clang 20.0.0git
CodeGenFunction.h
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1//===-- CodeGenFunction.h - Per-Function state for LLVM CodeGen -*- C++ -*-===//
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 is the internal per-function state used for llvm translation.
10//
11//===----------------------------------------------------------------------===//
12
13#ifndef LLVM_CLANG_LIB_CODEGEN_CODEGENFUNCTION_H
14#define LLVM_CLANG_LIB_CODEGEN_CODEGENFUNCTION_H
15
16#include "CGBuilder.h"
17#include "CGDebugInfo.h"
18#include "CGLoopInfo.h"
19#include "CGValue.h"
20#include "CodeGenModule.h"
21#include "CodeGenPGO.h"
22#include "EHScopeStack.h"
23#include "VarBypassDetector.h"
24#include "clang/AST/CharUnits.h"
26#include "clang/AST/ExprCXX.h"
27#include "clang/AST/ExprObjC.h"
31#include "clang/AST/StmtSYCL.h"
32#include "clang/AST/Type.h"
33#include "clang/Basic/ABI.h"
38#include "llvm/ADT/ArrayRef.h"
39#include "llvm/ADT/DenseMap.h"
40#include "llvm/ADT/MapVector.h"
41#include "llvm/ADT/SmallVector.h"
42#include "llvm/Frontend/OpenMP/OMPIRBuilder.h"
43#include "llvm/IR/Instructions.h"
44#include "llvm/IR/ValueHandle.h"
45#include "llvm/Support/Debug.h"
46#include "llvm/Transforms/Utils/SanitizerStats.h"
47#include <optional>
48
49namespace llvm {
50class BasicBlock;
51class LLVMContext;
52class MDNode;
53class SwitchInst;
54class Twine;
55class Value;
56class CanonicalLoopInfo;
57}
58
59namespace clang {
60class ASTContext;
61class CXXDestructorDecl;
62class CXXForRangeStmt;
63class CXXTryStmt;
64class Decl;
65class LabelDecl;
66class FunctionDecl;
67class FunctionProtoType;
68class LabelStmt;
69class ObjCContainerDecl;
70class ObjCInterfaceDecl;
71class ObjCIvarDecl;
72class ObjCMethodDecl;
73class ObjCImplementationDecl;
74class ObjCPropertyImplDecl;
75class TargetInfo;
76class VarDecl;
77class ObjCForCollectionStmt;
78class ObjCAtTryStmt;
79class ObjCAtThrowStmt;
80class ObjCAtSynchronizedStmt;
81class ObjCAutoreleasePoolStmt;
82class OMPUseDevicePtrClause;
83class OMPUseDeviceAddrClause;
84class SVETypeFlags;
85class OMPExecutableDirective;
86
87namespace analyze_os_log {
88class OSLogBufferLayout;
89}
90
91namespace CodeGen {
92class CodeGenTypes;
93class CGCallee;
94class CGFunctionInfo;
95class CGBlockInfo;
96class CGCXXABI;
97class BlockByrefHelpers;
98class BlockByrefInfo;
99class BlockFieldFlags;
100class RegionCodeGenTy;
101class TargetCodeGenInfo;
102struct OMPTaskDataTy;
103struct CGCoroData;
104
105/// The kind of evaluation to perform on values of a particular
106/// type. Basically, is the code in CGExprScalar, CGExprComplex, or
107/// CGExprAgg?
108///
109/// TODO: should vectors maybe be split out into their own thing?
115
116#define LIST_SANITIZER_CHECKS \
117 SANITIZER_CHECK(AddOverflow, add_overflow, 0) \
118 SANITIZER_CHECK(BuiltinUnreachable, builtin_unreachable, 0) \
119 SANITIZER_CHECK(CFICheckFail, cfi_check_fail, 0) \
120 SANITIZER_CHECK(DivremOverflow, divrem_overflow, 0) \
121 SANITIZER_CHECK(DynamicTypeCacheMiss, dynamic_type_cache_miss, 0) \
122 SANITIZER_CHECK(FloatCastOverflow, float_cast_overflow, 0) \
123 SANITIZER_CHECK(FunctionTypeMismatch, function_type_mismatch, 0) \
124 SANITIZER_CHECK(ImplicitConversion, implicit_conversion, 0) \
125 SANITIZER_CHECK(InvalidBuiltin, invalid_builtin, 0) \
126 SANITIZER_CHECK(InvalidObjCCast, invalid_objc_cast, 0) \
127 SANITIZER_CHECK(LoadInvalidValue, load_invalid_value, 0) \
128 SANITIZER_CHECK(MissingReturn, missing_return, 0) \
129 SANITIZER_CHECK(MulOverflow, mul_overflow, 0) \
130 SANITIZER_CHECK(NegateOverflow, negate_overflow, 0) \
131 SANITIZER_CHECK(NullabilityArg, nullability_arg, 0) \
132 SANITIZER_CHECK(NullabilityReturn, nullability_return, 1) \
133 SANITIZER_CHECK(NonnullArg, nonnull_arg, 0) \
134 SANITIZER_CHECK(NonnullReturn, nonnull_return, 1) \
135 SANITIZER_CHECK(OutOfBounds, out_of_bounds, 0) \
136 SANITIZER_CHECK(PointerOverflow, pointer_overflow, 0) \
137 SANITIZER_CHECK(ShiftOutOfBounds, shift_out_of_bounds, 0) \
138 SANITIZER_CHECK(SubOverflow, sub_overflow, 0) \
139 SANITIZER_CHECK(TypeMismatch, type_mismatch, 1) \
140 SANITIZER_CHECK(AlignmentAssumption, alignment_assumption, 0) \
141 SANITIZER_CHECK(VLABoundNotPositive, vla_bound_not_positive, 0) \
142 SANITIZER_CHECK(BoundsSafety, bounds_safety, 0)
143
145#define SANITIZER_CHECK(Enum, Name, Version) Enum,
147#undef SANITIZER_CHECK
149
150/// Helper class with most of the code for saving a value for a
151/// conditional expression cleanup.
153 typedef llvm::PointerIntPair<llvm::Value*, 1, bool> saved_type;
154
155 /// Answer whether the given value needs extra work to be saved.
156 static bool needsSaving(llvm::Value *value) {
157 if (!value)
158 return false;
159
160 // If it's not an instruction, we don't need to save.
161 if (!isa<llvm::Instruction>(value)) return false;
162
163 // If it's an instruction in the entry block, we don't need to save.
164 llvm::BasicBlock *block = cast<llvm::Instruction>(value)->getParent();
165 return (block != &block->getParent()->getEntryBlock());
166 }
167
168 static saved_type save(CodeGenFunction &CGF, llvm::Value *value);
169 static llvm::Value *restore(CodeGenFunction &CGF, saved_type value);
170};
171
172/// A partial specialization of DominatingValue for llvm::Values that
173/// might be llvm::Instructions.
174template <class T> struct DominatingPointer<T,true> : DominatingLLVMValue {
175 typedef T *type;
177 return static_cast<T*>(DominatingLLVMValue::restore(CGF, value));
178 }
179};
180
181/// A specialization of DominatingValue for Address.
182template <> struct DominatingValue<Address> {
183 typedef Address type;
184
185 struct saved_type {
187 llvm::Type *ElementType;
190 llvm::PointerType *EffectiveType;
191 };
192
193 static bool needsSaving(type value) {
196 return true;
197 return false;
198 }
199 static saved_type save(CodeGenFunction &CGF, type value) {
200 return {DominatingLLVMValue::save(CGF, value.getBasePointer()),
201 value.getElementType(), value.getAlignment(),
202 DominatingLLVMValue::save(CGF, value.getOffset()), value.getType()};
203 }
205 return Address(DominatingLLVMValue::restore(CGF, value.BasePtr),
206 value.ElementType, value.Alignment, CGPointerAuthInfo(),
207 DominatingLLVMValue::restore(CGF, value.Offset));
208 }
209};
210
211/// A specialization of DominatingValue for RValue.
212template <> struct DominatingValue<RValue> {
213 typedef RValue type;
215 enum Kind { ScalarLiteral, ScalarAddress, AggregateLiteral,
216 AggregateAddress, ComplexAddress };
217 union {
218 struct {
220 } Vals;
222 };
223 LLVM_PREFERRED_TYPE(Kind)
224 unsigned K : 3;
225
227 : Vals{Val1, DominatingLLVMValue::saved_type()}, K(K) {}
228
231 : Vals{Val1, Val2}, K(ComplexAddress) {}
232
233 saved_type(DominatingValue<Address>::saved_type AggregateAddr, unsigned K)
234 : AggregateAddr(AggregateAddr), K(K) {}
235
236 public:
237 static bool needsSaving(RValue value);
240
241 // implementations in CGCleanup.cpp
242 };
243
244 static bool needsSaving(type value) {
245 return saved_type::needsSaving(value);
246 }
247 static saved_type save(CodeGenFunction &CGF, type value) {
248 return saved_type::save(CGF, value);
249 }
251 return value.restore(CGF);
252 }
253};
254
255/// CodeGenFunction - This class organizes the per-function state that is used
256/// while generating LLVM code.
258 CodeGenFunction(const CodeGenFunction &) = delete;
259 void operator=(const CodeGenFunction &) = delete;
260
261 friend class CGCXXABI;
262public:
263 /// A jump destination is an abstract label, branching to which may
264 /// require a jump out through normal cleanups.
265 struct JumpDest {
266 JumpDest() : Block(nullptr), Index(0) {}
267 JumpDest(llvm::BasicBlock *Block, EHScopeStack::stable_iterator Depth,
268 unsigned Index)
269 : Block(Block), ScopeDepth(Depth), Index(Index) {}
270
271 bool isValid() const { return Block != nullptr; }
272 llvm::BasicBlock *getBlock() const { return Block; }
273 EHScopeStack::stable_iterator getScopeDepth() const { return ScopeDepth; }
274 unsigned getDestIndex() const { return Index; }
275
276 // This should be used cautiously.
278 ScopeDepth = depth;
279 }
280
281 private:
282 llvm::BasicBlock *Block;
284 unsigned Index;
285 };
286
287 CodeGenModule &CGM; // Per-module state.
289
290 // For EH/SEH outlined funclets, this field points to parent's CGF
292
293 typedef std::pair<llvm::Value *, llvm::Value *> ComplexPairTy;
296
297 // Stores variables for which we can't generate correct lifetime markers
298 // because of jumps.
300
301 /// List of recently emitted OMPCanonicalLoops.
302 ///
303 /// Since OMPCanonicalLoops are nested inside other statements (in particular
304 /// CapturedStmt generated by OMPExecutableDirective and non-perfectly nested
305 /// loops), we cannot directly call OMPEmitOMPCanonicalLoop and receive its
306 /// llvm::CanonicalLoopInfo. Instead, we call EmitStmt and any
307 /// OMPEmitOMPCanonicalLoop called by it will add its CanonicalLoopInfo to
308 /// this stack when done. Entering a new loop requires clearing this list; it
309 /// either means we start parsing a new loop nest (in which case the previous
310 /// loop nest goes out of scope) or a second loop in the same level in which
311 /// case it would be ambiguous into which of the two (or more) loops the loop
312 /// nest would extend.
314
315 /// Stack to track the Logical Operator recursion nest for MC/DC.
317
318 /// Stack to track the controlled convergence tokens.
320
321 /// Number of nested loop to be consumed by the last surrounding
322 /// loop-associated directive.
324
325 // CodeGen lambda for loops and support for ordered clause
326 typedef llvm::function_ref<void(CodeGenFunction &, const OMPLoopDirective &,
327 JumpDest)>
329 typedef llvm::function_ref<void(CodeGenFunction &, SourceLocation,
330 const unsigned, const bool)>
332
333 // Codegen lambda for loop bounds in worksharing loop constructs
334 typedef llvm::function_ref<std::pair<LValue, LValue>(
337
338 // Codegen lambda for loop bounds in dispatch-based loop implementation
339 typedef llvm::function_ref<std::pair<llvm::Value *, llvm::Value *>(
341 Address UB)>
343
344 /// CGBuilder insert helper. This function is called after an
345 /// instruction is created using Builder.
346 void InsertHelper(llvm::Instruction *I, const llvm::Twine &Name,
347 llvm::BasicBlock::iterator InsertPt) const;
348
349 /// CurFuncDecl - Holds the Decl for the current outermost
350 /// non-closure context.
351 const Decl *CurFuncDecl = nullptr;
352 /// CurCodeDecl - This is the inner-most code context, which includes blocks.
353 const Decl *CurCodeDecl = nullptr;
354 const CGFunctionInfo *CurFnInfo = nullptr;
356 llvm::Function *CurFn = nullptr;
357
358 /// Save Parameter Decl for coroutine.
360
361 // Holds coroutine data if the current function is a coroutine. We use a
362 // wrapper to manage its lifetime, so that we don't have to define CGCoroData
363 // in this header.
364 struct CGCoroInfo {
365 std::unique_ptr<CGCoroData> Data;
366 bool InSuspendBlock = false;
367 CGCoroInfo();
368 ~CGCoroInfo();
369 };
371
372 bool isCoroutine() const {
373 return CurCoro.Data != nullptr;
374 }
375
376 bool inSuspendBlock() const {
378 }
379
380 // Holds FramePtr for await_suspend wrapper generation,
381 // so that __builtin_coro_frame call can be lowered
382 // directly to value of its second argument
384 llvm::Value *FramePtr = nullptr;
385 };
387
388 // Generates wrapper function for `llvm.coro.await.suspend.*` intrinisics.
389 // It encapsulates SuspendExpr in a function, to separate it's body
390 // from the main coroutine to avoid miscompilations. Intrinisic
391 // is lowered to this function call in CoroSplit pass
392 // Function signature is:
393 // <type> __await_suspend_wrapper_<name>(ptr %awaiter, ptr %hdl)
394 // where type is one of (void, i1, ptr)
395 llvm::Function *generateAwaitSuspendWrapper(Twine const &CoroName,
396 Twine const &SuspendPointName,
397 CoroutineSuspendExpr const &S);
398
399 /// CurGD - The GlobalDecl for the current function being compiled.
401
402 /// PrologueCleanupDepth - The cleanup depth enclosing all the
403 /// cleanups associated with the parameters.
405
406 /// ReturnBlock - Unified return block.
408
409 /// ReturnValue - The temporary alloca to hold the return
410 /// value. This is invalid iff the function has no return value.
412
413 /// ReturnValuePointer - The temporary alloca to hold a pointer to sret.
414 /// This is invalid if sret is not in use.
416
417 /// If a return statement is being visited, this holds the return statment's
418 /// result expression.
419 const Expr *RetExpr = nullptr;
420
421 /// Return true if a label was seen in the current scope.
423 if (CurLexicalScope)
424 return CurLexicalScope->hasLabels();
425 return !LabelMap.empty();
426 }
427
428 /// AllocaInsertPoint - This is an instruction in the entry block before which
429 /// we prefer to insert allocas.
430 llvm::AssertingVH<llvm::Instruction> AllocaInsertPt;
431
432private:
433 /// PostAllocaInsertPt - This is a place in the prologue where code can be
434 /// inserted that will be dominated by all the static allocas. This helps
435 /// achieve two things:
436 /// 1. Contiguity of all static allocas (within the prologue) is maintained.
437 /// 2. All other prologue code (which are dominated by static allocas) do
438 /// appear in the source order immediately after all static allocas.
439 ///
440 /// PostAllocaInsertPt will be lazily created when it is *really* required.
441 llvm::AssertingVH<llvm::Instruction> PostAllocaInsertPt = nullptr;
442
443public:
444 /// Return PostAllocaInsertPt. If it is not yet created, then insert it
445 /// immediately after AllocaInsertPt.
446 llvm::Instruction *getPostAllocaInsertPoint() {
447 if (!PostAllocaInsertPt) {
448 assert(AllocaInsertPt &&
449 "Expected static alloca insertion point at function prologue");
450 assert(AllocaInsertPt->getParent()->isEntryBlock() &&
451 "EBB should be entry block of the current code gen function");
452 PostAllocaInsertPt = AllocaInsertPt->clone();
453 PostAllocaInsertPt->setName("postallocapt");
454 PostAllocaInsertPt->insertAfter(AllocaInsertPt);
455 }
456
457 return PostAllocaInsertPt;
458 }
459
460 /// API for captured statement code generation.
462 public:
464 : Kind(K), ThisValue(nullptr), CXXThisFieldDecl(nullptr) {}
467 : Kind(K), ThisValue(nullptr), CXXThisFieldDecl(nullptr) {
468
470 S.getCapturedRecordDecl()->field_begin();
471 for (CapturedStmt::const_capture_iterator I = S.capture_begin(),
472 E = S.capture_end();
473 I != E; ++I, ++Field) {
474 if (I->capturesThis())
475 CXXThisFieldDecl = *Field;
476 else if (I->capturesVariable())
477 CaptureFields[I->getCapturedVar()->getCanonicalDecl()] = *Field;
478 else if (I->capturesVariableByCopy())
479 CaptureFields[I->getCapturedVar()->getCanonicalDecl()] = *Field;
480 }
481 }
482
483 virtual ~CGCapturedStmtInfo();
484
485 CapturedRegionKind getKind() const { return Kind; }
486
487 virtual void setContextValue(llvm::Value *V) { ThisValue = V; }
488 // Retrieve the value of the context parameter.
489 virtual llvm::Value *getContextValue() const { return ThisValue; }
490
491 /// Lookup the captured field decl for a variable.
492 virtual const FieldDecl *lookup(const VarDecl *VD) const {
493 return CaptureFields.lookup(VD->getCanonicalDecl());
494 }
495
496 bool isCXXThisExprCaptured() const { return getThisFieldDecl() != nullptr; }
497 virtual FieldDecl *getThisFieldDecl() const { return CXXThisFieldDecl; }
498
499 static bool classof(const CGCapturedStmtInfo *) {
500 return true;
501 }
502
503 /// Emit the captured statement body.
504 virtual void EmitBody(CodeGenFunction &CGF, const Stmt *S) {
506 CGF.EmitStmt(S);
507 }
508
509 /// Get the name of the capture helper.
510 virtual StringRef getHelperName() const { return "__captured_stmt"; }
511
512 /// Get the CaptureFields
513 llvm::SmallDenseMap<const VarDecl *, FieldDecl *> getCaptureFields() {
514 return CaptureFields;
515 }
516
517 private:
518 /// The kind of captured statement being generated.
520
521 /// Keep the map between VarDecl and FieldDecl.
522 llvm::SmallDenseMap<const VarDecl *, FieldDecl *> CaptureFields;
523
524 /// The base address of the captured record, passed in as the first
525 /// argument of the parallel region function.
526 llvm::Value *ThisValue;
527
528 /// Captured 'this' type.
529 FieldDecl *CXXThisFieldDecl;
530 };
532
533 /// RAII for correct setting/restoring of CapturedStmtInfo.
535 private:
536 CodeGenFunction &CGF;
537 CGCapturedStmtInfo *PrevCapturedStmtInfo;
538 public:
540 CGCapturedStmtInfo *NewCapturedStmtInfo)
541 : CGF(CGF), PrevCapturedStmtInfo(CGF.CapturedStmtInfo) {
542 CGF.CapturedStmtInfo = NewCapturedStmtInfo;
543 }
544 ~CGCapturedStmtRAII() { CGF.CapturedStmtInfo = PrevCapturedStmtInfo; }
545 };
546
547 /// An abstract representation of regular/ObjC call/message targets.
549 /// The function declaration of the callee.
550 const Decl *CalleeDecl;
551
552 public:
553 AbstractCallee() : CalleeDecl(nullptr) {}
554 AbstractCallee(const FunctionDecl *FD) : CalleeDecl(FD) {}
555 AbstractCallee(const ObjCMethodDecl *OMD) : CalleeDecl(OMD) {}
556 bool hasFunctionDecl() const {
557 return isa_and_nonnull<FunctionDecl>(CalleeDecl);
558 }
559 const Decl *getDecl() const { return CalleeDecl; }
560 unsigned getNumParams() const {
561 if (const auto *FD = dyn_cast<FunctionDecl>(CalleeDecl))
562 return FD->getNumParams();
563 return cast<ObjCMethodDecl>(CalleeDecl)->param_size();
564 }
565 const ParmVarDecl *getParamDecl(unsigned I) const {
566 if (const auto *FD = dyn_cast<FunctionDecl>(CalleeDecl))
567 return FD->getParamDecl(I);
568 return *(cast<ObjCMethodDecl>(CalleeDecl)->param_begin() + I);
569 }
570 };
571
572 /// Sanitizers enabled for this function.
574
575 /// True if CodeGen currently emits code implementing sanitizer checks.
576 bool IsSanitizerScope = false;
577
578 /// RAII object to set/unset CodeGenFunction::IsSanitizerScope.
580 CodeGenFunction *CGF;
581 public:
584 };
585
586 /// In C++, whether we are code generating a thunk. This controls whether we
587 /// should emit cleanups.
588 bool CurFuncIsThunk = false;
589
590 /// In ARC, whether we should autorelease the return value.
591 bool AutoreleaseResult = false;
592
593 /// Whether we processed a Microsoft-style asm block during CodeGen. These can
594 /// potentially set the return value.
595 bool SawAsmBlock = false;
596
598
599 /// True if the current function is an outlined SEH helper. This can be a
600 /// finally block or filter expression.
602
603 /// True if CodeGen currently emits code inside presereved access index
604 /// region.
606
607 /// True if the current statement has nomerge attribute.
609
610 /// True if the current statement has noinline attribute.
612
613 /// True if the current statement has always_inline attribute.
615
616 /// True if the current statement has noconvergent attribute.
618
619 /// HLSL Branch attribute.
620 HLSLControlFlowHintAttr::Spelling HLSLControlFlowAttr =
621 HLSLControlFlowHintAttr::SpellingNotCalculated;
622
623 // The CallExpr within the current statement that the musttail attribute
624 // applies to. nullptr if there is no 'musttail' on the current statement.
625 const CallExpr *MustTailCall = nullptr;
626
627 /// Returns true if a function must make progress, which means the
628 /// mustprogress attribute can be added.
630 if (CGM.getCodeGenOpts().getFiniteLoops() ==
632 return false;
633
634 // C++11 and later guarantees that a thread eventually will do one of the
635 // following (C++11 [intro.multithread]p24 and C++17 [intro.progress]p1):
636 // - terminate,
637 // - make a call to a library I/O function,
638 // - perform an access through a volatile glvalue, or
639 // - perform a synchronization operation or an atomic operation.
640 //
641 // Hence each function is 'mustprogress' in C++11 or later.
642 return getLangOpts().CPlusPlus11;
643 }
644
645 /// Returns true if a loop must make progress, which means the mustprogress
646 /// attribute can be added. \p HasConstantCond indicates whether the branch
647 /// condition is a known constant.
648 bool checkIfLoopMustProgress(const Expr *, bool HasEmptyBody);
649
651 llvm::Value *BlockPointer = nullptr;
652
653 llvm::DenseMap<const ValueDecl *, FieldDecl *> LambdaCaptureFields;
655
656 /// A mapping from NRVO variables to the flags used to indicate
657 /// when the NRVO has been applied to this variable.
658 llvm::DenseMap<const VarDecl *, llvm::Value *> NRVOFlags;
659
662
663 // A stack of cleanups which were added to EHStack but have to be deactivated
664 // later before being popped or emitted. These are usually deactivated on
665 // exiting a `CleanupDeactivationScope` scope. For instance, after a
666 // full-expr.
667 //
668 // These are specially useful for correctly emitting cleanups while
669 // encountering branches out of expression (through stmt-expr or coroutine
670 // suspensions).
673 llvm::Instruction *DominatingIP;
674 };
676
677 // Enters a new scope for capturing cleanups which are deferred to be
678 // deactivated, all of which will be deactivated once the scope is exited.
687
689 assert(!Deactivated && "Deactivating already deactivated scope");
691 for (size_t I = Stack.size(); I > OldDeactivateCleanupStackSize; I--) {
692 CGF.DeactivateCleanupBlock(Stack[I - 1].Cleanup,
693 Stack[I - 1].DominatingIP);
694 Stack[I - 1].DominatingIP->eraseFromParent();
695 }
696 Stack.resize(OldDeactivateCleanupStackSize);
697 Deactivated = true;
698 }
699
701 if (Deactivated)
702 return;
704 }
705 };
706
708
709 llvm::Instruction *CurrentFuncletPad = nullptr;
710
712 bool isRedundantBeforeReturn() override { return true; }
713
714 llvm::Value *Addr;
715 llvm::Value *Size;
716
717 public:
718 CallLifetimeEnd(RawAddress addr, llvm::Value *size)
719 : Addr(addr.getPointer()), Size(size) {}
720
721 void Emit(CodeGenFunction &CGF, Flags flags) override {
722 CGF.EmitLifetimeEnd(Size, Addr);
723 }
724 };
725
726 /// Header for data within LifetimeExtendedCleanupStack.
728 /// The size of the following cleanup object.
729 unsigned Size;
730 /// The kind of cleanup to push.
731 LLVM_PREFERRED_TYPE(CleanupKind)
733 /// Whether this is a conditional cleanup.
734 LLVM_PREFERRED_TYPE(bool)
735 unsigned IsConditional : 1;
736
737 size_t getSize() const { return Size; }
738 CleanupKind getKind() const { return (CleanupKind)Kind; }
739 bool isConditional() const { return IsConditional; }
740 };
741
742 /// i32s containing the indexes of the cleanup destinations.
744
746
747 /// EHResumeBlock - Unified block containing a call to llvm.eh.resume.
748 llvm::BasicBlock *EHResumeBlock = nullptr;
749
750 /// The exception slot. All landing pads write the current exception pointer
751 /// into this alloca.
752 llvm::Value *ExceptionSlot = nullptr;
753
754 /// The selector slot. Under the MandatoryCleanup model, all landing pads
755 /// write the current selector value into this alloca.
756 llvm::AllocaInst *EHSelectorSlot = nullptr;
757
758 /// A stack of exception code slots. Entering an __except block pushes a slot
759 /// on the stack and leaving pops one. The __exception_code() intrinsic loads
760 /// a value from the top of the stack.
762
763 /// Value returned by __exception_info intrinsic.
764 llvm::Value *SEHInfo = nullptr;
765
766 /// Emits a landing pad for the current EH stack.
767 llvm::BasicBlock *EmitLandingPad();
768
769 llvm::BasicBlock *getInvokeDestImpl();
770
771 /// Parent loop-based directive for scan directive.
773 llvm::BasicBlock *OMPBeforeScanBlock = nullptr;
774 llvm::BasicBlock *OMPAfterScanBlock = nullptr;
775 llvm::BasicBlock *OMPScanExitBlock = nullptr;
776 llvm::BasicBlock *OMPScanDispatch = nullptr;
777 bool OMPFirstScanLoop = false;
778
779 /// Manages parent directive for scan directives.
781 CodeGenFunction &CGF;
782 const OMPExecutableDirective *ParentLoopDirectiveForScan;
783
784 public:
786 CodeGenFunction &CGF,
787 const OMPExecutableDirective &ParentLoopDirectiveForScan)
788 : CGF(CGF),
789 ParentLoopDirectiveForScan(CGF.OMPParentLoopDirectiveForScan) {
790 CGF.OMPParentLoopDirectiveForScan = &ParentLoopDirectiveForScan;
791 }
793 CGF.OMPParentLoopDirectiveForScan = ParentLoopDirectiveForScan;
794 }
795 };
796
797 template <class T>
799 return DominatingValue<T>::save(*this, value);
800 }
801
803 public:
804 CGFPOptionsRAII(CodeGenFunction &CGF, FPOptions FPFeatures);
807
808 private:
809 void ConstructorHelper(FPOptions FPFeatures);
810 CodeGenFunction &CGF;
811 FPOptions OldFPFeatures;
812 llvm::fp::ExceptionBehavior OldExcept;
813 llvm::RoundingMode OldRounding;
814 std::optional<CGBuilderTy::FastMathFlagGuard> FMFGuard;
815 };
817
818public:
819 /// ObjCEHValueStack - Stack of Objective-C exception values, used for
820 /// rethrows.
822
823 /// A class controlling the emission of a finally block.
825 /// Where the catchall's edge through the cleanup should go.
826 JumpDest RethrowDest;
827
828 /// A function to call to enter the catch.
829 llvm::FunctionCallee BeginCatchFn;
830
831 /// An i1 variable indicating whether or not the @finally is
832 /// running for an exception.
833 llvm::AllocaInst *ForEHVar = nullptr;
834
835 /// An i8* variable into which the exception pointer to rethrow
836 /// has been saved.
837 llvm::AllocaInst *SavedExnVar = nullptr;
838
839 public:
840 void enter(CodeGenFunction &CGF, const Stmt *Finally,
841 llvm::FunctionCallee beginCatchFn,
842 llvm::FunctionCallee endCatchFn, llvm::FunctionCallee rethrowFn);
843 void exit(CodeGenFunction &CGF);
844 };
845
846 /// Returns true inside SEH __try blocks.
847 bool isSEHTryScope() const { return !SEHTryEpilogueStack.empty(); }
848
849 /// Returns true while emitting a cleanuppad.
850 bool isCleanupPadScope() const {
851 return CurrentFuncletPad && isa<llvm::CleanupPadInst>(CurrentFuncletPad);
852 }
853
854 /// pushFullExprCleanup - Push a cleanup to be run at the end of the
855 /// current full-expression. Safe against the possibility that
856 /// we're currently inside a conditionally-evaluated expression.
857 template <class T, class... As>
858 void pushFullExprCleanup(CleanupKind kind, As... A) {
859 // If we're not in a conditional branch, or if none of the
860 // arguments requires saving, then use the unconditional cleanup.
862 return EHStack.pushCleanup<T>(kind, A...);
863
864 // Stash values in a tuple so we can guarantee the order of saves.
865 typedef std::tuple<typename DominatingValue<As>::saved_type...> SavedTuple;
866 SavedTuple Saved{saveValueInCond(A)...};
867
868 typedef EHScopeStack::ConditionalCleanup<T, As...> CleanupType;
869 EHStack.pushCleanupTuple<CleanupType>(kind, Saved);
871 }
872
873 /// Queue a cleanup to be pushed after finishing the current full-expression,
874 /// potentially with an active flag.
875 template <class T, class... As>
878 return pushCleanupAfterFullExprWithActiveFlag<T>(
879 Kind, RawAddress::invalid(), A...);
880
881 RawAddress ActiveFlag = createCleanupActiveFlag();
882 assert(!DominatingValue<Address>::needsSaving(ActiveFlag) &&
883 "cleanup active flag should never need saving");
884
885 typedef std::tuple<typename DominatingValue<As>::saved_type...> SavedTuple;
886 SavedTuple Saved{saveValueInCond(A)...};
887
888 typedef EHScopeStack::ConditionalCleanup<T, As...> CleanupType;
889 pushCleanupAfterFullExprWithActiveFlag<CleanupType>(Kind, ActiveFlag, Saved);
890 }
891
892 template <class T, class... As>
894 RawAddress ActiveFlag, As... A) {
895 LifetimeExtendedCleanupHeader Header = {sizeof(T), Kind,
896 ActiveFlag.isValid()};
897
900 LifetimeExtendedCleanupStack.size() + sizeof(Header) + Header.Size +
901 (Header.IsConditional ? sizeof(ActiveFlag) : 0));
902
903 static_assert(sizeof(Header) % alignof(T) == 0,
904 "Cleanup will be allocated on misaligned address");
905 char *Buffer = &LifetimeExtendedCleanupStack[OldSize];
906 new (Buffer) LifetimeExtendedCleanupHeader(Header);
907 new (Buffer + sizeof(Header)) T(A...);
908 if (Header.IsConditional)
909 new (Buffer + sizeof(Header) + sizeof(T)) RawAddress(ActiveFlag);
910 }
911
912 // Push a cleanup onto EHStack and deactivate it later. It is usually
913 // deactivated when exiting a `CleanupDeactivationScope` (for example: after a
914 // full expression).
915 template <class T, class... As>
917 // Placeholder dominating IP for this cleanup.
918 llvm::Instruction *DominatingIP =
919 Builder.CreateFlagLoad(llvm::Constant::getNullValue(Int8PtrTy));
920 EHStack.pushCleanup<T>(Kind, A...);
922 {EHStack.stable_begin(), DominatingIP});
923 }
924
925 /// Set up the last cleanup that was pushed as a conditional
926 /// full-expression cleanup.
929 }
930
933
934 /// PushDestructorCleanup - Push a cleanup to call the
935 /// complete-object destructor of an object of the given type at the
936 /// given address. Does nothing if T is not a C++ class type with a
937 /// non-trivial destructor.
939
940 /// PushDestructorCleanup - Push a cleanup to call the
941 /// complete-object variant of the given destructor on the object at
942 /// the given address.
944 Address Addr);
945
946 /// PopCleanupBlock - Will pop the cleanup entry on the stack and
947 /// process all branch fixups.
948 void PopCleanupBlock(bool FallThroughIsBranchThrough = false,
949 bool ForDeactivation = false);
950
951 /// DeactivateCleanupBlock - Deactivates the given cleanup block.
952 /// The block cannot be reactivated. Pops it if it's the top of the
953 /// stack.
954 ///
955 /// \param DominatingIP - An instruction which is known to
956 /// dominate the current IP (if set) and which lies along
957 /// all paths of execution between the current IP and the
958 /// the point at which the cleanup comes into scope.
960 llvm::Instruction *DominatingIP);
961
962 /// ActivateCleanupBlock - Activates an initially-inactive cleanup.
963 /// Cannot be used to resurrect a deactivated cleanup.
964 ///
965 /// \param DominatingIP - An instruction which is known to
966 /// dominate the current IP (if set) and which lies along
967 /// all paths of execution between the current IP and the
968 /// the point at which the cleanup comes into scope.
970 llvm::Instruction *DominatingIP);
971
972 /// Enters a new scope for capturing cleanups, all of which
973 /// will be executed once the scope is exited.
975 EHScopeStack::stable_iterator CleanupStackDepth, OldCleanupScopeDepth;
976 size_t LifetimeExtendedCleanupStackSize;
977 CleanupDeactivationScope DeactivateCleanups;
978 bool OldDidCallStackSave;
979 protected:
981 private:
982
983 RunCleanupsScope(const RunCleanupsScope &) = delete;
984 void operator=(const RunCleanupsScope &) = delete;
985
986 protected:
988
989 public:
990 /// Enter a new cleanup scope.
992 : DeactivateCleanups(CGF), PerformCleanup(true), CGF(CGF) {
993 CleanupStackDepth = CGF.EHStack.stable_begin();
994 LifetimeExtendedCleanupStackSize =
996 OldDidCallStackSave = CGF.DidCallStackSave;
997 CGF.DidCallStackSave = false;
998 OldCleanupScopeDepth = CGF.CurrentCleanupScopeDepth;
999 CGF.CurrentCleanupScopeDepth = CleanupStackDepth;
1000 }
1001
1002 /// Exit this cleanup scope, emitting any accumulated cleanups.
1004 if (PerformCleanup)
1005 ForceCleanup();
1006 }
1007
1008 /// Determine whether this scope requires any cleanups.
1009 bool requiresCleanups() const {
1010 return CGF.EHStack.stable_begin() != CleanupStackDepth;
1011 }
1012
1013 /// Force the emission of cleanups now, instead of waiting
1014 /// until this object is destroyed.
1015 /// \param ValuesToReload - A list of values that need to be available at
1016 /// the insertion point after cleanup emission. If cleanup emission created
1017 /// a shared cleanup block, these value pointers will be rewritten.
1018 /// Otherwise, they not will be modified.
1019 void ForceCleanup(std::initializer_list<llvm::Value**> ValuesToReload = {}) {
1020 assert(PerformCleanup && "Already forced cleanup");
1021 CGF.DidCallStackSave = OldDidCallStackSave;
1022 DeactivateCleanups.ForceDeactivate();
1023 CGF.PopCleanupBlocks(CleanupStackDepth, LifetimeExtendedCleanupStackSize,
1024 ValuesToReload);
1025 PerformCleanup = false;
1026 CGF.CurrentCleanupScopeDepth = OldCleanupScopeDepth;
1027 }
1028 };
1029
1030 // Cleanup stack depth of the RunCleanupsScope that was pushed most recently.
1033
1035 SourceRange Range;
1037 LexicalScope *ParentScope;
1038
1039 LexicalScope(const LexicalScope &) = delete;
1040 void operator=(const LexicalScope &) = delete;
1041
1042 public:
1043 /// Enter a new cleanup scope.
1045 : RunCleanupsScope(CGF), Range(Range), ParentScope(CGF.CurLexicalScope) {
1046 CGF.CurLexicalScope = this;
1047 if (CGDebugInfo *DI = CGF.getDebugInfo())
1048 DI->EmitLexicalBlockStart(CGF.Builder, Range.getBegin());
1049 }
1050
1051 void addLabel(const LabelDecl *label) {
1052 assert(PerformCleanup && "adding label to dead scope?");
1053 Labels.push_back(label);
1054 }
1055
1056 /// Exit this cleanup scope, emitting any accumulated
1057 /// cleanups.
1059 if (CGDebugInfo *DI = CGF.getDebugInfo())
1060 DI->EmitLexicalBlockEnd(CGF.Builder, Range.getEnd());
1061
1062 // If we should perform a cleanup, force them now. Note that
1063 // this ends the cleanup scope before rescoping any labels.
1064 if (PerformCleanup) {
1065 ApplyDebugLocation DL(CGF, Range.getEnd());
1066 ForceCleanup();
1067 }
1068 }
1069
1070 /// Force the emission of cleanups now, instead of waiting
1071 /// until this object is destroyed.
1073 CGF.CurLexicalScope = ParentScope;
1075
1076 if (!Labels.empty())
1077 rescopeLabels();
1078 }
1079
1080 bool hasLabels() const {
1081 return !Labels.empty();
1082 }
1083
1084 void rescopeLabels();
1085 };
1086
1087 typedef llvm::DenseMap<const Decl *, Address> DeclMapTy;
1088
1089 /// The class used to assign some variables some temporarily addresses.
1091 DeclMapTy SavedLocals;
1092 DeclMapTy SavedTempAddresses;
1093 OMPMapVars(const OMPMapVars &) = delete;
1094 void operator=(const OMPMapVars &) = delete;
1095
1096 public:
1097 explicit OMPMapVars() = default;
1099 assert(SavedLocals.empty() && "Did not restored original addresses.");
1100 };
1101
1102 /// Sets the address of the variable \p LocalVD to be \p TempAddr in
1103 /// function \p CGF.
1104 /// \return true if at least one variable was set already, false otherwise.
1105 bool setVarAddr(CodeGenFunction &CGF, const VarDecl *LocalVD,
1106 Address TempAddr) {
1107 LocalVD = LocalVD->getCanonicalDecl();
1108 // Only save it once.
1109 if (SavedLocals.count(LocalVD)) return false;
1110
1111 // Copy the existing local entry to SavedLocals.
1112 auto it = CGF.LocalDeclMap.find(LocalVD);
1113 if (it != CGF.LocalDeclMap.end())
1114 SavedLocals.try_emplace(LocalVD, it->second);
1115 else
1116 SavedLocals.try_emplace(LocalVD, Address::invalid());
1117
1118 // Generate the private entry.
1119 QualType VarTy = LocalVD->getType();
1120 if (VarTy->isReferenceType()) {
1121 Address Temp = CGF.CreateMemTemp(VarTy);
1122 CGF.Builder.CreateStore(TempAddr.emitRawPointer(CGF), Temp);
1123 TempAddr = Temp;
1124 }
1125 SavedTempAddresses.try_emplace(LocalVD, TempAddr);
1126
1127 return true;
1128 }
1129
1130 /// Applies new addresses to the list of the variables.
1131 /// \return true if at least one variable is using new address, false
1132 /// otherwise.
1134 copyInto(SavedTempAddresses, CGF.LocalDeclMap);
1135 SavedTempAddresses.clear();
1136 return !SavedLocals.empty();
1137 }
1138
1139 /// Restores original addresses of the variables.
1141 if (!SavedLocals.empty()) {
1142 copyInto(SavedLocals, CGF.LocalDeclMap);
1143 SavedLocals.clear();
1144 }
1145 }
1146
1147 private:
1148 /// Copy all the entries in the source map over the corresponding
1149 /// entries in the destination, which must exist.
1150 static void copyInto(const DeclMapTy &Src, DeclMapTy &Dest) {
1151 for (auto &[Decl, Addr] : Src) {
1152 if (!Addr.isValid())
1153 Dest.erase(Decl);
1154 else
1155 Dest.insert_or_assign(Decl, Addr);
1156 }
1157 }
1158 };
1159
1160 /// The scope used to remap some variables as private in the OpenMP loop body
1161 /// (or other captured region emitted without outlining), and to restore old
1162 /// vars back on exit.
1164 OMPMapVars MappedVars;
1165 OMPPrivateScope(const OMPPrivateScope &) = delete;
1166 void operator=(const OMPPrivateScope &) = delete;
1167
1168 public:
1169 /// Enter a new OpenMP private scope.
1171
1172 /// Registers \p LocalVD variable as a private with \p Addr as the address
1173 /// of the corresponding private variable. \p
1174 /// PrivateGen is the address of the generated private variable.
1175 /// \return true if the variable is registered as private, false if it has
1176 /// been privatized already.
1177 bool addPrivate(const VarDecl *LocalVD, Address Addr) {
1178 assert(PerformCleanup && "adding private to dead scope");
1179 return MappedVars.setVarAddr(CGF, LocalVD, Addr);
1180 }
1181
1182 /// Privatizes local variables previously registered as private.
1183 /// Registration is separate from the actual privatization to allow
1184 /// initializers use values of the original variables, not the private one.
1185 /// This is important, for example, if the private variable is a class
1186 /// variable initialized by a constructor that references other private
1187 /// variables. But at initialization original variables must be used, not
1188 /// private copies.
1189 /// \return true if at least one variable was privatized, false otherwise.
1190 bool Privatize() { return MappedVars.apply(CGF); }
1191
1194 restoreMap();
1195 }
1196
1197 /// Exit scope - all the mapped variables are restored.
1199 if (PerformCleanup)
1200 ForceCleanup();
1201 }
1202
1203 /// Checks if the global variable is captured in current function.
1204 bool isGlobalVarCaptured(const VarDecl *VD) const {
1205 VD = VD->getCanonicalDecl();
1206 return !VD->isLocalVarDeclOrParm() && CGF.LocalDeclMap.count(VD) > 0;
1207 }
1208
1209 /// Restore all mapped variables w/o clean up. This is usefully when we want
1210 /// to reference the original variables but don't want the clean up because
1211 /// that could emit lifetime end too early, causing backend issue #56913.
1212 void restoreMap() { MappedVars.restore(CGF); }
1213 };
1214
1215 /// Save/restore original map of previously emitted local vars in case when we
1216 /// need to duplicate emission of the same code several times in the same
1217 /// function for OpenMP code.
1219 CodeGenFunction &CGF;
1220 DeclMapTy SavedMap;
1221
1222 public:
1224 : CGF(CGF), SavedMap(CGF.LocalDeclMap) {}
1225 ~OMPLocalDeclMapRAII() { SavedMap.swap(CGF.LocalDeclMap); }
1226 };
1227
1228 /// Takes the old cleanup stack size and emits the cleanup blocks
1229 /// that have been added.
1230 void
1232 std::initializer_list<llvm::Value **> ValuesToReload = {});
1233
1234 /// Takes the old cleanup stack size and emits the cleanup blocks
1235 /// that have been added, then adds all lifetime-extended cleanups from
1236 /// the given position to the stack.
1237 void
1239 size_t OldLifetimeExtendedStackSize,
1240 std::initializer_list<llvm::Value **> ValuesToReload = {});
1241
1242 void ResolveBranchFixups(llvm::BasicBlock *Target);
1243
1244 /// The given basic block lies in the current EH scope, but may be a
1245 /// target of a potentially scope-crossing jump; get a stable handle
1246 /// to which we can perform this jump later.
1248 return JumpDest(Target,
1251 }
1252
1253 /// The given basic block lies in the current EH scope, but may be a
1254 /// target of a potentially scope-crossing jump; get a stable handle
1255 /// to which we can perform this jump later.
1256 JumpDest getJumpDestInCurrentScope(StringRef Name = StringRef()) {
1258 }
1259
1260 /// EmitBranchThroughCleanup - Emit a branch from the current insert
1261 /// block through the normal cleanup handling code (if any) and then
1262 /// on to \arg Dest.
1264
1265 /// isObviouslyBranchWithoutCleanups - Return true if a branch to the
1266 /// specified destination obviously has no cleanups to run. 'false' is always
1267 /// a conservatively correct answer for this method.
1269
1270 /// popCatchScope - Pops the catch scope at the top of the EHScope
1271 /// stack, emitting any required code (other than the catch handlers
1272 /// themselves).
1274
1275 llvm::BasicBlock *getEHResumeBlock(bool isCleanup);
1277 llvm::BasicBlock *
1279
1280 /// An object to manage conditionally-evaluated expressions.
1282 llvm::BasicBlock *StartBB;
1283
1284 public:
1286 : StartBB(CGF.Builder.GetInsertBlock()) {}
1287
1289 assert(CGF.OutermostConditional != this);
1290 if (!CGF.OutermostConditional)
1291 CGF.OutermostConditional = this;
1292 }
1293
1295 assert(CGF.OutermostConditional != nullptr);
1296 if (CGF.OutermostConditional == this)
1297 CGF.OutermostConditional = nullptr;
1298 }
1299
1300 /// Returns a block which will be executed prior to each
1301 /// evaluation of the conditional code.
1302 llvm::BasicBlock *getStartingBlock() const {
1303 return StartBB;
1304 }
1305 };
1306
1307 /// isInConditionalBranch - Return true if we're currently emitting
1308 /// one branch or the other of a conditional expression.
1309 bool isInConditionalBranch() const { return OutermostConditional != nullptr; }
1310
1311 void setBeforeOutermostConditional(llvm::Value *value, Address addr,
1312 CodeGenFunction &CGF) {
1313 assert(isInConditionalBranch());
1314 llvm::BasicBlock *block = OutermostConditional->getStartingBlock();
1315 auto store = new llvm::StoreInst(value, addr.emitRawPointer(CGF),
1316 block->back().getIterator());
1317 store->setAlignment(addr.getAlignment().getAsAlign());
1318 }
1319
1320 /// An RAII object to record that we're evaluating a statement
1321 /// expression.
1323 CodeGenFunction &CGF;
1324
1325 /// We have to save the outermost conditional: cleanups in a
1326 /// statement expression aren't conditional just because the
1327 /// StmtExpr is.
1328 ConditionalEvaluation *SavedOutermostConditional;
1329
1330 public:
1332 : CGF(CGF), SavedOutermostConditional(CGF.OutermostConditional) {
1333 CGF.OutermostConditional = nullptr;
1334 }
1335
1337 CGF.OutermostConditional = SavedOutermostConditional;
1338 CGF.EnsureInsertPoint();
1339 }
1340 };
1341
1342 /// An object which temporarily prevents a value from being
1343 /// destroyed by aggressive peephole optimizations that assume that
1344 /// all uses of a value have been realized in the IR.
1346 llvm::Instruction *Inst = nullptr;
1347 friend class CodeGenFunction;
1348
1349 public:
1351 };
1352
1353 /// A non-RAII class containing all the information about a bound
1354 /// opaque value. OpaqueValueMapping, below, is a RAII wrapper for
1355 /// this which makes individual mappings very simple; using this
1356 /// class directly is useful when you have a variable number of
1357 /// opaque values or don't want the RAII functionality for some
1358 /// reason.
1360 const OpaqueValueExpr *OpaqueValue;
1361 bool BoundLValue;
1363
1365 bool boundLValue)
1366 : OpaqueValue(ov), BoundLValue(boundLValue) {}
1367 public:
1368 OpaqueValueMappingData() : OpaqueValue(nullptr) {}
1369
1370 static bool shouldBindAsLValue(const Expr *expr) {
1371 // gl-values should be bound as l-values for obvious reasons.
1372 // Records should be bound as l-values because IR generation
1373 // always keeps them in memory. Expressions of function type
1374 // act exactly like l-values but are formally required to be
1375 // r-values in C.
1376 return expr->isGLValue() ||
1377 expr->getType()->isFunctionType() ||
1378 hasAggregateEvaluationKind(expr->getType());
1379 }
1380
1382 const OpaqueValueExpr *ov,
1383 const Expr *e) {
1384 if (shouldBindAsLValue(ov))
1385 return bind(CGF, ov, CGF.EmitLValue(e));
1386 return bind(CGF, ov, CGF.EmitAnyExpr(e));
1387 }
1388
1390 const OpaqueValueExpr *ov,
1391 const LValue &lv) {
1392 assert(shouldBindAsLValue(ov));
1393 CGF.OpaqueLValues.insert(std::make_pair(ov, lv));
1394 return OpaqueValueMappingData(ov, true);
1395 }
1396
1398 const OpaqueValueExpr *ov,
1399 const RValue &rv) {
1400 assert(!shouldBindAsLValue(ov));
1401 CGF.OpaqueRValues.insert(std::make_pair(ov, rv));
1402
1403 OpaqueValueMappingData data(ov, false);
1404
1405 // Work around an extremely aggressive peephole optimization in
1406 // EmitScalarConversion which assumes that all other uses of a
1407 // value are extant.
1408 data.Protection = CGF.protectFromPeepholes(rv);
1409
1410 return data;
1411 }
1412
1413 bool isValid() const { return OpaqueValue != nullptr; }
1414 void clear() { OpaqueValue = nullptr; }
1415
1417 assert(OpaqueValue && "no data to unbind!");
1418
1419 if (BoundLValue) {
1420 CGF.OpaqueLValues.erase(OpaqueValue);
1421 } else {
1422 CGF.OpaqueRValues.erase(OpaqueValue);
1423 CGF.unprotectFromPeepholes(Protection);
1424 }
1425 }
1426 };
1427
1428 /// An RAII object to set (and then clear) a mapping for an OpaqueValueExpr.
1430 CodeGenFunction &CGF;
1432
1433 public:
1434 static bool shouldBindAsLValue(const Expr *expr) {
1436 }
1437
1438 /// Build the opaque value mapping for the given conditional
1439 /// operator if it's the GNU ?: extension. This is a common
1440 /// enough pattern that the convenience operator is really
1441 /// helpful.
1442 ///
1444 const AbstractConditionalOperator *op) : CGF(CGF) {
1445 if (isa<ConditionalOperator>(op))
1446 // Leave Data empty.
1447 return;
1448
1449 const BinaryConditionalOperator *e = cast<BinaryConditionalOperator>(op);
1451 e->getCommon());
1452 }
1453
1454 /// Build the opaque value mapping for an OpaqueValueExpr whose source
1455 /// expression is set to the expression the OVE represents.
1457 : CGF(CGF) {
1458 if (OV) {
1459 assert(OV->getSourceExpr() && "wrong form of OpaqueValueMapping used "
1460 "for OVE with no source expression");
1462 }
1463 }
1464
1466 const OpaqueValueExpr *opaqueValue,
1467 LValue lvalue)
1468 : CGF(CGF), Data(OpaqueValueMappingData::bind(CGF, opaqueValue, lvalue)) {
1469 }
1470
1472 const OpaqueValueExpr *opaqueValue,
1473 RValue rvalue)
1474 : CGF(CGF), Data(OpaqueValueMappingData::bind(CGF, opaqueValue, rvalue)) {
1475 }
1476
1477 void pop() {
1478 Data.unbind(CGF);
1479 Data.clear();
1480 }
1481
1483 if (Data.isValid()) Data.unbind(CGF);
1484 }
1485 };
1486
1487private:
1488 CGDebugInfo *DebugInfo;
1489 /// Used to create unique names for artificial VLA size debug info variables.
1490 unsigned VLAExprCounter = 0;
1491 bool DisableDebugInfo = false;
1492
1493 /// DidCallStackSave - Whether llvm.stacksave has been called. Used to avoid
1494 /// calling llvm.stacksave for multiple VLAs in the same scope.
1495 bool DidCallStackSave = false;
1496
1497 /// IndirectBranch - The first time an indirect goto is seen we create a block
1498 /// with an indirect branch. Every time we see the address of a label taken,
1499 /// we add the label to the indirect goto. Every subsequent indirect goto is
1500 /// codegen'd as a jump to the IndirectBranch's basic block.
1501 llvm::IndirectBrInst *IndirectBranch = nullptr;
1502
1503 /// LocalDeclMap - This keeps track of the LLVM allocas or globals for local C
1504 /// decls.
1505 DeclMapTy LocalDeclMap;
1506
1507 // Keep track of the cleanups for callee-destructed parameters pushed to the
1508 // cleanup stack so that they can be deactivated later.
1509 llvm::DenseMap<const ParmVarDecl *, EHScopeStack::stable_iterator>
1510 CalleeDestructedParamCleanups;
1511
1512 /// SizeArguments - If a ParmVarDecl had the pass_object_size attribute, this
1513 /// will contain a mapping from said ParmVarDecl to its implicit "object_size"
1514 /// parameter.
1515 llvm::SmallDenseMap<const ParmVarDecl *, const ImplicitParamDecl *, 2>
1516 SizeArguments;
1517
1518 /// Track escaped local variables with auto storage. Used during SEH
1519 /// outlining to produce a call to llvm.localescape.
1520 llvm::DenseMap<llvm::AllocaInst *, int> EscapedLocals;
1521
1522 /// LabelMap - This keeps track of the LLVM basic block for each C label.
1523 llvm::DenseMap<const LabelDecl*, JumpDest> LabelMap;
1524
1525 // BreakContinueStack - This keeps track of where break and continue
1526 // statements should jump to.
1527 struct BreakContinue {
1528 BreakContinue(JumpDest Break, JumpDest Continue)
1529 : BreakBlock(Break), ContinueBlock(Continue) {}
1530
1531 JumpDest BreakBlock;
1532 JumpDest ContinueBlock;
1533 };
1534 SmallVector<BreakContinue, 8> BreakContinueStack;
1535
1536 /// Handles cancellation exit points in OpenMP-related constructs.
1537 class OpenMPCancelExitStack {
1538 /// Tracks cancellation exit point and join point for cancel-related exit
1539 /// and normal exit.
1540 struct CancelExit {
1541 CancelExit() = default;
1542 CancelExit(OpenMPDirectiveKind Kind, JumpDest ExitBlock,
1543 JumpDest ContBlock)
1544 : Kind(Kind), ExitBlock(ExitBlock), ContBlock(ContBlock) {}
1545 OpenMPDirectiveKind Kind = llvm::omp::OMPD_unknown;
1546 /// true if the exit block has been emitted already by the special
1547 /// emitExit() call, false if the default codegen is used.
1548 bool HasBeenEmitted = false;
1549 JumpDest ExitBlock;
1550 JumpDest ContBlock;
1551 };
1552
1553 SmallVector<CancelExit, 8> Stack;
1554
1555 public:
1556 OpenMPCancelExitStack() : Stack(1) {}
1557 ~OpenMPCancelExitStack() = default;
1558 /// Fetches the exit block for the current OpenMP construct.
1559 JumpDest getExitBlock() const { return Stack.back().ExitBlock; }
1560 /// Emits exit block with special codegen procedure specific for the related
1561 /// OpenMP construct + emits code for normal construct cleanup.
1562 void emitExit(CodeGenFunction &CGF, OpenMPDirectiveKind Kind,
1563 const llvm::function_ref<void(CodeGenFunction &)> CodeGen) {
1564 if (Stack.back().Kind == Kind && getExitBlock().isValid()) {
1565 assert(CGF.getOMPCancelDestination(Kind).isValid());
1566 assert(CGF.HaveInsertPoint());
1567 assert(!Stack.back().HasBeenEmitted);
1568 auto IP = CGF.Builder.saveAndClearIP();
1569 CGF.EmitBlock(Stack.back().ExitBlock.getBlock());
1570 CodeGen(CGF);
1571 CGF.EmitBranch(Stack.back().ContBlock.getBlock());
1572 CGF.Builder.restoreIP(IP);
1573 Stack.back().HasBeenEmitted = true;
1574 }
1575 CodeGen(CGF);
1576 }
1577 /// Enter the cancel supporting \a Kind construct.
1578 /// \param Kind OpenMP directive that supports cancel constructs.
1579 /// \param HasCancel true, if the construct has inner cancel directive,
1580 /// false otherwise.
1581 void enter(CodeGenFunction &CGF, OpenMPDirectiveKind Kind, bool HasCancel) {
1582 Stack.push_back({Kind,
1583 HasCancel ? CGF.getJumpDestInCurrentScope("cancel.exit")
1584 : JumpDest(),
1585 HasCancel ? CGF.getJumpDestInCurrentScope("cancel.cont")
1586 : JumpDest()});
1587 }
1588 /// Emits default exit point for the cancel construct (if the special one
1589 /// has not be used) + join point for cancel/normal exits.
1590 void exit(CodeGenFunction &CGF) {
1591 if (getExitBlock().isValid()) {
1592 assert(CGF.getOMPCancelDestination(Stack.back().Kind).isValid());
1593 bool HaveIP = CGF.HaveInsertPoint();
1594 if (!Stack.back().HasBeenEmitted) {
1595 if (HaveIP)
1596 CGF.EmitBranchThroughCleanup(Stack.back().ContBlock);
1597 CGF.EmitBlock(Stack.back().ExitBlock.getBlock());
1598 CGF.EmitBranchThroughCleanup(Stack.back().ContBlock);
1599 }
1600 CGF.EmitBlock(Stack.back().ContBlock.getBlock());
1601 if (!HaveIP) {
1602 CGF.Builder.CreateUnreachable();
1603 CGF.Builder.ClearInsertionPoint();
1604 }
1605 }
1606 Stack.pop_back();
1607 }
1608 };
1609 OpenMPCancelExitStack OMPCancelStack;
1610
1611 /// Lower the Likelihood knowledge about the \p Cond via llvm.expect intrin.
1612 llvm::Value *emitCondLikelihoodViaExpectIntrinsic(llvm::Value *Cond,
1613 Stmt::Likelihood LH);
1614
1615 CodeGenPGO PGO;
1616
1617 /// Bitmap used by MC/DC to track condition outcomes of a boolean expression.
1618 Address MCDCCondBitmapAddr = Address::invalid();
1619
1620 /// Calculate branch weights appropriate for PGO data
1621 llvm::MDNode *createProfileWeights(uint64_t TrueCount,
1622 uint64_t FalseCount) const;
1623 llvm::MDNode *createProfileWeights(ArrayRef<uint64_t> Weights) const;
1624 llvm::MDNode *createProfileWeightsForLoop(const Stmt *Cond,
1625 uint64_t LoopCount) const;
1626
1627public:
1628 auto getIsCounterPair(const Stmt *S) const { return PGO.getIsCounterPair(S); }
1629
1630 void markStmtAsUsed(bool Skipped, const Stmt *S) {
1631 PGO.markStmtAsUsed(Skipped, S);
1632 }
1633 void markStmtMaybeUsed(const Stmt *S) { PGO.markStmtMaybeUsed(S); }
1634
1635 /// Increment the profiler's counter for the given statement by \p StepV.
1636 /// If \p StepV is null, the default increment is 1.
1637 void incrementProfileCounter(const Stmt *S, llvm::Value *StepV = nullptr) {
1639 !CurFn->hasFnAttribute(llvm::Attribute::NoProfile) &&
1640 !CurFn->hasFnAttribute(llvm::Attribute::SkipProfile)) {
1641 auto AL = ApplyDebugLocation::CreateArtificial(*this);
1642 PGO.emitCounterSetOrIncrement(Builder, S, StepV);
1643 }
1644 PGO.setCurrentStmt(S);
1645 }
1646
1649 CGM.getCodeGenOpts().MCDCCoverage &&
1650 !CurFn->hasFnAttribute(llvm::Attribute::NoProfile));
1651 }
1652
1653 /// Allocate a temp value on the stack that MCDC can use to track condition
1654 /// results.
1656 if (isMCDCCoverageEnabled()) {
1657 PGO.emitMCDCParameters(Builder);
1658 MCDCCondBitmapAddr =
1659 CreateIRTemp(getContext().UnsignedIntTy, "mcdc.addr");
1660 }
1661 }
1662
1663 bool isBinaryLogicalOp(const Expr *E) const {
1664 const BinaryOperator *BOp = dyn_cast<BinaryOperator>(E->IgnoreParens());
1665 return (BOp && BOp->isLogicalOp());
1666 }
1667
1668 /// Zero-init the MCDC temp value.
1671 PGO.emitMCDCCondBitmapReset(Builder, E, MCDCCondBitmapAddr);
1672 PGO.setCurrentStmt(E);
1673 }
1674 }
1675
1676 /// Increment the profiler's counter for the given expression by \p StepV.
1677 /// If \p StepV is null, the default increment is 1.
1680 PGO.emitMCDCTestVectorBitmapUpdate(Builder, E, MCDCCondBitmapAddr, *this);
1681 PGO.setCurrentStmt(E);
1682 }
1683 }
1684
1685 /// Update the MCDC temp value with the condition's evaluated result.
1686 void maybeUpdateMCDCCondBitmap(const Expr *E, llvm::Value *Val) {
1687 if (isMCDCCoverageEnabled()) {
1688 PGO.emitMCDCCondBitmapUpdate(Builder, E, MCDCCondBitmapAddr, Val, *this);
1689 PGO.setCurrentStmt(E);
1690 }
1691 }
1692
1693 /// Get the profiler's count for the given statement.
1694 uint64_t getProfileCount(const Stmt *S) {
1695 return PGO.getStmtCount(S).value_or(0);
1696 }
1697
1698 /// Set the profiler's current count.
1699 void setCurrentProfileCount(uint64_t Count) {
1700 PGO.setCurrentRegionCount(Count);
1701 }
1702
1703 /// Get the profiler's current count. This is generally the count for the most
1704 /// recently incremented counter.
1706 return PGO.getCurrentRegionCount();
1707 }
1708
1709private:
1710
1711 /// SwitchInsn - This is nearest current switch instruction. It is null if
1712 /// current context is not in a switch.
1713 llvm::SwitchInst *SwitchInsn = nullptr;
1714 /// The branch weights of SwitchInsn when doing instrumentation based PGO.
1715 SmallVector<uint64_t, 16> *SwitchWeights = nullptr;
1716
1717 /// The likelihood attributes of the SwitchCase.
1718 SmallVector<Stmt::Likelihood, 16> *SwitchLikelihood = nullptr;
1719
1720 /// CaseRangeBlock - This block holds if condition check for last case
1721 /// statement range in current switch instruction.
1722 llvm::BasicBlock *CaseRangeBlock = nullptr;
1723
1724 /// OpaqueLValues - Keeps track of the current set of opaque value
1725 /// expressions.
1726 llvm::DenseMap<const OpaqueValueExpr *, LValue> OpaqueLValues;
1727 llvm::DenseMap<const OpaqueValueExpr *, RValue> OpaqueRValues;
1728
1729 // VLASizeMap - This keeps track of the associated size for each VLA type.
1730 // We track this by the size expression rather than the type itself because
1731 // in certain situations, like a const qualifier applied to an VLA typedef,
1732 // multiple VLA types can share the same size expression.
1733 // FIXME: Maybe this could be a stack of maps that is pushed/popped as we
1734 // enter/leave scopes.
1735 llvm::DenseMap<const Expr*, llvm::Value*> VLASizeMap;
1736
1737 /// A block containing a single 'unreachable' instruction. Created
1738 /// lazily by getUnreachableBlock().
1739 llvm::BasicBlock *UnreachableBlock = nullptr;
1740
1741 /// Counts of the number return expressions in the function.
1742 unsigned NumReturnExprs = 0;
1743
1744 /// Count the number of simple (constant) return expressions in the function.
1745 unsigned NumSimpleReturnExprs = 0;
1746
1747 /// The last regular (non-return) debug location (breakpoint) in the function.
1748 SourceLocation LastStopPoint;
1749
1750public:
1751 /// Source location information about the default argument or member
1752 /// initializer expression we're evaluating, if any.
1756
1757 /// A scope within which we are constructing the fields of an object which
1758 /// might use a CXXDefaultInitExpr. This stashes away a 'this' value to use
1759 /// if we need to evaluate a CXXDefaultInitExpr within the evaluation.
1761 public:
1763 : CGF(CGF), OldCXXDefaultInitExprThis(CGF.CXXDefaultInitExprThis) {
1764 CGF.CXXDefaultInitExprThis = This;
1765 }
1767 CGF.CXXDefaultInitExprThis = OldCXXDefaultInitExprThis;
1768 }
1769
1770 private:
1771 CodeGenFunction &CGF;
1772 Address OldCXXDefaultInitExprThis;
1773 };
1774
1775 /// The scope of a CXXDefaultInitExpr. Within this scope, the value of 'this'
1776 /// is overridden to be the object under construction.
1778 public:
1780 : CGF(CGF), OldCXXThisValue(CGF.CXXThisValue),
1781 OldCXXThisAlignment(CGF.CXXThisAlignment),
1783 CGF.CXXThisValue = CGF.CXXDefaultInitExprThis.getBasePointer();
1784 CGF.CXXThisAlignment = CGF.CXXDefaultInitExprThis.getAlignment();
1785 }
1787 CGF.CXXThisValue = OldCXXThisValue;
1788 CGF.CXXThisAlignment = OldCXXThisAlignment;
1789 }
1790
1791 public:
1793 llvm::Value *OldCXXThisValue;
1796 };
1797
1801 };
1802
1803 /// The scope of an ArrayInitLoopExpr. Within this scope, the value of the
1804 /// current loop index is overridden.
1806 public:
1807 ArrayInitLoopExprScope(CodeGenFunction &CGF, llvm::Value *Index)
1808 : CGF(CGF), OldArrayInitIndex(CGF.ArrayInitIndex) {
1809 CGF.ArrayInitIndex = Index;
1810 }
1812 CGF.ArrayInitIndex = OldArrayInitIndex;
1813 }
1814
1815 private:
1816 CodeGenFunction &CGF;
1817 llvm::Value *OldArrayInitIndex;
1818 };
1819
1821 public:
1823 : CGF(CGF), OldCurGD(CGF.CurGD), OldCurFuncDecl(CGF.CurFuncDecl),
1824 OldCurCodeDecl(CGF.CurCodeDecl),
1825 OldCXXABIThisDecl(CGF.CXXABIThisDecl),
1826 OldCXXABIThisValue(CGF.CXXABIThisValue),
1827 OldCXXThisValue(CGF.CXXThisValue),
1828 OldCXXABIThisAlignment(CGF.CXXABIThisAlignment),
1829 OldCXXThisAlignment(CGF.CXXThisAlignment),
1830 OldReturnValue(CGF.ReturnValue), OldFnRetTy(CGF.FnRetTy),
1831 OldCXXInheritedCtorInitExprArgs(
1832 std::move(CGF.CXXInheritedCtorInitExprArgs)) {
1833 CGF.CurGD = GD;
1834 CGF.CurFuncDecl = CGF.CurCodeDecl =
1835 cast<CXXConstructorDecl>(GD.getDecl());
1836 CGF.CXXABIThisDecl = nullptr;
1837 CGF.CXXABIThisValue = nullptr;
1838 CGF.CXXThisValue = nullptr;
1839 CGF.CXXABIThisAlignment = CharUnits();
1840 CGF.CXXThisAlignment = CharUnits();
1842 CGF.FnRetTy = QualType();
1843 CGF.CXXInheritedCtorInitExprArgs.clear();
1844 }
1846 CGF.CurGD = OldCurGD;
1847 CGF.CurFuncDecl = OldCurFuncDecl;
1848 CGF.CurCodeDecl = OldCurCodeDecl;
1849 CGF.CXXABIThisDecl = OldCXXABIThisDecl;
1850 CGF.CXXABIThisValue = OldCXXABIThisValue;
1851 CGF.CXXThisValue = OldCXXThisValue;
1852 CGF.CXXABIThisAlignment = OldCXXABIThisAlignment;
1853 CGF.CXXThisAlignment = OldCXXThisAlignment;
1854 CGF.ReturnValue = OldReturnValue;
1855 CGF.FnRetTy = OldFnRetTy;
1856 CGF.CXXInheritedCtorInitExprArgs =
1857 std::move(OldCXXInheritedCtorInitExprArgs);
1858 }
1859
1860 private:
1861 CodeGenFunction &CGF;
1862 GlobalDecl OldCurGD;
1863 const Decl *OldCurFuncDecl;
1864 const Decl *OldCurCodeDecl;
1865 ImplicitParamDecl *OldCXXABIThisDecl;
1866 llvm::Value *OldCXXABIThisValue;
1867 llvm::Value *OldCXXThisValue;
1868 CharUnits OldCXXABIThisAlignment;
1869 CharUnits OldCXXThisAlignment;
1870 Address OldReturnValue;
1871 QualType OldFnRetTy;
1872 CallArgList OldCXXInheritedCtorInitExprArgs;
1873 };
1874
1875 // Helper class for the OpenMP IR Builder. Allows reusability of code used for
1876 // region body, and finalization codegen callbacks. This will class will also
1877 // contain privatization functions used by the privatization call backs
1878 //
1879 // TODO: this is temporary class for things that are being moved out of
1880 // CGOpenMPRuntime, new versions of current CodeGenFunction methods, or
1881 // utility function for use with the OMPBuilder. Once that move to use the
1882 // OMPBuilder is done, everything here will either become part of CodeGenFunc.
1883 // directly, or a new helper class that will contain functions used by both
1884 // this and the OMPBuilder
1885
1887
1891
1892 using InsertPointTy = llvm::OpenMPIRBuilder::InsertPointTy;
1893
1894 /// Cleanup action for allocate support.
1896
1897 private:
1898 llvm::CallInst *RTLFnCI;
1899
1900 public:
1901 OMPAllocateCleanupTy(llvm::CallInst *RLFnCI) : RTLFnCI(RLFnCI) {
1902 RLFnCI->removeFromParent();
1903 }
1904
1905 void Emit(CodeGenFunction &CGF, Flags /*flags*/) override {
1906 if (!CGF.HaveInsertPoint())
1907 return;
1908 CGF.Builder.Insert(RTLFnCI);
1909 }
1910 };
1911
1912 /// Returns address of the threadprivate variable for the current
1913 /// thread. This Also create any necessary OMP runtime calls.
1914 ///
1915 /// \param VD VarDecl for Threadprivate variable.
1916 /// \param VDAddr Address of the Vardecl
1917 /// \param Loc The location where the barrier directive was encountered
1919 const VarDecl *VD, Address VDAddr,
1921
1922 /// Gets the OpenMP-specific address of the local variable /p VD.
1924 const VarDecl *VD);
1925 /// Get the platform-specific name separator.
1926 /// \param Parts different parts of the final name that needs separation
1927 /// \param FirstSeparator First separator used between the initial two
1928 /// parts of the name.
1929 /// \param Separator separator used between all of the rest consecutinve
1930 /// parts of the name
1931 static std::string getNameWithSeparators(ArrayRef<StringRef> Parts,
1932 StringRef FirstSeparator = ".",
1933 StringRef Separator = ".");
1934 /// Emit the Finalization for an OMP region
1935 /// \param CGF The Codegen function this belongs to
1936 /// \param IP Insertion point for generating the finalization code.
1938 CGBuilderTy::InsertPointGuard IPG(CGF.Builder);
1939 assert(IP.getBlock()->end() != IP.getPoint() &&
1940 "OpenMP IR Builder should cause terminated block!");
1941
1942 llvm::BasicBlock *IPBB = IP.getBlock();
1943 llvm::BasicBlock *DestBB = IPBB->getUniqueSuccessor();
1944 assert(DestBB && "Finalization block should have one successor!");
1945
1946 // erase and replace with cleanup branch.
1947 IPBB->getTerminator()->eraseFromParent();
1948 CGF.Builder.SetInsertPoint(IPBB);
1950 CGF.EmitBranchThroughCleanup(Dest);
1951 }
1952
1953 /// Emit the body of an OMP region
1954 /// \param CGF The Codegen function this belongs to
1955 /// \param RegionBodyStmt The body statement for the OpenMP region being
1956 /// generated
1957 /// \param AllocaIP Where to insert alloca instructions
1958 /// \param CodeGenIP Where to insert the region code
1959 /// \param RegionName Name to be used for new blocks
1961 const Stmt *RegionBodyStmt,
1962 InsertPointTy AllocaIP,
1963 InsertPointTy CodeGenIP,
1964 Twine RegionName);
1965
1966 static void EmitCaptureStmt(CodeGenFunction &CGF, InsertPointTy CodeGenIP,
1967 llvm::BasicBlock &FiniBB, llvm::Function *Fn,
1969 llvm::BasicBlock *CodeGenIPBB = CodeGenIP.getBlock();
1970 if (llvm::Instruction *CodeGenIPBBTI = CodeGenIPBB->getTerminator())
1971 CodeGenIPBBTI->eraseFromParent();
1972
1973 CGF.Builder.SetInsertPoint(CodeGenIPBB);
1974
1975 if (Fn->doesNotThrow())
1976 CGF.EmitNounwindRuntimeCall(Fn, Args);
1977 else
1978 CGF.EmitRuntimeCall(Fn, Args);
1979
1980 if (CGF.Builder.saveIP().isSet())
1981 CGF.Builder.CreateBr(&FiniBB);
1982 }
1983
1984 /// Emit the body of an OMP region that will be outlined in
1985 /// OpenMPIRBuilder::finalize().
1986 /// \param CGF The Codegen function this belongs to
1987 /// \param RegionBodyStmt The body statement for the OpenMP region being
1988 /// generated
1989 /// \param AllocaIP Where to insert alloca instructions
1990 /// \param CodeGenIP Where to insert the region code
1991 /// \param RegionName Name to be used for new blocks
1993 const Stmt *RegionBodyStmt,
1994 InsertPointTy AllocaIP,
1995 InsertPointTy CodeGenIP,
1996 Twine RegionName);
1997
1998 /// RAII for preserving necessary info during Outlined region body codegen.
2000
2001 llvm::AssertingVH<llvm::Instruction> OldAllocaIP;
2002 CodeGenFunction::JumpDest OldReturnBlock;
2003 CodeGenFunction &CGF;
2004
2005 public:
2007 llvm::BasicBlock &RetBB)
2008 : CGF(cgf) {
2009 assert(AllocaIP.isSet() &&
2010 "Must specify Insertion point for allocas of outlined function");
2011 OldAllocaIP = CGF.AllocaInsertPt;
2012 CGF.AllocaInsertPt = &*AllocaIP.getPoint();
2013
2014 OldReturnBlock = CGF.ReturnBlock;
2015 CGF.ReturnBlock = CGF.getJumpDestInCurrentScope(&RetBB);
2016 }
2017
2019 CGF.AllocaInsertPt = OldAllocaIP;
2020 CGF.ReturnBlock = OldReturnBlock;
2021 }
2022 };
2023
2024 /// RAII for preserving necessary info during inlined region body codegen.
2026
2027 llvm::AssertingVH<llvm::Instruction> OldAllocaIP;
2028 CodeGenFunction &CGF;
2029
2030 public:
2032 llvm::BasicBlock &FiniBB)
2033 : CGF(cgf) {
2034 // Alloca insertion block should be in the entry block of the containing
2035 // function so it expects an empty AllocaIP in which case will reuse the
2036 // old alloca insertion point, or a new AllocaIP in the same block as
2037 // the old one
2038 assert((!AllocaIP.isSet() ||
2039 CGF.AllocaInsertPt->getParent() == AllocaIP.getBlock()) &&
2040 "Insertion point should be in the entry block of containing "
2041 "function!");
2042 OldAllocaIP = CGF.AllocaInsertPt;
2043 if (AllocaIP.isSet())
2044 CGF.AllocaInsertPt = &*AllocaIP.getPoint();
2045
2046 // TODO: Remove the call, after making sure the counter is not used by
2047 // the EHStack.
2048 // Since this is an inlined region, it should not modify the
2049 // ReturnBlock, and should reuse the one for the enclosing outlined
2050 // region. So, the JumpDest being return by the function is discarded
2051 (void)CGF.getJumpDestInCurrentScope(&FiniBB);
2052 }
2053
2055 };
2056 };
2057
2058private:
2059 /// CXXThisDecl - When generating code for a C++ member function,
2060 /// this will hold the implicit 'this' declaration.
2061 ImplicitParamDecl *CXXABIThisDecl = nullptr;
2062 llvm::Value *CXXABIThisValue = nullptr;
2063 llvm::Value *CXXThisValue = nullptr;
2064 CharUnits CXXABIThisAlignment;
2065 CharUnits CXXThisAlignment;
2066
2067 /// The value of 'this' to use when evaluating CXXDefaultInitExprs within
2068 /// this expression.
2069 Address CXXDefaultInitExprThis = Address::invalid();
2070
2071 /// The current array initialization index when evaluating an
2072 /// ArrayInitIndexExpr within an ArrayInitLoopExpr.
2073 llvm::Value *ArrayInitIndex = nullptr;
2074
2075 /// The values of function arguments to use when evaluating
2076 /// CXXInheritedCtorInitExprs within this context.
2077 CallArgList CXXInheritedCtorInitExprArgs;
2078
2079 /// CXXStructorImplicitParamDecl - When generating code for a constructor or
2080 /// destructor, this will hold the implicit argument (e.g. VTT).
2081 ImplicitParamDecl *CXXStructorImplicitParamDecl = nullptr;
2082 llvm::Value *CXXStructorImplicitParamValue = nullptr;
2083
2084 /// OutermostConditional - Points to the outermost active
2085 /// conditional control. This is used so that we know if a
2086 /// temporary should be destroyed conditionally.
2087 ConditionalEvaluation *OutermostConditional = nullptr;
2088
2089 /// The current lexical scope.
2090 LexicalScope *CurLexicalScope = nullptr;
2091
2092 /// The current source location that should be used for exception
2093 /// handling code.
2094 SourceLocation CurEHLocation;
2095
2096 /// BlockByrefInfos - For each __block variable, contains
2097 /// information about the layout of the variable.
2098 llvm::DenseMap<const ValueDecl *, BlockByrefInfo> BlockByrefInfos;
2099
2100 /// Used by -fsanitize=nullability-return to determine whether the return
2101 /// value can be checked.
2102 llvm::Value *RetValNullabilityPrecondition = nullptr;
2103
2104 /// Check if -fsanitize=nullability-return instrumentation is required for
2105 /// this function.
2106 bool requiresReturnValueNullabilityCheck() const {
2107 return RetValNullabilityPrecondition;
2108 }
2109
2110 /// Used to store precise source locations for return statements by the
2111 /// runtime return value checks.
2112 Address ReturnLocation = Address::invalid();
2113
2114 /// Check if the return value of this function requires sanitization.
2115 bool requiresReturnValueCheck() const;
2116
2117 bool isInAllocaArgument(CGCXXABI &ABI, QualType Ty);
2118 bool hasInAllocaArg(const CXXMethodDecl *MD);
2119
2120 llvm::BasicBlock *TerminateLandingPad = nullptr;
2121 llvm::BasicBlock *TerminateHandler = nullptr;
2123
2124 /// Terminate funclets keyed by parent funclet pad.
2125 llvm::MapVector<llvm::Value *, llvm::BasicBlock *> TerminateFunclets;
2126
2127 /// Largest vector width used in ths function. Will be used to create a
2128 /// function attribute.
2129 unsigned LargestVectorWidth = 0;
2130
2131 /// True if we need emit the life-time markers. This is initially set in
2132 /// the constructor, but could be overwritten to true if this is a coroutine.
2133 bool ShouldEmitLifetimeMarkers;
2134
2135 /// Add OpenCL kernel arg metadata and the kernel attribute metadata to
2136 /// the function metadata.
2137 void EmitKernelMetadata(const FunctionDecl *FD, llvm::Function *Fn);
2138
2139public:
2140 CodeGenFunction(CodeGenModule &cgm, bool suppressNewContext=false);
2142
2143 CodeGenTypes &getTypes() const { return CGM.getTypes(); }
2144 ASTContext &getContext() const { return CGM.getContext(); }
2146 if (DisableDebugInfo)
2147 return nullptr;
2148 return DebugInfo;
2149 }
2150 void disableDebugInfo() { DisableDebugInfo = true; }
2151 void enableDebugInfo() { DisableDebugInfo = false; }
2152
2154 return CGM.getCodeGenOpts().OptimizationLevel == 0;
2155 }
2156
2157 const LangOptions &getLangOpts() const { return CGM.getLangOpts(); }
2158
2159 /// Returns a pointer to the function's exception object and selector slot,
2160 /// which is assigned in every landing pad.
2163
2164 /// Returns the contents of the function's exception object and selector
2165 /// slots.
2166 llvm::Value *getExceptionFromSlot();
2167 llvm::Value *getSelectorFromSlot();
2168
2170
2171 llvm::BasicBlock *getUnreachableBlock() {
2172 if (!UnreachableBlock) {
2173 UnreachableBlock = createBasicBlock("unreachable");
2174 new llvm::UnreachableInst(getLLVMContext(), UnreachableBlock);
2175 }
2176 return UnreachableBlock;
2177 }
2178
2179 llvm::BasicBlock *getInvokeDest() {
2180 if (!EHStack.requiresLandingPad()) return nullptr;
2181 return getInvokeDestImpl();
2182 }
2183
2184 bool currentFunctionUsesSEHTry() const { return !!CurSEHParent; }
2185
2186 const TargetInfo &getTarget() const { return Target; }
2187 llvm::LLVMContext &getLLVMContext() { return CGM.getLLVMContext(); }
2189 return CGM.getTargetCodeGenInfo();
2190 }
2191
2192 //===--------------------------------------------------------------------===//
2193 // Cleanups
2194 //===--------------------------------------------------------------------===//
2195
2196 typedef void Destroyer(CodeGenFunction &CGF, Address addr, QualType ty);
2197
2198 void pushIrregularPartialArrayCleanup(llvm::Value *arrayBegin,
2199 Address arrayEndPointer,
2200 QualType elementType,
2201 CharUnits elementAlignment,
2202 Destroyer *destroyer);
2203 void pushRegularPartialArrayCleanup(llvm::Value *arrayBegin,
2204 llvm::Value *arrayEnd,
2205 QualType elementType,
2206 CharUnits elementAlignment,
2207 Destroyer *destroyer);
2208
2210 Address addr, QualType type);
2212 Address addr, QualType type);
2214 Destroyer *destroyer, bool useEHCleanupForArray);
2216 Address addr, QualType type);
2218 QualType type, Destroyer *destroyer,
2219 bool useEHCleanupForArray);
2221 QualType type, Destroyer *destroyer,
2222 bool useEHCleanupForArray);
2223 void pushCallObjectDeleteCleanup(const FunctionDecl *OperatorDelete,
2224 llvm::Value *CompletePtr,
2225 QualType ElementType);
2228 std::pair<llvm::Value *, llvm::Value *> AddrSizePair);
2230 bool useEHCleanupForArray);
2232 Destroyer *destroyer,
2233 bool useEHCleanupForArray,
2234 const VarDecl *VD);
2235 void emitArrayDestroy(llvm::Value *begin, llvm::Value *end,
2236 QualType elementType, CharUnits elementAlign,
2237 Destroyer *destroyer,
2238 bool checkZeroLength, bool useEHCleanup);
2239
2241
2242 /// Determines whether an EH cleanup is required to destroy a type
2243 /// with the given destruction kind.
2245 switch (kind) {
2246 case QualType::DK_none:
2247 return false;
2251 return getLangOpts().Exceptions;
2253 return getLangOpts().Exceptions &&
2254 CGM.getCodeGenOpts().ObjCAutoRefCountExceptions;
2255 }
2256 llvm_unreachable("bad destruction kind");
2257 }
2258
2261 }
2262
2263 //===--------------------------------------------------------------------===//
2264 // Objective-C
2265 //===--------------------------------------------------------------------===//
2266
2268
2270
2271 /// GenerateObjCGetter - Synthesize an Objective-C property getter function.
2273 const ObjCPropertyImplDecl *PID);
2275 const ObjCPropertyImplDecl *propImpl,
2276 const ObjCMethodDecl *GetterMothodDecl,
2277 llvm::Constant *AtomicHelperFn);
2278
2280 ObjCMethodDecl *MD, bool ctor);
2281
2282 /// GenerateObjCSetter - Synthesize an Objective-C property setter function
2283 /// for the given property.
2285 const ObjCPropertyImplDecl *PID);
2287 const ObjCPropertyImplDecl *propImpl,
2288 llvm::Constant *AtomicHelperFn);
2289
2290 //===--------------------------------------------------------------------===//
2291 // Block Bits
2292 //===--------------------------------------------------------------------===//
2293
2294 /// Emit block literal.
2295 /// \return an LLVM value which is a pointer to a struct which contains
2296 /// information about the block, including the block invoke function, the
2297 /// captured variables, etc.
2298 llvm::Value *EmitBlockLiteral(const BlockExpr *);
2299
2301 const CGBlockInfo &Info,
2302 const DeclMapTy &ldm,
2303 bool IsLambdaConversionToBlock,
2304 bool BuildGlobalBlock);
2305
2306 /// Check if \p T is a C++ class that has a destructor that can throw.
2308
2309 llvm::Constant *GenerateCopyHelperFunction(const CGBlockInfo &blockInfo);
2310 llvm::Constant *GenerateDestroyHelperFunction(const CGBlockInfo &blockInfo);
2312 const ObjCPropertyImplDecl *PID);
2314 const ObjCPropertyImplDecl *PID);
2315 llvm::Value *EmitBlockCopyAndAutorelease(llvm::Value *Block, QualType Ty);
2316
2317 void BuildBlockRelease(llvm::Value *DeclPtr, BlockFieldFlags flags,
2318 bool CanThrow);
2319
2320 class AutoVarEmission;
2321
2323
2324 /// Enter a cleanup to destroy a __block variable. Note that this
2325 /// cleanup should be a no-op if the variable hasn't left the stack
2326 /// yet; if a cleanup is required for the variable itself, that needs
2327 /// to be done externally.
2328 ///
2329 /// \param Kind Cleanup kind.
2330 ///
2331 /// \param Addr When \p LoadBlockVarAddr is false, the address of the __block
2332 /// structure that will be passed to _Block_object_dispose. When
2333 /// \p LoadBlockVarAddr is true, the address of the field of the block
2334 /// structure that holds the address of the __block structure.
2335 ///
2336 /// \param Flags The flag that will be passed to _Block_object_dispose.
2337 ///
2338 /// \param LoadBlockVarAddr Indicates whether we need to emit a load from
2339 /// \p Addr to get the address of the __block structure.
2341 bool LoadBlockVarAddr, bool CanThrow);
2342
2343 void setBlockContextParameter(const ImplicitParamDecl *D, unsigned argNum,
2344 llvm::Value *ptr);
2345
2348
2349 /// BuildBlockByrefAddress - Computes the location of the
2350 /// data in a variable which is declared as __block.
2352 bool followForward = true);
2354 const BlockByrefInfo &info,
2355 bool followForward,
2356 const llvm::Twine &name);
2357
2359
2361
2362 void GenerateCode(GlobalDecl GD, llvm::Function *Fn,
2363 const CGFunctionInfo &FnInfo);
2364
2365 /// Annotate the function with an attribute that disables TSan checking at
2366 /// runtime.
2367 void markAsIgnoreThreadCheckingAtRuntime(llvm::Function *Fn);
2368
2369 /// Emit code for the start of a function.
2370 /// \param Loc The location to be associated with the function.
2371 /// \param StartLoc The location of the function body.
2373 QualType RetTy,
2374 llvm::Function *Fn,
2375 const CGFunctionInfo &FnInfo,
2376 const FunctionArgList &Args,
2378 SourceLocation StartLoc = SourceLocation());
2379
2381
2385 void EmitFunctionBody(const Stmt *Body);
2386 void EmitBlockWithFallThrough(llvm::BasicBlock *BB, const Stmt *S);
2387
2388 void EmitForwardingCallToLambda(const CXXMethodDecl *LambdaCallOperator,
2389 CallArgList &CallArgs,
2390 const CGFunctionInfo *CallOpFnInfo = nullptr,
2391 llvm::Constant *CallOpFn = nullptr);
2395 CallArgList &CallArgs);
2397 const CGFunctionInfo **ImplFnInfo,
2398 llvm::Function **ImplFn);
2401 EmitStoreThroughLValue(RValue::get(VLASizeMap[VAT->getSizeExpr()]), LV);
2402 }
2403 void EmitAsanPrologueOrEpilogue(bool Prologue);
2404
2405 /// Emit the unified return block, trying to avoid its emission when
2406 /// possible.
2407 /// \return The debug location of the user written return statement if the
2408 /// return block is avoided.
2409 llvm::DebugLoc EmitReturnBlock();
2410
2411 /// FinishFunction - Complete IR generation of the current function. It is
2412 /// legal to call this function even if there is no current insertion point.
2414
2415 void StartThunk(llvm::Function *Fn, GlobalDecl GD,
2416 const CGFunctionInfo &FnInfo, bool IsUnprototyped);
2417
2418 void EmitCallAndReturnForThunk(llvm::FunctionCallee Callee,
2419 const ThunkInfo *Thunk, bool IsUnprototyped);
2420
2422
2423 /// Emit a musttail call for a thunk with a potentially adjusted this pointer.
2424 void EmitMustTailThunk(GlobalDecl GD, llvm::Value *AdjustedThisPtr,
2425 llvm::FunctionCallee Callee);
2426
2427 /// Generate a thunk for the given method.
2428 void generateThunk(llvm::Function *Fn, const CGFunctionInfo &FnInfo,
2429 GlobalDecl GD, const ThunkInfo &Thunk,
2430 bool IsUnprototyped);
2431
2432 llvm::Function *GenerateVarArgsThunk(llvm::Function *Fn,
2433 const CGFunctionInfo &FnInfo,
2434 GlobalDecl GD, const ThunkInfo &Thunk);
2435
2437 FunctionArgList &Args);
2438
2440
2441 /// Struct with all information about dynamic [sub]class needed to set vptr.
2442 struct VPtr {
2447 };
2448
2449 /// Initialize the vtable pointer of the given subobject.
2451
2453
2456
2458 CharUnits OffsetFromNearestVBase,
2459 bool BaseIsNonVirtualPrimaryBase,
2460 const CXXRecordDecl *VTableClass,
2461 VisitedVirtualBasesSetTy &VBases, VPtrsVector &vptrs);
2462
2464
2465 // VTableTrapMode - whether we guarantee that loading the
2466 // vtable is guaranteed to trap on authentication failure,
2467 // even if the resulting vtable pointer is unused.
2468 enum class VTableAuthMode {
2470 MustTrap,
2471 UnsafeUbsanStrip // Should only be used for Vptr UBSan check
2472 };
2473 /// GetVTablePtr - Return the Value of the vtable pointer member pointed
2474 /// to by This.
2475 llvm::Value *
2476 GetVTablePtr(Address This, llvm::Type *VTableTy,
2477 const CXXRecordDecl *VTableClass,
2479
2488 };
2489
2490 /// Derived is the presumed address of an object of type T after a
2491 /// cast. If T is a polymorphic class type, emit a check that the virtual
2492 /// table for Derived belongs to a class derived from T.
2493 void EmitVTablePtrCheckForCast(QualType T, Address Derived, bool MayBeNull,
2495
2496 /// EmitVTablePtrCheckForCall - Virtual method MD is being called via VTable.
2497 /// If vptr CFI is enabled, emit a check that VTable is valid.
2498 void EmitVTablePtrCheckForCall(const CXXRecordDecl *RD, llvm::Value *VTable,
2500
2501 /// EmitVTablePtrCheck - Emit a check that VTable is a valid virtual table for
2502 /// RD using llvm.type.test.
2503 void EmitVTablePtrCheck(const CXXRecordDecl *RD, llvm::Value *VTable,
2505
2506 /// If whole-program virtual table optimization is enabled, emit an assumption
2507 /// that VTable is a member of RD's type identifier. Or, if vptr CFI is
2508 /// enabled, emit a check that VTable is a member of RD's type identifier.
2510 llvm::Value *VTable, SourceLocation Loc);
2511
2512 /// Returns whether we should perform a type checked load when loading a
2513 /// virtual function for virtual calls to members of RD. This is generally
2514 /// true when both vcall CFI and whole-program-vtables are enabled.
2516
2517 /// Emit a type checked load from the given vtable.
2519 llvm::Value *VTable,
2520 llvm::Type *VTableTy,
2521 uint64_t VTableByteOffset);
2522
2523 /// EnterDtorCleanups - Enter the cleanups necessary to complete the
2524 /// given phase of destruction for a destructor. The end result
2525 /// should call destructors on members and base classes in reverse
2526 /// order of their construction.
2528
2529 /// ShouldInstrumentFunction - Return true if the current function should be
2530 /// instrumented with __cyg_profile_func_* calls
2532
2533 /// ShouldSkipSanitizerInstrumentation - Return true if the current function
2534 /// should not be instrumented with sanitizers.
2536
2537 /// ShouldXRayInstrument - Return true if the current function should be
2538 /// instrumented with XRay nop sleds.
2540
2541 /// AlwaysEmitXRayCustomEvents - Return true if we must unconditionally emit
2542 /// XRay custom event handling calls.
2544
2545 /// AlwaysEmitXRayTypedEvents - Return true if clang must unconditionally emit
2546 /// XRay typed event handling calls.
2548
2549 /// Return a type hash constant for a function instrumented by
2550 /// -fsanitize=function.
2551 llvm::ConstantInt *getUBSanFunctionTypeHash(QualType T) const;
2552
2553 /// EmitFunctionProlog - Emit the target specific LLVM code to load the
2554 /// arguments for the given function. This is also responsible for naming the
2555 /// LLVM function arguments.
2557 llvm::Function *Fn,
2558 const FunctionArgList &Args);
2559
2560 /// EmitFunctionEpilog - Emit the target specific LLVM code to return the
2561 /// given temporary.
2562 void EmitFunctionEpilog(const CGFunctionInfo &FI, bool EmitRetDbgLoc,
2563 SourceLocation EndLoc);
2564
2565 /// Emit a test that checks if the return value \p RV is nonnull.
2566 void EmitReturnValueCheck(llvm::Value *RV);
2567
2568 /// EmitStartEHSpec - Emit the start of the exception spec.
2569 void EmitStartEHSpec(const Decl *D);
2570
2571 /// EmitEndEHSpec - Emit the end of the exception spec.
2572 void EmitEndEHSpec(const Decl *D);
2573
2574 /// getTerminateLandingPad - Return a landing pad that just calls terminate.
2575 llvm::BasicBlock *getTerminateLandingPad();
2576
2577 /// getTerminateLandingPad - Return a cleanup funclet that just calls
2578 /// terminate.
2579 llvm::BasicBlock *getTerminateFunclet();
2580
2581 /// getTerminateHandler - Return a handler (not a landing pad, just
2582 /// a catch handler) that just calls terminate. This is used when
2583 /// a terminate scope encloses a try.
2584 llvm::BasicBlock *getTerminateHandler();
2585
2587 llvm::Type *ConvertType(QualType T);
2589 llvm::Type *LLVMTy = nullptr);
2590 llvm::Type *ConvertType(const TypeDecl *T) {
2591 return ConvertType(getContext().getTypeDeclType(T));
2592 }
2593
2594 /// LoadObjCSelf - Load the value of self. This function is only valid while
2595 /// generating code for an Objective-C method.
2596 llvm::Value *LoadObjCSelf();
2597
2598 /// TypeOfSelfObject - Return type of object that this self represents.
2600
2601 /// getEvaluationKind - Return the TypeEvaluationKind of QualType \c T.
2603
2605 return getEvaluationKind(T) == TEK_Scalar;
2606 }
2607
2610 }
2611
2612 /// createBasicBlock - Create an LLVM basic block.
2613 llvm::BasicBlock *createBasicBlock(const Twine &name = "",
2614 llvm::Function *parent = nullptr,
2615 llvm::BasicBlock *before = nullptr) {
2616 return llvm::BasicBlock::Create(getLLVMContext(), name, parent, before);
2617 }
2618
2619 /// getBasicBlockForLabel - Return the LLVM basicblock that the specified
2620 /// label maps to.
2622
2623 /// SimplifyForwardingBlocks - If the given basic block is only a branch to
2624 /// another basic block, simplify it. This assumes that no other code could
2625 /// potentially reference the basic block.
2626 void SimplifyForwardingBlocks(llvm::BasicBlock *BB);
2627
2628 /// EmitBlock - Emit the given block \arg BB and set it as the insert point,
2629 /// adding a fall-through branch from the current insert block if
2630 /// necessary. It is legal to call this function even if there is no current
2631 /// insertion point.
2632 ///
2633 /// IsFinished - If true, indicates that the caller has finished emitting
2634 /// branches to the given block and does not expect to emit code into it. This
2635 /// means the block can be ignored if it is unreachable.
2636 void EmitBlock(llvm::BasicBlock *BB, bool IsFinished=false);
2637
2638 /// EmitBlockAfterUses - Emit the given block somewhere hopefully
2639 /// near its uses, and leave the insertion point in it.
2640 void EmitBlockAfterUses(llvm::BasicBlock *BB);
2641
2642 /// EmitBranch - Emit a branch to the specified basic block from the current
2643 /// insert block, taking care to avoid creation of branches from dummy
2644 /// blocks. It is legal to call this function even if there is no current
2645 /// insertion point.
2646 ///
2647 /// This function clears the current insertion point. The caller should follow
2648 /// calls to this function with calls to Emit*Block prior to generation new
2649 /// code.
2650 void EmitBranch(llvm::BasicBlock *Block);
2651
2652 /// HaveInsertPoint - True if an insertion point is defined. If not, this
2653 /// indicates that the current code being emitted is unreachable.
2654 bool HaveInsertPoint() const {
2655 return Builder.GetInsertBlock() != nullptr;
2656 }
2657
2658 /// EnsureInsertPoint - Ensure that an insertion point is defined so that
2659 /// emitted IR has a place to go. Note that by definition, if this function
2660 /// creates a block then that block is unreachable; callers may do better to
2661 /// detect when no insertion point is defined and simply skip IR generation.
2663 if (!HaveInsertPoint())
2665 }
2666
2667 /// ErrorUnsupported - Print out an error that codegen doesn't support the
2668 /// specified stmt yet.
2669 void ErrorUnsupported(const Stmt *S, const char *Type);
2670
2671 //===--------------------------------------------------------------------===//
2672 // Helpers
2673 //===--------------------------------------------------------------------===//
2674
2676 llvm::BasicBlock *LHSBlock,
2677 llvm::BasicBlock *RHSBlock,
2678 llvm::BasicBlock *MergeBlock,
2679 QualType MergedType) {
2680 Builder.SetInsertPoint(MergeBlock);
2681 llvm::PHINode *PtrPhi = Builder.CreatePHI(LHS.getType(), 2, "cond");
2682 PtrPhi->addIncoming(LHS.getBasePointer(), LHSBlock);
2683 PtrPhi->addIncoming(RHS.getBasePointer(), RHSBlock);
2684 LHS.replaceBasePointer(PtrPhi);
2685 LHS.setAlignment(std::min(LHS.getAlignment(), RHS.getAlignment()));
2686 return LHS;
2687 }
2688
2689 /// Construct an address with the natural alignment of T. If a pointer to T
2690 /// is expected to be signed, the pointer passed to this function must have
2691 /// been signed, and the returned Address will have the pointer authentication
2692 /// information needed to authenticate the signed pointer.
2694 llvm::Value *Ptr, QualType T, CharUnits Alignment = CharUnits::Zero(),
2695 bool ForPointeeType = false, LValueBaseInfo *BaseInfo = nullptr,
2696 TBAAAccessInfo *TBAAInfo = nullptr,
2697 KnownNonNull_t IsKnownNonNull = NotKnownNonNull) {
2698 if (Alignment.isZero())
2699 Alignment =
2700 CGM.getNaturalTypeAlignment(T, BaseInfo, TBAAInfo, ForPointeeType);
2701 return Address(Ptr, ConvertTypeForMem(T), Alignment,
2702 CGM.getPointerAuthInfoForPointeeType(T), /*Offset=*/nullptr,
2703 IsKnownNonNull);
2704 }
2705
2708 return MakeAddrLValue(Addr, T, LValueBaseInfo(Source),
2710 }
2711
2713 TBAAAccessInfo TBAAInfo) {
2714 return LValue::MakeAddr(Addr, T, getContext(), BaseInfo, TBAAInfo);
2715 }
2716
2717 LValue MakeAddrLValue(llvm::Value *V, QualType T, CharUnits Alignment,
2719 return MakeAddrLValue(makeNaturalAddressForPointer(V, T, Alignment), T,
2721 }
2722
2723 /// Same as MakeAddrLValue above except that the pointer is known to be
2724 /// unsigned.
2725 LValue MakeRawAddrLValue(llvm::Value *V, QualType T, CharUnits Alignment,
2727 Address Addr(V, ConvertTypeForMem(T), Alignment);
2728 return LValue::MakeAddr(Addr, T, getContext(), LValueBaseInfo(Source),
2730 }
2731
2732 LValue
2735 return LValue::MakeAddr(Addr, T, getContext(), LValueBaseInfo(Source),
2736 TBAAAccessInfo());
2737 }
2738
2739 /// Given a value of type T* that may not be to a complete object, construct
2740 /// an l-value with the natural pointee alignment of T.
2742
2743 LValue
2745 KnownNonNull_t IsKnownNonNull = NotKnownNonNull);
2746
2747 /// Same as MakeNaturalAlignPointeeAddrLValue except that the pointer is known
2748 /// to be unsigned.
2750
2752
2754 LValueBaseInfo *PointeeBaseInfo = nullptr,
2755 TBAAAccessInfo *PointeeTBAAInfo = nullptr);
2758 AlignmentSource Source =
2760 LValue RefLVal = MakeAddrLValue(RefAddr, RefTy, LValueBaseInfo(Source),
2761 CGM.getTBAAAccessInfo(RefTy));
2762 return EmitLoadOfReferenceLValue(RefLVal);
2763 }
2764
2765 /// Load a pointer with type \p PtrTy stored at address \p Ptr.
2766 /// Note that \p PtrTy is the type of the loaded pointer, not the addresses
2767 /// it is loaded from.
2769 LValueBaseInfo *BaseInfo = nullptr,
2770 TBAAAccessInfo *TBAAInfo = nullptr);
2772
2773private:
2774 struct AllocaTracker {
2775 void Add(llvm::AllocaInst *I) { Allocas.push_back(I); }
2776 llvm::SmallVector<llvm::AllocaInst *> Take() { return std::move(Allocas); }
2777
2778 private:
2780 };
2781 AllocaTracker *Allocas = nullptr;
2782
2783public:
2784 // Captures all the allocas created during the scope of its RAII object.
2787 : CGF(CGF), OldTracker(CGF.Allocas) {
2788 CGF.Allocas = &Tracker;
2789 }
2790 ~AllocaTrackerRAII() { CGF.Allocas = OldTracker; }
2791
2792 llvm::SmallVector<llvm::AllocaInst *> Take() { return Tracker.Take(); }
2793
2794 private:
2795 CodeGenFunction &CGF;
2796 AllocaTracker *OldTracker;
2797 AllocaTracker Tracker;
2798 };
2799
2800 /// CreateTempAlloca - This creates an alloca and inserts it into the entry
2801 /// block if \p ArraySize is nullptr, otherwise inserts it at the current
2802 /// insertion point of the builder. The caller is responsible for setting an
2803 /// appropriate alignment on
2804 /// the alloca.
2805 ///
2806 /// \p ArraySize is the number of array elements to be allocated if it
2807 /// is not nullptr.
2808 ///
2809 /// LangAS::Default is the address space of pointers to local variables and
2810 /// temporaries, as exposed in the source language. In certain
2811 /// configurations, this is not the same as the alloca address space, and a
2812 /// cast is needed to lift the pointer from the alloca AS into
2813 /// LangAS::Default. This can happen when the target uses a restricted
2814 /// address space for the stack but the source language requires
2815 /// LangAS::Default to be a generic address space. The latter condition is
2816 /// common for most programming languages; OpenCL is an exception in that
2817 /// LangAS::Default is the private address space, which naturally maps
2818 /// to the stack.
2819 ///
2820 /// Because the address of a temporary is often exposed to the program in
2821 /// various ways, this function will perform the cast. The original alloca
2822 /// instruction is returned through \p Alloca if it is not nullptr.
2823 ///
2824 /// The cast is not performaed in CreateTempAllocaWithoutCast. This is
2825 /// more efficient if the caller knows that the address will not be exposed.
2826 llvm::AllocaInst *CreateTempAlloca(llvm::Type *Ty, const Twine &Name = "tmp",
2827 llvm::Value *ArraySize = nullptr);
2829 const Twine &Name = "tmp",
2830 llvm::Value *ArraySize = nullptr,
2831 RawAddress *Alloca = nullptr);
2833 const Twine &Name = "tmp",
2834 llvm::Value *ArraySize = nullptr);
2835
2836 /// CreateDefaultAlignedTempAlloca - This creates an alloca with the
2837 /// default ABI alignment of the given LLVM type.
2838 ///
2839 /// IMPORTANT NOTE: This is *not* generally the right alignment for
2840 /// any given AST type that happens to have been lowered to the
2841 /// given IR type. This should only ever be used for function-local,
2842 /// IR-driven manipulations like saving and restoring a value. Do
2843 /// not hand this address off to arbitrary IRGen routines, and especially
2844 /// do not pass it as an argument to a function that might expect a
2845 /// properly ABI-aligned value.
2847 const Twine &Name = "tmp");
2848
2849 /// CreateIRTemp - Create a temporary IR object of the given type, with
2850 /// appropriate alignment. This routine should only be used when an temporary
2851 /// value needs to be stored into an alloca (for example, to avoid explicit
2852 /// PHI construction), but the type is the IR type, not the type appropriate
2853 /// for storing in memory.
2854 ///
2855 /// That is, this is exactly equivalent to CreateMemTemp, but calling
2856 /// ConvertType instead of ConvertTypeForMem.
2857 RawAddress CreateIRTemp(QualType T, const Twine &Name = "tmp");
2858
2859 /// CreateMemTemp - Create a temporary memory object of the given type, with
2860 /// appropriate alignmen and cast it to the default address space. Returns
2861 /// the original alloca instruction by \p Alloca if it is not nullptr.
2862 RawAddress CreateMemTemp(QualType T, const Twine &Name = "tmp",
2863 RawAddress *Alloca = nullptr);
2865 const Twine &Name = "tmp",
2866 RawAddress *Alloca = nullptr);
2867
2868 /// CreateMemTemp - Create a temporary memory object of the given type, with
2869 /// appropriate alignmen without casting it to the default address space.
2870 RawAddress CreateMemTempWithoutCast(QualType T, const Twine &Name = "tmp");
2872 const Twine &Name = "tmp");
2873
2874 /// CreateAggTemp - Create a temporary memory object for the given
2875 /// aggregate type.
2876 AggValueSlot CreateAggTemp(QualType T, const Twine &Name = "tmp",
2877 RawAddress *Alloca = nullptr) {
2878 return AggValueSlot::forAddr(
2879 CreateMemTemp(T, Name, Alloca), T.getQualifiers(),
2882 }
2883
2884 /// EvaluateExprAsBool - Perform the usual unary conversions on the specified
2885 /// expression and compare the result against zero, returning an Int1Ty value.
2886 llvm::Value *EvaluateExprAsBool(const Expr *E);
2887
2888 /// Retrieve the implicit cast expression of the rhs in a binary operator
2889 /// expression by passing pointers to Value and QualType
2890 /// This is used for implicit bitfield conversion checks, which
2891 /// must compare with the value before potential truncation.
2893 llvm::Value **Previous,
2894 QualType *SrcType);
2895
2896 /// Emit a check that an [implicit] conversion of a bitfield. It is not UB,
2897 /// so we use the value after conversion.
2898 void EmitBitfieldConversionCheck(llvm::Value *Src, QualType SrcType,
2899 llvm::Value *Dst, QualType DstType,
2900 const CGBitFieldInfo &Info,
2902
2903 /// EmitIgnoredExpr - Emit an expression in a context which ignores the result.
2904 void EmitIgnoredExpr(const Expr *E);
2905
2906 /// EmitAnyExpr - Emit code to compute the specified expression which can have
2907 /// any type. The result is returned as an RValue struct. If this is an
2908 /// aggregate expression, the aggloc/agglocvolatile arguments indicate where
2909 /// the result should be returned.
2910 ///
2911 /// \param ignoreResult True if the resulting value isn't used.
2914 bool ignoreResult = false);
2915
2916 // EmitVAListRef - Emit a "reference" to a va_list; this is either the address
2917 // or the value of the expression, depending on how va_list is defined.
2919
2920 /// Emit a "reference" to a __builtin_ms_va_list; this is
2921 /// always the value of the expression, because a __builtin_ms_va_list is a
2922 /// pointer to a char.
2924
2925 /// EmitAnyExprToTemp - Similarly to EmitAnyExpr(), however, the result will
2926 /// always be accessible even if no aggregate location is provided.
2928
2929 /// EmitAnyExprToMem - Emits the code necessary to evaluate an
2930 /// arbitrary expression into the given memory location.
2931 void EmitAnyExprToMem(const Expr *E, Address Location,
2932 Qualifiers Quals, bool IsInitializer);
2933
2934 void EmitAnyExprToExn(const Expr *E, Address Addr);
2935
2936 /// EmitInitializationToLValue - Emit an initializer to an LValue.
2938 const Expr *E, LValue LV,
2940
2941 /// EmitExprAsInit - Emits the code necessary to initialize a
2942 /// location in memory with the given initializer.
2943 void EmitExprAsInit(const Expr *init, const ValueDecl *D, LValue lvalue,
2944 bool capturedByInit);
2945
2946 /// hasVolatileMember - returns true if aggregate type has a volatile
2947 /// member.
2949 if (const RecordType *RT = T->getAs<RecordType>()) {
2950 const RecordDecl *RD = cast<RecordDecl>(RT->getDecl());
2951 return RD->hasVolatileMember();
2952 }
2953 return false;
2954 }
2955
2956 /// Determine whether a return value slot may overlap some other object.
2958 // FIXME: Assuming no overlap here breaks guaranteed copy elision for base
2959 // class subobjects. These cases may need to be revisited depending on the
2960 // resolution of the relevant core issue.
2962 }
2963
2964 /// Determine whether a field initialization may overlap some other object.
2966
2967 /// Determine whether a base class initialization may overlap some other
2968 /// object.
2970 const CXXRecordDecl *BaseRD,
2971 bool IsVirtual);
2972
2973 /// Emit an aggregate assignment.
2975 bool IsVolatile = hasVolatileMember(EltTy);
2976 EmitAggregateCopy(Dest, Src, EltTy, AggValueSlot::MayOverlap, IsVolatile);
2977 }
2978
2980 AggValueSlot::Overlap_t MayOverlap) {
2981 EmitAggregateCopy(Dest, Src, Src.getType(), MayOverlap);
2982 }
2983
2984 /// EmitAggregateCopy - Emit an aggregate copy.
2985 ///
2986 /// \param isVolatile \c true iff either the source or the destination is
2987 /// volatile.
2988 /// \param MayOverlap Whether the tail padding of the destination might be
2989 /// occupied by some other object. More efficient code can often be
2990 /// generated if not.
2992 AggValueSlot::Overlap_t MayOverlap,
2993 bool isVolatile = false);
2994
2995 /// GetAddrOfLocalVar - Return the address of a local variable.
2997 auto it = LocalDeclMap.find(VD);
2998 assert(it != LocalDeclMap.end() &&
2999 "Invalid argument to GetAddrOfLocalVar(), no decl!");
3000 return it->second;
3001 }
3002
3003 /// Given an opaque value expression, return its LValue mapping if it exists,
3004 /// otherwise create one.
3006
3007 /// Given an opaque value expression, return its RValue mapping if it exists,
3008 /// otherwise create one.
3010
3011 /// Get the index of the current ArrayInitLoopExpr, if any.
3012 llvm::Value *getArrayInitIndex() { return ArrayInitIndex; }
3013
3014 /// getAccessedFieldNo - Given an encoded value and a result number, return
3015 /// the input field number being accessed.
3016 static unsigned getAccessedFieldNo(unsigned Idx, const llvm::Constant *Elts);
3017
3018 llvm::BlockAddress *GetAddrOfLabel(const LabelDecl *L);
3019 llvm::BasicBlock *GetIndirectGotoBlock();
3020
3021 /// Check if \p E is a C++ "this" pointer wrapped in value-preserving casts.
3022 static bool IsWrappedCXXThis(const Expr *E);
3023
3024 /// EmitNullInitialization - Generate code to set a value of the given type to
3025 /// null, If the type contains data member pointers, they will be initialized
3026 /// to -1 in accordance with the Itanium C++ ABI.
3028
3029 /// Emits a call to an LLVM variable-argument intrinsic, either
3030 /// \c llvm.va_start or \c llvm.va_end.
3031 /// \param ArgValue A reference to the \c va_list as emitted by either
3032 /// \c EmitVAListRef or \c EmitMSVAListRef.
3033 /// \param IsStart If \c true, emits a call to \c llvm.va_start; otherwise,
3034 /// calls \c llvm.va_end.
3035 llvm::Value *EmitVAStartEnd(llvm::Value *ArgValue, bool IsStart);
3036
3037 /// Generate code to get an argument from the passed in pointer
3038 /// and update it accordingly.
3039 /// \param VE The \c VAArgExpr for which to generate code.
3040 /// \param VAListAddr Receives a reference to the \c va_list as emitted by
3041 /// either \c EmitVAListRef or \c EmitMSVAListRef.
3042 /// \returns A pointer to the argument.
3043 // FIXME: We should be able to get rid of this method and use the va_arg
3044 // instruction in LLVM instead once it works well enough.
3047
3048 /// emitArrayLength - Compute the length of an array, even if it's a
3049 /// VLA, and drill down to the base element type.
3051 QualType &baseType,
3052 Address &addr);
3053
3054 /// EmitVLASize - Capture all the sizes for the VLA expressions in
3055 /// the given variably-modified type and store them in the VLASizeMap.
3056 ///
3057 /// This function can be called with a null (unreachable) insert point.
3059
3061 llvm::Value *NumElts;
3063
3064 VlaSizePair(llvm::Value *NE, QualType T) : NumElts(NE), Type(T) {}
3065 };
3066
3067 /// Return the number of elements for a single dimension
3068 /// for the given array type.
3071
3072 /// Returns an LLVM value that corresponds to the size,
3073 /// in non-variably-sized elements, of a variable length array type,
3074 /// plus that largest non-variably-sized element type. Assumes that
3075 /// the type has already been emitted with EmitVariablyModifiedType.
3078
3079 /// LoadCXXThis - Load the value of 'this'. This function is only valid while
3080 /// generating code for an C++ member function.
3081 llvm::Value *LoadCXXThis() {
3082 assert(CXXThisValue && "no 'this' value for this function");
3083 return CXXThisValue;
3084 }
3086
3087 /// LoadCXXVTT - Load the VTT parameter to base constructors/destructors have
3088 /// virtual bases.
3089 // FIXME: Every place that calls LoadCXXVTT is something
3090 // that needs to be abstracted properly.
3091 llvm::Value *LoadCXXVTT() {
3092 assert(CXXStructorImplicitParamValue && "no VTT value for this function");
3093 return CXXStructorImplicitParamValue;
3094 }
3095
3096 /// GetAddressOfBaseOfCompleteClass - Convert the given pointer to a
3097 /// complete class to the given direct base.
3098 Address
3100 const CXXRecordDecl *Derived,
3101 const CXXRecordDecl *Base,
3102 bool BaseIsVirtual);
3103
3104 static bool ShouldNullCheckClassCastValue(const CastExpr *Cast);
3105
3106 /// GetAddressOfBaseClass - This function will add the necessary delta to the
3107 /// load of 'this' and returns address of the base class.
3109 const CXXRecordDecl *Derived,
3112 bool NullCheckValue, SourceLocation Loc);
3113
3115 const CXXRecordDecl *Derived,
3118 bool NullCheckValue);
3119
3120 /// GetVTTParameter - Return the VTT parameter that should be passed to a
3121 /// base constructor/destructor with virtual bases.
3122 /// FIXME: VTTs are Itanium ABI-specific, so the definition should move
3123 /// to ItaniumCXXABI.cpp together with all the references to VTT.
3124 llvm::Value *GetVTTParameter(GlobalDecl GD, bool ForVirtualBase,
3125 bool Delegating);
3126
3128 CXXCtorType CtorType,
3129 const FunctionArgList &Args,
3131 // It's important not to confuse this and the previous function. Delegating
3132 // constructors are the C++0x feature. The constructor delegate optimization
3133 // is used to reduce duplication in the base and complete consturctors where
3134 // they are substantially the same.
3136 const FunctionArgList &Args);
3137
3138 /// Emit a call to an inheriting constructor (that is, one that invokes a
3139 /// constructor inherited from a base class) by inlining its definition. This
3140 /// is necessary if the ABI does not support forwarding the arguments to the
3141 /// base class constructor (because they're variadic or similar).
3143 CXXCtorType CtorType,
3144 bool ForVirtualBase,
3145 bool Delegating,
3146 CallArgList &Args);
3147
3148 /// Emit a call to a constructor inherited from a base class, passing the
3149 /// current constructor's arguments along unmodified (without even making
3150 /// a copy).
3152 bool ForVirtualBase, Address This,
3153 bool InheritedFromVBase,
3155
3157 bool ForVirtualBase, bool Delegating,
3158 AggValueSlot ThisAVS, const CXXConstructExpr *E);
3159
3161 bool ForVirtualBase, bool Delegating,
3162 Address This, CallArgList &Args,
3164 SourceLocation Loc, bool NewPointerIsChecked,
3165 llvm::CallBase **CallOrInvoke = nullptr);
3166
3167 /// Emit assumption load for all bases. Requires to be called only on
3168 /// most-derived class and not under construction of the object.
3170
3171 /// Emit assumption that vptr load == global vtable.
3172 void EmitVTableAssumptionLoad(const VPtr &vptr, Address This);
3173
3175 Address This, Address Src,
3176 const CXXConstructExpr *E);
3177
3179 const ArrayType *ArrayTy,
3180 Address ArrayPtr,
3181 const CXXConstructExpr *E,
3182 bool NewPointerIsChecked,
3183 bool ZeroInitialization = false);
3184
3186 llvm::Value *NumElements,
3187 Address ArrayPtr,
3188 const CXXConstructExpr *E,
3189 bool NewPointerIsChecked,
3190 bool ZeroInitialization = false);
3191
3193
3195 bool ForVirtualBase, bool Delegating, Address This,
3196 QualType ThisTy);
3197
3199 llvm::Type *ElementTy, Address NewPtr,
3200 llvm::Value *NumElements,
3201 llvm::Value *AllocSizeWithoutCookie);
3202
3203 void EmitCXXTemporary(const CXXTemporary *Temporary, QualType TempType,
3204 Address Ptr);
3205
3210
3211 llvm::Value *EmitLifetimeStart(llvm::TypeSize Size, llvm::Value *Addr);
3212 void EmitLifetimeEnd(llvm::Value *Size, llvm::Value *Addr);
3213
3214 llvm::Value *EmitCXXNewExpr(const CXXNewExpr *E);
3216
3217 void EmitDeleteCall(const FunctionDecl *DeleteFD, llvm::Value *Ptr,
3218 QualType DeleteTy, llvm::Value *NumElements = nullptr,
3219 CharUnits CookieSize = CharUnits());
3220
3222 const CallExpr *TheCallExpr, bool IsDelete);
3223
3224 llvm::Value *EmitCXXTypeidExpr(const CXXTypeidExpr *E);
3225 llvm::Value *EmitDynamicCast(Address V, const CXXDynamicCastExpr *DCE);
3227
3228 /// Situations in which we might emit a check for the suitability of a
3229 /// pointer or glvalue. Needs to be kept in sync with ubsan_handlers.cpp in
3230 /// compiler-rt.
3232 /// Checking the operand of a load. Must be suitably sized and aligned.
3234 /// Checking the destination of a store. Must be suitably sized and aligned.
3236 /// Checking the bound value in a reference binding. Must be suitably sized
3237 /// and aligned, but is not required to refer to an object (until the
3238 /// reference is used), per core issue 453.
3240 /// Checking the object expression in a non-static data member access. Must
3241 /// be an object within its lifetime.
3243 /// Checking the 'this' pointer for a call to a non-static member function.
3244 /// Must be an object within its lifetime.
3246 /// Checking the 'this' pointer for a constructor call.
3248 /// Checking the operand of a static_cast to a derived pointer type. Must be
3249 /// null or an object within its lifetime.
3251 /// Checking the operand of a static_cast to a derived reference type. Must
3252 /// be an object within its lifetime.
3254 /// Checking the operand of a cast to a base object. Must be suitably sized
3255 /// and aligned.
3257 /// Checking the operand of a cast to a virtual base object. Must be an
3258 /// object within its lifetime.
3260 /// Checking the value assigned to a _Nonnull pointer. Must not be null.
3262 /// Checking the operand of a dynamic_cast or a typeid expression. Must be
3263 /// null or an object within its lifetime.
3266
3267 /// Determine whether the pointer type check \p TCK permits null pointers.
3269
3270 /// Determine whether the pointer type check \p TCK requires a vptr check.
3272
3273 /// Whether any type-checking sanitizers are enabled. If \c false,
3274 /// calls to EmitTypeCheck can be skipped.
3276
3278 QualType Type, SanitizerSet SkippedChecks = SanitizerSet(),
3279 llvm::Value *ArraySize = nullptr) {
3281 return;
3282 EmitTypeCheck(TCK, Loc, LV.emitRawPointer(*this), Type, LV.getAlignment(),
3283 SkippedChecks, ArraySize);
3284 }
3285
3287 QualType Type, CharUnits Alignment = CharUnits::Zero(),
3288 SanitizerSet SkippedChecks = SanitizerSet(),
3289 llvm::Value *ArraySize = nullptr) {
3291 return;
3292 EmitTypeCheck(TCK, Loc, Addr.emitRawPointer(*this), Type, Alignment,
3293 SkippedChecks, ArraySize);
3294 }
3295
3296 /// Emit a check that \p V is the address of storage of the
3297 /// appropriate size and alignment for an object of type \p Type
3298 /// (or if ArraySize is provided, for an array of that bound).
3300 QualType Type, CharUnits Alignment = CharUnits::Zero(),
3301 SanitizerSet SkippedChecks = SanitizerSet(),
3302 llvm::Value *ArraySize = nullptr);
3303
3304 /// Emit a check that \p Base points into an array object, which
3305 /// we can access at index \p Index. \p Accessed should be \c false if we
3306 /// this expression is used as an lvalue, for instance in "&Arr[Idx]".
3307 void EmitBoundsCheck(const Expr *E, const Expr *Base, llvm::Value *Index,
3308 QualType IndexType, bool Accessed);
3309 void EmitBoundsCheckImpl(const Expr *E, llvm::Value *Bound,
3310 llvm::Value *Index, QualType IndexType,
3311 QualType IndexedType, bool Accessed);
3312
3313 // Find a struct's flexible array member and get its offset. It may be
3314 // embedded inside multiple sub-structs, but must still be the last field.
3315 const FieldDecl *
3317 const FieldDecl *FAMDecl,
3318 uint64_t &Offset);
3319
3321 const FieldDecl *FAMDecl,
3322 const FieldDecl *CountDecl);
3323
3324 /// Build an expression accessing the "counted_by" field.
3326 const FieldDecl *FAMDecl,
3327 const FieldDecl *CountDecl);
3328
3330 bool isInc, bool isPre);
3332 bool isInc, bool isPre);
3333
3334 /// Converts Location to a DebugLoc, if debug information is enabled.
3335 llvm::DebugLoc SourceLocToDebugLoc(SourceLocation Location);
3336
3337 /// Get the record field index as represented in debug info.
3338 unsigned getDebugInfoFIndex(const RecordDecl *Rec, unsigned FieldIndex);
3339
3340
3341 //===--------------------------------------------------------------------===//
3342 // Declaration Emission
3343 //===--------------------------------------------------------------------===//
3344
3345 /// EmitDecl - Emit a declaration.
3346 ///
3347 /// This function can be called with a null (unreachable) insert point.
3348 void EmitDecl(const Decl &D);
3349
3350 /// EmitVarDecl - Emit a local variable declaration.
3351 ///
3352 /// This function can be called with a null (unreachable) insert point.
3353 void EmitVarDecl(const VarDecl &D);
3354
3355 void EmitScalarInit(const Expr *init, const ValueDecl *D, LValue lvalue,
3356 bool capturedByInit);
3357
3359 llvm::Value *Address);
3360
3361 /// Determine whether the given initializer is trivial in the sense
3362 /// that it requires no code to be generated.
3364
3365 /// EmitAutoVarDecl - Emit an auto variable declaration.
3366 ///
3367 /// This function can be called with a null (unreachable) insert point.
3369
3371 friend class CodeGenFunction;
3372
3373 const VarDecl *Variable;
3374
3375 /// The address of the alloca for languages with explicit address space
3376 /// (e.g. OpenCL) or alloca casted to generic pointer for address space
3377 /// agnostic languages (e.g. C++). Invalid if the variable was emitted
3378 /// as a global constant.
3379 Address Addr;
3380
3381 llvm::Value *NRVOFlag;
3382
3383 /// True if the variable is a __block variable that is captured by an
3384 /// escaping block.
3385 bool IsEscapingByRef;
3386
3387 /// True if the variable is of aggregate type and has a constant
3388 /// initializer.
3389 bool IsConstantAggregate;
3390
3391 /// Non-null if we should use lifetime annotations.
3392 llvm::Value *SizeForLifetimeMarkers;
3393
3394 /// Address with original alloca instruction. Invalid if the variable was
3395 /// emitted as a global constant.
3396 RawAddress AllocaAddr;
3397
3398 struct Invalid {};
3399 AutoVarEmission(Invalid)
3400 : Variable(nullptr), Addr(Address::invalid()),
3401 AllocaAddr(RawAddress::invalid()) {}
3402
3403 AutoVarEmission(const VarDecl &variable)
3404 : Variable(&variable), Addr(Address::invalid()), NRVOFlag(nullptr),
3405 IsEscapingByRef(false), IsConstantAggregate(false),
3406 SizeForLifetimeMarkers(nullptr), AllocaAddr(RawAddress::invalid()) {}
3407
3408 bool wasEmittedAsGlobal() const { return !Addr.isValid(); }
3409
3410 public:
3411 static AutoVarEmission invalid() { return AutoVarEmission(Invalid()); }
3412
3413 bool useLifetimeMarkers() const {
3414 return SizeForLifetimeMarkers != nullptr;
3415 }
3416 llvm::Value *getSizeForLifetimeMarkers() const {
3417 assert(useLifetimeMarkers());
3418 return SizeForLifetimeMarkers;
3419 }
3420
3421 /// Returns the raw, allocated address, which is not necessarily
3422 /// the address of the object itself. It is casted to default
3423 /// address space for address space agnostic languages.
3425 return Addr;
3426 }
3427
3428 /// Returns the address for the original alloca instruction.
3429 RawAddress getOriginalAllocatedAddress() const { return AllocaAddr; }
3430
3431 /// Returns the address of the object within this declaration.
3432 /// Note that this does not chase the forwarding pointer for
3433 /// __block decls.
3435 if (!IsEscapingByRef) return Addr;
3436
3437 return CGF.emitBlockByrefAddress(Addr, Variable, /*forward*/ false);
3438 }
3439 };
3441 void EmitAutoVarInit(const AutoVarEmission &emission);
3444 QualType::DestructionKind dtorKind);
3445
3446 /// Emits the alloca and debug information for the size expressions for each
3447 /// dimension of an array. It registers the association of its (1-dimensional)
3448 /// QualTypes and size expression's debug node, so that CGDebugInfo can
3449 /// reference this node when creating the DISubrange object to describe the
3450 /// array types.
3452 const VarDecl &D,
3453 bool EmitDebugInfo);
3454
3456 llvm::GlobalValue::LinkageTypes Linkage);
3457
3459 union {
3461 llvm::Value *Value;
3462 };
3463
3464 bool IsIndirect;
3465
3466 ParamValue(llvm::Value *V) : Value(V), IsIndirect(false) {}
3467 ParamValue(Address A) : Addr(A), IsIndirect(true) {}
3468
3469 public:
3470 static ParamValue forDirect(llvm::Value *value) {
3471 return ParamValue(value);
3472 }
3474 assert(!addr.getAlignment().isZero());
3475 return ParamValue(addr);
3476 }
3477
3478 bool isIndirect() const { return IsIndirect; }
3479 llvm::Value *getAnyValue() const {
3480 if (!isIndirect())
3481 return Value;
3482 assert(!Addr.hasOffset() && "unexpected offset");
3483 return Addr.getBasePointer();
3484 }
3485
3486 llvm::Value *getDirectValue() const {
3487 assert(!isIndirect());
3488 return Value;
3489 }
3490
3492 assert(isIndirect());
3493 return Addr;
3494 }
3495 };
3496
3497 /// EmitParmDecl - Emit a ParmVarDecl or an ImplicitParamDecl.
3498 void EmitParmDecl(const VarDecl &D, ParamValue Arg, unsigned ArgNo);
3499
3500 /// protectFromPeepholes - Protect a value that we're intending to
3501 /// store to the side, but which will probably be used later, from
3502 /// aggressive peepholing optimizations that might delete it.
3503 ///
3504 /// Pass the result to unprotectFromPeepholes to declare that
3505 /// protection is no longer required.
3506 ///
3507 /// There's no particular reason why this shouldn't apply to
3508 /// l-values, it's just that no existing peepholes work on pointers.
3511
3512 void emitAlignmentAssumptionCheck(llvm::Value *Ptr, QualType Ty,
3514 SourceLocation AssumptionLoc,
3515 llvm::Value *Alignment,
3516 llvm::Value *OffsetValue,
3517 llvm::Value *TheCheck,
3518 llvm::Instruction *Assumption);
3519
3520 void emitAlignmentAssumption(llvm::Value *PtrValue, QualType Ty,
3521 SourceLocation Loc, SourceLocation AssumptionLoc,
3522 llvm::Value *Alignment,
3523 llvm::Value *OffsetValue = nullptr);
3524
3525 void emitAlignmentAssumption(llvm::Value *PtrValue, const Expr *E,
3526 SourceLocation AssumptionLoc,
3527 llvm::Value *Alignment,
3528 llvm::Value *OffsetValue = nullptr);
3529
3530 //===--------------------------------------------------------------------===//
3531 // Statement Emission
3532 //===--------------------------------------------------------------------===//
3533
3534 /// EmitStopPoint - Emit a debug stoppoint if we are emitting debug info.
3535 void EmitStopPoint(const Stmt *S);
3536
3537 /// EmitStmt - Emit the code for the statement \arg S. It is legal to call
3538 /// this function even if there is no current insertion point.
3539 ///
3540 /// This function may clear the current insertion point; callers should use
3541 /// EnsureInsertPoint if they wish to subsequently generate code without first
3542 /// calling EmitBlock, EmitBranch, or EmitStmt.
3543 void EmitStmt(const Stmt *S, ArrayRef<const Attr *> Attrs = {});
3544
3545 /// EmitSimpleStmt - Try to emit a "simple" statement which does not
3546 /// necessarily require an insertion point or debug information; typically
3547 /// because the statement amounts to a jump or a container of other
3548 /// statements.
3549 ///
3550 /// \return True if the statement was handled.
3552
3553 Address EmitCompoundStmt(const CompoundStmt &S, bool GetLast = false,
3556 bool GetLast = false,
3557 AggValueSlot AVS =
3559
3560 /// EmitLabel - Emit the block for the given label. It is legal to call this
3561 /// function even if there is no current insertion point.
3562 void EmitLabel(const LabelDecl *D); // helper for EmitLabelStmt.
3563
3564 void EmitLabelStmt(const LabelStmt &S);
3566 void EmitGotoStmt(const GotoStmt &S);
3568 void EmitIfStmt(const IfStmt &S);
3569
3571 void EmitDoStmt(const DoStmt &S, ArrayRef<const Attr *> Attrs = {});
3572 void EmitForStmt(const ForStmt &S, ArrayRef<const Attr *> Attrs = {});
3574 void EmitDeclStmt(const DeclStmt &S);
3575 void EmitBreakStmt(const BreakStmt &S);
3581 void EmitAsmStmt(const AsmStmt &S);
3582
3588
3593 bool ignoreResult = false);
3597 bool ignoreResult = false);
3599 RValue EmitCoroutineIntrinsic(const CallExpr *E, unsigned int IID);
3600
3601 void EnterCXXTryStmt(const CXXTryStmt &S, bool IsFnTryBlock = false);
3602 void ExitCXXTryStmt(const CXXTryStmt &S, bool IsFnTryBlock = false);
3603
3609 void VolatilizeTryBlocks(llvm::BasicBlock *BB,
3611
3613 llvm::Function *FinallyFunc);
3615 const Stmt *OutlinedStmt);
3616
3618 const SEHExceptStmt &Except);
3619
3621 const SEHFinallyStmt &Finally);
3622
3624 llvm::Value *ParentFP,
3625 llvm::Value *EntryEBP);
3626 llvm::Value *EmitSEHExceptionCode();
3627 llvm::Value *EmitSEHExceptionInfo();
3629
3630 /// Emit simple code for OpenMP directives in Simd-only mode.
3632
3633 /// Scan the outlined statement for captures from the parent function. For
3634 /// each capture, mark the capture as escaped and emit a call to
3635 /// llvm.localrecover. Insert the localrecover result into the LocalDeclMap.
3637 bool IsFilter);
3638
3639 /// Recovers the address of a local in a parent function. ParentVar is the
3640 /// address of the variable used in the immediate parent function. It can
3641 /// either be an alloca or a call to llvm.localrecover if there are nested
3642 /// outlined functions. ParentFP is the frame pointer of the outermost parent
3643 /// frame.
3645 Address ParentVar,
3646 llvm::Value *ParentFP);
3647
3649 ArrayRef<const Attr *> Attrs = {});
3650
3651 /// Controls insertion of cancellation exit blocks in worksharing constructs.
3653 CodeGenFunction &CGF;
3654
3655 public:
3657 bool HasCancel)
3658 : CGF(CGF) {
3659 CGF.OMPCancelStack.enter(CGF, Kind, HasCancel);
3660 }
3661 ~OMPCancelStackRAII() { CGF.OMPCancelStack.exit(CGF); }
3662 };
3663
3664 /// Returns calculated size of the specified type.
3665 llvm::Value *getTypeSize(QualType Ty);
3673 SmallVectorImpl<llvm::Value *> &CapturedVars);
3674 void emitOMPSimpleStore(LValue LVal, RValue RVal, QualType RValTy,
3676 /// Perform element by element copying of arrays with type \a
3677 /// OriginalType from \a SrcAddr to \a DestAddr using copying procedure
3678 /// generated by \a CopyGen.
3679 ///
3680 /// \param DestAddr Address of the destination array.
3681 /// \param SrcAddr Address of the source array.
3682 /// \param OriginalType Type of destination and source arrays.
3683 /// \param CopyGen Copying procedure that copies value of single array element
3684 /// to another single array element.
3686 Address DestAddr, Address SrcAddr, QualType OriginalType,
3687 const llvm::function_ref<void(Address, Address)> CopyGen);
3688 /// Emit proper copying of data from one variable to another.
3689 ///
3690 /// \param OriginalType Original type of the copied variables.
3691 /// \param DestAddr Destination address.
3692 /// \param SrcAddr Source address.
3693 /// \param DestVD Destination variable used in \a CopyExpr (for arrays, has
3694 /// type of the base array element).
3695 /// \param SrcVD Source variable used in \a CopyExpr (for arrays, has type of
3696 /// the base array element).
3697 /// \param Copy Actual copygin expression for copying data from \a SrcVD to \a
3698 /// DestVD.
3699 void EmitOMPCopy(QualType OriginalType,
3700 Address DestAddr, Address SrcAddr,
3701 const VarDecl *DestVD, const VarDecl *SrcVD,
3702 const Expr *Copy);
3703 /// Emit atomic update code for constructs: \a X = \a X \a BO \a E or
3704 /// \a X = \a E \a BO \a E.
3705 ///
3706 /// \param X Value to be updated.
3707 /// \param E Update value.
3708 /// \param BO Binary operation for update operation.
3709 /// \param IsXLHSInRHSPart true if \a X is LHS in RHS part of the update
3710 /// expression, false otherwise.
3711 /// \param AO Atomic ordering of the generated atomic instructions.
3712 /// \param CommonGen Code generator for complex expressions that cannot be
3713 /// expressed through atomicrmw instruction.
3714 /// \returns <true, OldAtomicValue> if simple 'atomicrmw' instruction was
3715 /// generated, <false, RValue::get(nullptr)> otherwise.
3716 std::pair<bool, RValue> EmitOMPAtomicSimpleUpdateExpr(
3717 LValue X, RValue E, BinaryOperatorKind BO, bool IsXLHSInRHSPart,
3718 llvm::AtomicOrdering AO, SourceLocation Loc,
3719 const llvm::function_ref<RValue(RValue)> CommonGen);
3721 OMPPrivateScope &PrivateScope);
3723 OMPPrivateScope &PrivateScope);
3725 const OMPUseDevicePtrClause &C, OMPPrivateScope &PrivateScope,
3726 const llvm::DenseMap<const ValueDecl *, llvm::Value *>
3727 CaptureDeviceAddrMap);
3729 const OMPUseDeviceAddrClause &C, OMPPrivateScope &PrivateScope,
3730 const llvm::DenseMap<const ValueDecl *, llvm::Value *>
3731 CaptureDeviceAddrMap);
3732 /// Emit code for copyin clause in \a D directive. The next code is
3733 /// generated at the start of outlined functions for directives:
3734 /// \code
3735 /// threadprivate_var1 = master_threadprivate_var1;
3736 /// operator=(threadprivate_var2, master_threadprivate_var2);
3737 /// ...
3738 /// __kmpc_barrier(&loc, global_tid);
3739 /// \endcode
3740 ///
3741 /// \param D OpenMP directive possibly with 'copyin' clause(s).
3742 /// \returns true if at least one copyin variable is found, false otherwise.
3744 /// Emit initial code for lastprivate variables. If some variable is
3745 /// not also firstprivate, then the default initialization is used. Otherwise
3746 /// initialization of this variable is performed by EmitOMPFirstprivateClause
3747 /// method.
3748 ///
3749 /// \param D Directive that may have 'lastprivate' directives.
3750 /// \param PrivateScope Private scope for capturing lastprivate variables for
3751 /// proper codegen in internal captured statement.
3752 ///
3753 /// \returns true if there is at least one lastprivate variable, false
3754 /// otherwise.
3756 OMPPrivateScope &PrivateScope);
3757 /// Emit final copying of lastprivate values to original variables at
3758 /// the end of the worksharing or simd directive.
3759 ///
3760 /// \param D Directive that has at least one 'lastprivate' directives.
3761 /// \param IsLastIterCond Boolean condition that must be set to 'i1 true' if
3762 /// it is the last iteration of the loop code in associated directive, or to
3763 /// 'i1 false' otherwise. If this item is nullptr, no final check is required.
3765 bool NoFinals,
3766 llvm::Value *IsLastIterCond = nullptr);
3767 /// Emit initial code for linear clauses.
3769 CodeGenFunction::OMPPrivateScope &PrivateScope);
3770 /// Emit final code for linear clauses.
3771 /// \param CondGen Optional conditional code for final part of codegen for
3772 /// linear clause.
3774 const OMPLoopDirective &D,
3775 const llvm::function_ref<llvm::Value *(CodeGenFunction &)> CondGen);
3776 /// Emit initial code for reduction variables. Creates reduction copies
3777 /// and initializes them with the values according to OpenMP standard.
3778 ///
3779 /// \param D Directive (possibly) with the 'reduction' clause.
3780 /// \param PrivateScope Private scope for capturing reduction variables for
3781 /// proper codegen in internal captured statement.
3782 ///
3784 OMPPrivateScope &PrivateScope,
3785 bool ForInscan = false);
3786 /// Emit final update of reduction values to original variables at
3787 /// the end of the directive.
3788 ///
3789 /// \param D Directive that has at least one 'reduction' directives.
3790 /// \param ReductionKind The kind of reduction to perform.
3792 const OpenMPDirectiveKind ReductionKind);
3793 /// Emit initial code for linear variables. Creates private copies
3794 /// and initializes them with the values according to OpenMP standard.
3795 ///
3796 /// \param D Directive (possibly) with the 'linear' clause.
3797 /// \return true if at least one linear variable is found that should be
3798 /// initialized with the value of the original variable, false otherwise.
3800
3801 typedef const llvm::function_ref<void(CodeGenFunction & /*CGF*/,
3802 llvm::Function * /*OutlinedFn*/,
3803 const OMPTaskDataTy & /*Data*/)>
3806 const OpenMPDirectiveKind CapturedRegion,
3807 const RegionCodeGenTy &BodyGen,
3808 const TaskGenTy &TaskGen, OMPTaskDataTy &Data);
3815 explicit OMPTargetDataInfo() = default;
3818 unsigned NumberOfTargetItems)
3822 };
3824 const RegionCodeGenTy &BodyGen,
3825 OMPTargetDataInfo &InputInfo);
3828 CodeGenFunction &CGF,
3829 const CapturedStmt *CS,
3868 void
3871 void
3879 void
3881 void
3901 void
3926
3927 /// Emit device code for the target directive.
3929 StringRef ParentName,
3930 const OMPTargetDirective &S);
3931 static void
3934 /// Emit device code for the target parallel for directive.
3936 CodeGenModule &CGM, StringRef ParentName,
3938 /// Emit device code for the target parallel for simd directive.
3940 CodeGenModule &CGM, StringRef ParentName,
3942 /// Emit device code for the target teams directive.
3943 static void
3945 const OMPTargetTeamsDirective &S);
3946 /// Emit device code for the target teams distribute directive.
3948 CodeGenModule &CGM, StringRef ParentName,
3950 /// Emit device code for the target teams distribute simd directive.
3952 CodeGenModule &CGM, StringRef ParentName,
3954 /// Emit device code for the target simd directive.
3956 StringRef ParentName,
3957 const OMPTargetSimdDirective &S);
3958 /// Emit device code for the target teams distribute parallel for simd
3959 /// directive.
3961 CodeGenModule &CGM, StringRef ParentName,
3963
3964 /// Emit device code for the target teams loop directive.
3966 CodeGenModule &CGM, StringRef ParentName,
3968
3969 /// Emit device code for the target parallel loop directive.
3971 CodeGenModule &CGM, StringRef ParentName,
3973
3975 CodeGenModule &CGM, StringRef ParentName,
3977
3978 /// Emit the Stmt \p S and return its topmost canonical loop, if any.
3979 /// TODO: The \p Depth paramter is not yet implemented and must be 1. In the
3980 /// future it is meant to be the number of loops expected in the loop nests
3981 /// (usually specified by the "collapse" clause) that are collapsed to a
3982 /// single loop by this function.
3983 llvm::CanonicalLoopInfo *EmitOMPCollapsedCanonicalLoopNest(const Stmt *S,
3984 int Depth);
3985
3986 /// Emit an OMPCanonicalLoop using the OpenMPIRBuilder.
3988
3989 /// Emit inner loop of the worksharing/simd construct.
3990 ///
3991 /// \param S Directive, for which the inner loop must be emitted.
3992 /// \param RequiresCleanup true, if directive has some associated private
3993 /// variables.
3994 /// \param LoopCond Bollean condition for loop continuation.
3995 /// \param IncExpr Increment expression for loop control variable.
3996 /// \param BodyGen Generator for the inner body of the inner loop.
3997 /// \param PostIncGen Genrator for post-increment code (required for ordered
3998 /// loop directvies).
4000 const OMPExecutableDirective &S, bool RequiresCleanup,
4001 const Expr *LoopCond, const Expr *IncExpr,
4002 const llvm::function_ref<void(CodeGenFunction &)> BodyGen,
4003 const llvm::function_ref<void(CodeGenFunction &)> PostIncGen);
4004
4006 /// Emit initial code for loop counters of loop-based directives.
4008 OMPPrivateScope &LoopScope);
4009
4010 /// Helper for the OpenMP loop directives.
4012
4013 /// Emit code for the worksharing loop-based directive.
4014 /// \return true, if this construct has any lastprivate clause, false -
4015 /// otherwise.
4017 const CodeGenLoopBoundsTy &CodeGenLoopBounds,
4018 const CodeGenDispatchBoundsTy &CGDispatchBounds);
4019
4020 /// Emit code for the distribute loop-based directive.
4022 const CodeGenLoopTy &CodeGenLoop, Expr *IncExpr);
4023
4024 /// Helpers for the OpenMP loop directives.
4027 const OMPLoopDirective &D,
4028 const llvm::function_ref<llvm::Value *(CodeGenFunction &)> CondGen);
4029
4030 /// Emits the lvalue for the expression with possibly captured variable.
4032
4033private:
4034 /// Helpers for blocks.
4035 llvm::Value *EmitBlockLiteral(const CGBlockInfo &Info);
4036
4037 /// struct with the values to be passed to the OpenMP loop-related functions
4038 struct OMPLoopArguments {
4039 /// loop lower bound
4041 /// loop upper bound
4043 /// loop stride
4045 /// isLastIteration argument for runtime functions
4047 /// Chunk value generated by sema
4048 llvm::Value *Chunk = nullptr;
4049 /// EnsureUpperBound
4050 Expr *EUB = nullptr;
4051 /// IncrementExpression
4052 Expr *IncExpr = nullptr;
4053 /// Loop initialization
4054 Expr *Init = nullptr;
4055 /// Loop exit condition
4056 Expr *Cond = nullptr;
4057 /// Update of LB after a whole chunk has been executed
4058 Expr *NextLB = nullptr;
4059 /// Update of UB after a whole chunk has been executed
4060 Expr *NextUB = nullptr;
4061 /// Distinguish between the for distribute and sections
4062 OpenMPDirectiveKind DKind = llvm::omp::OMPD_unknown;
4063 OMPLoopArguments() = default;
4064 OMPLoopArguments(Address LB, Address UB, Address ST, Address IL,
4065 llvm::Value *Chunk = nullptr, Expr *EUB = nullptr,
4066 Expr *IncExpr = nullptr, Expr *Init = nullptr,
4067 Expr *Cond = nullptr, Expr *NextLB = nullptr,
4068 Expr *NextUB = nullptr)
4069 : LB(LB), UB(UB), ST(ST), IL(IL), Chunk(Chunk), EUB(EUB),
4070 IncExpr(IncExpr), Init(Init), Cond(Cond), NextLB(NextLB),
4071 NextUB(NextUB) {}
4072 };
4073 void EmitOMPOuterLoop(bool DynamicOrOrdered, bool IsMonotonic,
4074 const OMPLoopDirective &S, OMPPrivateScope &LoopScope,
4075 const OMPLoopArguments &LoopArgs,
4076 const CodeGenLoopTy &CodeGenLoop,
4077 const CodeGenOrderedTy &CodeGenOrdered);
4078 void EmitOMPForOuterLoop(const OpenMPScheduleTy &ScheduleKind,
4079 bool IsMonotonic, const OMPLoopDirective &S,
4080 OMPPrivateScope &LoopScope, bool Ordered,
4081 const OMPLoopArguments &LoopArgs,
4082 const CodeGenDispatchBoundsTy &CGDispatchBounds);
4083 void EmitOMPDistributeOuterLoop(OpenMPDistScheduleClauseKind ScheduleKind,
4084 const OMPLoopDirective &S,
4085 OMPPrivateScope &LoopScope,
4086 const OMPLoopArguments &LoopArgs,
4087 const CodeGenLoopTy &CodeGenLoopContent);
4088 /// Emit code for sections directive.
4089 void EmitSections(const OMPExecutableDirective &S);
4090
4091public:
4092 //===--------------------------------------------------------------------===//
4093 // OpenACC Emission
4094 //===--------------------------------------------------------------------===//
4096 // TODO OpenACC: Implement this. It is currently implemented as a 'no-op',
4097 // simply emitting its structured block, but in the future we will implement
4098 // some sort of IR.
4099 EmitStmt(S.getStructuredBlock());
4100 }
4101
4103 // TODO OpenACC: Implement this. It is currently implemented as a 'no-op',
4104 // simply emitting its loop, but in the future we will implement
4105 // some sort of IR.
4106 EmitStmt(S.getLoop());
4107 }
4108
4110 // TODO OpenACC: Implement this. It is currently implemented as a 'no-op',
4111 // simply emitting its loop, but in the future we will implement
4112 // some sort of IR.
4113 EmitStmt(S.getLoop());
4114 }
4115
4117 // TODO OpenACC: Implement this. It is currently implemented as a 'no-op',
4118 // simply emitting its structured block, but in the future we will implement
4119 // some sort of IR.
4120 EmitStmt(S.getStructuredBlock());
4121 }
4122
4124 // TODO OpenACC: Implement this. It is currently implemented as a 'no-op',
4125 // but in the future we will implement some sort of IR.
4126 }
4127
4129 // TODO OpenACC: Implement this. It is currently implemented as a 'no-op',
4130 // but in the future we will implement some sort of IR.
4131 }
4132
4134 // TODO OpenACC: Implement this. It is currently implemented as a 'no-op',
4135 // simply emitting its structured block, but in the future we will implement
4136 // some sort of IR.
4137 EmitStmt(S.getStructuredBlock());
4138 }
4139
4141 // TODO OpenACC: Implement this. It is currently implemented as a 'no-op',
4142 // but in the future we will implement some sort of IR.
4143 }
4144
4146 // TODO OpenACC: Implement this. It is currently implemented as a 'no-op',
4147 // but in the future we will implement some sort of IR.
4148 }
4149
4151 // TODO OpenACC: Implement this. It is currently implemented as a 'no-op',
4152 // but in the future we will implement some sort of IR.
4153 }
4154
4156 // TODO OpenACC: Implement this. It is currently implemented as a 'no-op',
4157 // but in the future we will implement some sort of IR.
4158 }
4159
4161 // TODO OpenACC: Implement this. It is currently implemented as a 'no-op',
4162 // but in the future we will implement some sort of IR.
4163 }
4164
4165 //===--------------------------------------------------------------------===//
4166 // LValue Expression Emission
4167 //===--------------------------------------------------------------------===//
4168
4169 /// Create a check that a scalar RValue is non-null.
4171
4172 /// GetUndefRValue - Get an appropriate 'undef' rvalue for the given type.
4174
4175 /// EmitUnsupportedRValue - Emit a dummy r-value using the type of E
4176 /// and issue an ErrorUnsupported style diagnostic (using the
4177 /// provided Name).
4179 const char *Name);
4180
4181 /// EmitUnsupportedLValue - Emit a dummy l-value using the type of E and issue
4182 /// an ErrorUnsupported style diagnostic (using the provided Name).
4184 const char *Name);
4185
4186 /// EmitLValue - Emit code to compute a designator that specifies the location
4187 /// of the expression.
4188 ///
4189 /// This can return one of two things: a simple address or a bitfield
4190 /// reference. In either case, the LLVM Value* in the LValue structure is
4191 /// guaranteed to be an LLVM pointer type.
4192 ///
4193 /// If this returns a bitfield reference, nothing about the pointee type of
4194 /// the LLVM value is known: For example, it may not be a pointer to an
4195 /// integer.
4196 ///
4197 /// If this returns a normal address, and if the lvalue's C type is fixed
4198 /// size, this method guarantees that the returned pointer type will point to
4199 /// an LLVM type of the same size of the lvalue's type. If the lvalue has a
4200 /// variable length type, this is not possible.
4201 ///
4203 KnownNonNull_t IsKnownNonNull = NotKnownNonNull);
4204
4205private:
4206 LValue EmitLValueHelper(const Expr *E, KnownNonNull_t IsKnownNonNull);
4207
4208public:
4209 /// Same as EmitLValue but additionally we generate checking code to
4210 /// guard against undefined behavior. This is only suitable when we know
4211 /// that the address will be used to access the object.
4213
4216
4217 void EmitAtomicInit(Expr *E, LValue lvalue);
4218
4220
4223
4225 llvm::AtomicOrdering AO, bool IsVolatile = false,
4227
4228 void EmitAtomicStore(RValue rvalue, LValue lvalue, bool isInit);
4229
4230 void EmitAtomicStore(RValue rvalue, LValue lvalue, llvm::AtomicOrdering AO,
4231 bool IsVolatile, bool isInit);
4232
4233 std::pair<RValue, llvm::Value *> EmitAtomicCompareExchange(
4235 llvm::AtomicOrdering Success =
4236 llvm::AtomicOrdering::SequentiallyConsistent,
4237 llvm::AtomicOrdering Failure =
4238 llvm::AtomicOrdering::SequentiallyConsistent,
4239 bool IsWeak = false, AggValueSlot Slot = AggValueSlot::ignored());
4240
4241 /// Emit an atomicrmw instruction, and applying relevant metadata when
4242 /// applicable.
4243 llvm::AtomicRMWInst *emitAtomicRMWInst(
4244 llvm::AtomicRMWInst::BinOp Op, Address Addr, llvm::Value *Val,
4245 llvm::AtomicOrdering Order = llvm::AtomicOrdering::SequentiallyConsistent,
4246 llvm::SyncScope::ID SSID = llvm::SyncScope::System,
4247 const AtomicExpr *AE = nullptr);
4248
4249 void EmitAtomicUpdate(LValue LVal, llvm::AtomicOrdering AO,
4250 const llvm::function_ref<RValue(RValue)> &UpdateOp,
4251 bool IsVolatile);
4252
4253 /// EmitToMemory - Change a scalar value from its value
4254 /// representation to its in-memory representation.
4255 llvm::Value *EmitToMemory(llvm::Value *Value, QualType Ty);
4256
4257 /// EmitFromMemory - Change a scalar value from its memory
4258 /// representation to its value representation.
4259 llvm::Value *EmitFromMemory(llvm::Value *Value, QualType Ty);
4260
4261 /// Check if the scalar \p Value is within the valid range for the given
4262 /// type \p Ty.
4263 ///
4264 /// Returns true if a check is needed (even if the range is unknown).
4265 bool EmitScalarRangeCheck(llvm::Value *Value, QualType Ty,
4267
4268 /// EmitLoadOfScalar - Load a scalar value from an address, taking
4269 /// care to appropriately convert from the memory representation to
4270 /// the LLVM value representation.
4271 llvm::Value *EmitLoadOfScalar(Address Addr, bool Volatile, QualType Ty,
4274 bool isNontemporal = false) {
4275 return EmitLoadOfScalar(Addr, Volatile, Ty, Loc, LValueBaseInfo(Source),
4276 CGM.getTBAAAccessInfo(Ty), isNontemporal);
4277 }
4278
4279 llvm::Value *EmitLoadOfScalar(Address Addr, bool Volatile, QualType Ty,
4281 TBAAAccessInfo TBAAInfo,
4282 bool isNontemporal = false);
4283
4284 /// EmitLoadOfScalar - Load a scalar value from an address, taking
4285 /// care to appropriately convert from the memory representation to
4286 /// the LLVM value representation. The l-value must be a simple
4287 /// l-value.
4289
4290 /// EmitStoreOfScalar - Store a scalar value to an address, taking
4291 /// care to appropriately convert from the memory representation to
4292 /// the LLVM value representation.
4293 void EmitStoreOfScalar(llvm::Value *Value, Address Addr,
4294 bool Volatile, QualType Ty,
4296 bool isInit = false, bool isNontemporal = false) {
4297 EmitStoreOfScalar(Value, Addr, Volatile, Ty, LValueBaseInfo(Source),
4298 CGM.getTBAAAccessInfo(Ty), isInit, isNontemporal);
4299 }
4300
4301 void EmitStoreOfScalar(llvm::Value *Value, Address Addr,
4302 bool Volatile, QualType Ty,
4303 LValueBaseInfo BaseInfo, TBAAAccessInfo TBAAInfo,
4304 bool isInit = false, bool isNontemporal = false);
4305
4306 /// EmitStoreOfScalar - Store a scalar value to an address, taking
4307 /// care to appropriately convert from the memory representation to
4308 /// the LLVM value representation. The l-value must be a simple
4309 /// l-value. The isInit flag indicates whether this is an initialization.
4310 /// If so, atomic qualifiers are ignored and the store is always non-atomic.
4311 void EmitStoreOfScalar(llvm::Value *value, LValue lvalue, bool isInit=false);
4312
4313 /// EmitLoadOfLValue - Given an expression that represents a value lvalue,
4314 /// this method emits the address of the lvalue, then loads the result as an
4315 /// rvalue, returning the rvalue.
4320
4321 /// Like EmitLoadOfLValue but also handles complex and aggregate types.
4324 SourceLocation Loc = {});
4325
4326 /// EmitStoreThroughLValue - Store the specified rvalue into the specified
4327 /// lvalue, where both are guaranteed to the have the same type, and that type
4328 /// is 'Ty'.
4329 void EmitStoreThroughLValue(RValue Src, LValue Dst, bool isInit = false);
4332
4333 /// EmitStoreThroughBitfieldLValue - Store Src into Dst with same constraints
4334 /// as EmitStoreThroughLValue.
4335 ///
4336 /// \param Result [out] - If non-null, this will be set to a Value* for the
4337 /// bit-field contents after the store, appropriate for use as the result of
4338 /// an assignment to the bit-field.
4340 llvm::Value **Result=nullptr);
4341
4342 /// Emit an l-value for an assignment (simple or compound) of complex type.
4346 llvm::Value *&Result);
4347
4348 // Note: only available for agg return types
4351 // Note: only available for agg return types
4353 llvm::CallBase **CallOrInvoke = nullptr);
4354 // Note: only available for agg return types
4362 bool Accessed = false);
4363 llvm::Value *EmitMatrixIndexExpr(const Expr *E);
4366 bool IsLowerBound = true);
4378
4379 std::pair<LValue, LValue> EmitHLSLOutArgLValues(const HLSLOutArgExpr *E,
4380 QualType Ty);
4382 QualType Ty);
4383
4385
4387
4389 LValueBaseInfo *BaseInfo = nullptr,
4390 TBAAAccessInfo *TBAAInfo = nullptr);
4391
4393 llvm::PointerIntPair<llvm::Constant*, 1, bool> ValueAndIsReference;
4394 ConstantEmission(llvm::Constant *C, bool isReference)
4395 : ValueAndIsReference(C, isReference) {}
4396 public:
4398 static ConstantEmission forReference(llvm::Constant *C) {
4399 return ConstantEmission(C, true);
4400 }
4401 static ConstantEmission forValue(llvm::Constant *C) {
4402 return ConstantEmission(C, false);
4403 }
4404
4405 explicit operator bool() const {
4406 return ValueAndIsReference.getOpaqueValue() != nullptr;
4407 }
4408
4409 bool isReference() const { return ValueAndIsReference.getInt(); }
4411 assert(isReference());
4412 return CGF.MakeNaturalAlignAddrLValue(ValueAndIsReference.getPointer(),
4413 refExpr->getType());
4414 }
4415
4416 llvm::Constant *getValue() const {
4417 assert(!isReference());
4418 return ValueAndIsReference.getPointer();
4419 }
4420 };
4421
4424 llvm::Value *emitScalarConstant(const ConstantEmission &Constant, Expr *E);
4425
4429
4431 const ObjCIvarDecl *Ivar);
4433 const ObjCIvarDecl *Ivar);
4437 llvm::Value *ThisValue);
4438
4439 /// EmitLValueForFieldInitialization - Like EmitLValueForField, except that
4440 /// if the Field is a reference, this will return the address of the reference
4441 /// and not the address of the value stored in the reference.
4443 const FieldDecl* Field);
4444
4446 llvm::Value* Base, const ObjCIvarDecl *Ivar,
4447 unsigned CVRQualifiers);
4448
4453
4460
4461 //===--------------------------------------------------------------------===//
4462 // Scalar Expression Emission
4463 //===--------------------------------------------------------------------===//
4464
4465 /// EmitCall - Generate a call of the given function, expecting the given
4466 /// result type, and using the given argument list which specifies both the
4467 /// LLVM arguments and the types they were derived from.
4468 RValue EmitCall(const CGFunctionInfo &CallInfo, const CGCallee &Callee,
4470 llvm::CallBase **CallOrInvoke, bool IsMustTail,
4472 bool IsVirtualFunctionPointerThunk = false);
4473 RValue EmitCall(const CGFunctionInfo &CallInfo, const CGCallee &Callee,
4475 llvm::CallBase **CallOrInvoke = nullptr,
4476 bool IsMustTail = false) {
4477 return EmitCall(CallInfo, Callee, ReturnValue, Args, CallOrInvoke,
4478 IsMustTail, SourceLocation());
4479 }
4480 RValue EmitCall(QualType FnType, const CGCallee &Callee, const CallExpr *E,
4481 ReturnValueSlot ReturnValue, llvm::Value *Chain = nullptr,
4482 llvm::CallBase **CallOrInvoke = nullptr,
4483 CGFunctionInfo const **ResolvedFnInfo = nullptr);
4484
4485 // If a Call or Invoke instruction was emitted for this CallExpr, this method
4486 // writes the pointer to `CallOrInvoke` if it's not null.
4489 llvm::CallBase **CallOrInvoke = nullptr);
4491 llvm::CallBase **CallOrInvoke = nullptr);
4493
4494 void checkTargetFeatures(const CallExpr *E, const FunctionDecl *TargetDecl);
4496
4497 llvm::CallInst *EmitRuntimeCall(llvm::FunctionCallee callee,
4498 const Twine &name = "");
4499 llvm::CallInst *EmitRuntimeCall(llvm::FunctionCallee callee,
4501 const Twine &name = "");
4502 llvm::CallInst *EmitNounwindRuntimeCall(llvm::FunctionCallee callee,
4503 const Twine &name = "");
4504 llvm::CallInst *EmitNounwindRuntimeCall(llvm::FunctionCallee callee,
4505 ArrayRef<Address> args,
4506 const Twine &name = "");
4507 llvm::CallInst *EmitNounwindRuntimeCall(llvm::FunctionCallee callee,
4509 const Twine &name = "");
4510
4512 getBundlesForFunclet(llvm::Value *Callee);
4513
4514 llvm::CallBase *EmitCallOrInvoke(llvm::FunctionCallee Callee,
4516 const Twine &Name = "");
4517 llvm::CallBase *EmitRuntimeCallOrInvoke(llvm::FunctionCallee callee,
4519 const Twine &name = "");
4520 llvm::CallBase *EmitRuntimeCallOrInvoke(llvm::FunctionCallee callee,
4521 const Twine &name = "");
4522 void EmitNoreturnRuntimeCallOrInvoke(llvm::FunctionCallee callee,
4524
4526 NestedNameSpecifier *Qual,
4527 llvm::Type *Ty);
4528
4531 const CXXRecordDecl *RD);
4532
4534
4535 /// Create the discriminator from the storage address and the entity hash.
4536 llvm::Value *EmitPointerAuthBlendDiscriminator(llvm::Value *StorageAddress,
4537 llvm::Value *Discriminator);
4539 llvm::Value *StorageAddress,
4540 GlobalDecl SchemaDecl,
4541 QualType SchemaType);
4542
4543 llvm::Value *EmitPointerAuthSign(const CGPointerAuthInfo &Info,
4544 llvm::Value *Pointer);
4545
4546 llvm::Value *EmitPointerAuthAuth(const CGPointerAuthInfo &Info,
4547 llvm::Value *Pointer);
4548
4550 const CGPointerAuthInfo &CurAuthInfo,
4551 const CGPointerAuthInfo &NewAuthInfo,
4552 bool IsKnownNonNull);
4553 llvm::Value *emitPointerAuthResignCall(llvm::Value *Pointer,
4554 const CGPointerAuthInfo &CurInfo,
4555 const CGPointerAuthInfo &NewInfo);
4556
4558 const CGPointerAuthInfo &Info,
4560
4561 llvm::Value *authPointerToPointerCast(llvm::Value *ResultPtr,
4562 QualType SourceType, QualType DestType);
4564 QualType DestType);
4565
4567
4568 llvm::Value *getAsNaturalPointerTo(Address Addr, QualType PointeeType) {
4569 return getAsNaturalAddressOf(Addr, PointeeType).getBasePointer();
4570 }
4571
4572 // Return the copy constructor name with the prefix "__copy_constructor_"
4573 // removed.
4575 CharUnits Alignment,
4576 bool IsVolatile,
4577 ASTContext &Ctx);
4578
4579 // Return the destructor name with the prefix "__destructor_" removed.
4581 CharUnits Alignment,
4582 bool IsVolatile,
4583 ASTContext &Ctx);
4584
4585 // These functions emit calls to the special functions of non-trivial C
4586 // structs.
4594
4596 const CXXMethodDecl *Method, const CGCallee &Callee,
4597 ReturnValueSlot ReturnValue, llvm::Value *This,
4598 llvm::Value *ImplicitParam, QualType ImplicitParamTy, const CallExpr *E,
4599 CallArgList *RtlArgs, llvm::CallBase **CallOrInvoke);
4601 llvm::Value *This, QualType ThisTy,
4602 llvm::Value *ImplicitParam,
4603 QualType ImplicitParamTy, const CallExpr *E,
4604 llvm::CallBase **CallOrInvoke = nullptr);
4607 llvm::CallBase **CallOrInvoke = nullptr);
4609 const CallExpr *CE, const CXXMethodDecl *MD, ReturnValueSlot ReturnValue,
4610 bool HasQualifier, NestedNameSpecifier *Qualifier, bool IsArrow,
4611 const Expr *Base, llvm::CallBase **CallOrInvoke);
4612 // Compute the object pointer.
4614 llvm::Value *memberPtr,
4615 const MemberPointerType *memberPtrType,
4616 LValueBaseInfo *BaseInfo = nullptr,
4617 TBAAAccessInfo *TBAAInfo = nullptr);
4620 llvm::CallBase **CallOrInvoke);
4621
4623 const CXXMethodDecl *MD,
4625 llvm::CallBase **CallOrInvoke);
4627
4630 llvm::CallBase **CallOrInvoke);
4631
4634
4635 RValue EmitBuiltinExpr(const GlobalDecl GD, unsigned BuiltinID,
4637
4638 RValue emitRotate(const CallExpr *E, bool IsRotateRight);
4639
4640 /// Emit IR for __builtin_os_log_format.
4642
4643 /// Emit IR for __builtin_is_aligned.
4645 /// Emit IR for __builtin_align_up/__builtin_align_down.
4646 RValue EmitBuiltinAlignTo(const CallExpr *E, bool AlignUp);
4647
4650 CharUnits BufferAlignment);
4651
4653 llvm::CallBase **CallOrInvoke);
4654
4655 /// EmitTargetBuiltinExpr - Emit the given builtin call. Returns 0 if the call
4656 /// is unhandled by the current target.
4657 llvm::Value *EmitTargetBuiltinExpr(unsigned BuiltinID, const CallExpr *E,
4659
4660 llvm::Value *EmitAArch64CompareBuiltinExpr(llvm::Value *Op, llvm::Type *Ty,
4661 const llvm::CmpInst::Predicate Fp,
4662 const llvm::CmpInst::Predicate Ip,
4663 const llvm::Twine &Name = "");
4664 llvm::Value *EmitARMBuiltinExpr(unsigned BuiltinID, const CallExpr *E,
4666 llvm::Triple::ArchType Arch);
4667 llvm::Value *EmitARMMVEBuiltinExpr(unsigned BuiltinID, const CallExpr *E,
4669 llvm::Triple::ArchType Arch);
4670 llvm::Value *EmitARMCDEBuiltinExpr(unsigned BuiltinID, const CallExpr *E,
4672 llvm::Triple::ArchType Arch);
4673 llvm::Value *EmitCMSEClearRecord(llvm::Value *V, llvm::IntegerType *ITy,
4674 QualType RTy);
4675 llvm::Value *EmitCMSEClearRecord(llvm::Value *V, llvm::ArrayType *ATy,
4676 QualType RTy);
4677
4678 llvm::Value *EmitCommonNeonBuiltinExpr(unsigned BuiltinID,
4679 unsigned LLVMIntrinsic,
4680 unsigned AltLLVMIntrinsic,
4681 const char *NameHint,
4682 unsigned Modifier,
4683 const CallExpr *E,
4685 Address PtrOp0, Address PtrOp1,
4686 llvm::Triple::ArchType Arch);
4687
4688 llvm::Function *LookupNeonLLVMIntrinsic(unsigned IntrinsicID,
4689 unsigned Modifier, llvm::Type *ArgTy,
4690 const CallExpr *E);
4691 llvm::Value *EmitNeonCall(llvm::Function *F,
4693 const char *name,
4694 unsigned shift = 0, bool rightshift = false);
4695 llvm::Value *EmitNeonSplat(llvm::Value *V, llvm::Constant *Idx,
4696 const llvm::ElementCount &Count);
4697 llvm::Value *EmitNeonSplat(llvm::Value *V, llvm::Constant *Idx);
4698 llvm::Value *EmitNeonShiftVector(llvm::Value *V, llvm::Type *Ty,
4699 bool negateForRightShift);
4700 llvm::Value *EmitNeonRShiftImm(llvm::Value *Vec, llvm::Value *Amt,
4701 llvm::Type *Ty, bool usgn, const char *name);
4702 llvm::Value *vectorWrapScalar16(llvm::Value *Op);
4703 /// SVEBuiltinMemEltTy - Returns the memory element type for this memory
4704 /// access builtin. Only required if it can't be inferred from the base
4705 /// pointer operand.
4706 llvm::Type *SVEBuiltinMemEltTy(const SVETypeFlags &TypeFlags);
4707
4709 getSVEOverloadTypes(const SVETypeFlags &TypeFlags, llvm::Type *ReturnType,
4711 llvm::Type *getEltType(const SVETypeFlags &TypeFlags);
4712 llvm::ScalableVectorType *getSVEType(const SVETypeFlags &TypeFlags);
4713 llvm::ScalableVectorType *getSVEPredType(const SVETypeFlags &TypeFlags);
4714 llvm::Value *EmitSVETupleSetOrGet(const SVETypeFlags &TypeFlags,
4716 llvm::Value *EmitSVETupleCreate(const SVETypeFlags &TypeFlags,
4717 llvm::Type *ReturnType,
4719 llvm::Value *EmitSVEAllTruePred(const SVETypeFlags &TypeFlags);
4720 llvm::Value *EmitSVEDupX(llvm::Value *Scalar);
4721 llvm::Value *EmitSVEDupX(llvm::Value *Scalar, llvm::Type *Ty);
4722 llvm::Value *EmitSVEReinterpret(llvm::Value *Val, llvm::Type *Ty);
4723 llvm::Value *EmitSVEPMull(const SVETypeFlags &TypeFlags,
4725 unsigned BuiltinID);
4726 llvm::Value *EmitSVEMovl(const SVETypeFlags &TypeFlags,
4728 unsigned BuiltinID);
4729 llvm::Value *EmitSVEPredicateCast(llvm::Value *Pred,
4730 llvm::ScalableVectorType *VTy);
4731 llvm::Value *EmitSVEPredicateTupleCast(llvm::Value *PredTuple,
4732 llvm::StructType *Ty);
4733 llvm::Value *EmitSVEGatherLoad(const SVETypeFlags &TypeFlags,
4735 unsigned IntID);
4736 llvm::Value *EmitSVEScatterStore(const SVETypeFlags &TypeFlags,
4738 unsigned IntID);
4739 llvm::Value *EmitSVEMaskedLoad(const CallExpr *, llvm::Type *ReturnTy,
4741 unsigned BuiltinID, bool IsZExtReturn);
4742 llvm::Value *EmitSVEMaskedStore(const CallExpr *,
4744 unsigned BuiltinID);
4745 llvm::Value *EmitSVEPrefetchLoad(const SVETypeFlags &TypeFlags,
4747 unsigned BuiltinID);
4748 llvm::Value *EmitSVEGatherPrefetch(const SVETypeFlags &TypeFlags,
4750 unsigned IntID);
4751 llvm::Value *EmitSVEStructLoad(const SVETypeFlags &TypeFlags,
4753 unsigned IntID);
4754 llvm::Value *EmitSVEStructStore(const SVETypeFlags &TypeFlags,
4756 unsigned IntID);
4757 llvm::Value *EmitAArch64SVEBuiltinExpr(unsigned BuiltinID, const CallExpr *E);
4758
4759 llvm::Value *EmitSMELd1St1(const SVETypeFlags &TypeFlags,
4761 unsigned IntID);
4762 llvm::Value *EmitSMEReadWrite(const SVETypeFlags &TypeFlags,
4764 unsigned IntID);
4765 llvm::Value *EmitSMEZero(const SVETypeFlags &TypeFlags,
4767 unsigned IntID);
4768 llvm::Value *EmitSMELdrStr(const SVETypeFlags &TypeFlags,
4770 unsigned IntID);
4771
4772 void GetAArch64SVEProcessedOperands(unsigned BuiltinID, const CallExpr *E,
4774 SVETypeFlags TypeFlags);
4775
4776 llvm::Value *EmitAArch64SMEBuiltinExpr(unsigned BuiltinID, const CallExpr *E);
4777
4778 llvm::Value *EmitAArch64BuiltinExpr(unsigned BuiltinID, const CallExpr *E,
4779 llvm::Triple::ArchType Arch);
4780 llvm::Value *EmitBPFBuiltinExpr(unsigned BuiltinID, const CallExpr *E);
4781
4783 llvm::Value *EmitX86BuiltinExpr(unsigned BuiltinID, const CallExpr *E);
4784 llvm::Value *EmitPPCBuiltinExpr(unsigned BuiltinID, const CallExpr *E);
4785 llvm::Value *EmitAMDGPUBuiltinExpr(unsigned BuiltinID, const CallExpr *E);
4786 llvm::Value *EmitHLSLBuiltinExpr(unsigned BuiltinID, const CallExpr *E,
4788 llvm::Value *EmitSPIRVBuiltinExpr(unsigned BuiltinID, const CallExpr *E);
4789 llvm::Value *EmitScalarOrConstFoldImmArg(unsigned ICEArguments, unsigned Idx,
4790 const CallExpr *E);
4791 llvm::Value *EmitSystemZBuiltinExpr(unsigned BuiltinID, const CallExpr *E);
4792 llvm::Value *EmitNVPTXBuiltinExpr(unsigned BuiltinID, const CallExpr *E);
4793 llvm::Value *EmitWebAssemblyBuiltinExpr(unsigned BuiltinID,
4794 const CallExpr *E);
4795 llvm::Value *EmitHexagonBuiltinExpr(unsigned BuiltinID, const CallExpr *E);
4796 llvm::Value *EmitRISCVBuiltinExpr(unsigned BuiltinID, const CallExpr *E,
4798
4799 llvm::Value *EmitRISCVCpuSupports(const CallExpr *E);
4800 llvm::Value *EmitRISCVCpuSupports(ArrayRef<StringRef> FeaturesStrs);
4801 llvm::Value *EmitRISCVCpuInit();
4802 llvm::Value *EmitRISCVCpuIs(const CallExpr *E);
4803 llvm::Value *EmitRISCVCpuIs(StringRef CPUStr);
4804
4805 void AddAMDGPUFenceAddressSpaceMMRA(llvm::Instruction *Inst,
4806 const CallExpr *E);
4807 void ProcessOrderScopeAMDGCN(llvm::Value *Order, llvm::Value *Scope,
4808 llvm::AtomicOrdering &AO,
4809 llvm::SyncScope::ID &SSID);
4810
4811 enum class MSVCIntrin;
4812 llvm::Value *EmitMSVCBuiltinExpr(MSVCIntrin BuiltinID, const CallExpr *E);
4813
4814 llvm::Value *EmitBuiltinAvailable(const VersionTuple &Version);
4815
4818 llvm::Value *EmitObjCBoxedExpr(const ObjCBoxedExpr *E);
4821 llvm::Value *EmitObjCCollectionLiteral(const Expr *E,
4822 const ObjCMethodDecl *MethodWithObjects);
4825 ReturnValueSlot Return = ReturnValueSlot());
4826
4827 /// Retrieves the default cleanup kind for an ARC cleanup.
4828 /// Except under -fobjc-arc-eh, ARC cleanups are normal-only.
4830 return CGM.getCodeGenOpts().ObjCAutoRefCountExceptions
4832 }
4833
4834 // ARC primitives.
4835 void EmitARCInitWeak(Address addr, llvm::Value *value);
4837 llvm::Value *EmitARCLoadWeak(Address addr);
4839 llvm::Value *EmitARCStoreWeak(Address addr, llvm::Value *value, bool ignored);
4840 void emitARCCopyAssignWeak(QualType Ty, Address DstAddr, Address SrcAddr);
4841 void emitARCMoveAssignWeak(QualType Ty, Address DstAddr, Address SrcAddr);
4844 llvm::Value *EmitARCRetainAutorelease(QualType type, llvm::Value *value);
4845 llvm::Value *EmitARCRetainAutoreleaseNonBlock(llvm::Value *value);
4846 llvm::Value *EmitARCStoreStrong(LValue lvalue, llvm::Value *value,
4847 bool resultIgnored);
4848 llvm::Value *EmitARCStoreStrongCall(Address addr, llvm::Value *value,
4849 bool resultIgnored);
4850 llvm::Value *EmitARCRetain(QualType type, llvm::Value *value);
4851 llvm::Value *EmitARCRetainNonBlock(llvm::Value *value);
4852 llvm::Value *EmitARCRetainBlock(llvm::Value *value, bool mandatory);
4854 void EmitARCRelease(llvm::Value *value, ARCPreciseLifetime_t precise);
4855 llvm::Value *EmitARCAutorelease(llvm::Value *value);
4856 llvm::Value *EmitARCAutoreleaseReturnValue(llvm::Value *value);
4857 llvm::Value *EmitARCRetainAutoreleaseReturnValue(llvm::Value *value);
4858 llvm::Value *EmitARCRetainAutoreleasedReturnValue(llvm::Value *value);
4859 llvm::Value *EmitARCUnsafeClaimAutoreleasedReturnValue(llvm::Value *value);
4860
4861 llvm::Value *EmitObjCAutorelease(llvm::Value *value, llvm::Type *returnType);
4862 llvm::Value *EmitObjCRetainNonBlock(llvm::Value *value,
4863 llvm::Type *returnType);
4864 void EmitObjCRelease(llvm::Value *value, ARCPreciseLifetime_t precise);
4865
4866 std::pair<LValue,llvm::Value*>
4868 std::pair<LValue,llvm::Value*>
4869 EmitARCStoreStrong(const BinaryOperator *e, bool ignored);
4870 std::pair<LValue,llvm::Value*>
4872
4873 llvm::Value *EmitObjCAlloc(llvm::Value *value,
4874 llvm::Type *returnType);
4875 llvm::Value *EmitObjCAllocWithZone(llvm::Value *value,
4876 llvm::Type *returnType);
4877 llvm::Value *EmitObjCAllocInit(llvm::Value *value, llvm::Type *resultType);
4878
4879 llvm::Value *EmitObjCThrowOperand(const Expr *expr);
4880 llvm::Value *EmitObjCConsumeObject(QualType T, llvm::Value *Ptr);
4881 llvm::Value *EmitObjCExtendObjectLifetime(QualType T, llvm::Value *Ptr);
4882
4883 llvm::Value *EmitARCExtendBlockObject(const Expr *expr);
4884 llvm::Value *EmitARCReclaimReturnedObject(const Expr *e,
4885 bool allowUnsafeClaim);
4886 llvm::Value *EmitARCRetainScalarExpr(const Expr *expr);
4889
4891
4893
4899
4900 void EmitObjCAutoreleasePoolPop(llvm::Value *Ptr);
4903 void EmitObjCAutoreleasePoolCleanup(llvm::Value *Ptr);
4904 void EmitObjCMRRAutoreleasePoolPop(llvm::Value *Ptr);
4905
4906 /// Emits a reference binding to the passed in expression.
4908
4909 //===--------------------------------------------------------------------===//
4910 // Expression Emission
4911 //===--------------------------------------------------------------------===//
4912
4913 // Expressions are broken into three classes: scalar, complex, aggregate.
4914
4915 /// EmitScalarExpr - Emit the computation of the specified expression of LLVM
4916 /// scalar type, returning the result.
4917 llvm::Value *EmitScalarExpr(const Expr *E , bool IgnoreResultAssign = false);
4918
4919 /// Emit a conversion from the specified type to the specified destination
4920 /// type, both of which are LLVM scalar types.
4921 llvm::Value *EmitScalarConversion(llvm::Value *Src, QualType SrcTy,
4922 QualType DstTy, SourceLocation Loc);
4923
4924 /// Emit a conversion from the specified complex type to the specified
4925 /// destination type, where the destination type is an LLVM scalar type.
4927 QualType DstTy,
4929
4930 /// EmitAggExpr - Emit the computation of the specified expression
4931 /// of aggregate type. The result is computed into the given slot,
4932 /// which may be null to indicate that the value is not needed.
4933 void EmitAggExpr(const Expr *E, AggValueSlot AS);
4934
4935 /// EmitAggExprToLValue - Emit the computation of the specified expression of
4936 /// aggregate type into a temporary LValue.
4938
4940
4941 /// EmitAggFinalDestCopy - Emit copy of the specified aggregate into
4942 /// destination address.
4944 ExprValueKind SrcKind);
4945
4946 /// Create a store to \arg DstPtr from \arg Src, truncating the stored value
4947 /// to at most \arg DstSize bytes.
4948 void CreateCoercedStore(llvm::Value *Src, Address Dst, llvm::TypeSize DstSize,
4949 bool DstIsVolatile);
4950
4951 /// EmitExtendGCLifetime - Given a pointer to an Objective-C object,
4952 /// make sure it survives garbage collection until this point.
4953 void EmitExtendGCLifetime(llvm::Value *object);
4954
4955 /// EmitComplexExpr - Emit the computation of the specified expression of
4956 /// complex type, returning the result.
4958 bool IgnoreReal = false,
4959 bool IgnoreImag = false);
4960
4961 /// EmitComplexExprIntoLValue - Emit the given expression of complex
4962 /// type and place its result into the specified l-value.
4963 void EmitComplexExprIntoLValue(const Expr *E, LValue dest, bool isInit);
4964
4965 /// EmitStoreOfComplex - Store a complex number into the specified l-value.
4966 void EmitStoreOfComplex(ComplexPairTy V, LValue dest, bool isInit);
4967
4968 /// EmitLoadOfComplex - Load a complex number from the specified l-value.
4970
4972 llvm::Value *EmitPromotedScalarExpr(const Expr *E, QualType PromotionType);
4975
4978
4979 /// AddInitializerToStaticVarDecl - Add the initializer for 'D' to the
4980 /// global variable that has already been created for it. If the initializer
4981 /// has a different type than GV does, this may free GV and return a different
4982 /// one. Otherwise it just returns GV.
4983 llvm::GlobalVariable *
4985 llvm::GlobalVariable *GV);
4986
4987 // Emit an @llvm.invariant.start call for the given memory region.
4988 void EmitInvariantStart(llvm::Constant *Addr, CharUnits Size);
4989
4990 /// EmitCXXGlobalVarDeclInit - Create the initializer for a C++
4991 /// variable with global storage.
4992 void EmitCXXGlobalVarDeclInit(const VarDecl &D, llvm::GlobalVariable *GV,
4993 bool PerformInit);
4994
4995 llvm::Constant *createAtExitStub(const VarDecl &VD, llvm::FunctionCallee Dtor,
4996 llvm::Constant *Addr);
4997
4998 llvm::Function *createTLSAtExitStub(const VarDecl &VD,
4999 llvm::FunctionCallee Dtor,
5000 llvm::Constant *Addr,
5001 llvm::FunctionCallee &AtExit);
5002
5003 /// Call atexit() with a function that passes the given argument to
5004 /// the given function.
5005 void registerGlobalDtorWithAtExit(const VarDecl &D, llvm::FunctionCallee fn,
5006 llvm::Constant *addr);
5007
5008 /// Registers the dtor using 'llvm.global_dtors' for platforms that do not
5009 /// support an 'atexit()' function.
5010 void registerGlobalDtorWithLLVM(const VarDecl &D, llvm::FunctionCallee fn,
5011 llvm::Constant *addr);
5012
5013 /// Call atexit() with function dtorStub.
5014 void registerGlobalDtorWithAtExit(llvm::Constant *dtorStub);
5015
5016 /// Call unatexit() with function dtorStub.
5017 llvm::Value *unregisterGlobalDtorWithUnAtExit(llvm::Constant *dtorStub);
5018
5019 /// Emit code in this function to perform a guarded variable
5020 /// initialization. Guarded initializations are used when it's not
5021 /// possible to prove that an initialization will be done exactly
5022 /// once, e.g. with a static local variable or a static data member
5023 /// of a class template.
5024 void EmitCXXGuardedInit(const VarDecl &D, llvm::GlobalVariable *DeclPtr,
5025 bool PerformInit);
5026
5028
5029 /// Emit a branch to select whether or not to perform guarded initialization.
5030 void EmitCXXGuardedInitBranch(llvm::Value *NeedsInit,
5031 llvm::BasicBlock *InitBlock,
5032 llvm::BasicBlock *NoInitBlock,
5033 GuardKind Kind, const VarDecl *D);
5034
5035 /// GenerateCXXGlobalInitFunc - Generates code for initializing global
5036 /// variables.
5037 void
5038 GenerateCXXGlobalInitFunc(llvm::Function *Fn,
5039 ArrayRef<llvm::Function *> CXXThreadLocals,
5041
5042 /// GenerateCXXGlobalCleanUpFunc - Generates code for cleaning up global
5043 /// variables.
5045 llvm::Function *Fn,
5046 ArrayRef<std::tuple<llvm::FunctionType *, llvm::WeakTrackingVH,
5047 llvm::Constant *>>
5048 DtorsOrStermFinalizers);
5049
5050 void GenerateCXXGlobalVarDeclInitFunc(llvm::Function *Fn,
5051 const VarDecl *D,
5052 llvm::GlobalVariable *Addr,
5053 bool PerformInit);
5054
5056
5057 void EmitSynthesizedCXXCopyCtor(Address Dest, Address Src, const Expr *Exp);
5058
5059 void EmitCXXThrowExpr(const CXXThrowExpr *E, bool KeepInsertionPoint = true);
5060
5062
5063 //===--------------------------------------------------------------------===//
5064 // Annotations Emission
5065 //===--------------------------------------------------------------------===//
5066
5067 /// Emit an annotation call (intrinsic).
5068 llvm::Value *EmitAnnotationCall(llvm::Function *AnnotationFn,
5069 llvm::Value *AnnotatedVal,
5070 StringRef AnnotationStr,
5071 SourceLocation Location,
5072 const AnnotateAttr *Attr);
5073
5074 /// Emit local annotations for the local variable V, declared by D.
5075 void EmitVarAnnotations(const VarDecl *D, llvm::Value *V);
5076
5077 /// Emit field annotations for the given field & value. Returns the
5078 /// annotation result.
5080
5081 //===--------------------------------------------------------------------===//
5082 // Internal Helpers
5083 //===--------------------------------------------------------------------===//
5084
5085 /// ContainsLabel - Return true if the statement contains a label in it. If
5086 /// this statement is not executed normally, it not containing a label means
5087 /// that we can just remove the code.
5088 static bool ContainsLabel(const Stmt *S, bool IgnoreCaseStmts = false);
5089
5090 /// containsBreak - Return true if the statement contains a break out of it.
5091 /// If the statement (recursively) contains a switch or loop with a break
5092 /// inside of it, this is fine.
5093 static bool containsBreak(const Stmt *S);
5094
5095 /// Determine if the given statement might introduce a declaration into the
5096 /// current scope, by being a (possibly-labelled) DeclStmt.
5097 static bool mightAddDeclToScope(const Stmt *S);
5098
5099 /// ConstantFoldsToSimpleInteger - If the specified expression does not fold
5100 /// to a constant, or if it does but contains a label, return false. If it
5101 /// constant folds return true and set the boolean result in Result.
5103 bool AllowLabels = false);
5104
5105 /// ConstantFoldsToSimpleInteger - If the specified expression does not fold
5106 /// to a constant, or if it does but contains a label, return false. If it
5107 /// constant folds return true and set the folded value.
5108 bool ConstantFoldsToSimpleInteger(const Expr *Cond, llvm::APSInt &Result,
5109 bool AllowLabels = false);
5110
5111 /// Ignore parentheses and logical-NOT to track conditions consistently.
5112 static const Expr *stripCond(const Expr *C);
5113
5114 /// isInstrumentedCondition - Determine whether the given condition is an
5115 /// instrumentable condition (i.e. no "&&" or "||").
5116 static bool isInstrumentedCondition(const Expr *C);
5117
5118 /// EmitBranchToCounterBlock - Emit a conditional branch to a new block that
5119 /// increments a profile counter based on the semantics of the given logical
5120 /// operator opcode. This is used to instrument branch condition coverage
5121 /// for logical operators.
5123 llvm::BasicBlock *TrueBlock,
5124 llvm::BasicBlock *FalseBlock,
5125 uint64_t TrueCount = 0,
5127 const Expr *CntrIdx = nullptr);
5128
5129 /// EmitBranchOnBoolExpr - Emit a branch on a boolean condition (e.g. for an
5130 /// if statement) to the specified blocks. Based on the condition, this might
5131 /// try to simplify the codegen of the conditional based on the branch.
5132 /// TrueCount should be the number of times we expect the condition to
5133 /// evaluate to true based on PGO data.
5134 void EmitBranchOnBoolExpr(const Expr *Cond, llvm::BasicBlock *TrueBlock,
5135 llvm::BasicBlock *FalseBlock, uint64_t TrueCount,
5137 const Expr *ConditionalOp = nullptr);
5138
5139 /// Given an assignment `*LHS = RHS`, emit a test that checks if \p RHS is
5140 /// nonnull, if \p LHS is marked _Nonnull.
5141 void EmitNullabilityCheck(LValue LHS, llvm::Value *RHS, SourceLocation Loc);
5142
5143 /// An enumeration which makes it easier to specify whether or not an
5144 /// operation is a subtraction.
5145 enum { NotSubtraction = false, IsSubtraction = true };
5146
5147 /// Same as IRBuilder::CreateInBoundsGEP, but additionally emits a check to
5148 /// detect undefined behavior when the pointer overflow sanitizer is enabled.
5149 /// \p SignedIndices indicates whether any of the GEP indices are signed.
5150 /// \p IsSubtraction indicates whether the expression used to form the GEP
5151 /// is a subtraction.
5152 llvm::Value *EmitCheckedInBoundsGEP(llvm::Type *ElemTy, llvm::Value *Ptr,
5154 bool SignedIndices,
5155 bool IsSubtraction,
5157 const Twine &Name = "");
5158
5160 llvm::Type *elementType, bool SignedIndices,
5162 CharUnits Align, const Twine &Name = "");
5163
5164 /// Specifies which type of sanitizer check to apply when handling a
5165 /// particular builtin.
5170 };
5171
5172 /// Emits an argument for a call to a builtin. If the builtin sanitizer is
5173 /// enabled, a runtime check specified by \p Kind is also emitted.
5175
5176 /// Emits an argument for a call to a `__builtin_assume`. If the builtin
5177 /// sanitizer is enabled, a runtime check is also emitted.
5178 llvm::Value *EmitCheckedArgForAssume(const Expr *E);
5179
5180 /// Emit a description of a type in a format suitable for passing to
5181 /// a runtime sanitizer handler.
5183
5184 /// Convert a value into a format suitable for passing to a runtime
5185 /// sanitizer handler.
5186 llvm::Value *EmitCheckValue(llvm::Value *V);
5187
5188 /// Emit a description of a source location in a format suitable for
5189 /// passing to a runtime sanitizer handler.
5191
5194
5195 /// Create a basic block that will either trap or call a handler function in
5196 /// the UBSan runtime with the provided arguments, and create a conditional
5197 /// branch to it.
5198 void
5199 EmitCheck(ArrayRef<std::pair<llvm::Value *, SanitizerKind::SanitizerOrdinal>>
5200 Checked,
5202 ArrayRef<llvm::Value *> DynamicArgs);
5203
5204 /// Emit a slow path cross-DSO CFI check which calls __cfi_slowpath
5205 /// if Cond if false.
5207 llvm::Value *Cond, llvm::ConstantInt *TypeId,
5208 llvm::Value *Ptr,
5209 ArrayRef<llvm::Constant *> StaticArgs);
5210
5211 /// Emit a reached-unreachable diagnostic if \p Loc is valid and runtime
5212 /// checking is enabled. Otherwise, just emit an unreachable instruction.
5214
5215 /// Create a basic block that will call the trap intrinsic, and emit a
5216 /// conditional branch to it, for the -ftrapv checks.
5217 void EmitTrapCheck(llvm::Value *Checked, SanitizerHandler CheckHandlerID,
5218 bool NoMerge = false);
5219
5220 /// Emit a call to trap or debugtrap and attach function attribute
5221 /// "trap-func-name" if specified.
5222 llvm::CallInst *EmitTrapCall(llvm::Intrinsic::ID IntrID);
5223
5224 /// Emit a stub for the cross-DSO CFI check function.
5226
5227 /// Emit a cross-DSO CFI failure handling function.
5229
5230 /// Create a check for a function parameter that may potentially be
5231 /// declared as non-null.
5233 AbstractCallee AC, unsigned ParmNum);
5234
5236 SourceLocation ArgLoc, AbstractCallee AC,
5237 unsigned ParmNum);
5238
5239 /// EmitWriteback - Emit callbacks for function.
5240 void EmitWritebacks(const CallArgList &Args);
5241
5242 /// EmitCallArg - Emit a single call argument.
5243 void EmitCallArg(CallArgList &args, const Expr *E, QualType ArgType);
5244
5245 /// EmitDelegateCallArg - We are performing a delegate call; that
5246 /// is, the current function is delegating to another one. Produce
5247 /// a r-value suitable for passing the given parameter.
5248 void EmitDelegateCallArg(CallArgList &args, const VarDecl *param,
5249 SourceLocation loc);
5250
5251 /// SetFPAccuracy - Set the minimum required accuracy of the given floating
5252 /// point operation, expressed as the maximum relative error in ulp.
5253 void SetFPAccuracy(llvm::Value *Val, float Accuracy);
5254
5255 /// Set the minimum required accuracy of the given sqrt operation
5256 /// based on CodeGenOpts.
5257 void SetSqrtFPAccuracy(llvm::Value *Val);
5258
5259 /// Set the minimum required accuracy of the given sqrt operation based on
5260 /// CodeGenOpts.
5261 void SetDivFPAccuracy(llvm::Value *Val);
5262
5263 /// Set the codegen fast-math flags.
5264 void SetFastMathFlags(FPOptions FPFeatures);
5265
5266 // Truncate or extend a boolean vector to the requested number of elements.
5267 llvm::Value *emitBoolVecConversion(llvm::Value *SrcVec,
5268 unsigned NumElementsDst,
5269 const llvm::Twine &Name = "");
5270
5271private:
5272 // Emits a convergence_loop instruction for the given |BB|, with |ParentToken|
5273 // as it's parent convergence instr.
5274 llvm::ConvergenceControlInst *emitConvergenceLoopToken(llvm::BasicBlock *BB);
5275
5276 // Adds a convergence_ctrl token with |ParentToken| as parent convergence
5277 // instr to the call |Input|.
5278 llvm::CallBase *addConvergenceControlToken(llvm::CallBase *Input);
5279
5280 // Find the convergence_entry instruction |F|, or emits ones if none exists.
5281 // Returns the convergence instruction.
5282 llvm::ConvergenceControlInst *
5283 getOrEmitConvergenceEntryToken(llvm::Function *F);
5284
5285private:
5286 llvm::MDNode *getRangeForLoadFromType(QualType Ty);
5287 void EmitReturnOfRValue(RValue RV, QualType Ty);
5288
5289 void deferPlaceholderReplacement(llvm::Instruction *Old, llvm::Value *New);
5290
5292 DeferredReplacements;
5293
5294 /// Set the address of a local variable.
5295 void setAddrOfLocalVar(const VarDecl *VD, Address Addr) {
5296 assert(!LocalDeclMap.count(VD) && "Decl already exists in LocalDeclMap!");
5297 LocalDeclMap.insert({VD, Addr});
5298 }
5299
5300 /// ExpandTypeFromArgs - Reconstruct a structure of type \arg Ty
5301 /// from function arguments into \arg Dst. See ABIArgInfo::Expand.
5302 ///
5303 /// \param AI - The first function argument of the expansion.
5304 void ExpandTypeFromArgs(QualType Ty, LValue Dst,
5305 llvm::Function::arg_iterator &AI);
5306
5307 /// ExpandTypeToArgs - Expand an CallArg \arg Arg, with the LLVM type for \arg
5308 /// Ty, into individual arguments on the provided vector \arg IRCallArgs,
5309 /// starting at index \arg IRCallArgPos. See ABIArgInfo::Expand.
5310 void ExpandTypeToArgs(QualType Ty, CallArg Arg, llvm::FunctionType *IRFuncTy,
5312 unsigned &IRCallArgPos);
5313
5314 std::pair<llvm::Value *, llvm::Type *>
5315 EmitAsmInput(const TargetInfo::ConstraintInfo &Info, const Expr *InputExpr,
5316 std::string &ConstraintStr);
5317
5318 std::pair<llvm::Value *, llvm::Type *>
5319 EmitAsmInputLValue(const TargetInfo::ConstraintInfo &Info, LValue InputValue,
5320 QualType InputType, std::string &ConstraintStr,
5322
5323 /// Attempts to statically evaluate the object size of E. If that
5324 /// fails, emits code to figure the size of E out for us. This is
5325 /// pass_object_size aware.
5326 ///
5327 /// If EmittedExpr is non-null, this will use that instead of re-emitting E.
5328 llvm::Value *evaluateOrEmitBuiltinObjectSize(const Expr *E, unsigned Type,
5329 llvm::IntegerType *ResType,
5330 llvm::Value *EmittedE,
5331 bool IsDynamic);
5332
5333 /// Emits the size of E, as required by __builtin_object_size. This
5334 /// function is aware of pass_object_size parameters, and will act accordingly
5335 /// if E is a parameter with the pass_object_size attribute.
5336 llvm::Value *emitBuiltinObjectSize(const Expr *E, unsigned Type,
5337 llvm::IntegerType *ResType,
5338 llvm::Value *EmittedE,
5339 bool IsDynamic);
5340
5341 llvm::Value *emitFlexibleArrayMemberSize(const Expr *E, unsigned Type,
5342 llvm::IntegerType *ResType);
5343
5344 void emitZeroOrPatternForAutoVarInit(QualType type, const VarDecl &D,
5345 Address Loc);
5346
5347public:
5348 enum class EvaluationOrder {
5349 ///! No language constraints on evaluation order.
5350 Default,
5351 ///! Language semantics require left-to-right evaluation.
5353 ///! Language semantics require right-to-left evaluation.
5355 };
5356
5357 // Wrapper for function prototype sources. Wraps either a FunctionProtoType or
5358 // an ObjCMethodDecl.
5360 llvm::PointerUnion<const FunctionProtoType *, const ObjCMethodDecl *> P;
5361
5364 };
5365
5367 llvm::iterator_range<CallExpr::const_arg_iterator> ArgRange,
5369 unsigned ParamsToSkip = 0,
5371
5372 /// EmitPointerWithAlignment - Given an expression with a pointer type,
5373 /// emit the value and compute our best estimate of the alignment of the
5374 /// pointee.
5375 ///
5376 /// \param BaseInfo - If non-null, this will be initialized with
5377 /// information about the source of the alignment and the may-alias
5378 /// attribute. Note that this function will conservatively fall back on
5379 /// the type when it doesn't recognize the expression and may-alias will
5380 /// be set to false.
5381 ///
5382 /// One reasonable way to use this information is when there's a language
5383 /// guarantee that the pointer must be aligned to some stricter value, and
5384 /// we're simply trying to ensure that sufficiently obvious uses of under-
5385 /// aligned objects don't get miscompiled; for example, a placement new
5386 /// into the address of a local variable. In such a case, it's quite
5387 /// reasonable to just ignore the returned alignment when it isn't from an
5388 /// explicit source.
5389 Address
5390 EmitPointerWithAlignment(const Expr *Addr, LValueBaseInfo *BaseInfo = nullptr,
5391 TBAAAccessInfo *TBAAInfo = nullptr,
5392 KnownNonNull_t IsKnownNonNull = NotKnownNonNull);
5393
5394 /// If \p E references a parameter with pass_object_size info or a constant
5395 /// array size modifier, emit the object size divided by the size of \p EltTy.
5396 /// Otherwise return null.
5397 llvm::Value *LoadPassedObjectSize(const Expr *E, QualType EltTy);
5398
5399 void EmitSanitizerStatReport(llvm::SanitizerStatKind SSK);
5400
5402 llvm::Function *Function;
5404 std::optional<StringRef> Architecture;
5405
5406 FMVResolverOption(llvm::Function *F, ArrayRef<StringRef> Feats,
5407 std::optional<StringRef> Arch = std::nullopt)
5408 : Function(F), Features(Feats), Architecture(Arch) {}
5409 };
5410
5411 // Emits the body of a multiversion function's resolver. Assumes that the
5412 // options are already sorted in the proper order, with the 'default' option
5413 // last (if it exists).
5414 void EmitMultiVersionResolver(llvm::Function *Resolver,
5416 void EmitX86MultiVersionResolver(llvm::Function *Resolver,
5418 void EmitAArch64MultiVersionResolver(llvm::Function *Resolver,
5420 void EmitRISCVMultiVersionResolver(llvm::Function *Resolver,
5422
5423private:
5424 QualType getVarArgType(const Expr *Arg);
5425
5426 void EmitDeclMetadata();
5427
5428 BlockByrefHelpers *buildByrefHelpers(llvm::StructType &byrefType,
5429 const AutoVarEmission &emission);
5430
5431 void AddObjCARCExceptionMetadata(llvm::Instruction *Inst);
5432
5433 llvm::Value *GetValueForARMHint(unsigned BuiltinID);
5434 llvm::Value *EmitX86CpuIs(const CallExpr *E);
5435 llvm::Value *EmitX86CpuIs(StringRef CPUStr);
5436 llvm::Value *EmitX86CpuSupports(const CallExpr *E);
5437 llvm::Value *EmitX86CpuSupports(ArrayRef<StringRef> FeatureStrs);
5438 llvm::Value *EmitX86CpuSupports(std::array<uint32_t, 4> FeatureMask);
5439 llvm::Value *EmitX86CpuInit();
5440 llvm::Value *FormX86ResolverCondition(const FMVResolverOption &RO);
5441 llvm::Value *EmitAArch64CpuInit();
5442 llvm::Value *FormAArch64ResolverCondition(const FMVResolverOption &RO);
5443 llvm::Value *EmitAArch64CpuSupports(const CallExpr *E);
5444 llvm::Value *EmitAArch64CpuSupports(ArrayRef<StringRef> FeatureStrs);
5445};
5446
5449 if (!needsSaving(value)) return saved_type(value, false);
5450
5451 // Otherwise, we need an alloca.
5452 auto align = CharUnits::fromQuantity(
5453 CGF.CGM.getDataLayout().getPrefTypeAlign(value->getType()));
5454 Address alloca =
5455 CGF.CreateTempAlloca(value->getType(), align, "cond-cleanup.save");
5456 CGF.Builder.CreateStore(value, alloca);
5457
5458 return saved_type(alloca.emitRawPointer(CGF), true);
5459}
5460
5462 saved_type value) {
5463 // If the value says it wasn't saved, trust that it's still dominating.
5464 if (!value.getInt()) return value.getPointer();
5465
5466 // Otherwise, it should be an alloca instruction, as set up in save().
5467 auto alloca = cast<llvm::AllocaInst>(value.getPointer());
5468 return CGF.Builder.CreateAlignedLoad(alloca->getAllocatedType(), alloca,
5469 alloca->getAlign());
5470}
5471
5472} // end namespace CodeGen
5473
5474// Map the LangOption for floating point exception behavior into
5475// the corresponding enum in the IR.
5476llvm::fp::ExceptionBehavior
5478} // end namespace clang
5479
5480#endif
Enums/classes describing ABI related information about constructors, destructors and thunks.
#define V(N, I)
Definition: ASTContext.h:3460
static bool CanThrow(Expr *E, ASTContext &Ctx)
Definition: CFG.cpp:2686
@ ForDeactivation
Definition: CGCleanup.cpp:1205
const Decl * D
enum clang::sema::@1727::IndirectLocalPathEntry::EntryKind Kind
Expr * E
unsigned OldSize
Defines the clang::Expr interface and subclasses for C++ expressions.
const CFGBlock * Block
Definition: HTMLLogger.cpp:152
#define X(type, name)
Definition: Value.h:144
llvm::MachO::Architecture Architecture
Definition: MachO.h:27
llvm::MachO::Target Target
Definition: MachO.h:51
Defines some OpenMP-specific enums and functions.
SourceRange Range
Definition: SemaObjC.cpp:758
VarDecl * Variable
Definition: SemaObjC.cpp:757
SourceLocation Loc
Definition: SemaObjC.cpp:759
const char * Data
This file defines OpenACC AST classes for statement-level contructs.
This file defines OpenMP AST classes for executable directives and clauses.
This file defines SYCL AST classes used to represent calls to SYCL kernels.
C Language Family Type Representation.
StateNode * Previous
#define bool
Definition: amdgpuintrin.h:20
APValue - This class implements a discriminated union of [uninitialized] [APSInt] [APFloat],...
Definition: APValue.h:122
Holds long-lived AST nodes (such as types and decls) that can be referred to throughout the semantic ...
Definition: ASTContext.h:188
AbstractConditionalOperator - An abstract base class for ConditionalOperator and BinaryConditionalOpe...
Definition: Expr.h:4224
This class represents BOTH the OpenMP Array Section and OpenACC 'subarray', with a boolean differenti...
Definition: Expr.h:6986
ArraySubscriptExpr - [C99 6.5.2.1] Array Subscripting.
Definition: Expr.h:2718
Represents an array type, per C99 6.7.5.2 - Array Declarators.
Definition: Type.h:3577
AsmStmt is the base class for GCCAsmStmt and MSAsmStmt.
Definition: Stmt.h:3127
AtomicExpr - Variadic atomic builtins: __atomic_exchange, __atomic_fetch_*, __atomic_load,...
Definition: Expr.h:6678
Attr - This represents one attribute.
Definition: Attr.h:43
Represents an attribute applied to a statement.
Definition: Stmt.h:2107
BinaryConditionalOperator - The GNU extension to the conditional operator which allows the middle ope...
Definition: Expr.h:4324
OpaqueValueExpr * getOpaqueValue() const
getOpaqueValue - Return the opaque value placeholder.
Definition: Expr.h:4362
Expr * getCommon() const
getCommon - Return the common expression, written to the left of the condition.
Definition: Expr.h:4359
A builtin binary operation expression such as "x + y" or "x <= y".
Definition: Expr.h:3909
static bool isLogicalOp(Opcode Opc)
Definition: Expr.h:4042
BlockExpr - Adaptor class for mixing a BlockDecl with expressions.
Definition: Expr.h:6414
BreakStmt - This represents a break.
Definition: Stmt.h:3007
Represents a call to a CUDA kernel function.
Definition: ExprCXX.h:231
Represents binding an expression to a temporary.
Definition: ExprCXX.h:1491
Represents a call to a C++ constructor.
Definition: ExprCXX.h:1546
Represents a C++ constructor within a class.
Definition: DeclCXX.h:2553
A default argument (C++ [dcl.fct.default]).
Definition: ExprCXX.h:1268
A use of a default initializer in a constructor or in aggregate initialization.
Definition: ExprCXX.h:1375
Represents a delete expression for memory deallocation and destructor calls, e.g.
Definition: ExprCXX.h:2498
Represents a C++ destructor within a class.
Definition: DeclCXX.h:2817
A C++ dynamic_cast expression (C++ [expr.dynamic.cast]).
Definition: ExprCXX.h:478
CXXForRangeStmt - This represents C++0x [stmt.ranged]'s ranged for statement, represented as 'for (ra...
Definition: StmtCXX.h:135
Represents a call to an inherited base class constructor from an inheriting constructor.
Definition: ExprCXX.h:1737
Represents a call to a member function that may be written either with member call syntax (e....
Definition: ExprCXX.h:176
Represents a static or instance method of a struct/union/class.
Definition: DeclCXX.h:2078
Represents a new-expression for memory allocation and constructor calls, e.g: "new CXXNewExpr(foo)".
Definition: ExprCXX.h:2241
A call to an overloaded operator written using operator syntax.
Definition: ExprCXX.h:81
Represents a C++ pseudo-destructor (C++ [expr.pseudo]).
Definition: ExprCXX.h:2617
Represents a C++ struct/union/class.
Definition: DeclCXX.h:258
Represents a C++ temporary.
Definition: ExprCXX.h:1457
A C++ throw-expression (C++ [except.throw]).
Definition: ExprCXX.h:1206
CXXTryStmt - A C++ try block, including all handlers.
Definition: StmtCXX.h:69
A C++ typeid expression (C++ [expr.typeid]), which gets the type_info that corresponds to the supplie...
Definition: ExprCXX.h:845
A Microsoft C++ __uuidof expression, which gets the _GUID that corresponds to the supplied type or ex...
Definition: ExprCXX.h:1066
CallExpr - Represents a function call (C99 6.5.2.2, C++ [expr.call]).
Definition: Expr.h:2874
Describes the capture of either a variable, or 'this', or variable-length array type.
Definition: Stmt.h:3797
This captures a statement into a function.
Definition: Stmt.h:3784
CaseStmt - Represent a case statement.
Definition: Stmt.h:1828
CastExpr - Base class for type casts, including both implicit casts (ImplicitCastExpr) and explicit c...
Definition: Expr.h:3547
const CXXBaseSpecifier *const * path_const_iterator
Definition: Expr.h:3614
CharUnits - This is an opaque type for sizes expressed in character units.
Definition: CharUnits.h:38
bool isZero() const
isZero - Test whether the quantity equals zero.
Definition: CharUnits.h:122
llvm::Align getAsAlign() const
getAsAlign - Returns Quantity as a valid llvm::Align, Beware llvm::Align assumes power of two 8-bit b...
Definition: CharUnits.h:189
static CharUnits fromQuantity(QuantityType Quantity)
fromQuantity - Construct a CharUnits quantity from a raw integer type.
Definition: CharUnits.h:63
static CharUnits Zero()
Zero - Construct a CharUnits quantity of zero.
Definition: CharUnits.h:53
Represents a 'co_await' expression.
Definition: ExprCXX.h:5191
bool hasProfileClangInstr() const
Check if Clang profile instrumenation is on.
Like RawAddress, an abstract representation of an aligned address, but the pointer contained in this ...
Definition: Address.h:128
llvm::Value * getBasePointer() const
Definition: Address.h:193
static Address invalid()
Definition: Address.h:176
llvm::Value * emitRawPointer(CodeGenFunction &CGF) const
Return the pointer contained in this class after authenticating it and adding offset to it if necessa...
Definition: Address.h:251
CharUnits getAlignment() const
Definition: Address.h:189
llvm::Type * getElementType() const
Return the type of the values stored in this address.
Definition: Address.h:207
bool hasOffset() const
Definition: Address.h:242
void setAlignment(CharUnits Value)
Definition: Address.h:191
llvm::Value * getOffset() const
Definition: Address.h:244
void replaceBasePointer(llvm::Value *P)
This function is used in situations where the caller is doing some sort of opaque "laundering" of the...
Definition: Address.h:181
bool isValid() const
Definition: Address.h:177
llvm::PointerType * getType() const
Return the type of the pointer value.
Definition: Address.h:199
An aggregate value slot.
Definition: CGValue.h:504
static AggValueSlot ignored()
ignored - Returns an aggregate value slot indicating that the aggregate value is being ignored.
Definition: CGValue.h:572
static AggValueSlot forAddr(Address addr, Qualifiers quals, IsDestructed_t isDestructed, NeedsGCBarriers_t needsGC, IsAliased_t isAliased, Overlap_t mayOverlap, IsZeroed_t isZeroed=IsNotZeroed, IsSanitizerChecked_t isChecked=IsNotSanitizerChecked)
forAddr - Make a slot for an aggregate value.
Definition: CGValue.h:587
A scoped helper to set the current debug location to the specified location or preferred location of ...
Definition: CGDebugInfo.h:858
static ApplyDebugLocation CreateArtificial(CodeGenFunction &CGF)
Apply TemporaryLocation if it is valid.
Definition: CGDebugInfo.h:898
A pair of helper functions for a __block variable.
Information about the layout of a __block variable.
Definition: CGBlocks.h:136
CGBlockInfo - Information to generate a block literal.
Definition: CGBlocks.h:156
llvm::StoreInst * CreateStore(llvm::Value *Val, Address Addr, bool IsVolatile=false)
Definition: CGBuilder.h:136
llvm::LoadInst * CreateFlagLoad(llvm::Value *Addr, const llvm::Twine &Name="")
Emit a load from an i1 flag variable.
Definition: CGBuilder.h:158
llvm::LoadInst * CreateAlignedLoad(llvm::Type *Ty, llvm::Value *Addr, CharUnits Align, const llvm::Twine &Name="")
Definition: CGBuilder.h:128
Implements C++ ABI-specific code generation functions.
Definition: CGCXXABI.h:43
All available information about a concrete callee.
Definition: CGCall.h:63
This class gathers all debug information during compilation and is responsible for emitting to llvm g...
Definition: CGDebugInfo.h:58
CGFunctionInfo - Class to encapsulate the information about a function definition.
CallArgList - Type for representing both the value and type of arguments in a call.
Definition: CGCall.h:274
An abstract representation of regular/ObjC call/message targets.
const ParmVarDecl * getParamDecl(unsigned I) const
ArrayInitLoopExprScope(CodeGenFunction &CGF, llvm::Value *Index)
Address getAllocatedAddress() const
Returns the raw, allocated address, which is not necessarily the address of the object itself.
RawAddress getOriginalAllocatedAddress() const
Returns the address for the original alloca instruction.
Address getObjectAddress(CodeGenFunction &CGF) const
Returns the address of the object within this declaration.
API for captured statement code generation.
static bool classof(const CGCapturedStmtInfo *)
llvm::SmallDenseMap< const VarDecl *, FieldDecl * > getCaptureFields()
Get the CaptureFields.
CGCapturedStmtInfo(CapturedRegionKind K=CR_Default)
virtual void EmitBody(CodeGenFunction &CGF, const Stmt *S)
Emit the captured statement body.
virtual StringRef getHelperName() const
Get the name of the capture helper.
CGCapturedStmtInfo(const CapturedStmt &S, CapturedRegionKind K=CR_Default)
virtual const FieldDecl * lookup(const VarDecl *VD) const
Lookup the captured field decl for a variable.
RAII for correct setting/restoring of CapturedStmtInfo.
CGCapturedStmtRAII(CodeGenFunction &CGF, CGCapturedStmtInfo *NewCapturedStmtInfo)
CXXDefaultInitExprScope(CodeGenFunction &CGF, const CXXDefaultInitExpr *E)
void Emit(CodeGenFunction &CGF, Flags flags) override
Emit the cleanup.
CallLifetimeEnd(RawAddress addr, llvm::Value *size)
An object to manage conditionally-evaluated expressions.
llvm::BasicBlock * getStartingBlock() const
Returns a block which will be executed prior to each evaluation of the conditional code.
static ConstantEmission forValue(llvm::Constant *C)
static ConstantEmission forReference(llvm::Constant *C)
LValue getReferenceLValue(CodeGenFunction &CGF, Expr *refExpr) const
A scope within which we are constructing the fields of an object which might use a CXXDefaultInitExpr...
FieldConstructionScope(CodeGenFunction &CGF, Address This)
A class controlling the emission of a finally block.
void enter(CodeGenFunction &CGF, const Stmt *Finally, llvm::FunctionCallee beginCatchFn, llvm::FunctionCallee endCatchFn, llvm::FunctionCallee rethrowFn)
Enters a finally block for an implementation using zero-cost exceptions.
InlinedInheritingConstructorScope(CodeGenFunction &CGF, GlobalDecl GD)
void rescopeLabels()
Change the cleanup scope of the labels in this lexical scope to match the scope of the enclosing cont...
Definition: CGStmt.cpp:744
LexicalScope(CodeGenFunction &CGF, SourceRange Range)
Enter a new cleanup scope.
void ForceCleanup()
Force the emission of cleanups now, instead of waiting until this object is destroyed.
~LexicalScope()
Exit this cleanup scope, emitting any accumulated cleanups.
RAII for preserving necessary info during inlined region body codegen.
InlinedRegionBodyRAII(CodeGenFunction &cgf, InsertPointTy &AllocaIP, llvm::BasicBlock &FiniBB)
void Emit(CodeGenFunction &CGF, Flags) override
Emit the cleanup.
RAII for preserving necessary info during Outlined region body codegen.
OutlinedRegionBodyRAII(CodeGenFunction &cgf, InsertPointTy &AllocaIP, llvm::BasicBlock &RetBB)
Controls insertion of cancellation exit blocks in worksharing constructs.
OMPCancelStackRAII(CodeGenFunction &CGF, OpenMPDirectiveKind Kind, bool HasCancel)
Save/restore original map of previously emitted local vars in case when we need to duplicate emission...
The class used to assign some variables some temporarily addresses.
bool apply(CodeGenFunction &CGF)
Applies new addresses to the list of the variables.
void restore(CodeGenFunction &CGF)
Restores original addresses of the variables.
bool setVarAddr(CodeGenFunction &CGF, const VarDecl *LocalVD, Address TempAddr)
Sets the address of the variable LocalVD to be TempAddr in function CGF.
The scope used to remap some variables as private in the OpenMP loop body (or other captured region e...
void restoreMap()
Restore all mapped variables w/o clean up.
bool Privatize()
Privatizes local variables previously registered as private.
bool isGlobalVarCaptured(const VarDecl *VD) const
Checks if the global variable is captured in current function.
OMPPrivateScope(CodeGenFunction &CGF)
Enter a new OpenMP private scope.
~OMPPrivateScope()
Exit scope - all the mapped variables are restored.
bool addPrivate(const VarDecl *LocalVD, Address Addr)
Registers LocalVD variable as a private with Addr as the address of the corresponding private variabl...
A non-RAII class containing all the information about a bound opaque value.
static OpaqueValueMappingData bind(CodeGenFunction &CGF, const OpaqueValueExpr *ov, const LValue &lv)
static OpaqueValueMappingData bind(CodeGenFunction &CGF, const OpaqueValueExpr *ov, const RValue &rv)
static OpaqueValueMappingData bind(CodeGenFunction &CGF, const OpaqueValueExpr *ov, const Expr *e)
An RAII object to set (and then clear) a mapping for an OpaqueValueExpr.
OpaqueValueMapping(CodeGenFunction &CGF, const OpaqueValueExpr *OV)
Build the opaque value mapping for an OpaqueValueExpr whose source expression is set to the expressio...
OpaqueValueMapping(CodeGenFunction &CGF, const AbstractConditionalOperator *op)
Build the opaque value mapping for the given conditional operator if it's the GNU ?...
OpaqueValueMapping(CodeGenFunction &CGF, const OpaqueValueExpr *opaqueValue, RValue rvalue)
OpaqueValueMapping(CodeGenFunction &CGF, const OpaqueValueExpr *opaqueValue, LValue lvalue)
static ParamValue forIndirect(Address addr)
static ParamValue forDirect(llvm::Value *value)
ParentLoopDirectiveForScanRegion(CodeGenFunction &CGF, const OMPExecutableDirective &ParentLoopDirectiveForScan)
An object which temporarily prevents a value from being destroyed by aggressive peephole optimization...
Enters a new scope for capturing cleanups, all of which will be executed once the scope is exited.
RunCleanupsScope(CodeGenFunction &CGF)
Enter a new cleanup scope.
~RunCleanupsScope()
Exit this cleanup scope, emitting any accumulated cleanups.
void ForceCleanup(std::initializer_list< llvm::Value ** > ValuesToReload={})
Force the emission of cleanups now, instead of waiting until this object is destroyed.
bool requiresCleanups() const
Determine whether this scope requires any cleanups.
RAII object to set/unset CodeGenFunction::IsSanitizerScope.
An RAII object to record that we're evaluating a statement expression.
CodeGenFunction - This class organizes the per-function state that is used while generating LLVM code...
void GenerateObjCCtorDtorMethod(ObjCImplementationDecl *IMP, ObjCMethodDecl *MD, bool ctor)
llvm::Value * EmitAArch64BuiltinExpr(unsigned BuiltinID, const CallExpr *E, llvm::Triple::ArchType Arch)
void emitAutoVarTypeCleanup(const AutoVarEmission &emission, QualType::DestructionKind dtorKind)
EHScopeStack::stable_iterator CurrentCleanupScopeDepth
llvm::Value * EmitFromMemory(llvm::Value *Value, QualType Ty)
EmitFromMemory - Change a scalar value from its memory representation to its value representation.
void GenerateCXXGlobalInitFunc(llvm::Function *Fn, ArrayRef< llvm::Function * > CXXThreadLocals, ConstantAddress Guard=ConstantAddress::invalid())
GenerateCXXGlobalInitFunc - Generates code for initializing global variables.
llvm::Value * EmitPointerAuthAuth(const CGPointerAuthInfo &Info, llvm::Value *Pointer)
LValue EmitOpaqueValueLValue(const OpaqueValueExpr *e)
RValue EmitLoadOfGlobalRegLValue(LValue LV)
void EmitGotoStmt(const GotoStmt &S)
void EmitSynthesizedCXXCopyCtorCall(const CXXConstructorDecl *D, Address This, Address Src, const CXXConstructExpr *E)
void EmitDestructorBody(FunctionArgList &Args)
void EmitOMPTaskBasedDirective(const OMPExecutableDirective &S, const OpenMPDirectiveKind CapturedRegion, const RegionCodeGenTy &BodyGen, const TaskGenTy &TaskGen, OMPTaskDataTy &Data)
void StartObjCMethod(const ObjCMethodDecl *MD, const ObjCContainerDecl *CD)
llvm::BasicBlock * getEHDispatchBlock(EHScopeStack::stable_iterator scope)
void EmitOMPTargetTeamsDirective(const OMPTargetTeamsDirective &S)
void pushCallObjectDeleteCleanup(const FunctionDecl *OperatorDelete, llvm::Value *CompletePtr, QualType ElementType)
llvm::Value * EmitMSVCBuiltinExpr(MSVCIntrin BuiltinID, const CallExpr *E)
void EmitBranchToCounterBlock(const Expr *Cond, BinaryOperator::Opcode LOp, llvm::BasicBlock *TrueBlock, llvm::BasicBlock *FalseBlock, uint64_t TrueCount=0, Stmt::Likelihood LH=Stmt::LH_None, const Expr *CntrIdx=nullptr)
EmitBranchToCounterBlock - Emit a conditional branch to a new block that increments a profile counter...
LValue EmitObjCIvarRefLValue(const ObjCIvarRefExpr *E)
void EmitARCDestroyWeak(Address addr)
void FinishFunction(SourceLocation EndLoc=SourceLocation())
FinishFunction - Complete IR generation of the current function.
LValue EmitCompoundLiteralLValue(const CompoundLiteralExpr *E)
void EmitNullInitialization(Address DestPtr, QualType Ty)
EmitNullInitialization - Generate code to set a value of the given type to null, If the type contains...
void enterByrefCleanup(CleanupKind Kind, Address Addr, BlockFieldFlags Flags, bool LoadBlockVarAddr, bool CanThrow)
Enter a cleanup to destroy a __block variable.
void CreateCoercedStore(llvm::Value *Src, Address Dst, llvm::TypeSize DstSize, bool DstIsVolatile)
Create a store to.
void EmitOMPParallelGenericLoopDirective(const OMPLoopDirective &S)
void EmitOMPAggregateAssign(Address DestAddr, Address SrcAddr, QualType OriginalType, const llvm::function_ref< void(Address, Address)> CopyGen)
Perform element by element copying of arrays with type OriginalType from SrcAddr to DestAddr using co...
llvm::Value * EmitLifetimeStart(llvm::TypeSize Size, llvm::Value *Addr)
void EmitPointerAuthOperandBundle(const CGPointerAuthInfo &Info, SmallVectorImpl< llvm::OperandBundleDef > &Bundles)
void EmitTypeCheck(TypeCheckKind TCK, SourceLocation Loc, llvm::Value *V, QualType Type, CharUnits Alignment=CharUnits::Zero(), SanitizerSet SkippedChecks=SanitizerSet(), llvm::Value *ArraySize=nullptr)
Emit a check that V is the address of storage of the appropriate size and alignment for an object of ...
GlobalDecl CurGD
CurGD - The GlobalDecl for the current function being compiled.
llvm::Value * GetVTablePtr(Address This, llvm::Type *VTableTy, const CXXRecordDecl *VTableClass, VTableAuthMode AuthMode=VTableAuthMode::Authenticate)
GetVTablePtr - Return the Value of the vtable pointer member pointed to by This.
Address EmitCXXMemberDataPointerAddress(const Expr *E, Address base, llvm::Value *memberPtr, const MemberPointerType *memberPtrType, LValueBaseInfo *BaseInfo=nullptr, TBAAAccessInfo *TBAAInfo=nullptr)
void EmitOMPMaskedTaskLoopSimdDirective(const OMPMaskedTaskLoopSimdDirective &S)
std::pair< RValue, llvm::Value * > EmitAtomicCompareExchange(LValue Obj, RValue Expected, RValue Desired, SourceLocation Loc, llvm::AtomicOrdering Success=llvm::AtomicOrdering::SequentiallyConsistent, llvm::AtomicOrdering Failure=llvm::AtomicOrdering::SequentiallyConsistent, bool IsWeak=false, AggValueSlot Slot=AggValueSlot::ignored())
void EmitAsanPrologueOrEpilogue(bool Prologue)
llvm::Value * EmitARCExtendBlockObject(const Expr *expr)
bool checkIfLoopMustProgress(const Expr *, bool HasEmptyBody)
Returns true if a loop must make progress, which means the mustprogress attribute can be added.
void DeactivateCleanupBlock(EHScopeStack::stable_iterator Cleanup, llvm::Instruction *DominatingIP)
DeactivateCleanupBlock - Deactivates the given cleanup block.
llvm::Value * EmitNonNullRValueCheck(RValue RV, QualType T)
Create a check that a scalar RValue is non-null.
static TypeEvaluationKind getEvaluationKind(QualType T)
getEvaluationKind - Return the TypeEvaluationKind of QualType T.
static bool ContainsLabel(const Stmt *S, bool IgnoreCaseStmts=false)
ContainsLabel - Return true if the statement contains a label in it.
LValue EmitCastLValue(const CastExpr *E)
void EnterSEHTryStmt(const SEHTryStmt &S)
CurrentSourceLocExprScope CurSourceLocExprScope
Source location information about the default argument or member initializer expression we're evaluat...
void checkTargetFeatures(SourceLocation Loc, const FunctionDecl *TargetDecl)
llvm::Value * EmitSVEPredicateCast(llvm::Value *Pred, llvm::ScalableVectorType *VTy)
Address getExceptionSlot()
Returns a pointer to the function's exception object and selector slot, which is assigned in every la...
RawAddress CreateMemTemp(QualType T, CharUnits Align, const Twine &Name="tmp", RawAddress *Alloca=nullptr)
bool isBinaryLogicalOp(const Expr *E) const
void EmitBranchOnBoolExpr(const Expr *Cond, llvm::BasicBlock *TrueBlock, llvm::BasicBlock *FalseBlock, uint64_t TrueCount, Stmt::Likelihood LH=Stmt::LH_None, const Expr *ConditionalOp=nullptr)
EmitBranchOnBoolExpr - Emit a branch on a boolean condition (e.g.
void VolatilizeTryBlocks(llvm::BasicBlock *BB, llvm::SmallPtrSet< llvm::BasicBlock *, 10 > &V)
void EmitLambdaInAllocaImplFn(const CXXMethodDecl *CallOp, const CGFunctionInfo **ImplFnInfo, llvm::Function **ImplFn)
llvm::Function * GenerateSEHFinallyFunction(CodeGenFunction &ParentCGF, const SEHFinallyStmt &Finally)
llvm::CallInst * EmitTrapCall(llvm::Intrinsic::ID IntrID)
Emit a call to trap or debugtrap and attach function attribute "trap-func-name" if specified.
llvm::Function * GenerateSEHFilterFunction(CodeGenFunction &ParentCGF, const SEHExceptStmt &Except)
static Destroyer destroyNonTrivialCStruct
JumpDest getJumpDestInCurrentScope(llvm::BasicBlock *Target)
The given basic block lies in the current EH scope, but may be a target of a potentially scope-crossi...
bool sanitizePerformTypeCheck() const
Whether any type-checking sanitizers are enabled.
void EmitCallAndReturnForThunk(llvm::FunctionCallee Callee, const ThunkInfo *Thunk, bool IsUnprototyped)
void EmitDelegateCXXConstructorCall(const CXXConstructorDecl *Ctor, CXXCtorType CtorType, const FunctionArgList &Args, SourceLocation Loc)
void EmitSanitizerStatReport(llvm::SanitizerStatKind SSK)
static bool cxxDestructorCanThrow(QualType T)
Check if T is a C++ class that has a destructor that can throw.
void EmitDelegatingCXXConstructorCall(const CXXConstructorDecl *Ctor, const FunctionArgList &Args)
llvm::Function * GenerateVarArgsThunk(llvm::Function *Fn, const CGFunctionInfo &FnInfo, GlobalDecl GD, const ThunkInfo &Thunk)
SanitizerSet SanOpts
Sanitizers enabled for this function.
RValue EmitBuiltinIsAligned(const CallExpr *E)
Emit IR for __builtin_is_aligned.
LValue EmitCoawaitLValue(const CoawaitExpr *E)
llvm::BasicBlock * getInvokeDestImpl()
LValue getOrCreateOpaqueLValueMapping(const OpaqueValueExpr *e)
Given an opaque value expression, return its LValue mapping if it exists, otherwise create one.
void EmitOMPCopy(QualType OriginalType, Address DestAddr, Address SrcAddr, const VarDecl *DestVD, const VarDecl *SrcVD, const Expr *Copy)
Emit proper copying of data from one variable to another.
void EmitIfStmt(const IfStmt &S)
void EmitForwardingCallToLambda(const CXXMethodDecl *LambdaCallOperator, CallArgList &CallArgs, const CGFunctionInfo *CallOpFnInfo=nullptr, llvm::Constant *CallOpFn=nullptr)
void EmitWhileStmt(const WhileStmt &S, ArrayRef< const Attr * > Attrs={})
void EmitOMPOrderedDirective(const OMPOrderedDirective &S)
void EmitOMPTargetDirective(const OMPTargetDirective &S)
void PushDestructorCleanup(const CXXDestructorDecl *Dtor, QualType T, Address Addr)
PushDestructorCleanup - Push a cleanup to call the complete-object variant of the given destructor on...
llvm::DenseMap< const VarDecl *, llvm::Value * > NRVOFlags
A mapping from NRVO variables to the flags used to indicate when the NRVO has been applied to this va...
LValue EmitAggExprToLValue(const Expr *E)
EmitAggExprToLValue - Emit the computation of the specified expression of aggregate type into a tempo...
bool IsOutlinedSEHHelper
True if the current function is an outlined SEH helper.
void EmitNonNullArgCheck(RValue RV, QualType ArgType, SourceLocation ArgLoc, AbstractCallee AC, unsigned ParmNum)
Create a check for a function parameter that may potentially be declared as non-null.
bool EmitOMPFirstprivateClause(const OMPExecutableDirective &D, OMPPrivateScope &PrivateScope)
void EmitARCMoveWeak(Address dst, Address src)
LValue EmitScalarCompoundAssignWithComplex(const CompoundAssignOperator *E, llvm::Value *&Result)
RValue EmitBlockCallExpr(const CallExpr *E, ReturnValueSlot ReturnValue, llvm::CallBase **CallOrInvoke)
void EmitAArch64MultiVersionResolver(llvm::Function *Resolver, ArrayRef< FMVResolverOption > Options)
void EmitOMPReductionClauseInit(const OMPExecutableDirective &D, OMPPrivateScope &PrivateScope, bool ForInscan=false)
Emit initial code for reduction variables.
llvm::Value * EmitHLSLBuiltinExpr(unsigned BuiltinID, const CallExpr *E, ReturnValueSlot ReturnValue)
void EmitOMPAtomicDirective(const OMPAtomicDirective &S)
void EmitVTableAssumptionLoad(const VPtr &vptr, Address This)
Emit assumption that vptr load == global vtable.
void unprotectFromPeepholes(PeepholeProtection protection)
Address getAsNaturalAddressOf(Address Addr, QualType PointeeTy)
llvm::CallInst * EmitRuntimeCall(llvm::FunctionCallee callee, ArrayRef< llvm::Value * > args, const Twine &name="")
void startOutlinedSEHHelper(CodeGenFunction &ParentCGF, bool IsFilter, const Stmt *OutlinedStmt)
void EmitOMPTargetEnterDataDirective(const OMPTargetEnterDataDirective &S)
llvm::Value * EmitHexagonBuiltinExpr(unsigned BuiltinID, const CallExpr *E)
void EmitOMPParallelMasterTaskLoopDirective(const OMPParallelMasterTaskLoopDirective &S)
SmallVector< Address, 1 > SEHCodeSlotStack
A stack of exception code slots.
JumpDest getJumpDestInCurrentScope(StringRef Name=StringRef())
The given basic block lies in the current EH scope, but may be a target of a potentially scope-crossi...
void generateObjCGetterBody(const ObjCImplementationDecl *classImpl, const ObjCPropertyImplDecl *propImpl, const ObjCMethodDecl *GetterMothodDecl, llvm::Constant *AtomicHelperFn)
void EmitAutoVarDecl(const VarDecl &D)
EmitAutoVarDecl - Emit an auto variable declaration.
void GetAArch64SVEProcessedOperands(unsigned BuiltinID, const CallExpr *E, SmallVectorImpl< llvm::Value * > &Ops, SVETypeFlags TypeFlags)
llvm::Value * EmitIvarOffsetAsPointerDiff(const ObjCInterfaceDecl *Interface, const ObjCIvarDecl *Ivar)
llvm::Value * EmitAMDGPUBuiltinExpr(unsigned BuiltinID, const CallExpr *E)
llvm::Constant * createAtExitStub(const VarDecl &VD, llvm::FunctionCallee Dtor, llvm::Constant *Addr)
void EmitLambdaStaticInvokeBody(const CXXMethodDecl *MD)
bool ShouldInstrumentFunction()
ShouldInstrumentFunction - Return true if the current function should be instrumented with __cyg_prof...
void EmitLifetimeEnd(llvm::Value *Size, llvm::Value *Addr)
LValue MakeAddrLValue(llvm::Value *V, QualType T, CharUnits Alignment, AlignmentSource Source=AlignmentSource::Type)
Address EmitCompoundStmtWithoutScope(const CompoundStmt &S, bool GetLast=false, AggValueSlot AVS=AggValueSlot::ignored())
void EmitStoreThroughLValue(RValue Src, LValue Dst, bool isInit=false)
EmitStoreThroughLValue - Store the specified rvalue into the specified lvalue, where both are guarant...
static void EmitOMPTargetTeamsDeviceFunction(CodeGenModule &CGM, StringRef ParentName, const OMPTargetTeamsDirective &S)
Emit device code for the target teams directive.
void pushLifetimeExtendedDestroy(CleanupKind kind, Address addr, QualType type, Destroyer *destroyer, bool useEHCleanupForArray)
void callCStructDefaultConstructor(LValue Dst)
void EmitOMPReverseDirective(const OMPReverseDirective &S)
static bool hasScalarEvaluationKind(QualType T)
llvm::Value * EmitObjCAutoreleasePoolPush()
bool isCleanupPadScope() const
Returns true while emitting a cleanuppad.
llvm::Value * EmitNeonSplat(llvm::Value *V, llvm::Constant *Idx)
void EmitVTablePtrCheckForCall(const CXXRecordDecl *RD, llvm::Value *VTable, CFITypeCheckKind TCK, SourceLocation Loc)
EmitVTablePtrCheckForCall - Virtual method MD is being called via VTable.
void EmitOpenACCExitDataConstruct(const OpenACCExitDataConstruct &S)
llvm::Value * EmitARCRetainAutoreleaseNonBlock(llvm::Value *value)
void EmitObjCMRRAutoreleasePoolPop(llvm::Value *Ptr)
const BlockByrefInfo & getBlockByrefInfo(const VarDecl *var)
AwaitSuspendWrapperInfo CurAwaitSuspendWrapper
RValue EmitCUDAKernelCallExpr(const CUDAKernelCallExpr *E, ReturnValueSlot ReturnValue, llvm::CallBase **CallOrInvoke)
void EmitMultiVersionResolver(llvm::Function *Resolver, ArrayRef< FMVResolverOption > Options)
llvm::function_ref< std::pair< llvm::Value *, llvm::Value * >(CodeGenFunction &, const OMPExecutableDirective &S, Address LB, Address UB)> CodeGenDispatchBoundsTy
LValue EmitCompoundAssignmentLValue(const CompoundAssignOperator *E)
CGCapturedStmtInfo * CapturedStmtInfo
void EmitCallArgs(CallArgList &Args, PrototypeWrapper Prototype, llvm::iterator_range< CallExpr::const_arg_iterator > ArgRange, AbstractCallee AC=AbstractCallee(), unsigned ParamsToSkip=0, EvaluationOrder Order=EvaluationOrder::Default)
BuiltinCheckKind
Specifies which type of sanitizer check to apply when handling a particular builtin.
void EmitIndirectGotoStmt(const IndirectGotoStmt &S)
LValue EmitCallExprLValue(const CallExpr *E, llvm::CallBase **CallOrInvoke=nullptr)
void EmitDecl(const Decl &D)
EmitDecl - Emit a declaration.
LValue MakeNaturalAlignPointeeRawAddrLValue(llvm::Value *V, QualType T)
Same as MakeNaturalAlignPointeeAddrLValue except that the pointer is known to be unsigned.
void EmitBoundsCheck(const Expr *E, const Expr *Base, llvm::Value *Index, QualType IndexType, bool Accessed)
Emit a check that Base points into an array object, which we can access at index Index.
Address authPointerToPointerCast(Address Ptr, QualType SourceType, QualType DestType)
void EmitCXXTryStmt(const CXXTryStmt &S)
void EmitBitfieldConversionCheck(llvm::Value *Src, QualType SrcType, llvm::Value *Dst, QualType DstType, const CGBitFieldInfo &Info, SourceLocation Loc)
Emit a check that an [implicit] conversion of a bitfield.
void EmitTrapCheck(llvm::Value *Checked, SanitizerHandler CheckHandlerID, bool NoMerge=false)
Create a basic block that will call the trap intrinsic, and emit a conditional branch to it,...
std::pair< LValue, llvm::Value * > EmitARCStoreStrong(const BinaryOperator *e, bool ignored)
void EmitKCFIOperandBundle(const CGCallee &Callee, SmallVectorImpl< llvm::OperandBundleDef > &Bundles)
RValue EmitCXXMemberOrOperatorCall(const CXXMethodDecl *Method, const CGCallee &Callee, ReturnValueSlot ReturnValue, llvm::Value *This, llvm::Value *ImplicitParam, QualType ImplicitParamTy, const CallExpr *E, CallArgList *RtlArgs, llvm::CallBase **CallOrInvoke)
llvm::Value * EmitCheckedArgForBuiltin(const Expr *E, BuiltinCheckKind Kind)
Emits an argument for a call to a builtin.
bool EmitSimpleStmt(const Stmt *S, ArrayRef< const Attr * > Attrs)
EmitSimpleStmt - Try to emit a "simple" statement which does not necessarily require an insertion poi...
LValue EmitHLSLArrayAssignLValue(const BinaryOperator *E)
void generateThunk(llvm::Function *Fn, const CGFunctionInfo &FnInfo, GlobalDecl GD, const ThunkInfo &Thunk, bool IsUnprototyped)
Generate a thunk for the given method.
void pushIrregularPartialArrayCleanup(llvm::Value *arrayBegin, Address arrayEndPointer, QualType elementType, CharUnits elementAlignment, Destroyer *destroyer)
llvm::Value * EmitARCRetainAutoreleasedReturnValue(llvm::Value *value)
void emitAlignmentAssumptionCheck(llvm::Value *Ptr, QualType Ty, SourceLocation Loc, SourceLocation AssumptionLoc, llvm::Value *Alignment, llvm::Value *OffsetValue, llvm::Value *TheCheck, llvm::Instruction *Assumption)
llvm::BlockAddress * GetAddrOfLabel(const LabelDecl *L)
static void EmitOMPTargetTeamsDistributeDeviceFunction(CodeGenModule &CGM, StringRef ParentName, const OMPTargetTeamsDistributeDirective &S)
Emit device code for the target teams distribute directive.
Address EmitLoadOfPointer(Address Ptr, const PointerType *PtrTy, LValueBaseInfo *BaseInfo=nullptr, TBAAAccessInfo *TBAAInfo=nullptr)
Load a pointer with type PtrTy stored at address Ptr.
RawAddress CreateDefaultAlignTempAlloca(llvm::Type *Ty, const Twine &Name="tmp")
CreateDefaultAlignedTempAlloca - This creates an alloca with the default ABI alignment of the given L...
void EmitSynthesizedCXXCopyCtor(Address Dest, Address Src, const Expr *Exp)
static void EmitOMPTargetParallelForSimdDeviceFunction(CodeGenModule &CGM, StringRef ParentName, const OMPTargetParallelForSimdDirective &S)
Emit device code for the target parallel for simd directive.
llvm::Value * EmitObjCAllocWithZone(llvm::Value *value, llvm::Type *returnType)
void EmitCXXAggrConstructorCall(const CXXConstructorDecl *D, llvm::Value *NumElements, Address ArrayPtr, const CXXConstructExpr *E, bool NewPointerIsChecked, bool ZeroInitialization=false)
llvm::Value * emitArrayLength(const ArrayType *arrayType, QualType &baseType, Address &addr)
emitArrayLength - Compute the length of an array, even if it's a VLA, and drill down to the base elem...
VlaSizePair getVLASize(const VariableArrayType *vla)
Returns an LLVM value that corresponds to the size, in non-variably-sized elements,...
llvm::Value * EmitSVEGatherLoad(const SVETypeFlags &TypeFlags, llvm::SmallVectorImpl< llvm::Value * > &Ops, unsigned IntID)
LValue EmitHLSLOutArgExpr(const HLSLOutArgExpr *E, CallArgList &Args, QualType Ty)
void EmitCXXAggrConstructorCall(const CXXConstructorDecl *D, const ArrayType *ArrayTy, Address ArrayPtr, const CXXConstructExpr *E, bool NewPointerIsChecked, bool ZeroInitialization=false)
void popCatchScope()
popCatchScope - Pops the catch scope at the top of the EHScope stack, emitting any required code (oth...
CleanupKind getARCCleanupKind()
Retrieves the default cleanup kind for an ARC cleanup.
void EmitEndEHSpec(const Decl *D)
EmitEndEHSpec - Emit the end of the exception spec.
llvm::Value * EmitRISCVCpuSupports(const CallExpr *E)
AggValueSlot::Overlap_t getOverlapForBaseInit(const CXXRecordDecl *RD, const CXXRecordDecl *BaseRD, bool IsVirtual)
Determine whether a base class initialization may overlap some other object.
void EmitLabel(const LabelDecl *D)
EmitLabel - Emit the block for the given label.
const OMPExecutableDirective * OMPParentLoopDirectiveForScan
Parent loop-based directive for scan directive.
llvm::Value * EmitNVPTXBuiltinExpr(unsigned BuiltinID, const CallExpr *E)
void EmitOpenACCInitConstruct(const OpenACCInitConstruct &S)
void EmitOMPTeamsDistributeParallelForDirective(const OMPTeamsDistributeParallelForDirective &S)
bool CurFuncIsThunk
In C++, whether we are code generating a thunk.
void EmitOMPTaskDirective(const OMPTaskDirective &S)
RValue EmitRValueForField(LValue LV, const FieldDecl *FD, SourceLocation Loc)
void EmitOMPScanDirective(const OMPScanDirective &S)
void EmitAnyExprToExn(const Expr *E, Address Addr)
void EmitOMPTaskLoopDirective(const OMPTaskLoopDirective &S)
JumpDest getOMPCancelDestination(OpenMPDirectiveKind Kind)
void EmitCXXDestructorCall(const CXXDestructorDecl *D, CXXDtorType Type, bool ForVirtualBase, bool Delegating, Address This, QualType ThisTy)
RValue EmitCXXMemberOrOperatorMemberCallExpr(const CallExpr *CE, const CXXMethodDecl *MD, ReturnValueSlot ReturnValue, bool HasQualifier, NestedNameSpecifier *Qualifier, bool IsArrow, const Expr *Base, llvm::CallBase **CallOrInvoke)
void EmitOMPMasterTaskLoopSimdDirective(const OMPMasterTaskLoopSimdDirective &S)
llvm::Value * EmitARCAutoreleaseReturnValue(llvm::Value *value)
SmallVector< llvm::ConvergenceControlInst *, 4 > ConvergenceTokenStack
Stack to track the controlled convergence tokens.
llvm::Value * EmitAArch64SVEBuiltinExpr(unsigned BuiltinID, const CallExpr *E)
void GenerateObjCMethod(const ObjCMethodDecl *OMD)
void EmitOMPUseDevicePtrClause(const OMPUseDevicePtrClause &C, OMPPrivateScope &PrivateScope, const llvm::DenseMap< const ValueDecl *, llvm::Value * > CaptureDeviceAddrMap)
RValue emitBuiltinOSLogFormat(const CallExpr &E)
Emit IR for __builtin_os_log_format.
LValue EmitLValue(const Expr *E, KnownNonNull_t IsKnownNonNull=NotKnownNonNull)
EmitLValue - Emit code to compute a designator that specifies the location of the expression.
bool isSEHTryScope() const
Returns true inside SEH __try blocks.
void EmitVTablePtrCheckForCast(QualType T, Address Derived, bool MayBeNull, CFITypeCheckKind TCK, SourceLocation Loc)
Derived is the presumed address of an object of type T after a cast.
llvm::Value * EmitARCAutorelease(llvm::Value *value)
llvm::Value * emitPointerAuthResignCall(llvm::Value *Pointer, const CGPointerAuthInfo &CurInfo, const CGPointerAuthInfo &NewInfo)
RValue EmitAtomicLoad(LValue LV, SourceLocation SL, AggValueSlot Slot=AggValueSlot::ignored())
void EmitExtendGCLifetime(llvm::Value *object)
EmitExtendGCLifetime - Given a pointer to an Objective-C object, make sure it survives garbage collec...
llvm::Value * EmitVAStartEnd(llvm::Value *ArgValue, bool IsStart)
Emits a call to an LLVM variable-argument intrinsic, either llvm.va_start or llvm....
void EmitOMPDistributeLoop(const OMPLoopDirective &S, const CodeGenLoopTy &CodeGenLoop, Expr *IncExpr)
Emit code for the distribute loop-based directive.
void EmitARCNoopIntrinsicUse(ArrayRef< llvm::Value * > values)
bool hasVolatileMember(QualType T)
hasVolatileMember - returns true if aggregate type has a volatile member.
llvm::Value * EmitSVEMaskedStore(const CallExpr *, SmallVectorImpl< llvm::Value * > &Ops, unsigned BuiltinID)
llvm::Constant * GenerateObjCAtomicGetterCopyHelperFunction(const ObjCPropertyImplDecl *PID)
void callCStructCopyAssignmentOperator(LValue Dst, LValue Src)
void EmitOMPTaskLoopBasedDirective(const OMPLoopDirective &S)
void callCStructMoveConstructor(LValue Dst, LValue Src)
llvm::Value * EmitIvarOffset(const ObjCInterfaceDecl *Interface, const ObjCIvarDecl *Ivar)
llvm::Value * EmitSVEReinterpret(llvm::Value *Val, llvm::Type *Ty)
llvm::SmallVector< DeferredDeactivateCleanup > DeferredDeactivationCleanupStack
llvm::Value * EmitARCStoreWeak(Address addr, llvm::Value *value, bool ignored)
void EmitSEHExceptionCodeSave(CodeGenFunction &ParentCGF, llvm::Value *ParentFP, llvm::Value *EntryEBP)
llvm::Value * getAsNaturalPointerTo(Address Addr, QualType PointeeType)
llvm::BasicBlock * getEHResumeBlock(bool isCleanup)
static void EmitOMPTargetDeviceFunction(CodeGenModule &CGM, StringRef ParentName, const OMPTargetDirective &S)
Emit device code for the target directive.
void EmitDeleteCall(const FunctionDecl *DeleteFD, llvm::Value *Ptr, QualType DeleteTy, llvm::Value *NumElements=nullptr, CharUnits CookieSize=CharUnits())
LValue EmitBinaryOperatorLValue(const BinaryOperator *E)
void EmitVariablyModifiedType(QualType Ty)
EmitVLASize - Capture all the sizes for the VLA expressions in the given variably-modified type and s...
void callCStructCopyConstructor(LValue Dst, LValue Src)
void EmitCaseStmt(const CaseStmt &S, ArrayRef< const Attr * > Attrs)
RawAddress CreateTempAllocaWithoutCast(llvm::Type *Ty, CharUnits align, const Twine &Name="tmp", llvm::Value *ArraySize=nullptr)
llvm::BasicBlock * createBasicBlock(const Twine &name="", llvm::Function *parent=nullptr, llvm::BasicBlock *before=nullptr)
createBasicBlock - Create an LLVM basic block.
void EmitAtomicUpdate(LValue LVal, llvm::AtomicOrdering AO, const llvm::function_ref< RValue(RValue)> &UpdateOp, bool IsVolatile)
RValue EmitCXXPseudoDestructorExpr(const CXXPseudoDestructorExpr *E)
LValue EmitMaterializeTemporaryExpr(const MaterializeTemporaryExpr *E)
llvm::Value * EmitSEHExceptionInfo()
RValue EmitBuiltinAlignTo(const CallExpr *E, bool AlignUp)
Emit IR for __builtin_align_up/__builtin_align_down.
llvm::Value * EmitARCLoadWeakRetained(Address addr)
void EmitDefaultStmt(const DefaultStmt &S, ArrayRef< const Attr * > Attrs)
const LangOptions & getLangOpts() const
llvm::Value * LoadPassedObjectSize(const Expr *E, QualType EltTy)
If E references a parameter with pass_object_size info or a constant array size modifier,...
llvm::Value * EmitLoadOfCountedByField(const Expr *Base, const FieldDecl *FAMDecl, const FieldDecl *CountDecl)
Build an expression accessing the "counted_by" field.
static void EmitOMPTargetSimdDeviceFunction(CodeGenModule &CGM, StringRef ParentName, const OMPTargetSimdDirective &S)
Emit device code for the target simd directive.
void EmitOMPDistributeSimdDirective(const OMPDistributeSimdDirective &S)
llvm::Value * EmitObjCProtocolExpr(const ObjCProtocolExpr *E)
void EmitFunctionEpilog(const CGFunctionInfo &FI, bool EmitRetDbgLoc, SourceLocation EndLoc)
EmitFunctionEpilog - Emit the target specific LLVM code to return the given temporary.
llvm::Value * EmitObjCStringLiteral(const ObjCStringLiteral *E)
void ProcessOrderScopeAMDGCN(llvm::Value *Order, llvm::Value *Scope, llvm::AtomicOrdering &AO, llvm::SyncScope::ID &SSID)
void EmitOMPPrivateLoopCounters(const OMPLoopDirective &S, OMPPrivateScope &LoopScope)
Emit initial code for loop counters of loop-based directives.
llvm::Constant * EmitCheckTypeDescriptor(QualType T)
Emit a description of a type in a format suitable for passing to a runtime sanitizer handler.
void pushEHDestroy(QualType::DestructionKind dtorKind, Address addr, QualType type)
void EmitOMPDistributeParallelForDirective(const OMPDistributeParallelForDirective &S)
llvm::BasicBlock * EHResumeBlock
EHResumeBlock - Unified block containing a call to llvm.eh.resume.
LValue EmitLValueForFieldInitialization(LValue Base, const FieldDecl *Field)
EmitLValueForFieldInitialization - Like EmitLValueForField, except that if the Field is a reference,...
void EmitOpenACCShutdownConstruct(const OpenACCShutdownConstruct &S)
LValue EmitInitListLValue(const InitListExpr *E)
llvm::Value * EmitARCRetainAutorelease(QualType type, llvm::Value *value)
void emitArrayDestroy(llvm::Value *begin, llvm::Value *end, QualType elementType, CharUnits elementAlign, Destroyer *destroyer, bool checkZeroLength, bool useEHCleanup)
void EmitBlock(llvm::BasicBlock *BB, bool IsFinished=false)
EmitBlock - Emit the given block.
bool InNoConvergentAttributedStmt
True if the current statement has noconvergent attribute.
void EmitOMPLastprivateClauseFinal(const OMPExecutableDirective &D, bool NoFinals, llvm::Value *IsLastIterCond=nullptr)
Emit final copying of lastprivate values to original variables at the end of the worksharing or simd ...
void EmitOMPInterchangeDirective(const OMPInterchangeDirective &S)
void EmitTypeCheck(TypeCheckKind TCK, SourceLocation Loc, Address Addr, QualType Type, CharUnits Alignment=CharUnits::Zero(), SanitizerSet SkippedChecks=SanitizerSet(), llvm::Value *ArraySize=nullptr)
llvm::Function * generateAwaitSuspendWrapper(Twine const &CoroName, Twine const &SuspendPointName, CoroutineSuspendExpr const &S)
void EmitObjCAtThrowStmt(const ObjCAtThrowStmt &S)
void EmitUnreachable(SourceLocation Loc)
Emit a reached-unreachable diagnostic if Loc is valid and runtime checking is enabled.
static bool isInstrumentedCondition(const Expr *C)
isInstrumentedCondition - Determine whether the given condition is an instrumentable condition (i....
SmallVector< llvm::Value *, 8 > ObjCEHValueStack
ObjCEHValueStack - Stack of Objective-C exception values, used for rethrows.
void EmitOMPTeamsGenericLoopDirective(const OMPTeamsGenericLoopDirective &S)
bool ConstantFoldsToSimpleInteger(const Expr *Cond, llvm::APSInt &Result, bool AllowLabels=false)
ConstantFoldsToSimpleInteger - If the specified expression does not fold to a constant,...
void pushDestroyAndDeferDeactivation(QualType::DestructionKind dtorKind, Address addr, QualType type)
void EmitFunctionBody(const Stmt *Body)
VlaSizePair getVLAElements1D(QualType vla)
llvm::AllocaInst * CreateTempAlloca(llvm::Type *Ty, const Twine &Name="tmp", llvm::Value *ArraySize=nullptr)
CreateTempAlloca - This creates an alloca and inserts it into the entry block if ArraySize is nullptr...
llvm::Value * EmitSVETupleCreate(const SVETypeFlags &TypeFlags, llvm::Type *ReturnType, ArrayRef< llvm::Value * > Ops)
const CodeGen::CGBlockInfo * BlockInfo
void EmitOMPTeamsDistributeDirective(const OMPTeamsDistributeDirective &S)
void EmitAggregateCopyCtor(LValue Dest, LValue Src, AggValueSlot::Overlap_t MayOverlap)
llvm::Value * EmitVTableTypeCheckedLoad(const CXXRecordDecl *RD, llvm::Value *VTable, llvm::Type *VTableTy, uint64_t VTableByteOffset)
Emit a type checked load from the given vtable.
void pushDestroyAndDeferDeactivation(CleanupKind cleanupKind, Address addr, QualType type, Destroyer *destroyer, bool useEHCleanupForArray)
void EmitRISCVMultiVersionResolver(llvm::Function *Resolver, ArrayRef< FMVResolverOption > Options)
Address makeNaturalAddressForPointer(llvm::Value *Ptr, QualType T, CharUnits Alignment=CharUnits::Zero(), bool ForPointeeType=false, LValueBaseInfo *BaseInfo=nullptr, TBAAAccessInfo *TBAAInfo=nullptr, KnownNonNull_t IsKnownNonNull=NotKnownNonNull)
Construct an address with the natural alignment of T.
SmallVector< llvm::OperandBundleDef, 1 > getBundlesForFunclet(llvm::Value *Callee)
void markStmtAsUsed(bool Skipped, const Stmt *S)
void EmitOpenACCWaitConstruct(const OpenACCWaitConstruct &S)
llvm::Value * EmitObjCBoxedExpr(const ObjCBoxedExpr *E)
llvm::AllocaInst * EHSelectorSlot
The selector slot.
llvm::Value * EmitCheckedArgForAssume(const Expr *E)
Emits an argument for a call to a __builtin_assume.
Address EmitLoadOfReference(LValue RefLVal, LValueBaseInfo *PointeeBaseInfo=nullptr, TBAAAccessInfo *PointeeTBAAInfo=nullptr)
void EmitOMPParallelMaskedTaskLoopDirective(const OMPParallelMaskedTaskLoopDirective &S)
void EmitExprAsInit(const Expr *init, const ValueDecl *D, LValue lvalue, bool capturedByInit)
EmitExprAsInit - Emits the code necessary to initialize a location in memory with the given initializ...
llvm::CallBase * EmitRuntimeCallOrInvoke(llvm::FunctionCallee callee, const Twine &name="")
void emitByrefStructureInit(const AutoVarEmission &emission)
void SimplifyForwardingBlocks(llvm::BasicBlock *BB)
SimplifyForwardingBlocks - If the given basic block is only a branch to another basic block,...
ComplexPairTy EmitComplexExpr(const Expr *E, bool IgnoreReal=false, bool IgnoreImag=false)
EmitComplexExpr - Emit the computation of the specified expression of complex type,...
void callCStructDestructor(LValue Dst)
RValue EmitLoadOfLValue(LValue V, SourceLocation Loc)
EmitLoadOfLValue - Given an expression that represents a value lvalue, this method emits the address ...
llvm::Value * EmitObjCRetainNonBlock(llvm::Value *value, llvm::Type *returnType)
llvm::Value * GetVTTParameter(GlobalDecl GD, bool ForVirtualBase, bool Delegating)
GetVTTParameter - Return the VTT parameter that should be passed to a base constructor/destructor wit...
RValue convertTempToRValue(Address addr, QualType type, SourceLocation Loc)
void EmitOMPParallelDirective(const OMPParallelDirective &S)
void EmitInheritedCXXConstructorCall(const CXXConstructorDecl *D, bool ForVirtualBase, Address This, bool InheritedFromVBase, const CXXInheritedCtorInitExpr *E)
Emit a call to a constructor inherited from a base class, passing the current constructor's arguments...
llvm::Value * EmitObjCAutorelease(llvm::Value *value, llvm::Type *returnType)
Address EmitExtVectorElementLValue(LValue V)
void EmitOMPSimdFinal(const OMPLoopDirective &D, const llvm::function_ref< llvm::Value *(CodeGenFunction &)> CondGen)
void EmitAnyExprToMem(const Expr *E, Address Location, Qualifiers Quals, bool IsInitializer)
EmitAnyExprToMem - Emits the code necessary to evaluate an arbitrary expression into the given memory...
TypeCheckKind
Situations in which we might emit a check for the suitability of a pointer or glvalue.
@ TCK_DowncastPointer
Checking the operand of a static_cast to a derived pointer type.
@ TCK_DowncastReference
Checking the operand of a static_cast to a derived reference type.
@ TCK_MemberAccess
Checking the object expression in a non-static data member access.
@ TCK_ConstructorCall
Checking the 'this' pointer for a constructor call.
@ TCK_Store
Checking the destination of a store. Must be suitably sized and aligned.
@ TCK_NonnullAssign
Checking the value assigned to a _Nonnull pointer. Must not be null.
@ TCK_UpcastToVirtualBase
Checking the operand of a cast to a virtual base object.
@ TCK_MemberCall
Checking the 'this' pointer for a call to a non-static member function.
@ TCK_DynamicOperation
Checking the operand of a dynamic_cast or a typeid expression.
@ TCK_ReferenceBinding
Checking the bound value in a reference binding.
@ TCK_Load
Checking the operand of a load. Must be suitably sized and aligned.
@ TCK_Upcast
Checking the operand of a cast to a base object.
void EmitBlockAfterUses(llvm::BasicBlock *BB)
EmitBlockAfterUses - Emit the given block somewhere hopefully near its uses, and leave the insertion ...
llvm::Value * EmitSMELdrStr(const SVETypeFlags &TypeFlags, llvm::SmallVectorImpl< llvm::Value * > &Ops, unsigned IntID)
LValue MakeAddrLValue(Address Addr, QualType T, LValueBaseInfo BaseInfo, TBAAAccessInfo TBAAInfo)
void SetDivFPAccuracy(llvm::Value *Val)
Set the minimum required accuracy of the given sqrt operation based on CodeGenOpts.
RValue EmitObjCMessageExpr(const ObjCMessageExpr *E, ReturnValueSlot Return=ReturnValueSlot())
void EmitContinueStmt(const ContinueStmt &S)
void setCurrentProfileCount(uint64_t Count)
Set the profiler's current count.
llvm::BasicBlock * getTerminateFunclet()
getTerminateLandingPad - Return a cleanup funclet that just calls terminate.
void EmitIgnoredExpr(const Expr *E)
EmitIgnoredExpr - Emit an expression in a context which ignores the result.
llvm::Value * EmitARCStoreStrongCall(Address addr, llvm::Value *value, bool resultIgnored)
void EmitStoreOfScalar(llvm::Value *Value, Address Addr, bool Volatile, QualType Ty, LValueBaseInfo BaseInfo, TBAAAccessInfo TBAAInfo, bool isInit=false, bool isNontemporal=false)
bool InNoMergeAttributedStmt
True if the current statement has nomerge attribute.
LValue EmitUnsupportedLValue(const Expr *E, const char *Name)
EmitUnsupportedLValue - Emit a dummy l-value using the type of E and issue an ErrorUnsupported style ...
llvm::Value * EmitNeonSplat(llvm::Value *V, llvm::Constant *Idx, const llvm::ElementCount &Count)
VPtrsVector getVTablePointers(const CXXRecordDecl *VTableClass)
void PopCleanupBlocks(EHScopeStack::stable_iterator OldCleanupStackSize, std::initializer_list< llvm::Value ** > ValuesToReload={})
Takes the old cleanup stack size and emits the cleanup blocks that have been added.
llvm::Type * ConvertTypeForMem(QualType T)
llvm::Function * createTLSAtExitStub(const VarDecl &VD, llvm::FunctionCallee Dtor, llvm::Constant *Addr, llvm::FunctionCallee &AtExit)
Address EmitCheckedInBoundsGEP(Address Addr, ArrayRef< llvm::Value * > IdxList, llvm::Type *elementType, bool SignedIndices, bool IsSubtraction, SourceLocation Loc, CharUnits Align, const Twine &Name="")
void EmitOMPDistributeParallelForSimdDirective(const OMPDistributeParallelForSimdDirective &S)
llvm::Value * EmitARCUnsafeUnretainedScalarExpr(const Expr *expr)
const Decl * CurCodeDecl
CurCodeDecl - This is the inner-most code context, which includes blocks.
LValue MakeAddrLValueWithoutTBAA(Address Addr, QualType T, AlignmentSource Source=AlignmentSource::Type)
void EmitAutoVarInit(const AutoVarEmission &emission)
llvm::BasicBlock * getUnreachableBlock()
void EmitOMPForSimdDirective(const OMPForSimdDirective &S)
llvm::AssertingVH< llvm::Instruction > AllocaInsertPt
AllocaInsertPoint - This is an instruction in the entry block before which we prefer to insert alloca...
void EmitAggregateAssign(LValue Dest, LValue Src, QualType EltTy)
Emit an aggregate assignment.
void GenerateOpenMPCapturedVars(const CapturedStmt &S, SmallVectorImpl< llvm::Value * > &CapturedVars)
void EmitNonNullArgCheck(Address Addr, QualType ArgType, SourceLocation ArgLoc, AbstractCallee AC, unsigned ParmNum)
llvm::Value * EmitObjCDictionaryLiteral(const ObjCDictionaryLiteral *E)
bool isPointerKnownNonNull(const Expr *E)
RawAddress CreateMemTempWithoutCast(QualType T, CharUnits Align, const Twine &Name="tmp")
llvm::Value * EmitSVEMaskedLoad(const CallExpr *, llvm::Type *ReturnTy, SmallVectorImpl< llvm::Value * > &Ops, unsigned BuiltinID, bool IsZExtReturn)
bool AlwaysEmitXRayCustomEvents() const
AlwaysEmitXRayCustomEvents - Return true if we must unconditionally emit XRay custom event handling c...
llvm::SmallVector< const JumpDest *, 2 > SEHTryEpilogueStack
void EmitScalarInit(const Expr *init, const ValueDecl *D, LValue lvalue, bool capturedByInit)
JumpDest ReturnBlock
ReturnBlock - Unified return block.
DominatingValue< T >::saved_type saveValueInCond(T value)
const llvm::function_ref< void(CodeGenFunction &, llvm::Function *, const OMPTaskDataTy &)> TaskGenTy
static void EmitOMPTargetTeamsGenericLoopDeviceFunction(CodeGenModule &CGM, StringRef ParentName, const OMPTargetTeamsGenericLoopDirective &S)
Emit device code for the target teams loop directive.
llvm::Value * ExceptionSlot
The exception slot.
unsigned getDebugInfoFIndex(const RecordDecl *Rec, unsigned FieldIndex)
Get the record field index as represented in debug info.
LValue EmitLValueForField(LValue Base, const FieldDecl *Field)
llvm::Value * EmitARCRetainBlock(llvm::Value *value, bool mandatory)
QualType TypeOfSelfObject()
TypeOfSelfObject - Return type of object that this self represents.
LValue EmitCheckedLValue(const Expr *E, TypeCheckKind TCK)
Same as EmitLValue but additionally we generate checking code to guard against undefined behavior.
llvm::Value * EmitSVEDupX(llvm::Value *Scalar)
RawAddress CreateMemTemp(QualType T, const Twine &Name="tmp", RawAddress *Alloca=nullptr)
CreateMemTemp - Create a temporary memory object of the given type, with appropriate alignmen and cas...
void EmitOMPFlushDirective(const OMPFlushDirective &S)
void EmitStaticVarDecl(const VarDecl &D, llvm::GlobalValue::LinkageTypes Linkage)
void EmitOMPMaskedTaskLoopDirective(const OMPMaskedTaskLoopDirective &S)
void markStmtMaybeUsed(const Stmt *S)
void EmitSEHLeaveStmt(const SEHLeaveStmt &S)
llvm::Value * EmitObjCArrayLiteral(const ObjCArrayLiteral *E)
@ ForceLeftToRight
! Language semantics require left-to-right evaluation.
@ Default
! No language constraints on evaluation order.
@ ForceRightToLeft
! Language semantics require right-to-left evaluation.
void EmitAttributedStmt(const AttributedStmt &S)
void EmitVarAnnotations(const VarDecl *D, llvm::Value *V)
Emit local annotations for the local variable V, declared by D.
llvm::BasicBlock * OMPBeforeScanBlock
void registerGlobalDtorWithLLVM(const VarDecl &D, llvm::FunctionCallee fn, llvm::Constant *addr)
Registers the dtor using 'llvm.global_dtors' for platforms that do not support an 'atexit()' function...
Destroyer * getDestroyer(QualType::DestructionKind destructionKind)
void EmitOMPCancelDirective(const OMPCancelDirective &S)
llvm::SmallPtrSet< const CXXRecordDecl *, 4 > VisitedVirtualBasesSetTy
void EmitNewArrayInitializer(const CXXNewExpr *E, QualType elementType, llvm::Type *ElementTy, Address NewPtr, llvm::Value *NumElements, llvm::Value *AllocSizeWithoutCookie)
RawAddress CreateMemTempWithoutCast(QualType T, const Twine &Name="tmp")
CreateMemTemp - Create a temporary memory object of the given type, with appropriate alignmen without...
void EmitOMPGenericLoopDirective(const OMPGenericLoopDirective &S)
llvm::Value * EmitPointerAuthSign(const CGPointerAuthInfo &Info, llvm::Value *Pointer)
void EmitOMPTargetTeamsDistributeDirective(const OMPTargetTeamsDistributeDirective &S)
void EmitObjCRelease(llvm::Value *value, ARCPreciseLifetime_t precise)
void EmitStoreThroughBitfieldLValue(RValue Src, LValue Dst, llvm::Value **Result=nullptr)
EmitStoreThroughBitfieldLValue - Store Src into Dst with same constraints as EmitStoreThroughLValue.
void pushCleanupAndDeferDeactivation(CleanupKind Kind, As... A)
void EmitAtomicInit(Expr *E, LValue lvalue)
static const Expr * stripCond(const Expr *C)
Ignore parentheses and logical-NOT to track conditions consistently.
void EmitCfiCheckStub()
Emit a stub for the cross-DSO CFI check function.
static std::string getNonTrivialDestructorStr(QualType QT, CharUnits Alignment, bool IsVolatile, ASTContext &Ctx)
llvm::DenseMap< const Decl *, Address > DeclMapTy
void EmitCaseStmtRange(const CaseStmt &S, ArrayRef< const Attr * > Attrs)
llvm::Value * EmitObjCConsumeObject(QualType T, llvm::Value *Ptr)
PeepholeProtection protectFromPeepholes(RValue rvalue)
protectFromPeepholes - Protect a value that we're intending to store to the side, but which will prob...
ConstantEmission tryEmitAsConstant(DeclRefExpr *refExpr)
llvm::Value * EmitARCLoadWeak(Address addr)
const TargetInfo & getTarget() const
void initFullExprCleanup()
Set up the last cleanup that was pushed as a conditional full-expression cleanup.
LValue EmitCXXConstructLValue(const CXXConstructExpr *E)
llvm::Value * EmitCMSEClearRecord(llvm::Value *V, llvm::IntegerType *ITy, QualType RTy)
void EmitOMPTaskgroupDirective(const OMPTaskgroupDirective &S)
static void EmitOMPTargetTeamsDistributeParallelForDeviceFunction(CodeGenModule &CGM, StringRef ParentName, const OMPTargetTeamsDistributeParallelForDirective &S)
void emitOMPSimpleStore(LValue LVal, RValue RVal, QualType RValTy, SourceLocation Loc)
bool isInConditionalBranch() const
isInConditionalBranch - Return true if we're currently emitting one branch or the other of a conditio...
void EmitOMPInnerLoop(const OMPExecutableDirective &S, bool RequiresCleanup, const Expr *LoopCond, const Expr *IncExpr, const llvm::function_ref< void(CodeGenFunction &)> BodyGen, const llvm::function_ref< void(CodeGenFunction &)> PostIncGen)
Emit inner loop of the worksharing/simd construct.
llvm::DebugLoc SourceLocToDebugLoc(SourceLocation Location)
Converts Location to a DebugLoc, if debug information is enabled.
void EmitCXXForRangeStmt(const CXXForRangeStmt &S, ArrayRef< const Attr * > Attrs={})
llvm::Value * EmitPointerAuthBlendDiscriminator(llvm::Value *StorageAddress, llvm::Value *Discriminator)
Create the discriminator from the storage address and the entity hash.
llvm::Constant * GenerateDestroyHelperFunction(const CGBlockInfo &blockInfo)
llvm::Value * vectorWrapScalar16(llvm::Value *Op)
llvm::Function * LookupNeonLLVMIntrinsic(unsigned IntrinsicID, unsigned Modifier, llvm::Type *ArgTy, const CallExpr *E)
llvm::Value * getTypeSize(QualType Ty)
Returns calculated size of the specified type.
std::pair< LValue, llvm::Value * > EmitARCStoreAutoreleasing(const BinaryOperator *e)
void EmitLabelStmt(const LabelStmt &S)
void emitDestroy(Address addr, QualType type, Destroyer *destroyer, bool useEHCleanupForArray)
void EmitFunctionProlog(const CGFunctionInfo &FI, llvm::Function *Fn, const FunctionArgList &Args)
EmitFunctionProlog - Emit the target specific LLVM code to load the arguments for the given function.
llvm::Value * EmitObjCAllocInit(llvm::Value *value, llvm::Type *resultType)
LValue EmitVAArgExprLValue(const VAArgExpr *E)
llvm::Value * EmitSEHExceptionCode()
bool EmitScalarRangeCheck(llvm::Value *Value, QualType Ty, SourceLocation Loc)
Check if the scalar Value is within the valid range for the given type Ty.
llvm::Value * EmitObjCCollectionLiteral(const Expr *E, const ObjCMethodDecl *MethodWithObjects)
void EmitOMPDepobjDirective(const OMPDepobjDirective &S)
llvm::Function * generateDestroyHelper(Address addr, QualType type, Destroyer *destroyer, bool useEHCleanupForArray, const VarDecl *VD)
Address EmitPointerWithAlignment(const Expr *Addr, LValueBaseInfo *BaseInfo=nullptr, TBAAAccessInfo *TBAAInfo=nullptr, KnownNonNull_t IsKnownNonNull=NotKnownNonNull)
EmitPointerWithAlignment - Given an expression with a pointer type, emit the value and compute our be...
llvm::Value * EmitMatrixIndexExpr(const Expr *E)
llvm::Value * EmitTargetBuiltinExpr(unsigned BuiltinID, const CallExpr *E, ReturnValueSlot ReturnValue)
EmitTargetBuiltinExpr - Emit the given builtin call.
void GenerateCXXGlobalCleanUpFunc(llvm::Function *Fn, ArrayRef< std::tuple< llvm::FunctionType *, llvm::WeakTrackingVH, llvm::Constant * > > DtorsOrStermFinalizers)
GenerateCXXGlobalCleanUpFunc - Generates code for cleaning up global variables.
void EmitCXXGuardedInit(const VarDecl &D, llvm::GlobalVariable *DeclPtr, bool PerformInit)
Emit code in this function to perform a guarded variable initialization.
const Expr * RetExpr
If a return statement is being visited, this holds the return statment's result expression.
void EmitARCRelease(llvm::Value *value, ARCPreciseLifetime_t precise)
void EmitCXXGlobalVarDeclInit(const VarDecl &D, llvm::GlobalVariable *GV, bool PerformInit)
EmitCXXGlobalVarDeclInit - Create the initializer for a C++ variable with global storage.
LValue EmitCoyieldLValue(const CoyieldExpr *E)
void EmitInitializerForField(FieldDecl *Field, LValue LHS, Expr *Init)
llvm::Value * EmitObjCThrowOperand(const Expr *expr)
void EmitX86MultiVersionResolver(llvm::Function *Resolver, ArrayRef< FMVResolverOption > Options)
RValue EmitAnyExprToTemp(const Expr *E)
EmitAnyExprToTemp - Similarly to EmitAnyExpr(), however, the result will always be accessible even if...
void pushCleanupAfterFullExpr(CleanupKind Kind, As... A)
Queue a cleanup to be pushed after finishing the current full-expression, potentially with an active ...
void EmitComplexExprIntoLValue(const Expr *E, LValue dest, bool isInit)
EmitComplexExprIntoLValue - Emit the given expression of complex type and place its result into the s...
RValue EmitCXXMemberCallExpr(const CXXMemberCallExpr *E, ReturnValueSlot ReturnValue, llvm::CallBase **CallOrInvoke=nullptr)
llvm::Value * emitPointerAuthResign(llvm::Value *Pointer, QualType PointerType, const CGPointerAuthInfo &CurAuthInfo, const CGPointerAuthInfo &NewAuthInfo, bool IsKnownNonNull)
void EmitVTablePtrCheck(const CXXRecordDecl *RD, llvm::Value *VTable, CFITypeCheckKind TCK, SourceLocation Loc)
EmitVTablePtrCheck - Emit a check that VTable is a valid virtual table for RD using llvm....
void EmitOMPSingleDirective(const OMPSingleDirective &S)
std::pair< LValue, llvm::Value * > EmitARCStoreUnsafeUnretained(const BinaryOperator *e, bool ignored)
ComplexPairTy EmitPromotedComplexExpr(const Expr *E, QualType PromotionType)
void pushFullExprCleanup(CleanupKind kind, As... A)
pushFullExprCleanup - Push a cleanup to be run at the end of the current full-expression.
RValue EmitCoroutineIntrinsic(const CallExpr *E, unsigned int IID)
void initFullExprCleanupWithFlag(RawAddress ActiveFlag)
llvm::Value * EmitAArch64SMEBuiltinExpr(unsigned BuiltinID, const CallExpr *E)
void EmitOMPTargetTeamsGenericLoopDirective(const OMPTargetTeamsGenericLoopDirective &S)
RValue EmitAMDGPUDevicePrintfCallExpr(const CallExpr *E)
void EmitReturnValueCheck(llvm::Value *RV)
Emit a test that checks if the return value RV is nonnull.
llvm::BasicBlock * getInvokeDest()
Address EmitArrayToPointerDecay(const Expr *Array, LValueBaseInfo *BaseInfo=nullptr, TBAAAccessInfo *TBAAInfo=nullptr)
RValue EmitBuiltinNewDeleteCall(const FunctionProtoType *Type, const CallExpr *TheCallExpr, bool IsDelete)
Address mergeAddressesInConditionalExpr(Address LHS, Address RHS, llvm::BasicBlock *LHSBlock, llvm::BasicBlock *RHSBlock, llvm::BasicBlock *MergeBlock, QualType MergedType)
llvm::CanonicalLoopInfo * EmitOMPCollapsedCanonicalLoopNest(const Stmt *S, int Depth)
Emit the Stmt S and return its topmost canonical loop, if any.
llvm::Value * EmitRISCVCpuSupports(ArrayRef< StringRef > FeaturesStrs)
LValue EmitUnaryOpLValue(const UnaryOperator *E)
void EmitBlockWithFallThrough(llvm::BasicBlock *BB, const Stmt *S)
llvm::Value * LoadObjCSelf()
LoadObjCSelf - Load the value of self.
bool ShouldEmitVTableTypeCheckedLoad(const CXXRecordDecl *RD)
Returns whether we should perform a type checked load when loading a virtual function for virtual cal...
ComplexPairTy EmitComplexPrePostIncDec(const UnaryOperator *E, LValue LV, bool isInc, bool isPre)
RValue EmitUnsupportedRValue(const Expr *E, const char *Name)
EmitUnsupportedRValue - Emit a dummy r-value using the type of E and issue an ErrorUnsupported style ...
void EmitAtomicStore(RValue rvalue, LValue lvalue, llvm::AtomicOrdering AO, bool IsVolatile, bool isInit)
llvm::Value * EmitARCRetainAutoreleaseReturnValue(llvm::Value *value)
void EmitARCCopyWeak(Address dst, Address src)
void maybeResetMCDCCondBitmap(const Expr *E)
Zero-init the MCDC temp value.
static unsigned getAccessedFieldNo(unsigned Idx, const llvm::Constant *Elts)
getAccessedFieldNo - Given an encoded value and a result number, return the input field number being ...
void EmitSimpleOMPExecutableDirective(const OMPExecutableDirective &D)
Emit simple code for OpenMP directives in Simd-only mode.
void EmitForStmt(const ForStmt &S, ArrayRef< const Attr * > Attrs={})
void EmitCheck(ArrayRef< std::pair< llvm::Value *, SanitizerKind::SanitizerOrdinal > > Checked, SanitizerHandler Check, ArrayRef< llvm::Constant * > StaticArgs, ArrayRef< llvm::Value * > DynamicArgs)
Create a basic block that will either trap or call a handler function in the UBSan runtime with the p...
void pushSEHCleanup(CleanupKind kind, llvm::Function *FinallyFunc)
RValue EmitBuiltinExpr(const GlobalDecl GD, unsigned BuiltinID, const CallExpr *E, ReturnValueSlot ReturnValue)
void PushDestructorCleanup(QualType T, Address Addr)
PushDestructorCleanup - Push a cleanup to call the complete-object destructor of an object of the giv...
void EmitCXXConstructorCall(const CXXConstructorDecl *D, CXXCtorType Type, bool ForVirtualBase, bool Delegating, AggValueSlot ThisAVS, const CXXConstructExpr *E)
void EmitOMPDistributeDirective(const OMPDistributeDirective &S)
CGCallee BuildAppleKextVirtualDestructorCall(const CXXDestructorDecl *DD, CXXDtorType Type, const CXXRecordDecl *RD)
void EmitOpenACCCombinedConstruct(const OpenACCCombinedConstruct &S)
RValue EmitAnyExpr(const Expr *E, AggValueSlot aggSlot=AggValueSlot::ignored(), bool ignoreResult=false)
EmitAnyExpr - Emit code to compute the specified expression which can have any type.
void EmitOMPParallelForDirective(const OMPParallelForDirective &S)
void EmitOMPTeamsDirective(const OMPTeamsDirective &S)
bool ShouldSkipSanitizerInstrumentation()
ShouldSkipSanitizerInstrumentation - Return true if the current function should not be instrumented w...
uint64_t getCurrentProfileCount()
Get the profiler's current count.
auto getIsCounterPair(const Stmt *S) const
void EmitBoundsCheckImpl(const Expr *E, llvm::Value *Bound, llvm::Value *Index, QualType IndexType, QualType IndexedType, bool Accessed)
llvm::Value * EmitSVEDupX(llvm::Value *Scalar, llvm::Type *Ty)
llvm::Value * EmitSVEPrefetchLoad(const SVETypeFlags &TypeFlags, SmallVectorImpl< llvm::Value * > &Ops, unsigned BuiltinID)
SmallVector< const BinaryOperator *, 16 > MCDCLogOpStack
Stack to track the Logical Operator recursion nest for MC/DC.
llvm::Value * EmitAArch64CompareBuiltinExpr(llvm::Value *Op, llvm::Type *Ty, const llvm::CmpInst::Predicate Fp, const llvm::CmpInst::Predicate Ip, const llvm::Twine &Name="")
void setBlockContextParameter(const ImplicitParamDecl *D, unsigned argNum, llvm::Value *ptr)
void defaultInitNonTrivialCStructVar(LValue Dst)
void StartFunction(GlobalDecl GD, QualType RetTy, llvm::Function *Fn, const CGFunctionInfo &FnInfo, const FunctionArgList &Args, SourceLocation Loc=SourceLocation(), SourceLocation StartLoc=SourceLocation())
Emit code for the start of a function.
void EmitCfiCheckFail()
Emit a cross-DSO CFI failure handling function.
AggValueSlot CreateAggTemp(QualType T, const Twine &Name="tmp", RawAddress *Alloca=nullptr)
CreateAggTemp - Create a temporary memory object for the given aggregate type.
RValue EmitLoadOfExtVectorElementLValue(LValue V)
llvm::ScalableVectorType * getSVEType(const SVETypeFlags &TypeFlags)
void EmitOMPUnrollDirective(const OMPUnrollDirective &S)
void EmitOMPParallelMasterTaskLoopSimdDirective(const OMPParallelMasterTaskLoopSimdDirective &S)
RValue EmitCall(const CGFunctionInfo &CallInfo, const CGCallee &Callee, ReturnValueSlot ReturnValue, const CallArgList &Args, llvm::CallBase **CallOrInvoke=nullptr, bool IsMustTail=false)
void EmitDelegateCallArg(CallArgList &args, const VarDecl *param, SourceLocation loc)
EmitDelegateCallArg - We are performing a delegate call; that is, the current function is delegating ...
void EmitOMPTargetDataDirective(const OMPTargetDataDirective &S)
RValue EmitCoyieldExpr(const CoyieldExpr &E, AggValueSlot aggSlot=AggValueSlot::ignored(), bool ignoreResult=false)
ComplexPairTy EmitLoadOfComplex(LValue src, SourceLocation loc)
EmitLoadOfComplex - Load a complex number from the specified l-value.
static bool ShouldNullCheckClassCastValue(const CastExpr *Cast)
bool HaveInsertPoint() const
HaveInsertPoint - True if an insertion point is defined.
RValue emitRotate(const CallExpr *E, bool IsRotateRight)
llvm::Value * EmitComplexToScalarConversion(ComplexPairTy Src, QualType SrcTy, QualType DstTy, SourceLocation Loc)
Emit a conversion from the specified complex type to the specified destination type,...
llvm::Constant * EmitCheckSourceLocation(SourceLocation Loc)
Emit a description of a source location in a format suitable for passing to a runtime sanitizer handl...
void markAsIgnoreThreadCheckingAtRuntime(llvm::Function *Fn)
Annotate the function with an attribute that disables TSan checking at runtime.
void EmitSwitchStmt(const SwitchStmt &S)
LValue EmitLValueForLambdaField(const FieldDecl *Field, llvm::Value *ThisValue)
bool isTrivialInitializer(const Expr *Init)
Determine whether the given initializer is trivial in the sense that it requires no code to be genera...
LValue EmitComplexAssignmentLValue(const BinaryOperator *E)
Emit an l-value for an assignment (simple or compound) of complex type.
void ErrorUnsupported(const Stmt *S, const char *Type)
ErrorUnsupported - Print out an error that codegen doesn't support the specified stmt yet.
void EmitOMPTargetTeamsDistributeParallelForSimdDirective(const OMPTargetTeamsDistributeParallelForSimdDirective &S)
Address recoverAddrOfEscapedLocal(CodeGenFunction &ParentCGF, Address ParentVar, llvm::Value *ParentFP)
Recovers the address of a local in a parent function.
const FieldDecl * FindFlexibleArrayMemberFieldAndOffset(ASTContext &Ctx, const RecordDecl *RD, const FieldDecl *FAMDecl, uint64_t &Offset)
void registerGlobalDtorWithAtExit(const VarDecl &D, llvm::FunctionCallee fn, llvm::Constant *addr)
Call atexit() with a function that passes the given argument to the given function.
llvm::Value * EmitRISCVCpuIs(const CallExpr *E)
LValue EmitObjCSelectorLValue(const ObjCSelectorExpr *E)
Address emitBlockByrefAddress(Address baseAddr, const VarDecl *V, bool followForward=true)
BuildBlockByrefAddress - Computes the location of the data in a variable which is declared as __block...
Address EmitVAListRef(const Expr *E)
LValue EmitObjCEncodeExprLValue(const ObjCEncodeExpr *E)
Address emitAddrOfImagComponent(Address complex, QualType complexType)
Address emitBlockByrefAddress(Address baseAddr, const BlockByrefInfo &info, bool followForward, const llvm::Twine &name)
LValue EmitDeclRefLValue(const DeclRefExpr *E)
llvm::Value * EmitLoadOfScalar(LValue lvalue, SourceLocation Loc)
EmitLoadOfScalar - Load a scalar value from an address, taking care to appropriately convert from the...
void EmitOMPTeamsDistributeParallelForSimdDirective(const OMPTeamsDistributeParallelForSimdDirective &S)
void EmitBranch(llvm::BasicBlock *Block)
EmitBranch - Emit a branch to the specified basic block from the current insert block,...
AggValueSlot::Overlap_t getOverlapForFieldInit(const FieldDecl *FD)
Determine whether a field initialization may overlap some other object.
void EmitOpenACCDataConstruct(const OpenACCDataConstruct &S)
LValue MakeRawAddrLValue(llvm::Value *V, QualType T, CharUnits Alignment, AlignmentSource Source=AlignmentSource::Type)
Same as MakeAddrLValue above except that the pointer is known to be unsigned.
llvm::Function * GenerateCapturedStmtFunction(const CapturedStmt &S)
void EmitAggregateCopy(LValue Dest, LValue Src, QualType EltTy, AggValueSlot::Overlap_t MayOverlap, bool isVolatile=false)
EmitAggregateCopy - Emit an aggregate copy.
llvm::Value * EmitARCReclaimReturnedObject(const Expr *e, bool allowUnsafeClaim)
void EmitSEHTryStmt(const SEHTryStmt &S)
void maybeCreateMCDCCondBitmap()
Allocate a temp value on the stack that MCDC can use to track condition results.
void EmitOMPInteropDirective(const OMPInteropDirective &S)
llvm::Value * EmitNeonShiftVector(llvm::Value *V, llvm::Type *Ty, bool negateForRightShift)
void ExitSEHTryStmt(const SEHTryStmt &S)
llvm::Constant * GenerateCopyHelperFunction(const CGBlockInfo &blockInfo)
void EmitCXXDeleteExpr(const CXXDeleteExpr *E)
void EmitOMPReductionClauseFinal(const OMPExecutableDirective &D, const OpenMPDirectiveKind ReductionKind)
Emit final update of reduction values to original variables at the end of the directive.
llvm::Value * unregisterGlobalDtorWithUnAtExit(llvm::Constant *dtorStub)
Call unatexit() with function dtorStub.
llvm::BasicBlock * OMPScanDispatch
llvm::BasicBlock * getTerminateLandingPad()
getTerminateLandingPad - Return a landing pad that just calls terminate.
llvm::BasicBlock * getTerminateHandler()
getTerminateHandler - Return a handler (not a landing pad, just a catch handler) that just calls term...
void EmitObjCAutoreleasePoolPop(llvm::Value *Ptr)
llvm::Value * EmitSVEMovl(const SVETypeFlags &TypeFlags, llvm::ArrayRef< llvm::Value * > Ops, unsigned BuiltinID)
llvm::function_ref< std::pair< LValue, LValue >(CodeGenFunction &, const OMPExecutableDirective &S)> CodeGenLoopBoundsTy
llvm::Value * EmitARCRetainAutoreleaseScalarExpr(const Expr *expr)
void emitAlignmentAssumption(llvm::Value *PtrValue, QualType Ty, SourceLocation Loc, SourceLocation AssumptionLoc, llvm::Value *Alignment, llvm::Value *OffsetValue=nullptr)
const TargetCodeGenInfo & getTargetHooks() const
void setBeforeOutermostConditional(llvm::Value *value, Address addr, CodeGenFunction &CGF)
llvm::Value * emitBoolVecConversion(llvm::Value *SrcVec, unsigned NumElementsDst, const llvm::Twine &Name="")
LValue MakeNaturalAlignRawAddrLValue(llvm::Value *V, QualType T)
LValue EmitPredefinedLValue(const PredefinedExpr *E)
llvm::Value * EmitARMBuiltinExpr(unsigned BuiltinID, const CallExpr *E, ReturnValueSlot ReturnValue, llvm::Triple::ArchType Arch)
void EmitInlinedInheritingCXXConstructorCall(const CXXConstructorDecl *Ctor, CXXCtorType CtorType, bool ForVirtualBase, bool Delegating, CallArgList &Args)
Emit a call to an inheriting constructor (that is, one that invokes a constructor inherited from a ba...
RValue EmitReferenceBindingToExpr(const Expr *E)
Emits a reference binding to the passed in expression.
llvm::Type * getEltType(const SVETypeFlags &TypeFlags)
CodeGenFunction(CodeGenModule &cgm, bool suppressNewContext=false)
void EmitAggExpr(const Expr *E, AggValueSlot AS)
EmitAggExpr - Emit the computation of the specified expression of aggregate type.
void EmitOMPTargetTaskBasedDirective(const OMPExecutableDirective &S, const RegionCodeGenTy &BodyGen, OMPTargetDataInfo &InputInfo)
void EmitDeclStmt(const DeclStmt &S)
void EmitOMPScopeDirective(const OMPScopeDirective &S)
bool ShouldXRayInstrumentFunction() const
ShouldXRayInstrument - Return true if the current function should be instrumented with XRay nop sleds...
Address GetAddressOfDerivedClass(Address Value, const CXXRecordDecl *Derived, CastExpr::path_const_iterator PathBegin, CastExpr::path_const_iterator PathEnd, bool NullCheckValue)
bool InNoInlineAttributedStmt
True if the current statement has noinline attribute.
void EmitOMPTargetParallelDirective(const OMPTargetParallelDirective &S)
void EnterCXXTryStmt(const CXXTryStmt &S, bool IsFnTryBlock=false)
static bool IsConstructorDelegationValid(const CXXConstructorDecl *Ctor)
llvm::Function * GenerateBlockFunction(GlobalDecl GD, const CGBlockInfo &Info, const DeclMapTy &ldm, bool IsLambdaConversionToBlock, bool BuildGlobalBlock)
void EmitStoreThroughExtVectorComponentLValue(RValue Src, LValue Dst)
void EmitOMPParallelMaskedDirective(const OMPParallelMaskedDirective &S)
static void EmitOMPTargetParallelForDeviceFunction(CodeGenModule &CGM, StringRef ParentName, const OMPTargetParallelForDirective &S)
Emit device code for the target parallel for directive.
llvm::Value * EmitSVEPMull(const SVETypeFlags &TypeFlags, llvm::SmallVectorImpl< llvm::Value * > &Ops, unsigned BuiltinID)
void EmitStartEHSpec(const Decl *D)
EmitStartEHSpec - Emit the start of the exception spec.
void EmitCoroutineBody(const CoroutineBodyStmt &S)
RValue EmitSimpleCallExpr(const CallExpr *E, ReturnValueSlot ReturnValue, llvm::CallBase **CallOrInvoke=nullptr)
Address EmitCompoundStmt(const CompoundStmt &S, bool GetLast=false, AggValueSlot AVS=AggValueSlot::ignored())
llvm::Value * EmitToMemory(llvm::Value *Value, QualType Ty)
EmitToMemory - Change a scalar value from its value representation to its in-memory representation.
llvm::Value * EmitCheckValue(llvm::Value *V)
Convert a value into a format suitable for passing to a runtime sanitizer handler.
void EmitCXXConstructorCall(const CXXConstructorDecl *D, CXXCtorType Type, bool ForVirtualBase, bool Delegating, Address This, CallArgList &Args, AggValueSlot::Overlap_t Overlap, SourceLocation Loc, bool NewPointerIsChecked, llvm::CallBase **CallOrInvoke=nullptr)
VlaSizePair getVLAElements1D(const VariableArrayType *vla)
Return the number of elements for a single dimension for the given array type.
void EmitCXXTemporary(const CXXTemporary *Temporary, QualType TempType, Address Ptr)
llvm::Value * EmitCMSEClearRecord(llvm::Value *V, llvm::ArrayType *ATy, QualType RTy)
void EmitStoreOfScalar(llvm::Value *value, LValue lvalue, bool isInit=false)
EmitStoreOfScalar - Store a scalar value to an address, taking care to appropriately convert from the...
RValue EmitCXXMemberPointerCallExpr(const CXXMemberCallExpr *E, ReturnValueSlot ReturnValue, llvm::CallBase **CallOrInvoke)
bool IsInPreservedAIRegion
True if CodeGen currently emits code inside presereved access index region.
llvm::Value * EmitARCRetain(QualType type, llvm::Value *value)
llvm::Value * authPointerToPointerCast(llvm::Value *ResultPtr, QualType SourceType, QualType DestType)
bool AlwaysEmitXRayTypedEvents() const
AlwaysEmitXRayTypedEvents - Return true if clang must unconditionally emit XRay typed event handling ...
void pushCleanupAfterFullExprWithActiveFlag(CleanupKind Kind, RawAddress ActiveFlag, As... A)
void SetSqrtFPAccuracy(llvm::Value *Val)
Set the minimum required accuracy of the given sqrt operation based on CodeGenOpts.
void registerGlobalDtorWithAtExit(llvm::Constant *dtorStub)
Call atexit() with function dtorStub.
RValue EmitCall(const CGFunctionInfo &CallInfo, const CGCallee &Callee, ReturnValueSlot ReturnValue, const CallArgList &Args, llvm::CallBase **CallOrInvoke, bool IsMustTail, SourceLocation Loc, bool IsVirtualFunctionPointerThunk=false)
EmitCall - Generate a call of the given function, expecting the given result type,...
RValue EmitVAArg(VAArgExpr *VE, Address &VAListAddr, AggValueSlot Slot=AggValueSlot::ignored())
Generate code to get an argument from the passed in pointer and update it accordingly.
void EmitOMPSimdInit(const OMPLoopDirective &D)
Helpers for the OpenMP loop directives.
RValue EmitPseudoObjectRValue(const PseudoObjectExpr *e, AggValueSlot slot=AggValueSlot::ignored())
void EmitCfiSlowPathCheck(SanitizerKind::SanitizerOrdinal Ordinal, llvm::Value *Cond, llvm::ConstantInt *TypeId, llvm::Value *Ptr, ArrayRef< llvm::Constant * > StaticArgs)
Emit a slow path cross-DSO CFI check which calls __cfi_slowpath if Cond if false.
llvm::Value * EmitSVEScatterStore(const SVETypeFlags &TypeFlags, llvm::SmallVectorImpl< llvm::Value * > &Ops, unsigned IntID)
llvm::Value * EmitObjCSelectorExpr(const ObjCSelectorExpr *E)
void EmitConstructorBody(FunctionArgList &Args)
void SetFastMathFlags(FPOptions FPFeatures)
Set the codegen fast-math flags.
int ExpectedOMPLoopDepth
Number of nested loop to be consumed by the last surrounding loop-associated directive.
void EmitVarDecl(const VarDecl &D)
EmitVarDecl - Emit a local variable declaration.
llvm::Value * EmitARCUnsafeClaimAutoreleasedReturnValue(llvm::Value *value)
void EmitOMPParallelForSimdDirective(const OMPParallelForSimdDirective &S)
llvm::CallInst * EmitNounwindRuntimeCall(llvm::FunctionCallee callee, const Twine &name="")
llvm::Value * EmitBuiltinAvailable(const VersionTuple &Version)
llvm::Value * EmitARCStoreStrong(LValue lvalue, llvm::Value *value, bool resultIgnored)
CGCallee BuildAppleKextVirtualCall(const CXXMethodDecl *MD, NestedNameSpecifier *Qual, llvm::Type *Ty)
LValue EmitObjCMessageExprLValue(const ObjCMessageExpr *E)
void EmitVTableAssumptionLoads(const CXXRecordDecl *ClassDecl, Address This)
Emit assumption load for all bases.
llvm::Function * generateBuiltinOSLogHelperFunction(const analyze_os_log::OSLogBufferLayout &Layout, CharUnits BufferAlignment)
llvm::Value * EmitLoadOfScalar(Address Addr, bool Volatile, QualType Ty, SourceLocation Loc, AlignmentSource Source=AlignmentSource::Type, bool isNontemporal=false)
EmitLoadOfScalar - Load a scalar value from an address, taking care to appropriately convert from the...
CGCallee EmitCallee(const Expr *E)
llvm::Value * EmitBlockLiteral(const BlockExpr *)
Emit block literal.
void EmitNullabilityCheck(LValue LHS, llvm::Value *RHS, SourceLocation Loc)
Given an assignment *LHS = RHS, emit a test that checks if RHS is nonnull, if LHS is marked _Nonnull.
void EmitAggFinalDestCopy(QualType Type, AggValueSlot Dest, const LValue &Src, ExprValueKind SrcKind)
EmitAggFinalDestCopy - Emit copy of the specified aggregate into destination address.
void Destroyer(CodeGenFunction &CGF, Address addr, QualType ty)
const Decl * CurFuncDecl
CurFuncDecl - Holds the Decl for the current outermost non-closure context.
llvm::CallInst * EmitNounwindRuntimeCall(llvm::FunctionCallee callee, ArrayRef< llvm::Value * > args, const Twine &name="")
llvm::Constant * GenerateObjCAtomicSetterCopyHelperFunction(const ObjCPropertyImplDecl *PID)
ComplexPairTy EmitUnPromotedValue(ComplexPairTy result, QualType PromotionType)
LValue EmitLoadOfPointerLValue(Address Ptr, const PointerType *PtrTy)
llvm::Value * EmitScalarOrConstFoldImmArg(unsigned ICEArguments, unsigned Idx, const CallExpr *E)
void maybeUpdateMCDCCondBitmap(const Expr *E, llvm::Value *Val)
Update the MCDC temp value with the condition's evaluated result.
static void EmitOMPTargetTeamsDistributeSimdDeviceFunction(CodeGenModule &CGM, StringRef ParentName, const OMPTargetTeamsDistributeSimdDirective &S)
Emit device code for the target teams distribute simd directive.
void checkTargetFeatures(const CallExpr *E, const FunctionDecl *TargetDecl)
void EmitLambdaInAllocaCallOpBody(const CXXMethodDecl *MD)
std::pair< LValue, LValue > EmitHLSLOutArgLValues(const HLSLOutArgExpr *E, QualType Ty)
SmallVector< llvm::CanonicalLoopInfo *, 4 > OMPLoopNestStack
List of recently emitted OMPCanonicalLoops.
bool EmitOMPWorksharingLoop(const OMPLoopDirective &S, Expr *EUB, const CodeGenLoopBoundsTy &CodeGenLoopBounds, const CodeGenDispatchBoundsTy &CGDispatchBounds)
Emit code for the worksharing loop-based directive.
llvm::SmallVector< char, 256 > LifetimeExtendedCleanupStack
llvm::Value * LoadCXXVTT()
LoadCXXVTT - Load the VTT parameter to base constructors/destructors have virtual bases.
void EmitDeclRefExprDbgValue(const DeclRefExpr *E, const APValue &Init)
void EmitOpenACCLoopConstruct(const OpenACCLoopConstruct &S)
void EmitCXXThrowExpr(const CXXThrowExpr *E, bool KeepInsertionPoint=true)
void EmitOMPLinearClause(const OMPLoopDirective &D, CodeGenFunction::OMPPrivateScope &PrivateScope)
Emit initial code for linear clauses.
llvm::Instruction * getPostAllocaInsertPoint()
Return PostAllocaInsertPt.
void StartThunk(llvm::Function *Fn, GlobalDecl GD, const CGFunctionInfo &FnInfo, bool IsUnprototyped)
Address GetAddressOfBaseClass(Address Value, const CXXRecordDecl *Derived, CastExpr::path_const_iterator PathBegin, CastExpr::path_const_iterator PathEnd, bool NullCheckValue, SourceLocation Loc)
GetAddressOfBaseClass - This function will add the necessary delta to the load of 'this' and returns ...
void EmitBranchThroughCleanup(JumpDest Dest)
EmitBranchThroughCleanup - Emit a branch from the current insert block through the normal cleanup han...
void emitARCMoveAssignWeak(QualType Ty, Address DstAddr, Address SrcAddr)
LValue EmitMemberExpr(const MemberExpr *E)
AutoVarEmission EmitAutoVarAlloca(const VarDecl &var)
void pushDestroy(QualType::DestructionKind dtorKind, Address addr, QualType type)
LValue EmitArraySubscriptExpr(const ArraySubscriptExpr *E, bool Accessed=false)
Address GetAddressOfDirectBaseInCompleteClass(Address Value, const CXXRecordDecl *Derived, const CXXRecordDecl *Base, bool BaseIsVirtual)
GetAddressOfBaseOfCompleteClass - Convert the given pointer to a complete class to the given direct b...
bool ConstantFoldsToSimpleInteger(const Expr *Cond, bool &Result, bool AllowLabels=false)
ConstantFoldsToSimpleInteger - If the specified expression does not fold to a constant,...
Address ReturnValuePointer
ReturnValuePointer - The temporary alloca to hold a pointer to sret.
llvm::ConstantInt * getUBSanFunctionTypeHash(QualType T) const
Return a type hash constant for a function instrumented by -fsanitize=function.
ComplexPairTy EmitPromotedValue(ComplexPairTy result, QualType PromotionType)
llvm::Value * SEHInfo
Value returned by __exception_info intrinsic.
llvm::Value * BuildVector(ArrayRef< llvm::Value * > Ops)
void EmitStmt(const Stmt *S, ArrayRef< const Attr * > Attrs={})
EmitStmt - Emit the code for the statement.
ConstantEmission tryEmitAsConstant(const MemberExpr *ME)
llvm::Value * EmitWebAssemblyBuiltinExpr(unsigned BuiltinID, const CallExpr *E)
void callCStructMoveAssignmentOperator(LValue Dst, LValue Src)
void EmitAutoVarCleanups(const AutoVarEmission &emission)
llvm::GlobalVariable * AddInitializerToStaticVarDecl(const VarDecl &D, llvm::GlobalVariable *GV)
AddInitializerToStaticVarDecl - Add the initializer for 'D' to the global variable that has already b...
llvm::Value * EmitARMCDEBuiltinExpr(unsigned BuiltinID, const CallExpr *E, ReturnValueSlot ReturnValue, llvm::Triple::ArchType Arch)
void EmitOMPTileDirective(const OMPTileDirective &S)
llvm::Value * GetCountedByFieldExprGEP(const Expr *Base, const FieldDecl *FAMDecl, const FieldDecl *CountDecl)
void PopCleanupBlock(bool FallThroughIsBranchThrough=false, bool ForDeactivation=false)
PopCleanupBlock - Will pop the cleanup entry on the stack and process all branch fixups.
JumpDest getJumpDestForLabel(const LabelDecl *S)
getBasicBlockForLabel - Return the LLVM basicblock that the specified label maps to.
bool EmitOMPLinearClauseInit(const OMPLoopDirective &D)
Emit initial code for linear variables.
bool needsEHCleanup(QualType::DestructionKind kind)
Determines whether an EH cleanup is required to destroy a type with the given destruction kind.
llvm::Value * EmitPromotedScalarExpr(const Expr *E, QualType PromotionType)
llvm::BasicBlock * EmitLandingPad()
Emits a landing pad for the current EH stack.
void EmitObjCAtSynchronizedStmt(const ObjCAtSynchronizedStmt &S)
llvm::DenseMap< const ValueDecl *, FieldDecl * > LambdaCaptureFields
llvm::Function * EmitCapturedStmt(const CapturedStmt &S, CapturedRegionKind K)
void EmitTypeMetadataCodeForVCall(const CXXRecordDecl *RD, llvm::Value *VTable, SourceLocation Loc)
If whole-program virtual table optimization is enabled, emit an assumption that VTable is a member of...
bool AutoreleaseResult
In ARC, whether we should autorelease the return value.
CleanupKind getCleanupKind(QualType::DestructionKind kind)
void EmitOMPParallelMaskedTaskLoopSimdDirective(const OMPParallelMaskedTaskLoopSimdDirective &S)
llvm::CallInst * EmitRuntimeCall(llvm::FunctionCallee callee, const Twine &name="")
void EmitOMPLoopBody(const OMPLoopDirective &D, JumpDest LoopExit)
Helper for the OpenMP loop directives.
void EmitCXXConstructExpr(const CXXConstructExpr *E, AggValueSlot Dest)
VlaSizePair getVLASize(QualType vla)
llvm::Value * EmitSVEPredicateTupleCast(llvm::Value *PredTuple, llvm::StructType *Ty)
llvm::Value * EmitObjCMRRAutoreleasePoolPush()
RValue EmitCXXOperatorMemberCallExpr(const CXXOperatorCallExpr *E, const CXXMethodDecl *MD, ReturnValueSlot ReturnValue, llvm::CallBase **CallOrInvoke)
void EmitInvariantStart(llvm::Constant *Addr, CharUnits Size)
void maybeUpdateMCDCTestVectorBitmap(const Expr *E)
Increment the profiler's counter for the given expression by StepV.
void EmitOMPLinearClauseFinal(const OMPLoopDirective &D, const llvm::function_ref< llvm::Value *(CodeGenFunction &)> CondGen)
Emit final code for linear clauses.
llvm::Type * ConvertType(QualType T)
llvm::Value * EmitCXXTypeidExpr(const CXXTypeidExpr *E)
void EmitNoreturnRuntimeCallOrInvoke(llvm::FunctionCallee callee, ArrayRef< llvm::Value * > args)
void EmitOMPSectionsDirective(const OMPSectionsDirective &S)
void EmitOpenACCEnterDataConstruct(const OpenACCEnterDataConstruct &S)
Address GetAddrOfBlockDecl(const VarDecl *var)
CodeGenTypes & getTypes() const
void EmitWritebacks(const CallArgList &Args)
EmitWriteback - Emit callbacks for function.
void EmitARCInitWeak(Address addr, llvm::Value *value)
llvm::CallBase * EmitRuntimeCallOrInvoke(llvm::FunctionCallee callee, ArrayRef< llvm::Value * > args, const Twine &name="")
LValue EmitArraySectionExpr(const ArraySectionExpr *E, bool IsLowerBound=true)
llvm::BasicBlock * OMPScanExitBlock
llvm::Value * EmitSystemZBuiltinExpr(unsigned BuiltinID, const CallExpr *E)
void emitAlignmentAssumption(llvm::Value *PtrValue, const Expr *E, SourceLocation AssumptionLoc, llvm::Value *Alignment, llvm::Value *OffsetValue=nullptr)
static void EmitOMPTargetTeamsDistributeParallelForSimdDeviceFunction(CodeGenModule &CGM, StringRef ParentName, const OMPTargetTeamsDistributeParallelForSimdDirective &S)
Emit device code for the target teams distribute parallel for simd directive.
bool IsSanitizerScope
True if CodeGen currently emits code implementing sanitizer checks.
LValue EmitCXXTypeidLValue(const CXXTypeidExpr *E)
llvm::CallBase * EmitCallOrInvoke(llvm::FunctionCallee Callee, ArrayRef< llvm::Value * > Args, const Twine &Name="")
HLSLControlFlowHintAttr::Spelling HLSLControlFlowAttr
HLSL Branch attribute.
void EmitDoStmt(const DoStmt &S, ArrayRef< const Attr * > Attrs={})
llvm::Value * EmitRISCVCpuIs(StringRef CPUStr)
void EmitStoreThroughGlobalRegLValue(RValue Src, LValue Dst)
Address EmitCXXUuidofExpr(const CXXUuidofExpr *E)
bool InAlwaysInlineAttributedStmt
True if the current statement has always_inline attribute.
RawAddress CreateTempAlloca(llvm::Type *Ty, CharUnits align, const Twine &Name="tmp", llvm::Value *ArraySize=nullptr, RawAddress *Alloca=nullptr)
void EmitOMPUseDeviceAddrClause(const OMPUseDeviceAddrClause &C, OMPPrivateScope &PrivateScope, const llvm::DenseMap< const ValueDecl *, llvm::Value * > CaptureDeviceAddrMap)
void generateObjCSetterBody(const ObjCImplementationDecl *classImpl, const ObjCPropertyImplDecl *propImpl, llvm::Constant *AtomicHelperFn)
void EmitOMPTargetSimdDirective(const OMPTargetSimdDirective &S)
void EmitOMPTaskyieldDirective(const OMPTaskyieldDirective &S)
void EmitCallArg(CallArgList &args, const Expr *E, QualType ArgType)
EmitCallArg - Emit a single call argument.
llvm::Value * EmitSMEReadWrite(const SVETypeFlags &TypeFlags, llvm::SmallVectorImpl< llvm::Value * > &Ops, unsigned IntID)
void EmitOpenACCComputeConstruct(const OpenACCComputeConstruct &S)
void EmitOMPSimdDirective(const OMPSimdDirective &S)
void EmitTypeCheck(TypeCheckKind TCK, SourceLocation Loc, LValue LV, QualType Type, SanitizerSet SkippedChecks=SanitizerSet(), llvm::Value *ArraySize=nullptr)
llvm::Value * EmitSMELd1St1(const SVETypeFlags &TypeFlags, llvm::SmallVectorImpl< llvm::Value * > &Ops, unsigned IntID)
void EmitOMPCriticalDirective(const OMPCriticalDirective &S)
llvm::SmallVector< const ParmVarDecl *, 4 > FnArgs
Save Parameter Decl for coroutine.
void ActivateCleanupBlock(EHScopeStack::stable_iterator Cleanup, llvm::Instruction *DominatingIP)
ActivateCleanupBlock - Activates an initially-inactive cleanup.
void PopCleanupBlocks(EHScopeStack::stable_iterator OldCleanupStackSize, size_t OldLifetimeExtendedStackSize, std::initializer_list< llvm::Value ** > ValuesToReload={})
Takes the old cleanup stack size and emits the cleanup blocks that have been added,...
QualType BuildFunctionArgList(GlobalDecl GD, FunctionArgList &Args)
void GenerateCXXGlobalVarDeclInitFunc(llvm::Function *Fn, const VarDecl *D, llvm::GlobalVariable *Addr, bool PerformInit)
llvm::Value * EmitPPCBuiltinExpr(unsigned BuiltinID, const CallExpr *E)
LValue EmitStringLiteralLValue(const StringLiteral *E)
void EmitCapturedLocals(CodeGenFunction &ParentCGF, const Stmt *OutlinedStmt, bool IsFilter)
Scan the outlined statement for captures from the parent function.
static Destroyer destroyARCStrongPrecise
void EmitARCIntrinsicUse(ArrayRef< llvm::Value * > values)
RValue EmitNVPTXDevicePrintfCallExpr(const CallExpr *E)
void EmitObjCAutoreleasePoolStmt(const ObjCAutoreleasePoolStmt &S)
void EmitOMPForDirective(const OMPForDirective &S)
void EmitOMPMetaDirective(const OMPMetaDirective &S)
void EmitCtorPrologue(const CXXConstructorDecl *CD, CXXCtorType Type, FunctionArgList &Args)
RawAddress NormalCleanupDest
i32s containing the indexes of the cleanup destinations.
RValue EmitAtomicLoad(LValue lvalue, SourceLocation loc, llvm::AtomicOrdering AO, bool IsVolatile=false, AggValueSlot slot=AggValueSlot::ignored())
llvm::Value * EvaluateExprAsBool(const Expr *E)
EvaluateExprAsBool - Perform the usual unary conversions on the specified expression and compare the ...
llvm::Value * EmitSVEStructLoad(const SVETypeFlags &TypeFlags, SmallVectorImpl< llvm::Value * > &Ops, unsigned IntID)
void EmitOMPTargetUpdateDirective(const OMPTargetUpdateDirective &S)
LValue InitCapturedStruct(const CapturedStmt &S)
void EmitOMPParallelMasterDirective(const OMPParallelMasterDirective &S)
void EmitReturnStmt(const ReturnStmt &S)
AggValueSlot::Overlap_t getOverlapForReturnValue()
Determine whether a return value slot may overlap some other object.
RValue EmitCoawaitExpr(const CoawaitExpr &E, AggValueSlot aggSlot=AggValueSlot::ignored(), bool ignoreResult=false)
void EmitLambdaDelegatingInvokeBody(const CXXMethodDecl *MD, CallArgList &CallArgs)
Address EmitMSVAListRef(const Expr *E)
Emit a "reference" to a __builtin_ms_va_list; this is always the value of the expression,...
llvm::Value * EmitWithOriginalRHSBitfieldAssignment(const BinaryOperator *E, llvm::Value **Previous, QualType *SrcType)
Retrieve the implicit cast expression of the rhs in a binary operator expression by passing pointers ...
LValue EmitOMPSharedLValue(const Expr *E)
Emits the lvalue for the expression with possibly captured variable.
void SpecialInitFn(CodeGenFunction &Init, const VarDecl &D, llvm::Value *Address)
llvm::Value * EmitCheckedInBoundsGEP(llvm::Type *ElemTy, llvm::Value *Ptr, ArrayRef< llvm::Value * > IdxList, bool SignedIndices, bool IsSubtraction, SourceLocation Loc, const Twine &Name="")
Same as IRBuilder::CreateInBoundsGEP, but additionally emits a check to detect undefined behavior whe...
void EmitOMPTargetTeamsDistributeSimdDirective(const OMPTargetTeamsDistributeSimdDirective &S)
llvm::Value * EmitARCRetainNonBlock(llvm::Value *value)
void processInReduction(const OMPExecutableDirective &S, OMPTaskDataTy &Data, CodeGenFunction &CGF, const CapturedStmt *CS, OMPPrivateScope &Scope)
void EmitOMPMasterDirective(const OMPMasterDirective &S)
void EmitOpenACCHostDataConstruct(const OpenACCHostDataConstruct &S)
void EmitOMPMasterTaskLoopDirective(const OMPMasterTaskLoopDirective &S)
llvm::Value * EmitObjCExtendObjectLifetime(QualType T, llvm::Value *Ptr)
EHScopeStack::stable_iterator PrologueCleanupDepth
PrologueCleanupDepth - The cleanup depth enclosing all the cleanups associated with the parameters.
void EmitOpenACCUpdateConstruct(const OpenACCUpdateConstruct &S)
void EmitOMPTargetParallelGenericLoopDirective(const OMPTargetParallelGenericLoopDirective &S)
void pushStackRestore(CleanupKind kind, Address SPMem)
llvm::Value * EmitDynamicCast(Address V, const CXXDynamicCastExpr *DCE)
llvm::Value * EmitNeonRShiftImm(llvm::Value *Vec, llvm::Value *Amt, llvm::Type *Ty, bool usgn, const char *name)
void GenerateObjCSetter(ObjCImplementationDecl *IMP, const ObjCPropertyImplDecl *PID)
GenerateObjCSetter - Synthesize an Objective-C property setter function for the given property.
void EmitOMPAssumeDirective(const OMPAssumeDirective &S)
bool EmitOMPCopyinClause(const OMPExecutableDirective &D)
Emit code for copyin clause in D directive.
llvm::Value * EmitBlockCopyAndAutorelease(llvm::Value *Block, QualType Ty)
static bool mightAddDeclToScope(const Stmt *S)
Determine if the given statement might introduce a declaration into the current scope,...
SmallVector< llvm::Type *, 2 > getSVEOverloadTypes(const SVETypeFlags &TypeFlags, llvm::Type *ReturnType, ArrayRef< llvm::Value * > Ops)
void EmitOMPMaskedDirective(const OMPMaskedDirective &S)
uint64_t getProfileCount(const Stmt *S)
Get the profiler's count for the given statement.
LValue EmitMatrixSubscriptExpr(const MatrixSubscriptExpr *E)
LValue EmitPseudoObjectLValue(const PseudoObjectExpr *e)
static bool hasAggregateEvaluationKind(QualType T)
void EmitOMPPrivateClause(const OMPExecutableDirective &D, OMPPrivateScope &PrivateScope)
void EmitOMPTaskwaitDirective(const OMPTaskwaitDirective &S)
llvm::Function * GenerateOpenMPCapturedStmtFunction(const CapturedStmt &S, SourceLocation Loc)
llvm::Value * EmitScalarPrePostIncDec(const UnaryOperator *E, LValue LV, bool isInc, bool isPre)
void EmitOMPTargetParallelForSimdDirective(const OMPTargetParallelForSimdDirective &S)
RawAddress CreateIRTemp(QualType T, const Twine &Name="tmp")
CreateIRTemp - Create a temporary IR object of the given type, with appropriate alignment.
llvm::Value * EmitLoadOfScalar(Address Addr, bool Volatile, QualType Ty, SourceLocation Loc, LValueBaseInfo BaseInfo, TBAAAccessInfo TBAAInfo, bool isNontemporal=false)
void emitImplicitAssignmentOperatorBody(FunctionArgList &Args)
void emitARCCopyAssignWeak(QualType Ty, Address DstAddr, Address SrcAddr)
void SetFPAccuracy(llvm::Value *Val, float Accuracy)
SetFPAccuracy - Set the minimum required accuracy of the given floating point operation,...
LValue MakeAddrLValue(Address Addr, QualType T, AlignmentSource Source=AlignmentSource::Type)
void EmitStoreOfComplex(ComplexPairTy V, LValue dest, bool isInit)
EmitStoreOfComplex - Store a complex number into the specified l-value.
void EmitBreakStmt(const BreakStmt &S)
Address GenerateCapturedStmtArgument(const CapturedStmt &S)
void EmitLambdaVLACapture(const VariableArrayType *VAT, LValue LV)
static void EmitOMPTargetParallelGenericLoopDeviceFunction(CodeGenModule &CGM, StringRef ParentName, const OMPTargetParallelGenericLoopDirective &S)
Emit device code for the target parallel loop directive.
llvm::Value * LoadCXXThis()
LoadCXXThis - Load the value of 'this'.
llvm::function_ref< void(CodeGenFunction &, SourceLocation, const unsigned, const bool)> CodeGenOrderedTy
llvm::Value * EmitARMMVEBuiltinExpr(unsigned BuiltinID, const CallExpr *E, ReturnValueSlot ReturnValue, llvm::Triple::ArchType Arch)
void GenerateObjCGetter(ObjCImplementationDecl *IMP, const ObjCPropertyImplDecl *PID)
GenerateObjCGetter - Synthesize an Objective-C property getter function.
LValue EmitLoadOfReferenceLValue(LValue RefLVal)
const CGFunctionInfo * CurFnInfo
LValue MakeNaturalAlignAddrLValue(llvm::Value *V, QualType T, KnownNonNull_t IsKnownNonNull=NotKnownNonNull)
bool isObviouslyBranchWithoutCleanups(JumpDest Dest) const
isObviouslyBranchWithoutCleanups - Return true if a branch to the specified destination obviously has...
llvm::Value * EmitSVEStructStore(const SVETypeFlags &TypeFlags, SmallVectorImpl< llvm::Value * > &Ops, unsigned IntID)
Address GetAddrOfLocalVar(const VarDecl *VD)
GetAddrOfLocalVar - Return the address of a local variable.
llvm::BasicBlock * getFuncletEHDispatchBlock(EHScopeStack::stable_iterator scope)
void EmitObjCAutoreleasePoolCleanup(llvm::Value *Ptr)
llvm::Value * getArrayInitIndex()
Get the index of the current ArrayInitLoopExpr, if any.
void InsertHelper(llvm::Instruction *I, const llvm::Twine &Name, llvm::BasicBlock::iterator InsertPt) const
CGBuilder insert helper.
void pushKmpcAllocFree(CleanupKind Kind, std::pair< llvm::Value *, llvm::Value * > AddrSizePair)
LValue EmitObjCIsaExpr(const ObjCIsaExpr *E)
void EmitParmDecl(const VarDecl &D, ParamValue Arg, unsigned ArgNo)
EmitParmDecl - Emit a ParmVarDecl or an ImplicitParamDecl.
llvm::Value * EmitSEHAbnormalTermination()
void EmitCoreturnStmt(const CoreturnStmt &S)
void EnterDtorCleanups(const CXXDestructorDecl *Dtor, CXXDtorType Type)
EnterDtorCleanups - Enter the cleanups necessary to complete the given phase of destruction for a des...
void EmitAtomicStore(RValue rvalue, LValue lvalue, bool isInit)
void EmitInitializationToLValue(const Expr *E, LValue LV, AggValueSlot::IsZeroed_t IsZeroed=AggValueSlot::IsNotZeroed)
EmitInitializationToLValue - Emit an initializer to an LValue.
Address EmitFieldAnnotations(const FieldDecl *D, Address V)
Emit field annotations for the given field & value.
llvm::Value * EmitScalarConversion(llvm::Value *Src, QualType SrcTy, QualType DstTy, SourceLocation Loc)
Emit a conversion from the specified type to the specified destination type, both of which are LLVM s...
llvm::Value * EmitX86BuiltinExpr(unsigned BuiltinID, const CallExpr *E)
void EmitOpenACCSetConstruct(const OpenACCSetConstruct &S)
llvm::BasicBlock * OMPAfterScanBlock
LValue EmitCXXUuidofLValue(const CXXUuidofExpr *E)
std::pair< llvm::Value *, llvm::Value * > ComplexPairTy
Address ReturnValue
ReturnValue - The temporary alloca to hold the return value.
void EmitOMPTargetExitDataDirective(const OMPTargetExitDataDirective &S)
static bool isNullPointerAllowed(TypeCheckKind TCK)
Determine whether the pointer type check TCK permits null pointers.
void EmitOMPErrorDirective(const OMPErrorDirective &S)
static Destroyer destroyARCStrongImprecise
void EmitOMPSectionDirective(const OMPSectionDirective &S)
RValue getOrCreateOpaqueRValueMapping(const OpaqueValueExpr *e)
Given an opaque value expression, return its RValue mapping if it exists, otherwise create one.
static void EmitOMPTargetParallelDeviceFunction(CodeGenModule &CGM, StringRef ParentName, const OMPTargetParallelDirective &S)
llvm::AtomicRMWInst * emitAtomicRMWInst(llvm::AtomicRMWInst::BinOp Op, Address Addr, llvm::Value *Val, llvm::AtomicOrdering Order=llvm::AtomicOrdering::SequentiallyConsistent, llvm::SyncScope::ID SSID=llvm::SyncScope::System, const AtomicExpr *AE=nullptr)
Emit an atomicrmw instruction, and applying relevant metadata when applicable.
llvm::Value * EmitSVEAllTruePred(const SVETypeFlags &TypeFlags)
void EmitOMPBarrierDirective(const OMPBarrierDirective &S)
void EmitStopPoint(const Stmt *S)
EmitStopPoint - Emit a debug stoppoint if we are emitting debug info.
void EmitIgnoredConditionalOperator(const AbstractConditionalOperator *E)
RValue GetUndefRValue(QualType Ty)
GetUndefRValue - Get an appropriate 'undef' rvalue for the given type.
LValue EmitLValueForIvar(QualType ObjectTy, llvm::Value *Base, const ObjCIvarDecl *Ivar, unsigned CVRQualifiers)
void ExitCXXTryStmt(const CXXTryStmt &S, bool IsFnTryBlock=false)
void EmitOMPCancellationPointDirective(const OMPCancellationPointDirective &S)
llvm::Value * EmitObjCAlloc(llvm::Value *value, llvm::Type *returnType)
llvm::Value * emitScalarConstant(const ConstantEmission &Constant, Expr *E)
LValue EmitStmtExprLValue(const StmtExpr *E)
llvm::Instruction * CurrentFuncletPad
RValue EmitCallExpr(const CallExpr *E, ReturnValueSlot ReturnValue=ReturnValueSlot(), llvm::CallBase **CallOrInvoke=nullptr)
llvm::Type * SVEBuiltinMemEltTy(const SVETypeFlags &TypeFlags)
SVEBuiltinMemEltTy - Returns the memory element type for this memory access builtin.
void EnsureInsertPoint()
EnsureInsertPoint - Ensure that an insertion point is defined so that emitted IR has a place to go.
void EmitObjCForCollectionStmt(const ObjCForCollectionStmt &S)
LValue MakeNaturalAlignPointeeAddrLValue(llvm::Value *V, QualType T)
Given a value of type T* that may not be to a complete object, construct an l-value with the natural ...
llvm::LLVMContext & getLLVMContext()
void EmitOMPTaskLoopSimdDirective(const OMPTaskLoopSimdDirective &S)
bool SawAsmBlock
Whether we processed a Microsoft-style asm block during CodeGen.
llvm::Value * EmitScalarExpr(const Expr *E, bool IgnoreResultAssign=false)
EmitScalarExpr - Emit the computation of the specified expression of LLVM scalar type,...
void ResolveBranchFixups(llvm::BasicBlock *Target)
void AddAMDGPUFenceAddressSpaceMMRA(llvm::Instruction *Inst, const CallExpr *E)
bool checkIfFunctionMustProgress()
Returns true if a function must make progress, which means the mustprogress attribute can be added.
void EmitOMPTargetTeamsDistributeParallelForDirective(const OMPTargetTeamsDistributeParallelForDirective &S)
bool LValueIsSuitableForInlineAtomic(LValue Src)
void incrementProfileCounter(const Stmt *S, llvm::Value *StepV=nullptr)
Increment the profiler's counter for the given statement by StepV.
void EmitAndRegisterVariableArrayDimensions(CGDebugInfo *DI, const VarDecl &D, bool EmitDebugInfo)
Emits the alloca and debug information for the size expressions for each dimension of an array.
RValue EmitLoadOfAnyValue(LValue V, AggValueSlot Slot=AggValueSlot::ignored(), SourceLocation Loc={})
Like EmitLoadOfLValue but also handles complex and aggregate types.
llvm::SmallVector< VPtr, 4 > VPtrsVector
llvm::Value * EmitSMEZero(const SVETypeFlags &TypeFlags, llvm::SmallVectorImpl< llvm::Value * > &Ops, unsigned IntID)
llvm::Value * getSelectorFromSlot()
llvm::Value * EmitARCRetainScalarExpr(const Expr *expr)
bool EmitOMPLastprivateClauseInit(const OMPExecutableDirective &D, OMPPrivateScope &PrivateScope)
Emit initial code for lastprivate variables.
static std::string getNonTrivialCopyConstructorStr(QualType QT, CharUnits Alignment, bool IsVolatile, ASTContext &Ctx)
void InitializeVTablePointers(const CXXRecordDecl *ClassDecl)
llvm::Value * EmitRISCVBuiltinExpr(unsigned BuiltinID, const CallExpr *E, ReturnValueSlot ReturnValue)
void EmitOMPParallelSectionsDirective(const OMPParallelSectionsDirective &S)
llvm::Value * EmitCommonNeonBuiltinExpr(unsigned BuiltinID, unsigned LLVMIntrinsic, unsigned AltLLVMIntrinsic, const char *NameHint, unsigned Modifier, const CallExpr *E, SmallVectorImpl< llvm::Value * > &Ops, Address PtrOp0, Address PtrOp1, llvm::Triple::ArchType Arch)
void getVTablePointers(BaseSubobject Base, const CXXRecordDecl *NearestVBase, CharUnits OffsetFromNearestVBase, bool BaseIsNonVirtualPrimaryBase, const CXXRecordDecl *VTableClass, VisitedVirtualBasesSetTy &VBases, VPtrsVector &vptrs)
llvm::function_ref< void(CodeGenFunction &, const OMPLoopDirective &, JumpDest)> CodeGenLoopTy
void BuildBlockRelease(llvm::Value *DeclPtr, BlockFieldFlags flags, bool CanThrow)
llvm::Value * EmitNeonCall(llvm::Function *F, SmallVectorImpl< llvm::Value * > &O, const char *name, unsigned shift=0, bool rightshift=false)
void EmitOMPCanonicalLoop(const OMPCanonicalLoop *S)
Emit an OMPCanonicalLoop using the OpenMPIRBuilder.
void InitializeVTablePointer(const VPtr &vptr)
Initialize the vtable pointer of the given subobject.
llvm::Value * EmitAnnotationCall(llvm::Function *AnnotationFn, llvm::Value *AnnotatedVal, StringRef AnnotationStr, SourceLocation Location, const AnnotateAttr *Attr)
Emit an annotation call (intrinsic).
llvm::Value * EmitCXXNewExpr(const CXXNewExpr *E)
RValue EmitCall(QualType FnType, const CGCallee &Callee, const CallExpr *E, ReturnValueSlot ReturnValue, llvm::Value *Chain=nullptr, llvm::CallBase **CallOrInvoke=nullptr, CGFunctionInfo const **ResolvedFnInfo=nullptr)
void EmitOMPTeamsDistributeSimdDirective(const OMPTeamsDistributeSimdDirective &S)
llvm::BasicBlock * GetIndirectGotoBlock()
void EmitAsmStmt(const AsmStmt &S)
Address emitAddrOfRealComponent(Address complex, QualType complexType)
void EmitARCDestroyStrong(Address addr, ARCPreciseLifetime_t precise)
void EmitObjCAtTryStmt(const ObjCAtTryStmt &S)
static bool isVptrCheckRequired(TypeCheckKind TCK, QualType Ty)
Determine whether the pointer type check TCK requires a vptr check.
llvm::ScalableVectorType * getSVEPredType(const SVETypeFlags &TypeFlags)
LValue EmitComplexCompoundAssignmentLValue(const CompoundAssignOperator *E)
llvm::Type * convertTypeForLoadStore(QualType ASTTy, llvm::Type *LLVMTy=nullptr)
void pushRegularPartialArrayCleanup(llvm::Value *arrayBegin, llvm::Value *arrayEnd, QualType elementType, CharUnits elementAlignment, Destroyer *destroyer)
llvm::Value * getExceptionFromSlot()
Returns the contents of the function's exception object and selector slots.
llvm::DebugLoc EmitReturnBlock()
Emit the unified return block, trying to avoid its emission when possible.
LValue EmitConditionalOperatorLValue(const AbstractConditionalOperator *E)
void GenerateCode(GlobalDecl GD, llvm::Function *Fn, const CGFunctionInfo &FnInfo)
llvm::Value * EmitSVEGatherPrefetch(const SVETypeFlags &TypeFlags, SmallVectorImpl< llvm::Value * > &Ops, unsigned IntID)
llvm::CallInst * EmitNounwindRuntimeCall(llvm::FunctionCallee callee, ArrayRef< Address > args, const Twine &name="")
void EmitStoreOfScalar(llvm::Value *Value, Address Addr, bool Volatile, QualType Ty, AlignmentSource Source=AlignmentSource::Type, bool isInit=false, bool isNontemporal=false)
EmitStoreOfScalar - Store a scalar value to an address, taking care to appropriately convert from the...
bool hasLabelBeenSeenInCurrentScope() const
Return true if a label was seen in the current scope.
RValue EmitAtomicExpr(AtomicExpr *E)
RValue EmitCXXDestructorCall(GlobalDecl Dtor, const CGCallee &Callee, llvm::Value *This, QualType ThisTy, llvm::Value *ImplicitParam, QualType ImplicitParamTy, const CallExpr *E, llvm::CallBase **CallOrInvoke=nullptr)
CGPointerAuthInfo EmitPointerAuthInfo(const PointerAuthSchema &Schema, llvm::Value *StorageAddress, GlobalDecl SchemaDecl, QualType SchemaType)
LValue EmitExtVectorElementExpr(const ExtVectorElementExpr *E)
void EmitCXXGuardedInitBranch(llvm::Value *NeedsInit, llvm::BasicBlock *InitBlock, llvm::BasicBlock *NoInitBlock, GuardKind Kind, const VarDecl *D)
Emit a branch to select whether or not to perform guarded initialization.
void EmitOMPTargetParallelForDirective(const OMPTargetParallelForDirective &S)
RValue EmitLoadOfBitfieldLValue(LValue LV, SourceLocation Loc)
llvm::Value * EmitSPIRVBuiltinExpr(unsigned BuiltinID, const CallExpr *E)
LValue EmitLoadOfReferenceLValue(Address RefAddr, QualType RefTy, AlignmentSource Source=AlignmentSource::Type)
std::pair< bool, RValue > EmitOMPAtomicSimpleUpdateExpr(LValue X, RValue E, BinaryOperatorKind BO, bool IsXLHSInRHSPart, llvm::AtomicOrdering AO, SourceLocation Loc, const llvm::function_ref< RValue(RValue)> CommonGen)
Emit atomic update code for constructs: X = X BO E or X = E BO E.
LValue EmitCXXBindTemporaryLValue(const CXXBindTemporaryExpr *E)
llvm::Value * EmitBPFBuiltinExpr(unsigned BuiltinID, const CallExpr *E)
LValue EmitPointerToDataMemberBinaryExpr(const BinaryOperator *E)
LValue EmitLValueForLambdaField(const FieldDecl *Field)
void EmitMustTailThunk(GlobalDecl GD, llvm::Value *AdjustedThisPtr, llvm::FunctionCallee Callee)
Emit a musttail call for a thunk with a potentially adjusted this pointer.
static bool IsWrappedCXXThis(const Expr *E)
Check if E is a C++ "this" pointer wrapped in value-preserving casts.
static bool containsBreak(const Stmt *S)
containsBreak - Return true if the statement contains a break out of it.
void pushDestroy(CleanupKind kind, Address addr, QualType type, Destroyer *destroyer, bool useEHCleanupForArray)
llvm::Value * EmitSVETupleSetOrGet(const SVETypeFlags &TypeFlags, ArrayRef< llvm::Value * > Ops)
llvm::Type * ConvertType(const TypeDecl *T)
This class organizes the cross-function state that is used while generating LLVM code.
const LangOptions & getLangOpts() const
CharUnits getNaturalTypeAlignment(QualType T, LValueBaseInfo *BaseInfo=nullptr, TBAAAccessInfo *TBAAInfo=nullptr, bool forPointeeType=false)
CGPointerAuthInfo getPointerAuthInfoForPointeeType(QualType type)
const llvm::DataLayout & getDataLayout() const
TBAAAccessInfo getTBAAAccessInfo(QualType AccessType)
getTBAAAccessInfo - Get TBAA information that describes an access to an object of the given type.
ASTContext & getContext() const
const TargetCodeGenInfo & getTargetCodeGenInfo()
const CodeGenOptions & getCodeGenOpts() const
llvm::LLVMContext & getLLVMContext()
This class organizes the cross-module state that is used while lowering AST types to LLVM types.
Definition: CodeGenTypes.h:54
A specialization of Address that requires the address to be an LLVM Constant.
Definition: Address.h:294
static ConstantAddress invalid()
Definition: Address.h:302
DominatingValue< Address >::saved_type AggregateAddr
static saved_type save(CodeGenFunction &CGF, RValue value)
Information for lazily generating a cleanup.
Definition: EHScopeStack.h:141
ConditionalCleanup stores the saved form of its parameters, then restores them and performs the clean...
Definition: EHScopeStack.h:203
A saved depth on the scope stack.
Definition: EHScopeStack.h:101
A stack of scopes which respond to exceptions, including cleanups and catch blocks.
Definition: EHScopeStack.h:94
stable_iterator getInnermostNormalCleanup() const
Returns the innermost normal cleanup on the stack, or stable_end() if there are no normal cleanups.
Definition: EHScopeStack.h:370
stable_iterator stable_begin() const
Create a stable reference to the top of the EH stack.
Definition: EHScopeStack.h:393
static stable_iterator stable_end()
Create a stable reference to the bottom of the EH stack.
Definition: EHScopeStack.h:398
void pushCleanupTuple(CleanupKind Kind, std::tuple< As... > A)
Push a lazily-created cleanup on the stack. Tuple version.
Definition: EHScopeStack.h:295
FunctionArgList - Type for representing both the decl and type of parameters to a function.
Definition: CGCall.h:382
LValue - This represents an lvalue references.
Definition: CGValue.h:182
CharUnits getAlignment() const
Definition: CGValue.h:343
static LValue MakeAddr(Address Addr, QualType type, ASTContext &Context, LValueBaseInfo BaseInfo, TBAAAccessInfo TBAAInfo)
Definition: CGValue.h:432
QualType getType() const
Definition: CGValue.h:291
llvm::Value * emitRawPointer(CodeGenFunction &CGF) const
A stack of loop information corresponding to loop nesting levels.
Definition: CGLoopInfo.h:204
RValue - This trivial value class is used to represent the result of an expression that is evaluated.
Definition: CGValue.h:42
static RValue get(llvm::Value *V)
Definition: CGValue.h:98
An abstract representation of an aligned address.
Definition: Address.h:42
static RawAddress invalid()
Definition: Address.h:61
bool isValid() const
Definition: Address.h:62
Class provides a way to call simple version of codegen for OpenMP region, or an advanced with possibl...
ReturnValueSlot - Contains the address where the return value of a function can be stored,...
Definition: CGCall.h:386
TargetCodeGenInfo - This class organizes various target-specific codegeneration issues,...
Definition: TargetInfo.h:47
The class detects jumps which bypass local variables declaration: goto L; int a; L:
CompoundAssignOperator - For compound assignments (e.g.
Definition: Expr.h:4171
CompoundLiteralExpr - [C99 6.5.2.5].
Definition: Expr.h:3477
CompoundStmt - This represents a group of statements like { stmt stmt }.
Definition: Stmt.h:1628
ContinueStmt - This represents a continue.
Definition: Stmt.h:2977
Represents a 'co_return' statement in the C++ Coroutines TS.
Definition: StmtCXX.h:473
Represents the body of a coroutine.
Definition: StmtCXX.h:320
Represents an expression that might suspend coroutine execution; either a co_await or co_yield expres...
Definition: ExprCXX.h:5077
Represents a 'co_yield' expression.
Definition: ExprCXX.h:5272
Represents the current source location and context used to determine the value of the source location...
specific_decl_iterator - Iterates over a subrange of declarations stored in a DeclContext,...
Definition: DeclBase.h:2384
A reference to a declared variable, function, enum, etc.
Definition: Expr.h:1265
DeclStmt - Adaptor class for mixing declarations with statements and expressions.
Definition: Stmt.h:1519
Decl - This represents one declaration (or definition), e.g.
Definition: DeclBase.h:86
DoStmt - This represents a 'do/while' stmt.
Definition: Stmt.h:2752
This represents one expression.
Definition: Expr.h:110
QualType getType() const
Definition: Expr.h:142
ExtVectorElementExpr - This represents access to specific elements of a vector, and may occur on the ...
Definition: Expr.h:6354
Represents a member of a struct/union/class.
Definition: Decl.h:3033
ForStmt - This represents a 'for (init;cond;inc)' stmt.
Definition: Stmt.h:2808
Represents a function declaration or definition.
Definition: Decl.h:1935
Represents a prototype with parameter type info, e.g.
Definition: Type.h:5107
GlobalDecl - represents a global declaration.
Definition: GlobalDecl.h:56
const Decl * getDecl() const
Definition: GlobalDecl.h:103
GotoStmt - This represents a direct goto.
Definition: Stmt.h:2889
This class represents temporary values used to represent inout and out arguments in HLSL.
Definition: Expr.h:7152
IfStmt - This represents an if/then/else.
Definition: Stmt.h:2165
IndirectGotoStmt - This represents an indirect goto.
Definition: Stmt.h:2928
Describes an C or C++ initializer list.
Definition: Expr.h:5088
Represents the declaration of a label.
Definition: Decl.h:503
LabelStmt - Represents a label, which has a substatement.
Definition: Stmt.h:2058
FPExceptionModeKind
Possible floating point exception behavior.
Definition: LangOptions.h:287
Keeps track of the various options that can be enabled, which controls the dialect of C or C++ that i...
Definition: LangOptions.h:499
Represents a point when we exit a loop.
Definition: ProgramPoint.h:711
Represents a prvalue temporary that is written into memory so that a reference can bind to it.
Definition: ExprCXX.h:4734
MatrixSubscriptExpr - Matrix subscript expression for the MatrixType extension.
Definition: Expr.h:2796
MemberExpr - [C99 6.5.2.3] Structure and Union Members.
Definition: Expr.h:3236
A pointer to member type per C++ 8.3.3 - Pointers to members.
Definition: Type.h:3519
Represents a C++ nested name specifier, such as "\::std::vector<int>::".
This represents '#pragma omp atomic' directive.
Definition: StmtOpenMP.h:2947
This represents '#pragma omp barrier' directive.
Definition: StmtOpenMP.h:2625
This represents '#pragma omp cancel' directive.
Definition: StmtOpenMP.h:3655
This represents '#pragma omp cancellation point' directive.
Definition: StmtOpenMP.h:3597
Representation of an OpenMP canonical loop.
Definition: StmtOpenMP.h:142
This represents '#pragma omp critical' directive.
Definition: StmtOpenMP.h:2076
This represents '#pragma omp depobj' directive.
Definition: StmtOpenMP.h:2841
This represents '#pragma omp distribute' directive.
Definition: StmtOpenMP.h:4425
This represents '#pragma omp distribute parallel for' composite directive.
Definition: StmtOpenMP.h:4547
This represents '#pragma omp distribute parallel for simd' composite directive.
Definition: StmtOpenMP.h:4643
This represents '#pragma omp distribute simd' composite directive.
Definition: StmtOpenMP.h:4708
This represents '#pragma omp error' directive.
Definition: StmtOpenMP.h:6432
This is a basic class for representing single OpenMP executable directive.
Definition: StmtOpenMP.h:266
This represents '#pragma omp flush' directive.
Definition: StmtOpenMP.h:2789
This represents '#pragma omp for' directive.
Definition: StmtOpenMP.h:1634
This represents '#pragma omp for simd' directive.
Definition: StmtOpenMP.h:1724
This represents '#pragma omp loop' directive.
Definition: StmtOpenMP.h:6103
Represents the '#pragma omp interchange' loop transformation directive.
Definition: StmtOpenMP.h:5769
This represents '#pragma omp interop' directive.
Definition: StmtOpenMP.h:5895
This is a common base class for loop directives ('omp simd', 'omp for', 'omp for simd' etc....
Definition: StmtOpenMP.h:1004
This represents '#pragma omp masked' directive.
Definition: StmtOpenMP.h:6013
This represents '#pragma omp masked taskloop' directive.
Definition: StmtOpenMP.h:3930
This represents '#pragma omp masked taskloop simd' directive.
Definition: StmtOpenMP.h:4071
This represents '#pragma omp master' directive.
Definition: StmtOpenMP.h:2028
This represents '#pragma omp master taskloop' directive.
Definition: StmtOpenMP.h:3854
This represents '#pragma omp master taskloop simd' directive.
Definition: StmtOpenMP.h:4006
This represents '#pragma omp metadirective' directive.
Definition: StmtOpenMP.h:6064
This represents '#pragma omp ordered' directive.
Definition: StmtOpenMP.h:2893
This represents '#pragma omp parallel' directive.
Definition: StmtOpenMP.h:612
This represents '#pragma omp parallel for' directive.
Definition: StmtOpenMP.h:2147
This represents '#pragma omp parallel for simd' directive.
Definition: StmtOpenMP.h:2244
This represents '#pragma omp parallel masked' directive.
Definition: StmtOpenMP.h:2372
This represents '#pragma omp parallel masked taskloop' directive.
Definition: StmtOpenMP.h:4215
This represents '#pragma omp parallel masked taskloop simd' directive.
Definition: StmtOpenMP.h:4360
This represents '#pragma omp parallel master' directive.
Definition: StmtOpenMP.h:2309
This represents '#pragma omp parallel master taskloop' directive.
Definition: StmtOpenMP.h:4137
This represents '#pragma omp parallel master taskloop simd' directive.
Definition: StmtOpenMP.h:4293
This represents '#pragma omp parallel sections' directive.
Definition: StmtOpenMP.h:2436
Represents the '#pragma omp reverse' loop transformation directive.
Definition: StmtOpenMP.h:5704
This represents '#pragma omp scan' directive.
Definition: StmtOpenMP.h:5842
This represents '#pragma omp scope' directive.
Definition: StmtOpenMP.h:1925
This represents '#pragma omp section' directive.
Definition: StmtOpenMP.h:1864
This represents '#pragma omp sections' directive.
Definition: StmtOpenMP.h:1787
This represents '#pragma omp simd' directive.
Definition: StmtOpenMP.h:1571
This represents '#pragma omp single' directive.
Definition: StmtOpenMP.h:1977
This represents '#pragma omp target data' directive.
Definition: StmtOpenMP.h:3206
This represents '#pragma omp target' directive.
Definition: StmtOpenMP.h:3152
This represents '#pragma omp target enter data' directive.
Definition: StmtOpenMP.h:3260
This represents '#pragma omp target exit data' directive.
Definition: StmtOpenMP.h:3315
This represents '#pragma omp target parallel' directive.
Definition: StmtOpenMP.h:3369
This represents '#pragma omp target parallel for' directive.
Definition: StmtOpenMP.h:3449
This represents '#pragma omp target parallel for simd' directive.
Definition: StmtOpenMP.h:4774
This represents '#pragma omp target parallel loop' directive.
Definition: StmtOpenMP.h:6370
This represents '#pragma omp target simd' directive.
Definition: StmtOpenMP.h:4841
This represents '#pragma omp target teams' directive.
Definition: StmtOpenMP.h:5199
This represents '#pragma omp target teams distribute' combined directive.
Definition: StmtOpenMP.h:5255
This represents '#pragma omp target teams distribute parallel for' combined directive.
Definition: StmtOpenMP.h:5322
This represents '#pragma omp target teams distribute parallel for simd' combined directive.
Definition: StmtOpenMP.h:5420
This represents '#pragma omp target teams distribute simd' combined directive.
Definition: StmtOpenMP.h:5490
This represents '#pragma omp target teams loop' directive.
Definition: StmtOpenMP.h:6230
This represents '#pragma omp target update' directive.
Definition: StmtOpenMP.h:4491
This represents '#pragma omp task' directive.
Definition: StmtOpenMP.h:2517
This represents '#pragma omp taskloop' directive.
Definition: StmtOpenMP.h:3715
This represents '#pragma omp taskloop simd' directive.
Definition: StmtOpenMP.h:3788
This represents '#pragma omp taskgroup' directive.
Definition: StmtOpenMP.h:2722
This represents '#pragma omp taskwait' directive.
Definition: StmtOpenMP.h:2671
This represents '#pragma omp taskyield' directive.
Definition: StmtOpenMP.h:2579
This represents '#pragma omp teams' directive.
Definition: StmtOpenMP.h:3544
This represents '#pragma omp teams distribute' directive.
Definition: StmtOpenMP.h:4906
This represents '#pragma omp teams distribute parallel for' composite directive.
Definition: StmtOpenMP.h:5106
This represents '#pragma omp teams distribute parallel for simd' composite directive.
Definition: StmtOpenMP.h:5040
This represents '#pragma omp teams distribute simd' combined directive.
Definition: StmtOpenMP.h:4972
This represents '#pragma omp teams loop' directive.
Definition: StmtOpenMP.h:6165
This represents the '#pragma omp tile' loop transformation directive.
Definition: StmtOpenMP.h:5548
This represents the '#pragma omp unroll' loop transformation directive.
Definition: StmtOpenMP.h:5630
This represents clause 'use_device_addr' in the '#pragma omp ...' directives.
This represents clause 'use_device_ptr' in the '#pragma omp ...' directives.
ObjCArrayLiteral - used for objective-c array containers; as in: @["Hello", NSApp,...
Definition: ExprObjC.h:191
Represents Objective-C's @synchronized statement.
Definition: StmtObjC.h:303
Represents Objective-C's @throw statement.
Definition: StmtObjC.h:358
Represents Objective-C's @try ... @catch ... @finally statement.
Definition: StmtObjC.h:167
Represents Objective-C's @autoreleasepool Statement.
Definition: StmtObjC.h:394
ObjCBoxedExpr - used for generalized expression boxing.
Definition: ExprObjC.h:127
ObjCContainerDecl - Represents a container for method declarations.
Definition: DeclObjC.h:947
ObjCDictionaryLiteral - AST node to represent objective-c dictionary literals; as in:"name" : NSUserN...
Definition: ExprObjC.h:309
ObjCEncodeExpr, used for @encode in Objective-C.
Definition: ExprObjC.h:410
Represents Objective-C's collection statement.
Definition: StmtObjC.h:23
ObjCImplementationDecl - Represents a class definition - this is where method definitions are specifi...
Definition: DeclObjC.h:2596
Represents an ObjC class declaration.
Definition: DeclObjC.h:1153
ObjCIsaExpr - Represent X->isa and X.isa when X is an ObjC 'id' type.
Definition: ExprObjC.h:1487
ObjCIvarDecl - Represents an ObjC instance variable.
Definition: DeclObjC.h:1951
ObjCIvarRefExpr - A reference to an ObjC instance variable.
Definition: ExprObjC.h:549
An expression that sends a message to the given Objective-C object or class.
Definition: ExprObjC.h:941
ObjCMethodDecl - Represents an instance or class method declaration.
Definition: DeclObjC.h:140
ObjCPropertyImplDecl - Represents implementation declaration of a property in a class or category imp...
Definition: DeclObjC.h:2804
ObjCProtocolExpr used for protocol expression in Objective-C.
Definition: ExprObjC.h:505
ObjCSelectorExpr used for @selector in Objective-C.
Definition: ExprObjC.h:455
ObjCStringLiteral, used for Objective-C string literals i.e.
Definition: ExprObjC.h:51
OpaqueValueExpr - An expression referring to an opaque object of a fixed type and value class.
Definition: Expr.h:1173
Expr * getSourceExpr() const
The source expression of an opaque value expression is the expression which originally generated the ...
Definition: Expr.h:1223
This class represents a compute construct, representing a 'Kind' of ‘parallel’, 'serial',...
Definition: StmtOpenACC.h:131
This class represents a 'loop' construct.
Definition: StmtOpenACC.h:194
Represents a parameter to a function.
Definition: Decl.h:1725
PointerType - C99 6.7.5.1 - Pointer Declarators.
Definition: Type.h:3198
[C99 6.4.2.2] - A predefined identifier such as func.
Definition: Expr.h:1991
PseudoObjectExpr - An expression which accesses a pseudo-object l-value.
Definition: Expr.h:6546
A (possibly-)qualified type.
Definition: Type.h:929
@ DK_cxx_destructor
Definition: Type.h:1521
@ DK_nontrivial_c_struct
Definition: Type.h:1524
@ DK_objc_weak_lifetime
Definition: Type.h:1523
@ DK_objc_strong_lifetime
Definition: Type.h:1522
The collection of all-type qualifiers we support.
Definition: Type.h:324
Represents a struct/union/class.
Definition: Decl.h:4162
bool hasVolatileMember() const
Definition: Decl.h:4225
A helper class that allows the use of isa/cast/dyncast to detect TagType objects of structs/unions/cl...
Definition: Type.h:6077
ReturnStmt - This represents a return, optionally of an expression: return; return 4;.
Definition: Stmt.h:3046
Represents a __leave statement.
Definition: Stmt.h:3745
Flags to identify the types for overloaded SVE builtins.
Scope - A scope is a transient data structure that is used while parsing the program.
Definition: Scope.h:41
Encodes a location in the source.
A trivial tuple used to represent a source range.
StmtExpr - This is the GNU Statement Expression extension: ({int X=4; X;}).
Definition: Expr.h:4466
Stmt - This represents one statement.
Definition: Stmt.h:84
Likelihood
The likelihood of a branch being taken.
Definition: Stmt.h:1323
@ LH_None
No attribute set or branches of the IfStmt have the same attribute.
Definition: Stmt.h:1325
StringLiteral - This represents a string literal expression, e.g.
Definition: Expr.h:1778
SwitchStmt - This represents a 'switch' stmt.
Definition: Stmt.h:2415
Exposes information about the current target.
Definition: TargetInfo.h:220
Represents a declaration of a type.
Definition: Decl.h:3384
The base class of the type hierarchy.
Definition: Type.h:1828
bool isReferenceType() const
Definition: Type.h:8209
const T * getAs() const
Member-template getAs<specific type>'.
Definition: Type.h:8736
UnaryOperator - This represents the unary-expression's (except sizeof and alignof),...
Definition: Expr.h:2232
Represents a call to the builtin function __builtin_va_arg.
Definition: Expr.h:4750
Represent the declaration of a variable (in which case it is an lvalue) a function (in which case it ...
Definition: Decl.h:671
QualType getType() const
Definition: Decl.h:682
Represents a variable declaration or definition.
Definition: Decl.h:882
VarDecl * getCanonicalDecl() override
Retrieves the "canonical" declaration of the given declaration.
Definition: Decl.cpp:2246
bool isLocalVarDeclOrParm() const
Similar to isLocalVarDecl but also includes parameters.
Definition: Decl.h:1213
Represents a C array with a specified size that is not an integer-constant-expression.
Definition: Type.h:3808
Expr * getSizeExpr() const
Definition: Type.h:3827
WhileStmt - This represents a 'while' stmt.
Definition: Stmt.h:2611
Defines the clang::TargetInfo interface.
AlignmentSource
The source of the alignment of an l-value; an expression of confidence in the alignment actually matc...
Definition: CGValue.h:141
@ Type
The l-value was considered opaque, so the alignment was determined from a type.
@ Decl
The l-value was an access to a declared entity or something equivalently strong, like the address of ...
TypeEvaluationKind
The kind of evaluation to perform on values of a particular type.
@ NormalCleanup
Denotes a cleanup that should run when a scope is exited using normal control flow (falling off the e...
Definition: EHScopeStack.h:84
ARCPreciseLifetime_t
Does an ARC strong l-value have precise lifetime?
Definition: CGValue.h:135
@ NotKnownNonNull
Definition: Address.h:33
const internal::VariadicAllOfMatcher< Type > type
Matches Types in the clang AST.
const AstTypeMatcher< ArrayType > arrayType
Matches all kinds of arrays.
const internal::VariadicDynCastAllOfMatcher< Stmt, Expr > expr
Matches expressions.
const AstTypeMatcher< ComplexType > complexType
Matches C99 complex types.
The JSON file list parser is used to communicate input to InstallAPI.
CXXCtorType
C++ constructor types.
Definition: ABI.h:24
llvm::omp::Directive OpenMPDirectiveKind
OpenMP directives.
Definition: OpenMPKinds.h:25
BinaryOperatorKind
CapturedRegionKind
The different kinds of captured statement.
Definition: CapturedStmt.h:16
@ CR_Default
Definition: CapturedStmt.h:17
OpenMPDistScheduleClauseKind
OpenMP attributes for 'dist_schedule' clause.
Definition: OpenMPKinds.h:104
Linkage
Describes the different kinds of linkage (C++ [basic.link], C99 6.2.2) that an entity may have.
Definition: Linkage.h:24
@ Result
The result type of a method or function.
CXXDtorType
C++ destructor types.
Definition: ABI.h:33
const FunctionProtoType * T
@ Success
Template argument deduction was successful.
llvm::fp::ExceptionBehavior ToConstrainedExceptMD(LangOptions::FPExceptionModeKind Kind)
@ Interface
The "__interface" keyword introduces the elaborated-type-specifier.
Diagnostic wrappers for TextAPI types for error reporting.
Definition: Dominators.h:30
#define true
Definition: stdbool.h:25
#define false
Definition: stdbool.h:26
Structure with information about how a bitfield should be accessed.
llvm::SmallVector< llvm::AllocaInst * > Take()
CXXDefaultArgExprScope(CodeGenFunction &CGF, const CXXDefaultArgExpr *E)
FMVResolverOption(llvm::Function *F, ArrayRef< StringRef > Feats, std::optional< StringRef > Arch=std::nullopt)
A jump destination is an abstract label, branching to which may require a jump out through normal cle...
void setScopeDepth(EHScopeStack::stable_iterator depth)
EHScopeStack::stable_iterator getScopeDepth() const
JumpDest(llvm::BasicBlock *Block, EHScopeStack::stable_iterator Depth, unsigned Index)
Header for data within LifetimeExtendedCleanupStack.
unsigned Size
The size of the following cleanup object.
unsigned IsConditional
Whether this is a conditional cleanup.
static Address getAddrOfThreadPrivate(CodeGenFunction &CGF, const VarDecl *VD, Address VDAddr, SourceLocation Loc)
Returns address of the threadprivate variable for the current thread.
llvm::OpenMPIRBuilder::InsertPointTy InsertPointTy
static void EmitOMPOutlinedRegionBody(CodeGenFunction &CGF, const Stmt *RegionBodyStmt, InsertPointTy AllocaIP, InsertPointTy CodeGenIP, Twine RegionName)
Emit the body of an OMP region that will be outlined in OpenMPIRBuilder::finalize().
static Address getAddressOfLocalVariable(CodeGenFunction &CGF, const VarDecl *VD)
Gets the OpenMP-specific address of the local variable /p VD.
static void EmitCaptureStmt(CodeGenFunction &CGF, InsertPointTy CodeGenIP, llvm::BasicBlock &FiniBB, llvm::Function *Fn, ArrayRef< llvm::Value * > Args)
static std::string getNameWithSeparators(ArrayRef< StringRef > Parts, StringRef FirstSeparator=".", StringRef Separator=".")
Get the platform-specific name separator.
static void FinalizeOMPRegion(CodeGenFunction &CGF, InsertPointTy IP)
Emit the Finalization for an OMP region.
static void EmitOMPInlinedRegionBody(CodeGenFunction &CGF, const Stmt *RegionBodyStmt, InsertPointTy AllocaIP, InsertPointTy CodeGenIP, Twine RegionName)
Emit the body of an OMP region.
OMPBuilderCBHelpers & operator=(const OMPBuilderCBHelpers &)=delete
OMPBuilderCBHelpers(const OMPBuilderCBHelpers &)=delete
OMPTargetDataInfo(Address BasePointersArray, Address PointersArray, Address SizesArray, Address MappersArray, unsigned NumberOfTargetItems)
llvm::PointerUnion< const FunctionProtoType *, const ObjCMethodDecl * > P
Struct with all information about dynamic [sub]class needed to set vptr.
This structure provides a set of types that are commonly used during IR emission.
Helper class with most of the code for saving a value for a conditional expression cleanup.
static llvm::Value * restore(CodeGenFunction &CGF, saved_type value)
static saved_type save(CodeGenFunction &CGF, llvm::Value *value)
static bool needsSaving(llvm::Value *value)
Answer whether the given value needs extra work to be saved.
llvm::PointerIntPair< llvm::Value *, 1, bool > saved_type
static type restore(CodeGenFunction &CGF, saved_type value)
static type restore(CodeGenFunction &CGF, saved_type value)
static saved_type save(CodeGenFunction &CGF, type value)
static saved_type save(CodeGenFunction &CGF, type value)
static type restore(CodeGenFunction &CGF, saved_type value)
A metaprogramming class for ensuring that a value will dominate an arbitrary position in a function.
Definition: EHScopeStack.h:65
static saved_type save(CodeGenFunction &CGF, type value)
Definition: EHScopeStack.h:59
Scheduling data for loop-based OpenMP directives.
Definition: OpenMPKinds.h:180
The this pointer adjustment as well as an optional return adjustment for a thunk.
Definition: Thunk.h:157