LLVM 20.0.0git
ModuleUtils.cpp
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1//===-- ModuleUtils.cpp - Functions to manipulate Modules -----------------===//
2//
3// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4// See https://llvm.org/LICENSE.txt for license information.
5// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6//
7//===----------------------------------------------------------------------===//
8//
9// This family of functions perform manipulations on Modules.
10//
11//===----------------------------------------------------------------------===//
12
17#include "llvm/IR/Function.h"
18#include "llvm/IR/IRBuilder.h"
19#include "llvm/IR/MDBuilder.h"
20#include "llvm/IR/Module.h"
21#include "llvm/Support/MD5.h"
23#include "llvm/Support/xxhash.h"
24
25using namespace llvm;
26
27#define DEBUG_TYPE "moduleutils"
28
29static void appendToGlobalArray(StringRef ArrayName, Module &M, Function *F,
30 int Priority, Constant *Data) {
31 IRBuilder<> IRB(M.getContext());
32
33 // Get the current set of static global constructors and add the new ctor
34 // to the list.
35 SmallVector<Constant *, 16> CurrentCtors;
36 StructType *EltTy;
37 if (GlobalVariable *GVCtor = M.getNamedGlobal(ArrayName)) {
38 EltTy = cast<StructType>(GVCtor->getValueType()->getArrayElementType());
39 if (Constant *Init = GVCtor->getInitializer()) {
40 unsigned n = Init->getNumOperands();
41 CurrentCtors.reserve(n + 1);
42 for (unsigned i = 0; i != n; ++i)
43 CurrentCtors.push_back(cast<Constant>(Init->getOperand(i)));
44 }
45 GVCtor->eraseFromParent();
46 } else {
47 EltTy = StructType::get(
48 IRB.getInt32Ty(),
49 PointerType::get(M.getContext(), F->getAddressSpace()), IRB.getPtrTy());
50 }
51
52 // Build a 3 field global_ctor entry. We don't take a comdat key.
53 Constant *CSVals[3];
54 CSVals[0] = IRB.getInt32(Priority);
55 CSVals[1] = F;
56 CSVals[2] = Data ? ConstantExpr::getPointerCast(Data, IRB.getPtrTy())
58 Constant *RuntimeCtorInit =
59 ConstantStruct::get(EltTy, ArrayRef(CSVals, EltTy->getNumElements()));
60
61 CurrentCtors.push_back(RuntimeCtorInit);
62
63 // Create a new initializer.
64 ArrayType *AT = ArrayType::get(EltTy, CurrentCtors.size());
65 Constant *NewInit = ConstantArray::get(AT, CurrentCtors);
66
67 // Create the new global variable and replace all uses of
68 // the old global variable with the new one.
69 (void)new GlobalVariable(M, NewInit->getType(), false,
70 GlobalValue::AppendingLinkage, NewInit, ArrayName);
71}
72
73void llvm::appendToGlobalCtors(Module &M, Function *F, int Priority, Constant *Data) {
74 appendToGlobalArray("llvm.global_ctors", M, F, Priority, Data);
75}
76
77void llvm::appendToGlobalDtors(Module &M, Function *F, int Priority, Constant *Data) {
78 appendToGlobalArray("llvm.global_dtors", M, F, Priority, Data);
79}
80
81static void transformGlobalArray(StringRef ArrayName, Module &M,
82 const GlobalCtorTransformFn &Fn) {
83 GlobalVariable *GVCtor = M.getNamedGlobal(ArrayName);
84 if (!GVCtor)
85 return;
86
87 IRBuilder<> IRB(M.getContext());
88 SmallVector<Constant *, 16> CurrentCtors;
89 bool Changed = false;
90 StructType *EltTy =
91 cast<StructType>(GVCtor->getValueType()->getArrayElementType());
92 if (Constant *Init = GVCtor->getInitializer()) {
93 CurrentCtors.reserve(Init->getNumOperands());
94 for (Value *OP : Init->operands()) {
95 Constant *C = cast<Constant>(OP);
96 Constant *NewC = Fn(C);
97 Changed |= (!NewC || NewC != C);
98 if (NewC)
99 CurrentCtors.push_back(NewC);
100 }
101 }
102 if (!Changed)
103 return;
104
105 GVCtor->eraseFromParent();
106
107 // Create a new initializer.
108 ArrayType *AT = ArrayType::get(EltTy, CurrentCtors.size());
109 Constant *NewInit = ConstantArray::get(AT, CurrentCtors);
110
111 // Create the new global variable and replace all uses of
112 // the old global variable with the new one.
113 (void)new GlobalVariable(M, NewInit->getType(), false,
114 GlobalValue::AppendingLinkage, NewInit, ArrayName);
115}
116
118 transformGlobalArray("llvm.global_ctors", M, Fn);
119}
120
122 transformGlobalArray("llvm.global_dtors", M, Fn);
123}
124
127 if (!GV || !GV->hasInitializer())
128 return;
129
130 auto *CA = cast<ConstantArray>(GV->getInitializer());
131 for (Use &Op : CA->operands())
132 Init.insert(cast<Constant>(Op));
133}
134
136 GlobalVariable *GV = M.getGlobalVariable(Name);
137
140 if (GV)
141 GV->eraseFromParent();
142
143 Type *ArrayEltTy = llvm::PointerType::getUnqual(M.getContext());
144 for (auto *V : Values)
146
147 if (Init.empty())
148 return;
149
150 ArrayType *ATy = ArrayType::get(ArrayEltTy, Init.size());
152 ConstantArray::get(ATy, Init.getArrayRef()),
153 Name);
154 GV->setSection("llvm.metadata");
155}
156
158 appendToUsedList(M, "llvm.used", Values);
159}
160
162 appendToUsedList(M, "llvm.compiler.used", Values);
163}
164
166 function_ref<bool(Constant *)> ShouldRemove) {
167 GlobalVariable *GV = M.getNamedGlobal(Name);
168 if (!GV)
169 return;
170
173
174 Type *ArrayEltTy = cast<ArrayType>(GV->getValueType())->getElementType();
175
177 for (Constant *MaybeRemoved : Init) {
178 if (!ShouldRemove(MaybeRemoved->stripPointerCasts()))
179 NewInit.push_back(MaybeRemoved);
180 }
181
182 if (!NewInit.empty()) {
183 ArrayType *ATy = ArrayType::get(ArrayEltTy, NewInit.size());
184 GlobalVariable *NewGV =
186 ConstantArray::get(ATy, NewInit), "", GV,
188 NewGV->setSection(GV->getSection());
189 NewGV->takeName(GV);
190 }
191
192 GV->eraseFromParent();
193}
194
196 function_ref<bool(Constant *)> ShouldRemove) {
197 removeFromUsedList(M, "llvm.used", ShouldRemove);
198 removeFromUsedList(M, "llvm.compiler.used", ShouldRemove);
199}
200
201void llvm::setKCFIType(Module &M, Function &F, StringRef MangledType) {
202 if (!M.getModuleFlag("kcfi"))
203 return;
204 // Matches CodeGenModule::CreateKCFITypeId in Clang.
205 LLVMContext &Ctx = M.getContext();
206 MDBuilder MDB(Ctx);
207 std::string Type = MangledType.str();
208 if (M.getModuleFlag("cfi-normalize-integers"))
209 Type += ".normalized";
210 F.setMetadata(LLVMContext::MD_kcfi_type,
211 MDNode::get(Ctx, MDB.createConstant(ConstantInt::get(
212 Type::getInt32Ty(Ctx),
213 static_cast<uint32_t>(xxHash64(Type))))));
214 // If the module was compiled with -fpatchable-function-entry, ensure
215 // we use the same patchable-function-prefix.
216 if (auto *MD = mdconst::extract_or_null<ConstantInt>(
217 M.getModuleFlag("kcfi-offset"))) {
218 if (unsigned Offset = MD->getZExtValue())
219 F.addFnAttr("patchable-function-prefix", std::to_string(Offset));
220 }
221}
222
224 ArrayRef<Type *> InitArgTypes,
225 bool Weak) {
226 assert(!InitName.empty() && "Expected init function name");
227 auto *VoidTy = Type::getVoidTy(M.getContext());
228 auto *FnTy = FunctionType::get(VoidTy, InitArgTypes, false);
229 auto FnCallee = M.getOrInsertFunction(InitName, FnTy);
230 auto *Fn = cast<Function>(FnCallee.getCallee());
231 if (Weak && Fn->isDeclaration())
232 Fn->setLinkage(Function::ExternalWeakLinkage);
233 return FnCallee;
234}
235
238 FunctionType::get(Type::getVoidTy(M.getContext()), false),
239 GlobalValue::InternalLinkage, M.getDataLayout().getProgramAddressSpace(),
240 CtorName, &M);
241 Ctor->addFnAttr(Attribute::NoUnwind);
242 setKCFIType(M, *Ctor, "_ZTSFvvE"); // void (*)(void)
243 BasicBlock *CtorBB = BasicBlock::Create(M.getContext(), "", Ctor);
244 ReturnInst::Create(M.getContext(), CtorBB);
245 // Ensure Ctor cannot be discarded, even if in a comdat.
246 appendToUsed(M, {Ctor});
247 return Ctor;
248}
249
250std::pair<Function *, FunctionCallee> llvm::createSanitizerCtorAndInitFunctions(
251 Module &M, StringRef CtorName, StringRef InitName,
252 ArrayRef<Type *> InitArgTypes, ArrayRef<Value *> InitArgs,
253 StringRef VersionCheckName, bool Weak) {
254 assert(!InitName.empty() && "Expected init function name");
255 assert(InitArgs.size() == InitArgTypes.size() &&
256 "Sanitizer's init function expects different number of arguments");
257 FunctionCallee InitFunction =
258 declareSanitizerInitFunction(M, InitName, InitArgTypes, Weak);
259 Function *Ctor = createSanitizerCtor(M, CtorName);
260 IRBuilder<> IRB(M.getContext());
261
262 BasicBlock *RetBB = &Ctor->getEntryBlock();
263 if (Weak) {
264 RetBB->setName("ret");
265 auto *EntryBB = BasicBlock::Create(M.getContext(), "entry", Ctor, RetBB);
266 auto *CallInitBB =
267 BasicBlock::Create(M.getContext(), "callfunc", Ctor, RetBB);
268 auto *InitFn = cast<Function>(InitFunction.getCallee());
269 auto *InitFnPtr =
270 PointerType::get(M.getContext(), InitFn->getAddressSpace());
271 IRB.SetInsertPoint(EntryBB);
272 Value *InitNotNull =
273 IRB.CreateICmpNE(InitFn, ConstantPointerNull::get(InitFnPtr));
274 IRB.CreateCondBr(InitNotNull, CallInitBB, RetBB);
275 IRB.SetInsertPoint(CallInitBB);
276 } else {
277 IRB.SetInsertPoint(RetBB->getTerminator());
278 }
279
280 IRB.CreateCall(InitFunction, InitArgs);
281 if (!VersionCheckName.empty()) {
282 FunctionCallee VersionCheckFunction = M.getOrInsertFunction(
283 VersionCheckName, FunctionType::get(IRB.getVoidTy(), {}, false),
284 AttributeList());
285 IRB.CreateCall(VersionCheckFunction, {});
286 }
287
288 if (Weak)
289 IRB.CreateBr(RetBB);
290
291 return std::make_pair(Ctor, InitFunction);
292}
293
294std::pair<Function *, FunctionCallee>
296 Module &M, StringRef CtorName, StringRef InitName,
297 ArrayRef<Type *> InitArgTypes, ArrayRef<Value *> InitArgs,
298 function_ref<void(Function *, FunctionCallee)> FunctionsCreatedCallback,
299 StringRef VersionCheckName, bool Weak) {
300 assert(!CtorName.empty() && "Expected ctor function name");
301
302 if (Function *Ctor = M.getFunction(CtorName))
303 // FIXME: Sink this logic into the module, similar to the handling of
304 // globals. This will make moving to a concurrent model much easier.
305 if (Ctor->arg_empty() ||
306 Ctor->getReturnType() == Type::getVoidTy(M.getContext()))
307 return {Ctor,
308 declareSanitizerInitFunction(M, InitName, InitArgTypes, Weak)};
309
310 Function *Ctor;
311 FunctionCallee InitFunction;
312 std::tie(Ctor, InitFunction) = llvm::createSanitizerCtorAndInitFunctions(
313 M, CtorName, InitName, InitArgTypes, InitArgs, VersionCheckName, Weak);
314 FunctionsCreatedCallback(Ctor, InitFunction);
315 return std::make_pair(Ctor, InitFunction);
316}
317
319 SmallVectorImpl<Function *> &DeadComdatFunctions) {
320 SmallPtrSet<Function *, 32> MaybeDeadFunctions;
321 SmallPtrSet<Comdat *, 32> MaybeDeadComdats;
322 for (Function *F : DeadComdatFunctions) {
323 MaybeDeadFunctions.insert(F);
324 if (Comdat *C = F->getComdat())
325 MaybeDeadComdats.insert(C);
326 }
327
328 // Find comdats for which all users are dead now.
329 SmallPtrSet<Comdat *, 32> DeadComdats;
330 for (Comdat *C : MaybeDeadComdats) {
331 auto IsUserDead = [&](GlobalObject *GO) {
332 auto *F = dyn_cast<Function>(GO);
333 return F && MaybeDeadFunctions.contains(F);
334 };
335 if (all_of(C->getUsers(), IsUserDead))
336 DeadComdats.insert(C);
337 }
338
339 // Only keep functions which have no comdat or a dead comdat.
340 erase_if(DeadComdatFunctions, [&](Function *F) {
341 Comdat *C = F->getComdat();
342 return C && !DeadComdats.contains(C);
343 });
344}
345
347 MD5 Md5;
348 bool ExportsSymbols = false;
349 auto AddGlobal = [&](GlobalValue &GV) {
350 if (GV.isDeclaration() || GV.getName().starts_with("llvm.") ||
351 !GV.hasExternalLinkage() || GV.hasComdat())
352 return;
353 ExportsSymbols = true;
354 Md5.update(GV.getName());
356 };
357
358 for (auto &F : *M)
359 AddGlobal(F);
360 for (auto &GV : M->globals())
361 AddGlobal(GV);
362 for (auto &GA : M->aliases())
363 AddGlobal(GA);
364 for (auto &IF : M->ifuncs())
365 AddGlobal(IF);
366
367 if (!ExportsSymbols)
368 return "";
369
371 Md5.final(R);
372
373 SmallString<32> Str;
374 MD5::stringifyResult(R, Str);
375 return ("." + Str).str();
376}
377
379 StringRef SectionName, Align Alignment) {
380 // Embed the memory buffer into the module.
381 Constant *ModuleConstant = ConstantDataArray::get(
382 M.getContext(), ArrayRef(Buf.getBufferStart(), Buf.getBufferSize()));
384 M, ModuleConstant->getType(), true, GlobalValue::PrivateLinkage,
385 ModuleConstant, "llvm.embedded.object");
387 GV->setAlignment(Alignment);
388
389 LLVMContext &Ctx = M.getContext();
390 NamedMDNode *MD = M.getOrInsertNamedMetadata("llvm.embedded.objects");
391 Metadata *MDVals[] = {ConstantAsMetadata::get(GV),
393
394 MD->addOperand(llvm::MDNode::get(Ctx, MDVals));
395 GV->setMetadata(LLVMContext::MD_exclude, llvm::MDNode::get(Ctx, {}));
396
398}
399
401 Module &M, ArrayRef<GlobalIFunc *> FilteredIFuncsToLower) {
403 ArrayRef<GlobalIFunc *> IFuncsToLower = FilteredIFuncsToLower;
404 if (FilteredIFuncsToLower.empty()) { // Default to lowering all ifuncs
405 for (GlobalIFunc &GI : M.ifuncs())
406 AllIFuncs.push_back(&GI);
407 IFuncsToLower = AllIFuncs;
408 }
409
410 bool UnhandledUsers = false;
411 LLVMContext &Ctx = M.getContext();
412 const DataLayout &DL = M.getDataLayout();
413
414 PointerType *TableEntryTy =
415 PointerType::get(Ctx, DL.getProgramAddressSpace());
416
417 ArrayType *FuncPtrTableTy =
418 ArrayType::get(TableEntryTy, IFuncsToLower.size());
419
420 Align PtrAlign = DL.getABITypeAlign(TableEntryTy);
421
422 // Create a global table of function pointers we'll initialize in a global
423 // constructor.
424 auto *FuncPtrTable = new GlobalVariable(
425 M, FuncPtrTableTy, false, GlobalValue::InternalLinkage,
426 PoisonValue::get(FuncPtrTableTy), "", nullptr,
427 GlobalVariable::NotThreadLocal, DL.getDefaultGlobalsAddressSpace());
428 FuncPtrTable->setAlignment(PtrAlign);
429
430 // Create a function to initialize the function pointer table.
431 Function *NewCtor = Function::Create(
432 FunctionType::get(Type::getVoidTy(Ctx), false), Function::InternalLinkage,
433 DL.getProgramAddressSpace(), "", &M);
434
435 BasicBlock *BB = BasicBlock::Create(Ctx, "", NewCtor);
436 IRBuilder<> InitBuilder(BB);
437
438 size_t TableIndex = 0;
439 for (GlobalIFunc *GI : IFuncsToLower) {
440 Function *ResolvedFunction = GI->getResolverFunction();
441
442 // We don't know what to pass to a resolver function taking arguments
443 //
444 // FIXME: Is this even valid? clang and gcc don't complain but this
445 // probably should be invalid IR. We could just pass through undef.
446 if (!std::empty(ResolvedFunction->getFunctionType()->params())) {
447 LLVM_DEBUG(dbgs() << "Not lowering ifunc resolver function "
448 << ResolvedFunction->getName() << " with parameters\n");
449 UnhandledUsers = true;
450 continue;
451 }
452
453 // Initialize the function pointer table.
454 CallInst *ResolvedFunc = InitBuilder.CreateCall(ResolvedFunction);
455 Value *Casted = InitBuilder.CreatePointerCast(ResolvedFunc, TableEntryTy);
456 Constant *GEP = cast<Constant>(InitBuilder.CreateConstInBoundsGEP2_32(
457 FuncPtrTableTy, FuncPtrTable, 0, TableIndex++));
458 InitBuilder.CreateAlignedStore(Casted, GEP, PtrAlign);
459
460 // Update all users to load a pointer from the global table.
461 for (User *User : make_early_inc_range(GI->users())) {
462 Instruction *UserInst = dyn_cast<Instruction>(User);
463 if (!UserInst) {
464 // TODO: Should handle constantexpr casts in user instructions. Probably
465 // can't do much about constant initializers.
466 UnhandledUsers = true;
467 continue;
468 }
469
470 IRBuilder<> UseBuilder(UserInst);
471 LoadInst *ResolvedTarget =
472 UseBuilder.CreateAlignedLoad(TableEntryTy, GEP, PtrAlign);
473 Value *ResolvedCast =
474 UseBuilder.CreatePointerCast(ResolvedTarget, GI->getType());
475 UserInst->replaceUsesOfWith(GI, ResolvedCast);
476 }
477
478 // If we handled all users, erase the ifunc.
479 if (GI->use_empty())
480 GI->eraseFromParent();
481 }
482
483 InitBuilder.CreateRetVoid();
484
485 PointerType *ConstantDataTy = PointerType::get(Ctx, 0);
486
487 // TODO: Is this the right priority? Probably should be before any other
488 // constructors?
489 const int Priority = 10;
490 appendToGlobalCtors(M, NewCtor, Priority,
491 ConstantPointerNull::get(ConstantDataTy));
492 return UnhandledUsers;
493}
MachineBasicBlock MachineBasicBlock::iterator DebugLoc DL
#define LLVM_DEBUG(...)
Definition: Debug.h:106
std::string Name
Hexagon Common GEP
Module.h This file contains the declarations for the Module class.
#define F(x, y, z)
Definition: MD5.cpp:55
static void appendToUsedList(Module &M, StringRef Name, ArrayRef< GlobalValue * > Values)
static void collectUsedGlobals(GlobalVariable *GV, SmallSetVector< Constant *, 16 > &Init)
static void transformGlobalArray(StringRef ArrayName, Module &M, const GlobalCtorTransformFn &Fn)
Definition: ModuleUtils.cpp:81
static void removeFromUsedList(Module &M, StringRef Name, function_ref< bool(Constant *)> ShouldRemove)
static void appendToGlobalArray(StringRef ArrayName, Module &M, Function *F, int Priority, Constant *Data)
Definition: ModuleUtils.cpp:29
assert(ImpDefSCC.getReg()==AMDGPU::SCC &&ImpDefSCC.isDef())
#define OP(OPC)
Definition: Instruction.h:45
This file defines the SmallString class.
ArrayRef - Represent a constant reference to an array (0 or more elements consecutively in memory),...
Definition: ArrayRef.h:41
size_t size() const
size - Get the array size.
Definition: ArrayRef.h:168
bool empty() const
empty - Check if the array is empty.
Definition: ArrayRef.h:163
Class to represent array types.
Definition: DerivedTypes.h:395
LLVM Basic Block Representation.
Definition: BasicBlock.h:61
static BasicBlock * Create(LLVMContext &Context, const Twine &Name="", Function *Parent=nullptr, BasicBlock *InsertBefore=nullptr)
Creates a new BasicBlock.
Definition: BasicBlock.h:212
const Instruction * getTerminator() const LLVM_READONLY
Returns the terminator instruction if the block is well formed or null if the block is not well forme...
Definition: BasicBlock.h:239
This class represents a function call, abstracting a target machine's calling convention.
static Constant * get(ArrayType *T, ArrayRef< Constant * > V)
Definition: Constants.cpp:1312
static ConstantAsMetadata * get(Constant *C)
Definition: Metadata.h:532
static Constant * get(LLVMContext &Context, ArrayRef< ElementTy > Elts)
get() constructor - Return a constant with array type with an element count and element type matching...
Definition: Constants.h:709
static Constant * getPointerCast(Constant *C, Type *Ty)
Create a BitCast, AddrSpaceCast, or a PtrToInt cast constant expression.
Definition: Constants.cpp:2253
static Constant * getPointerBitCastOrAddrSpaceCast(Constant *C, Type *Ty)
Create a BitCast or AddrSpaceCast for a pointer type depending on the address space.
Definition: Constants.cpp:2268
static ConstantPointerNull * get(PointerType *T)
Static factory methods - Return objects of the specified value.
Definition: Constants.cpp:1826
static Constant * get(StructType *T, ArrayRef< Constant * > V)
Definition: Constants.cpp:1378
This is an important base class in LLVM.
Definition: Constant.h:42
static Constant * getNullValue(Type *Ty)
Constructor to create a '0' constant of arbitrary type.
Definition: Constants.cpp:373
This class represents an Operation in the Expression.
A parsed version of the target data layout string in and methods for querying it.
Definition: DataLayout.h:63
A handy container for a FunctionType+Callee-pointer pair, which can be passed around as a single enti...
Definition: DerivedTypes.h:170
ArrayRef< Type * > params() const
Definition: DerivedTypes.h:132
void addFnAttr(Attribute::AttrKind Kind)
Add function attributes to this function.
Definition: Function.cpp:641
static Function * Create(FunctionType *Ty, LinkageTypes Linkage, unsigned AddrSpace, const Twine &N="", Module *M=nullptr)
Definition: Function.h:173
const BasicBlock & getEntryBlock() const
Definition: Function.h:809
FunctionType * getFunctionType() const
Returns the FunctionType for me.
Definition: Function.h:216
static Function * createWithDefaultAttr(FunctionType *Ty, LinkageTypes Linkage, unsigned AddrSpace, const Twine &N="", Module *M=nullptr)
Creates a function with some attributes recorded in llvm.module.flags and the LLVMContext applied.
Definition: Function.cpp:390
StringRef getSection() const
Get the custom section of this global if it has one.
Definition: GlobalObject.h:117
void setMetadata(unsigned KindID, MDNode *Node)
Set a particular kind of metadata attachment.
Definition: Metadata.cpp:1531
void setAlignment(Align Align)
Sets the alignment attribute of the GlobalObject.
Definition: Globals.cpp:143
void setSection(StringRef S)
Change the section for this global.
Definition: Globals.cpp:273
ThreadLocalMode getThreadLocalMode() const
Definition: GlobalValue.h:272
unsigned getAddressSpace() const
Definition: GlobalValue.h:206
@ PrivateLinkage
Like Internal, but omit from symbol table.
Definition: GlobalValue.h:60
@ InternalLinkage
Rename collisions when linking (static functions).
Definition: GlobalValue.h:59
@ AppendingLinkage
Special purpose, only applies to global arrays.
Definition: GlobalValue.h:58
Type * getValueType() const
Definition: GlobalValue.h:297
const Constant * getInitializer() const
getInitializer - Return the initializer for this global variable.
bool hasInitializer() const
Definitions have initializers, declarations don't.
void eraseFromParent()
eraseFromParent - This method unlinks 'this' from the containing module and deletes it.
Definition: Globals.cpp:488
LoadInst * CreateAlignedLoad(Type *Ty, Value *Ptr, MaybeAlign Align, const char *Name)
Definition: IRBuilder.h:1815
Value * CreatePointerCast(Value *V, Type *DestTy, const Twine &Name="")
Definition: IRBuilder.h:2199
IntegerType * getInt32Ty()
Fetch the type representing a 32-bit integer.
Definition: IRBuilder.h:545
Value * CreateICmpNE(Value *LHS, Value *RHS, const Twine &Name="")
Definition: IRBuilder.h:2274
ConstantInt * getInt32(uint32_t C)
Get a constant 32-bit value.
Definition: IRBuilder.h:505
BranchInst * CreateCondBr(Value *Cond, BasicBlock *True, BasicBlock *False, MDNode *BranchWeights=nullptr, MDNode *Unpredictable=nullptr)
Create a conditional 'br Cond, TrueDest, FalseDest' instruction.
Definition: IRBuilder.h:1164
ReturnInst * CreateRetVoid()
Create a 'ret void' instruction.
Definition: IRBuilder.h:1134
Value * CreateConstInBoundsGEP2_32(Type *Ty, Value *Ptr, unsigned Idx0, unsigned Idx1, const Twine &Name="")
Definition: IRBuilder.h:1921
CallInst * CreateCall(FunctionType *FTy, Value *Callee, ArrayRef< Value * > Args={}, const Twine &Name="", MDNode *FPMathTag=nullptr)
Definition: IRBuilder.h:2449
PointerType * getPtrTy(unsigned AddrSpace=0)
Fetch the type representing a pointer.
Definition: IRBuilder.h:588
BranchInst * CreateBr(BasicBlock *Dest)
Create an unconditional 'br label X' instruction.
Definition: IRBuilder.h:1158
void SetInsertPoint(BasicBlock *TheBB)
This specifies that created instructions should be appended to the end of the specified block.
Definition: IRBuilder.h:199
Type * getVoidTy()
Fetch the type representing void.
Definition: IRBuilder.h:583
StoreInst * CreateAlignedStore(Value *Val, Value *Ptr, MaybeAlign Align, bool isVolatile=false)
Definition: IRBuilder.h:1834
This provides a uniform API for creating instructions and inserting them into a basic block: either a...
Definition: IRBuilder.h:2705
This is an important class for using LLVM in a threaded context.
Definition: LLVMContext.h:67
An instruction for reading from memory.
Definition: Instructions.h:176
Definition: MD5.h:41
void update(ArrayRef< uint8_t > Data)
Updates the hash for the byte stream provided.
Definition: MD5.cpp:189
static void stringifyResult(MD5Result &Result, SmallVectorImpl< char > &Str)
Translates the bytes in Res to a hex string that is deposited into Str.
Definition: MD5.cpp:287
void final(MD5Result &Result)
Finishes off the hash and puts the result in result.
Definition: MD5.cpp:234
ConstantAsMetadata * createConstant(Constant *C)
Return the given constant as metadata.
Definition: MDBuilder.cpp:24
static MDTuple * get(LLVMContext &Context, ArrayRef< Metadata * > MDs)
Definition: Metadata.h:1549
static MDString * get(LLVMContext &Context, StringRef Str)
Definition: Metadata.cpp:606
size_t getBufferSize() const
const char * getBufferStart() const
Root of the metadata hierarchy.
Definition: Metadata.h:62
A Module instance is used to store all the information related to an LLVM module.
Definition: Module.h:65
A tuple of MDNodes.
Definition: Metadata.h:1737
void addOperand(MDNode *M)
Definition: Metadata.cpp:1431
Class to represent pointers.
Definition: DerivedTypes.h:670
static PointerType * getUnqual(Type *ElementType)
This constructs a pointer to an object of the specified type in the default address space (address sp...
Definition: DerivedTypes.h:686
static PoisonValue * get(Type *T)
Static factory methods - Return an 'poison' object of the specified type.
Definition: Constants.cpp:1878
static ReturnInst * Create(LLVMContext &C, Value *retVal=nullptr, InsertPosition InsertBefore=nullptr)
std::pair< iterator, bool > insert(PtrType Ptr)
Inserts Ptr if and only if there is no element in the container equal to Ptr.
Definition: SmallPtrSet.h:384
bool contains(ConstPtrType Ptr) const
Definition: SmallPtrSet.h:458
SmallPtrSet - This class implements a set which is optimized for holding SmallSize or less elements.
Definition: SmallPtrSet.h:519
A SetVector that performs no allocations if smaller than a certain size.
Definition: SetVector.h:370
SmallString - A SmallString is just a SmallVector with methods and accessors that make it work better...
Definition: SmallString.h:26
bool empty() const
Definition: SmallVector.h:81
size_t size() const
Definition: SmallVector.h:78
This class consists of common code factored out of the SmallVector class to reduce code duplication b...
Definition: SmallVector.h:573
void reserve(size_type N)
Definition: SmallVector.h:663
void push_back(const T &Elt)
Definition: SmallVector.h:413
This is a 'vector' (really, a variable-sized array), optimized for the case when the array is small.
Definition: SmallVector.h:1196
StringRef - Represent a constant reference to a string, i.e.
Definition: StringRef.h:51
std::string str() const
str - Get the contents as an std::string.
Definition: StringRef.h:229
constexpr bool empty() const
empty - Check if the string is empty.
Definition: StringRef.h:147
Class to represent struct types.
Definition: DerivedTypes.h:218
static StructType * get(LLVMContext &Context, ArrayRef< Type * > Elements, bool isPacked=false)
This static method is the primary way to create a literal StructType.
Definition: Type.cpp:406
unsigned getNumElements() const
Random access to the elements.
Definition: DerivedTypes.h:365
The instances of the Type class are immutable: once they are created, they are never changed.
Definition: Type.h:45
Type * getArrayElementType() const
Definition: Type.h:411
static Type * getVoidTy(LLVMContext &C)
static IntegerType * getInt32Ty(LLVMContext &C)
A Use represents the edge between a Value definition and its users.
Definition: Use.h:43
bool replaceUsesOfWith(Value *From, Value *To)
Replace uses of one Value with another.
Definition: User.cpp:21
LLVM Value Representation.
Definition: Value.h:74
Type * getType() const
All values are typed, get the type of this value.
Definition: Value.h:255
void setName(const Twine &Name)
Change the name of the value.
Definition: Value.cpp:377
StringRef getName() const
Return a constant reference to the value's name.
Definition: Value.cpp:309
void takeName(Value *V)
Transfer the name from V to this value.
Definition: Value.cpp:383
An efficient, type-erasing, non-owning reference to a callable.
@ C
The default llvm calling convention, compatible with C.
Definition: CallingConv.h:34
This is an optimization pass for GlobalISel generic memory operations.
Definition: AddressRanges.h:18
@ Offset
Definition: DWP.cpp:480
bool all_of(R &&range, UnaryPredicate P)
Provide wrappers to std::all_of which take ranges instead of having to pass begin/end explicitly.
Definition: STLExtras.h:1739
Function * createSanitizerCtor(Module &M, StringRef CtorName)
Creates sanitizer constructor function.
iterator_range< early_inc_iterator_impl< detail::IterOfRange< RangeT > > > make_early_inc_range(RangeT &&Range)
Make a range that does early increment to allow mutation of the underlying range without disrupting i...
Definition: STLExtras.h:657
FunctionCallee declareSanitizerInitFunction(Module &M, StringRef InitName, ArrayRef< Type * > InitArgTypes, bool Weak=false)
void transformGlobalDtors(Module &M, const GlobalCtorTransformFn &Fn)
std::string getUniqueModuleId(Module *M)
Produce a unique identifier for this module by taking the MD5 sum of the names of the module's strong...
std::pair< Function *, FunctionCallee > getOrCreateSanitizerCtorAndInitFunctions(Module &M, StringRef CtorName, StringRef InitName, ArrayRef< Type * > InitArgTypes, ArrayRef< Value * > InitArgs, function_ref< void(Function *, FunctionCallee)> FunctionsCreatedCallback, StringRef VersionCheckName=StringRef(), bool Weak=false)
Creates sanitizer constructor function lazily.
std::pair< Function *, FunctionCallee > createSanitizerCtorAndInitFunctions(Module &M, StringRef CtorName, StringRef InitName, ArrayRef< Type * > InitArgTypes, ArrayRef< Value * > InitArgs, StringRef VersionCheckName=StringRef(), bool Weak=false)
Creates sanitizer constructor function, and calls sanitizer's init function from it.
raw_ostream & dbgs()
dbgs() - This returns a reference to a raw_ostream for debugging messages.
Definition: Debug.cpp:163
void removeFromUsedLists(Module &M, function_ref< bool(Constant *)> ShouldRemove)
Removes global values from the llvm.used and llvm.compiler.used arrays.
void appendToCompilerUsed(Module &M, ArrayRef< GlobalValue * > Values)
Adds global values to the llvm.compiler.used list.
void appendToGlobalCtors(Module &M, Function *F, int Priority, Constant *Data=nullptr)
Append F to the list of global ctors of module M with the given Priority.
Definition: ModuleUtils.cpp:73
void setKCFIType(Module &M, Function &F, StringRef MangledType)
Sets the KCFI type for the function.
void transformGlobalCtors(Module &M, const GlobalCtorTransformFn &Fn)
void erase_if(Container &C, UnaryPredicate P)
Provide a container algorithm similar to C++ Library Fundamentals v2's erase_if which is equivalent t...
Definition: STLExtras.h:2099
void filterDeadComdatFunctions(SmallVectorImpl< Function * > &DeadComdatFunctions)
Filter out potentially dead comdat functions where other entries keep the entire comdat group alive.
void embedBufferInModule(Module &M, MemoryBufferRef Buf, StringRef SectionName, Align Alignment=Align(1))
Embed the memory buffer Buf into the module M as a global using the specified section name.
bool lowerGlobalIFuncUsersAsGlobalCtor(Module &M, ArrayRef< GlobalIFunc * > IFuncsToLower={})
Lower all calls to ifuncs by replacing uses with indirect calls loaded out of a global table initiali...
void appendToUsed(Module &M, ArrayRef< GlobalValue * > Values)
Adds global values to the llvm.used list.
void appendToGlobalDtors(Module &M, Function *F, int Priority, Constant *Data=nullptr)
Same as appendToGlobalCtors(), but for global dtors.
Definition: ModuleUtils.cpp:77
uint64_t xxHash64(llvm::StringRef Data)
Definition: xxhash.cpp:103
This struct is a compact representation of a valid (non-zero power of two) alignment.
Definition: Alignment.h:39