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Chris Lattner2da04b32007-08-24 05:35:26 +00001//===--- CGExprScalar.cpp - Emit LLVM Code for Scalar Exprs ---------------===//
2//
Chandler Carruth2946cd72019-01-19 08:50:56 +00003// 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
Chris Lattner2da04b32007-08-24 05:35:26 +00006//
7//===----------------------------------------------------------------------===//
8//
9// This contains code to emit Expr nodes with scalar LLVM types as LLVM code.
10//
11//===----------------------------------------------------------------------===//
12
John McCall5d865c322010-08-31 07:33:07 +000013#include "CGCXXABI.h"
Leonard Chan99bda372018-10-15 16:07:02 +000014#include "CGCleanup.h"
Chandler Carruth3a022472012-12-04 09:13:33 +000015#include "CGDebugInfo.h"
Fariborz Jahanian07ca7272009-10-10 20:07:56 +000016#include "CGObjCRuntime.h"
Leonard Chan99bda372018-10-15 16:07:02 +000017#include "CodeGenFunction.h"
Chris Lattner2da04b32007-08-24 05:35:26 +000018#include "CodeGenModule.h"
Eric Fiselier708afb52019-05-16 21:04:15 +000019#include "ConstantEmitter.h"
Alexey Bataev00396512015-07-02 03:40:19 +000020#include "TargetInfo.h"
Daniel Dunbarad319a72008-08-11 05:00:27 +000021#include "clang/AST/ASTContext.h"
Daniel Dunbar6630e102008-08-12 05:08:18 +000022#include "clang/AST/DeclObjC.h"
Yaxun Liu402804b2016-12-15 08:09:08 +000023#include "clang/AST/Expr.h"
Anders Carlsson15b73de2009-07-18 19:43:29 +000024#include "clang/AST/RecordLayout.h"
Daniel Dunbarad319a72008-08-11 05:00:27 +000025#include "clang/AST/StmtVisitor.h"
Richard Trieu63688182018-12-11 03:18:39 +000026#include "clang/Basic/CodeGenOptions.h"
Leonard Chan99bda372018-10-15 16:07:02 +000027#include "clang/Basic/FixedPoint.h"
Chris Lattnerff2367c2008-04-20 00:50:39 +000028#include "clang/Basic/TargetInfo.h"
Vedant Kumar82ee16b2017-02-25 00:43:36 +000029#include "llvm/ADT/Optional.h"
Chandler Carruth735e6d82014-03-04 11:46:22 +000030#include "llvm/IR/CFG.h"
Chandler Carruthffd55512013-01-02 11:45:17 +000031#include "llvm/IR/Constants.h"
32#include "llvm/IR/DataLayout.h"
33#include "llvm/IR/Function.h"
Vedant Kumara125eb52017-06-01 19:22:18 +000034#include "llvm/IR/GetElementPtrTypeIterator.h"
Chandler Carruthffd55512013-01-02 11:45:17 +000035#include "llvm/IR/GlobalVariable.h"
36#include "llvm/IR/Intrinsics.h"
37#include "llvm/IR/Module.h"
Chris Lattner1800c182008-01-03 07:05:49 +000038#include <cstdarg>
Ted Kremenekf182e812007-12-10 23:44:32 +000039
Chris Lattner2da04b32007-08-24 05:35:26 +000040using namespace clang;
41using namespace CodeGen;
42using llvm::Value;
43
44//===----------------------------------------------------------------------===//
45// Scalar Expression Emitter
46//===----------------------------------------------------------------------===//
47
Benjamin Kramerfb5e5842010-10-22 16:48:22 +000048namespace {
Vedant Kumara125eb52017-06-01 19:22:18 +000049
50/// Determine whether the given binary operation may overflow.
51/// Sets \p Result to the value of the operation for BO_Add, BO_Sub, BO_Mul,
52/// and signed BO_{Div,Rem}. For these opcodes, and for unsigned BO_{Div,Rem},
53/// the returned overflow check is precise. The returned value is 'true' for
54/// all other opcodes, to be conservative.
55bool mayHaveIntegerOverflow(llvm::ConstantInt *LHS, llvm::ConstantInt *RHS,
56 BinaryOperator::Opcode Opcode, bool Signed,
57 llvm::APInt &Result) {
58 // Assume overflow is possible, unless we can prove otherwise.
59 bool Overflow = true;
60 const auto &LHSAP = LHS->getValue();
61 const auto &RHSAP = RHS->getValue();
62 if (Opcode == BO_Add) {
63 if (Signed)
64 Result = LHSAP.sadd_ov(RHSAP, Overflow);
65 else
66 Result = LHSAP.uadd_ov(RHSAP, Overflow);
67 } else if (Opcode == BO_Sub) {
68 if (Signed)
69 Result = LHSAP.ssub_ov(RHSAP, Overflow);
70 else
71 Result = LHSAP.usub_ov(RHSAP, Overflow);
72 } else if (Opcode == BO_Mul) {
73 if (Signed)
74 Result = LHSAP.smul_ov(RHSAP, Overflow);
75 else
76 Result = LHSAP.umul_ov(RHSAP, Overflow);
77 } else if (Opcode == BO_Div || Opcode == BO_Rem) {
78 if (Signed && !RHS->isZero())
79 Result = LHSAP.sdiv_ov(RHSAP, Overflow);
80 else
81 return false;
82 }
83 return Overflow;
84}
85
Chris Lattner2da04b32007-08-24 05:35:26 +000086struct BinOpInfo {
87 Value *LHS;
88 Value *RHS;
Chris Lattner3d966d62007-08-24 21:00:35 +000089 QualType Ty; // Computation Type.
Chris Lattner0bf27622010-06-26 21:48:21 +000090 BinaryOperator::Opcode Opcode; // Opcode of BinOp to perform
Adam Nemet484aa452017-03-27 19:17:25 +000091 FPOptions FPFeatures;
Chris Lattner0bf27622010-06-26 21:48:21 +000092 const Expr *E; // Entire expr, for error unsupported. May not be binop.
Vedant Kumard9191152017-05-02 23:46:56 +000093
94 /// Check if the binop can result in integer overflow.
95 bool mayHaveIntegerOverflow() const {
96 // Without constant input, we can't rule out overflow.
Vedant Kumara125eb52017-06-01 19:22:18 +000097 auto *LHSCI = dyn_cast<llvm::ConstantInt>(LHS);
98 auto *RHSCI = dyn_cast<llvm::ConstantInt>(RHS);
Vedant Kumard9191152017-05-02 23:46:56 +000099 if (!LHSCI || !RHSCI)
100 return true;
101
Vedant Kumara125eb52017-06-01 19:22:18 +0000102 llvm::APInt Result;
103 return ::mayHaveIntegerOverflow(
104 LHSCI, RHSCI, Opcode, Ty->hasSignedIntegerRepresentation(), Result);
Vedant Kumard9191152017-05-02 23:46:56 +0000105 }
106
107 /// Check if the binop computes a division or a remainder.
Vedant Kumar94cb34b2017-05-09 00:12:33 +0000108 bool isDivremOp() const {
Vedant Kumard9191152017-05-02 23:46:56 +0000109 return Opcode == BO_Div || Opcode == BO_Rem || Opcode == BO_DivAssign ||
110 Opcode == BO_RemAssign;
111 }
112
113 /// Check if the binop can result in an integer division by zero.
114 bool mayHaveIntegerDivisionByZero() const {
Vedant Kumar94cb34b2017-05-09 00:12:33 +0000115 if (isDivremOp())
Vedant Kumard9191152017-05-02 23:46:56 +0000116 if (auto *CI = dyn_cast<llvm::ConstantInt>(RHS))
117 return CI->isZero();
118 return true;
119 }
120
121 /// Check if the binop can result in a float division by zero.
122 bool mayHaveFloatDivisionByZero() const {
Vedant Kumar94cb34b2017-05-09 00:12:33 +0000123 if (isDivremOp())
Vedant Kumard9191152017-05-02 23:46:56 +0000124 if (auto *CFP = dyn_cast<llvm::ConstantFP>(RHS))
125 return CFP->isZero();
126 return true;
127 }
Leonard Chan2044ac82019-01-16 18:13:59 +0000128
Leonard Chance1d4f12019-02-21 20:50:09 +0000129 /// Check if either operand is a fixed point type or integer type, with at
130 /// least one being a fixed point type. In any case, this
Leonard Chan2044ac82019-01-16 18:13:59 +0000131 /// operation did not follow usual arithmetic conversion and both operands may
132 /// not be the same.
133 bool isFixedPointBinOp() const {
Leonard Chance1d4f12019-02-21 20:50:09 +0000134 // We cannot simply check the result type since comparison operations return
135 // an int.
136 if (const auto *BinOp = dyn_cast<BinaryOperator>(E)) {
137 QualType LHSType = BinOp->getLHS()->getType();
138 QualType RHSType = BinOp->getRHS()->getType();
139 return LHSType->isFixedPointType() || RHSType->isFixedPointType();
140 }
141 return false;
Leonard Chan2044ac82019-01-16 18:13:59 +0000142 }
Chris Lattner2da04b32007-08-24 05:35:26 +0000143};
144
John McCalle84af4e2010-11-13 01:35:44 +0000145static bool MustVisitNullValue(const Expr *E) {
146 // If a null pointer expression's type is the C++0x nullptr_t, then
147 // it's not necessarily a simple constant and it must be evaluated
148 // for its potential side effects.
149 return E->getType()->isNullPtrType();
150}
151
Vedant Kumar82ee16b2017-02-25 00:43:36 +0000152/// If \p E is a widened promoted integer, get its base (unpromoted) type.
153static llvm::Optional<QualType> getUnwidenedIntegerType(const ASTContext &Ctx,
154 const Expr *E) {
155 const Expr *Base = E->IgnoreImpCasts();
156 if (E == Base)
157 return llvm::None;
158
159 QualType BaseTy = Base->getType();
160 if (!BaseTy->isPromotableIntegerType() ||
161 Ctx.getTypeSize(BaseTy) >= Ctx.getTypeSize(E->getType()))
162 return llvm::None;
163
164 return BaseTy;
165}
166
167/// Check if \p E is a widened promoted integer.
168static bool IsWidenedIntegerOp(const ASTContext &Ctx, const Expr *E) {
169 return getUnwidenedIntegerType(Ctx, E).hasValue();
170}
171
172/// Check if we can skip the overflow check for \p Op.
173static bool CanElideOverflowCheck(const ASTContext &Ctx, const BinOpInfo &Op) {
Vedant Kumar66c00cc2017-02-25 06:47:00 +0000174 assert((isa<UnaryOperator>(Op.E) || isa<BinaryOperator>(Op.E)) &&
175 "Expected a unary or binary operator");
Vedant Kumar82ee16b2017-02-25 00:43:36 +0000176
Vedant Kumard9191152017-05-02 23:46:56 +0000177 // If the binop has constant inputs and we can prove there is no overflow,
178 // we can elide the overflow check.
179 if (!Op.mayHaveIntegerOverflow())
180 return true;
Malcolm Parsonsfab36802018-04-16 08:31:08 +0000181
182 // If a unary op has a widened operand, the op cannot overflow.
183 if (const auto *UO = dyn_cast<UnaryOperator>(Op.E))
184 return !UO->canOverflow();
185
186 // We usually don't need overflow checks for binops with widened operands.
187 // Multiplication with promoted unsigned operands is a special case.
Vedant Kumar82ee16b2017-02-25 00:43:36 +0000188 const auto *BO = cast<BinaryOperator>(Op.E);
189 auto OptionalLHSTy = getUnwidenedIntegerType(Ctx, BO->getLHS());
190 if (!OptionalLHSTy)
191 return false;
192
193 auto OptionalRHSTy = getUnwidenedIntegerType(Ctx, BO->getRHS());
194 if (!OptionalRHSTy)
195 return false;
196
197 QualType LHSTy = *OptionalLHSTy;
198 QualType RHSTy = *OptionalRHSTy;
199
Vedant Kumard9191152017-05-02 23:46:56 +0000200 // This is the simple case: binops without unsigned multiplication, and with
201 // widened operands. No overflow check is needed here.
Vedant Kumar82ee16b2017-02-25 00:43:36 +0000202 if ((Op.Opcode != BO_Mul && Op.Opcode != BO_MulAssign) ||
203 !LHSTy->isUnsignedIntegerType() || !RHSTy->isUnsignedIntegerType())
204 return true;
205
Vedant Kumard9191152017-05-02 23:46:56 +0000206 // For unsigned multiplication the overflow check can be elided if either one
207 // of the unpromoted types are less than half the size of the promoted type.
Vedant Kumar82ee16b2017-02-25 00:43:36 +0000208 unsigned PromotedSize = Ctx.getTypeSize(Op.E->getType());
209 return (2 * Ctx.getTypeSize(LHSTy)) < PromotedSize ||
210 (2 * Ctx.getTypeSize(RHSTy)) < PromotedSize;
211}
212
Adam Nemet370d0872017-04-04 21:18:30 +0000213/// Update the FastMathFlags of LLVM IR from the FPOptions in LangOptions.
214static void updateFastMathFlags(llvm::FastMathFlags &FMF,
215 FPOptions FPFeatures) {
216 FMF.setAllowContract(FPFeatures.allowFPContractAcrossStatement());
217}
218
219/// Propagate fast-math flags from \p Op to the instruction in \p V.
220static Value *propagateFMFlags(Value *V, const BinOpInfo &Op) {
221 if (auto *I = dyn_cast<llvm::Instruction>(V)) {
222 llvm::FastMathFlags FMF = I->getFastMathFlags();
223 updateFastMathFlags(FMF, Op.FPFeatures);
224 I->setFastMathFlags(FMF);
225 }
226 return V;
227}
228
Benjamin Kramer337e3a52009-11-28 19:45:26 +0000229class ScalarExprEmitter
Chris Lattner2da04b32007-08-24 05:35:26 +0000230 : public StmtVisitor<ScalarExprEmitter, Value*> {
231 CodeGenFunction &CGF;
Daniel Dunbarcb463852008-11-01 01:53:16 +0000232 CGBuilderTy &Builder;
Mike Stumpdf0fe272009-05-29 15:46:01 +0000233 bool IgnoreResultAssign;
Owen Anderson170229f2009-07-14 23:10:40 +0000234 llvm::LLVMContext &VMContext;
Chris Lattner2da04b32007-08-24 05:35:26 +0000235public:
236
Mike Stumpdf0fe272009-05-29 15:46:01 +0000237 ScalarExprEmitter(CodeGenFunction &cgf, bool ira=false)
Mike Stump4a3999f2009-09-09 13:00:44 +0000238 : CGF(cgf), Builder(CGF.Builder), IgnoreResultAssign(ira),
Owen Anderson170229f2009-07-14 23:10:40 +0000239 VMContext(cgf.getLLVMContext()) {
Chris Lattner2da04b32007-08-24 05:35:26 +0000240 }
Mike Stump4a3999f2009-09-09 13:00:44 +0000241
Chris Lattner2da04b32007-08-24 05:35:26 +0000242 //===--------------------------------------------------------------------===//
243 // Utilities
244 //===--------------------------------------------------------------------===//
245
Mike Stumpdf0fe272009-05-29 15:46:01 +0000246 bool TestAndClearIgnoreResultAssign() {
Chris Lattner2a7deb62009-07-08 01:08:03 +0000247 bool I = IgnoreResultAssign;
248 IgnoreResultAssign = false;
249 return I;
250 }
Mike Stumpdf0fe272009-05-29 15:46:01 +0000251
Chris Lattner2192fe52011-07-18 04:24:23 +0000252 llvm::Type *ConvertType(QualType T) { return CGF.ConvertType(T); }
Chris Lattner2da04b32007-08-24 05:35:26 +0000253 LValue EmitLValue(const Expr *E) { return CGF.EmitLValue(E); }
Richard Smith4d1458e2012-09-08 02:08:36 +0000254 LValue EmitCheckedLValue(const Expr *E, CodeGenFunction::TypeCheckKind TCK) {
255 return CGF.EmitCheckedLValue(E, TCK);
Richard Smith69d0d262012-08-24 00:54:33 +0000256 }
Chris Lattner2da04b32007-08-24 05:35:26 +0000257
Peter Collingbourne3eea6772015-05-11 21:39:14 +0000258 void EmitBinOpCheck(ArrayRef<std::pair<Value *, SanitizerMask>> Checks,
Alexey Samsonove396bfc2014-11-11 22:03:54 +0000259 const BinOpInfo &Info);
Richard Smithe30752c2012-10-09 19:52:38 +0000260
Nick Lewycky2d84e842013-10-02 02:29:49 +0000261 Value *EmitLoadOfLValue(LValue LV, SourceLocation Loc) {
262 return CGF.EmitLoadOfLValue(LV, Loc).getScalarVal();
Chris Lattner2da04b32007-08-24 05:35:26 +0000263 }
Mike Stump4a3999f2009-09-09 13:00:44 +0000264
Hal Finkel64567a82014-10-04 15:26:49 +0000265 void EmitLValueAlignmentAssumption(const Expr *E, Value *V) {
266 const AlignValueAttr *AVAttr = nullptr;
267 if (const auto *DRE = dyn_cast<DeclRefExpr>(E)) {
268 const ValueDecl *VD = DRE->getDecl();
269
270 if (VD->getType()->isReferenceType()) {
271 if (const auto *TTy =
272 dyn_cast<TypedefType>(VD->getType().getNonReferenceType()))
273 AVAttr = TTy->getDecl()->getAttr<AlignValueAttr>();
274 } else {
275 // Assumptions for function parameters are emitted at the start of the
Roman Lebedevbd1c0872019-01-15 09:44:25 +0000276 // function, so there is no need to repeat that here,
277 // unless the alignment-assumption sanitizer is enabled,
278 // then we prefer the assumption over alignment attribute
279 // on IR function param.
280 if (isa<ParmVarDecl>(VD) && !CGF.SanOpts.has(SanitizerKind::Alignment))
Hal Finkel64567a82014-10-04 15:26:49 +0000281 return;
282
283 AVAttr = VD->getAttr<AlignValueAttr>();
284 }
285 }
286
287 if (!AVAttr)
288 if (const auto *TTy =
289 dyn_cast<TypedefType>(E->getType()))
290 AVAttr = TTy->getDecl()->getAttr<AlignValueAttr>();
291
292 if (!AVAttr)
293 return;
294
295 Value *AlignmentValue = CGF.EmitScalarExpr(AVAttr->getAlignment());
296 llvm::ConstantInt *AlignmentCI = cast<llvm::ConstantInt>(AlignmentValue);
Roman Lebedevbd1c0872019-01-15 09:44:25 +0000297 CGF.EmitAlignmentAssumption(V, E, AVAttr->getLocation(),
298 AlignmentCI->getZExtValue());
Hal Finkel64567a82014-10-04 15:26:49 +0000299 }
300
Chris Lattner2da04b32007-08-24 05:35:26 +0000301 /// EmitLoadOfLValue - Given an expression with complex type that represents a
302 /// value l-value, this method emits the address of the l-value, then loads
303 /// and returns the result.
304 Value *EmitLoadOfLValue(const Expr *E) {
Hal Finkel64567a82014-10-04 15:26:49 +0000305 Value *V = EmitLoadOfLValue(EmitCheckedLValue(E, CodeGenFunction::TCK_Load),
306 E->getExprLoc());
307
308 EmitLValueAlignmentAssumption(E, V);
309 return V;
Chris Lattner2da04b32007-08-24 05:35:26 +0000310 }
Mike Stump4a3999f2009-09-09 13:00:44 +0000311
Chris Lattnere0044382007-08-26 16:42:57 +0000312 /// EmitConversionToBool - Convert the specified expression value to a
Chris Lattner2e928882007-08-26 17:25:57 +0000313 /// boolean (i1) truth value. This is equivalent to "Val != 0".
Chris Lattnere0044382007-08-26 16:42:57 +0000314 Value *EmitConversionToBool(Value *Src, QualType DstTy);
Mike Stump4a3999f2009-09-09 13:00:44 +0000315
Filipe Cabecinhas650d7f72015-08-05 06:19:26 +0000316 /// Emit a check that a conversion to or from a floating-point type does not
317 /// overflow.
Richard Smithf9a1e4a2012-10-12 22:57:06 +0000318 void EmitFloatConversionCheck(Value *OrigSrc, QualType OrigSrcType,
Filipe Cabecinhas7af183d2015-08-11 04:19:28 +0000319 Value *Src, QualType SrcType, QualType DstType,
320 llvm::Type *DstTy, SourceLocation Loc);
Richard Smithf9a1e4a2012-10-12 22:57:06 +0000321
Roman Lebedevb69ba222018-07-30 18:58:30 +0000322 /// Known implicit conversion check kinds.
323 /// Keep in sync with the enum of the same name in ubsan_handlers.h
324 enum ImplicitConversionCheckKind : unsigned char {
Roman Lebedevdd403572018-10-11 09:09:50 +0000325 ICCK_IntegerTruncation = 0, // Legacy, was only used by clang 7.
326 ICCK_UnsignedIntegerTruncation = 1,
327 ICCK_SignedIntegerTruncation = 2,
Roman Lebedev62debd802018-10-30 21:58:56 +0000328 ICCK_IntegerSignChange = 3,
329 ICCK_SignedIntegerTruncationOrSignChange = 4,
Roman Lebedevb69ba222018-07-30 18:58:30 +0000330 };
331
332 /// Emit a check that an [implicit] truncation of an integer does not
333 /// discard any bits. It is not UB, so we use the value after truncation.
334 void EmitIntegerTruncationCheck(Value *Src, QualType SrcType, Value *Dst,
335 QualType DstType, SourceLocation Loc);
336
Roman Lebedev62debd802018-10-30 21:58:56 +0000337 /// Emit a check that an [implicit] conversion of an integer does not change
338 /// the sign of the value. It is not UB, so we use the value after conversion.
339 /// NOTE: Src and Dst may be the exact same value! (point to the same thing)
340 void EmitIntegerSignChangeCheck(Value *Src, QualType SrcType, Value *Dst,
341 QualType DstType, SourceLocation Loc);
342
Filipe Cabecinhas650d7f72015-08-05 06:19:26 +0000343 /// Emit a conversion from the specified type to the specified destination
344 /// type, both of which are LLVM scalar types.
Roman Lebedevb69ba222018-07-30 18:58:30 +0000345 struct ScalarConversionOpts {
346 bool TreatBooleanAsSigned;
347 bool EmitImplicitIntegerTruncationChecks;
Roman Lebedev62debd802018-10-30 21:58:56 +0000348 bool EmitImplicitIntegerSignChangeChecks;
Chris Lattner42e6b812007-08-26 16:34:22 +0000349
Roman Lebedevb69ba222018-07-30 18:58:30 +0000350 ScalarConversionOpts()
351 : TreatBooleanAsSigned(false),
Roman Lebedev62debd802018-10-30 21:58:56 +0000352 EmitImplicitIntegerTruncationChecks(false),
353 EmitImplicitIntegerSignChangeChecks(false) {}
Roman Lebedevd677c3f2018-11-19 19:56:43 +0000354
355 ScalarConversionOpts(clang::SanitizerSet SanOpts)
356 : TreatBooleanAsSigned(false),
357 EmitImplicitIntegerTruncationChecks(
358 SanOpts.hasOneOf(SanitizerKind::ImplicitIntegerTruncation)),
359 EmitImplicitIntegerSignChangeChecks(
360 SanOpts.has(SanitizerKind::ImplicitIntegerSignChange)) {}
Roman Lebedevb69ba222018-07-30 18:58:30 +0000361 };
362 Value *
363 EmitScalarConversion(Value *Src, QualType SrcTy, QualType DstTy,
364 SourceLocation Loc,
365 ScalarConversionOpts Opts = ScalarConversionOpts());
Anastasia Stulovab02e7832015-10-05 11:27:41 +0000366
Leonard Chan8f7caae2019-03-06 00:28:43 +0000367 /// Convert between either a fixed point and other fixed point or fixed point
368 /// and an integer.
Leonard Chan99bda372018-10-15 16:07:02 +0000369 Value *EmitFixedPointConversion(Value *Src, QualType SrcTy, QualType DstTy,
370 SourceLocation Loc);
Leonard Chan2044ac82019-01-16 18:13:59 +0000371 Value *EmitFixedPointConversion(Value *Src, FixedPointSemantics &SrcFixedSema,
372 FixedPointSemantics &DstFixedSema,
Leonard Chan8f7caae2019-03-06 00:28:43 +0000373 SourceLocation Loc,
374 bool DstIsInteger = false);
Leonard Chan99bda372018-10-15 16:07:02 +0000375
Filipe Cabecinhas650d7f72015-08-05 06:19:26 +0000376 /// Emit a conversion from the specified complex type to the specified
377 /// destination type, where the destination type is an LLVM scalar type.
Chris Lattner42e6b812007-08-26 16:34:22 +0000378 Value *EmitComplexToScalarConversion(CodeGenFunction::ComplexPairTy Src,
Filipe Cabecinhas7af183d2015-08-11 04:19:28 +0000379 QualType SrcTy, QualType DstTy,
380 SourceLocation Loc);
Mike Stumpab3afd82009-02-12 18:29:15 +0000381
Anders Carlsson5b944432010-05-22 17:45:10 +0000382 /// EmitNullValue - Emit a value that corresponds to null for the given type.
383 Value *EmitNullValue(QualType Ty);
384
John McCall8cb679e2010-11-15 09:13:47 +0000385 /// EmitFloatToBoolConversion - Perform an FP to boolean conversion.
386 Value *EmitFloatToBoolConversion(Value *V) {
387 // Compare against 0.0 for fp scalars.
388 llvm::Value *Zero = llvm::Constant::getNullValue(V->getType());
389 return Builder.CreateFCmpUNE(V, Zero, "tobool");
390 }
391
392 /// EmitPointerToBoolConversion - Perform a pointer to boolean conversion.
Yaxun Liu402804b2016-12-15 08:09:08 +0000393 Value *EmitPointerToBoolConversion(Value *V, QualType QT) {
394 Value *Zero = CGF.CGM.getNullPointer(cast<llvm::PointerType>(V->getType()), QT);
395
John McCall8cb679e2010-11-15 09:13:47 +0000396 return Builder.CreateICmpNE(V, Zero, "tobool");
397 }
398
399 Value *EmitIntToBoolConversion(Value *V) {
400 // Because of the type rules of C, we often end up computing a
401 // logical value, then zero extending it to int, then wanting it
402 // as a logical value again. Optimize this common case.
403 if (llvm::ZExtInst *ZI = dyn_cast<llvm::ZExtInst>(V)) {
404 if (ZI->getOperand(0)->getType() == Builder.getInt1Ty()) {
405 Value *Result = ZI->getOperand(0);
406 // If there aren't any more uses, zap the instruction to save space.
407 // Note that there can be more uses, for example if this
408 // is the result of an assignment.
409 if (ZI->use_empty())
410 ZI->eraseFromParent();
411 return Result;
412 }
413 }
414
Chris Lattner2531eb42011-04-19 22:55:03 +0000415 return Builder.CreateIsNotNull(V, "tobool");
John McCall8cb679e2010-11-15 09:13:47 +0000416 }
417
Chris Lattner2da04b32007-08-24 05:35:26 +0000418 //===--------------------------------------------------------------------===//
419 // Visitor Methods
420 //===--------------------------------------------------------------------===//
421
Fariborz Jahanian5bbd1b02010-09-17 15:51:28 +0000422 Value *Visit(Expr *E) {
David Blaikie9b479662015-01-25 01:19:10 +0000423 ApplyDebugLocation DL(CGF, E);
Fariborz Jahanian5bbd1b02010-09-17 15:51:28 +0000424 return StmtVisitor<ScalarExprEmitter, Value*>::Visit(E);
425 }
Craig Toppera97d7e72013-07-26 06:16:11 +0000426
Chris Lattner2da04b32007-08-24 05:35:26 +0000427 Value *VisitStmt(Stmt *S) {
Ted Kremenekd4e5fba2007-12-11 21:27:55 +0000428 S->dump(CGF.getContext().getSourceManager());
David Blaikie83d382b2011-09-23 05:06:16 +0000429 llvm_unreachable("Stmt can't have complex result type!");
Chris Lattner2da04b32007-08-24 05:35:26 +0000430 }
431 Value *VisitExpr(Expr *S);
Craig Toppera97d7e72013-07-26 06:16:11 +0000432
Bill Wendling8003edc2018-11-09 00:41:36 +0000433 Value *VisitConstantExpr(ConstantExpr *E) {
434 return Visit(E->getSubExpr());
435 }
Fariborz Jahanian5bbd1b02010-09-17 15:51:28 +0000436 Value *VisitParenExpr(ParenExpr *PE) {
Craig Toppera97d7e72013-07-26 06:16:11 +0000437 return Visit(PE->getSubExpr());
Fariborz Jahanian5bbd1b02010-09-17 15:51:28 +0000438 }
John McCall7c454bb2011-07-15 05:09:51 +0000439 Value *VisitSubstNonTypeTemplateParmExpr(SubstNonTypeTemplateParmExpr *E) {
Craig Toppera97d7e72013-07-26 06:16:11 +0000440 return Visit(E->getReplacement());
John McCall7c454bb2011-07-15 05:09:51 +0000441 }
Peter Collingbourne91147592011-04-15 00:35:48 +0000442 Value *VisitGenericSelectionExpr(GenericSelectionExpr *GE) {
443 return Visit(GE->getResultExpr());
444 }
Gor Nishanov5eb58582017-03-26 02:18:05 +0000445 Value *VisitCoawaitExpr(CoawaitExpr *S) {
446 return CGF.EmitCoawaitExpr(*S).getScalarVal();
447 }
448 Value *VisitCoyieldExpr(CoyieldExpr *S) {
449 return CGF.EmitCoyieldExpr(*S).getScalarVal();
450 }
451 Value *VisitUnaryCoawait(const UnaryOperator *E) {
452 return Visit(E->getSubExpr());
453 }
Chris Lattner2da04b32007-08-24 05:35:26 +0000454
455 // Leaves.
456 Value *VisitIntegerLiteral(const IntegerLiteral *E) {
Chris Lattner2531eb42011-04-19 22:55:03 +0000457 return Builder.getInt(E->getValue());
Chris Lattner2da04b32007-08-24 05:35:26 +0000458 }
Leonard Chandb01c3a2018-06-20 17:19:40 +0000459 Value *VisitFixedPointLiteral(const FixedPointLiteral *E) {
460 return Builder.getInt(E->getValue());
461 }
Chris Lattner2da04b32007-08-24 05:35:26 +0000462 Value *VisitFloatingLiteral(const FloatingLiteral *E) {
Owen Andersone05f2ed2009-07-27 21:00:51 +0000463 return llvm::ConstantFP::get(VMContext, E->getValue());
Chris Lattner2da04b32007-08-24 05:35:26 +0000464 }
465 Value *VisitCharacterLiteral(const CharacterLiteral *E) {
Owen Andersonb7a2fe62009-07-24 23:12:58 +0000466 return llvm::ConstantInt::get(ConvertType(E->getType()), E->getValue());
Chris Lattner2da04b32007-08-24 05:35:26 +0000467 }
Ted Kremeneke65b0862012-03-06 20:05:56 +0000468 Value *VisitObjCBoolLiteralExpr(const ObjCBoolLiteralExpr *E) {
469 return llvm::ConstantInt::get(ConvertType(E->getType()), E->getValue());
470 }
Nate Begeman4c18c232007-11-15 05:40:03 +0000471 Value *VisitCXXBoolLiteralExpr(const CXXBoolLiteralExpr *E) {
Owen Andersonb7a2fe62009-07-24 23:12:58 +0000472 return llvm::ConstantInt::get(ConvertType(E->getType()), E->getValue());
Nate Begeman4c18c232007-11-15 05:40:03 +0000473 }
Douglas Gregor747eb782010-07-08 06:14:04 +0000474 Value *VisitCXXScalarValueInitExpr(const CXXScalarValueInitExpr *E) {
Anders Carlsson5b944432010-05-22 17:45:10 +0000475 return EmitNullValue(E->getType());
Argyrios Kyrtzidisce4528f2008-08-23 19:35:47 +0000476 }
Anders Carlsson39def3a2008-12-21 22:39:40 +0000477 Value *VisitGNUNullExpr(const GNUNullExpr *E) {
Anders Carlsson5b944432010-05-22 17:45:10 +0000478 return EmitNullValue(E->getType());
Anders Carlsson39def3a2008-12-21 22:39:40 +0000479 }
Eli Friedmand7c72322010-08-05 09:58:49 +0000480 Value *VisitOffsetOfExpr(OffsetOfExpr *E);
Peter Collingbournee190dee2011-03-11 19:24:49 +0000481 Value *VisitUnaryExprOrTypeTraitExpr(const UnaryExprOrTypeTraitExpr *E);
Daniel Dunbar88402ce2008-08-04 16:51:22 +0000482 Value *VisitAddrLabelExpr(const AddrLabelExpr *E) {
Chris Lattner6c4d2552009-10-28 23:59:40 +0000483 llvm::Value *V = CGF.GetAddrOfLabel(E->getLabel());
484 return Builder.CreateBitCast(V, ConvertType(E->getType()));
Daniel Dunbar88402ce2008-08-04 16:51:22 +0000485 }
Mike Stump4a3999f2009-09-09 13:00:44 +0000486
Douglas Gregorbe7b5482011-01-12 22:11:34 +0000487 Value *VisitSizeOfPackExpr(SizeOfPackExpr *E) {
Chris Lattner2531eb42011-04-19 22:55:03 +0000488 return llvm::ConstantInt::get(ConvertType(E->getType()),E->getPackLength());
Douglas Gregorbe7b5482011-01-12 22:11:34 +0000489 }
John McCall1bf58462011-02-16 08:02:54 +0000490
John McCallfe96e0b2011-11-06 09:01:30 +0000491 Value *VisitPseudoObjectExpr(PseudoObjectExpr *E) {
492 return CGF.EmitPseudoObjectRValue(E).getScalarVal();
493 }
494
John McCall1bf58462011-02-16 08:02:54 +0000495 Value *VisitOpaqueValueExpr(OpaqueValueExpr *E) {
John McCallc07a0c72011-02-17 10:25:35 +0000496 if (E->isGLValue())
Akira Hatanaka797afe32018-03-20 01:47:58 +0000497 return EmitLoadOfLValue(CGF.getOrCreateOpaqueLValueMapping(E),
498 E->getExprLoc());
John McCall1bf58462011-02-16 08:02:54 +0000499
500 // Otherwise, assume the mapping is the scalar directly.
Akira Hatanaka797afe32018-03-20 01:47:58 +0000501 return CGF.getOrCreateOpaqueRValueMapping(E).getScalarVal();
John McCall1bf58462011-02-16 08:02:54 +0000502 }
John McCall71335052012-03-10 03:05:10 +0000503
Chris Lattner2da04b32007-08-24 05:35:26 +0000504 // l-values.
John McCall113bee02012-03-10 09:33:50 +0000505 Value *VisitDeclRefExpr(DeclRefExpr *E) {
Alex Lorenz6cc83172017-08-25 10:07:00 +0000506 if (CodeGenFunction::ConstantEmission Constant = CGF.tryEmitAsConstant(E))
Volodymyr Sapsaief1899b2018-11-01 21:57:05 +0000507 return CGF.emitScalarConstant(Constant, E);
John McCall113bee02012-03-10 09:33:50 +0000508 return EmitLoadOfLValue(E);
John McCall71335052012-03-10 03:05:10 +0000509 }
510
Mike Stump4a3999f2009-09-09 13:00:44 +0000511 Value *VisitObjCSelectorExpr(ObjCSelectorExpr *E) {
512 return CGF.EmitObjCSelectorExpr(E);
Daniel Dunbar55310df2008-08-27 06:57:25 +0000513 }
Mike Stump4a3999f2009-09-09 13:00:44 +0000514 Value *VisitObjCProtocolExpr(ObjCProtocolExpr *E) {
515 return CGF.EmitObjCProtocolExpr(E);
Daniel Dunbar55310df2008-08-27 06:57:25 +0000516 }
Mike Stump4a3999f2009-09-09 13:00:44 +0000517 Value *VisitObjCIvarRefExpr(ObjCIvarRefExpr *E) {
Daniel Dunbar55310df2008-08-27 06:57:25 +0000518 return EmitLoadOfLValue(E);
519 }
Daniel Dunbar55310df2008-08-27 06:57:25 +0000520 Value *VisitObjCMessageExpr(ObjCMessageExpr *E) {
Craig Toppera97d7e72013-07-26 06:16:11 +0000521 if (E->getMethodDecl() &&
Alp Toker314cc812014-01-25 16:55:45 +0000522 E->getMethodDecl()->getReturnType()->isReferenceType())
Fariborz Jahanianff989032011-03-02 20:09:49 +0000523 return EmitLoadOfLValue(E);
Daniel Dunbar55310df2008-08-27 06:57:25 +0000524 return CGF.EmitObjCMessageExpr(E).getScalarVal();
Daniel Dunbarc8317a42008-08-23 10:51:21 +0000525 }
526
Fariborz Jahaniana5fee262009-12-09 19:05:56 +0000527 Value *VisitObjCIsaExpr(ObjCIsaExpr *E) {
Fariborz Jahanian531c16f2009-12-09 23:35:29 +0000528 LValue LV = CGF.EmitObjCIsaExpr(E);
Nick Lewycky2d84e842013-10-02 02:29:49 +0000529 Value *V = CGF.EmitLoadOfLValue(LV, E->getExprLoc()).getScalarVal();
Fariborz Jahaniana5fee262009-12-09 19:05:56 +0000530 return V;
531 }
532
Erik Pilkington9c42a8d2017-02-23 21:08:08 +0000533 Value *VisitObjCAvailabilityCheckExpr(ObjCAvailabilityCheckExpr *E) {
534 VersionTuple Version = E->getVersion();
535
536 // If we're checking for a platform older than our minimum deployment
537 // target, we can fold the check away.
538 if (Version <= CGF.CGM.getTarget().getPlatformMinVersion())
539 return llvm::ConstantInt::get(Builder.getInt1Ty(), 1);
540
541 Optional<unsigned> Min = Version.getMinor(), SMin = Version.getSubminor();
542 llvm::Value *Args[] = {
543 llvm::ConstantInt::get(CGF.CGM.Int32Ty, Version.getMajor()),
544 llvm::ConstantInt::get(CGF.CGM.Int32Ty, Min ? *Min : 0),
545 llvm::ConstantInt::get(CGF.CGM.Int32Ty, SMin ? *SMin : 0),
546 };
547
548 return CGF.EmitBuiltinAvailable(Args);
549 }
550
Chris Lattner2da04b32007-08-24 05:35:26 +0000551 Value *VisitArraySubscriptExpr(ArraySubscriptExpr *E);
Eli Friedmana1b4ed82008-05-14 19:38:39 +0000552 Value *VisitShuffleVectorExpr(ShuffleVectorExpr *E);
Hal Finkelc4d7c822013-09-18 03:29:45 +0000553 Value *VisitConvertVectorExpr(ConvertVectorExpr *E);
Eli Friedmancb422f12009-11-26 03:22:21 +0000554 Value *VisitMemberExpr(MemberExpr *E);
Nate Begemance4d7fc2008-04-18 23:10:10 +0000555 Value *VisitExtVectorElementExpr(Expr *E) { return EmitLoadOfLValue(E); }
Chris Lattner084bc322008-10-26 23:53:12 +0000556 Value *VisitCompoundLiteralExpr(CompoundLiteralExpr *E) {
557 return EmitLoadOfLValue(E);
558 }
Devang Patel43fc86d2007-10-24 17:18:43 +0000559
Nate Begeman19351632009-10-18 20:10:40 +0000560 Value *VisitInitListExpr(InitListExpr *E);
Mike Stump4a3999f2009-09-09 13:00:44 +0000561
Richard Smith410306b2016-12-12 02:53:20 +0000562 Value *VisitArrayInitIndexExpr(ArrayInitIndexExpr *E) {
563 assert(CGF.getArrayInitIndex() &&
564 "ArrayInitIndexExpr not inside an ArrayInitLoopExpr?");
565 return CGF.getArrayInitIndex();
566 }
567
Douglas Gregor0202cb42009-01-29 17:44:32 +0000568 Value *VisitImplicitValueInitExpr(const ImplicitValueInitExpr *E) {
Richard Smithd82a2ce2012-12-21 03:17:28 +0000569 return EmitNullValue(E->getType());
Douglas Gregor0202cb42009-01-29 17:44:32 +0000570 }
John McCall23c29fe2011-06-24 21:55:10 +0000571 Value *VisitExplicitCastExpr(ExplicitCastExpr *E) {
Alexey Bataev2bf9b4c2015-10-20 04:24:12 +0000572 CGF.CGM.EmitExplicitCastExprType(E, &CGF);
John McCall23c29fe2011-06-24 21:55:10 +0000573 return VisitCastExpr(E);
Chris Lattner2da04b32007-08-24 05:35:26 +0000574 }
John McCall23c29fe2011-06-24 21:55:10 +0000575 Value *VisitCastExpr(CastExpr *E);
Chris Lattner2da04b32007-08-24 05:35:26 +0000576
577 Value *VisitCallExpr(const CallExpr *E) {
David Majnemerced8bdf2015-02-25 17:36:15 +0000578 if (E->getCallReturnType(CGF.getContext())->isReferenceType())
Anders Carlssond8b7ae22009-05-27 03:37:57 +0000579 return EmitLoadOfLValue(E);
Mike Stump4a3999f2009-09-09 13:00:44 +0000580
Hal Finkel64567a82014-10-04 15:26:49 +0000581 Value *V = CGF.EmitCallExpr(E).getScalarVal();
582
583 EmitLValueAlignmentAssumption(E, V);
584 return V;
Chris Lattner2da04b32007-08-24 05:35:26 +0000585 }
Daniel Dunbar97db84c2008-08-23 03:46:30 +0000586
Chris Lattner04a913b2007-08-31 22:09:40 +0000587 Value *VisitStmtExpr(const StmtExpr *E);
Mike Stumpcb2fbcb2009-02-21 20:00:35 +0000588
Chris Lattner2da04b32007-08-24 05:35:26 +0000589 // Unary Operators.
Chris Lattner2da04b32007-08-24 05:35:26 +0000590 Value *VisitUnaryPostDec(const UnaryOperator *E) {
Chris Lattner05dc78c2010-06-26 22:09:34 +0000591 LValue LV = EmitLValue(E->getSubExpr());
592 return EmitScalarPrePostIncDec(E, LV, false, false);
Chris Lattner2da04b32007-08-24 05:35:26 +0000593 }
594 Value *VisitUnaryPostInc(const UnaryOperator *E) {
Chris Lattner05dc78c2010-06-26 22:09:34 +0000595 LValue LV = EmitLValue(E->getSubExpr());
596 return EmitScalarPrePostIncDec(E, LV, true, false);
Chris Lattner2da04b32007-08-24 05:35:26 +0000597 }
598 Value *VisitUnaryPreDec(const UnaryOperator *E) {
Chris Lattner05dc78c2010-06-26 22:09:34 +0000599 LValue LV = EmitLValue(E->getSubExpr());
600 return EmitScalarPrePostIncDec(E, LV, false, true);
Chris Lattner2da04b32007-08-24 05:35:26 +0000601 }
602 Value *VisitUnaryPreInc(const UnaryOperator *E) {
Chris Lattner05dc78c2010-06-26 22:09:34 +0000603 LValue LV = EmitLValue(E->getSubExpr());
604 return EmitScalarPrePostIncDec(E, LV, true, true);
Chris Lattner2da04b32007-08-24 05:35:26 +0000605 }
Chris Lattner05dc78c2010-06-26 22:09:34 +0000606
Alexey Samsonovf6246502015-04-23 01:50:45 +0000607 llvm::Value *EmitIncDecConsiderOverflowBehavior(const UnaryOperator *E,
608 llvm::Value *InVal,
609 bool IsInc);
Anton Yartsev85129b82011-02-07 02:17:30 +0000610
Chris Lattner05dc78c2010-06-26 22:09:34 +0000611 llvm::Value *EmitScalarPrePostIncDec(const UnaryOperator *E, LValue LV,
612 bool isInc, bool isPre);
613
Craig Toppera97d7e72013-07-26 06:16:11 +0000614
Chris Lattner2da04b32007-08-24 05:35:26 +0000615 Value *VisitUnaryAddrOf(const UnaryOperator *E) {
John McCallf3a88602011-02-03 08:15:49 +0000616 if (isa<MemberPointerType>(E->getType())) // never sugared
617 return CGF.CGM.getMemberPointerConstant(E);
618
John McCall7f416cc2015-09-08 08:05:57 +0000619 return EmitLValue(E->getSubExpr()).getPointer();
Chris Lattner2da04b32007-08-24 05:35:26 +0000620 }
John McCall59482722010-12-04 12:43:24 +0000621 Value *VisitUnaryDeref(const UnaryOperator *E) {
622 if (E->getType()->isVoidType())
623 return Visit(E->getSubExpr()); // the actual value should be unused
624 return EmitLoadOfLValue(E);
625 }
Chris Lattner2da04b32007-08-24 05:35:26 +0000626 Value *VisitUnaryPlus(const UnaryOperator *E) {
Mike Stumpdf0fe272009-05-29 15:46:01 +0000627 // This differs from gcc, though, most likely due to a bug in gcc.
628 TestAndClearIgnoreResultAssign();
Chris Lattner2da04b32007-08-24 05:35:26 +0000629 return Visit(E->getSubExpr());
630 }
631 Value *VisitUnaryMinus (const UnaryOperator *E);
632 Value *VisitUnaryNot (const UnaryOperator *E);
633 Value *VisitUnaryLNot (const UnaryOperator *E);
Chris Lattner9f0ad962007-08-24 21:20:17 +0000634 Value *VisitUnaryReal (const UnaryOperator *E);
635 Value *VisitUnaryImag (const UnaryOperator *E);
Chris Lattner2da04b32007-08-24 05:35:26 +0000636 Value *VisitUnaryExtension(const UnaryOperator *E) {
637 return Visit(E->getSubExpr());
638 }
Craig Toppera97d7e72013-07-26 06:16:11 +0000639
Anders Carlssona5d077d2009-04-14 16:58:56 +0000640 // C++
Douglas Gregor34f6c6d2011-08-09 00:37:14 +0000641 Value *VisitMaterializeTemporaryExpr(const MaterializeTemporaryExpr *E) {
Eli Friedman0be39702011-08-14 04:50:34 +0000642 return EmitLoadOfLValue(E);
Douglas Gregor34f6c6d2011-08-09 00:37:14 +0000643 }
Eric Fiselier708afb52019-05-16 21:04:15 +0000644 Value *VisitSourceLocExpr(SourceLocExpr *SLE) {
645 auto &Ctx = CGF.getContext();
646 APValue Evaluated =
647 SLE->EvaluateInContext(Ctx, CGF.CurSourceLocExprScope.getDefaultExpr());
648 return ConstantEmitter(CGF.CGM, &CGF)
649 .emitAbstract(SLE->getLocation(), Evaluated, SLE->getType());
650 }
Craig Toppera97d7e72013-07-26 06:16:11 +0000651
Chris Lattneraa9c7ae2008-04-08 04:40:51 +0000652 Value *VisitCXXDefaultArgExpr(CXXDefaultArgExpr *DAE) {
Eric Fiselier708afb52019-05-16 21:04:15 +0000653 CodeGenFunction::CXXDefaultArgExprScope Scope(CGF, DAE);
Chris Lattneraa9c7ae2008-04-08 04:40:51 +0000654 return Visit(DAE->getExpr());
655 }
Richard Smith852c9db2013-04-20 22:23:05 +0000656 Value *VisitCXXDefaultInitExpr(CXXDefaultInitExpr *DIE) {
Eric Fiselier708afb52019-05-16 21:04:15 +0000657 CodeGenFunction::CXXDefaultInitExprScope Scope(CGF, DIE);
Richard Smith852c9db2013-04-20 22:23:05 +0000658 return Visit(DIE->getExpr());
659 }
Anders Carlssona5d077d2009-04-14 16:58:56 +0000660 Value *VisitCXXThisExpr(CXXThisExpr *TE) {
661 return CGF.LoadCXXThis();
Mike Stump4a3999f2009-09-09 13:00:44 +0000662 }
663
Reid Kleckner092d0652017-03-06 22:18:34 +0000664 Value *VisitExprWithCleanups(ExprWithCleanups *E);
Anders Carlsson4a7b49b2009-05-31 01:40:14 +0000665 Value *VisitCXXNewExpr(const CXXNewExpr *E) {
666 return CGF.EmitCXXNewExpr(E);
667 }
Anders Carlsson81f0df92009-08-16 21:13:42 +0000668 Value *VisitCXXDeleteExpr(const CXXDeleteExpr *E) {
669 CGF.EmitCXXDeleteExpr(E);
Craig Topper8a13c412014-05-21 05:09:00 +0000670 return nullptr;
Anders Carlsson81f0df92009-08-16 21:13:42 +0000671 }
Mike Stump4a3999f2009-09-09 13:00:44 +0000672
Alp Tokercbb90342013-12-13 20:49:58 +0000673 Value *VisitTypeTraitExpr(const TypeTraitExpr *E) {
Francois Pichet34b21132010-12-08 22:35:30 +0000674 return llvm::ConstantInt::get(ConvertType(E->getType()), E->getValue());
Francois Pichet9dfa3ce2010-12-07 00:08:36 +0000675 }
676
John Wiegley6242b6a2011-04-28 00:16:57 +0000677 Value *VisitArrayTypeTraitExpr(const ArrayTypeTraitExpr *E) {
678 return llvm::ConstantInt::get(Builder.getInt32Ty(), E->getValue());
679 }
680
John Wiegleyf9f65842011-04-25 06:54:41 +0000681 Value *VisitExpressionTraitExpr(const ExpressionTraitExpr *E) {
682 return llvm::ConstantInt::get(Builder.getInt1Ty(), E->getValue());
683 }
684
Douglas Gregorad8a3362009-09-04 17:36:40 +0000685 Value *VisitCXXPseudoDestructorExpr(const CXXPseudoDestructorExpr *E) {
686 // C++ [expr.pseudo]p1:
Mike Stump4a3999f2009-09-09 13:00:44 +0000687 // The result shall only be used as the operand for the function call
Douglas Gregorad8a3362009-09-04 17:36:40 +0000688 // operator (), and the result of such a call has type void. The only
689 // effect is the evaluation of the postfix-expression before the dot or
690 // arrow.
691 CGF.EmitScalarExpr(E->getBase());
Craig Topper8a13c412014-05-21 05:09:00 +0000692 return nullptr;
Douglas Gregorad8a3362009-09-04 17:36:40 +0000693 }
Mike Stump4a3999f2009-09-09 13:00:44 +0000694
Anders Carlsson04c3bf42009-09-15 04:39:46 +0000695 Value *VisitCXXNullPtrLiteralExpr(const CXXNullPtrLiteralExpr *E) {
Anders Carlsson5b944432010-05-22 17:45:10 +0000696 return EmitNullValue(E->getType());
Anders Carlsson04c3bf42009-09-15 04:39:46 +0000697 }
Anders Carlsson4b08db72009-10-30 01:42:31 +0000698
699 Value *VisitCXXThrowExpr(const CXXThrowExpr *E) {
700 CGF.EmitCXXThrowExpr(E);
Craig Topper8a13c412014-05-21 05:09:00 +0000701 return nullptr;
Anders Carlsson4b08db72009-10-30 01:42:31 +0000702 }
703
Sebastian Redlb67655f2010-09-10 21:04:00 +0000704 Value *VisitCXXNoexceptExpr(const CXXNoexceptExpr *E) {
Chris Lattner2531eb42011-04-19 22:55:03 +0000705 return Builder.getInt1(E->getValue());
Sebastian Redlb67655f2010-09-10 21:04:00 +0000706 }
707
Chris Lattner2da04b32007-08-24 05:35:26 +0000708 // Binary Operators.
Chris Lattner2da04b32007-08-24 05:35:26 +0000709 Value *EmitMul(const BinOpInfo &Ops) {
Douglas Gregor6ab2fa82011-05-20 16:38:50 +0000710 if (Ops.Ty->isSignedIntegerOrEnumerationType()) {
Richard Smith9c6890a2012-11-01 22:30:59 +0000711 switch (CGF.getLangOpts().getSignedOverflowBehavior()) {
Chris Lattner51924e512010-06-26 21:25:03 +0000712 case LangOptions::SOB_Defined:
713 return Builder.CreateMul(Ops.LHS, Ops.RHS, "mul");
Richard Smith3e056de2012-08-25 00:32:28 +0000714 case LangOptions::SOB_Undefined:
Alexey Samsonovedf99a92014-11-07 22:29:38 +0000715 if (!CGF.SanOpts.has(SanitizerKind::SignedIntegerOverflow))
Richard Smith3e056de2012-08-25 00:32:28 +0000716 return Builder.CreateNSWMul(Ops.LHS, Ops.RHS, "mul");
Reid Kleckner4dc0b1a2018-11-01 19:54:45 +0000717 LLVM_FALLTHROUGH;
Chris Lattner51924e512010-06-26 21:25:03 +0000718 case LangOptions::SOB_Trapping:
Vedant Kumar82ee16b2017-02-25 00:43:36 +0000719 if (CanElideOverflowCheck(CGF.getContext(), Ops))
720 return Builder.CreateNSWMul(Ops.LHS, Ops.RHS, "mul");
Chris Lattner51924e512010-06-26 21:25:03 +0000721 return EmitOverflowCheckedBinOp(Ops);
722 }
723 }
Richard Smithb1b0ab42012-11-05 22:21:05 +0000724
Alexey Samsonovedf99a92014-11-07 22:29:38 +0000725 if (Ops.Ty->isUnsignedIntegerType() &&
Vedant Kumar82ee16b2017-02-25 00:43:36 +0000726 CGF.SanOpts.has(SanitizerKind::UnsignedIntegerOverflow) &&
727 !CanElideOverflowCheck(CGF.getContext(), Ops))
Will Dietz1897cb32012-11-27 15:01:55 +0000728 return EmitOverflowCheckedBinOp(Ops);
729
Adam Nemet370d0872017-04-04 21:18:30 +0000730 if (Ops.LHS->getType()->isFPOrFPVectorTy()) {
731 Value *V = Builder.CreateFMul(Ops.LHS, Ops.RHS, "mul");
732 return propagateFMFlags(V, Ops);
733 }
Chris Lattner2da04b32007-08-24 05:35:26 +0000734 return Builder.CreateMul(Ops.LHS, Ops.RHS, "mul");
735 }
Mike Stump0c61b732009-04-01 20:28:16 +0000736 /// Create a binary op that checks for overflow.
737 /// Currently only supports +, - and *.
738 Value *EmitOverflowCheckedBinOp(const BinOpInfo &Ops);
Richard Smith4d1458e2012-09-08 02:08:36 +0000739
Chris Lattner8ee6a412010-09-11 21:47:09 +0000740 // Check for undefined division and modulus behaviors.
Craig Toppera97d7e72013-07-26 06:16:11 +0000741 void EmitUndefinedBehaviorIntegerDivAndRemCheck(const BinOpInfo &Ops,
Chris Lattner8ee6a412010-09-11 21:47:09 +0000742 llvm::Value *Zero,bool isDiv);
David Tweed042e0882013-01-07 16:43:27 +0000743 // Common helper for getting how wide LHS of shift is.
744 static Value *GetWidthMinusOneValue(Value* LHS,Value* RHS);
Chris Lattner2da04b32007-08-24 05:35:26 +0000745 Value *EmitDiv(const BinOpInfo &Ops);
746 Value *EmitRem(const BinOpInfo &Ops);
747 Value *EmitAdd(const BinOpInfo &Ops);
748 Value *EmitSub(const BinOpInfo &Ops);
749 Value *EmitShl(const BinOpInfo &Ops);
750 Value *EmitShr(const BinOpInfo &Ops);
751 Value *EmitAnd(const BinOpInfo &Ops) {
752 return Builder.CreateAnd(Ops.LHS, Ops.RHS, "and");
753 }
754 Value *EmitXor(const BinOpInfo &Ops) {
755 return Builder.CreateXor(Ops.LHS, Ops.RHS, "xor");
756 }
757 Value *EmitOr (const BinOpInfo &Ops) {
758 return Builder.CreateOr(Ops.LHS, Ops.RHS, "or");
759 }
760
Leonard Chan2044ac82019-01-16 18:13:59 +0000761 // Helper functions for fixed point binary operations.
Leonard Chan837da5d2019-01-16 19:53:50 +0000762 Value *EmitFixedPointBinOp(const BinOpInfo &Ops);
Leonard Chan2044ac82019-01-16 18:13:59 +0000763
Chris Lattner3d966d62007-08-24 21:00:35 +0000764 BinOpInfo EmitBinOps(const BinaryOperator *E);
Douglas Gregor914af212010-04-23 04:16:32 +0000765 LValue EmitCompoundAssignLValue(const CompoundAssignOperator *E,
766 Value *(ScalarExprEmitter::*F)(const BinOpInfo &),
Daniel Dunbarc85ea8e2010-06-29 22:00:45 +0000767 Value *&Result);
Douglas Gregor914af212010-04-23 04:16:32 +0000768
Chris Lattnerb6334692007-08-26 21:41:21 +0000769 Value *EmitCompoundAssign(const CompoundAssignOperator *E,
Chris Lattner3d966d62007-08-24 21:00:35 +0000770 Value *(ScalarExprEmitter::*F)(const BinOpInfo &));
771
772 // Binary operators and binary compound assignment operators.
773#define HANDLEBINOP(OP) \
Chris Lattnerb6334692007-08-26 21:41:21 +0000774 Value *VisitBin ## OP(const BinaryOperator *E) { \
775 return Emit ## OP(EmitBinOps(E)); \
776 } \
777 Value *VisitBin ## OP ## Assign(const CompoundAssignOperator *E) { \
778 return EmitCompoundAssign(E, &ScalarExprEmitter::Emit ## OP); \
Chris Lattner3d966d62007-08-24 21:00:35 +0000779 }
Daniel Dunbare017ecc2009-12-19 17:50:07 +0000780 HANDLEBINOP(Mul)
781 HANDLEBINOP(Div)
782 HANDLEBINOP(Rem)
783 HANDLEBINOP(Add)
784 HANDLEBINOP(Sub)
785 HANDLEBINOP(Shl)
786 HANDLEBINOP(Shr)
787 HANDLEBINOP(And)
788 HANDLEBINOP(Xor)
789 HANDLEBINOP(Or)
Chris Lattner3d966d62007-08-24 21:00:35 +0000790#undef HANDLEBINOP
Daniel Dunbarbfb1cd72008-08-06 02:00:38 +0000791
Chris Lattner2da04b32007-08-24 05:35:26 +0000792 // Comparisons.
Craig Topperc82f8962015-12-16 06:24:28 +0000793 Value *EmitCompare(const BinaryOperator *E, llvm::CmpInst::Predicate UICmpOpc,
794 llvm::CmpInst::Predicate SICmpOpc,
795 llvm::CmpInst::Predicate FCmpOpc);
Chris Lattner2da04b32007-08-24 05:35:26 +0000796#define VISITCOMP(CODE, UI, SI, FP) \
797 Value *VisitBin##CODE(const BinaryOperator *E) { \
798 return EmitCompare(E, llvm::ICmpInst::UI, llvm::ICmpInst::SI, \
799 llvm::FCmpInst::FP); }
Daniel Dunbare017ecc2009-12-19 17:50:07 +0000800 VISITCOMP(LT, ICMP_ULT, ICMP_SLT, FCMP_OLT)
801 VISITCOMP(GT, ICMP_UGT, ICMP_SGT, FCMP_OGT)
802 VISITCOMP(LE, ICMP_ULE, ICMP_SLE, FCMP_OLE)
803 VISITCOMP(GE, ICMP_UGE, ICMP_SGE, FCMP_OGE)
804 VISITCOMP(EQ, ICMP_EQ , ICMP_EQ , FCMP_OEQ)
805 VISITCOMP(NE, ICMP_NE , ICMP_NE , FCMP_UNE)
Chris Lattner2da04b32007-08-24 05:35:26 +0000806#undef VISITCOMP
Mike Stump4a3999f2009-09-09 13:00:44 +0000807
Chris Lattner2da04b32007-08-24 05:35:26 +0000808 Value *VisitBinAssign (const BinaryOperator *E);
809
810 Value *VisitBinLAnd (const BinaryOperator *E);
811 Value *VisitBinLOr (const BinaryOperator *E);
Chris Lattner2da04b32007-08-24 05:35:26 +0000812 Value *VisitBinComma (const BinaryOperator *E);
813
Eli Friedmanacfb1df2009-11-18 09:41:26 +0000814 Value *VisitBinPtrMemD(const Expr *E) { return EmitLoadOfLValue(E); }
815 Value *VisitBinPtrMemI(const Expr *E) { return EmitLoadOfLValue(E); }
816
Chris Lattner2da04b32007-08-24 05:35:26 +0000817 // Other Operators.
Mike Stumpab3afd82009-02-12 18:29:15 +0000818 Value *VisitBlockExpr(const BlockExpr *BE);
John McCallc07a0c72011-02-17 10:25:35 +0000819 Value *VisitAbstractConditionalOperator(const AbstractConditionalOperator *);
Chris Lattner2da04b32007-08-24 05:35:26 +0000820 Value *VisitChooseExpr(ChooseExpr *CE);
Anders Carlsson7e13ab82007-10-15 20:28:48 +0000821 Value *VisitVAArgExpr(VAArgExpr *VE);
Chris Lattner2da04b32007-08-24 05:35:26 +0000822 Value *VisitObjCStringLiteral(const ObjCStringLiteral *E) {
823 return CGF.EmitObjCStringLiteral(E);
824 }
Patrick Beard0caa3942012-04-19 00:25:12 +0000825 Value *VisitObjCBoxedExpr(ObjCBoxedExpr *E) {
826 return CGF.EmitObjCBoxedExpr(E);
Ted Kremeneke65b0862012-03-06 20:05:56 +0000827 }
828 Value *VisitObjCArrayLiteral(ObjCArrayLiteral *E) {
829 return CGF.EmitObjCArrayLiteral(E);
830 }
831 Value *VisitObjCDictionaryLiteral(ObjCDictionaryLiteral *E) {
832 return CGF.EmitObjCDictionaryLiteral(E);
833 }
Tanya Lattner55808c12011-06-04 00:47:47 +0000834 Value *VisitAsTypeExpr(AsTypeExpr *CE);
Eli Friedmandf14b3a2011-10-11 02:20:01 +0000835 Value *VisitAtomicExpr(AtomicExpr *AE);
Chris Lattner2da04b32007-08-24 05:35:26 +0000836};
837} // end anonymous namespace.
838
839//===----------------------------------------------------------------------===//
840// Utilities
841//===----------------------------------------------------------------------===//
842
Chris Lattnere0044382007-08-26 16:42:57 +0000843/// EmitConversionToBool - Convert the specified expression value to a
Chris Lattner2e928882007-08-26 17:25:57 +0000844/// boolean (i1) truth value. This is equivalent to "Val != 0".
Chris Lattnere0044382007-08-26 16:42:57 +0000845Value *ScalarExprEmitter::EmitConversionToBool(Value *Src, QualType SrcType) {
John McCallb692a092009-10-22 20:10:53 +0000846 assert(SrcType.isCanonical() && "EmitScalarConversion strips typedefs");
Mike Stump4a3999f2009-09-09 13:00:44 +0000847
John McCall8cb679e2010-11-15 09:13:47 +0000848 if (SrcType->isRealFloatingType())
849 return EmitFloatToBoolConversion(Src);
Mike Stump4a3999f2009-09-09 13:00:44 +0000850
John McCall7a9aac22010-08-23 01:21:21 +0000851 if (const MemberPointerType *MPT = dyn_cast<MemberPointerType>(SrcType))
852 return CGF.CGM.getCXXABI().EmitMemberPointerIsNotNull(CGF, Src, MPT);
Mike Stump4a3999f2009-09-09 13:00:44 +0000853
Daniel Dunbaref957f32008-08-25 10:38:11 +0000854 assert((SrcType->isIntegerType() || isa<llvm::PointerType>(Src->getType())) &&
Chris Lattnere0044382007-08-26 16:42:57 +0000855 "Unknown scalar type to convert");
Mike Stump4a3999f2009-09-09 13:00:44 +0000856
John McCall8cb679e2010-11-15 09:13:47 +0000857 if (isa<llvm::IntegerType>(Src->getType()))
858 return EmitIntToBoolConversion(Src);
Mike Stump4a3999f2009-09-09 13:00:44 +0000859
John McCall8cb679e2010-11-15 09:13:47 +0000860 assert(isa<llvm::PointerType>(Src->getType()));
Yaxun Liu402804b2016-12-15 08:09:08 +0000861 return EmitPointerToBoolConversion(Src, SrcType);
Chris Lattnere0044382007-08-26 16:42:57 +0000862}
863
Filipe Cabecinhas7af183d2015-08-11 04:19:28 +0000864void ScalarExprEmitter::EmitFloatConversionCheck(
865 Value *OrigSrc, QualType OrigSrcType, Value *Src, QualType SrcType,
866 QualType DstType, llvm::Type *DstTy, SourceLocation Loc) {
Alexey Samsonov24cad992014-07-17 18:46:27 +0000867 CodeGenFunction::SanitizerScope SanScope(&CGF);
Richard Smithf9a1e4a2012-10-12 22:57:06 +0000868 using llvm::APFloat;
869 using llvm::APSInt;
870
871 llvm::Type *SrcTy = Src->getType();
872
Craig Topper8a13c412014-05-21 05:09:00 +0000873 llvm::Value *Check = nullptr;
Richard Smithf9a1e4a2012-10-12 22:57:06 +0000874 if (llvm::IntegerType *IntTy = dyn_cast<llvm::IntegerType>(SrcTy)) {
875 // Integer to floating-point. This can fail for unsigned short -> __half
876 // or unsigned __int128 -> float.
877 assert(DstType->isFloatingType());
878 bool SrcIsUnsigned = OrigSrcType->isUnsignedIntegerOrEnumerationType();
879
880 APFloat LargestFloat =
881 APFloat::getLargest(CGF.getContext().getFloatTypeSemantics(DstType));
882 APSInt LargestInt(IntTy->getBitWidth(), SrcIsUnsigned);
883
884 bool IsExact;
885 if (LargestFloat.convertToInteger(LargestInt, APFloat::rmTowardZero,
886 &IsExact) != APFloat::opOK)
887 // The range of representable values of this floating point type includes
888 // all values of this integer type. Don't need an overflow check.
889 return;
890
891 llvm::Value *Max = llvm::ConstantInt::get(VMContext, LargestInt);
892 if (SrcIsUnsigned)
893 Check = Builder.CreateICmpULE(Src, Max);
894 else {
895 llvm::Value *Min = llvm::ConstantInt::get(VMContext, -LargestInt);
896 llvm::Value *GE = Builder.CreateICmpSGE(Src, Min);
897 llvm::Value *LE = Builder.CreateICmpSLE(Src, Max);
898 Check = Builder.CreateAnd(GE, LE);
899 }
900 } else {
Richard Smithf9a1e4a2012-10-12 22:57:06 +0000901 const llvm::fltSemantics &SrcSema =
902 CGF.getContext().getFloatTypeSemantics(OrigSrcType);
Richard Smithf9a1e4a2012-10-12 22:57:06 +0000903 if (isa<llvm::IntegerType>(DstTy)) {
Richard Smith2b01d502013-03-27 23:20:25 +0000904 // Floating-point to integer. This has undefined behavior if the source is
905 // +-Inf, NaN, or doesn't fit into the destination type (after truncation
906 // to an integer).
Richard Smithf9a1e4a2012-10-12 22:57:06 +0000907 unsigned Width = CGF.getContext().getIntWidth(DstType);
908 bool Unsigned = DstType->isUnsignedIntegerOrEnumerationType();
909
910 APSInt Min = APSInt::getMinValue(Width, Unsigned);
Richard Smith2b01d502013-03-27 23:20:25 +0000911 APFloat MinSrc(SrcSema, APFloat::uninitialized);
Richard Smithf9a1e4a2012-10-12 22:57:06 +0000912 if (MinSrc.convertFromAPInt(Min, !Unsigned, APFloat::rmTowardZero) &
913 APFloat::opOverflow)
914 // Don't need an overflow check for lower bound. Just check for
915 // -Inf/NaN.
Richard Smith4af40c42013-03-19 00:01:12 +0000916 MinSrc = APFloat::getInf(SrcSema, true);
917 else
918 // Find the largest value which is too small to represent (before
919 // truncation toward zero).
920 MinSrc.subtract(APFloat(SrcSema, 1), APFloat::rmTowardNegative);
Richard Smithf9a1e4a2012-10-12 22:57:06 +0000921
922 APSInt Max = APSInt::getMaxValue(Width, Unsigned);
Richard Smith2b01d502013-03-27 23:20:25 +0000923 APFloat MaxSrc(SrcSema, APFloat::uninitialized);
Richard Smithf9a1e4a2012-10-12 22:57:06 +0000924 if (MaxSrc.convertFromAPInt(Max, !Unsigned, APFloat::rmTowardZero) &
925 APFloat::opOverflow)
926 // Don't need an overflow check for upper bound. Just check for
927 // +Inf/NaN.
Richard Smith4af40c42013-03-19 00:01:12 +0000928 MaxSrc = APFloat::getInf(SrcSema, false);
929 else
930 // Find the smallest value which is too large to represent (before
931 // truncation toward zero).
932 MaxSrc.add(APFloat(SrcSema, 1), APFloat::rmTowardPositive);
Richard Smithf9a1e4a2012-10-12 22:57:06 +0000933
Richard Smith2b01d502013-03-27 23:20:25 +0000934 // If we're converting from __half, convert the range to float to match
935 // the type of src.
936 if (OrigSrcType->isHalfType()) {
937 const llvm::fltSemantics &Sema =
938 CGF.getContext().getFloatTypeSemantics(SrcType);
939 bool IsInexact;
940 MinSrc.convert(Sema, APFloat::rmTowardZero, &IsInexact);
941 MaxSrc.convert(Sema, APFloat::rmTowardZero, &IsInexact);
942 }
Richard Smithf9a1e4a2012-10-12 22:57:06 +0000943
Richard Smith4af40c42013-03-19 00:01:12 +0000944 llvm::Value *GE =
945 Builder.CreateFCmpOGT(Src, llvm::ConstantFP::get(VMContext, MinSrc));
946 llvm::Value *LE =
947 Builder.CreateFCmpOLT(Src, llvm::ConstantFP::get(VMContext, MaxSrc));
948 Check = Builder.CreateAnd(GE, LE);
949 } else {
Richard Smith2b01d502013-03-27 23:20:25 +0000950 // FIXME: Maybe split this sanitizer out from float-cast-overflow.
951 //
952 // Floating-point to floating-point. This has undefined behavior if the
953 // source is not in the range of representable values of the destination
954 // type. The C and C++ standards are spectacularly unclear here. We
955 // diagnose finite out-of-range conversions, but allow infinities and NaNs
956 // to convert to the corresponding value in the smaller type.
957 //
958 // C11 Annex F gives all such conversions defined behavior for IEC 60559
959 // conforming implementations. Unfortunately, LLVM's fptrunc instruction
960 // does not.
961
962 // Converting from a lower rank to a higher rank can never have
963 // undefined behavior, since higher-rank types must have a superset
964 // of values of lower-rank types.
965 if (CGF.getContext().getFloatingTypeOrder(OrigSrcType, DstType) != 1)
966 return;
967
968 assert(!OrigSrcType->isHalfType() &&
969 "should not check conversion from __half, it has the lowest rank");
970
971 const llvm::fltSemantics &DstSema =
972 CGF.getContext().getFloatTypeSemantics(DstType);
973 APFloat MinBad = APFloat::getLargest(DstSema, false);
974 APFloat MaxBad = APFloat::getInf(DstSema, false);
975
976 bool IsInexact;
977 MinBad.convert(SrcSema, APFloat::rmTowardZero, &IsInexact);
978 MaxBad.convert(SrcSema, APFloat::rmTowardZero, &IsInexact);
979
980 Value *AbsSrc = CGF.EmitNounwindRuntimeCall(
981 CGF.CGM.getIntrinsic(llvm::Intrinsic::fabs, Src->getType()), Src);
Richard Smith4af40c42013-03-19 00:01:12 +0000982 llvm::Value *GE =
Richard Smith2b01d502013-03-27 23:20:25 +0000983 Builder.CreateFCmpOGT(AbsSrc, llvm::ConstantFP::get(VMContext, MinBad));
Richard Smith4af40c42013-03-19 00:01:12 +0000984 llvm::Value *LE =
Richard Smith2b01d502013-03-27 23:20:25 +0000985 Builder.CreateFCmpOLT(AbsSrc, llvm::ConstantFP::get(VMContext, MaxBad));
986 Check = Builder.CreateNot(Builder.CreateAnd(GE, LE));
Richard Smith4af40c42013-03-19 00:01:12 +0000987 }
Richard Smithf9a1e4a2012-10-12 22:57:06 +0000988 }
989
Filipe Cabecinhas7af183d2015-08-11 04:19:28 +0000990 llvm::Constant *StaticArgs[] = {CGF.EmitCheckSourceLocation(Loc),
991 CGF.EmitCheckTypeDescriptor(OrigSrcType),
992 CGF.EmitCheckTypeDescriptor(DstType)};
Alexey Samsonove396bfc2014-11-11 22:03:54 +0000993 CGF.EmitCheck(std::make_pair(Check, SanitizerKind::FloatCastOverflow),
Filipe Cabecinhas322ecd92016-12-12 16:18:40 +0000994 SanitizerHandler::FloatCastOverflow, StaticArgs, OrigSrc);
Richard Smithf9a1e4a2012-10-12 22:57:06 +0000995}
996
Roman Lebedev62debd802018-10-30 21:58:56 +0000997// Should be called within CodeGenFunction::SanitizerScope RAII scope.
998// Returns 'i1 false' when the truncation Src -> Dst was lossy.
999static std::pair<ScalarExprEmitter::ImplicitConversionCheckKind,
1000 std::pair<llvm::Value *, SanitizerMask>>
1001EmitIntegerTruncationCheckHelper(Value *Src, QualType SrcType, Value *Dst,
1002 QualType DstType, CGBuilderTy &Builder) {
1003 llvm::Type *SrcTy = Src->getType();
1004 llvm::Type *DstTy = Dst->getType();
Richard Trieu161121f2018-10-30 23:01:15 +00001005 (void)DstTy; // Only used in assert()
Roman Lebedev62debd802018-10-30 21:58:56 +00001006
1007 // This should be truncation of integral types.
1008 assert(Src != Dst);
1009 assert(SrcTy->getScalarSizeInBits() > Dst->getType()->getScalarSizeInBits());
1010 assert(isa<llvm::IntegerType>(SrcTy) && isa<llvm::IntegerType>(DstTy) &&
1011 "non-integer llvm type");
1012
1013 bool SrcSigned = SrcType->isSignedIntegerOrEnumerationType();
1014 bool DstSigned = DstType->isSignedIntegerOrEnumerationType();
1015
1016 // If both (src and dst) types are unsigned, then it's an unsigned truncation.
1017 // Else, it is a signed truncation.
1018 ScalarExprEmitter::ImplicitConversionCheckKind Kind;
1019 SanitizerMask Mask;
1020 if (!SrcSigned && !DstSigned) {
1021 Kind = ScalarExprEmitter::ICCK_UnsignedIntegerTruncation;
1022 Mask = SanitizerKind::ImplicitUnsignedIntegerTruncation;
1023 } else {
1024 Kind = ScalarExprEmitter::ICCK_SignedIntegerTruncation;
1025 Mask = SanitizerKind::ImplicitSignedIntegerTruncation;
1026 }
1027
1028 llvm::Value *Check = nullptr;
1029 // 1. Extend the truncated value back to the same width as the Src.
1030 Check = Builder.CreateIntCast(Dst, SrcTy, DstSigned, "anyext");
1031 // 2. Equality-compare with the original source value
1032 Check = Builder.CreateICmpEQ(Check, Src, "truncheck");
1033 // If the comparison result is 'i1 false', then the truncation was lossy.
1034 return std::make_pair(Kind, std::make_pair(Check, Mask));
1035}
1036
Roman Lebedevb69ba222018-07-30 18:58:30 +00001037void ScalarExprEmitter::EmitIntegerTruncationCheck(Value *Src, QualType SrcType,
1038 Value *Dst, QualType DstType,
1039 SourceLocation Loc) {
Roman Lebedevdd403572018-10-11 09:09:50 +00001040 if (!CGF.SanOpts.hasOneOf(SanitizerKind::ImplicitIntegerTruncation))
Roman Lebedevb69ba222018-07-30 18:58:30 +00001041 return;
1042
Roman Lebedev62debd802018-10-30 21:58:56 +00001043 // We only care about int->int conversions here.
1044 // We ignore conversions to/from pointer and/or bool.
1045 if (!(SrcType->isIntegerType() && DstType->isIntegerType()))
1046 return;
1047
1048 unsigned SrcBits = Src->getType()->getScalarSizeInBits();
1049 unsigned DstBits = Dst->getType()->getScalarSizeInBits();
1050 // This must be truncation. Else we do not care.
1051 if (SrcBits <= DstBits)
1052 return;
1053
1054 assert(!DstType->isBooleanType() && "we should not get here with booleans.");
1055
1056 // If the integer sign change sanitizer is enabled,
1057 // and we are truncating from larger unsigned type to smaller signed type,
1058 // let that next sanitizer deal with it.
1059 bool SrcSigned = SrcType->isSignedIntegerOrEnumerationType();
1060 bool DstSigned = DstType->isSignedIntegerOrEnumerationType();
1061 if (CGF.SanOpts.has(SanitizerKind::ImplicitIntegerSignChange) &&
1062 (!SrcSigned && DstSigned))
1063 return;
1064
1065 CodeGenFunction::SanitizerScope SanScope(&CGF);
1066
1067 std::pair<ScalarExprEmitter::ImplicitConversionCheckKind,
1068 std::pair<llvm::Value *, SanitizerMask>>
1069 Check =
1070 EmitIntegerTruncationCheckHelper(Src, SrcType, Dst, DstType, Builder);
1071 // If the comparison result is 'i1 false', then the truncation was lossy.
1072
1073 // Do we care about this type of truncation?
1074 if (!CGF.SanOpts.has(Check.second.second))
1075 return;
1076
1077 llvm::Constant *StaticArgs[] = {
1078 CGF.EmitCheckSourceLocation(Loc), CGF.EmitCheckTypeDescriptor(SrcType),
1079 CGF.EmitCheckTypeDescriptor(DstType),
1080 llvm::ConstantInt::get(Builder.getInt8Ty(), Check.first)};
1081 CGF.EmitCheck(Check.second, SanitizerHandler::ImplicitConversion, StaticArgs,
1082 {Src, Dst});
1083}
1084
1085// Should be called within CodeGenFunction::SanitizerScope RAII scope.
1086// Returns 'i1 false' when the conversion Src -> Dst changed the sign.
1087static std::pair<ScalarExprEmitter::ImplicitConversionCheckKind,
1088 std::pair<llvm::Value *, SanitizerMask>>
1089EmitIntegerSignChangeCheckHelper(Value *Src, QualType SrcType, Value *Dst,
1090 QualType DstType, CGBuilderTy &Builder) {
1091 llvm::Type *SrcTy = Src->getType();
1092 llvm::Type *DstTy = Dst->getType();
1093
1094 assert(isa<llvm::IntegerType>(SrcTy) && isa<llvm::IntegerType>(DstTy) &&
1095 "non-integer llvm type");
1096
1097 bool SrcSigned = SrcType->isSignedIntegerOrEnumerationType();
1098 bool DstSigned = DstType->isSignedIntegerOrEnumerationType();
Richard Trieu161121f2018-10-30 23:01:15 +00001099 (void)SrcSigned; // Only used in assert()
1100 (void)DstSigned; // Only used in assert()
Roman Lebedev62debd802018-10-30 21:58:56 +00001101 unsigned SrcBits = SrcTy->getScalarSizeInBits();
1102 unsigned DstBits = DstTy->getScalarSizeInBits();
1103 (void)SrcBits; // Only used in assert()
1104 (void)DstBits; // Only used in assert()
1105
1106 assert(((SrcBits != DstBits) || (SrcSigned != DstSigned)) &&
1107 "either the widths should be different, or the signednesses.");
1108
1109 // NOTE: zero value is considered to be non-negative.
1110 auto EmitIsNegativeTest = [&Builder](Value *V, QualType VType,
1111 const char *Name) -> Value * {
1112 // Is this value a signed type?
1113 bool VSigned = VType->isSignedIntegerOrEnumerationType();
1114 llvm::Type *VTy = V->getType();
1115 if (!VSigned) {
1116 // If the value is unsigned, then it is never negative.
1117 // FIXME: can we encounter non-scalar VTy here?
1118 return llvm::ConstantInt::getFalse(VTy->getContext());
1119 }
1120 // Get the zero of the same type with which we will be comparing.
1121 llvm::Constant *Zero = llvm::ConstantInt::get(VTy, 0);
1122 // %V.isnegative = icmp slt %V, 0
1123 // I.e is %V *strictly* less than zero, does it have negative value?
1124 return Builder.CreateICmp(llvm::ICmpInst::ICMP_SLT, V, Zero,
1125 llvm::Twine(Name) + "." + V->getName() +
1126 ".negativitycheck");
1127 };
1128
1129 // 1. Was the old Value negative?
1130 llvm::Value *SrcIsNegative = EmitIsNegativeTest(Src, SrcType, "src");
1131 // 2. Is the new Value negative?
1132 llvm::Value *DstIsNegative = EmitIsNegativeTest(Dst, DstType, "dst");
1133 // 3. Now, was the 'negativity status' preserved during the conversion?
1134 // NOTE: conversion from negative to zero is considered to change the sign.
1135 // (We want to get 'false' when the conversion changed the sign)
1136 // So we should just equality-compare the negativity statuses.
1137 llvm::Value *Check = nullptr;
1138 Check = Builder.CreateICmpEQ(SrcIsNegative, DstIsNegative, "signchangecheck");
1139 // If the comparison result is 'false', then the conversion changed the sign.
1140 return std::make_pair(
1141 ScalarExprEmitter::ICCK_IntegerSignChange,
1142 std::make_pair(Check, SanitizerKind::ImplicitIntegerSignChange));
1143}
1144
1145void ScalarExprEmitter::EmitIntegerSignChangeCheck(Value *Src, QualType SrcType,
1146 Value *Dst, QualType DstType,
1147 SourceLocation Loc) {
1148 if (!CGF.SanOpts.has(SanitizerKind::ImplicitIntegerSignChange))
1149 return;
1150
Roman Lebedevb69ba222018-07-30 18:58:30 +00001151 llvm::Type *SrcTy = Src->getType();
1152 llvm::Type *DstTy = Dst->getType();
1153
1154 // We only care about int->int conversions here.
1155 // We ignore conversions to/from pointer and/or bool.
1156 if (!(SrcType->isIntegerType() && DstType->isIntegerType()))
1157 return;
1158
Roman Lebedevdd403572018-10-11 09:09:50 +00001159 bool SrcSigned = SrcType->isSignedIntegerOrEnumerationType();
1160 bool DstSigned = DstType->isSignedIntegerOrEnumerationType();
Roman Lebedev62debd802018-10-30 21:58:56 +00001161 unsigned SrcBits = SrcTy->getScalarSizeInBits();
1162 unsigned DstBits = DstTy->getScalarSizeInBits();
Roman Lebedevdd403572018-10-11 09:09:50 +00001163
Roman Lebedev62debd802018-10-30 21:58:56 +00001164 // Now, we do not need to emit the check in *all* of the cases.
1165 // We can avoid emitting it in some obvious cases where it would have been
1166 // dropped by the opt passes (instcombine) always anyways.
Roman Lebedev1bb9aea2018-11-01 08:56:51 +00001167 // If it's a cast between effectively the same type, no check.
1168 // NOTE: this is *not* equivalent to checking the canonical types.
1169 if (SrcSigned == DstSigned && SrcBits == DstBits)
Roman Lebedevdd403572018-10-11 09:09:50 +00001170 return;
Roman Lebedev62debd802018-10-30 21:58:56 +00001171 // At least one of the values needs to have signed type.
1172 // If both are unsigned, then obviously, neither of them can be negative.
1173 if (!SrcSigned && !DstSigned)
1174 return;
1175 // If the conversion is to *larger* *signed* type, then no check is needed.
1176 // Because either sign-extension happens (so the sign will remain),
1177 // or zero-extension will happen (the sign bit will be zero.)
1178 if ((DstBits > SrcBits) && DstSigned)
1179 return;
1180 if (CGF.SanOpts.has(SanitizerKind::ImplicitSignedIntegerTruncation) &&
1181 (SrcBits > DstBits) && SrcSigned) {
1182 // If the signed integer truncation sanitizer is enabled,
1183 // and this is a truncation from signed type, then no check is needed.
1184 // Because here sign change check is interchangeable with truncation check.
1185 return;
1186 }
1187 // That's it. We can't rule out any more cases with the data we have.
Roman Lebedevdd403572018-10-11 09:09:50 +00001188
Roman Lebedevb69ba222018-07-30 18:58:30 +00001189 CodeGenFunction::SanitizerScope SanScope(&CGF);
1190
Roman Lebedev62debd802018-10-30 21:58:56 +00001191 std::pair<ScalarExprEmitter::ImplicitConversionCheckKind,
1192 std::pair<llvm::Value *, SanitizerMask>>
1193 Check;
Roman Lebedevb69ba222018-07-30 18:58:30 +00001194
Roman Lebedev62debd802018-10-30 21:58:56 +00001195 // Each of these checks needs to return 'false' when an issue was detected.
1196 ImplicitConversionCheckKind CheckKind;
1197 llvm::SmallVector<std::pair<llvm::Value *, SanitizerMask>, 2> Checks;
1198 // So we can 'and' all the checks together, and still get 'false',
1199 // if at least one of the checks detected an issue.
1200
1201 Check = EmitIntegerSignChangeCheckHelper(Src, SrcType, Dst, DstType, Builder);
1202 CheckKind = Check.first;
1203 Checks.emplace_back(Check.second);
1204
1205 if (CGF.SanOpts.has(SanitizerKind::ImplicitSignedIntegerTruncation) &&
1206 (SrcBits > DstBits) && !SrcSigned && DstSigned) {
1207 // If the signed integer truncation sanitizer was enabled,
1208 // and we are truncating from larger unsigned type to smaller signed type,
1209 // let's handle the case we skipped in that check.
1210 Check =
1211 EmitIntegerTruncationCheckHelper(Src, SrcType, Dst, DstType, Builder);
1212 CheckKind = ICCK_SignedIntegerTruncationOrSignChange;
1213 Checks.emplace_back(Check.second);
1214 // If the comparison result is 'i1 false', then the truncation was lossy.
1215 }
Roman Lebedevb69ba222018-07-30 18:58:30 +00001216
1217 llvm::Constant *StaticArgs[] = {
1218 CGF.EmitCheckSourceLocation(Loc), CGF.EmitCheckTypeDescriptor(SrcType),
1219 CGF.EmitCheckTypeDescriptor(DstType),
Roman Lebedev62debd802018-10-30 21:58:56 +00001220 llvm::ConstantInt::get(Builder.getInt8Ty(), CheckKind)};
1221 // EmitCheck() will 'and' all the checks together.
1222 CGF.EmitCheck(Checks, SanitizerHandler::ImplicitConversion, StaticArgs,
1223 {Src, Dst});
Roman Lebedevb69ba222018-07-30 18:58:30 +00001224}
1225
Filipe Cabecinhas650d7f72015-08-05 06:19:26 +00001226/// Emit a conversion from the specified type to the specified destination type,
1227/// both of which are LLVM scalar types.
Chris Lattner42e6b812007-08-26 16:34:22 +00001228Value *ScalarExprEmitter::EmitScalarConversion(Value *Src, QualType SrcType,
Filipe Cabecinhas7af183d2015-08-11 04:19:28 +00001229 QualType DstType,
Anastasia Stulovab02e7832015-10-05 11:27:41 +00001230 SourceLocation Loc,
Roman Lebedevb69ba222018-07-30 18:58:30 +00001231 ScalarConversionOpts Opts) {
Leonard Chanb4ba4672018-10-23 17:55:35 +00001232 // All conversions involving fixed point types should be handled by the
1233 // EmitFixedPoint family functions. This is done to prevent bloating up this
1234 // function more, and although fixed point numbers are represented by
1235 // integers, we do not want to follow any logic that assumes they should be
1236 // treated as integers.
1237 // TODO(leonardchan): When necessary, add another if statement checking for
1238 // conversions to fixed point types from other types.
1239 if (SrcType->isFixedPointType()) {
Leonard Chan8f7caae2019-03-06 00:28:43 +00001240 if (DstType->isBooleanType())
1241 // It is important that we check this before checking if the dest type is
1242 // an integer because booleans are technically integer types.
Leonard Chanb4ba4672018-10-23 17:55:35 +00001243 // We do not need to check the padding bit on unsigned types if unsigned
1244 // padding is enabled because overflow into this bit is undefined
1245 // behavior.
Bjorn Petterssonb2534022018-10-26 16:12:12 +00001246 return Builder.CreateIsNotNull(Src, "tobool");
Leonard Chan8f7caae2019-03-06 00:28:43 +00001247 if (DstType->isFixedPointType() || DstType->isIntegerType())
1248 return EmitFixedPointConversion(Src, SrcType, DstType, Loc);
Leonard Chanb4ba4672018-10-23 17:55:35 +00001249
1250 llvm_unreachable(
Leonard Chan8f7caae2019-03-06 00:28:43 +00001251 "Unhandled scalar conversion from a fixed point type to another type.");
1252 } else if (DstType->isFixedPointType()) {
1253 if (SrcType->isIntegerType())
1254 // This also includes converting booleans and enums to fixed point types.
1255 return EmitFixedPointConversion(Src, SrcType, DstType, Loc);
1256
1257 llvm_unreachable(
1258 "Unhandled scalar conversion to a fixed point type from another type.");
Leonard Chanb4ba4672018-10-23 17:55:35 +00001259 }
Leonard Chan99bda372018-10-15 16:07:02 +00001260
Roman Lebedevb69ba222018-07-30 18:58:30 +00001261 QualType NoncanonicalSrcType = SrcType;
1262 QualType NoncanonicalDstType = DstType;
1263
Chris Lattner0f398c42008-07-26 22:37:01 +00001264 SrcType = CGF.getContext().getCanonicalType(SrcType);
1265 DstType = CGF.getContext().getCanonicalType(DstType);
Chris Lattner3474c202007-08-26 06:48:56 +00001266 if (SrcType == DstType) return Src;
Mike Stump4a3999f2009-09-09 13:00:44 +00001267
Craig Topper8a13c412014-05-21 05:09:00 +00001268 if (DstType->isVoidType()) return nullptr;
Mike Stump4a3999f2009-09-09 13:00:44 +00001269
Richard Smithf9a1e4a2012-10-12 22:57:06 +00001270 llvm::Value *OrigSrc = Src;
1271 QualType OrigSrcType = SrcType;
Anton Korobeynikovf0c267e2011-10-14 23:23:15 +00001272 llvm::Type *SrcTy = Src->getType();
1273
Ahmed Bougacha47ec2c72015-03-23 17:48:07 +00001274 // Handle conversions to bool first, they are special: comparisons against 0.
1275 if (DstType->isBooleanType())
1276 return EmitConversionToBool(Src, SrcType);
1277
1278 llvm::Type *DstTy = ConvertType(DstType);
1279
Ahmed Bougachad1801af2015-03-23 17:54:16 +00001280 // Cast from half through float if half isn't a native type.
1281 if (SrcType->isHalfType() && !CGF.getContext().getLangOpts().NativeHalfType) {
1282 // Cast to FP using the intrinsic if the half type itself isn't supported.
1283 if (DstTy->isFloatingPointTy()) {
Akira Hatanaka502775a2017-12-09 00:02:37 +00001284 if (CGF.getContext().getTargetInfo().useFP16ConversionIntrinsics())
Ahmed Bougachad1801af2015-03-23 17:54:16 +00001285 return Builder.CreateCall(
1286 CGF.CGM.getIntrinsic(llvm::Intrinsic::convert_from_fp16, DstTy),
1287 Src);
1288 } else {
1289 // Cast to other types through float, using either the intrinsic or FPExt,
1290 // depending on whether the half type itself is supported
1291 // (as opposed to operations on half, available with NativeHalfType).
Akira Hatanaka502775a2017-12-09 00:02:37 +00001292 if (CGF.getContext().getTargetInfo().useFP16ConversionIntrinsics()) {
Ahmed Bougachad1801af2015-03-23 17:54:16 +00001293 Src = Builder.CreateCall(
1294 CGF.CGM.getIntrinsic(llvm::Intrinsic::convert_from_fp16,
1295 CGF.CGM.FloatTy),
1296 Src);
1297 } else {
1298 Src = Builder.CreateFPExt(Src, CGF.CGM.FloatTy, "conv");
1299 }
1300 SrcType = CGF.getContext().FloatTy;
1301 SrcTy = CGF.FloatTy;
1302 }
Anton Korobeynikovf0c267e2011-10-14 23:23:15 +00001303 }
1304
Chris Lattner3474c202007-08-26 06:48:56 +00001305 // Ignore conversions like int -> uint.
Roman Lebedev62debd802018-10-30 21:58:56 +00001306 if (SrcTy == DstTy) {
1307 if (Opts.EmitImplicitIntegerSignChangeChecks)
1308 EmitIntegerSignChangeCheck(Src, NoncanonicalSrcType, Src,
1309 NoncanonicalDstType, Loc);
1310
Chris Lattner3474c202007-08-26 06:48:56 +00001311 return Src;
Roman Lebedev62debd802018-10-30 21:58:56 +00001312 }
Chris Lattner3474c202007-08-26 06:48:56 +00001313
Mike Stump4a3999f2009-09-09 13:00:44 +00001314 // Handle pointer conversions next: pointers can only be converted to/from
1315 // other pointers and integers. Check for pointer types in terms of LLVM, as
1316 // some native types (like Obj-C id) may map to a pointer type.
Yaxun Liu26f75662016-08-19 05:17:25 +00001317 if (auto DstPT = dyn_cast<llvm::PointerType>(DstTy)) {
Chris Lattner3474c202007-08-26 06:48:56 +00001318 // The source value may be an integer, or a pointer.
Anton Korobeynikovf0c267e2011-10-14 23:23:15 +00001319 if (isa<llvm::PointerType>(SrcTy))
Chris Lattner3474c202007-08-26 06:48:56 +00001320 return Builder.CreateBitCast(Src, DstTy, "conv");
Anders Carlsson12f5a252009-09-12 04:57:16 +00001321
Chris Lattner3474c202007-08-26 06:48:56 +00001322 assert(SrcType->isIntegerType() && "Not ptr->ptr or int->ptr conversion?");
Eli Friedman42d2a3a2009-03-04 04:02:35 +00001323 // First, convert to the correct width so that we control the kind of
1324 // extension.
Yaxun Liu26f75662016-08-19 05:17:25 +00001325 llvm::Type *MiddleTy = CGF.CGM.getDataLayout().getIntPtrType(DstPT);
Douglas Gregor6ab2fa82011-05-20 16:38:50 +00001326 bool InputSigned = SrcType->isSignedIntegerOrEnumerationType();
Eli Friedman42d2a3a2009-03-04 04:02:35 +00001327 llvm::Value* IntResult =
1328 Builder.CreateIntCast(Src, MiddleTy, InputSigned, "conv");
1329 // Then, cast to pointer.
1330 return Builder.CreateIntToPtr(IntResult, DstTy, "conv");
Chris Lattner3474c202007-08-26 06:48:56 +00001331 }
Mike Stump4a3999f2009-09-09 13:00:44 +00001332
Anton Korobeynikovf0c267e2011-10-14 23:23:15 +00001333 if (isa<llvm::PointerType>(SrcTy)) {
Chris Lattner3474c202007-08-26 06:48:56 +00001334 // Must be an ptr to int cast.
1335 assert(isa<llvm::IntegerType>(DstTy) && "not ptr->int?");
Anders Carlssone89b84a2007-10-31 23:18:02 +00001336 return Builder.CreatePtrToInt(Src, DstTy, "conv");
Chris Lattner3474c202007-08-26 06:48:56 +00001337 }
Mike Stump4a3999f2009-09-09 13:00:44 +00001338
Nate Begemance4d7fc2008-04-18 23:10:10 +00001339 // A scalar can be splatted to an extended vector of the same element type
Nate Begeman5ec4b312009-08-10 23:49:36 +00001340 if (DstType->isExtVectorType() && !SrcType->isVectorType()) {
George Burgess IVdf1ed002016-01-13 01:52:39 +00001341 // Sema should add casts to make sure that the source expression's type is
1342 // the same as the vector's element type (sans qualifiers)
1343 assert(DstType->castAs<ExtVectorType>()->getElementType().getTypePtr() ==
1344 SrcType.getTypePtr() &&
1345 "Splatted expr doesn't match with vector element type?");
Nate Begemanb699c9b2009-01-18 06:42:49 +00001346
Nate Begemanb699c9b2009-01-18 06:42:49 +00001347 // Splat the element across to all elements
Craig Topperf2f1a092016-07-08 02:17:35 +00001348 unsigned NumElements = DstTy->getVectorNumElements();
George Burgess IVdf1ed002016-01-13 01:52:39 +00001349 return Builder.CreateVectorSplat(NumElements, Src, "splat");
Nate Begemanb699c9b2009-01-18 06:42:49 +00001350 }
Nate Begeman330aaa72007-12-30 02:59:45 +00001351
Akira Hatanaka34b5dbc2017-09-23 05:02:02 +00001352 if (isa<llvm::VectorType>(SrcTy) || isa<llvm::VectorType>(DstTy)) {
1353 // Allow bitcast from vector to integer/fp of the same size.
1354 unsigned SrcSize = SrcTy->getPrimitiveSizeInBits();
1355 unsigned DstSize = DstTy->getPrimitiveSizeInBits();
1356 if (SrcSize == DstSize)
1357 return Builder.CreateBitCast(Src, DstTy, "conv");
1358
1359 // Conversions between vectors of different sizes are not allowed except
1360 // when vectors of half are involved. Operations on storage-only half
1361 // vectors require promoting half vector operands to float vectors and
1362 // truncating the result, which is either an int or float vector, to a
1363 // short or half vector.
1364
1365 // Source and destination are both expected to be vectors.
1366 llvm::Type *SrcElementTy = SrcTy->getVectorElementType();
1367 llvm::Type *DstElementTy = DstTy->getVectorElementType();
Benjamin Kramer5c42bcc2017-09-23 16:08:48 +00001368 (void)DstElementTy;
Akira Hatanaka34b5dbc2017-09-23 05:02:02 +00001369
1370 assert(((SrcElementTy->isIntegerTy() &&
1371 DstElementTy->isIntegerTy()) ||
1372 (SrcElementTy->isFloatingPointTy() &&
1373 DstElementTy->isFloatingPointTy())) &&
1374 "unexpected conversion between a floating-point vector and an "
1375 "integer vector");
1376
1377 // Truncate an i32 vector to an i16 vector.
1378 if (SrcElementTy->isIntegerTy())
1379 return Builder.CreateIntCast(Src, DstTy, false, "conv");
1380
1381 // Truncate a float vector to a half vector.
1382 if (SrcSize > DstSize)
1383 return Builder.CreateFPTrunc(Src, DstTy, "conv");
1384
1385 // Promote a half vector to a float vector.
1386 return Builder.CreateFPExt(Src, DstTy, "conv");
1387 }
Mike Stump4a3999f2009-09-09 13:00:44 +00001388
Chris Lattner3474c202007-08-26 06:48:56 +00001389 // Finally, we have the arithmetic types: real int/float.
Craig Topper8a13c412014-05-21 05:09:00 +00001390 Value *Res = nullptr;
Anton Korobeynikovf0c267e2011-10-14 23:23:15 +00001391 llvm::Type *ResTy = DstTy;
1392
Richard Smithf9a1e4a2012-10-12 22:57:06 +00001393 // An overflowing conversion has undefined behavior if either the source type
1394 // or the destination type is a floating-point type.
Alexey Samsonovedf99a92014-11-07 22:29:38 +00001395 if (CGF.SanOpts.has(SanitizerKind::FloatCastOverflow) &&
Richard Smithf9a1e4a2012-10-12 22:57:06 +00001396 (OrigSrcType->isFloatingType() || DstType->isFloatingType()))
Filipe Cabecinhas7af183d2015-08-11 04:19:28 +00001397 EmitFloatConversionCheck(OrigSrc, OrigSrcType, Src, SrcType, DstType, DstTy,
1398 Loc);
Richard Smithf9a1e4a2012-10-12 22:57:06 +00001399
Ahmed Bougachad1801af2015-03-23 17:54:16 +00001400 // Cast to half through float if half isn't a native type.
1401 if (DstType->isHalfType() && !CGF.getContext().getLangOpts().NativeHalfType) {
1402 // Make sure we cast in a single step if from another FP type.
1403 if (SrcTy->isFloatingPointTy()) {
1404 // Use the intrinsic if the half type itself isn't supported
1405 // (as opposed to operations on half, available with NativeHalfType).
Akira Hatanaka502775a2017-12-09 00:02:37 +00001406 if (CGF.getContext().getTargetInfo().useFP16ConversionIntrinsics())
Ahmed Bougachad1801af2015-03-23 17:54:16 +00001407 return Builder.CreateCall(
1408 CGF.CGM.getIntrinsic(llvm::Intrinsic::convert_to_fp16, SrcTy), Src);
1409 // If the half type is supported, just use an fptrunc.
1410 return Builder.CreateFPTrunc(Src, DstTy);
1411 }
Chris Lattnerece04092012-02-07 00:39:47 +00001412 DstTy = CGF.FloatTy;
Ahmed Bougacha47ec2c72015-03-23 17:48:07 +00001413 }
Anton Korobeynikovf0c267e2011-10-14 23:23:15 +00001414
1415 if (isa<llvm::IntegerType>(SrcTy)) {
Douglas Gregor6ab2fa82011-05-20 16:38:50 +00001416 bool InputSigned = SrcType->isSignedIntegerOrEnumerationType();
Roman Lebedevb69ba222018-07-30 18:58:30 +00001417 if (SrcType->isBooleanType() && Opts.TreatBooleanAsSigned) {
Anastasia Stulovab02e7832015-10-05 11:27:41 +00001418 InputSigned = true;
1419 }
Anders Carlssonc9d41e72007-12-26 18:20:19 +00001420 if (isa<llvm::IntegerType>(DstTy))
Anton Korobeynikovf0c267e2011-10-14 23:23:15 +00001421 Res = Builder.CreateIntCast(Src, DstTy, InputSigned, "conv");
Anders Carlssonc9d41e72007-12-26 18:20:19 +00001422 else if (InputSigned)
Anton Korobeynikovf0c267e2011-10-14 23:23:15 +00001423 Res = Builder.CreateSIToFP(Src, DstTy, "conv");
Anders Carlssonc9d41e72007-12-26 18:20:19 +00001424 else
Anton Korobeynikovf0c267e2011-10-14 23:23:15 +00001425 Res = Builder.CreateUIToFP(Src, DstTy, "conv");
1426 } else if (isa<llvm::IntegerType>(DstTy)) {
1427 assert(SrcTy->isFloatingPointTy() && "Unknown real conversion");
Douglas Gregor6ab2fa82011-05-20 16:38:50 +00001428 if (DstType->isSignedIntegerOrEnumerationType())
Anton Korobeynikovf0c267e2011-10-14 23:23:15 +00001429 Res = Builder.CreateFPToSI(Src, DstTy, "conv");
Anders Carlssonc9d41e72007-12-26 18:20:19 +00001430 else
Anton Korobeynikovf0c267e2011-10-14 23:23:15 +00001431 Res = Builder.CreateFPToUI(Src, DstTy, "conv");
1432 } else {
1433 assert(SrcTy->isFloatingPointTy() && DstTy->isFloatingPointTy() &&
1434 "Unknown real conversion");
1435 if (DstTy->getTypeID() < SrcTy->getTypeID())
1436 Res = Builder.CreateFPTrunc(Src, DstTy, "conv");
1437 else
1438 Res = Builder.CreateFPExt(Src, DstTy, "conv");
Chris Lattner3474c202007-08-26 06:48:56 +00001439 }
1440
Anton Korobeynikovf0c267e2011-10-14 23:23:15 +00001441 if (DstTy != ResTy) {
Akira Hatanaka502775a2017-12-09 00:02:37 +00001442 if (CGF.getContext().getTargetInfo().useFP16ConversionIntrinsics()) {
Ahmed Bougachad1801af2015-03-23 17:54:16 +00001443 assert(ResTy->isIntegerTy(16) && "Only half FP requires extra conversion");
1444 Res = Builder.CreateCall(
Tim Northover6dbcbac2014-07-17 10:51:31 +00001445 CGF.CGM.getIntrinsic(llvm::Intrinsic::convert_to_fp16, CGF.CGM.FloatTy),
1446 Res);
Ahmed Bougachad1801af2015-03-23 17:54:16 +00001447 } else {
1448 Res = Builder.CreateFPTrunc(Res, ResTy, "conv");
1449 }
Anton Korobeynikovf0c267e2011-10-14 23:23:15 +00001450 }
1451
Roman Lebedevb69ba222018-07-30 18:58:30 +00001452 if (Opts.EmitImplicitIntegerTruncationChecks)
1453 EmitIntegerTruncationCheck(Src, NoncanonicalSrcType, Res,
1454 NoncanonicalDstType, Loc);
1455
Roman Lebedev62debd802018-10-30 21:58:56 +00001456 if (Opts.EmitImplicitIntegerSignChangeChecks)
1457 EmitIntegerSignChangeCheck(Src, NoncanonicalSrcType, Res,
1458 NoncanonicalDstType, Loc);
1459
Anton Korobeynikovf0c267e2011-10-14 23:23:15 +00001460 return Res;
Chris Lattner3474c202007-08-26 06:48:56 +00001461}
1462
Leonard Chan99bda372018-10-15 16:07:02 +00001463Value *ScalarExprEmitter::EmitFixedPointConversion(Value *Src, QualType SrcTy,
1464 QualType DstTy,
1465 SourceLocation Loc) {
Leonard Chan99bda372018-10-15 16:07:02 +00001466 FixedPointSemantics SrcFPSema =
1467 CGF.getContext().getFixedPointSemantics(SrcTy);
1468 FixedPointSemantics DstFPSema =
1469 CGF.getContext().getFixedPointSemantics(DstTy);
Leonard Chan8f7caae2019-03-06 00:28:43 +00001470 return EmitFixedPointConversion(Src, SrcFPSema, DstFPSema, Loc,
1471 DstTy->isIntegerType());
Leonard Chan2044ac82019-01-16 18:13:59 +00001472}
1473
1474Value *ScalarExprEmitter::EmitFixedPointConversion(
1475 Value *Src, FixedPointSemantics &SrcFPSema, FixedPointSemantics &DstFPSema,
Leonard Chan8f7caae2019-03-06 00:28:43 +00001476 SourceLocation Loc, bool DstIsInteger) {
Leonard Chan2044ac82019-01-16 18:13:59 +00001477 using llvm::APInt;
1478 using llvm::ConstantInt;
1479 using llvm::Value;
1480
Leonard Chan99bda372018-10-15 16:07:02 +00001481 unsigned SrcWidth = SrcFPSema.getWidth();
1482 unsigned DstWidth = DstFPSema.getWidth();
1483 unsigned SrcScale = SrcFPSema.getScale();
1484 unsigned DstScale = DstFPSema.getScale();
Bjorn Petterssonb2534022018-10-26 16:12:12 +00001485 bool SrcIsSigned = SrcFPSema.isSigned();
1486 bool DstIsSigned = DstFPSema.isSigned();
1487
1488 llvm::Type *DstIntTy = Builder.getIntNTy(DstWidth);
Leonard Chan99bda372018-10-15 16:07:02 +00001489
1490 Value *Result = Src;
1491 unsigned ResultWidth = SrcWidth;
1492
Leonard Chan8f7caae2019-03-06 00:28:43 +00001493 // Downscale.
1494 if (DstScale < SrcScale) {
1495 // When converting to integers, we round towards zero. For negative numbers,
1496 // right shifting rounds towards negative infinity. In this case, we can
1497 // just round up before shifting.
1498 if (DstIsInteger && SrcIsSigned) {
1499 Value *Zero = llvm::Constant::getNullValue(Result->getType());
1500 Value *IsNegative = Builder.CreateICmpSLT(Result, Zero);
1501 Value *LowBits = ConstantInt::get(
1502 CGF.getLLVMContext(), APInt::getLowBitsSet(ResultWidth, SrcScale));
1503 Value *Rounded = Builder.CreateAdd(Result, LowBits);
1504 Result = Builder.CreateSelect(IsNegative, Rounded, Result);
1505 }
Leonard Chan99bda372018-10-15 16:07:02 +00001506
Leonard Chan8f7caae2019-03-06 00:28:43 +00001507 Result = SrcIsSigned
1508 ? Builder.CreateAShr(Result, SrcScale - DstScale, "downscale")
1509 : Builder.CreateLShr(Result, SrcScale - DstScale, "downscale");
1510 }
1511
1512 if (!DstFPSema.isSaturated()) {
Bjorn Petterssonb2534022018-10-26 16:12:12 +00001513 // Resize.
1514 Result = Builder.CreateIntCast(Result, DstIntTy, SrcIsSigned, "resize");
Leonard Chan99bda372018-10-15 16:07:02 +00001515
Bjorn Petterssonb2534022018-10-26 16:12:12 +00001516 // Upscale.
Leonard Chan99bda372018-10-15 16:07:02 +00001517 if (DstScale > SrcScale)
Bjorn Petterssonb2534022018-10-26 16:12:12 +00001518 Result = Builder.CreateShl(Result, DstScale - SrcScale, "upscale");
Leonard Chan99bda372018-10-15 16:07:02 +00001519 } else {
Bjorn Petterssonb2534022018-10-26 16:12:12 +00001520 // Adjust the number of fractional bits.
Leonard Chan99bda372018-10-15 16:07:02 +00001521 if (DstScale > SrcScale) {
Leonard Chan2044ac82019-01-16 18:13:59 +00001522 // Compare to DstWidth to prevent resizing twice.
1523 ResultWidth = std::max(SrcWidth + DstScale - SrcScale, DstWidth);
Leonard Chan99bda372018-10-15 16:07:02 +00001524 llvm::Type *UpscaledTy = Builder.getIntNTy(ResultWidth);
Bjorn Petterssonb2534022018-10-26 16:12:12 +00001525 Result = Builder.CreateIntCast(Result, UpscaledTy, SrcIsSigned, "resize");
1526 Result = Builder.CreateShl(Result, DstScale - SrcScale, "upscale");
Leonard Chan99bda372018-10-15 16:07:02 +00001527 }
1528
Bjorn Petterssonb2534022018-10-26 16:12:12 +00001529 // Handle saturation.
1530 bool LessIntBits = DstFPSema.getIntegralBits() < SrcFPSema.getIntegralBits();
1531 if (LessIntBits) {
1532 Value *Max = ConstantInt::get(
Leonard Chan99bda372018-10-15 16:07:02 +00001533 CGF.getLLVMContext(),
1534 APFixedPoint::getMax(DstFPSema).getValue().extOrTrunc(ResultWidth));
Bjorn Petterssonb2534022018-10-26 16:12:12 +00001535 Value *TooHigh = SrcIsSigned ? Builder.CreateICmpSGT(Result, Max)
1536 : Builder.CreateICmpUGT(Result, Max);
1537 Result = Builder.CreateSelect(TooHigh, Max, Result, "satmax");
1538 }
1539 // Cannot overflow min to dest type if src is unsigned since all fixed
1540 // point types can cover the unsigned min of 0.
1541 if (SrcIsSigned && (LessIntBits || !DstIsSigned)) {
1542 Value *Min = ConstantInt::get(
1543 CGF.getLLVMContext(),
1544 APFixedPoint::getMin(DstFPSema).getValue().extOrTrunc(ResultWidth));
1545 Value *TooLow = Builder.CreateICmpSLT(Result, Min);
1546 Result = Builder.CreateSelect(TooLow, Min, Result, "satmin");
Leonard Chan99bda372018-10-15 16:07:02 +00001547 }
1548
Bjorn Petterssonb2534022018-10-26 16:12:12 +00001549 // Resize the integer part to get the final destination size.
Leonard Chan2044ac82019-01-16 18:13:59 +00001550 if (ResultWidth != DstWidth)
1551 Result = Builder.CreateIntCast(Result, DstIntTy, SrcIsSigned, "resize");
Leonard Chan99bda372018-10-15 16:07:02 +00001552 }
1553 return Result;
1554}
1555
Filipe Cabecinhas650d7f72015-08-05 06:19:26 +00001556/// Emit a conversion from the specified complex type to the specified
1557/// destination type, where the destination type is an LLVM scalar type.
Filipe Cabecinhas7af183d2015-08-11 04:19:28 +00001558Value *ScalarExprEmitter::EmitComplexToScalarConversion(
1559 CodeGenFunction::ComplexPairTy Src, QualType SrcTy, QualType DstTy,
1560 SourceLocation Loc) {
Chris Lattnerc141c1b2007-08-26 16:52:28 +00001561 // Get the source element type.
John McCall47fb9502013-03-07 21:37:08 +00001562 SrcTy = SrcTy->castAs<ComplexType>()->getElementType();
Mike Stump4a3999f2009-09-09 13:00:44 +00001563
Chris Lattnerc141c1b2007-08-26 16:52:28 +00001564 // Handle conversions to bool first, they are special: comparisons against 0.
1565 if (DstTy->isBooleanType()) {
1566 // Complex != 0 -> (Real != 0) | (Imag != 0)
Filipe Cabecinhas7af183d2015-08-11 04:19:28 +00001567 Src.first = EmitScalarConversion(Src.first, SrcTy, DstTy, Loc);
1568 Src.second = EmitScalarConversion(Src.second, SrcTy, DstTy, Loc);
Chris Lattnerc141c1b2007-08-26 16:52:28 +00001569 return Builder.CreateOr(Src.first, Src.second, "tobool");
1570 }
Mike Stump4a3999f2009-09-09 13:00:44 +00001571
Chris Lattner42e6b812007-08-26 16:34:22 +00001572 // C99 6.3.1.7p2: "When a value of complex type is converted to a real type,
1573 // the imaginary part of the complex value is discarded and the value of the
1574 // real part is converted according to the conversion rules for the
Mike Stump4a3999f2009-09-09 13:00:44 +00001575 // corresponding real type.
Filipe Cabecinhas7af183d2015-08-11 04:19:28 +00001576 return EmitScalarConversion(Src.first, SrcTy, DstTy, Loc);
Chris Lattner42e6b812007-08-26 16:34:22 +00001577}
1578
Anders Carlsson5b944432010-05-22 17:45:10 +00001579Value *ScalarExprEmitter::EmitNullValue(QualType Ty) {
Richard Smithd82a2ce2012-12-21 03:17:28 +00001580 return CGF.EmitFromMemory(CGF.CGM.EmitNullConstant(Ty), Ty);
Anders Carlsson5b944432010-05-22 17:45:10 +00001581}
Chris Lattner42e6b812007-08-26 16:34:22 +00001582
Adrian Prantl9fc8faf2018-05-09 01:00:01 +00001583/// Emit a sanitization check for the given "binary" operation (which
Richard Smithe30752c2012-10-09 19:52:38 +00001584/// might actually be a unary increment which has been lowered to a binary
Alexey Samsonove396bfc2014-11-11 22:03:54 +00001585/// operation). The check passes if all values in \p Checks (which are \c i1),
1586/// are \c true.
1587void ScalarExprEmitter::EmitBinOpCheck(
Peter Collingbourne3eea6772015-05-11 21:39:14 +00001588 ArrayRef<std::pair<Value *, SanitizerMask>> Checks, const BinOpInfo &Info) {
Alexey Samsonov24cad992014-07-17 18:46:27 +00001589 assert(CGF.IsSanitizerScope);
Filipe Cabecinhas322ecd92016-12-12 16:18:40 +00001590 SanitizerHandler Check;
Dmitri Gribenkof8579502013-01-12 19:30:44 +00001591 SmallVector<llvm::Constant *, 4> StaticData;
1592 SmallVector<llvm::Value *, 2> DynamicData;
Richard Smithe30752c2012-10-09 19:52:38 +00001593
1594 BinaryOperatorKind Opcode = Info.Opcode;
1595 if (BinaryOperator::isCompoundAssignmentOp(Opcode))
1596 Opcode = BinaryOperator::getOpForCompoundAssignment(Opcode);
1597
1598 StaticData.push_back(CGF.EmitCheckSourceLocation(Info.E->getExprLoc()));
1599 const UnaryOperator *UO = dyn_cast<UnaryOperator>(Info.E);
1600 if (UO && UO->getOpcode() == UO_Minus) {
Filipe Cabecinhas322ecd92016-12-12 16:18:40 +00001601 Check = SanitizerHandler::NegateOverflow;
Richard Smithe30752c2012-10-09 19:52:38 +00001602 StaticData.push_back(CGF.EmitCheckTypeDescriptor(UO->getType()));
1603 DynamicData.push_back(Info.RHS);
1604 } else {
1605 if (BinaryOperator::isShiftOp(Opcode)) {
1606 // Shift LHS negative or too large, or RHS out of bounds.
Filipe Cabecinhas322ecd92016-12-12 16:18:40 +00001607 Check = SanitizerHandler::ShiftOutOfBounds;
Richard Smithe30752c2012-10-09 19:52:38 +00001608 const BinaryOperator *BO = cast<BinaryOperator>(Info.E);
1609 StaticData.push_back(
1610 CGF.EmitCheckTypeDescriptor(BO->getLHS()->getType()));
1611 StaticData.push_back(
1612 CGF.EmitCheckTypeDescriptor(BO->getRHS()->getType()));
1613 } else if (Opcode == BO_Div || Opcode == BO_Rem) {
1614 // Divide or modulo by zero, or signed overflow (eg INT_MAX / -1).
Filipe Cabecinhas322ecd92016-12-12 16:18:40 +00001615 Check = SanitizerHandler::DivremOverflow;
Will Dietzcefb4482013-01-07 22:25:52 +00001616 StaticData.push_back(CGF.EmitCheckTypeDescriptor(Info.Ty));
Richard Smithe30752c2012-10-09 19:52:38 +00001617 } else {
Alexey Samsonov4c1a96f2014-11-10 22:27:30 +00001618 // Arithmetic overflow (+, -, *).
Richard Smithe30752c2012-10-09 19:52:38 +00001619 switch (Opcode) {
Filipe Cabecinhas322ecd92016-12-12 16:18:40 +00001620 case BO_Add: Check = SanitizerHandler::AddOverflow; break;
1621 case BO_Sub: Check = SanitizerHandler::SubOverflow; break;
1622 case BO_Mul: Check = SanitizerHandler::MulOverflow; break;
Richard Smithe30752c2012-10-09 19:52:38 +00001623 default: llvm_unreachable("unexpected opcode for bin op check");
1624 }
Will Dietzcefb4482013-01-07 22:25:52 +00001625 StaticData.push_back(CGF.EmitCheckTypeDescriptor(Info.Ty));
Richard Smithe30752c2012-10-09 19:52:38 +00001626 }
1627 DynamicData.push_back(Info.LHS);
1628 DynamicData.push_back(Info.RHS);
1629 }
1630
Filipe Cabecinhas322ecd92016-12-12 16:18:40 +00001631 CGF.EmitCheck(Checks, Check, StaticData, DynamicData);
Richard Smithe30752c2012-10-09 19:52:38 +00001632}
1633
Chris Lattner2da04b32007-08-24 05:35:26 +00001634//===----------------------------------------------------------------------===//
1635// Visitor Methods
1636//===----------------------------------------------------------------------===//
1637
1638Value *ScalarExprEmitter::VisitExpr(Expr *E) {
Daniel Dunbara7c8cf62008-08-16 00:56:44 +00001639 CGF.ErrorUnsupported(E, "scalar expression");
Chris Lattner2da04b32007-08-24 05:35:26 +00001640 if (E->getType()->isVoidType())
Craig Topper8a13c412014-05-21 05:09:00 +00001641 return nullptr;
Owen Anderson7ec07a52009-07-30 23:11:26 +00001642 return llvm::UndefValue::get(CGF.ConvertType(E->getType()));
Chris Lattner2da04b32007-08-24 05:35:26 +00001643}
1644
Eli Friedmana1b4ed82008-05-14 19:38:39 +00001645Value *ScalarExprEmitter::VisitShuffleVectorExpr(ShuffleVectorExpr *E) {
Nate Begemana0110022010-06-08 00:16:34 +00001646 // Vector Mask Case
Craig Topperb3174a82016-05-18 04:11:25 +00001647 if (E->getNumSubExprs() == 2) {
Chris Lattner5e016ae2010-06-27 07:15:29 +00001648 Value *LHS = CGF.EmitScalarExpr(E->getExpr(0));
1649 Value *RHS = CGF.EmitScalarExpr(E->getExpr(1));
1650 Value *Mask;
Craig Toppera97d7e72013-07-26 06:16:11 +00001651
Chris Lattner2192fe52011-07-18 04:24:23 +00001652 llvm::VectorType *LTy = cast<llvm::VectorType>(LHS->getType());
Nate Begemana0110022010-06-08 00:16:34 +00001653 unsigned LHSElts = LTy->getNumElements();
1654
Craig Topperb3174a82016-05-18 04:11:25 +00001655 Mask = RHS;
Craig Toppera97d7e72013-07-26 06:16:11 +00001656
Chris Lattner2192fe52011-07-18 04:24:23 +00001657 llvm::VectorType *MTy = cast<llvm::VectorType>(Mask->getType());
Craig Toppera97d7e72013-07-26 06:16:11 +00001658
Nate Begemana0110022010-06-08 00:16:34 +00001659 // Mask off the high bits of each shuffle index.
Benjamin Kramer99383102015-07-28 16:25:32 +00001660 Value *MaskBits =
1661 llvm::ConstantInt::get(MTy, llvm::NextPowerOf2(LHSElts - 1) - 1);
Nate Begemana0110022010-06-08 00:16:34 +00001662 Mask = Builder.CreateAnd(Mask, MaskBits, "mask");
Craig Toppera97d7e72013-07-26 06:16:11 +00001663
Nate Begemana0110022010-06-08 00:16:34 +00001664 // newv = undef
1665 // mask = mask & maskbits
1666 // for each elt
1667 // n = extract mask i
1668 // x = extract val n
1669 // newv = insert newv, x, i
Chris Lattner2192fe52011-07-18 04:24:23 +00001670 llvm::VectorType *RTy = llvm::VectorType::get(LTy->getElementType(),
Craig Topper18243fb2013-07-27 05:00:42 +00001671 MTy->getNumElements());
Nate Begemana0110022010-06-08 00:16:34 +00001672 Value* NewV = llvm::UndefValue::get(RTy);
1673 for (unsigned i = 0, e = MTy->getNumElements(); i != e; ++i) {
Michael J. Spencerdd597752014-05-31 00:22:12 +00001674 Value *IIndx = llvm::ConstantInt::get(CGF.SizeTy, i);
Eli Friedman1fa36052012-04-05 21:48:40 +00001675 Value *Indx = Builder.CreateExtractElement(Mask, IIndx, "shuf_idx");
Craig Toppera97d7e72013-07-26 06:16:11 +00001676
Nate Begemana0110022010-06-08 00:16:34 +00001677 Value *VExt = Builder.CreateExtractElement(LHS, Indx, "shuf_elt");
Eli Friedman1fa36052012-04-05 21:48:40 +00001678 NewV = Builder.CreateInsertElement(NewV, VExt, IIndx, "shuf_ins");
Nate Begemana0110022010-06-08 00:16:34 +00001679 }
1680 return NewV;
Eli Friedmana1b4ed82008-05-14 19:38:39 +00001681 }
Craig Toppera97d7e72013-07-26 06:16:11 +00001682
Eli Friedmana1b4ed82008-05-14 19:38:39 +00001683 Value* V1 = CGF.EmitScalarExpr(E->getExpr(0));
1684 Value* V2 = CGF.EmitScalarExpr(E->getExpr(1));
Craig Toppera97d7e72013-07-26 06:16:11 +00001685
Chris Lattner0e62c1c2011-07-23 10:55:15 +00001686 SmallVector<llvm::Constant*, 32> indices;
Craig Topper0ed37bd2013-08-01 04:51:48 +00001687 for (unsigned i = 2; i < E->getNumSubExprs(); ++i) {
Craig Topper50ad5b72013-08-03 17:40:38 +00001688 llvm::APSInt Idx = E->getShuffleMaskIdx(CGF.getContext(), i-2);
1689 // Check for -1 and output it as undef in the IR.
1690 if (Idx.isSigned() && Idx.isAllOnesValue())
1691 indices.push_back(llvm::UndefValue::get(CGF.Int32Ty));
1692 else
1693 indices.push_back(Builder.getInt32(Idx.getZExtValue()));
Nate Begemana0110022010-06-08 00:16:34 +00001694 }
1695
Chris Lattner91c08ad2011-02-15 00:14:06 +00001696 Value *SV = llvm::ConstantVector::get(indices);
Eli Friedmana1b4ed82008-05-14 19:38:39 +00001697 return Builder.CreateShuffleVector(V1, V2, SV, "shuffle");
1698}
Hal Finkelc4d7c822013-09-18 03:29:45 +00001699
1700Value *ScalarExprEmitter::VisitConvertVectorExpr(ConvertVectorExpr *E) {
1701 QualType SrcType = E->getSrcExpr()->getType(),
1702 DstType = E->getType();
1703
1704 Value *Src = CGF.EmitScalarExpr(E->getSrcExpr());
1705
1706 SrcType = CGF.getContext().getCanonicalType(SrcType);
1707 DstType = CGF.getContext().getCanonicalType(DstType);
1708 if (SrcType == DstType) return Src;
1709
1710 assert(SrcType->isVectorType() &&
1711 "ConvertVector source type must be a vector");
1712 assert(DstType->isVectorType() &&
1713 "ConvertVector destination type must be a vector");
1714
1715 llvm::Type *SrcTy = Src->getType();
1716 llvm::Type *DstTy = ConvertType(DstType);
1717
1718 // Ignore conversions like int -> uint.
1719 if (SrcTy == DstTy)
1720 return Src;
1721
1722 QualType SrcEltType = SrcType->getAs<VectorType>()->getElementType(),
1723 DstEltType = DstType->getAs<VectorType>()->getElementType();
1724
1725 assert(SrcTy->isVectorTy() &&
1726 "ConvertVector source IR type must be a vector");
1727 assert(DstTy->isVectorTy() &&
1728 "ConvertVector destination IR type must be a vector");
1729
1730 llvm::Type *SrcEltTy = SrcTy->getVectorElementType(),
1731 *DstEltTy = DstTy->getVectorElementType();
1732
1733 if (DstEltType->isBooleanType()) {
1734 assert((SrcEltTy->isFloatingPointTy() ||
1735 isa<llvm::IntegerType>(SrcEltTy)) && "Unknown boolean conversion");
1736
1737 llvm::Value *Zero = llvm::Constant::getNullValue(SrcTy);
1738 if (SrcEltTy->isFloatingPointTy()) {
1739 return Builder.CreateFCmpUNE(Src, Zero, "tobool");
1740 } else {
1741 return Builder.CreateICmpNE(Src, Zero, "tobool");
1742 }
1743 }
1744
1745 // We have the arithmetic types: real int/float.
Craig Topper8a13c412014-05-21 05:09:00 +00001746 Value *Res = nullptr;
Hal Finkelc4d7c822013-09-18 03:29:45 +00001747
1748 if (isa<llvm::IntegerType>(SrcEltTy)) {
1749 bool InputSigned = SrcEltType->isSignedIntegerOrEnumerationType();
1750 if (isa<llvm::IntegerType>(DstEltTy))
1751 Res = Builder.CreateIntCast(Src, DstTy, InputSigned, "conv");
1752 else if (InputSigned)
1753 Res = Builder.CreateSIToFP(Src, DstTy, "conv");
1754 else
1755 Res = Builder.CreateUIToFP(Src, DstTy, "conv");
1756 } else if (isa<llvm::IntegerType>(DstEltTy)) {
1757 assert(SrcEltTy->isFloatingPointTy() && "Unknown real conversion");
1758 if (DstEltType->isSignedIntegerOrEnumerationType())
1759 Res = Builder.CreateFPToSI(Src, DstTy, "conv");
1760 else
1761 Res = Builder.CreateFPToUI(Src, DstTy, "conv");
1762 } else {
1763 assert(SrcEltTy->isFloatingPointTy() && DstEltTy->isFloatingPointTy() &&
1764 "Unknown real conversion");
1765 if (DstEltTy->getTypeID() < SrcEltTy->getTypeID())
1766 Res = Builder.CreateFPTrunc(Src, DstTy, "conv");
1767 else
1768 Res = Builder.CreateFPExt(Src, DstTy, "conv");
1769 }
1770
1771 return Res;
1772}
1773
Eli Friedmancb422f12009-11-26 03:22:21 +00001774Value *ScalarExprEmitter::VisitMemberExpr(MemberExpr *E) {
Alex Lorenz6cc83172017-08-25 10:07:00 +00001775 if (CodeGenFunction::ConstantEmission Constant = CGF.tryEmitAsConstant(E)) {
1776 CGF.EmitIgnoredExpr(E->getBase());
Volodymyr Sapsaief1899b2018-11-01 21:57:05 +00001777 return CGF.emitScalarConstant(Constant, E);
Alex Lorenz6cc83172017-08-25 10:07:00 +00001778 } else {
Fangrui Song407659a2018-11-30 23:41:18 +00001779 Expr::EvalResult Result;
1780 if (E->EvaluateAsInt(Result, CGF.getContext(), Expr::SE_AllowSideEffects)) {
1781 llvm::APSInt Value = Result.Val.getInt();
Alex Lorenz6cc83172017-08-25 10:07:00 +00001782 CGF.EmitIgnoredExpr(E->getBase());
1783 return Builder.getInt(Value);
1784 }
Eli Friedmancb422f12009-11-26 03:22:21 +00001785 }
Devang Patel44b8bf02010-10-04 21:46:04 +00001786
Eli Friedmancb422f12009-11-26 03:22:21 +00001787 return EmitLoadOfLValue(E);
1788}
Eli Friedmana1b4ed82008-05-14 19:38:39 +00001789
Chris Lattner2da04b32007-08-24 05:35:26 +00001790Value *ScalarExprEmitter::VisitArraySubscriptExpr(ArraySubscriptExpr *E) {
Mike Stumpdf0fe272009-05-29 15:46:01 +00001791 TestAndClearIgnoreResultAssign();
1792
Chris Lattner2da04b32007-08-24 05:35:26 +00001793 // Emit subscript expressions in rvalue context's. For most cases, this just
1794 // loads the lvalue formed by the subscript expr. However, we have to be
1795 // careful, because the base of a vector subscript is occasionally an rvalue,
1796 // so we can't get it as an lvalue.
1797 if (!E->getBase()->getType()->isVectorType())
1798 return EmitLoadOfLValue(E);
Mike Stump4a3999f2009-09-09 13:00:44 +00001799
Chris Lattner2da04b32007-08-24 05:35:26 +00001800 // Handle the vector case. The base must be a vector, the index must be an
1801 // integer value.
1802 Value *Base = Visit(E->getBase());
1803 Value *Idx = Visit(E->getIdx());
Richard Smith539e4a72013-02-23 02:53:19 +00001804 QualType IdxTy = E->getIdx()->getType();
1805
Alexey Samsonovedf99a92014-11-07 22:29:38 +00001806 if (CGF.SanOpts.has(SanitizerKind::ArrayBounds))
Richard Smith539e4a72013-02-23 02:53:19 +00001807 CGF.EmitBoundsCheck(E, E->getBase(), Idx, IdxTy, /*Accessed*/true);
1808
Chris Lattner2da04b32007-08-24 05:35:26 +00001809 return Builder.CreateExtractElement(Base, Idx, "vecext");
1810}
1811
Nate Begeman19351632009-10-18 20:10:40 +00001812static llvm::Constant *getMaskElt(llvm::ShuffleVectorInst *SVI, unsigned Idx,
Chris Lattner2192fe52011-07-18 04:24:23 +00001813 unsigned Off, llvm::Type *I32Ty) {
Nate Begeman19351632009-10-18 20:10:40 +00001814 int MV = SVI->getMaskValue(Idx);
Craig Toppera97d7e72013-07-26 06:16:11 +00001815 if (MV == -1)
Nate Begeman19351632009-10-18 20:10:40 +00001816 return llvm::UndefValue::get(I32Ty);
1817 return llvm::ConstantInt::get(I32Ty, Off+MV);
1818}
1819
Simon Pilgrim4034b9f2015-08-02 15:28:10 +00001820static llvm::Constant *getAsInt32(llvm::ConstantInt *C, llvm::Type *I32Ty) {
1821 if (C->getBitWidth() != 32) {
1822 assert(llvm::ConstantInt::isValueValidForType(I32Ty,
1823 C->getZExtValue()) &&
1824 "Index operand too large for shufflevector mask!");
1825 return llvm::ConstantInt::get(I32Ty, C->getZExtValue());
1826 }
1827 return C;
1828}
1829
Nate Begeman19351632009-10-18 20:10:40 +00001830Value *ScalarExprEmitter::VisitInitListExpr(InitListExpr *E) {
1831 bool Ignore = TestAndClearIgnoreResultAssign();
1832 (void)Ignore;
1833 assert (Ignore == false && "init list ignored");
1834 unsigned NumInitElements = E->getNumInits();
Craig Toppera97d7e72013-07-26 06:16:11 +00001835
Nate Begeman19351632009-10-18 20:10:40 +00001836 if (E->hadArrayRangeDesignator())
1837 CGF.ErrorUnsupported(E, "GNU array range designator extension");
Craig Toppera97d7e72013-07-26 06:16:11 +00001838
Chris Lattner2192fe52011-07-18 04:24:23 +00001839 llvm::VectorType *VType =
Nate Begeman19351632009-10-18 20:10:40 +00001840 dyn_cast<llvm::VectorType>(ConvertType(E->getType()));
Craig Toppera97d7e72013-07-26 06:16:11 +00001841
Sebastian Redl12757ab2011-09-24 17:48:14 +00001842 if (!VType) {
1843 if (NumInitElements == 0) {
1844 // C++11 value-initialization for the scalar.
1845 return EmitNullValue(E->getType());
1846 }
1847 // We have a scalar in braces. Just use the first element.
Nate Begeman19351632009-10-18 20:10:40 +00001848 return Visit(E->getInit(0));
Sebastian Redl12757ab2011-09-24 17:48:14 +00001849 }
Craig Toppera97d7e72013-07-26 06:16:11 +00001850
Nate Begeman19351632009-10-18 20:10:40 +00001851 unsigned ResElts = VType->getNumElements();
Craig Toppera97d7e72013-07-26 06:16:11 +00001852
1853 // Loop over initializers collecting the Value for each, and remembering
Nate Begeman19351632009-10-18 20:10:40 +00001854 // whether the source was swizzle (ExtVectorElementExpr). This will allow
1855 // us to fold the shuffle for the swizzle into the shuffle for the vector
1856 // initializer, since LLVM optimizers generally do not want to touch
1857 // shuffles.
1858 unsigned CurIdx = 0;
1859 bool VIsUndefShuffle = false;
1860 llvm::Value *V = llvm::UndefValue::get(VType);
1861 for (unsigned i = 0; i != NumInitElements; ++i) {
1862 Expr *IE = E->getInit(i);
1863 Value *Init = Visit(IE);
Chris Lattner0e62c1c2011-07-23 10:55:15 +00001864 SmallVector<llvm::Constant*, 16> Args;
Craig Toppera97d7e72013-07-26 06:16:11 +00001865
Chris Lattner2192fe52011-07-18 04:24:23 +00001866 llvm::VectorType *VVT = dyn_cast<llvm::VectorType>(Init->getType());
Craig Toppera97d7e72013-07-26 06:16:11 +00001867
Nate Begeman19351632009-10-18 20:10:40 +00001868 // Handle scalar elements. If the scalar initializer is actually one
Craig Toppera97d7e72013-07-26 06:16:11 +00001869 // element of a different vector of the same width, use shuffle instead of
Nate Begeman19351632009-10-18 20:10:40 +00001870 // extract+insert.
1871 if (!VVT) {
1872 if (isa<ExtVectorElementExpr>(IE)) {
1873 llvm::ExtractElementInst *EI = cast<llvm::ExtractElementInst>(Init);
1874
1875 if (EI->getVectorOperandType()->getNumElements() == ResElts) {
1876 llvm::ConstantInt *C = cast<llvm::ConstantInt>(EI->getIndexOperand());
Craig Topper8a13c412014-05-21 05:09:00 +00001877 Value *LHS = nullptr, *RHS = nullptr;
Nate Begeman19351632009-10-18 20:10:40 +00001878 if (CurIdx == 0) {
1879 // insert into undef -> shuffle (src, undef)
Simon Pilgrim4034b9f2015-08-02 15:28:10 +00001880 // shufflemask must use an i32
1881 Args.push_back(getAsInt32(C, CGF.Int32Ty));
Benjamin Kramer8001f742012-02-14 12:06:21 +00001882 Args.resize(ResElts, llvm::UndefValue::get(CGF.Int32Ty));
Nate Begeman19351632009-10-18 20:10:40 +00001883
1884 LHS = EI->getVectorOperand();
1885 RHS = V;
1886 VIsUndefShuffle = true;
1887 } else if (VIsUndefShuffle) {
1888 // insert into undefshuffle && size match -> shuffle (v, src)
1889 llvm::ShuffleVectorInst *SVV = cast<llvm::ShuffleVectorInst>(V);
1890 for (unsigned j = 0; j != CurIdx; ++j)
Chris Lattner5e016ae2010-06-27 07:15:29 +00001891 Args.push_back(getMaskElt(SVV, j, 0, CGF.Int32Ty));
Chris Lattner2531eb42011-04-19 22:55:03 +00001892 Args.push_back(Builder.getInt32(ResElts + C->getZExtValue()));
Benjamin Kramer8001f742012-02-14 12:06:21 +00001893 Args.resize(ResElts, llvm::UndefValue::get(CGF.Int32Ty));
1894
Nate Begeman19351632009-10-18 20:10:40 +00001895 LHS = cast<llvm::ShuffleVectorInst>(V)->getOperand(0);
1896 RHS = EI->getVectorOperand();
1897 VIsUndefShuffle = false;
1898 }
1899 if (!Args.empty()) {
Chris Lattner91c08ad2011-02-15 00:14:06 +00001900 llvm::Constant *Mask = llvm::ConstantVector::get(Args);
Nate Begeman19351632009-10-18 20:10:40 +00001901 V = Builder.CreateShuffleVector(LHS, RHS, Mask);
1902 ++CurIdx;
1903 continue;
1904 }
1905 }
1906 }
Chris Lattner2531eb42011-04-19 22:55:03 +00001907 V = Builder.CreateInsertElement(V, Init, Builder.getInt32(CurIdx),
1908 "vecinit");
Nate Begeman19351632009-10-18 20:10:40 +00001909 VIsUndefShuffle = false;
1910 ++CurIdx;
1911 continue;
1912 }
Craig Toppera97d7e72013-07-26 06:16:11 +00001913
Nate Begeman19351632009-10-18 20:10:40 +00001914 unsigned InitElts = VVT->getNumElements();
1915
Craig Toppera97d7e72013-07-26 06:16:11 +00001916 // If the initializer is an ExtVecEltExpr (a swizzle), and the swizzle's
Nate Begeman19351632009-10-18 20:10:40 +00001917 // input is the same width as the vector being constructed, generate an
1918 // optimized shuffle of the swizzle input into the result.
Nate Begemanb8326be2009-10-25 02:26:01 +00001919 unsigned Offset = (CurIdx == 0) ? 0 : ResElts;
Nate Begeman19351632009-10-18 20:10:40 +00001920 if (isa<ExtVectorElementExpr>(IE)) {
1921 llvm::ShuffleVectorInst *SVI = cast<llvm::ShuffleVectorInst>(Init);
1922 Value *SVOp = SVI->getOperand(0);
Chris Lattner2192fe52011-07-18 04:24:23 +00001923 llvm::VectorType *OpTy = cast<llvm::VectorType>(SVOp->getType());
Craig Toppera97d7e72013-07-26 06:16:11 +00001924
Nate Begeman19351632009-10-18 20:10:40 +00001925 if (OpTy->getNumElements() == ResElts) {
Nate Begeman19351632009-10-18 20:10:40 +00001926 for (unsigned j = 0; j != CurIdx; ++j) {
1927 // If the current vector initializer is a shuffle with undef, merge
1928 // this shuffle directly into it.
1929 if (VIsUndefShuffle) {
1930 Args.push_back(getMaskElt(cast<llvm::ShuffleVectorInst>(V), j, 0,
Chris Lattner5e016ae2010-06-27 07:15:29 +00001931 CGF.Int32Ty));
Nate Begeman19351632009-10-18 20:10:40 +00001932 } else {
Chris Lattner2531eb42011-04-19 22:55:03 +00001933 Args.push_back(Builder.getInt32(j));
Nate Begeman19351632009-10-18 20:10:40 +00001934 }
1935 }
1936 for (unsigned j = 0, je = InitElts; j != je; ++j)
Chris Lattner5e016ae2010-06-27 07:15:29 +00001937 Args.push_back(getMaskElt(SVI, j, Offset, CGF.Int32Ty));
Benjamin Kramer8001f742012-02-14 12:06:21 +00001938 Args.resize(ResElts, llvm::UndefValue::get(CGF.Int32Ty));
Nate Begeman19351632009-10-18 20:10:40 +00001939
1940 if (VIsUndefShuffle)
1941 V = cast<llvm::ShuffleVectorInst>(V)->getOperand(0);
1942
1943 Init = SVOp;
1944 }
1945 }
1946
1947 // Extend init to result vector length, and then shuffle its contribution
1948 // to the vector initializer into V.
1949 if (Args.empty()) {
1950 for (unsigned j = 0; j != InitElts; ++j)
Chris Lattner2531eb42011-04-19 22:55:03 +00001951 Args.push_back(Builder.getInt32(j));
Benjamin Kramer8001f742012-02-14 12:06:21 +00001952 Args.resize(ResElts, llvm::UndefValue::get(CGF.Int32Ty));
Chris Lattner91c08ad2011-02-15 00:14:06 +00001953 llvm::Constant *Mask = llvm::ConstantVector::get(Args);
Nate Begeman19351632009-10-18 20:10:40 +00001954 Init = Builder.CreateShuffleVector(Init, llvm::UndefValue::get(VVT),
Nate Begemanb8326be2009-10-25 02:26:01 +00001955 Mask, "vext");
Nate Begeman19351632009-10-18 20:10:40 +00001956
1957 Args.clear();
1958 for (unsigned j = 0; j != CurIdx; ++j)
Chris Lattner2531eb42011-04-19 22:55:03 +00001959 Args.push_back(Builder.getInt32(j));
Nate Begeman19351632009-10-18 20:10:40 +00001960 for (unsigned j = 0; j != InitElts; ++j)
Chris Lattner2531eb42011-04-19 22:55:03 +00001961 Args.push_back(Builder.getInt32(j+Offset));
Benjamin Kramer8001f742012-02-14 12:06:21 +00001962 Args.resize(ResElts, llvm::UndefValue::get(CGF.Int32Ty));
Nate Begeman19351632009-10-18 20:10:40 +00001963 }
1964
1965 // If V is undef, make sure it ends up on the RHS of the shuffle to aid
1966 // merging subsequent shuffles into this one.
1967 if (CurIdx == 0)
1968 std::swap(V, Init);
Chris Lattner91c08ad2011-02-15 00:14:06 +00001969 llvm::Constant *Mask = llvm::ConstantVector::get(Args);
Nate Begeman19351632009-10-18 20:10:40 +00001970 V = Builder.CreateShuffleVector(V, Init, Mask, "vecinit");
1971 VIsUndefShuffle = isa<llvm::UndefValue>(Init);
1972 CurIdx += InitElts;
1973 }
Craig Toppera97d7e72013-07-26 06:16:11 +00001974
Nate Begeman19351632009-10-18 20:10:40 +00001975 // FIXME: evaluate codegen vs. shuffling against constant null vector.
1976 // Emit remaining default initializers.
Chris Lattner2192fe52011-07-18 04:24:23 +00001977 llvm::Type *EltTy = VType->getElementType();
Craig Toppera97d7e72013-07-26 06:16:11 +00001978
Nate Begeman19351632009-10-18 20:10:40 +00001979 // Emit remaining default initializers
1980 for (/* Do not initialize i*/; CurIdx < ResElts; ++CurIdx) {
Chris Lattner2531eb42011-04-19 22:55:03 +00001981 Value *Idx = Builder.getInt32(CurIdx);
Nate Begeman19351632009-10-18 20:10:40 +00001982 llvm::Value *Init = llvm::Constant::getNullValue(EltTy);
1983 V = Builder.CreateInsertElement(V, Init, Idx, "vecinit");
1984 }
1985 return V;
1986}
1987
John McCall7f416cc2015-09-08 08:05:57 +00001988bool CodeGenFunction::ShouldNullCheckClassCastValue(const CastExpr *CE) {
Anders Carlsson8c793172009-11-23 17:57:54 +00001989 const Expr *E = CE->getSubExpr();
John McCalld9c7c6562010-03-30 23:58:03 +00001990
John McCalle3027922010-08-25 11:45:40 +00001991 if (CE->getCastKind() == CK_UncheckedDerivedToBase)
John McCalld9c7c6562010-03-30 23:58:03 +00001992 return false;
Craig Toppera97d7e72013-07-26 06:16:11 +00001993
John McCall7f416cc2015-09-08 08:05:57 +00001994 if (isa<CXXThisExpr>(E->IgnoreParens())) {
Anders Carlsson8c793172009-11-23 17:57:54 +00001995 // We always assume that 'this' is never null.
1996 return false;
1997 }
Craig Toppera97d7e72013-07-26 06:16:11 +00001998
Anders Carlsson8c793172009-11-23 17:57:54 +00001999 if (const ImplicitCastExpr *ICE = dyn_cast<ImplicitCastExpr>(CE)) {
Sebastian Redlc57d34b2010-07-20 04:20:21 +00002000 // And that glvalue casts are never null.
John McCall2536c6d2010-08-25 10:28:54 +00002001 if (ICE->getValueKind() != VK_RValue)
Anders Carlsson8c793172009-11-23 17:57:54 +00002002 return false;
2003 }
2004
2005 return true;
2006}
2007
Chris Lattner2da04b32007-08-24 05:35:26 +00002008// VisitCastExpr - Emit code for an explicit or implicit cast. Implicit casts
2009// have to handle a more broad range of conversions than explicit casts, as they
2010// handle things like function to ptr-to-function decay etc.
John McCall23c29fe2011-06-24 21:55:10 +00002011Value *ScalarExprEmitter::VisitCastExpr(CastExpr *CE) {
Eli Friedmane96f1d32009-11-27 04:41:50 +00002012 Expr *E = CE->getSubExpr();
Anders Carlsson8c978b42009-09-22 22:00:46 +00002013 QualType DestTy = CE->getType();
John McCalle3027922010-08-25 11:45:40 +00002014 CastKind Kind = CE->getCastKind();
Craig Toppera97d7e72013-07-26 06:16:11 +00002015
John McCalle399e5b2016-01-27 18:32:30 +00002016 // These cases are generally not written to ignore the result of
2017 // evaluating their sub-expressions, so we clear this now.
2018 bool Ignored = TestAndClearIgnoreResultAssign();
Mike Stump4a3999f2009-09-09 13:00:44 +00002019
Eli Friedman0dfc6802009-11-27 02:07:44 +00002020 // Since almost all cast kinds apply to scalars, this switch doesn't have
2021 // a default case, so the compiler will warn on a missing case. The cases
2022 // are in the same order as in the CastKind enum.
Anders Carlsson3df53bc2009-08-24 18:26:39 +00002023 switch (Kind) {
John McCall8cb679e2010-11-15 09:13:47 +00002024 case CK_Dependent: llvm_unreachable("dependent cast kind in IR gen!");
Eli Friedman34866c72012-08-31 00:14:07 +00002025 case CK_BuiltinFnToFnPtr:
2026 llvm_unreachable("builtin functions are handled elsewhere");
2027
Craig Toppera97d7e72013-07-26 06:16:11 +00002028 case CK_LValueBitCast:
John McCalle3027922010-08-25 11:45:40 +00002029 case CK_ObjCObjectLValueCast: {
John McCall7f416cc2015-09-08 08:05:57 +00002030 Address Addr = EmitLValue(E).getAddress();
Alexey Bataevf2440332015-10-07 10:22:08 +00002031 Addr = Builder.CreateElementBitCast(Addr, CGF.ConvertTypeForMem(DestTy));
John McCall7f416cc2015-09-08 08:05:57 +00002032 LValue LV = CGF.MakeAddrLValue(Addr, DestTy);
2033 return EmitLoadOfLValue(LV, CE->getExprLoc());
Douglas Gregor51954272010-07-13 23:17:26 +00002034 }
John McCallcd78e802011-09-10 01:16:55 +00002035
John McCall9320b872011-09-09 05:25:32 +00002036 case CK_CPointerToObjCPointerCast:
2037 case CK_BlockPointerToObjCPointerCast:
John McCalle3027922010-08-25 11:45:40 +00002038 case CK_AnyPointerToBlockPointerCast:
2039 case CK_BitCast: {
Anders Carlssonf1ae6d42009-09-01 20:52:42 +00002040 Value *Src = Visit(const_cast<Expr*>(E));
David Tweede1468322013-12-11 13:39:46 +00002041 llvm::Type *SrcTy = Src->getType();
2042 llvm::Type *DstTy = ConvertType(DestTy);
Bob Wilson95a27b02014-02-17 19:20:59 +00002043 if (SrcTy->isPtrOrPtrVectorTy() && DstTy->isPtrOrPtrVectorTy() &&
David Tweede1468322013-12-11 13:39:46 +00002044 SrcTy->getPointerAddressSpace() != DstTy->getPointerAddressSpace()) {
Anastasia Stulova5d8ad8a2014-11-26 15:36:41 +00002045 llvm_unreachable("wrong cast for pointers in different address spaces"
2046 "(must be an address space cast)!");
David Tweede1468322013-12-11 13:39:46 +00002047 }
Peter Collingbourned2926c92015-03-14 02:42:25 +00002048
2049 if (CGF.SanOpts.has(SanitizerKind::CFIUnrelatedCast)) {
2050 if (auto PT = DestTy->getAs<PointerType>())
2051 CGF.EmitVTablePtrCheckForCast(PT->getPointeeType(), Src,
Peter Collingbourne6708c4a2015-06-19 01:51:54 +00002052 /*MayBeNull=*/true,
2053 CodeGenFunction::CFITCK_UnrelatedCast,
Stephen Kellyf2ceec42018-08-09 21:08:08 +00002054 CE->getBeginLoc());
Peter Collingbourned2926c92015-03-14 02:42:25 +00002055 }
2056
Piotr Padlewski07058292018-07-02 19:21:36 +00002057 if (CGF.CGM.getCodeGenOpts().StrictVTablePointers) {
2058 const QualType SrcType = E->getType();
2059
2060 if (SrcType.mayBeNotDynamicClass() && DestTy.mayBeDynamicClass()) {
2061 // Casting to pointer that could carry dynamic information (provided by
2062 // invariant.group) requires launder.
2063 Src = Builder.CreateLaunderInvariantGroup(Src);
2064 } else if (SrcType.mayBeDynamicClass() && DestTy.mayBeNotDynamicClass()) {
2065 // Casting to pointer that does not carry dynamic information (provided
2066 // by invariant.group) requires stripping it. Note that we don't do it
2067 // if the source could not be dynamic type and destination could be
2068 // dynamic because dynamic information is already laundered. It is
2069 // because launder(strip(src)) == launder(src), so there is no need to
2070 // add extra strip before launder.
2071 Src = Builder.CreateStripInvariantGroup(Src);
2072 }
2073 }
2074
Amy Huang301a5bb2019-05-02 20:07:35 +00002075 // Update heapallocsite metadata when there is an explicit cast.
2076 if (llvm::CallInst *CI = dyn_cast<llvm::CallInst>(Src))
2077 if (CI->getMetadata("heapallocsite") && isa<ExplicitCastExpr>(CE))
2078 CGF.getDebugInfo()->
2079 addHeapAllocSiteMetadata(CI, CE->getType(), CE->getExprLoc());
2080
David Tweede1468322013-12-11 13:39:46 +00002081 return Builder.CreateBitCast(Src, DstTy);
2082 }
2083 case CK_AddressSpaceConversion: {
Yaxun Liu402804b2016-12-15 08:09:08 +00002084 Expr::EvalResult Result;
2085 if (E->EvaluateAsRValue(Result, CGF.getContext()) &&
2086 Result.Val.isNullPointer()) {
2087 // If E has side effect, it is emitted even if its final result is a
2088 // null pointer. In that case, a DCE pass should be able to
2089 // eliminate the useless instructions emitted during translating E.
2090 if (Result.HasSideEffects)
2091 Visit(E);
2092 return CGF.CGM.getNullPointer(cast<llvm::PointerType>(
2093 ConvertType(DestTy)), DestTy);
2094 }
Yaxun Liub7b6d0f2016-04-12 19:03:49 +00002095 // Since target may map different address spaces in AST to the same address
2096 // space, an address space conversion may end up as a bitcast.
Yaxun Liu6d96f1632017-05-18 18:51:09 +00002097 return CGF.CGM.getTargetCodeGenInfo().performAddrSpaceCast(
2098 CGF, Visit(E), E->getType()->getPointeeType().getAddressSpace(),
2099 DestTy->getPointeeType().getAddressSpace(), ConvertType(DestTy));
Anders Carlssonf1ae6d42009-09-01 20:52:42 +00002100 }
David Chisnallfa35df62012-01-16 17:27:18 +00002101 case CK_AtomicToNonAtomic:
2102 case CK_NonAtomicToAtomic:
John McCalle3027922010-08-25 11:45:40 +00002103 case CK_NoOp:
2104 case CK_UserDefinedConversion:
Eli Friedmanc08bdea2009-11-16 21:33:53 +00002105 return Visit(const_cast<Expr*>(E));
Mike Stump4a3999f2009-09-09 13:00:44 +00002106
John McCalle3027922010-08-25 11:45:40 +00002107 case CK_BaseToDerived: {
Jordan Rose7bb26112012-10-03 01:08:28 +00002108 const CXXRecordDecl *DerivedClassDecl = DestTy->getPointeeCXXRecordDecl();
2109 assert(DerivedClassDecl && "BaseToDerived arg isn't a C++ object pointer!");
2110
John McCall7f416cc2015-09-08 08:05:57 +00002111 Address Base = CGF.EmitPointerWithAlignment(E);
2112 Address Derived =
2113 CGF.GetAddressOfDerivedClass(Base, DerivedClassDecl,
Filipe Cabecinhas178a8df2013-08-08 01:08:17 +00002114 CE->path_begin(), CE->path_end(),
John McCall7f416cc2015-09-08 08:05:57 +00002115 CGF.ShouldNullCheckClassCastValue(CE));
Filipe Cabecinhas178a8df2013-08-08 01:08:17 +00002116
Richard Smith2c5868c2013-02-13 21:18:23 +00002117 // C++11 [expr.static.cast]p11: Behavior is undefined if a downcast is
2118 // performed and the object is not of the derived type.
Alexey Samsonovac4afe42014-07-07 23:59:57 +00002119 if (CGF.sanitizePerformTypeCheck())
Richard Smith2c5868c2013-02-13 21:18:23 +00002120 CGF.EmitTypeCheck(CodeGenFunction::TCK_DowncastPointer, CE->getExprLoc(),
John McCall7f416cc2015-09-08 08:05:57 +00002121 Derived.getPointer(), DestTy->getPointeeType());
Richard Smith2c5868c2013-02-13 21:18:23 +00002122
Peter Collingbourned2926c92015-03-14 02:42:25 +00002123 if (CGF.SanOpts.has(SanitizerKind::CFIDerivedCast))
Stephen Kellyf2ceec42018-08-09 21:08:08 +00002124 CGF.EmitVTablePtrCheckForCast(
2125 DestTy->getPointeeType(), Derived.getPointer(),
2126 /*MayBeNull=*/true, CodeGenFunction::CFITCK_DerivedCast,
2127 CE->getBeginLoc());
Peter Collingbourned2926c92015-03-14 02:42:25 +00002128
John McCall7f416cc2015-09-08 08:05:57 +00002129 return Derived.getPointer();
Anders Carlsson8c793172009-11-23 17:57:54 +00002130 }
John McCalle3027922010-08-25 11:45:40 +00002131 case CK_UncheckedDerivedToBase:
2132 case CK_DerivedToBase: {
John McCall7f416cc2015-09-08 08:05:57 +00002133 // The EmitPointerWithAlignment path does this fine; just discard
2134 // the alignment.
2135 return CGF.EmitPointerWithAlignment(CE).getPointer();
Anders Carlsson12f5a252009-09-12 04:57:16 +00002136 }
John McCall7f416cc2015-09-08 08:05:57 +00002137
Anders Carlsson8a01a752011-04-11 02:03:26 +00002138 case CK_Dynamic: {
John McCall7f416cc2015-09-08 08:05:57 +00002139 Address V = CGF.EmitPointerWithAlignment(E);
Eli Friedman0dfc6802009-11-27 02:07:44 +00002140 const CXXDynamicCastExpr *DCE = cast<CXXDynamicCastExpr>(CE);
2141 return CGF.EmitDynamicCast(V, DCE);
2142 }
Eli Friedmane96f1d32009-11-27 04:41:50 +00002143
John McCall7f416cc2015-09-08 08:05:57 +00002144 case CK_ArrayToPointerDecay:
2145 return CGF.EmitArrayToPointerDecay(E).getPointer();
John McCalle3027922010-08-25 11:45:40 +00002146 case CK_FunctionToPointerDecay:
John McCall7f416cc2015-09-08 08:05:57 +00002147 return EmitLValue(E).getPointer();
Eli Friedmanc08bdea2009-11-16 21:33:53 +00002148
John McCalle84af4e2010-11-13 01:35:44 +00002149 case CK_NullToPointer:
2150 if (MustVisitNullValue(E))
Nico Weber3d02b892019-06-14 04:05:17 +00002151 (void) Visit(E);
John McCalle84af4e2010-11-13 01:35:44 +00002152
Yaxun Liu402804b2016-12-15 08:09:08 +00002153 return CGF.CGM.getNullPointer(cast<llvm::PointerType>(ConvertType(DestTy)),
2154 DestTy);
John McCalle84af4e2010-11-13 01:35:44 +00002155
John McCalle3027922010-08-25 11:45:40 +00002156 case CK_NullToMemberPointer: {
John McCalle84af4e2010-11-13 01:35:44 +00002157 if (MustVisitNullValue(E))
Nico Weber3d02b892019-06-14 04:05:17 +00002158 (void) Visit(E);
John McCalla1dee5302010-08-22 10:59:02 +00002159
John McCall7a9aac22010-08-23 01:21:21 +00002160 const MemberPointerType *MPT = CE->getType()->getAs<MemberPointerType>();
2161 return CGF.CGM.getCXXABI().EmitNullMemberPointer(MPT);
2162 }
Anders Carlsson12f5a252009-09-12 04:57:16 +00002163
John McCallc62bb392012-02-15 01:22:51 +00002164 case CK_ReinterpretMemberPointer:
John McCalle3027922010-08-25 11:45:40 +00002165 case CK_BaseToDerivedMemberPointer:
2166 case CK_DerivedToBaseMemberPointer: {
Eli Friedmane96f1d32009-11-27 04:41:50 +00002167 Value *Src = Visit(E);
Craig Toppera97d7e72013-07-26 06:16:11 +00002168
John McCalla1dee5302010-08-22 10:59:02 +00002169 // Note that the AST doesn't distinguish between checked and
2170 // unchecked member pointer conversions, so we always have to
2171 // implement checked conversions here. This is inefficient when
2172 // actual control flow may be required in order to perform the
2173 // check, which it is for data member pointers (but not member
2174 // function pointers on Itanium and ARM).
John McCall7a9aac22010-08-23 01:21:21 +00002175 return CGF.CGM.getCXXABI().EmitMemberPointerConversion(CGF, CE, Src);
Eli Friedmane96f1d32009-11-27 04:41:50 +00002176 }
John McCall31168b02011-06-15 23:02:42 +00002177
John McCall2d637d22011-09-10 06:18:15 +00002178 case CK_ARCProduceObject:
John McCall31168b02011-06-15 23:02:42 +00002179 return CGF.EmitARCRetainScalarExpr(E);
John McCall2d637d22011-09-10 06:18:15 +00002180 case CK_ARCConsumeObject:
John McCall31168b02011-06-15 23:02:42 +00002181 return CGF.EmitObjCConsumeObject(E->getType(), Visit(E));
John McCalle399e5b2016-01-27 18:32:30 +00002182 case CK_ARCReclaimReturnedObject:
2183 return CGF.EmitARCReclaimReturnedObject(E, /*allowUnsafe*/ Ignored);
John McCallff613032011-10-04 06:23:45 +00002184 case CK_ARCExtendBlockObject:
2185 return CGF.EmitARCExtendBlockObject(E);
John McCall31168b02011-06-15 23:02:42 +00002186
Douglas Gregored90df32012-02-22 05:02:47 +00002187 case CK_CopyAndAutoreleaseBlockObject:
Eli Friedmanec75fec2012-02-28 01:08:45 +00002188 return CGF.EmitBlockCopyAndAutorelease(Visit(E), E->getType());
Craig Toppera97d7e72013-07-26 06:16:11 +00002189
John McCallc5e62b42010-11-13 09:02:35 +00002190 case CK_FloatingRealToComplex:
2191 case CK_FloatingComplexCast:
2192 case CK_IntegralRealToComplex:
2193 case CK_IntegralComplexCast:
John McCalld7646252010-11-14 08:17:51 +00002194 case CK_IntegralComplexToFloatingComplex:
2195 case CK_FloatingComplexToIntegralComplex:
John McCalle3027922010-08-25 11:45:40 +00002196 case CK_ConstructorConversion:
John McCall3eba6e62010-11-16 06:21:14 +00002197 case CK_ToUnion:
2198 llvm_unreachable("scalar cast to non-scalar value");
John McCall34376a62010-12-04 03:47:34 +00002199
John McCallf3735e02010-12-01 04:43:34 +00002200 case CK_LValueToRValue:
2201 assert(CGF.getContext().hasSameUnqualifiedType(E->getType(), DestTy));
John McCall34376a62010-12-04 03:47:34 +00002202 assert(E->isGLValue() && "lvalue-to-rvalue applied to r-value!");
John McCallf3735e02010-12-01 04:43:34 +00002203 return Visit(const_cast<Expr*>(E));
Eli Friedman0dfc6802009-11-27 02:07:44 +00002204
John McCalle3027922010-08-25 11:45:40 +00002205 case CK_IntegralToPointer: {
Anders Carlsson7cd39e02009-09-15 04:48:33 +00002206 Value *Src = Visit(const_cast<Expr*>(E));
Daniel Dunbaread6824c2010-08-25 03:32:38 +00002207
Anders Carlsson094c4592009-10-18 18:12:03 +00002208 // First, convert to the correct width so that we control the kind of
2209 // extension.
Yaxun Liu26f75662016-08-19 05:17:25 +00002210 auto DestLLVMTy = ConvertType(DestTy);
2211 llvm::Type *MiddleTy = CGF.CGM.getDataLayout().getIntPtrType(DestLLVMTy);
Douglas Gregor6ab2fa82011-05-20 16:38:50 +00002212 bool InputSigned = E->getType()->isSignedIntegerOrEnumerationType();
Anders Carlsson094c4592009-10-18 18:12:03 +00002213 llvm::Value* IntResult =
2214 Builder.CreateIntCast(Src, MiddleTy, InputSigned, "conv");
Daniel Dunbaread6824c2010-08-25 03:32:38 +00002215
Piotr Padlewski07058292018-07-02 19:21:36 +00002216 auto *IntToPtr = Builder.CreateIntToPtr(IntResult, DestLLVMTy);
Daniel Dunbaread6824c2010-08-25 03:32:38 +00002217
Piotr Padlewski07058292018-07-02 19:21:36 +00002218 if (CGF.CGM.getCodeGenOpts().StrictVTablePointers) {
2219 // Going from integer to pointer that could be dynamic requires reloading
2220 // dynamic information from invariant.group.
2221 if (DestTy.mayBeDynamicClass())
2222 IntToPtr = Builder.CreateLaunderInvariantGroup(IntToPtr);
2223 }
2224 return IntToPtr;
2225 }
2226 case CK_PointerToIntegral: {
2227 assert(!DestTy->isBooleanType() && "bool should use PointerToBool");
2228 auto *PtrExpr = Visit(E);
2229
2230 if (CGF.CGM.getCodeGenOpts().StrictVTablePointers) {
2231 const QualType SrcType = E->getType();
2232
2233 // Casting to integer requires stripping dynamic information as it does
2234 // not carries it.
2235 if (SrcType.mayBeDynamicClass())
2236 PtrExpr = Builder.CreateStripInvariantGroup(PtrExpr);
2237 }
2238
2239 return Builder.CreatePtrToInt(PtrExpr, ConvertType(DestTy));
2240 }
John McCalle3027922010-08-25 11:45:40 +00002241 case CK_ToVoid: {
John McCalla2342eb2010-12-05 02:00:02 +00002242 CGF.EmitIgnoredExpr(E);
Craig Topper8a13c412014-05-21 05:09:00 +00002243 return nullptr;
Eli Friedmanc08bdea2009-11-16 21:33:53 +00002244 }
John McCalle3027922010-08-25 11:45:40 +00002245 case CK_VectorSplat: {
Chris Lattner2192fe52011-07-18 04:24:23 +00002246 llvm::Type *DstTy = ConvertType(DestTy);
George Burgess IVdf1ed002016-01-13 01:52:39 +00002247 Value *Elt = Visit(const_cast<Expr*>(E));
Eli Friedmanc08bdea2009-11-16 21:33:53 +00002248 // Splat the element across to all elements
Craig Topperf2f1a092016-07-08 02:17:35 +00002249 unsigned NumElements = DstTy->getVectorNumElements();
Alp Toker5f072d82014-04-19 23:55:49 +00002250 return Builder.CreateVectorSplat(NumElements, Elt, "splat");
Eli Friedmanc08bdea2009-11-16 21:33:53 +00002251 }
John McCall8cb679e2010-11-15 09:13:47 +00002252
Leonard Chan99bda372018-10-15 16:07:02 +00002253 case CK_FixedPointCast:
Leonard Chanb4ba4672018-10-23 17:55:35 +00002254 return EmitScalarConversion(Visit(E), E->getType(), DestTy,
2255 CE->getExprLoc());
2256
2257 case CK_FixedPointToBoolean:
2258 assert(E->getType()->isFixedPointType() &&
2259 "Expected src type to be fixed point type");
2260 assert(DestTy->isBooleanType() && "Expected dest type to be boolean type");
2261 return EmitScalarConversion(Visit(E), E->getType(), DestTy,
2262 CE->getExprLoc());
Leonard Chan99bda372018-10-15 16:07:02 +00002263
Leonard Chan8f7caae2019-03-06 00:28:43 +00002264 case CK_FixedPointToIntegral:
2265 assert(E->getType()->isFixedPointType() &&
2266 "Expected src type to be fixed point type");
2267 assert(DestTy->isIntegerType() && "Expected dest type to be an integer");
2268 return EmitScalarConversion(Visit(E), E->getType(), DestTy,
2269 CE->getExprLoc());
2270
2271 case CK_IntegralToFixedPoint:
2272 assert(E->getType()->isIntegerType() &&
2273 "Expected src type to be an integer");
2274 assert(DestTy->isFixedPointType() &&
2275 "Expected dest type to be fixed point type");
2276 return EmitScalarConversion(Visit(E), E->getType(), DestTy,
2277 CE->getExprLoc());
2278
Roman Lebedevb69ba222018-07-30 18:58:30 +00002279 case CK_IntegralCast: {
2280 ScalarConversionOpts Opts;
Roman Lebedev62debd802018-10-30 21:58:56 +00002281 if (auto *ICE = dyn_cast<ImplicitCastExpr>(CE)) {
Roman Lebedevd677c3f2018-11-19 19:56:43 +00002282 if (!ICE->isPartOfExplicitCast())
2283 Opts = ScalarConversionOpts(CGF.SanOpts);
Roman Lebedevb69ba222018-07-30 18:58:30 +00002284 }
2285 return EmitScalarConversion(Visit(E), E->getType(), DestTy,
2286 CE->getExprLoc(), Opts);
2287 }
John McCalle3027922010-08-25 11:45:40 +00002288 case CK_IntegralToFloating:
2289 case CK_FloatingToIntegral:
2290 case CK_FloatingCast:
Filipe Cabecinhas7af183d2015-08-11 04:19:28 +00002291 return EmitScalarConversion(Visit(E), E->getType(), DestTy,
2292 CE->getExprLoc());
Roman Lebedevb69ba222018-07-30 18:58:30 +00002293 case CK_BooleanToSignedIntegral: {
2294 ScalarConversionOpts Opts;
2295 Opts.TreatBooleanAsSigned = true;
George Burgess IVdf1ed002016-01-13 01:52:39 +00002296 return EmitScalarConversion(Visit(E), E->getType(), DestTy,
Roman Lebedevb69ba222018-07-30 18:58:30 +00002297 CE->getExprLoc(), Opts);
2298 }
John McCall8cb679e2010-11-15 09:13:47 +00002299 case CK_IntegralToBoolean:
2300 return EmitIntToBoolConversion(Visit(E));
2301 case CK_PointerToBoolean:
Yaxun Liu402804b2016-12-15 08:09:08 +00002302 return EmitPointerToBoolConversion(Visit(E), E->getType());
John McCall8cb679e2010-11-15 09:13:47 +00002303 case CK_FloatingToBoolean:
2304 return EmitFloatToBoolConversion(Visit(E));
John McCalle3027922010-08-25 11:45:40 +00002305 case CK_MemberPointerToBoolean: {
John McCall7a9aac22010-08-23 01:21:21 +00002306 llvm::Value *MemPtr = Visit(E);
2307 const MemberPointerType *MPT = E->getType()->getAs<MemberPointerType>();
2308 return CGF.CGM.getCXXABI().EmitMemberPointerIsNotNull(CGF, MemPtr, MPT);
Anders Carlsson3df53bc2009-08-24 18:26:39 +00002309 }
John McCalld7646252010-11-14 08:17:51 +00002310
2311 case CK_FloatingComplexToReal:
2312 case CK_IntegralComplexToReal:
John McCall07bb1962010-11-16 10:08:07 +00002313 return CGF.EmitComplexExpr(E, false, true).first;
John McCalld7646252010-11-14 08:17:51 +00002314
2315 case CK_FloatingComplexToBoolean:
2316 case CK_IntegralComplexToBoolean: {
John McCall07bb1962010-11-16 10:08:07 +00002317 CodeGenFunction::ComplexPairTy V = CGF.EmitComplexExpr(E);
John McCalld7646252010-11-14 08:17:51 +00002318
2319 // TODO: kill this function off, inline appropriate case here
Filipe Cabecinhas7af183d2015-08-11 04:19:28 +00002320 return EmitComplexToScalarConversion(V, E->getType(), DestTy,
2321 CE->getExprLoc());
John McCalld7646252010-11-14 08:17:51 +00002322 }
2323
Andrew Savonichevb555b762018-10-23 15:19:20 +00002324 case CK_ZeroToOCLOpaqueType: {
Andrew Savonichev3fee3512018-11-08 11:25:41 +00002325 assert((DestTy->isEventT() || DestTy->isQueueT() ||
2326 DestTy->isOCLIntelSubgroupAVCType()) &&
Andrew Savonichevb555b762018-10-23 15:19:20 +00002327 "CK_ZeroToOCLEvent cast on non-event type");
Egor Churaev89831422016-12-23 14:55:49 +00002328 return llvm::Constant::getNullValue(ConvertType(DestTy));
2329 }
2330
Yaxun Liu0bc4b2d2016-07-28 19:26:30 +00002331 case CK_IntToOCLSampler:
Sjoerd Meijercc623ad2017-09-08 15:15:00 +00002332 return CGF.CGM.createOpenCLIntToSamplerConversion(E, CGF);
Yaxun Liu0bc4b2d2016-07-28 19:26:30 +00002333
2334 } // end of switch
Mike Stump4a3999f2009-09-09 13:00:44 +00002335
John McCall3eba6e62010-11-16 06:21:14 +00002336 llvm_unreachable("unknown scalar cast");
Chris Lattner2da04b32007-08-24 05:35:26 +00002337}
2338
Chris Lattner04a913b2007-08-31 22:09:40 +00002339Value *ScalarExprEmitter::VisitStmtExpr(const StmtExpr *E) {
John McCallce1de612011-01-26 04:00:11 +00002340 CodeGenFunction::StmtExprEvaluation eval(CGF);
John McCall7f416cc2015-09-08 08:05:57 +00002341 Address RetAlloca = CGF.EmitCompoundStmt(*E->getSubStmt(),
2342 !E->getType()->isVoidType());
2343 if (!RetAlloca.isValid())
Craig Topper8a13c412014-05-21 05:09:00 +00002344 return nullptr;
Nick Lewycky2d84e842013-10-02 02:29:49 +00002345 return CGF.EmitLoadOfScalar(CGF.MakeAddrLValue(RetAlloca, E->getType()),
2346 E->getExprLoc());
Chris Lattner04a913b2007-08-31 22:09:40 +00002347}
2348
Reid Kleckner092d0652017-03-06 22:18:34 +00002349Value *ScalarExprEmitter::VisitExprWithCleanups(ExprWithCleanups *E) {
2350 CGF.enterFullExpression(E);
2351 CodeGenFunction::RunCleanupsScope Scope(CGF);
2352 Value *V = Visit(E->getSubExpr());
2353 // Defend against dominance problems caused by jumps out of expression
2354 // evaluation through the shared cleanup block.
2355 Scope.ForceCleanup({&V});
2356 return V;
2357}
2358
Chris Lattner2da04b32007-08-24 05:35:26 +00002359//===----------------------------------------------------------------------===//
2360// Unary Operators
2361//===----------------------------------------------------------------------===//
2362
Alexey Samsonovf6246502015-04-23 01:50:45 +00002363static BinOpInfo createBinOpInfoFromIncDec(const UnaryOperator *E,
2364 llvm::Value *InVal, bool IsInc) {
2365 BinOpInfo BinOp;
2366 BinOp.LHS = InVal;
2367 BinOp.RHS = llvm::ConstantInt::get(InVal->getType(), 1, false);
2368 BinOp.Ty = E->getType();
2369 BinOp.Opcode = IsInc ? BO_Add : BO_Sub;
Adam Nemet484aa452017-03-27 19:17:25 +00002370 // FIXME: once UnaryOperator carries FPFeatures, copy it here.
Alexey Samsonovf6246502015-04-23 01:50:45 +00002371 BinOp.E = E;
2372 return BinOp;
2373}
2374
2375llvm::Value *ScalarExprEmitter::EmitIncDecConsiderOverflowBehavior(
2376 const UnaryOperator *E, llvm::Value *InVal, bool IsInc) {
2377 llvm::Value *Amount =
2378 llvm::ConstantInt::get(InVal->getType(), IsInc ? 1 : -1, true);
2379 StringRef Name = IsInc ? "inc" : "dec";
Richard Smith9c6890a2012-11-01 22:30:59 +00002380 switch (CGF.getLangOpts().getSignedOverflowBehavior()) {
Anton Yartsev85129b82011-02-07 02:17:30 +00002381 case LangOptions::SOB_Defined:
Alexey Samsonovf6246502015-04-23 01:50:45 +00002382 return Builder.CreateAdd(InVal, Amount, Name);
Richard Smith3e056de2012-08-25 00:32:28 +00002383 case LangOptions::SOB_Undefined:
Alexey Samsonovedf99a92014-11-07 22:29:38 +00002384 if (!CGF.SanOpts.has(SanitizerKind::SignedIntegerOverflow))
Malcolm Parsonsfab36802018-04-16 08:31:08 +00002385 return Builder.CreateNSWAdd(InVal, Amount, Name);
Reid Kleckner4dc0b1a2018-11-01 19:54:45 +00002386 LLVM_FALLTHROUGH;
Malcolm Parsonsfab36802018-04-16 08:31:08 +00002387 case LangOptions::SOB_Trapping:
2388 if (!E->canOverflow())
2389 return Builder.CreateNSWAdd(InVal, Amount, Name);
2390 return EmitOverflowCheckedBinOp(createBinOpInfoFromIncDec(E, InVal, IsInc));
2391 }
David Blaikie83d382b2011-09-23 05:06:16 +00002392 llvm_unreachable("Unknown SignedOverflowBehaviorTy");
Anton Yartsev85129b82011-02-07 02:17:30 +00002393}
2394
John McCalle3dc1702011-02-15 09:22:45 +00002395llvm::Value *
2396ScalarExprEmitter::EmitScalarPrePostIncDec(const UnaryOperator *E, LValue LV,
2397 bool isInc, bool isPre) {
Craig Toppera97d7e72013-07-26 06:16:11 +00002398
John McCalle3dc1702011-02-15 09:22:45 +00002399 QualType type = E->getSubExpr()->getType();
Craig Topper8a13c412014-05-21 05:09:00 +00002400 llvm::PHINode *atomicPHI = nullptr;
David Chisnallef78c302013-03-03 16:02:42 +00002401 llvm::Value *value;
2402 llvm::Value *input;
Anton Yartsev85129b82011-02-07 02:17:30 +00002403
John McCalle3dc1702011-02-15 09:22:45 +00002404 int amount = (isInc ? 1 : -1);
Vedant Kumar175b6d12017-07-13 20:55:26 +00002405 bool isSubtraction = !isInc;
John McCalle3dc1702011-02-15 09:22:45 +00002406
David Chisnallfa35df62012-01-16 17:27:18 +00002407 if (const AtomicType *atomicTy = type->getAs<AtomicType>()) {
David Chisnallef78c302013-03-03 16:02:42 +00002408 type = atomicTy->getValueType();
2409 if (isInc && type->isBooleanType()) {
2410 llvm::Value *True = CGF.EmitToMemory(Builder.getTrue(), type);
2411 if (isPre) {
John McCall7f416cc2015-09-08 08:05:57 +00002412 Builder.CreateStore(True, LV.getAddress(), LV.isVolatileQualified())
JF Bastien92f4ef12016-04-06 17:26:42 +00002413 ->setAtomic(llvm::AtomicOrdering::SequentiallyConsistent);
David Chisnallef78c302013-03-03 16:02:42 +00002414 return Builder.getTrue();
2415 }
2416 // For atomic bool increment, we just store true and return it for
2417 // preincrement, do an atomic swap with true for postincrement
JF Bastien92f4ef12016-04-06 17:26:42 +00002418 return Builder.CreateAtomicRMW(
2419 llvm::AtomicRMWInst::Xchg, LV.getPointer(), True,
2420 llvm::AtomicOrdering::SequentiallyConsistent);
David Chisnallef78c302013-03-03 16:02:42 +00002421 }
2422 // Special case for atomic increment / decrement on integers, emit
2423 // atomicrmw instructions. We skip this if we want to be doing overflow
Craig Toppera97d7e72013-07-26 06:16:11 +00002424 // checking, and fall into the slow path with the atomic cmpxchg loop.
David Chisnallef78c302013-03-03 16:02:42 +00002425 if (!type->isBooleanType() && type->isIntegerType() &&
2426 !(type->isUnsignedIntegerType() &&
Alexey Samsonovedf99a92014-11-07 22:29:38 +00002427 CGF.SanOpts.has(SanitizerKind::UnsignedIntegerOverflow)) &&
David Chisnallef78c302013-03-03 16:02:42 +00002428 CGF.getLangOpts().getSignedOverflowBehavior() !=
Alexey Samsonovedf99a92014-11-07 22:29:38 +00002429 LangOptions::SOB_Trapping) {
David Chisnallef78c302013-03-03 16:02:42 +00002430 llvm::AtomicRMWInst::BinOp aop = isInc ? llvm::AtomicRMWInst::Add :
2431 llvm::AtomicRMWInst::Sub;
2432 llvm::Instruction::BinaryOps op = isInc ? llvm::Instruction::Add :
2433 llvm::Instruction::Sub;
2434 llvm::Value *amt = CGF.EmitToMemory(
2435 llvm::ConstantInt::get(ConvertType(type), 1, true), type);
2436 llvm::Value *old = Builder.CreateAtomicRMW(aop,
JF Bastien92f4ef12016-04-06 17:26:42 +00002437 LV.getPointer(), amt, llvm::AtomicOrdering::SequentiallyConsistent);
David Chisnallef78c302013-03-03 16:02:42 +00002438 return isPre ? Builder.CreateBinOp(op, old, amt) : old;
2439 }
Nick Lewycky2d84e842013-10-02 02:29:49 +00002440 value = EmitLoadOfLValue(LV, E->getExprLoc());
David Chisnallef78c302013-03-03 16:02:42 +00002441 input = value;
2442 // For every other atomic operation, we need to emit a load-op-cmpxchg loop
David Chisnallfa35df62012-01-16 17:27:18 +00002443 llvm::BasicBlock *startBB = Builder.GetInsertBlock();
2444 llvm::BasicBlock *opBB = CGF.createBasicBlock("atomic_op", CGF.CurFn);
David Chisnallef78c302013-03-03 16:02:42 +00002445 value = CGF.EmitToMemory(value, type);
David Chisnallfa35df62012-01-16 17:27:18 +00002446 Builder.CreateBr(opBB);
2447 Builder.SetInsertPoint(opBB);
2448 atomicPHI = Builder.CreatePHI(value->getType(), 2);
2449 atomicPHI->addIncoming(value, startBB);
David Chisnallfa35df62012-01-16 17:27:18 +00002450 value = atomicPHI;
David Chisnallef78c302013-03-03 16:02:42 +00002451 } else {
Nick Lewycky2d84e842013-10-02 02:29:49 +00002452 value = EmitLoadOfLValue(LV, E->getExprLoc());
David Chisnallef78c302013-03-03 16:02:42 +00002453 input = value;
David Chisnallfa35df62012-01-16 17:27:18 +00002454 }
2455
John McCalle3dc1702011-02-15 09:22:45 +00002456 // Special case of integer increment that we have to check first: bool++.
2457 // Due to promotion rules, we get:
2458 // bool++ -> bool = bool + 1
2459 // -> bool = (int)bool + 1
2460 // -> bool = ((int)bool + 1 != 0)
2461 // An interesting aspect of this is that increment is always true.
2462 // Decrement does not have this property.
2463 if (isInc && type->isBooleanType()) {
2464 value = Builder.getTrue();
2465
2466 // Most common case by far: integer increment.
Malcolm Parsonsfab36802018-04-16 08:31:08 +00002467 } else if (type->isIntegerType()) {
2468 // Note that signed integer inc/dec with width less than int can't
2469 // overflow because of promotion rules; we're just eliding a few steps here.
2470 if (E->canOverflow() && type->isSignedIntegerOrEnumerationType()) {
2471 value = EmitIncDecConsiderOverflowBehavior(E, value, isInc);
2472 } else if (E->canOverflow() && type->isUnsignedIntegerType() &&
2473 CGF.SanOpts.has(SanitizerKind::UnsignedIntegerOverflow)) {
2474 value =
2475 EmitOverflowCheckedBinOp(createBinOpInfoFromIncDec(E, value, isInc));
Alexey Samsonovf6246502015-04-23 01:50:45 +00002476 } else {
2477 llvm::Value *amt = llvm::ConstantInt::get(value->getType(), amount, true);
John McCalle3dc1702011-02-15 09:22:45 +00002478 value = Builder.CreateAdd(value, amt, isInc ? "inc" : "dec");
Alexey Samsonovf6246502015-04-23 01:50:45 +00002479 }
Craig Toppera97d7e72013-07-26 06:16:11 +00002480
John McCalle3dc1702011-02-15 09:22:45 +00002481 // Next most common: pointer increment.
2482 } else if (const PointerType *ptr = type->getAs<PointerType>()) {
2483 QualType type = ptr->getPointeeType();
2484
2485 // VLA types don't have constant size.
John McCall77527a82011-06-25 01:32:37 +00002486 if (const VariableArrayType *vla
2487 = CGF.getContext().getAsVariableArrayType(type)) {
Sander de Smalen891af03a2018-02-03 13:55:59 +00002488 llvm::Value *numElts = CGF.getVLASize(vla).NumElts;
John McCall23c29fe2011-06-24 21:55:10 +00002489 if (!isInc) numElts = Builder.CreateNSWNeg(numElts, "vla.negsize");
Richard Smith9c6890a2012-11-01 22:30:59 +00002490 if (CGF.getLangOpts().isSignedOverflowDefined())
John McCall23c29fe2011-06-24 21:55:10 +00002491 value = Builder.CreateGEP(value, numElts, "vla.inc");
Chris Lattner2e72da942011-03-01 00:03:48 +00002492 else
Vedant Kumar175b6d12017-07-13 20:55:26 +00002493 value = CGF.EmitCheckedInBoundsGEP(
2494 value, numElts, /*SignedIndices=*/false, isSubtraction,
2495 E->getExprLoc(), "vla.inc");
Craig Toppera97d7e72013-07-26 06:16:11 +00002496
John McCalle3dc1702011-02-15 09:22:45 +00002497 // Arithmetic on function pointers (!) is just +-1.
2498 } else if (type->isFunctionType()) {
Chris Lattner2531eb42011-04-19 22:55:03 +00002499 llvm::Value *amt = Builder.getInt32(amount);
John McCalle3dc1702011-02-15 09:22:45 +00002500
2501 value = CGF.EmitCastToVoidPtr(value);
Richard Smith9c6890a2012-11-01 22:30:59 +00002502 if (CGF.getLangOpts().isSignedOverflowDefined())
Chris Lattner2e72da942011-03-01 00:03:48 +00002503 value = Builder.CreateGEP(value, amt, "incdec.funcptr");
2504 else
Vedant Kumar175b6d12017-07-13 20:55:26 +00002505 value = CGF.EmitCheckedInBoundsGEP(value, amt, /*SignedIndices=*/false,
2506 isSubtraction, E->getExprLoc(),
2507 "incdec.funcptr");
John McCalle3dc1702011-02-15 09:22:45 +00002508 value = Builder.CreateBitCast(value, input->getType());
2509
2510 // For everything else, we can just do a simple increment.
Anton Yartsev85129b82011-02-07 02:17:30 +00002511 } else {
Chris Lattner2531eb42011-04-19 22:55:03 +00002512 llvm::Value *amt = Builder.getInt32(amount);
Richard Smith9c6890a2012-11-01 22:30:59 +00002513 if (CGF.getLangOpts().isSignedOverflowDefined())
Chris Lattner2e72da942011-03-01 00:03:48 +00002514 value = Builder.CreateGEP(value, amt, "incdec.ptr");
2515 else
Vedant Kumar175b6d12017-07-13 20:55:26 +00002516 value = CGF.EmitCheckedInBoundsGEP(value, amt, /*SignedIndices=*/false,
2517 isSubtraction, E->getExprLoc(),
2518 "incdec.ptr");
John McCalle3dc1702011-02-15 09:22:45 +00002519 }
2520
2521 // Vector increment/decrement.
2522 } else if (type->isVectorType()) {
2523 if (type->hasIntegerRepresentation()) {
2524 llvm::Value *amt = llvm::ConstantInt::get(value->getType(), amount);
2525
Eli Friedman409943e2011-05-06 18:04:18 +00002526 value = Builder.CreateAdd(value, amt, isInc ? "inc" : "dec");
John McCalle3dc1702011-02-15 09:22:45 +00002527 } else {
2528 value = Builder.CreateFAdd(
2529 value,
2530 llvm::ConstantFP::get(value->getType(), amount),
Anton Yartsev85129b82011-02-07 02:17:30 +00002531 isInc ? "inc" : "dec");
2532 }
Anton Yartsev85129b82011-02-07 02:17:30 +00002533
John McCalle3dc1702011-02-15 09:22:45 +00002534 // Floating point.
2535 } else if (type->isRealFloatingType()) {
Chris Lattner05dc78c2010-06-26 22:09:34 +00002536 // Add the inc/dec to the real part.
John McCalle3dc1702011-02-15 09:22:45 +00002537 llvm::Value *amt;
Anton Korobeynikovf0c267e2011-10-14 23:23:15 +00002538
Ahmed Bougachad1801af2015-03-23 17:54:16 +00002539 if (type->isHalfType() && !CGF.getContext().getLangOpts().NativeHalfType) {
Anton Korobeynikovf0c267e2011-10-14 23:23:15 +00002540 // Another special case: half FP increment should be done via float
Akira Hatanaka502775a2017-12-09 00:02:37 +00002541 if (CGF.getContext().getTargetInfo().useFP16ConversionIntrinsics()) {
Ahmed Bougachad1801af2015-03-23 17:54:16 +00002542 value = Builder.CreateCall(
2543 CGF.CGM.getIntrinsic(llvm::Intrinsic::convert_from_fp16,
2544 CGF.CGM.FloatTy),
2545 input, "incdec.conv");
2546 } else {
2547 value = Builder.CreateFPExt(input, CGF.CGM.FloatTy, "incdec.conv");
2548 }
Anton Korobeynikovf0c267e2011-10-14 23:23:15 +00002549 }
2550
John McCalle3dc1702011-02-15 09:22:45 +00002551 if (value->getType()->isFloatTy())
2552 amt = llvm::ConstantFP::get(VMContext,
2553 llvm::APFloat(static_cast<float>(amount)));
2554 else if (value->getType()->isDoubleTy())
2555 amt = llvm::ConstantFP::get(VMContext,
2556 llvm::APFloat(static_cast<double>(amount)));
Chris Lattner05dc78c2010-06-26 22:09:34 +00002557 else {
Nemanja Ivanovicbb1ea2d2016-05-09 08:52:33 +00002558 // Remaining types are Half, LongDouble or __float128. Convert from float.
John McCalle3dc1702011-02-15 09:22:45 +00002559 llvm::APFloat F(static_cast<float>(amount));
Chris Lattner05dc78c2010-06-26 22:09:34 +00002560 bool ignored;
Nemanja Ivanovicbb1ea2d2016-05-09 08:52:33 +00002561 const llvm::fltSemantics *FS;
Ahmed Bougacha6ba38312015-03-24 23:44:42 +00002562 // Don't use getFloatTypeSemantics because Half isn't
2563 // necessarily represented using the "half" LLVM type.
Nemanja Ivanovicbb1ea2d2016-05-09 08:52:33 +00002564 if (value->getType()->isFP128Ty())
2565 FS = &CGF.getTarget().getFloat128Format();
2566 else if (value->getType()->isHalfTy())
2567 FS = &CGF.getTarget().getHalfFormat();
2568 else
2569 FS = &CGF.getTarget().getLongDoubleFormat();
2570 F.convert(*FS, llvm::APFloat::rmTowardZero, &ignored);
John McCalle3dc1702011-02-15 09:22:45 +00002571 amt = llvm::ConstantFP::get(VMContext, F);
Chris Lattner05dc78c2010-06-26 22:09:34 +00002572 }
John McCalle3dc1702011-02-15 09:22:45 +00002573 value = Builder.CreateFAdd(value, amt, isInc ? "inc" : "dec");
2574
Ahmed Bougachad1801af2015-03-23 17:54:16 +00002575 if (type->isHalfType() && !CGF.getContext().getLangOpts().NativeHalfType) {
Akira Hatanaka502775a2017-12-09 00:02:37 +00002576 if (CGF.getContext().getTargetInfo().useFP16ConversionIntrinsics()) {
Ahmed Bougachad1801af2015-03-23 17:54:16 +00002577 value = Builder.CreateCall(
2578 CGF.CGM.getIntrinsic(llvm::Intrinsic::convert_to_fp16,
2579 CGF.CGM.FloatTy),
2580 value, "incdec.conv");
2581 } else {
2582 value = Builder.CreateFPTrunc(value, input->getType(), "incdec.conv");
2583 }
2584 }
Anton Korobeynikovf0c267e2011-10-14 23:23:15 +00002585
John McCalle3dc1702011-02-15 09:22:45 +00002586 // Objective-C pointer types.
2587 } else {
2588 const ObjCObjectPointerType *OPT = type->castAs<ObjCObjectPointerType>();
2589 value = CGF.EmitCastToVoidPtr(value);
2590
2591 CharUnits size = CGF.getContext().getTypeSizeInChars(OPT->getObjectType());
2592 if (!isInc) size = -size;
2593 llvm::Value *sizeValue =
2594 llvm::ConstantInt::get(CGF.SizeTy, size.getQuantity());
2595
Richard Smith9c6890a2012-11-01 22:30:59 +00002596 if (CGF.getLangOpts().isSignedOverflowDefined())
Chris Lattner2e72da942011-03-01 00:03:48 +00002597 value = Builder.CreateGEP(value, sizeValue, "incdec.objptr");
2598 else
Vedant Kumar175b6d12017-07-13 20:55:26 +00002599 value = CGF.EmitCheckedInBoundsGEP(value, sizeValue,
2600 /*SignedIndices=*/false, isSubtraction,
Vedant Kumar6dbf4272017-06-12 18:42:51 +00002601 E->getExprLoc(), "incdec.objptr");
John McCalle3dc1702011-02-15 09:22:45 +00002602 value = Builder.CreateBitCast(value, input->getType());
Chris Lattner05dc78c2010-06-26 22:09:34 +00002603 }
Craig Toppera97d7e72013-07-26 06:16:11 +00002604
David Chisnallfa35df62012-01-16 17:27:18 +00002605 if (atomicPHI) {
Erik Pilkington53e43f42019-02-28 00:47:55 +00002606 llvm::BasicBlock *curBlock = Builder.GetInsertBlock();
David Chisnallfa35df62012-01-16 17:27:18 +00002607 llvm::BasicBlock *contBB = CGF.createBasicBlock("atomic_cont", CGF.CurFn);
Alexey Bataev452d8e12014-12-15 05:25:25 +00002608 auto Pair = CGF.EmitAtomicCompareExchange(
Alexey Bataevb4505a72015-03-30 05:20:59 +00002609 LV, RValue::get(atomicPHI), RValue::get(value), E->getExprLoc());
2610 llvm::Value *old = CGF.EmitToMemory(Pair.first.getScalarVal(), type);
2611 llvm::Value *success = Pair.second;
Erik Pilkington53e43f42019-02-28 00:47:55 +00002612 atomicPHI->addIncoming(old, curBlock);
2613 Builder.CreateCondBr(success, contBB, atomicPHI->getParent());
David Chisnallfa35df62012-01-16 17:27:18 +00002614 Builder.SetInsertPoint(contBB);
2615 return isPre ? value : input;
2616 }
Anton Korobeynikovf0c267e2011-10-14 23:23:15 +00002617
Chris Lattner05dc78c2010-06-26 22:09:34 +00002618 // Store the updated result through the lvalue.
2619 if (LV.isBitField())
John McCall55e1fbc2011-06-25 02:11:03 +00002620 CGF.EmitStoreThroughBitfieldLValue(RValue::get(value), LV, &value);
Chris Lattner05dc78c2010-06-26 22:09:34 +00002621 else
John McCall55e1fbc2011-06-25 02:11:03 +00002622 CGF.EmitStoreThroughLValue(RValue::get(value), LV);
Anton Korobeynikovf0c267e2011-10-14 23:23:15 +00002623
Chris Lattner05dc78c2010-06-26 22:09:34 +00002624 // If this is a postinc, return the value read from memory, otherwise use the
2625 // updated value.
John McCalle3dc1702011-02-15 09:22:45 +00002626 return isPre ? value : input;
Chris Lattner05dc78c2010-06-26 22:09:34 +00002627}
2628
2629
2630
Chris Lattner2da04b32007-08-24 05:35:26 +00002631Value *ScalarExprEmitter::VisitUnaryMinus(const UnaryOperator *E) {
Mike Stumpdf0fe272009-05-29 15:46:01 +00002632 TestAndClearIgnoreResultAssign();
Chris Lattner0bf27622010-06-26 21:48:21 +00002633 // Emit unary minus with EmitSub so we handle overflow cases etc.
2634 BinOpInfo BinOp;
Chris Lattnerc1028f62010-06-28 17:12:37 +00002635 BinOp.RHS = Visit(E->getSubExpr());
Craig Toppera97d7e72013-07-26 06:16:11 +00002636
Chris Lattnerc1028f62010-06-28 17:12:37 +00002637 if (BinOp.RHS->getType()->isFPOrFPVectorTy())
2638 BinOp.LHS = llvm::ConstantFP::getZeroValueForNegation(BinOp.RHS->getType());
Craig Toppera97d7e72013-07-26 06:16:11 +00002639 else
Chris Lattnerc1028f62010-06-28 17:12:37 +00002640 BinOp.LHS = llvm::Constant::getNullValue(BinOp.RHS->getType());
Chris Lattner0bf27622010-06-26 21:48:21 +00002641 BinOp.Ty = E->getType();
John McCalle3027922010-08-25 11:45:40 +00002642 BinOp.Opcode = BO_Sub;
Adam Nemet484aa452017-03-27 19:17:25 +00002643 // FIXME: once UnaryOperator carries FPFeatures, copy it here.
Chris Lattner0bf27622010-06-26 21:48:21 +00002644 BinOp.E = E;
2645 return EmitSub(BinOp);
Chris Lattner2da04b32007-08-24 05:35:26 +00002646}
2647
2648Value *ScalarExprEmitter::VisitUnaryNot(const UnaryOperator *E) {
Mike Stumpdf0fe272009-05-29 15:46:01 +00002649 TestAndClearIgnoreResultAssign();
Chris Lattner2da04b32007-08-24 05:35:26 +00002650 Value *Op = Visit(E->getSubExpr());
2651 return Builder.CreateNot(Op, "neg");
2652}
2653
2654Value *ScalarExprEmitter::VisitUnaryLNot(const UnaryOperator *E) {
Tanya Lattner20248222012-01-16 21:02:28 +00002655 // Perform vector logical not on comparison with zero vector.
2656 if (E->getType()->isExtVectorType()) {
2657 Value *Oper = Visit(E->getSubExpr());
2658 Value *Zero = llvm::Constant::getNullValue(Oper->getType());
Joey Gouly7d00f002013-02-21 11:49:56 +00002659 Value *Result;
2660 if (Oper->getType()->isFPOrFPVectorTy())
2661 Result = Builder.CreateFCmp(llvm::CmpInst::FCMP_OEQ, Oper, Zero, "cmp");
2662 else
2663 Result = Builder.CreateICmp(llvm::CmpInst::ICMP_EQ, Oper, Zero, "cmp");
Tanya Lattner20248222012-01-16 21:02:28 +00002664 return Builder.CreateSExt(Result, ConvertType(E->getType()), "sext");
2665 }
Craig Toppera97d7e72013-07-26 06:16:11 +00002666
Chris Lattner2da04b32007-08-24 05:35:26 +00002667 // Compare operand to zero.
2668 Value *BoolVal = CGF.EvaluateExprAsBool(E->getSubExpr());
Mike Stump4a3999f2009-09-09 13:00:44 +00002669
Chris Lattner2da04b32007-08-24 05:35:26 +00002670 // Invert value.
2671 // TODO: Could dynamically modify easy computations here. For example, if
2672 // the operand is an icmp ne, turn into icmp eq.
2673 BoolVal = Builder.CreateNot(BoolVal, "lnot");
Mike Stump4a3999f2009-09-09 13:00:44 +00002674
Anders Carlsson775640d2009-05-19 18:44:53 +00002675 // ZExt result to the expr type.
2676 return Builder.CreateZExt(BoolVal, ConvertType(E->getType()), "lnot.ext");
Chris Lattner2da04b32007-08-24 05:35:26 +00002677}
2678
Eli Friedmand7c72322010-08-05 09:58:49 +00002679Value *ScalarExprEmitter::VisitOffsetOfExpr(OffsetOfExpr *E) {
2680 // Try folding the offsetof to a constant.
Fangrui Song407659a2018-11-30 23:41:18 +00002681 Expr::EvalResult EVResult;
2682 if (E->EvaluateAsInt(EVResult, CGF.getContext())) {
2683 llvm::APSInt Value = EVResult.Val.getInt();
Richard Smith5fab0c92011-12-28 19:48:30 +00002684 return Builder.getInt(Value);
Fangrui Song407659a2018-11-30 23:41:18 +00002685 }
Eli Friedmand7c72322010-08-05 09:58:49 +00002686
2687 // Loop over the components of the offsetof to compute the value.
2688 unsigned n = E->getNumComponents();
Chris Lattner2192fe52011-07-18 04:24:23 +00002689 llvm::Type* ResultType = ConvertType(E->getType());
Eli Friedmand7c72322010-08-05 09:58:49 +00002690 llvm::Value* Result = llvm::Constant::getNullValue(ResultType);
2691 QualType CurrentType = E->getTypeSourceInfo()->getType();
2692 for (unsigned i = 0; i != n; ++i) {
James Y Knight7281c352015-12-29 22:31:18 +00002693 OffsetOfNode ON = E->getComponent(i);
Craig Topper8a13c412014-05-21 05:09:00 +00002694 llvm::Value *Offset = nullptr;
Eli Friedmand7c72322010-08-05 09:58:49 +00002695 switch (ON.getKind()) {
James Y Knight7281c352015-12-29 22:31:18 +00002696 case OffsetOfNode::Array: {
Eli Friedmand7c72322010-08-05 09:58:49 +00002697 // Compute the index
2698 Expr *IdxExpr = E->getIndexExpr(ON.getArrayExprIndex());
2699 llvm::Value* Idx = CGF.EmitScalarExpr(IdxExpr);
Douglas Gregor6ab2fa82011-05-20 16:38:50 +00002700 bool IdxSigned = IdxExpr->getType()->isSignedIntegerOrEnumerationType();
Eli Friedmand7c72322010-08-05 09:58:49 +00002701 Idx = Builder.CreateIntCast(Idx, ResultType, IdxSigned, "conv");
2702
2703 // Save the element type
2704 CurrentType =
2705 CGF.getContext().getAsArrayType(CurrentType)->getElementType();
2706
2707 // Compute the element size
2708 llvm::Value* ElemSize = llvm::ConstantInt::get(ResultType,
2709 CGF.getContext().getTypeSizeInChars(CurrentType).getQuantity());
2710
2711 // Multiply out to compute the result
2712 Offset = Builder.CreateMul(Idx, ElemSize);
2713 break;
2714 }
2715
James Y Knight7281c352015-12-29 22:31:18 +00002716 case OffsetOfNode::Field: {
Eli Friedmand7c72322010-08-05 09:58:49 +00002717 FieldDecl *MemberDecl = ON.getField();
2718 RecordDecl *RD = CurrentType->getAs<RecordType>()->getDecl();
2719 const ASTRecordLayout &RL = CGF.getContext().getASTRecordLayout(RD);
2720
2721 // Compute the index of the field in its parent.
2722 unsigned i = 0;
2723 // FIXME: It would be nice if we didn't have to loop here!
2724 for (RecordDecl::field_iterator Field = RD->field_begin(),
2725 FieldEnd = RD->field_end();
David Blaikie2d7c57e2012-04-30 02:36:29 +00002726 Field != FieldEnd; ++Field, ++i) {
David Blaikie40ed2972012-06-06 20:45:41 +00002727 if (*Field == MemberDecl)
Eli Friedmand7c72322010-08-05 09:58:49 +00002728 break;
2729 }
2730 assert(i < RL.getFieldCount() && "offsetof field in wrong type");
2731
2732 // Compute the offset to the field
2733 int64_t OffsetInt = RL.getFieldOffset(i) /
2734 CGF.getContext().getCharWidth();
2735 Offset = llvm::ConstantInt::get(ResultType, OffsetInt);
2736
2737 // Save the element type.
2738 CurrentType = MemberDecl->getType();
2739 break;
2740 }
Eli Friedman165301d2010-08-06 16:37:05 +00002741
James Y Knight7281c352015-12-29 22:31:18 +00002742 case OffsetOfNode::Identifier:
Eli Friedmane83d2b762010-08-06 01:17:25 +00002743 llvm_unreachable("dependent __builtin_offsetof");
Eli Friedman165301d2010-08-06 16:37:05 +00002744
James Y Knight7281c352015-12-29 22:31:18 +00002745 case OffsetOfNode::Base: {
Eli Friedmand7c72322010-08-05 09:58:49 +00002746 if (ON.getBase()->isVirtual()) {
2747 CGF.ErrorUnsupported(E, "virtual base in offsetof");
2748 continue;
2749 }
2750
2751 RecordDecl *RD = CurrentType->getAs<RecordType>()->getDecl();
2752 const ASTRecordLayout &RL = CGF.getContext().getASTRecordLayout(RD);
2753
2754 // Save the element type.
2755 CurrentType = ON.getBase()->getType();
Craig Toppera97d7e72013-07-26 06:16:11 +00002756
Eli Friedmand7c72322010-08-05 09:58:49 +00002757 // Compute the offset to the base.
2758 const RecordType *BaseRT = CurrentType->getAs<RecordType>();
2759 CXXRecordDecl *BaseRD = cast<CXXRecordDecl>(BaseRT->getDecl());
Benjamin Kramer2ef30312012-07-04 18:45:14 +00002760 CharUnits OffsetInt = RL.getBaseClassOffset(BaseRD);
2761 Offset = llvm::ConstantInt::get(ResultType, OffsetInt.getQuantity());
Eli Friedmand7c72322010-08-05 09:58:49 +00002762 break;
2763 }
2764 }
2765 Result = Builder.CreateAdd(Result, Offset);
2766 }
2767 return Result;
Douglas Gregor882211c2010-04-28 22:16:22 +00002768}
2769
Peter Collingbournee190dee2011-03-11 19:24:49 +00002770/// VisitUnaryExprOrTypeTraitExpr - Return the size or alignment of the type of
Sebastian Redl6f282892008-11-11 17:56:53 +00002771/// argument of the sizeof expression as an integer.
2772Value *
Peter Collingbournee190dee2011-03-11 19:24:49 +00002773ScalarExprEmitter::VisitUnaryExprOrTypeTraitExpr(
2774 const UnaryExprOrTypeTraitExpr *E) {
Sebastian Redl6f282892008-11-11 17:56:53 +00002775 QualType TypeToSize = E->getTypeOfArgument();
Peter Collingbournee190dee2011-03-11 19:24:49 +00002776 if (E->getKind() == UETT_SizeOf) {
Mike Stump4a3999f2009-09-09 13:00:44 +00002777 if (const VariableArrayType *VAT =
Eli Friedman2aa38fe2009-01-24 22:19:05 +00002778 CGF.getContext().getAsVariableArrayType(TypeToSize)) {
2779 if (E->isArgumentType()) {
2780 // sizeof(type) - make sure to emit the VLA size.
John McCall23c29fe2011-06-24 21:55:10 +00002781 CGF.EmitVariablyModifiedType(TypeToSize);
Eli Friedman3253e182009-04-20 03:21:44 +00002782 } else {
2783 // C99 6.5.3.4p2: If the argument is an expression of type
2784 // VLA, it is evaluated.
John McCalla2342eb2010-12-05 02:00:02 +00002785 CGF.EmitIgnoredExpr(E->getArgumentExpr());
Eli Friedman2aa38fe2009-01-24 22:19:05 +00002786 }
Mike Stump4a3999f2009-09-09 13:00:44 +00002787
Sander de Smalen891af03a2018-02-03 13:55:59 +00002788 auto VlaSize = CGF.getVLASize(VAT);
2789 llvm::Value *size = VlaSize.NumElts;
John McCall23c29fe2011-06-24 21:55:10 +00002790
2791 // Scale the number of non-VLA elements by the non-VLA element size.
Sander de Smalen891af03a2018-02-03 13:55:59 +00002792 CharUnits eltSize = CGF.getContext().getTypeSizeInChars(VlaSize.Type);
John McCall23c29fe2011-06-24 21:55:10 +00002793 if (!eltSize.isOne())
Sander de Smalen891af03a2018-02-03 13:55:59 +00002794 size = CGF.Builder.CreateNUWMul(CGF.CGM.getSize(eltSize), size);
John McCall23c29fe2011-06-24 21:55:10 +00002795
2796 return size;
Anders Carlsson76dbc042008-12-21 03:33:21 +00002797 }
Alexey Bataev00396512015-07-02 03:40:19 +00002798 } else if (E->getKind() == UETT_OpenMPRequiredSimdAlign) {
2799 auto Alignment =
2800 CGF.getContext()
2801 .toCharUnitsFromBits(CGF.getContext().getOpenMPDefaultSimdAlign(
2802 E->getTypeOfArgument()->getPointeeType()))
2803 .getQuantity();
2804 return llvm::ConstantInt::get(CGF.SizeTy, Alignment);
Anders Carlsson30032882008-12-12 07:38:43 +00002805 }
Eli Friedman2aa38fe2009-01-24 22:19:05 +00002806
Mike Stump4a3999f2009-09-09 13:00:44 +00002807 // If this isn't sizeof(vla), the result must be constant; use the constant
2808 // folding logic so we don't have to duplicate it here.
Richard Smith5fab0c92011-12-28 19:48:30 +00002809 return Builder.getInt(E->EvaluateKnownConstInt(CGF.getContext()));
Chris Lattner2da04b32007-08-24 05:35:26 +00002810}
2811
Chris Lattner9f0ad962007-08-24 21:20:17 +00002812Value *ScalarExprEmitter::VisitUnaryReal(const UnaryOperator *E) {
2813 Expr *Op = E->getSubExpr();
John McCall07bb1962010-11-16 10:08:07 +00002814 if (Op->getType()->isAnyComplexType()) {
2815 // If it's an l-value, load through the appropriate subobject l-value.
2816 // Note that we have to ask E because Op might be an l-value that
2817 // this won't work for, e.g. an Obj-C property.
John McCall086a4642010-11-24 05:12:34 +00002818 if (E->isGLValue())
Nick Lewycky2d84e842013-10-02 02:29:49 +00002819 return CGF.EmitLoadOfLValue(CGF.EmitLValue(E),
2820 E->getExprLoc()).getScalarVal();
John McCall07bb1962010-11-16 10:08:07 +00002821
2822 // Otherwise, calculate and project.
2823 return CGF.EmitComplexExpr(Op, false, true).first;
2824 }
2825
Chris Lattner9f0ad962007-08-24 21:20:17 +00002826 return Visit(Op);
2827}
John McCall07bb1962010-11-16 10:08:07 +00002828
Chris Lattner9f0ad962007-08-24 21:20:17 +00002829Value *ScalarExprEmitter::VisitUnaryImag(const UnaryOperator *E) {
2830 Expr *Op = E->getSubExpr();
John McCall07bb1962010-11-16 10:08:07 +00002831 if (Op->getType()->isAnyComplexType()) {
2832 // If it's an l-value, load through the appropriate subobject l-value.
2833 // Note that we have to ask E because Op might be an l-value that
2834 // this won't work for, e.g. an Obj-C property.
John McCall086a4642010-11-24 05:12:34 +00002835 if (Op->isGLValue())
Nick Lewycky2d84e842013-10-02 02:29:49 +00002836 return CGF.EmitLoadOfLValue(CGF.EmitLValue(E),
2837 E->getExprLoc()).getScalarVal();
John McCall07bb1962010-11-16 10:08:07 +00002838
2839 // Otherwise, calculate and project.
2840 return CGF.EmitComplexExpr(Op, true, false).second;
2841 }
Mike Stump4a3999f2009-09-09 13:00:44 +00002842
Mike Stumpdf0fe272009-05-29 15:46:01 +00002843 // __imag on a scalar returns zero. Emit the subexpr to ensure side
2844 // effects are evaluated, but not the actual value.
Richard Smith0b6b8e42012-02-18 20:53:32 +00002845 if (Op->isGLValue())
2846 CGF.EmitLValue(Op);
2847 else
2848 CGF.EmitScalarExpr(Op, true);
Owen Anderson0b75f232009-07-31 20:28:54 +00002849 return llvm::Constant::getNullValue(ConvertType(E->getType()));
Chris Lattner9f0ad962007-08-24 21:20:17 +00002850}
2851
Chris Lattner2da04b32007-08-24 05:35:26 +00002852//===----------------------------------------------------------------------===//
2853// Binary Operators
2854//===----------------------------------------------------------------------===//
2855
2856BinOpInfo ScalarExprEmitter::EmitBinOps(const BinaryOperator *E) {
Mike Stumpdf0fe272009-05-29 15:46:01 +00002857 TestAndClearIgnoreResultAssign();
Chris Lattner2da04b32007-08-24 05:35:26 +00002858 BinOpInfo Result;
2859 Result.LHS = Visit(E->getLHS());
2860 Result.RHS = Visit(E->getRHS());
Chris Lattner3d966d62007-08-24 21:00:35 +00002861 Result.Ty = E->getType();
Chris Lattner0bf27622010-06-26 21:48:21 +00002862 Result.Opcode = E->getOpcode();
Adam Nemet484aa452017-03-27 19:17:25 +00002863 Result.FPFeatures = E->getFPFeatures();
Chris Lattner2da04b32007-08-24 05:35:26 +00002864 Result.E = E;
2865 return Result;
2866}
2867
Douglas Gregor914af212010-04-23 04:16:32 +00002868LValue ScalarExprEmitter::EmitCompoundAssignLValue(
2869 const CompoundAssignOperator *E,
2870 Value *(ScalarExprEmitter::*Func)(const BinOpInfo &),
Daniel Dunbarc85ea8e2010-06-29 22:00:45 +00002871 Value *&Result) {
Benjamin Kramerd20ef752009-12-25 15:43:36 +00002872 QualType LHSTy = E->getLHS()->getType();
Chris Lattner3d966d62007-08-24 21:00:35 +00002873 BinOpInfo OpInfo;
Craig Toppera97d7e72013-07-26 06:16:11 +00002874
Eli Friedmanf0450072013-06-12 01:40:06 +00002875 if (E->getComputationResultType()->isAnyComplexType())
Richard Smith527473d2015-02-12 21:23:20 +00002876 return CGF.EmitScalarCompoundAssignWithComplex(E, Result);
Craig Toppera97d7e72013-07-26 06:16:11 +00002877
Mike Stumpc63428b2009-05-22 19:07:20 +00002878 // Emit the RHS first. __block variables need to have the rhs evaluated
2879 // first, plus this should improve codegen a little.
2880 OpInfo.RHS = Visit(E->getRHS());
2881 OpInfo.Ty = E->getComputationResultType();
Chris Lattner0bf27622010-06-26 21:48:21 +00002882 OpInfo.Opcode = E->getOpcode();
Adam Nemet484aa452017-03-27 19:17:25 +00002883 OpInfo.FPFeatures = E->getFPFeatures();
Mike Stumpc63428b2009-05-22 19:07:20 +00002884 OpInfo.E = E;
Eli Friedman8b7b1b12009-03-28 01:22:36 +00002885 // Load/convert the LHS.
Richard Smith4d1458e2012-09-08 02:08:36 +00002886 LValue LHSLV = EmitCheckedLValue(E->getLHS(), CodeGenFunction::TCK_Store);
David Chisnallfa35df62012-01-16 17:27:18 +00002887
Craig Topper8a13c412014-05-21 05:09:00 +00002888 llvm::PHINode *atomicPHI = nullptr;
David Chisnallef78c302013-03-03 16:02:42 +00002889 if (const AtomicType *atomicTy = LHSTy->getAs<AtomicType>()) {
2890 QualType type = atomicTy->getValueType();
2891 if (!type->isBooleanType() && type->isIntegerType() &&
Alexey Samsonovedf99a92014-11-07 22:29:38 +00002892 !(type->isUnsignedIntegerType() &&
2893 CGF.SanOpts.has(SanitizerKind::UnsignedIntegerOverflow)) &&
2894 CGF.getLangOpts().getSignedOverflowBehavior() !=
2895 LangOptions::SOB_Trapping) {
David Chisnallef78c302013-03-03 16:02:42 +00002896 llvm::AtomicRMWInst::BinOp aop = llvm::AtomicRMWInst::BAD_BINOP;
2897 switch (OpInfo.Opcode) {
2898 // We don't have atomicrmw operands for *, %, /, <<, >>
2899 case BO_MulAssign: case BO_DivAssign:
2900 case BO_RemAssign:
2901 case BO_ShlAssign:
2902 case BO_ShrAssign:
2903 break;
2904 case BO_AddAssign:
2905 aop = llvm::AtomicRMWInst::Add;
2906 break;
2907 case BO_SubAssign:
2908 aop = llvm::AtomicRMWInst::Sub;
2909 break;
2910 case BO_AndAssign:
2911 aop = llvm::AtomicRMWInst::And;
2912 break;
2913 case BO_XorAssign:
2914 aop = llvm::AtomicRMWInst::Xor;
2915 break;
2916 case BO_OrAssign:
2917 aop = llvm::AtomicRMWInst::Or;
2918 break;
2919 default:
2920 llvm_unreachable("Invalid compound assignment type");
2921 }
2922 if (aop != llvm::AtomicRMWInst::BAD_BINOP) {
Filipe Cabecinhas7af183d2015-08-11 04:19:28 +00002923 llvm::Value *amt = CGF.EmitToMemory(
2924 EmitScalarConversion(OpInfo.RHS, E->getRHS()->getType(), LHSTy,
2925 E->getExprLoc()),
2926 LHSTy);
John McCall7f416cc2015-09-08 08:05:57 +00002927 Builder.CreateAtomicRMW(aop, LHSLV.getPointer(), amt,
JF Bastien92f4ef12016-04-06 17:26:42 +00002928 llvm::AtomicOrdering::SequentiallyConsistent);
David Chisnallef78c302013-03-03 16:02:42 +00002929 return LHSLV;
2930 }
2931 }
David Chisnallfa35df62012-01-16 17:27:18 +00002932 // FIXME: For floating point types, we should be saving and restoring the
2933 // floating point environment in the loop.
2934 llvm::BasicBlock *startBB = Builder.GetInsertBlock();
2935 llvm::BasicBlock *opBB = CGF.createBasicBlock("atomic_op", CGF.CurFn);
Nick Lewycky2d84e842013-10-02 02:29:49 +00002936 OpInfo.LHS = EmitLoadOfLValue(LHSLV, E->getExprLoc());
David Chisnallef78c302013-03-03 16:02:42 +00002937 OpInfo.LHS = CGF.EmitToMemory(OpInfo.LHS, type);
David Chisnallfa35df62012-01-16 17:27:18 +00002938 Builder.CreateBr(opBB);
2939 Builder.SetInsertPoint(opBB);
2940 atomicPHI = Builder.CreatePHI(OpInfo.LHS->getType(), 2);
2941 atomicPHI->addIncoming(OpInfo.LHS, startBB);
David Chisnallfa35df62012-01-16 17:27:18 +00002942 OpInfo.LHS = atomicPHI;
2943 }
David Chisnallef78c302013-03-03 16:02:42 +00002944 else
Nick Lewycky2d84e842013-10-02 02:29:49 +00002945 OpInfo.LHS = EmitLoadOfLValue(LHSLV, E->getExprLoc());
Eli Friedman93ee5ca2012-06-16 02:19:17 +00002946
Filipe Cabecinhas7af183d2015-08-11 04:19:28 +00002947 SourceLocation Loc = E->getExprLoc();
2948 OpInfo.LHS =
2949 EmitScalarConversion(OpInfo.LHS, LHSTy, E->getComputationLHSType(), Loc);
Eli Friedman93ee5ca2012-06-16 02:19:17 +00002950
Chris Lattner3d966d62007-08-24 21:00:35 +00002951 // Expand the binary operator.
Daniel Dunbarc85ea8e2010-06-29 22:00:45 +00002952 Result = (this->*Func)(OpInfo);
Craig Toppera97d7e72013-07-26 06:16:11 +00002953
Roman Lebedevd677c3f2018-11-19 19:56:43 +00002954 // Convert the result back to the LHS type,
2955 // potentially with Implicit Conversion sanitizer check.
2956 Result = EmitScalarConversion(Result, E->getComputationResultType(), LHSTy,
2957 Loc, ScalarConversionOpts(CGF.SanOpts));
David Chisnallfa35df62012-01-16 17:27:18 +00002958
2959 if (atomicPHI) {
Erik Pilkington53e43f42019-02-28 00:47:55 +00002960 llvm::BasicBlock *curBlock = Builder.GetInsertBlock();
David Chisnallfa35df62012-01-16 17:27:18 +00002961 llvm::BasicBlock *contBB = CGF.createBasicBlock("atomic_cont", CGF.CurFn);
Alexey Bataev452d8e12014-12-15 05:25:25 +00002962 auto Pair = CGF.EmitAtomicCompareExchange(
Alexey Bataevb4505a72015-03-30 05:20:59 +00002963 LHSLV, RValue::get(atomicPHI), RValue::get(Result), E->getExprLoc());
2964 llvm::Value *old = CGF.EmitToMemory(Pair.first.getScalarVal(), LHSTy);
2965 llvm::Value *success = Pair.second;
Erik Pilkington53e43f42019-02-28 00:47:55 +00002966 atomicPHI->addIncoming(old, curBlock);
2967 Builder.CreateCondBr(success, contBB, atomicPHI->getParent());
David Chisnallfa35df62012-01-16 17:27:18 +00002968 Builder.SetInsertPoint(contBB);
2969 return LHSLV;
2970 }
Craig Toppera97d7e72013-07-26 06:16:11 +00002971
Mike Stump4a3999f2009-09-09 13:00:44 +00002972 // Store the result value into the LHS lvalue. Bit-fields are handled
2973 // specially because the result is altered by the store, i.e., [C99 6.5.16p1]
2974 // 'An assignment expression has the value of the left operand after the
2975 // assignment...'.
Daniel Dunbarc85ea8e2010-06-29 22:00:45 +00002976 if (LHSLV.isBitField())
John McCall55e1fbc2011-06-25 02:11:03 +00002977 CGF.EmitStoreThroughBitfieldLValue(RValue::get(Result), LHSLV, &Result);
Daniel Dunbarc85ea8e2010-06-29 22:00:45 +00002978 else
John McCall55e1fbc2011-06-25 02:11:03 +00002979 CGF.EmitStoreThroughLValue(RValue::get(Result), LHSLV);
Daniel Dunbarc85ea8e2010-06-29 22:00:45 +00002980
Douglas Gregor914af212010-04-23 04:16:32 +00002981 return LHSLV;
2982}
2983
2984Value *ScalarExprEmitter::EmitCompoundAssign(const CompoundAssignOperator *E,
2985 Value *(ScalarExprEmitter::*Func)(const BinOpInfo &)) {
2986 bool Ignore = TestAndClearIgnoreResultAssign();
Simon Pilgrim30aa42e2019-05-18 12:17:15 +00002987 Value *RHS = nullptr;
Daniel Dunbarc85ea8e2010-06-29 22:00:45 +00002988 LValue LHS = EmitCompoundAssignLValue(E, Func, RHS);
2989
2990 // If the result is clearly ignored, return now.
Mike Stumpdf0fe272009-05-29 15:46:01 +00002991 if (Ignore)
Craig Topper8a13c412014-05-21 05:09:00 +00002992 return nullptr;
Daniel Dunbarc85ea8e2010-06-29 22:00:45 +00002993
John McCall07bb1962010-11-16 10:08:07 +00002994 // The result of an assignment in C is the assigned r-value.
Richard Smith9c6890a2012-11-01 22:30:59 +00002995 if (!CGF.getLangOpts().CPlusPlus)
John McCall07bb1962010-11-16 10:08:07 +00002996 return RHS;
2997
Daniel Dunbarc85ea8e2010-06-29 22:00:45 +00002998 // If the lvalue is non-volatile, return the computed value of the assignment.
2999 if (!LHS.isVolatileQualified())
3000 return RHS;
3001
3002 // Otherwise, reload the value.
Nick Lewycky2d84e842013-10-02 02:29:49 +00003003 return EmitLoadOfLValue(LHS, E->getExprLoc());
Chris Lattner3d966d62007-08-24 21:00:35 +00003004}
3005
Chris Lattner8ee6a412010-09-11 21:47:09 +00003006void ScalarExprEmitter::EmitUndefinedBehaviorIntegerDivAndRemCheck(
Richard Smith4d1458e2012-09-08 02:08:36 +00003007 const BinOpInfo &Ops, llvm::Value *Zero, bool isDiv) {
Peter Collingbourne3eea6772015-05-11 21:39:14 +00003008 SmallVector<std::pair<llvm::Value *, SanitizerMask>, 2> Checks;
Chris Lattner8ee6a412010-09-11 21:47:09 +00003009
Alexey Samsonov4c1a96f2014-11-10 22:27:30 +00003010 if (CGF.SanOpts.has(SanitizerKind::IntegerDivideByZero)) {
Alexey Samsonove396bfc2014-11-11 22:03:54 +00003011 Checks.push_back(std::make_pair(Builder.CreateICmpNE(Ops.RHS, Zero),
3012 SanitizerKind::IntegerDivideByZero));
Alexey Samsonov4c1a96f2014-11-10 22:27:30 +00003013 }
Richard Smithc86a1142012-11-06 02:30:30 +00003014
Vedant Kumar82ee16b2017-02-25 00:43:36 +00003015 const auto *BO = cast<BinaryOperator>(Ops.E);
Alexey Samsonovedf99a92014-11-07 22:29:38 +00003016 if (CGF.SanOpts.has(SanitizerKind::SignedIntegerOverflow) &&
Vedant Kumar82ee16b2017-02-25 00:43:36 +00003017 Ops.Ty->hasSignedIntegerRepresentation() &&
Vedant Kumard9191152017-05-02 23:46:56 +00003018 !IsWidenedIntegerOp(CGF.getContext(), BO->getLHS()) &&
3019 Ops.mayHaveIntegerOverflow()) {
Richard Smithc86a1142012-11-06 02:30:30 +00003020 llvm::IntegerType *Ty = cast<llvm::IntegerType>(Zero->getType());
3021
Chris Lattner8ee6a412010-09-11 21:47:09 +00003022 llvm::Value *IntMin =
Chris Lattner2531eb42011-04-19 22:55:03 +00003023 Builder.getInt(llvm::APInt::getSignedMinValue(Ty->getBitWidth()));
Chris Lattner8ee6a412010-09-11 21:47:09 +00003024 llvm::Value *NegOne = llvm::ConstantInt::get(Ty, -1ULL);
3025
Richard Smith4d1458e2012-09-08 02:08:36 +00003026 llvm::Value *LHSCmp = Builder.CreateICmpNE(Ops.LHS, IntMin);
3027 llvm::Value *RHSCmp = Builder.CreateICmpNE(Ops.RHS, NegOne);
Alexey Samsonove396bfc2014-11-11 22:03:54 +00003028 llvm::Value *NotOverflow = Builder.CreateOr(LHSCmp, RHSCmp, "or");
3029 Checks.push_back(
3030 std::make_pair(NotOverflow, SanitizerKind::SignedIntegerOverflow));
Chris Lattner8ee6a412010-09-11 21:47:09 +00003031 }
Richard Smithc86a1142012-11-06 02:30:30 +00003032
Alexey Samsonove396bfc2014-11-11 22:03:54 +00003033 if (Checks.size() > 0)
3034 EmitBinOpCheck(Checks, Ops);
Chris Lattner8ee6a412010-09-11 21:47:09 +00003035}
Chris Lattner3d966d62007-08-24 21:00:35 +00003036
Chris Lattner2da04b32007-08-24 05:35:26 +00003037Value *ScalarExprEmitter::EmitDiv(const BinOpInfo &Ops) {
Alexey Samsonov24cad992014-07-17 18:46:27 +00003038 {
3039 CodeGenFunction::SanitizerScope SanScope(&CGF);
Alexey Samsonovedf99a92014-11-07 22:29:38 +00003040 if ((CGF.SanOpts.has(SanitizerKind::IntegerDivideByZero) ||
3041 CGF.SanOpts.has(SanitizerKind::SignedIntegerOverflow)) &&
Vedant Kumard9191152017-05-02 23:46:56 +00003042 Ops.Ty->isIntegerType() &&
3043 (Ops.mayHaveIntegerDivisionByZero() || Ops.mayHaveIntegerOverflow())) {
Alexey Samsonov24cad992014-07-17 18:46:27 +00003044 llvm::Value *Zero = llvm::Constant::getNullValue(ConvertType(Ops.Ty));
3045 EmitUndefinedBehaviorIntegerDivAndRemCheck(Ops, Zero, true);
Alexey Samsonovedf99a92014-11-07 22:29:38 +00003046 } else if (CGF.SanOpts.has(SanitizerKind::FloatDivideByZero) &&
Vedant Kumard9191152017-05-02 23:46:56 +00003047 Ops.Ty->isRealFloatingType() &&
3048 Ops.mayHaveFloatDivisionByZero()) {
Alexey Samsonov24cad992014-07-17 18:46:27 +00003049 llvm::Value *Zero = llvm::Constant::getNullValue(ConvertType(Ops.Ty));
Alexey Samsonove396bfc2014-11-11 22:03:54 +00003050 llvm::Value *NonZero = Builder.CreateFCmpUNE(Ops.RHS, Zero);
3051 EmitBinOpCheck(std::make_pair(NonZero, SanitizerKind::FloatDivideByZero),
3052 Ops);
Alexey Samsonov24cad992014-07-17 18:46:27 +00003053 }
Chris Lattner8ee6a412010-09-11 21:47:09 +00003054 }
Will Dietz1897cb32012-11-27 15:01:55 +00003055
Peter Collingbourne95fd2ca2011-10-27 19:19:51 +00003056 if (Ops.LHS->getType()->isFPOrFPVectorTy()) {
3057 llvm::Value *Val = Builder.CreateFDiv(Ops.LHS, Ops.RHS, "div");
Yaxun Liuffb60902016-08-09 20:10:18 +00003058 if (CGF.getLangOpts().OpenCL &&
3059 !CGF.CGM.getCodeGenOpts().CorrectlyRoundedDivSqrt) {
3060 // OpenCL v1.1 s7.4: minimum accuracy of single precision / is 2.5ulp
3061 // OpenCL v1.2 s5.6.4.2: The -cl-fp32-correctly-rounded-divide-sqrt
3062 // build option allows an application to specify that single precision
3063 // floating-point divide (x/y and 1/x) and sqrt used in the program
3064 // source are correctly rounded.
Peter Collingbourne95fd2ca2011-10-27 19:19:51 +00003065 llvm::Type *ValTy = Val->getType();
3066 if (ValTy->isFloatTy() ||
3067 (isa<llvm::VectorType>(ValTy) &&
3068 cast<llvm::VectorType>(ValTy)->getElementType()->isFloatTy()))
Duncan Sandse81111c2012-04-10 08:23:07 +00003069 CGF.SetFPAccuracy(Val, 2.5);
Peter Collingbourne95fd2ca2011-10-27 19:19:51 +00003070 }
3071 return Val;
3072 }
Douglas Gregor5cc2c8b2010-07-23 15:58:24 +00003073 else if (Ops.Ty->hasUnsignedIntegerRepresentation())
Chris Lattner2da04b32007-08-24 05:35:26 +00003074 return Builder.CreateUDiv(Ops.LHS, Ops.RHS, "div");
3075 else
3076 return Builder.CreateSDiv(Ops.LHS, Ops.RHS, "div");
3077}
3078
3079Value *ScalarExprEmitter::EmitRem(const BinOpInfo &Ops) {
3080 // Rem in C can't be a floating point type: C99 6.5.5p2.
Vedant Kumar42de3802017-02-25 00:43:39 +00003081 if ((CGF.SanOpts.has(SanitizerKind::IntegerDivideByZero) ||
3082 CGF.SanOpts.has(SanitizerKind::SignedIntegerOverflow)) &&
Vedant Kumard9191152017-05-02 23:46:56 +00003083 Ops.Ty->isIntegerType() &&
3084 (Ops.mayHaveIntegerDivisionByZero() || Ops.mayHaveIntegerOverflow())) {
Alexey Samsonov24cad992014-07-17 18:46:27 +00003085 CodeGenFunction::SanitizerScope SanScope(&CGF);
Chris Lattner8ee6a412010-09-11 21:47:09 +00003086 llvm::Value *Zero = llvm::Constant::getNullValue(ConvertType(Ops.Ty));
Vedant Kumar42de3802017-02-25 00:43:39 +00003087 EmitUndefinedBehaviorIntegerDivAndRemCheck(Ops, Zero, false);
Chris Lattner8ee6a412010-09-11 21:47:09 +00003088 }
3089
Eli Friedman493c34a2011-04-10 04:44:11 +00003090 if (Ops.Ty->hasUnsignedIntegerRepresentation())
Chris Lattner2da04b32007-08-24 05:35:26 +00003091 return Builder.CreateURem(Ops.LHS, Ops.RHS, "rem");
3092 else
3093 return Builder.CreateSRem(Ops.LHS, Ops.RHS, "rem");
3094}
3095
Mike Stump0c61b732009-04-01 20:28:16 +00003096Value *ScalarExprEmitter::EmitOverflowCheckedBinOp(const BinOpInfo &Ops) {
3097 unsigned IID;
3098 unsigned OpID = 0;
Mike Stump40968592009-04-02 01:03:55 +00003099
Will Dietz1897cb32012-11-27 15:01:55 +00003100 bool isSigned = Ops.Ty->isSignedIntegerOrEnumerationType();
Chris Lattner0bf27622010-06-26 21:48:21 +00003101 switch (Ops.Opcode) {
John McCalle3027922010-08-25 11:45:40 +00003102 case BO_Add:
3103 case BO_AddAssign:
Mike Stumpd3e38852009-04-02 18:15:54 +00003104 OpID = 1;
Will Dietz1897cb32012-11-27 15:01:55 +00003105 IID = isSigned ? llvm::Intrinsic::sadd_with_overflow :
3106 llvm::Intrinsic::uadd_with_overflow;
Mike Stumpd3e38852009-04-02 18:15:54 +00003107 break;
John McCalle3027922010-08-25 11:45:40 +00003108 case BO_Sub:
3109 case BO_SubAssign:
Mike Stumpd3e38852009-04-02 18:15:54 +00003110 OpID = 2;
Will Dietz1897cb32012-11-27 15:01:55 +00003111 IID = isSigned ? llvm::Intrinsic::ssub_with_overflow :
3112 llvm::Intrinsic::usub_with_overflow;
Mike Stumpd3e38852009-04-02 18:15:54 +00003113 break;
John McCalle3027922010-08-25 11:45:40 +00003114 case BO_Mul:
3115 case BO_MulAssign:
Mike Stumpd3e38852009-04-02 18:15:54 +00003116 OpID = 3;
Will Dietz1897cb32012-11-27 15:01:55 +00003117 IID = isSigned ? llvm::Intrinsic::smul_with_overflow :
3118 llvm::Intrinsic::umul_with_overflow;
Mike Stumpd3e38852009-04-02 18:15:54 +00003119 break;
3120 default:
David Blaikie83d382b2011-09-23 05:06:16 +00003121 llvm_unreachable("Unsupported operation for overflow detection");
Mike Stump0c61b732009-04-01 20:28:16 +00003122 }
Mike Stumpd3e38852009-04-02 18:15:54 +00003123 OpID <<= 1;
Will Dietz1897cb32012-11-27 15:01:55 +00003124 if (isSigned)
3125 OpID |= 1;
Mike Stumpd3e38852009-04-02 18:15:54 +00003126
Vedant Kumar4b62b5c2017-05-09 23:34:49 +00003127 CodeGenFunction::SanitizerScope SanScope(&CGF);
Chris Lattnera5f58b02011-07-09 17:41:47 +00003128 llvm::Type *opTy = CGF.CGM.getTypes().ConvertType(Ops.Ty);
Mike Stump0c61b732009-04-01 20:28:16 +00003129
Benjamin Kramer8d375ce2011-07-14 17:45:50 +00003130 llvm::Function *intrinsic = CGF.CGM.getIntrinsic(IID, opTy);
Mike Stump0c61b732009-04-01 20:28:16 +00003131
David Blaikie43f9bb72015-05-18 22:14:03 +00003132 Value *resultAndOverflow = Builder.CreateCall(intrinsic, {Ops.LHS, Ops.RHS});
Mike Stump0c61b732009-04-01 20:28:16 +00003133 Value *result = Builder.CreateExtractValue(resultAndOverflow, 0);
3134 Value *overflow = Builder.CreateExtractValue(resultAndOverflow, 1);
3135
Richard Smith4d1458e2012-09-08 02:08:36 +00003136 // Handle overflow with llvm.trap if no custom handler has been specified.
3137 const std::string *handlerName =
Richard Smith9c6890a2012-11-01 22:30:59 +00003138 &CGF.getLangOpts().OverflowHandler;
Richard Smith4d1458e2012-09-08 02:08:36 +00003139 if (handlerName->empty()) {
Richard Smithb1b0ab42012-11-05 22:21:05 +00003140 // If the signed-integer-overflow sanitizer is enabled, emit a call to its
Richard Smithde670682012-11-01 22:15:34 +00003141 // runtime. Otherwise, this is a -ftrapv check, so just emit a trap.
Alexey Samsonovedf99a92014-11-07 22:29:38 +00003142 if (!isSigned || CGF.SanOpts.has(SanitizerKind::SignedIntegerOverflow)) {
Alexey Samsonove396bfc2014-11-11 22:03:54 +00003143 llvm::Value *NotOverflow = Builder.CreateNot(overflow);
Peter Collingbourne3eea6772015-05-11 21:39:14 +00003144 SanitizerMask Kind = isSigned ? SanitizerKind::SignedIntegerOverflow
Alexey Samsonove396bfc2014-11-11 22:03:54 +00003145 : SanitizerKind::UnsignedIntegerOverflow;
3146 EmitBinOpCheck(std::make_pair(NotOverflow, Kind), Ops);
Alexey Samsonov24cad992014-07-17 18:46:27 +00003147 } else
Chad Rosierae229d52013-01-29 23:31:22 +00003148 CGF.EmitTrapCheck(Builder.CreateNot(overflow));
Richard Smith4d1458e2012-09-08 02:08:36 +00003149 return result;
3150 }
3151
Mike Stump0c61b732009-04-01 20:28:16 +00003152 // Branch in case of overflow.
David Chisnalldd84ef12010-09-17 18:29:54 +00003153 llvm::BasicBlock *initialBB = Builder.GetInsertBlock();
Duncan P. N. Exon Smith01f574c2016-08-17 03:15:29 +00003154 llvm::BasicBlock *continueBB =
3155 CGF.createBasicBlock("nooverflow", CGF.CurFn, initialBB->getNextNode());
Chris Lattner8139c982010-08-07 00:20:46 +00003156 llvm::BasicBlock *overflowBB = CGF.createBasicBlock("overflow", CGF.CurFn);
Mike Stump0c61b732009-04-01 20:28:16 +00003157
3158 Builder.CreateCondBr(overflow, overflowBB, continueBB);
3159
David Chisnalldd84ef12010-09-17 18:29:54 +00003160 // If an overflow handler is set, then we want to call it and then use its
3161 // result, if it returns.
3162 Builder.SetInsertPoint(overflowBB);
3163
3164 // Get the overflow handler.
Chris Lattnerece04092012-02-07 00:39:47 +00003165 llvm::Type *Int8Ty = CGF.Int8Ty;
Chris Lattnera5f58b02011-07-09 17:41:47 +00003166 llvm::Type *argTypes[] = { CGF.Int64Ty, CGF.Int64Ty, Int8Ty, Int8Ty };
David Chisnalldd84ef12010-09-17 18:29:54 +00003167 llvm::FunctionType *handlerTy =
3168 llvm::FunctionType::get(CGF.Int64Ty, argTypes, true);
James Y Knight9871db02019-02-05 16:42:33 +00003169 llvm::FunctionCallee handler =
3170 CGF.CGM.CreateRuntimeFunction(handlerTy, *handlerName);
David Chisnalldd84ef12010-09-17 18:29:54 +00003171
3172 // Sign extend the args to 64-bit, so that we can use the same handler for
3173 // all types of overflow.
3174 llvm::Value *lhs = Builder.CreateSExt(Ops.LHS, CGF.Int64Ty);
3175 llvm::Value *rhs = Builder.CreateSExt(Ops.RHS, CGF.Int64Ty);
3176
3177 // Call the handler with the two arguments, the operation, and the size of
3178 // the result.
John McCall882987f2013-02-28 19:01:20 +00003179 llvm::Value *handlerArgs[] = {
3180 lhs,
3181 rhs,
3182 Builder.getInt8(OpID),
3183 Builder.getInt8(cast<llvm::IntegerType>(opTy)->getBitWidth())
3184 };
3185 llvm::Value *handlerResult =
3186 CGF.EmitNounwindRuntimeCall(handler, handlerArgs);
David Chisnalldd84ef12010-09-17 18:29:54 +00003187
3188 // Truncate the result back to the desired size.
3189 handlerResult = Builder.CreateTrunc(handlerResult, opTy);
3190 Builder.CreateBr(continueBB);
3191
Mike Stump0c61b732009-04-01 20:28:16 +00003192 Builder.SetInsertPoint(continueBB);
Jay Foad20c0f022011-03-30 11:28:58 +00003193 llvm::PHINode *phi = Builder.CreatePHI(opTy, 2);
David Chisnalldd84ef12010-09-17 18:29:54 +00003194 phi->addIncoming(result, initialBB);
3195 phi->addIncoming(handlerResult, overflowBB);
3196
3197 return phi;
Mike Stump0c61b732009-04-01 20:28:16 +00003198}
Chris Lattner2da04b32007-08-24 05:35:26 +00003199
John McCall77527a82011-06-25 01:32:37 +00003200/// Emit pointer + index arithmetic.
3201static Value *emitPointerArithmetic(CodeGenFunction &CGF,
3202 const BinOpInfo &op,
3203 bool isSubtraction) {
3204 // Must have binary (not unary) expr here. Unary pointer
3205 // increment/decrement doesn't use this path.
3206 const BinaryOperator *expr = cast<BinaryOperator>(op.E);
Craig Toppera97d7e72013-07-26 06:16:11 +00003207
John McCall77527a82011-06-25 01:32:37 +00003208 Value *pointer = op.LHS;
3209 Expr *pointerOperand = expr->getLHS();
3210 Value *index = op.RHS;
3211 Expr *indexOperand = expr->getRHS();
3212
3213 // In a subtraction, the LHS is always the pointer.
3214 if (!isSubtraction && !pointer->getType()->isPointerTy()) {
3215 std::swap(pointer, index);
3216 std::swap(pointerOperand, indexOperand);
3217 }
3218
Vedant Kumar6dbf4272017-06-12 18:42:51 +00003219 bool isSigned = indexOperand->getType()->isSignedIntegerOrEnumerationType();
Vedant Kumar6dbf4272017-06-12 18:42:51 +00003220
John McCall77527a82011-06-25 01:32:37 +00003221 unsigned width = cast<llvm::IntegerType>(index->getType())->getBitWidth();
Yaxun Liu26f75662016-08-19 05:17:25 +00003222 auto &DL = CGF.CGM.getDataLayout();
3223 auto PtrTy = cast<llvm::PointerType>(pointer->getType());
Andrew Kaylor3d0a5402017-09-19 20:26:40 +00003224
3225 // Some versions of glibc and gcc use idioms (particularly in their malloc
3226 // routines) that add a pointer-sized integer (known to be a pointer value)
3227 // to a null pointer in order to cast the value back to an integer or as
3228 // part of a pointer alignment algorithm. This is undefined behavior, but
3229 // we'd like to be able to compile programs that use it.
3230 //
3231 // Normally, we'd generate a GEP with a null-pointer base here in response
3232 // to that code, but it's also UB to dereference a pointer created that
3233 // way. Instead (as an acknowledged hack to tolerate the idiom) we will
3234 // generate a direct cast of the integer value to a pointer.
3235 //
3236 // The idiom (p = nullptr + N) is not met if any of the following are true:
3237 //
3238 // The operation is subtraction.
3239 // The index is not pointer-sized.
3240 // The pointer type is not byte-sized.
3241 //
3242 if (BinaryOperator::isNullPointerArithmeticExtension(CGF.getContext(),
3243 op.Opcode,
Fangrui Song6907ce22018-07-30 19:24:48 +00003244 expr->getLHS(),
Andrew Kaylor3d0a5402017-09-19 20:26:40 +00003245 expr->getRHS()))
3246 return CGF.Builder.CreateIntToPtr(index, pointer->getType());
3247
Yaxun Liu26f75662016-08-19 05:17:25 +00003248 if (width != DL.getTypeSizeInBits(PtrTy)) {
John McCall77527a82011-06-25 01:32:37 +00003249 // Zero-extend or sign-extend the pointer value according to
3250 // whether the index is signed or not.
Yaxun Liu26f75662016-08-19 05:17:25 +00003251 index = CGF.Builder.CreateIntCast(index, DL.getIntPtrType(PtrTy), isSigned,
John McCall77527a82011-06-25 01:32:37 +00003252 "idx.ext");
3253 }
3254
3255 // If this is subtraction, negate the index.
3256 if (isSubtraction)
3257 index = CGF.Builder.CreateNeg(index, "idx.neg");
3258
Alexey Samsonovedf99a92014-11-07 22:29:38 +00003259 if (CGF.SanOpts.has(SanitizerKind::ArrayBounds))
Richard Smith539e4a72013-02-23 02:53:19 +00003260 CGF.EmitBoundsCheck(op.E, pointerOperand, index, indexOperand->getType(),
3261 /*Accessed*/ false);
3262
John McCall77527a82011-06-25 01:32:37 +00003263 const PointerType *pointerType
3264 = pointerOperand->getType()->getAs<PointerType>();
3265 if (!pointerType) {
3266 QualType objectType = pointerOperand->getType()
3267 ->castAs<ObjCObjectPointerType>()
3268 ->getPointeeType();
3269 llvm::Value *objectSize
3270 = CGF.CGM.getSize(CGF.getContext().getTypeSizeInChars(objectType));
3271
3272 index = CGF.Builder.CreateMul(index, objectSize);
3273
3274 Value *result = CGF.Builder.CreateBitCast(pointer, CGF.VoidPtrTy);
3275 result = CGF.Builder.CreateGEP(result, index, "add.ptr");
3276 return CGF.Builder.CreateBitCast(result, pointer->getType());
3277 }
3278
3279 QualType elementType = pointerType->getPointeeType();
3280 if (const VariableArrayType *vla
3281 = CGF.getContext().getAsVariableArrayType(elementType)) {
3282 // The element count here is the total number of non-VLA elements.
Sander de Smalen891af03a2018-02-03 13:55:59 +00003283 llvm::Value *numElements = CGF.getVLASize(vla).NumElts;
John McCall77527a82011-06-25 01:32:37 +00003284
3285 // Effectively, the multiply by the VLA size is part of the GEP.
3286 // GEP indexes are signed, and scaling an index isn't permitted to
3287 // signed-overflow, so we use the same semantics for our explicit
3288 // multiply. We suppress this if overflow is not undefined behavior.
David Blaikiebbafb8a2012-03-11 07:00:24 +00003289 if (CGF.getLangOpts().isSignedOverflowDefined()) {
John McCall77527a82011-06-25 01:32:37 +00003290 index = CGF.Builder.CreateMul(index, numElements, "vla.index");
3291 pointer = CGF.Builder.CreateGEP(pointer, index, "add.ptr");
3292 } else {
3293 index = CGF.Builder.CreateNSWMul(index, numElements, "vla.index");
Vedant Kumar6dbf4272017-06-12 18:42:51 +00003294 pointer =
Vedant Kumar175b6d12017-07-13 20:55:26 +00003295 CGF.EmitCheckedInBoundsGEP(pointer, index, isSigned, isSubtraction,
Vedant Kumar6dbf4272017-06-12 18:42:51 +00003296 op.E->getExprLoc(), "add.ptr");
Chris Lattner51924e512010-06-26 21:25:03 +00003297 }
John McCall77527a82011-06-25 01:32:37 +00003298 return pointer;
Mike Stump4a3999f2009-09-09 13:00:44 +00003299 }
Daniel Dunbaref2ffbc2009-04-25 05:08:32 +00003300
Mike Stump4a3999f2009-09-09 13:00:44 +00003301 // Explicitly handle GNU void* and function pointer arithmetic extensions. The
3302 // GNU void* casts amount to no-ops since our void* type is i8*, but this is
3303 // future proof.
John McCall77527a82011-06-25 01:32:37 +00003304 if (elementType->isVoidType() || elementType->isFunctionType()) {
3305 Value *result = CGF.Builder.CreateBitCast(pointer, CGF.VoidPtrTy);
3306 result = CGF.Builder.CreateGEP(result, index, "add.ptr");
3307 return CGF.Builder.CreateBitCast(result, pointer->getType());
Mike Stump4a3999f2009-09-09 13:00:44 +00003308 }
3309
David Blaikiebbafb8a2012-03-11 07:00:24 +00003310 if (CGF.getLangOpts().isSignedOverflowDefined())
John McCall77527a82011-06-25 01:32:37 +00003311 return CGF.Builder.CreateGEP(pointer, index, "add.ptr");
3312
Vedant Kumar175b6d12017-07-13 20:55:26 +00003313 return CGF.EmitCheckedInBoundsGEP(pointer, index, isSigned, isSubtraction,
Vedant Kumar6dbf4272017-06-12 18:42:51 +00003314 op.E->getExprLoc(), "add.ptr");
Chris Lattner2da04b32007-08-24 05:35:26 +00003315}
3316
Lang Hames5de91cc2012-10-02 04:45:10 +00003317// Construct an fmuladd intrinsic to represent a fused mul-add of MulOp and
3318// Addend. Use negMul and negAdd to negate the first operand of the Mul or
3319// the add operand respectively. This allows fmuladd to represent a*b-c, or
3320// c-a*b. Patterns in LLVM should catch the negated forms and translate them to
3321// efficient operations.
3322static Value* buildFMulAdd(llvm::BinaryOperator *MulOp, Value *Addend,
3323 const CodeGenFunction &CGF, CGBuilderTy &Builder,
3324 bool negMul, bool negAdd) {
3325 assert(!(negMul && negAdd) && "Only one of negMul and negAdd should be set.");
Craig Toppera97d7e72013-07-26 06:16:11 +00003326
Lang Hames5de91cc2012-10-02 04:45:10 +00003327 Value *MulOp0 = MulOp->getOperand(0);
3328 Value *MulOp1 = MulOp->getOperand(1);
3329 if (negMul) {
3330 MulOp0 =
3331 Builder.CreateFSub(
3332 llvm::ConstantFP::getZeroValueForNegation(MulOp0->getType()), MulOp0,
3333 "neg");
3334 } else if (negAdd) {
3335 Addend =
3336 Builder.CreateFSub(
3337 llvm::ConstantFP::getZeroValueForNegation(Addend->getType()), Addend,
3338 "neg");
3339 }
3340
David Blaikie43f9bb72015-05-18 22:14:03 +00003341 Value *FMulAdd = Builder.CreateCall(
Lang Hames5de91cc2012-10-02 04:45:10 +00003342 CGF.CGM.getIntrinsic(llvm::Intrinsic::fmuladd, Addend->getType()),
David Blaikie43f9bb72015-05-18 22:14:03 +00003343 {MulOp0, MulOp1, Addend});
Lang Hames5de91cc2012-10-02 04:45:10 +00003344 MulOp->eraseFromParent();
3345
3346 return FMulAdd;
3347}
3348
3349// Check whether it would be legal to emit an fmuladd intrinsic call to
3350// represent op and if so, build the fmuladd.
3351//
3352// Checks that (a) the operation is fusable, and (b) -ffp-contract=on.
3353// Does NOT check the type of the operation - it's assumed that this function
3354// will be called from contexts where it's known that the type is contractable.
Craig Toppera97d7e72013-07-26 06:16:11 +00003355static Value* tryEmitFMulAdd(const BinOpInfo &op,
Lang Hames5de91cc2012-10-02 04:45:10 +00003356 const CodeGenFunction &CGF, CGBuilderTy &Builder,
3357 bool isSub=false) {
3358
3359 assert((op.Opcode == BO_Add || op.Opcode == BO_AddAssign ||
3360 op.Opcode == BO_Sub || op.Opcode == BO_SubAssign) &&
3361 "Only fadd/fsub can be the root of an fmuladd.");
3362
3363 // Check whether this op is marked as fusable.
Adam Nemet049a31d2017-03-29 21:54:24 +00003364 if (!op.FPFeatures.allowFPContractWithinStatement())
Craig Topper8a13c412014-05-21 05:09:00 +00003365 return nullptr;
Lang Hames5de91cc2012-10-02 04:45:10 +00003366
3367 // We have a potentially fusable op. Look for a mul on one of the operands.
Sanjay Patela30cee62015-12-03 01:25:12 +00003368 // Also, make sure that the mul result isn't used directly. In that case,
3369 // there's no point creating a muladd operation.
3370 if (auto *LHSBinOp = dyn_cast<llvm::BinaryOperator>(op.LHS)) {
3371 if (LHSBinOp->getOpcode() == llvm::Instruction::FMul &&
3372 LHSBinOp->use_empty())
Lang Hames5de91cc2012-10-02 04:45:10 +00003373 return buildFMulAdd(LHSBinOp, op.RHS, CGF, Builder, false, isSub);
Sanjay Patela30cee62015-12-03 01:25:12 +00003374 }
3375 if (auto *RHSBinOp = dyn_cast<llvm::BinaryOperator>(op.RHS)) {
3376 if (RHSBinOp->getOpcode() == llvm::Instruction::FMul &&
3377 RHSBinOp->use_empty())
Lang Hames5de91cc2012-10-02 04:45:10 +00003378 return buildFMulAdd(RHSBinOp, op.LHS, CGF, Builder, isSub, false);
Lang Hames5de91cc2012-10-02 04:45:10 +00003379 }
3380
Craig Topper8a13c412014-05-21 05:09:00 +00003381 return nullptr;
Lang Hames5de91cc2012-10-02 04:45:10 +00003382}
3383
John McCall77527a82011-06-25 01:32:37 +00003384Value *ScalarExprEmitter::EmitAdd(const BinOpInfo &op) {
3385 if (op.LHS->getType()->isPointerTy() ||
3386 op.RHS->getType()->isPointerTy())
Vedant Kumar175b6d12017-07-13 20:55:26 +00003387 return emitPointerArithmetic(CGF, op, CodeGenFunction::NotSubtraction);
John McCall77527a82011-06-25 01:32:37 +00003388
3389 if (op.Ty->isSignedIntegerOrEnumerationType()) {
Richard Smith9c6890a2012-11-01 22:30:59 +00003390 switch (CGF.getLangOpts().getSignedOverflowBehavior()) {
John McCall77527a82011-06-25 01:32:37 +00003391 case LangOptions::SOB_Defined:
3392 return Builder.CreateAdd(op.LHS, op.RHS, "add");
Richard Smith3e056de2012-08-25 00:32:28 +00003393 case LangOptions::SOB_Undefined:
Alexey Samsonovedf99a92014-11-07 22:29:38 +00003394 if (!CGF.SanOpts.has(SanitizerKind::SignedIntegerOverflow))
Richard Smith3e056de2012-08-25 00:32:28 +00003395 return Builder.CreateNSWAdd(op.LHS, op.RHS, "add");
Reid Kleckner4dc0b1a2018-11-01 19:54:45 +00003396 LLVM_FALLTHROUGH;
John McCall77527a82011-06-25 01:32:37 +00003397 case LangOptions::SOB_Trapping:
Vedant Kumar82ee16b2017-02-25 00:43:36 +00003398 if (CanElideOverflowCheck(CGF.getContext(), op))
3399 return Builder.CreateNSWAdd(op.LHS, op.RHS, "add");
John McCall77527a82011-06-25 01:32:37 +00003400 return EmitOverflowCheckedBinOp(op);
3401 }
3402 }
Will Dietz1897cb32012-11-27 15:01:55 +00003403
Alexey Samsonovedf99a92014-11-07 22:29:38 +00003404 if (op.Ty->isUnsignedIntegerType() &&
Vedant Kumar82ee16b2017-02-25 00:43:36 +00003405 CGF.SanOpts.has(SanitizerKind::UnsignedIntegerOverflow) &&
3406 !CanElideOverflowCheck(CGF.getContext(), op))
Will Dietz1897cb32012-11-27 15:01:55 +00003407 return EmitOverflowCheckedBinOp(op);
3408
Lang Hames5de91cc2012-10-02 04:45:10 +00003409 if (op.LHS->getType()->isFPOrFPVectorTy()) {
3410 // Try to form an fmuladd.
3411 if (Value *FMulAdd = tryEmitFMulAdd(op, CGF, Builder))
3412 return FMulAdd;
3413
Adam Nemet370d0872017-04-04 21:18:30 +00003414 Value *V = Builder.CreateFAdd(op.LHS, op.RHS, "add");
3415 return propagateFMFlags(V, op);
Lang Hames5de91cc2012-10-02 04:45:10 +00003416 }
John McCall77527a82011-06-25 01:32:37 +00003417
Leonard Chan2044ac82019-01-16 18:13:59 +00003418 if (op.isFixedPointBinOp())
Leonard Chan837da5d2019-01-16 19:53:50 +00003419 return EmitFixedPointBinOp(op);
Leonard Chan2044ac82019-01-16 18:13:59 +00003420
John McCall77527a82011-06-25 01:32:37 +00003421 return Builder.CreateAdd(op.LHS, op.RHS, "add");
3422}
3423
Leonard Chan2044ac82019-01-16 18:13:59 +00003424/// The resulting value must be calculated with exact precision, so the operands
3425/// may not be the same type.
Leonard Chan837da5d2019-01-16 19:53:50 +00003426Value *ScalarExprEmitter::EmitFixedPointBinOp(const BinOpInfo &op) {
Leonard Chan2044ac82019-01-16 18:13:59 +00003427 using llvm::APSInt;
3428 using llvm::ConstantInt;
3429
3430 const auto *BinOp = cast<BinaryOperator>(op.E);
Leonard Chan2044ac82019-01-16 18:13:59 +00003431
3432 // The result is a fixed point type and at least one of the operands is fixed
3433 // point while the other is either fixed point or an int. This resulting type
3434 // should be determined by Sema::handleFixedPointConversions().
3435 QualType ResultTy = op.Ty;
3436 QualType LHSTy = BinOp->getLHS()->getType();
3437 QualType RHSTy = BinOp->getRHS()->getType();
3438 ASTContext &Ctx = CGF.getContext();
3439 Value *LHS = op.LHS;
3440 Value *RHS = op.RHS;
3441
3442 auto LHSFixedSema = Ctx.getFixedPointSemantics(LHSTy);
3443 auto RHSFixedSema = Ctx.getFixedPointSemantics(RHSTy);
3444 auto ResultFixedSema = Ctx.getFixedPointSemantics(ResultTy);
3445 auto CommonFixedSema = LHSFixedSema.getCommonSemantics(RHSFixedSema);
3446
3447 // Convert the operands to the full precision type.
3448 Value *FullLHS = EmitFixedPointConversion(LHS, LHSFixedSema, CommonFixedSema,
3449 BinOp->getExprLoc());
3450 Value *FullRHS = EmitFixedPointConversion(RHS, RHSFixedSema, CommonFixedSema,
3451 BinOp->getExprLoc());
3452
3453 // Perform the actual addition.
3454 Value *Result;
Leonard Chan837da5d2019-01-16 19:53:50 +00003455 switch (BinOp->getOpcode()) {
3456 case BO_Add: {
3457 if (ResultFixedSema.isSaturated()) {
3458 llvm::Intrinsic::ID IID = ResultFixedSema.isSigned()
3459 ? llvm::Intrinsic::sadd_sat
3460 : llvm::Intrinsic::uadd_sat;
3461 Result = Builder.CreateBinaryIntrinsic(IID, FullLHS, FullRHS);
3462 } else {
3463 Result = Builder.CreateAdd(FullLHS, FullRHS);
3464 }
3465 break;
3466 }
3467 case BO_Sub: {
3468 if (ResultFixedSema.isSaturated()) {
3469 llvm::Intrinsic::ID IID = ResultFixedSema.isSigned()
3470 ? llvm::Intrinsic::ssub_sat
3471 : llvm::Intrinsic::usub_sat;
3472 Result = Builder.CreateBinaryIntrinsic(IID, FullLHS, FullRHS);
3473 } else {
3474 Result = Builder.CreateSub(FullLHS, FullRHS);
3475 }
3476 break;
3477 }
Leonard Chance1d4f12019-02-21 20:50:09 +00003478 case BO_LT:
3479 return CommonFixedSema.isSigned() ? Builder.CreateICmpSLT(FullLHS, FullRHS)
3480 : Builder.CreateICmpULT(FullLHS, FullRHS);
3481 case BO_GT:
3482 return CommonFixedSema.isSigned() ? Builder.CreateICmpSGT(FullLHS, FullRHS)
3483 : Builder.CreateICmpUGT(FullLHS, FullRHS);
3484 case BO_LE:
3485 return CommonFixedSema.isSigned() ? Builder.CreateICmpSLE(FullLHS, FullRHS)
3486 : Builder.CreateICmpULE(FullLHS, FullRHS);
3487 case BO_GE:
3488 return CommonFixedSema.isSigned() ? Builder.CreateICmpSGE(FullLHS, FullRHS)
3489 : Builder.CreateICmpUGE(FullLHS, FullRHS);
3490 case BO_EQ:
3491 // For equality operations, we assume any padding bits on unsigned types are
3492 // zero'd out. They could be overwritten through non-saturating operations
3493 // that cause overflow, but this leads to undefined behavior.
3494 return Builder.CreateICmpEQ(FullLHS, FullRHS);
3495 case BO_NE:
3496 return Builder.CreateICmpNE(FullLHS, FullRHS);
Leonard Chan837da5d2019-01-16 19:53:50 +00003497 case BO_Mul:
3498 case BO_Div:
3499 case BO_Shl:
3500 case BO_Shr:
3501 case BO_Cmp:
Leonard Chan837da5d2019-01-16 19:53:50 +00003502 case BO_LAnd:
3503 case BO_LOr:
3504 case BO_MulAssign:
3505 case BO_DivAssign:
3506 case BO_AddAssign:
3507 case BO_SubAssign:
3508 case BO_ShlAssign:
3509 case BO_ShrAssign:
3510 llvm_unreachable("Found unimplemented fixed point binary operation");
3511 case BO_PtrMemD:
3512 case BO_PtrMemI:
3513 case BO_Rem:
3514 case BO_Xor:
3515 case BO_And:
3516 case BO_Or:
3517 case BO_Assign:
3518 case BO_RemAssign:
3519 case BO_AndAssign:
3520 case BO_XorAssign:
3521 case BO_OrAssign:
3522 case BO_Comma:
3523 llvm_unreachable("Found unsupported binary operation for fixed point types.");
Leonard Chan2044ac82019-01-16 18:13:59 +00003524 }
3525
3526 // Convert to the result type.
3527 return EmitFixedPointConversion(Result, CommonFixedSema, ResultFixedSema,
3528 BinOp->getExprLoc());
3529}
3530
John McCall77527a82011-06-25 01:32:37 +00003531Value *ScalarExprEmitter::EmitSub(const BinOpInfo &op) {
3532 // The LHS is always a pointer if either side is.
3533 if (!op.LHS->getType()->isPointerTy()) {
3534 if (op.Ty->isSignedIntegerOrEnumerationType()) {
Richard Smith9c6890a2012-11-01 22:30:59 +00003535 switch (CGF.getLangOpts().getSignedOverflowBehavior()) {
Chris Lattner51924e512010-06-26 21:25:03 +00003536 case LangOptions::SOB_Defined:
John McCall77527a82011-06-25 01:32:37 +00003537 return Builder.CreateSub(op.LHS, op.RHS, "sub");
Richard Smith3e056de2012-08-25 00:32:28 +00003538 case LangOptions::SOB_Undefined:
Alexey Samsonovedf99a92014-11-07 22:29:38 +00003539 if (!CGF.SanOpts.has(SanitizerKind::SignedIntegerOverflow))
Richard Smith3e056de2012-08-25 00:32:28 +00003540 return Builder.CreateNSWSub(op.LHS, op.RHS, "sub");
Reid Kleckner4dc0b1a2018-11-01 19:54:45 +00003541 LLVM_FALLTHROUGH;
Chris Lattner51924e512010-06-26 21:25:03 +00003542 case LangOptions::SOB_Trapping:
Vedant Kumar82ee16b2017-02-25 00:43:36 +00003543 if (CanElideOverflowCheck(CGF.getContext(), op))
3544 return Builder.CreateNSWSub(op.LHS, op.RHS, "sub");
John McCall77527a82011-06-25 01:32:37 +00003545 return EmitOverflowCheckedBinOp(op);
Chris Lattner51924e512010-06-26 21:25:03 +00003546 }
3547 }
Will Dietz1897cb32012-11-27 15:01:55 +00003548
Alexey Samsonovedf99a92014-11-07 22:29:38 +00003549 if (op.Ty->isUnsignedIntegerType() &&
Vedant Kumar82ee16b2017-02-25 00:43:36 +00003550 CGF.SanOpts.has(SanitizerKind::UnsignedIntegerOverflow) &&
3551 !CanElideOverflowCheck(CGF.getContext(), op))
Will Dietz1897cb32012-11-27 15:01:55 +00003552 return EmitOverflowCheckedBinOp(op);
3553
Lang Hames5de91cc2012-10-02 04:45:10 +00003554 if (op.LHS->getType()->isFPOrFPVectorTy()) {
3555 // Try to form an fmuladd.
3556 if (Value *FMulAdd = tryEmitFMulAdd(op, CGF, Builder, true))
3557 return FMulAdd;
Adam Nemet370d0872017-04-04 21:18:30 +00003558 Value *V = Builder.CreateFSub(op.LHS, op.RHS, "sub");
3559 return propagateFMFlags(V, op);
Lang Hames5de91cc2012-10-02 04:45:10 +00003560 }
Chris Lattner5902e7b2010-03-29 17:28:16 +00003561
Leonard Chan837da5d2019-01-16 19:53:50 +00003562 if (op.isFixedPointBinOp())
3563 return EmitFixedPointBinOp(op);
3564
John McCall77527a82011-06-25 01:32:37 +00003565 return Builder.CreateSub(op.LHS, op.RHS, "sub");
Mike Stump0c61b732009-04-01 20:28:16 +00003566 }
Chris Lattner3d966d62007-08-24 21:00:35 +00003567
John McCall77527a82011-06-25 01:32:37 +00003568 // If the RHS is not a pointer, then we have normal pointer
3569 // arithmetic.
3570 if (!op.RHS->getType()->isPointerTy())
Vedant Kumar175b6d12017-07-13 20:55:26 +00003571 return emitPointerArithmetic(CGF, op, CodeGenFunction::IsSubtraction);
Eli Friedmane381f7e2009-03-28 02:45:41 +00003572
John McCall77527a82011-06-25 01:32:37 +00003573 // Otherwise, this is a pointer subtraction.
Daniel Dunbar42a8cd32009-01-23 18:51:09 +00003574
John McCall77527a82011-06-25 01:32:37 +00003575 // Do the raw subtraction part.
3576 llvm::Value *LHS
3577 = Builder.CreatePtrToInt(op.LHS, CGF.PtrDiffTy, "sub.ptr.lhs.cast");
3578 llvm::Value *RHS
3579 = Builder.CreatePtrToInt(op.RHS, CGF.PtrDiffTy, "sub.ptr.rhs.cast");
3580 Value *diffInChars = Builder.CreateSub(LHS, RHS, "sub.ptr.sub");
Daniel Dunbaref2ffbc2009-04-25 05:08:32 +00003581
John McCall77527a82011-06-25 01:32:37 +00003582 // Okay, figure out the element size.
3583 const BinaryOperator *expr = cast<BinaryOperator>(op.E);
3584 QualType elementType = expr->getLHS()->getType()->getPointeeType();
Mike Stump4a3999f2009-09-09 13:00:44 +00003585
Craig Topper8a13c412014-05-21 05:09:00 +00003586 llvm::Value *divisor = nullptr;
John McCall77527a82011-06-25 01:32:37 +00003587
3588 // For a variable-length array, this is going to be non-constant.
3589 if (const VariableArrayType *vla
3590 = CGF.getContext().getAsVariableArrayType(elementType)) {
Sander de Smalen891af03a2018-02-03 13:55:59 +00003591 auto VlaSize = CGF.getVLASize(vla);
3592 elementType = VlaSize.Type;
3593 divisor = VlaSize.NumElts;
John McCall77527a82011-06-25 01:32:37 +00003594
3595 // Scale the number of non-VLA elements by the non-VLA element size.
3596 CharUnits eltSize = CGF.getContext().getTypeSizeInChars(elementType);
3597 if (!eltSize.isOne())
3598 divisor = CGF.Builder.CreateNUWMul(CGF.CGM.getSize(eltSize), divisor);
3599
3600 // For everything elese, we can just compute it, safe in the
3601 // assumption that Sema won't let anything through that we can't
3602 // safely compute the size of.
3603 } else {
3604 CharUnits elementSize;
3605 // Handle GCC extension for pointer arithmetic on void* and
3606 // function pointer types.
3607 if (elementType->isVoidType() || elementType->isFunctionType())
3608 elementSize = CharUnits::One();
3609 else
3610 elementSize = CGF.getContext().getTypeSizeInChars(elementType);
3611
3612 // Don't even emit the divide for element size of 1.
3613 if (elementSize.isOne())
3614 return diffInChars;
3615
3616 divisor = CGF.CGM.getSize(elementSize);
Chris Lattner2da04b32007-08-24 05:35:26 +00003617 }
Craig Toppera97d7e72013-07-26 06:16:11 +00003618
Chris Lattner2e72da942011-03-01 00:03:48 +00003619 // Otherwise, do a full sdiv. This uses the "exact" form of sdiv, since
3620 // pointer difference in C is only defined in the case where both operands
3621 // are pointing to elements of an array.
John McCall77527a82011-06-25 01:32:37 +00003622 return Builder.CreateExactSDiv(diffInChars, divisor, "sub.ptr.div");
Chris Lattner2da04b32007-08-24 05:35:26 +00003623}
3624
David Tweed042e0882013-01-07 16:43:27 +00003625Value *ScalarExprEmitter::GetWidthMinusOneValue(Value* LHS,Value* RHS) {
David Tweed9fb566c2013-01-10 09:11:33 +00003626 llvm::IntegerType *Ty;
3627 if (llvm::VectorType *VT = dyn_cast<llvm::VectorType>(LHS->getType()))
3628 Ty = cast<llvm::IntegerType>(VT->getElementType());
3629 else
3630 Ty = cast<llvm::IntegerType>(LHS->getType());
3631 return llvm::ConstantInt::get(RHS->getType(), Ty->getBitWidth() - 1);
David Tweed042e0882013-01-07 16:43:27 +00003632}
3633
Chris Lattner2da04b32007-08-24 05:35:26 +00003634Value *ScalarExprEmitter::EmitShl(const BinOpInfo &Ops) {
3635 // LLVM requires the LHS and RHS to be the same type: promote or truncate the
3636 // RHS to the same size as the LHS.
3637 Value *RHS = Ops.RHS;
3638 if (Ops.LHS->getType() != RHS->getType())
3639 RHS = Builder.CreateIntCast(RHS, Ops.LHS->getType(), false, "sh_prom");
Mike Stump4a3999f2009-09-09 13:00:44 +00003640
Alexey Samsonov21d2dda2015-03-09 21:50:19 +00003641 bool SanitizeBase = CGF.SanOpts.has(SanitizerKind::ShiftBase) &&
James Molloy59802322016-08-16 09:45:36 +00003642 Ops.Ty->hasSignedIntegerRepresentation() &&
3643 !CGF.getLangOpts().isSignedOverflowDefined();
Alexey Samsonov21d2dda2015-03-09 21:50:19 +00003644 bool SanitizeExponent = CGF.SanOpts.has(SanitizerKind::ShiftExponent);
3645 // OpenCL 6.3j: shift values are effectively % word size of LHS.
3646 if (CGF.getLangOpts().OpenCL)
3647 RHS =
3648 Builder.CreateAnd(RHS, GetWidthMinusOneValue(Ops.LHS, RHS), "shl.mask");
3649 else if ((SanitizeBase || SanitizeExponent) &&
3650 isa<llvm::IntegerType>(Ops.LHS->getType())) {
Alexey Samsonov24cad992014-07-17 18:46:27 +00003651 CodeGenFunction::SanitizerScope SanScope(&CGF);
Peter Collingbourne3eea6772015-05-11 21:39:14 +00003652 SmallVector<std::pair<Value *, SanitizerMask>, 2> Checks;
Vedant Kumard3a601b2017-01-30 23:38:54 +00003653 llvm::Value *WidthMinusOne = GetWidthMinusOneValue(Ops.LHS, Ops.RHS);
3654 llvm::Value *ValidExponent = Builder.CreateICmpULE(Ops.RHS, WidthMinusOne);
Richard Smith3e056de2012-08-25 00:32:28 +00003655
Alexey Samsonov21d2dda2015-03-09 21:50:19 +00003656 if (SanitizeExponent) {
3657 Checks.push_back(
3658 std::make_pair(ValidExponent, SanitizerKind::ShiftExponent));
3659 }
3660
3661 if (SanitizeBase) {
3662 // Check whether we are shifting any non-zero bits off the top of the
3663 // integer. We only emit this check if exponent is valid - otherwise
3664 // instructions below will have undefined behavior themselves.
Alexey Samsonov48a9db02015-03-05 21:57:35 +00003665 llvm::BasicBlock *Orig = Builder.GetInsertBlock();
3666 llvm::BasicBlock *Cont = CGF.createBasicBlock("cont");
Alexey Samsonov21d2dda2015-03-09 21:50:19 +00003667 llvm::BasicBlock *CheckShiftBase = CGF.createBasicBlock("check");
3668 Builder.CreateCondBr(ValidExponent, CheckShiftBase, Cont);
Vedant Kumard3a601b2017-01-30 23:38:54 +00003669 llvm::Value *PromotedWidthMinusOne =
3670 (RHS == Ops.RHS) ? WidthMinusOne
3671 : GetWidthMinusOneValue(Ops.LHS, RHS);
Alexey Samsonov21d2dda2015-03-09 21:50:19 +00003672 CGF.EmitBlock(CheckShiftBase);
Vedant Kumard3a601b2017-01-30 23:38:54 +00003673 llvm::Value *BitsShiftedOff = Builder.CreateLShr(
3674 Ops.LHS, Builder.CreateSub(PromotedWidthMinusOne, RHS, "shl.zeros",
3675 /*NUW*/ true, /*NSW*/ true),
3676 "shl.check");
Richard Smith3e056de2012-08-25 00:32:28 +00003677 if (CGF.getLangOpts().CPlusPlus) {
3678 // In C99, we are not permitted to shift a 1 bit into the sign bit.
3679 // Under C++11's rules, shifting a 1 bit into the sign bit is
3680 // OK, but shifting a 1 bit out of it is not. (C89 and C++03 don't
3681 // define signed left shifts, so we use the C99 and C++11 rules there).
3682 llvm::Value *One = llvm::ConstantInt::get(BitsShiftedOff->getType(), 1);
3683 BitsShiftedOff = Builder.CreateLShr(BitsShiftedOff, One);
3684 }
3685 llvm::Value *Zero = llvm::ConstantInt::get(BitsShiftedOff->getType(), 0);
Alexey Samsonov21d2dda2015-03-09 21:50:19 +00003686 llvm::Value *ValidBase = Builder.CreateICmpEQ(BitsShiftedOff, Zero);
Alexey Samsonov48a9db02015-03-05 21:57:35 +00003687 CGF.EmitBlock(Cont);
Alexey Samsonov21d2dda2015-03-09 21:50:19 +00003688 llvm::PHINode *BaseCheck = Builder.CreatePHI(ValidBase->getType(), 2);
3689 BaseCheck->addIncoming(Builder.getTrue(), Orig);
3690 BaseCheck->addIncoming(ValidBase, CheckShiftBase);
3691 Checks.push_back(std::make_pair(BaseCheck, SanitizerKind::ShiftBase));
Richard Smith3e056de2012-08-25 00:32:28 +00003692 }
Will Dietz11d0a9f2013-02-25 22:37:49 +00003693
Alexey Samsonov21d2dda2015-03-09 21:50:19 +00003694 assert(!Checks.empty());
3695 EmitBinOpCheck(Checks, Ops);
Mike Stumpba6a0c42009-12-14 21:58:14 +00003696 }
3697
Chris Lattner2da04b32007-08-24 05:35:26 +00003698 return Builder.CreateShl(Ops.LHS, RHS, "shl");
3699}
3700
3701Value *ScalarExprEmitter::EmitShr(const BinOpInfo &Ops) {
3702 // LLVM requires the LHS and RHS to be the same type: promote or truncate the
3703 // RHS to the same size as the LHS.
3704 Value *RHS = Ops.RHS;
3705 if (Ops.LHS->getType() != RHS->getType())
3706 RHS = Builder.CreateIntCast(RHS, Ops.LHS->getType(), false, "sh_prom");
Mike Stump4a3999f2009-09-09 13:00:44 +00003707
Alexey Samsonov21d2dda2015-03-09 21:50:19 +00003708 // OpenCL 6.3j: shift values are effectively % word size of LHS.
3709 if (CGF.getLangOpts().OpenCL)
3710 RHS =
3711 Builder.CreateAnd(RHS, GetWidthMinusOneValue(Ops.LHS, RHS), "shr.mask");
3712 else if (CGF.SanOpts.has(SanitizerKind::ShiftExponent) &&
3713 isa<llvm::IntegerType>(Ops.LHS->getType())) {
Alexey Samsonov24cad992014-07-17 18:46:27 +00003714 CodeGenFunction::SanitizerScope SanScope(&CGF);
Alexey Samsonove396bfc2014-11-11 22:03:54 +00003715 llvm::Value *Valid =
3716 Builder.CreateICmpULE(RHS, GetWidthMinusOneValue(Ops.LHS, RHS));
Alexey Samsonov21d2dda2015-03-09 21:50:19 +00003717 EmitBinOpCheck(std::make_pair(Valid, SanitizerKind::ShiftExponent), Ops);
Alexey Samsonov24cad992014-07-17 18:46:27 +00003718 }
David Tweed042e0882013-01-07 16:43:27 +00003719
Douglas Gregor5cc2c8b2010-07-23 15:58:24 +00003720 if (Ops.Ty->hasUnsignedIntegerRepresentation())
Chris Lattner2da04b32007-08-24 05:35:26 +00003721 return Builder.CreateLShr(Ops.LHS, RHS, "shr");
3722 return Builder.CreateAShr(Ops.LHS, RHS, "shr");
3723}
3724
Anton Yartsev3f8f2882010-11-18 03:19:30 +00003725enum IntrinsicType { VCMPEQ, VCMPGT };
3726// return corresponding comparison intrinsic for given vector type
3727static llvm::Intrinsic::ID GetIntrinsic(IntrinsicType IT,
3728 BuiltinType::Kind ElemKind) {
3729 switch (ElemKind) {
David Blaikie83d382b2011-09-23 05:06:16 +00003730 default: llvm_unreachable("unexpected element type");
Anton Yartsev3f8f2882010-11-18 03:19:30 +00003731 case BuiltinType::Char_U:
3732 case BuiltinType::UChar:
3733 return (IT == VCMPEQ) ? llvm::Intrinsic::ppc_altivec_vcmpequb_p :
3734 llvm::Intrinsic::ppc_altivec_vcmpgtub_p;
Anton Yartsev3f8f2882010-11-18 03:19:30 +00003735 case BuiltinType::Char_S:
3736 case BuiltinType::SChar:
3737 return (IT == VCMPEQ) ? llvm::Intrinsic::ppc_altivec_vcmpequb_p :
3738 llvm::Intrinsic::ppc_altivec_vcmpgtsb_p;
Anton Yartsev3f8f2882010-11-18 03:19:30 +00003739 case BuiltinType::UShort:
3740 return (IT == VCMPEQ) ? llvm::Intrinsic::ppc_altivec_vcmpequh_p :
3741 llvm::Intrinsic::ppc_altivec_vcmpgtuh_p;
Anton Yartsev3f8f2882010-11-18 03:19:30 +00003742 case BuiltinType::Short:
3743 return (IT == VCMPEQ) ? llvm::Intrinsic::ppc_altivec_vcmpequh_p :
3744 llvm::Intrinsic::ppc_altivec_vcmpgtsh_p;
Anton Yartsev3f8f2882010-11-18 03:19:30 +00003745 case BuiltinType::UInt:
Anton Yartsev3f8f2882010-11-18 03:19:30 +00003746 return (IT == VCMPEQ) ? llvm::Intrinsic::ppc_altivec_vcmpequw_p :
3747 llvm::Intrinsic::ppc_altivec_vcmpgtuw_p;
Anton Yartsev3f8f2882010-11-18 03:19:30 +00003748 case BuiltinType::Int:
Anton Yartsev3f8f2882010-11-18 03:19:30 +00003749 return (IT == VCMPEQ) ? llvm::Intrinsic::ppc_altivec_vcmpequw_p :
3750 llvm::Intrinsic::ppc_altivec_vcmpgtsw_p;
Guozhi Wei769095b2017-10-19 20:11:23 +00003751 case BuiltinType::ULong:
3752 case BuiltinType::ULongLong:
3753 return (IT == VCMPEQ) ? llvm::Intrinsic::ppc_altivec_vcmpequd_p :
3754 llvm::Intrinsic::ppc_altivec_vcmpgtud_p;
3755 case BuiltinType::Long:
3756 case BuiltinType::LongLong:
3757 return (IT == VCMPEQ) ? llvm::Intrinsic::ppc_altivec_vcmpequd_p :
3758 llvm::Intrinsic::ppc_altivec_vcmpgtsd_p;
Anton Yartsev3f8f2882010-11-18 03:19:30 +00003759 case BuiltinType::Float:
3760 return (IT == VCMPEQ) ? llvm::Intrinsic::ppc_altivec_vcmpeqfp_p :
3761 llvm::Intrinsic::ppc_altivec_vcmpgtfp_p;
Guozhi Wei769095b2017-10-19 20:11:23 +00003762 case BuiltinType::Double:
3763 return (IT == VCMPEQ) ? llvm::Intrinsic::ppc_vsx_xvcmpeqdp_p :
3764 llvm::Intrinsic::ppc_vsx_xvcmpgtdp_p;
Anton Yartsev3f8f2882010-11-18 03:19:30 +00003765 }
Anton Yartsev3f8f2882010-11-18 03:19:30 +00003766}
3767
Craig Topperc82f8962015-12-16 06:24:28 +00003768Value *ScalarExprEmitter::EmitCompare(const BinaryOperator *E,
3769 llvm::CmpInst::Predicate UICmpOpc,
3770 llvm::CmpInst::Predicate SICmpOpc,
3771 llvm::CmpInst::Predicate FCmpOpc) {
Mike Stumpdf0fe272009-05-29 15:46:01 +00003772 TestAndClearIgnoreResultAssign();
Chris Lattner42e6b812007-08-26 16:34:22 +00003773 Value *Result;
Chris Lattner2da04b32007-08-24 05:35:26 +00003774 QualType LHSTy = E->getLHS()->getType();
Chandler Carruthb29a7432014-10-11 11:03:30 +00003775 QualType RHSTy = E->getRHS()->getType();
John McCall7a9aac22010-08-23 01:21:21 +00003776 if (const MemberPointerType *MPT = LHSTy->getAs<MemberPointerType>()) {
John McCalle3027922010-08-25 11:45:40 +00003777 assert(E->getOpcode() == BO_EQ ||
3778 E->getOpcode() == BO_NE);
John McCalla1dee5302010-08-22 10:59:02 +00003779 Value *LHS = CGF.EmitScalarExpr(E->getLHS());
3780 Value *RHS = CGF.EmitScalarExpr(E->getRHS());
John McCall7a9aac22010-08-23 01:21:21 +00003781 Result = CGF.CGM.getCXXABI().EmitMemberPointerComparison(
John McCalle3027922010-08-25 11:45:40 +00003782 CGF, LHS, RHS, MPT, E->getOpcode() == BO_NE);
Chandler Carruthb29a7432014-10-11 11:03:30 +00003783 } else if (!LHSTy->isAnyComplexType() && !RHSTy->isAnyComplexType()) {
Leonard Chance1d4f12019-02-21 20:50:09 +00003784 BinOpInfo BOInfo = EmitBinOps(E);
3785 Value *LHS = BOInfo.LHS;
3786 Value *RHS = BOInfo.RHS;
Mike Stump4a3999f2009-09-09 13:00:44 +00003787
Anton Yartsev3f8f2882010-11-18 03:19:30 +00003788 // If AltiVec, the comparison results in a numeric type, so we use
3789 // intrinsics comparing vectors and giving 0 or 1 as a result
Anton Yartsev93900c72011-03-28 21:00:05 +00003790 if (LHSTy->isVectorType() && !E->getType()->isVectorType()) {
Anton Yartsev3f8f2882010-11-18 03:19:30 +00003791 // constants for mapping CR6 register bits to predicate result
3792 enum { CR6_EQ=0, CR6_EQ_REV, CR6_LT, CR6_LT_REV } CR6;
3793
3794 llvm::Intrinsic::ID ID = llvm::Intrinsic::not_intrinsic;
3795
3796 // in several cases vector arguments order will be reversed
3797 Value *FirstVecArg = LHS,
3798 *SecondVecArg = RHS;
3799
3800 QualType ElTy = LHSTy->getAs<VectorType>()->getElementType();
John McCall424cec92011-01-19 06:33:43 +00003801 const BuiltinType *BTy = ElTy->getAs<BuiltinType>();
Anton Yartsev3f8f2882010-11-18 03:19:30 +00003802 BuiltinType::Kind ElementKind = BTy->getKind();
3803
3804 switch(E->getOpcode()) {
David Blaikie83d382b2011-09-23 05:06:16 +00003805 default: llvm_unreachable("is not a comparison operation");
Anton Yartsev3f8f2882010-11-18 03:19:30 +00003806 case BO_EQ:
3807 CR6 = CR6_LT;
3808 ID = GetIntrinsic(VCMPEQ, ElementKind);
3809 break;
3810 case BO_NE:
3811 CR6 = CR6_EQ;
3812 ID = GetIntrinsic(VCMPEQ, ElementKind);
3813 break;
3814 case BO_LT:
3815 CR6 = CR6_LT;
3816 ID = GetIntrinsic(VCMPGT, ElementKind);
3817 std::swap(FirstVecArg, SecondVecArg);
3818 break;
3819 case BO_GT:
3820 CR6 = CR6_LT;
3821 ID = GetIntrinsic(VCMPGT, ElementKind);
3822 break;
3823 case BO_LE:
3824 if (ElementKind == BuiltinType::Float) {
3825 CR6 = CR6_LT;
3826 ID = llvm::Intrinsic::ppc_altivec_vcmpgefp_p;
3827 std::swap(FirstVecArg, SecondVecArg);
3828 }
3829 else {
3830 CR6 = CR6_EQ;
3831 ID = GetIntrinsic(VCMPGT, ElementKind);
3832 }
3833 break;
3834 case BO_GE:
3835 if (ElementKind == BuiltinType::Float) {
3836 CR6 = CR6_LT;
3837 ID = llvm::Intrinsic::ppc_altivec_vcmpgefp_p;
3838 }
3839 else {
3840 CR6 = CR6_EQ;
3841 ID = GetIntrinsic(VCMPGT, ElementKind);
3842 std::swap(FirstVecArg, SecondVecArg);
3843 }
3844 break;
3845 }
3846
Chris Lattner2531eb42011-04-19 22:55:03 +00003847 Value *CR6Param = Builder.getInt32(CR6);
Anton Yartsev3f8f2882010-11-18 03:19:30 +00003848 llvm::Function *F = CGF.CGM.getIntrinsic(ID);
David Blaikie43f9bb72015-05-18 22:14:03 +00003849 Result = Builder.CreateCall(F, {CR6Param, FirstVecArg, SecondVecArg});
Guozhi Wei3625f3e2017-10-10 20:31:27 +00003850
3851 // The result type of intrinsic may not be same as E->getType().
3852 // If E->getType() is not BoolTy, EmitScalarConversion will do the
3853 // conversion work. If E->getType() is BoolTy, EmitScalarConversion will
3854 // do nothing, if ResultTy is not i1 at the same time, it will cause
3855 // crash later.
3856 llvm::IntegerType *ResultTy = cast<llvm::IntegerType>(Result->getType());
3857 if (ResultTy->getBitWidth() > 1 &&
3858 E->getType() == CGF.getContext().BoolTy)
3859 Result = Builder.CreateTrunc(Result, Builder.getInt1Ty());
Filipe Cabecinhas7af183d2015-08-11 04:19:28 +00003860 return EmitScalarConversion(Result, CGF.getContext().BoolTy, E->getType(),
3861 E->getExprLoc());
Anton Yartsev3f8f2882010-11-18 03:19:30 +00003862 }
3863
Leonard Chance1d4f12019-02-21 20:50:09 +00003864 if (BOInfo.isFixedPointBinOp()) {
3865 Result = EmitFixedPointBinOp(BOInfo);
3866 } else if (LHS->getType()->isFPOrFPVectorTy()) {
Craig Topperc82f8962015-12-16 06:24:28 +00003867 Result = Builder.CreateFCmp(FCmpOpc, LHS, RHS, "cmp");
Douglas Gregor5cc2c8b2010-07-23 15:58:24 +00003868 } else if (LHSTy->hasSignedIntegerRepresentation()) {
Craig Topperc82f8962015-12-16 06:24:28 +00003869 Result = Builder.CreateICmp(SICmpOpc, LHS, RHS, "cmp");
Chris Lattner2da04b32007-08-24 05:35:26 +00003870 } else {
Eli Friedman3c285242008-05-29 15:09:15 +00003871 // Unsigned integers and pointers.
Piotr Padlewski07058292018-07-02 19:21:36 +00003872
3873 if (CGF.CGM.getCodeGenOpts().StrictVTablePointers &&
3874 !isa<llvm::ConstantPointerNull>(LHS) &&
3875 !isa<llvm::ConstantPointerNull>(RHS)) {
3876
3877 // Dynamic information is required to be stripped for comparisons,
3878 // because it could leak the dynamic information. Based on comparisons
3879 // of pointers to dynamic objects, the optimizer can replace one pointer
3880 // with another, which might be incorrect in presence of invariant
3881 // groups. Comparison with null is safe because null does not carry any
3882 // dynamic information.
3883 if (LHSTy.mayBeDynamicClass())
3884 LHS = Builder.CreateStripInvariantGroup(LHS);
3885 if (RHSTy.mayBeDynamicClass())
3886 RHS = Builder.CreateStripInvariantGroup(RHS);
3887 }
3888
Craig Topperc82f8962015-12-16 06:24:28 +00003889 Result = Builder.CreateICmp(UICmpOpc, LHS, RHS, "cmp");
Chris Lattner2da04b32007-08-24 05:35:26 +00003890 }
Chris Lattner2a7deb62009-07-08 01:08:03 +00003891
3892 // If this is a vector comparison, sign extend the result to the appropriate
3893 // vector integer type and return it (don't convert to bool).
3894 if (LHSTy->isVectorType())
3895 return Builder.CreateSExt(Result, ConvertType(E->getType()), "sext");
Mike Stump4a3999f2009-09-09 13:00:44 +00003896
Chris Lattner2da04b32007-08-24 05:35:26 +00003897 } else {
3898 // Complex Comparison: can only be an equality comparison.
Chandler Carruthb29a7432014-10-11 11:03:30 +00003899 CodeGenFunction::ComplexPairTy LHS, RHS;
3900 QualType CETy;
3901 if (auto *CTy = LHSTy->getAs<ComplexType>()) {
3902 LHS = CGF.EmitComplexExpr(E->getLHS());
3903 CETy = CTy->getElementType();
3904 } else {
3905 LHS.first = Visit(E->getLHS());
3906 LHS.second = llvm::Constant::getNullValue(LHS.first->getType());
3907 CETy = LHSTy;
3908 }
3909 if (auto *CTy = RHSTy->getAs<ComplexType>()) {
3910 RHS = CGF.EmitComplexExpr(E->getRHS());
3911 assert(CGF.getContext().hasSameUnqualifiedType(CETy,
3912 CTy->getElementType()) &&
3913 "The element types must always match.");
Chandler Carruth60fdc412014-10-11 11:29:26 +00003914 (void)CTy;
Chandler Carruthb29a7432014-10-11 11:03:30 +00003915 } else {
3916 RHS.first = Visit(E->getRHS());
3917 RHS.second = llvm::Constant::getNullValue(RHS.first->getType());
3918 assert(CGF.getContext().hasSameUnqualifiedType(CETy, RHSTy) &&
3919 "The element types must always match.");
3920 }
Mike Stump4a3999f2009-09-09 13:00:44 +00003921
Chris Lattner42e6b812007-08-26 16:34:22 +00003922 Value *ResultR, *ResultI;
Chris Lattner2da04b32007-08-24 05:35:26 +00003923 if (CETy->isRealFloatingType()) {
Craig Topperc82f8962015-12-16 06:24:28 +00003924 ResultR = Builder.CreateFCmp(FCmpOpc, LHS.first, RHS.first, "cmp.r");
3925 ResultI = Builder.CreateFCmp(FCmpOpc, LHS.second, RHS.second, "cmp.i");
Chris Lattner2da04b32007-08-24 05:35:26 +00003926 } else {
3927 // Complex comparisons can only be equality comparisons. As such, signed
3928 // and unsigned opcodes are the same.
Craig Topperc82f8962015-12-16 06:24:28 +00003929 ResultR = Builder.CreateICmp(UICmpOpc, LHS.first, RHS.first, "cmp.r");
3930 ResultI = Builder.CreateICmp(UICmpOpc, LHS.second, RHS.second, "cmp.i");
Chris Lattner2da04b32007-08-24 05:35:26 +00003931 }
Mike Stump4a3999f2009-09-09 13:00:44 +00003932
John McCalle3027922010-08-25 11:45:40 +00003933 if (E->getOpcode() == BO_EQ) {
Chris Lattner2da04b32007-08-24 05:35:26 +00003934 Result = Builder.CreateAnd(ResultR, ResultI, "and.ri");
3935 } else {
John McCalle3027922010-08-25 11:45:40 +00003936 assert(E->getOpcode() == BO_NE &&
Chris Lattner2da04b32007-08-24 05:35:26 +00003937 "Complex comparison other than == or != ?");
3938 Result = Builder.CreateOr(ResultR, ResultI, "or.ri");
3939 }
3940 }
Nuno Lopesa0abe622009-01-11 23:22:37 +00003941
Filipe Cabecinhas7af183d2015-08-11 04:19:28 +00003942 return EmitScalarConversion(Result, CGF.getContext().BoolTy, E->getType(),
3943 E->getExprLoc());
Chris Lattner2da04b32007-08-24 05:35:26 +00003944}
3945
3946Value *ScalarExprEmitter::VisitBinAssign(const BinaryOperator *E) {
Mike Stumpdf0fe272009-05-29 15:46:01 +00003947 bool Ignore = TestAndClearIgnoreResultAssign();
3948
John McCall31168b02011-06-15 23:02:42 +00003949 Value *RHS;
3950 LValue LHS;
Mike Stump4a3999f2009-09-09 13:00:44 +00003951
John McCall31168b02011-06-15 23:02:42 +00003952 switch (E->getLHS()->getType().getObjCLifetime()) {
3953 case Qualifiers::OCL_Strong:
Benjamin Kramer867ea1d2014-03-02 13:01:17 +00003954 std::tie(LHS, RHS) = CGF.EmitARCStoreStrong(E, Ignore);
John McCall31168b02011-06-15 23:02:42 +00003955 break;
3956
3957 case Qualifiers::OCL_Autoreleasing:
Benjamin Kramer867ea1d2014-03-02 13:01:17 +00003958 std::tie(LHS, RHS) = CGF.EmitARCStoreAutoreleasing(E);
John McCall31168b02011-06-15 23:02:42 +00003959 break;
3960
John McCalle399e5b2016-01-27 18:32:30 +00003961 case Qualifiers::OCL_ExplicitNone:
3962 std::tie(LHS, RHS) = CGF.EmitARCStoreUnsafeUnretained(E, Ignore);
3963 break;
3964
John McCall31168b02011-06-15 23:02:42 +00003965 case Qualifiers::OCL_Weak:
3966 RHS = Visit(E->getRHS());
Richard Smith4d1458e2012-09-08 02:08:36 +00003967 LHS = EmitCheckedLValue(E->getLHS(), CodeGenFunction::TCK_Store);
John McCall31168b02011-06-15 23:02:42 +00003968 RHS = CGF.EmitARCStoreWeak(LHS.getAddress(), RHS, Ignore);
3969 break;
3970
John McCall31168b02011-06-15 23:02:42 +00003971 case Qualifiers::OCL_None:
John McCall31168b02011-06-15 23:02:42 +00003972 // __block variables need to have the rhs evaluated first, plus
3973 // this should improve codegen just a little.
3974 RHS = Visit(E->getRHS());
Richard Smith4d1458e2012-09-08 02:08:36 +00003975 LHS = EmitCheckedLValue(E->getLHS(), CodeGenFunction::TCK_Store);
John McCall31168b02011-06-15 23:02:42 +00003976
3977 // Store the value into the LHS. Bit-fields are handled specially
3978 // because the result is altered by the store, i.e., [C99 6.5.16p1]
3979 // 'An assignment expression has the value of the left operand after
3980 // the assignment...'.
Vedant Kumar42c17ec2017-03-14 01:56:34 +00003981 if (LHS.isBitField()) {
John McCall55e1fbc2011-06-25 02:11:03 +00003982 CGF.EmitStoreThroughBitfieldLValue(RValue::get(RHS), LHS, &RHS);
Vedant Kumar42c17ec2017-03-14 01:56:34 +00003983 } else {
3984 CGF.EmitNullabilityCheck(LHS, RHS, E->getExprLoc());
John McCall55e1fbc2011-06-25 02:11:03 +00003985 CGF.EmitStoreThroughLValue(RValue::get(RHS), LHS);
Vedant Kumar42c17ec2017-03-14 01:56:34 +00003986 }
John McCall31168b02011-06-15 23:02:42 +00003987 }
Daniel Dunbarc85ea8e2010-06-29 22:00:45 +00003988
3989 // If the result is clearly ignored, return now.
Mike Stumpdf0fe272009-05-29 15:46:01 +00003990 if (Ignore)
Craig Topper8a13c412014-05-21 05:09:00 +00003991 return nullptr;
Daniel Dunbarc85ea8e2010-06-29 22:00:45 +00003992
John McCall07bb1962010-11-16 10:08:07 +00003993 // The result of an assignment in C is the assigned r-value.
Richard Smith9c6890a2012-11-01 22:30:59 +00003994 if (!CGF.getLangOpts().CPlusPlus)
John McCall07bb1962010-11-16 10:08:07 +00003995 return RHS;
3996
Daniel Dunbarc85ea8e2010-06-29 22:00:45 +00003997 // If the lvalue is non-volatile, return the computed value of the assignment.
3998 if (!LHS.isVolatileQualified())
3999 return RHS;
4000
4001 // Otherwise, reload the value.
Nick Lewycky2d84e842013-10-02 02:29:49 +00004002 return EmitLoadOfLValue(LHS, E->getExprLoc());
Chris Lattner2da04b32007-08-24 05:35:26 +00004003}
4004
4005Value *ScalarExprEmitter::VisitBinLAnd(const BinaryOperator *E) {
Tanya Lattner20248222012-01-16 21:02:28 +00004006 // Perform vector logical and on comparisons with zero vectors.
4007 if (E->getType()->isVectorType()) {
Justin Bogner66242d62015-04-23 23:06:47 +00004008 CGF.incrementProfileCounter(E);
Justin Bogneref512b92014-01-06 22:27:43 +00004009
Tanya Lattner20248222012-01-16 21:02:28 +00004010 Value *LHS = Visit(E->getLHS());
4011 Value *RHS = Visit(E->getRHS());
4012 Value *Zero = llvm::ConstantAggregateZero::get(LHS->getType());
Joey Gouly7d00f002013-02-21 11:49:56 +00004013 if (LHS->getType()->isFPOrFPVectorTy()) {
4014 LHS = Builder.CreateFCmp(llvm::CmpInst::FCMP_UNE, LHS, Zero, "cmp");
4015 RHS = Builder.CreateFCmp(llvm::CmpInst::FCMP_UNE, RHS, Zero, "cmp");
4016 } else {
4017 LHS = Builder.CreateICmp(llvm::CmpInst::ICMP_NE, LHS, Zero, "cmp");
4018 RHS = Builder.CreateICmp(llvm::CmpInst::ICMP_NE, RHS, Zero, "cmp");
4019 }
Tanya Lattner20248222012-01-16 21:02:28 +00004020 Value *And = Builder.CreateAnd(LHS, RHS);
Joey Gouly7d00f002013-02-21 11:49:56 +00004021 return Builder.CreateSExt(And, ConvertType(E->getType()), "sext");
Tanya Lattner20248222012-01-16 21:02:28 +00004022 }
Craig Toppera97d7e72013-07-26 06:16:11 +00004023
Chris Lattner2192fe52011-07-18 04:24:23 +00004024 llvm::Type *ResTy = ConvertType(E->getType());
Craig Toppera97d7e72013-07-26 06:16:11 +00004025
Chris Lattner8b084582008-11-12 08:26:50 +00004026 // If we have 0 && RHS, see if we can elide RHS, if so, just return 0.
4027 // If we have 1 && X, just emit X without inserting the control flow.
Chris Lattner41c6ab52011-02-27 23:02:32 +00004028 bool LHSCondVal;
4029 if (CGF.ConstantFoldsToSimpleInteger(E->getLHS(), LHSCondVal)) {
4030 if (LHSCondVal) { // If we have 1 && X, just emit X.
Justin Bogner66242d62015-04-23 23:06:47 +00004031 CGF.incrementProfileCounter(E);
Justin Bogneref512b92014-01-06 22:27:43 +00004032
Chris Lattner5b1964b2008-11-11 07:41:27 +00004033 Value *RHSCond = CGF.EvaluateExprAsBool(E->getRHS());
Chris Lattner671fec82009-10-17 04:24:20 +00004034 // ZExt result to int or bool.
4035 return Builder.CreateZExtOrBitCast(RHSCond, ResTy, "land.ext");
Chris Lattner5b1964b2008-11-11 07:41:27 +00004036 }
Mike Stump4a3999f2009-09-09 13:00:44 +00004037
Chris Lattner671fec82009-10-17 04:24:20 +00004038 // 0 && RHS: If it is safe, just elide the RHS, and return 0/false.
Chris Lattner8b084582008-11-12 08:26:50 +00004039 if (!CGF.ContainsLabel(E->getRHS()))
Chris Lattner671fec82009-10-17 04:24:20 +00004040 return llvm::Constant::getNullValue(ResTy);
Chris Lattner5b1964b2008-11-11 07:41:27 +00004041 }
Mike Stump4a3999f2009-09-09 13:00:44 +00004042
Daniel Dunbara612e792008-11-13 01:38:36 +00004043 llvm::BasicBlock *ContBlock = CGF.createBasicBlock("land.end");
4044 llvm::BasicBlock *RHSBlock = CGF.createBasicBlock("land.rhs");
Chris Lattner8b084582008-11-12 08:26:50 +00004045
John McCallce1de612011-01-26 04:00:11 +00004046 CodeGenFunction::ConditionalEvaluation eval(CGF);
4047
Chris Lattner35710d182008-11-12 08:38:24 +00004048 // Branch on the LHS first. If it is false, go to the failure (cont) block.
Justin Bogner66242d62015-04-23 23:06:47 +00004049 CGF.EmitBranchOnBoolExpr(E->getLHS(), RHSBlock, ContBlock,
4050 CGF.getProfileCount(E->getRHS()));
Chris Lattner35710d182008-11-12 08:38:24 +00004051
4052 // Any edges into the ContBlock are now from an (indeterminate number of)
4053 // edges from this first condition. All of these values will be false. Start
4054 // setting up the PHI node in the Cont Block for this.
Jay Foad20c0f022011-03-30 11:28:58 +00004055 llvm::PHINode *PN = llvm::PHINode::Create(llvm::Type::getInt1Ty(VMContext), 2,
Owen Anderson41a75022009-08-13 21:57:51 +00004056 "", ContBlock);
Chris Lattner35710d182008-11-12 08:38:24 +00004057 for (llvm::pred_iterator PI = pred_begin(ContBlock), PE = pred_end(ContBlock);
4058 PI != PE; ++PI)
Owen Andersonfe4e3472009-07-31 17:39:36 +00004059 PN->addIncoming(llvm::ConstantInt::getFalse(VMContext), *PI);
Mike Stump4a3999f2009-09-09 13:00:44 +00004060
John McCallce1de612011-01-26 04:00:11 +00004061 eval.begin(CGF);
Chris Lattner2da04b32007-08-24 05:35:26 +00004062 CGF.EmitBlock(RHSBlock);
Justin Bogner66242d62015-04-23 23:06:47 +00004063 CGF.incrementProfileCounter(E);
Chris Lattner2da04b32007-08-24 05:35:26 +00004064 Value *RHSCond = CGF.EvaluateExprAsBool(E->getRHS());
John McCallce1de612011-01-26 04:00:11 +00004065 eval.end(CGF);
Mike Stump4a3999f2009-09-09 13:00:44 +00004066
Chris Lattner2da04b32007-08-24 05:35:26 +00004067 // Reaquire the RHS block, as there may be subblocks inserted.
4068 RHSBlock = Builder.GetInsertBlock();
Chris Lattner35710d182008-11-12 08:38:24 +00004069
David Blaikie1b5adb82014-07-10 20:42:59 +00004070 // Emit an unconditional branch from this block to ContBlock.
4071 {
Devang Patel4d761272011-03-30 00:08:31 +00004072 // There is no need to emit line number for unconditional branch.
Adrian Prantl95b24e92015-02-03 20:00:54 +00004073 auto NL = ApplyDebugLocation::CreateEmpty(CGF);
David Blaikie1b5adb82014-07-10 20:42:59 +00004074 CGF.EmitBlock(ContBlock);
4075 }
4076 // Insert an entry into the phi node for the edge with the value of RHSCond.
Chris Lattner2da04b32007-08-24 05:35:26 +00004077 PN->addIncoming(RHSCond, RHSBlock);
Mike Stump4a3999f2009-09-09 13:00:44 +00004078
Anastasis Grammenosdfe8fe52018-06-21 16:53:48 +00004079 // Artificial location to preserve the scope information
4080 {
4081 auto NL = ApplyDebugLocation::CreateArtificial(CGF);
4082 PN->setDebugLoc(Builder.getCurrentDebugLocation());
4083 }
4084
Chris Lattner2da04b32007-08-24 05:35:26 +00004085 // ZExt result to int.
Chris Lattner671fec82009-10-17 04:24:20 +00004086 return Builder.CreateZExtOrBitCast(PN, ResTy, "land.ext");
Chris Lattner2da04b32007-08-24 05:35:26 +00004087}
4088
4089Value *ScalarExprEmitter::VisitBinLOr(const BinaryOperator *E) {
Tanya Lattner20248222012-01-16 21:02:28 +00004090 // Perform vector logical or on comparisons with zero vectors.
4091 if (E->getType()->isVectorType()) {
Justin Bogner66242d62015-04-23 23:06:47 +00004092 CGF.incrementProfileCounter(E);
Justin Bogneref512b92014-01-06 22:27:43 +00004093
Tanya Lattner20248222012-01-16 21:02:28 +00004094 Value *LHS = Visit(E->getLHS());
4095 Value *RHS = Visit(E->getRHS());
4096 Value *Zero = llvm::ConstantAggregateZero::get(LHS->getType());
Joey Gouly7d00f002013-02-21 11:49:56 +00004097 if (LHS->getType()->isFPOrFPVectorTy()) {
4098 LHS = Builder.CreateFCmp(llvm::CmpInst::FCMP_UNE, LHS, Zero, "cmp");
4099 RHS = Builder.CreateFCmp(llvm::CmpInst::FCMP_UNE, RHS, Zero, "cmp");
4100 } else {
4101 LHS = Builder.CreateICmp(llvm::CmpInst::ICMP_NE, LHS, Zero, "cmp");
4102 RHS = Builder.CreateICmp(llvm::CmpInst::ICMP_NE, RHS, Zero, "cmp");
4103 }
Tanya Lattner20248222012-01-16 21:02:28 +00004104 Value *Or = Builder.CreateOr(LHS, RHS);
Joey Gouly7d00f002013-02-21 11:49:56 +00004105 return Builder.CreateSExt(Or, ConvertType(E->getType()), "sext");
Tanya Lattner20248222012-01-16 21:02:28 +00004106 }
Craig Toppera97d7e72013-07-26 06:16:11 +00004107
Chris Lattner2192fe52011-07-18 04:24:23 +00004108 llvm::Type *ResTy = ConvertType(E->getType());
Craig Toppera97d7e72013-07-26 06:16:11 +00004109
Chris Lattner8b084582008-11-12 08:26:50 +00004110 // If we have 1 || RHS, see if we can elide RHS, if so, just return 1.
4111 // If we have 0 || X, just emit X without inserting the control flow.
Chris Lattner41c6ab52011-02-27 23:02:32 +00004112 bool LHSCondVal;
4113 if (CGF.ConstantFoldsToSimpleInteger(E->getLHS(), LHSCondVal)) {
4114 if (!LHSCondVal) { // If we have 0 || X, just emit X.
Justin Bogner66242d62015-04-23 23:06:47 +00004115 CGF.incrementProfileCounter(E);
Justin Bogneref512b92014-01-06 22:27:43 +00004116
Chris Lattner5b1964b2008-11-11 07:41:27 +00004117 Value *RHSCond = CGF.EvaluateExprAsBool(E->getRHS());
Chris Lattner671fec82009-10-17 04:24:20 +00004118 // ZExt result to int or bool.
4119 return Builder.CreateZExtOrBitCast(RHSCond, ResTy, "lor.ext");
Chris Lattner5b1964b2008-11-11 07:41:27 +00004120 }
Mike Stump4a3999f2009-09-09 13:00:44 +00004121
Chris Lattner671fec82009-10-17 04:24:20 +00004122 // 1 || RHS: If it is safe, just elide the RHS, and return 1/true.
Chris Lattner8b084582008-11-12 08:26:50 +00004123 if (!CGF.ContainsLabel(E->getRHS()))
Chris Lattner671fec82009-10-17 04:24:20 +00004124 return llvm::ConstantInt::get(ResTy, 1);
Chris Lattner5b1964b2008-11-11 07:41:27 +00004125 }
Mike Stump4a3999f2009-09-09 13:00:44 +00004126
Daniel Dunbara612e792008-11-13 01:38:36 +00004127 llvm::BasicBlock *ContBlock = CGF.createBasicBlock("lor.end");
4128 llvm::BasicBlock *RHSBlock = CGF.createBasicBlock("lor.rhs");
Mike Stump4a3999f2009-09-09 13:00:44 +00004129
John McCallce1de612011-01-26 04:00:11 +00004130 CodeGenFunction::ConditionalEvaluation eval(CGF);
4131
Chris Lattner35710d182008-11-12 08:38:24 +00004132 // Branch on the LHS first. If it is true, go to the success (cont) block.
Justin Bogneref512b92014-01-06 22:27:43 +00004133 CGF.EmitBranchOnBoolExpr(E->getLHS(), ContBlock, RHSBlock,
Justin Bogner66242d62015-04-23 23:06:47 +00004134 CGF.getCurrentProfileCount() -
4135 CGF.getProfileCount(E->getRHS()));
Chris Lattner35710d182008-11-12 08:38:24 +00004136
4137 // Any edges into the ContBlock are now from an (indeterminate number of)
4138 // edges from this first condition. All of these values will be true. Start
4139 // setting up the PHI node in the Cont Block for this.
Jay Foad20c0f022011-03-30 11:28:58 +00004140 llvm::PHINode *PN = llvm::PHINode::Create(llvm::Type::getInt1Ty(VMContext), 2,
Owen Anderson41a75022009-08-13 21:57:51 +00004141 "", ContBlock);
Chris Lattner35710d182008-11-12 08:38:24 +00004142 for (llvm::pred_iterator PI = pred_begin(ContBlock), PE = pred_end(ContBlock);
4143 PI != PE; ++PI)
Owen Andersonfe4e3472009-07-31 17:39:36 +00004144 PN->addIncoming(llvm::ConstantInt::getTrue(VMContext), *PI);
Chris Lattner35710d182008-11-12 08:38:24 +00004145
John McCallce1de612011-01-26 04:00:11 +00004146 eval.begin(CGF);
Anders Carlssonf47a3de2009-06-04 02:53:13 +00004147
Chris Lattner35710d182008-11-12 08:38:24 +00004148 // Emit the RHS condition as a bool value.
Chris Lattner2da04b32007-08-24 05:35:26 +00004149 CGF.EmitBlock(RHSBlock);
Justin Bogner66242d62015-04-23 23:06:47 +00004150 CGF.incrementProfileCounter(E);
Chris Lattner2da04b32007-08-24 05:35:26 +00004151 Value *RHSCond = CGF.EvaluateExprAsBool(E->getRHS());
Mike Stump4a3999f2009-09-09 13:00:44 +00004152
John McCallce1de612011-01-26 04:00:11 +00004153 eval.end(CGF);
Mike Stump4a3999f2009-09-09 13:00:44 +00004154
Chris Lattner2da04b32007-08-24 05:35:26 +00004155 // Reaquire the RHS block, as there may be subblocks inserted.
4156 RHSBlock = Builder.GetInsertBlock();
Mike Stump4a3999f2009-09-09 13:00:44 +00004157
Chris Lattner35710d182008-11-12 08:38:24 +00004158 // Emit an unconditional branch from this block to ContBlock. Insert an entry
4159 // into the phi node for the edge with the value of RHSCond.
4160 CGF.EmitBlock(ContBlock);
Chris Lattner2da04b32007-08-24 05:35:26 +00004161 PN->addIncoming(RHSCond, RHSBlock);
Mike Stump4a3999f2009-09-09 13:00:44 +00004162
Chris Lattner2da04b32007-08-24 05:35:26 +00004163 // ZExt result to int.
Chris Lattner671fec82009-10-17 04:24:20 +00004164 return Builder.CreateZExtOrBitCast(PN, ResTy, "lor.ext");
Chris Lattner2da04b32007-08-24 05:35:26 +00004165}
4166
4167Value *ScalarExprEmitter::VisitBinComma(const BinaryOperator *E) {
John McCalla2342eb2010-12-05 02:00:02 +00004168 CGF.EmitIgnoredExpr(E->getLHS());
Daniel Dunbar5c7e3932008-11-11 23:11:34 +00004169 CGF.EnsureInsertPoint();
Chris Lattner2da04b32007-08-24 05:35:26 +00004170 return Visit(E->getRHS());
4171}
4172
4173//===----------------------------------------------------------------------===//
4174// Other Operators
4175//===----------------------------------------------------------------------===//
4176
Chris Lattner3fd91f832008-11-12 08:55:54 +00004177/// isCheapEnoughToEvaluateUnconditionally - Return true if the specified
4178/// expression is cheap enough and side-effect-free enough to evaluate
4179/// unconditionally instead of conditionally. This is used to convert control
4180/// flow into selects in some cases.
Mike Stump53f9ded2009-11-03 23:25:48 +00004181static bool isCheapEnoughToEvaluateUnconditionally(const Expr *E,
4182 CodeGenFunction &CGF) {
Chris Lattner56784f92011-04-16 23:15:35 +00004183 // Anything that is an integer or floating point constant is fine.
Nick Lewycky22e55a02013-11-08 23:00:12 +00004184 return E->IgnoreParens()->isEvaluatable(CGF.getContext());
Mike Stump4a3999f2009-09-09 13:00:44 +00004185
Nick Lewycky22e55a02013-11-08 23:00:12 +00004186 // Even non-volatile automatic variables can't be evaluated unconditionally.
4187 // Referencing a thread_local may cause non-trivial initialization work to
4188 // occur. If we're inside a lambda and one of the variables is from the scope
4189 // outside the lambda, that function may have returned already. Reading its
4190 // locals is a bad idea. Also, these reads may introduce races there didn't
4191 // exist in the source-level program.
Chris Lattner3fd91f832008-11-12 08:55:54 +00004192}
4193
4194
Chris Lattner2da04b32007-08-24 05:35:26 +00004195Value *ScalarExprEmitter::
John McCallc07a0c72011-02-17 10:25:35 +00004196VisitAbstractConditionalOperator(const AbstractConditionalOperator *E) {
Mike Stumpdf0fe272009-05-29 15:46:01 +00004197 TestAndClearIgnoreResultAssign();
John McCallc07a0c72011-02-17 10:25:35 +00004198
4199 // Bind the common expression if necessary.
Eli Friedman48fd89a2012-01-06 20:42:20 +00004200 CodeGenFunction::OpaqueValueMapping binding(CGF, E);
John McCallc07a0c72011-02-17 10:25:35 +00004201
4202 Expr *condExpr = E->getCond();
4203 Expr *lhsExpr = E->getTrueExpr();
4204 Expr *rhsExpr = E->getFalseExpr();
4205
Chris Lattnercd439292008-11-12 08:04:58 +00004206 // If the condition constant folds and can be elided, try to avoid emitting
4207 // the condition and the dead arm.
Chris Lattner41c6ab52011-02-27 23:02:32 +00004208 bool CondExprBool;
4209 if (CGF.ConstantFoldsToSimpleInteger(condExpr, CondExprBool)) {
John McCallc07a0c72011-02-17 10:25:35 +00004210 Expr *live = lhsExpr, *dead = rhsExpr;
Chris Lattner41c6ab52011-02-27 23:02:32 +00004211 if (!CondExprBool) std::swap(live, dead);
Mike Stump4a3999f2009-09-09 13:00:44 +00004212
Eli Friedman27ef75b2011-10-15 02:10:40 +00004213 // If the dead side doesn't have labels we need, just emit the Live part.
4214 if (!CGF.ContainsLabel(dead)) {
Justin Bogneref512b92014-01-06 22:27:43 +00004215 if (CondExprBool)
Justin Bogner66242d62015-04-23 23:06:47 +00004216 CGF.incrementProfileCounter(E);
Eli Friedman27ef75b2011-10-15 02:10:40 +00004217 Value *Result = Visit(live);
4218
4219 // If the live part is a throw expression, it acts like it has a void
4220 // type, so evaluating it returns a null Value*. However, a conditional
4221 // with non-void type must return a non-null Value*.
4222 if (!Result && !E->getType()->isVoidType())
4223 Result = llvm::UndefValue::get(CGF.ConvertType(E->getType()));
4224
4225 return Result;
4226 }
Chris Lattnerd53e2332008-11-11 18:56:45 +00004227 }
Mike Stump4a3999f2009-09-09 13:00:44 +00004228
Nate Begemanabb5a732010-09-20 22:41:17 +00004229 // OpenCL: If the condition is a vector, we can treat this condition like
4230 // the select function.
Craig Toppera97d7e72013-07-26 06:16:11 +00004231 if (CGF.getLangOpts().OpenCL
John McCallc07a0c72011-02-17 10:25:35 +00004232 && condExpr->getType()->isVectorType()) {
Justin Bogner66242d62015-04-23 23:06:47 +00004233 CGF.incrementProfileCounter(E);
Justin Bogneref512b92014-01-06 22:27:43 +00004234
John McCallc07a0c72011-02-17 10:25:35 +00004235 llvm::Value *CondV = CGF.EmitScalarExpr(condExpr);
4236 llvm::Value *LHS = Visit(lhsExpr);
4237 llvm::Value *RHS = Visit(rhsExpr);
Craig Toppera97d7e72013-07-26 06:16:11 +00004238
Chris Lattner2192fe52011-07-18 04:24:23 +00004239 llvm::Type *condType = ConvertType(condExpr->getType());
4240 llvm::VectorType *vecTy = cast<llvm::VectorType>(condType);
Craig Toppera97d7e72013-07-26 06:16:11 +00004241
4242 unsigned numElem = vecTy->getNumElements();
Chris Lattner2192fe52011-07-18 04:24:23 +00004243 llvm::Type *elemType = vecTy->getElementType();
Craig Toppera97d7e72013-07-26 06:16:11 +00004244
Chris Lattner2d6b7b92012-01-25 05:34:41 +00004245 llvm::Value *zeroVec = llvm::Constant::getNullValue(vecTy);
Nate Begemanabb5a732010-09-20 22:41:17 +00004246 llvm::Value *TestMSB = Builder.CreateICmpSLT(CondV, zeroVec);
Craig Toppera97d7e72013-07-26 06:16:11 +00004247 llvm::Value *tmp = Builder.CreateSExt(TestMSB,
Nate Begemanabb5a732010-09-20 22:41:17 +00004248 llvm::VectorType::get(elemType,
Craig Toppera97d7e72013-07-26 06:16:11 +00004249 numElem),
Nate Begemanabb5a732010-09-20 22:41:17 +00004250 "sext");
4251 llvm::Value *tmp2 = Builder.CreateNot(tmp);
Craig Toppera97d7e72013-07-26 06:16:11 +00004252
Nate Begemanabb5a732010-09-20 22:41:17 +00004253 // Cast float to int to perform ANDs if necessary.
4254 llvm::Value *RHSTmp = RHS;
4255 llvm::Value *LHSTmp = LHS;
4256 bool wasCast = false;
Chris Lattner2192fe52011-07-18 04:24:23 +00004257 llvm::VectorType *rhsVTy = cast<llvm::VectorType>(RHS->getType());
Peter Collingbourneaac265c2012-05-29 00:35:18 +00004258 if (rhsVTy->getElementType()->isFloatingPointTy()) {
Nate Begemanabb5a732010-09-20 22:41:17 +00004259 RHSTmp = Builder.CreateBitCast(RHS, tmp2->getType());
4260 LHSTmp = Builder.CreateBitCast(LHS, tmp->getType());
4261 wasCast = true;
4262 }
Craig Toppera97d7e72013-07-26 06:16:11 +00004263
Nate Begemanabb5a732010-09-20 22:41:17 +00004264 llvm::Value *tmp3 = Builder.CreateAnd(RHSTmp, tmp2);
4265 llvm::Value *tmp4 = Builder.CreateAnd(LHSTmp, tmp);
4266 llvm::Value *tmp5 = Builder.CreateOr(tmp3, tmp4, "cond");
4267 if (wasCast)
4268 tmp5 = Builder.CreateBitCast(tmp5, RHS->getType());
4269
4270 return tmp5;
4271 }
Craig Toppera97d7e72013-07-26 06:16:11 +00004272
Chris Lattner3fd91f832008-11-12 08:55:54 +00004273 // If this is a really simple expression (like x ? 4 : 5), emit this as a
4274 // select instead of as control flow. We can only do this if it is cheap and
Chris Lattner9ce8a532008-11-16 06:16:27 +00004275 // safe to evaluate the LHS and RHS unconditionally.
John McCallc07a0c72011-02-17 10:25:35 +00004276 if (isCheapEnoughToEvaluateUnconditionally(lhsExpr, CGF) &&
4277 isCheapEnoughToEvaluateUnconditionally(rhsExpr, CGF)) {
4278 llvm::Value *CondV = CGF.EvaluateExprAsBool(condExpr);
Vedant Kumar502bbfa2017-02-25 06:35:45 +00004279 llvm::Value *StepV = Builder.CreateZExtOrBitCast(CondV, CGF.Int64Ty);
4280
4281 CGF.incrementProfileCounter(E, StepV);
4282
John McCallc07a0c72011-02-17 10:25:35 +00004283 llvm::Value *LHS = Visit(lhsExpr);
4284 llvm::Value *RHS = Visit(rhsExpr);
Eli Friedman516c2ad2011-12-08 22:01:56 +00004285 if (!LHS) {
4286 // If the conditional has void type, make sure we return a null Value*.
4287 assert(!RHS && "LHS and RHS types must match");
Craig Topper8a13c412014-05-21 05:09:00 +00004288 return nullptr;
Eli Friedman516c2ad2011-12-08 22:01:56 +00004289 }
Chris Lattner3fd91f832008-11-12 08:55:54 +00004290 return Builder.CreateSelect(CondV, LHS, RHS, "cond");
4291 }
Mike Stump4a3999f2009-09-09 13:00:44 +00004292
Daniel Dunbard2a53a72008-11-12 10:13:37 +00004293 llvm::BasicBlock *LHSBlock = CGF.createBasicBlock("cond.true");
4294 llvm::BasicBlock *RHSBlock = CGF.createBasicBlock("cond.false");
Daniel Dunbara612e792008-11-13 01:38:36 +00004295 llvm::BasicBlock *ContBlock = CGF.createBasicBlock("cond.end");
John McCallce1de612011-01-26 04:00:11 +00004296
4297 CodeGenFunction::ConditionalEvaluation eval(CGF);
Justin Bogner66242d62015-04-23 23:06:47 +00004298 CGF.EmitBranchOnBoolExpr(condExpr, LHSBlock, RHSBlock,
4299 CGF.getProfileCount(lhsExpr));
Anders Carlsson43c52cd2009-06-04 03:00:32 +00004300
Chris Lattner2da04b32007-08-24 05:35:26 +00004301 CGF.EmitBlock(LHSBlock);
Justin Bogner66242d62015-04-23 23:06:47 +00004302 CGF.incrementProfileCounter(E);
John McCallce1de612011-01-26 04:00:11 +00004303 eval.begin(CGF);
John McCallc07a0c72011-02-17 10:25:35 +00004304 Value *LHS = Visit(lhsExpr);
John McCallce1de612011-01-26 04:00:11 +00004305 eval.end(CGF);
Mike Stump4a3999f2009-09-09 13:00:44 +00004306
Chris Lattner2da04b32007-08-24 05:35:26 +00004307 LHSBlock = Builder.GetInsertBlock();
John McCallce1de612011-01-26 04:00:11 +00004308 Builder.CreateBr(ContBlock);
Mike Stump4a3999f2009-09-09 13:00:44 +00004309
Chris Lattner2da04b32007-08-24 05:35:26 +00004310 CGF.EmitBlock(RHSBlock);
John McCallce1de612011-01-26 04:00:11 +00004311 eval.begin(CGF);
John McCallc07a0c72011-02-17 10:25:35 +00004312 Value *RHS = Visit(rhsExpr);
John McCallce1de612011-01-26 04:00:11 +00004313 eval.end(CGF);
Mike Stump4a3999f2009-09-09 13:00:44 +00004314
John McCallce1de612011-01-26 04:00:11 +00004315 RHSBlock = Builder.GetInsertBlock();
Chris Lattner2da04b32007-08-24 05:35:26 +00004316 CGF.EmitBlock(ContBlock);
Mike Stump4a3999f2009-09-09 13:00:44 +00004317
Eli Friedmanf6c175b2009-12-07 20:25:53 +00004318 // If the LHS or RHS is a throw expression, it will be legitimately null.
4319 if (!LHS)
4320 return RHS;
4321 if (!RHS)
4322 return LHS;
Mike Stump4a3999f2009-09-09 13:00:44 +00004323
Chris Lattner2da04b32007-08-24 05:35:26 +00004324 // Create a PHI node for the real part.
Jay Foad20c0f022011-03-30 11:28:58 +00004325 llvm::PHINode *PN = Builder.CreatePHI(LHS->getType(), 2, "cond");
Chris Lattner2da04b32007-08-24 05:35:26 +00004326 PN->addIncoming(LHS, LHSBlock);
4327 PN->addIncoming(RHS, RHSBlock);
4328 return PN;
4329}
4330
4331Value *ScalarExprEmitter::VisitChooseExpr(ChooseExpr *E) {
Eli Friedman75807f22013-07-20 00:40:58 +00004332 return Visit(E->getChosenSubExpr());
Chris Lattner2da04b32007-08-24 05:35:26 +00004333}
4334
Chris Lattnerb6a7b582007-11-30 17:56:23 +00004335Value *ScalarExprEmitter::VisitVAArgExpr(VAArgExpr *VE) {
Richard Smitha1a808c2014-04-14 23:47:48 +00004336 QualType Ty = VE->getType();
Daniel Sanders59229dc2014-11-19 10:01:35 +00004337
Richard Smitha1a808c2014-04-14 23:47:48 +00004338 if (Ty->isVariablyModifiedType())
4339 CGF.EmitVariablyModifiedType(Ty);
4340
Charles Davisc7d5c942015-09-17 20:55:33 +00004341 Address ArgValue = Address::invalid();
4342 Address ArgPtr = CGF.EmitVAArg(VE, ArgValue);
4343
Daniel Sanders59229dc2014-11-19 10:01:35 +00004344 llvm::Type *ArgTy = ConvertType(VE->getType());
Anders Carlsson13abd7e2008-11-04 05:30:00 +00004345
James Y Knight29b5f082016-02-24 02:59:33 +00004346 // If EmitVAArg fails, emit an error.
4347 if (!ArgPtr.isValid()) {
4348 CGF.ErrorUnsupported(VE, "va_arg expression");
4349 return llvm::UndefValue::get(ArgTy);
4350 }
Anders Carlsson13abd7e2008-11-04 05:30:00 +00004351
Mike Stumpdf0fe272009-05-29 15:46:01 +00004352 // FIXME Volatility.
Daniel Sanders59229dc2014-11-19 10:01:35 +00004353 llvm::Value *Val = Builder.CreateLoad(ArgPtr);
4354
4355 // If EmitVAArg promoted the type, we must truncate it.
Daniel Sanderscdcb5802015-01-13 10:47:00 +00004356 if (ArgTy != Val->getType()) {
4357 if (ArgTy->isPointerTy() && !Val->getType()->isPointerTy())
4358 Val = Builder.CreateIntToPtr(Val, ArgTy);
4359 else
4360 Val = Builder.CreateTrunc(Val, ArgTy);
4361 }
Daniel Sanders59229dc2014-11-19 10:01:35 +00004362
4363 return Val;
Anders Carlsson7e13ab82007-10-15 20:28:48 +00004364}
4365
John McCall351762c2011-02-07 10:33:21 +00004366Value *ScalarExprEmitter::VisitBlockExpr(const BlockExpr *block) {
4367 return CGF.EmitBlockLiteral(block);
Mike Stumpab3afd82009-02-12 18:29:15 +00004368}
4369
Yaxun Liuc5647012016-06-08 15:11:21 +00004370// Convert a vec3 to vec4, or vice versa.
4371static Value *ConvertVec3AndVec4(CGBuilderTy &Builder, CodeGenFunction &CGF,
4372 Value *Src, unsigned NumElementsDst) {
4373 llvm::Value *UnV = llvm::UndefValue::get(Src->getType());
4374 SmallVector<llvm::Constant*, 4> Args;
4375 Args.push_back(Builder.getInt32(0));
4376 Args.push_back(Builder.getInt32(1));
4377 Args.push_back(Builder.getInt32(2));
4378 if (NumElementsDst == 4)
4379 Args.push_back(llvm::UndefValue::get(CGF.Int32Ty));
4380 llvm::Constant *Mask = llvm::ConstantVector::get(Args);
4381 return Builder.CreateShuffleVector(Src, UnV, Mask);
4382}
4383
Yaxun Liuea6b7962016-10-03 14:41:50 +00004384// Create cast instructions for converting LLVM value \p Src to LLVM type \p
4385// DstTy. \p Src has the same size as \p DstTy. Both are single value types
4386// but could be scalar or vectors of different lengths, and either can be
4387// pointer.
4388// There are 4 cases:
4389// 1. non-pointer -> non-pointer : needs 1 bitcast
4390// 2. pointer -> pointer : needs 1 bitcast or addrspacecast
4391// 3. pointer -> non-pointer
4392// a) pointer -> intptr_t : needs 1 ptrtoint
4393// b) pointer -> non-intptr_t : needs 1 ptrtoint then 1 bitcast
4394// 4. non-pointer -> pointer
4395// a) intptr_t -> pointer : needs 1 inttoptr
4396// b) non-intptr_t -> pointer : needs 1 bitcast then 1 inttoptr
4397// Note: for cases 3b and 4b two casts are required since LLVM casts do not
4398// allow casting directly between pointer types and non-integer non-pointer
4399// types.
4400static Value *createCastsForTypeOfSameSize(CGBuilderTy &Builder,
4401 const llvm::DataLayout &DL,
4402 Value *Src, llvm::Type *DstTy,
4403 StringRef Name = "") {
4404 auto SrcTy = Src->getType();
4405
4406 // Case 1.
4407 if (!SrcTy->isPointerTy() && !DstTy->isPointerTy())
4408 return Builder.CreateBitCast(Src, DstTy, Name);
4409
4410 // Case 2.
4411 if (SrcTy->isPointerTy() && DstTy->isPointerTy())
4412 return Builder.CreatePointerBitCastOrAddrSpaceCast(Src, DstTy, Name);
4413
4414 // Case 3.
4415 if (SrcTy->isPointerTy() && !DstTy->isPointerTy()) {
4416 // Case 3b.
4417 if (!DstTy->isIntegerTy())
4418 Src = Builder.CreatePtrToInt(Src, DL.getIntPtrType(SrcTy));
4419 // Cases 3a and 3b.
4420 return Builder.CreateBitOrPointerCast(Src, DstTy, Name);
4421 }
4422
4423 // Case 4b.
4424 if (!SrcTy->isIntegerTy())
4425 Src = Builder.CreateBitCast(Src, DL.getIntPtrType(DstTy));
4426 // Cases 4a and 4b.
4427 return Builder.CreateIntToPtr(Src, DstTy, Name);
4428}
4429
Tanya Lattner55808c12011-06-04 00:47:47 +00004430Value *ScalarExprEmitter::VisitAsTypeExpr(AsTypeExpr *E) {
4431 Value *Src = CGF.EmitScalarExpr(E->getSrcExpr());
Chris Lattner2192fe52011-07-18 04:24:23 +00004432 llvm::Type *DstTy = ConvertType(E->getType());
Craig Toppera97d7e72013-07-26 06:16:11 +00004433
Chris Lattner2192fe52011-07-18 04:24:23 +00004434 llvm::Type *SrcTy = Src->getType();
Yaxun Liuc5647012016-06-08 15:11:21 +00004435 unsigned NumElementsSrc = isa<llvm::VectorType>(SrcTy) ?
4436 cast<llvm::VectorType>(SrcTy)->getNumElements() : 0;
4437 unsigned NumElementsDst = isa<llvm::VectorType>(DstTy) ?
4438 cast<llvm::VectorType>(DstTy)->getNumElements() : 0;
Craig Toppera97d7e72013-07-26 06:16:11 +00004439
Yaxun Liuc5647012016-06-08 15:11:21 +00004440 // Going from vec3 to non-vec3 is a special case and requires a shuffle
4441 // vector to get a vec4, then a bitcast if the target type is different.
4442 if (NumElementsSrc == 3 && NumElementsDst != 3) {
4443 Src = ConvertVec3AndVec4(Builder, CGF, Src, 4);
Jin-Gu Kange7cdcde2017-04-04 16:40:25 +00004444
4445 if (!CGF.CGM.getCodeGenOpts().PreserveVec3Type) {
4446 Src = createCastsForTypeOfSameSize(Builder, CGF.CGM.getDataLayout(), Src,
4447 DstTy);
4448 }
4449
Yaxun Liuc5647012016-06-08 15:11:21 +00004450 Src->setName("astype");
4451 return Src;
4452 }
Craig Toppera97d7e72013-07-26 06:16:11 +00004453
Yaxun Liuc5647012016-06-08 15:11:21 +00004454 // Going from non-vec3 to vec3 is a special case and requires a bitcast
4455 // to vec4 if the original type is not vec4, then a shuffle vector to
4456 // get a vec3.
4457 if (NumElementsSrc != 3 && NumElementsDst == 3) {
Jin-Gu Kange7cdcde2017-04-04 16:40:25 +00004458 if (!CGF.CGM.getCodeGenOpts().PreserveVec3Type) {
4459 auto Vec4Ty = llvm::VectorType::get(DstTy->getVectorElementType(), 4);
4460 Src = createCastsForTypeOfSameSize(Builder, CGF.CGM.getDataLayout(), Src,
4461 Vec4Ty);
4462 }
4463
Yaxun Liuc5647012016-06-08 15:11:21 +00004464 Src = ConvertVec3AndVec4(Builder, CGF, Src, 3);
4465 Src->setName("astype");
4466 return Src;
Tanya Lattner55808c12011-06-04 00:47:47 +00004467 }
Craig Toppera97d7e72013-07-26 06:16:11 +00004468
Yaxun Liuea6b7962016-10-03 14:41:50 +00004469 return Src = createCastsForTypeOfSameSize(Builder, CGF.CGM.getDataLayout(),
4470 Src, DstTy, "astype");
Tanya Lattner55808c12011-06-04 00:47:47 +00004471}
4472
Eli Friedmandf14b3a2011-10-11 02:20:01 +00004473Value *ScalarExprEmitter::VisitAtomicExpr(AtomicExpr *E) {
4474 return CGF.EmitAtomicExpr(E).getScalarVal();
4475}
4476
Chris Lattner2da04b32007-08-24 05:35:26 +00004477//===----------------------------------------------------------------------===//
4478// Entry Point into this File
4479//===----------------------------------------------------------------------===//
4480
Filipe Cabecinhas650d7f72015-08-05 06:19:26 +00004481/// Emit the computation of the specified expression of scalar type, ignoring
4482/// the result.
Mike Stumpdf0fe272009-05-29 15:46:01 +00004483Value *CodeGenFunction::EmitScalarExpr(const Expr *E, bool IgnoreResultAssign) {
John McCall47fb9502013-03-07 21:37:08 +00004484 assert(E && hasScalarEvaluationKind(E->getType()) &&
Chris Lattner2da04b32007-08-24 05:35:26 +00004485 "Invalid scalar expression to emit");
Mike Stump4a3999f2009-09-09 13:00:44 +00004486
David Blaikie38b25912015-02-09 19:13:51 +00004487 return ScalarExprEmitter(*this, IgnoreResultAssign)
4488 .Visit(const_cast<Expr *>(E));
Chris Lattner2da04b32007-08-24 05:35:26 +00004489}
Chris Lattner3474c202007-08-26 06:48:56 +00004490
Filipe Cabecinhas650d7f72015-08-05 06:19:26 +00004491/// Emit a conversion from the specified type to the specified destination type,
4492/// both of which are LLVM scalar types.
Chris Lattner42e6b812007-08-26 16:34:22 +00004493Value *CodeGenFunction::EmitScalarConversion(Value *Src, QualType SrcTy,
Filipe Cabecinhas7af183d2015-08-11 04:19:28 +00004494 QualType DstTy,
4495 SourceLocation Loc) {
John McCall47fb9502013-03-07 21:37:08 +00004496 assert(hasScalarEvaluationKind(SrcTy) && hasScalarEvaluationKind(DstTy) &&
Chris Lattner3474c202007-08-26 06:48:56 +00004497 "Invalid scalar expression to emit");
Filipe Cabecinhas7af183d2015-08-11 04:19:28 +00004498 return ScalarExprEmitter(*this).EmitScalarConversion(Src, SrcTy, DstTy, Loc);
Chris Lattner3474c202007-08-26 06:48:56 +00004499}
Chris Lattner42e6b812007-08-26 16:34:22 +00004500
Filipe Cabecinhas650d7f72015-08-05 06:19:26 +00004501/// Emit a conversion from the specified complex type to the specified
4502/// destination type, where the destination type is an LLVM scalar type.
Chris Lattner42e6b812007-08-26 16:34:22 +00004503Value *CodeGenFunction::EmitComplexToScalarConversion(ComplexPairTy Src,
4504 QualType SrcTy,
Filipe Cabecinhas7af183d2015-08-11 04:19:28 +00004505 QualType DstTy,
4506 SourceLocation Loc) {
John McCall47fb9502013-03-07 21:37:08 +00004507 assert(SrcTy->isAnyComplexType() && hasScalarEvaluationKind(DstTy) &&
Chris Lattner42e6b812007-08-26 16:34:22 +00004508 "Invalid complex -> scalar conversion");
Filipe Cabecinhas7af183d2015-08-11 04:19:28 +00004509 return ScalarExprEmitter(*this)
4510 .EmitComplexToScalarConversion(Src, SrcTy, DstTy, Loc);
Chris Lattner42e6b812007-08-26 16:34:22 +00004511}
Anders Carlssonb9eb82c2007-12-10 19:35:18 +00004512
Chris Lattner05dc78c2010-06-26 22:09:34 +00004513
4514llvm::Value *CodeGenFunction::
4515EmitScalarPrePostIncDec(const UnaryOperator *E, LValue LV,
4516 bool isInc, bool isPre) {
4517 return ScalarExprEmitter(*this).EmitScalarPrePostIncDec(E, LV, isInc, isPre);
4518}
4519
Fariborz Jahanian531c16f2009-12-09 23:35:29 +00004520LValue CodeGenFunction::EmitObjCIsaExpr(const ObjCIsaExpr *E) {
Fariborz Jahanian531c16f2009-12-09 23:35:29 +00004521 // object->isa or (*object).isa
4522 // Generate code as for: *(Class*)object
Fariborz Jahaniandf506b92010-02-05 19:18:30 +00004523
4524 Expr *BaseExpr = E->getBase();
John McCall7f416cc2015-09-08 08:05:57 +00004525 Address Addr = Address::invalid();
John McCall086a4642010-11-24 05:12:34 +00004526 if (BaseExpr->isRValue()) {
John McCall7f416cc2015-09-08 08:05:57 +00004527 Addr = Address(EmitScalarExpr(BaseExpr), getPointerAlign());
Daniel Dunbarf6fb7e22010-08-21 03:08:16 +00004528 } else {
John McCall7f416cc2015-09-08 08:05:57 +00004529 Addr = EmitLValue(BaseExpr).getAddress();
Fariborz Jahaniandf506b92010-02-05 19:18:30 +00004530 }
Craig Toppera97d7e72013-07-26 06:16:11 +00004531
John McCall7f416cc2015-09-08 08:05:57 +00004532 // Cast the address to Class*.
4533 Addr = Builder.CreateElementBitCast(Addr, ConvertType(E->getType()));
4534 return MakeAddrLValue(Addr, E->getType());
Fariborz Jahanian531c16f2009-12-09 23:35:29 +00004535}
4536
Douglas Gregor914af212010-04-23 04:16:32 +00004537
John McCalla2342eb2010-12-05 02:00:02 +00004538LValue CodeGenFunction::EmitCompoundAssignmentLValue(
Douglas Gregor914af212010-04-23 04:16:32 +00004539 const CompoundAssignOperator *E) {
4540 ScalarExprEmitter Scalar(*this);
Craig Topper8a13c412014-05-21 05:09:00 +00004541 Value *Result = nullptr;
Douglas Gregor914af212010-04-23 04:16:32 +00004542 switch (E->getOpcode()) {
4543#define COMPOUND_OP(Op) \
John McCalle3027922010-08-25 11:45:40 +00004544 case BO_##Op##Assign: \
Douglas Gregor914af212010-04-23 04:16:32 +00004545 return Scalar.EmitCompoundAssignLValue(E, &ScalarExprEmitter::Emit##Op, \
Daniel Dunbarc85ea8e2010-06-29 22:00:45 +00004546 Result)
Douglas Gregor914af212010-04-23 04:16:32 +00004547 COMPOUND_OP(Mul);
4548 COMPOUND_OP(Div);
4549 COMPOUND_OP(Rem);
4550 COMPOUND_OP(Add);
4551 COMPOUND_OP(Sub);
4552 COMPOUND_OP(Shl);
4553 COMPOUND_OP(Shr);
4554 COMPOUND_OP(And);
4555 COMPOUND_OP(Xor);
4556 COMPOUND_OP(Or);
4557#undef COMPOUND_OP
Craig Toppera97d7e72013-07-26 06:16:11 +00004558
John McCalle3027922010-08-25 11:45:40 +00004559 case BO_PtrMemD:
4560 case BO_PtrMemI:
4561 case BO_Mul:
4562 case BO_Div:
4563 case BO_Rem:
4564 case BO_Add:
4565 case BO_Sub:
4566 case BO_Shl:
4567 case BO_Shr:
4568 case BO_LT:
4569 case BO_GT:
4570 case BO_LE:
4571 case BO_GE:
4572 case BO_EQ:
4573 case BO_NE:
Richard Smithc70f1d62017-12-14 15:16:18 +00004574 case BO_Cmp:
John McCalle3027922010-08-25 11:45:40 +00004575 case BO_And:
4576 case BO_Xor:
4577 case BO_Or:
4578 case BO_LAnd:
4579 case BO_LOr:
4580 case BO_Assign:
4581 case BO_Comma:
David Blaikie83d382b2011-09-23 05:06:16 +00004582 llvm_unreachable("Not valid compound assignment operators");
Douglas Gregor914af212010-04-23 04:16:32 +00004583 }
Craig Toppera97d7e72013-07-26 06:16:11 +00004584
Douglas Gregor914af212010-04-23 04:16:32 +00004585 llvm_unreachable("Unhandled compound assignment operator");
4586}
Vedant Kumara125eb52017-06-01 19:22:18 +00004587
4588Value *CodeGenFunction::EmitCheckedInBoundsGEP(Value *Ptr,
4589 ArrayRef<Value *> IdxList,
Vedant Kumar6dbf4272017-06-12 18:42:51 +00004590 bool SignedIndices,
Vedant Kumar175b6d12017-07-13 20:55:26 +00004591 bool IsSubtraction,
Vedant Kumara125eb52017-06-01 19:22:18 +00004592 SourceLocation Loc,
4593 const Twine &Name) {
4594 Value *GEPVal = Builder.CreateInBoundsGEP(Ptr, IdxList, Name);
4595
4596 // If the pointer overflow sanitizer isn't enabled, do nothing.
4597 if (!SanOpts.has(SanitizerKind::PointerOverflow))
4598 return GEPVal;
4599
4600 // If the GEP has already been reduced to a constant, leave it be.
4601 if (isa<llvm::Constant>(GEPVal))
4602 return GEPVal;
4603
4604 // Only check for overflows in the default address space.
4605 if (GEPVal->getType()->getPointerAddressSpace())
4606 return GEPVal;
4607
4608 auto *GEP = cast<llvm::GEPOperator>(GEPVal);
4609 assert(GEP->isInBounds() && "Expected inbounds GEP");
4610
4611 SanitizerScope SanScope(this);
4612 auto &VMContext = getLLVMContext();
4613 const auto &DL = CGM.getDataLayout();
4614 auto *IntPtrTy = DL.getIntPtrType(GEP->getPointerOperandType());
4615
4616 // Grab references to the signed add/mul overflow intrinsics for intptr_t.
4617 auto *Zero = llvm::ConstantInt::getNullValue(IntPtrTy);
4618 auto *SAddIntrinsic =
4619 CGM.getIntrinsic(llvm::Intrinsic::sadd_with_overflow, IntPtrTy);
4620 auto *SMulIntrinsic =
4621 CGM.getIntrinsic(llvm::Intrinsic::smul_with_overflow, IntPtrTy);
4622
4623 // The total (signed) byte offset for the GEP.
4624 llvm::Value *TotalOffset = nullptr;
4625 // The offset overflow flag - true if the total offset overflows.
4626 llvm::Value *OffsetOverflows = Builder.getFalse();
4627
4628 /// Return the result of the given binary operation.
4629 auto eval = [&](BinaryOperator::Opcode Opcode, llvm::Value *LHS,
4630 llvm::Value *RHS) -> llvm::Value * {
Davide Italiano77378e42017-06-01 23:55:18 +00004631 assert((Opcode == BO_Add || Opcode == BO_Mul) && "Can't eval binop");
Vedant Kumara125eb52017-06-01 19:22:18 +00004632
4633 // If the operands are constants, return a constant result.
4634 if (auto *LHSCI = dyn_cast<llvm::ConstantInt>(LHS)) {
4635 if (auto *RHSCI = dyn_cast<llvm::ConstantInt>(RHS)) {
4636 llvm::APInt N;
4637 bool HasOverflow = mayHaveIntegerOverflow(LHSCI, RHSCI, Opcode,
4638 /*Signed=*/true, N);
4639 if (HasOverflow)
4640 OffsetOverflows = Builder.getTrue();
4641 return llvm::ConstantInt::get(VMContext, N);
4642 }
4643 }
4644
4645 // Otherwise, compute the result with checked arithmetic.
4646 auto *ResultAndOverflow = Builder.CreateCall(
4647 (Opcode == BO_Add) ? SAddIntrinsic : SMulIntrinsic, {LHS, RHS});
4648 OffsetOverflows = Builder.CreateOr(
Vedant Kumar6dbf4272017-06-12 18:42:51 +00004649 Builder.CreateExtractValue(ResultAndOverflow, 1), OffsetOverflows);
Vedant Kumara125eb52017-06-01 19:22:18 +00004650 return Builder.CreateExtractValue(ResultAndOverflow, 0);
4651 };
4652
4653 // Determine the total byte offset by looking at each GEP operand.
4654 for (auto GTI = llvm::gep_type_begin(GEP), GTE = llvm::gep_type_end(GEP);
4655 GTI != GTE; ++GTI) {
4656 llvm::Value *LocalOffset;
4657 auto *Index = GTI.getOperand();
4658 // Compute the local offset contributed by this indexing step:
4659 if (auto *STy = GTI.getStructTypeOrNull()) {
4660 // For struct indexing, the local offset is the byte position of the
4661 // specified field.
4662 unsigned FieldNo = cast<llvm::ConstantInt>(Index)->getZExtValue();
4663 LocalOffset = llvm::ConstantInt::get(
4664 IntPtrTy, DL.getStructLayout(STy)->getElementOffset(FieldNo));
4665 } else {
4666 // Otherwise this is array-like indexing. The local offset is the index
4667 // multiplied by the element size.
4668 auto *ElementSize = llvm::ConstantInt::get(
4669 IntPtrTy, DL.getTypeAllocSize(GTI.getIndexedType()));
4670 auto *IndexS = Builder.CreateIntCast(Index, IntPtrTy, /*isSigned=*/true);
4671 LocalOffset = eval(BO_Mul, ElementSize, IndexS);
4672 }
4673
4674 // If this is the first offset, set it as the total offset. Otherwise, add
4675 // the local offset into the running total.
4676 if (!TotalOffset || TotalOffset == Zero)
4677 TotalOffset = LocalOffset;
4678 else
4679 TotalOffset = eval(BO_Add, TotalOffset, LocalOffset);
4680 }
4681
4682 // Common case: if the total offset is zero, don't emit a check.
4683 if (TotalOffset == Zero)
4684 return GEPVal;
4685
4686 // Now that we've computed the total offset, add it to the base pointer (with
4687 // wrapping semantics).
4688 auto *IntPtr = Builder.CreatePtrToInt(GEP->getPointerOperand(), IntPtrTy);
4689 auto *ComputedGEP = Builder.CreateAdd(IntPtr, TotalOffset);
4690
4691 // The GEP is valid if:
4692 // 1) The total offset doesn't overflow, and
4693 // 2) The sign of the difference between the computed address and the base
4694 // pointer matches the sign of the total offset.
Vedant Kumar6dbf4272017-06-12 18:42:51 +00004695 llvm::Value *ValidGEP;
4696 auto *NoOffsetOverflow = Builder.CreateNot(OffsetOverflows);
Vedant Kumar6dbf4272017-06-12 18:42:51 +00004697 if (SignedIndices) {
Vedant Kumar175b6d12017-07-13 20:55:26 +00004698 auto *PosOrZeroValid = Builder.CreateICmpUGE(ComputedGEP, IntPtr);
Vedant Kumar6dbf4272017-06-12 18:42:51 +00004699 auto *PosOrZeroOffset = Builder.CreateICmpSGE(TotalOffset, Zero);
4700 llvm::Value *NegValid = Builder.CreateICmpULT(ComputedGEP, IntPtr);
4701 ValidGEP = Builder.CreateAnd(
4702 Builder.CreateSelect(PosOrZeroOffset, PosOrZeroValid, NegValid),
4703 NoOffsetOverflow);
Vedant Kumar175b6d12017-07-13 20:55:26 +00004704 } else if (!SignedIndices && !IsSubtraction) {
4705 auto *PosOrZeroValid = Builder.CreateICmpUGE(ComputedGEP, IntPtr);
Vedant Kumar6dbf4272017-06-12 18:42:51 +00004706 ValidGEP = Builder.CreateAnd(PosOrZeroValid, NoOffsetOverflow);
Vedant Kumar175b6d12017-07-13 20:55:26 +00004707 } else {
4708 auto *NegOrZeroValid = Builder.CreateICmpULE(ComputedGEP, IntPtr);
4709 ValidGEP = Builder.CreateAnd(NegOrZeroValid, NoOffsetOverflow);
Vedant Kumar6dbf4272017-06-12 18:42:51 +00004710 }
Vedant Kumara125eb52017-06-01 19:22:18 +00004711
4712 llvm::Constant *StaticArgs[] = {EmitCheckSourceLocation(Loc)};
4713 // Pass the computed GEP to the runtime to avoid emitting poisoned arguments.
4714 llvm::Value *DynamicArgs[] = {IntPtr, ComputedGEP};
4715 EmitCheck(std::make_pair(ValidGEP, SanitizerKind::PointerOverflow),
4716 SanitizerHandler::PointerOverflow, StaticArgs, DynamicArgs);
4717
4718 return GEPVal;
4719}