 50 && !LangOpts.OpenMPSimd &&
2619a7dea167SDimitry Andric         !LangOpts.OpenMPIsDevice &&
2620a7dea167SDimitry Andric         !OMPDeclareTargetDeclAttr::getDeviceType(FD) &&
2621a7dea167SDimitry Andric         !FD->isUsed(/*CheckUsedAttr=*/false) && !FD->isReferenced())
2622a7dea167SDimitry Andric       return false;
2623a7dea167SDimitry Andric   }
2624*0b57cec5SDimitry Andric   if (const auto *VD = dyn_cast<VarDecl>(Global))
2625*0b57cec5SDimitry Andric     if (Context.getInlineVariableDefinitionKind(VD) ==
2626*0b57cec5SDimitry Andric         ASTContext::InlineVariableDefinitionKind::WeakUnknown)
2627*0b57cec5SDimitry Andric       // A definition of an inline constexpr static data member may change
2628*0b57cec5SDimitry Andric       // linkage later if it's redeclared outside the class.
2629*0b57cec5SDimitry Andric       return false;
2630*0b57cec5SDimitry Andric   // If OpenMP is enabled and threadprivates must be generated like TLS, delay
2631*0b57cec5SDimitry Andric   // codegen for global variables, because they may be marked as threadprivate.
2632*0b57cec5SDimitry Andric   if (LangOpts.OpenMP && LangOpts.OpenMPUseTLS &&
2633*0b57cec5SDimitry Andric       getContext().getTargetInfo().isTLSSupported() && isa<VarDecl>(Global) &&
2634*0b57cec5SDimitry Andric       !isTypeConstant(Global->getType(), false) &&
2635*0b57cec5SDimitry Andric       !OMPDeclareTargetDeclAttr::isDeclareTargetDeclaration(Global))
2636*0b57cec5SDimitry Andric     return false;
2637*0b57cec5SDimitry Andric 
2638*0b57cec5SDimitry Andric   return true;
2639*0b57cec5SDimitry Andric }
2640*0b57cec5SDimitry Andric 
26415ffd83dbSDimitry Andric ConstantAddress CodeGenModule::GetAddrOfMSGuidDecl(const MSGuidDecl *GD) {
26425ffd83dbSDimitry Andric   StringRef Name = getMangledName(GD);
2643*0b57cec5SDimitry Andric 
2644*0b57cec5SDimitry Andric   // The UUID descriptor should be pointer aligned.
2645*0b57cec5SDimitry Andric   CharUnits Alignment = CharUnits::fromQuantity(PointerAlignInBytes);
2646*0b57cec5SDimitry Andric 
2647*0b57cec5SDimitry Andric   // Look for an existing global.
2648*0b57cec5SDimitry Andric   if (llvm::GlobalVariable *GV = getModule().getNamedGlobal(Name))
2649*0b57cec5SDimitry Andric     return ConstantAddress(GV, Alignment);
2650*0b57cec5SDimitry Andric 
26515ffd83dbSDimitry Andric   ConstantEmitter Emitter(*this);
26525ffd83dbSDimitry Andric   llvm::Constant *Init;
26535ffd83dbSDimitry Andric 
26545ffd83dbSDimitry Andric   APValue &V = GD->getAsAPValue();
26555ffd83dbSDimitry Andric   if (!V.isAbsent()) {
26565ffd83dbSDimitry Andric     // If possible, emit the APValue version of the initializer. In particular,
26575ffd83dbSDimitry Andric     // this gets the type of the constant right.
26585ffd83dbSDimitry Andric     Init = Emitter.emitForInitializer(
26595ffd83dbSDimitry Andric         GD->getAsAPValue(), GD->getType().getAddressSpace(), GD->getType());
26605ffd83dbSDimitry Andric   } else {
26615ffd83dbSDimitry Andric     // As a fallback, directly construct the constant.
26625ffd83dbSDimitry Andric     // FIXME: This may get padding wrong under esoteric struct layout rules.
26635ffd83dbSDimitry Andric     // MSVC appears to create a complete type 'struct __s_GUID' that it
26645ffd83dbSDimitry Andric     // presumably uses to represent these constants.
26655ffd83dbSDimitry Andric     MSGuidDecl::Parts Parts = GD->getParts();
26665ffd83dbSDimitry Andric     llvm::Constant *Fields[4] = {
26675ffd83dbSDimitry Andric         llvm::ConstantInt::get(Int32Ty, Parts.Part1),
26685ffd83dbSDimitry Andric         llvm::ConstantInt::get(Int16Ty, Parts.Part2),
26695ffd83dbSDimitry Andric         llvm::ConstantInt::get(Int16Ty, Parts.Part3),
26705ffd83dbSDimitry Andric         llvm::ConstantDataArray::getRaw(
26715ffd83dbSDimitry Andric             StringRef(reinterpret_cast<char *>(Parts.Part4And5), 8), 8,
26725ffd83dbSDimitry Andric             Int8Ty)};
26735ffd83dbSDimitry Andric     Init = llvm::ConstantStruct::getAnon(Fields);
26745ffd83dbSDimitry Andric   }
2675*0b57cec5SDimitry Andric 
2676*0b57cec5SDimitry Andric   auto *GV = new llvm::GlobalVariable(
2677*0b57cec5SDimitry Andric       getModule(), Init->getType(),
2678*0b57cec5SDimitry Andric       /*isConstant=*/true, llvm::GlobalValue::LinkOnceODRLinkage, Init, Name);
2679*0b57cec5SDimitry Andric   if (supportsCOMDAT())
2680*0b57cec5SDimitry Andric     GV->setComdat(TheModule.getOrInsertComdat(GV->getName()));
2681*0b57cec5SDimitry Andric   setDSOLocal(GV);
26825ffd83dbSDimitry Andric 
26835ffd83dbSDimitry Andric   llvm::Constant *Addr = GV;
26845ffd83dbSDimitry Andric   if (!V.isAbsent()) {
26855ffd83dbSDimitry Andric     Emitter.finalize(GV);
26865ffd83dbSDimitry Andric   } else {
26875ffd83dbSDimitry Andric     llvm::Type *Ty = getTypes().ConvertTypeForMem(GD->getType());
26885ffd83dbSDimitry Andric     Addr = llvm::ConstantExpr::getBitCast(
26895ffd83dbSDimitry Andric         GV, Ty->getPointerTo(GV->getAddressSpace()));
26905ffd83dbSDimitry Andric   }
26915ffd83dbSDimitry Andric   return ConstantAddress(Addr, Alignment);
2692*0b57cec5SDimitry Andric }
2693*0b57cec5SDimitry Andric 
2694e8d8bef9SDimitry Andric ConstantAddress CodeGenModule::GetAddrOfTemplateParamObject(
2695e8d8bef9SDimitry Andric     const TemplateParamObjectDecl *TPO) {
2696e8d8bef9SDimitry Andric   StringRef Name = getMangledName(TPO);
2697e8d8bef9SDimitry Andric   CharUnits Alignment = getNaturalTypeAlignment(TPO->getType());
2698e8d8bef9SDimitry Andric 
2699e8d8bef9SDimitry Andric   if (llvm::GlobalVariable *GV = getModule().getNamedGlobal(Name))
2700e8d8bef9SDimitry Andric     return ConstantAddress(GV, Alignment);
2701e8d8bef9SDimitry Andric 
2702e8d8bef9SDimitry Andric   ConstantEmitter Emitter(*this);
2703e8d8bef9SDimitry Andric   llvm::Constant *Init = Emitter.emitForInitializer(
2704e8d8bef9SDimitry Andric         TPO->getValue(), TPO->getType().getAddressSpace(), TPO->getType());
2705e8d8bef9SDimitry Andric 
2706e8d8bef9SDimitry Andric   if (!Init) {
2707e8d8bef9SDimitry Andric     ErrorUnsupported(TPO, "template parameter object");
2708e8d8bef9SDimitry Andric     return ConstantAddress::invalid();
2709e8d8bef9SDimitry Andric   }
2710e8d8bef9SDimitry Andric 
2711e8d8bef9SDimitry Andric   auto *GV = new llvm::GlobalVariable(
2712e8d8bef9SDimitry Andric       getModule(), Init->getType(),
2713e8d8bef9SDimitry Andric       /*isConstant=*/true, llvm::GlobalValue::LinkOnceODRLinkage, Init, Name);
2714e8d8bef9SDimitry Andric   if (supportsCOMDAT())
2715e8d8bef9SDimitry Andric     GV->setComdat(TheModule.getOrInsertComdat(GV->getName()));
2716e8d8bef9SDimitry Andric   Emitter.finalize(GV);
2717e8d8bef9SDimitry Andric 
2718e8d8bef9SDimitry Andric   return ConstantAddress(GV, Alignment);
2719e8d8bef9SDimitry Andric }
2720e8d8bef9SDimitry Andric 
2721*0b57cec5SDimitry Andric ConstantAddress CodeGenModule::GetWeakRefReference(const ValueDecl *VD) {
2722*0b57cec5SDimitry Andric   const AliasAttr *AA = VD->getAttr<AliasAttr>();
2723*0b57cec5SDimitry Andric   assert(AA && "No alias?");
2724*0b57cec5SDimitry Andric 
2725*0b57cec5SDimitry Andric   CharUnits Alignment = getContext().getDeclAlign(VD);
2726*0b57cec5SDimitry Andric   llvm::Type *DeclTy = getTypes().ConvertTypeForMem(VD->getType());
2727*0b57cec5SDimitry Andric 
2728*0b57cec5SDimitry Andric   // See if there is already something with the target's name in the module.
2729*0b57cec5SDimitry Andric   llvm::GlobalValue *Entry = GetGlobalValue(AA->getAliasee());
2730*0b57cec5SDimitry Andric   if (Entry) {
2731*0b57cec5SDimitry Andric     unsigned AS = getContext().getTargetAddressSpace(VD->getType());
2732*0b57cec5SDimitry Andric     auto Ptr = llvm::ConstantExpr::getBitCast(Entry, DeclTy->getPointerTo(AS));
2733*0b57cec5SDimitry Andric     return ConstantAddress(Ptr, Alignment);
2734*0b57cec5SDimitry Andric   }
2735*0b57cec5SDimitry Andric 
2736*0b57cec5SDimitry Andric   llvm::Constant *Aliasee;
2737*0b57cec5SDimitry Andric   if (isa<llvm::FunctionType>(DeclTy))
2738*0b57cec5SDimitry Andric     Aliasee = GetOrCreateLLVMFunction(AA->getAliasee(), DeclTy,
2739*0b57cec5SDimitry Andric                                       GlobalDecl(cast<FunctionDecl>(VD)),
2740*0b57cec5SDimitry Andric                                       /*ForVTable=*/false);
2741*0b57cec5SDimitry Andric   else
2742*0b57cec5SDimitry Andric     Aliasee = GetOrCreateLLVMGlobal(AA->getAliasee(),
2743*0b57cec5SDimitry Andric                                     llvm::PointerType::getUnqual(DeclTy),
2744*0b57cec5SDimitry Andric                                     nullptr);
2745*0b57cec5SDimitry Andric 
2746*0b57cec5SDimitry Andric   auto *F = cast<llvm::GlobalValue>(Aliasee);
2747*0b57cec5SDimitry Andric   F->setLinkage(llvm::Function::ExternalWeakLinkage);
2748*0b57cec5SDimitry Andric   WeakRefReferences.insert(F);
2749*0b57cec5SDimitry Andric 
2750*0b57cec5SDimitry Andric   return ConstantAddress(Aliasee, Alignment);
2751*0b57cec5SDimitry Andric }
2752*0b57cec5SDimitry Andric 
2753*0b57cec5SDimitry Andric void CodeGenModule::EmitGlobal(GlobalDecl GD) {
2754*0b57cec5SDimitry Andric   const auto *Global = cast<ValueDecl>(GD.getDecl());
2755*0b57cec5SDimitry Andric 
2756*0b57cec5SDimitry Andric   // Weak references don't produce any output by themselves.
2757*0b57cec5SDimitry Andric   if (Global->hasAttr<WeakRefAttr>())
2758*0b57cec5SDimitry Andric     return;
2759*0b57cec5SDimitry Andric 
2760*0b57cec5SDimitry Andric   // If this is an alias definition (which otherwise looks like a declaration)
2761*0b57cec5SDimitry Andric   // emit it now.
2762*0b57cec5SDimitry Andric   if (Global->hasAttr<AliasAttr>())
2763*0b57cec5SDimitry Andric     return EmitAliasDefinition(GD);
2764*0b57cec5SDimitry Andric 
2765*0b57cec5SDimitry Andric   // IFunc like an alias whose value is resolved at runtime by calling resolver.
2766*0b57cec5SDimitry Andric   if (Global->hasAttr<IFuncAttr>())
2767*0b57cec5SDimitry Andric     return emitIFuncDefinition(GD);
2768*0b57cec5SDimitry Andric 
2769*0b57cec5SDimitry Andric   // If this is a cpu_dispatch multiversion function, emit the resolver.
2770*0b57cec5SDimitry Andric   if (Global->hasAttr<CPUDispatchAttr>())
2771*0b57cec5SDimitry Andric     return emitCPUDispatchDefinition(GD);
2772*0b57cec5SDimitry Andric 
2773*0b57cec5SDimitry Andric   // If this is CUDA, be selective about which declarations we emit.
2774*0b57cec5SDimitry Andric   if (LangOpts.CUDA) {
2775*0b57cec5SDimitry Andric     if (LangOpts.CUDAIsDevice) {
2776*0b57cec5SDimitry Andric       if (!Global->hasAttr<CUDADeviceAttr>() &&
2777*0b57cec5SDimitry Andric           !Global->hasAttr<CUDAGlobalAttr>() &&
2778*0b57cec5SDimitry Andric           !Global->hasAttr<CUDAConstantAttr>() &&
2779*0b57cec5SDimitry Andric           !Global->hasAttr<CUDASharedAttr>() &&
27805ffd83dbSDimitry Andric           !Global->getType()->isCUDADeviceBuiltinSurfaceType() &&
27815ffd83dbSDimitry Andric           !Global->getType()->isCUDADeviceBuiltinTextureType())
2782*0b57cec5SDimitry Andric         return;
2783*0b57cec5SDimitry Andric     } else {
2784*0b57cec5SDimitry Andric       // We need to emit host-side 'shadows' for all global
2785*0b57cec5SDimitry Andric       // device-side variables because the CUDA runtime needs their
2786*0b57cec5SDimitry Andric       // size and host-side address in order to provide access to
2787*0b57cec5SDimitry Andric       // their device-side incarnations.
2788*0b57cec5SDimitry Andric 
2789*0b57cec5SDimitry Andric       // So device-only functions are the only things we skip.
2790*0b57cec5SDimitry Andric       if (isa<FunctionDecl>(Global) && !Global->hasAttr<CUDAHostAttr>() &&
2791*0b57cec5SDimitry Andric           Global->hasAttr<CUDADeviceAttr>())
2792*0b57cec5SDimitry Andric         return;
2793*0b57cec5SDimitry Andric 
2794*0b57cec5SDimitry Andric       assert((isa<FunctionDecl>(Global) || isa<VarDecl>(Global)) &&
2795*0b57cec5SDimitry Andric              "Expected Variable or Function");
2796*0b57cec5SDimitry Andric     }
2797*0b57cec5SDimitry Andric   }
2798*0b57cec5SDimitry Andric 
2799*0b57cec5SDimitry Andric   if (LangOpts.OpenMP) {
2800a7dea167SDimitry Andric     // If this is OpenMP, check if it is legal to emit this global normally.
2801*0b57cec5SDimitry Andric     if (OpenMPRuntime && OpenMPRuntime->emitTargetGlobal(GD))
2802*0b57cec5SDimitry Andric       return;
2803*0b57cec5SDimitry Andric     if (auto *DRD = dyn_cast<OMPDeclareReductionDecl>(Global)) {
2804*0b57cec5SDimitry Andric       if (MustBeEmitted(Global))
2805*0b57cec5SDimitry Andric         EmitOMPDeclareReduction(DRD);
2806*0b57cec5SDimitry Andric       return;
2807*0b57cec5SDimitry Andric     } else if (auto *DMD = dyn_cast<OMPDeclareMapperDecl>(Global)) {
2808*0b57cec5SDimitry Andric       if (MustBeEmitted(Global))
2809*0b57cec5SDimitry Andric         EmitOMPDeclareMapper(DMD);
2810*0b57cec5SDimitry Andric       return;
2811*0b57cec5SDimitry Andric     }
2812*0b57cec5SDimitry Andric   }
2813*0b57cec5SDimitry Andric 
2814*0b57cec5SDimitry Andric   // Ignore declarations, they will be emitted on their first use.
2815*0b57cec5SDimitry Andric   if (const auto *FD = dyn_cast<FunctionDecl>(Global)) {
2816*0b57cec5SDimitry Andric     // Forward declarations are emitted lazily on first use.
2817*0b57cec5SDimitry Andric     if (!FD->doesThisDeclarationHaveABody()) {
2818*0b57cec5SDimitry Andric       if (!FD->doesDeclarationForceExternallyVisibleDefinition())
2819*0b57cec5SDimitry Andric         return;
2820*0b57cec5SDimitry Andric 
2821*0b57cec5SDimitry Andric       StringRef MangledName = getMangledName(GD);
2822*0b57cec5SDimitry Andric 
2823*0b57cec5SDimitry Andric       // Compute the function info and LLVM type.
2824*0b57cec5SDimitry Andric       const CGFunctionInfo &FI = getTypes().arrangeGlobalDeclaration(GD);
2825*0b57cec5SDimitry Andric       llvm::Type *Ty = getTypes().GetFunctionType(FI);
2826*0b57cec5SDimitry Andric 
2827*0b57cec5SDimitry Andric       GetOrCreateLLVMFunction(MangledName, Ty, GD, /*ForVTable=*/false,
2828*0b57cec5SDimitry Andric                               /*DontDefer=*/false);
2829*0b57cec5SDimitry Andric       return;
2830*0b57cec5SDimitry Andric     }
2831*0b57cec5SDimitry Andric   } else {
2832*0b57cec5SDimitry Andric     const auto *VD = cast<VarDecl>(Global);
2833*0b57cec5SDimitry Andric     assert(VD->isFileVarDecl() && "Cannot emit local var decl as global.");
2834*0b57cec5SDimitry Andric     if (VD->isThisDeclarationADefinition() != VarDecl::Definition &&
2835*0b57cec5SDimitry Andric         !Context.isMSStaticDataMemberInlineDefinition(VD)) {
2836*0b57cec5SDimitry Andric       if (LangOpts.OpenMP) {
2837*0b57cec5SDimitry Andric         // Emit declaration of the must-be-emitted declare target variable.
2838*0b57cec5SDimitry Andric         if (llvm::Optional<OMPDeclareTargetDeclAttr::MapTypeTy> Res =
2839*0b57cec5SDimitry Andric                 OMPDeclareTargetDeclAttr::isDeclareTargetDeclaration(VD)) {
2840*0b57cec5SDimitry Andric           bool UnifiedMemoryEnabled =
2841*0b57cec5SDimitry Andric               getOpenMPRuntime().hasRequiresUnifiedSharedMemory();
2842*0b57cec5SDimitry Andric           if (*Res == OMPDeclareTargetDeclAttr::MT_To &&
2843*0b57cec5SDimitry Andric               !UnifiedMemoryEnabled) {
2844*0b57cec5SDimitry Andric             (void)GetAddrOfGlobalVar(VD);
2845*0b57cec5SDimitry Andric           } else {
2846*0b57cec5SDimitry Andric             assert(((*Res == OMPDeclareTargetDeclAttr::MT_Link) ||
2847*0b57cec5SDimitry Andric                     (*Res == OMPDeclareTargetDeclAttr::MT_To &&
2848*0b57cec5SDimitry Andric                      UnifiedMemoryEnabled)) &&
2849*0b57cec5SDimitry Andric                    "Link clause or to clause with unified memory expected.");
2850*0b57cec5SDimitry Andric             (void)getOpenMPRuntime().getAddrOfDeclareTargetVar(VD);
2851*0b57cec5SDimitry Andric           }
2852*0b57cec5SDimitry Andric 
2853*0b57cec5SDimitry Andric           return;
2854*0b57cec5SDimitry Andric         }
2855*0b57cec5SDimitry Andric       }
2856*0b57cec5SDimitry Andric       // If this declaration may have caused an inline variable definition to
2857*0b57cec5SDimitry Andric       // change linkage, make sure that it's emitted.
2858*0b57cec5SDimitry Andric       if (Context.getInlineVariableDefinitionKind(VD) ==
2859*0b57cec5SDimitry Andric           ASTContext::InlineVariableDefinitionKind::Strong)
2860*0b57cec5SDimitry Andric         GetAddrOfGlobalVar(VD);
2861*0b57cec5SDimitry Andric       return;
2862*0b57cec5SDimitry Andric     }
2863*0b57cec5SDimitry Andric   }
2864*0b57cec5SDimitry Andric 
2865*0b57cec5SDimitry Andric   // Defer code generation to first use when possible, e.g. if this is an inline
2866*0b57cec5SDimitry Andric   // function. If the global must always be emitted, do it eagerly if possible
2867*0b57cec5SDimitry Andric   // to benefit from cache locality.
2868*0b57cec5SDimitry Andric   if (MustBeEmitted(Global) && MayBeEmittedEagerly(Global)) {
2869*0b57cec5SDimitry Andric     // Emit the definition if it can't be deferred.
2870*0b57cec5SDimitry Andric     EmitGlobalDefinition(GD);
2871*0b57cec5SDimitry Andric     return;
2872*0b57cec5SDimitry Andric   }
2873*0b57cec5SDimitry Andric 
2874*0b57cec5SDimitry Andric   // If we're deferring emission of a C++ variable with an
2875*0b57cec5SDimitry Andric   // initializer, remember the order in which it appeared in the file.
2876*0b57cec5SDimitry Andric   if (getLangOpts().CPlusPlus && isa<VarDecl>(Global) &&
2877*0b57cec5SDimitry Andric       cast<VarDecl>(Global)->hasInit()) {
2878*0b57cec5SDimitry Andric     DelayedCXXInitPosition[Global] = CXXGlobalInits.size();
2879*0b57cec5SDimitry Andric     CXXGlobalInits.push_back(nullptr);
2880*0b57cec5SDimitry Andric   }
2881*0b57cec5SDimitry Andric 
2882*0b57cec5SDimitry Andric   StringRef MangledName = getMangledName(GD);
2883*0b57cec5SDimitry Andric   if (GetGlobalValue(MangledName) != nullptr) {
2884*0b57cec5SDimitry Andric     // The value has already been used and should therefore be emitted.
2885*0b57cec5SDimitry Andric     addDeferredDeclToEmit(GD);
2886*0b57cec5SDimitry Andric   } else if (MustBeEmitted(Global)) {
2887*0b57cec5SDimitry Andric     // The value must be emitted, but cannot be emitted eagerly.
2888*0b57cec5SDimitry Andric     assert(!MayBeEmittedEagerly(Global));
2889*0b57cec5SDimitry Andric     addDeferredDeclToEmit(GD);
2890*0b57cec5SDimitry Andric   } else {
2891*0b57cec5SDimitry Andric     // Otherwise, remember that we saw a deferred decl with this name.  The
2892*0b57cec5SDimitry Andric     // first use of the mangled name will cause it to move into
2893*0b57cec5SDimitry Andric     // DeferredDeclsToEmit.
2894*0b57cec5SDimitry Andric     DeferredDecls[MangledName] = GD;
2895*0b57cec5SDimitry Andric   }
2896*0b57cec5SDimitry Andric }
2897*0b57cec5SDimitry Andric 
2898*0b57cec5SDimitry Andric // Check if T is a class type with a destructor that's not dllimport.
2899*0b57cec5SDimitry Andric static bool HasNonDllImportDtor(QualType T) {
2900*0b57cec5SDimitry Andric   if (const auto *RT = T->getBaseElementTypeUnsafe()->getAs<RecordType>())
2901*0b57cec5SDimitry Andric     if (CXXRecordDecl *RD = dyn_cast<CXXRecordDecl>(RT->getDecl()))
2902*0b57cec5SDimitry Andric       if (RD->getDestructor() && !RD->getDestructor()->hasAttr<DLLImportAttr>())
2903*0b57cec5SDimitry Andric         return true;
2904*0b57cec5SDimitry Andric 
2905*0b57cec5SDimitry Andric   return false;
2906*0b57cec5SDimitry Andric }
2907*0b57cec5SDimitry Andric 
2908*0b57cec5SDimitry Andric namespace {
2909*0b57cec5SDimitry Andric   struct FunctionIsDirectlyRecursive
2910*0b57cec5SDimitry Andric       : public ConstStmtVisitor<FunctionIsDirectlyRecursive, bool> {
2911*0b57cec5SDimitry Andric     const StringRef Name;
2912*0b57cec5SDimitry Andric     const Builtin::Context &BI;
2913*0b57cec5SDimitry Andric     FunctionIsDirectlyRecursive(StringRef N, const Builtin::Context &C)
2914*0b57cec5SDimitry Andric         : Name(N), BI(C) {}
2915*0b57cec5SDimitry Andric 
2916*0b57cec5SDimitry Andric     bool VisitCallExpr(const CallExpr *E) {
2917*0b57cec5SDimitry Andric       const FunctionDecl *FD = E->getDirectCallee();
2918*0b57cec5SDimitry Andric       if (!FD)
2919*0b57cec5SDimitry Andric         return false;
2920*0b57cec5SDimitry Andric       AsmLabelAttr *Attr = FD->getAttr<AsmLabelAttr>();
2921*0b57cec5SDimitry Andric       if (Attr && Name == Attr->getLabel())
2922*0b57cec5SDimitry Andric         return true;
2923*0b57cec5SDimitry Andric       unsigned BuiltinID = FD->getBuiltinID();
2924*0b57cec5SDimitry Andric       if (!BuiltinID || !BI.isLibFunction(BuiltinID))
2925*0b57cec5SDimitry Andric         return false;
2926*0b57cec5SDimitry Andric       StringRef BuiltinName = BI.getName(BuiltinID);
2927*0b57cec5SDimitry Andric       if (BuiltinName.startswith("__builtin_") &&
2928*0b57cec5SDimitry Andric           Name == BuiltinName.slice(strlen("__builtin_"), StringRef::npos)) {
2929*0b57cec5SDimitry Andric         return true;
2930*0b57cec5SDimitry Andric       }
2931*0b57cec5SDimitry Andric       return false;
2932*0b57cec5SDimitry Andric     }
2933*0b57cec5SDimitry Andric 
2934*0b57cec5SDimitry Andric     bool VisitStmt(const Stmt *S) {
2935*0b57cec5SDimitry Andric       for (const Stmt *Child : S->children())
2936*0b57cec5SDimitry Andric         if (Child && this->Visit(Child))
2937*0b57cec5SDimitry Andric           return true;
2938*0b57cec5SDimitry Andric       return false;
2939*0b57cec5SDimitry Andric     }
2940*0b57cec5SDimitry Andric   };
2941*0b57cec5SDimitry Andric 
2942*0b57cec5SDimitry Andric   // Make sure we're not referencing non-imported vars or functions.
2943*0b57cec5SDimitry Andric   struct DLLImportFunctionVisitor
2944*0b57cec5SDimitry Andric       : public RecursiveASTVisitor<DLLImportFunctionVisitor> {
2945*0b57cec5SDimitry Andric     bool SafeToInline = true;
2946*0b57cec5SDimitry Andric 
2947*0b57cec5SDimitry Andric     bool shouldVisitImplicitCode() const { return true; }
2948*0b57cec5SDimitry Andric 
2949*0b57cec5SDimitry Andric     bool VisitVarDecl(VarDecl *VD) {
2950*0b57cec5SDimitry Andric       if (VD->getTLSKind()) {
2951*0b57cec5SDimitry Andric         // A thread-local variable cannot be imported.
2952*0b57cec5SDimitry Andric         SafeToInline = false;
2953*0b57cec5SDimitry Andric         return SafeToInline;
2954*0b57cec5SDimitry Andric       }
2955*0b57cec5SDimitry Andric 
2956*0b57cec5SDimitry Andric       // A variable definition might imply a destructor call.
2957*0b57cec5SDimitry Andric       if (VD->isThisDeclarationADefinition())
2958*0b57cec5SDimitry Andric         SafeToInline = !HasNonDllImportDtor(VD->getType());
2959*0b57cec5SDimitry Andric 
2960*0b57cec5SDimitry Andric       return SafeToInline;
2961*0b57cec5SDimitry Andric     }
2962*0b57cec5SDimitry Andric 
2963*0b57cec5SDimitry Andric     bool VisitCXXBindTemporaryExpr(CXXBindTemporaryExpr *E) {
2964*0b57cec5SDimitry Andric       if (const auto *D = E->getTemporary()->getDestructor())
2965*0b57cec5SDimitry Andric         SafeToInline = D->hasAttr<DLLImportAttr>();
2966*0b57cec5SDimitry Andric       return SafeToInline;
2967*0b57cec5SDimitry Andric     }
2968*0b57cec5SDimitry Andric 
2969*0b57cec5SDimitry Andric     bool VisitDeclRefExpr(DeclRefExpr *E) {
2970*0b57cec5SDimitry Andric       ValueDecl *VD = E->getDecl();
2971*0b57cec5SDimitry Andric       if (isa<FunctionDecl>(VD))
2972*0b57cec5SDimitry Andric         SafeToInline = VD->hasAttr<DLLImportAttr>();
2973*0b57cec5SDimitry Andric       else if (VarDecl *V = dyn_cast<VarDecl>(VD))
2974*0b57cec5SDimitry Andric         SafeToInline = !V->hasGlobalStorage() || V->hasAttr<DLLImportAttr>();
2975*0b57cec5SDimitry Andric       return SafeToInline;
2976*0b57cec5SDimitry Andric     }
2977*0b57cec5SDimitry Andric 
2978*0b57cec5SDimitry Andric     bool VisitCXXConstructExpr(CXXConstructExpr *E) {
2979*0b57cec5SDimitry Andric       SafeToInline = E->getConstructor()->hasAttr<DLLImportAttr>();
2980*0b57cec5SDimitry Andric       return SafeToInline;
2981*0b57cec5SDimitry Andric     }
2982*0b57cec5SDimitry Andric 
2983*0b57cec5SDimitry Andric     bool VisitCXXMemberCallExpr(CXXMemberCallExpr *E) {
2984*0b57cec5SDimitry Andric       CXXMethodDecl *M = E->getMethodDecl();
2985*0b57cec5SDimitry Andric       if (!M) {
2986*0b57cec5SDimitry Andric         // Call through a pointer to member function. This is safe to inline.
2987*0b57cec5SDimitry Andric         SafeToInline = true;
2988*0b57cec5SDimitry Andric       } else {
2989*0b57cec5SDimitry Andric         SafeToInline = M->hasAttr<DLLImportAttr>();
2990*0b57cec5SDimitry Andric       }
2991*0b57cec5SDimitry Andric       return SafeToInline;
2992*0b57cec5SDimitry Andric     }
2993*0b57cec5SDimitry Andric 
2994*0b57cec5SDimitry Andric     bool VisitCXXDeleteExpr(CXXDeleteExpr *E) {
2995*0b57cec5SDimitry Andric       SafeToInline = E->getOperatorDelete()->hasAttr<DLLImportAttr>();
2996*0b57cec5SDimitry Andric       return SafeToInline;
2997*0b57cec5SDimitry Andric     }
2998*0b57cec5SDimitry Andric 
2999*0b57cec5SDimitry Andric     bool VisitCXXNewExpr(CXXNewExpr *E) {
3000*0b57cec5SDimitry Andric       SafeToInline = E->getOperatorNew()->hasAttr<DLLImportAttr>();
3001*0b57cec5SDimitry Andric       return SafeToInline;
3002*0b57cec5SDimitry Andric     }
3003*0b57cec5SDimitry Andric   };
3004*0b57cec5SDimitry Andric }
3005*0b57cec5SDimitry Andric 
3006*0b57cec5SDimitry Andric // isTriviallyRecursive - Check if this function calls another
3007*0b57cec5SDimitry Andric // decl that, because of the asm attribute or the other decl being a builtin,
3008*0b57cec5SDimitry Andric // ends up pointing to itself.
3009*0b57cec5SDimitry Andric bool
3010*0b57cec5SDimitry Andric CodeGenModule::isTriviallyRecursive(const FunctionDecl *FD) {
3011*0b57cec5SDimitry Andric   StringRef Name;
3012*0b57cec5SDimitry Andric   if (getCXXABI().getMangleContext().shouldMangleDeclName(FD)) {
3013*0b57cec5SDimitry Andric     // asm labels are a special kind of mangling we have to support.
3014*0b57cec5SDimitry Andric     AsmLabelAttr *Attr = FD->getAttr<AsmLabelAttr>();
3015*0b57cec5SDimitry Andric     if (!Attr)
3016*0b57cec5SDimitry Andric       return false;
3017*0b57cec5SDimitry Andric     Name = Attr->getLabel();
3018*0b57cec5SDimitry Andric   } else {
3019*0b57cec5SDimitry Andric     Name = FD->getName();
3020*0b57cec5SDimitry Andric   }
3021*0b57cec5SDimitry Andric 
3022*0b57cec5SDimitry Andric   FunctionIsDirectlyRecursive Walker(Name, Context.BuiltinInfo);
3023*0b57cec5SDimitry Andric   const Stmt *Body = FD->getBody();
3024*0b57cec5SDimitry Andric   return Body ? Walker.Visit(Body) : false;
3025*0b57cec5SDimitry Andric }
3026*0b57cec5SDimitry Andric 
3027*0b57cec5SDimitry Andric bool CodeGenModule::shouldEmitFunction(GlobalDecl GD) {
3028*0b57cec5SDimitry Andric   if (getFunctionLinkage(GD) != llvm::Function::AvailableExternallyLinkage)
3029*0b57cec5SDimitry Andric     return true;
3030*0b57cec5SDimitry Andric   const auto *F = cast<FunctionDecl>(GD.getDecl());
3031*0b57cec5SDimitry Andric   if (CodeGenOpts.OptimizationLevel == 0 && !F->hasAttr<AlwaysInlineAttr>())
3032*0b57cec5SDimitry Andric     return false;
3033*0b57cec5SDimitry Andric 
3034*0b57cec5SDimitry Andric   if (F->hasAttr<DLLImportAttr>()) {
3035*0b57cec5SDimitry Andric     // Check whether it would be safe to inline this dllimport function.
3036*0b57cec5SDimitry Andric     DLLImportFunctionVisitor Visitor;
3037*0b57cec5SDimitry Andric     Visitor.TraverseFunctionDecl(const_cast<FunctionDecl*>(F));
3038*0b57cec5SDimitry Andric     if (!Visitor.SafeToInline)
3039*0b57cec5SDimitry Andric       return false;
3040*0b57cec5SDimitry Andric 
3041*0b57cec5SDimitry Andric     if (const CXXDestructorDecl *Dtor = dyn_cast<CXXDestructorDecl>(F)) {
3042*0b57cec5SDimitry Andric       // Implicit destructor invocations aren't captured in the AST, so the
3043*0b57cec5SDimitry Andric       // check above can't see them. Check for them manually here.
3044*0b57cec5SDimitry Andric       for (const Decl *Member : Dtor->getParent()->decls())
3045*0b57cec5SDimitry Andric         if (isa<FieldDecl>(Member))
3046*0b57cec5SDimitry Andric           if (HasNonDllImportDtor(cast<FieldDecl>(Member)->getType()))
3047*0b57cec5SDimitry Andric             return false;
3048*0b57cec5SDimitry Andric       for (const CXXBaseSpecifier &B : Dtor->getParent()->bases())
3049*0b57cec5SDimitry Andric         if (HasNonDllImportDtor(B.getType()))
3050*0b57cec5SDimitry Andric           return false;
3051*0b57cec5SDimitry Andric     }
3052*0b57cec5SDimitry Andric   }
3053*0b57cec5SDimitry Andric 
3054*0b57cec5SDimitry Andric   // PR9614. Avoid cases where the source code is lying to us. An available
3055*0b57cec5SDimitry Andric   // externally function should have an equivalent function somewhere else,
30565ffd83dbSDimitry Andric   // but a function that calls itself through asm label/`__builtin_` trickery is
30575ffd83dbSDimitry Andric   // clearly not equivalent to the real implementation.
3058*0b57cec5SDimitry Andric   // This happens in glibc's btowc and in some configure checks.
3059*0b57cec5SDimitry Andric   return !isTriviallyRecursive(F);
3060*0b57cec5SDimitry Andric }
3061*0b57cec5SDimitry Andric 
3062*0b57cec5SDimitry Andric bool CodeGenModule::shouldOpportunisticallyEmitVTables() {
3063*0b57cec5SDimitry Andric   return CodeGenOpts.OptimizationLevel > 0;
3064*0b57cec5SDimitry Andric }
3065*0b57cec5SDimitry Andric 
3066*0b57cec5SDimitry Andric void CodeGenModule::EmitMultiVersionFunctionDefinition(GlobalDecl GD,
3067*0b57cec5SDimitry Andric                                                        llvm::GlobalValue *GV) {
3068*0b57cec5SDimitry Andric   const auto *FD = cast<FunctionDecl>(GD.getDecl());
3069*0b57cec5SDimitry Andric 
3070*0b57cec5SDimitry Andric   if (FD->isCPUSpecificMultiVersion()) {
3071*0b57cec5SDimitry Andric     auto *Spec = FD->getAttr<CPUSpecificAttr>();
3072*0b57cec5SDimitry Andric     for (unsigned I = 0; I < Spec->cpus_size(); ++I)
3073*0b57cec5SDimitry Andric       EmitGlobalFunctionDefinition(GD.getWithMultiVersionIndex(I), nullptr);
3074*0b57cec5SDimitry Andric     // Requires multiple emits.
3075*0b57cec5SDimitry Andric   } else
3076*0b57cec5SDimitry Andric     EmitGlobalFunctionDefinition(GD, GV);
3077*0b57cec5SDimitry Andric }
3078*0b57cec5SDimitry Andric 
3079*0b57cec5SDimitry Andric void CodeGenModule::EmitGlobalDefinition(GlobalDecl GD, llvm::GlobalValue *GV) {
3080*0b57cec5SDimitry Andric   const auto *D = cast<ValueDecl>(GD.getDecl());
3081*0b57cec5SDimitry Andric 
3082*0b57cec5SDimitry Andric   PrettyStackTraceDecl CrashInfo(const_cast<ValueDecl *>(D), D->getLocation(),
3083*0b57cec5SDimitry Andric                                  Context.getSourceManager(),
3084*0b57cec5SDimitry Andric                                  "Generating code for declaration");
3085*0b57cec5SDimitry Andric 
3086*0b57cec5SDimitry Andric   if (const auto *FD = dyn_cast<FunctionDecl>(D)) {
3087*0b57cec5SDimitry Andric     // At -O0, don't generate IR for functions with available_externally
3088*0b57cec5SDimitry Andric     // linkage.
3089*0b57cec5SDimitry Andric     if (!shouldEmitFunction(GD))
3090*0b57cec5SDimitry Andric       return;
3091*0b57cec5SDimitry Andric 
3092*0b57cec5SDimitry Andric     llvm::TimeTraceScope TimeScope("CodeGen Function", [&]() {
3093*0b57cec5SDimitry Andric       std::string Name;
3094*0b57cec5SDimitry Andric       llvm::raw_string_ostream OS(Name);
3095*0b57cec5SDimitry Andric       FD->getNameForDiagnostic(OS, getContext().getPrintingPolicy(),
3096*0b57cec5SDimitry Andric                                /*Qualified=*/true);
3097*0b57cec5SDimitry Andric       return Name;
3098*0b57cec5SDimitry Andric     });
3099*0b57cec5SDimitry Andric 
3100*0b57cec5SDimitry Andric     if (const auto *Method = dyn_cast<CXXMethodDecl>(D)) {
3101*0b57cec5SDimitry Andric       // Make sure to emit the definition(s) before we emit the thunks.
3102*0b57cec5SDimitry Andric       // This is necessary for the generation of certain thunks.
3103*0b57cec5SDimitry Andric       if (isa<CXXConstructorDecl>(Method) || isa<CXXDestructorDecl>(Method))
3104*0b57cec5SDimitry Andric         ABI->emitCXXStructor(GD);
3105*0b57cec5SDimitry Andric       else if (FD->isMultiVersion())
3106*0b57cec5SDimitry Andric         EmitMultiVersionFunctionDefinition(GD, GV);
3107*0b57cec5SDimitry Andric       else
3108*0b57cec5SDimitry Andric         EmitGlobalFunctionDefinition(GD, GV);
3109*0b57cec5SDimitry Andric 
3110*0b57cec5SDimitry Andric       if (Method->isVirtual())
3111*0b57cec5SDimitry Andric         getVTables().EmitThunks(GD);
3112*0b57cec5SDimitry Andric 
3113*0b57cec5SDimitry Andric       return;
3114*0b57cec5SDimitry Andric     }
3115*0b57cec5SDimitry Andric 
3116*0b57cec5SDimitry Andric     if (FD->isMultiVersion())
3117*0b57cec5SDimitry Andric       return EmitMultiVersionFunctionDefinition(GD, GV);
3118*0b57cec5SDimitry Andric     return EmitGlobalFunctionDefinition(GD, GV);
3119*0b57cec5SDimitry Andric   }
3120*0b57cec5SDimitry Andric 
3121*0b57cec5SDimitry Andric   if (const auto *VD = dyn_cast<VarDecl>(D))
3122*0b57cec5SDimitry Andric     return EmitGlobalVarDefinition(VD, !VD->hasDefinition());
3123*0b57cec5SDimitry Andric 
3124*0b57cec5SDimitry Andric   llvm_unreachable("Invalid argument to EmitGlobalDefinition()");
3125*0b57cec5SDimitry Andric }
3126*0b57cec5SDimitry Andric 
3127*0b57cec5SDimitry Andric static void ReplaceUsesOfNonProtoTypeWithRealFunction(llvm::GlobalValue *Old,
3128*0b57cec5SDimitry Andric                                                       llvm::Function *NewFn);
3129*0b57cec5SDimitry Andric 
3130*0b57cec5SDimitry Andric static unsigned
3131*0b57cec5SDimitry Andric TargetMVPriority(const TargetInfo &TI,
3132*0b57cec5SDimitry Andric                  const CodeGenFunction::MultiVersionResolverOption &RO) {
3133*0b57cec5SDimitry Andric   unsigned Priority = 0;
3134*0b57cec5SDimitry Andric   for (StringRef Feat : RO.Conditions.Features)
3135*0b57cec5SDimitry Andric     Priority = std::max(Priority, TI.multiVersionSortPriority(Feat));
3136*0b57cec5SDimitry Andric 
3137*0b57cec5SDimitry Andric   if (!RO.Conditions.Architecture.empty())
3138*0b57cec5SDimitry Andric     Priority = std::max(
3139*0b57cec5SDimitry Andric         Priority, TI.multiVersionSortPriority(RO.Conditions.Architecture));
3140*0b57cec5SDimitry Andric   return Priority;
3141*0b57cec5SDimitry Andric }
3142*0b57cec5SDimitry Andric 
3143*0b57cec5SDimitry Andric void CodeGenModule::emitMultiVersionFunctions() {
3144*0b57cec5SDimitry Andric   for (GlobalDecl GD : MultiVersionFuncs) {
3145*0b57cec5SDimitry Andric     SmallVector<CodeGenFunction::MultiVersionResolverOption, 10> Options;
3146*0b57cec5SDimitry Andric     const FunctionDecl *FD = cast<FunctionDecl>(GD.getDecl());
3147*0b57cec5SDimitry Andric     getContext().forEachMultiversionedFunctionVersion(
3148*0b57cec5SDimitry Andric         FD, [this, &GD, &Options](const FunctionDecl *CurFD) {
3149*0b57cec5SDimitry Andric           GlobalDecl CurGD{
3150*0b57cec5SDimitry Andric               (CurFD->isDefined() ? CurFD->getDefinition() : CurFD)};
3151*0b57cec5SDimitry Andric           StringRef MangledName = getMangledName(CurGD);
3152*0b57cec5SDimitry Andric           llvm::Constant *Func = GetGlobalValue(MangledName);
3153*0b57cec5SDimitry Andric           if (!Func) {
3154*0b57cec5SDimitry Andric             if (CurFD->isDefined()) {
3155*0b57cec5SDimitry Andric               EmitGlobalFunctionDefinition(CurGD, nullptr);
3156*0b57cec5SDimitry Andric               Func = GetGlobalValue(MangledName);
3157*0b57cec5SDimitry Andric             } else {
3158*0b57cec5SDimitry Andric               const CGFunctionInfo &FI =
3159*0b57cec5SDimitry Andric                   getTypes().arrangeGlobalDeclaration(GD);
3160*0b57cec5SDimitry Andric               llvm::FunctionType *Ty = getTypes().GetFunctionType(FI);
3161*0b57cec5SDimitry Andric               Func = GetAddrOfFunction(CurGD, Ty, /*ForVTable=*/false,
3162*0b57cec5SDimitry Andric                                        /*DontDefer=*/false, ForDefinition);
3163*0b57cec5SDimitry Andric             }
3164*0b57cec5SDimitry Andric             assert(Func && "This should have just been created");
3165*0b57cec5SDimitry Andric           }
3166*0b57cec5SDimitry Andric 
3167*0b57cec5SDimitry Andric           const auto *TA = CurFD->getAttr<TargetAttr>();
3168*0b57cec5SDimitry Andric           llvm::SmallVector<StringRef, 8> Feats;
3169*0b57cec5SDimitry Andric           TA->getAddedFeatures(Feats);
3170*0b57cec5SDimitry Andric 
3171*0b57cec5SDimitry Andric           Options.emplace_back(cast<llvm::Function>(Func),
3172*0b57cec5SDimitry Andric                                TA->getArchitecture(), Feats);
3173*0b57cec5SDimitry Andric         });
3174*0b57cec5SDimitry Andric 
3175*0b57cec5SDimitry Andric     llvm::Function *ResolverFunc;
3176*0b57cec5SDimitry Andric     const TargetInfo &TI = getTarget();
3177*0b57cec5SDimitry Andric 
3178a7dea167SDimitry Andric     if (TI.supportsIFunc() || FD->isTargetMultiVersion()) {
3179*0b57cec5SDimitry Andric       ResolverFunc = cast<llvm::Function>(
3180*0b57cec5SDimitry Andric           GetGlobalValue((getMangledName(GD) + ".resolver").str()));
3181a7dea167SDimitry Andric       ResolverFunc->setLinkage(llvm::Function::WeakODRLinkage);
3182a7dea167SDimitry Andric     } else {
3183*0b57cec5SDimitry Andric       ResolverFunc = cast<llvm::Function>(GetGlobalValue(getMangledName(GD)));
3184a7dea167SDimitry Andric     }
3185*0b57cec5SDimitry Andric 
3186*0b57cec5SDimitry Andric     if (supportsCOMDAT())
3187*0b57cec5SDimitry Andric       ResolverFunc->setComdat(
3188*0b57cec5SDimitry Andric           getModule().getOrInsertComdat(ResolverFunc->getName()));
3189*0b57cec5SDimitry Andric 
3190*0b57cec5SDimitry Andric     llvm::stable_sort(
3191*0b57cec5SDimitry Andric         Options, [&TI](const CodeGenFunction::MultiVersionResolverOption &LHS,
3192*0b57cec5SDimitry Andric                        const CodeGenFunction::MultiVersionResolverOption &RHS) {
3193*0b57cec5SDimitry Andric           return TargetMVPriority(TI, LHS) > TargetMVPriority(TI, RHS);
3194*0b57cec5SDimitry Andric         });
3195*0b57cec5SDimitry Andric     CodeGenFunction CGF(*this);
3196*0b57cec5SDimitry Andric     CGF.EmitMultiVersionResolver(ResolverFunc, Options);
3197*0b57cec5SDimitry Andric   }
3198*0b57cec5SDimitry Andric }
3199*0b57cec5SDimitry Andric 
3200*0b57cec5SDimitry Andric void CodeGenModule::emitCPUDispatchDefinition(GlobalDecl GD) {
3201*0b57cec5SDimitry Andric   const auto *FD = cast<FunctionDecl>(GD.getDecl());
3202*0b57cec5SDimitry Andric   assert(FD && "Not a FunctionDecl?");
3203*0b57cec5SDimitry Andric   const auto *DD = FD->getAttr<CPUDispatchAttr>();
3204*0b57cec5SDimitry Andric   assert(DD && "Not a cpu_dispatch Function?");
3205*0b57cec5SDimitry Andric   llvm::Type *DeclTy = getTypes().ConvertType(FD->getType());
3206*0b57cec5SDimitry Andric 
3207*0b57cec5SDimitry Andric   if (const auto *CXXFD = dyn_cast<CXXMethodDecl>(FD)) {
3208*0b57cec5SDimitry Andric     const CGFunctionInfo &FInfo = getTypes().arrangeCXXMethodDeclaration(CXXFD);
3209*0b57cec5SDimitry Andric     DeclTy = getTypes().GetFunctionType(FInfo);
3210*0b57cec5SDimitry Andric   }
3211*0b57cec5SDimitry Andric 
3212*0b57cec5SDimitry Andric   StringRef ResolverName = getMangledName(GD);
3213*0b57cec5SDimitry Andric 
3214*0b57cec5SDimitry Andric   llvm::Type *ResolverType;
3215*0b57cec5SDimitry Andric   GlobalDecl ResolverGD;
3216*0b57cec5SDimitry Andric   if (getTarget().supportsIFunc())
3217*0b57cec5SDimitry Andric     ResolverType = llvm::FunctionType::get(
3218*0b57cec5SDimitry Andric         llvm::PointerType::get(DeclTy,
3219*0b57cec5SDimitry Andric                                Context.getTargetAddressSpace(FD->getType())),
3220*0b57cec5SDimitry Andric         false);
3221*0b57cec5SDimitry Andric   else {
3222*0b57cec5SDimitry Andric     ResolverType = DeclTy;
3223*0b57cec5SDimitry Andric     ResolverGD = GD;
3224*0b57cec5SDimitry Andric   }
3225*0b57cec5SDimitry Andric 
3226*0b57cec5SDimitry Andric   auto *ResolverFunc = cast<llvm::Function>(GetOrCreateLLVMFunction(
3227*0b57cec5SDimitry Andric       ResolverName, ResolverType, ResolverGD, /*ForVTable=*/false));
3228a7dea167SDimitry Andric   ResolverFunc->setLinkage(llvm::Function::WeakODRLinkage);
3229a7dea167SDimitry Andric   if (supportsCOMDAT())
3230a7dea167SDimitry Andric     ResolverFunc->setComdat(
3231a7dea167SDimitry Andric         getModule().getOrInsertComdat(ResolverFunc->getName()));
3232*0b57cec5SDimitry Andric 
3233*0b57cec5SDimitry Andric   SmallVector<CodeGenFunction::MultiVersionResolverOption, 10> Options;
3234*0b57cec5SDimitry Andric   const TargetInfo &Target = getTarget();
3235*0b57cec5SDimitry Andric   unsigned Index = 0;
3236*0b57cec5SDimitry Andric   for (const IdentifierInfo *II : DD->cpus()) {
3237*0b57cec5SDimitry Andric     // Get the name of the target function so we can look it up/create it.
3238*0b57cec5SDimitry Andric     std::string MangledName = getMangledNameImpl(*this, GD, FD, true) +
3239*0b57cec5SDimitry Andric                               getCPUSpecificMangling(*this, II->getName());
3240*0b57cec5SDimitry Andric 
3241*0b57cec5SDimitry Andric     llvm::Constant *Func = GetGlobalValue(MangledName);
3242*0b57cec5SDimitry Andric 
3243*0b57cec5SDimitry Andric     if (!Func) {
3244*0b57cec5SDimitry Andric       GlobalDecl ExistingDecl = Manglings.lookup(MangledName);
3245*0b57cec5SDimitry Andric       if (ExistingDecl.getDecl() &&
3246*0b57cec5SDimitry Andric           ExistingDecl.getDecl()->getAsFunction()->isDefined()) {
3247*0b57cec5SDimitry Andric         EmitGlobalFunctionDefinition(ExistingDecl, nullptr);
3248*0b57cec5SDimitry Andric         Func = GetGlobalValue(MangledName);
3249*0b57cec5SDimitry Andric       } else {
3250*0b57cec5SDimitry Andric         if (!ExistingDecl.getDecl())
3251*0b57cec5SDimitry Andric           ExistingDecl = GD.getWithMultiVersionIndex(Index);
3252*0b57cec5SDimitry Andric 
3253*0b57cec5SDimitry Andric       Func = GetOrCreateLLVMFunction(
3254*0b57cec5SDimitry Andric           MangledName, DeclTy, ExistingDecl,
3255*0b57cec5SDimitry Andric           /*ForVTable=*/false, /*DontDefer=*/true,
3256*0b57cec5SDimitry Andric           /*IsThunk=*/false, llvm::AttributeList(), ForDefinition);
3257*0b57cec5SDimitry Andric       }
3258*0b57cec5SDimitry Andric     }
3259*0b57cec5SDimitry Andric 
3260*0b57cec5SDimitry Andric     llvm::SmallVector<StringRef, 32> Features;
3261*0b57cec5SDimitry Andric     Target.getCPUSpecificCPUDispatchFeatures(II->getName(), Features);
3262*0b57cec5SDimitry Andric     llvm::transform(Features, Features.begin(),
3263*0b57cec5SDimitry Andric                     [](StringRef Str) { return Str.substr(1); });
3264*0b57cec5SDimitry Andric     Features.erase(std::remove_if(
3265*0b57cec5SDimitry Andric         Features.begin(), Features.end(), [&Target](StringRef Feat) {
3266*0b57cec5SDimitry Andric           return !Target.validateCpuSupports(Feat);
3267*0b57cec5SDimitry Andric         }), Features.end());
3268*0b57cec5SDimitry Andric     Options.emplace_back(cast<llvm::Function>(Func), StringRef{}, Features);
3269*0b57cec5SDimitry Andric     ++Index;
3270*0b57cec5SDimitry Andric   }
3271*0b57cec5SDimitry Andric 
3272*0b57cec5SDimitry Andric   llvm::sort(
3273*0b57cec5SDimitry Andric       Options, [](const CodeGenFunction::MultiVersionResolverOption &LHS,
3274*0b57cec5SDimitry Andric                   const CodeGenFunction::MultiVersionResolverOption &RHS) {
3275*0b57cec5SDimitry Andric         return CodeGenFunction::GetX86CpuSupportsMask(LHS.Conditions.Features) >
3276*0b57cec5SDimitry Andric                CodeGenFunction::GetX86CpuSupportsMask(RHS.Conditions.Features);
3277*0b57cec5SDimitry Andric       });
3278*0b57cec5SDimitry Andric 
3279*0b57cec5SDimitry Andric   // If the list contains multiple 'default' versions, such as when it contains
3280*0b57cec5SDimitry Andric   // 'pentium' and 'generic', don't emit the call to the generic one (since we
3281*0b57cec5SDimitry Andric   // always run on at least a 'pentium'). We do this by deleting the 'least
3282*0b57cec5SDimitry Andric   // advanced' (read, lowest mangling letter).
3283*0b57cec5SDimitry Andric   while (Options.size() > 1 &&
3284*0b57cec5SDimitry Andric          CodeGenFunction::GetX86CpuSupportsMask(
3285*0b57cec5SDimitry Andric              (Options.end() - 2)->Conditions.Features) == 0) {
3286*0b57cec5SDimitry Andric     StringRef LHSName = (Options.end() - 2)->Function->getName();
3287*0b57cec5SDimitry Andric     StringRef RHSName = (Options.end() - 1)->Function->getName();
3288*0b57cec5SDimitry Andric     if (LHSName.compare(RHSName) < 0)
3289*0b57cec5SDimitry Andric       Options.erase(Options.end() - 2);
3290*0b57cec5SDimitry Andric     else
3291*0b57cec5SDimitry Andric       Options.erase(Options.end() - 1);
3292*0b57cec5SDimitry Andric   }
3293*0b57cec5SDimitry Andric 
3294*0b57cec5SDimitry Andric   CodeGenFunction CGF(*this);
3295*0b57cec5SDimitry Andric   CGF.EmitMultiVersionResolver(ResolverFunc, Options);
3296a7dea167SDimitry Andric 
3297a7dea167SDimitry Andric   if (getTarget().supportsIFunc()) {
3298a7dea167SDimitry Andric     std::string AliasName = getMangledNameImpl(
3299a7dea167SDimitry Andric         *this, GD, FD, /*OmitMultiVersionMangling=*/true);
3300a7dea167SDimitry Andric     llvm::Constant *AliasFunc = GetGlobalValue(AliasName);
3301a7dea167SDimitry Andric     if (!AliasFunc) {
3302a7dea167SDimitry Andric       auto *IFunc = cast<llvm::GlobalIFunc>(GetOrCreateLLVMFunction(
3303a7dea167SDimitry Andric           AliasName, DeclTy, GD, /*ForVTable=*/false, /*DontDefer=*/true,
3304a7dea167SDimitry Andric           /*IsThunk=*/false, llvm::AttributeList(), NotForDefinition));
3305a7dea167SDimitry Andric       auto *GA = llvm::GlobalAlias::create(
3306a7dea167SDimitry Andric          DeclTy, 0, getFunctionLinkage(GD), AliasName, IFunc, &getModule());
3307a7dea167SDimitry Andric       GA->setLinkage(llvm::Function::WeakODRLinkage);
3308a7dea167SDimitry Andric       SetCommonAttributes(GD, GA);
3309a7dea167SDimitry Andric     }
3310a7dea167SDimitry Andric   }
3311*0b57cec5SDimitry Andric }
3312*0b57cec5SDimitry Andric 
3313*0b57cec5SDimitry Andric /// If a dispatcher for the specified mangled name is not in the module, create
3314*0b57cec5SDimitry Andric /// and return an llvm Function with the specified type.
3315*0b57cec5SDimitry Andric llvm::Constant *CodeGenModule::GetOrCreateMultiVersionResolver(
3316*0b57cec5SDimitry Andric     GlobalDecl GD, llvm::Type *DeclTy, const FunctionDecl *FD) {
3317*0b57cec5SDimitry Andric   std::string MangledName =
3318*0b57cec5SDimitry Andric       getMangledNameImpl(*this, GD, FD, /*OmitMultiVersionMangling=*/true);
3319*0b57cec5SDimitry Andric 
3320*0b57cec5SDimitry Andric   // Holds the name of the resolver, in ifunc mode this is the ifunc (which has
3321*0b57cec5SDimitry Andric   // a separate resolver).
3322*0b57cec5SDimitry Andric   std::string ResolverName = MangledName;
3323*0b57cec5SDimitry Andric   if (getTarget().supportsIFunc())
3324*0b57cec5SDimitry Andric     ResolverName += ".ifunc";
3325*0b57cec5SDimitry Andric   else if (FD->isTargetMultiVersion())
3326*0b57cec5SDimitry Andric     ResolverName += ".resolver";
3327*0b57cec5SDimitry Andric 
3328*0b57cec5SDimitry Andric   // If this already exists, just return that one.
3329*0b57cec5SDimitry Andric   if (llvm::GlobalValue *ResolverGV = GetGlobalValue(ResolverName))
3330*0b57cec5SDimitry Andric     return ResolverGV;
3331*0b57cec5SDimitry Andric 
3332*0b57cec5SDimitry Andric   // Since this is the first time we've created this IFunc, make sure
3333*0b57cec5SDimitry Andric   // that we put this multiversioned function into the list to be
3334*0b57cec5SDimitry Andric   // replaced later if necessary (target multiversioning only).
3335*0b57cec5SDimitry Andric   if (!FD->isCPUDispatchMultiVersion() && !FD->isCPUSpecificMultiVersion())
3336*0b57cec5SDimitry Andric     MultiVersionFuncs.push_back(GD);
3337*0b57cec5SDimitry Andric 
3338*0b57cec5SDimitry Andric   if (getTarget().supportsIFunc()) {
3339*0b57cec5SDimitry Andric     llvm::Type *ResolverType = llvm::FunctionType::get(
3340*0b57cec5SDimitry Andric         llvm::PointerType::get(
3341*0b57cec5SDimitry Andric             DeclTy, getContext().getTargetAddressSpace(FD->getType())),
3342*0b57cec5SDimitry Andric         false);
3343*0b57cec5SDimitry Andric     llvm::Constant *Resolver = GetOrCreateLLVMFunction(
3344*0b57cec5SDimitry Andric         MangledName + ".resolver", ResolverType, GlobalDecl{},
3345*0b57cec5SDimitry Andric         /*ForVTable=*/false);
3346*0b57cec5SDimitry Andric     llvm::GlobalIFunc *GIF = llvm::GlobalIFunc::create(
3347a7dea167SDimitry Andric         DeclTy, 0, llvm::Function::WeakODRLinkage, "", Resolver, &getModule());
3348*0b57cec5SDimitry Andric     GIF->setName(ResolverName);
3349*0b57cec5SDimitry Andric     SetCommonAttributes(FD, GIF);
3350*0b57cec5SDimitry Andric 
3351*0b57cec5SDimitry Andric     return GIF;
3352*0b57cec5SDimitry Andric   }
3353*0b57cec5SDimitry Andric 
3354*0b57cec5SDimitry Andric   llvm::Constant *Resolver = GetOrCreateLLVMFunction(
3355*0b57cec5SDimitry Andric       ResolverName, DeclTy, GlobalDecl{}, /*ForVTable=*/false);
3356*0b57cec5SDimitry Andric   assert(isa<llvm::GlobalValue>(Resolver) &&
3357*0b57cec5SDimitry Andric          "Resolver should be created for the first time");
3358*0b57cec5SDimitry Andric   SetCommonAttributes(FD, cast<llvm::GlobalValue>(Resolver));
3359*0b57cec5SDimitry Andric   return Resolver;
3360*0b57cec5SDimitry Andric }
3361*0b57cec5SDimitry Andric 
3362*0b57cec5SDimitry Andric /// GetOrCreateLLVMFunction - If the specified mangled name is not in the
3363*0b57cec5SDimitry Andric /// module, create and return an llvm Function with the specified type. If there
3364*0b57cec5SDimitry Andric /// is something in the module with the specified name, return it potentially
3365*0b57cec5SDimitry Andric /// bitcasted to the right type.
3366*0b57cec5SDimitry Andric ///
3367*0b57cec5SDimitry Andric /// If D is non-null, it specifies a decl that correspond to this.  This is used
3368*0b57cec5SDimitry Andric /// to set the attributes on the function when it is first created.
3369*0b57cec5SDimitry Andric llvm::Constant *CodeGenModule::GetOrCreateLLVMFunction(
3370*0b57cec5SDimitry Andric     StringRef MangledName, llvm::Type *Ty, GlobalDecl GD, bool ForVTable,
3371*0b57cec5SDimitry Andric     bool DontDefer, bool IsThunk, llvm::AttributeList ExtraAttrs,
3372*0b57cec5SDimitry Andric     ForDefinition_t IsForDefinition) {
3373*0b57cec5SDimitry Andric   const Decl *D = GD.getDecl();
3374*0b57cec5SDimitry Andric 
3375*0b57cec5SDimitry Andric   // Any attempts to use a MultiVersion function should result in retrieving
3376*0b57cec5SDimitry Andric   // the iFunc instead. Name Mangling will handle the rest of the changes.
3377*0b57cec5SDimitry Andric   if (const FunctionDecl *FD = cast_or_null<FunctionDecl>(D)) {
3378*0b57cec5SDimitry Andric     // For the device mark the function as one that should be emitted.
3379*0b57cec5SDimitry Andric     if (getLangOpts().OpenMPIsDevice && OpenMPRuntime &&
3380*0b57cec5SDimitry Andric         !OpenMPRuntime->markAsGlobalTarget(GD) && FD->isDefined() &&
3381*0b57cec5SDimitry Andric         !DontDefer && !IsForDefinition) {
3382*0b57cec5SDimitry Andric       if (const FunctionDecl *FDDef = FD->getDefinition()) {
3383*0b57cec5SDimitry Andric         GlobalDecl GDDef;
3384*0b57cec5SDimitry Andric         if (const auto *CD = dyn_cast<CXXConstructorDecl>(FDDef))
3385*0b57cec5SDimitry Andric           GDDef = GlobalDecl(CD, GD.getCtorType());
3386*0b57cec5SDimitry Andric         else if (const auto *DD = dyn_cast<CXXDestructorDecl>(FDDef))
3387*0b57cec5SDimitry Andric           GDDef = GlobalDecl(DD, GD.getDtorType());
3388*0b57cec5SDimitry Andric         else
3389*0b57cec5SDimitry Andric           GDDef = GlobalDecl(FDDef);
3390*0b57cec5SDimitry Andric         EmitGlobal(GDDef);
3391*0b57cec5SDimitry Andric       }
3392*0b57cec5SDimitry Andric     }
3393*0b57cec5SDimitry Andric 
3394*0b57cec5SDimitry Andric     if (FD->isMultiVersion()) {
33955ffd83dbSDimitry Andric       if (FD->hasAttr<TargetAttr>())
3396*0b57cec5SDimitry Andric         UpdateMultiVersionNames(GD, FD);
3397*0b57cec5SDimitry Andric       if (!IsForDefinition)
3398*0b57cec5SDimitry Andric         return GetOrCreateMultiVersionResolver(GD, Ty, FD);
3399*0b57cec5SDimitry Andric     }
3400*0b57cec5SDimitry Andric   }
3401*0b57cec5SDimitry Andric 
3402*0b57cec5SDimitry Andric   // Lookup the entry, lazily creating it if necessary.
3403*0b57cec5SDimitry Andric   llvm::GlobalValue *Entry = GetGlobalValue(MangledName);
3404*0b57cec5SDimitry Andric   if (Entry) {
3405*0b57cec5SDimitry Andric     if (WeakRefReferences.erase(Entry)) {
3406*0b57cec5SDimitry Andric       const FunctionDecl *FD = cast_or_null<FunctionDecl>(D);
3407*0b57cec5SDimitry Andric       if (FD && !FD->hasAttr<WeakAttr>())
3408*0b57cec5SDimitry Andric         Entry->setLinkage(llvm::Function::ExternalLinkage);
3409*0b57cec5SDimitry Andric     }
3410*0b57cec5SDimitry Andric 
3411*0b57cec5SDimitry Andric     // Handle dropped DLL attributes.
3412*0b57cec5SDimitry Andric     if (D && !D->hasAttr<DLLImportAttr>() && !D->hasAttr<DLLExportAttr>()) {
3413*0b57cec5SDimitry Andric       Entry->setDLLStorageClass(llvm::GlobalValue::DefaultStorageClass);
3414*0b57cec5SDimitry Andric       setDSOLocal(Entry);
3415*0b57cec5SDimitry Andric     }
3416*0b57cec5SDimitry Andric 
3417*0b57cec5SDimitry Andric     // If there are two attempts to define the same mangled name, issue an
3418*0b57cec5SDimitry Andric     // error.
3419*0b57cec5SDimitry Andric     if (IsForDefinition && !Entry->isDeclaration()) {
3420*0b57cec5SDimitry Andric       GlobalDecl OtherGD;
3421*0b57cec5SDimitry Andric       // Check that GD is not yet in DiagnosedConflictingDefinitions is required
3422*0b57cec5SDimitry Andric       // to make sure that we issue an error only once.
3423*0b57cec5SDimitry Andric       if (lookupRepresentativeDecl(MangledName, OtherGD) &&
3424*0b57cec5SDimitry Andric           (GD.getCanonicalDecl().getDecl() !=
3425*0b57cec5SDimitry Andric            OtherGD.getCanonicalDecl().getDecl()) &&
3426*0b57cec5SDimitry Andric           DiagnosedConflictingDefinitions.insert(GD).second) {
3427*0b57cec5SDimitry Andric         getDiags().Report(D->getLocation(), diag::err_duplicate_mangled_name)
3428*0b57cec5SDimitry Andric             << MangledName;
3429*0b57cec5SDimitry Andric         getDiags().Report(OtherGD.getDecl()->getLocation(),
3430*0b57cec5SDimitry Andric                           diag::note_previous_definition);
3431*0b57cec5SDimitry Andric       }
3432*0b57cec5SDimitry Andric     }
3433*0b57cec5SDimitry Andric 
3434*0b57cec5SDimitry Andric     if ((isa<llvm::Function>(Entry) || isa<llvm::GlobalAlias>(Entry)) &&
34355ffd83dbSDimitry Andric         (Entry->getValueType() == Ty)) {
3436*0b57cec5SDimitry Andric       return Entry;
3437*0b57cec5SDimitry Andric     }
3438*0b57cec5SDimitry Andric 
3439*0b57cec5SDimitry Andric     // Make sure the result is of the correct type.
3440*0b57cec5SDimitry Andric     // (If function is requested for a definition, we always need to create a new
3441*0b57cec5SDimitry Andric     // function, not just return a bitcast.)
3442*0b57cec5SDimitry Andric     if (!IsForDefinition)
3443*0b57cec5SDimitry Andric       return llvm::ConstantExpr::getBitCast(Entry, Ty->getPointerTo());
3444*0b57cec5SDimitry Andric   }
3445*0b57cec5SDimitry Andric 
3446*0b57cec5SDimitry Andric   // This function doesn't have a complete type (for example, the return
3447*0b57cec5SDimitry Andric   // type is an incomplete struct). Use a fake type instead, and make
3448*0b57cec5SDimitry Andric   // sure not to try to set attributes.
3449*0b57cec5SDimitry Andric   bool IsIncompleteFunction = false;
3450*0b57cec5SDimitry Andric 
3451*0b57cec5SDimitry Andric   llvm::FunctionType *FTy;
3452*0b57cec5SDimitry Andric   if (isa<llvm::FunctionType>(Ty)) {
3453*0b57cec5SDimitry Andric     FTy = cast<llvm::FunctionType>(Ty);
3454*0b57cec5SDimitry Andric   } else {
3455*0b57cec5SDimitry Andric     FTy = llvm::FunctionType::get(VoidTy, false);
3456*0b57cec5SDimitry Andric     IsIncompleteFunction = true;
3457*0b57cec5SDimitry Andric   }
3458*0b57cec5SDimitry Andric 
3459*0b57cec5SDimitry Andric   llvm::Function *F =
3460*0b57cec5SDimitry Andric       llvm::Function::Create(FTy, llvm::Function::ExternalLinkage,
3461*0b57cec5SDimitry Andric                              Entry ? StringRef() : MangledName, &getModule());
3462*0b57cec5SDimitry Andric 
3463*0b57cec5SDimitry Andric   // If we already created a function with the same mangled name (but different
3464*0b57cec5SDimitry Andric   // type) before, take its name and add it to the list of functions to be
3465*0b57cec5SDimitry Andric   // replaced with F at the end of CodeGen.
3466*0b57cec5SDimitry Andric   //
3467*0b57cec5SDimitry Andric   // This happens if there is a prototype for a function (e.g. "int f()") and
3468*0b57cec5SDimitry Andric   // then a definition of a different type (e.g. "int f(int x)").
3469*0b57cec5SDimitry Andric   if (Entry) {
3470*0b57cec5SDimitry Andric     F->takeName(Entry);
3471*0b57cec5SDimitry Andric 
3472*0b57cec5SDimitry Andric     // This might be an implementation of a function without a prototype, in
3473*0b57cec5SDimitry Andric     // which case, try to do special replacement of calls which match the new
3474*0b57cec5SDimitry Andric     // prototype.  The really key thing here is that we also potentially drop
3475*0b57cec5SDimitry Andric     // arguments from the call site so as to make a direct call, which makes the
3476*0b57cec5SDimitry Andric     // inliner happier and suppresses a number of optimizer warnings (!) about
3477*0b57cec5SDimitry Andric     // dropping arguments.
3478*0b57cec5SDimitry Andric     if (!Entry->use_empty()) {
3479*0b57cec5SDimitry Andric       ReplaceUsesOfNonProtoTypeWithRealFunction(Entry, F);
3480*0b57cec5SDimitry Andric       Entry->removeDeadConstantUsers();
3481*0b57cec5SDimitry Andric     }
3482*0b57cec5SDimitry Andric 
3483*0b57cec5SDimitry Andric     llvm::Constant *BC = llvm::ConstantExpr::getBitCast(
34845ffd83dbSDimitry Andric         F, Entry->getValueType()->getPointerTo());
3485*0b57cec5SDimitry Andric     addGlobalValReplacement(Entry, BC);
3486*0b57cec5SDimitry Andric   }
3487*0b57cec5SDimitry Andric 
3488*0b57cec5SDimitry Andric   assert(F->getName() == MangledName && "name was uniqued!");
3489*0b57cec5SDimitry Andric   if (D)
3490*0b57cec5SDimitry Andric     SetFunctionAttributes(GD, F, IsIncompleteFunction, IsThunk);
3491*0b57cec5SDimitry Andric   if (ExtraAttrs.hasAttributes(llvm::AttributeList::FunctionIndex)) {
3492*0b57cec5SDimitry Andric     llvm::AttrBuilder B(ExtraAttrs, llvm::AttributeList::FunctionIndex);
3493*0b57cec5SDimitry Andric     F->addAttributes(llvm::AttributeList::FunctionIndex, B);
3494*0b57cec5SDimitry Andric   }
3495*0b57cec5SDimitry Andric 
3496*0b57cec5SDimitry Andric   if (!DontDefer) {
3497*0b57cec5SDimitry Andric     // All MSVC dtors other than the base dtor are linkonce_odr and delegate to
3498*0b57cec5SDimitry Andric     // each other bottoming out with the base dtor.  Therefore we emit non-base
3499*0b57cec5SDimitry Andric     // dtors on usage, even if there is no dtor definition in the TU.
3500*0b57cec5SDimitry Andric     if (D && isa<CXXDestructorDecl>(D) &&
3501*0b57cec5SDimitry Andric         getCXXABI().useThunkForDtorVariant(cast<CXXDestructorDecl>(D),
3502*0b57cec5SDimitry Andric                                            GD.getDtorType()))
3503*0b57cec5SDimitry Andric       addDeferredDeclToEmit(GD);
3504*0b57cec5SDimitry Andric 
3505*0b57cec5SDimitry Andric     // This is the first use or definition of a mangled name.  If there is a
3506*0b57cec5SDimitry Andric     // deferred decl with this name, remember that we need to emit it at the end
3507*0b57cec5SDimitry Andric     // of the file.
3508*0b57cec5SDimitry Andric     auto DDI = DeferredDecls.find(MangledName);
3509*0b57cec5SDimitry Andric     if (DDI != DeferredDecls.end()) {
3510*0b57cec5SDimitry Andric       // Move the potentially referenced deferred decl to the
3511*0b57cec5SDimitry Andric       // DeferredDeclsToEmit list, and remove it from DeferredDecls (since we
3512*0b57cec5SDimitry Andric       // don't need it anymore).
3513*0b57cec5SDimitry Andric       addDeferredDeclToEmit(DDI->second);
3514*0b57cec5SDimitry Andric       DeferredDecls.erase(DDI);
3515*0b57cec5SDimitry Andric 
3516*0b57cec5SDimitry Andric       // Otherwise, there are cases we have to worry about where we're
3517*0b57cec5SDimitry Andric       // using a declaration for which we must emit a definition but where
3518*0b57cec5SDimitry Andric       // we might not find a top-level definition:
3519*0b57cec5SDimitry Andric       //   - member functions defined inline in their classes
3520*0b57cec5SDimitry Andric       //   - friend functions defined inline in some class
3521*0b57cec5SDimitry Andric       //   - special member functions with implicit definitions
3522*0b57cec5SDimitry Andric       // If we ever change our AST traversal to walk into class methods,
3523*0b57cec5SDimitry Andric       // this will be unnecessary.
3524*0b57cec5SDimitry Andric       //
3525*0b57cec5SDimitry Andric       // We also don't emit a definition for a function if it's going to be an
3526*0b57cec5SDimitry Andric       // entry in a vtable, unless it's already marked as used.
3527*0b57cec5SDimitry Andric     } else if (getLangOpts().CPlusPlus && D) {
3528*0b57cec5SDimitry Andric       // Look for a declaration that's lexically in a record.
3529*0b57cec5SDimitry Andric       for (const auto *FD = cast<FunctionDecl>(D)->getMostRecentDecl(); FD;
3530*0b57cec5SDimitry Andric            FD = FD->getPreviousDecl()) {
3531*0b57cec5SDimitry Andric         if (isa<CXXRecordDecl>(FD->getLexicalDeclContext())) {
3532*0b57cec5SDimitry Andric           if (FD->doesThisDeclarationHaveABody()) {
3533*0b57cec5SDimitry Andric             addDeferredDeclToEmit(GD.getWithDecl(FD));
3534*0b57cec5SDimitry Andric             break;
3535*0b57cec5SDimitry Andric           }
3536*0b57cec5SDimitry Andric         }
3537*0b57cec5SDimitry Andric       }
3538*0b57cec5SDimitry Andric     }
3539*0b57cec5SDimitry Andric   }
3540*0b57cec5SDimitry Andric 
3541*0b57cec5SDimitry Andric   // Make sure the result is of the requested type.
3542*0b57cec5SDimitry Andric   if (!IsIncompleteFunction) {
35435ffd83dbSDimitry Andric     assert(F->getFunctionType() == Ty);
3544*0b57cec5SDimitry Andric     return F;
3545*0b57cec5SDimitry Andric   }
3546*0b57cec5SDimitry Andric 
3547*0b57cec5SDimitry Andric   llvm::Type *PTy = llvm::PointerType::getUnqual(Ty);
3548*0b57cec5SDimitry Andric   return llvm::ConstantExpr::getBitCast(F, PTy);
3549*0b57cec5SDimitry Andric }
3550*0b57cec5SDimitry Andric 
3551*0b57cec5SDimitry Andric /// GetAddrOfFunction - Return the address of the given function.  If Ty is
3552*0b57cec5SDimitry Andric /// non-null, then this function will use the specified type if it has to
3553*0b57cec5SDimitry Andric /// create it (this occurs when we see a definition of the function).
3554*0b57cec5SDimitry Andric llvm::Constant *CodeGenModule::GetAddrOfFunction(GlobalDecl GD,
3555*0b57cec5SDimitry Andric                                                  llvm::Type *Ty,
3556*0b57cec5SDimitry Andric                                                  bool ForVTable,
3557*0b57cec5SDimitry Andric                                                  bool DontDefer,
3558*0b57cec5SDimitry Andric                                               ForDefinition_t IsForDefinition) {
35595ffd83dbSDimitry Andric   assert(!cast<FunctionDecl>(GD.getDecl())->isConsteval() &&
35605ffd83dbSDimitry Andric          "consteval function should never be emitted");
3561*0b57cec5SDimitry Andric   // If there was no specific requested type, just convert it now.
3562*0b57cec5SDimitry Andric   if (!Ty) {
3563*0b57cec5SDimitry Andric     const auto *FD = cast<FunctionDecl>(GD.getDecl());
3564*0b57cec5SDimitry Andric     Ty = getTypes().ConvertType(FD->getType());
3565*0b57cec5SDimitry Andric   }
3566*0b57cec5SDimitry Andric 
3567*0b57cec5SDimitry Andric   // Devirtualized destructor calls may come through here instead of via
3568*0b57cec5SDimitry Andric   // getAddrOfCXXStructor. Make sure we use the MS ABI base destructor instead
3569*0b57cec5SDimitry Andric   // of the complete destructor when necessary.
3570*0b57cec5SDimitry Andric   if (const auto *DD = dyn_cast<CXXDestructorDecl>(GD.getDecl())) {
3571*0b57cec5SDimitry Andric     if (getTarget().getCXXABI().isMicrosoft() &&
3572*0b57cec5SDimitry Andric         GD.getDtorType() == Dtor_Complete &&
3573*0b57cec5SDimitry Andric         DD->getParent()->getNumVBases() == 0)
3574*0b57cec5SDimitry Andric       GD = GlobalDecl(DD, Dtor_Base);
3575*0b57cec5SDimitry Andric   }
3576*0b57cec5SDimitry Andric 
3577*0b57cec5SDimitry Andric   StringRef MangledName = getMangledName(GD);
3578*0b57cec5SDimitry Andric   return GetOrCreateLLVMFunction(MangledName, Ty, GD, ForVTable, DontDefer,
3579*0b57cec5SDimitry Andric                                  /*IsThunk=*/false, llvm::AttributeList(),
3580*0b57cec5SDimitry Andric                                  IsForDefinition);
3581*0b57cec5SDimitry Andric }
3582*0b57cec5SDimitry Andric 
3583*0b57cec5SDimitry Andric static const FunctionDecl *
3584*0b57cec5SDimitry Andric GetRuntimeFunctionDecl(ASTContext &C, StringRef Name) {
3585*0b57cec5SDimitry Andric   TranslationUnitDecl *TUDecl = C.getTranslationUnitDecl();
3586*0b57cec5SDimitry Andric   DeclContext *DC = TranslationUnitDecl::castToDeclContext(TUDecl);
3587*0b57cec5SDimitry Andric 
3588*0b57cec5SDimitry Andric   IdentifierInfo &CII = C.Idents.get(Name);
3589*0b57cec5SDimitry Andric   for (const auto &Result : DC->lookup(&CII))
3590*0b57cec5SDimitry Andric     if (const auto FD = dyn_cast<FunctionDecl>(Result))
3591*0b57cec5SDimitry Andric       return FD;
3592*0b57cec5SDimitry Andric 
3593*0b57cec5SDimitry Andric   if (!C.getLangOpts().CPlusPlus)
3594*0b57cec5SDimitry Andric     return nullptr;
3595*0b57cec5SDimitry Andric 
3596*0b57cec5SDimitry Andric   // Demangle the premangled name from getTerminateFn()
3597*0b57cec5SDimitry Andric   IdentifierInfo &CXXII =
3598*0b57cec5SDimitry Andric       (Name == "_ZSt9terminatev" || Name == "?terminate@@YAXXZ")
3599*0b57cec5SDimitry Andric           ? C.Idents.get("terminate")
3600*0b57cec5SDimitry Andric           : C.Idents.get(Name);
3601*0b57cec5SDimitry Andric 
3602*0b57cec5SDimitry Andric   for (const auto &N : {"__cxxabiv1", "std"}) {
3603*0b57cec5SDimitry Andric     IdentifierInfo &NS = C.Idents.get(N);
3604*0b57cec5SDimitry Andric     for (const auto &Result : DC->lookup(&NS)) {
3605*0b57cec5SDimitry Andric       NamespaceDecl *ND = dyn_cast<NamespaceDecl>(Result);
3606*0b57cec5SDimitry Andric       if (auto LSD = dyn_cast<LinkageSpecDecl>(Result))
3607*0b57cec5SDimitry Andric         for (const auto &Result : LSD->lookup(&NS))
3608*0b57cec5SDimitry Andric           if ((ND = dyn_cast<NamespaceDecl>(Result)))
3609*0b57cec5SDimitry Andric             break;
3610*0b57cec5SDimitry Andric 
3611*0b57cec5SDimitry Andric       if (ND)
3612*0b57cec5SDimitry Andric         for (const auto &Result : ND->lookup(&CXXII))
3613*0b57cec5SDimitry Andric           if (const auto *FD = dyn_cast<FunctionDecl>(Result))
3614*0b57cec5SDimitry Andric             return FD;
3615*0b57cec5SDimitry Andric     }
3616*0b57cec5SDimitry Andric   }
3617*0b57cec5SDimitry Andric 
3618*0b57cec5SDimitry Andric   return nullptr;
3619*0b57cec5SDimitry Andric }
3620*0b57cec5SDimitry Andric 
3621*0b57cec5SDimitry Andric /// CreateRuntimeFunction - Create a new runtime function with the specified
3622*0b57cec5SDimitry Andric /// type and name.
3623*0b57cec5SDimitry Andric llvm::FunctionCallee
3624*0b57cec5SDimitry Andric CodeGenModule::CreateRuntimeFunction(llvm::FunctionType *FTy, StringRef Name,
3625480093f4SDimitry Andric                                      llvm::AttributeList ExtraAttrs, bool Local,
3626480093f4SDimitry Andric                                      bool AssumeConvergent) {
3627480093f4SDimitry Andric   if (AssumeConvergent) {
3628480093f4SDimitry Andric     ExtraAttrs =
3629480093f4SDimitry Andric         ExtraAttrs.addAttribute(VMContext, llvm::AttributeList::FunctionIndex,
3630480093f4SDimitry Andric                                 llvm::Attribute::Convergent);
3631480093f4SDimitry Andric   }
3632480093f4SDimitry Andric 
3633*0b57cec5SDimitry Andric   llvm::Constant *C =
3634*0b57cec5SDimitry Andric       GetOrCreateLLVMFunction(Name, FTy, GlobalDecl(), /*ForVTable=*/false,
3635*0b57cec5SDimitry Andric                               /*DontDefer=*/false, /*IsThunk=*/false,
3636*0b57cec5SDimitry Andric                               ExtraAttrs);
3637*0b57cec5SDimitry Andric 
3638*0b57cec5SDimitry Andric   if (auto *F = dyn_cast<llvm::Function>(C)) {
3639*0b57cec5SDimitry Andric     if (F->empty()) {
3640*0b57cec5SDimitry Andric       F->setCallingConv(getRuntimeCC());
3641*0b57cec5SDimitry Andric 
3642*0b57cec5SDimitry Andric       // In Windows Itanium environments, try to mark runtime functions
3643*0b57cec5SDimitry Andric       // dllimport. For Mingw and MSVC, don't. We don't really know if the user
3644*0b57cec5SDimitry Andric       // will link their standard library statically or dynamically. Marking
3645*0b57cec5SDimitry Andric       // functions imported when they are not imported can cause linker errors
3646*0b57cec5SDimitry Andric       // and warnings.
3647*0b57cec5SDimitry Andric       if (!Local && getTriple().isWindowsItaniumEnvironment() &&
3648*0b57cec5SDimitry Andric           !getCodeGenOpts().LTOVisibilityPublicStd) {
3649*0b57cec5SDimitry Andric         const FunctionDecl *FD = GetRuntimeFunctionDecl(Context, Name);
3650*0b57cec5SDimitry Andric         if (!FD || FD->hasAttr<DLLImportAttr>()) {
3651*0b57cec5SDimitry Andric           F->setDLLStorageClass(llvm::GlobalValue::DLLImportStorageClass);
3652*0b57cec5SDimitry Andric           F->setLinkage(llvm::GlobalValue::ExternalLinkage);
3653*0b57cec5SDimitry Andric         }
3654*0b57cec5SDimitry Andric       }
3655*0b57cec5SDimitry Andric       setDSOLocal(F);
3656*0b57cec5SDimitry Andric     }
3657*0b57cec5SDimitry Andric   }
3658*0b57cec5SDimitry Andric 
3659*0b57cec5SDimitry Andric   return {FTy, C};
3660*0b57cec5SDimitry Andric }
3661*0b57cec5SDimitry Andric 
3662*0b57cec5SDimitry Andric /// isTypeConstant - Determine whether an object of this type can be emitted
3663*0b57cec5SDimitry Andric /// as a constant.
3664*0b57cec5SDimitry Andric ///
3665*0b57cec5SDimitry Andric /// If ExcludeCtor is true, the duration when the object's constructor runs
3666*0b57cec5SDimitry Andric /// will not be considered. The caller will need to verify that the object is
3667*0b57cec5SDimitry Andric /// not written to during its construction.
3668*0b57cec5SDimitry Andric bool CodeGenModule::isTypeConstant(QualType Ty, bool ExcludeCtor) {
3669*0b57cec5SDimitry Andric   if (!Ty.isConstant(Context) && !Ty->isReferenceType())
3670*0b57cec5SDimitry Andric     return false;
3671*0b57cec5SDimitry Andric 
3672*0b57cec5SDimitry Andric   if (Context.getLangOpts().CPlusPlus) {
3673*0b57cec5SDimitry Andric     if (const CXXRecordDecl *Record
3674*0b57cec5SDimitry Andric           = Context.getBaseElementType(Ty)->getAsCXXRecordDecl())
3675*0b57cec5SDimitry Andric       return ExcludeCtor && !Record->hasMutableFields() &&
3676*0b57cec5SDimitry Andric              Record->hasTrivialDestructor();
3677*0b57cec5SDimitry Andric   }
3678*0b57cec5SDimitry Andric 
3679*0b57cec5SDimitry Andric   return true;
3680*0b57cec5SDimitry Andric }
3681*0b57cec5SDimitry Andric 
3682*0b57cec5SDimitry Andric /// GetOrCreateLLVMGlobal - If the specified mangled name is not in the module,
3683*0b57cec5SDimitry Andric /// create and return an llvm GlobalVariable with the specified type.  If there
3684*0b57cec5SDimitry Andric /// is something in the module with the specified name, return it potentially
3685*0b57cec5SDimitry Andric /// bitcasted to the right type.
3686*0b57cec5SDimitry Andric ///
3687*0b57cec5SDimitry Andric /// If D is non-null, it specifies a decl that correspond to this.  This is used
3688*0b57cec5SDimitry Andric /// to set the attributes on the global when it is first created.
3689*0b57cec5SDimitry Andric ///
3690*0b57cec5SDimitry Andric /// If IsForDefinition is true, it is guaranteed that an actual global with
3691*0b57cec5SDimitry Andric /// type Ty will be returned, not conversion of a variable with the same
3692*0b57cec5SDimitry Andric /// mangled name but some other type.
3693*0b57cec5SDimitry Andric llvm::Constant *
3694*0b57cec5SDimitry Andric CodeGenModule::GetOrCreateLLVMGlobal(StringRef MangledName,
3695*0b57cec5SDimitry Andric                                      llvm::PointerType *Ty,
3696*0b57cec5SDimitry Andric                                      const VarDecl *D,
3697*0b57cec5SDimitry Andric                                      ForDefinition_t IsForDefinition) {
3698*0b57cec5SDimitry Andric   // Lookup the entry, lazily creating it if necessary.
3699*0b57cec5SDimitry Andric   llvm::GlobalValue *Entry = GetGlobalValue(MangledName);
3700*0b57cec5SDimitry Andric   if (Entry) {
3701*0b57cec5SDimitry Andric     if (WeakRefReferences.erase(Entry)) {
3702*0b57cec5SDimitry Andric       if (D && !D->hasAttr<WeakAttr>())
3703*0b57cec5SDimitry Andric         Entry->setLinkage(llvm::Function::ExternalLinkage);
3704*0b57cec5SDimitry Andric     }
3705*0b57cec5SDimitry Andric 
3706*0b57cec5SDimitry Andric     // Handle dropped DLL attributes.
3707*0b57cec5SDimitry Andric     if (D && !D->hasAttr<DLLImportAttr>() && !D->hasAttr<DLLExportAttr>())
3708*0b57cec5SDimitry Andric       Entry->setDLLStorageClass(llvm::GlobalValue::DefaultStorageClass);
3709*0b57cec5SDimitry Andric 
3710*0b57cec5SDimitry Andric     if (LangOpts.OpenMP && !LangOpts.OpenMPSimd && D)
3711*0b57cec5SDimitry Andric       getOpenMPRuntime().registerTargetGlobalVariable(D, Entry);
3712*0b57cec5SDimitry Andric 
3713*0b57cec5SDimitry Andric     if (Entry->getType() == Ty)
3714*0b57cec5SDimitry Andric       return Entry;
3715*0b57cec5SDimitry Andric 
3716*0b57cec5SDimitry Andric     // If there are two attempts to define the same mangled name, issue an
3717*0b57cec5SDimitry Andric     // error.
3718*0b57cec5SDimitry Andric     if (IsForDefinition && !Entry->isDeclaration()) {
3719*0b57cec5SDimitry Andric       GlobalDecl OtherGD;
3720*0b57cec5SDimitry Andric       const VarDecl *OtherD;
3721*0b57cec5SDimitry Andric 
3722*0b57cec5SDimitry Andric       // Check that D is not yet in DiagnosedConflictingDefinitions is required
3723*0b57cec5SDimitry Andric       // to make sure that we issue an error only once.
3724*0b57cec5SDimitry Andric       if (D && lookupRepresentativeDecl(MangledName, OtherGD) &&
3725*0b57cec5SDimitry Andric           (D->getCanonicalDecl() != OtherGD.getCanonicalDecl().getDecl()) &&
3726*0b57cec5SDimitry Andric           (OtherD = dyn_cast<VarDecl>(OtherGD.getDecl())) &&
3727*0b57cec5SDimitry Andric           OtherD->hasInit() &&
3728*0b57cec5SDimitry Andric           DiagnosedConflictingDefinitions.insert(D).second) {
3729*0b57cec5SDimitry Andric         getDiags().Report(D->getLocation(), diag::err_duplicate_mangled_name)
3730*0b57cec5SDimitry Andric             << MangledName;
3731*0b57cec5SDimitry Andric         getDiags().Report(OtherGD.getDecl()->getLocation(),
3732*0b57cec5SDimitry Andric                           diag::note_previous_definition);
3733*0b57cec5SDimitry Andric       }
3734*0b57cec5SDimitry Andric     }
3735*0b57cec5SDimitry Andric 
3736*0b57cec5SDimitry Andric     // Make sure the result is of the correct type.
3737*0b57cec5SDimitry Andric     if (Entry->getType()->getAddressSpace() != Ty->getAddressSpace())
3738*0b57cec5SDimitry Andric       return llvm::ConstantExpr::getAddrSpaceCast(Entry, Ty);
3739*0b57cec5SDimitry Andric 
3740*0b57cec5SDimitry Andric     // (If global is requested for a definition, we always need to create a new
3741*0b57cec5SDimitry Andric     // global, not just return a bitcast.)
3742*0b57cec5SDimitry Andric     if (!IsForDefinition)
3743*0b57cec5SDimitry Andric       return llvm::ConstantExpr::getBitCast(Entry, Ty);
3744*0b57cec5SDimitry Andric   }
3745*0b57cec5SDimitry Andric 
3746*0b57cec5SDimitry Andric   auto AddrSpace = GetGlobalVarAddressSpace(D);
3747*0b57cec5SDimitry Andric   auto TargetAddrSpace = getContext().getTargetAddressSpace(AddrSpace);
3748*0b57cec5SDimitry Andric 
3749*0b57cec5SDimitry Andric   auto *GV = new llvm::GlobalVariable(
3750*0b57cec5SDimitry Andric       getModule(), Ty->getElementType(), false,
3751*0b57cec5SDimitry Andric       llvm::GlobalValue::ExternalLinkage, nullptr, MangledName, nullptr,
3752*0b57cec5SDimitry Andric       llvm::GlobalVariable::NotThreadLocal, TargetAddrSpace);
3753*0b57cec5SDimitry Andric 
3754*0b57cec5SDimitry Andric   // If we already created a global with the same mangled name (but different
3755*0b57cec5SDimitry Andric   // type) before, take its name and remove it from its parent.
3756*0b57cec5SDimitry Andric   if (Entry) {
3757*0b57cec5SDimitry Andric     GV->takeName(Entry);
3758*0b57cec5SDimitry Andric 
3759*0b57cec5SDimitry Andric     if (!Entry->use_empty()) {
3760*0b57cec5SDimitry Andric       llvm::Constant *NewPtrForOldDecl =
3761*0b57cec5SDimitry Andric           llvm::ConstantExpr::getBitCast(GV, Entry->getType());
3762*0b57cec5SDimitry Andric       Entry->replaceAllUsesWith(NewPtrForOldDecl);
3763*0b57cec5SDimitry Andric     }
3764*0b57cec5SDimitry Andric 
3765*0b57cec5SDimitry Andric     Entry->eraseFromParent();
3766*0b57cec5SDimitry Andric   }
3767*0b57cec5SDimitry Andric 
3768*0b57cec5SDimitry Andric   // This is the first use or definition of a mangled name.  If there is a
3769*0b57cec5SDimitry Andric   // deferred decl with this name, remember that we need to emit it at the end
3770*0b57cec5SDimitry Andric   // of the file.
3771*0b57cec5SDimitry Andric   auto DDI = DeferredDecls.find(MangledName);
3772*0b57cec5SDimitry Andric   if (DDI != DeferredDecls.end()) {
3773*0b57cec5SDimitry Andric     // Move the potentially referenced deferred decl to the DeferredDeclsToEmit
3774*0b57cec5SDimitry Andric     // list, and remove it from DeferredDecls (since we don't need it anymore).
3775*0b57cec5SDimitry Andric     addDeferredDeclToEmit(DDI->second);
3776*0b57cec5SDimitry Andric     DeferredDecls.erase(DDI);
3777*0b57cec5SDimitry Andric   }
3778*0b57cec5SDimitry Andric 
3779*0b57cec5SDimitry Andric   // Handle things which are present even on external declarations.
3780*0b57cec5SDimitry Andric   if (D) {
3781*0b57cec5SDimitry Andric     if (LangOpts.OpenMP && !LangOpts.OpenMPSimd)
3782*0b57cec5SDimitry Andric       getOpenMPRuntime().registerTargetGlobalVariable(D, GV);
3783*0b57cec5SDimitry Andric 
3784*0b57cec5SDimitry Andric     // FIXME: This code is overly simple and should be merged with other global
3785*0b57cec5SDimitry Andric     // handling.
3786*0b57cec5SDimitry Andric     GV->setConstant(isTypeConstant(D->getType(), false));
3787*0b57cec5SDimitry Andric 
3788a7dea167SDimitry Andric     GV->setAlignment(getContext().getDeclAlign(D).getAsAlign());
3789*0b57cec5SDimitry Andric 
3790*0b57cec5SDimitry Andric     setLinkageForGV(GV, D);
3791*0b57cec5SDimitry Andric 
3792*0b57cec5SDimitry Andric     if (D->getTLSKind()) {
3793*0b57cec5SDimitry Andric       if (D->getTLSKind() == VarDecl::TLS_Dynamic)
3794*0b57cec5SDimitry Andric         CXXThreadLocals.push_back(D);
3795*0b57cec5SDimitry Andric       setTLSMode(GV, *D);
3796*0b57cec5SDimitry Andric     }
3797*0b57cec5SDimitry Andric 
3798*0b57cec5SDimitry Andric     setGVProperties(GV, D);
3799*0b57cec5SDimitry Andric 
3800*0b57cec5SDimitry Andric     // If required by the ABI, treat declarations of static data members with
3801*0b57cec5SDimitry Andric     // inline initializers as definitions.
3802*0b57cec5SDimitry Andric     if (getContext().isMSStaticDataMemberInlineDefinition(D)) {
3803*0b57cec5SDimitry Andric       EmitGlobalVarDefinition(D);
3804*0b57cec5SDimitry Andric     }
3805*0b57cec5SDimitry Andric 
3806*0b57cec5SDimitry Andric     // Emit section information for extern variables.
3807*0b57cec5SDimitry Andric     if (D->hasExternalStorage()) {
3808*0b57cec5SDimitry Andric       if (const SectionAttr *SA = D->getAttr<SectionAttr>())
3809*0b57cec5SDimitry Andric         GV->setSection(SA->getName());
3810*0b57cec5SDimitry Andric     }
3811*0b57cec5SDimitry Andric 
3812*0b57cec5SDimitry Andric     // Handle XCore specific ABI requirements.
3813*0b57cec5SDimitry Andric     if (getTriple().getArch() == llvm::Triple::xcore &&
3814*0b57cec5SDimitry Andric         D->getLanguageLinkage() == CLanguageLinkage &&
3815*0b57cec5SDimitry Andric         D->getType().isConstant(Context) &&
3816*0b57cec5SDimitry Andric         isExternallyVisible(D->getLinkageAndVisibility().getLinkage()))
3817*0b57cec5SDimitry Andric       GV->setSection(".cp.rodata");
3818*0b57cec5SDimitry Andric 
3819*0b57cec5SDimitry Andric     // Check if we a have a const declaration with an initializer, we may be
3820*0b57cec5SDimitry Andric     // able to emit it as available_externally to expose it's value to the
3821*0b57cec5SDimitry Andric     // optimizer.
3822*0b57cec5SDimitry Andric     if (Context.getLangOpts().CPlusPlus && GV->hasExternalLinkage() &&
3823*0b57cec5SDimitry Andric         D->getType().isConstQualified() && !GV->hasInitializer() &&
3824*0b57cec5SDimitry Andric         !D->hasDefinition() && D->hasInit() && !D->hasAttr<DLLImportAttr>()) {
3825*0b57cec5SDimitry Andric       const auto *Record =
3826*0b57cec5SDimitry Andric           Context.getBaseElementType(D->getType())->getAsCXXRecordDecl();
3827*0b57cec5SDimitry Andric       bool HasMutableFields = Record && Record->hasMutableFields();
3828*0b57cec5SDimitry Andric       if (!HasMutableFields) {
3829*0b57cec5SDimitry Andric         const VarDecl *InitDecl;
3830*0b57cec5SDimitry Andric         const Expr *InitExpr = D->getAnyInitializer(InitDecl);
3831*0b57cec5SDimitry Andric         if (InitExpr) {
3832*0b57cec5SDimitry Andric           ConstantEmitter emitter(*this);
3833*0b57cec5SDimitry Andric           llvm::Constant *Init = emitter.tryEmitForInitializer(*InitDecl);
3834*0b57cec5SDimitry Andric           if (Init) {
3835*0b57cec5SDimitry Andric             auto *InitType = Init->getType();
38365ffd83dbSDimitry Andric             if (GV->getValueType() != InitType) {
3837*0b57cec5SDimitry Andric               // The type of the initializer does not match the definition.
3838*0b57cec5SDimitry Andric               // This happens when an initializer has a different type from
3839*0b57cec5SDimitry Andric               // the type of the global (because of padding at the end of a
3840*0b57cec5SDimitry Andric               // structure for instance).
3841*0b57cec5SDimitry Andric               GV->setName(StringRef());
3842*0b57cec5SDimitry Andric               // Make a new global with the correct type, this is now guaranteed
3843*0b57cec5SDimitry Andric               // to work.
3844*0b57cec5SDimitry Andric               auto *NewGV = cast<llvm::GlobalVariable>(
3845a7dea167SDimitry Andric                   GetAddrOfGlobalVar(D, InitType, IsForDefinition)
3846a7dea167SDimitry Andric                       ->stripPointerCasts());
3847*0b57cec5SDimitry Andric 
3848*0b57cec5SDimitry Andric               // Erase the old global, since it is no longer used.
3849*0b57cec5SDimitry Andric               GV->eraseFromParent();
3850*0b57cec5SDimitry Andric               GV = NewGV;
3851*0b57cec5SDimitry Andric             } else {
3852*0b57cec5SDimitry Andric               GV->setInitializer(Init);
3853*0b57cec5SDimitry Andric               GV->setConstant(true);
3854*0b57cec5SDimitry Andric               GV->setLinkage(llvm::GlobalValue::AvailableExternallyLinkage);
3855*0b57cec5SDimitry Andric             }
3856*0b57cec5SDimitry Andric             emitter.finalize(GV);
3857*0b57cec5SDimitry Andric           }
3858*0b57cec5SDimitry Andric         }
3859*0b57cec5SDimitry Andric       }
3860*0b57cec5SDimitry Andric     }
3861*0b57cec5SDimitry Andric   }
3862*0b57cec5SDimitry Andric 
3863480093f4SDimitry Andric   if (GV->isDeclaration())
3864480093f4SDimitry Andric     getTargetCodeGenInfo().setTargetAttributes(D, GV, *this);
3865480093f4SDimitry Andric 
3866*0b57cec5SDimitry Andric   LangAS ExpectedAS =
3867*0b57cec5SDimitry Andric       D ? D->getType().getAddressSpace()
3868*0b57cec5SDimitry Andric         : (LangOpts.OpenCL ? LangAS::opencl_global : LangAS::Default);
3869*0b57cec5SDimitry Andric   assert(getContext().getTargetAddressSpace(ExpectedAS) ==
3870*0b57cec5SDimitry Andric          Ty->getPointerAddressSpace());
3871*0b57cec5SDimitry Andric   if (AddrSpace != ExpectedAS)
3872*0b57cec5SDimitry Andric     return getTargetCodeGenInfo().performAddrSpaceCast(*this, GV, AddrSpace,
3873*0b57cec5SDimitry Andric                                                        ExpectedAS, Ty);
3874*0b57cec5SDimitry Andric 
3875*0b57cec5SDimitry Andric   return GV;
3876*0b57cec5SDimitry Andric }
3877*0b57cec5SDimitry Andric 
3878*0b57cec5SDimitry Andric llvm::Constant *
38795ffd83dbSDimitry Andric CodeGenModule::GetAddrOfGlobal(GlobalDecl GD, ForDefinition_t IsForDefinition) {
3880*0b57cec5SDimitry Andric   const Decl *D = GD.getDecl();
38815ffd83dbSDimitry Andric 
3882*0b57cec5SDimitry Andric   if (isa<CXXConstructorDecl>(D) || isa<CXXDestructorDecl>(D))
3883*0b57cec5SDimitry Andric     return getAddrOfCXXStructor(GD, /*FnInfo=*/nullptr, /*FnType=*/nullptr,
3884*0b57cec5SDimitry Andric                                 /*DontDefer=*/false, IsForDefinition);
38855ffd83dbSDimitry Andric 
38865ffd83dbSDimitry Andric   if (isa<CXXMethodDecl>(D)) {
38875ffd83dbSDimitry Andric     auto FInfo =
38885ffd83dbSDimitry Andric         &getTypes().arrangeCXXMethodDeclaration(cast<CXXMethodDecl>(D));
3889*0b57cec5SDimitry Andric     auto Ty = getTypes().GetFunctionType(*FInfo);
3890*0b57cec5SDimitry Andric     return GetAddrOfFunction(GD, Ty, /*ForVTable=*/false, /*DontDefer=*/false,
3891*0b57cec5SDimitry Andric                              IsForDefinition);
38925ffd83dbSDimitry Andric   }
38935ffd83dbSDimitry Andric 
38945ffd83dbSDimitry Andric   if (isa<FunctionDecl>(D)) {
3895*0b57cec5SDimitry Andric     const CGFunctionInfo &FI = getTypes().arrangeGlobalDeclaration(GD);
3896*0b57cec5SDimitry Andric     llvm::FunctionType *Ty = getTypes().GetFunctionType(FI);
3897*0b57cec5SDimitry Andric     return GetAddrOfFunction(GD, Ty, /*ForVTable=*/false, /*DontDefer=*/false,
3898*0b57cec5SDimitry Andric                              IsForDefinition);
38995ffd83dbSDimitry Andric   }
39005ffd83dbSDimitry Andric 
39015ffd83dbSDimitry Andric   return GetAddrOfGlobalVar(cast<VarDecl>(D), /*Ty=*/nullptr, IsForDefinition);
3902*0b57cec5SDimitry Andric }
3903*0b57cec5SDimitry Andric 
3904*0b57cec5SDimitry Andric llvm::GlobalVariable *CodeGenModule::CreateOrReplaceCXXRuntimeVariable(
3905*0b57cec5SDimitry Andric     StringRef Name, llvm::Type *Ty, llvm::GlobalValue::LinkageTypes Linkage,
3906*0b57cec5SDimitry Andric     unsigned Alignment) {
3907*0b57cec5SDimitry Andric   llvm::GlobalVariable *GV = getModule().getNamedGlobal(Name);
3908*0b57cec5SDimitry Andric   llvm::GlobalVariable *OldGV = nullptr;
3909*0b57cec5SDimitry Andric 
3910*0b57cec5SDimitry Andric   if (GV) {
3911*0b57cec5SDimitry Andric     // Check if the variable has the right type.
39125ffd83dbSDimitry Andric     if (GV->getValueType() == Ty)
3913*0b57cec5SDimitry Andric       return GV;
3914*0b57cec5SDimitry Andric 
3915*0b57cec5SDimitry Andric     // Because C++ name mangling, the only way we can end up with an already
3916*0b57cec5SDimitry Andric     // existing global with the same name is if it has been declared extern "C".
3917*0b57cec5SDimitry Andric     assert(GV->isDeclaration() && "Declaration has wrong type!");
3918*0b57cec5SDimitry Andric     OldGV = GV;
3919*0b57cec5SDimitry Andric   }
3920*0b57cec5SDimitry Andric 
3921*0b57cec5SDimitry Andric   // Create a new variable.
3922*0b57cec5SDimitry Andric   GV = new llvm::GlobalVariable(getModule(), Ty, /*isConstant=*/true,
3923*0b57cec5SDimitry Andric                                 Linkage, nullptr, Name);
3924*0b57cec5SDimitry Andric 
3925*0b57cec5SDimitry Andric   if (OldGV) {
3926*0b57cec5SDimitry Andric     // Replace occurrences of the old variable if needed.
3927*0b57cec5SDimitry Andric     GV->takeName(OldGV);
3928*0b57cec5SDimitry Andric 
3929*0b57cec5SDimitry Andric     if (!OldGV->use_empty()) {
3930*0b57cec5SDimitry Andric       llvm::Constant *NewPtrForOldDecl =
3931*0b57cec5SDimitry Andric       llvm::ConstantExpr::getBitCast(GV, OldGV->getType());
3932*0b57cec5SDimitry Andric       OldGV->replaceAllUsesWith(NewPtrForOldDecl);
3933*0b57cec5SDimitry Andric     }
3934*0b57cec5SDimitry Andric 
3935*0b57cec5SDimitry Andric     OldGV->eraseFromParent();
3936*0b57cec5SDimitry Andric   }
3937*0b57cec5SDimitry Andric 
3938*0b57cec5SDimitry Andric   if (supportsCOMDAT() && GV->isWeakForLinker() &&
3939*0b57cec5SDimitry Andric       !GV->hasAvailableExternallyLinkage())
3940*0b57cec5SDimitry Andric     GV->setComdat(TheModule.getOrInsertComdat(GV->getName()));
3941*0b57cec5SDimitry Andric 
3942a7dea167SDimitry Andric   GV->setAlignment(llvm::MaybeAlign(Alignment));
3943*0b57cec5SDimitry Andric 
3944*0b57cec5SDimitry Andric   return GV;
3945*0b57cec5SDimitry Andric }
3946*0b57cec5SDimitry Andric 
3947*0b57cec5SDimitry Andric /// GetAddrOfGlobalVar - Return the llvm::Constant for the address of the
3948*0b57cec5SDimitry Andric /// given global variable.  If Ty is non-null and if the global doesn't exist,
3949*0b57cec5SDimitry Andric /// then it will be created with the specified type instead of whatever the
3950*0b57cec5SDimitry Andric /// normal requested type would be. If IsForDefinition is true, it is guaranteed
3951*0b57cec5SDimitry Andric /// that an actual global with type Ty will be returned, not conversion of a
3952*0b57cec5SDimitry Andric /// variable with the same mangled name but some other type.
3953*0b57cec5SDimitry Andric llvm::Constant *CodeGenModule::GetAddrOfGlobalVar(const VarDecl *D,
3954*0b57cec5SDimitry Andric                                                   llvm::Type *Ty,
3955*0b57cec5SDimitry Andric                                            ForDefinition_t IsForDefinition) {
3956*0b57cec5SDimitry Andric   assert(D->hasGlobalStorage() && "Not a global variable");
3957*0b57cec5SDimitry Andric   QualType ASTTy = D->getType();
3958*0b57cec5SDimitry Andric   if (!Ty)
3959*0b57cec5SDimitry Andric     Ty = getTypes().ConvertTypeForMem(ASTTy);
3960*0b57cec5SDimitry Andric 
3961*0b57cec5SDimitry Andric   llvm::PointerType *PTy =
3962*0b57cec5SDimitry Andric     llvm::PointerType::get(Ty, getContext().getTargetAddressSpace(ASTTy));
3963*0b57cec5SDimitry Andric 
3964*0b57cec5SDimitry Andric   StringRef MangledName = getMangledName(D);
3965*0b57cec5SDimitry Andric   return GetOrCreateLLVMGlobal(MangledName, PTy, D, IsForDefinition);
3966*0b57cec5SDimitry Andric }
3967*0b57cec5SDimitry Andric 
3968*0b57cec5SDimitry Andric /// CreateRuntimeVariable - Create a new runtime global variable with the
3969*0b57cec5SDimitry Andric /// specified type and name.
3970*0b57cec5SDimitry Andric llvm::Constant *
3971*0b57cec5SDimitry Andric CodeGenModule::CreateRuntimeVariable(llvm::Type *Ty,
3972*0b57cec5SDimitry Andric                                      StringRef Name) {
3973*0b57cec5SDimitry Andric   auto PtrTy =
3974*0b57cec5SDimitry Andric       getContext().getLangOpts().OpenCL
3975*0b57cec5SDimitry Andric           ? llvm::PointerType::get(
3976*0b57cec5SDimitry Andric                 Ty, getContext().getTargetAddressSpace(LangAS::opencl_global))
3977*0b57cec5SDimitry Andric           : llvm::PointerType::getUnqual(Ty);
3978*0b57cec5SDimitry Andric   auto *Ret = GetOrCreateLLVMGlobal(Name, PtrTy, nullptr);
3979*0b57cec5SDimitry Andric   setDSOLocal(cast<llvm::GlobalValue>(Ret->stripPointerCasts()));
3980*0b57cec5SDimitry Andric   return Ret;
3981*0b57cec5SDimitry Andric }
3982*0b57cec5SDimitry Andric 
3983*0b57cec5SDimitry Andric void CodeGenModule::EmitTentativeDefinition(const VarDecl *D) {
3984*0b57cec5SDimitry Andric   assert(!D->getInit() && "Cannot emit definite definitions here!");
3985*0b57cec5SDimitry Andric 
3986*0b57cec5SDimitry Andric   StringRef MangledName = getMangledName(D);
3987*0b57cec5SDimitry Andric   llvm::GlobalValue *GV = GetGlobalValue(MangledName);
3988*0b57cec5SDimitry Andric 
3989*0b57cec5SDimitry Andric   // We already have a definition, not declaration, with the same mangled name.
3990*0b57cec5SDimitry Andric   // Emitting of declaration is not required (and actually overwrites emitted
3991*0b57cec5SDimitry Andric   // definition).
3992*0b57cec5SDimitry Andric   if (GV && !GV->isDeclaration())
3993*0b57cec5SDimitry Andric     return;
3994*0b57cec5SDimitry Andric 
3995*0b57cec5SDimitry Andric   // If we have not seen a reference to this variable yet, place it into the
3996*0b57cec5SDimitry Andric   // deferred declarations table to be emitted if needed later.
3997*0b57cec5SDimitry Andric   if (!MustBeEmitted(D) && !GV) {
3998*0b57cec5SDimitry Andric       DeferredDecls[MangledName] = D;
3999*0b57cec5SDimitry Andric       return;
4000*0b57cec5SDimitry Andric   }
4001*0b57cec5SDimitry Andric 
4002*0b57cec5SDimitry Andric   // The tentative definition is the only definition.
4003*0b57cec5SDimitry Andric   EmitGlobalVarDefinition(D);
4004*0b57cec5SDimitry Andric }
4005*0b57cec5SDimitry Andric 
4006480093f4SDimitry Andric void CodeGenModule::EmitExternalDeclaration(const VarDecl *D) {
4007480093f4SDimitry Andric   EmitExternalVarDeclaration(D);
4008480093f4SDimitry Andric }
4009480093f4SDimitry Andric 
4010*0b57cec5SDimitry Andric CharUnits CodeGenModule::GetTargetTypeStoreSize(llvm::Type *Ty) const {
4011*0b57cec5SDimitry Andric   return Context.toCharUnitsFromBits(
4012*0b57cec5SDimitry Andric       getDataLayout().getTypeStoreSizeInBits(Ty));
4013*0b57cec5SDimitry Andric }
4014*0b57cec5SDimitry Andric 
4015*0b57cec5SDimitry Andric LangAS CodeGenModule::GetGlobalVarAddressSpace(const VarDecl *D) {
4016*0b57cec5SDimitry Andric   LangAS AddrSpace = LangAS::Default;
4017*0b57cec5SDimitry Andric   if (LangOpts.OpenCL) {
4018*0b57cec5SDimitry Andric     AddrSpace = D ? D->getType().getAddressSpace() : LangAS::opencl_global;
4019*0b57cec5SDimitry Andric     assert(AddrSpace == LangAS::opencl_global ||
4020e8d8bef9SDimitry Andric            AddrSpace == LangAS::opencl_global_device ||
4021e8d8bef9SDimitry Andric            AddrSpace == LangAS::opencl_global_host ||
4022*0b57cec5SDimitry Andric            AddrSpace == LangAS::opencl_constant ||
4023*0b57cec5SDimitry Andric            AddrSpace == LangAS::opencl_local ||
4024*0b57cec5SDimitry Andric            AddrSpace >= LangAS::FirstTargetAddressSpace);
4025*0b57cec5SDimitry Andric     return AddrSpace;
4026*0b57cec5SDimitry Andric   }
4027*0b57cec5SDimitry Andric 
4028*0b57cec5SDimitry Andric   if (LangOpts.CUDA && LangOpts.CUDAIsDevice) {
4029*0b57cec5SDimitry Andric     if (D && D->hasAttr<CUDAConstantAttr>())
4030*0b57cec5SDimitry Andric       return LangAS::cuda_constant;
4031*0b57cec5SDimitry Andric     else if (D && D->hasAttr<CUDASharedAttr>())
4032*0b57cec5SDimitry Andric       return LangAS::cuda_shared;
4033*0b57cec5SDimitry Andric     else if (D && D->hasAttr<CUDADeviceAttr>())
4034*0b57cec5SDimitry Andric       return LangAS::cuda_device;
4035*0b57cec5SDimitry Andric     else if (D && D->getType().isConstQualified())
4036*0b57cec5SDimitry Andric       return LangAS::cuda_constant;
4037*0b57cec5SDimitry Andric     else
4038*0b57cec5SDimitry Andric       return LangAS::cuda_device;
4039*0b57cec5SDimitry Andric   }
4040*0b57cec5SDimitry Andric 
4041*0b57cec5SDimitry Andric   if (LangOpts.OpenMP) {
4042*0b57cec5SDimitry Andric     LangAS AS;
4043*0b57cec5SDimitry Andric     if (OpenMPRuntime->hasAllocateAttributeForGlobalVar(D, AS))
4044*0b57cec5SDimitry Andric       return AS;
4045*0b57cec5SDimitry Andric   }
4046*0b57cec5SDimitry Andric   return getTargetCodeGenInfo().getGlobalVarAddressSpace(*this, D);
4047*0b57cec5SDimitry Andric }
4048*0b57cec5SDimitry Andric 
4049*0b57cec5SDimitry Andric LangAS CodeGenModule::getStringLiteralAddressSpace() const {
4050*0b57cec5SDimitry Andric   // OpenCL v1.2 s6.5.3: a string literal is in the constant address space.
4051*0b57cec5SDimitry Andric   if (LangOpts.OpenCL)
4052*0b57cec5SDimitry Andric     return LangAS::opencl_constant;
4053*0b57cec5SDimitry Andric   if (auto AS = getTarget().getConstantAddressSpace())
4054*0b57cec5SDimitry Andric     return AS.getValue();
4055*0b57cec5SDimitry Andric   return LangAS::Default;
4056*0b57cec5SDimitry Andric }
4057*0b57cec5SDimitry Andric 
4058*0b57cec5SDimitry Andric // In address space agnostic languages, string literals are in default address
4059*0b57cec5SDimitry Andric // space in AST. However, certain targets (e.g. amdgcn) request them to be
4060*0b57cec5SDimitry Andric // emitted in constant address space in LLVM IR. To be consistent with other
4061*0b57cec5SDimitry Andric // parts of AST, string literal global variables in constant address space
4062*0b57cec5SDimitry Andric // need to be casted to default address space before being put into address
4063*0b57cec5SDimitry Andric // map and referenced by other part of CodeGen.
4064*0b57cec5SDimitry Andric // In OpenCL, string literals are in constant address space in AST, therefore
4065*0b57cec5SDimitry Andric // they should not be casted to default address space.
4066*0b57cec5SDimitry Andric static llvm::Constant *
4067*0b57cec5SDimitry Andric castStringLiteralToDefaultAddressSpace(CodeGenModule &CGM,
4068*0b57cec5SDimitry Andric                                        llvm::GlobalVariable *GV) {
4069*0b57cec5SDimitry Andric   llvm::Constant *Cast = GV;
4070*0b57cec5SDimitry Andric   if (!CGM.getLangOpts().OpenCL) {
4071*0b57cec5SDimitry Andric     if (auto AS = CGM.getTarget().getConstantAddressSpace()) {
4072*0b57cec5SDimitry Andric       if (AS != LangAS::Default)
4073*0b57cec5SDimitry Andric         Cast = CGM.getTargetCodeGenInfo().performAddrSpaceCast(
4074*0b57cec5SDimitry Andric             CGM, GV, AS.getValue(), LangAS::Default,
4075*0b57cec5SDimitry Andric             GV->getValueType()->getPointerTo(
4076*0b57cec5SDimitry Andric                 CGM.getContext().getTargetAddressSpace(LangAS::Default)));
4077*0b57cec5SDimitry Andric     }
4078*0b57cec5SDimitry Andric   }
4079*0b57cec5SDimitry Andric   return Cast;
4080*0b57cec5SDimitry Andric }
4081*0b57cec5SDimitry Andric 
4082*0b57cec5SDimitry Andric template<typename SomeDecl>
4083*0b57cec5SDimitry Andric void CodeGenModule::MaybeHandleStaticInExternC(const SomeDecl *D,
4084*0b57cec5SDimitry Andric                                                llvm::GlobalValue *GV) {
4085*0b57cec5SDimitry Andric   if (!getLangOpts().CPlusPlus)
4086*0b57cec5SDimitry Andric     return;
4087*0b57cec5SDimitry Andric 
4088*0b57cec5SDimitry Andric   // Must have 'used' attribute, or else inline assembly can't rely on
4089*0b57cec5SDimitry Andric   // the name existing.
4090*0b57cec5SDimitry Andric   if (!D->template hasAttr<UsedAttr>())
4091*0b57cec5SDimitry Andric     return;
4092*0b57cec5SDimitry Andric 
4093*0b57cec5SDimitry Andric   // Must have internal linkage and an ordinary name.
4094*0b57cec5SDimitry Andric   if (!D->getIdentifier() || D->getFormalLinkage() != InternalLinkage)
4095*0b57cec5SDimitry Andric     return;
4096*0b57cec5SDimitry Andric 
4097*0b57cec5SDimitry Andric   // Must be in an extern "C" context. Entities declared directly within
4098*0b57cec5SDimitry Andric   // a record are not extern "C" even if the record is in such a context.
4099*0b57cec5SDimitry Andric   const SomeDecl *First = D->getFirstDecl();
4100*0b57cec5SDimitry Andric   if (First->getDeclContext()->isRecord() || !First->isInExternCContext())
4101*0b57cec5SDimitry Andric     return;
4102*0b57cec5SDimitry Andric 
4103*0b57cec5SDimitry Andric   // OK, this is an internal linkage entity inside an extern "C" linkage
4104*0b57cec5SDimitry Andric   // specification. Make a note of that so we can give it the "expected"
4105*0b57cec5SDimitry Andric   // mangled name if nothing else is using that name.
4106*0b57cec5SDimitry Andric   std::pair<StaticExternCMap::iterator, bool> R =
4107*0b57cec5SDimitry Andric       StaticExternCValues.insert(std::make_pair(D->getIdentifier(), GV));
4108*0b57cec5SDimitry Andric 
4109*0b57cec5SDimitry Andric   // If we have multiple internal linkage entities with the same name
4110*0b57cec5SDimitry Andric   // in extern "C" regions, none of them gets that name.
4111*0b57cec5SDimitry Andric   if (!R.second)
4112*0b57cec5SDimitry Andric     R.first->second = nullptr;
4113*0b57cec5SDimitry Andric }
4114*0b57cec5SDimitry Andric 
4115*0b57cec5SDimitry Andric static bool shouldBeInCOMDAT(CodeGenModule &CGM, const Decl &D) {
4116*0b57cec5SDimitry Andric   if (!CGM.supportsCOMDAT())
4117*0b57cec5SDimitry Andric     return false;
4118*0b57cec5SDimitry Andric 
4119*0b57cec5SDimitry Andric   // Do not set COMDAT attribute for CUDA/HIP stub functions to prevent
4120*0b57cec5SDimitry Andric   // them being "merged" by the COMDAT Folding linker optimization.
4121*0b57cec5SDimitry Andric   if (D.hasAttr<CUDAGlobalAttr>())
4122*0b57cec5SDimitry Andric     return false;
4123*0b57cec5SDimitry Andric 
4124*0b57cec5SDimitry Andric   if (D.hasAttr<SelectAnyAttr>())
4125*0b57cec5SDimitry Andric     return true;
4126*0b57cec5SDimitry Andric 
4127*0b57cec5SDimitry Andric   GVALinkage Linkage;
4128*0b57cec5SDimitry Andric   if (auto *VD = dyn_cast<VarDecl>(&D))
4129*0b57cec5SDimitry Andric     Linkage = CGM.getContext().GetGVALinkageForVariable(VD);
4130*0b57cec5SDimitry Andric   else
4131*0b57cec5SDimitry Andric     Linkage = CGM.getContext().GetGVALinkageForFunction(cast<FunctionDecl>(&D));
4132*0b57cec5SDimitry Andric 
4133*0b57cec5SDimitry Andric   switch (Linkage) {
4134*0b57cec5SDimitry Andric   case GVA_Internal:
4135*0b57cec5SDimitry Andric   case GVA_AvailableExternally:
4136*0b57cec5SDimitry Andric   case GVA_StrongExternal:
4137*0b57cec5SDimitry Andric     return false;
4138*0b57cec5SDimitry Andric   case GVA_DiscardableODR:
4139*0b57cec5SDimitry Andric   case GVA_StrongODR:
4140*0b57cec5SDimitry Andric     return true;
4141*0b57cec5SDimitry Andric   }
4142*0b57cec5SDimitry Andric   llvm_unreachable("No such linkage");
4143*0b57cec5SDimitry Andric }
4144*0b57cec5SDimitry Andric 
4145*0b57cec5SDimitry Andric void CodeGenModule::maybeSetTrivialComdat(const Decl &D,
4146*0b57cec5SDimitry Andric                                           llvm::GlobalObject &GO) {
4147*0b57cec5SDimitry Andric   if (!shouldBeInCOMDAT(*this, D))
4148*0b57cec5SDimitry Andric     return;
4149*0b57cec5SDimitry Andric   GO.setComdat(TheModule.getOrInsertComdat(GO.getName()));
4150*0b57cec5SDimitry Andric }
4151*0b57cec5SDimitry Andric 
4152*0b57cec5SDimitry Andric /// Pass IsTentative as true if you want to create a tentative definition.
4153*0b57cec5SDimitry Andric void CodeGenModule::EmitGlobalVarDefinition(const VarDecl *D,
4154*0b57cec5SDimitry Andric                                             bool IsTentative) {
4155*0b57cec5SDimitry Andric   // OpenCL global variables of sampler type are translated to function calls,
4156*0b57cec5SDimitry Andric   // therefore no need to be translated.
4157*0b57cec5SDimitry Andric   QualType ASTTy = D->getType();
4158*0b57cec5SDimitry Andric   if (getLangOpts().OpenCL && ASTTy->isSamplerT())
4159*0b57cec5SDimitry Andric     return;
4160*0b57cec5SDimitry Andric 
4161*0b57cec5SDimitry Andric   // If this is OpenMP device, check if it is legal to emit this global
4162*0b57cec5SDimitry Andric   // normally.
4163*0b57cec5SDimitry Andric   if (LangOpts.OpenMPIsDevice && OpenMPRuntime &&
4164*0b57cec5SDimitry Andric       OpenMPRuntime->emitTargetGlobalVariable(D))
4165*0b57cec5SDimitry Andric     return;
4166*0b57cec5SDimitry Andric 
4167*0b57cec5SDimitry Andric   llvm::Constant *Init = nullptr;
4168*0b57cec5SDimitry Andric   bool NeedsGlobalCtor = false;
4169a7dea167SDimitry Andric   bool NeedsGlobalDtor =
4170a7dea167SDimitry Andric       D->needsDestruction(getContext()) == QualType::DK_cxx_destructor;
4171*0b57cec5SDimitry Andric 
4172*0b57cec5SDimitry Andric   const VarDecl *InitDecl;
4173*0b57cec5SDimitry Andric   const Expr *InitExpr = D->getAnyInitializer(InitDecl);
4174*0b57cec5SDimitry Andric 
4175*0b57cec5SDimitry Andric   Optional<ConstantEmitter> emitter;
4176*0b57cec5SDimitry Andric 
4177*0b57cec5SDimitry Andric   // CUDA E.2.4.1 "__shared__ variables cannot have an initialization
4178*0b57cec5SDimitry Andric   // as part of their declaration."  Sema has already checked for
4179*0b57cec5SDimitry Andric   // error cases, so we just need to set Init to UndefValue.
4180*0b57cec5SDimitry Andric   bool IsCUDASharedVar =
4181*0b57cec5SDimitry Andric       getLangOpts().CUDAIsDevice && D->hasAttr<CUDASharedAttr>();
4182*0b57cec5SDimitry Andric   // Shadows of initialized device-side global variables are also left
4183*0b57cec5SDimitry Andric   // undefined.
4184*0b57cec5SDimitry Andric   bool IsCUDAShadowVar =
4185e8d8bef9SDimitry Andric       !getLangOpts().CUDAIsDevice && !D->hasAttr<HIPManagedAttr>() &&
4186*0b57cec5SDimitry Andric       (D->hasAttr<CUDAConstantAttr>() || D->hasAttr<CUDADeviceAttr>() ||
4187*0b57cec5SDimitry Andric        D->hasAttr<CUDASharedAttr>());
41885ffd83dbSDimitry Andric   bool IsCUDADeviceShadowVar =
41895ffd83dbSDimitry Andric       getLangOpts().CUDAIsDevice &&
41905ffd83dbSDimitry Andric       (D->getType()->isCUDADeviceBuiltinSurfaceType() ||
4191e8d8bef9SDimitry Andric        D->getType()->isCUDADeviceBuiltinTextureType() ||
4192e8d8bef9SDimitry Andric        D->hasAttr<HIPManagedAttr>());
4193*0b57cec5SDimitry Andric   // HIP pinned shadow of initialized host-side global variables are also
4194*0b57cec5SDimitry Andric   // left undefined.
4195*0b57cec5SDimitry Andric   if (getLangOpts().CUDA &&
41965ffd83dbSDimitry Andric       (IsCUDASharedVar || IsCUDAShadowVar || IsCUDADeviceShadowVar))
41975ffd83dbSDimitry Andric     Init = llvm::UndefValue::get(getTypes().ConvertType(ASTTy));
41985ffd83dbSDimitry Andric   else if (D->hasAttr<LoaderUninitializedAttr>())
4199*0b57cec5SDimitry Andric     Init = llvm::UndefValue::get(getTypes().ConvertType(ASTTy));
4200*0b57cec5SDimitry Andric   else if (!InitExpr) {
4201*0b57cec5SDimitry Andric     // This is a tentative definition; tentative definitions are
4202*0b57cec5SDimitry Andric     // implicitly initialized with { 0 }.
4203*0b57cec5SDimitry Andric     //
4204*0b57cec5SDimitry Andric     // Note that tentative definitions are only emitted at the end of
4205*0b57cec5SDimitry Andric     // a translation unit, so they should never have incomplete
4206*0b57cec5SDimitry Andric     // type. In addition, EmitTentativeDefinition makes sure that we
4207*0b57cec5SDimitry Andric     // never attempt to emit a tentative definition if a real one
4208*0b57cec5SDimitry Andric     // exists. A use may still exists, however, so we still may need
4209*0b57cec5SDimitry Andric     // to do a RAUW.
4210*0b57cec5SDimitry Andric     assert(!ASTTy->isIncompleteType() && "Unexpected incomplete type");
4211*0b57cec5SDimitry Andric     Init = EmitNullConstant(D->getType());
4212*0b57cec5SDimitry Andric   } else {
4213*0b57cec5SDimitry Andric     initializedGlobalDecl = GlobalDecl(D);
4214*0b57cec5SDimitry Andric     emitter.emplace(*this);
4215*0b57cec5SDimitry Andric     Init = emitter->tryEmitForInitializer(*InitDecl);
4216*0b57cec5SDimitry Andric 
4217*0b57cec5SDimitry Andric     if (!Init) {
4218*0b57cec5SDimitry Andric       QualType T = InitExpr->getType();
4219*0b57cec5SDimitry Andric       if (D->getType()->isReferenceType())
4220*0b57cec5SDimitry Andric         T = D->getType();
4221*0b57cec5SDimitry Andric 
4222*0b57cec5SDimitry Andric       if (getLangOpts().CPlusPlus) {
4223*0b57cec5SDimitry Andric         Init = EmitNullConstant(T);
4224*0b57cec5SDimitry Andric         NeedsGlobalCtor = true;
4225*0b57cec5SDimitry Andric       } else {
4226*0b57cec5SDimitry Andric         ErrorUnsupported(D, "static initializer");
4227*0b57cec5SDimitry Andric         Init = llvm::UndefValue::get(getTypes().ConvertType(T));
4228*0b57cec5SDimitry Andric       }
4229*0b57cec5SDimitry Andric     } else {
4230*0b57cec5SDimitry Andric       // We don't need an initializer, so remove the entry for the delayed
4231*0b57cec5SDimitry Andric       // initializer position (just in case this entry was delayed) if we
4232*0b57cec5SDimitry Andric       // also don't need to register a destructor.
4233*0b57cec5SDimitry Andric       if (getLangOpts().CPlusPlus && !NeedsGlobalDtor)
4234*0b57cec5SDimitry Andric         DelayedCXXInitPosition.erase(D);
4235*0b57cec5SDimitry Andric     }
4236*0b57cec5SDimitry Andric   }
4237*0b57cec5SDimitry Andric 
4238*0b57cec5SDimitry Andric   llvm::Type* InitType = Init->getType();
4239*0b57cec5SDimitry Andric   llvm::Constant *Entry =
4240*0b57cec5SDimitry Andric       GetAddrOfGlobalVar(D, InitType, ForDefinition_t(!IsTentative));
4241*0b57cec5SDimitry Andric 
4242a7dea167SDimitry Andric   // Strip off pointer casts if we got them.
4243a7dea167SDimitry Andric   Entry = Entry->stripPointerCasts();
4244*0b57cec5SDimitry Andric 
4245*0b57cec5SDimitry Andric   // Entry is now either a Function or GlobalVariable.
4246*0b57cec5SDimitry Andric   auto *GV = dyn_cast<llvm::GlobalVariable>(Entry);
4247*0b57cec5SDimitry Andric 
4248*0b57cec5SDimitry Andric   // We have a definition after a declaration with the wrong type.
4249*0b57cec5SDimitry Andric   // We must make a new GlobalVariable* and update everything that used OldGV
4250*0b57cec5SDimitry Andric   // (a declaration or tentative definition) with the new GlobalVariable*
4251*0b57cec5SDimitry Andric   // (which will be a definition).
4252*0b57cec5SDimitry Andric   //
4253*0b57cec5SDimitry Andric   // This happens if there is a prototype for a global (e.g.
4254*0b57cec5SDimitry Andric   // "extern int x[];") and then a definition of a different type (e.g.
4255*0b57cec5SDimitry Andric   // "int x[10];"). This also happens when an initializer has a different type
4256*0b57cec5SDimitry Andric   // from the type of the global (this happens with unions).
42575ffd83dbSDimitry Andric   if (!GV || GV->getValueType() != InitType ||
4258*0b57cec5SDimitry Andric       GV->getType()->getAddressSpace() !=
4259*0b57cec5SDimitry Andric           getContext().getTargetAddressSpace(GetGlobalVarAddressSpace(D))) {
4260*0b57cec5SDimitry Andric 
4261*0b57cec5SDimitry Andric     // Move the old entry aside so that we'll create a new one.
4262*0b57cec5SDimitry Andric     Entry->setName(StringRef());
4263*0b57cec5SDimitry Andric 
4264*0b57cec5SDimitry Andric     // Make a new global with the correct type, this is now guaranteed to work.
4265*0b57cec5SDimitry Andric     GV = cast<llvm::GlobalVariable>(
4266a7dea167SDimitry Andric         GetAddrOfGlobalVar(D, InitType, ForDefinition_t(!IsTentative))
4267a7dea167SDimitry Andric             ->stripPointerCasts());
4268*0b57cec5SDimitry Andric 
4269*0b57cec5SDimitry Andric     // Replace all uses of the old global with the new global
4270*0b57cec5SDimitry Andric     llvm::Constant *NewPtrForOldDecl =
4271*0b57cec5SDimitry Andric         llvm::ConstantExpr::getBitCast(GV, Entry->getType());
4272*0b57cec5SDimitry Andric     Entry->replaceAllUsesWith(NewPtrForOldDecl);
4273*0b57cec5SDimitry Andric 
4274*0b57cec5SDimitry Andric     // Erase the old global, since it is no longer used.
4275*0b57cec5SDimitry Andric     cast<llvm::GlobalValue>(Entry)->eraseFromParent();
4276*0b57cec5SDimitry Andric   }
4277*0b57cec5SDimitry Andric 
4278*0b57cec5SDimitry Andric   MaybeHandleStaticInExternC(D, GV);
4279*0b57cec5SDimitry Andric 
4280*0b57cec5SDimitry Andric   if (D->hasAttr<AnnotateAttr>())
4281*0b57cec5SDimitry Andric     AddGlobalAnnotations(D, GV);
4282*0b57cec5SDimitry Andric 
4283*0b57cec5SDimitry Andric   // Set the llvm linkage type as appropriate.
4284*0b57cec5SDimitry Andric   llvm::GlobalValue::LinkageTypes Linkage =
4285*0b57cec5SDimitry Andric       getLLVMLinkageVarDefinition(D, GV->isConstant());
4286*0b57cec5SDimitry Andric 
4287*0b57cec5SDimitry Andric   // CUDA B.2.1 "The __device__ qualifier declares a variable that resides on
4288*0b57cec5SDimitry Andric   // the device. [...]"
4289*0b57cec5SDimitry Andric   // CUDA B.2.2 "The __constant__ qualifier, optionally used together with
4290*0b57cec5SDimitry Andric   // __device__, declares a variable that: [...]
4291*0b57cec5SDimitry Andric   // Is accessible from all the threads within the grid and from the host
4292*0b57cec5SDimitry Andric   // through the runtime library (cudaGetSymbolAddress() / cudaGetSymbolSize()
4293*0b57cec5SDimitry Andric   // / cudaMemcpyToSymbol() / cudaMemcpyFromSymbol())."
4294*0b57cec5SDimitry Andric   if (GV && LangOpts.CUDA) {
4295*0b57cec5SDimitry Andric     if (LangOpts.CUDAIsDevice) {
4296*0b57cec5SDimitry Andric       if (Linkage != llvm::GlobalValue::InternalLinkage &&
4297*0b57cec5SDimitry Andric           (D->hasAttr<CUDADeviceAttr>() || D->hasAttr<CUDAConstantAttr>()))
4298*0b57cec5SDimitry Andric         GV->setExternallyInitialized(true);
4299*0b57cec5SDimitry Andric     } else {
4300*0b57cec5SDimitry Andric       // Host-side shadows of external declarations of device-side
4301*0b57cec5SDimitry Andric       // global variables become internal definitions. These have to
4302*0b57cec5SDimitry Andric       // be internal in order to prevent name conflicts with global
4303*0b57cec5SDimitry Andric       // host variables with the same name in a different TUs.
43045ffd83dbSDimitry Andric       if (D->hasAttr<CUDADeviceAttr>() || D->hasAttr<CUDAConstantAttr>()) {
4305*0b57cec5SDimitry Andric         Linkage = llvm::GlobalValue::InternalLinkage;
43065ffd83dbSDimitry Andric         // Shadow variables and their properties must be registered with CUDA
43075ffd83dbSDimitry Andric         // runtime. Skip Extern global variables, which will be registered in
43085ffd83dbSDimitry Andric         // the TU where they are defined.
4309e8d8bef9SDimitry Andric         //
4310e8d8bef9SDimitry Andric         // Don't register a C++17 inline variable. The local symbol can be
4311e8d8bef9SDimitry Andric         // discarded and referencing a discarded local symbol from outside the
4312e8d8bef9SDimitry Andric         // comdat (__cuda_register_globals) is disallowed by the ELF spec.
4313e8d8bef9SDimitry Andric         // TODO: Reject __device__ constexpr and __device__ inline in Sema.
4314e8d8bef9SDimitry Andric         if (!D->hasExternalStorage() && !D->isInline())
43155ffd83dbSDimitry Andric           getCUDARuntime().registerDeviceVar(D, *GV, !D->hasDefinition(),
43165ffd83dbSDimitry Andric                                              D->hasAttr<CUDAConstantAttr>());
43175ffd83dbSDimitry Andric       } else if (D->hasAttr<CUDASharedAttr>()) {
4318*0b57cec5SDimitry Andric         // __shared__ variables are odd. Shadows do get created, but
4319*0b57cec5SDimitry Andric         // they are not registered with the CUDA runtime, so they
4320*0b57cec5SDimitry Andric         // can't really be used to access their device-side
4321*0b57cec5SDimitry Andric         // counterparts. It's not clear yet whether it's nvcc's bug or
4322*0b57cec5SDimitry Andric         // a feature, but we've got to do the same for compatibility.
4323*0b57cec5SDimitry Andric         Linkage = llvm::GlobalValue::InternalLinkage;
43245ffd83dbSDimitry Andric       } else if (D->getType()->isCUDADeviceBuiltinSurfaceType() ||
43255ffd83dbSDimitry Andric                  D->getType()->isCUDADeviceBuiltinTextureType()) {
43265ffd83dbSDimitry Andric         // Builtin surfaces and textures and their template arguments are
43275ffd83dbSDimitry Andric         // also registered with CUDA runtime.
43285ffd83dbSDimitry Andric         Linkage = llvm::GlobalValue::InternalLinkage;
43295ffd83dbSDimitry Andric         const ClassTemplateSpecializationDecl *TD =
43305ffd83dbSDimitry Andric             cast<ClassTemplateSpecializationDecl>(
43315ffd83dbSDimitry Andric                 D->getType()->getAs<RecordType>()->getDecl());
43325ffd83dbSDimitry Andric         const TemplateArgumentList &Args = TD->getTemplateArgs();
43335ffd83dbSDimitry Andric         if (TD->hasAttr<CUDADeviceBuiltinSurfaceTypeAttr>()) {
43345ffd83dbSDimitry Andric           assert(Args.size() == 2 &&
43355ffd83dbSDimitry Andric                  "Unexpected number of template arguments of CUDA device "
43365ffd83dbSDimitry Andric                  "builtin surface type.");
43375ffd83dbSDimitry Andric           auto SurfType = Args[1].getAsIntegral();
43385ffd83dbSDimitry Andric           if (!D->hasExternalStorage())
43395ffd83dbSDimitry Andric             getCUDARuntime().registerDeviceSurf(D, *GV, !D->hasDefinition(),
43405ffd83dbSDimitry Andric                                                 SurfType.getSExtValue());
43415ffd83dbSDimitry Andric         } else {
43425ffd83dbSDimitry Andric           assert(Args.size() == 3 &&
43435ffd83dbSDimitry Andric                  "Unexpected number of template arguments of CUDA device "
43445ffd83dbSDimitry Andric                  "builtin texture type.");
43455ffd83dbSDimitry Andric           auto TexType = Args[1].getAsIntegral();
43465ffd83dbSDimitry Andric           auto Normalized = Args[2].getAsIntegral();
43475ffd83dbSDimitry Andric           if (!D->hasExternalStorage())
43485ffd83dbSDimitry Andric             getCUDARuntime().registerDeviceTex(D, *GV, !D->hasDefinition(),
43495ffd83dbSDimitry Andric                                                TexType.getSExtValue(),
43505ffd83dbSDimitry Andric                                                Normalized.getZExtValue());
43515ffd83dbSDimitry Andric         }
43525ffd83dbSDimitry Andric       }
4353*0b57cec5SDimitry Andric     }
4354*0b57cec5SDimitry Andric   }
4355*0b57cec5SDimitry Andric 
4356*0b57cec5SDimitry Andric   GV->setInitializer(Init);
43575ffd83dbSDimitry Andric   if (emitter)
43585ffd83dbSDimitry Andric     emitter->finalize(GV);
4359*0b57cec5SDimitry Andric 
4360*0b57cec5SDimitry Andric   // If it is safe to mark the global 'constant', do so now.
4361*0b57cec5SDimitry Andric   GV->setConstant(!NeedsGlobalCtor && !NeedsGlobalDtor &&
4362*0b57cec5SDimitry Andric                   isTypeConstant(D->getType(), true));
4363*0b57cec5SDimitry Andric 
4364*0b57cec5SDimitry Andric   // If it is in a read-only section, mark it 'constant'.
4365*0b57cec5SDimitry Andric   if (const SectionAttr *SA = D->getAttr<SectionAttr>()) {
4366*0b57cec5SDimitry Andric     const ASTContext::SectionInfo &SI = Context.SectionInfos[SA->getName()];
4367*0b57cec5SDimitry Andric     if ((SI.SectionFlags & ASTContext::PSF_Write) == 0)
4368*0b57cec5SDimitry Andric       GV->setConstant(true);
4369*0b57cec5SDimitry Andric   }
4370*0b57cec5SDimitry Andric 
4371a7dea167SDimitry Andric   GV->setAlignment(getContext().getDeclAlign(D).getAsAlign());
4372*0b57cec5SDimitry Andric 
43735ffd83dbSDimitry Andric   // On Darwin, unlike other Itanium C++ ABI platforms, the thread-wrapper
43745ffd83dbSDimitry Andric   // function is only defined alongside the variable, not also alongside
43755ffd83dbSDimitry Andric   // callers. Normally, all accesses to a thread_local go through the
43765ffd83dbSDimitry Andric   // thread-wrapper in order to ensure initialization has occurred, underlying
43775ffd83dbSDimitry Andric   // variable will never be used other than the thread-wrapper, so it can be
43785ffd83dbSDimitry Andric   // converted to internal linkage.
43795ffd83dbSDimitry Andric   //
43805ffd83dbSDimitry Andric   // However, if the variable has the 'constinit' attribute, it _can_ be
43815ffd83dbSDimitry Andric   // referenced directly, without calling the thread-wrapper, so the linkage
43825ffd83dbSDimitry Andric   // must not be changed.
43835ffd83dbSDimitry Andric   //
43845ffd83dbSDimitry Andric   // Additionally, if the variable isn't plain external linkage, e.g. if it's
43855ffd83dbSDimitry Andric   // weak or linkonce, the de-duplication semantics are important to preserve,
43865ffd83dbSDimitry Andric   // so we don't change the linkage.
43875ffd83dbSDimitry Andric   if (D->getTLSKind() == VarDecl::TLS_Dynamic &&
43885ffd83dbSDimitry Andric       Linkage == llvm::GlobalValue::ExternalLinkage &&
4389*0b57cec5SDimitry Andric       Context.getTargetInfo().getTriple().isOSDarwin() &&
43905ffd83dbSDimitry Andric       !D->hasAttr<ConstInitAttr>())
4391*0b57cec5SDimitry Andric     Linkage = llvm::GlobalValue::InternalLinkage;
4392*0b57cec5SDimitry Andric 
4393*0b57cec5SDimitry Andric   GV->setLinkage(Linkage);
4394*0b57cec5SDimitry Andric   if (D->hasAttr<DLLImportAttr>())
4395*0b57cec5SDimitry Andric     GV->setDLLStorageClass(llvm::GlobalVariable::DLLImportStorageClass);
4396*0b57cec5SDimitry Andric   else if (D->hasAttr<DLLExportAttr>())
4397*0b57cec5SDimitry Andric     GV->setDLLStorageClass(llvm::GlobalVariable::DLLExportStorageClass);
4398*0b57cec5SDimitry Andric   else
4399*0b57cec5SDimitry Andric     GV->setDLLStorageClass(llvm::GlobalVariable::DefaultStorageClass);
4400*0b57cec5SDimitry Andric 
4401*0b57cec5SDimitry Andric   if (Linkage == llvm::GlobalVariable::CommonLinkage) {
4402*0b57cec5SDimitry Andric     // common vars aren't constant even if declared const.
4403*0b57cec5SDimitry Andric     GV->setConstant(false);
4404*0b57cec5SDimitry Andric     // Tentative definition of global variables may be initialized with
4405*0b57cec5SDimitry Andric     // non-zero null pointers. In this case they should have weak linkage
4406*0b57cec5SDimitry Andric     // since common linkage must have zero initializer and must not have
4407*0b57cec5SDimitry Andric     // explicit section therefore cannot have non-zero initial value.
4408*0b57cec5SDimitry Andric     if (!GV->getInitializer()->isNullValue())
4409*0b57cec5SDimitry Andric       GV->setLinkage(llvm::GlobalVariable::WeakAnyLinkage);
4410*0b57cec5SDimitry Andric   }
4411*0b57cec5SDimitry Andric 
4412*0b57cec5SDimitry Andric   setNonAliasAttributes(D, GV);
4413*0b57cec5SDimitry Andric 
4414*0b57cec5SDimitry Andric   if (D->getTLSKind() && !GV->isThreadLocal()) {
4415*0b57cec5SDimitry Andric     if (D->getTLSKind() == VarDecl::TLS_Dynamic)
4416*0b57cec5SDimitry Andric       CXXThreadLocals.push_back(D);
4417*0b57cec5SDimitry Andric     setTLSMode(GV, *D);
4418*0b57cec5SDimitry Andric   }
4419*0b57cec5SDimitry Andric 
4420*0b57cec5SDimitry Andric   maybeSetTrivialComdat(*D, *GV);
4421*0b57cec5SDimitry Andric 
4422*0b57cec5SDimitry Andric   // Emit the initializer function if necessary.
4423*0b57cec5SDimitry Andric   if (NeedsGlobalCtor || NeedsGlobalDtor)
4424*0b57cec5SDimitry Andric     EmitCXXGlobalVarDeclInitFunc(D, GV, NeedsGlobalCtor);
4425*0b57cec5SDimitry Andric 
4426*0b57cec5SDimitry Andric   SanitizerMD->reportGlobalToASan(GV, *D, NeedsGlobalCtor);
4427*0b57cec5SDimitry Andric 
4428*0b57cec5SDimitry Andric   // Emit global variable debug information.
4429*0b57cec5SDimitry Andric   if (CGDebugInfo *DI = getModuleDebugInfo())
4430480093f4SDimitry Andric     if (getCodeGenOpts().hasReducedDebugInfo())
4431*0b57cec5SDimitry Andric       DI->EmitGlobalVariable(GV, D);
4432*0b57cec5SDimitry Andric }
4433*0b57cec5SDimitry Andric 
4434480093f4SDimitry Andric void CodeGenModule::EmitExternalVarDeclaration(const VarDecl *D) {
4435480093f4SDimitry Andric   if (CGDebugInfo *DI = getModuleDebugInfo())
4436480093f4SDimitry Andric     if (getCodeGenOpts().hasReducedDebugInfo()) {
4437480093f4SDimitry Andric       QualType ASTTy = D->getType();
4438480093f4SDimitry Andric       llvm::Type *Ty = getTypes().ConvertTypeForMem(D->getType());
4439480093f4SDimitry Andric       llvm::PointerType *PTy =
4440480093f4SDimitry Andric           llvm::PointerType::get(Ty, getContext().getTargetAddressSpace(ASTTy));
4441480093f4SDimitry Andric       llvm::Constant *GV = GetOrCreateLLVMGlobal(D->getName(), PTy, D);
4442480093f4SDimitry Andric       DI->EmitExternalVariable(
4443480093f4SDimitry Andric           cast<llvm::GlobalVariable>(GV->stripPointerCasts()), D);
4444480093f4SDimitry Andric     }
4445480093f4SDimitry Andric }
4446480093f4SDimitry Andric 
4447*0b57cec5SDimitry Andric static bool isVarDeclStrongDefinition(const ASTContext &Context,
4448*0b57cec5SDimitry Andric                                       CodeGenModule &CGM, const VarDecl *D,
4449*0b57cec5SDimitry Andric                                       bool NoCommon) {
4450*0b57cec5SDimitry Andric   // Don't give variables common linkage if -fno-common was specified unless it
4451*0b57cec5SDimitry Andric   // was overridden by a NoCommon attribute.
4452*0b57cec5SDimitry Andric   if ((NoCommon || D->hasAttr<NoCommonAttr>()) && !D->hasAttr<CommonAttr>())
4453*0b57cec5SDimitry Andric     return true;
4454*0b57cec5SDimitry Andric 
4455*0b57cec5SDimitry Andric   // C11 6.9.2/2:
4456*0b57cec5SDimitry Andric   //   A declaration of an identifier for an object that has file scope without
4457*0b57cec5SDimitry Andric   //   an initializer, and without a storage-class specifier or with the
4458*0b57cec5SDimitry Andric   //   storage-class specifier static, constitutes a tentative definition.
4459*0b57cec5SDimitry Andric   if (D->getInit() || D->hasExternalStorage())
4460*0b57cec5SDimitry Andric     return true;
4461*0b57cec5SDimitry Andric 
4462*0b57cec5SDimitry Andric   // A variable cannot be both common and exist in a section.
4463*0b57cec5SDimitry Andric   if (D->hasAttr<SectionAttr>())
4464*0b57cec5SDimitry Andric     return true;
4465*0b57cec5SDimitry Andric 
4466*0b57cec5SDimitry Andric   // A variable cannot be both common and exist in a section.
4467*0b57cec5SDimitry Andric   // We don't try to determine which is the right section in the front-end.
4468*0b57cec5SDimitry Andric   // If no specialized section name is applicable, it will resort to default.
4469*0b57cec5SDimitry Andric   if (D->hasAttr<PragmaClangBSSSectionAttr>() ||
4470*0b57cec5SDimitry Andric       D->hasAttr<PragmaClangDataSectionAttr>() ||
4471a7dea167SDimitry Andric       D->hasAttr<PragmaClangRelroSectionAttr>() ||
4472*0b57cec5SDimitry Andric       D->hasAttr<PragmaClangRodataSectionAttr>())
4473*0b57cec5SDimitry Andric     return true;
4474*0b57cec5SDimitry Andric 
4475*0b57cec5SDimitry Andric   // Thread local vars aren't considered common linkage.
4476*0b57cec5SDimitry Andric   if (D->getTLSKind())
4477*0b57cec5SDimitry Andric     return true;
4478*0b57cec5SDimitry Andric 
4479*0b57cec5SDimitry Andric   // Tentative definitions marked with WeakImportAttr are true definitions.
4480*0b57cec5SDimitry Andric   if (D->hasAttr<WeakImportAttr>())
4481*0b57cec5SDimitry Andric     return true;
4482*0b57cec5SDimitry Andric 
4483*0b57cec5SDimitry Andric   // A variable cannot be both common and exist in a comdat.
4484*0b57cec5SDimitry Andric   if (shouldBeInCOMDAT(CGM, *D))
4485*0b57cec5SDimitry Andric     return true;
4486*0b57cec5SDimitry Andric 
4487*0b57cec5SDimitry Andric   // Declarations with a required alignment do not have common linkage in MSVC
4488*0b57cec5SDimitry Andric   // mode.
4489*0b57cec5SDimitry Andric   if (Context.getTargetInfo().getCXXABI().isMicrosoft()) {
4490*0b57cec5SDimitry Andric     if (D->hasAttr<AlignedAttr>())
4491*0b57cec5SDimitry Andric       return true;
4492*0b57cec5SDimitry Andric     QualType VarType = D->getType();
4493*0b57cec5SDimitry Andric     if (Context.isAlignmentRequired(VarType))
4494*0b57cec5SDimitry Andric       return true;
4495*0b57cec5SDimitry Andric 
4496*0b57cec5SDimitry Andric     if (const auto *RT = VarType->getAs<RecordType>()) {
4497*0b57cec5SDimitry Andric       const RecordDecl *RD = RT->getDecl();
4498*0b57cec5SDimitry Andric       for (const FieldDecl *FD : RD->fields()) {
4499*0b57cec5SDimitry Andric         if (FD->isBitField())
4500*0b57cec5SDimitry Andric           continue;
4501*0b57cec5SDimitry Andric         if (FD->hasAttr<AlignedAttr>())
4502*0b57cec5SDimitry Andric           return true;
4503*0b57cec5SDimitry Andric         if (Context.isAlignmentRequired(FD->getType()))
4504*0b57cec5SDimitry Andric           return true;
4505*0b57cec5SDimitry Andric       }
4506*0b57cec5SDimitry Andric     }
4507*0b57cec5SDimitry Andric   }
4508*0b57cec5SDimitry Andric 
4509*0b57cec5SDimitry Andric   // Microsoft's link.exe doesn't support alignments greater than 32 bytes for
4510*0b57cec5SDimitry Andric   // common symbols, so symbols with greater alignment requirements cannot be
4511*0b57cec5SDimitry Andric   // common.
4512*0b57cec5SDimitry Andric   // Other COFF linkers (ld.bfd and LLD) support arbitrary power-of-two
4513*0b57cec5SDimitry Andric   // alignments for common symbols via the aligncomm directive, so this
4514*0b57cec5SDimitry Andric   // restriction only applies to MSVC environments.
4515*0b57cec5SDimitry Andric   if (Context.getTargetInfo().getTriple().isKnownWindowsMSVCEnvironment() &&
4516*0b57cec5SDimitry Andric       Context.getTypeAlignIfKnown(D->getType()) >
4517*0b57cec5SDimitry Andric           Context.toBits(CharUnits::fromQuantity(32)))
4518*0b57cec5SDimitry Andric     return true;
4519*0b57cec5SDimitry Andric 
4520*0b57cec5SDimitry Andric   return false;
4521*0b57cec5SDimitry Andric }
4522*0b57cec5SDimitry Andric 
4523*0b57cec5SDimitry Andric llvm::GlobalValue::LinkageTypes CodeGenModule::getLLVMLinkageForDeclarator(
4524*0b57cec5SDimitry Andric     const DeclaratorDecl *D, GVALinkage Linkage, bool IsConstantVariable) {
4525*0b57cec5SDimitry Andric   if (Linkage == GVA_Internal)
4526*0b57cec5SDimitry Andric     return llvm::Function::InternalLinkage;
4527*0b57cec5SDimitry Andric 
4528*0b57cec5SDimitry Andric   if (D->hasAttr<WeakAttr>()) {
4529*0b57cec5SDimitry Andric     if (IsConstantVariable)
4530*0b57cec5SDimitry Andric       return llvm::GlobalVariable::WeakODRLinkage;
4531*0b57cec5SDimitry Andric     else
4532*0b57cec5SDimitry Andric       return llvm::GlobalVariable::WeakAnyLinkage;
4533*0b57cec5SDimitry Andric   }
4534*0b57cec5SDimitry Andric 
4535*0b57cec5SDimitry Andric   if (const auto *FD = D->getAsFunction())
4536*0b57cec5SDimitry Andric     if (FD->isMultiVersion() && Linkage == GVA_AvailableExternally)
4537*0b57cec5SDimitry Andric       return llvm::GlobalVariable::LinkOnceAnyLinkage;
4538*0b57cec5SDimitry Andric 
4539*0b57cec5SDimitry Andric   // We are guaranteed to have a strong definition somewhere else,
4540*0b57cec5SDimitry Andric   // so we can use available_externally linkage.
4541*0b57cec5SDimitry Andric   if (Linkage == GVA_AvailableExternally)
4542*0b57cec5SDimitry Andric     return llvm::GlobalValue::AvailableExternallyLinkage;
4543*0b57cec5SDimitry Andric 
4544*0b57cec5SDimitry Andric   // Note that Apple's kernel linker doesn't support symbol
4545*0b57cec5SDimitry Andric   // coalescing, so we need to avoid linkonce and weak linkages there.
4546*0b57cec5SDimitry Andric   // Normally, this means we just map to internal, but for explicit
4547*0b57cec5SDimitry Andric   // instantiations we'll map to external.
4548*0b57cec5SDimitry Andric 
4549*0b57cec5SDimitry Andric   // In C++, the compiler has to emit a definition in every translation unit
4550*0b57cec5SDimitry Andric   // that references the function.  We should use linkonce_odr because
4551*0b57cec5SDimitry Andric   // a) if all references in this translation unit are optimized away, we
4552*0b57cec5SDimitry Andric   // don't need to codegen it.  b) if the function persists, it needs to be
4553*0b57cec5SDimitry Andric   // merged with other definitions. c) C++ has the ODR, so we know the
4554*0b57cec5SDimitry Andric   // definition is dependable.
4555*0b57cec5SDimitry Andric   if (Linkage == GVA_DiscardableODR)
4556*0b57cec5SDimitry Andric     return !Context.getLangOpts().AppleKext ? llvm::Function::LinkOnceODRLinkage
4557*0b57cec5SDimitry Andric                                             : llvm::Function::InternalLinkage;
4558*0b57cec5SDimitry Andric 
4559*0b57cec5SDimitry Andric   // An explicit instantiation of a template has weak linkage, since
4560*0b57cec5SDimitry Andric   // explicit instantiations can occur in multiple translation units
4561*0b57cec5SDimitry Andric   // and must all be equivalent. However, we are not allowed to
4562*0b57cec5SDimitry Andric   // throw away these explicit instantiations.
4563*0b57cec5SDimitry Andric   //
4564e8d8bef9SDimitry Andric   // CUDA/HIP: For -fno-gpu-rdc case, device code is limited to one TU,
4565*0b57cec5SDimitry Andric   // so say that CUDA templates are either external (for kernels) or internal.
4566e8d8bef9SDimitry Andric   // This lets llvm perform aggressive inter-procedural optimizations. For
4567e8d8bef9SDimitry Andric   // -fgpu-rdc case, device function calls across multiple TU's are allowed,
4568e8d8bef9SDimitry Andric   // therefore we need to follow the normal linkage paradigm.
4569*0b57cec5SDimitry Andric   if (Linkage == GVA_StrongODR) {
4570e8d8bef9SDimitry Andric     if (getLangOpts().AppleKext)
4571*0b57cec5SDimitry Andric       return llvm::Function::ExternalLinkage;
4572e8d8bef9SDimitry Andric     if (getLangOpts().CUDA && getLangOpts().CUDAIsDevice &&
4573e8d8bef9SDimitry Andric         !getLangOpts().GPURelocatableDeviceCode)
4574*0b57cec5SDimitry Andric       return D->hasAttr<CUDAGlobalAttr>() ? llvm::Function::ExternalLinkage
4575*0b57cec5SDimitry Andric                                           : llvm::Function::InternalLinkage;
4576*0b57cec5SDimitry Andric     return llvm::Function::WeakODRLinkage;
4577*0b57cec5SDimitry Andric   }
4578*0b57cec5SDimitry Andric 
4579*0b57cec5SDimitry Andric   // C++ doesn't have tentative definitions and thus cannot have common
4580*0b57cec5SDimitry Andric   // linkage.
4581*0b57cec5SDimitry Andric   if (!getLangOpts().CPlusPlus && isa<VarDecl>(D) &&
4582*0b57cec5SDimitry Andric       !isVarDeclStrongDefinition(Context, *this, cast<VarDecl>(D),
4583*0b57cec5SDimitry Andric                                  CodeGenOpts.NoCommon))
4584*0b57cec5SDimitry Andric     return llvm::GlobalVariable::CommonLinkage;
4585*0b57cec5SDimitry Andric 
4586*0b57cec5SDimitry Andric   // selectany symbols are externally visible, so use weak instead of
4587*0b57cec5SDimitry Andric   // linkonce.  MSVC optimizes away references to const selectany globals, so
4588*0b57cec5SDimitry Andric   // all definitions should be the same and ODR linkage should be used.
4589*0b57cec5SDimitry Andric   // http://msdn.microsoft.com/en-us/library/5tkz6s71.aspx
4590*0b57cec5SDimitry Andric   if (D->hasAttr<SelectAnyAttr>())
4591*0b57cec5SDimitry Andric     return llvm::GlobalVariable::WeakODRLinkage;
4592*0b57cec5SDimitry Andric 
4593*0b57cec5SDimitry Andric   // Otherwise, we have strong external linkage.
4594*0b57cec5SDimitry Andric   assert(Linkage == GVA_StrongExternal);
4595*0b57cec5SDimitry Andric   return llvm::GlobalVariable::ExternalLinkage;
4596*0b57cec5SDimitry Andric }
4597*0b57cec5SDimitry Andric 
4598*0b57cec5SDimitry Andric llvm::GlobalValue::LinkageTypes CodeGenModule::getLLVMLinkageVarDefinition(
4599*0b57cec5SDimitry Andric     const VarDecl *VD, bool IsConstant) {
4600*0b57cec5SDimitry Andric   GVALinkage Linkage = getContext().GetGVALinkageForVariable(VD);
4601*0b57cec5SDimitry Andric   return getLLVMLinkageForDeclarator(VD, Linkage, IsConstant);
4602*0b57cec5SDimitry Andric }
4603*0b57cec5SDimitry Andric 
4604*0b57cec5SDimitry Andric /// Replace the uses of a function that was declared with a non-proto type.
4605*0b57cec5SDimitry Andric /// We want to silently drop extra arguments from call sites
4606*0b57cec5SDimitry Andric static void replaceUsesOfNonProtoConstant(llvm::Constant *old,
4607*0b57cec5SDimitry Andric                                           llvm::Function *newFn) {
4608*0b57cec5SDimitry Andric   // Fast path.
4609*0b57cec5SDimitry Andric   if (old->use_empty()) return;
4610*0b57cec5SDimitry Andric 
4611*0b57cec5SDimitry Andric   llvm::Type *newRetTy = newFn->getReturnType();
4612*0b57cec5SDimitry Andric   SmallVector<llvm::Value*, 4> newArgs;
4613*0b57cec5SDimitry Andric   SmallVector<llvm::OperandBundleDef, 1> newBundles;
4614*0b57cec5SDimitry Andric 
4615*0b57cec5SDimitry Andric   for (llvm::Value::use_iterator ui = old->use_begin(), ue = old->use_end();
4616*0b57cec5SDimitry Andric          ui != ue; ) {
4617*0b57cec5SDimitry Andric     llvm::Value::use_iterator use = ui++; // Increment before the use is erased.
4618*0b57cec5SDimitry Andric     llvm::User *user = use->getUser();
4619*0b57cec5SDimitry Andric 
4620*0b57cec5SDimitry Andric     // Recognize and replace uses of bitcasts.  Most calls to
4621*0b57cec5SDimitry Andric     // unprototyped functions will use bitcasts.
4622*0b57cec5SDimitry Andric     if (auto *bitcast = dyn_cast<llvm::ConstantExpr>(user)) {
4623*0b57cec5SDimitry Andric       if (bitcast->getOpcode() == llvm::Instruction::BitCast)
4624*0b57cec5SDimitry Andric         replaceUsesOfNonProtoConstant(bitcast, newFn);
4625*0b57cec5SDimitry Andric       continue;
4626*0b57cec5SDimitry Andric     }
4627*0b57cec5SDimitry Andric 
4628*0b57cec5SDimitry Andric     // Recognize calls to the function.
4629*0b57cec5SDimitry Andric     llvm::CallBase *callSite = dyn_cast<llvm::CallBase>(user);
4630*0b57cec5SDimitry Andric     if (!callSite) continue;
4631*0b57cec5SDimitry Andric     if (!callSite->isCallee(&*use))
4632*0b57cec5SDimitry Andric       continue;
4633*0b57cec5SDimitry Andric 
4634*0b57cec5SDimitry Andric     // If the return types don't match exactly, then we can't
4635*0b57cec5SDimitry Andric     // transform this call unless it's dead.
4636*0b57cec5SDimitry Andric     if (callSite->getType() != newRetTy && !callSite->use_empty())
4637*0b57cec5SDimitry Andric       continue;
4638*0b57cec5SDimitry Andric 
4639*0b57cec5SDimitry Andric     // Get the call site's attribute list.
4640*0b57cec5SDimitry Andric     SmallVector<llvm::AttributeSet, 8> newArgAttrs;
4641*0b57cec5SDimitry Andric     llvm::AttributeList oldAttrs = callSite->getAttributes();
4642*0b57cec5SDimitry Andric 
4643*0b57cec5SDimitry Andric     // If the function was passed too few arguments, don't transform.
4644*0b57cec5SDimitry Andric     unsigned newNumArgs = newFn->arg_size();
4645*0b57cec5SDimitry Andric     if (callSite->arg_size() < newNumArgs)
4646*0b57cec5SDimitry Andric       continue;
4647*0b57cec5SDimitry Andric 
4648*0b57cec5SDimitry Andric     // If extra arguments were passed, we silently drop them.
4649*0b57cec5SDimitry Andric     // If any of the types mismatch, we don't transform.
4650*0b57cec5SDimitry Andric     unsigned argNo = 0;
4651*0b57cec5SDimitry Andric     bool dontTransform = false;
4652*0b57cec5SDimitry Andric     for (llvm::Argument &A : newFn->args()) {
4653*0b57cec5SDimitry Andric       if (callSite->getArgOperand(argNo)->getType() != A.getType()) {
4654*0b57cec5SDimitry Andric         dontTransform = true;
4655*0b57cec5SDimitry Andric         break;
4656*0b57cec5SDimitry Andric       }
4657*0b57cec5SDimitry Andric 
4658*0b57cec5SDimitry Andric       // Add any parameter attributes.
4659*0b57cec5SDimitry Andric       newArgAttrs.push_back(oldAttrs.getParamAttributes(argNo));
4660*0b57cec5SDimitry Andric       argNo++;
4661*0b57cec5SDimitry Andric     }
4662*0b57cec5SDimitry Andric     if (dontTransform)
4663*0b57cec5SDimitry Andric       continue;
4664*0b57cec5SDimitry Andric 
4665*0b57cec5SDimitry Andric     // Okay, we can transform this.  Create the new call instruction and copy
4666*0b57cec5SDimitry Andric     // over the required information.
4667*0b57cec5SDimitry Andric     newArgs.append(callSite->arg_begin(), callSite->arg_begin() + argNo);
4668*0b57cec5SDimitry Andric 
4669*0b57cec5SDimitry Andric     // Copy over any operand bundles.
4670*0b57cec5SDimitry Andric     callSite->getOperandBundlesAsDefs(newBundles);
4671*0b57cec5SDimitry Andric 
4672*0b57cec5SDimitry Andric     llvm::CallBase *newCall;
4673*0b57cec5SDimitry Andric     if (dyn_cast<llvm::CallInst>(callSite)) {
4674*0b57cec5SDimitry Andric       newCall =
4675*0b57cec5SDimitry Andric           llvm::CallInst::Create(newFn, newArgs, newBundles, "", callSite);
4676*0b57cec5SDimitry Andric     } else {
4677*0b57cec5SDimitry Andric       auto *oldInvoke = cast<llvm::InvokeInst>(callSite);
4678*0b57cec5SDimitry Andric       newCall = llvm::InvokeInst::Create(newFn, oldInvoke->getNormalDest(),
4679*0b57cec5SDimitry Andric                                          oldInvoke->getUnwindDest(), newArgs,
4680*0b57cec5SDimitry Andric                                          newBundles, "", callSite);
4681*0b57cec5SDimitry Andric     }
4682*0b57cec5SDimitry Andric     newArgs.clear(); // for the next iteration
4683*0b57cec5SDimitry Andric 
4684*0b57cec5SDimitry Andric     if (!newCall->getType()->isVoidTy())
4685*0b57cec5SDimitry Andric       newCall->takeName(callSite);
4686*0b57cec5SDimitry Andric     newCall->setAttributes(llvm::AttributeList::get(
4687*0b57cec5SDimitry Andric         newFn->getContext(), oldAttrs.getFnAttributes(),
4688*0b57cec5SDimitry Andric         oldAttrs.getRetAttributes(), newArgAttrs));
4689*0b57cec5SDimitry Andric     newCall->setCallingConv(callSite->getCallingConv());
4690*0b57cec5SDimitry Andric 
4691*0b57cec5SDimitry Andric     // Finally, remove the old call, replacing any uses with the new one.
4692*0b57cec5SDimitry Andric     if (!callSite->use_empty())
4693*0b57cec5SDimitry Andric       callSite->replaceAllUsesWith(newCall);
4694*0b57cec5SDimitry Andric 
4695*0b57cec5SDimitry Andric     // Copy debug location attached to CI.
4696*0b57cec5SDimitry Andric     if (callSite->getDebugLoc())
4697*0b57cec5SDimitry Andric       newCall->setDebugLoc(callSite->getDebugLoc());
4698*0b57cec5SDimitry Andric 
4699*0b57cec5SDimitry Andric     callSite->eraseFromParent();
4700*0b57cec5SDimitry Andric   }
4701*0b57cec5SDimitry Andric }
4702*0b57cec5SDimitry Andric 
4703*0b57cec5SDimitry Andric /// ReplaceUsesOfNonProtoTypeWithRealFunction - This function is called when we
4704*0b57cec5SDimitry Andric /// implement a function with no prototype, e.g. "int foo() {}".  If there are
4705*0b57cec5SDimitry Andric /// existing call uses of the old function in the module, this adjusts them to
4706*0b57cec5SDimitry Andric /// call the new function directly.
4707*0b57cec5SDimitry Andric ///
4708*0b57cec5SDimitry Andric /// This is not just a cleanup: the always_inline pass requires direct calls to
4709*0b57cec5SDimitry Andric /// functions to be able to inline them.  If there is a bitcast in the way, it
4710*0b57cec5SDimitry Andric /// won't inline them.  Instcombine normally deletes these calls, but it isn't
4711*0b57cec5SDimitry Andric /// run at -O0.
4712*0b57cec5SDimitry Andric static void ReplaceUsesOfNonProtoTypeWithRealFunction(llvm::GlobalValue *Old,
4713*0b57cec5SDimitry Andric                                                       llvm::Function *NewFn) {
4714*0b57cec5SDimitry Andric   // If we're redefining a global as a function, don't transform it.
4715*0b57cec5SDimitry Andric   if (!isa<llvm::Function>(Old)) return;
4716*0b57cec5SDimitry Andric 
4717*0b57cec5SDimitry Andric   replaceUsesOfNonProtoConstant(Old, NewFn);
4718*0b57cec5SDimitry Andric }
4719*0b57cec5SDimitry Andric 
4720*0b57cec5SDimitry Andric void CodeGenModule::HandleCXXStaticMemberVarInstantiation(VarDecl *VD) {
4721*0b57cec5SDimitry Andric   auto DK = VD->isThisDeclarationADefinition();
4722*0b57cec5SDimitry Andric   if (DK == VarDecl::Definition && VD->hasAttr<DLLImportAttr>())
4723*0b57cec5SDimitry Andric     return;
4724*0b57cec5SDimitry Andric 
4725*0b57cec5SDimitry Andric   TemplateSpecializationKind TSK = VD->getTemplateSpecializationKind();
4726*0b57cec5SDimitry Andric   // If we have a definition, this might be a deferred decl. If the
4727*0b57cec5SDimitry Andric   // instantiation is explicit, make sure we emit it at the end.
4728*0b57cec5SDimitry Andric   if (VD->getDefinition() && TSK == TSK_ExplicitInstantiationDefinition)
4729*0b57cec5SDimitry Andric     GetAddrOfGlobalVar(VD);
4730*0b57cec5SDimitry Andric 
4731*0b57cec5SDimitry Andric   EmitTopLevelDecl(VD);
4732*0b57cec5SDimitry Andric }
4733*0b57cec5SDimitry Andric 
4734*0b57cec5SDimitry Andric void CodeGenModule::EmitGlobalFunctionDefinition(GlobalDecl GD,
4735*0b57cec5SDimitry Andric                                                  llvm::GlobalValue *GV) {
4736*0b57cec5SDimitry Andric   const auto *D = cast<FunctionDecl>(GD.getDecl());
4737*0b57cec5SDimitry Andric 
4738*0b57cec5SDimitry Andric   // Compute the function info and LLVM type.
4739*0b57cec5SDimitry Andric   const CGFunctionInfo &FI = getTypes().arrangeGlobalDeclaration(GD);
4740*0b57cec5SDimitry Andric   llvm::FunctionType *Ty = getTypes().GetFunctionType(FI);
4741*0b57cec5SDimitry Andric 
4742*0b57cec5SDimitry Andric   // Get or create the prototype for the function.
47435ffd83dbSDimitry Andric   if (!GV || (GV->getValueType() != Ty))
4744*0b57cec5SDimitry Andric     GV = cast<llvm::GlobalValue>(GetAddrOfFunction(GD, Ty, /*ForVTable=*/false,
4745*0b57cec5SDimitry Andric                                                    /*DontDefer=*/true,
4746*0b57cec5SDimitry Andric                                                    ForDefinition));
4747*0b57cec5SDimitry Andric 
4748*0b57cec5SDimitry Andric   // Already emitted.
4749*0b57cec5SDimitry Andric   if (!GV->isDeclaration())
4750*0b57cec5SDimitry Andric     return;
4751*0b57cec5SDimitry Andric 
4752*0b57cec5SDimitry Andric   // We need to set linkage and visibility on the function before
4753*0b57cec5SDimitry Andric   // generating code for it because various parts of IR generation
4754*0b57cec5SDimitry Andric   // want to propagate this information down (e.g. to local static
4755*0b57cec5SDimitry Andric   // declarations).
4756*0b57cec5SDimitry Andric   auto *Fn = cast<llvm::Function>(GV);
4757*0b57cec5SDimitry Andric   setFunctionLinkage(GD, Fn);
4758*0b57cec5SDimitry Andric 
4759*0b57cec5SDimitry Andric   // FIXME: this is redundant with part of setFunctionDefinitionAttributes
4760*0b57cec5SDimitry Andric   setGVProperties(Fn, GD);
4761*0b57cec5SDimitry Andric 
4762*0b57cec5SDimitry Andric   MaybeHandleStaticInExternC(D, Fn);
4763*0b57cec5SDimitry Andric 
4764*0b57cec5SDimitry Andric   maybeSetTrivialComdat(*D, *Fn);
4765*0b57cec5SDimitry Andric 
4766e8d8bef9SDimitry Andric   // Set CodeGen attributes that represent floating point environment.
4767e8d8bef9SDimitry Andric   setLLVMFunctionFEnvAttributes(D, Fn);
4768e8d8bef9SDimitry Andric 
47695ffd83dbSDimitry Andric   CodeGenFunction(*this).GenerateCode(GD, Fn, FI);
4770*0b57cec5SDimitry Andric 
4771*0b57cec5SDimitry Andric   setNonAliasAttributes(GD, Fn);
4772*0b57cec5SDimitry Andric   SetLLVMFunctionAttributesForDefinition(D, Fn);
4773*0b57cec5SDimitry Andric 
4774*0b57cec5SDimitry Andric   if (const ConstructorAttr *CA = D->getAttr<ConstructorAttr>())
4775*0b57cec5SDimitry Andric     AddGlobalCtor(Fn, CA->getPriority());
4776*0b57cec5SDimitry Andric   if (const DestructorAttr *DA = D->getAttr<DestructorAttr>())
4777e8d8bef9SDimitry Andric     AddGlobalDtor(Fn, DA->getPriority(), true);
4778*0b57cec5SDimitry Andric   if (D->hasAttr<AnnotateAttr>())
4779*0b57cec5SDimitry Andric     AddGlobalAnnotations(D, Fn);
4780*0b57cec5SDimitry Andric }
4781*0b57cec5SDimitry Andric 
4782*0b57cec5SDimitry Andric void CodeGenModule::EmitAliasDefinition(GlobalDecl GD) {
4783*0b57cec5SDimitry Andric   const auto *D = cast<ValueDecl>(GD.getDecl());
4784*0b57cec5SDimitry Andric   const AliasAttr *AA = D->getAttr<AliasAttr>();
4785*0b57cec5SDimitry Andric   assert(AA && "Not an alias?");
4786*0b57cec5SDimitry Andric 
4787*0b57cec5SDimitry Andric   StringRef MangledName = getMangledName(GD);
4788*0b57cec5SDimitry Andric 
4789*0b57cec5SDimitry Andric   if (AA->getAliasee() == MangledName) {
4790*0b57cec5SDimitry Andric     Diags.Report(AA->getLocation(), diag::err_cyclic_alias) << 0;
4791*0b57cec5SDimitry Andric     return;
4792*0b57cec5SDimitry Andric   }
4793*0b57cec5SDimitry Andric 
4794*0b57cec5SDimitry Andric   // If there is a definition in the module, then it wins over the alias.
4795*0b57cec5SDimitry Andric   // This is dubious, but allow it to be safe.  Just ignore the alias.
4796*0b57cec5SDimitry Andric   llvm::GlobalValue *Entry = GetGlobalValue(MangledName);
4797*0b57cec5SDimitry Andric   if (Entry && !Entry->isDeclaration())
4798*0b57cec5SDimitry Andric     return;
4799*0b57cec5SDimitry Andric 
4800*0b57cec5SDimitry Andric   Aliases.push_back(GD);
4801*0b57cec5SDimitry Andric 
4802*0b57cec5SDimitry Andric   llvm::Type *DeclTy = getTypes().ConvertTypeForMem(D->getType());
4803*0b57cec5SDimitry Andric 
4804*0b57cec5SDimitry Andric   // Create a reference to the named value.  This ensures that it is emitted
4805*0b57cec5SDimitry Andric   // if a deferred decl.
4806*0b57cec5SDimitry Andric   llvm::Constant *Aliasee;
4807*0b57cec5SDimitry Andric   llvm::GlobalValue::LinkageTypes LT;
4808*0b57cec5SDimitry Andric   if (isa<llvm::FunctionType>(DeclTy)) {
4809*0b57cec5SDimitry Andric     Aliasee = GetOrCreateLLVMFunction(AA->getAliasee(), DeclTy, GD,
4810*0b57cec5SDimitry Andric                                       /*ForVTable=*/false);
4811*0b57cec5SDimitry Andric     LT = getFunctionLinkage(GD);
4812*0b57cec5SDimitry Andric   } else {
4813*0b57cec5SDimitry Andric     Aliasee = GetOrCreateLLVMGlobal(AA->getAliasee(),
4814*0b57cec5SDimitry Andric                                     llvm::PointerType::getUnqual(DeclTy),
4815*0b57cec5SDimitry Andric                                     /*D=*/nullptr);
4816e8d8bef9SDimitry Andric     if (const auto *VD = dyn_cast<VarDecl>(GD.getDecl()))
4817e8d8bef9SDimitry Andric       LT = getLLVMLinkageVarDefinition(VD, D->getType().isConstQualified());
4818e8d8bef9SDimitry Andric     else
4819e8d8bef9SDimitry Andric       LT = getFunctionLinkage(GD);
4820*0b57cec5SDimitry Andric   }
4821*0b57cec5SDimitry Andric 
4822*0b57cec5SDimitry Andric   // Create the new alias itself, but don't set a name yet.
48235ffd83dbSDimitry Andric   unsigned AS = Aliasee->getType()->getPointerAddressSpace();
4824*0b57cec5SDimitry Andric   auto *GA =
48255ffd83dbSDimitry Andric       llvm::GlobalAlias::create(DeclTy, AS, LT, "", Aliasee, &getModule());
4826*0b57cec5SDimitry Andric 
4827*0b57cec5SDimitry Andric   if (Entry) {
4828*0b57cec5SDimitry Andric     if (GA->getAliasee() == Entry) {
4829*0b57cec5SDimitry Andric       Diags.Report(AA->getLocation(), diag::err_cyclic_alias) << 0;
4830*0b57cec5SDimitry Andric       return;
4831*0b57cec5SDimitry Andric     }
4832*0b57cec5SDimitry Andric 
4833*0b57cec5SDimitry Andric     assert(Entry->isDeclaration());
4834*0b57cec5SDimitry Andric 
4835*0b57cec5SDimitry Andric     // If there is a declaration in the module, then we had an extern followed
4836*0b57cec5SDimitry Andric     // by the alias, as in:
4837*0b57cec5SDimitry Andric     //   extern int test6();
4838*0b57cec5SDimitry Andric     //   ...
4839*0b57cec5SDimitry Andric     //   int test6() __attribute__((alias("test7")));
4840*0b57cec5SDimitry Andric     //
4841*0b57cec5SDimitry Andric     // Remove it and replace uses of it with the alias.
4842*0b57cec5SDimitry Andric     GA->takeName(Entry);
4843*0b57cec5SDimitry Andric 
4844*0b57cec5SDimitry Andric     Entry->replaceAllUsesWith(llvm::ConstantExpr::getBitCast(GA,
4845*0b57cec5SDimitry Andric                                                           Entry->getType()));
4846*0b57cec5SDimitry Andric     Entry->eraseFromParent();
4847*0b57cec5SDimitry Andric   } else {
4848*0b57cec5SDimitry Andric     GA->setName(MangledName);
4849*0b57cec5SDimitry Andric   }
4850*0b57cec5SDimitry Andric 
4851*0b57cec5SDimitry Andric   // Set attributes which are particular to an alias; this is a
4852*0b57cec5SDimitry Andric   // specialization of the attributes which may be set on a global
4853*0b57cec5SDimitry Andric   // variable/function.
4854*0b57cec5SDimitry Andric   if (D->hasAttr<WeakAttr>() || D->hasAttr<WeakRefAttr>() ||
4855*0b57cec5SDimitry Andric       D->isWeakImported()) {
4856*0b57cec5SDimitry Andric     GA->setLinkage(llvm::Function::WeakAnyLinkage);
4857*0b57cec5SDimitry Andric   }
4858*0b57cec5SDimitry Andric 
4859*0b57cec5SDimitry Andric   if (const auto *VD = dyn_cast<VarDecl>(D))
4860*0b57cec5SDimitry Andric     if (VD->getTLSKind())
4861*0b57cec5SDimitry Andric       setTLSMode(GA, *VD);
4862*0b57cec5SDimitry Andric 
4863*0b57cec5SDimitry Andric   SetCommonAttributes(GD, GA);
4864*0b57cec5SDimitry Andric }
4865*0b57cec5SDimitry Andric 
4866*0b57cec5SDimitry Andric void CodeGenModule::emitIFuncDefinition(GlobalDecl GD) {
4867*0b57cec5SDimitry Andric   const auto *D = cast<ValueDecl>(GD.getDecl());
4868*0b57cec5SDimitry Andric   const IFuncAttr *IFA = D->getAttr<IFuncAttr>();
4869*0b57cec5SDimitry Andric   assert(IFA && "Not an ifunc?");
4870*0b57cec5SDimitry Andric 
4871*0b57cec5SDimitry Andric   StringRef MangledName = getMangledName(GD);
4872*0b57cec5SDimitry Andric 
4873*0b57cec5SDimitry Andric   if (IFA->getResolver() == MangledName) {
4874*0b57cec5SDimitry Andric     Diags.Report(IFA->getLocation(), diag::err_cyclic_alias) << 1;
4875*0b57cec5SDimitry Andric     return;
4876*0b57cec5SDimitry Andric   }
4877*0b57cec5SDimitry Andric 
4878*0b57cec5SDimitry Andric   // Report an error if some definition overrides ifunc.
4879*0b57cec5SDimitry Andric   llvm::GlobalValue *Entry = GetGlobalValue(MangledName);
4880*0b57cec5SDimitry Andric   if (Entry && !Entry->isDeclaration()) {
4881*0b57cec5SDimitry Andric     GlobalDecl OtherGD;
4882*0b57cec5SDimitry Andric     if (lookupRepresentativeDecl(MangledName, OtherGD) &&
4883*0b57cec5SDimitry Andric         DiagnosedConflictingDefinitions.insert(GD).second) {
4884*0b57cec5SDimitry Andric       Diags.Report(D->getLocation(), diag::err_duplicate_mangled_name)
4885*0b57cec5SDimitry Andric           << MangledName;
4886*0b57cec5SDimitry Andric       Diags.Report(OtherGD.getDecl()->getLocation(),
4887*0b57cec5SDimitry Andric                    diag::note_previous_definition);
4888*0b57cec5SDimitry Andric     }
4889*0b57cec5SDimitry Andric     return;
4890*0b57cec5SDimitry Andric   }
4891*0b57cec5SDimitry Andric 
4892*0b57cec5SDimitry Andric   Aliases.push_back(GD);
4893*0b57cec5SDimitry Andric 
4894*0b57cec5SDimitry Andric   llvm::Type *DeclTy = getTypes().ConvertTypeForMem(D->getType());
4895*0b57cec5SDimitry Andric   llvm::Constant *Resolver =
4896*0b57cec5SDimitry Andric       GetOrCreateLLVMFunction(IFA->getResolver(), DeclTy, GD,
4897*0b57cec5SDimitry Andric                               /*ForVTable=*/false);
4898*0b57cec5SDimitry Andric   llvm::GlobalIFunc *GIF =
4899*0b57cec5SDimitry Andric       llvm::GlobalIFunc::create(DeclTy, 0, llvm::Function::ExternalLinkage,
4900*0b57cec5SDimitry Andric                                 "", Resolver, &getModule());
4901*0b57cec5SDimitry Andric   if (Entry) {
4902*0b57cec5SDimitry Andric     if (GIF->getResolver() == Entry) {
4903*0b57cec5SDimitry Andric       Diags.Report(IFA->getLocation(), diag::err_cyclic_alias) << 1;
4904*0b57cec5SDimitry Andric       return;
4905*0b57cec5SDimitry Andric     }
4906*0b57cec5SDimitry Andric     assert(Entry->isDeclaration());
4907*0b57cec5SDimitry Andric 
4908*0b57cec5SDimitry Andric     // If there is a declaration in the module, then we had an extern followed
4909*0b57cec5SDimitry Andric     // by the ifunc, as in:
4910*0b57cec5SDimitry Andric     //   extern int test();
4911*0b57cec5SDimitry Andric     //   ...
4912*0b57cec5SDimitry Andric     //   int test() __attribute__((ifunc("resolver")));
4913*0b57cec5SDimitry Andric     //
4914*0b57cec5SDimitry Andric     // Remove it and replace uses of it with the ifunc.
4915*0b57cec5SDimitry Andric     GIF->takeName(Entry);
4916*0b57cec5SDimitry Andric 
4917*0b57cec5SDimitry Andric     Entry->replaceAllUsesWith(llvm::ConstantExpr::getBitCast(GIF,
4918*0b57cec5SDimitry Andric                                                           Entry->getType()));
4919*0b57cec5SDimitry Andric     Entry->eraseFromParent();
4920*0b57cec5SDimitry Andric   } else
4921*0b57cec5SDimitry Andric     GIF->setName(MangledName);
4922*0b57cec5SDimitry Andric 
4923*0b57cec5SDimitry Andric   SetCommonAttributes(GD, GIF);
4924*0b57cec5SDimitry Andric }
4925*0b57cec5SDimitry Andric 
4926*0b57cec5SDimitry Andric llvm::Function *CodeGenModule::getIntrinsic(unsigned IID,
4927*0b57cec5SDimitry Andric                                             ArrayRef<llvm::Type*> Tys) {
4928*0b57cec5SDimitry Andric   return llvm::Intrinsic::getDeclaration(&getModule(), (llvm::Intrinsic::ID)IID,
4929*0b57cec5SDimitry Andric                                          Tys);
4930*0b57cec5SDimitry Andric }
4931*0b57cec5SDimitry Andric 
4932*0b57cec5SDimitry Andric static llvm::StringMapEntry<llvm::GlobalVariable *> &
4933*0b57cec5SDimitry Andric GetConstantCFStringEntry(llvm::StringMap<llvm::GlobalVariable *> &Map,
4934*0b57cec5SDimitry Andric                          const StringLiteral *Literal, bool TargetIsLSB,
4935*0b57cec5SDimitry Andric                          bool &IsUTF16, unsigned &StringLength) {
4936*0b57cec5SDimitry Andric   StringRef String = Literal->getString();
4937*0b57cec5SDimitry Andric   unsigned NumBytes = String.size();
4938*0b57cec5SDimitry Andric 
4939*0b57cec5SDimitry Andric   // Check for simple case.
4940*0b57cec5SDimitry Andric   if (!Literal->containsNonAsciiOrNull()) {
4941*0b57cec5SDimitry Andric     StringLength = NumBytes;
4942*0b57cec5SDimitry Andric     return *Map.insert(std::make_pair(String, nullptr)).first;
4943*0b57cec5SDimitry Andric   }
4944*0b57cec5SDimitry Andric 
4945*0b57cec5SDimitry Andric   // Otherwise, convert the UTF8 literals into a string of shorts.
4946*0b57cec5SDimitry Andric   IsUTF16 = true;
4947*0b57cec5SDimitry Andric 
4948*0b57cec5SDimitry Andric   SmallVector<llvm::UTF16, 128> ToBuf(NumBytes + 1); // +1 for ending nulls.
4949*0b57cec5SDimitry Andric   const llvm::UTF8 *FromPtr = (const llvm::UTF8 *)String.data();
4950*0b57cec5SDimitry Andric   llvm::UTF16 *ToPtr = &ToBuf[0];
4951*0b57cec5SDimitry Andric 
4952*0b57cec5SDimitry Andric   (void)llvm::ConvertUTF8toUTF16(&FromPtr, FromPtr + NumBytes, &ToPtr,
4953*0b57cec5SDimitry Andric                                  ToPtr + NumBytes, llvm::strictConversion);
4954*0b57cec5SDimitry Andric 
4955*0b57cec5SDimitry Andric   // ConvertUTF8toUTF16 returns the length in ToPtr.
4956*0b57cec5SDimitry Andric   StringLength = ToPtr - &ToBuf[0];
4957*0b57cec5SDimitry Andric 
4958*0b57cec5SDimitry Andric   // Add an explicit null.
4959*0b57cec5SDimitry Andric   *ToPtr = 0;
4960*0b57cec5SDimitry Andric   return *Map.insert(std::make_pair(
4961*0b57cec5SDimitry Andric                          StringRef(reinterpret_cast<const char *>(ToBuf.data()),
4962*0b57cec5SDimitry Andric                                    (StringLength + 1) * 2),
4963*0b57cec5SDimitry Andric                          nullptr)).first;
4964*0b57cec5SDimitry Andric }
4965*0b57cec5SDimitry Andric 
4966*0b57cec5SDimitry Andric ConstantAddress
4967*0b57cec5SDimitry Andric CodeGenModule::GetAddrOfConstantCFString(const StringLiteral *Literal) {
4968*0b57cec5SDimitry Andric   unsigned StringLength = 0;
4969*0b57cec5SDimitry Andric   bool isUTF16 = false;
4970*0b57cec5SDimitry Andric   llvm::StringMapEntry<llvm::GlobalVariable *> &Entry =
4971*0b57cec5SDimitry Andric       GetConstantCFStringEntry(CFConstantStringMap, Literal,
4972*0b57cec5SDimitry Andric                                getDataLayout().isLittleEndian(), isUTF16,
4973*0b57cec5SDimitry Andric                                StringLength);
4974*0b57cec5SDimitry Andric 
4975*0b57cec5SDimitry Andric   if (auto *C = Entry.second)
4976*0b57cec5SDimitry Andric     return ConstantAddress(C, CharUnits::fromQuantity(C->getAlignment()));
4977*0b57cec5SDimitry Andric 
4978*0b57cec5SDimitry Andric   llvm::Constant *Zero = llvm::Constant::getNullValue(Int32Ty);
4979*0b57cec5SDimitry Andric   llvm::Constant *Zeros[] = { Zero, Zero };
4980*0b57cec5SDimitry Andric 
4981*0b57cec5SDimitry Andric   const ASTContext &Context = getContext();
4982*0b57cec5SDimitry Andric   const llvm::Triple &Triple = getTriple();
4983*0b57cec5SDimitry Andric 
4984*0b57cec5SDimitry Andric   const auto CFRuntime = getLangOpts().CFRuntime;
4985*0b57cec5SDimitry Andric   const bool IsSwiftABI =
4986*0b57cec5SDimitry Andric       static_cast<unsigned>(CFRuntime) >=
4987*0b57cec5SDimitry Andric       static_cast<unsigned>(LangOptions::CoreFoundationABI::Swift);
4988*0b57cec5SDimitry Andric   const bool IsSwift4_1 = CFRuntime == LangOptions::CoreFoundationABI::Swift4_1;
4989*0b57cec5SDimitry Andric 
4990*0b57cec5SDimitry Andric   // If we don't already have it, get __CFConstantStringClassReference.
4991*0b57cec5SDimitry Andric   if (!CFConstantStringClassRef) {
4992*0b57cec5SDimitry Andric     const char *CFConstantStringClassName = "__CFConstantStringClassReference";
4993*0b57cec5SDimitry Andric     llvm::Type *Ty = getTypes().ConvertType(getContext().IntTy);
4994*0b57cec5SDimitry Andric     Ty = llvm::ArrayType::get(Ty, 0);
4995*0b57cec5SDimitry Andric 
4996*0b57cec5SDimitry Andric     switch (CFRuntime) {
4997*0b57cec5SDimitry Andric     default: break;
4998*0b57cec5SDimitry Andric     case LangOptions::CoreFoundationABI::Swift: LLVM_FALLTHROUGH;
4999*0b57cec5SDimitry Andric     case LangOptions::CoreFoundationABI::Swift5_0:
5000*0b57cec5SDimitry Andric       CFConstantStringClassName =
5001*0b57cec5SDimitry Andric           Triple.isOSDarwin() ? "$s15SwiftFoundation19_NSCFConstantStringCN"
5002*0b57cec5SDimitry Andric                               : "$s10Foundation19_NSCFConstantStringCN";
5003*0b57cec5SDimitry Andric       Ty = IntPtrTy;
5004*0b57cec5SDimitry Andric       break;
5005*0b57cec5SDimitry Andric     case LangOptions::CoreFoundationABI::Swift4_2:
5006*0b57cec5SDimitry Andric       CFConstantStringClassName =
5007*0b57cec5SDimitry Andric           Triple.isOSDarwin() ? "$S15SwiftFoundation19_NSCFConstantStringCN"
5008*0b57cec5SDimitry Andric                               : "$S10Foundation19_NSCFConstantStringCN";
5009*0b57cec5SDimitry Andric       Ty = IntPtrTy;
5010*0b57cec5SDimitry Andric       break;
5011*0b57cec5SDimitry Andric     case LangOptions::CoreFoundationABI::Swift4_1:
5012*0b57cec5SDimitry Andric       CFConstantStringClassName =
5013*0b57cec5SDimitry Andric           Triple.isOSDarwin() ? "__T015SwiftFoundation19_NSCFConstantStringCN"
5014*0b57cec5SDimitry Andric                               : "__T010Foundation19_NSCFConstantStringCN";
5015*0b57cec5SDimitry Andric       Ty = IntPtrTy;
5016*0b57cec5SDimitry Andric       break;
5017*0b57cec5SDimitry Andric     }
5018*0b57cec5SDimitry Andric 
5019*0b57cec5SDimitry Andric     llvm::Constant *C = CreateRuntimeVariable(Ty, CFConstantStringClassName);
5020*0b57cec5SDimitry Andric 
5021*0b57cec5SDimitry Andric     if (Triple.isOSBinFormatELF() || Triple.isOSBinFormatCOFF()) {
5022*0b57cec5SDimitry Andric       llvm::GlobalValue *GV = nullptr;
5023*0b57cec5SDimitry Andric 
5024*0b57cec5SDimitry Andric       if ((GV = dyn_cast<llvm::GlobalValue>(C))) {
5025*0b57cec5SDimitry Andric         IdentifierInfo &II = Context.Idents.get(GV->getName());
5026*0b57cec5SDimitry Andric         TranslationUnitDecl *TUDecl = Context.getTranslationUnitDecl();
5027*0b57cec5SDimitry Andric         DeclContext *DC = TranslationUnitDecl::castToDeclContext(TUDecl);
5028*0b57cec5SDimitry Andric 
5029*0b57cec5SDimitry Andric         const VarDecl *VD = nullptr;
5030*0b57cec5SDimitry Andric         for (const auto &Result : DC->lookup(&II))
5031*0b57cec5SDimitry Andric           if ((VD = dyn_cast<VarDecl>(Result)))
5032*0b57cec5SDimitry Andric             break;
5033*0b57cec5SDimitry Andric 
5034*0b57cec5SDimitry Andric         if (Triple.isOSBinFormatELF()) {
5035*0b57cec5SDimitry Andric           if (!VD)
5036*0b57cec5SDimitry Andric             GV->setLinkage(llvm::GlobalValue::ExternalLinkage);
5037*0b57cec5SDimitry Andric         } else {
5038*0b57cec5SDimitry Andric           GV->setLinkage(llvm::GlobalValue::ExternalLinkage);
5039*0b57cec5SDimitry Andric           if (!VD || !VD->hasAttr<DLLExportAttr>())
5040*0b57cec5SDimitry Andric             GV->setDLLStorageClass(llvm::GlobalValue::DLLImportStorageClass);
5041*0b57cec5SDimitry Andric           else
5042*0b57cec5SDimitry Andric             GV->setDLLStorageClass(llvm::GlobalValue::DLLExportStorageClass);
5043*0b57cec5SDimitry Andric         }
5044*0b57cec5SDimitry Andric 
5045*0b57cec5SDimitry Andric         setDSOLocal(GV);
5046*0b57cec5SDimitry Andric       }
5047*0b57cec5SDimitry Andric     }
5048*0b57cec5SDimitry Andric 
5049*0b57cec5SDimitry Andric     // Decay array -> ptr
5050*0b57cec5SDimitry Andric     CFConstantStringClassRef =
5051*0b57cec5SDimitry Andric         IsSwiftABI ? llvm::ConstantExpr::getPtrToInt(C, Ty)
5052*0b57cec5SDimitry Andric                    : llvm::ConstantExpr::getGetElementPtr(Ty, C, Zeros);
5053*0b57cec5SDimitry Andric   }
5054*0b57cec5SDimitry Andric 
5055*0b57cec5SDimitry Andric   QualType CFTy = Context.getCFConstantStringType();
5056*0b57cec5SDimitry Andric 
5057*0b57cec5SDimitry Andric   auto *STy = cast<llvm::StructType>(getTypes().ConvertType(CFTy));
5058*0b57cec5SDimitry Andric 
5059*0b57cec5SDimitry Andric   ConstantInitBuilder Builder(*this);
5060*0b57cec5SDimitry Andric   auto Fields = Builder.beginStruct(STy);
5061*0b57cec5SDimitry Andric 
5062*0b57cec5SDimitry Andric   // Class pointer.
5063*0b57cec5SDimitry Andric   Fields.add(cast<llvm::ConstantExpr>(CFConstantStringClassRef));
5064*0b57cec5SDimitry Andric 
5065*0b57cec5SDimitry Andric   // Flags.
5066*0b57cec5SDimitry Andric   if (IsSwiftABI) {
5067*0b57cec5SDimitry Andric     Fields.addInt(IntPtrTy, IsSwift4_1 ? 0x05 : 0x01);
5068*0b57cec5SDimitry Andric     Fields.addInt(Int64Ty, isUTF16 ? 0x07d0 : 0x07c8);
5069*0b57cec5SDimitry Andric   } else {
5070*0b57cec5SDimitry Andric     Fields.addInt(IntTy, isUTF16 ? 0x07d0 : 0x07C8);
5071*0b57cec5SDimitry Andric   }
5072*0b57cec5SDimitry Andric 
5073*0b57cec5SDimitry Andric   // String pointer.
5074*0b57cec5SDimitry Andric   llvm::Constant *C = nullptr;
5075*0b57cec5SDimitry Andric   if (isUTF16) {
5076*0b57cec5SDimitry Andric     auto Arr = llvm::makeArrayRef(
5077*0b57cec5SDimitry Andric         reinterpret_cast<uint16_t *>(const_cast<char *>(Entry.first().data())),
5078*0b57cec5SDimitry Andric         Entry.first().size() / 2);
5079*0b57cec5SDimitry Andric     C = llvm::ConstantDataArray::get(VMContext, Arr);
5080*0b57cec5SDimitry Andric   } else {
5081*0b57cec5SDimitry Andric     C = llvm::ConstantDataArray::getString(VMContext, Entry.first());
5082*0b57cec5SDimitry Andric   }
5083*0b57cec5SDimitry Andric 
5084*0b57cec5SDimitry Andric   // Note: -fwritable-strings doesn't make the backing store strings of
5085*0b57cec5SDimitry Andric   // CFStrings writable. (See <rdar://problem/10657500>)
5086*0b57cec5SDimitry Andric   auto *GV =
5087*0b57cec5SDimitry Andric       new llvm::GlobalVariable(getModule(), C->getType(), /*isConstant=*/true,
5088*0b57cec5SDimitry Andric                                llvm::GlobalValue::PrivateLinkage, C, ".str");
5089*0b57cec5SDimitry Andric   GV->setUnnamedAddr(llvm::GlobalValue::UnnamedAddr::Global);
5090*0b57cec5SDimitry Andric   // Don't enforce the target's minimum global alignment, since the only use
5091*0b57cec5SDimitry Andric   // of the string is via this class initializer.
5092*0b57cec5SDimitry Andric   CharUnits Align = isUTF16 ? Context.getTypeAlignInChars(Context.ShortTy)
5093*0b57cec5SDimitry Andric                             : Context.getTypeAlignInChars(Context.CharTy);
5094a7dea167SDimitry Andric   GV->setAlignment(Align.getAsAlign());
5095*0b57cec5SDimitry Andric 
5096*0b57cec5SDimitry Andric   // FIXME: We set the section explicitly to avoid a bug in ld64 224.1.
5097*0b57cec5SDimitry Andric   // Without it LLVM can merge the string with a non unnamed_addr one during
5098*0b57cec5SDimitry Andric   // LTO.  Doing that changes the section it ends in, which surprises ld64.
5099*0b57cec5SDimitry Andric   if (Triple.isOSBinFormatMachO())
5100*0b57cec5SDimitry Andric     GV->setSection(isUTF16 ? "__TEXT,__ustring"
5101*0b57cec5SDimitry Andric                            : "__TEXT,__cstring,cstring_literals");
5102*0b57cec5SDimitry Andric   // Make sure the literal ends up in .rodata to allow for safe ICF and for
5103*0b57cec5SDimitry Andric   // the static linker to adjust permissions to read-only later on.
5104*0b57cec5SDimitry Andric   else if (Triple.isOSBinFormatELF())
5105*0b57cec5SDimitry Andric     GV->setSection(".rodata");
5106*0b57cec5SDimitry Andric 
5107*0b57cec5SDimitry Andric   // String.
5108*0b57cec5SDimitry Andric   llvm::Constant *Str =
5109*0b57cec5SDimitry Andric       llvm::ConstantExpr::getGetElementPtr(GV->getValueType(), GV, Zeros);
5110*0b57cec5SDimitry Andric 
5111*0b57cec5SDimitry Andric   if (isUTF16)
5112*0b57cec5SDimitry Andric     // Cast the UTF16 string to the correct type.
5113*0b57cec5SDimitry Andric     Str = llvm::ConstantExpr::getBitCast(Str, Int8PtrTy);
5114*0b57cec5SDimitry Andric   Fields.add(Str);
5115*0b57cec5SDimitry Andric 
5116*0b57cec5SDimitry Andric   // String length.
5117*0b57cec5SDimitry Andric   llvm::IntegerType *LengthTy =
5118*0b57cec5SDimitry Andric       llvm::IntegerType::get(getModule().getContext(),
5119*0b57cec5SDimitry Andric                              Context.getTargetInfo().getLongWidth());
5120*0b57cec5SDimitry Andric   if (IsSwiftABI) {
5121*0b57cec5SDimitry Andric     if (CFRuntime == LangOptions::CoreFoundationABI::Swift4_1 ||
5122*0b57cec5SDimitry Andric         CFRuntime == LangOptions::CoreFoundationABI::Swift4_2)
5123*0b57cec5SDimitry Andric       LengthTy = Int32Ty;
5124*0b57cec5SDimitry Andric     else
5125*0b57cec5SDimitry Andric       LengthTy = IntPtrTy;
5126*0b57cec5SDimitry Andric   }
5127*0b57cec5SDimitry Andric   Fields.addInt(LengthTy, StringLength);
5128*0b57cec5SDimitry Andric 
5129a7dea167SDimitry Andric   // Swift ABI requires 8-byte alignment to ensure that the _Atomic(uint64_t) is
5130a7dea167SDimitry Andric   // properly aligned on 32-bit platforms.
5131a7dea167SDimitry Andric   CharUnits Alignment =
5132a7dea167SDimitry Andric       IsSwiftABI ? Context.toCharUnitsFromBits(64) : getPointerAlign();
5133*0b57cec5SDimitry Andric 
5134*0b57cec5SDimitry Andric   // The struct.
5135*0b57cec5SDimitry Andric   GV = Fields.finishAndCreateGlobal("_unnamed_cfstring_", Alignment,
5136*0b57cec5SDimitry Andric                                     /*isConstant=*/false,
5137*0b57cec5SDimitry Andric                                     llvm::GlobalVariable::PrivateLinkage);
5138*0b57cec5SDimitry Andric   GV->addAttribute("objc_arc_inert");
5139*0b57cec5SDimitry Andric   switch (Triple.getObjectFormat()) {
5140*0b57cec5SDimitry Andric   case llvm::Triple::UnknownObjectFormat:
5141*0b57cec5SDimitry Andric     llvm_unreachable("unknown file format");
5142e8d8bef9SDimitry Andric   case llvm::Triple::GOFF:
5143e8d8bef9SDimitry Andric     llvm_unreachable("GOFF is not yet implemented");
5144*0b57cec5SDimitry Andric   case llvm::Triple::XCOFF:
5145*0b57cec5SDimitry Andric     llvm_unreachable("XCOFF is not yet implemented");
5146*0b57cec5SDimitry Andric   case llvm::Triple::COFF:
5147*0b57cec5SDimitry Andric   case llvm::Triple::ELF:
5148*0b57cec5SDimitry Andric   case llvm::Triple::Wasm:
5149*0b57cec5SDimitry Andric     GV->setSection("cfstring");
5150*0b57cec5SDimitry Andric     break;
5151*0b57cec5SDimitry Andric   case llvm::Triple::MachO:
5152*0b57cec5SDimitry Andric     GV->setSection("__DATA,__cfstring");
5153*0b57cec5SDimitry Andric     break;
5154*0b57cec5SDimitry Andric   }
5155*0b57cec5SDimitry Andric   Entry.second = GV;
5156*0b57cec5SDimitry Andric 
5157*0b57cec5SDimitry Andric   return ConstantAddress(GV, Alignment);
5158*0b57cec5SDimitry Andric }
5159*0b57cec5SDimitry Andric 
5160*0b57cec5SDimitry Andric bool CodeGenModule::getExpressionLocationsEnabled() const {
5161*0b57cec5SDimitry Andric   return !CodeGenOpts.EmitCodeView || CodeGenOpts.DebugColumnInfo;
5162*0b57cec5SDimitry Andric }
5163*0b57cec5SDimitry Andric 
5164*0b57cec5SDimitry Andric QualType CodeGenModule::getObjCFastEnumerationStateType() {
5165*0b57cec5SDimitry Andric   if (ObjCFastEnumerationStateType.isNull()) {
5166*0b57cec5SDimitry Andric     RecordDecl *D = Context.buildImplicitRecord("__objcFastEnumerationState");
5167*0b57cec5SDimitry Andric     D->startDefinition();
5168*0b57cec5SDimitry Andric 
5169*0b57cec5SDimitry Andric     QualType FieldTypes[] = {
5170*0b57cec5SDimitry Andric       Context.UnsignedLongTy,
5171*0b57cec5SDimitry Andric       Context.getPointerType(Context.getObjCIdType()),
5172*0b57cec5SDimitry Andric       Context.getPointerType(Context.UnsignedLongTy),
5173*0b57cec5SDimitry Andric       Context.getConstantArrayType(Context.UnsignedLongTy,
5174a7dea167SDimitry Andric                            llvm::APInt(32, 5), nullptr, ArrayType::Normal, 0)
5175*0b57cec5SDimitry Andric     };
5176*0b57cec5SDimitry Andric 
5177*0b57cec5SDimitry Andric     for (size_t i = 0; i < 4; ++i) {
5178*0b57cec5SDimitry Andric       FieldDecl *Field = FieldDecl::Create(Context,
5179*0b57cec5SDimitry Andric                                            D,
5180*0b57cec5SDimitry Andric                                            SourceLocation(),
5181*0b57cec5SDimitry Andric                                            SourceLocation(), nullptr,
5182*0b57cec5SDimitry Andric                                            FieldTypes[i], /*TInfo=*/nullptr,
5183*0b57cec5SDimitry Andric                                            /*BitWidth=*/nullptr,
5184*0b57cec5SDimitry Andric                                            /*Mutable=*/false,
5185*0b57cec5SDimitry Andric                                            ICIS_NoInit);
5186*0b57cec5SDimitry Andric       Field->setAccess(AS_public);
5187*0b57cec5SDimitry Andric       D->addDecl(Field);
5188*0b57cec5SDimitry Andric     }
5189*0b57cec5SDimitry Andric 
5190*0b57cec5SDimitry Andric     D->completeDefinition();
5191*0b57cec5SDimitry Andric     ObjCFastEnumerationStateType = Context.getTagDeclType(D);
5192*0b57cec5SDimitry Andric   }
5193*0b57cec5SDimitry Andric 
5194*0b57cec5SDimitry Andric   return ObjCFastEnumerationStateType;
5195*0b57cec5SDimitry Andric }
5196*0b57cec5SDimitry Andric 
5197*0b57cec5SDimitry Andric llvm::Constant *
5198*0b57cec5SDimitry Andric CodeGenModule::GetConstantArrayFromStringLiteral(const StringLiteral *E) {
5199*0b57cec5SDimitry Andric   assert(!E->getType()->isPointerType() && "Strings are always arrays");
5200*0b57cec5SDimitry Andric 
5201*0b57cec5SDimitry Andric   // Don't emit it as the address of the string, emit the string data itself
5202*0b57cec5SDimitry Andric   // as an inline array.
5203*0b57cec5SDimitry Andric   if (E->getCharByteWidth() == 1) {
5204*0b57cec5SDimitry Andric     SmallString<64> Str(E->getString());
5205*0b57cec5SDimitry Andric 
5206*0b57cec5SDimitry Andric     // Resize the string to the right size, which is indicated by its type.
5207*0b57cec5SDimitry Andric     const ConstantArrayType *CAT = Context.getAsConstantArrayType(E->getType());
5208*0b57cec5SDimitry Andric     Str.resize(CAT->getSize().getZExtValue());
5209*0b57cec5SDimitry Andric     return llvm::ConstantDataArray::getString(VMContext, Str, false);
5210*0b57cec5SDimitry Andric   }
5211*0b57cec5SDimitry Andric 
5212*0b57cec5SDimitry Andric   auto *AType = cast<llvm::ArrayType>(getTypes().ConvertType(E->getType()));
5213*0b57cec5SDimitry Andric   llvm::Type *ElemTy = AType->getElementType();
5214*0b57cec5SDimitry Andric   unsigned NumElements = AType->getNumElements();
5215*0b57cec5SDimitry Andric 
5216*0b57cec5SDimitry Andric   // Wide strings have either 2-byte or 4-byte elements.
5217*0b57cec5SDimitry Andric   if (ElemTy->getPrimitiveSizeInBits() == 16) {
5218*0b57cec5SDimitry Andric     SmallVector<uint16_t, 32> Elements;
5219*0b57cec5SDimitry Andric     Elements.reserve(NumElements);
5220*0b57cec5SDimitry Andric 
5221*0b57cec5SDimitry Andric     for(unsigned i = 0, e = E->getLength(); i != e; ++i)
5222*0b57cec5SDimitry Andric       Elements.push_back(E->getCodeUnit(i));
5223*0b57cec5SDimitry Andric     Elements.resize(NumElements);
5224*0b57cec5SDimitry Andric     return llvm::ConstantDataArray::get(VMContext, Elements);
5225*0b57cec5SDimitry Andric   }
5226*0b57cec5SDimitry Andric 
5227*0b57cec5SDimitry Andric   assert(ElemTy->getPrimitiveSizeInBits() == 32);
5228*0b57cec5SDimitry Andric   SmallVector<uint32_t, 32> Elements;
5229*0b57cec5SDimitry Andric   Elements.reserve(NumElements);
5230*0b57cec5SDimitry Andric 
5231*0b57cec5SDimitry Andric   for(unsigned i = 0, e = E->getLength(); i != e; ++i)
5232*0b57cec5SDimitry Andric     Elements.push_back(E->getCodeUnit(i));
5233*0b57cec5SDimitry Andric   Elements.resize(NumElements);
5234*0b57cec5SDimitry Andric   return llvm::ConstantDataArray::get(VMContext, Elements);
5235*0b57cec5SDimitry Andric }
5236*0b57cec5SDimitry Andric 
5237*0b57cec5SDimitry Andric static llvm::GlobalVariable *
5238*0b57cec5SDimitry Andric GenerateStringLiteral(llvm::Constant *C, llvm::GlobalValue::LinkageTypes LT,
5239*0b57cec5SDimitry Andric                       CodeGenModule &CGM, StringRef GlobalName,
5240*0b57cec5SDimitry Andric                       CharUnits Alignment) {
5241*0b57cec5SDimitry Andric   unsigned AddrSpace = CGM.getContext().getTargetAddressSpace(
5242*0b57cec5SDimitry Andric       CGM.getStringLiteralAddressSpace());
5243*0b57cec5SDimitry Andric 
5244*0b57cec5SDimitry Andric   llvm::Module &M = CGM.getModule();
5245*0b57cec5SDimitry Andric   // Create a global variable for this string
5246*0b57cec5SDimitry Andric   auto *GV = new llvm::GlobalVariable(
5247*0b57cec5SDimitry Andric       M, C->getType(), !CGM.getLangOpts().WritableStrings, LT, C, GlobalName,
5248*0b57cec5SDimitry Andric       nullptr, llvm::GlobalVariable::NotThreadLocal, AddrSpace);
5249a7dea167SDimitry Andric   GV->setAlignment(Alignment.getAsAlign());
5250*0b57cec5SDimitry Andric   GV->setUnnamedAddr(llvm::GlobalValue::UnnamedAddr::Global);
5251*0b57cec5SDimitry Andric   if (GV->isWeakForLinker()) {
5252*0b57cec5SDimitry Andric     assert(CGM.supportsCOMDAT() && "Only COFF uses weak string literals");
5253*0b57cec5SDimitry Andric     GV->setComdat(M.getOrInsertComdat(GV->getName()));
5254*0b57cec5SDimitry Andric   }
5255*0b57cec5SDimitry Andric   CGM.setDSOLocal(GV);
5256*0b57cec5SDimitry Andric 
5257*0b57cec5SDimitry Andric   return GV;
5258*0b57cec5SDimitry Andric }
5259*0b57cec5SDimitry Andric 
5260*0b57cec5SDimitry Andric /// GetAddrOfConstantStringFromLiteral - Return a pointer to a
5261*0b57cec5SDimitry Andric /// constant array for the given string literal.
5262*0b57cec5SDimitry Andric ConstantAddress
5263*0b57cec5SDimitry Andric CodeGenModule::GetAddrOfConstantStringFromLiteral(const StringLiteral *S,
5264*0b57cec5SDimitry Andric                                                   StringRef Name) {
5265*0b57cec5SDimitry Andric   CharUnits Alignment = getContext().getAlignOfGlobalVarInChars(S->getType());
5266*0b57cec5SDimitry Andric 
5267*0b57cec5SDimitry Andric   llvm::Constant *C = GetConstantArrayFromStringLiteral(S);
5268*0b57cec5SDimitry Andric   llvm::GlobalVariable **Entry = nullptr;
5269*0b57cec5SDimitry Andric   if (!LangOpts.WritableStrings) {
5270*0b57cec5SDimitry Andric     Entry = &ConstantStringMap[C];
5271*0b57cec5SDimitry Andric     if (auto GV = *Entry) {
5272*0b57cec5SDimitry Andric       if (Alignment.getQuantity() > GV->getAlignment())
5273a7dea167SDimitry Andric         GV->setAlignment(Alignment.getAsAlign());
5274*0b57cec5SDimitry Andric       return ConstantAddress(castStringLiteralToDefaultAddressSpace(*this, GV),
5275*0b57cec5SDimitry Andric                              Alignment);
5276*0b57cec5SDimitry Andric     }
5277*0b57cec5SDimitry Andric   }
5278*0b57cec5SDimitry Andric 
5279*0b57cec5SDimitry Andric   SmallString<256> MangledNameBuffer;
5280*0b57cec5SDimitry Andric   StringRef GlobalVariableName;
5281*0b57cec5SDimitry Andric   llvm::GlobalValue::LinkageTypes LT;
5282*0b57cec5SDimitry Andric 
5283*0b57cec5SDimitry Andric   // Mangle the string literal if that's how the ABI merges duplicate strings.
5284*0b57cec5SDimitry Andric   // Don't do it if they are writable, since we don't want writes in one TU to
5285*0b57cec5SDimitry Andric   // affect strings in another.
5286*0b57cec5SDimitry Andric   if (getCXXABI().getMangleContext().shouldMangleStringLiteral(S) &&
5287*0b57cec5SDimitry Andric       !LangOpts.WritableStrings) {
5288*0b57cec5SDimitry Andric     llvm::raw_svector_ostream Out(MangledNameBuffer);
5289*0b57cec5SDimitry Andric     getCXXABI().getMangleContext().mangleStringLiteral(S, Out);
5290*0b57cec5SDimitry Andric     LT = llvm::GlobalValue::LinkOnceODRLinkage;
5291*0b57cec5SDimitry Andric     GlobalVariableName = MangledNameBuffer;
5292*0b57cec5SDimitry Andric   } else {
5293*0b57cec5SDimitry Andric     LT = llvm::GlobalValue::PrivateLinkage;
5294*0b57cec5SDimitry Andric     GlobalVariableName = Name;
5295*0b57cec5SDimitry Andric   }
5296*0b57cec5SDimitry Andric 
5297*0b57cec5SDimitry Andric   auto GV = GenerateStringLiteral(C, LT, *this, GlobalVariableName, Alignment);
5298*0b57cec5SDimitry Andric   if (Entry)
5299*0b57cec5SDimitry Andric     *Entry = GV;
5300*0b57cec5SDimitry Andric 
5301*0b57cec5SDimitry Andric   SanitizerMD->reportGlobalToASan(GV, S->getStrTokenLoc(0), "<string literal>",
5302*0b57cec5SDimitry Andric                                   QualType());
5303*0b57cec5SDimitry Andric 
5304*0b57cec5SDimitry Andric   return ConstantAddress(castStringLiteralToDefaultAddressSpace(*this, GV),
5305*0b57cec5SDimitry Andric                          Alignment);
5306*0b57cec5SDimitry Andric }
5307*0b57cec5SDimitry Andric 
5308*0b57cec5SDimitry Andric /// GetAddrOfConstantStringFromObjCEncode - Return a pointer to a constant
5309*0b57cec5SDimitry Andric /// array for the given ObjCEncodeExpr node.
5310*0b57cec5SDimitry Andric ConstantAddress
5311*0b57cec5SDimitry Andric CodeGenModule::GetAddrOfConstantStringFromObjCEncode(const ObjCEncodeExpr *E) {
5312*0b57cec5SDimitry Andric   std::string Str;
5313*0b57cec5SDimitry Andric   getContext().getObjCEncodingForType(E->getEncodedType(), Str);
5314*0b57cec5SDimitry Andric 
5315*0b57cec5SDimitry Andric   return GetAddrOfConstantCString(Str);
5316*0b57cec5SDimitry Andric }
5317*0b57cec5SDimitry Andric 
5318*0b57cec5SDimitry Andric /// GetAddrOfConstantCString - Returns a pointer to a character array containing
5319*0b57cec5SDimitry Andric /// the literal and a terminating '\0' character.
5320*0b57cec5SDimitry Andric /// The result has pointer to array type.
5321*0b57cec5SDimitry Andric ConstantAddress CodeGenModule::GetAddrOfConstantCString(
5322*0b57cec5SDimitry Andric     const std::string &Str, const char *GlobalName) {
5323*0b57cec5SDimitry Andric   StringRef StrWithNull(Str.c_str(), Str.size() + 1);
5324*0b57cec5SDimitry Andric   CharUnits Alignment =
5325*0b57cec5SDimitry Andric     getContext().getAlignOfGlobalVarInChars(getContext().CharTy);
5326*0b57cec5SDimitry Andric 
5327*0b57cec5SDimitry Andric   llvm::Constant *C =
5328*0b57cec5SDimitry Andric       llvm::ConstantDataArray::getString(getLLVMContext(), StrWithNull, false);
5329*0b57cec5SDimitry Andric 
5330*0b57cec5SDimitry Andric   // Don't share any string literals if strings aren't constant.
5331*0b57cec5SDimitry Andric   llvm::GlobalVariable **Entry = nullptr;
5332*0b57cec5SDimitry Andric   if (!LangOpts.WritableStrings) {
5333*0b57cec5SDimitry Andric     Entry = &ConstantStringMap[C];
5334*0b57cec5SDimitry Andric     if (auto GV = *Entry) {
5335*0b57cec5SDimitry Andric       if (Alignment.getQuantity() > GV->getAlignment())
5336a7dea167SDimitry Andric         GV->setAlignment(Alignment.getAsAlign());
5337*0b57cec5SDimitry Andric       return ConstantAddress(castStringLiteralToDefaultAddressSpace(*this, GV),
5338*0b57cec5SDimitry Andric                              Alignment);
5339*0b57cec5SDimitry Andric     }
5340*0b57cec5SDimitry Andric   }
5341*0b57cec5SDimitry Andric 
5342*0b57cec5SDimitry Andric   // Get the default prefix if a name wasn't specified.
5343*0b57cec5SDimitry Andric   if (!GlobalName)
5344*0b57cec5SDimitry Andric     GlobalName = ".str";
5345*0b57cec5SDimitry Andric   // Create a global variable for this.
5346*0b57cec5SDimitry Andric   auto GV = GenerateStringLiteral(C, llvm::GlobalValue::PrivateLinkage, *this,
5347*0b57cec5SDimitry Andric                                   GlobalName, Alignment);
5348*0b57cec5SDimitry Andric   if (Entry)
5349*0b57cec5SDimitry Andric     *Entry = GV;
5350*0b57cec5SDimitry Andric 
5351*0b57cec5SDimitry Andric   return ConstantAddress(castStringLiteralToDefaultAddressSpace(*this, GV),
5352*0b57cec5SDimitry Andric                          Alignment);
5353*0b57cec5SDimitry Andric }
5354*0b57cec5SDimitry Andric 
5355*0b57cec5SDimitry Andric ConstantAddress CodeGenModule::GetAddrOfGlobalTemporary(
5356*0b57cec5SDimitry Andric     const MaterializeTemporaryExpr *E, const Expr *Init) {
5357*0b57cec5SDimitry Andric   assert((E->getStorageDuration() == SD_Static ||
5358*0b57cec5SDimitry Andric           E->getStorageDuration() == SD_Thread) && "not a global temporary");
5359*0b57cec5SDimitry Andric   const auto *VD = cast<VarDecl>(E->getExtendingDecl());
5360*0b57cec5SDimitry Andric 
5361*0b57cec5SDimitry Andric   // If we're not materializing a subobject of the temporary, keep the
5362*0b57cec5SDimitry Andric   // cv-qualifiers from the type of the MaterializeTemporaryExpr.
5363*0b57cec5SDimitry Andric   QualType MaterializedType = Init->getType();
5364480093f4SDimitry Andric   if (Init == E->getSubExpr())
5365*0b57cec5SDimitry Andric     MaterializedType = E->getType();
5366*0b57cec5SDimitry Andric 
5367*0b57cec5SDimitry Andric   CharUnits Align = getContext().getTypeAlignInChars(MaterializedType);
5368*0b57cec5SDimitry Andric 
5369*0b57cec5SDimitry Andric   if (llvm::Constant *Slot = MaterializedGlobalTemporaryMap[E])
5370*0b57cec5SDimitry Andric     return ConstantAddress(Slot, Align);
5371*0b57cec5SDimitry Andric 
5372*0b57cec5SDimitry Andric   // FIXME: If an externally-visible declaration extends multiple temporaries,
5373*0b57cec5SDimitry Andric   // we need to give each temporary the same name in every translation unit (and
5374*0b57cec5SDimitry Andric   // we also need to make the temporaries externally-visible).
5375*0b57cec5SDimitry Andric   SmallString<256> Name;
5376*0b57cec5SDimitry Andric   llvm::raw_svector_ostream Out(Name);
5377*0b57cec5SDimitry Andric   getCXXABI().getMangleContext().mangleReferenceTemporary(
5378*0b57cec5SDimitry Andric       VD, E->getManglingNumber(), Out);
5379*0b57cec5SDimitry Andric 
5380*0b57cec5SDimitry Andric   APValue *Value = nullptr;
5381a7dea167SDimitry Andric   if (E->getStorageDuration() == SD_Static && VD && VD->evaluateValue()) {
5382a7dea167SDimitry Andric     // If the initializer of the extending declaration is a constant
5383a7dea167SDimitry Andric     // initializer, we should have a cached constant initializer for this
5384a7dea167SDimitry Andric     // temporary. Note that this might have a different value from the value
5385a7dea167SDimitry Andric     // computed by evaluating the initializer if the surrounding constant
5386a7dea167SDimitry Andric     // expression modifies the temporary.
5387480093f4SDimitry Andric     Value = E->getOrCreateValue(false);
5388*0b57cec5SDimitry Andric   }
5389*0b57cec5SDimitry Andric 
5390*0b57cec5SDimitry Andric   // Try evaluating it now, it might have a constant initializer.
5391*0b57cec5SDimitry Andric   Expr::EvalResult EvalResult;
5392*0b57cec5SDimitry Andric   if (!Value && Init->EvaluateAsRValue(EvalResult, getContext()) &&
5393*0b57cec5SDimitry Andric       !EvalResult.hasSideEffects())
5394*0b57cec5SDimitry Andric     Value = &EvalResult.Val;
5395*0b57cec5SDimitry Andric 
5396*0b57cec5SDimitry Andric   LangAS AddrSpace =
5397*0b57cec5SDimitry Andric       VD ? GetGlobalVarAddressSpace(VD) : MaterializedType.getAddressSpace();
5398*0b57cec5SDimitry Andric 
5399*0b57cec5SDimitry Andric   Optional<ConstantEmitter> emitter;
5400*0b57cec5SDimitry Andric   llvm::Constant *InitialValue = nullptr;
5401*0b57cec5SDimitry Andric   bool Constant = false;
5402*0b57cec5SDimitry Andric   llvm::Type *Type;
5403*0b57cec5SDimitry Andric   if (Value) {
5404*0b57cec5SDimitry Andric     // The temporary has a constant initializer, use it.
5405*0b57cec5SDimitry Andric     emitter.emplace(*this);
5406*0b57cec5SDimitry Andric     InitialValue = emitter->emitForInitializer(*Value, AddrSpace,
5407*0b57cec5SDimitry Andric                                                MaterializedType);
5408*0b57cec5SDimitry Andric     Constant = isTypeConstant(MaterializedType, /*ExcludeCtor*/Value);
5409*0b57cec5SDimitry Andric     Type = InitialValue->getType();
5410*0b57cec5SDimitry Andric   } else {
5411*0b57cec5SDimitry Andric     // No initializer, the initialization will be provided when we
5412*0b57cec5SDimitry Andric     // initialize the declaration which performed lifetime extension.
5413*0b57cec5SDimitry Andric     Type = getTypes().ConvertTypeForMem(MaterializedType);
5414*0b57cec5SDimitry Andric   }
5415*0b57cec5SDimitry Andric 
5416*0b57cec5SDimitry Andric   // Create a global variable for this lifetime-extended temporary.
5417*0b57cec5SDimitry Andric   llvm::GlobalValue::LinkageTypes Linkage =
5418*0b57cec5SDimitry Andric       getLLVMLinkageVarDefinition(VD, Constant);
5419*0b57cec5SDimitry Andric   if (Linkage == llvm::GlobalVariable::ExternalLinkage) {
5420*0b57cec5SDimitry Andric     const VarDecl *InitVD;
5421*0b57cec5SDimitry Andric     if (VD->isStaticDataMember() && VD->getAnyInitializer(InitVD) &&
5422*0b57cec5SDimitry Andric         isa<CXXRecordDecl>(InitVD->getLexicalDeclContext())) {
5423*0b57cec5SDimitry Andric       // Temporaries defined inside a class get linkonce_odr linkage because the
5424*0b57cec5SDimitry Andric       // class can be defined in multiple translation units.
5425*0b57cec5SDimitry Andric       Linkage = llvm::GlobalVariable::LinkOnceODRLinkage;
5426*0b57cec5SDimitry Andric     } else {
5427*0b57cec5SDimitry Andric       // There is no need for this temporary to have external linkage if the
5428*0b57cec5SDimitry Andric       // VarDecl has external linkage.
5429*0b57cec5SDimitry Andric       Linkage = llvm::GlobalVariable::InternalLinkage;
5430*0b57cec5SDimitry Andric     }
5431*0b57cec5SDimitry Andric   }
5432*0b57cec5SDimitry Andric   auto TargetAS = getContext().getTargetAddressSpace(AddrSpace);
5433*0b57cec5SDimitry Andric   auto *GV = new llvm::GlobalVariable(
5434*0b57cec5SDimitry Andric       getModule(), Type, Constant, Linkage, InitialValue, Name.c_str(),
5435*0b57cec5SDimitry Andric       /*InsertBefore=*/nullptr, llvm::GlobalVariable::NotThreadLocal, TargetAS);
5436*0b57cec5SDimitry Andric   if (emitter) emitter->finalize(GV);
5437*0b57cec5SDimitry Andric   setGVProperties(GV, VD);
5438a7dea167SDimitry Andric   GV->setAlignment(Align.getAsAlign());
5439*0b57cec5SDimitry Andric   if (supportsCOMDAT() && GV->isWeakForLinker())
5440*0b57cec5SDimitry Andric     GV->setComdat(TheModule.getOrInsertComdat(GV->getName()));
5441*0b57cec5SDimitry Andric   if (VD->getTLSKind())
5442*0b57cec5SDimitry Andric     setTLSMode(GV, *VD);
5443*0b57cec5SDimitry Andric   llvm::Constant *CV = GV;
5444*0b57cec5SDimitry Andric   if (AddrSpace != LangAS::Default)
5445*0b57cec5SDimitry Andric     CV = getTargetCodeGenInfo().performAddrSpaceCast(
5446*0b57cec5SDimitry Andric         *this, GV, AddrSpace, LangAS::Default,
5447*0b57cec5SDimitry Andric         Type->getPointerTo(
5448*0b57cec5SDimitry Andric             getContext().getTargetAddressSpace(LangAS::Default)));
5449*0b57cec5SDimitry Andric   MaterializedGlobalTemporaryMap[E] = CV;
5450*0b57cec5SDimitry Andric   return ConstantAddress(CV, Align);
5451*0b57cec5SDimitry Andric }
5452*0b57cec5SDimitry Andric 
5453*0b57cec5SDimitry Andric /// EmitObjCPropertyImplementations - Emit information for synthesized
5454*0b57cec5SDimitry Andric /// properties for an implementation.
5455*0b57cec5SDimitry Andric void CodeGenModule::EmitObjCPropertyImplementations(const
5456*0b57cec5SDimitry Andric                                                     ObjCImplementationDecl *D) {
5457*0b57cec5SDimitry Andric   for (const auto *PID : D->property_impls()) {
5458*0b57cec5SDimitry Andric     // Dynamic is just for type-checking.
5459*0b57cec5SDimitry Andric     if (PID->getPropertyImplementation() == ObjCPropertyImplDecl::Synthesize) {
5460*0b57cec5SDimitry Andric       ObjCPropertyDecl *PD = PID->getPropertyDecl();
5461*0b57cec5SDimitry Andric 
5462*0b57cec5SDimitry Andric       // Determine which methods need to be implemented, some may have
5463*0b57cec5SDimitry Andric       // been overridden. Note that ::isPropertyAccessor is not the method
5464*0b57cec5SDimitry Andric       // we want, that just indicates if the decl came from a
5465*0b57cec5SDimitry Andric       // property. What we want to know is if the method is defined in
5466*0b57cec5SDimitry Andric       // this implementation.
5467480093f4SDimitry Andric       auto *Getter = PID->getGetterMethodDecl();
5468480093f4SDimitry Andric       if (!Getter || Getter->isSynthesizedAccessorStub())
5469*0b57cec5SDimitry Andric         CodeGenFunction(*this).GenerateObjCGetter(
5470*0b57cec5SDimitry Andric             const_cast<ObjCImplementationDecl *>(D), PID);
5471480093f4SDimitry Andric       auto *Setter = PID->getSetterMethodDecl();
5472480093f4SDimitry Andric       if (!PD->isReadOnly() && (!Setter || Setter->isSynthesizedAccessorStub()))
5473*0b57cec5SDimitry Andric         CodeGenFunction(*this).GenerateObjCSetter(
5474*0b57cec5SDimitry Andric                                  const_cast<ObjCImplementationDecl *>(D), PID);
5475*0b57cec5SDimitry Andric     }
5476*0b57cec5SDimitry Andric   }
5477*0b57cec5SDimitry Andric }
5478*0b57cec5SDimitry Andric 
5479*0b57cec5SDimitry Andric static bool needsDestructMethod(ObjCImplementationDecl *impl) {
5480*0b57cec5SDimitry Andric   const ObjCInterfaceDecl *iface = impl->getClassInterface();
5481*0b57cec5SDimitry Andric   for (const ObjCIvarDecl *ivar = iface->all_declared_ivar_begin();
5482*0b57cec5SDimitry Andric        ivar; ivar = ivar->getNextIvar())
5483*0b57cec5SDimitry Andric     if (ivar->getType().isDestructedType())
5484*0b57cec5SDimitry Andric       return true;
5485*0b57cec5SDimitry Andric 
5486*0b57cec5SDimitry Andric   return false;
5487*0b57cec5SDimitry Andric }
5488*0b57cec5SDimitry Andric 
5489*0b57cec5SDimitry Andric static bool AllTrivialInitializers(CodeGenModule &CGM,
5490*0b57cec5SDimitry Andric                                    ObjCImplementationDecl *D) {
5491*0b57cec5SDimitry Andric   CodeGenFunction CGF(CGM);
5492*0b57cec5SDimitry Andric   for (ObjCImplementationDecl::init_iterator B = D->init_begin(),
5493*0b57cec5SDimitry Andric        E = D->init_end(); B != E; ++B) {
5494*0b57cec5SDimitry Andric     CXXCtorInitializer *CtorInitExp = *B;
5495*0b57cec5SDimitry Andric     Expr *Init = CtorInitExp->getInit();
5496*0b57cec5SDimitry Andric     if (!CGF.isTrivialInitializer(Init))
5497*0b57cec5SDimitry Andric       return false;
5498*0b57cec5SDimitry Andric   }
5499*0b57cec5SDimitry Andric   return true;
5500*0b57cec5SDimitry Andric }
5501*0b57cec5SDimitry Andric 
5502*0b57cec5SDimitry Andric /// EmitObjCIvarInitializations - Emit information for ivar initialization
5503*0b57cec5SDimitry Andric /// for an implementation.
5504*0b57cec5SDimitry Andric void CodeGenModule::EmitObjCIvarInitializations(ObjCImplementationDecl *D) {
5505*0b57cec5SDimitry Andric   // We might need a .cxx_destruct even if we don't have any ivar initializers.
5506*0b57cec5SDimitry Andric   if (needsDestructMethod(D)) {
5507*0b57cec5SDimitry Andric     IdentifierInfo *II = &getContext().Idents.get(".cxx_destruct");
5508*0b57cec5SDimitry Andric     Selector cxxSelector = getContext().Selectors.getSelector(0, &II);
5509480093f4SDimitry Andric     ObjCMethodDecl *DTORMethod = ObjCMethodDecl::Create(
5510480093f4SDimitry Andric         getContext(), D->getLocation(), D->getLocation(), cxxSelector,
5511480093f4SDimitry Andric         getContext().VoidTy, nullptr, D,
5512*0b57cec5SDimitry Andric         /*isInstance=*/true, /*isVariadic=*/false,
5513480093f4SDimitry Andric         /*isPropertyAccessor=*/true, /*isSynthesizedAccessorStub=*/false,
5514480093f4SDimitry Andric         /*isImplicitlyDeclared=*/true,
5515*0b57cec5SDimitry Andric         /*isDefined=*/false, ObjCMethodDecl::Required);
5516*0b57cec5SDimitry Andric     D->addInstanceMethod(DTORMethod);
5517*0b57cec5SDimitry Andric     CodeGenFunction(*this).GenerateObjCCtorDtorMethod(D, DTORMethod, false);
5518*0b57cec5SDimitry Andric     D->setHasDestructors(true);
5519*0b57cec5SDimitry Andric   }
5520*0b57cec5SDimitry Andric 
5521*0b57cec5SDimitry Andric   // If the implementation doesn't have any ivar initializers, we don't need
5522*0b57cec5SDimitry Andric   // a .cxx_construct.
5523*0b57cec5SDimitry Andric   if (D->getNumIvarInitializers() == 0 ||
5524*0b57cec5SDimitry Andric       AllTrivialInitializers(*this, D))
5525*0b57cec5SDimitry Andric     return;
5526*0b57cec5SDimitry Andric 
5527*0b57cec5SDimitry Andric   IdentifierInfo *II = &getContext().Idents.get(".cxx_construct");
5528*0b57cec5SDimitry Andric   Selector cxxSelector = getContext().Selectors.getSelector(0, &II);
5529*0b57cec5SDimitry Andric   // The constructor returns 'self'.
5530480093f4SDimitry Andric   ObjCMethodDecl *CTORMethod = ObjCMethodDecl::Create(
5531480093f4SDimitry Andric       getContext(), D->getLocation(), D->getLocation(), cxxSelector,
5532480093f4SDimitry Andric       getContext().getObjCIdType(), nullptr, D, /*isInstance=*/true,
5533*0b57cec5SDimitry Andric       /*isVariadic=*/false,
5534480093f4SDimitry Andric       /*isPropertyAccessor=*/true, /*isSynthesizedAccessorStub=*/false,
5535*0b57cec5SDimitry Andric       /*isImplicitlyDeclared=*/true,
5536480093f4SDimitry Andric       /*isDefined=*/false, ObjCMethodDecl::Required);
5537*0b57cec5SDimitry Andric   D->addInstanceMethod(CTORMethod);
5538*0b57cec5SDimitry Andric   CodeGenFunction(*this).GenerateObjCCtorDtorMethod(D, CTORMethod, true);
5539*0b57cec5SDimitry Andric   D->setHasNonZeroConstructors(true);
5540*0b57cec5SDimitry Andric }
5541*0b57cec5SDimitry Andric 
5542*0b57cec5SDimitry Andric // EmitLinkageSpec - Emit all declarations in a linkage spec.
5543*0b57cec5SDimitry Andric void CodeGenModule::EmitLinkageSpec(const LinkageSpecDecl *LSD) {
5544*0b57cec5SDimitry Andric   if (LSD->getLanguage() != LinkageSpecDecl::lang_c &&
5545480093f4SDimitry Andric       LSD->getLanguage() != LinkageSpecDecl::lang_cxx) {
5546*0b57cec5SDimitry Andric     ErrorUnsupported(LSD, "linkage spec");
5547*0b57cec5SDimitry Andric     return;
5548*0b57cec5SDimitry Andric   }
5549*0b57cec5SDimitry Andric 
5550*0b57cec5SDimitry Andric   EmitDeclContext(LSD);
5551*0b57cec5SDimitry Andric }
5552*0b57cec5SDimitry Andric 
5553*0b57cec5SDimitry Andric void CodeGenModule::EmitDeclContext(const DeclContext *DC) {
5554*0b57cec5SDimitry Andric   for (auto *I : DC->decls()) {
5555*0b57cec5SDimitry Andric     // Unlike other DeclContexts, the contents of an ObjCImplDecl at TU scope
5556*0b57cec5SDimitry Andric     // are themselves considered "top-level", so EmitTopLevelDecl on an
5557*0b57cec5SDimitry Andric     // ObjCImplDecl does not recursively visit them. We need to do that in
5558*0b57cec5SDimitry Andric     // case they're nested inside another construct (LinkageSpecDecl /
5559*0b57cec5SDimitry Andric     // ExportDecl) that does stop them from being considered "top-level".
5560*0b57cec5SDimitry Andric     if (auto *OID = dyn_cast<ObjCImplDecl>(I)) {
5561*0b57cec5SDimitry Andric       for (auto *M : OID->methods())
5562*0b57cec5SDimitry Andric         EmitTopLevelDecl(M);
5563*0b57cec5SDimitry Andric     }
5564*0b57cec5SDimitry Andric 
5565*0b57cec5SDimitry Andric     EmitTopLevelDecl(I);
5566*0b57cec5SDimitry Andric   }
5567*0b57cec5SDimitry Andric }
5568*0b57cec5SDimitry Andric 
5569*0b57cec5SDimitry Andric /// EmitTopLevelDecl - Emit code for a single top level declaration.
5570*0b57cec5SDimitry Andric void CodeGenModule::EmitTopLevelDecl(Decl *D) {
5571*0b57cec5SDimitry Andric   // Ignore dependent declarations.
5572*0b57cec5SDimitry Andric   if (D->isTemplated())
5573*0b57cec5SDimitry Andric     return;
5574*0b57cec5SDimitry Andric 
55755ffd83dbSDimitry Andric   // Consteval function shouldn't be emitted.
55765ffd83dbSDimitry Andric   if (auto *FD = dyn_cast<FunctionDecl>(D))
55775ffd83dbSDimitry Andric     if (FD->isConsteval())
55785ffd83dbSDimitry Andric       return;
55795ffd83dbSDimitry Andric 
5580*0b57cec5SDimitry Andric   switch (D->getKind()) {
5581*0b57cec5SDimitry Andric   case Decl::CXXConversion:
5582*0b57cec5SDimitry Andric   case Decl::CXXMethod:
5583*0b57cec5SDimitry Andric   case Decl::Function:
5584*0b57cec5SDimitry Andric     EmitGlobal(cast<FunctionDecl>(D));
5585*0b57cec5SDimitry Andric     // Always provide some coverage mapping
5586*0b57cec5SDimitry Andric     // even for the functions that aren't emitted.
5587*0b57cec5SDimitry Andric     AddDeferredUnusedCoverageMapping(D);
5588*0b57cec5SDimitry Andric     break;
5589*0b57cec5SDimitry Andric 
5590*0b57cec5SDimitry Andric   case Decl::CXXDeductionGuide:
5591*0b57cec5SDimitry Andric     // Function-like, but does not result in code emission.
5592*0b57cec5SDimitry Andric     break;
5593*0b57cec5SDimitry Andric 
5594*0b57cec5SDimitry Andric   case Decl::Var:
5595*0b57cec5SDimitry Andric   case Decl::Decomposition:
5596*0b57cec5SDimitry Andric   case Decl::VarTemplateSpecialization:
5597*0b57cec5SDimitry Andric     EmitGlobal(cast<VarDecl>(D));
5598*0b57cec5SDimitry Andric     if (auto *DD = dyn_cast<DecompositionDecl>(D))
5599*0b57cec5SDimitry Andric       for (auto *B : DD->bindings())
5600*0b57cec5SDimitry Andric         if (auto *HD = B->getHoldingVar())
5601*0b57cec5SDimitry Andric           EmitGlobal(HD);
5602*0b57cec5SDimitry Andric     break;
5603*0b57cec5SDimitry Andric 
5604*0b57cec5SDimitry Andric   // Indirect fields from global anonymous structs and unions can be
5605*0b57cec5SDimitry Andric   // ignored; only the actual variable requires IR gen support.
5606*0b57cec5SDimitry Andric   case Decl::IndirectField:
5607*0b57cec5SDimitry Andric     break;
5608*0b57cec5SDimitry Andric 
5609*0b57cec5SDimitry Andric   // C++ Decls
5610*0b57cec5SDimitry Andric   case Decl::Namespace:
5611*0b57cec5SDimitry Andric     EmitDeclContext(cast<NamespaceDecl>(D));
5612*0b57cec5SDimitry Andric     break;
5613*0b57cec5SDimitry Andric   case Decl::ClassTemplateSpecialization: {
5614*0b57cec5SDimitry Andric     const auto *Spec = cast<ClassTemplateSpecializationDecl>(D);
56155ffd83dbSDimitry Andric     if (CGDebugInfo *DI = getModuleDebugInfo())
56165ffd83dbSDimitry Andric       if (Spec->getSpecializationKind() ==
56175ffd83dbSDimitry Andric               TSK_ExplicitInstantiationDefinition &&
5618*0b57cec5SDimitry Andric           Spec->hasDefinition())
56195ffd83dbSDimitry Andric         DI->completeTemplateDefinition(*Spec);
5620*0b57cec5SDimitry Andric   } LLVM_FALLTHROUGH;
5621e8d8bef9SDimitry Andric   case Decl::CXXRecord: {
5622e8d8bef9SDimitry Andric     CXXRecordDecl *CRD = cast<CXXRecordDecl>(D);
5623e8d8bef9SDimitry Andric     if (CGDebugInfo *DI = getModuleDebugInfo()) {
5624e8d8bef9SDimitry Andric       if (CRD->hasDefinition())
5625e8d8bef9SDimitry Andric         DI->EmitAndRetainType(getContext().getRecordType(cast<RecordDecl>(D)));
5626*0b57cec5SDimitry Andric       if (auto *ES = D->getASTContext().getExternalSource())
5627*0b57cec5SDimitry Andric         if (ES->hasExternalDefinitions(D) == ExternalASTSource::EK_Never)
5628e8d8bef9SDimitry Andric           DI->completeUnusedClass(*CRD);
5629e8d8bef9SDimitry Andric     }
5630*0b57cec5SDimitry Andric     // Emit any static data members, they may be definitions.
5631e8d8bef9SDimitry Andric     for (auto *I : CRD->decls())
5632*0b57cec5SDimitry Andric       if (isa<VarDecl>(I) || isa<CXXRecordDecl>(I))
5633*0b57cec5SDimitry Andric         EmitTopLevelDecl(I);
5634*0b57cec5SDimitry Andric     break;
5635e8d8bef9SDimitry Andric   }
5636*0b57cec5SDimitry Andric     // No code generation needed.
5637*0b57cec5SDimitry Andric   case Decl::UsingShadow:
5638*0b57cec5SDimitry Andric   case Decl::ClassTemplate:
5639*0b57cec5SDimitry Andric   case Decl::VarTemplate:
5640*0b57cec5SDimitry Andric   case Decl::Concept:
5641*0b57cec5SDimitry Andric   case Decl::VarTemplatePartialSpecialization:
5642*0b57cec5SDimitry Andric   case Decl::FunctionTemplate:
5643*0b57cec5SDimitry Andric   case Decl::TypeAliasTemplate:
5644*0b57cec5SDimitry Andric   case Decl::Block:
5645*0b57cec5SDimitry Andric   case Decl::Empty:
5646*0b57cec5SDimitry Andric   case Decl::Binding:
5647*0b57cec5SDimitry Andric     break;
5648*0b57cec5SDimitry Andric   case Decl::Using:          // using X; [C++]
5649*0b57cec5SDimitry Andric     if (CGDebugInfo *DI = getModuleDebugInfo())
5650*0b57cec5SDimitry Andric         DI->EmitUsingDecl(cast<UsingDecl>(*D));
56515ffd83dbSDimitry Andric     break;
5652*0b57cec5SDimitry Andric   case Decl::NamespaceAlias:
5653*0b57cec5SDimitry Andric     if (CGDebugInfo *DI = getModuleDebugInfo())
5654*0b57cec5SDimitry Andric         DI->EmitNamespaceAlias(cast<NamespaceAliasDecl>(*D));
56555ffd83dbSDimitry Andric     break;
5656*0b57cec5SDimitry Andric   case Decl::UsingDirective: // using namespace X; [C++]
5657*0b57cec5SDimitry Andric     if (CGDebugInfo *DI = getModuleDebugInfo())
5658*0b57cec5SDimitry Andric       DI->EmitUsingDirective(cast<UsingDirectiveDecl>(*D));
56595ffd83dbSDimitry Andric     break;
5660*0b57cec5SDimitry Andric   case Decl::CXXConstructor:
5661*0b57cec5SDimitry Andric     getCXXABI().EmitCXXConstructors(cast<CXXConstructorDecl>(D));
5662*0b57cec5SDimitry Andric     break;
5663*0b57cec5SDimitry Andric   case Decl::CXXDestructor:
5664*0b57cec5SDimitry Andric     getCXXABI().EmitCXXDestructors(cast<CXXDestructorDecl>(D));
5665*0b57cec5SDimitry Andric     break;
5666*0b57cec5SDimitry Andric 
5667*0b57cec5SDimitry Andric   case Decl::StaticAssert:
5668*0b57cec5SDimitry Andric     // Nothing to do.
5669*0b57cec5SDimitry Andric     break;
5670*0b57cec5SDimitry Andric 
5671*0b57cec5SDimitry Andric   // Objective-C Decls
5672*0b57cec5SDimitry Andric 
5673*0b57cec5SDimitry Andric   // Forward declarations, no (immediate) code generation.
5674*0b57cec5SDimitry Andric   case Decl::ObjCInterface:
5675*0b57cec5SDimitry Andric   case Decl::ObjCCategory:
5676*0b57cec5SDimitry Andric     break;
5677*0b57cec5SDimitry Andric 
5678*0b57cec5SDimitry Andric   case Decl::ObjCProtocol: {
5679*0b57cec5SDimitry Andric     auto *Proto = cast<ObjCProtocolDecl>(D);
5680*0b57cec5SDimitry Andric     if (Proto->isThisDeclarationADefinition())
5681*0b57cec5SDimitry Andric       ObjCRuntime->GenerateProtocol(Proto);
5682*0b57cec5SDimitry Andric     break;
5683*0b57cec5SDimitry Andric   }
5684*0b57cec5SDimitry Andric 
5685*0b57cec5SDimitry Andric   case Decl::ObjCCategoryImpl:
5686*0b57cec5SDimitry Andric     // Categories have properties but don't support synthesize so we
5687*0b57cec5SDimitry Andric     // can ignore them here.
5688*0b57cec5SDimitry Andric     ObjCRuntime->GenerateCategory(cast<ObjCCategoryImplDecl>(D));
5689*0b57cec5SDimitry Andric     break;
5690*0b57cec5SDimitry Andric 
5691*0b57cec5SDimitry Andric   case Decl::ObjCImplementation: {
5692*0b57cec5SDimitry Andric     auto *OMD = cast<ObjCImplementationDecl>(D);
5693*0b57cec5SDimitry Andric     EmitObjCPropertyImplementations(OMD);
5694*0b57cec5SDimitry Andric     EmitObjCIvarInitializations(OMD);
5695*0b57cec5SDimitry Andric     ObjCRuntime->GenerateClass(OMD);
5696*0b57cec5SDimitry Andric     // Emit global variable debug information.
5697*0b57cec5SDimitry Andric     if (CGDebugInfo *DI = getModuleDebugInfo())
5698480093f4SDimitry Andric       if (getCodeGenOpts().hasReducedDebugInfo())
5699*0b57cec5SDimitry Andric         DI->getOrCreateInterfaceType(getContext().getObjCInterfaceType(
5700*0b57cec5SDimitry Andric             OMD->getClassInterface()), OMD->getLocation());
5701*0b57cec5SDimitry Andric     break;
5702*0b57cec5SDimitry Andric   }
5703*0b57cec5SDimitry Andric   case Decl::ObjCMethod: {
5704*0b57cec5SDimitry Andric     auto *OMD = cast<ObjCMethodDecl>(D);
5705*0b57cec5SDimitry Andric     // If this is not a prototype, emit the body.
5706*0b57cec5SDimitry Andric     if (OMD->getBody())
5707*0b57cec5SDimitry Andric       CodeGenFunction(*this).GenerateObjCMethod(OMD);
5708*0b57cec5SDimitry Andric     break;
5709*0b57cec5SDimitry Andric   }
5710*0b57cec5SDimitry Andric   case Decl::ObjCCompatibleAlias:
5711*0b57cec5SDimitry Andric     ObjCRuntime->RegisterAlias(cast<ObjCCompatibleAliasDecl>(D));
5712*0b57cec5SDimitry Andric     break;
5713*0b57cec5SDimitry Andric 
5714*0b57cec5SDimitry Andric   case Decl::PragmaComment: {
5715*0b57cec5SDimitry Andric     const auto *PCD = cast<PragmaCommentDecl>(D);
5716*0b57cec5SDimitry Andric     switch (PCD->getCommentKind()) {
5717*0b57cec5SDimitry Andric     case PCK_Unknown:
5718*0b57cec5SDimitry Andric       llvm_unreachable("unexpected pragma comment kind");
5719*0b57cec5SDimitry Andric     case PCK_Linker:
5720*0b57cec5SDimitry Andric       AppendLinkerOptions(PCD->getArg());
5721*0b57cec5SDimitry Andric       break;
5722*0b57cec5SDimitry Andric     case PCK_Lib:
5723*0b57cec5SDimitry Andric         AddDependentLib(PCD->getArg());
5724*0b57cec5SDimitry Andric       break;
5725*0b57cec5SDimitry Andric     case PCK_Compiler:
5726*0b57cec5SDimitry Andric     case PCK_ExeStr:
5727*0b57cec5SDimitry Andric     case PCK_User:
5728*0b57cec5SDimitry Andric       break; // We ignore all of these.
5729*0b57cec5SDimitry Andric     }
5730*0b57cec5SDimitry Andric     break;
5731*0b57cec5SDimitry Andric   }
5732*0b57cec5SDimitry Andric 
5733*0b57cec5SDimitry Andric   case Decl::PragmaDetectMismatch: {
5734*0b57cec5SDimitry Andric     const auto *PDMD = cast<PragmaDetectMismatchDecl>(D);
5735*0b57cec5SDimitry Andric     AddDetectMismatch(PDMD->getName(), PDMD->getValue());
5736*0b57cec5SDimitry Andric     break;
5737*0b57cec5SDimitry Andric   }
5738*0b57cec5SDimitry Andric 
5739*0b57cec5SDimitry Andric   case Decl::LinkageSpec:
5740*0b57cec5SDimitry Andric     EmitLinkageSpec(cast<LinkageSpecDecl>(D));
5741*0b57cec5SDimitry Andric     break;
5742*0b57cec5SDimitry Andric 
5743*0b57cec5SDimitry Andric   case Decl::FileScopeAsm: {
5744*0b57cec5SDimitry Andric     // File-scope asm is ignored during device-side CUDA compilation.
5745*0b57cec5SDimitry Andric     if (LangOpts.CUDA && LangOpts.CUDAIsDevice)
5746*0b57cec5SDimitry Andric       break;
5747*0b57cec5SDimitry Andric     // File-scope asm is ignored during device-side OpenMP compilation.
5748*0b57cec5SDimitry Andric     if (LangOpts.OpenMPIsDevice)
5749*0b57cec5SDimitry Andric       break;
5750*0b57cec5SDimitry Andric     auto *AD = cast<FileScopeAsmDecl>(D);
5751*0b57cec5SDimitry Andric     getModule().appendModuleInlineAsm(AD->getAsmString()->getString());
5752*0b57cec5SDimitry Andric     break;
5753*0b57cec5SDimitry Andric   }
5754*0b57cec5SDimitry Andric 
5755*0b57cec5SDimitry Andric   case Decl::Import: {
5756*0b57cec5SDimitry Andric     auto *Import = cast<ImportDecl>(D);
5757*0b57cec5SDimitry Andric 
5758*0b57cec5SDimitry Andric     // If we've already imported this module, we're done.
5759*0b57cec5SDimitry Andric     if (!ImportedModules.insert(Import->getImportedModule()))
5760*0b57cec5SDimitry Andric       break;
5761*0b57cec5SDimitry Andric 
5762*0b57cec5SDimitry Andric     // Emit debug information for direct imports.
5763*0b57cec5SDimitry Andric     if (!Import->getImportedOwningModule()) {
5764*0b57cec5SDimitry Andric       if (CGDebugInfo *DI = getModuleDebugInfo())
5765*0b57cec5SDimitry Andric         DI->EmitImportDecl(*Import);
5766*0b57cec5SDimitry Andric     }
5767*0b57cec5SDimitry Andric 
5768*0b57cec5SDimitry Andric     // Find all of the submodules and emit the module initializers.
5769*0b57cec5SDimitry Andric     llvm::SmallPtrSet<clang::Module *, 16> Visited;
5770*0b57cec5SDimitry Andric     SmallVector<clang::Module *, 16> Stack;
5771*0b57cec5SDimitry Andric     Visited.insert(Import->getImportedModule());
5772*0b57cec5SDimitry Andric     Stack.push_back(Import->getImportedModule());
5773*0b57cec5SDimitry Andric 
5774*0b57cec5SDimitry Andric     while (!Stack.empty()) {
5775*0b57cec5SDimitry Andric       clang::Module *Mod = Stack.pop_back_val();
5776*0b57cec5SDimitry Andric       if (!EmittedModuleInitializers.insert(Mod).second)
5777*0b57cec5SDimitry Andric         continue;
5778*0b57cec5SDimitry Andric 
5779*0b57cec5SDimitry Andric       for (auto *D : Context.getModuleInitializers(Mod))
5780*0b57cec5SDimitry Andric         EmitTopLevelDecl(D);
5781*0b57cec5SDimitry Andric 
5782*0b57cec5SDimitry Andric       // Visit the submodules of this module.
5783*0b57cec5SDimitry Andric       for (clang::Module::submodule_iterator Sub = Mod->submodule_begin(),
5784*0b57cec5SDimitry Andric                                              SubEnd = Mod->submodule_end();
5785*0b57cec5SDimitry Andric            Sub != SubEnd; ++Sub) {
5786*0b57cec5SDimitry Andric         // Skip explicit children; they need to be explicitly imported to emit
5787*0b57cec5SDimitry Andric         // the initializers.
5788*0b57cec5SDimitry Andric         if ((*Sub)->IsExplicit)
5789*0b57cec5SDimitry Andric           continue;
5790*0b57cec5SDimitry Andric 
5791*0b57cec5SDimitry Andric         if (Visited.insert(*Sub).second)
5792*0b57cec5SDimitry Andric           Stack.push_back(*Sub);
5793*0b57cec5SDimitry Andric       }
5794*0b57cec5SDimitry Andric     }
5795*0b57cec5SDimitry Andric     break;
5796*0b57cec5SDimitry Andric   }
5797*0b57cec5SDimitry Andric 
5798*0b57cec5SDimitry Andric   case Decl::Export:
5799*0b57cec5SDimitry Andric     EmitDeclContext(cast<ExportDecl>(D));
5800*0b57cec5SDimitry Andric     break;
5801*0b57cec5SDimitry Andric 
5802*0b57cec5SDimitry Andric   case Decl::OMPThreadPrivate:
5803*0b57cec5SDimitry Andric     EmitOMPThreadPrivateDecl(cast<OMPThreadPrivateDecl>(D));
5804*0b57cec5SDimitry Andric     break;
5805*0b57cec5SDimitry Andric 
5806*0b57cec5SDimitry Andric   case Decl::OMPAllocate:
5807*0b57cec5SDimitry Andric     break;
5808*0b57cec5SDimitry Andric 
5809*0b57cec5SDimitry Andric   case Decl::OMPDeclareReduction:
5810*0b57cec5SDimitry Andric     EmitOMPDeclareReduction(cast<OMPDeclareReductionDecl>(D));
5811*0b57cec5SDimitry Andric     break;
5812*0b57cec5SDimitry Andric 
5813*0b57cec5SDimitry Andric   case Decl::OMPDeclareMapper:
5814*0b57cec5SDimitry Andric     EmitOMPDeclareMapper(cast<OMPDeclareMapperDecl>(D));
5815*0b57cec5SDimitry Andric     break;
5816*0b57cec5SDimitry Andric 
5817*0b57cec5SDimitry Andric   case Decl::OMPRequires:
5818*0b57cec5SDimitry Andric     EmitOMPRequiresDecl(cast<OMPRequiresDecl>(D));
5819*0b57cec5SDimitry Andric     break;
5820*0b57cec5SDimitry Andric 
5821e8d8bef9SDimitry Andric   case Decl::Typedef:
5822e8d8bef9SDimitry Andric   case Decl::TypeAlias: // using foo = bar; [C++11]
5823e8d8bef9SDimitry Andric     if (CGDebugInfo *DI = getModuleDebugInfo())
5824e8d8bef9SDimitry Andric       DI->EmitAndRetainType(
5825e8d8bef9SDimitry Andric           getContext().getTypedefType(cast<TypedefNameDecl>(D)));
5826e8d8bef9SDimitry Andric     break;
5827e8d8bef9SDimitry Andric 
5828e8d8bef9SDimitry Andric   case Decl::Record:
5829e8d8bef9SDimitry Andric     if (CGDebugInfo *DI = getModuleDebugInfo())
5830e8d8bef9SDimitry Andric       if (cast<RecordDecl>(D)->getDefinition())
5831e8d8bef9SDimitry Andric         DI->EmitAndRetainType(getContext().getRecordType(cast<RecordDecl>(D)));
5832e8d8bef9SDimitry Andric     break;
5833e8d8bef9SDimitry Andric 
5834e8d8bef9SDimitry Andric   case Decl::Enum:
5835e8d8bef9SDimitry Andric     if (CGDebugInfo *DI = getModuleDebugInfo())
5836e8d8bef9SDimitry Andric       if (cast<EnumDecl>(D)->getDefinition())
5837e8d8bef9SDimitry Andric         DI->EmitAndRetainType(getContext().getEnumType(cast<EnumDecl>(D)));
5838e8d8bef9SDimitry Andric     break;
5839e8d8bef9SDimitry Andric 
5840*0b57cec5SDimitry Andric   default:
5841*0b57cec5SDimitry Andric     // Make sure we handled everything we should, every other kind is a
5842*0b57cec5SDimitry Andric     // non-top-level decl.  FIXME: Would be nice to have an isTopLevelDeclKind
5843*0b57cec5SDimitry Andric     // function. Need to recode Decl::Kind to do that easily.
5844*0b57cec5SDimitry Andric     assert(isa<TypeDecl>(D) && "Unsupported decl kind");
5845*0b57cec5SDimitry Andric     break;
5846*0b57cec5SDimitry Andric   }
5847*0b57cec5SDimitry Andric }
5848*0b57cec5SDimitry Andric 
5849*0b57cec5SDimitry Andric void CodeGenModule::AddDeferredUnusedCoverageMapping(Decl *D) {
5850*0b57cec5SDimitry Andric   // Do we need to generate coverage mapping?
5851*0b57cec5SDimitry Andric   if (!CodeGenOpts.CoverageMapping)
5852*0b57cec5SDimitry Andric     return;
5853*0b57cec5SDimitry Andric   switch (D->getKind()) {
5854*0b57cec5SDimitry Andric   case Decl::CXXConversion:
5855*0b57cec5SDimitry Andric   case Decl::CXXMethod:
5856*0b57cec5SDimitry Andric   case Decl::Function:
5857*0b57cec5SDimitry Andric   case Decl::ObjCMethod:
5858*0b57cec5SDimitry Andric   case Decl::CXXConstructor:
5859*0b57cec5SDimitry Andric   case Decl::CXXDestructor: {
5860*0b57cec5SDimitry Andric     if (!cast<FunctionDecl>(D)->doesThisDeclarationHaveABody())
58615ffd83dbSDimitry Andric       break;
5862*0b57cec5SDimitry Andric     SourceManager &SM = getContext().getSourceManager();
5863*0b57cec5SDimitry Andric     if (LimitedCoverage && SM.getMainFileID() != SM.getFileID(D->getBeginLoc()))
58645ffd83dbSDimitry Andric       break;
5865*0b57cec5SDimitry Andric     auto I = DeferredEmptyCoverageMappingDecls.find(D);
5866*0b57cec5SDimitry Andric     if (I == DeferredEmptyCoverageMappingDecls.end())
5867*0b57cec5SDimitry Andric       DeferredEmptyCoverageMappingDecls[D] = true;
5868*0b57cec5SDimitry Andric     break;
5869*0b57cec5SDimitry Andric   }
5870*0b57cec5SDimitry Andric   default:
5871*0b57cec5SDimitry Andric     break;
5872*0b57cec5SDimitry Andric   };
5873*0b57cec5SDimitry Andric }
5874*0b57cec5SDimitry Andric 
5875*0b57cec5SDimitry Andric void CodeGenModule::ClearUnusedCoverageMapping(const Decl *D) {
5876*0b57cec5SDimitry Andric   // Do we need to generate coverage mapping?
5877*0b57cec5SDimitry Andric   if (!CodeGenOpts.CoverageMapping)
5878*0b57cec5SDimitry Andric     return;
5879*0b57cec5SDimitry Andric   if (const auto *Fn = dyn_cast<FunctionDecl>(D)) {
5880*0b57cec5SDimitry Andric     if (Fn->isTemplateInstantiation())
5881*0b57cec5SDimitry Andric       ClearUnusedCoverageMapping(Fn->getTemplateInstantiationPattern());
5882*0b57cec5SDimitry Andric   }
5883*0b57cec5SDimitry Andric   auto I = DeferredEmptyCoverageMappingDecls.find(D);
5884*0b57cec5SDimitry Andric   if (I == DeferredEmptyCoverageMappingDecls.end())
5885*0b57cec5SDimitry Andric     DeferredEmptyCoverageMappingDecls[D] = false;
5886*0b57cec5SDimitry Andric   else
5887*0b57cec5SDimitry Andric     I->second = false;
5888*0b57cec5SDimitry Andric }
5889*0b57cec5SDimitry Andric 
5890*0b57cec5SDimitry Andric void CodeGenModule::EmitDeferredUnusedCoverageMappings() {
5891*0b57cec5SDimitry Andric   // We call takeVector() here to avoid use-after-free.
5892*0b57cec5SDimitry Andric   // FIXME: DeferredEmptyCoverageMappingDecls is getting mutated because
5893*0b57cec5SDimitry Andric   // we deserialize function bodies to emit coverage info for them, and that
5894*0b57cec5SDimitry Andric   // deserializes more declarations. How should we handle that case?
5895*0b57cec5SDimitry Andric   for (const auto &Entry : DeferredEmptyCoverageMappingDecls.takeVector()) {
5896*0b57cec5SDimitry Andric     if (!Entry.second)
5897*0b57cec5SDimitry Andric       continue;
5898*0b57cec5SDimitry Andric     const Decl *D = Entry.first;
5899*0b57cec5SDimitry Andric     switch (D->getKind()) {
5900*0b57cec5SDimitry Andric     case Decl::CXXConversion:
5901*0b57cec5SDimitry Andric     case Decl::CXXMethod:
5902*0b57cec5SDimitry Andric     case Decl::Function:
5903*0b57cec5SDimitry Andric     case Decl::ObjCMethod: {
5904*0b57cec5SDimitry Andric       CodeGenPGO PGO(*this);
5905*0b57cec5SDimitry Andric       GlobalDecl GD(cast<FunctionDecl>(D));
5906*0b57cec5SDimitry Andric       PGO.emitEmptyCounterMapping(D, getMangledName(GD),
5907*0b57cec5SDimitry Andric                                   getFunctionLinkage(GD));
5908*0b57cec5SDimitry Andric       break;
5909*0b57cec5SDimitry Andric     }
5910*0b57cec5SDimitry Andric     case Decl::CXXConstructor: {
5911*0b57cec5SDimitry Andric       CodeGenPGO PGO(*this);
5912*0b57cec5SDimitry Andric       GlobalDecl GD(cast<CXXConstructorDecl>(D), Ctor_Base);
5913*0b57cec5SDimitry Andric       PGO.emitEmptyCounterMapping(D, getMangledName(GD),
5914*0b57cec5SDimitry Andric                                   getFunctionLinkage(GD));
5915*0b57cec5SDimitry Andric       break;
5916*0b57cec5SDimitry Andric     }
5917*0b57cec5SDimitry Andric     case Decl::CXXDestructor: {
5918*0b57cec5SDimitry Andric       CodeGenPGO PGO(*this);
5919*0b57cec5SDimitry Andric       GlobalDecl GD(cast<CXXDestructorDecl>(D), Dtor_Base);
5920*0b57cec5SDimitry Andric       PGO.emitEmptyCounterMapping(D, getMangledName(GD),
5921*0b57cec5SDimitry Andric                                   getFunctionLinkage(GD));
5922*0b57cec5SDimitry Andric       break;
5923*0b57cec5SDimitry Andric     }
5924*0b57cec5SDimitry Andric     default:
5925*0b57cec5SDimitry Andric       break;
5926*0b57cec5SDimitry Andric     };
5927*0b57cec5SDimitry Andric   }
5928*0b57cec5SDimitry Andric }
5929*0b57cec5SDimitry Andric 
59305ffd83dbSDimitry Andric void CodeGenModule::EmitMainVoidAlias() {
59315ffd83dbSDimitry Andric   // In order to transition away from "__original_main" gracefully, emit an
59325ffd83dbSDimitry Andric   // alias for "main" in the no-argument case so that libc can detect when
59335ffd83dbSDimitry Andric   // new-style no-argument main is in used.
59345ffd83dbSDimitry Andric   if (llvm::Function *F = getModule().getFunction("main")) {
59355ffd83dbSDimitry Andric     if (!F->isDeclaration() && F->arg_size() == 0 && !F->isVarArg() &&
59365ffd83dbSDimitry Andric         F->getReturnType()->isIntegerTy(Context.getTargetInfo().getIntWidth()))
59375ffd83dbSDimitry Andric       addUsedGlobal(llvm::GlobalAlias::create("__main_void", F));
59385ffd83dbSDimitry Andric   }
59395ffd83dbSDimitry Andric }
59405ffd83dbSDimitry Andric 
5941*0b57cec5SDimitry Andric /// Turns the given pointer into a constant.
5942*0b57cec5SDimitry Andric static llvm::Constant *GetPointerConstant(llvm::LLVMContext &Context,
5943*0b57cec5SDimitry Andric                                           const void *Ptr) {
5944*0b57cec5SDimitry Andric   uintptr_t PtrInt = reinterpret_cast<uintptr_t>(Ptr);
5945*0b57cec5SDimitry Andric   llvm::Type *i64 = llvm::Type::getInt64Ty(Context);
5946*0b57cec5SDimitry Andric   return llvm::ConstantInt::get(i64, PtrInt);
5947*0b57cec5SDimitry Andric }
5948*0b57cec5SDimitry Andric 
5949*0b57cec5SDimitry Andric static void EmitGlobalDeclMetadata(CodeGenModule &CGM,
5950*0b57cec5SDimitry Andric                                    llvm::NamedMDNode *&GlobalMetadata,
5951*0b57cec5SDimitry Andric                                    GlobalDecl D,
5952*0b57cec5SDimitry Andric                                    llvm::GlobalValue *Addr) {
5953*0b57cec5SDimitry Andric   if (!GlobalMetadata)
5954*0b57cec5SDimitry Andric     GlobalMetadata =
5955*0b57cec5SDimitry Andric       CGM.getModule().getOrInsertNamedMetadata("clang.global.decl.ptrs");
5956*0b57cec5SDimitry Andric 
5957*0b57cec5SDimitry Andric   // TODO: should we report variant information for ctors/dtors?
5958*0b57cec5SDimitry Andric   llvm::Metadata *Ops[] = {llvm::ConstantAsMetadata::get(Addr),
5959*0b57cec5SDimitry Andric                            llvm::ConstantAsMetadata::get(GetPointerConstant(
5960*0b57cec5SDimitry Andric                                CGM.getLLVMContext(), D.getDecl()))};
5961*0b57cec5SDimitry Andric   GlobalMetadata->addOperand(llvm::MDNode::get(CGM.getLLVMContext(), Ops));
5962*0b57cec5SDimitry Andric }
5963*0b57cec5SDimitry Andric 
5964*0b57cec5SDimitry Andric /// For each function which is declared within an extern "C" region and marked
5965*0b57cec5SDimitry Andric /// as 'used', but has internal linkage, create an alias from the unmangled
5966*0b57cec5SDimitry Andric /// name to the mangled name if possible. People expect to be able to refer
5967*0b57cec5SDimitry Andric /// to such functions with an unmangled name from inline assembly within the
5968*0b57cec5SDimitry Andric /// same translation unit.
5969*0b57cec5SDimitry Andric void CodeGenModule::EmitStaticExternCAliases() {
5970*0b57cec5SDimitry Andric   if (!getTargetCodeGenInfo().shouldEmitStaticExternCAliases())
5971*0b57cec5SDimitry Andric     return;
5972*0b57cec5SDimitry Andric   for (auto &I : StaticExternCValues) {
5973*0b57cec5SDimitry Andric     IdentifierInfo *Name = I.first;
5974*0b57cec5SDimitry Andric     llvm::GlobalValue *Val = I.second;
5975*0b57cec5SDimitry Andric     if (Val && !getModule().getNamedValue(Name->getName()))
5976*0b57cec5SDimitry Andric       addUsedGlobal(llvm::GlobalAlias::create(Name->getName(), Val));
5977*0b57cec5SDimitry Andric   }
5978*0b57cec5SDimitry Andric }
5979*0b57cec5SDimitry Andric 
5980*0b57cec5SDimitry Andric bool CodeGenModule::lookupRepresentativeDecl(StringRef MangledName,
5981*0b57cec5SDimitry Andric                                              GlobalDecl &Result) const {
5982*0b57cec5SDimitry Andric   auto Res = Manglings.find(MangledName);
5983*0b57cec5SDimitry Andric   if (Res == Manglings.end())
5984*0b57cec5SDimitry Andric     return false;
5985*0b57cec5SDimitry Andric   Result = Res->getValue();
5986*0b57cec5SDimitry Andric   return true;
5987*0b57cec5SDimitry Andric }
5988*0b57cec5SDimitry Andric 
5989*0b57cec5SDimitry Andric /// Emits metadata nodes associating all the global values in the
5990*0b57cec5SDimitry Andric /// current module with the Decls they came from.  This is useful for
5991*0b57cec5SDimitry Andric /// projects using IR gen as a subroutine.
5992*0b57cec5SDimitry Andric ///
5993*0b57cec5SDimitry Andric /// Since there's currently no way to associate an MDNode directly
5994*0b57cec5SDimitry Andric /// with an llvm::GlobalValue, we create a global named metadata
5995*0b57cec5SDimitry Andric /// with the name 'clang.global.decl.ptrs'.
5996*0b57cec5SDimitry Andric void CodeGenModule::EmitDeclMetadata() {
5997*0b57cec5SDimitry Andric   llvm::NamedMDNode *GlobalMetadata = nullptr;
5998*0b57cec5SDimitry Andric 
5999*0b57cec5SDimitry Andric   for (auto &I : MangledDeclNames) {
6000*0b57cec5SDimitry Andric     llvm::GlobalValue *Addr = getModule().getNamedValue(I.second);
6001*0b57cec5SDimitry Andric     // Some mangled names don't necessarily have an associated GlobalValue
6002*0b57cec5SDimitry Andric     // in this module, e.g. if we mangled it for DebugInfo.
6003*0b57cec5SDimitry Andric     if (Addr)
6004*0b57cec5SDimitry Andric       EmitGlobalDeclMetadata(*this, GlobalMetadata, I.first, Addr);
6005*0b57cec5SDimitry Andric   }
6006*0b57cec5SDimitry Andric }
6007*0b57cec5SDimitry Andric 
6008*0b57cec5SDimitry Andric /// Emits metadata nodes for all the local variables in the current
6009*0b57cec5SDimitry Andric /// function.
6010*0b57cec5SDimitry Andric void CodeGenFunction::EmitDeclMetadata() {
6011*0b57cec5SDimitry Andric   if (LocalDeclMap.empty()) return;
6012*0b57cec5SDimitry Andric 
6013*0b57cec5SDimitry Andric   llvm::LLVMContext &Context = getLLVMContext();
6014*0b57cec5SDimitry Andric 
6015*0b57cec5SDimitry Andric   // Find the unique metadata ID for this name.
6016*0b57cec5SDimitry Andric   unsigned DeclPtrKind = Context.getMDKindID("clang.decl.ptr");
6017*0b57cec5SDimitry Andric 
6018*0b57cec5SDimitry Andric   llvm::NamedMDNode *GlobalMetadata = nullptr;
6019*0b57cec5SDimitry Andric 
6020*0b57cec5SDimitry Andric   for (auto &I : LocalDeclMap) {
6021*0b57cec5SDimitry Andric     const Decl *D = I.first;
6022*0b57cec5SDimitry Andric     llvm::Value *Addr = I.second.getPointer();
6023*0b57cec5SDimitry Andric     if (auto *Alloca = dyn_cast<llvm::AllocaInst>(Addr)) {
6024*0b57cec5SDimitry Andric       llvm::Value *DAddr = GetPointerConstant(getLLVMContext(), D);
6025*0b57cec5SDimitry Andric       Alloca->setMetadata(
6026*0b57cec5SDimitry Andric           DeclPtrKind, llvm::MDNode::get(
6027*0b57cec5SDimitry Andric                            Context, llvm::ValueAsMetadata::getConstant(DAddr)));
6028*0b57cec5SDimitry Andric     } else if (auto *GV = dyn_cast<llvm::GlobalValue>(Addr)) {
6029*0b57cec5SDimitry Andric       GlobalDecl GD = GlobalDecl(cast<VarDecl>(D));
6030*0b57cec5SDimitry Andric       EmitGlobalDeclMetadata(CGM, GlobalMetadata, GD, GV);
6031*0b57cec5SDimitry Andric     }
6032*0b57cec5SDimitry Andric   }
6033*0b57cec5SDimitry Andric }
6034*0b57cec5SDimitry Andric 
6035*0b57cec5SDimitry Andric void CodeGenModule::EmitVersionIdentMetadata() {
6036*0b57cec5SDimitry Andric   llvm::NamedMDNode *IdentMetadata =
6037*0b57cec5SDimitry Andric     TheModule.getOrInsertNamedMetadata("llvm.ident");
6038*0b57cec5SDimitry Andric   std::string Version = getClangFullVersion();
6039*0b57cec5SDimitry Andric   llvm::LLVMContext &Ctx = TheModule.getContext();
6040*0b57cec5SDimitry Andric 
6041*0b57cec5SDimitry Andric   llvm::Metadata *IdentNode[] = {llvm::MDString::get(Ctx, Version)};
6042*0b57cec5SDimitry Andric   IdentMetadata->addOperand(llvm::MDNode::get(Ctx, IdentNode));
6043*0b57cec5SDimitry Andric }
6044*0b57cec5SDimitry Andric 
6045*0b57cec5SDimitry Andric void CodeGenModule::EmitCommandLineMetadata() {
6046*0b57cec5SDimitry Andric   llvm::NamedMDNode *CommandLineMetadata =
6047*0b57cec5SDimitry Andric     TheModule.getOrInsertNamedMetadata("llvm.commandline");
6048*0b57cec5SDimitry Andric   std::string CommandLine = getCodeGenOpts().RecordCommandLine;
6049*0b57cec5SDimitry Andric   llvm::LLVMContext &Ctx = TheModule.getContext();
6050*0b57cec5SDimitry Andric 
6051*0b57cec5SDimitry Andric   llvm::Metadata *CommandLineNode[] = {llvm::MDString::get(Ctx, CommandLine)};
6052*0b57cec5SDimitry Andric   CommandLineMetadata->addOperand(llvm::MDNode::get(Ctx, CommandLineNode));
6053*0b57cec5SDimitry Andric }
6054*0b57cec5SDimitry Andric 
6055*0b57cec5SDimitry Andric void CodeGenModule::EmitCoverageFile() {
6056*0b57cec5SDimitry Andric   if (getCodeGenOpts().CoverageDataFile.empty() &&
6057*0b57cec5SDimitry Andric       getCodeGenOpts().CoverageNotesFile.empty())
6058*0b57cec5SDimitry Andric     return;
6059*0b57cec5SDimitry Andric 
6060*0b57cec5SDimitry Andric   llvm::NamedMDNode *CUNode = TheModule.getNamedMetadata("llvm.dbg.cu");
6061*0b57cec5SDimitry Andric   if (!CUNode)
6062*0b57cec5SDimitry Andric     return;
6063*0b57cec5SDimitry Andric 
6064*0b57cec5SDimitry Andric   llvm::NamedMDNode *GCov = TheModule.getOrInsertNamedMetadata("llvm.gcov");
6065*0b57cec5SDimitry Andric   llvm::LLVMContext &Ctx = TheModule.getContext();
6066*0b57cec5SDimitry Andric   auto *CoverageDataFile =
6067*0b57cec5SDimitry Andric       llvm::MDString::get(Ctx, getCodeGenOpts().CoverageDataFile);
6068*0b57cec5SDimitry Andric   auto *CoverageNotesFile =
6069*0b57cec5SDimitry Andric       llvm::MDString::get(Ctx, getCodeGenOpts().CoverageNotesFile);
6070*0b57cec5SDimitry Andric   for (int i = 0, e = CUNode->getNumOperands(); i != e; ++i) {
6071*0b57cec5SDimitry Andric     llvm::MDNode *CU = CUNode->getOperand(i);
6072*0b57cec5SDimitry Andric     llvm::Metadata *Elts[] = {CoverageNotesFile, CoverageDataFile, CU};
6073*0b57cec5SDimitry Andric     GCov->addOperand(llvm::MDNode::get(Ctx, Elts));
6074*0b57cec5SDimitry Andric   }
6075*0b57cec5SDimitry Andric }
6076*0b57cec5SDimitry Andric 
6077*0b57cec5SDimitry Andric llvm::Constant *CodeGenModule::GetAddrOfRTTIDescriptor(QualType Ty,
6078*0b57cec5SDimitry Andric                                                        bool ForEH) {
6079*0b57cec5SDimitry Andric   // Return a bogus pointer if RTTI is disabled, unless it's for EH.
6080*0b57cec5SDimitry Andric   // FIXME: should we even be calling this method if RTTI is disabled
6081*0b57cec5SDimitry Andric   // and it's not for EH?
60825ffd83dbSDimitry Andric   if ((!ForEH && !getLangOpts().RTTI) || getLangOpts().CUDAIsDevice ||
60835ffd83dbSDimitry Andric       (getLangOpts().OpenMP && getLangOpts().OpenMPIsDevice &&
60845ffd83dbSDimitry Andric        getTriple().isNVPTX()))
6085*0b57cec5SDimitry Andric     return llvm::Constant::getNullValue(Int8PtrTy);
6086*0b57cec5SDimitry Andric 
6087*0b57cec5SDimitry Andric   if (ForEH && Ty->isObjCObjectPointerType() &&
6088*0b57cec5SDimitry Andric       LangOpts.ObjCRuntime.isGNUFamily())
6089*0b57cec5SDimitry Andric     return ObjCRuntime->GetEHType(Ty);
6090*0b57cec5SDimitry Andric 
6091*0b57cec5SDimitry Andric   return getCXXABI().getAddrOfRTTIDescriptor(Ty);
6092*0b57cec5SDimitry Andric }
6093*0b57cec5SDimitry Andric 
6094*0b57cec5SDimitry Andric void CodeGenModule::EmitOMPThreadPrivateDecl(const OMPThreadPrivateDecl *D) {
6095*0b57cec5SDimitry Andric   // Do not emit threadprivates in simd-only mode.
6096*0b57cec5SDimitry Andric   if (LangOpts.OpenMP && LangOpts.OpenMPSimd)
6097*0b57cec5SDimitry Andric     return;
6098*0b57cec5SDimitry Andric   for (auto RefExpr : D->varlists()) {
6099*0b57cec5SDimitry Andric     auto *VD = cast<VarDecl>(cast<DeclRefExpr>(RefExpr)->getDecl());
6100*0b57cec5SDimitry Andric     bool PerformInit =
6101*0b57cec5SDimitry Andric         VD->getAnyInitializer() &&
6102*0b57cec5SDimitry Andric         !VD->getAnyInitializer()->isConstantInitializer(getContext(),
6103*0b57cec5SDimitry Andric                                                         /*ForRef=*/false);
6104*0b57cec5SDimitry Andric 
6105*0b57cec5SDimitry Andric     Address Addr(GetAddrOfGlobalVar(VD), getContext().getDeclAlign(VD));
6106*0b57cec5SDimitry Andric     if (auto InitFunction = getOpenMPRuntime().emitThreadPrivateVarDefinition(
6107*0b57cec5SDimitry Andric             VD, Addr, RefExpr->getBeginLoc(), PerformInit))
6108*0b57cec5SDimitry Andric       CXXGlobalInits.push_back(InitFunction);
6109*0b57cec5SDimitry Andric   }
6110*0b57cec5SDimitry Andric }
6111*0b57cec5SDimitry Andric 
6112*0b57cec5SDimitry Andric llvm::Metadata *
6113*0b57cec5SDimitry Andric CodeGenModule::CreateMetadataIdentifierImpl(QualType T, MetadataTypeMap &Map,
6114*0b57cec5SDimitry Andric                                             StringRef Suffix) {
6115*0b57cec5SDimitry Andric   llvm::Metadata *&InternalId = Map[T.getCanonicalType()];
6116*0b57cec5SDimitry Andric   if (InternalId)
6117*0b57cec5SDimitry Andric     return InternalId;
6118*0b57cec5SDimitry Andric 
6119*0b57cec5SDimitry Andric   if (isExternallyVisible(T->getLinkage())) {
6120*0b57cec5SDimitry Andric     std::string OutName;
6121*0b57cec5SDimitry Andric     llvm::raw_string_ostream Out(OutName);
6122*0b57cec5SDimitry Andric     getCXXABI().getMangleContext().mangleTypeName(T, Out);
6123*0b57cec5SDimitry Andric     Out << Suffix;
6124*0b57cec5SDimitry Andric 
6125*0b57cec5SDimitry Andric     InternalId = llvm::MDString::get(getLLVMContext(), Out.str());
6126*0b57cec5SDimitry Andric   } else {
6127*0b57cec5SDimitry Andric     InternalId = llvm::MDNode::getDistinct(getLLVMContext(),
6128*0b57cec5SDimitry Andric                                            llvm::ArrayRef<llvm::Metadata *>());
6129*0b57cec5SDimitry Andric   }
6130*0b57cec5SDimitry Andric 
6131*0b57cec5SDimitry Andric   return InternalId;
6132*0b57cec5SDimitry Andric }
6133*0b57cec5SDimitry Andric 
6134*0b57cec5SDimitry Andric llvm::Metadata *CodeGenModule::CreateMetadataIdentifierForType(QualType T) {
6135*0b57cec5SDimitry Andric   return CreateMetadataIdentifierImpl(T, MetadataIdMap, "");
6136*0b57cec5SDimitry Andric }
6137*0b57cec5SDimitry Andric 
6138*0b57cec5SDimitry Andric llvm::Metadata *
6139*0b57cec5SDimitry Andric CodeGenModule::CreateMetadataIdentifierForVirtualMemPtrType(QualType T) {
6140*0b57cec5SDimitry Andric   return CreateMetadataIdentifierImpl(T, VirtualMetadataIdMap, ".virtual");
6141*0b57cec5SDimitry Andric }
6142*0b57cec5SDimitry Andric 
6143*0b57cec5SDimitry Andric // Generalize pointer types to a void pointer with the qualifiers of the
6144*0b57cec5SDimitry Andric // originally pointed-to type, e.g. 'const char *' and 'char * const *'
6145*0b57cec5SDimitry Andric // generalize to 'const void *' while 'char *' and 'const char **' generalize to
6146*0b57cec5SDimitry Andric // 'void *'.
6147*0b57cec5SDimitry Andric static QualType GeneralizeType(ASTContext &Ctx, QualType Ty) {
6148*0b57cec5SDimitry Andric   if (!Ty->isPointerType())
6149*0b57cec5SDimitry Andric     return Ty;
6150*0b57cec5SDimitry Andric 
6151*0b57cec5SDimitry Andric   return Ctx.getPointerType(
6152*0b57cec5SDimitry Andric       QualType(Ctx.VoidTy).withCVRQualifiers(
6153*0b57cec5SDimitry Andric           Ty->getPointeeType().getCVRQualifiers()));
6154*0b57cec5SDimitry Andric }
6155*0b57cec5SDimitry Andric 
6156*0b57cec5SDimitry Andric // Apply type generalization to a FunctionType's return and argument types
6157*0b57cec5SDimitry Andric static QualType GeneralizeFunctionType(ASTContext &Ctx, QualType Ty) {
6158*0b57cec5SDimitry Andric   if (auto *FnType = Ty->getAs<FunctionProtoType>()) {
6159*0b57cec5SDimitry Andric     SmallVector<QualType, 8> GeneralizedParams;
6160*0b57cec5SDimitry Andric     for (auto &Param : FnType->param_types())
6161*0b57cec5SDimitry Andric       GeneralizedParams.push_back(GeneralizeType(Ctx, Param));
6162*0b57cec5SDimitry Andric 
6163*0b57cec5SDimitry Andric     return Ctx.getFunctionType(
6164*0b57cec5SDimitry Andric         GeneralizeType(Ctx, FnType->getReturnType()),
6165*0b57cec5SDimitry Andric         GeneralizedParams, FnType->getExtProtoInfo());
6166*0b57cec5SDimitry Andric   }
6167*0b57cec5SDimitry Andric 
6168*0b57cec5SDimitry Andric   if (auto *FnType = Ty->getAs<FunctionNoProtoType>())
6169*0b57cec5SDimitry Andric     return Ctx.getFunctionNoProtoType(
6170*0b57cec5SDimitry Andric         GeneralizeType(Ctx, FnType->getReturnType()));
6171*0b57cec5SDimitry Andric 
6172*0b57cec5SDimitry Andric   llvm_unreachable("Encountered unknown FunctionType");
6173*0b57cec5SDimitry Andric }
6174*0b57cec5SDimitry Andric 
6175*0b57cec5SDimitry Andric llvm::Metadata *CodeGenModule::CreateMetadataIdentifierGeneralized(QualType T) {
6176*0b57cec5SDimitry Andric   return CreateMetadataIdentifierImpl(GeneralizeFunctionType(getContext(), T),
6177*0b57cec5SDimitry Andric                                       GeneralizedMetadataIdMap, ".generalized");
6178*0b57cec5SDimitry Andric }
6179*0b57cec5SDimitry Andric 
6180*0b57cec5SDimitry Andric /// Returns whether this module needs the "all-vtables" type identifier.
6181*0b57cec5SDimitry Andric bool CodeGenModule::NeedAllVtablesTypeId() const {
6182*0b57cec5SDimitry Andric   // Returns true if at least one of vtable-based CFI checkers is enabled and
6183*0b57cec5SDimitry Andric   // is not in the trapping mode.
6184*0b57cec5SDimitry Andric   return ((LangOpts.Sanitize.has(SanitizerKind::CFIVCall) &&
6185*0b57cec5SDimitry Andric            !CodeGenOpts.SanitizeTrap.has(SanitizerKind::CFIVCall)) ||
6186*0b57cec5SDimitry Andric           (LangOpts.Sanitize.has(SanitizerKind::CFINVCall) &&
6187*0b57cec5SDimitry Andric            !CodeGenOpts.SanitizeTrap.has(SanitizerKind::CFINVCall)) ||
6188*0b57cec5SDimitry Andric           (LangOpts.Sanitize.has(SanitizerKind::CFIDerivedCast) &&
6189*0b57cec5SDimitry Andric            !CodeGenOpts.SanitizeTrap.has(SanitizerKind::CFIDerivedCast)) ||
6190*0b57cec5SDimitry Andric           (LangOpts.Sanitize.has(SanitizerKind::CFIUnrelatedCast) &&
6191*0b57cec5SDimitry Andric            !CodeGenOpts.SanitizeTrap.has(SanitizerKind::CFIUnrelatedCast)));
6192*0b57cec5SDimitry Andric }
6193*0b57cec5SDimitry Andric 
6194*0b57cec5SDimitry Andric void CodeGenModule::AddVTableTypeMetadata(llvm::GlobalVariable *VTable,
6195*0b57cec5SDimitry Andric                                           CharUnits Offset,
6196*0b57cec5SDimitry Andric                                           const CXXRecordDecl *RD) {
6197*0b57cec5SDimitry Andric   llvm::Metadata *MD =
6198*0b57cec5SDimitry Andric       CreateMetadataIdentifierForType(QualType(RD->getTypeForDecl(), 0));
6199*0b57cec5SDimitry Andric   VTable->addTypeMetadata(Offset.getQuantity(), MD);
6200*0b57cec5SDimitry Andric 
6201*0b57cec5SDimitry Andric   if (CodeGenOpts.SanitizeCfiCrossDso)
6202*0b57cec5SDimitry Andric     if (auto CrossDsoTypeId = CreateCrossDsoCfiTypeId(MD))
6203*0b57cec5SDimitry Andric       VTable->addTypeMetadata(Offset.getQuantity(),
6204*0b57cec5SDimitry Andric                               llvm::ConstantAsMetadata::get(CrossDsoTypeId));
6205*0b57cec5SDimitry Andric 
6206*0b57cec5SDimitry Andric   if (NeedAllVtablesTypeId()) {
6207*0b57cec5SDimitry Andric     llvm::Metadata *MD = llvm::MDString::get(getLLVMContext(), "all-vtables");
6208*0b57cec5SDimitry Andric     VTable->addTypeMetadata(Offset.getQuantity(), MD);
6209*0b57cec5SDimitry Andric   }
6210*0b57cec5SDimitry Andric }
6211*0b57cec5SDimitry Andric 
6212*0b57cec5SDimitry Andric llvm::SanitizerStatReport &CodeGenModule::getSanStats() {
6213*0b57cec5SDimitry Andric   if (!SanStats)
6214a7dea167SDimitry Andric     SanStats = std::make_unique<llvm::SanitizerStatReport>(&getModule());
6215*0b57cec5SDimitry Andric 
6216*0b57cec5SDimitry Andric   return *SanStats;
6217*0b57cec5SDimitry Andric }
6218*0b57cec5SDimitry Andric llvm::Value *
6219*0b57cec5SDimitry Andric CodeGenModule::createOpenCLIntToSamplerConversion(const Expr *E,
6220*0b57cec5SDimitry Andric                                                   CodeGenFunction &CGF) {
6221*0b57cec5SDimitry Andric   llvm::Constant *C = ConstantEmitter(CGF).emitAbstract(E, E->getType());
6222*0b57cec5SDimitry Andric   auto SamplerT = getOpenCLRuntime().getSamplerType(E->getType().getTypePtr());
6223*0b57cec5SDimitry Andric   auto FTy = llvm::FunctionType::get(SamplerT, {C->getType()}, false);
6224*0b57cec5SDimitry Andric   return CGF.Builder.CreateCall(CreateRuntimeFunction(FTy,
6225*0b57cec5SDimitry Andric                                 "__translate_sampler_initializer"),
6226*0b57cec5SDimitry Andric                                 {C});
6227*0b57cec5SDimitry Andric }
62285ffd83dbSDimitry Andric 
62295ffd83dbSDimitry Andric CharUnits CodeGenModule::getNaturalPointeeTypeAlignment(
62305ffd83dbSDimitry Andric     QualType T, LValueBaseInfo *BaseInfo, TBAAAccessInfo *TBAAInfo) {
62315ffd83dbSDimitry Andric   return getNaturalTypeAlignment(T->getPointeeType(), BaseInfo, TBAAInfo,
62325ffd83dbSDimitry Andric                                  /* forPointeeType= */ true);
62335ffd83dbSDimitry Andric }
62345ffd83dbSDimitry Andric 
62355ffd83dbSDimitry Andric CharUnits CodeGenModule::getNaturalTypeAlignment(QualType T,
62365ffd83dbSDimitry Andric                                                  LValueBaseInfo *BaseInfo,
62375ffd83dbSDimitry Andric                                                  TBAAAccessInfo *TBAAInfo,
62385ffd83dbSDimitry Andric                                                  bool forPointeeType) {
62395ffd83dbSDimitry Andric   if (TBAAInfo)
62405ffd83dbSDimitry Andric     *TBAAInfo = getTBAAAccessInfo(T);
62415ffd83dbSDimitry Andric 
62425ffd83dbSDimitry Andric   // FIXME: This duplicates logic in ASTContext::getTypeAlignIfKnown. But
62435ffd83dbSDimitry Andric   // that doesn't return the information we need to compute BaseInfo.
62445ffd83dbSDimitry Andric 
62455ffd83dbSDimitry Andric   // Honor alignment typedef attributes even on incomplete types.
62465ffd83dbSDimitry Andric   // We also honor them straight for C++ class types, even as pointees;
62475ffd83dbSDimitry Andric   // there's an expressivity gap here.
62485ffd83dbSDimitry Andric   if (auto TT = T->getAs<TypedefType>()) {
62495ffd83dbSDimitry Andric     if (auto Align = TT->getDecl()->getMaxAlignment()) {
62505ffd83dbSDimitry Andric       if (BaseInfo)
62515ffd83dbSDimitry Andric         *BaseInfo = LValueBaseInfo(AlignmentSource::AttributedType);
62525ffd83dbSDimitry Andric       return getContext().toCharUnitsFromBits(Align);
62535ffd83dbSDimitry Andric     }
62545ffd83dbSDimitry Andric   }
62555ffd83dbSDimitry Andric 
62565ffd83dbSDimitry Andric   bool AlignForArray = T->isArrayType();
62575ffd83dbSDimitry Andric 
62585ffd83dbSDimitry Andric   // Analyze the base element type, so we don't get confused by incomplete
62595ffd83dbSDimitry Andric   // array types.
62605ffd83dbSDimitry Andric   T = getContext().getBaseElementType(T);
62615ffd83dbSDimitry Andric 
62625ffd83dbSDimitry Andric   if (T->isIncompleteType()) {
62635ffd83dbSDimitry Andric     // We could try to replicate the logic from
62645ffd83dbSDimitry Andric     // ASTContext::getTypeAlignIfKnown, but nothing uses the alignment if the
62655ffd83dbSDimitry Andric     // type is incomplete, so it's impossible to test. We could try to reuse
62665ffd83dbSDimitry Andric     // getTypeAlignIfKnown, but that doesn't return the information we need
62675ffd83dbSDimitry Andric     // to set BaseInfo.  So just ignore the possibility that the alignment is
62685ffd83dbSDimitry Andric     // greater than one.
62695ffd83dbSDimitry Andric     if (BaseInfo)
62705ffd83dbSDimitry Andric       *BaseInfo = LValueBaseInfo(AlignmentSource::Type);
62715ffd83dbSDimitry Andric     return CharUnits::One();
62725ffd83dbSDimitry Andric   }
62735ffd83dbSDimitry Andric 
62745ffd83dbSDimitry Andric   if (BaseInfo)
62755ffd83dbSDimitry Andric     *BaseInfo = LValueBaseInfo(AlignmentSource::Type);
62765ffd83dbSDimitry Andric 
62775ffd83dbSDimitry Andric   CharUnits Alignment;
6278e8d8bef9SDimitry Andric   const CXXRecordDecl *RD;
6279e8d8bef9SDimitry Andric   if (T.getQualifiers().hasUnaligned()) {
6280e8d8bef9SDimitry Andric     Alignment = CharUnits::One();
6281e8d8bef9SDimitry Andric   } else if (forPointeeType && !AlignForArray &&
6282e8d8bef9SDimitry Andric              (RD = T->getAsCXXRecordDecl())) {
62835ffd83dbSDimitry Andric     // For C++ class pointees, we don't know whether we're pointing at a
62845ffd83dbSDimitry Andric     // base or a complete object, so we generally need to use the
62855ffd83dbSDimitry Andric     // non-virtual alignment.
62865ffd83dbSDimitry Andric     Alignment = getClassPointerAlignment(RD);
62875ffd83dbSDimitry Andric   } else {
62885ffd83dbSDimitry Andric     Alignment = getContext().getTypeAlignInChars(T);
62895ffd83dbSDimitry Andric   }
62905ffd83dbSDimitry Andric 
62915ffd83dbSDimitry Andric   // Cap to the global maximum type alignment unless the alignment
62925ffd83dbSDimitry Andric   // was somehow explicit on the type.
62935ffd83dbSDimitry Andric   if (unsigned MaxAlign = getLangOpts().MaxTypeAlign) {
62945ffd83dbSDimitry Andric     if (Alignment.getQuantity() > MaxAlign &&
62955ffd83dbSDimitry Andric         !getContext().isAlignmentRequired(T))
62965ffd83dbSDimitry Andric       Alignment = CharUnits::fromQuantity(MaxAlign);
62975ffd83dbSDimitry Andric   }
62985ffd83dbSDimitry Andric   return Alignment;
62995ffd83dbSDimitry Andric }
63005ffd83dbSDimitry Andric 
63015ffd83dbSDimitry Andric bool CodeGenModule::stopAutoInit() {
63025ffd83dbSDimitry Andric   unsigned StopAfter = getContext().getLangOpts().TrivialAutoVarInitStopAfter;
63035ffd83dbSDimitry Andric   if (StopAfter) {
63045ffd83dbSDimitry Andric     // This number is positive only when -ftrivial-auto-var-init-stop-after=* is
63055ffd83dbSDimitry Andric     // used
63065ffd83dbSDimitry Andric     if (NumAutoVarInit >= StopAfter) {
63075ffd83dbSDimitry Andric       return true;
63085ffd83dbSDimitry Andric     }
63095ffd83dbSDimitry Andric     if (!NumAutoVarInit) {
63105ffd83dbSDimitry Andric       unsigned DiagID = getDiags().getCustomDiagID(
63115ffd83dbSDimitry Andric           DiagnosticsEngine::Warning,
63125ffd83dbSDimitry Andric           "-ftrivial-auto-var-init-stop-after=%0 has been enabled to limit the "
63135ffd83dbSDimitry Andric           "number of times ftrivial-auto-var-init=%1 gets applied.");
63145ffd83dbSDimitry Andric       getDiags().Report(DiagID)
63155ffd83dbSDimitry Andric           << StopAfter
63165ffd83dbSDimitry Andric           << (getContext().getLangOpts().getTrivialAutoVarInit() ==
63175ffd83dbSDimitry Andric                       LangOptions::TrivialAutoVarInitKind::Zero
63185ffd83dbSDimitry Andric                   ? "zero"
63195ffd83dbSDimitry Andric                   : "pattern");
63205ffd83dbSDimitry Andric     }
63215ffd83dbSDimitry Andric     ++NumAutoVarInit;
63225ffd83dbSDimitry Andric   }
63235ffd83dbSDimitry Andric   return false;
63245ffd83dbSDimitry Andric }
6325