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Anders Carlsson1d8e5212007-08-20 18:05:56 +00001//===---- CGBuiltin.cpp - Emit LLVM Code for builtins ---------------------===//
2//
3// The LLVM Compiler Infrastructure
4//
Chris Lattner5b12ab82007-12-29 19:59:25 +00005// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
Anders Carlsson1d8e5212007-08-20 18:05:56 +00007//
8//===----------------------------------------------------------------------===//
9//
10// This contains code to emit Builtin calls as LLVM code.
11//
12//===----------------------------------------------------------------------===//
13
14#include "CodeGenFunction.h"
Fariborz Jahanian021510e2010-06-15 22:44:06 +000015#include "CGObjCRuntime.h"
Chandler Carruth3a022472012-12-04 09:13:33 +000016#include "CodeGenModule.h"
17#include "TargetInfo.h"
Chris Lattner1eec6602007-08-31 04:31:45 +000018#include "clang/AST/ASTContext.h"
Daniel Dunbar6e8aa532008-08-11 05:35:13 +000019#include "clang/AST/Decl.h"
Chris Lattner5abdec72009-06-14 01:05:48 +000020#include "clang/Basic/TargetBuiltins.h"
Chandler Carruth3a022472012-12-04 09:13:33 +000021#include "clang/Basic/TargetInfo.h"
Mark Laceya8e7df32013-10-30 21:53:58 +000022#include "clang/CodeGen/CGFunctionInfo.h"
Chandler Carruthffd55512013-01-02 11:45:17 +000023#include "llvm/IR/DataLayout.h"
24#include "llvm/IR/Intrinsics.h"
Jakub Staszakd2cf2cb2011-07-08 22:45:14 +000025
Anders Carlsson1d8e5212007-08-20 18:05:56 +000026using namespace clang;
27using namespace CodeGen;
Anders Carlssona020c432007-12-09 21:20:04 +000028using namespace llvm;
29
John McCall30e4efd2011-09-13 23:05:03 +000030/// getBuiltinLibFunction - Given a builtin id for a function like
31/// "__builtin_fabsf", return a Function* for "fabsf".
32llvm::Value *CodeGenModule::getBuiltinLibFunction(const FunctionDecl *FD,
33 unsigned BuiltinID) {
34 assert(Context.BuiltinInfo.isLibFunction(BuiltinID));
35
36 // Get the name, skip over the __builtin_ prefix (if necessary).
37 StringRef Name;
38 GlobalDecl D(FD);
39
40 // If the builtin has been declared explicitly with an assembler label,
41 // use the mangled name. This differs from the plain label on platforms
42 // that prefix labels.
43 if (FD->hasAttr<AsmLabelAttr>())
44 Name = getMangledName(D);
45 else
46 Name = Context.BuiltinInfo.GetName(BuiltinID) + 10;
47
48 llvm::FunctionType *Ty =
49 cast<llvm::FunctionType>(getTypes().ConvertType(FD->getType()));
50
51 return GetOrCreateLLVMFunction(Name, Ty, D, /*ForVTable=*/false);
52}
53
John McCall3a7f6922010-10-27 20:58:56 +000054/// Emit the conversions required to turn the given value into an
55/// integer of the given size.
56static Value *EmitToInt(CodeGenFunction &CGF, llvm::Value *V,
Chris Lattner2192fe52011-07-18 04:24:23 +000057 QualType T, llvm::IntegerType *IntType) {
John McCall3a7f6922010-10-27 20:58:56 +000058 V = CGF.EmitToMemory(V, T);
Chris Lattner07e96862010-10-01 23:43:16 +000059
John McCall3a7f6922010-10-27 20:58:56 +000060 if (V->getType()->isPointerTy())
61 return CGF.Builder.CreatePtrToInt(V, IntType);
62
63 assert(V->getType() == IntType);
64 return V;
Chandler Carruthbc8cab12010-07-18 07:23:17 +000065}
66
John McCall3a7f6922010-10-27 20:58:56 +000067static Value *EmitFromInt(CodeGenFunction &CGF, llvm::Value *V,
Chris Lattner2192fe52011-07-18 04:24:23 +000068 QualType T, llvm::Type *ResultType) {
John McCall3a7f6922010-10-27 20:58:56 +000069 V = CGF.EmitFromMemory(V, T);
70
71 if (ResultType->isPointerTy())
72 return CGF.Builder.CreateIntToPtr(V, ResultType);
73
74 assert(V->getType() == ResultType);
75 return V;
Chandler Carruthbc8cab12010-07-18 07:23:17 +000076}
77
Daniel Dunbar4fab57d2009-04-07 00:55:51 +000078/// Utility to insert an atomic instruction based on Instrinsic::ID
79/// and the expression node.
Daniel Dunbar4ff562d2010-03-20 07:04:11 +000080static RValue EmitBinaryAtomic(CodeGenFunction &CGF,
Eli Friedmane9f81132011-09-07 01:41:24 +000081 llvm::AtomicRMWInst::BinOp Kind,
82 const CallExpr *E) {
John McCall3a7f6922010-10-27 20:58:56 +000083 QualType T = E->getType();
84 assert(E->getArg(0)->getType()->isPointerType());
85 assert(CGF.getContext().hasSameUnqualifiedType(T,
86 E->getArg(0)->getType()->getPointeeType()));
87 assert(CGF.getContext().hasSameUnqualifiedType(T, E->getArg(1)->getType()));
88
Chris Lattnerb2f659b2010-09-21 23:40:48 +000089 llvm::Value *DestPtr = CGF.EmitScalarExpr(E->getArg(0));
Micah Villmowea2fea22012-10-25 15:39:14 +000090 unsigned AddrSpace = DestPtr->getType()->getPointerAddressSpace();
John McCall6bde9542010-10-26 22:09:15 +000091
Chris Lattnera5f58b02011-07-09 17:41:47 +000092 llvm::IntegerType *IntType =
John McCall3a7f6922010-10-27 20:58:56 +000093 llvm::IntegerType::get(CGF.getLLVMContext(),
94 CGF.getContext().getTypeSize(T));
Chris Lattnera5f58b02011-07-09 17:41:47 +000095 llvm::Type *IntPtrType = IntType->getPointerTo(AddrSpace);
John McCall3a7f6922010-10-27 20:58:56 +000096
John McCall3a7f6922010-10-27 20:58:56 +000097 llvm::Value *Args[2];
98 Args[0] = CGF.Builder.CreateBitCast(DestPtr, IntPtrType);
99 Args[1] = CGF.EmitScalarExpr(E->getArg(1));
Chris Lattner2192fe52011-07-18 04:24:23 +0000100 llvm::Type *ValueType = Args[1]->getType();
John McCall3a7f6922010-10-27 20:58:56 +0000101 Args[1] = EmitToInt(CGF, Args[1], T, IntType);
102
Eli Friedmane9f81132011-09-07 01:41:24 +0000103 llvm::Value *Result =
104 CGF.Builder.CreateAtomicRMW(Kind, Args[0], Args[1],
105 llvm::SequentiallyConsistent);
John McCall3a7f6922010-10-27 20:58:56 +0000106 Result = EmitFromInt(CGF, Result, T, ValueType);
107 return RValue::get(Result);
Daniel Dunbar4fab57d2009-04-07 00:55:51 +0000108}
109
110/// Utility to insert an atomic instruction based Instrinsic::ID and
John McCall3a7f6922010-10-27 20:58:56 +0000111/// the expression node, where the return value is the result of the
112/// operation.
Chris Lattner43660c52010-05-06 05:35:16 +0000113static RValue EmitBinaryAtomicPost(CodeGenFunction &CGF,
Eli Friedmane9f81132011-09-07 01:41:24 +0000114 llvm::AtomicRMWInst::BinOp Kind,
115 const CallExpr *E,
Daniel Dunbar4fab57d2009-04-07 00:55:51 +0000116 Instruction::BinaryOps Op) {
John McCall3a7f6922010-10-27 20:58:56 +0000117 QualType T = E->getType();
118 assert(E->getArg(0)->getType()->isPointerType());
119 assert(CGF.getContext().hasSameUnqualifiedType(T,
120 E->getArg(0)->getType()->getPointeeType()));
121 assert(CGF.getContext().hasSameUnqualifiedType(T, E->getArg(1)->getType()));
122
Chris Lattnerb2f659b2010-09-21 23:40:48 +0000123 llvm::Value *DestPtr = CGF.EmitScalarExpr(E->getArg(0));
Micah Villmowea2fea22012-10-25 15:39:14 +0000124 unsigned AddrSpace = DestPtr->getType()->getPointerAddressSpace();
John McCall6bde9542010-10-26 22:09:15 +0000125
Chris Lattnera5f58b02011-07-09 17:41:47 +0000126 llvm::IntegerType *IntType =
John McCall3a7f6922010-10-27 20:58:56 +0000127 llvm::IntegerType::get(CGF.getLLVMContext(),
128 CGF.getContext().getTypeSize(T));
Chris Lattnera5f58b02011-07-09 17:41:47 +0000129 llvm::Type *IntPtrType = IntType->getPointerTo(AddrSpace);
John McCall3a7f6922010-10-27 20:58:56 +0000130
John McCall3a7f6922010-10-27 20:58:56 +0000131 llvm::Value *Args[2];
132 Args[1] = CGF.EmitScalarExpr(E->getArg(1));
Chris Lattner2192fe52011-07-18 04:24:23 +0000133 llvm::Type *ValueType = Args[1]->getType();
John McCall3a7f6922010-10-27 20:58:56 +0000134 Args[1] = EmitToInt(CGF, Args[1], T, IntType);
135 Args[0] = CGF.Builder.CreateBitCast(DestPtr, IntPtrType);
136
Eli Friedmane9f81132011-09-07 01:41:24 +0000137 llvm::Value *Result =
138 CGF.Builder.CreateAtomicRMW(Kind, Args[0], Args[1],
139 llvm::SequentiallyConsistent);
John McCall3a7f6922010-10-27 20:58:56 +0000140 Result = CGF.Builder.CreateBinOp(Op, Result, Args[1]);
141 Result = EmitFromInt(CGF, Result, T, ValueType);
142 return RValue::get(Result);
Mon P Wangb84407d2008-05-09 22:40:52 +0000143}
144
Chris Lattner43660c52010-05-06 05:35:16 +0000145/// EmitFAbs - Emit a call to fabs/fabsf/fabsl, depending on the type of ValTy,
146/// which must be a scalar floating point type.
147static Value *EmitFAbs(CodeGenFunction &CGF, Value *V, QualType ValTy) {
148 const BuiltinType *ValTyP = ValTy->getAs<BuiltinType>();
149 assert(ValTyP && "isn't scalar fp type!");
Jim Grosbachd3608f42012-09-21 00:18:27 +0000150
Chris Lattner43660c52010-05-06 05:35:16 +0000151 StringRef FnName;
152 switch (ValTyP->getKind()) {
David Blaikie83d382b2011-09-23 05:06:16 +0000153 default: llvm_unreachable("Isn't a scalar fp type!");
Chris Lattner43660c52010-05-06 05:35:16 +0000154 case BuiltinType::Float: FnName = "fabsf"; break;
155 case BuiltinType::Double: FnName = "fabs"; break;
156 case BuiltinType::LongDouble: FnName = "fabsl"; break;
157 }
Jim Grosbachd3608f42012-09-21 00:18:27 +0000158
Chris Lattner43660c52010-05-06 05:35:16 +0000159 // The prototype is something that takes and returns whatever V's type is.
Jay Foad5709f7c2011-07-29 13:56:53 +0000160 llvm::FunctionType *FT = llvm::FunctionType::get(V->getType(), V->getType(),
Benjamin Kramerdf1fb132011-05-28 14:26:31 +0000161 false);
Chris Lattner43660c52010-05-06 05:35:16 +0000162 llvm::Value *Fn = CGF.CGM.CreateRuntimeFunction(FT, FnName);
163
Benjamin Kramer4757d0a2013-05-14 12:23:08 +0000164 return CGF.EmitNounwindRuntimeCall(Fn, V, "abs");
Chris Lattner43660c52010-05-06 05:35:16 +0000165}
166
John McCall30e4efd2011-09-13 23:05:03 +0000167static RValue emitLibraryCall(CodeGenFunction &CGF, const FunctionDecl *Fn,
168 const CallExpr *E, llvm::Value *calleeValue) {
Peter Collingbourneb453cd62013-10-20 21:29:19 +0000169 return CGF.EmitCall(E->getCallee()->getType(), calleeValue, E->getLocStart(),
John McCall30e4efd2011-09-13 23:05:03 +0000170 ReturnValueSlot(), E->arg_begin(), E->arg_end(), Fn);
171}
172
Michael Gottesman54398012013-01-13 02:22:39 +0000173/// \brief Emit a call to llvm.{sadd,uadd,ssub,usub,smul,umul}.with.overflow.*
174/// depending on IntrinsicID.
175///
176/// \arg CGF The current codegen function.
177/// \arg IntrinsicID The ID for the Intrinsic we wish to generate.
178/// \arg X The first argument to the llvm.*.with.overflow.*.
179/// \arg Y The second argument to the llvm.*.with.overflow.*.
180/// \arg Carry The carry returned by the llvm.*.with.overflow.*.
181/// \returns The result (i.e. sum/product) returned by the intrinsic.
182static llvm::Value *EmitOverflowIntrinsic(CodeGenFunction &CGF,
183 const llvm::Intrinsic::ID IntrinsicID,
184 llvm::Value *X, llvm::Value *Y,
185 llvm::Value *&Carry) {
186 // Make sure we have integers of the same width.
187 assert(X->getType() == Y->getType() &&
188 "Arguments must be the same type. (Did you forget to make sure both "
189 "arguments have the same integer width?)");
190
NAKAMURA Takumi7ab4fbf2013-01-13 11:26:44 +0000191 llvm::Value *Callee = CGF.CGM.getIntrinsic(IntrinsicID, X->getType());
Michael Gottesman54398012013-01-13 02:22:39 +0000192 llvm::Value *Tmp = CGF.Builder.CreateCall2(Callee, X, Y);
193 Carry = CGF.Builder.CreateExtractValue(Tmp, 1);
194 return CGF.Builder.CreateExtractValue(Tmp, 0);
195}
196
Mike Stump11289f42009-09-09 15:08:12 +0000197RValue CodeGenFunction::EmitBuiltinExpr(const FunctionDecl *FD,
Daniel Dunbar8eb018a2009-02-16 22:43:43 +0000198 unsigned BuiltinID, const CallExpr *E) {
Chris Lattner24355b52008-10-06 06:56:41 +0000199 // See if we can constant fold this builtin. If so, don't emit it at all.
Anders Carlssonc9687902008-12-01 02:31:41 +0000200 Expr::EvalResult Result;
Eli Friedmandf88c542012-01-06 20:03:09 +0000201 if (E->EvaluateAsRValue(Result, CGM.getContext()) &&
Fariborz Jahanian24ac1592011-04-25 23:10:07 +0000202 !Result.hasSideEffects()) {
Anders Carlssonc9687902008-12-01 02:31:41 +0000203 if (Result.Val.isInt())
John McCallad7c5c12011-02-08 08:22:06 +0000204 return RValue::get(llvm::ConstantInt::get(getLLVMContext(),
Owen Andersonb7a2fe62009-07-24 23:12:58 +0000205 Result.Val.getInt()));
Chris Lattner07e96862010-10-01 23:43:16 +0000206 if (Result.Val.isFloat())
John McCallad7c5c12011-02-08 08:22:06 +0000207 return RValue::get(llvm::ConstantFP::get(getLLVMContext(),
208 Result.Val.getFloat()));
Chris Lattnera1518b12008-10-06 06:09:18 +0000209 }
Mike Stump11289f42009-09-09 15:08:12 +0000210
Chris Lattner24355b52008-10-06 06:56:41 +0000211 switch (BuiltinID) {
212 default: break; // Handle intrinsics and libm functions below.
Chris Lattnera97132a2008-10-06 07:26:43 +0000213 case Builtin::BI__builtin___CFStringMakeConstantString:
David Chisnall481e3a82010-01-23 02:40:42 +0000214 case Builtin::BI__builtin___NSStringMakeConstantString:
Anders Carlsson80f97ab2009-04-08 04:48:15 +0000215 return RValue::get(CGM.EmitConstantExpr(E, E->getType(), 0));
Chris Lattner0bf67912008-07-09 17:28:44 +0000216 case Builtin::BI__builtin_stdarg_start:
Anders Carlsson24ebce62007-10-12 23:56:29 +0000217 case Builtin::BI__builtin_va_start:
Reid Kleckner597e81d2014-03-26 15:38:33 +0000218 case Builtin::BI__va_start:
Anders Carlsson24ebce62007-10-12 23:56:29 +0000219 case Builtin::BI__builtin_va_end: {
Reid Kleckner597e81d2014-03-26 15:38:33 +0000220 Value *ArgValue = (BuiltinID == Builtin::BI__va_start)
221 ? EmitScalarExpr(E->getArg(0))
222 : EmitVAListRef(E->getArg(0));
Chris Lattner2192fe52011-07-18 04:24:23 +0000223 llvm::Type *DestType = Int8PtrTy;
Anders Carlsson24ebce62007-10-12 23:56:29 +0000224 if (ArgValue->getType() != DestType)
Mike Stump11289f42009-09-09 15:08:12 +0000225 ArgValue = Builder.CreateBitCast(ArgValue, DestType,
Daniel Dunbare59313a2009-07-26 09:28:40 +0000226 ArgValue->getName().data());
Anders Carlsson24ebce62007-10-12 23:56:29 +0000227
Mike Stump11289f42009-09-09 15:08:12 +0000228 Intrinsic::ID inst = (BuiltinID == Builtin::BI__builtin_va_end) ?
Chris Lattner0bf67912008-07-09 17:28:44 +0000229 Intrinsic::vaend : Intrinsic::vastart;
Chris Lattnerb8be97e2007-12-18 00:25:38 +0000230 return RValue::get(Builder.CreateCall(CGM.getIntrinsic(inst), ArgValue));
Anders Carlsson24ebce62007-10-12 23:56:29 +0000231 }
Anders Carlssonc0b0e592008-02-09 20:26:43 +0000232 case Builtin::BI__builtin_va_copy: {
Eli Friedmanddea0ad2009-01-20 17:46:04 +0000233 Value *DstPtr = EmitVAListRef(E->getArg(0));
234 Value *SrcPtr = EmitVAListRef(E->getArg(1));
Anders Carlssonc0b0e592008-02-09 20:26:43 +0000235
Chris Lattner2192fe52011-07-18 04:24:23 +0000236 llvm::Type *Type = Int8PtrTy;
Anders Carlssonc0b0e592008-02-09 20:26:43 +0000237
238 DstPtr = Builder.CreateBitCast(DstPtr, Type);
239 SrcPtr = Builder.CreateBitCast(SrcPtr, Type);
Mike Stump11289f42009-09-09 15:08:12 +0000240 return RValue::get(Builder.CreateCall2(CGM.getIntrinsic(Intrinsic::vacopy),
Chris Lattnerdbcc2ca2008-05-06 00:56:42 +0000241 DstPtr, SrcPtr));
Anders Carlssonc0b0e592008-02-09 20:26:43 +0000242 }
Jim Grosbachd3608f42012-09-21 00:18:27 +0000243 case Builtin::BI__builtin_abs:
Eli Friedman65499b42012-01-17 22:11:30 +0000244 case Builtin::BI__builtin_labs:
245 case Builtin::BI__builtin_llabs: {
Mike Stump11289f42009-09-09 15:08:12 +0000246 Value *ArgValue = EmitScalarExpr(E->getArg(0));
247
Chris Lattner28ee5b32008-07-23 06:53:34 +0000248 Value *NegOp = Builder.CreateNeg(ArgValue, "neg");
Mike Stump11289f42009-09-09 15:08:12 +0000249 Value *CmpResult =
250 Builder.CreateICmpSGE(ArgValue,
Owen Anderson0b75f232009-07-31 20:28:54 +0000251 llvm::Constant::getNullValue(ArgValue->getType()),
Chris Lattner28ee5b32008-07-23 06:53:34 +0000252 "abscond");
Mike Stump11289f42009-09-09 15:08:12 +0000253 Value *Result =
Anders Carlsson4f8eb122007-11-20 19:05:17 +0000254 Builder.CreateSelect(CmpResult, ArgValue, NegOp, "abs");
Mike Stump11289f42009-09-09 15:08:12 +0000255
Anders Carlsson4f8eb122007-11-20 19:05:17 +0000256 return RValue::get(Result);
257 }
Jim Grosbachd3608f42012-09-21 00:18:27 +0000258
Fariborz Jahanian1ac11192012-08-14 20:09:28 +0000259 case Builtin::BI__builtin_conj:
260 case Builtin::BI__builtin_conjf:
261 case Builtin::BI__builtin_conjl: {
262 ComplexPairTy ComplexVal = EmitComplexExpr(E->getArg(0));
263 Value *Real = ComplexVal.first;
264 Value *Imag = ComplexVal.second;
Jim Grosbachd3608f42012-09-21 00:18:27 +0000265 Value *Zero =
266 Imag->getType()->isFPOrFPVectorTy()
Fariborz Jahanian1ac11192012-08-14 20:09:28 +0000267 ? llvm::ConstantFP::getZeroValueForNegation(Imag->getType())
268 : llvm::Constant::getNullValue(Imag->getType());
Jim Grosbachd3608f42012-09-21 00:18:27 +0000269
Fariborz Jahanian1ac11192012-08-14 20:09:28 +0000270 Imag = Builder.CreateFSub(Zero, Imag, "sub");
271 return RValue::getComplex(std::make_pair(Real, Imag));
272 }
273 case Builtin::BI__builtin_creal:
274 case Builtin::BI__builtin_crealf:
Meador Ingeb97878a2012-12-18 20:58:04 +0000275 case Builtin::BI__builtin_creall:
276 case Builtin::BIcreal:
277 case Builtin::BIcrealf:
278 case Builtin::BIcreall: {
Fariborz Jahanian1ac11192012-08-14 20:09:28 +0000279 ComplexPairTy ComplexVal = EmitComplexExpr(E->getArg(0));
280 return RValue::get(ComplexVal.first);
281 }
Jim Grosbachd3608f42012-09-21 00:18:27 +0000282
Fariborz Jahanian1ac11192012-08-14 20:09:28 +0000283 case Builtin::BI__builtin_cimag:
284 case Builtin::BI__builtin_cimagf:
Meador Ingeb97878a2012-12-18 20:58:04 +0000285 case Builtin::BI__builtin_cimagl:
286 case Builtin::BIcimag:
287 case Builtin::BIcimagf:
288 case Builtin::BIcimagl: {
Fariborz Jahanian1ac11192012-08-14 20:09:28 +0000289 ComplexPairTy ComplexVal = EmitComplexExpr(E->getArg(0));
290 return RValue::get(ComplexVal.second);
291 }
Jim Grosbachd3608f42012-09-21 00:18:27 +0000292
Benjamin Kramer14128162012-01-28 18:42:57 +0000293 case Builtin::BI__builtin_ctzs:
Anders Carlsson093f1a02008-02-06 07:19:27 +0000294 case Builtin::BI__builtin_ctz:
295 case Builtin::BI__builtin_ctzl:
296 case Builtin::BI__builtin_ctzll: {
297 Value *ArgValue = EmitScalarExpr(E->getArg(0));
Mike Stump11289f42009-09-09 15:08:12 +0000298
Chris Lattnera5f58b02011-07-09 17:41:47 +0000299 llvm::Type *ArgType = ArgValue->getType();
Benjamin Kramer8d375ce2011-07-14 17:45:50 +0000300 Value *F = CGM.getIntrinsic(Intrinsic::cttz, ArgType);
Anders Carlsson093f1a02008-02-06 07:19:27 +0000301
Chris Lattner2192fe52011-07-18 04:24:23 +0000302 llvm::Type *ResultType = ConvertType(E->getType());
John McCallc8e01702013-04-16 22:48:15 +0000303 Value *ZeroUndef = Builder.getInt1(getTarget().isCLZForZeroUndef());
Bob Wilsona7a61e22012-01-26 22:14:27 +0000304 Value *Result = Builder.CreateCall2(F, ArgValue, ZeroUndef);
Anders Carlsson093f1a02008-02-06 07:19:27 +0000305 if (Result->getType() != ResultType)
Duncan Sands7876dad2009-11-16 13:11:21 +0000306 Result = Builder.CreateIntCast(Result, ResultType, /*isSigned*/true,
307 "cast");
Anders Carlsson093f1a02008-02-06 07:19:27 +0000308 return RValue::get(Result);
309 }
Benjamin Kramer14128162012-01-28 18:42:57 +0000310 case Builtin::BI__builtin_clzs:
Eli Friedman5e2281e2008-05-27 15:32:46 +0000311 case Builtin::BI__builtin_clz:
312 case Builtin::BI__builtin_clzl:
313 case Builtin::BI__builtin_clzll: {
314 Value *ArgValue = EmitScalarExpr(E->getArg(0));
Mike Stump11289f42009-09-09 15:08:12 +0000315
Chris Lattnera5f58b02011-07-09 17:41:47 +0000316 llvm::Type *ArgType = ArgValue->getType();
Benjamin Kramer8d375ce2011-07-14 17:45:50 +0000317 Value *F = CGM.getIntrinsic(Intrinsic::ctlz, ArgType);
Eli Friedman5e2281e2008-05-27 15:32:46 +0000318
Chris Lattner2192fe52011-07-18 04:24:23 +0000319 llvm::Type *ResultType = ConvertType(E->getType());
John McCallc8e01702013-04-16 22:48:15 +0000320 Value *ZeroUndef = Builder.getInt1(getTarget().isCLZForZeroUndef());
Bob Wilsona7a61e22012-01-26 22:14:27 +0000321 Value *Result = Builder.CreateCall2(F, ArgValue, ZeroUndef);
Eli Friedman5e2281e2008-05-27 15:32:46 +0000322 if (Result->getType() != ResultType)
Duncan Sands7876dad2009-11-16 13:11:21 +0000323 Result = Builder.CreateIntCast(Result, ResultType, /*isSigned*/true,
324 "cast");
Eli Friedman5e2281e2008-05-27 15:32:46 +0000325 return RValue::get(Result);
326 }
Daniel Dunbard93abc32008-07-21 17:19:41 +0000327 case Builtin::BI__builtin_ffs:
328 case Builtin::BI__builtin_ffsl:
329 case Builtin::BI__builtin_ffsll: {
330 // ffs(x) -> x ? cttz(x) + 1 : 0
331 Value *ArgValue = EmitScalarExpr(E->getArg(0));
Mike Stump11289f42009-09-09 15:08:12 +0000332
Chris Lattnera5f58b02011-07-09 17:41:47 +0000333 llvm::Type *ArgType = ArgValue->getType();
Benjamin Kramer8d375ce2011-07-14 17:45:50 +0000334 Value *F = CGM.getIntrinsic(Intrinsic::cttz, ArgType);
Mike Stump11289f42009-09-09 15:08:12 +0000335
Chris Lattner2192fe52011-07-18 04:24:23 +0000336 llvm::Type *ResultType = ConvertType(E->getType());
Chandler Carrutha31b95c2011-12-12 04:28:35 +0000337 Value *Tmp = Builder.CreateAdd(Builder.CreateCall2(F, ArgValue,
338 Builder.getTrue()),
Benjamin Kramer76399eb2011-09-27 21:06:10 +0000339 llvm::ConstantInt::get(ArgType, 1));
Owen Anderson0b75f232009-07-31 20:28:54 +0000340 Value *Zero = llvm::Constant::getNullValue(ArgType);
Daniel Dunbard93abc32008-07-21 17:19:41 +0000341 Value *IsZero = Builder.CreateICmpEQ(ArgValue, Zero, "iszero");
342 Value *Result = Builder.CreateSelect(IsZero, Zero, Tmp, "ffs");
343 if (Result->getType() != ResultType)
Duncan Sands7876dad2009-11-16 13:11:21 +0000344 Result = Builder.CreateIntCast(Result, ResultType, /*isSigned*/true,
345 "cast");
Daniel Dunbard93abc32008-07-21 17:19:41 +0000346 return RValue::get(Result);
347 }
348 case Builtin::BI__builtin_parity:
349 case Builtin::BI__builtin_parityl:
350 case Builtin::BI__builtin_parityll: {
351 // parity(x) -> ctpop(x) & 1
352 Value *ArgValue = EmitScalarExpr(E->getArg(0));
Mike Stump11289f42009-09-09 15:08:12 +0000353
Chris Lattnera5f58b02011-07-09 17:41:47 +0000354 llvm::Type *ArgType = ArgValue->getType();
Benjamin Kramer8d375ce2011-07-14 17:45:50 +0000355 Value *F = CGM.getIntrinsic(Intrinsic::ctpop, ArgType);
Mike Stump11289f42009-09-09 15:08:12 +0000356
Chris Lattner2192fe52011-07-18 04:24:23 +0000357 llvm::Type *ResultType = ConvertType(E->getType());
Benjamin Kramer76399eb2011-09-27 21:06:10 +0000358 Value *Tmp = Builder.CreateCall(F, ArgValue);
359 Value *Result = Builder.CreateAnd(Tmp, llvm::ConstantInt::get(ArgType, 1));
Daniel Dunbard93abc32008-07-21 17:19:41 +0000360 if (Result->getType() != ResultType)
Duncan Sands7876dad2009-11-16 13:11:21 +0000361 Result = Builder.CreateIntCast(Result, ResultType, /*isSigned*/true,
362 "cast");
Daniel Dunbard93abc32008-07-21 17:19:41 +0000363 return RValue::get(Result);
364 }
365 case Builtin::BI__builtin_popcount:
366 case Builtin::BI__builtin_popcountl:
367 case Builtin::BI__builtin_popcountll: {
368 Value *ArgValue = EmitScalarExpr(E->getArg(0));
Mike Stump11289f42009-09-09 15:08:12 +0000369
Chris Lattnera5f58b02011-07-09 17:41:47 +0000370 llvm::Type *ArgType = ArgValue->getType();
Benjamin Kramer8d375ce2011-07-14 17:45:50 +0000371 Value *F = CGM.getIntrinsic(Intrinsic::ctpop, ArgType);
Mike Stump11289f42009-09-09 15:08:12 +0000372
Chris Lattner2192fe52011-07-18 04:24:23 +0000373 llvm::Type *ResultType = ConvertType(E->getType());
Benjamin Kramer76399eb2011-09-27 21:06:10 +0000374 Value *Result = Builder.CreateCall(F, ArgValue);
Daniel Dunbard93abc32008-07-21 17:19:41 +0000375 if (Result->getType() != ResultType)
Duncan Sands7876dad2009-11-16 13:11:21 +0000376 Result = Builder.CreateIntCast(Result, ResultType, /*isSigned*/true,
377 "cast");
Daniel Dunbard93abc32008-07-21 17:19:41 +0000378 return RValue::get(Result);
379 }
Fariborz Jahanian0ebca282010-07-26 23:11:03 +0000380 case Builtin::BI__builtin_expect: {
Fariborz Jahanian24ac1592011-04-25 23:10:07 +0000381 Value *ArgValue = EmitScalarExpr(E->getArg(0));
Chris Lattnera5f58b02011-07-09 17:41:47 +0000382 llvm::Type *ArgType = ArgValue->getType();
Jakub Staszakd2cf2cb2011-07-08 22:45:14 +0000383
Benjamin Kramer8d375ce2011-07-14 17:45:50 +0000384 Value *FnExpect = CGM.getIntrinsic(Intrinsic::expect, ArgType);
Jakub Staszakd2cf2cb2011-07-08 22:45:14 +0000385 Value *ExpectedValue = EmitScalarExpr(E->getArg(1));
386
387 Value *Result = Builder.CreateCall2(FnExpect, ArgValue, ExpectedValue,
388 "expval");
389 return RValue::get(Result);
Fariborz Jahanian0ebca282010-07-26 23:11:03 +0000390 }
Benjamin Kramera801f4a2012-10-06 14:42:22 +0000391 case Builtin::BI__builtin_bswap16:
Anders Carlssonef93b9d2007-12-02 21:58:10 +0000392 case Builtin::BI__builtin_bswap32:
393 case Builtin::BI__builtin_bswap64: {
Chris Lattner13653d72007-12-13 07:34:23 +0000394 Value *ArgValue = EmitScalarExpr(E->getArg(0));
Chris Lattnera5f58b02011-07-09 17:41:47 +0000395 llvm::Type *ArgType = ArgValue->getType();
Benjamin Kramer8d375ce2011-07-14 17:45:50 +0000396 Value *F = CGM.getIntrinsic(Intrinsic::bswap, ArgType);
Benjamin Kramer76399eb2011-09-27 21:06:10 +0000397 return RValue::get(Builder.CreateCall(F, ArgValue));
Mike Stump11289f42009-09-09 15:08:12 +0000398 }
Daniel Dunbarb0d34c82008-09-03 21:13:56 +0000399 case Builtin::BI__builtin_object_size: {
Richard Smith01ade172012-05-23 04:13:20 +0000400 // We rely on constant folding to deal with expressions with side effects.
401 assert(!E->getArg(0)->HasSideEffects(getContext()) &&
402 "should have been constant folded");
403
Mike Stump7a484dd2009-10-26 23:39:48 +0000404 // We pass this builtin onto the optimizer so that it can
405 // figure out the object size in more complex cases.
Benjamin Kramer8d375ce2011-07-14 17:45:50 +0000406 llvm::Type *ResType = ConvertType(E->getType());
Jim Grosbachd3608f42012-09-21 00:18:27 +0000407
Eric Christopherc8791562009-12-23 03:49:37 +0000408 // LLVM only supports 0 and 2, make sure that we pass along that
409 // as a boolean.
410 Value *Ty = EmitScalarExpr(E->getArg(1));
411 ConstantInt *CI = dyn_cast<ConstantInt>(Ty);
412 assert(CI);
413 uint64_t val = CI->getZExtValue();
Jim Grosbachd3608f42012-09-21 00:18:27 +0000414 CI = ConstantInt::get(Builder.getInt1Ty(), (val & 0x2) >> 1);
Matt Arsenault2f152632013-10-07 19:00:18 +0000415 // FIXME: Get right address space.
416 llvm::Type *Tys[] = { ResType, Builder.getInt8PtrTy(0) };
417 Value *F = CGM.getIntrinsic(Intrinsic::objectsize, Tys);
Nuno Lopes2b1ff462012-05-22 15:26:48 +0000418 return RValue::get(Builder.CreateCall2(F, EmitScalarExpr(E->getArg(0)),CI));
Daniel Dunbarb0d34c82008-09-03 21:13:56 +0000419 }
Daniel Dunbarb7257262008-07-21 22:59:13 +0000420 case Builtin::BI__builtin_prefetch: {
421 Value *Locality, *RW, *Address = EmitScalarExpr(E->getArg(0));
422 // FIXME: Technically these constants should of type 'int', yes?
Mike Stump11289f42009-09-09 15:08:12 +0000423 RW = (E->getNumArgs() > 1) ? EmitScalarExpr(E->getArg(1)) :
Chris Lattner5e016ae2010-06-27 07:15:29 +0000424 llvm::ConstantInt::get(Int32Ty, 0);
Mike Stump11289f42009-09-09 15:08:12 +0000425 Locality = (E->getNumArgs() > 2) ? EmitScalarExpr(E->getArg(2)) :
Chris Lattner5e016ae2010-06-27 07:15:29 +0000426 llvm::ConstantInt::get(Int32Ty, 3);
Bruno Cardoso Lopes3b0297a2011-06-14 05:00:30 +0000427 Value *Data = llvm::ConstantInt::get(Int32Ty, 1);
Benjamin Kramer8d375ce2011-07-14 17:45:50 +0000428 Value *F = CGM.getIntrinsic(Intrinsic::prefetch);
Bruno Cardoso Lopes3b0297a2011-06-14 05:00:30 +0000429 return RValue::get(Builder.CreateCall4(F, Address, RW, Locality, Data));
Anders Carlssonef93b9d2007-12-02 21:58:10 +0000430 }
Hal Finkel3fadbb52012-08-05 22:03:08 +0000431 case Builtin::BI__builtin_readcyclecounter: {
432 Value *F = CGM.getIntrinsic(Intrinsic::readcyclecounter);
433 return RValue::get(Builder.CreateCall(F));
434 }
Renato Golinc491a8d2014-03-26 15:36:05 +0000435 case Builtin::BI__builtin___clear_cache: {
436 Value *Begin = EmitScalarExpr(E->getArg(0));
437 Value *End = EmitScalarExpr(E->getArg(1));
438 Value *F = CGM.getIntrinsic(Intrinsic::clear_cache);
439 return RValue::get(Builder.CreateCall2(F, Begin, End));
440 }
Daniel Dunbarb7257262008-07-21 22:59:13 +0000441 case Builtin::BI__builtin_trap: {
Benjamin Kramer8d375ce2011-07-14 17:45:50 +0000442 Value *F = CGM.getIntrinsic(Intrinsic::trap);
Daniel Dunbarb7257262008-07-21 22:59:13 +0000443 return RValue::get(Builder.CreateCall(F));
444 }
Nico Weberca496f32012-09-26 05:40:16 +0000445 case Builtin::BI__debugbreak: {
446 Value *F = CGM.getIntrinsic(Intrinsic::debugtrap);
447 return RValue::get(Builder.CreateCall(F));
448 }
Chris Lattnerbf206382009-09-21 03:09:59 +0000449 case Builtin::BI__builtin_unreachable: {
Will Dietzf54319c2013-01-18 11:30:38 +0000450 if (SanOpts->Unreachable)
Richard Smithe30752c2012-10-09 19:52:38 +0000451 EmitCheck(Builder.getFalse(), "builtin_unreachable",
452 EmitCheckSourceLocation(E->getExprLoc()),
Dmitri Gribenkof8579502013-01-12 19:30:44 +0000453 ArrayRef<llvm::Value *>(), CRK_Unrecoverable);
John McCall20f6ab82011-01-12 03:41:02 +0000454 else
455 Builder.CreateUnreachable();
456
457 // We do need to preserve an insertion point.
John McCallad7c5c12011-02-08 08:22:06 +0000458 EmitBlock(createBasicBlock("unreachable.cont"));
John McCall20f6ab82011-01-12 03:41:02 +0000459
460 return RValue::get(0);
Chris Lattnerbf206382009-09-21 03:09:59 +0000461 }
Jim Grosbachd3608f42012-09-21 00:18:27 +0000462
Daniel Dunbarc2f67962008-07-21 18:44:41 +0000463 case Builtin::BI__builtin_powi:
464 case Builtin::BI__builtin_powif:
465 case Builtin::BI__builtin_powil: {
466 Value *Base = EmitScalarExpr(E->getArg(0));
467 Value *Exponent = EmitScalarExpr(E->getArg(1));
Chris Lattnera5f58b02011-07-09 17:41:47 +0000468 llvm::Type *ArgType = Base->getType();
Benjamin Kramer8d375ce2011-07-14 17:45:50 +0000469 Value *F = CGM.getIntrinsic(Intrinsic::powi, ArgType);
Benjamin Kramer76399eb2011-09-27 21:06:10 +0000470 return RValue::get(Builder.CreateCall2(F, Base, Exponent));
Daniel Dunbarc2f67962008-07-21 18:44:41 +0000471 }
472
Chris Lattner6c9ffe92007-12-20 00:44:32 +0000473 case Builtin::BI__builtin_isgreater:
474 case Builtin::BI__builtin_isgreaterequal:
475 case Builtin::BI__builtin_isless:
476 case Builtin::BI__builtin_islessequal:
477 case Builtin::BI__builtin_islessgreater:
478 case Builtin::BI__builtin_isunordered: {
479 // Ordered comparisons: we know the arguments to these are matching scalar
480 // floating point values.
Mike Stump11289f42009-09-09 15:08:12 +0000481 Value *LHS = EmitScalarExpr(E->getArg(0));
Chris Lattner6c9ffe92007-12-20 00:44:32 +0000482 Value *RHS = EmitScalarExpr(E->getArg(1));
Mike Stump11289f42009-09-09 15:08:12 +0000483
Chris Lattner6c9ffe92007-12-20 00:44:32 +0000484 switch (BuiltinID) {
David Blaikie83d382b2011-09-23 05:06:16 +0000485 default: llvm_unreachable("Unknown ordered comparison");
Chris Lattner6c9ffe92007-12-20 00:44:32 +0000486 case Builtin::BI__builtin_isgreater:
487 LHS = Builder.CreateFCmpOGT(LHS, RHS, "cmp");
488 break;
489 case Builtin::BI__builtin_isgreaterequal:
490 LHS = Builder.CreateFCmpOGE(LHS, RHS, "cmp");
491 break;
492 case Builtin::BI__builtin_isless:
493 LHS = Builder.CreateFCmpOLT(LHS, RHS, "cmp");
494 break;
495 case Builtin::BI__builtin_islessequal:
496 LHS = Builder.CreateFCmpOLE(LHS, RHS, "cmp");
497 break;
498 case Builtin::BI__builtin_islessgreater:
499 LHS = Builder.CreateFCmpONE(LHS, RHS, "cmp");
500 break;
Mike Stump11289f42009-09-09 15:08:12 +0000501 case Builtin::BI__builtin_isunordered:
Chris Lattner6c9ffe92007-12-20 00:44:32 +0000502 LHS = Builder.CreateFCmpUNO(LHS, RHS, "cmp");
503 break;
504 }
505 // ZExt bool to int type.
Benjamin Kramer76399eb2011-09-27 21:06:10 +0000506 return RValue::get(Builder.CreateZExt(LHS, ConvertType(E->getType())));
Chris Lattner6c9ffe92007-12-20 00:44:32 +0000507 }
Eli Friedman1c277d02009-09-01 04:19:44 +0000508 case Builtin::BI__builtin_isnan: {
509 Value *V = EmitScalarExpr(E->getArg(0));
510 V = Builder.CreateFCmpUNO(V, V, "cmp");
Benjamin Kramer76399eb2011-09-27 21:06:10 +0000511 return RValue::get(Builder.CreateZExt(V, ConvertType(E->getType())));
Eli Friedman1c277d02009-09-01 04:19:44 +0000512 }
Jim Grosbachd3608f42012-09-21 00:18:27 +0000513
Chris Lattner43660c52010-05-06 05:35:16 +0000514 case Builtin::BI__builtin_isinf: {
515 // isinf(x) --> fabs(x) == infinity
516 Value *V = EmitScalarExpr(E->getArg(0));
517 V = EmitFAbs(*this, V, E->getArg(0)->getType());
Jim Grosbachd3608f42012-09-21 00:18:27 +0000518
Chris Lattner43660c52010-05-06 05:35:16 +0000519 V = Builder.CreateFCmpOEQ(V, ConstantFP::getInfinity(V->getType()),"isinf");
Benjamin Kramer76399eb2011-09-27 21:06:10 +0000520 return RValue::get(Builder.CreateZExt(V, ConvertType(E->getType())));
Chris Lattner43660c52010-05-06 05:35:16 +0000521 }
Jim Grosbachd3608f42012-09-21 00:18:27 +0000522
Chris Lattner36283262010-05-06 06:13:53 +0000523 // TODO: BI__builtin_isinf_sign
524 // isinf_sign(x) -> isinf(x) ? (signbit(x) ? -1 : 1) : 0
Benjamin Kramerfdb61d72010-05-19 11:24:26 +0000525
526 case Builtin::BI__builtin_isnormal: {
527 // isnormal(x) --> x == x && fabsf(x) < infinity && fabsf(x) >= float_min
528 Value *V = EmitScalarExpr(E->getArg(0));
529 Value *Eq = Builder.CreateFCmpOEQ(V, V, "iseq");
530
531 Value *Abs = EmitFAbs(*this, V, E->getArg(0)->getType());
532 Value *IsLessThanInf =
533 Builder.CreateFCmpULT(Abs, ConstantFP::getInfinity(V->getType()),"isinf");
534 APFloat Smallest = APFloat::getSmallestNormalized(
535 getContext().getFloatTypeSemantics(E->getArg(0)->getType()));
536 Value *IsNormal =
537 Builder.CreateFCmpUGE(Abs, ConstantFP::get(V->getContext(), Smallest),
538 "isnormal");
539 V = Builder.CreateAnd(Eq, IsLessThanInf, "and");
540 V = Builder.CreateAnd(V, IsNormal, "and");
541 return RValue::get(Builder.CreateZExt(V, ConvertType(E->getType())));
542 }
543
Chris Lattnerdbff4bf2010-05-06 06:04:13 +0000544 case Builtin::BI__builtin_isfinite: {
Julien Lerougee0d5fad2011-09-09 22:46:39 +0000545 // isfinite(x) --> x == x && fabs(x) != infinity;
Chris Lattnerdbff4bf2010-05-06 06:04:13 +0000546 Value *V = EmitScalarExpr(E->getArg(0));
547 Value *Eq = Builder.CreateFCmpOEQ(V, V, "iseq");
Jim Grosbachd3608f42012-09-21 00:18:27 +0000548
Chris Lattnerdbff4bf2010-05-06 06:04:13 +0000549 Value *Abs = EmitFAbs(*this, V, E->getArg(0)->getType());
550 Value *IsNotInf =
551 Builder.CreateFCmpUNE(Abs, ConstantFP::getInfinity(V->getType()),"isinf");
Jim Grosbachd3608f42012-09-21 00:18:27 +0000552
Chris Lattnerdbff4bf2010-05-06 06:04:13 +0000553 V = Builder.CreateAnd(Eq, IsNotInf, "and");
554 return RValue::get(Builder.CreateZExt(V, ConvertType(E->getType())));
555 }
Benjamin Kramer7039fcb2010-06-14 10:30:41 +0000556
557 case Builtin::BI__builtin_fpclassify: {
558 Value *V = EmitScalarExpr(E->getArg(5));
Chris Lattner2192fe52011-07-18 04:24:23 +0000559 llvm::Type *Ty = ConvertType(E->getArg(5)->getType());
Benjamin Kramer7039fcb2010-06-14 10:30:41 +0000560
561 // Create Result
562 BasicBlock *Begin = Builder.GetInsertBlock();
563 BasicBlock *End = createBasicBlock("fpclassify_end", this->CurFn);
564 Builder.SetInsertPoint(End);
565 PHINode *Result =
Jay Foad20c0f022011-03-30 11:28:58 +0000566 Builder.CreatePHI(ConvertType(E->getArg(0)->getType()), 4,
Benjamin Kramer7039fcb2010-06-14 10:30:41 +0000567 "fpclassify_result");
568
569 // if (V==0) return FP_ZERO
570 Builder.SetInsertPoint(Begin);
571 Value *IsZero = Builder.CreateFCmpOEQ(V, Constant::getNullValue(Ty),
572 "iszero");
573 Value *ZeroLiteral = EmitScalarExpr(E->getArg(4));
574 BasicBlock *NotZero = createBasicBlock("fpclassify_not_zero", this->CurFn);
575 Builder.CreateCondBr(IsZero, End, NotZero);
576 Result->addIncoming(ZeroLiteral, Begin);
577
578 // if (V != V) return FP_NAN
579 Builder.SetInsertPoint(NotZero);
580 Value *IsNan = Builder.CreateFCmpUNO(V, V, "cmp");
581 Value *NanLiteral = EmitScalarExpr(E->getArg(0));
582 BasicBlock *NotNan = createBasicBlock("fpclassify_not_nan", this->CurFn);
583 Builder.CreateCondBr(IsNan, End, NotNan);
584 Result->addIncoming(NanLiteral, NotZero);
585
586 // if (fabs(V) == infinity) return FP_INFINITY
587 Builder.SetInsertPoint(NotNan);
588 Value *VAbs = EmitFAbs(*this, V, E->getArg(5)->getType());
589 Value *IsInf =
590 Builder.CreateFCmpOEQ(VAbs, ConstantFP::getInfinity(V->getType()),
591 "isinf");
592 Value *InfLiteral = EmitScalarExpr(E->getArg(1));
593 BasicBlock *NotInf = createBasicBlock("fpclassify_not_inf", this->CurFn);
594 Builder.CreateCondBr(IsInf, End, NotInf);
595 Result->addIncoming(InfLiteral, NotNan);
596
597 // if (fabs(V) >= MIN_NORMAL) return FP_NORMAL else FP_SUBNORMAL
598 Builder.SetInsertPoint(NotInf);
599 APFloat Smallest = APFloat::getSmallestNormalized(
600 getContext().getFloatTypeSemantics(E->getArg(5)->getType()));
601 Value *IsNormal =
602 Builder.CreateFCmpUGE(VAbs, ConstantFP::get(V->getContext(), Smallest),
603 "isnormal");
604 Value *NormalResult =
605 Builder.CreateSelect(IsNormal, EmitScalarExpr(E->getArg(2)),
606 EmitScalarExpr(E->getArg(3)));
607 Builder.CreateBr(End);
608 Result->addIncoming(NormalResult, NotInf);
609
610 // return Result
611 Builder.SetInsertPoint(End);
612 return RValue::get(Result);
613 }
Jim Grosbachd3608f42012-09-21 00:18:27 +0000614
Eli Friedmanf6bd1502009-06-02 07:10:30 +0000615 case Builtin::BIalloca:
Reid Kleckner59e4a6f2013-11-13 22:58:53 +0000616 case Builtin::BI_alloca:
Chris Lattner22b9ff42008-06-16 17:15:14 +0000617 case Builtin::BI__builtin_alloca: {
Chris Lattner22b9ff42008-06-16 17:15:14 +0000618 Value *Size = EmitScalarExpr(E->getArg(0));
Benjamin Kramer76399eb2011-09-27 21:06:10 +0000619 return RValue::get(Builder.CreateAlloca(Builder.getInt8Ty(), Size));
Daniel Dunbar327acd72008-07-22 00:26:45 +0000620 }
Eli Friedmand6ef69a2010-01-23 19:00:10 +0000621 case Builtin::BIbzero:
Daniel Dunbar327acd72008-07-22 00:26:45 +0000622 case Builtin::BI__builtin_bzero: {
Eli Friedmana5dd5682012-08-23 03:10:17 +0000623 std::pair<llvm::Value*, unsigned> Dest =
624 EmitPointerWithAlignment(E->getArg(0));
Mon P Wangcc2ab0c2010-04-04 03:10:52 +0000625 Value *SizeVal = EmitScalarExpr(E->getArg(1));
Eli Friedmana5dd5682012-08-23 03:10:17 +0000626 Builder.CreateMemSet(Dest.first, Builder.getInt8(0), SizeVal,
627 Dest.second, false);
628 return RValue::get(Dest.first);
Chris Lattner22b9ff42008-06-16 17:15:14 +0000629 }
Eli Friedman7f4933f2009-12-17 00:14:28 +0000630 case Builtin::BImemcpy:
Eli Friedmana3a40682008-05-19 23:27:48 +0000631 case Builtin::BI__builtin_memcpy: {
Eli Friedmana5dd5682012-08-23 03:10:17 +0000632 std::pair<llvm::Value*, unsigned> Dest =
633 EmitPointerWithAlignment(E->getArg(0));
634 std::pair<llvm::Value*, unsigned> Src =
635 EmitPointerWithAlignment(E->getArg(1));
Mon P Wangcc2ab0c2010-04-04 03:10:52 +0000636 Value *SizeVal = EmitScalarExpr(E->getArg(2));
Eli Friedmana5dd5682012-08-23 03:10:17 +0000637 unsigned Align = std::min(Dest.second, Src.second);
638 Builder.CreateMemCpy(Dest.first, Src.first, SizeVal, Align, false);
639 return RValue::get(Dest.first);
Daniel Dunbar327acd72008-07-22 00:26:45 +0000640 }
Jim Grosbachd3608f42012-09-21 00:18:27 +0000641
Chris Lattner30107ed2011-04-17 00:40:24 +0000642 case Builtin::BI__builtin___memcpy_chk: {
Sylvestre Ledru33b5baf2012-09-27 10:16:10 +0000643 // fold __builtin_memcpy_chk(x, y, cst1, cst2) to memcpy iff cst1<=cst2.
Richard Smithcaf33902011-10-10 18:28:20 +0000644 llvm::APSInt Size, DstSize;
645 if (!E->getArg(2)->EvaluateAsInt(Size, CGM.getContext()) ||
646 !E->getArg(3)->EvaluateAsInt(DstSize, CGM.getContext()))
Chris Lattner30107ed2011-04-17 00:40:24 +0000647 break;
Chris Lattner30107ed2011-04-17 00:40:24 +0000648 if (Size.ugt(DstSize))
649 break;
Eli Friedmana5dd5682012-08-23 03:10:17 +0000650 std::pair<llvm::Value*, unsigned> Dest =
651 EmitPointerWithAlignment(E->getArg(0));
652 std::pair<llvm::Value*, unsigned> Src =
653 EmitPointerWithAlignment(E->getArg(1));
Chris Lattner30107ed2011-04-17 00:40:24 +0000654 Value *SizeVal = llvm::ConstantInt::get(Builder.getContext(), Size);
Eli Friedmana5dd5682012-08-23 03:10:17 +0000655 unsigned Align = std::min(Dest.second, Src.second);
656 Builder.CreateMemCpy(Dest.first, Src.first, SizeVal, Align, false);
657 return RValue::get(Dest.first);
Chris Lattner30107ed2011-04-17 00:40:24 +0000658 }
Jim Grosbachd3608f42012-09-21 00:18:27 +0000659
Fariborz Jahanian4a303072010-06-16 16:22:04 +0000660 case Builtin::BI__builtin_objc_memmove_collectable: {
Fariborz Jahanian021510e2010-06-15 22:44:06 +0000661 Value *Address = EmitScalarExpr(E->getArg(0));
662 Value *SrcAddr = EmitScalarExpr(E->getArg(1));
663 Value *SizeVal = EmitScalarExpr(E->getArg(2));
Jim Grosbachd3608f42012-09-21 00:18:27 +0000664 CGM.getObjCRuntime().EmitGCMemmoveCollectable(*this,
Fariborz Jahanian021510e2010-06-15 22:44:06 +0000665 Address, SrcAddr, SizeVal);
666 return RValue::get(Address);
667 }
Chris Lattner30107ed2011-04-17 00:40:24 +0000668
669 case Builtin::BI__builtin___memmove_chk: {
Sylvestre Ledru33b5baf2012-09-27 10:16:10 +0000670 // fold __builtin_memmove_chk(x, y, cst1, cst2) to memmove iff cst1<=cst2.
Richard Smithcaf33902011-10-10 18:28:20 +0000671 llvm::APSInt Size, DstSize;
672 if (!E->getArg(2)->EvaluateAsInt(Size, CGM.getContext()) ||
673 !E->getArg(3)->EvaluateAsInt(DstSize, CGM.getContext()))
Chris Lattner30107ed2011-04-17 00:40:24 +0000674 break;
Chris Lattner30107ed2011-04-17 00:40:24 +0000675 if (Size.ugt(DstSize))
676 break;
Eli Friedmana5dd5682012-08-23 03:10:17 +0000677 std::pair<llvm::Value*, unsigned> Dest =
678 EmitPointerWithAlignment(E->getArg(0));
679 std::pair<llvm::Value*, unsigned> Src =
680 EmitPointerWithAlignment(E->getArg(1));
Chris Lattner30107ed2011-04-17 00:40:24 +0000681 Value *SizeVal = llvm::ConstantInt::get(Builder.getContext(), Size);
Eli Friedmana5dd5682012-08-23 03:10:17 +0000682 unsigned Align = std::min(Dest.second, Src.second);
683 Builder.CreateMemMove(Dest.first, Src.first, SizeVal, Align, false);
684 return RValue::get(Dest.first);
Chris Lattner30107ed2011-04-17 00:40:24 +0000685 }
686
Eli Friedman7f4933f2009-12-17 00:14:28 +0000687 case Builtin::BImemmove:
Daniel Dunbar327acd72008-07-22 00:26:45 +0000688 case Builtin::BI__builtin_memmove: {
Eli Friedmana5dd5682012-08-23 03:10:17 +0000689 std::pair<llvm::Value*, unsigned> Dest =
690 EmitPointerWithAlignment(E->getArg(0));
691 std::pair<llvm::Value*, unsigned> Src =
692 EmitPointerWithAlignment(E->getArg(1));
Mon P Wangcc2ab0c2010-04-04 03:10:52 +0000693 Value *SizeVal = EmitScalarExpr(E->getArg(2));
Eli Friedmana5dd5682012-08-23 03:10:17 +0000694 unsigned Align = std::min(Dest.second, Src.second);
695 Builder.CreateMemMove(Dest.first, Src.first, SizeVal, Align, false);
696 return RValue::get(Dest.first);
Daniel Dunbar327acd72008-07-22 00:26:45 +0000697 }
Eli Friedman7f4933f2009-12-17 00:14:28 +0000698 case Builtin::BImemset:
Daniel Dunbar327acd72008-07-22 00:26:45 +0000699 case Builtin::BI__builtin_memset: {
Eli Friedmana5dd5682012-08-23 03:10:17 +0000700 std::pair<llvm::Value*, unsigned> Dest =
701 EmitPointerWithAlignment(E->getArg(0));
Benjamin Krameracc6b4e2010-12-30 00:13:21 +0000702 Value *ByteVal = Builder.CreateTrunc(EmitScalarExpr(E->getArg(1)),
703 Builder.getInt8Ty());
Mon P Wangcc2ab0c2010-04-04 03:10:52 +0000704 Value *SizeVal = EmitScalarExpr(E->getArg(2));
Eli Friedmana5dd5682012-08-23 03:10:17 +0000705 Builder.CreateMemSet(Dest.first, ByteVal, SizeVal, Dest.second, false);
706 return RValue::get(Dest.first);
Eli Friedmana3a40682008-05-19 23:27:48 +0000707 }
Chris Lattner30107ed2011-04-17 00:40:24 +0000708 case Builtin::BI__builtin___memset_chk: {
Sylvestre Ledru33b5baf2012-09-27 10:16:10 +0000709 // fold __builtin_memset_chk(x, y, cst1, cst2) to memset iff cst1<=cst2.
Richard Smithcaf33902011-10-10 18:28:20 +0000710 llvm::APSInt Size, DstSize;
711 if (!E->getArg(2)->EvaluateAsInt(Size, CGM.getContext()) ||
712 !E->getArg(3)->EvaluateAsInt(DstSize, CGM.getContext()))
Chris Lattner30107ed2011-04-17 00:40:24 +0000713 break;
Chris Lattner30107ed2011-04-17 00:40:24 +0000714 if (Size.ugt(DstSize))
715 break;
Eli Friedmana5dd5682012-08-23 03:10:17 +0000716 std::pair<llvm::Value*, unsigned> Dest =
717 EmitPointerWithAlignment(E->getArg(0));
Chris Lattner30107ed2011-04-17 00:40:24 +0000718 Value *ByteVal = Builder.CreateTrunc(EmitScalarExpr(E->getArg(1)),
719 Builder.getInt8Ty());
720 Value *SizeVal = llvm::ConstantInt::get(Builder.getContext(), Size);
Eli Friedmana5dd5682012-08-23 03:10:17 +0000721 Builder.CreateMemSet(Dest.first, ByteVal, SizeVal, Dest.second, false);
722 return RValue::get(Dest.first);
Chris Lattner30107ed2011-04-17 00:40:24 +0000723 }
John McCall515c3c52010-03-03 10:30:05 +0000724 case Builtin::BI__builtin_dwarf_cfa: {
725 // The offset in bytes from the first argument to the CFA.
726 //
727 // Why on earth is this in the frontend? Is there any reason at
728 // all that the backend can't reasonably determine this while
729 // lowering llvm.eh.dwarf.cfa()?
730 //
731 // TODO: If there's a satisfactory reason, add a target hook for
732 // this instead of hard-coding 0, which is correct for most targets.
733 int32_t Offset = 0;
734
Benjamin Kramer8d375ce2011-07-14 17:45:50 +0000735 Value *F = CGM.getIntrinsic(Intrinsic::eh_dwarf_cfa);
Jim Grosbachd3608f42012-09-21 00:18:27 +0000736 return RValue::get(Builder.CreateCall(F,
Chris Lattner5e016ae2010-06-27 07:15:29 +0000737 llvm::ConstantInt::get(Int32Ty, Offset)));
John McCall515c3c52010-03-03 10:30:05 +0000738 }
Eli Friedman53e38bd2008-05-20 08:59:34 +0000739 case Builtin::BI__builtin_return_address: {
Anton Korobeynikov73d50b92009-12-27 14:27:22 +0000740 Value *Depth = EmitScalarExpr(E->getArg(0));
Benjamin Kramer76399eb2011-09-27 21:06:10 +0000741 Depth = Builder.CreateIntCast(Depth, Int32Ty, false);
Benjamin Kramer8d375ce2011-07-14 17:45:50 +0000742 Value *F = CGM.getIntrinsic(Intrinsic::returnaddress);
Anton Korobeynikov73d50b92009-12-27 14:27:22 +0000743 return RValue::get(Builder.CreateCall(F, Depth));
Eli Friedman53e38bd2008-05-20 08:59:34 +0000744 }
745 case Builtin::BI__builtin_frame_address: {
Anton Korobeynikov73d50b92009-12-27 14:27:22 +0000746 Value *Depth = EmitScalarExpr(E->getArg(0));
Benjamin Kramer76399eb2011-09-27 21:06:10 +0000747 Depth = Builder.CreateIntCast(Depth, Int32Ty, false);
Benjamin Kramer8d375ce2011-07-14 17:45:50 +0000748 Value *F = CGM.getIntrinsic(Intrinsic::frameaddress);
Anton Korobeynikov73d50b92009-12-27 14:27:22 +0000749 return RValue::get(Builder.CreateCall(F, Depth));
Eli Friedman53e38bd2008-05-20 08:59:34 +0000750 }
Eli Friedman5b73b5e2009-05-03 19:23:23 +0000751 case Builtin::BI__builtin_extract_return_addr: {
John McCalld4f4b7f2010-03-03 04:15:11 +0000752 Value *Address = EmitScalarExpr(E->getArg(0));
753 Value *Result = getTargetHooks().decodeReturnAddress(*this, Address);
754 return RValue::get(Result);
755 }
756 case Builtin::BI__builtin_frob_return_addr: {
757 Value *Address = EmitScalarExpr(E->getArg(0));
758 Value *Result = getTargetHooks().encodeReturnAddress(*this, Address);
759 return RValue::get(Result);
Eli Friedman5b73b5e2009-05-03 19:23:23 +0000760 }
John McCallbeec5a02010-03-06 00:35:14 +0000761 case Builtin::BI__builtin_dwarf_sp_column: {
Chris Lattner2192fe52011-07-18 04:24:23 +0000762 llvm::IntegerType *Ty
John McCallbeec5a02010-03-06 00:35:14 +0000763 = cast<llvm::IntegerType>(ConvertType(E->getType()));
764 int Column = getTargetHooks().getDwarfEHStackPointer(CGM);
765 if (Column == -1) {
766 CGM.ErrorUnsupported(E, "__builtin_dwarf_sp_column");
767 return RValue::get(llvm::UndefValue::get(Ty));
768 }
769 return RValue::get(llvm::ConstantInt::get(Ty, Column, true));
770 }
771 case Builtin::BI__builtin_init_dwarf_reg_size_table: {
772 Value *Address = EmitScalarExpr(E->getArg(0));
773 if (getTargetHooks().initDwarfEHRegSizeTable(*this, Address))
774 CGM.ErrorUnsupported(E, "__builtin_init_dwarf_reg_size_table");
775 return RValue::get(llvm::UndefValue::get(ConvertType(E->getType())));
776 }
John McCall66769f82010-03-03 05:38:58 +0000777 case Builtin::BI__builtin_eh_return: {
778 Value *Int = EmitScalarExpr(E->getArg(0));
779 Value *Ptr = EmitScalarExpr(E->getArg(1));
780
Chris Lattner2192fe52011-07-18 04:24:23 +0000781 llvm::IntegerType *IntTy = cast<llvm::IntegerType>(Int->getType());
John McCall66769f82010-03-03 05:38:58 +0000782 assert((IntTy->getBitWidth() == 32 || IntTy->getBitWidth() == 64) &&
783 "LLVM's __builtin_eh_return only supports 32- and 64-bit variants");
784 Value *F = CGM.getIntrinsic(IntTy->getBitWidth() == 32
785 ? Intrinsic::eh_return_i32
Benjamin Kramer8d375ce2011-07-14 17:45:50 +0000786 : Intrinsic::eh_return_i64);
John McCall66769f82010-03-03 05:38:58 +0000787 Builder.CreateCall2(F, Int, Ptr);
John McCall20f6ab82011-01-12 03:41:02 +0000788 Builder.CreateUnreachable();
789
790 // We do need to preserve an insertion point.
John McCallad7c5c12011-02-08 08:22:06 +0000791 EmitBlock(createBasicBlock("builtin_eh_return.cont"));
John McCall20f6ab82011-01-12 03:41:02 +0000792
793 return RValue::get(0);
John McCall66769f82010-03-03 05:38:58 +0000794 }
Eli Friedmancb9d07c2009-06-02 09:37:50 +0000795 case Builtin::BI__builtin_unwind_init: {
Benjamin Kramer8d375ce2011-07-14 17:45:50 +0000796 Value *F = CGM.getIntrinsic(Intrinsic::eh_unwind_init);
Eli Friedmancb9d07c2009-06-02 09:37:50 +0000797 return RValue::get(Builder.CreateCall(F));
798 }
John McCall4b613fa2010-03-02 02:31:24 +0000799 case Builtin::BI__builtin_extend_pointer: {
800 // Extends a pointer to the size of an _Unwind_Word, which is
John McCallb6cc2c042010-03-02 03:50:12 +0000801 // uint64_t on all platforms. Generally this gets poked into a
802 // register and eventually used as an address, so if the
803 // addressing registers are wider than pointers and the platform
804 // doesn't implicitly ignore high-order bits when doing
805 // addressing, we need to make sure we zext / sext based on
806 // the platform's expectations.
John McCall4b613fa2010-03-02 02:31:24 +0000807 //
808 // See: http://gcc.gnu.org/ml/gcc-bugs/2002-02/msg00237.html
John McCallb6cc2c042010-03-02 03:50:12 +0000809
John McCallb6cc2c042010-03-02 03:50:12 +0000810 // Cast the pointer to intptr_t.
John McCall4b613fa2010-03-02 02:31:24 +0000811 Value *Ptr = EmitScalarExpr(E->getArg(0));
John McCallb6cc2c042010-03-02 03:50:12 +0000812 Value *Result = Builder.CreatePtrToInt(Ptr, IntPtrTy, "extend.cast");
813
814 // If that's 64 bits, we're done.
815 if (IntPtrTy->getBitWidth() == 64)
816 return RValue::get(Result);
817
818 // Otherwise, ask the codegen data what to do.
John McCalld4f4b7f2010-03-03 04:15:11 +0000819 if (getTargetHooks().extendPointerWithSExt())
John McCallb6cc2c042010-03-02 03:50:12 +0000820 return RValue::get(Builder.CreateSExt(Result, Int64Ty, "extend.sext"));
821 else
822 return RValue::get(Builder.CreateZExt(Result, Int64Ty, "extend.zext"));
John McCall4b613fa2010-03-02 02:31:24 +0000823 }
Eli Friedmancb9d07c2009-06-02 09:37:50 +0000824 case Builtin::BI__builtin_setjmp: {
John McCall02269a62010-05-27 18:47:06 +0000825 // Buffer is a void**.
Eli Friedmancb9d07c2009-06-02 09:37:50 +0000826 Value *Buf = EmitScalarExpr(E->getArg(0));
John McCall02269a62010-05-27 18:47:06 +0000827
828 // Store the frame pointer to the setjmp buffer.
Eli Friedmancb9d07c2009-06-02 09:37:50 +0000829 Value *FrameAddr =
John McCall02269a62010-05-27 18:47:06 +0000830 Builder.CreateCall(CGM.getIntrinsic(Intrinsic::frameaddress),
Chris Lattner5e016ae2010-06-27 07:15:29 +0000831 ConstantInt::get(Int32Ty, 0));
Eli Friedmancb9d07c2009-06-02 09:37:50 +0000832 Builder.CreateStore(FrameAddr, Buf);
John McCall02269a62010-05-27 18:47:06 +0000833
Jim Grosbach4cf59b92010-05-27 23:54:20 +0000834 // Store the stack pointer to the setjmp buffer.
835 Value *StackAddr =
836 Builder.CreateCall(CGM.getIntrinsic(Intrinsic::stacksave));
837 Value *StackSaveSlot =
Chris Lattner5e016ae2010-06-27 07:15:29 +0000838 Builder.CreateGEP(Buf, ConstantInt::get(Int32Ty, 2));
Jim Grosbach4cf59b92010-05-27 23:54:20 +0000839 Builder.CreateStore(StackAddr, StackSaveSlot);
840
John McCall02269a62010-05-27 18:47:06 +0000841 // Call LLVM's EH setjmp, which is lightweight.
842 Value *F = CGM.getIntrinsic(Intrinsic::eh_sjlj_setjmp);
John McCallad7c5c12011-02-08 08:22:06 +0000843 Buf = Builder.CreateBitCast(Buf, Int8PtrTy);
Eli Friedmancb9d07c2009-06-02 09:37:50 +0000844 return RValue::get(Builder.CreateCall(F, Buf));
845 }
846 case Builtin::BI__builtin_longjmp: {
Eli Friedmancb9d07c2009-06-02 09:37:50 +0000847 Value *Buf = EmitScalarExpr(E->getArg(0));
John McCallad7c5c12011-02-08 08:22:06 +0000848 Buf = Builder.CreateBitCast(Buf, Int8PtrTy);
John McCall02269a62010-05-27 18:47:06 +0000849
850 // Call LLVM's EH longjmp, which is lightweight.
851 Builder.CreateCall(CGM.getIntrinsic(Intrinsic::eh_sjlj_longjmp), Buf);
852
John McCall20f6ab82011-01-12 03:41:02 +0000853 // longjmp doesn't return; mark this as unreachable.
854 Builder.CreateUnreachable();
855
856 // We do need to preserve an insertion point.
John McCallad7c5c12011-02-08 08:22:06 +0000857 EmitBlock(createBasicBlock("longjmp.cont"));
John McCall20f6ab82011-01-12 03:41:02 +0000858
859 return RValue::get(0);
Eli Friedmancb9d07c2009-06-02 09:37:50 +0000860 }
Mon P Wangb84407d2008-05-09 22:40:52 +0000861 case Builtin::BI__sync_fetch_and_add:
Mon P Wangb84407d2008-05-09 22:40:52 +0000862 case Builtin::BI__sync_fetch_and_sub:
Chris Lattnerdc046542009-05-08 06:58:22 +0000863 case Builtin::BI__sync_fetch_and_or:
864 case Builtin::BI__sync_fetch_and_and:
865 case Builtin::BI__sync_fetch_and_xor:
866 case Builtin::BI__sync_add_and_fetch:
867 case Builtin::BI__sync_sub_and_fetch:
868 case Builtin::BI__sync_and_and_fetch:
869 case Builtin::BI__sync_or_and_fetch:
870 case Builtin::BI__sync_xor_and_fetch:
871 case Builtin::BI__sync_val_compare_and_swap:
872 case Builtin::BI__sync_bool_compare_and_swap:
873 case Builtin::BI__sync_lock_test_and_set:
874 case Builtin::BI__sync_lock_release:
Chris Lattner9cb59fa2011-04-09 03:57:26 +0000875 case Builtin::BI__sync_swap:
David Blaikie83d382b2011-09-23 05:06:16 +0000876 llvm_unreachable("Shouldn't make it through sema");
Chris Lattnerdc046542009-05-08 06:58:22 +0000877 case Builtin::BI__sync_fetch_and_add_1:
878 case Builtin::BI__sync_fetch_and_add_2:
879 case Builtin::BI__sync_fetch_and_add_4:
880 case Builtin::BI__sync_fetch_and_add_8:
881 case Builtin::BI__sync_fetch_and_add_16:
Eli Friedmane9f81132011-09-07 01:41:24 +0000882 return EmitBinaryAtomic(*this, llvm::AtomicRMWInst::Add, E);
Chris Lattnerdc046542009-05-08 06:58:22 +0000883 case Builtin::BI__sync_fetch_and_sub_1:
884 case Builtin::BI__sync_fetch_and_sub_2:
885 case Builtin::BI__sync_fetch_and_sub_4:
886 case Builtin::BI__sync_fetch_and_sub_8:
887 case Builtin::BI__sync_fetch_and_sub_16:
Eli Friedmane9f81132011-09-07 01:41:24 +0000888 return EmitBinaryAtomic(*this, llvm::AtomicRMWInst::Sub, E);
Chris Lattnerdc046542009-05-08 06:58:22 +0000889 case Builtin::BI__sync_fetch_and_or_1:
890 case Builtin::BI__sync_fetch_and_or_2:
891 case Builtin::BI__sync_fetch_and_or_4:
892 case Builtin::BI__sync_fetch_and_or_8:
893 case Builtin::BI__sync_fetch_and_or_16:
Eli Friedmane9f81132011-09-07 01:41:24 +0000894 return EmitBinaryAtomic(*this, llvm::AtomicRMWInst::Or, E);
Chris Lattnerdc046542009-05-08 06:58:22 +0000895 case Builtin::BI__sync_fetch_and_and_1:
896 case Builtin::BI__sync_fetch_and_and_2:
897 case Builtin::BI__sync_fetch_and_and_4:
898 case Builtin::BI__sync_fetch_and_and_8:
899 case Builtin::BI__sync_fetch_and_and_16:
Eli Friedmane9f81132011-09-07 01:41:24 +0000900 return EmitBinaryAtomic(*this, llvm::AtomicRMWInst::And, E);
Chris Lattnerdc046542009-05-08 06:58:22 +0000901 case Builtin::BI__sync_fetch_and_xor_1:
902 case Builtin::BI__sync_fetch_and_xor_2:
903 case Builtin::BI__sync_fetch_and_xor_4:
904 case Builtin::BI__sync_fetch_and_xor_8:
905 case Builtin::BI__sync_fetch_and_xor_16:
Eli Friedmane9f81132011-09-07 01:41:24 +0000906 return EmitBinaryAtomic(*this, llvm::AtomicRMWInst::Xor, E);
Mike Stump11289f42009-09-09 15:08:12 +0000907
Chris Lattnerdc046542009-05-08 06:58:22 +0000908 // Clang extensions: not overloaded yet.
Mon P Wangb84407d2008-05-09 22:40:52 +0000909 case Builtin::BI__sync_fetch_and_min:
Eli Friedmane9f81132011-09-07 01:41:24 +0000910 return EmitBinaryAtomic(*this, llvm::AtomicRMWInst::Min, E);
Mon P Wangb84407d2008-05-09 22:40:52 +0000911 case Builtin::BI__sync_fetch_and_max:
Eli Friedmane9f81132011-09-07 01:41:24 +0000912 return EmitBinaryAtomic(*this, llvm::AtomicRMWInst::Max, E);
Mon P Wangb84407d2008-05-09 22:40:52 +0000913 case Builtin::BI__sync_fetch_and_umin:
Eli Friedmane9f81132011-09-07 01:41:24 +0000914 return EmitBinaryAtomic(*this, llvm::AtomicRMWInst::UMin, E);
Mon P Wangb84407d2008-05-09 22:40:52 +0000915 case Builtin::BI__sync_fetch_and_umax:
Eli Friedmane9f81132011-09-07 01:41:24 +0000916 return EmitBinaryAtomic(*this, llvm::AtomicRMWInst::UMax, E);
Daniel Dunbar4fab57d2009-04-07 00:55:51 +0000917
Chris Lattnerdc046542009-05-08 06:58:22 +0000918 case Builtin::BI__sync_add_and_fetch_1:
919 case Builtin::BI__sync_add_and_fetch_2:
920 case Builtin::BI__sync_add_and_fetch_4:
921 case Builtin::BI__sync_add_and_fetch_8:
922 case Builtin::BI__sync_add_and_fetch_16:
Eli Friedmane9f81132011-09-07 01:41:24 +0000923 return EmitBinaryAtomicPost(*this, llvm::AtomicRMWInst::Add, E,
Daniel Dunbar4fab57d2009-04-07 00:55:51 +0000924 llvm::Instruction::Add);
Chris Lattnerdc046542009-05-08 06:58:22 +0000925 case Builtin::BI__sync_sub_and_fetch_1:
926 case Builtin::BI__sync_sub_and_fetch_2:
927 case Builtin::BI__sync_sub_and_fetch_4:
928 case Builtin::BI__sync_sub_and_fetch_8:
929 case Builtin::BI__sync_sub_and_fetch_16:
Eli Friedmane9f81132011-09-07 01:41:24 +0000930 return EmitBinaryAtomicPost(*this, llvm::AtomicRMWInst::Sub, E,
Daniel Dunbar4fab57d2009-04-07 00:55:51 +0000931 llvm::Instruction::Sub);
Chris Lattnerdc046542009-05-08 06:58:22 +0000932 case Builtin::BI__sync_and_and_fetch_1:
933 case Builtin::BI__sync_and_and_fetch_2:
934 case Builtin::BI__sync_and_and_fetch_4:
935 case Builtin::BI__sync_and_and_fetch_8:
936 case Builtin::BI__sync_and_and_fetch_16:
Eli Friedmane9f81132011-09-07 01:41:24 +0000937 return EmitBinaryAtomicPost(*this, llvm::AtomicRMWInst::And, E,
Daniel Dunbar4fab57d2009-04-07 00:55:51 +0000938 llvm::Instruction::And);
Chris Lattnerdc046542009-05-08 06:58:22 +0000939 case Builtin::BI__sync_or_and_fetch_1:
940 case Builtin::BI__sync_or_and_fetch_2:
941 case Builtin::BI__sync_or_and_fetch_4:
942 case Builtin::BI__sync_or_and_fetch_8:
943 case Builtin::BI__sync_or_and_fetch_16:
Eli Friedmane9f81132011-09-07 01:41:24 +0000944 return EmitBinaryAtomicPost(*this, llvm::AtomicRMWInst::Or, E,
Daniel Dunbar4fab57d2009-04-07 00:55:51 +0000945 llvm::Instruction::Or);
Chris Lattnerdc046542009-05-08 06:58:22 +0000946 case Builtin::BI__sync_xor_and_fetch_1:
947 case Builtin::BI__sync_xor_and_fetch_2:
948 case Builtin::BI__sync_xor_and_fetch_4:
949 case Builtin::BI__sync_xor_and_fetch_8:
950 case Builtin::BI__sync_xor_and_fetch_16:
Eli Friedmane9f81132011-09-07 01:41:24 +0000951 return EmitBinaryAtomicPost(*this, llvm::AtomicRMWInst::Xor, E,
Daniel Dunbar4fab57d2009-04-07 00:55:51 +0000952 llvm::Instruction::Xor);
Mike Stump11289f42009-09-09 15:08:12 +0000953
Chris Lattnerdc046542009-05-08 06:58:22 +0000954 case Builtin::BI__sync_val_compare_and_swap_1:
955 case Builtin::BI__sync_val_compare_and_swap_2:
956 case Builtin::BI__sync_val_compare_and_swap_4:
957 case Builtin::BI__sync_val_compare_and_swap_8:
Daniel Dunbar4ff562d2010-03-20 07:04:11 +0000958 case Builtin::BI__sync_val_compare_and_swap_16: {
John McCall3a7f6922010-10-27 20:58:56 +0000959 QualType T = E->getType();
John McCallad7c5c12011-02-08 08:22:06 +0000960 llvm::Value *DestPtr = EmitScalarExpr(E->getArg(0));
Micah Villmowea2fea22012-10-25 15:39:14 +0000961 unsigned AddrSpace = DestPtr->getType()->getPointerAddressSpace();
Jim Grosbachd3608f42012-09-21 00:18:27 +0000962
Chris Lattnera5f58b02011-07-09 17:41:47 +0000963 llvm::IntegerType *IntType =
John McCallad7c5c12011-02-08 08:22:06 +0000964 llvm::IntegerType::get(getLLVMContext(),
965 getContext().getTypeSize(T));
Chris Lattnera5f58b02011-07-09 17:41:47 +0000966 llvm::Type *IntPtrType = IntType->getPointerTo(AddrSpace);
Chandler Carruthbc8cab12010-07-18 07:23:17 +0000967
John McCall3a7f6922010-10-27 20:58:56 +0000968 Value *Args[3];
969 Args[0] = Builder.CreateBitCast(DestPtr, IntPtrType);
John McCallad7c5c12011-02-08 08:22:06 +0000970 Args[1] = EmitScalarExpr(E->getArg(1));
Chris Lattner2192fe52011-07-18 04:24:23 +0000971 llvm::Type *ValueType = Args[1]->getType();
John McCallad7c5c12011-02-08 08:22:06 +0000972 Args[1] = EmitToInt(*this, Args[1], T, IntType);
973 Args[2] = EmitToInt(*this, EmitScalarExpr(E->getArg(2)), T, IntType);
John McCall3a7f6922010-10-27 20:58:56 +0000974
Eli Friedmane9f81132011-09-07 01:41:24 +0000975 Value *Result = Builder.CreateAtomicCmpXchg(Args[0], Args[1], Args[2],
Tim Northover0622b3a2014-03-11 10:49:03 +0000976 llvm::SequentiallyConsistent,
Eli Friedmane9f81132011-09-07 01:41:24 +0000977 llvm::SequentiallyConsistent);
John McCallad7c5c12011-02-08 08:22:06 +0000978 Result = EmitFromInt(*this, Result, T, ValueType);
John McCall3a7f6922010-10-27 20:58:56 +0000979 return RValue::get(Result);
Anders Carlssonceced4c2007-10-29 02:59:40 +0000980 }
Daniel Dunbar4fab57d2009-04-07 00:55:51 +0000981
Chris Lattnerdc046542009-05-08 06:58:22 +0000982 case Builtin::BI__sync_bool_compare_and_swap_1:
983 case Builtin::BI__sync_bool_compare_and_swap_2:
984 case Builtin::BI__sync_bool_compare_and_swap_4:
985 case Builtin::BI__sync_bool_compare_and_swap_8:
Daniel Dunbar4ff562d2010-03-20 07:04:11 +0000986 case Builtin::BI__sync_bool_compare_and_swap_16: {
John McCall3a7f6922010-10-27 20:58:56 +0000987 QualType T = E->getArg(1)->getType();
John McCallad7c5c12011-02-08 08:22:06 +0000988 llvm::Value *DestPtr = EmitScalarExpr(E->getArg(0));
Micah Villmowea2fea22012-10-25 15:39:14 +0000989 unsigned AddrSpace = DestPtr->getType()->getPointerAddressSpace();
Jim Grosbachd3608f42012-09-21 00:18:27 +0000990
Chris Lattnera5f58b02011-07-09 17:41:47 +0000991 llvm::IntegerType *IntType =
John McCallad7c5c12011-02-08 08:22:06 +0000992 llvm::IntegerType::get(getLLVMContext(),
993 getContext().getTypeSize(T));
Chris Lattnera5f58b02011-07-09 17:41:47 +0000994 llvm::Type *IntPtrType = IntType->getPointerTo(AddrSpace);
Chandler Carruthbc8cab12010-07-18 07:23:17 +0000995
John McCall3a7f6922010-10-27 20:58:56 +0000996 Value *Args[3];
997 Args[0] = Builder.CreateBitCast(DestPtr, IntPtrType);
John McCallad7c5c12011-02-08 08:22:06 +0000998 Args[1] = EmitToInt(*this, EmitScalarExpr(E->getArg(1)), T, IntType);
999 Args[2] = EmitToInt(*this, EmitScalarExpr(E->getArg(2)), T, IntType);
John McCall3a7f6922010-10-27 20:58:56 +00001000
Chandler Carruthbc8cab12010-07-18 07:23:17 +00001001 Value *OldVal = Args[1];
Eli Friedmane9f81132011-09-07 01:41:24 +00001002 Value *PrevVal = Builder.CreateAtomicCmpXchg(Args[0], Args[1], Args[2],
Tim Northover0622b3a2014-03-11 10:49:03 +00001003 llvm::SequentiallyConsistent,
Eli Friedmane9f81132011-09-07 01:41:24 +00001004 llvm::SequentiallyConsistent);
Daniel Dunbar4fab57d2009-04-07 00:55:51 +00001005 Value *Result = Builder.CreateICmpEQ(PrevVal, OldVal);
1006 // zext bool to int.
John McCall3a7f6922010-10-27 20:58:56 +00001007 Result = Builder.CreateZExt(Result, ConvertType(E->getType()));
1008 return RValue::get(Result);
Daniel Dunbar4fab57d2009-04-07 00:55:51 +00001009 }
1010
Chris Lattner9cb59fa2011-04-09 03:57:26 +00001011 case Builtin::BI__sync_swap_1:
1012 case Builtin::BI__sync_swap_2:
1013 case Builtin::BI__sync_swap_4:
1014 case Builtin::BI__sync_swap_8:
1015 case Builtin::BI__sync_swap_16:
Eli Friedmane9f81132011-09-07 01:41:24 +00001016 return EmitBinaryAtomic(*this, llvm::AtomicRMWInst::Xchg, E);
Chris Lattner9cb59fa2011-04-09 03:57:26 +00001017
Chris Lattnerdc046542009-05-08 06:58:22 +00001018 case Builtin::BI__sync_lock_test_and_set_1:
1019 case Builtin::BI__sync_lock_test_and_set_2:
1020 case Builtin::BI__sync_lock_test_and_set_4:
1021 case Builtin::BI__sync_lock_test_and_set_8:
1022 case Builtin::BI__sync_lock_test_and_set_16:
Eli Friedmane9f81132011-09-07 01:41:24 +00001023 return EmitBinaryAtomic(*this, llvm::AtomicRMWInst::Xchg, E);
Daniel Dunbar4ff562d2010-03-20 07:04:11 +00001024
Chris Lattnerdc046542009-05-08 06:58:22 +00001025 case Builtin::BI__sync_lock_release_1:
1026 case Builtin::BI__sync_lock_release_2:
1027 case Builtin::BI__sync_lock_release_4:
1028 case Builtin::BI__sync_lock_release_8:
Chris Lattnerafde2592009-05-13 04:46:13 +00001029 case Builtin::BI__sync_lock_release_16: {
1030 Value *Ptr = EmitScalarExpr(E->getArg(0));
Eli Friedman84d28122011-09-13 22:21:56 +00001031 QualType ElTy = E->getArg(0)->getType()->getPointeeType();
1032 CharUnits StoreSize = getContext().getTypeSizeInChars(ElTy);
Eli Friedmanfefe0d02012-03-16 01:48:04 +00001033 llvm::Type *ITy = llvm::IntegerType::get(getLLVMContext(),
1034 StoreSize.getQuantity() * 8);
1035 Ptr = Builder.CreateBitCast(Ptr, ITy->getPointerTo());
Jim Grosbachd3608f42012-09-21 00:18:27 +00001036 llvm::StoreInst *Store =
Eli Friedmanfefe0d02012-03-16 01:48:04 +00001037 Builder.CreateStore(llvm::Constant::getNullValue(ITy), Ptr);
Eli Friedman84d28122011-09-13 22:21:56 +00001038 Store->setAlignment(StoreSize.getQuantity());
1039 Store->setAtomic(llvm::Release);
Daniel Dunbar16f422e2009-05-27 23:45:33 +00001040 return RValue::get(0);
Chris Lattnerafde2592009-05-13 04:46:13 +00001041 }
Daniel Dunbar8eb018a2009-02-16 22:43:43 +00001042
Chris Lattnerafde2592009-05-13 04:46:13 +00001043 case Builtin::BI__sync_synchronize: {
Eli Friedmane9f81132011-09-07 01:41:24 +00001044 // We assume this is supposed to correspond to a C++0x-style
1045 // sequentially-consistent fence (i.e. this is only usable for
1046 // synchonization, not device I/O or anything like that). This intrinsic
Jim Grosbachd3608f42012-09-21 00:18:27 +00001047 // is really badly designed in the sense that in theory, there isn't
Eli Friedmane9f81132011-09-07 01:41:24 +00001048 // any way to safely use it... but in practice, it mostly works
1049 // to use it with non-atomic loads and stores to get acquire/release
1050 // semantics.
1051 Builder.CreateFence(llvm::SequentiallyConsistent);
Daniel Dunbar16f422e2009-05-27 23:45:33 +00001052 return RValue::get(0);
Chris Lattnerafde2592009-05-13 04:46:13 +00001053 }
Mike Stump11289f42009-09-09 15:08:12 +00001054
Richard Smith01ba47d2012-04-13 00:45:38 +00001055 case Builtin::BI__c11_atomic_is_lock_free:
1056 case Builtin::BI__atomic_is_lock_free: {
1057 // Call "bool __atomic_is_lock_free(size_t size, void *ptr)". For the
1058 // __c11 builtin, ptr is 0 (indicating a properly-aligned object), since
1059 // _Atomic(T) is always properly-aligned.
1060 const char *LibCallName = "__atomic_is_lock_free";
1061 CallArgList Args;
1062 Args.add(RValue::get(EmitScalarExpr(E->getArg(0))),
1063 getContext().getSizeType());
1064 if (BuiltinID == Builtin::BI__atomic_is_lock_free)
1065 Args.add(RValue::get(EmitScalarExpr(E->getArg(1))),
1066 getContext().VoidPtrTy);
1067 else
1068 Args.add(RValue::get(llvm::Constant::getNullValue(VoidPtrTy)),
1069 getContext().VoidPtrTy);
1070 const CGFunctionInfo &FuncInfo =
John McCall8dda7b22012-07-07 06:41:13 +00001071 CGM.getTypes().arrangeFreeFunctionCall(E->getType(), Args,
1072 FunctionType::ExtInfo(),
1073 RequiredArgs::All);
Richard Smith01ba47d2012-04-13 00:45:38 +00001074 llvm::FunctionType *FTy = CGM.getTypes().GetFunctionType(FuncInfo);
1075 llvm::Constant *Func = CGM.CreateRuntimeFunction(FTy, LibCallName);
1076 return EmitCall(FuncInfo, Func, ReturnValueSlot(), Args);
1077 }
1078
1079 case Builtin::BI__atomic_test_and_set: {
1080 // Look at the argument type to determine whether this is a volatile
1081 // operation. The parameter type is always volatile.
1082 QualType PtrTy = E->getArg(0)->IgnoreImpCasts()->getType();
1083 bool Volatile =
1084 PtrTy->castAs<PointerType>()->getPointeeType().isVolatileQualified();
1085
1086 Value *Ptr = EmitScalarExpr(E->getArg(0));
Micah Villmowea2fea22012-10-25 15:39:14 +00001087 unsigned AddrSpace = Ptr->getType()->getPointerAddressSpace();
Richard Smith01ba47d2012-04-13 00:45:38 +00001088 Ptr = Builder.CreateBitCast(Ptr, Int8Ty->getPointerTo(AddrSpace));
1089 Value *NewVal = Builder.getInt8(1);
1090 Value *Order = EmitScalarExpr(E->getArg(1));
1091 if (isa<llvm::ConstantInt>(Order)) {
1092 int ord = cast<llvm::ConstantInt>(Order)->getZExtValue();
1093 AtomicRMWInst *Result = 0;
1094 switch (ord) {
1095 case 0: // memory_order_relaxed
1096 default: // invalid order
1097 Result = Builder.CreateAtomicRMW(llvm::AtomicRMWInst::Xchg,
1098 Ptr, NewVal,
1099 llvm::Monotonic);
1100 break;
1101 case 1: // memory_order_consume
1102 case 2: // memory_order_acquire
1103 Result = Builder.CreateAtomicRMW(llvm::AtomicRMWInst::Xchg,
1104 Ptr, NewVal,
1105 llvm::Acquire);
1106 break;
1107 case 3: // memory_order_release
1108 Result = Builder.CreateAtomicRMW(llvm::AtomicRMWInst::Xchg,
1109 Ptr, NewVal,
1110 llvm::Release);
1111 break;
1112 case 4: // memory_order_acq_rel
1113 Result = Builder.CreateAtomicRMW(llvm::AtomicRMWInst::Xchg,
1114 Ptr, NewVal,
1115 llvm::AcquireRelease);
1116 break;
1117 case 5: // memory_order_seq_cst
1118 Result = Builder.CreateAtomicRMW(llvm::AtomicRMWInst::Xchg,
1119 Ptr, NewVal,
1120 llvm::SequentiallyConsistent);
1121 break;
1122 }
1123 Result->setVolatile(Volatile);
1124 return RValue::get(Builder.CreateIsNotNull(Result, "tobool"));
1125 }
1126
1127 llvm::BasicBlock *ContBB = createBasicBlock("atomic.continue", CurFn);
1128
1129 llvm::BasicBlock *BBs[5] = {
1130 createBasicBlock("monotonic", CurFn),
1131 createBasicBlock("acquire", CurFn),
1132 createBasicBlock("release", CurFn),
1133 createBasicBlock("acqrel", CurFn),
1134 createBasicBlock("seqcst", CurFn)
1135 };
1136 llvm::AtomicOrdering Orders[5] = {
1137 llvm::Monotonic, llvm::Acquire, llvm::Release,
1138 llvm::AcquireRelease, llvm::SequentiallyConsistent
1139 };
1140
1141 Order = Builder.CreateIntCast(Order, Builder.getInt32Ty(), false);
1142 llvm::SwitchInst *SI = Builder.CreateSwitch(Order, BBs[0]);
1143
1144 Builder.SetInsertPoint(ContBB);
1145 PHINode *Result = Builder.CreatePHI(Int8Ty, 5, "was_set");
1146
1147 for (unsigned i = 0; i < 5; ++i) {
1148 Builder.SetInsertPoint(BBs[i]);
1149 AtomicRMWInst *RMW = Builder.CreateAtomicRMW(llvm::AtomicRMWInst::Xchg,
1150 Ptr, NewVal, Orders[i]);
1151 RMW->setVolatile(Volatile);
1152 Result->addIncoming(RMW, BBs[i]);
1153 Builder.CreateBr(ContBB);
1154 }
1155
1156 SI->addCase(Builder.getInt32(0), BBs[0]);
1157 SI->addCase(Builder.getInt32(1), BBs[1]);
1158 SI->addCase(Builder.getInt32(2), BBs[1]);
1159 SI->addCase(Builder.getInt32(3), BBs[2]);
1160 SI->addCase(Builder.getInt32(4), BBs[3]);
1161 SI->addCase(Builder.getInt32(5), BBs[4]);
1162
1163 Builder.SetInsertPoint(ContBB);
1164 return RValue::get(Builder.CreateIsNotNull(Result, "tobool"));
1165 }
1166
1167 case Builtin::BI__atomic_clear: {
1168 QualType PtrTy = E->getArg(0)->IgnoreImpCasts()->getType();
1169 bool Volatile =
1170 PtrTy->castAs<PointerType>()->getPointeeType().isVolatileQualified();
1171
1172 Value *Ptr = EmitScalarExpr(E->getArg(0));
Micah Villmowea2fea22012-10-25 15:39:14 +00001173 unsigned AddrSpace = Ptr->getType()->getPointerAddressSpace();
Richard Smith01ba47d2012-04-13 00:45:38 +00001174 Ptr = Builder.CreateBitCast(Ptr, Int8Ty->getPointerTo(AddrSpace));
1175 Value *NewVal = Builder.getInt8(0);
1176 Value *Order = EmitScalarExpr(E->getArg(1));
1177 if (isa<llvm::ConstantInt>(Order)) {
1178 int ord = cast<llvm::ConstantInt>(Order)->getZExtValue();
1179 StoreInst *Store = Builder.CreateStore(NewVal, Ptr, Volatile);
1180 Store->setAlignment(1);
1181 switch (ord) {
1182 case 0: // memory_order_relaxed
1183 default: // invalid order
1184 Store->setOrdering(llvm::Monotonic);
1185 break;
1186 case 3: // memory_order_release
1187 Store->setOrdering(llvm::Release);
1188 break;
1189 case 5: // memory_order_seq_cst
1190 Store->setOrdering(llvm::SequentiallyConsistent);
1191 break;
1192 }
1193 return RValue::get(0);
1194 }
1195
1196 llvm::BasicBlock *ContBB = createBasicBlock("atomic.continue", CurFn);
1197
1198 llvm::BasicBlock *BBs[3] = {
1199 createBasicBlock("monotonic", CurFn),
1200 createBasicBlock("release", CurFn),
1201 createBasicBlock("seqcst", CurFn)
1202 };
1203 llvm::AtomicOrdering Orders[3] = {
1204 llvm::Monotonic, llvm::Release, llvm::SequentiallyConsistent
1205 };
1206
1207 Order = Builder.CreateIntCast(Order, Builder.getInt32Ty(), false);
1208 llvm::SwitchInst *SI = Builder.CreateSwitch(Order, BBs[0]);
1209
1210 for (unsigned i = 0; i < 3; ++i) {
1211 Builder.SetInsertPoint(BBs[i]);
1212 StoreInst *Store = Builder.CreateStore(NewVal, Ptr, Volatile);
1213 Store->setAlignment(1);
1214 Store->setOrdering(Orders[i]);
1215 Builder.CreateBr(ContBB);
1216 }
1217
1218 SI->addCase(Builder.getInt32(0), BBs[0]);
1219 SI->addCase(Builder.getInt32(3), BBs[1]);
1220 SI->addCase(Builder.getInt32(5), BBs[2]);
1221
1222 Builder.SetInsertPoint(ContBB);
1223 return RValue::get(0);
1224 }
1225
Eli Friedmandf14b3a2011-10-11 02:20:01 +00001226 case Builtin::BI__atomic_thread_fence:
Richard Smithb1e36c62012-04-11 17:55:32 +00001227 case Builtin::BI__atomic_signal_fence:
1228 case Builtin::BI__c11_atomic_thread_fence:
1229 case Builtin::BI__c11_atomic_signal_fence: {
Eli Friedmandf14b3a2011-10-11 02:20:01 +00001230 llvm::SynchronizationScope Scope;
Richard Smithb1e36c62012-04-11 17:55:32 +00001231 if (BuiltinID == Builtin::BI__atomic_signal_fence ||
1232 BuiltinID == Builtin::BI__c11_atomic_signal_fence)
Eli Friedmandf14b3a2011-10-11 02:20:01 +00001233 Scope = llvm::SingleThread;
1234 else
1235 Scope = llvm::CrossThread;
1236 Value *Order = EmitScalarExpr(E->getArg(0));
1237 if (isa<llvm::ConstantInt>(Order)) {
1238 int ord = cast<llvm::ConstantInt>(Order)->getZExtValue();
1239 switch (ord) {
1240 case 0: // memory_order_relaxed
1241 default: // invalid order
1242 break;
1243 case 1: // memory_order_consume
1244 case 2: // memory_order_acquire
1245 Builder.CreateFence(llvm::Acquire, Scope);
1246 break;
1247 case 3: // memory_order_release
1248 Builder.CreateFence(llvm::Release, Scope);
1249 break;
1250 case 4: // memory_order_acq_rel
1251 Builder.CreateFence(llvm::AcquireRelease, Scope);
1252 break;
1253 case 5: // memory_order_seq_cst
1254 Builder.CreateFence(llvm::SequentiallyConsistent, Scope);
1255 break;
1256 }
1257 return RValue::get(0);
1258 }
1259
1260 llvm::BasicBlock *AcquireBB, *ReleaseBB, *AcqRelBB, *SeqCstBB;
1261 AcquireBB = createBasicBlock("acquire", CurFn);
1262 ReleaseBB = createBasicBlock("release", CurFn);
1263 AcqRelBB = createBasicBlock("acqrel", CurFn);
1264 SeqCstBB = createBasicBlock("seqcst", CurFn);
1265 llvm::BasicBlock *ContBB = createBasicBlock("atomic.continue", CurFn);
1266
1267 Order = Builder.CreateIntCast(Order, Builder.getInt32Ty(), false);
1268 llvm::SwitchInst *SI = Builder.CreateSwitch(Order, ContBB);
1269
1270 Builder.SetInsertPoint(AcquireBB);
1271 Builder.CreateFence(llvm::Acquire, Scope);
1272 Builder.CreateBr(ContBB);
1273 SI->addCase(Builder.getInt32(1), AcquireBB);
1274 SI->addCase(Builder.getInt32(2), AcquireBB);
1275
1276 Builder.SetInsertPoint(ReleaseBB);
1277 Builder.CreateFence(llvm::Release, Scope);
1278 Builder.CreateBr(ContBB);
1279 SI->addCase(Builder.getInt32(3), ReleaseBB);
1280
1281 Builder.SetInsertPoint(AcqRelBB);
1282 Builder.CreateFence(llvm::AcquireRelease, Scope);
1283 Builder.CreateBr(ContBB);
1284 SI->addCase(Builder.getInt32(4), AcqRelBB);
1285
1286 Builder.SetInsertPoint(SeqCstBB);
1287 Builder.CreateFence(llvm::SequentiallyConsistent, Scope);
1288 Builder.CreateBr(ContBB);
1289 SI->addCase(Builder.getInt32(5), SeqCstBB);
1290
1291 Builder.SetInsertPoint(ContBB);
1292 return RValue::get(0);
1293 }
1294
Daniel Dunbar8eb018a2009-02-16 22:43:43 +00001295 // Library functions with special handling.
Daniel Dunbar8eb018a2009-02-16 22:43:43 +00001296 case Builtin::BIsqrt:
1297 case Builtin::BIsqrtf:
1298 case Builtin::BIsqrtl: {
Hal Finkel28b2ae32013-09-12 23:57:55 +00001299 // Transform a call to sqrt* into a @llvm.sqrt.* intrinsic call, but only
1300 // in finite- or unsafe-math mode (the intrinsic has different semantics
1301 // for handling negative numbers compared to the library function, so
1302 // -fmath-errno=0 is not enough).
1303 if (!FD->hasAttr<ConstAttr>())
1304 break;
1305 if (!(CGM.getCodeGenOpts().UnsafeFPMath ||
1306 CGM.getCodeGenOpts().NoNaNsFPMath))
1307 break;
1308 Value *Arg0 = EmitScalarExpr(E->getArg(0));
1309 llvm::Type *ArgType = Arg0->getType();
1310 Value *F = CGM.getIntrinsic(Intrinsic::sqrt, ArgType);
1311 return RValue::get(Builder.CreateCall(F, Arg0));
Daniel Dunbar8eb018a2009-02-16 22:43:43 +00001312 }
1313
1314 case Builtin::BIpow:
1315 case Builtin::BIpowf:
1316 case Builtin::BIpowl: {
Eli Benderskyc3496b02013-07-24 21:22:01 +00001317 // Transform a call to pow* into a @llvm.pow.* intrinsic call.
1318 if (!FD->hasAttr<ConstAttr>())
1319 break;
1320 Value *Base = EmitScalarExpr(E->getArg(0));
1321 Value *Exponent = EmitScalarExpr(E->getArg(1));
1322 llvm::Type *ArgType = Base->getType();
1323 Value *F = CGM.getIntrinsic(Intrinsic::pow, ArgType);
1324 return RValue::get(Builder.CreateCall2(F, Base, Exponent));
Daniel Dunbar8eb018a2009-02-16 22:43:43 +00001325 }
Eli Friedman99d20f82010-03-06 02:17:52 +00001326
Cameron Zwarichae7bc982011-07-08 21:39:34 +00001327 case Builtin::BIfma:
1328 case Builtin::BIfmaf:
1329 case Builtin::BIfmal:
1330 case Builtin::BI__builtin_fma:
1331 case Builtin::BI__builtin_fmaf:
1332 case Builtin::BI__builtin_fmal: {
1333 // Rewrite fma to intrinsic.
1334 Value *FirstArg = EmitScalarExpr(E->getArg(0));
Chris Lattnera5f58b02011-07-09 17:41:47 +00001335 llvm::Type *ArgType = FirstArg->getType();
Benjamin Kramer8d375ce2011-07-14 17:45:50 +00001336 Value *F = CGM.getIntrinsic(Intrinsic::fma, ArgType);
Cameron Zwarichae7bc982011-07-08 21:39:34 +00001337 return RValue::get(Builder.CreateCall3(F, FirstArg,
1338 EmitScalarExpr(E->getArg(1)),
Benjamin Kramer76399eb2011-09-27 21:06:10 +00001339 EmitScalarExpr(E->getArg(2))));
Cameron Zwarichae7bc982011-07-08 21:39:34 +00001340 }
1341
Eli Friedman99d20f82010-03-06 02:17:52 +00001342 case Builtin::BI__builtin_signbit:
1343 case Builtin::BI__builtin_signbitf:
1344 case Builtin::BI__builtin_signbitl: {
1345 LLVMContext &C = CGM.getLLVMContext();
1346
1347 Value *Arg = EmitScalarExpr(E->getArg(0));
Chris Lattner2192fe52011-07-18 04:24:23 +00001348 llvm::Type *ArgTy = Arg->getType();
Eli Friedman99d20f82010-03-06 02:17:52 +00001349 if (ArgTy->isPPC_FP128Ty())
1350 break; // FIXME: I'm not sure what the right implementation is here.
1351 int ArgWidth = ArgTy->getPrimitiveSizeInBits();
Chris Lattner2192fe52011-07-18 04:24:23 +00001352 llvm::Type *ArgIntTy = llvm::IntegerType::get(C, ArgWidth);
Eli Friedman99d20f82010-03-06 02:17:52 +00001353 Value *BCArg = Builder.CreateBitCast(Arg, ArgIntTy);
1354 Value *ZeroCmp = llvm::Constant::getNullValue(ArgIntTy);
1355 Value *Result = Builder.CreateICmpSLT(BCArg, ZeroCmp);
1356 return RValue::get(Builder.CreateZExt(Result, ConvertType(E->getType())));
1357 }
Julien Lerouge5a6b6982011-09-09 22:41:49 +00001358 case Builtin::BI__builtin_annotation: {
1359 llvm::Value *AnnVal = EmitScalarExpr(E->getArg(0));
1360 llvm::Value *F = CGM.getIntrinsic(llvm::Intrinsic::annotation,
1361 AnnVal->getType());
1362
1363 // Get the annotation string, go through casts. Sema requires this to be a
1364 // non-wide string literal, potentially casted, so the cast<> is safe.
1365 const Expr *AnnotationStrExpr = E->getArg(1)->IgnoreParenCasts();
Dmitri Gribenkof8579502013-01-12 19:30:44 +00001366 StringRef Str = cast<StringLiteral>(AnnotationStrExpr)->getString();
Julien Lerouge5a6b6982011-09-09 22:41:49 +00001367 return RValue::get(EmitAnnotationCall(F, AnnVal, Str, E->getExprLoc()));
1368 }
Michael Gottesman15343992013-06-18 20:40:40 +00001369 case Builtin::BI__builtin_addcb:
Michael Gottesman54398012013-01-13 02:22:39 +00001370 case Builtin::BI__builtin_addcs:
1371 case Builtin::BI__builtin_addc:
1372 case Builtin::BI__builtin_addcl:
Michael Gottesmana2b5c4b2013-01-14 21:44:30 +00001373 case Builtin::BI__builtin_addcll:
Michael Gottesman15343992013-06-18 20:40:40 +00001374 case Builtin::BI__builtin_subcb:
Michael Gottesmana2b5c4b2013-01-14 21:44:30 +00001375 case Builtin::BI__builtin_subcs:
1376 case Builtin::BI__builtin_subc:
1377 case Builtin::BI__builtin_subcl:
1378 case Builtin::BI__builtin_subcll: {
Michael Gottesman54398012013-01-13 02:22:39 +00001379
1380 // We translate all of these builtins from expressions of the form:
1381 // int x = ..., y = ..., carryin = ..., carryout, result;
1382 // result = __builtin_addc(x, y, carryin, &carryout);
1383 //
1384 // to LLVM IR of the form:
1385 //
1386 // %tmp1 = call {i32, i1} @llvm.uadd.with.overflow.i32(i32 %x, i32 %y)
1387 // %tmpsum1 = extractvalue {i32, i1} %tmp1, 0
1388 // %carry1 = extractvalue {i32, i1} %tmp1, 1
1389 // %tmp2 = call {i32, i1} @llvm.uadd.with.overflow.i32(i32 %tmpsum1,
1390 // i32 %carryin)
1391 // %result = extractvalue {i32, i1} %tmp2, 0
1392 // %carry2 = extractvalue {i32, i1} %tmp2, 1
1393 // %tmp3 = or i1 %carry1, %carry2
1394 // %tmp4 = zext i1 %tmp3 to i32
1395 // store i32 %tmp4, i32* %carryout
1396
1397 // Scalarize our inputs.
1398 llvm::Value *X = EmitScalarExpr(E->getArg(0));
1399 llvm::Value *Y = EmitScalarExpr(E->getArg(1));
1400 llvm::Value *Carryin = EmitScalarExpr(E->getArg(2));
1401 std::pair<llvm::Value*, unsigned> CarryOutPtr =
1402 EmitPointerWithAlignment(E->getArg(3));
1403
Michael Gottesmana2b5c4b2013-01-14 21:44:30 +00001404 // Decide if we are lowering to a uadd.with.overflow or usub.with.overflow.
1405 llvm::Intrinsic::ID IntrinsicId;
1406 switch (BuiltinID) {
1407 default: llvm_unreachable("Unknown multiprecision builtin id.");
Michael Gottesman15343992013-06-18 20:40:40 +00001408 case Builtin::BI__builtin_addcb:
Michael Gottesmana2b5c4b2013-01-14 21:44:30 +00001409 case Builtin::BI__builtin_addcs:
1410 case Builtin::BI__builtin_addc:
1411 case Builtin::BI__builtin_addcl:
1412 case Builtin::BI__builtin_addcll:
1413 IntrinsicId = llvm::Intrinsic::uadd_with_overflow;
1414 break;
Michael Gottesman15343992013-06-18 20:40:40 +00001415 case Builtin::BI__builtin_subcb:
Michael Gottesmana2b5c4b2013-01-14 21:44:30 +00001416 case Builtin::BI__builtin_subcs:
1417 case Builtin::BI__builtin_subc:
1418 case Builtin::BI__builtin_subcl:
1419 case Builtin::BI__builtin_subcll:
1420 IntrinsicId = llvm::Intrinsic::usub_with_overflow;
1421 break;
1422 }
Michael Gottesman54398012013-01-13 02:22:39 +00001423
1424 // Construct our resulting LLVM IR expression.
1425 llvm::Value *Carry1;
1426 llvm::Value *Sum1 = EmitOverflowIntrinsic(*this, IntrinsicId,
1427 X, Y, Carry1);
1428 llvm::Value *Carry2;
1429 llvm::Value *Sum2 = EmitOverflowIntrinsic(*this, IntrinsicId,
1430 Sum1, Carryin, Carry2);
1431 llvm::Value *CarryOut = Builder.CreateZExt(Builder.CreateOr(Carry1, Carry2),
1432 X->getType());
1433 llvm::StoreInst *CarryOutStore = Builder.CreateStore(CarryOut,
1434 CarryOutPtr.first);
1435 CarryOutStore->setAlignment(CarryOutPtr.second);
1436 return RValue::get(Sum2);
1437 }
Michael Gottesman930ecdb2013-06-20 23:28:10 +00001438 case Builtin::BI__builtin_uadd_overflow:
1439 case Builtin::BI__builtin_uaddl_overflow:
1440 case Builtin::BI__builtin_uaddll_overflow:
1441 case Builtin::BI__builtin_usub_overflow:
1442 case Builtin::BI__builtin_usubl_overflow:
1443 case Builtin::BI__builtin_usubll_overflow:
1444 case Builtin::BI__builtin_umul_overflow:
1445 case Builtin::BI__builtin_umull_overflow:
1446 case Builtin::BI__builtin_umulll_overflow:
1447 case Builtin::BI__builtin_sadd_overflow:
1448 case Builtin::BI__builtin_saddl_overflow:
1449 case Builtin::BI__builtin_saddll_overflow:
1450 case Builtin::BI__builtin_ssub_overflow:
1451 case Builtin::BI__builtin_ssubl_overflow:
1452 case Builtin::BI__builtin_ssubll_overflow:
1453 case Builtin::BI__builtin_smul_overflow:
1454 case Builtin::BI__builtin_smull_overflow:
1455 case Builtin::BI__builtin_smulll_overflow: {
1456
1457 // We translate all of these builtins directly to the relevant llvm IR node.
1458
1459 // Scalarize our inputs.
1460 llvm::Value *X = EmitScalarExpr(E->getArg(0));
1461 llvm::Value *Y = EmitScalarExpr(E->getArg(1));
1462 std::pair<llvm::Value *, unsigned> SumOutPtr =
1463 EmitPointerWithAlignment(E->getArg(2));
1464
1465 // Decide which of the overflow intrinsics we are lowering to:
1466 llvm::Intrinsic::ID IntrinsicId;
1467 switch (BuiltinID) {
1468 default: llvm_unreachable("Unknown security overflow builtin id.");
1469 case Builtin::BI__builtin_uadd_overflow:
1470 case Builtin::BI__builtin_uaddl_overflow:
1471 case Builtin::BI__builtin_uaddll_overflow:
1472 IntrinsicId = llvm::Intrinsic::uadd_with_overflow;
1473 break;
1474 case Builtin::BI__builtin_usub_overflow:
1475 case Builtin::BI__builtin_usubl_overflow:
1476 case Builtin::BI__builtin_usubll_overflow:
1477 IntrinsicId = llvm::Intrinsic::usub_with_overflow;
1478 break;
1479 case Builtin::BI__builtin_umul_overflow:
1480 case Builtin::BI__builtin_umull_overflow:
1481 case Builtin::BI__builtin_umulll_overflow:
1482 IntrinsicId = llvm::Intrinsic::umul_with_overflow;
1483 break;
1484 case Builtin::BI__builtin_sadd_overflow:
1485 case Builtin::BI__builtin_saddl_overflow:
1486 case Builtin::BI__builtin_saddll_overflow:
1487 IntrinsicId = llvm::Intrinsic::sadd_with_overflow;
1488 break;
1489 case Builtin::BI__builtin_ssub_overflow:
1490 case Builtin::BI__builtin_ssubl_overflow:
1491 case Builtin::BI__builtin_ssubll_overflow:
1492 IntrinsicId = llvm::Intrinsic::ssub_with_overflow;
1493 break;
1494 case Builtin::BI__builtin_smul_overflow:
1495 case Builtin::BI__builtin_smull_overflow:
1496 case Builtin::BI__builtin_smulll_overflow:
1497 IntrinsicId = llvm::Intrinsic::smul_with_overflow;
1498 break;
1499 }
1500
1501
1502 llvm::Value *Carry;
1503 llvm::Value *Sum = EmitOverflowIntrinsic(*this, IntrinsicId, X, Y, Carry);
1504 llvm::StoreInst *SumOutStore = Builder.CreateStore(Sum, SumOutPtr.first);
1505 SumOutStore->setAlignment(SumOutPtr.second);
1506
1507 return RValue::get(Carry);
1508 }
Richard Smith6cbd65d2013-07-11 02:27:57 +00001509 case Builtin::BI__builtin_addressof:
1510 return RValue::get(EmitLValue(E->getArg(0)).getAddress());
Nico Weber636fc092012-10-13 22:30:41 +00001511 case Builtin::BI__noop:
1512 return RValue::get(0);
Warren Hunt20e4a5d2014-02-21 23:08:53 +00001513 case Builtin::BI_InterlockedCompareExchange: {
1514 AtomicCmpXchgInst *CXI = Builder.CreateAtomicCmpXchg(
1515 EmitScalarExpr(E->getArg(0)),
1516 EmitScalarExpr(E->getArg(2)),
1517 EmitScalarExpr(E->getArg(1)),
Tim Northover0622b3a2014-03-11 10:49:03 +00001518 SequentiallyConsistent,
Warren Hunt20e4a5d2014-02-21 23:08:53 +00001519 SequentiallyConsistent);
1520 CXI->setVolatile(true);
1521 return RValue::get(CXI);
1522 }
1523 case Builtin::BI_InterlockedIncrement: {
1524 AtomicRMWInst *RMWI = Builder.CreateAtomicRMW(
1525 AtomicRMWInst::Add,
1526 EmitScalarExpr(E->getArg(0)),
1527 ConstantInt::get(Int32Ty, 1),
1528 llvm::SequentiallyConsistent);
1529 RMWI->setVolatile(true);
1530 return RValue::get(Builder.CreateAdd(RMWI, ConstantInt::get(Int32Ty, 1)));
1531 }
1532 case Builtin::BI_InterlockedDecrement: {
1533 AtomicRMWInst *RMWI = Builder.CreateAtomicRMW(
1534 AtomicRMWInst::Sub,
1535 EmitScalarExpr(E->getArg(0)),
1536 ConstantInt::get(Int32Ty, 1),
1537 llvm::SequentiallyConsistent);
1538 RMWI->setVolatile(true);
1539 return RValue::get(Builder.CreateSub(RMWI, ConstantInt::get(Int32Ty, 1)));
1540 }
1541 case Builtin::BI_InterlockedExchangeAdd: {
1542 AtomicRMWInst *RMWI = Builder.CreateAtomicRMW(
1543 AtomicRMWInst::Add,
1544 EmitScalarExpr(E->getArg(0)),
1545 EmitScalarExpr(E->getArg(1)),
1546 llvm::SequentiallyConsistent);
1547 RMWI->setVolatile(true);
1548 return RValue::get(RMWI);
1549 }
Nate Begeman6c591322008-05-15 07:38:03 +00001550 }
Mike Stump11289f42009-09-09 15:08:12 +00001551
John McCall30e4efd2011-09-13 23:05:03 +00001552 // If this is an alias for a lib function (e.g. __builtin_sin), emit
1553 // the call using the normal call path, but using the unmangled
1554 // version of the function name.
1555 if (getContext().BuiltinInfo.isLibFunction(BuiltinID))
1556 return emitLibraryCall(*this, FD, E,
1557 CGM.getBuiltinLibFunction(FD, BuiltinID));
Jim Grosbachd3608f42012-09-21 00:18:27 +00001558
John McCall30e4efd2011-09-13 23:05:03 +00001559 // If this is a predefined lib function (e.g. malloc), emit the call
1560 // using exactly the normal call path.
1561 if (getContext().BuiltinInfo.isPredefinedLibFunction(BuiltinID))
1562 return emitLibraryCall(*this, FD, E, EmitScalarExpr(E->getCallee()));
Mike Stump11289f42009-09-09 15:08:12 +00001563
Chris Lattner9a8d1d92008-06-30 18:32:54 +00001564 // See if we have a target specific intrinsic.
Dale Johannesen621c3512009-02-05 01:50:47 +00001565 const char *Name = getContext().BuiltinInfo.GetName(BuiltinID);
Daniel Dunbar576d90d2009-08-24 09:54:37 +00001566 Intrinsic::ID IntrinsicID = Intrinsic::not_intrinsic;
1567 if (const char *Prefix =
John McCallc8e01702013-04-16 22:48:15 +00001568 llvm::Triple::getArchTypePrefix(getTarget().getTriple().getArch()))
Daniel Dunbar576d90d2009-08-24 09:54:37 +00001569 IntrinsicID = Intrinsic::getIntrinsicForGCCBuiltin(Prefix, Name);
Mike Stump11289f42009-09-09 15:08:12 +00001570
Chris Lattner9a8d1d92008-06-30 18:32:54 +00001571 if (IntrinsicID != Intrinsic::not_intrinsic) {
1572 SmallVector<Value*, 16> Args;
Mike Stump11289f42009-09-09 15:08:12 +00001573
Chris Lattner64d7f2a2010-10-02 00:09:12 +00001574 // Find out if any arguments are required to be integer constant
1575 // expressions.
1576 unsigned ICEArguments = 0;
1577 ASTContext::GetBuiltinTypeError Error;
1578 getContext().GetBuiltinType(BuiltinID, Error, &ICEArguments);
1579 assert(Error == ASTContext::GE_None && "Should not codegen an error");
1580
Chris Lattner9a8d1d92008-06-30 18:32:54 +00001581 Function *F = CGM.getIntrinsic(IntrinsicID);
Chris Lattner2192fe52011-07-18 04:24:23 +00001582 llvm::FunctionType *FTy = F->getFunctionType();
Mike Stump11289f42009-09-09 15:08:12 +00001583
Chris Lattner9a8d1d92008-06-30 18:32:54 +00001584 for (unsigned i = 0, e = E->getNumArgs(); i != e; ++i) {
Chris Lattner64d7f2a2010-10-02 00:09:12 +00001585 Value *ArgValue;
1586 // If this is a normal argument, just emit it as a scalar.
1587 if ((ICEArguments & (1 << i)) == 0) {
1588 ArgValue = EmitScalarExpr(E->getArg(i));
1589 } else {
Jim Grosbachd3608f42012-09-21 00:18:27 +00001590 // If this is required to be a constant, constant fold it so that we
Chris Lattner64d7f2a2010-10-02 00:09:12 +00001591 // know that the generated intrinsic gets a ConstantInt.
1592 llvm::APSInt Result;
1593 bool IsConst = E->getArg(i)->isIntegerConstantExpr(Result,getContext());
1594 assert(IsConst && "Constant arg isn't actually constant?");
1595 (void)IsConst;
John McCallad7c5c12011-02-08 08:22:06 +00001596 ArgValue = llvm::ConstantInt::get(getLLVMContext(), Result);
Chris Lattner64d7f2a2010-10-02 00:09:12 +00001597 }
Mike Stump11289f42009-09-09 15:08:12 +00001598
Chris Lattner9a8d1d92008-06-30 18:32:54 +00001599 // If the intrinsic arg type is different from the builtin arg type
1600 // we need to do a bit cast.
Chris Lattner2192fe52011-07-18 04:24:23 +00001601 llvm::Type *PTy = FTy->getParamType(i);
Chris Lattner9a8d1d92008-06-30 18:32:54 +00001602 if (PTy != ArgValue->getType()) {
1603 assert(PTy->canLosslesslyBitCastTo(FTy->getParamType(i)) &&
1604 "Must be able to losslessly bit cast to param");
1605 ArgValue = Builder.CreateBitCast(ArgValue, PTy);
1606 }
Mike Stump11289f42009-09-09 15:08:12 +00001607
Chris Lattner9a8d1d92008-06-30 18:32:54 +00001608 Args.push_back(ArgValue);
1609 }
Mike Stump11289f42009-09-09 15:08:12 +00001610
Jay Foad5bd375a2011-07-15 08:37:34 +00001611 Value *V = Builder.CreateCall(F, Args);
Chris Lattner9a8d1d92008-06-30 18:32:54 +00001612 QualType BuiltinRetType = E->getType();
Mike Stump11289f42009-09-09 15:08:12 +00001613
Chris Lattnerece04092012-02-07 00:39:47 +00001614 llvm::Type *RetTy = VoidTy;
Jim Grosbachd3608f42012-09-21 00:18:27 +00001615 if (!BuiltinRetType->isVoidType())
Chris Lattnerece04092012-02-07 00:39:47 +00001616 RetTy = ConvertType(BuiltinRetType);
Mike Stump11289f42009-09-09 15:08:12 +00001617
Chris Lattner9a8d1d92008-06-30 18:32:54 +00001618 if (RetTy != V->getType()) {
1619 assert(V->getType()->canLosslesslyBitCastTo(RetTy) &&
1620 "Must be able to losslessly bit cast result type");
1621 V = Builder.CreateBitCast(V, RetTy);
1622 }
Mike Stump11289f42009-09-09 15:08:12 +00001623
Chris Lattner9a8d1d92008-06-30 18:32:54 +00001624 return RValue::get(V);
1625 }
Mike Stump11289f42009-09-09 15:08:12 +00001626
Chris Lattner9a8d1d92008-06-30 18:32:54 +00001627 // See if we have a target specific builtin that needs to be lowered.
Daniel Dunbareca513d2008-10-10 00:24:54 +00001628 if (Value *V = EmitTargetBuiltinExpr(BuiltinID, E))
Chris Lattner9a8d1d92008-06-30 18:32:54 +00001629 return RValue::get(V);
Mike Stump11289f42009-09-09 15:08:12 +00001630
Daniel Dunbara7c8cf62008-08-16 00:56:44 +00001631 ErrorUnsupported(E, "builtin function");
Mike Stump11289f42009-09-09 15:08:12 +00001632
Chris Lattner9a8d1d92008-06-30 18:32:54 +00001633 // Unknown builtin, for now just dump it out and return undef.
John McCall47fb9502013-03-07 21:37:08 +00001634 return GetUndefRValue(E->getType());
Mike Stump11289f42009-09-09 15:08:12 +00001635}
Anders Carlsson895af082007-12-09 23:17:02 +00001636
Daniel Dunbareca513d2008-10-10 00:24:54 +00001637Value *CodeGenFunction::EmitTargetBuiltinExpr(unsigned BuiltinID,
1638 const CallExpr *E) {
John McCallc8e01702013-04-16 22:48:15 +00001639 switch (getTarget().getTriple().getArch()) {
Tim Northover8ec8c4b2013-05-04 07:15:13 +00001640 case llvm::Triple::aarch64:
Christian Pirker9b019ae2014-02-25 13:51:00 +00001641 case llvm::Triple::aarch64_be:
Tim Northover8ec8c4b2013-05-04 07:15:13 +00001642 return EmitAArch64BuiltinExpr(BuiltinID, E);
Chris Lattner5cc15e02010-03-03 19:03:45 +00001643 case llvm::Triple::arm:
Christian Pirkerf01cd6f2014-03-28 14:40:46 +00001644 case llvm::Triple::armeb:
Chris Lattner5cc15e02010-03-03 19:03:45 +00001645 case llvm::Triple::thumb:
Christian Pirkerf01cd6f2014-03-28 14:40:46 +00001646 case llvm::Triple::thumbeb:
Chris Lattner5cc15e02010-03-03 19:03:45 +00001647 return EmitARMBuiltinExpr(BuiltinID, E);
Tim Northovera2ee4332014-03-29 15:09:45 +00001648 case llvm::Triple::arm64:
1649 return EmitARM64BuiltinExpr(BuiltinID, E);
Daniel Dunbar576d90d2009-08-24 09:54:37 +00001650 case llvm::Triple::x86:
1651 case llvm::Triple::x86_64:
Daniel Dunbareca513d2008-10-10 00:24:54 +00001652 return EmitX86BuiltinExpr(BuiltinID, E);
Daniel Dunbar576d90d2009-08-24 09:54:37 +00001653 case llvm::Triple::ppc:
1654 case llvm::Triple::ppc64:
Bill Schmidt778d3872013-07-26 01:36:11 +00001655 case llvm::Triple::ppc64le:
Daniel Dunbareca513d2008-10-10 00:24:54 +00001656 return EmitPPCBuiltinExpr(BuiltinID, E);
Daniel Dunbar576d90d2009-08-24 09:54:37 +00001657 default:
1658 return 0;
1659 }
Daniel Dunbareca513d2008-10-10 00:24:54 +00001660}
1661
Chris Lattnerece04092012-02-07 00:39:47 +00001662static llvm::VectorType *GetNeonType(CodeGenFunction *CGF,
Jiangning Liu036f16d2013-09-24 02:48:06 +00001663 NeonTypeFlags TypeFlags,
1664 bool V1Ty=false) {
NAKAMURA Takumidabda6b2011-11-08 03:27:04 +00001665 int IsQuad = TypeFlags.isQuad();
1666 switch (TypeFlags.getEltType()) {
Bob Wilson98bc98c2011-11-08 01:16:11 +00001667 case NeonTypeFlags::Int8:
1668 case NeonTypeFlags::Poly8:
Jiangning Liu036f16d2013-09-24 02:48:06 +00001669 return llvm::VectorType::get(CGF->Int8Ty, V1Ty ? 1 : (8 << IsQuad));
Bob Wilson98bc98c2011-11-08 01:16:11 +00001670 case NeonTypeFlags::Int16:
1671 case NeonTypeFlags::Poly16:
1672 case NeonTypeFlags::Float16:
Jiangning Liu036f16d2013-09-24 02:48:06 +00001673 return llvm::VectorType::get(CGF->Int16Ty, V1Ty ? 1 : (4 << IsQuad));
Bob Wilson98bc98c2011-11-08 01:16:11 +00001674 case NeonTypeFlags::Int32:
Jiangning Liu036f16d2013-09-24 02:48:06 +00001675 return llvm::VectorType::get(CGF->Int32Ty, V1Ty ? 1 : (2 << IsQuad));
Bob Wilson98bc98c2011-11-08 01:16:11 +00001676 case NeonTypeFlags::Int64:
Kevin Qincaac85e2013-11-14 03:29:16 +00001677 case NeonTypeFlags::Poly64:
Jiangning Liu036f16d2013-09-24 02:48:06 +00001678 return llvm::VectorType::get(CGF->Int64Ty, V1Ty ? 1 : (1 << IsQuad));
Kevin Qinfb79d7f2013-12-10 06:49:01 +00001679 case NeonTypeFlags::Poly128:
1680 // FIXME: i128 and f128 doesn't get fully support in Clang and llvm.
1681 // There is a lot of i128 and f128 API missing.
1682 // so we use v16i8 to represent poly128 and get pattern matched.
1683 return llvm::VectorType::get(CGF->Int8Ty, 16);
Bob Wilson98bc98c2011-11-08 01:16:11 +00001684 case NeonTypeFlags::Float32:
Jiangning Liu036f16d2013-09-24 02:48:06 +00001685 return llvm::VectorType::get(CGF->FloatTy, V1Ty ? 1 : (2 << IsQuad));
Tim Northover2fe823a2013-08-01 09:23:19 +00001686 case NeonTypeFlags::Float64:
Jiangning Liu036f16d2013-09-24 02:48:06 +00001687 return llvm::VectorType::get(CGF->DoubleTy, V1Ty ? 1 : (1 << IsQuad));
David Blaikief47fa302012-01-17 02:30:50 +00001688 }
Benjamin Kramer9b1dfe82013-09-26 16:36:08 +00001689 llvm_unreachable("Unknown vector element type!");
Nate Begeman5968eb22010-06-07 16:01:56 +00001690}
1691
Bob Wilson210f6dd2010-12-07 22:40:02 +00001692Value *CodeGenFunction::EmitNeonSplat(Value *V, Constant *C) {
Nate Begeman4a04b462010-06-10 00:17:56 +00001693 unsigned nElts = cast<llvm::VectorType>(V->getType())->getNumElements();
Chris Lattner2d6b7b92012-01-25 05:34:41 +00001694 Value* SV = llvm::ConstantVector::getSplat(nElts, C);
Nate Begeman4a04b462010-06-10 00:17:56 +00001695 return Builder.CreateShuffleVector(V, V, SV, "lane");
1696}
1697
Nate Begemanae6b1d82010-06-08 06:03:01 +00001698Value *CodeGenFunction::EmitNeonCall(Function *F, SmallVectorImpl<Value*> &Ops,
Bob Wilson482afae2010-12-08 22:37:56 +00001699 const char *name,
Nate Begeman91e1fea2010-06-14 05:21:25 +00001700 unsigned shift, bool rightshift) {
Nate Begemanae6b1d82010-06-08 06:03:01 +00001701 unsigned j = 0;
1702 for (Function::const_arg_iterator ai = F->arg_begin(), ae = F->arg_end();
1703 ai != ae; ++ai, ++j)
Nate Begeman91e1fea2010-06-14 05:21:25 +00001704 if (shift > 0 && shift == j)
1705 Ops[j] = EmitNeonShiftVector(Ops[j], ai->getType(), rightshift);
1706 else
1707 Ops[j] = Builder.CreateBitCast(Ops[j], ai->getType(), name);
Nate Begemanae6b1d82010-06-08 06:03:01 +00001708
Jay Foad5bd375a2011-07-15 08:37:34 +00001709 return Builder.CreateCall(F, Ops, name);
Nate Begemanae6b1d82010-06-08 06:03:01 +00001710}
1711
Jim Grosbachd3608f42012-09-21 00:18:27 +00001712Value *CodeGenFunction::EmitNeonShiftVector(Value *V, llvm::Type *Ty,
Nate Begeman8ed060b2010-06-11 22:57:12 +00001713 bool neg) {
Chris Lattner2d6b7b92012-01-25 05:34:41 +00001714 int SV = cast<ConstantInt>(V)->getSExtValue();
Jim Grosbachd3608f42012-09-21 00:18:27 +00001715
Chris Lattner2192fe52011-07-18 04:24:23 +00001716 llvm::VectorType *VTy = cast<llvm::VectorType>(Ty);
Nate Begeman8ed060b2010-06-11 22:57:12 +00001717 llvm::Constant *C = ConstantInt::get(VTy->getElementType(), neg ? -SV : SV);
Chris Lattner2d6b7b92012-01-25 05:34:41 +00001718 return llvm::ConstantVector::getSplat(VTy->getNumElements(), C);
Nate Begeman8ed060b2010-06-11 22:57:12 +00001719}
1720
Amaury de la Vieuville21bf6ed2013-10-04 13:13:15 +00001721// \brief Right-shift a vector by a constant.
1722Value *CodeGenFunction::EmitNeonRShiftImm(Value *Vec, Value *Shift,
1723 llvm::Type *Ty, bool usgn,
1724 const char *name) {
1725 llvm::VectorType *VTy = cast<llvm::VectorType>(Ty);
1726
1727 int ShiftAmt = cast<ConstantInt>(Shift)->getSExtValue();
1728 int EltSize = VTy->getScalarSizeInBits();
1729
1730 Vec = Builder.CreateBitCast(Vec, Ty);
1731
1732 // lshr/ashr are undefined when the shift amount is equal to the vector
1733 // element size.
1734 if (ShiftAmt == EltSize) {
1735 if (usgn) {
1736 // Right-shifting an unsigned value by its size yields 0.
1737 llvm::Constant *Zero = ConstantInt::get(VTy->getElementType(), 0);
1738 return llvm::ConstantVector::getSplat(VTy->getNumElements(), Zero);
1739 } else {
1740 // Right-shifting a signed value by its size is equivalent
1741 // to a shift of size-1.
1742 --ShiftAmt;
1743 Shift = ConstantInt::get(VTy->getElementType(), ShiftAmt);
1744 }
1745 }
1746
1747 Shift = EmitNeonShiftVector(Shift, Ty, false);
1748 if (usgn)
1749 return Builder.CreateLShr(Vec, Shift, name);
1750 else
1751 return Builder.CreateAShr(Vec, Shift, name);
1752}
1753
Tim Northovera2ee4332014-03-29 15:09:45 +00001754Value *CodeGenFunction::EmitConcatVectors(Value *Lo, Value *Hi,
1755 llvm::Type *ArgTy) {
1756 unsigned NumElts = ArgTy->getVectorNumElements();
1757 SmallVector<Constant *, 16> Indices;
1758 for (unsigned i = 0; i < 2 * NumElts; ++i)
1759 Indices.push_back(ConstantInt::get(Int32Ty, i));
1760
1761 Constant *Mask = ConstantVector::get(Indices);
1762 Value *LoCast = Builder.CreateBitCast(Lo, ArgTy);
1763 Value *HiCast = Builder.CreateBitCast(Hi, ArgTy);
1764 return Builder.CreateShuffleVector(LoCast, HiCast, Mask, "concat");
1765}
1766
1767Value *CodeGenFunction::EmitExtractHigh(Value *Vec, llvm::Type *ResTy) {
1768 unsigned NumElts = ResTy->getVectorNumElements();
1769 SmallVector<Constant *, 8> Indices;
1770
1771 llvm::Type *InTy = llvm::VectorType::get(ResTy->getVectorElementType(),
1772 NumElts * 2);
1773 Value *VecCast = Builder.CreateBitCast(Vec, InTy);
1774
1775 // extract_high is a shuffle on the second half of the input indices: E.g. 4,
1776 // 5, 6, 7 if we're extracting <4 x i16> from <8 x i16>.
1777 for (unsigned i = 0; i < NumElts; ++i)
1778 Indices.push_back(ConstantInt::get(Int32Ty, NumElts + i));
1779
1780 Constant *Mask = ConstantVector::get(Indices);
1781 return Builder.CreateShuffleVector(VecCast, VecCast, Mask, "concat");
1782}
1783
Bob Wilson7b0d0322010-08-27 17:14:29 +00001784/// GetPointeeAlignment - Given an expression with a pointer type, find the
1785/// alignment of the type referenced by the pointer. Skip over implicit
1786/// casts.
Eli Friedmana5dd5682012-08-23 03:10:17 +00001787std::pair<llvm::Value*, unsigned>
1788CodeGenFunction::EmitPointerWithAlignment(const Expr *Addr) {
1789 assert(Addr->getType()->isPointerType());
1790 Addr = Addr->IgnoreParens();
1791 if (const ImplicitCastExpr *ICE = dyn_cast<ImplicitCastExpr>(Addr)) {
Eli Friedman504f9a22012-08-29 21:21:11 +00001792 if ((ICE->getCastKind() == CK_BitCast || ICE->getCastKind() == CK_NoOp) &&
1793 ICE->getSubExpr()->getType()->isPointerType()) {
Jim Grosbachd3608f42012-09-21 00:18:27 +00001794 std::pair<llvm::Value*, unsigned> Ptr =
Eli Friedmana5dd5682012-08-23 03:10:17 +00001795 EmitPointerWithAlignment(ICE->getSubExpr());
1796 Ptr.first = Builder.CreateBitCast(Ptr.first,
1797 ConvertType(Addr->getType()));
1798 return Ptr;
1799 } else if (ICE->getCastKind() == CK_ArrayToPointerDecay) {
1800 LValue LV = EmitLValue(ICE->getSubExpr());
Eli Friedman5d14c482012-08-23 11:27:56 +00001801 unsigned Align = LV.getAlignment().getQuantity();
1802 if (!Align) {
1803 // FIXME: Once LValues are fixed to always set alignment,
1804 // zap this code.
1805 QualType PtTy = ICE->getSubExpr()->getType();
1806 if (!PtTy->isIncompleteType())
1807 Align = getContext().getTypeAlignInChars(PtTy).getQuantity();
1808 else
1809 Align = 1;
1810 }
1811 return std::make_pair(LV.getAddress(), Align);
Chris Lattneraaa18fa2012-03-04 00:52:12 +00001812 }
Bob Wilson7b0d0322010-08-27 17:14:29 +00001813 }
Eli Friedmana5dd5682012-08-23 03:10:17 +00001814 if (const UnaryOperator *UO = dyn_cast<UnaryOperator>(Addr)) {
1815 if (UO->getOpcode() == UO_AddrOf) {
1816 LValue LV = EmitLValue(UO->getSubExpr());
Eli Friedman5d14c482012-08-23 11:27:56 +00001817 unsigned Align = LV.getAlignment().getQuantity();
1818 if (!Align) {
1819 // FIXME: Once LValues are fixed to always set alignment,
1820 // zap this code.
1821 QualType PtTy = UO->getSubExpr()->getType();
1822 if (!PtTy->isIncompleteType())
1823 Align = getContext().getTypeAlignInChars(PtTy).getQuantity();
1824 else
1825 Align = 1;
1826 }
1827 return std::make_pair(LV.getAddress(), Align);
Eli Friedmana5dd5682012-08-23 03:10:17 +00001828 }
1829 }
Jay Foadb0f33442012-03-02 18:34:30 +00001830
Eli Friedmana5dd5682012-08-23 03:10:17 +00001831 unsigned Align = 1;
1832 QualType PtTy = Addr->getType()->getPointeeType();
1833 if (!PtTy->isIncompleteType())
1834 Align = getContext().getTypeAlignInChars(PtTy).getQuantity();
1835
1836 return std::make_pair(EmitScalarExpr(Addr), Align);
Bob Wilson7b0d0322010-08-27 17:14:29 +00001837}
1838
Tim Northover2d837962014-02-21 11:57:20 +00001839enum {
1840 AddRetType = (1 << 0),
1841 Add1ArgType = (1 << 1),
1842 Add2ArgTypes = (1 << 2),
Tim Northoverdb3e5e22014-02-19 11:55:06 +00001843
Tim Northover2d837962014-02-21 11:57:20 +00001844 VectorizeRetType = (1 << 3),
1845 VectorizeArgTypes = (1 << 4),
1846
1847 InventFloatType = (1 << 5),
Tim Northover8fe03d62014-02-21 11:57:24 +00001848 UnsignedAlts = (1 << 6),
Tim Northover2d837962014-02-21 11:57:20 +00001849
Tim Northovera2ee4332014-03-29 15:09:45 +00001850 Use64BitVectors = (1 << 7),
1851 Use128BitVectors = (1 << 8),
1852
Tim Northover2d837962014-02-21 11:57:20 +00001853 Vectorize1ArgType = Add1ArgType | VectorizeArgTypes,
1854 VectorRet = AddRetType | VectorizeRetType,
1855 VectorRetGetArgs01 =
1856 AddRetType | Add2ArgTypes | VectorizeRetType | VectorizeArgTypes,
1857 FpCmpzModifiers =
Tim Northovera0c95eb2014-02-21 12:16:59 +00001858 AddRetType | VectorizeRetType | Add1ArgType | InventFloatType
Tim Northoverdb3e5e22014-02-19 11:55:06 +00001859};
1860
Tim Northover8fe03d62014-02-21 11:57:24 +00001861 struct NeonIntrinsicInfo {
Tim Northoverdb3e5e22014-02-19 11:55:06 +00001862 unsigned BuiltinID;
1863 unsigned LLVMIntrinsic;
Tim Northover8fe03d62014-02-21 11:57:24 +00001864 unsigned AltLLVMIntrinsic;
Tim Northoverdb3e5e22014-02-19 11:55:06 +00001865 const char *NameHint;
1866 unsigned TypeModifier;
1867
1868 bool operator<(unsigned RHSBuiltinID) const {
1869 return BuiltinID < RHSBuiltinID;
1870 }
1871};
1872
Tim Northover8fe03d62014-02-21 11:57:24 +00001873#define NEONMAP0(NameBase) \
1874 { NEON::BI__builtin_neon_ ## NameBase, 0, 0, #NameBase, 0 }
Tim Northoverdb3e5e22014-02-19 11:55:06 +00001875
Tim Northover8fe03d62014-02-21 11:57:24 +00001876#define NEONMAP1(NameBase, LLVMIntrinsic, TypeModifier) \
1877 { NEON:: BI__builtin_neon_ ## NameBase, \
1878 Intrinsic::LLVMIntrinsic, 0, #NameBase, TypeModifier }
Tim Northoverdb3e5e22014-02-19 11:55:06 +00001879
Tim Northover8fe03d62014-02-21 11:57:24 +00001880#define NEONMAP2(NameBase, LLVMIntrinsic, AltLLVMIntrinsic, TypeModifier) \
1881 { NEON:: BI__builtin_neon_ ## NameBase, \
1882 Intrinsic::LLVMIntrinsic, Intrinsic::AltLLVMIntrinsic, \
1883 #NameBase, TypeModifier }
1884
1885static const NeonIntrinsicInfo AArch64SISDIntrinsicInfo[] = {
1886 NEONMAP1(vabdd_f64, aarch64_neon_vabd, AddRetType),
1887 NEONMAP1(vabds_f32, aarch64_neon_vabd, AddRetType),
1888 NEONMAP1(vabsd_s64, aarch64_neon_vabs, 0),
1889 NEONMAP1(vaddd_s64, aarch64_neon_vaddds, 0),
1890 NEONMAP1(vaddd_u64, aarch64_neon_vadddu, 0),
1891 NEONMAP1(vaddlv_s16, aarch64_neon_saddlv, VectorRet | Add1ArgType),
1892 NEONMAP1(vaddlv_s32, aarch64_neon_saddlv, VectorRet | Add1ArgType),
1893 NEONMAP1(vaddlv_s8, aarch64_neon_saddlv, VectorRet | Add1ArgType),
1894 NEONMAP1(vaddlv_u16, aarch64_neon_uaddlv, VectorRet | Add1ArgType),
1895 NEONMAP1(vaddlv_u32, aarch64_neon_uaddlv, VectorRet | Add1ArgType),
1896 NEONMAP1(vaddlv_u8, aarch64_neon_uaddlv, VectorRet | Add1ArgType),
1897 NEONMAP1(vaddlvq_s16, aarch64_neon_saddlv, VectorRet | Add1ArgType),
1898 NEONMAP1(vaddlvq_s32, aarch64_neon_saddlv, VectorRet | Add1ArgType),
1899 NEONMAP1(vaddlvq_s8, aarch64_neon_saddlv, VectorRet | Add1ArgType),
1900 NEONMAP1(vaddlvq_u16, aarch64_neon_uaddlv, VectorRet | Add1ArgType),
1901 NEONMAP1(vaddlvq_u32, aarch64_neon_uaddlv, VectorRet | Add1ArgType),
1902 NEONMAP1(vaddlvq_u8, aarch64_neon_uaddlv, VectorRet | Add1ArgType),
1903 NEONMAP1(vaddv_f32, aarch64_neon_vpfadd, AddRetType | Add1ArgType),
1904 NEONMAP1(vaddv_s16, aarch64_neon_vaddv, VectorRet | Add1ArgType),
1905 NEONMAP1(vaddv_s32, aarch64_neon_vaddv, VectorRet | Add1ArgType),
1906 NEONMAP1(vaddv_s8, aarch64_neon_vaddv, VectorRet | Add1ArgType),
1907 NEONMAP1(vaddv_u16, aarch64_neon_vaddv, VectorRet | Add1ArgType),
1908 NEONMAP1(vaddv_u32, aarch64_neon_vaddv, VectorRet | Add1ArgType),
1909 NEONMAP1(vaddv_u8, aarch64_neon_vaddv, VectorRet | Add1ArgType),
1910 NEONMAP1(vaddvq_f32, aarch64_neon_vpfadd, AddRetType | Add1ArgType),
1911 NEONMAP1(vaddvq_f64, aarch64_neon_vpfadd, AddRetType | Add1ArgType),
1912 NEONMAP1(vaddvq_s16, aarch64_neon_vaddv, VectorRet | Add1ArgType),
1913 NEONMAP1(vaddvq_s32, aarch64_neon_vaddv, VectorRet | Add1ArgType),
1914 NEONMAP1(vaddvq_s64, aarch64_neon_vaddv, VectorRet | Add1ArgType),
1915 NEONMAP1(vaddvq_s8, aarch64_neon_vaddv, VectorRet | Add1ArgType),
1916 NEONMAP1(vaddvq_u16, aarch64_neon_vaddv, VectorRet | Add1ArgType),
1917 NEONMAP1(vaddvq_u32, aarch64_neon_vaddv, VectorRet | Add1ArgType),
1918 NEONMAP1(vaddvq_u64, aarch64_neon_vaddv, VectorRet | Add1ArgType),
1919 NEONMAP1(vaddvq_u8, aarch64_neon_vaddv, VectorRet | Add1ArgType),
1920 NEONMAP1(vcaged_f64, aarch64_neon_fcage, VectorRet | Add2ArgTypes),
1921 NEONMAP1(vcages_f32, aarch64_neon_fcage, VectorRet | Add2ArgTypes),
1922 NEONMAP1(vcagtd_f64, aarch64_neon_fcagt, VectorRet | Add2ArgTypes),
1923 NEONMAP1(vcagts_f32, aarch64_neon_fcagt, VectorRet | Add2ArgTypes),
1924 NEONMAP1(vcaled_f64, aarch64_neon_fcage, VectorRet | Add2ArgTypes),
1925 NEONMAP1(vcales_f32, aarch64_neon_fcage, VectorRet | Add2ArgTypes),
1926 NEONMAP1(vcaltd_f64, aarch64_neon_fcagt, VectorRet | Add2ArgTypes),
1927 NEONMAP1(vcalts_f32, aarch64_neon_fcagt, VectorRet | Add2ArgTypes),
1928 NEONMAP1(vceqd_f64, aarch64_neon_fceq, VectorRet | Add2ArgTypes),
1929 NEONMAP1(vceqd_s64, aarch64_neon_vceq, VectorRetGetArgs01),
1930 NEONMAP1(vceqd_u64, aarch64_neon_vceq, VectorRetGetArgs01),
1931 NEONMAP1(vceqs_f32, aarch64_neon_fceq, VectorRet | Add2ArgTypes),
1932 NEONMAP1(vceqzd_f64, aarch64_neon_fceq, FpCmpzModifiers),
1933 NEONMAP1(vceqzd_s64, aarch64_neon_vceq, VectorRetGetArgs01),
1934 NEONMAP1(vceqzd_u64, aarch64_neon_vceq, VectorRetGetArgs01),
1935 NEONMAP1(vceqzs_f32, aarch64_neon_fceq, FpCmpzModifiers),
1936 NEONMAP1(vcged_f64, aarch64_neon_fcge, VectorRet | Add2ArgTypes),
1937 NEONMAP1(vcged_s64, aarch64_neon_vcge, VectorRetGetArgs01),
1938 NEONMAP1(vcged_u64, aarch64_neon_vchs, VectorRetGetArgs01),
1939 NEONMAP1(vcges_f32, aarch64_neon_fcge, VectorRet | Add2ArgTypes),
1940 NEONMAP1(vcgezd_f64, aarch64_neon_fcge, FpCmpzModifiers),
1941 NEONMAP1(vcgezd_s64, aarch64_neon_vcge, VectorRetGetArgs01),
1942 NEONMAP1(vcgezs_f32, aarch64_neon_fcge, FpCmpzModifiers),
1943 NEONMAP1(vcgtd_f64, aarch64_neon_fcgt, VectorRet | Add2ArgTypes),
1944 NEONMAP1(vcgtd_s64, aarch64_neon_vcgt, VectorRetGetArgs01),
1945 NEONMAP1(vcgtd_u64, aarch64_neon_vchi, VectorRetGetArgs01),
1946 NEONMAP1(vcgts_f32, aarch64_neon_fcgt, VectorRet | Add2ArgTypes),
1947 NEONMAP1(vcgtzd_f64, aarch64_neon_fcgt, FpCmpzModifiers),
1948 NEONMAP1(vcgtzd_s64, aarch64_neon_vcgt, VectorRetGetArgs01),
1949 NEONMAP1(vcgtzs_f32, aarch64_neon_fcgt, FpCmpzModifiers),
1950 NEONMAP1(vcled_f64, aarch64_neon_fcge, VectorRet | Add2ArgTypes),
1951 NEONMAP1(vcled_s64, aarch64_neon_vcge, VectorRetGetArgs01),
1952 NEONMAP1(vcled_u64, aarch64_neon_vchs, VectorRetGetArgs01),
1953 NEONMAP1(vcles_f32, aarch64_neon_fcge, VectorRet | Add2ArgTypes),
1954 NEONMAP1(vclezd_f64, aarch64_neon_fclez, FpCmpzModifiers),
1955 NEONMAP1(vclezd_s64, aarch64_neon_vclez, VectorRetGetArgs01),
1956 NEONMAP1(vclezs_f32, aarch64_neon_fclez, FpCmpzModifiers),
1957 NEONMAP1(vcltd_f64, aarch64_neon_fcgt, VectorRet | Add2ArgTypes),
1958 NEONMAP1(vcltd_s64, aarch64_neon_vcgt, VectorRetGetArgs01),
1959 NEONMAP1(vcltd_u64, aarch64_neon_vchi, VectorRetGetArgs01),
1960 NEONMAP1(vclts_f32, aarch64_neon_fcgt, VectorRet | Add2ArgTypes),
1961 NEONMAP1(vcltzd_f64, aarch64_neon_fcltz, FpCmpzModifiers),
1962 NEONMAP1(vcltzd_s64, aarch64_neon_vcltz, VectorRetGetArgs01),
1963 NEONMAP1(vcltzs_f32, aarch64_neon_fcltz, FpCmpzModifiers),
1964 NEONMAP1(vcvtad_s64_f64, aarch64_neon_fcvtas, VectorRet | Add1ArgType),
1965 NEONMAP1(vcvtad_u64_f64, aarch64_neon_fcvtau, VectorRet | Add1ArgType),
1966 NEONMAP1(vcvtas_s32_f32, aarch64_neon_fcvtas, VectorRet | Add1ArgType),
1967 NEONMAP1(vcvtas_u32_f32, aarch64_neon_fcvtau, VectorRet | Add1ArgType),
1968 NEONMAP1(vcvtd_f64_s64, aarch64_neon_vcvtint2fps, AddRetType | Vectorize1ArgType),
1969 NEONMAP1(vcvtd_f64_u64, aarch64_neon_vcvtint2fpu, AddRetType | Vectorize1ArgType),
1970 NEONMAP1(vcvtd_n_f64_s64, aarch64_neon_vcvtfxs2fp_n, AddRetType | Vectorize1ArgType),
1971 NEONMAP1(vcvtd_n_f64_u64, aarch64_neon_vcvtfxu2fp_n, AddRetType | Vectorize1ArgType),
1972 NEONMAP1(vcvtd_n_s64_f64, aarch64_neon_vcvtfp2fxs_n, VectorRet | Add1ArgType),
1973 NEONMAP1(vcvtd_n_u64_f64, aarch64_neon_vcvtfp2fxu_n, VectorRet | Add1ArgType),
1974 NEONMAP1(vcvtd_s64_f64, aarch64_neon_fcvtzs, VectorRet | Add1ArgType),
1975 NEONMAP1(vcvtd_u64_f64, aarch64_neon_fcvtzu, VectorRet | Add1ArgType),
1976 NEONMAP1(vcvtmd_s64_f64, aarch64_neon_fcvtms, VectorRet | Add1ArgType),
1977 NEONMAP1(vcvtmd_u64_f64, aarch64_neon_fcvtmu, VectorRet | Add1ArgType),
1978 NEONMAP1(vcvtms_s32_f32, aarch64_neon_fcvtms, VectorRet | Add1ArgType),
1979 NEONMAP1(vcvtms_u32_f32, aarch64_neon_fcvtmu, VectorRet | Add1ArgType),
1980 NEONMAP1(vcvtnd_s64_f64, aarch64_neon_fcvtns, VectorRet | Add1ArgType),
1981 NEONMAP1(vcvtnd_u64_f64, aarch64_neon_fcvtnu, VectorRet | Add1ArgType),
1982 NEONMAP1(vcvtns_s32_f32, aarch64_neon_fcvtns, VectorRet | Add1ArgType),
1983 NEONMAP1(vcvtns_u32_f32, aarch64_neon_fcvtnu, VectorRet | Add1ArgType),
1984 NEONMAP1(vcvtpd_s64_f64, aarch64_neon_fcvtps, VectorRet | Add1ArgType),
1985 NEONMAP1(vcvtpd_u64_f64, aarch64_neon_fcvtpu, VectorRet | Add1ArgType),
1986 NEONMAP1(vcvtps_s32_f32, aarch64_neon_fcvtps, VectorRet | Add1ArgType),
1987 NEONMAP1(vcvtps_u32_f32, aarch64_neon_fcvtpu, VectorRet | Add1ArgType),
1988 NEONMAP1(vcvts_f32_s32, aarch64_neon_vcvtint2fps, AddRetType | Vectorize1ArgType),
1989 NEONMAP1(vcvts_f32_u32, aarch64_neon_vcvtint2fpu, AddRetType | Vectorize1ArgType),
1990 NEONMAP1(vcvts_n_f32_s32, aarch64_neon_vcvtfxs2fp_n, AddRetType | Vectorize1ArgType),
1991 NEONMAP1(vcvts_n_f32_u32, aarch64_neon_vcvtfxu2fp_n, AddRetType | Vectorize1ArgType),
1992 NEONMAP1(vcvts_n_s32_f32, aarch64_neon_vcvtfp2fxs_n, VectorRet | Add1ArgType),
1993 NEONMAP1(vcvts_n_u32_f32, aarch64_neon_vcvtfp2fxu_n, VectorRet | Add1ArgType),
1994 NEONMAP1(vcvts_s32_f32, aarch64_neon_fcvtzs, VectorRet | Add1ArgType),
1995 NEONMAP1(vcvts_u32_f32, aarch64_neon_fcvtzu, VectorRet | Add1ArgType),
1996 NEONMAP1(vcvtxd_f32_f64, aarch64_neon_fcvtxn, 0),
1997 NEONMAP0(vdupb_lane_i8),
1998 NEONMAP0(vdupb_laneq_i8),
1999 NEONMAP0(vdupd_lane_f64),
2000 NEONMAP0(vdupd_lane_i64),
2001 NEONMAP0(vdupd_laneq_f64),
2002 NEONMAP0(vdupd_laneq_i64),
2003 NEONMAP0(vduph_lane_i16),
2004 NEONMAP0(vduph_laneq_i16),
2005 NEONMAP0(vdups_lane_f32),
2006 NEONMAP0(vdups_lane_i32),
2007 NEONMAP0(vdups_laneq_f32),
2008 NEONMAP0(vdups_laneq_i32),
2009 NEONMAP0(vfmad_lane_f64),
2010 NEONMAP0(vfmad_laneq_f64),
2011 NEONMAP0(vfmas_lane_f32),
2012 NEONMAP0(vfmas_laneq_f32),
2013 NEONMAP0(vget_lane_f32),
2014 NEONMAP0(vget_lane_f64),
2015 NEONMAP0(vget_lane_i16),
2016 NEONMAP0(vget_lane_i32),
2017 NEONMAP0(vget_lane_i64),
2018 NEONMAP0(vget_lane_i8),
2019 NEONMAP0(vgetq_lane_f32),
2020 NEONMAP0(vgetq_lane_f64),
2021 NEONMAP0(vgetq_lane_i16),
2022 NEONMAP0(vgetq_lane_i32),
2023 NEONMAP0(vgetq_lane_i64),
2024 NEONMAP0(vgetq_lane_i8),
2025 NEONMAP1(vmaxnmv_f32, aarch64_neon_vpfmaxnm, AddRetType | Add1ArgType),
2026 NEONMAP1(vmaxnmvq_f32, aarch64_neon_vmaxnmv, 0),
2027 NEONMAP1(vmaxnmvq_f64, aarch64_neon_vpfmaxnm, AddRetType | Add1ArgType),
2028 NEONMAP1(vmaxv_f32, aarch64_neon_vpmax, AddRetType | Add1ArgType),
2029 NEONMAP1(vmaxv_s16, aarch64_neon_smaxv, VectorRet | Add1ArgType),
2030 NEONMAP1(vmaxv_s32, aarch64_neon_smaxv, VectorRet | Add1ArgType),
2031 NEONMAP1(vmaxv_s8, aarch64_neon_smaxv, VectorRet | Add1ArgType),
2032 NEONMAP1(vmaxv_u16, aarch64_neon_umaxv, VectorRet | Add1ArgType),
2033 NEONMAP1(vmaxv_u32, aarch64_neon_umaxv, VectorRet | Add1ArgType),
2034 NEONMAP1(vmaxv_u8, aarch64_neon_umaxv, VectorRet | Add1ArgType),
2035 NEONMAP1(vmaxvq_f32, aarch64_neon_vmaxv, 0),
2036 NEONMAP1(vmaxvq_f64, aarch64_neon_vpmax, AddRetType | Add1ArgType),
2037 NEONMAP1(vmaxvq_s16, aarch64_neon_smaxv, VectorRet | Add1ArgType),
2038 NEONMAP1(vmaxvq_s32, aarch64_neon_smaxv, VectorRet | Add1ArgType),
2039 NEONMAP1(vmaxvq_s8, aarch64_neon_smaxv, VectorRet | Add1ArgType),
2040 NEONMAP1(vmaxvq_u16, aarch64_neon_umaxv, VectorRet | Add1ArgType),
2041 NEONMAP1(vmaxvq_u32, aarch64_neon_umaxv, VectorRet | Add1ArgType),
2042 NEONMAP1(vmaxvq_u8, aarch64_neon_umaxv, VectorRet | Add1ArgType),
2043 NEONMAP1(vminnmv_f32, aarch64_neon_vpfminnm, AddRetType | Add1ArgType),
2044 NEONMAP1(vminnmvq_f32, aarch64_neon_vminnmv, 0),
2045 NEONMAP1(vminnmvq_f64, aarch64_neon_vpfminnm, AddRetType | Add1ArgType),
2046 NEONMAP1(vminv_f32, aarch64_neon_vpmin, AddRetType | Add1ArgType),
2047 NEONMAP1(vminv_s16, aarch64_neon_sminv, VectorRet | Add1ArgType),
2048 NEONMAP1(vminv_s32, aarch64_neon_sminv, VectorRet | Add1ArgType),
2049 NEONMAP1(vminv_s8, aarch64_neon_sminv, VectorRet | Add1ArgType),
2050 NEONMAP1(vminv_u16, aarch64_neon_uminv, VectorRet | Add1ArgType),
2051 NEONMAP1(vminv_u32, aarch64_neon_uminv, VectorRet | Add1ArgType),
2052 NEONMAP1(vminv_u8, aarch64_neon_uminv, VectorRet | Add1ArgType),
2053 NEONMAP1(vminvq_f32, aarch64_neon_vminv, 0),
2054 NEONMAP1(vminvq_f64, aarch64_neon_vpmin, AddRetType | Add1ArgType),
2055 NEONMAP1(vminvq_s16, aarch64_neon_sminv, VectorRet | Add1ArgType),
2056 NEONMAP1(vminvq_s32, aarch64_neon_sminv, VectorRet | Add1ArgType),
2057 NEONMAP1(vminvq_s8, aarch64_neon_sminv, VectorRet | Add1ArgType),
2058 NEONMAP1(vminvq_u16, aarch64_neon_uminv, VectorRet | Add1ArgType),
2059 NEONMAP1(vminvq_u32, aarch64_neon_uminv, VectorRet | Add1ArgType),
2060 NEONMAP1(vminvq_u8, aarch64_neon_uminv, VectorRet | Add1ArgType),
2061 NEONMAP0(vmul_n_f64),
2062 NEONMAP1(vmull_p64, aarch64_neon_vmull_p64, 0),
2063 NEONMAP0(vmulxd_f64),
2064 NEONMAP0(vmulxs_f32),
2065 NEONMAP1(vnegd_s64, aarch64_neon_vneg, 0),
2066 NEONMAP1(vpaddd_f64, aarch64_neon_vpfadd, AddRetType | Add1ArgType),
2067 NEONMAP1(vpaddd_s64, aarch64_neon_vpadd, 0),
2068 NEONMAP1(vpaddd_u64, aarch64_neon_vpadd, 0),
2069 NEONMAP1(vpadds_f32, aarch64_neon_vpfadd, AddRetType | Add1ArgType),
2070 NEONMAP1(vpmaxnmqd_f64, aarch64_neon_vpfmaxnm, AddRetType | Add1ArgType),
2071 NEONMAP1(vpmaxnms_f32, aarch64_neon_vpfmaxnm, AddRetType | Add1ArgType),
2072 NEONMAP1(vpmaxqd_f64, aarch64_neon_vpmax, AddRetType | Add1ArgType),
2073 NEONMAP1(vpmaxs_f32, aarch64_neon_vpmax, AddRetType | Add1ArgType),
2074 NEONMAP1(vpminnmqd_f64, aarch64_neon_vpfminnm, AddRetType | Add1ArgType),
2075 NEONMAP1(vpminnms_f32, aarch64_neon_vpfminnm, AddRetType | Add1ArgType),
2076 NEONMAP1(vpminqd_f64, aarch64_neon_vpmin, AddRetType | Add1ArgType),
2077 NEONMAP1(vpmins_f32, aarch64_neon_vpmin, AddRetType | Add1ArgType),
2078 NEONMAP1(vqabsb_s8, arm_neon_vqabs, VectorRet),
2079 NEONMAP1(vqabsd_s64, arm_neon_vqabs, VectorRet),
2080 NEONMAP1(vqabsh_s16, arm_neon_vqabs, VectorRet),
2081 NEONMAP1(vqabss_s32, arm_neon_vqabs, VectorRet),
2082 NEONMAP1(vqaddb_s8, arm_neon_vqadds, VectorRet),
2083 NEONMAP1(vqaddb_u8, arm_neon_vqaddu, VectorRet),
2084 NEONMAP1(vqaddd_s64, arm_neon_vqadds, VectorRet),
2085 NEONMAP1(vqaddd_u64, arm_neon_vqaddu, VectorRet),
2086 NEONMAP1(vqaddh_s16, arm_neon_vqadds, VectorRet),
2087 NEONMAP1(vqaddh_u16, arm_neon_vqaddu, VectorRet),
2088 NEONMAP1(vqadds_s32, arm_neon_vqadds, VectorRet),
2089 NEONMAP1(vqadds_u32, arm_neon_vqaddu, VectorRet),
2090 NEONMAP0(vqdmlalh_lane_s16),
2091 NEONMAP0(vqdmlalh_laneq_s16),
2092 NEONMAP1(vqdmlalh_s16, aarch64_neon_vqdmlal, VectorRet),
2093 NEONMAP0(vqdmlals_lane_s32),
2094 NEONMAP0(vqdmlals_laneq_s32),
2095 NEONMAP1(vqdmlals_s32, aarch64_neon_vqdmlal, VectorRet),
2096 NEONMAP0(vqdmlslh_lane_s16),
2097 NEONMAP0(vqdmlslh_laneq_s16),
2098 NEONMAP1(vqdmlslh_s16, aarch64_neon_vqdmlsl, VectorRet),
2099 NEONMAP0(vqdmlsls_lane_s32),
2100 NEONMAP0(vqdmlsls_laneq_s32),
2101 NEONMAP1(vqdmlsls_s32, aarch64_neon_vqdmlsl, VectorRet),
2102 NEONMAP1(vqdmulhh_s16, arm_neon_vqdmulh, VectorRet),
2103 NEONMAP1(vqdmulhs_s32, arm_neon_vqdmulh, VectorRet),
2104 NEONMAP1(vqdmullh_s16, arm_neon_vqdmull, VectorRet),
2105 NEONMAP1(vqdmulls_s32, arm_neon_vqdmull, VectorRet),
2106 NEONMAP1(vqmovnd_s64, arm_neon_vqmovns, VectorRet),
2107 NEONMAP1(vqmovnd_u64, arm_neon_vqmovnu, VectorRet),
2108 NEONMAP1(vqmovnh_s16, arm_neon_vqmovns, VectorRet),
2109 NEONMAP1(vqmovnh_u16, arm_neon_vqmovnu, VectorRet),
2110 NEONMAP1(vqmovns_s32, arm_neon_vqmovns, VectorRet),
2111 NEONMAP1(vqmovns_u32, arm_neon_vqmovnu, VectorRet),
2112 NEONMAP1(vqmovund_s64, arm_neon_vqmovnsu, VectorRet),
2113 NEONMAP1(vqmovunh_s16, arm_neon_vqmovnsu, VectorRet),
2114 NEONMAP1(vqmovuns_s32, arm_neon_vqmovnsu, VectorRet),
2115 NEONMAP1(vqnegb_s8, arm_neon_vqneg, VectorRet),
2116 NEONMAP1(vqnegd_s64, arm_neon_vqneg, VectorRet),
2117 NEONMAP1(vqnegh_s16, arm_neon_vqneg, VectorRet),
2118 NEONMAP1(vqnegs_s32, arm_neon_vqneg, VectorRet),
2119 NEONMAP1(vqrdmulhh_s16, arm_neon_vqrdmulh, VectorRet),
2120 NEONMAP1(vqrdmulhs_s32, arm_neon_vqrdmulh, VectorRet),
2121 NEONMAP1(vqrshlb_s8, aarch64_neon_vqrshls, VectorRet),
2122 NEONMAP1(vqrshlb_u8, aarch64_neon_vqrshlu, VectorRet),
2123 NEONMAP1(vqrshld_s64, aarch64_neon_vqrshls, VectorRet),
2124 NEONMAP1(vqrshld_u64, aarch64_neon_vqrshlu, VectorRet),
2125 NEONMAP1(vqrshlh_s16, aarch64_neon_vqrshls, VectorRet),
2126 NEONMAP1(vqrshlh_u16, aarch64_neon_vqrshlu, VectorRet),
2127 NEONMAP1(vqrshls_s32, aarch64_neon_vqrshls, VectorRet),
2128 NEONMAP1(vqrshls_u32, aarch64_neon_vqrshlu, VectorRet),
2129 NEONMAP1(vqrshrnd_n_s64, aarch64_neon_vsqrshrn, VectorRet),
2130 NEONMAP1(vqrshrnd_n_u64, aarch64_neon_vuqrshrn, VectorRet),
2131 NEONMAP1(vqrshrnh_n_s16, aarch64_neon_vsqrshrn, VectorRet),
2132 NEONMAP1(vqrshrnh_n_u16, aarch64_neon_vuqrshrn, VectorRet),
2133 NEONMAP1(vqrshrns_n_s32, aarch64_neon_vsqrshrn, VectorRet),
2134 NEONMAP1(vqrshrns_n_u32, aarch64_neon_vuqrshrn, VectorRet),
2135 NEONMAP1(vqrshrund_n_s64, aarch64_neon_vsqrshrun, VectorRet),
2136 NEONMAP1(vqrshrunh_n_s16, aarch64_neon_vsqrshrun, VectorRet),
2137 NEONMAP1(vqrshruns_n_s32, aarch64_neon_vsqrshrun, VectorRet),
2138 NEONMAP1(vqshlb_n_s8, aarch64_neon_vqshls_n, VectorRet),
2139 NEONMAP1(vqshlb_n_u8, aarch64_neon_vqshlu_n, VectorRet),
2140 NEONMAP1(vqshlb_s8, aarch64_neon_vqshls, VectorRet),
2141 NEONMAP1(vqshlb_u8, aarch64_neon_vqshlu, VectorRet),
2142 NEONMAP1(vqshld_n_s64, aarch64_neon_vqshls_n, VectorRet),
2143 NEONMAP1(vqshld_n_u64, aarch64_neon_vqshlu_n, VectorRet),
2144 NEONMAP1(vqshld_s64, aarch64_neon_vqshls, VectorRet),
2145 NEONMAP1(vqshld_u64, aarch64_neon_vqshlu, VectorRet),
2146 NEONMAP1(vqshlh_n_s16, aarch64_neon_vqshls_n, VectorRet),
2147 NEONMAP1(vqshlh_n_u16, aarch64_neon_vqshlu_n, VectorRet),
2148 NEONMAP1(vqshlh_s16, aarch64_neon_vqshls, VectorRet),
2149 NEONMAP1(vqshlh_u16, aarch64_neon_vqshlu, VectorRet),
2150 NEONMAP1(vqshls_n_s32, aarch64_neon_vqshls_n, VectorRet),
2151 NEONMAP1(vqshls_n_u32, aarch64_neon_vqshlu_n, VectorRet),
2152 NEONMAP1(vqshls_s32, aarch64_neon_vqshls, VectorRet),
2153 NEONMAP1(vqshls_u32, aarch64_neon_vqshlu, VectorRet),
2154 NEONMAP1(vqshlub_n_s8, aarch64_neon_vsqshlu, VectorRet),
2155 NEONMAP1(vqshlud_n_s64, aarch64_neon_vsqshlu, VectorRet),
2156 NEONMAP1(vqshluh_n_s16, aarch64_neon_vsqshlu, VectorRet),
2157 NEONMAP1(vqshlus_n_s32, aarch64_neon_vsqshlu, VectorRet),
2158 NEONMAP1(vqshrnd_n_s64, aarch64_neon_vsqshrn, VectorRet),
2159 NEONMAP1(vqshrnd_n_u64, aarch64_neon_vuqshrn, VectorRet),
2160 NEONMAP1(vqshrnh_n_s16, aarch64_neon_vsqshrn, VectorRet),
2161 NEONMAP1(vqshrnh_n_u16, aarch64_neon_vuqshrn, VectorRet),
2162 NEONMAP1(vqshrns_n_s32, aarch64_neon_vsqshrn, VectorRet),
2163 NEONMAP1(vqshrns_n_u32, aarch64_neon_vuqshrn, VectorRet),
2164 NEONMAP1(vqshrund_n_s64, aarch64_neon_vsqshrun, VectorRet),
2165 NEONMAP1(vqshrunh_n_s16, aarch64_neon_vsqshrun, VectorRet),
2166 NEONMAP1(vqshruns_n_s32, aarch64_neon_vsqshrun, VectorRet),
2167 NEONMAP1(vqsubb_s8, arm_neon_vqsubs, VectorRet),
2168 NEONMAP1(vqsubb_u8, arm_neon_vqsubu, VectorRet),
2169 NEONMAP1(vqsubd_s64, arm_neon_vqsubs, VectorRet),
2170 NEONMAP1(vqsubd_u64, arm_neon_vqsubu, VectorRet),
2171 NEONMAP1(vqsubh_s16, arm_neon_vqsubs, VectorRet),
2172 NEONMAP1(vqsubh_u16, arm_neon_vqsubu, VectorRet),
2173 NEONMAP1(vqsubs_s32, arm_neon_vqsubs, VectorRet),
2174 NEONMAP1(vqsubs_u32, arm_neon_vqsubu, VectorRet),
2175 NEONMAP1(vrecped_f64, aarch64_neon_vrecpe, AddRetType),
2176 NEONMAP1(vrecpes_f32, aarch64_neon_vrecpe, AddRetType),
2177 NEONMAP1(vrecpsd_f64, aarch64_neon_vrecps, AddRetType),
2178 NEONMAP1(vrecpss_f32, aarch64_neon_vrecps, AddRetType),
2179 NEONMAP1(vrecpxd_f64, aarch64_neon_vrecpx, AddRetType),
2180 NEONMAP1(vrecpxs_f32, aarch64_neon_vrecpx, AddRetType),
2181 NEONMAP1(vrshld_s64, aarch64_neon_vrshlds, 0),
2182 NEONMAP1(vrshld_u64, aarch64_neon_vrshldu, 0),
2183 NEONMAP1(vrshrd_n_s64, aarch64_neon_vsrshr, VectorRet),
2184 NEONMAP1(vrshrd_n_u64, aarch64_neon_vurshr, VectorRet),
2185 NEONMAP1(vrsqrted_f64, aarch64_neon_vrsqrte, AddRetType),
2186 NEONMAP1(vrsqrtes_f32, aarch64_neon_vrsqrte, AddRetType),
2187 NEONMAP1(vrsqrtsd_f64, aarch64_neon_vrsqrts, AddRetType),
2188 NEONMAP1(vrsqrtss_f32, aarch64_neon_vrsqrts, AddRetType),
2189 NEONMAP1(vrsrad_n_s64, aarch64_neon_vrsrads_n, 0),
2190 NEONMAP1(vrsrad_n_u64, aarch64_neon_vrsradu_n, 0),
2191 NEONMAP0(vset_lane_f32),
2192 NEONMAP0(vset_lane_f64),
2193 NEONMAP0(vset_lane_i16),
2194 NEONMAP0(vset_lane_i32),
2195 NEONMAP0(vset_lane_i64),
2196 NEONMAP0(vset_lane_i8),
2197 NEONMAP0(vsetq_lane_f32),
2198 NEONMAP0(vsetq_lane_f64),
2199 NEONMAP0(vsetq_lane_i16),
2200 NEONMAP0(vsetq_lane_i32),
2201 NEONMAP0(vsetq_lane_i64),
2202 NEONMAP0(vsetq_lane_i8),
2203 NEONMAP1(vsha1cq_u32, arm_neon_sha1c, 0),
2204 NEONMAP1(vsha1h_u32, arm_neon_sha1h, 0),
2205 NEONMAP1(vsha1mq_u32, arm_neon_sha1m, 0),
2206 NEONMAP1(vsha1pq_u32, arm_neon_sha1p, 0),
2207 NEONMAP1(vshld_n_s64, aarch64_neon_vshld_n, 0),
2208 NEONMAP1(vshld_n_u64, aarch64_neon_vshld_n, 0),
2209 NEONMAP1(vshld_s64, aarch64_neon_vshlds, 0),
2210 NEONMAP1(vshld_u64, aarch64_neon_vshldu, 0),
2211 NEONMAP1(vshrd_n_s64, aarch64_neon_vshrds_n, 0),
2212 NEONMAP1(vshrd_n_u64, aarch64_neon_vshrdu_n, 0),
2213 NEONMAP1(vslid_n_s64, aarch64_neon_vsli, VectorRet),
2214 NEONMAP1(vslid_n_u64, aarch64_neon_vsli, VectorRet),
2215 NEONMAP1(vsqaddb_u8, aarch64_neon_vsqadd, VectorRet),
2216 NEONMAP1(vsqaddd_u64, aarch64_neon_vsqadd, VectorRet),
2217 NEONMAP1(vsqaddh_u16, aarch64_neon_vsqadd, VectorRet),
2218 NEONMAP1(vsqadds_u32, aarch64_neon_vsqadd, VectorRet),
2219 NEONMAP1(vsrad_n_s64, aarch64_neon_vsrads_n, 0),
2220 NEONMAP1(vsrad_n_u64, aarch64_neon_vsradu_n, 0),
2221 NEONMAP1(vsrid_n_s64, aarch64_neon_vsri, VectorRet),
2222 NEONMAP1(vsrid_n_u64, aarch64_neon_vsri, VectorRet),
2223 NEONMAP1(vsubd_s64, aarch64_neon_vsubds, 0),
2224 NEONMAP1(vsubd_u64, aarch64_neon_vsubdu, 0),
2225 NEONMAP1(vtstd_s64, aarch64_neon_vtstd, VectorRetGetArgs01),
2226 NEONMAP1(vtstd_u64, aarch64_neon_vtstd, VectorRetGetArgs01),
2227 NEONMAP1(vuqaddb_s8, aarch64_neon_vuqadd, VectorRet),
2228 NEONMAP1(vuqaddd_s64, aarch64_neon_vuqadd, VectorRet),
2229 NEONMAP1(vuqaddh_s16, aarch64_neon_vuqadd, VectorRet),
2230 NEONMAP1(vuqadds_s32, aarch64_neon_vuqadd, VectorRet)
Tim Northoverdb3e5e22014-02-19 11:55:06 +00002231};
2232
Tim Northover8fe03d62014-02-21 11:57:24 +00002233static NeonIntrinsicInfo ARMSIMDIntrinsicMap [] = {
2234 NEONMAP2(vabd_v, arm_neon_vabdu, arm_neon_vabds, Add1ArgType | UnsignedAlts),
2235 NEONMAP2(vabdq_v, arm_neon_vabdu, arm_neon_vabds, Add1ArgType | UnsignedAlts),
2236 NEONMAP1(vabs_v, arm_neon_vabs, 0),
2237 NEONMAP1(vabsq_v, arm_neon_vabs, 0),
2238 NEONMAP0(vaddhn_v),
2239 NEONMAP1(vaesdq_v, arm_neon_aesd, 0),
2240 NEONMAP1(vaeseq_v, arm_neon_aese, 0),
2241 NEONMAP1(vaesimcq_v, arm_neon_aesimc, 0),
2242 NEONMAP1(vaesmcq_v, arm_neon_aesmc, 0),
2243 NEONMAP1(vbsl_v, arm_neon_vbsl, AddRetType),
2244 NEONMAP1(vbslq_v, arm_neon_vbsl, AddRetType),
2245 NEONMAP1(vcage_v, arm_neon_vacge, 0),
2246 NEONMAP1(vcageq_v, arm_neon_vacge, 0),
2247 NEONMAP1(vcagt_v, arm_neon_vacgt, 0),
2248 NEONMAP1(vcagtq_v, arm_neon_vacgt, 0),
2249 NEONMAP1(vcale_v, arm_neon_vacge, 0),
2250 NEONMAP1(vcaleq_v, arm_neon_vacge, 0),
2251 NEONMAP1(vcalt_v, arm_neon_vacgt, 0),
2252 NEONMAP1(vcaltq_v, arm_neon_vacgt, 0),
2253 NEONMAP1(vcls_v, arm_neon_vcls, Add1ArgType),
2254 NEONMAP1(vclsq_v, arm_neon_vcls, Add1ArgType),
2255 NEONMAP1(vclz_v, ctlz, Add1ArgType),
2256 NEONMAP1(vclzq_v, ctlz, Add1ArgType),
2257 NEONMAP1(vcnt_v, ctpop, Add1ArgType),
2258 NEONMAP1(vcntq_v, ctpop, Add1ArgType),
2259 NEONMAP1(vcvt_f16_v, arm_neon_vcvtfp2hf, 0),
2260 NEONMAP1(vcvt_f32_f16, arm_neon_vcvthf2fp, 0),
2261 NEONMAP0(vcvt_f32_v),
2262 NEONMAP2(vcvt_n_f32_v, arm_neon_vcvtfxu2fp, arm_neon_vcvtfxs2fp, 0),
2263 NEONMAP1(vcvt_n_s32_v, arm_neon_vcvtfp2fxs, 0),
2264 NEONMAP1(vcvt_n_s64_v, arm_neon_vcvtfp2fxs, 0),
2265 NEONMAP1(vcvt_n_u32_v, arm_neon_vcvtfp2fxu, 0),
2266 NEONMAP1(vcvt_n_u64_v, arm_neon_vcvtfp2fxu, 0),
2267 NEONMAP0(vcvt_s32_v),
2268 NEONMAP0(vcvt_s64_v),
2269 NEONMAP0(vcvt_u32_v),
2270 NEONMAP0(vcvt_u64_v),
2271 NEONMAP1(vcvta_s32_v, arm_neon_vcvtas, 0),
2272 NEONMAP1(vcvta_s64_v, arm_neon_vcvtas, 0),
2273 NEONMAP1(vcvta_u32_v, arm_neon_vcvtau, 0),
2274 NEONMAP1(vcvta_u64_v, arm_neon_vcvtau, 0),
2275 NEONMAP1(vcvtaq_s32_v, arm_neon_vcvtas, 0),
2276 NEONMAP1(vcvtaq_s64_v, arm_neon_vcvtas, 0),
2277 NEONMAP1(vcvtaq_u32_v, arm_neon_vcvtau, 0),
2278 NEONMAP1(vcvtaq_u64_v, arm_neon_vcvtau, 0),
2279 NEONMAP1(vcvtm_s32_v, arm_neon_vcvtms, 0),
2280 NEONMAP1(vcvtm_s64_v, arm_neon_vcvtms, 0),
2281 NEONMAP1(vcvtm_u32_v, arm_neon_vcvtmu, 0),
2282 NEONMAP1(vcvtm_u64_v, arm_neon_vcvtmu, 0),
2283 NEONMAP1(vcvtmq_s32_v, arm_neon_vcvtms, 0),
2284 NEONMAP1(vcvtmq_s64_v, arm_neon_vcvtms, 0),
2285 NEONMAP1(vcvtmq_u32_v, arm_neon_vcvtmu, 0),
2286 NEONMAP1(vcvtmq_u64_v, arm_neon_vcvtmu, 0),
2287 NEONMAP1(vcvtn_s32_v, arm_neon_vcvtns, 0),
2288 NEONMAP1(vcvtn_s64_v, arm_neon_vcvtns, 0),
2289 NEONMAP1(vcvtn_u32_v, arm_neon_vcvtnu, 0),
2290 NEONMAP1(vcvtn_u64_v, arm_neon_vcvtnu, 0),
2291 NEONMAP1(vcvtnq_s32_v, arm_neon_vcvtns, 0),
2292 NEONMAP1(vcvtnq_s64_v, arm_neon_vcvtns, 0),
2293 NEONMAP1(vcvtnq_u32_v, arm_neon_vcvtnu, 0),
2294 NEONMAP1(vcvtnq_u64_v, arm_neon_vcvtnu, 0),
2295 NEONMAP1(vcvtp_s32_v, arm_neon_vcvtps, 0),
2296 NEONMAP1(vcvtp_s64_v, arm_neon_vcvtps, 0),
2297 NEONMAP1(vcvtp_u32_v, arm_neon_vcvtpu, 0),
2298 NEONMAP1(vcvtp_u64_v, arm_neon_vcvtpu, 0),
2299 NEONMAP1(vcvtpq_s32_v, arm_neon_vcvtps, 0),
2300 NEONMAP1(vcvtpq_s64_v, arm_neon_vcvtps, 0),
2301 NEONMAP1(vcvtpq_u32_v, arm_neon_vcvtpu, 0),
2302 NEONMAP1(vcvtpq_u64_v, arm_neon_vcvtpu, 0),
2303 NEONMAP0(vcvtq_f32_v),
2304 NEONMAP2(vcvtq_n_f32_v, arm_neon_vcvtfxu2fp, arm_neon_vcvtfxs2fp, 0),
2305 NEONMAP1(vcvtq_n_s32_v, arm_neon_vcvtfp2fxs, 0),
2306 NEONMAP1(vcvtq_n_s64_v, arm_neon_vcvtfp2fxs, 0),
2307 NEONMAP1(vcvtq_n_u32_v, arm_neon_vcvtfp2fxu, 0),
2308 NEONMAP1(vcvtq_n_u64_v, arm_neon_vcvtfp2fxu, 0),
2309 NEONMAP0(vcvtq_s32_v),
2310 NEONMAP0(vcvtq_s64_v),
2311 NEONMAP0(vcvtq_u32_v),
2312 NEONMAP0(vcvtq_u64_v),
2313 NEONMAP0(vext_v),
2314 NEONMAP0(vextq_v),
2315 NEONMAP0(vfma_v),
2316 NEONMAP0(vfmaq_v),
2317 NEONMAP2(vhadd_v, arm_neon_vhaddu, arm_neon_vhadds, Add1ArgType | UnsignedAlts),
2318 NEONMAP2(vhaddq_v, arm_neon_vhaddu, arm_neon_vhadds, Add1ArgType | UnsignedAlts),
2319 NEONMAP2(vhsub_v, arm_neon_vhsubu, arm_neon_vhsubs, Add1ArgType | UnsignedAlts),
2320 NEONMAP2(vhsubq_v, arm_neon_vhsubu, arm_neon_vhsubs, Add1ArgType | UnsignedAlts),
2321 NEONMAP0(vld1_dup_v),
2322 NEONMAP1(vld1_v, arm_neon_vld1, 0),
2323 NEONMAP0(vld1q_dup_v),
2324 NEONMAP1(vld1q_v, arm_neon_vld1, 0),
2325 NEONMAP1(vld2_lane_v, arm_neon_vld2lane, 0),
2326 NEONMAP1(vld2_v, arm_neon_vld2, 0),
2327 NEONMAP1(vld2q_lane_v, arm_neon_vld2lane, 0),
2328 NEONMAP1(vld2q_v, arm_neon_vld2, 0),
2329 NEONMAP1(vld3_lane_v, arm_neon_vld3lane, 0),
2330 NEONMAP1(vld3_v, arm_neon_vld3, 0),
2331 NEONMAP1(vld3q_lane_v, arm_neon_vld3lane, 0),
2332 NEONMAP1(vld3q_v, arm_neon_vld3, 0),
2333 NEONMAP1(vld4_lane_v, arm_neon_vld4lane, 0),
2334 NEONMAP1(vld4_v, arm_neon_vld4, 0),
2335 NEONMAP1(vld4q_lane_v, arm_neon_vld4lane, 0),
2336 NEONMAP1(vld4q_v, arm_neon_vld4, 0),
2337 NEONMAP2(vmax_v, arm_neon_vmaxu, arm_neon_vmaxs, Add1ArgType | UnsignedAlts),
2338 NEONMAP2(vmaxq_v, arm_neon_vmaxu, arm_neon_vmaxs, Add1ArgType | UnsignedAlts),
2339 NEONMAP2(vmin_v, arm_neon_vminu, arm_neon_vmins, Add1ArgType | UnsignedAlts),
2340 NEONMAP2(vminq_v, arm_neon_vminu, arm_neon_vmins, Add1ArgType | UnsignedAlts),
2341 NEONMAP0(vmovl_v),
2342 NEONMAP0(vmovn_v),
2343 NEONMAP1(vmul_v, arm_neon_vmulp, Add1ArgType),
2344 NEONMAP0(vmull_v),
2345 NEONMAP1(vmulq_v, arm_neon_vmulp, Add1ArgType),
2346 NEONMAP2(vpadal_v, arm_neon_vpadalu, arm_neon_vpadals, UnsignedAlts),
2347 NEONMAP2(vpadalq_v, arm_neon_vpadalu, arm_neon_vpadals, UnsignedAlts),
2348 NEONMAP1(vpadd_v, arm_neon_vpadd, Add1ArgType),
2349 NEONMAP2(vpaddl_v, arm_neon_vpaddlu, arm_neon_vpaddls, UnsignedAlts),
2350 NEONMAP2(vpaddlq_v, arm_neon_vpaddlu, arm_neon_vpaddls, UnsignedAlts),
2351 NEONMAP1(vpaddq_v, arm_neon_vpadd, Add1ArgType),
2352 NEONMAP2(vpmax_v, arm_neon_vpmaxu, arm_neon_vpmaxs, Add1ArgType | UnsignedAlts),
2353 NEONMAP2(vpmin_v, arm_neon_vpminu, arm_neon_vpmins, Add1ArgType | UnsignedAlts),
2354 NEONMAP1(vqabs_v, arm_neon_vqabs, Add1ArgType),
2355 NEONMAP1(vqabsq_v, arm_neon_vqabs, Add1ArgType),
2356 NEONMAP2(vqadd_v, arm_neon_vqaddu, arm_neon_vqadds, Add1ArgType | UnsignedAlts),
2357 NEONMAP2(vqaddq_v, arm_neon_vqaddu, arm_neon_vqadds, Add1ArgType | UnsignedAlts),
2358 NEONMAP2(vqdmlal_v, arm_neon_vqdmull, arm_neon_vqadds, 0),
2359 NEONMAP2(vqdmlsl_v, arm_neon_vqdmull, arm_neon_vqsubs, 0),
2360 NEONMAP1(vqdmulh_v, arm_neon_vqdmulh, Add1ArgType),
2361 NEONMAP1(vqdmulhq_v, arm_neon_vqdmulh, Add1ArgType),
2362 NEONMAP1(vqdmull_v, arm_neon_vqdmull, Add1ArgType),
2363 NEONMAP2(vqmovn_v, arm_neon_vqmovnu, arm_neon_vqmovns, Add1ArgType | UnsignedAlts),
2364 NEONMAP1(vqmovun_v, arm_neon_vqmovnsu, Add1ArgType),
2365 NEONMAP1(vqneg_v, arm_neon_vqneg, Add1ArgType),
2366 NEONMAP1(vqnegq_v, arm_neon_vqneg, Add1ArgType),
2367 NEONMAP1(vqrdmulh_v, arm_neon_vqrdmulh, Add1ArgType),
2368 NEONMAP1(vqrdmulhq_v, arm_neon_vqrdmulh, Add1ArgType),
2369 NEONMAP2(vqrshl_v, arm_neon_vqrshiftu, arm_neon_vqrshifts, Add1ArgType | UnsignedAlts),
2370 NEONMAP2(vqrshlq_v, arm_neon_vqrshiftu, arm_neon_vqrshifts, Add1ArgType | UnsignedAlts),
2371 NEONMAP2(vqshl_n_v, arm_neon_vqshiftu, arm_neon_vqshifts, UnsignedAlts),
2372 NEONMAP2(vqshl_v, arm_neon_vqshiftu, arm_neon_vqshifts, Add1ArgType | UnsignedAlts),
2373 NEONMAP2(vqshlq_n_v, arm_neon_vqshiftu, arm_neon_vqshifts, UnsignedAlts),
2374 NEONMAP2(vqshlq_v, arm_neon_vqshiftu, arm_neon_vqshifts, Add1ArgType | UnsignedAlts),
2375 NEONMAP2(vqsub_v, arm_neon_vqsubu, arm_neon_vqsubs, Add1ArgType | UnsignedAlts),
2376 NEONMAP2(vqsubq_v, arm_neon_vqsubu, arm_neon_vqsubs, Add1ArgType | UnsignedAlts),
2377 NEONMAP1(vraddhn_v, arm_neon_vraddhn, Add1ArgType),
2378 NEONMAP2(vrecpe_v, arm_neon_vrecpe, arm_neon_vrecpe, 0),
2379 NEONMAP2(vrecpeq_v, arm_neon_vrecpe, arm_neon_vrecpe, 0),
2380 NEONMAP1(vrecps_v, arm_neon_vrecps, Add1ArgType),
2381 NEONMAP1(vrecpsq_v, arm_neon_vrecps, Add1ArgType),
2382 NEONMAP2(vrhadd_v, arm_neon_vrhaddu, arm_neon_vrhadds, Add1ArgType | UnsignedAlts),
2383 NEONMAP2(vrhaddq_v, arm_neon_vrhaddu, arm_neon_vrhadds, Add1ArgType | UnsignedAlts),
2384 NEONMAP2(vrshl_v, arm_neon_vrshiftu, arm_neon_vrshifts, Add1ArgType | UnsignedAlts),
2385 NEONMAP2(vrshlq_v, arm_neon_vrshiftu, arm_neon_vrshifts, Add1ArgType | UnsignedAlts),
2386 NEONMAP2(vrsqrte_v, arm_neon_vrsqrte, arm_neon_vrsqrte, 0),
2387 NEONMAP2(vrsqrteq_v, arm_neon_vrsqrte, arm_neon_vrsqrte, 0),
2388 NEONMAP1(vrsqrts_v, arm_neon_vrsqrts, Add1ArgType),
2389 NEONMAP1(vrsqrtsq_v, arm_neon_vrsqrts, Add1ArgType),
2390 NEONMAP1(vrsubhn_v, arm_neon_vrsubhn, Add1ArgType),
2391 NEONMAP1(vsha1su0q_v, arm_neon_sha1su0, 0),
2392 NEONMAP1(vsha1su1q_v, arm_neon_sha1su1, 0),
2393 NEONMAP1(vsha256h2q_v, arm_neon_sha256h2, 0),
2394 NEONMAP1(vsha256hq_v, arm_neon_sha256h, 0),
2395 NEONMAP1(vsha256su0q_v, arm_neon_sha256su0, 0),
2396 NEONMAP1(vsha256su1q_v, arm_neon_sha256su1, 0),
2397 NEONMAP0(vshl_n_v),
2398 NEONMAP2(vshl_v, arm_neon_vshiftu, arm_neon_vshifts, Add1ArgType | UnsignedAlts),
2399 NEONMAP0(vshll_n_v),
2400 NEONMAP0(vshlq_n_v),
2401 NEONMAP2(vshlq_v, arm_neon_vshiftu, arm_neon_vshifts, Add1ArgType | UnsignedAlts),
2402 NEONMAP0(vshr_n_v),
2403 NEONMAP0(vshrn_n_v),
2404 NEONMAP0(vshrq_n_v),
2405 NEONMAP1(vst1_v, arm_neon_vst1, 0),
2406 NEONMAP1(vst1q_v, arm_neon_vst1, 0),
2407 NEONMAP1(vst2_lane_v, arm_neon_vst2lane, 0),
2408 NEONMAP1(vst2_v, arm_neon_vst2, 0),
2409 NEONMAP1(vst2q_lane_v, arm_neon_vst2lane, 0),
2410 NEONMAP1(vst2q_v, arm_neon_vst2, 0),
2411 NEONMAP1(vst3_lane_v, arm_neon_vst3lane, 0),
2412 NEONMAP1(vst3_v, arm_neon_vst3, 0),
2413 NEONMAP1(vst3q_lane_v, arm_neon_vst3lane, 0),
2414 NEONMAP1(vst3q_v, arm_neon_vst3, 0),
2415 NEONMAP1(vst4_lane_v, arm_neon_vst4lane, 0),
2416 NEONMAP1(vst4_v, arm_neon_vst4, 0),
2417 NEONMAP1(vst4q_lane_v, arm_neon_vst4lane, 0),
2418 NEONMAP1(vst4q_v, arm_neon_vst4, 0),
2419 NEONMAP0(vsubhn_v),
2420 NEONMAP0(vtrn_v),
2421 NEONMAP0(vtrnq_v),
2422 NEONMAP0(vtst_v),
2423 NEONMAP0(vtstq_v),
2424 NEONMAP0(vuzp_v),
2425 NEONMAP0(vuzpq_v),
2426 NEONMAP0(vzip_v),
Tim Northovera0c95eb2014-02-21 12:16:59 +00002427 NEONMAP0(vzipq_v)
Tim Northover8fe03d62014-02-21 11:57:24 +00002428};
2429
Tim Northovera2ee4332014-03-29 15:09:45 +00002430static NeonIntrinsicInfo ARM64SIMDIntrinsicMap[] = {
2431 NEONMAP1(vabs_v, arm64_neon_abs, 0),
2432 NEONMAP1(vabsq_v, arm64_neon_abs, 0),
2433 NEONMAP0(vaddhn_v),
2434 NEONMAP1(vaesdq_v, arm64_crypto_aesd, 0),
2435 NEONMAP1(vaeseq_v, arm64_crypto_aese, 0),
2436 NEONMAP1(vaesimcq_v, arm64_crypto_aesimc, 0),
2437 NEONMAP1(vaesmcq_v, arm64_crypto_aesmc, 0),
2438 NEONMAP1(vcage_v, arm64_neon_facge, 0),
2439 NEONMAP1(vcageq_v, arm64_neon_facge, 0),
2440 NEONMAP1(vcagt_v, arm64_neon_facgt, 0),
2441 NEONMAP1(vcagtq_v, arm64_neon_facgt, 0),
2442 NEONMAP1(vcale_v, arm64_neon_facge, 0),
2443 NEONMAP1(vcaleq_v, arm64_neon_facge, 0),
2444 NEONMAP1(vcalt_v, arm64_neon_facgt, 0),
2445 NEONMAP1(vcaltq_v, arm64_neon_facgt, 0),
2446 NEONMAP1(vcls_v, arm64_neon_cls, Add1ArgType),
2447 NEONMAP1(vclsq_v, arm64_neon_cls, Add1ArgType),
2448 NEONMAP1(vclz_v, ctlz, Add1ArgType),
2449 NEONMAP1(vclzq_v, ctlz, Add1ArgType),
2450 NEONMAP1(vcnt_v, ctpop, Add1ArgType),
2451 NEONMAP1(vcntq_v, ctpop, Add1ArgType),
2452 NEONMAP1(vcvt_f16_v, arm64_neon_vcvtfp2hf, 0),
2453 NEONMAP1(vcvt_f32_f16, arm64_neon_vcvthf2fp, 0),
2454 NEONMAP0(vcvt_f32_v),
2455 NEONMAP2(vcvt_n_f32_v, arm64_neon_vcvtfxu2fp, arm64_neon_vcvtfxs2fp, 0),
2456 NEONMAP2(vcvt_n_f64_v, arm64_neon_vcvtfxu2fp, arm64_neon_vcvtfxs2fp, 0),
2457 NEONMAP1(vcvt_n_s32_v, arm64_neon_vcvtfp2fxs, 0),
2458 NEONMAP1(vcvt_n_s64_v, arm64_neon_vcvtfp2fxs, 0),
2459 NEONMAP1(vcvt_n_u32_v, arm64_neon_vcvtfp2fxu, 0),
2460 NEONMAP1(vcvt_n_u64_v, arm64_neon_vcvtfp2fxu, 0),
2461 NEONMAP0(vcvtq_f32_v),
2462 NEONMAP2(vcvtq_n_f32_v, arm64_neon_vcvtfxu2fp, arm64_neon_vcvtfxs2fp, 0),
2463 NEONMAP2(vcvtq_n_f64_v, arm64_neon_vcvtfxu2fp, arm64_neon_vcvtfxs2fp, 0),
2464 NEONMAP1(vcvtq_n_s32_v, arm64_neon_vcvtfp2fxs, 0),
2465 NEONMAP1(vcvtq_n_s64_v, arm64_neon_vcvtfp2fxs, 0),
2466 NEONMAP1(vcvtq_n_u32_v, arm64_neon_vcvtfp2fxu, 0),
2467 NEONMAP1(vcvtq_n_u64_v, arm64_neon_vcvtfp2fxu, 0),
2468 NEONMAP1(vcvtx_f32_v, arm64_neon_fcvtxn, AddRetType | Add1ArgType),
2469 NEONMAP0(vext_v),
2470 NEONMAP0(vextq_v),
2471 NEONMAP0(vfma_v),
2472 NEONMAP0(vfmaq_v),
2473 NEONMAP2(vhadd_v, arm64_neon_uhadd, arm64_neon_shadd, Add1ArgType | UnsignedAlts),
2474 NEONMAP2(vhaddq_v, arm64_neon_uhadd, arm64_neon_shadd, Add1ArgType | UnsignedAlts),
2475 NEONMAP2(vhsub_v, arm64_neon_uhsub, arm64_neon_shsub, Add1ArgType | UnsignedAlts),
2476 NEONMAP2(vhsubq_v, arm64_neon_uhsub, arm64_neon_shsub, Add1ArgType | UnsignedAlts),
2477 NEONMAP0(vmovl_v),
2478 NEONMAP0(vmovn_v),
2479 NEONMAP1(vmul_v, arm64_neon_pmul, Add1ArgType),
2480 NEONMAP1(vmulq_v, arm64_neon_pmul, Add1ArgType),
2481 NEONMAP1(vpadd_v, arm64_neon_addp, Add1ArgType),
2482 NEONMAP2(vpaddl_v, arm64_neon_uaddlp, arm64_neon_saddlp, UnsignedAlts),
2483 NEONMAP2(vpaddlq_v, arm64_neon_uaddlp, arm64_neon_saddlp, UnsignedAlts),
2484 NEONMAP1(vpaddq_v, arm64_neon_addp, Add1ArgType),
2485 NEONMAP1(vqabs_v, arm64_neon_sqabs, Add1ArgType),
2486 NEONMAP1(vqabsq_v, arm64_neon_sqabs, Add1ArgType),
2487 NEONMAP2(vqadd_v, arm64_neon_uqadd, arm64_neon_sqadd, Add1ArgType | UnsignedAlts),
2488 NEONMAP2(vqaddq_v, arm64_neon_uqadd, arm64_neon_sqadd, Add1ArgType | UnsignedAlts),
2489 NEONMAP2(vqdmlal_v, arm64_neon_sqdmull, arm64_neon_sqadd, 0),
2490 NEONMAP2(vqdmlsl_v, arm64_neon_sqdmull, arm64_neon_sqsub, 0),
2491 NEONMAP1(vqdmulh_v, arm64_neon_sqdmulh, Add1ArgType),
2492 NEONMAP1(vqdmulhq_v, arm64_neon_sqdmulh, Add1ArgType),
2493 NEONMAP1(vqdmull_v, arm64_neon_sqdmull, Add1ArgType),
2494 NEONMAP2(vqmovn_v, arm64_neon_uqxtn, arm64_neon_sqxtn, Add1ArgType | UnsignedAlts),
2495 NEONMAP1(vqmovun_v, arm64_neon_sqxtun, Add1ArgType),
2496 NEONMAP1(vqneg_v, arm64_neon_sqneg, Add1ArgType),
2497 NEONMAP1(vqnegq_v, arm64_neon_sqneg, Add1ArgType),
2498 NEONMAP1(vqrdmulh_v, arm64_neon_sqrdmulh, Add1ArgType),
2499 NEONMAP1(vqrdmulhq_v, arm64_neon_sqrdmulh, Add1ArgType),
2500 NEONMAP2(vqrshl_v, arm64_neon_uqrshl, arm64_neon_sqrshl, Add1ArgType | UnsignedAlts),
2501 NEONMAP2(vqrshlq_v, arm64_neon_uqrshl, arm64_neon_sqrshl, Add1ArgType | UnsignedAlts),
2502 NEONMAP2(vqshl_n_v, arm64_neon_uqshl, arm64_neon_sqshl, UnsignedAlts),
2503 NEONMAP2(vqshl_v, arm64_neon_uqshl, arm64_neon_sqshl, Add1ArgType | UnsignedAlts),
2504 NEONMAP2(vqshlq_n_v, arm64_neon_uqshl, arm64_neon_sqshl,UnsignedAlts),
2505 NEONMAP2(vqshlq_v, arm64_neon_uqshl, arm64_neon_sqshl, Add1ArgType | UnsignedAlts),
2506 NEONMAP2(vqsub_v, arm64_neon_uqsub, arm64_neon_sqsub, Add1ArgType | UnsignedAlts),
2507 NEONMAP2(vqsubq_v, arm64_neon_uqsub, arm64_neon_sqsub, Add1ArgType | UnsignedAlts),
2508 NEONMAP1(vraddhn_v, arm64_neon_raddhn, Add1ArgType),
2509 NEONMAP2(vrecpe_v, arm64_neon_frecpe, arm64_neon_urecpe, 0),
2510 NEONMAP2(vrecpeq_v, arm64_neon_frecpe, arm64_neon_urecpe, 0),
2511 NEONMAP1(vrecps_v, arm64_neon_frecps, Add1ArgType),
2512 NEONMAP1(vrecpsq_v, arm64_neon_frecps, Add1ArgType),
2513 NEONMAP2(vrhadd_v, arm64_neon_urhadd, arm64_neon_srhadd, Add1ArgType | UnsignedAlts),
2514 NEONMAP2(vrhaddq_v, arm64_neon_urhadd, arm64_neon_srhadd, Add1ArgType | UnsignedAlts),
2515 NEONMAP2(vrshl_v, arm64_neon_urshl, arm64_neon_srshl, Add1ArgType | UnsignedAlts),
2516 NEONMAP2(vrshlq_v, arm64_neon_urshl, arm64_neon_srshl, Add1ArgType | UnsignedAlts),
2517 NEONMAP2(vrsqrte_v, arm64_neon_frsqrte, arm64_neon_ursqrte, 0),
2518 NEONMAP2(vrsqrteq_v, arm64_neon_frsqrte, arm64_neon_ursqrte, 0),
2519 NEONMAP1(vrsqrts_v, arm64_neon_frsqrts, Add1ArgType),
2520 NEONMAP1(vrsqrtsq_v, arm64_neon_frsqrts, Add1ArgType),
2521 NEONMAP1(vrsubhn_v, arm64_neon_rsubhn, Add1ArgType),
2522 NEONMAP1(vsha1su0q_v, arm64_crypto_sha1su0, 0),
2523 NEONMAP1(vsha1su1q_v, arm64_crypto_sha1su1, 0),
2524 NEONMAP1(vsha256h2q_v, arm64_crypto_sha256h2, 0),
2525 NEONMAP1(vsha256hq_v, arm64_crypto_sha256h, 0),
2526 NEONMAP1(vsha256su0q_v, arm64_crypto_sha256su0, 0),
2527 NEONMAP1(vsha256su1q_v, arm64_crypto_sha256su1, 0),
2528 NEONMAP0(vshl_n_v),
2529 NEONMAP2(vshl_v, arm64_neon_ushl, arm64_neon_sshl, Add1ArgType | UnsignedAlts),
2530 NEONMAP0(vshll_n_v),
2531 NEONMAP0(vshlq_n_v),
2532 NEONMAP2(vshlq_v, arm64_neon_ushl, arm64_neon_sshl, Add1ArgType | UnsignedAlts),
2533 NEONMAP0(vshr_n_v),
2534 NEONMAP0(vshrn_n_v),
2535 NEONMAP0(vshrq_n_v),
2536 NEONMAP0(vsubhn_v),
2537 NEONMAP0(vtst_v),
2538 NEONMAP0(vtstq_v),
2539};
2540
2541static NeonIntrinsicInfo ARM64SISDIntrinsicMap[] = {
2542 NEONMAP1(vabdd_f64, arm64_sisd_fabd, Add1ArgType),
2543 NEONMAP1(vabds_f32, arm64_sisd_fabd, Add1ArgType),
2544 NEONMAP1(vaddlv_s32, arm64_neon_saddlv, AddRetType | Add1ArgType),
2545 NEONMAP1(vaddlv_u32, arm64_neon_uaddlv, AddRetType | Add1ArgType),
2546 NEONMAP1(vaddlvq_s32, arm64_neon_saddlv, AddRetType | Add1ArgType),
2547 NEONMAP1(vaddlvq_u32, arm64_neon_uaddlv, AddRetType | Add1ArgType),
2548 NEONMAP1(vaddv_f32, arm64_neon_faddv, AddRetType | Add1ArgType),
2549 NEONMAP1(vaddv_s32, arm64_neon_saddv, AddRetType | Add1ArgType),
2550 NEONMAP1(vaddv_u32, arm64_neon_uaddv, AddRetType | Add1ArgType),
2551 NEONMAP1(vaddvq_f32, arm64_neon_faddv, AddRetType | Add1ArgType),
2552 NEONMAP1(vaddvq_f64, arm64_neon_faddv, AddRetType | Add1ArgType),
2553 NEONMAP1(vaddvq_s32, arm64_neon_saddv, AddRetType | Add1ArgType),
2554 NEONMAP1(vaddvq_s64, arm64_neon_saddv, AddRetType | Add1ArgType),
2555 NEONMAP1(vaddvq_u32, arm64_neon_uaddv, AddRetType | Add1ArgType),
2556 NEONMAP1(vaddvq_u64, arm64_neon_uaddv, AddRetType | Add1ArgType),
2557 NEONMAP1(vcaged_f64, arm64_neon_facge, AddRetType | Add1ArgType),
2558 NEONMAP1(vcages_f32, arm64_neon_facge, AddRetType | Add1ArgType),
2559 NEONMAP1(vcagtd_f64, arm64_neon_facgt, AddRetType | Add1ArgType),
2560 NEONMAP1(vcagts_f32, arm64_neon_facgt, AddRetType | Add1ArgType),
2561 NEONMAP1(vcaled_f64, arm64_neon_facge, AddRetType | Add1ArgType),
2562 NEONMAP1(vcales_f32, arm64_neon_facge, AddRetType | Add1ArgType),
2563 NEONMAP1(vcaltd_f64, arm64_neon_facgt, AddRetType | Add1ArgType),
2564 NEONMAP1(vcalts_f32, arm64_neon_facgt, AddRetType | Add1ArgType),
2565 NEONMAP1(vcvtad_s64_f64, arm64_neon_fcvtas, AddRetType | Add1ArgType),
2566 NEONMAP1(vcvtad_u64_f64, arm64_neon_fcvtau, AddRetType | Add1ArgType),
2567 NEONMAP1(vcvtas_s32_f32, arm64_neon_fcvtas, AddRetType | Add1ArgType),
2568 NEONMAP1(vcvtas_u32_f32, arm64_neon_fcvtau, AddRetType | Add1ArgType),
2569 NEONMAP1(vcvtd_n_f64_s64, arm64_neon_vcvtfxs2fp, AddRetType | Add1ArgType),
2570 NEONMAP1(vcvtd_n_f64_u64, arm64_neon_vcvtfxu2fp, AddRetType | Add1ArgType),
2571 NEONMAP1(vcvtd_n_s64_f64, arm64_neon_vcvtfp2fxs, AddRetType | Add1ArgType),
2572 NEONMAP1(vcvtd_n_u64_f64, arm64_neon_vcvtfp2fxu, AddRetType | Add1ArgType),
2573 NEONMAP1(vcvtmd_s64_f64, arm64_neon_fcvtms, AddRetType | Add1ArgType),
2574 NEONMAP1(vcvtmd_u64_f64, arm64_neon_fcvtmu, AddRetType | Add1ArgType),
2575 NEONMAP1(vcvtms_s32_f32, arm64_neon_fcvtms, AddRetType | Add1ArgType),
2576 NEONMAP1(vcvtms_u32_f32, arm64_neon_fcvtmu, AddRetType | Add1ArgType),
2577 NEONMAP1(vcvtnd_s64_f64, arm64_neon_fcvtns, AddRetType | Add1ArgType),
2578 NEONMAP1(vcvtnd_u64_f64, arm64_neon_fcvtnu, AddRetType | Add1ArgType),
2579 NEONMAP1(vcvtns_s32_f32, arm64_neon_fcvtns, AddRetType | Add1ArgType),
2580 NEONMAP1(vcvtns_u32_f32, arm64_neon_fcvtnu, AddRetType | Add1ArgType),
2581 NEONMAP1(vcvtpd_s64_f64, arm64_neon_fcvtps, AddRetType | Add1ArgType),
2582 NEONMAP1(vcvtpd_u64_f64, arm64_neon_fcvtpu, AddRetType | Add1ArgType),
2583 NEONMAP1(vcvtps_s32_f32, arm64_neon_fcvtps, AddRetType | Add1ArgType),
2584 NEONMAP1(vcvtps_u32_f32, arm64_neon_fcvtpu, AddRetType | Add1ArgType),
2585 NEONMAP1(vcvts_n_f32_s32, arm64_neon_vcvtfxs2fp, AddRetType | Add1ArgType),
2586 NEONMAP1(vcvts_n_f32_u32, arm64_neon_vcvtfxu2fp, AddRetType | Add1ArgType),
2587 NEONMAP1(vcvts_n_s32_f32, arm64_neon_vcvtfp2fxs, AddRetType | Add1ArgType),
2588 NEONMAP1(vcvts_n_u32_f32, arm64_neon_vcvtfp2fxu, AddRetType | Add1ArgType),
2589 NEONMAP1(vcvtxd_f32_f64, arm64_sisd_fcvtxn, 0),
2590 NEONMAP1(vmaxnmv_f32, arm64_neon_fmaxnmv, AddRetType | Add1ArgType),
2591 NEONMAP1(vmaxnmvq_f32, arm64_neon_fmaxnmv, AddRetType | Add1ArgType),
2592 NEONMAP1(vmaxnmvq_f64, arm64_neon_fmaxnmv, AddRetType | Add1ArgType),
2593 NEONMAP1(vmaxv_f32, arm64_neon_fmaxv, AddRetType | Add1ArgType),
2594 NEONMAP1(vmaxv_s32, arm64_neon_smaxv, AddRetType | Add1ArgType),
2595 NEONMAP1(vmaxv_u32, arm64_neon_umaxv, AddRetType | Add1ArgType),
2596 NEONMAP1(vmaxvq_f32, arm64_neon_fmaxv, AddRetType | Add1ArgType),
2597 NEONMAP1(vmaxvq_f64, arm64_neon_fmaxv, AddRetType | Add1ArgType),
2598 NEONMAP1(vmaxvq_s32, arm64_neon_smaxv, AddRetType | Add1ArgType),
2599 NEONMAP1(vmaxvq_u32, arm64_neon_umaxv, AddRetType | Add1ArgType),
2600 NEONMAP1(vminnmv_f32, arm64_neon_fminnmv, AddRetType | Add1ArgType),
2601 NEONMAP1(vminnmvq_f32, arm64_neon_fminnmv, AddRetType | Add1ArgType),
2602 NEONMAP1(vminnmvq_f64, arm64_neon_fminnmv, AddRetType | Add1ArgType),
2603 NEONMAP1(vminv_f32, arm64_neon_fminv, AddRetType | Add1ArgType),
2604 NEONMAP1(vminv_s32, arm64_neon_sminv, AddRetType | Add1ArgType),
2605 NEONMAP1(vminv_u32, arm64_neon_uminv, AddRetType | Add1ArgType),
2606 NEONMAP1(vminvq_f32, arm64_neon_fminv, AddRetType | Add1ArgType),
2607 NEONMAP1(vminvq_f64, arm64_neon_fminv, AddRetType | Add1ArgType),
2608 NEONMAP1(vminvq_s32, arm64_neon_sminv, AddRetType | Add1ArgType),
2609 NEONMAP1(vminvq_u32, arm64_neon_uminv, AddRetType | Add1ArgType),
2610 NEONMAP1(vmulxd_f64, arm64_neon_fmulx, Add1ArgType),
2611 NEONMAP1(vmulxs_f32, arm64_neon_fmulx, Add1ArgType),
2612 NEONMAP1(vqabsb_s8, arm64_neon_sqabs, Vectorize1ArgType | Use64BitVectors),
2613 NEONMAP1(vqabsd_s64, arm64_neon_sqabs, Add1ArgType),
2614 NEONMAP1(vqabsh_s16, arm64_neon_sqabs, Vectorize1ArgType | Use64BitVectors),
2615 NEONMAP1(vqabss_s32, arm64_neon_sqabs, Add1ArgType),
2616 NEONMAP1(vqaddb_s8, arm64_neon_sqadd, Vectorize1ArgType | Use64BitVectors),
2617 NEONMAP1(vqaddb_u8, arm64_neon_uqadd, Vectorize1ArgType | Use64BitVectors),
2618 NEONMAP1(vqaddd_s64, arm64_neon_sqadd, Add1ArgType),
2619 NEONMAP1(vqaddd_u64, arm64_neon_uqadd, Add1ArgType),
2620 NEONMAP1(vqaddh_s16, arm64_neon_sqadd, Vectorize1ArgType | Use64BitVectors),
2621 NEONMAP1(vqaddh_u16, arm64_neon_uqadd, Vectorize1ArgType | Use64BitVectors),
2622 NEONMAP1(vqadds_s32, arm64_neon_sqadd, Add1ArgType),
2623 NEONMAP1(vqadds_u32, arm64_neon_uqadd, Add1ArgType),
2624 NEONMAP1(vqdmulhh_s16, arm64_neon_sqdmulh, Vectorize1ArgType | Use64BitVectors),
2625 NEONMAP1(vqdmulhs_s32, arm64_neon_sqdmulh, Add1ArgType),
2626 NEONMAP1(vqdmullh_s16, arm64_neon_sqdmull, VectorRet | Use128BitVectors),
2627 NEONMAP1(vqdmulls_s32, arm64_neon_sqdmulls_scalar, 0),
2628 NEONMAP1(vqmovnd_s64, arm64_neon_scalar_sqxtn, AddRetType | Add1ArgType),
2629 NEONMAP1(vqmovnd_u64, arm64_neon_scalar_uqxtn, AddRetType | Add1ArgType),
2630 NEONMAP1(vqmovnh_s16, arm64_neon_sqxtn, VectorRet | Use64BitVectors),
2631 NEONMAP1(vqmovnh_u16, arm64_neon_uqxtn, VectorRet | Use64BitVectors),
2632 NEONMAP1(vqmovns_s32, arm64_neon_sqxtn, VectorRet | Use64BitVectors),
2633 NEONMAP1(vqmovns_u32, arm64_neon_uqxtn, VectorRet | Use64BitVectors),
2634 NEONMAP1(vqmovund_s64, arm64_neon_scalar_sqxtun, AddRetType | Add1ArgType),
2635 NEONMAP1(vqmovunh_s16, arm64_neon_sqxtun, VectorRet | Use64BitVectors),
2636 NEONMAP1(vqmovuns_s32, arm64_neon_sqxtun, VectorRet | Use64BitVectors),
2637 NEONMAP1(vqnegb_s8, arm64_neon_sqneg, Vectorize1ArgType | Use64BitVectors),
2638 NEONMAP1(vqnegd_s64, arm64_neon_sqneg, Add1ArgType),
2639 NEONMAP1(vqnegh_s16, arm64_neon_sqneg, Vectorize1ArgType | Use64BitVectors),
2640 NEONMAP1(vqnegs_s32, arm64_neon_sqneg, Add1ArgType),
2641 NEONMAP1(vqrdmulhh_s16, arm64_neon_sqrdmulh, Vectorize1ArgType | Use64BitVectors),
2642 NEONMAP1(vqrdmulhs_s32, arm64_neon_sqrdmulh, Add1ArgType),
2643 NEONMAP1(vqrshlb_s8, arm64_neon_sqrshl, Vectorize1ArgType | Use64BitVectors),
2644 NEONMAP1(vqrshlb_u8, arm64_neon_uqrshl, Vectorize1ArgType | Use64BitVectors),
2645 NEONMAP1(vqrshld_s64, arm64_neon_sqrshl, Add1ArgType),
2646 NEONMAP1(vqrshld_u64, arm64_neon_uqrshl, Add1ArgType),
2647 NEONMAP1(vqrshlh_s16, arm64_neon_sqrshl, Vectorize1ArgType | Use64BitVectors),
2648 NEONMAP1(vqrshlh_u16, arm64_neon_uqrshl, Vectorize1ArgType | Use64BitVectors),
2649 NEONMAP1(vqrshls_s32, arm64_neon_sqrshl, Add1ArgType),
2650 NEONMAP1(vqrshls_u32, arm64_neon_uqrshl, Add1ArgType),
2651 NEONMAP1(vqrshrnd_n_s64, arm64_neon_sqrshrn, AddRetType),
2652 NEONMAP1(vqrshrnd_n_u64, arm64_neon_uqrshrn, AddRetType),
2653 NEONMAP1(vqrshrnh_n_s16, arm64_neon_sqrshrn, VectorRet | Use64BitVectors),
2654 NEONMAP1(vqrshrnh_n_u16, arm64_neon_uqrshrn, VectorRet | Use64BitVectors),
2655 NEONMAP1(vqrshrns_n_s32, arm64_neon_sqrshrn, VectorRet | Use64BitVectors),
2656 NEONMAP1(vqrshrns_n_u32, arm64_neon_uqrshrn, VectorRet | Use64BitVectors),
2657 NEONMAP1(vqrshrund_n_s64, arm64_neon_sqrshrun, AddRetType),
2658 NEONMAP1(vqrshrunh_n_s16, arm64_neon_sqrshrun, VectorRet | Use64BitVectors),
2659 NEONMAP1(vqrshruns_n_s32, arm64_neon_sqrshrun, VectorRet | Use64BitVectors),
2660 NEONMAP1(vqshlb_n_s8, arm64_neon_sqshl, Vectorize1ArgType | Use64BitVectors),
2661 NEONMAP1(vqshlb_n_u8, arm64_neon_uqshl, Vectorize1ArgType | Use64BitVectors),
2662 NEONMAP1(vqshlb_s8, arm64_neon_sqshl, Vectorize1ArgType | Use64BitVectors),
2663 NEONMAP1(vqshlb_u8, arm64_neon_uqshl, Vectorize1ArgType | Use64BitVectors),
2664 NEONMAP1(vqshld_s64, arm64_neon_sqshl, Add1ArgType),
2665 NEONMAP1(vqshld_u64, arm64_neon_uqshl, Add1ArgType),
2666 NEONMAP1(vqshlh_n_s16, arm64_neon_sqshl, Vectorize1ArgType | Use64BitVectors),
2667 NEONMAP1(vqshlh_n_u16, arm64_neon_uqshl, Vectorize1ArgType | Use64BitVectors),
2668 NEONMAP1(vqshlh_s16, arm64_neon_sqshl, Vectorize1ArgType | Use64BitVectors),
2669 NEONMAP1(vqshlh_u16, arm64_neon_uqshl, Vectorize1ArgType | Use64BitVectors),
2670 NEONMAP1(vqshls_n_s32, arm64_neon_sqshl, Add1ArgType),
2671 NEONMAP1(vqshls_n_u32, arm64_neon_uqshl, Add1ArgType),
2672 NEONMAP1(vqshls_s32, arm64_neon_sqshl, Add1ArgType),
2673 NEONMAP1(vqshls_u32, arm64_neon_uqshl, Add1ArgType),
2674 NEONMAP1(vqshlub_n_s8, arm64_neon_sqshlu, Vectorize1ArgType | Use64BitVectors),
2675 NEONMAP1(vqshluh_n_s16, arm64_neon_sqshlu, Vectorize1ArgType | Use64BitVectors),
2676 NEONMAP1(vqshlus_n_s32, arm64_neon_sqshlu, Add1ArgType),
2677 NEONMAP1(vqshrnd_n_s64, arm64_neon_sqshrn, AddRetType),
2678 NEONMAP1(vqshrnd_n_u64, arm64_neon_uqshrn, AddRetType),
2679 NEONMAP1(vqshrnh_n_s16, arm64_neon_sqshrn, VectorRet | Use64BitVectors),
2680 NEONMAP1(vqshrnh_n_u16, arm64_neon_uqshrn, VectorRet | Use64BitVectors),
2681 NEONMAP1(vqshrns_n_s32, arm64_neon_sqshrn, VectorRet | Use64BitVectors),
2682 NEONMAP1(vqshrns_n_u32, arm64_neon_uqshrn, VectorRet | Use64BitVectors),
2683 NEONMAP1(vqshrund_n_s64, arm64_neon_sqshrun, AddRetType),
2684 NEONMAP1(vqshrunh_n_s16, arm64_neon_sqshrun, VectorRet | Use64BitVectors),
2685 NEONMAP1(vqshruns_n_s32, arm64_neon_sqshrun, VectorRet | Use64BitVectors),
2686 NEONMAP1(vqsubb_s8, arm64_neon_sqsub, Vectorize1ArgType | Use64BitVectors),
2687 NEONMAP1(vqsubb_u8, arm64_neon_uqsub, Vectorize1ArgType | Use64BitVectors),
2688 NEONMAP1(vqsubd_s64, arm64_neon_sqsub, Add1ArgType),
2689 NEONMAP1(vqsubd_u64, arm64_neon_uqsub, Add1ArgType),
2690 NEONMAP1(vqsubh_s16, arm64_neon_sqsub, Vectorize1ArgType | Use64BitVectors),
2691 NEONMAP1(vqsubh_u16, arm64_neon_uqsub, Vectorize1ArgType | Use64BitVectors),
2692 NEONMAP1(vqsubs_s32, arm64_neon_sqsub, Add1ArgType),
2693 NEONMAP1(vqsubs_u32, arm64_neon_uqsub, Add1ArgType),
2694 NEONMAP1(vrshld_s64, arm64_neon_srshl, Add1ArgType),
2695 NEONMAP1(vrshld_u64, arm64_neon_urshl, Add1ArgType),
2696 NEONMAP1(vrsqrtsd_f64, arm64_neon_frsqrts, Add1ArgType),
2697 NEONMAP1(vrsqrtss_f32, arm64_neon_frsqrts, Add1ArgType),
2698 NEONMAP1(vsha1cq_u32, arm64_crypto_sha1c, 0),
2699 NEONMAP1(vsha1h_u32, arm64_crypto_sha1h, 0),
2700 NEONMAP1(vsha1mq_u32, arm64_crypto_sha1m, 0),
2701 NEONMAP1(vsha1pq_u32, arm64_crypto_sha1p, 0),
2702 NEONMAP1(vshld_s64, arm64_neon_sshl, Add1ArgType),
2703 NEONMAP1(vshld_u64, arm64_neon_ushl, Add1ArgType),
2704 NEONMAP1(vslid_n_s64, arm64_neon_vsli, Vectorize1ArgType),
2705 NEONMAP1(vslid_n_u64, arm64_neon_vsli, Vectorize1ArgType),
2706 NEONMAP1(vsrid_n_s64, arm64_neon_vsri, Vectorize1ArgType),
2707 NEONMAP1(vsrid_n_u64, arm64_neon_vsri, Vectorize1ArgType),
2708};
2709
Tim Northover8fe03d62014-02-21 11:57:24 +00002710#undef NEONMAP0
2711#undef NEONMAP1
2712#undef NEONMAP2
2713
2714static bool NEONSIMDIntrinsicsProvenSorted = false;
Tim Northover8fe03d62014-02-21 11:57:24 +00002715static bool AArch64SISDIntrinsicInfoProvenSorted = false;
2716
Tim Northovera2ee4332014-03-29 15:09:45 +00002717static bool ARM64SIMDIntrinsicsProvenSorted = false;
2718static bool ARM64SISDIntrinsicsProvenSorted = false;
2719
2720
Tim Northover8fe03d62014-02-21 11:57:24 +00002721static const NeonIntrinsicInfo *
2722findNeonIntrinsicInMap(llvm::ArrayRef<NeonIntrinsicInfo> IntrinsicMap,
2723 unsigned BuiltinID, bool &MapProvenSorted) {
Tim Northoverdb3e5e22014-02-19 11:55:06 +00002724
2725#ifndef NDEBUG
Tim Northover8fe03d62014-02-21 11:57:24 +00002726 if (!MapProvenSorted) {
2727 // FIXME: use std::is_sorted once C++11 is allowed
2728 for (unsigned i = 0; i < IntrinsicMap.size() - 1; ++i)
2729 assert(IntrinsicMap[i].BuiltinID <= IntrinsicMap[i + 1].BuiltinID);
2730 MapProvenSorted = true;
2731 }
Tim Northoverdb3e5e22014-02-19 11:55:06 +00002732#endif
2733
Tim Northover8fe03d62014-02-21 11:57:24 +00002734 const NeonIntrinsicInfo *Builtin =
2735 std::lower_bound(IntrinsicMap.begin(), IntrinsicMap.end(), BuiltinID);
2736
2737 if (Builtin != IntrinsicMap.end() && Builtin->BuiltinID == BuiltinID)
2738 return Builtin;
2739
2740 return 0;
2741}
2742
2743Function *CodeGenFunction::LookupNeonLLVMIntrinsic(unsigned IntrinsicID,
2744 unsigned Modifier,
2745 llvm::Type *ArgType,
2746 const CallExpr *E) {
Tim Northovera2ee4332014-03-29 15:09:45 +00002747 int VectorSize = 0;
2748 if (Modifier & Use64BitVectors)
2749 VectorSize = 64;
2750 else if (Modifier & Use128BitVectors)
2751 VectorSize = 128;
2752
Tim Northover2d837962014-02-21 11:57:20 +00002753 // Return type.
2754 SmallVector<llvm::Type *, 3> Tys;
2755 if (Modifier & AddRetType) {
2756 llvm::Type *Ty = ConvertType(E->getCallReturnType());
2757 if (Modifier & VectorizeRetType)
Tim Northovera2ee4332014-03-29 15:09:45 +00002758 Ty = llvm::VectorType::get(
2759 Ty, VectorSize ? VectorSize / Ty->getPrimitiveSizeInBits() : 1);
Tim Northover2d837962014-02-21 11:57:20 +00002760
2761 Tys.push_back(Ty);
2762 }
2763
2764 // Arguments.
Tim Northovera2ee4332014-03-29 15:09:45 +00002765 if (Modifier & VectorizeArgTypes) {
2766 int Elts = VectorSize ? VectorSize / ArgType->getPrimitiveSizeInBits() : 1;
2767 ArgType = llvm::VectorType::get(ArgType, Elts);
2768 }
Tim Northover2d837962014-02-21 11:57:20 +00002769
2770 if (Modifier & (Add1ArgType | Add2ArgTypes))
2771 Tys.push_back(ArgType);
2772
2773 if (Modifier & Add2ArgTypes)
2774 Tys.push_back(ArgType);
2775
2776 if (Modifier & InventFloatType)
2777 Tys.push_back(FloatTy);
2778
2779 return CGM.getIntrinsic(IntrinsicID, Tys);
2780}
2781
Tim Northovera2ee4332014-03-29 15:09:45 +00002782static Value *EmitCommonNeonSISDBuiltinExpr(CodeGenFunction &CGF,
2783 const NeonIntrinsicInfo &SISDInfo,
2784 SmallVectorImpl<Value *> &Ops,
2785 const CallExpr *E) {
2786 unsigned BuiltinID = SISDInfo.BuiltinID;
2787 unsigned int Int = SISDInfo.LLVMIntrinsic;
2788 unsigned Modifier = SISDInfo.TypeModifier;
2789 const char *s = SISDInfo.NameHint;
2790
2791 switch (BuiltinID) {
2792 default: break;
2793 }
2794
2795 assert(Int && "Generic code assumes a valid intrinsic");
2796
2797 // Determine the type(s) of this overloaded AArch64 intrinsic.
2798 const Expr *Arg = E->getArg(0);
2799 llvm::Type *ArgTy = CGF.ConvertType(Arg->getType());
2800 Function *F = CGF.LookupNeonLLVMIntrinsic(Int, Modifier, ArgTy, E);
2801
2802 int j = 0;
2803 ConstantInt *C0 = ConstantInt::get(CGF.Int32Ty, 0);
2804 for (Function::const_arg_iterator ai = F->arg_begin(), ae = F->arg_end();
2805 ai != ae; ++ai, ++j) {
2806 llvm::Type *ArgTy = ai->getType();
2807 if (Ops[j]->getType()->getPrimitiveSizeInBits() ==
2808 ArgTy->getPrimitiveSizeInBits())
2809 continue;
2810
2811 assert(ArgTy->isVectorTy() && !Ops[j]->getType()->isVectorTy());
2812 // The constant argument to an _n_ intrinsic always has Int32Ty, so truncate
2813 // it before inserting.
2814 Ops[j] =
2815 CGF.Builder.CreateTruncOrBitCast(Ops[j], ArgTy->getVectorElementType());
2816 Ops[j] =
2817 CGF.Builder.CreateInsertElement(UndefValue::get(ArgTy), Ops[j], C0);
2818 }
2819
2820 Value *Result = CGF.EmitNeonCall(F, Ops, s);
2821 llvm::Type *ResultType = CGF.ConvertType(E->getType());
2822 if (ResultType->getPrimitiveSizeInBits() <
2823 Result->getType()->getPrimitiveSizeInBits())
2824 return CGF.Builder.CreateExtractElement(Result, C0);
2825
2826 return CGF.Builder.CreateBitCast(Result, ResultType, s);
2827}
Tim Northover8fe03d62014-02-21 11:57:24 +00002828
2829static Value *EmitAArch64ScalarBuiltinExpr(CodeGenFunction &CGF,
2830 const NeonIntrinsicInfo &SISDInfo,
2831 const CallExpr *E) {
Tim Northoverdb3e5e22014-02-19 11:55:06 +00002832 unsigned BuiltinID = SISDInfo.BuiltinID;
2833 unsigned int Int = SISDInfo.LLVMIntrinsic;
Tim Northoverdb3e5e22014-02-19 11:55:06 +00002834 const char *s = SISDInfo.NameHint;
Jiangning Liu036f16d2013-09-24 02:48:06 +00002835
Chad Rosier193573e2013-10-14 14:37:40 +00002836 SmallVector<Value *, 4> Ops;
2837 for (unsigned i = 0, e = E->getNumArgs(); i != e; i++) {
2838 Ops.push_back(CGF.EmitScalarExpr(E->getArg(i)));
2839 }
2840
Jiangning Liu036f16d2013-09-24 02:48:06 +00002841 // AArch64 scalar builtins are not overloaded, they do not have an extra
2842 // argument that specifies the vector type, need to handle each case.
2843 switch (BuiltinID) {
2844 default: break;
Tim Northoverc322f832014-01-30 14:47:51 +00002845 case NEON::BI__builtin_neon_vdups_lane_f32:
2846 case NEON::BI__builtin_neon_vdupd_lane_f64:
2847 case NEON::BI__builtin_neon_vdups_laneq_f32:
2848 case NEON::BI__builtin_neon_vdupd_laneq_f64: {
Ana Pazosdbd1a222013-11-21 08:15:01 +00002849 return CGF.Builder.CreateExtractElement(Ops[0], Ops[1], "vdup_lane");
2850 }
Tim Northoverc322f832014-01-30 14:47:51 +00002851 case NEON::BI__builtin_neon_vdupb_lane_i8:
2852 case NEON::BI__builtin_neon_vduph_lane_i16:
2853 case NEON::BI__builtin_neon_vdups_lane_i32:
2854 case NEON::BI__builtin_neon_vdupd_lane_i64:
2855 case NEON::BI__builtin_neon_vdupb_laneq_i8:
2856 case NEON::BI__builtin_neon_vduph_laneq_i16:
2857 case NEON::BI__builtin_neon_vdups_laneq_i32:
2858 case NEON::BI__builtin_neon_vdupd_laneq_i64: {
Ana Pazosdbd1a222013-11-21 08:15:01 +00002859 // The backend treats Neon scalar types as v1ix types
2860 // So we want to dup lane from any vector to v1ix vector
2861 // with shufflevector
2862 s = "vdup_lane";
2863 Value* SV = llvm::ConstantVector::getSplat(1, cast<ConstantInt>(Ops[1]));
2864 Value *Result = CGF.Builder.CreateShuffleVector(Ops[0], Ops[0], SV, s);
2865 llvm::Type *Ty = CGF.ConvertType(E->getCallReturnType());
2866 // AArch64 intrinsic one-element vector type cast to
2867 // scalar type expected by the builtin
2868 return CGF.Builder.CreateBitCast(Result, Ty, s);
2869 }
Tim Northoverc322f832014-01-30 14:47:51 +00002870 case NEON::BI__builtin_neon_vqdmlalh_lane_s16 :
2871 case NEON::BI__builtin_neon_vqdmlalh_laneq_s16 :
2872 case NEON::BI__builtin_neon_vqdmlals_lane_s32 :
2873 case NEON::BI__builtin_neon_vqdmlals_laneq_s32 :
2874 case NEON::BI__builtin_neon_vqdmlslh_lane_s16 :
2875 case NEON::BI__builtin_neon_vqdmlslh_laneq_s16 :
2876 case NEON::BI__builtin_neon_vqdmlsls_lane_s32 :
2877 case NEON::BI__builtin_neon_vqdmlsls_laneq_s32 : {
Ana Pazos2b026882013-11-21 07:36:33 +00002878 Int = Intrinsic::arm_neon_vqadds;
Tim Northoverc322f832014-01-30 14:47:51 +00002879 if (BuiltinID == NEON::BI__builtin_neon_vqdmlslh_lane_s16 ||
2880 BuiltinID == NEON::BI__builtin_neon_vqdmlslh_laneq_s16 ||
2881 BuiltinID == NEON::BI__builtin_neon_vqdmlsls_lane_s32 ||
2882 BuiltinID == NEON::BI__builtin_neon_vqdmlsls_laneq_s32) {
Ana Pazos2b026882013-11-21 07:36:33 +00002883 Int = Intrinsic::arm_neon_vqsubs;
2884 }
2885 // create vqdmull call with b * c[i]
2886 llvm::Type *Ty = CGF.ConvertType(E->getArg(1)->getType());
2887 llvm::VectorType *OpVTy = llvm::VectorType::get(Ty, 1);
2888 Ty = CGF.ConvertType(E->getArg(0)->getType());
2889 llvm::VectorType *ResVTy = llvm::VectorType::get(Ty, 1);
2890 Value *F = CGF.CGM.getIntrinsic(Intrinsic::arm_neon_vqdmull, ResVTy);
2891 Value *V = UndefValue::get(OpVTy);
2892 llvm::Constant *CI = ConstantInt::get(CGF.Int32Ty, 0);
2893 SmallVector<Value *, 2> MulOps;
2894 MulOps.push_back(Ops[1]);
2895 MulOps.push_back(Ops[2]);
2896 MulOps[0] = CGF.Builder.CreateInsertElement(V, MulOps[0], CI);
2897 MulOps[1] = CGF.Builder.CreateExtractElement(MulOps[1], Ops[3], "extract");
2898 MulOps[1] = CGF.Builder.CreateInsertElement(V, MulOps[1], CI);
2899 Value *MulRes = CGF.Builder.CreateCall2(F, MulOps[0], MulOps[1]);
2900 // create vqadds call with a +/- vqdmull result
2901 F = CGF.CGM.getIntrinsic(Int, ResVTy);
2902 SmallVector<Value *, 2> AddOps;
2903 AddOps.push_back(Ops[0]);
2904 AddOps.push_back(MulRes);
2905 V = UndefValue::get(ResVTy);
2906 AddOps[0] = CGF.Builder.CreateInsertElement(V, AddOps[0], CI);
2907 Value *AddRes = CGF.Builder.CreateCall2(F, AddOps[0], AddOps[1]);
2908 return CGF.Builder.CreateBitCast(AddRes, Ty);
2909 }
Tim Northoverc322f832014-01-30 14:47:51 +00002910 case NEON::BI__builtin_neon_vfmas_lane_f32:
2911 case NEON::BI__builtin_neon_vfmas_laneq_f32:
2912 case NEON::BI__builtin_neon_vfmad_lane_f64:
2913 case NEON::BI__builtin_neon_vfmad_laneq_f64: {
Ana Pazos6f2a47a2013-11-15 23:33:31 +00002914 llvm::Type *Ty = CGF.ConvertType(E->getCallReturnType());
2915 Value *F = CGF.CGM.getIntrinsic(Intrinsic::fma, Ty);
Ana Pazos6f2a47a2013-11-15 23:33:31 +00002916 Ops[2] = CGF.Builder.CreateExtractElement(Ops[2], Ops[3], "extract");
2917 return CGF.Builder.CreateCall3(F, Ops[1], Ops[2], Ops[0]);
2918 }
2919 // Scalar Floating-point Multiply Extended
Tim Northoverc322f832014-01-30 14:47:51 +00002920 case NEON::BI__builtin_neon_vmulxs_f32:
2921 case NEON::BI__builtin_neon_vmulxd_f64: {
Ana Pazos6f2a47a2013-11-15 23:33:31 +00002922 Int = Intrinsic::aarch64_neon_vmulx;
2923 llvm::Type *Ty = CGF.ConvertType(E->getCallReturnType());
2924 return CGF.EmitNeonCall(CGF.CGM.getIntrinsic(Int, Ty), Ops, "vmulx");
2925 }
Tim Northoverc322f832014-01-30 14:47:51 +00002926 case NEON::BI__builtin_neon_vmul_n_f64: {
Ana Pazos6f2a47a2013-11-15 23:33:31 +00002927 // v1f64 vmul_n_f64 should be mapped to Neon scalar mul lane
2928 llvm::Type *VTy = GetNeonType(&CGF,
2929 NeonTypeFlags(NeonTypeFlags::Float64, false, false));
2930 Ops[0] = CGF.Builder.CreateBitCast(Ops[0], VTy);
2931 llvm::Value *Idx = llvm::ConstantInt::get(CGF.Int32Ty, 0);
2932 Ops[0] = CGF.Builder.CreateExtractElement(Ops[0], Idx, "extract");
2933 Value *Result = CGF.Builder.CreateFMul(Ops[0], Ops[1]);
2934 return CGF.Builder.CreateBitCast(Result, VTy);
2935 }
Tim Northoverc322f832014-01-30 14:47:51 +00002936 case NEON::BI__builtin_neon_vget_lane_i8:
2937 case NEON::BI__builtin_neon_vget_lane_i16:
2938 case NEON::BI__builtin_neon_vget_lane_i32:
2939 case NEON::BI__builtin_neon_vget_lane_i64:
2940 case NEON::BI__builtin_neon_vget_lane_f32:
2941 case NEON::BI__builtin_neon_vget_lane_f64:
2942 case NEON::BI__builtin_neon_vgetq_lane_i8:
2943 case NEON::BI__builtin_neon_vgetq_lane_i16:
2944 case NEON::BI__builtin_neon_vgetq_lane_i32:
2945 case NEON::BI__builtin_neon_vgetq_lane_i64:
2946 case NEON::BI__builtin_neon_vgetq_lane_f32:
2947 case NEON::BI__builtin_neon_vgetq_lane_f64:
2948 return CGF.EmitARMBuiltinExpr(NEON::BI__builtin_neon_vget_lane_i8, E);
2949 case NEON::BI__builtin_neon_vset_lane_i8:
2950 case NEON::BI__builtin_neon_vset_lane_i16:
2951 case NEON::BI__builtin_neon_vset_lane_i32:
2952 case NEON::BI__builtin_neon_vset_lane_i64:
2953 case NEON::BI__builtin_neon_vset_lane_f32:
2954 case NEON::BI__builtin_neon_vset_lane_f64:
2955 case NEON::BI__builtin_neon_vsetq_lane_i8:
2956 case NEON::BI__builtin_neon_vsetq_lane_i16:
2957 case NEON::BI__builtin_neon_vsetq_lane_i32:
2958 case NEON::BI__builtin_neon_vsetq_lane_i64:
2959 case NEON::BI__builtin_neon_vsetq_lane_f32:
2960 case NEON::BI__builtin_neon_vsetq_lane_f64:
2961 return CGF.EmitARMBuiltinExpr(NEON::BI__builtin_neon_vset_lane_i8, E);
Tim Northoverdb3e5e22014-02-19 11:55:06 +00002962
Tim Northoverc322f832014-01-30 14:47:51 +00002963 case NEON::BI__builtin_neon_vcled_s64:
Tim Northoverc322f832014-01-30 14:47:51 +00002964 case NEON::BI__builtin_neon_vcled_u64:
Tim Northoverc322f832014-01-30 14:47:51 +00002965 case NEON::BI__builtin_neon_vcles_f32:
2966 case NEON::BI__builtin_neon_vcled_f64:
Tim Northoverdb3e5e22014-02-19 11:55:06 +00002967 case NEON::BI__builtin_neon_vcltd_s64:
2968 case NEON::BI__builtin_neon_vcltd_u64:
Tim Northoverc322f832014-01-30 14:47:51 +00002969 case NEON::BI__builtin_neon_vclts_f32:
2970 case NEON::BI__builtin_neon_vcltd_f64:
Tim Northoverc322f832014-01-30 14:47:51 +00002971 case NEON::BI__builtin_neon_vcales_f32:
2972 case NEON::BI__builtin_neon_vcaled_f64:
Tim Northoverc322f832014-01-30 14:47:51 +00002973 case NEON::BI__builtin_neon_vcalts_f32:
2974 case NEON::BI__builtin_neon_vcaltd_f64:
Tim Northoverdb3e5e22014-02-19 11:55:06 +00002975 // Only one direction of comparisons actually exist, cmle is actually a cmge
2976 // with swapped operands. The table gives us the right intrinsic but we
2977 // still need to do the swap.
Chad Rosier8d96c802013-12-10 17:44:36 +00002978 std::swap(Ops[0], Ops[1]);
Tim Northoverdb3e5e22014-02-19 11:55:06 +00002979 break;
2980 case NEON::BI__builtin_neon_vceqzd_s64:
2981 case NEON::BI__builtin_neon_vceqzd_u64:
2982 case NEON::BI__builtin_neon_vcgezd_s64:
2983 case NEON::BI__builtin_neon_vcgtzd_s64:
2984 case NEON::BI__builtin_neon_vclezd_s64:
2985 case NEON::BI__builtin_neon_vcltzd_s64:
2986 // Add implicit zero operand.
2987 Ops.push_back(llvm::Constant::getNullValue(Ops[0]->getType()));
2988 break;
2989 case NEON::BI__builtin_neon_vceqzs_f32:
2990 case NEON::BI__builtin_neon_vceqzd_f64:
2991 case NEON::BI__builtin_neon_vcgezs_f32:
2992 case NEON::BI__builtin_neon_vcgezd_f64:
2993 case NEON::BI__builtin_neon_vcgtzs_f32:
2994 case NEON::BI__builtin_neon_vcgtzd_f64:
2995 case NEON::BI__builtin_neon_vclezs_f32:
2996 case NEON::BI__builtin_neon_vclezd_f64:
2997 case NEON::BI__builtin_neon_vcltzs_f32:
2998 case NEON::BI__builtin_neon_vcltzd_f64:
2999 // Add implicit zero operand.
3000 Ops.push_back(llvm::Constant::getNullValue(CGF.FloatTy));
3001 break;
Jiangning Liu036f16d2013-09-24 02:48:06 +00003002 }
3003
Tim Northovera2ee4332014-03-29 15:09:45 +00003004 // It didn't need any handling specific to the AArch64 backend, so defer to
3005 // common code.
3006 return EmitCommonNeonSISDBuiltinExpr(CGF, SISDInfo, Ops, E);
Jiangning Liu036f16d2013-09-24 02:48:06 +00003007}
3008
Tim Northover8fe03d62014-02-21 11:57:24 +00003009Value *CodeGenFunction::EmitCommonNeonBuiltinExpr(
3010 unsigned BuiltinID, unsigned LLVMIntrinsic, unsigned AltLLVMIntrinsic,
3011 const char *NameHint, unsigned Modifier, const CallExpr *E,
3012 SmallVectorImpl<llvm::Value *> &Ops, llvm::Value *Align) {
3013 // Get the last argument, which specifies the vector type.
3014 llvm::APSInt NeonTypeConst;
3015 const Expr *Arg = E->getArg(E->getNumArgs() - 1);
3016 if (!Arg->isIntegerConstantExpr(NeonTypeConst, getContext()))
3017 return 0;
3018
3019 // Determine the type of this overloaded NEON intrinsic.
3020 NeonTypeFlags Type(NeonTypeConst.getZExtValue());
3021 bool Usgn = Type.isUnsigned();
3022 bool Quad = Type.isQuad();
3023
3024 llvm::VectorType *VTy = GetNeonType(this, Type);
3025 llvm::Type *Ty = VTy;
3026 if (!Ty)
3027 return 0;
3028
3029 unsigned Int = LLVMIntrinsic;
3030 if ((Modifier & UnsignedAlts) && !Usgn)
3031 Int = AltLLVMIntrinsic;
3032
3033 switch (BuiltinID) {
3034 default: break;
3035 case NEON::BI__builtin_neon_vabs_v:
3036 case NEON::BI__builtin_neon_vabsq_v:
3037 if (VTy->getElementType()->isFloatingPointTy())
3038 return EmitNeonCall(CGM.getIntrinsic(Intrinsic::fabs, Ty), Ops, "vabs");
3039 return EmitNeonCall(CGM.getIntrinsic(LLVMIntrinsic, Ty), Ops, "vabs");
3040 case NEON::BI__builtin_neon_vaddhn_v: {
3041 llvm::VectorType *SrcTy =
3042 llvm::VectorType::getExtendedElementVectorType(VTy);
3043
3044 // %sum = add <4 x i32> %lhs, %rhs
3045 Ops[0] = Builder.CreateBitCast(Ops[0], SrcTy);
3046 Ops[1] = Builder.CreateBitCast(Ops[1], SrcTy);
3047 Ops[0] = Builder.CreateAdd(Ops[0], Ops[1], "vaddhn");
3048
3049 // %high = lshr <4 x i32> %sum, <i32 16, i32 16, i32 16, i32 16>
3050 Constant *ShiftAmt = ConstantInt::get(SrcTy->getElementType(),
3051 SrcTy->getScalarSizeInBits() / 2);
3052 ShiftAmt = ConstantVector::getSplat(VTy->getNumElements(), ShiftAmt);
3053 Ops[0] = Builder.CreateLShr(Ops[0], ShiftAmt, "vaddhn");
3054
3055 // %res = trunc <4 x i32> %high to <4 x i16>
3056 return Builder.CreateTrunc(Ops[0], VTy, "vaddhn");
3057 }
3058 case NEON::BI__builtin_neon_vcale_v:
3059 case NEON::BI__builtin_neon_vcaleq_v:
3060 case NEON::BI__builtin_neon_vcalt_v:
3061 case NEON::BI__builtin_neon_vcaltq_v:
3062 std::swap(Ops[0], Ops[1]);
3063 case NEON::BI__builtin_neon_vcage_v:
3064 case NEON::BI__builtin_neon_vcageq_v:
3065 case NEON::BI__builtin_neon_vcagt_v:
3066 case NEON::BI__builtin_neon_vcagtq_v: {
3067 llvm::Type *VecFlt = llvm::VectorType::get(
3068 VTy->getScalarSizeInBits() == 32 ? FloatTy : DoubleTy,
3069 VTy->getNumElements());
3070 llvm::Type *Tys[] = { VTy, VecFlt };
3071 Function *F = CGM.getIntrinsic(LLVMIntrinsic, Tys);
3072 return EmitNeonCall(F, Ops, NameHint);
3073 }
3074 case NEON::BI__builtin_neon_vclz_v:
3075 case NEON::BI__builtin_neon_vclzq_v:
3076 // We generate target-independent intrinsic, which needs a second argument
3077 // for whether or not clz of zero is undefined; on ARM it isn't.
3078 Ops.push_back(Builder.getInt1(getTarget().isCLZForZeroUndef()));
3079 break;
3080 case NEON::BI__builtin_neon_vcvt_f32_v:
3081 case NEON::BI__builtin_neon_vcvtq_f32_v:
3082 Ops[0] = Builder.CreateBitCast(Ops[0], Ty);
3083 Ty = GetNeonType(this, NeonTypeFlags(NeonTypeFlags::Float32, false, Quad));
3084 return Usgn ? Builder.CreateUIToFP(Ops[0], Ty, "vcvt")
3085 : Builder.CreateSIToFP(Ops[0], Ty, "vcvt");
3086 case NEON::BI__builtin_neon_vcvt_n_f32_v:
Tim Northovera2ee4332014-03-29 15:09:45 +00003087 case NEON::BI__builtin_neon_vcvt_n_f64_v:
3088 case NEON::BI__builtin_neon_vcvtq_n_f32_v:
3089 case NEON::BI__builtin_neon_vcvtq_n_f64_v: {
Tim Northover8fe03d62014-02-21 11:57:24 +00003090 bool Double =
3091 (cast<llvm::IntegerType>(VTy->getElementType())->getBitWidth() == 64);
3092 llvm::Type *FloatTy =
3093 GetNeonType(this, NeonTypeFlags(Double ? NeonTypeFlags::Float64
3094 : NeonTypeFlags::Float32,
3095 false, Quad));
3096 llvm::Type *Tys[2] = { FloatTy, Ty };
3097 Int = Usgn ? LLVMIntrinsic : AltLLVMIntrinsic;
3098 Function *F = CGM.getIntrinsic(Int, Tys);
3099 return EmitNeonCall(F, Ops, "vcvt_n");
3100 }
3101 case NEON::BI__builtin_neon_vcvt_n_s32_v:
3102 case NEON::BI__builtin_neon_vcvt_n_u32_v:
3103 case NEON::BI__builtin_neon_vcvt_n_s64_v:
3104 case NEON::BI__builtin_neon_vcvt_n_u64_v:
3105 case NEON::BI__builtin_neon_vcvtq_n_s32_v:
3106 case NEON::BI__builtin_neon_vcvtq_n_u32_v:
3107 case NEON::BI__builtin_neon_vcvtq_n_s64_v:
3108 case NEON::BI__builtin_neon_vcvtq_n_u64_v: {
3109 bool Double =
3110 (cast<llvm::IntegerType>(VTy->getElementType())->getBitWidth() == 64);
3111 llvm::Type *FloatTy =
3112 GetNeonType(this, NeonTypeFlags(Double ? NeonTypeFlags::Float64
3113 : NeonTypeFlags::Float32,
3114 false, Quad));
3115 llvm::Type *Tys[2] = { Ty, FloatTy };
3116 Function *F = CGM.getIntrinsic(LLVMIntrinsic, Tys);
3117 return EmitNeonCall(F, Ops, "vcvt_n");
3118 }
3119 case NEON::BI__builtin_neon_vcvt_s32_v:
3120 case NEON::BI__builtin_neon_vcvt_u32_v:
3121 case NEON::BI__builtin_neon_vcvt_s64_v:
3122 case NEON::BI__builtin_neon_vcvt_u64_v:
3123 case NEON::BI__builtin_neon_vcvtq_s32_v:
3124 case NEON::BI__builtin_neon_vcvtq_u32_v:
3125 case NEON::BI__builtin_neon_vcvtq_s64_v:
3126 case NEON::BI__builtin_neon_vcvtq_u64_v: {
3127 bool Double =
3128 (cast<llvm::IntegerType>(VTy->getElementType())->getBitWidth() == 64);
3129 llvm::Type *FloatTy =
3130 GetNeonType(this, NeonTypeFlags(Double ? NeonTypeFlags::Float64
3131 : NeonTypeFlags::Float32,
3132 false, Quad));
3133 Ops[0] = Builder.CreateBitCast(Ops[0], FloatTy);
3134 return Usgn ? Builder.CreateFPToUI(Ops[0], Ty, "vcvt")
3135 : Builder.CreateFPToSI(Ops[0], Ty, "vcvt");
3136 }
3137 case NEON::BI__builtin_neon_vcvta_s32_v:
3138 case NEON::BI__builtin_neon_vcvta_s64_v:
3139 case NEON::BI__builtin_neon_vcvta_u32_v:
3140 case NEON::BI__builtin_neon_vcvta_u64_v:
3141 case NEON::BI__builtin_neon_vcvtaq_s32_v:
3142 case NEON::BI__builtin_neon_vcvtaq_s64_v:
3143 case NEON::BI__builtin_neon_vcvtaq_u32_v:
3144 case NEON::BI__builtin_neon_vcvtaq_u64_v:
3145 case NEON::BI__builtin_neon_vcvtn_s32_v:
3146 case NEON::BI__builtin_neon_vcvtn_s64_v:
3147 case NEON::BI__builtin_neon_vcvtn_u32_v:
3148 case NEON::BI__builtin_neon_vcvtn_u64_v:
3149 case NEON::BI__builtin_neon_vcvtnq_s32_v:
3150 case NEON::BI__builtin_neon_vcvtnq_s64_v:
3151 case NEON::BI__builtin_neon_vcvtnq_u32_v:
3152 case NEON::BI__builtin_neon_vcvtnq_u64_v:
3153 case NEON::BI__builtin_neon_vcvtp_s32_v:
3154 case NEON::BI__builtin_neon_vcvtp_s64_v:
3155 case NEON::BI__builtin_neon_vcvtp_u32_v:
3156 case NEON::BI__builtin_neon_vcvtp_u64_v:
3157 case NEON::BI__builtin_neon_vcvtpq_s32_v:
3158 case NEON::BI__builtin_neon_vcvtpq_s64_v:
3159 case NEON::BI__builtin_neon_vcvtpq_u32_v:
3160 case NEON::BI__builtin_neon_vcvtpq_u64_v:
3161 case NEON::BI__builtin_neon_vcvtm_s32_v:
3162 case NEON::BI__builtin_neon_vcvtm_s64_v:
3163 case NEON::BI__builtin_neon_vcvtm_u32_v:
3164 case NEON::BI__builtin_neon_vcvtm_u64_v:
3165 case NEON::BI__builtin_neon_vcvtmq_s32_v:
3166 case NEON::BI__builtin_neon_vcvtmq_s64_v:
3167 case NEON::BI__builtin_neon_vcvtmq_u32_v:
3168 case NEON::BI__builtin_neon_vcvtmq_u64_v: {
3169 bool Double =
3170 (cast<llvm::IntegerType>(VTy->getElementType())->getBitWidth() == 64);
3171 llvm::Type *InTy =
3172 GetNeonType(this,
3173 NeonTypeFlags(Double ? NeonTypeFlags::Float64
3174 : NeonTypeFlags::Float32, false, Quad));
3175 llvm::Type *Tys[2] = { Ty, InTy };
3176 return EmitNeonCall(CGM.getIntrinsic(LLVMIntrinsic, Tys), Ops, NameHint);
3177 }
3178 case NEON::BI__builtin_neon_vext_v:
3179 case NEON::BI__builtin_neon_vextq_v: {
3180 int CV = cast<ConstantInt>(Ops[2])->getSExtValue();
3181 SmallVector<Constant*, 16> Indices;
3182 for (unsigned i = 0, e = VTy->getNumElements(); i != e; ++i)
3183 Indices.push_back(ConstantInt::get(Int32Ty, i+CV));
3184
3185 Ops[0] = Builder.CreateBitCast(Ops[0], Ty);
3186 Ops[1] = Builder.CreateBitCast(Ops[1], Ty);
3187 Value *SV = llvm::ConstantVector::get(Indices);
3188 return Builder.CreateShuffleVector(Ops[0], Ops[1], SV, "vext");
3189 }
3190 case NEON::BI__builtin_neon_vfma_v:
3191 case NEON::BI__builtin_neon_vfmaq_v: {
3192 Value *F = CGM.getIntrinsic(Intrinsic::fma, Ty);
3193 Ops[0] = Builder.CreateBitCast(Ops[0], Ty);
3194 Ops[1] = Builder.CreateBitCast(Ops[1], Ty);
3195 Ops[2] = Builder.CreateBitCast(Ops[2], Ty);
3196
3197 // NEON intrinsic puts accumulator first, unlike the LLVM fma.
3198 return Builder.CreateCall3(F, Ops[1], Ops[2], Ops[0]);
3199 }
3200 case NEON::BI__builtin_neon_vld1_v:
3201 case NEON::BI__builtin_neon_vld1q_v:
3202 Ops.push_back(Align);
3203 return EmitNeonCall(CGM.getIntrinsic(LLVMIntrinsic, Ty), Ops, "vld1");
3204 case NEON::BI__builtin_neon_vld2_v:
3205 case NEON::BI__builtin_neon_vld2q_v:
3206 case NEON::BI__builtin_neon_vld3_v:
3207 case NEON::BI__builtin_neon_vld3q_v:
3208 case NEON::BI__builtin_neon_vld4_v:
3209 case NEON::BI__builtin_neon_vld4q_v: {
3210 Function *F = CGM.getIntrinsic(LLVMIntrinsic, Ty);
3211 Ops[1] = Builder.CreateCall2(F, Ops[1], Align, NameHint);
3212 Ty = llvm::PointerType::getUnqual(Ops[1]->getType());
3213 Ops[0] = Builder.CreateBitCast(Ops[0], Ty);
3214 return Builder.CreateStore(Ops[1], Ops[0]);
3215 }
3216 case NEON::BI__builtin_neon_vld1_dup_v:
3217 case NEON::BI__builtin_neon_vld1q_dup_v: {
3218 Value *V = UndefValue::get(Ty);
3219 Ty = llvm::PointerType::getUnqual(VTy->getElementType());
3220 Ops[0] = Builder.CreateBitCast(Ops[0], Ty);
3221 LoadInst *Ld = Builder.CreateLoad(Ops[0]);
3222 Ld->setAlignment(cast<ConstantInt>(Align)->getZExtValue());
3223 llvm::Constant *CI = ConstantInt::get(Int32Ty, 0);
3224 Ops[0] = Builder.CreateInsertElement(V, Ld, CI);
3225 return EmitNeonSplat(Ops[0], CI);
3226 }
3227 case NEON::BI__builtin_neon_vld2_lane_v:
3228 case NEON::BI__builtin_neon_vld2q_lane_v:
3229 case NEON::BI__builtin_neon_vld3_lane_v:
3230 case NEON::BI__builtin_neon_vld3q_lane_v:
3231 case NEON::BI__builtin_neon_vld4_lane_v:
3232 case NEON::BI__builtin_neon_vld4q_lane_v: {
3233 Function *F = CGM.getIntrinsic(LLVMIntrinsic, Ty);
3234 for (unsigned I = 2; I < Ops.size() - 1; ++I)
3235 Ops[I] = Builder.CreateBitCast(Ops[I], Ty);
3236 Ops.push_back(Align);
3237 Ops[1] = Builder.CreateCall(F, makeArrayRef(Ops).slice(1), NameHint);
3238 Ty = llvm::PointerType::getUnqual(Ops[1]->getType());
3239 Ops[0] = Builder.CreateBitCast(Ops[0], Ty);
3240 return Builder.CreateStore(Ops[1], Ops[0]);
3241 }
3242 case NEON::BI__builtin_neon_vmovl_v: {
3243 llvm::Type *DTy =llvm::VectorType::getTruncatedElementVectorType(VTy);
3244 Ops[0] = Builder.CreateBitCast(Ops[0], DTy);
3245 if (Usgn)
3246 return Builder.CreateZExt(Ops[0], Ty, "vmovl");
3247 return Builder.CreateSExt(Ops[0], Ty, "vmovl");
3248 }
3249 case NEON::BI__builtin_neon_vmovn_v: {
3250 llvm::Type *QTy = llvm::VectorType::getExtendedElementVectorType(VTy);
3251 Ops[0] = Builder.CreateBitCast(Ops[0], QTy);
3252 return Builder.CreateTrunc(Ops[0], Ty, "vmovn");
3253 }
3254 case NEON::BI__builtin_neon_vmull_v:
3255 // FIXME: the integer vmull operations could be emitted in terms of pure
3256 // LLVM IR (2 exts followed by a mul). Unfortunately LLVM has a habit of
3257 // hoisting the exts outside loops. Until global ISel comes along that can
3258 // see through such movement this leads to bad CodeGen. So we need an
3259 // intrinsic for now.
3260 Int = Usgn ? Intrinsic::arm_neon_vmullu : Intrinsic::arm_neon_vmulls;
3261 Int = Type.isPoly() ? (unsigned)Intrinsic::arm_neon_vmullp : Int;
3262 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vmull");
3263 case NEON::BI__builtin_neon_vpadal_v:
3264 case NEON::BI__builtin_neon_vpadalq_v: {
3265 // The source operand type has twice as many elements of half the size.
3266 unsigned EltBits = VTy->getElementType()->getPrimitiveSizeInBits();
3267 llvm::Type *EltTy =
3268 llvm::IntegerType::get(getLLVMContext(), EltBits / 2);
3269 llvm::Type *NarrowTy =
3270 llvm::VectorType::get(EltTy, VTy->getNumElements() * 2);
3271 llvm::Type *Tys[2] = { Ty, NarrowTy };
3272 return EmitNeonCall(CGM.getIntrinsic(Int, Tys), Ops, NameHint);
3273 }
3274 case NEON::BI__builtin_neon_vpaddl_v:
3275 case NEON::BI__builtin_neon_vpaddlq_v: {
3276 // The source operand type has twice as many elements of half the size.
3277 unsigned EltBits = VTy->getElementType()->getPrimitiveSizeInBits();
3278 llvm::Type *EltTy = llvm::IntegerType::get(getLLVMContext(), EltBits / 2);
3279 llvm::Type *NarrowTy =
3280 llvm::VectorType::get(EltTy, VTy->getNumElements() * 2);
3281 llvm::Type *Tys[2] = { Ty, NarrowTy };
3282 return EmitNeonCall(CGM.getIntrinsic(Int, Tys), Ops, "vpaddl");
3283 }
3284 case NEON::BI__builtin_neon_vqdmlal_v:
3285 case NEON::BI__builtin_neon_vqdmlsl_v: {
3286 SmallVector<Value *, 2> MulOps(Ops.begin() + 1, Ops.end());
3287 Value *Mul = EmitNeonCall(CGM.getIntrinsic(LLVMIntrinsic, Ty),
3288 MulOps, "vqdmlal");
3289
3290 SmallVector<Value *, 2> AccumOps;
3291 AccumOps.push_back(Ops[0]);
3292 AccumOps.push_back(Mul);
3293 return EmitNeonCall(CGM.getIntrinsic(AltLLVMIntrinsic, Ty),
3294 AccumOps, NameHint);
3295 }
3296 case NEON::BI__builtin_neon_vqshl_n_v:
3297 case NEON::BI__builtin_neon_vqshlq_n_v:
3298 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vqshl_n",
3299 1, false);
3300 case NEON::BI__builtin_neon_vrecpe_v:
3301 case NEON::BI__builtin_neon_vrecpeq_v:
3302 case NEON::BI__builtin_neon_vrsqrte_v:
3303 case NEON::BI__builtin_neon_vrsqrteq_v:
3304 Int = Ty->isFPOrFPVectorTy() ? LLVMIntrinsic : AltLLVMIntrinsic;
3305 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, NameHint);
3306
3307 case NEON::BI__builtin_neon_vshl_n_v:
3308 case NEON::BI__builtin_neon_vshlq_n_v:
3309 Ops[1] = EmitNeonShiftVector(Ops[1], Ty, false);
3310 return Builder.CreateShl(Builder.CreateBitCast(Ops[0],Ty), Ops[1],
3311 "vshl_n");
3312 case NEON::BI__builtin_neon_vshll_n_v: {
3313 llvm::Type *SrcTy = llvm::VectorType::getTruncatedElementVectorType(VTy);
3314 Ops[0] = Builder.CreateBitCast(Ops[0], SrcTy);
3315 if (Usgn)
3316 Ops[0] = Builder.CreateZExt(Ops[0], VTy);
3317 else
3318 Ops[0] = Builder.CreateSExt(Ops[0], VTy);
3319 Ops[1] = EmitNeonShiftVector(Ops[1], VTy, false);
3320 return Builder.CreateShl(Ops[0], Ops[1], "vshll_n");
3321 }
3322 case NEON::BI__builtin_neon_vshrn_n_v: {
3323 llvm::Type *SrcTy = llvm::VectorType::getExtendedElementVectorType(VTy);
3324 Ops[0] = Builder.CreateBitCast(Ops[0], SrcTy);
3325 Ops[1] = EmitNeonShiftVector(Ops[1], SrcTy, false);
3326 if (Usgn)
3327 Ops[0] = Builder.CreateLShr(Ops[0], Ops[1]);
3328 else
3329 Ops[0] = Builder.CreateAShr(Ops[0], Ops[1]);
3330 return Builder.CreateTrunc(Ops[0], Ty, "vshrn_n");
3331 }
3332 case NEON::BI__builtin_neon_vshr_n_v:
3333 case NEON::BI__builtin_neon_vshrq_n_v:
3334 return EmitNeonRShiftImm(Ops[0], Ops[1], Ty, Usgn, "vshr_n");
3335 case NEON::BI__builtin_neon_vst1_v:
3336 case NEON::BI__builtin_neon_vst1q_v:
3337 case NEON::BI__builtin_neon_vst2_v:
3338 case NEON::BI__builtin_neon_vst2q_v:
3339 case NEON::BI__builtin_neon_vst3_v:
3340 case NEON::BI__builtin_neon_vst3q_v:
3341 case NEON::BI__builtin_neon_vst4_v:
3342 case NEON::BI__builtin_neon_vst4q_v:
3343 case NEON::BI__builtin_neon_vst2_lane_v:
3344 case NEON::BI__builtin_neon_vst2q_lane_v:
3345 case NEON::BI__builtin_neon_vst3_lane_v:
3346 case NEON::BI__builtin_neon_vst3q_lane_v:
3347 case NEON::BI__builtin_neon_vst4_lane_v:
3348 case NEON::BI__builtin_neon_vst4q_lane_v:
3349 Ops.push_back(Align);
3350 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "");
3351 case NEON::BI__builtin_neon_vsubhn_v: {
3352 llvm::VectorType *SrcTy =
3353 llvm::VectorType::getExtendedElementVectorType(VTy);
3354
3355 // %sum = add <4 x i32> %lhs, %rhs
3356 Ops[0] = Builder.CreateBitCast(Ops[0], SrcTy);
3357 Ops[1] = Builder.CreateBitCast(Ops[1], SrcTy);
3358 Ops[0] = Builder.CreateSub(Ops[0], Ops[1], "vsubhn");
3359
3360 // %high = lshr <4 x i32> %sum, <i32 16, i32 16, i32 16, i32 16>
3361 Constant *ShiftAmt = ConstantInt::get(SrcTy->getElementType(),
3362 SrcTy->getScalarSizeInBits() / 2);
3363 ShiftAmt = ConstantVector::getSplat(VTy->getNumElements(), ShiftAmt);
3364 Ops[0] = Builder.CreateLShr(Ops[0], ShiftAmt, "vsubhn");
3365
3366 // %res = trunc <4 x i32> %high to <4 x i16>
3367 return Builder.CreateTrunc(Ops[0], VTy, "vsubhn");
3368 }
3369 case NEON::BI__builtin_neon_vtrn_v:
3370 case NEON::BI__builtin_neon_vtrnq_v: {
3371 Ops[0] = Builder.CreateBitCast(Ops[0], llvm::PointerType::getUnqual(Ty));
3372 Ops[1] = Builder.CreateBitCast(Ops[1], Ty);
3373 Ops[2] = Builder.CreateBitCast(Ops[2], Ty);
3374 Value *SV = 0;
3375
3376 for (unsigned vi = 0; vi != 2; ++vi) {
3377 SmallVector<Constant*, 16> Indices;
3378 for (unsigned i = 0, e = VTy->getNumElements(); i != e; i += 2) {
3379 Indices.push_back(Builder.getInt32(i+vi));
3380 Indices.push_back(Builder.getInt32(i+e+vi));
3381 }
3382 Value *Addr = Builder.CreateConstInBoundsGEP1_32(Ops[0], vi);
3383 SV = llvm::ConstantVector::get(Indices);
3384 SV = Builder.CreateShuffleVector(Ops[1], Ops[2], SV, "vtrn");
3385 SV = Builder.CreateStore(SV, Addr);
3386 }
3387 return SV;
3388 }
3389 case NEON::BI__builtin_neon_vtst_v:
3390 case NEON::BI__builtin_neon_vtstq_v: {
3391 Ops[0] = Builder.CreateBitCast(Ops[0], Ty);
3392 Ops[1] = Builder.CreateBitCast(Ops[1], Ty);
3393 Ops[0] = Builder.CreateAnd(Ops[0], Ops[1]);
3394 Ops[0] = Builder.CreateICmp(ICmpInst::ICMP_NE, Ops[0],
3395 ConstantAggregateZero::get(Ty));
3396 return Builder.CreateSExt(Ops[0], Ty, "vtst");
3397 }
3398 case NEON::BI__builtin_neon_vuzp_v:
3399 case NEON::BI__builtin_neon_vuzpq_v: {
3400 Ops[0] = Builder.CreateBitCast(Ops[0], llvm::PointerType::getUnqual(Ty));
3401 Ops[1] = Builder.CreateBitCast(Ops[1], Ty);
3402 Ops[2] = Builder.CreateBitCast(Ops[2], Ty);
3403 Value *SV = 0;
3404
3405 for (unsigned vi = 0; vi != 2; ++vi) {
3406 SmallVector<Constant*, 16> Indices;
3407 for (unsigned i = 0, e = VTy->getNumElements(); i != e; ++i)
3408 Indices.push_back(ConstantInt::get(Int32Ty, 2*i+vi));
3409
3410 Value *Addr = Builder.CreateConstInBoundsGEP1_32(Ops[0], vi);
3411 SV = llvm::ConstantVector::get(Indices);
3412 SV = Builder.CreateShuffleVector(Ops[1], Ops[2], SV, "vuzp");
3413 SV = Builder.CreateStore(SV, Addr);
3414 }
3415 return SV;
3416 }
3417 case NEON::BI__builtin_neon_vzip_v:
3418 case NEON::BI__builtin_neon_vzipq_v: {
3419 Ops[0] = Builder.CreateBitCast(Ops[0], llvm::PointerType::getUnqual(Ty));
3420 Ops[1] = Builder.CreateBitCast(Ops[1], Ty);
3421 Ops[2] = Builder.CreateBitCast(Ops[2], Ty);
3422 Value *SV = 0;
3423
3424 for (unsigned vi = 0; vi != 2; ++vi) {
3425 SmallVector<Constant*, 16> Indices;
3426 for (unsigned i = 0, e = VTy->getNumElements(); i != e; i += 2) {
3427 Indices.push_back(ConstantInt::get(Int32Ty, (i + vi*e) >> 1));
3428 Indices.push_back(ConstantInt::get(Int32Ty, ((i + vi*e) >> 1)+e));
3429 }
3430 Value *Addr = Builder.CreateConstInBoundsGEP1_32(Ops[0], vi);
3431 SV = llvm::ConstantVector::get(Indices);
3432 SV = Builder.CreateShuffleVector(Ops[1], Ops[2], SV, "vzip");
3433 SV = Builder.CreateStore(SV, Addr);
3434 }
3435 return SV;
3436 }
3437 }
3438
3439 assert(Int && "Expected valid intrinsic number");
3440
3441 // Determine the type(s) of this overloaded AArch64 intrinsic.
3442 Function *F = LookupNeonLLVMIntrinsic(Int, Modifier, Ty, E);
3443
3444 Value *Result = EmitNeonCall(F, Ops, NameHint);
3445 llvm::Type *ResultType = ConvertType(E->getType());
3446 // AArch64 intrinsic one-element vector type cast to
3447 // scalar type expected by the builtin
3448 return Builder.CreateBitCast(Result, ResultType, NameHint);
3449}
3450
Kevin Qin1718af62013-11-14 02:45:18 +00003451Value *CodeGenFunction::EmitAArch64CompareBuiltinExpr(
3452 Value *Op, llvm::Type *Ty, const CmpInst::Predicate Fp,
3453 const CmpInst::Predicate Ip, const Twine &Name) {
Tim Northovera2ee4332014-03-29 15:09:45 +00003454 llvm::Type *OTy = Op->getType();
3455
3456 // FIXME: this is utterly horrific. We should not be looking at previous
3457 // codegen context to find out what needs doing. Unfortunately TableGen
3458 // currently gives us exactly the same calls for vceqz_f32 and vceqz_s32
3459 // (etc).
3460 if (BitCastInst *BI = dyn_cast<BitCastInst>(Op))
3461 OTy = BI->getOperand(0)->getType();
3462
Kevin Qin1718af62013-11-14 02:45:18 +00003463 Op = Builder.CreateBitCast(Op, OTy);
Tim Northovera2ee4332014-03-29 15:09:45 +00003464 if (OTy->getScalarType()->isFloatingPointTy()) {
3465 Op = Builder.CreateFCmp(Fp, Op, Constant::getNullValue(OTy));
Kevin Qin1718af62013-11-14 02:45:18 +00003466 } else {
Tim Northovera2ee4332014-03-29 15:09:45 +00003467 Op = Builder.CreateICmp(Ip, Op, Constant::getNullValue(OTy));
Kevin Qin1718af62013-11-14 02:45:18 +00003468 }
Hao Liuf96fd372013-12-23 02:44:00 +00003469 return Builder.CreateSExt(Op, Ty, Name);
Kevin Qin1718af62013-11-14 02:45:18 +00003470}
3471
Jiangning Liu18b707c2013-11-14 01:57:55 +00003472static Value *packTBLDVectorList(CodeGenFunction &CGF, ArrayRef<Value *> Ops,
3473 Value *ExtOp, Value *IndexOp,
3474 llvm::Type *ResTy, unsigned IntID,
3475 const char *Name) {
3476 SmallVector<Value *, 2> TblOps;
3477 if (ExtOp)
3478 TblOps.push_back(ExtOp);
Jiangning Liu036f16d2013-09-24 02:48:06 +00003479
Jiangning Liu18b707c2013-11-14 01:57:55 +00003480 // Build a vector containing sequential number like (0, 1, 2, ..., 15)
3481 SmallVector<Constant*, 16> Indices;
3482 llvm::VectorType *TblTy = cast<llvm::VectorType>(Ops[0]->getType());
3483 for (unsigned i = 0, e = TblTy->getNumElements(); i != e; ++i) {
3484 Indices.push_back(ConstantInt::get(CGF.Int32Ty, 2*i));
3485 Indices.push_back(ConstantInt::get(CGF.Int32Ty, 2*i+1));
3486 }
3487 Value *SV = llvm::ConstantVector::get(Indices);
3488
3489 int PairPos = 0, End = Ops.size() - 1;
3490 while (PairPos < End) {
3491 TblOps.push_back(CGF.Builder.CreateShuffleVector(Ops[PairPos],
3492 Ops[PairPos+1], SV, Name));
3493 PairPos += 2;
3494 }
3495
3496 // If there's an odd number of 64-bit lookup table, fill the high 64-bit
3497 // of the 128-bit lookup table with zero.
3498 if (PairPos == End) {
3499 Value *ZeroTbl = ConstantAggregateZero::get(TblTy);
3500 TblOps.push_back(CGF.Builder.CreateShuffleVector(Ops[PairPos],
3501 ZeroTbl, SV, Name));
3502 }
3503
Jiangning Liu18b707c2013-11-14 01:57:55 +00003504 Function *TblF;
3505 TblOps.push_back(IndexOp);
Tim Northoverb44e0802014-02-26 11:55:15 +00003506 TblF = CGF.CGM.getIntrinsic(IntID, ResTy);
Jiangning Liu18b707c2013-11-14 01:57:55 +00003507
3508 return CGF.EmitNeonCall(TblF, TblOps, Name);
3509}
3510
3511static Value *EmitAArch64TblBuiltinExpr(CodeGenFunction &CGF,
3512 unsigned BuiltinID,
3513 const CallExpr *E) {
3514 unsigned int Int = 0;
3515 const char *s = NULL;
3516
Jiangning Liu18b707c2013-11-14 01:57:55 +00003517 switch (BuiltinID) {
3518 default:
3519 return 0;
Tim Northoverc322f832014-01-30 14:47:51 +00003520 case NEON::BI__builtin_neon_vtbl1_v:
3521 case NEON::BI__builtin_neon_vqtbl1_v:
3522 case NEON::BI__builtin_neon_vqtbl1q_v:
3523 case NEON::BI__builtin_neon_vtbl2_v:
3524 case NEON::BI__builtin_neon_vqtbl2_v:
3525 case NEON::BI__builtin_neon_vqtbl2q_v:
3526 case NEON::BI__builtin_neon_vtbl3_v:
3527 case NEON::BI__builtin_neon_vqtbl3_v:
3528 case NEON::BI__builtin_neon_vqtbl3q_v:
3529 case NEON::BI__builtin_neon_vtbl4_v:
3530 case NEON::BI__builtin_neon_vqtbl4_v:
3531 case NEON::BI__builtin_neon_vqtbl4q_v:
Tim Northoverc322f832014-01-30 14:47:51 +00003532 case NEON::BI__builtin_neon_vtbx1_v:
3533 case NEON::BI__builtin_neon_vqtbx1_v:
3534 case NEON::BI__builtin_neon_vqtbx1q_v:
3535 case NEON::BI__builtin_neon_vtbx2_v:
3536 case NEON::BI__builtin_neon_vqtbx2_v:
3537 case NEON::BI__builtin_neon_vqtbx2q_v:
3538 case NEON::BI__builtin_neon_vtbx3_v:
3539 case NEON::BI__builtin_neon_vqtbx3_v:
3540 case NEON::BI__builtin_neon_vqtbx3q_v:
3541 case NEON::BI__builtin_neon_vtbx4_v:
3542 case NEON::BI__builtin_neon_vqtbx4_v:
3543 case NEON::BI__builtin_neon_vqtbx4q_v:
Jiangning Liu18b707c2013-11-14 01:57:55 +00003544 break;
3545 }
3546
3547 assert(E->getNumArgs() >= 3);
3548
3549 // Get the last argument, which specifies the vector type.
3550 llvm::APSInt Result;
3551 const Expr *Arg = E->getArg(E->getNumArgs() - 1);
3552 if (!Arg->isIntegerConstantExpr(Result, CGF.getContext()))
3553 return 0;
3554
3555 // Determine the type of this overloaded NEON intrinsic.
3556 NeonTypeFlags Type(Result.getZExtValue());
3557 llvm::VectorType *VTy = GetNeonType(&CGF, Type);
3558 llvm::Type *Ty = VTy;
3559 if (!Ty)
3560 return 0;
3561
3562 SmallVector<Value *, 4> Ops;
3563 for (unsigned i = 0, e = E->getNumArgs() - 1; i != e; i++) {
3564 Ops.push_back(CGF.EmitScalarExpr(E->getArg(i)));
3565 }
3566
Jiangning Liu18b707c2013-11-14 01:57:55 +00003567 unsigned nElts = VTy->getNumElements();
3568
3569 // AArch64 scalar builtins are not overloaded, they do not have an extra
3570 // argument that specifies the vector type, need to handle each case.
3571 SmallVector<Value *, 2> TblOps;
3572 switch (BuiltinID) {
Tim Northoverc322f832014-01-30 14:47:51 +00003573 case NEON::BI__builtin_neon_vtbl1_v: {
Jiangning Liu18b707c2013-11-14 01:57:55 +00003574 TblOps.push_back(Ops[0]);
3575 return packTBLDVectorList(CGF, TblOps, 0, Ops[1], Ty,
3576 Intrinsic::aarch64_neon_vtbl1, "vtbl1");
3577 }
Tim Northoverc322f832014-01-30 14:47:51 +00003578 case NEON::BI__builtin_neon_vtbl2_v: {
Jiangning Liu18b707c2013-11-14 01:57:55 +00003579 TblOps.push_back(Ops[0]);
3580 TblOps.push_back(Ops[1]);
3581 return packTBLDVectorList(CGF, TblOps, 0, Ops[2], Ty,
3582 Intrinsic::aarch64_neon_vtbl1, "vtbl1");
3583 }
Tim Northoverc322f832014-01-30 14:47:51 +00003584 case NEON::BI__builtin_neon_vtbl3_v: {
Jiangning Liu18b707c2013-11-14 01:57:55 +00003585 TblOps.push_back(Ops[0]);
3586 TblOps.push_back(Ops[1]);
3587 TblOps.push_back(Ops[2]);
3588 return packTBLDVectorList(CGF, TblOps, 0, Ops[3], Ty,
3589 Intrinsic::aarch64_neon_vtbl2, "vtbl2");
3590 }
Tim Northoverc322f832014-01-30 14:47:51 +00003591 case NEON::BI__builtin_neon_vtbl4_v: {
Jiangning Liu18b707c2013-11-14 01:57:55 +00003592 TblOps.push_back(Ops[0]);
3593 TblOps.push_back(Ops[1]);
3594 TblOps.push_back(Ops[2]);
3595 TblOps.push_back(Ops[3]);
3596 return packTBLDVectorList(CGF, TblOps, 0, Ops[4], Ty,
3597 Intrinsic::aarch64_neon_vtbl2, "vtbl2");
3598 }
Tim Northoverc322f832014-01-30 14:47:51 +00003599 case NEON::BI__builtin_neon_vtbx1_v: {
Jiangning Liu18b707c2013-11-14 01:57:55 +00003600 TblOps.push_back(Ops[1]);
3601 Value *TblRes = packTBLDVectorList(CGF, TblOps, 0, Ops[2], Ty,
3602 Intrinsic::aarch64_neon_vtbl1, "vtbl1");
3603
3604 llvm::Constant *Eight = ConstantInt::get(VTy->getElementType(), 8);
3605 Value* EightV = llvm::ConstantVector::getSplat(nElts, Eight);
3606 Value *CmpRes = CGF.Builder.CreateICmp(ICmpInst::ICMP_UGE, Ops[2], EightV);
3607 CmpRes = CGF.Builder.CreateSExt(CmpRes, Ty);
3608
3609 SmallVector<Value *, 4> BslOps;
3610 BslOps.push_back(CmpRes);
3611 BslOps.push_back(Ops[0]);
3612 BslOps.push_back(TblRes);
3613 Function *BslF = CGF.CGM.getIntrinsic(Intrinsic::arm_neon_vbsl, Ty);
3614 return CGF.EmitNeonCall(BslF, BslOps, "vbsl");
3615 }
Tim Northoverc322f832014-01-30 14:47:51 +00003616 case NEON::BI__builtin_neon_vtbx2_v: {
Jiangning Liu18b707c2013-11-14 01:57:55 +00003617 TblOps.push_back(Ops[1]);
3618 TblOps.push_back(Ops[2]);
3619 return packTBLDVectorList(CGF, TblOps, Ops[0], Ops[3], Ty,
3620 Intrinsic::aarch64_neon_vtbx1, "vtbx1");
3621 }
Tim Northoverc322f832014-01-30 14:47:51 +00003622 case NEON::BI__builtin_neon_vtbx3_v: {
Jiangning Liu18b707c2013-11-14 01:57:55 +00003623 TblOps.push_back(Ops[1]);
3624 TblOps.push_back(Ops[2]);
3625 TblOps.push_back(Ops[3]);
3626 Value *TblRes = packTBLDVectorList(CGF, TblOps, 0, Ops[4], Ty,
3627 Intrinsic::aarch64_neon_vtbl2, "vtbl2");
3628
3629 llvm::Constant *TwentyFour = ConstantInt::get(VTy->getElementType(), 24);
3630 Value* TwentyFourV = llvm::ConstantVector::getSplat(nElts, TwentyFour);
3631 Value *CmpRes = CGF.Builder.CreateICmp(ICmpInst::ICMP_UGE, Ops[4],
3632 TwentyFourV);
3633 CmpRes = CGF.Builder.CreateSExt(CmpRes, Ty);
3634
3635 SmallVector<Value *, 4> BslOps;
3636 BslOps.push_back(CmpRes);
3637 BslOps.push_back(Ops[0]);
3638 BslOps.push_back(TblRes);
3639 Function *BslF = CGF.CGM.getIntrinsic(Intrinsic::arm_neon_vbsl, Ty);
3640 return CGF.EmitNeonCall(BslF, BslOps, "vbsl");
3641 }
Tim Northoverc322f832014-01-30 14:47:51 +00003642 case NEON::BI__builtin_neon_vtbx4_v: {
Jiangning Liu18b707c2013-11-14 01:57:55 +00003643 TblOps.push_back(Ops[1]);
3644 TblOps.push_back(Ops[2]);
3645 TblOps.push_back(Ops[3]);
3646 TblOps.push_back(Ops[4]);
3647 return packTBLDVectorList(CGF, TblOps, Ops[0], Ops[5], Ty,
3648 Intrinsic::aarch64_neon_vtbx2, "vtbx2");
3649 }
Tim Northoverc322f832014-01-30 14:47:51 +00003650 case NEON::BI__builtin_neon_vqtbl1_v:
3651 case NEON::BI__builtin_neon_vqtbl1q_v:
Jiangning Liu18b707c2013-11-14 01:57:55 +00003652 Int = Intrinsic::aarch64_neon_vtbl1; s = "vtbl1"; break;
Tim Northoverc322f832014-01-30 14:47:51 +00003653 case NEON::BI__builtin_neon_vqtbl2_v:
3654 case NEON::BI__builtin_neon_vqtbl2q_v: {
Jiangning Liu18b707c2013-11-14 01:57:55 +00003655 Int = Intrinsic::aarch64_neon_vtbl2; s = "vtbl2"; break;
Tim Northoverc322f832014-01-30 14:47:51 +00003656 case NEON::BI__builtin_neon_vqtbl3_v:
3657 case NEON::BI__builtin_neon_vqtbl3q_v:
Jiangning Liu18b707c2013-11-14 01:57:55 +00003658 Int = Intrinsic::aarch64_neon_vtbl3; s = "vtbl3"; break;
Tim Northoverc322f832014-01-30 14:47:51 +00003659 case NEON::BI__builtin_neon_vqtbl4_v:
3660 case NEON::BI__builtin_neon_vqtbl4q_v:
Jiangning Liu18b707c2013-11-14 01:57:55 +00003661 Int = Intrinsic::aarch64_neon_vtbl4; s = "vtbl4"; break;
Tim Northoverc322f832014-01-30 14:47:51 +00003662 case NEON::BI__builtin_neon_vqtbx1_v:
3663 case NEON::BI__builtin_neon_vqtbx1q_v:
Jiangning Liu18b707c2013-11-14 01:57:55 +00003664 Int = Intrinsic::aarch64_neon_vtbx1; s = "vtbx1"; break;
Tim Northoverc322f832014-01-30 14:47:51 +00003665 case NEON::BI__builtin_neon_vqtbx2_v:
3666 case NEON::BI__builtin_neon_vqtbx2q_v:
Jiangning Liu18b707c2013-11-14 01:57:55 +00003667 Int = Intrinsic::aarch64_neon_vtbx2; s = "vtbx2"; break;
Tim Northoverc322f832014-01-30 14:47:51 +00003668 case NEON::BI__builtin_neon_vqtbx3_v:
3669 case NEON::BI__builtin_neon_vqtbx3q_v:
Jiangning Liu18b707c2013-11-14 01:57:55 +00003670 Int = Intrinsic::aarch64_neon_vtbx3; s = "vtbx3"; break;
Tim Northoverc322f832014-01-30 14:47:51 +00003671 case NEON::BI__builtin_neon_vqtbx4_v:
3672 case NEON::BI__builtin_neon_vqtbx4q_v:
Jiangning Liu18b707c2013-11-14 01:57:55 +00003673 Int = Intrinsic::aarch64_neon_vtbx4; s = "vtbx4"; break;
3674 }
3675 }
3676
3677 if (!Int)
3678 return 0;
3679
Tim Northoverb44e0802014-02-26 11:55:15 +00003680 Function *F = CGF.CGM.getIntrinsic(Int, Ty);
Jiangning Liu18b707c2013-11-14 01:57:55 +00003681 return CGF.EmitNeonCall(F, Ops, s);
3682}
3683
3684Value *CodeGenFunction::EmitAArch64BuiltinExpr(unsigned BuiltinID,
3685 const CallExpr *E) {
Tim Northoverdb3e5e22014-02-19 11:55:06 +00003686
Jiangning Liu036f16d2013-09-24 02:48:06 +00003687 // Process AArch64 scalar builtins
Tim Northover8fe03d62014-02-21 11:57:24 +00003688 llvm::ArrayRef<NeonIntrinsicInfo> SISDInfo(AArch64SISDIntrinsicInfo);
3689 const NeonIntrinsicInfo *Builtin = findNeonIntrinsicInMap(
3690 SISDInfo, BuiltinID, AArch64SISDIntrinsicInfoProvenSorted);
Tim Northoverdb3e5e22014-02-19 11:55:06 +00003691
Tim Northover8fe03d62014-02-21 11:57:24 +00003692 if (Builtin) {
3693 Value *Result = EmitAArch64ScalarBuiltinExpr(*this, *Builtin, E);
Tim Northoverdb3e5e22014-02-19 11:55:06 +00003694 assert(Result && "SISD intrinsic should have been handled");
Jiangning Liu036f16d2013-09-24 02:48:06 +00003695 return Result;
Tim Northoverdb3e5e22014-02-19 11:55:06 +00003696 }
Jiangning Liu036f16d2013-09-24 02:48:06 +00003697
Jiangning Liu18b707c2013-11-14 01:57:55 +00003698 // Process AArch64 table lookup builtins
3699 if (Value *Result = EmitAArch64TblBuiltinExpr(*this, BuiltinID, E))
3700 return Result;
3701
Tim Northover8ec8c4b2013-05-04 07:15:13 +00003702 if (BuiltinID == AArch64::BI__clear_cache) {
3703 assert(E->getNumArgs() == 2 &&
3704 "Variadic __clear_cache slipped through on AArch64");
3705
3706 const FunctionDecl *FD = E->getDirectCallee();
3707 SmallVector<Value *, 2> Ops;
3708 for (unsigned i = 0; i < E->getNumArgs(); i++)
3709 Ops.push_back(EmitScalarExpr(E->getArg(i)));
3710 llvm::Type *Ty = CGM.getTypes().ConvertType(FD->getType());
3711 llvm::FunctionType *FTy = cast<llvm::FunctionType>(Ty);
3712 StringRef Name = FD->getName();
3713 return EmitNounwindRuntimeCall(CGM.CreateRuntimeFunction(FTy, Name), Ops);
3714 }
3715
Tim Northover2fe823a2013-08-01 09:23:19 +00003716 SmallVector<Value *, 4> Ops;
Hao Liu5e4ce1a2013-11-18 06:33:43 +00003717 llvm::Value *Align = 0; // Alignment for load/store
Kevin Qinfb79d7f2013-12-10 06:49:01 +00003718
Tim Northoverc322f832014-01-30 14:47:51 +00003719 if (BuiltinID == NEON::BI__builtin_neon_vldrq_p128) {
Kevin Qinfb79d7f2013-12-10 06:49:01 +00003720 Value *Op = EmitScalarExpr(E->getArg(0));
3721 unsigned addressSpace =
3722 cast<llvm::PointerType>(Op->getType())->getAddressSpace();
3723 llvm::Type *Ty = llvm::Type::getFP128PtrTy(getLLVMContext(), addressSpace);
3724 Op = Builder.CreateBitCast(Op, Ty);
3725 Op = Builder.CreateLoad(Op);
3726 Ty = llvm::Type::getIntNTy(getLLVMContext(), 128);
3727 return Builder.CreateBitCast(Op, Ty);
3728 }
Tim Northoverc322f832014-01-30 14:47:51 +00003729 if (BuiltinID == NEON::BI__builtin_neon_vstrq_p128) {
Kevin Qinfb79d7f2013-12-10 06:49:01 +00003730 Value *Op0 = EmitScalarExpr(E->getArg(0));
3731 unsigned addressSpace =
3732 cast<llvm::PointerType>(Op0->getType())->getAddressSpace();
3733 llvm::Type *PTy = llvm::Type::getFP128PtrTy(getLLVMContext(), addressSpace);
3734 Op0 = Builder.CreateBitCast(Op0, PTy);
3735 Value *Op1 = EmitScalarExpr(E->getArg(1));
3736 llvm::Type *Ty = llvm::Type::getFP128Ty(getLLVMContext());
3737 Op1 = Builder.CreateBitCast(Op1, Ty);
3738 return Builder.CreateStore(Op1, Op0);
3739 }
Tim Northover2fe823a2013-08-01 09:23:19 +00003740 for (unsigned i = 0, e = E->getNumArgs() - 1; i != e; i++) {
Hao Liu5e4ce1a2013-11-18 06:33:43 +00003741 if (i == 0) {
3742 switch (BuiltinID) {
Tim Northover027b4ee2014-01-31 10:46:45 +00003743 case NEON::BI__builtin_neon_vld1_v:
3744 case NEON::BI__builtin_neon_vld1q_v:
3745 case NEON::BI__builtin_neon_vst1_v:
3746 case NEON::BI__builtin_neon_vst1q_v:
3747 case NEON::BI__builtin_neon_vst2_v:
3748 case NEON::BI__builtin_neon_vst2q_v:
3749 case NEON::BI__builtin_neon_vst3_v:
3750 case NEON::BI__builtin_neon_vst3q_v:
3751 case NEON::BI__builtin_neon_vst4_v:
3752 case NEON::BI__builtin_neon_vst4q_v:
Tim Northoverc322f832014-01-30 14:47:51 +00003753 case NEON::BI__builtin_neon_vst1_x2_v:
3754 case NEON::BI__builtin_neon_vst1q_x2_v:
3755 case NEON::BI__builtin_neon_vst1_x3_v:
3756 case NEON::BI__builtin_neon_vst1q_x3_v:
3757 case NEON::BI__builtin_neon_vst1_x4_v:
3758 case NEON::BI__builtin_neon_vst1q_x4_v:
Hao Liu171cedf2013-11-19 02:17:31 +00003759 // Handle ld1/st1 lane in this function a little different from ARM.
Tim Northoverc322f832014-01-30 14:47:51 +00003760 case NEON::BI__builtin_neon_vld1_lane_v:
3761 case NEON::BI__builtin_neon_vld1q_lane_v:
3762 case NEON::BI__builtin_neon_vst1_lane_v:
3763 case NEON::BI__builtin_neon_vst1q_lane_v:
Tim Northover027b4ee2014-01-31 10:46:45 +00003764 case NEON::BI__builtin_neon_vst2_lane_v:
3765 case NEON::BI__builtin_neon_vst2q_lane_v:
3766 case NEON::BI__builtin_neon_vst3_lane_v:
3767 case NEON::BI__builtin_neon_vst3q_lane_v:
3768 case NEON::BI__builtin_neon_vst4_lane_v:
3769 case NEON::BI__builtin_neon_vst4q_lane_v:
3770 case NEON::BI__builtin_neon_vld1_dup_v:
3771 case NEON::BI__builtin_neon_vld1q_dup_v:
Hao Liu5e4ce1a2013-11-18 06:33:43 +00003772 // Get the alignment for the argument in addition to the value;
3773 // we'll use it later.
3774 std::pair<llvm::Value *, unsigned> Src =
3775 EmitPointerWithAlignment(E->getArg(0));
3776 Ops.push_back(Src.first);
3777 Align = Builder.getInt32(Src.second);
3778 continue;
3779 }
3780 }
3781 if (i == 1) {
3782 switch (BuiltinID) {
Tim Northover027b4ee2014-01-31 10:46:45 +00003783 case NEON::BI__builtin_neon_vld2_v:
3784 case NEON::BI__builtin_neon_vld2q_v:
3785 case NEON::BI__builtin_neon_vld3_v:
3786 case NEON::BI__builtin_neon_vld3q_v:
3787 case NEON::BI__builtin_neon_vld4_v:
3788 case NEON::BI__builtin_neon_vld4q_v:
Tim Northoverc322f832014-01-30 14:47:51 +00003789 case NEON::BI__builtin_neon_vld1_x2_v:
3790 case NEON::BI__builtin_neon_vld1q_x2_v:
3791 case NEON::BI__builtin_neon_vld1_x3_v:
3792 case NEON::BI__builtin_neon_vld1q_x3_v:
3793 case NEON::BI__builtin_neon_vld1_x4_v:
3794 case NEON::BI__builtin_neon_vld1q_x4_v:
Hao Liu171cedf2013-11-19 02:17:31 +00003795 // Handle ld1/st1 dup lane in this function a little different from ARM.
Tim Northoverc322f832014-01-30 14:47:51 +00003796 case NEON::BI__builtin_neon_vld2_dup_v:
3797 case NEON::BI__builtin_neon_vld2q_dup_v:
3798 case NEON::BI__builtin_neon_vld3_dup_v:
3799 case NEON::BI__builtin_neon_vld3q_dup_v:
3800 case NEON::BI__builtin_neon_vld4_dup_v:
3801 case NEON::BI__builtin_neon_vld4q_dup_v:
3802 case NEON::BI__builtin_neon_vld2_lane_v:
3803 case NEON::BI__builtin_neon_vld2q_lane_v:
Tim Northover027b4ee2014-01-31 10:46:45 +00003804 case NEON::BI__builtin_neon_vld3_lane_v:
3805 case NEON::BI__builtin_neon_vld3q_lane_v:
3806 case NEON::BI__builtin_neon_vld4_lane_v:
3807 case NEON::BI__builtin_neon_vld4q_lane_v:
Hao Liu5e4ce1a2013-11-18 06:33:43 +00003808 // Get the alignment for the argument in addition to the value;
3809 // we'll use it later.
3810 std::pair<llvm::Value *, unsigned> Src =
3811 EmitPointerWithAlignment(E->getArg(1));
3812 Ops.push_back(Src.first);
3813 Align = Builder.getInt32(Src.second);
3814 continue;
3815 }
3816 }
Tim Northover2fe823a2013-08-01 09:23:19 +00003817 Ops.push_back(EmitScalarExpr(E->getArg(i)));
3818 }
3819
3820 // Get the last argument, which specifies the vector type.
3821 llvm::APSInt Result;
3822 const Expr *Arg = E->getArg(E->getNumArgs() - 1);
3823 if (!Arg->isIntegerConstantExpr(Result, getContext()))
3824 return 0;
3825
3826 // Determine the type of this overloaded NEON intrinsic.
3827 NeonTypeFlags Type(Result.getZExtValue());
3828 bool usgn = Type.isUnsigned();
Hao Liua5246fd2013-12-03 06:07:13 +00003829 bool quad = Type.isQuad();
Tim Northover2fe823a2013-08-01 09:23:19 +00003830
3831 llvm::VectorType *VTy = GetNeonType(this, Type);
3832 llvm::Type *Ty = VTy;
3833 if (!Ty)
3834 return 0;
3835
Tim Northover8fe03d62014-02-21 11:57:24 +00003836
Tim Northoverac85c342014-01-30 14:47:57 +00003837 // Many NEON builtins have identical semantics and uses in ARM and
3838 // AArch64. Emit these in a single function.
Tim Northover8fe03d62014-02-21 11:57:24 +00003839 llvm::ArrayRef<NeonIntrinsicInfo> IntrinsicMap(ARMSIMDIntrinsicMap);
3840 Builtin = findNeonIntrinsicInMap(IntrinsicMap, BuiltinID,
3841 NEONSIMDIntrinsicsProvenSorted);
3842 if (Builtin)
3843 return EmitCommonNeonBuiltinExpr(
3844 Builtin->BuiltinID, Builtin->LLVMIntrinsic, Builtin->AltLLVMIntrinsic,
3845 Builtin->NameHint, Builtin->TypeModifier, E, Ops, Align);
Tim Northoverac85c342014-01-30 14:47:57 +00003846
Tim Northover2fe823a2013-08-01 09:23:19 +00003847 unsigned Int;
3848 switch (BuiltinID) {
3849 default:
3850 return 0;
3851
3852 // AArch64 builtins mapping to legacy ARM v7 builtins.
3853 // FIXME: the mapped builtins listed correspond to what has been tested
3854 // in aarch64-neon-intrinsics.c so far.
Hao Liub1852ee2013-09-04 09:29:13 +00003855
3856 // Shift by immediate
Tim Northoverc322f832014-01-30 14:47:51 +00003857 case NEON::BI__builtin_neon_vrshr_n_v:
3858 case NEON::BI__builtin_neon_vrshrq_n_v:
Hao Liub1852ee2013-09-04 09:29:13 +00003859 Int = usgn ? Intrinsic::aarch64_neon_vurshr
3860 : Intrinsic::aarch64_neon_vsrshr;
3861 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vrshr_n");
Tim Northoverc322f832014-01-30 14:47:51 +00003862 case NEON::BI__builtin_neon_vsra_n_v:
Chad Rosier7aaee482013-11-14 22:02:24 +00003863 if (VTy->getElementType()->isIntegerTy(64)) {
3864 Int = usgn ? Intrinsic::aarch64_neon_vsradu_n
3865 : Intrinsic::aarch64_neon_vsrads_n;
3866 return EmitNeonCall(CGM.getIntrinsic(Int), Ops, "vsra_n");
3867 }
Tim Northoverc322f832014-01-30 14:47:51 +00003868 return EmitARMBuiltinExpr(NEON::BI__builtin_neon_vsra_n_v, E);
3869 case NEON::BI__builtin_neon_vsraq_n_v:
3870 return EmitARMBuiltinExpr(NEON::BI__builtin_neon_vsraq_n_v, E);
3871 case NEON::BI__builtin_neon_vrsra_n_v:
Chad Rosier7aaee482013-11-14 22:02:24 +00003872 if (VTy->getElementType()->isIntegerTy(64)) {
3873 Int = usgn ? Intrinsic::aarch64_neon_vrsradu_n
3874 : Intrinsic::aarch64_neon_vrsrads_n;
3875 return EmitNeonCall(CGM.getIntrinsic(Int), Ops, "vrsra_n");
3876 }
3877 // fall through
Tim Northoverc322f832014-01-30 14:47:51 +00003878 case NEON::BI__builtin_neon_vrsraq_n_v: {
Hao Liub1852ee2013-09-04 09:29:13 +00003879 Ops[0] = Builder.CreateBitCast(Ops[0], Ty);
3880 Ops[1] = Builder.CreateBitCast(Ops[1], Ty);
3881 Int = usgn ? Intrinsic::aarch64_neon_vurshr
3882 : Intrinsic::aarch64_neon_vsrshr;
3883 Ops[1] = Builder.CreateCall2(CGM.getIntrinsic(Int, Ty), Ops[1], Ops[2]);
3884 return Builder.CreateAdd(Ops[0], Ops[1], "vrsra_n");
3885 }
Tim Northoverc322f832014-01-30 14:47:51 +00003886 case NEON::BI__builtin_neon_vqshlu_n_v:
3887 case NEON::BI__builtin_neon_vqshluq_n_v:
Hao Liub1852ee2013-09-04 09:29:13 +00003888 Int = Intrinsic::aarch64_neon_vsqshlu;
3889 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vqshlu_n");
Tim Northoverc322f832014-01-30 14:47:51 +00003890 case NEON::BI__builtin_neon_vsri_n_v:
3891 case NEON::BI__builtin_neon_vsriq_n_v:
Hao Liub1852ee2013-09-04 09:29:13 +00003892 Int = Intrinsic::aarch64_neon_vsri;
3893 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vsri_n");
Tim Northoverc322f832014-01-30 14:47:51 +00003894 case NEON::BI__builtin_neon_vsli_n_v:
3895 case NEON::BI__builtin_neon_vsliq_n_v:
Hao Liub1852ee2013-09-04 09:29:13 +00003896 Int = Intrinsic::aarch64_neon_vsli;
3897 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vsli_n");
Tim Northoverc322f832014-01-30 14:47:51 +00003898 case NEON::BI__builtin_neon_vqshrun_n_v:
Hao Liub1852ee2013-09-04 09:29:13 +00003899 Int = Intrinsic::aarch64_neon_vsqshrun;
3900 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vqshrun_n");
Tim Northoverc322f832014-01-30 14:47:51 +00003901 case NEON::BI__builtin_neon_vrshrn_n_v:
Hao Liub1852ee2013-09-04 09:29:13 +00003902 Int = Intrinsic::aarch64_neon_vrshrn;
3903 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vrshrn_n");
Tim Northoverc322f832014-01-30 14:47:51 +00003904 case NEON::BI__builtin_neon_vqrshrun_n_v:
Hao Liub1852ee2013-09-04 09:29:13 +00003905 Int = Intrinsic::aarch64_neon_vsqrshrun;
3906 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vqrshrun_n");
Tim Northoverc322f832014-01-30 14:47:51 +00003907 case NEON::BI__builtin_neon_vqshrn_n_v:
Hao Liub1852ee2013-09-04 09:29:13 +00003908 Int = usgn ? Intrinsic::aarch64_neon_vuqshrn
3909 : Intrinsic::aarch64_neon_vsqshrn;
3910 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vqshrn_n");
Tim Northoverc322f832014-01-30 14:47:51 +00003911 case NEON::BI__builtin_neon_vqrshrn_n_v:
Hao Liub1852ee2013-09-04 09:29:13 +00003912 Int = usgn ? Intrinsic::aarch64_neon_vuqrshrn
3913 : Intrinsic::aarch64_neon_vsqrshrn;
3914 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vqrshrn_n");
3915
3916 // Convert
Tim Northoverc322f832014-01-30 14:47:51 +00003917 case NEON::BI__builtin_neon_vcvt_n_f64_v:
3918 case NEON::BI__builtin_neon_vcvtq_n_f64_v: {
Hao Liub1852ee2013-09-04 09:29:13 +00003919 llvm::Type *FloatTy =
Hao Liua5246fd2013-12-03 06:07:13 +00003920 GetNeonType(this, NeonTypeFlags(NeonTypeFlags::Float64, false, quad));
Hao Liub1852ee2013-09-04 09:29:13 +00003921 llvm::Type *Tys[2] = { FloatTy, Ty };
3922 Int = usgn ? Intrinsic::arm_neon_vcvtfxu2fp
3923 : Intrinsic::arm_neon_vcvtfxs2fp;
3924 Function *F = CGM.getIntrinsic(Int, Tys);
3925 return EmitNeonCall(F, Ops, "vcvt_n");
3926 }
Tim Northover2fe823a2013-08-01 09:23:19 +00003927
Hao Liu1eade6d2013-10-10 17:01:49 +00003928 // Load/Store
Tim Northoverc322f832014-01-30 14:47:51 +00003929 case NEON::BI__builtin_neon_vld1_x2_v:
3930 case NEON::BI__builtin_neon_vld1q_x2_v:
3931 case NEON::BI__builtin_neon_vld1_x3_v:
3932 case NEON::BI__builtin_neon_vld1q_x3_v:
3933 case NEON::BI__builtin_neon_vld1_x4_v:
3934 case NEON::BI__builtin_neon_vld1q_x4_v: {
Hao Liu5e4ce1a2013-11-18 06:33:43 +00003935 unsigned Int;
3936 switch (BuiltinID) {
Tim Northoverc322f832014-01-30 14:47:51 +00003937 case NEON::BI__builtin_neon_vld1_x2_v:
3938 case NEON::BI__builtin_neon_vld1q_x2_v:
Hao Liu5e4ce1a2013-11-18 06:33:43 +00003939 Int = Intrinsic::aarch64_neon_vld1x2;
3940 break;
Tim Northoverc322f832014-01-30 14:47:51 +00003941 case NEON::BI__builtin_neon_vld1_x3_v:
3942 case NEON::BI__builtin_neon_vld1q_x3_v:
Hao Liu5e4ce1a2013-11-18 06:33:43 +00003943 Int = Intrinsic::aarch64_neon_vld1x3;
3944 break;
Tim Northoverc322f832014-01-30 14:47:51 +00003945 case NEON::BI__builtin_neon_vld1_x4_v:
3946 case NEON::BI__builtin_neon_vld1q_x4_v:
Hao Liu5e4ce1a2013-11-18 06:33:43 +00003947 Int = Intrinsic::aarch64_neon_vld1x4;
3948 break;
3949 }
3950 Function *F = CGM.getIntrinsic(Int, Ty);
3951 Ops[1] = Builder.CreateCall2(F, Ops[1], Align, "vld1xN");
3952 Ty = llvm::PointerType::getUnqual(Ops[1]->getType());
3953 Ops[0] = Builder.CreateBitCast(Ops[0], Ty);
3954 return Builder.CreateStore(Ops[1], Ops[0]);
3955 }
Tim Northoverc322f832014-01-30 14:47:51 +00003956 case NEON::BI__builtin_neon_vst1_x2_v:
3957 case NEON::BI__builtin_neon_vst1q_x2_v:
3958 case NEON::BI__builtin_neon_vst1_x3_v:
3959 case NEON::BI__builtin_neon_vst1q_x3_v:
3960 case NEON::BI__builtin_neon_vst1_x4_v:
3961 case NEON::BI__builtin_neon_vst1q_x4_v: {
Hao Liu5e4ce1a2013-11-18 06:33:43 +00003962 Ops.push_back(Align);
3963 unsigned Int;
3964 switch (BuiltinID) {
Tim Northoverc322f832014-01-30 14:47:51 +00003965 case NEON::BI__builtin_neon_vst1_x2_v:
3966 case NEON::BI__builtin_neon_vst1q_x2_v:
Hao Liu5e4ce1a2013-11-18 06:33:43 +00003967 Int = Intrinsic::aarch64_neon_vst1x2;
3968 break;
Tim Northoverc322f832014-01-30 14:47:51 +00003969 case NEON::BI__builtin_neon_vst1_x3_v:
3970 case NEON::BI__builtin_neon_vst1q_x3_v:
Hao Liu5e4ce1a2013-11-18 06:33:43 +00003971 Int = Intrinsic::aarch64_neon_vst1x3;
3972 break;
Tim Northoverc322f832014-01-30 14:47:51 +00003973 case NEON::BI__builtin_neon_vst1_x4_v:
3974 case NEON::BI__builtin_neon_vst1q_x4_v:
Hao Liu5e4ce1a2013-11-18 06:33:43 +00003975 Int = Intrinsic::aarch64_neon_vst1x4;
3976 break;
3977 }
3978 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "");
3979 }
Tim Northoverc322f832014-01-30 14:47:51 +00003980 case NEON::BI__builtin_neon_vld1_lane_v:
3981 case NEON::BI__builtin_neon_vld1q_lane_v: {
Hao Liu171cedf2013-11-19 02:17:31 +00003982 Ops[1] = Builder.CreateBitCast(Ops[1], Ty);
3983 Ty = llvm::PointerType::getUnqual(VTy->getElementType());
3984 Ops[0] = Builder.CreateBitCast(Ops[0], Ty);
3985 LoadInst *Ld = Builder.CreateLoad(Ops[0]);
3986 Ld->setAlignment(cast<ConstantInt>(Align)->getZExtValue());
3987 return Builder.CreateInsertElement(Ops[1], Ld, Ops[2], "vld1_lane");
3988 }
Tim Northoverc322f832014-01-30 14:47:51 +00003989 case NEON::BI__builtin_neon_vst1_lane_v:
3990 case NEON::BI__builtin_neon_vst1q_lane_v: {
Hao Liu171cedf2013-11-19 02:17:31 +00003991 Ops[1] = Builder.CreateBitCast(Ops[1], Ty);
3992 Ops[1] = Builder.CreateExtractElement(Ops[1], Ops[2]);
3993 Ty = llvm::PointerType::getUnqual(Ops[1]->getType());
3994 StoreInst *St =
3995 Builder.CreateStore(Ops[1], Builder.CreateBitCast(Ops[0], Ty));
3996 St->setAlignment(cast<ConstantInt>(Align)->getZExtValue());
3997 return St;
3998 }
Tim Northoverc322f832014-01-30 14:47:51 +00003999 case NEON::BI__builtin_neon_vld2_dup_v:
4000 case NEON::BI__builtin_neon_vld2q_dup_v:
4001 case NEON::BI__builtin_neon_vld3_dup_v:
4002 case NEON::BI__builtin_neon_vld3q_dup_v:
4003 case NEON::BI__builtin_neon_vld4_dup_v:
4004 case NEON::BI__builtin_neon_vld4q_dup_v: {
Hao Liu171cedf2013-11-19 02:17:31 +00004005 // Handle 64-bit x 1 elements as a special-case. There is no "dup" needed.
4006 if (VTy->getElementType()->getPrimitiveSizeInBits() == 64 &&
4007 VTy->getNumElements() == 1) {
4008 switch (BuiltinID) {
Tim Northoverc322f832014-01-30 14:47:51 +00004009 case NEON::BI__builtin_neon_vld2_dup_v:
Hao Liu171cedf2013-11-19 02:17:31 +00004010 Int = Intrinsic::arm_neon_vld2;
4011 break;
Tim Northoverc322f832014-01-30 14:47:51 +00004012 case NEON::BI__builtin_neon_vld3_dup_v:
Hao Liu171cedf2013-11-19 02:17:31 +00004013 Int = Intrinsic::arm_neon_vld3;
4014 break;
Tim Northoverc322f832014-01-30 14:47:51 +00004015 case NEON::BI__builtin_neon_vld4_dup_v:
Hao Liu171cedf2013-11-19 02:17:31 +00004016 Int = Intrinsic::arm_neon_vld4;
4017 break;
4018 default:
4019 llvm_unreachable("unknown vld_dup intrinsic?");
4020 }
4021 Function *F = CGM.getIntrinsic(Int, Ty);
4022 Ops[1] = Builder.CreateCall2(F, Ops[1], Align, "vld_dup");
4023 Ty = llvm::PointerType::getUnqual(Ops[1]->getType());
4024 Ops[0] = Builder.CreateBitCast(Ops[0], Ty);
4025 return Builder.CreateStore(Ops[1], Ops[0]);
4026 }
4027 switch (BuiltinID) {
Tim Northoverc322f832014-01-30 14:47:51 +00004028 case NEON::BI__builtin_neon_vld2_dup_v:
4029 case NEON::BI__builtin_neon_vld2q_dup_v:
Hao Liu171cedf2013-11-19 02:17:31 +00004030 Int = Intrinsic::arm_neon_vld2lane;
4031 break;
Tim Northoverc322f832014-01-30 14:47:51 +00004032 case NEON::BI__builtin_neon_vld3_dup_v:
4033 case NEON::BI__builtin_neon_vld3q_dup_v:
Hao Liu171cedf2013-11-19 02:17:31 +00004034 Int = Intrinsic::arm_neon_vld3lane;
4035 break;
Tim Northoverc322f832014-01-30 14:47:51 +00004036 case NEON::BI__builtin_neon_vld4_dup_v:
4037 case NEON::BI__builtin_neon_vld4q_dup_v:
Hao Liu171cedf2013-11-19 02:17:31 +00004038 Int = Intrinsic::arm_neon_vld4lane;
4039 break;
4040 }
4041 Function *F = CGM.getIntrinsic(Int, Ty);
4042 llvm::StructType *STy = cast<llvm::StructType>(F->getReturnType());
4043
4044 SmallVector<Value *, 6> Args;
4045 Args.push_back(Ops[1]);
4046 Args.append(STy->getNumElements(), UndefValue::get(Ty));
4047
4048 llvm::Constant *CI = ConstantInt::get(Int32Ty, 0);
4049 Args.push_back(CI);
4050 Args.push_back(Align);
4051
4052 Ops[1] = Builder.CreateCall(F, Args, "vld_dup");
4053 // splat lane 0 to all elts in each vector of the result.
4054 for (unsigned i = 0, e = STy->getNumElements(); i != e; ++i) {
4055 Value *Val = Builder.CreateExtractValue(Ops[1], i);
4056 Value *Elt = Builder.CreateBitCast(Val, Ty);
4057 Elt = EmitNeonSplat(Elt, CI);
4058 Elt = Builder.CreateBitCast(Elt, Val->getType());
4059 Ops[1] = Builder.CreateInsertValue(Ops[1], Elt, i);
4060 }
4061 Ty = llvm::PointerType::getUnqual(Ops[1]->getType());
4062 Ops[0] = Builder.CreateBitCast(Ops[0], Ty);
4063 return Builder.CreateStore(Ops[1], Ops[0]);
4064 }
Hao Liu1eade6d2013-10-10 17:01:49 +00004065
Tim Northoverc322f832014-01-30 14:47:51 +00004066 case NEON::BI__builtin_neon_vmul_lane_v:
4067 case NEON::BI__builtin_neon_vmul_laneq_v: {
Ana Pazos6f2a47a2013-11-15 23:33:31 +00004068 // v1f64 vmul_lane should be mapped to Neon scalar mul lane
4069 bool Quad = false;
Tim Northoverc322f832014-01-30 14:47:51 +00004070 if (BuiltinID == NEON::BI__builtin_neon_vmul_laneq_v)
Ana Pazos6f2a47a2013-11-15 23:33:31 +00004071 Quad = true;
4072 Ops[0] = Builder.CreateBitCast(Ops[0], DoubleTy);
4073 llvm::Type *VTy = GetNeonType(this,
Hao Liua5246fd2013-12-03 06:07:13 +00004074 NeonTypeFlags(NeonTypeFlags::Float64, false, Quad));
Ana Pazos6f2a47a2013-11-15 23:33:31 +00004075 Ops[1] = Builder.CreateBitCast(Ops[1], VTy);
4076 Ops[1] = Builder.CreateExtractElement(Ops[1], Ops[2], "extract");
4077 Value *Result = Builder.CreateFMul(Ops[0], Ops[1]);
4078 return Builder.CreateBitCast(Result, Ty);
4079 }
Jiangning Liu34a71092013-11-05 17:42:24 +00004080
Tim Northover2fe823a2013-08-01 09:23:19 +00004081 // AArch64-only builtins
Tim Northoverc322f832014-01-30 14:47:51 +00004082 case NEON::BI__builtin_neon_vfmaq_laneq_v: {
Jiangning Liu4617e9d2013-10-04 09:21:17 +00004083 Value *F = CGM.getIntrinsic(Intrinsic::fma, Ty);
4084 Ops[0] = Builder.CreateBitCast(Ops[0], Ty);
4085 Ops[1] = Builder.CreateBitCast(Ops[1], Ty);
4086
4087 Ops[2] = Builder.CreateBitCast(Ops[2], Ty);
4088 Ops[2] = EmitNeonSplat(Ops[2], cast<ConstantInt>(Ops[3]));
4089 return Builder.CreateCall3(F, Ops[2], Ops[1], Ops[0]);
4090 }
Tim Northoverc322f832014-01-30 14:47:51 +00004091 case NEON::BI__builtin_neon_vfmaq_lane_v: {
Jiangning Liu4617e9d2013-10-04 09:21:17 +00004092 Value *F = CGM.getIntrinsic(Intrinsic::fma, Ty);
4093 Ops[0] = Builder.CreateBitCast(Ops[0], Ty);
4094 Ops[1] = Builder.CreateBitCast(Ops[1], Ty);
4095
4096 llvm::VectorType *VTy = cast<llvm::VectorType>(Ty);
4097 llvm::Type *STy = llvm::VectorType::get(VTy->getElementType(),
4098 VTy->getNumElements() / 2);
4099 Ops[2] = Builder.CreateBitCast(Ops[2], STy);
4100 Value* SV = llvm::ConstantVector::getSplat(VTy->getNumElements(),
4101 cast<ConstantInt>(Ops[3]));
4102 Ops[2] = Builder.CreateShuffleVector(Ops[2], Ops[2], SV, "lane");
4103
4104 return Builder.CreateCall3(F, Ops[2], Ops[1], Ops[0]);
4105 }
Tim Northoverc322f832014-01-30 14:47:51 +00004106 case NEON::BI__builtin_neon_vfma_lane_v: {
Ana Pazos6f2a47a2013-11-15 23:33:31 +00004107 llvm::VectorType *VTy = cast<llvm::VectorType>(Ty);
4108 // v1f64 fma should be mapped to Neon scalar f64 fma
4109 if (VTy && VTy->getElementType() == DoubleTy) {
4110 Ops[0] = Builder.CreateBitCast(Ops[0], DoubleTy);
4111 Ops[1] = Builder.CreateBitCast(Ops[1], DoubleTy);
4112 llvm::Type *VTy = GetNeonType(this,
4113 NeonTypeFlags(NeonTypeFlags::Float64, false, false));
4114 Ops[2] = Builder.CreateBitCast(Ops[2], VTy);
4115 Ops[2] = Builder.CreateExtractElement(Ops[2], Ops[3], "extract");
4116 Value *F = CGM.getIntrinsic(Intrinsic::fma, DoubleTy);
4117 Value *Result = Builder.CreateCall3(F, Ops[1], Ops[2], Ops[0]);
4118 return Builder.CreateBitCast(Result, Ty);
4119 }
Jiangning Liu4617e9d2013-10-04 09:21:17 +00004120 Value *F = CGM.getIntrinsic(Intrinsic::fma, Ty);
4121 Ops[0] = Builder.CreateBitCast(Ops[0], Ty);
4122 Ops[1] = Builder.CreateBitCast(Ops[1], Ty);
4123
Ana Pazos6f2a47a2013-11-15 23:33:31 +00004124 Ops[2] = Builder.CreateBitCast(Ops[2], Ty);
4125 Ops[2] = EmitNeonSplat(Ops[2], cast<ConstantInt>(Ops[3]));
4126 return Builder.CreateCall3(F, Ops[2], Ops[1], Ops[0]);
4127 }
Tim Northoverc322f832014-01-30 14:47:51 +00004128 case NEON::BI__builtin_neon_vfma_laneq_v: {
Jiangning Liu4617e9d2013-10-04 09:21:17 +00004129 llvm::VectorType *VTy = cast<llvm::VectorType>(Ty);
Ana Pazos6f2a47a2013-11-15 23:33:31 +00004130 // v1f64 fma should be mapped to Neon scalar f64 fma
4131 if (VTy && VTy->getElementType() == DoubleTy) {
4132 Ops[0] = Builder.CreateBitCast(Ops[0], DoubleTy);
4133 Ops[1] = Builder.CreateBitCast(Ops[1], DoubleTy);
4134 llvm::Type *VTy = GetNeonType(this,
4135 NeonTypeFlags(NeonTypeFlags::Float64, false, true));
4136 Ops[2] = Builder.CreateBitCast(Ops[2], VTy);
4137 Ops[2] = Builder.CreateExtractElement(Ops[2], Ops[3], "extract");
4138 Value *F = CGM.getIntrinsic(Intrinsic::fma, DoubleTy);
4139 Value *Result = Builder.CreateCall3(F, Ops[1], Ops[2], Ops[0]);
4140 return Builder.CreateBitCast(Result, Ty);
4141 }
4142 Value *F = CGM.getIntrinsic(Intrinsic::fma, Ty);
4143 Ops[0] = Builder.CreateBitCast(Ops[0], Ty);
4144 Ops[1] = Builder.CreateBitCast(Ops[1], Ty);
4145
Jiangning Liu4617e9d2013-10-04 09:21:17 +00004146 llvm::Type *STy = llvm::VectorType::get(VTy->getElementType(),
4147 VTy->getNumElements() * 2);
4148 Ops[2] = Builder.CreateBitCast(Ops[2], STy);
4149 Value* SV = llvm::ConstantVector::getSplat(VTy->getNumElements(),
4150 cast<ConstantInt>(Ops[3]));
4151 Ops[2] = Builder.CreateShuffleVector(Ops[2], Ops[2], SV, "lane");
4152
4153 return Builder.CreateCall3(F, Ops[2], Ops[1], Ops[0]);
4154 }
Tim Northoverc322f832014-01-30 14:47:51 +00004155 case NEON::BI__builtin_neon_vfms_v:
4156 case NEON::BI__builtin_neon_vfmsq_v: {
Tim Northover2fe823a2013-08-01 09:23:19 +00004157 Value *F = CGM.getIntrinsic(Intrinsic::fma, Ty);
4158 Ops[0] = Builder.CreateBitCast(Ops[0], Ty);
4159 Ops[1] = Builder.CreateBitCast(Ops[1], Ty);
4160 Ops[1] = Builder.CreateFNeg(Ops[1]);
4161 Ops[2] = Builder.CreateBitCast(Ops[2], Ty);
4162
4163 // LLVM's fma intrinsic puts the accumulator in the last position, but the
4164 // AArch64 intrinsic has it first.
4165 return Builder.CreateCall3(F, Ops[1], Ops[2], Ops[0]);
4166 }
Tim Northoverc322f832014-01-30 14:47:51 +00004167 case NEON::BI__builtin_neon_vmaxnm_v:
4168 case NEON::BI__builtin_neon_vmaxnmq_v: {
Tim Northover2fe823a2013-08-01 09:23:19 +00004169 Int = Intrinsic::aarch64_neon_vmaxnm;
4170 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vmaxnm");
4171 }
Tim Northoverc322f832014-01-30 14:47:51 +00004172 case NEON::BI__builtin_neon_vminnm_v:
4173 case NEON::BI__builtin_neon_vminnmq_v: {
Tim Northover2fe823a2013-08-01 09:23:19 +00004174 Int = Intrinsic::aarch64_neon_vminnm;
4175 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vminnm");
4176 }
Tim Northoverc322f832014-01-30 14:47:51 +00004177 case NEON::BI__builtin_neon_vpmaxnm_v:
4178 case NEON::BI__builtin_neon_vpmaxnmq_v: {
Tim Northover2fe823a2013-08-01 09:23:19 +00004179 Int = Intrinsic::aarch64_neon_vpmaxnm;
4180 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vpmaxnm");
4181 }
Tim Northoverc322f832014-01-30 14:47:51 +00004182 case NEON::BI__builtin_neon_vpminnm_v:
4183 case NEON::BI__builtin_neon_vpminnmq_v: {
Tim Northover2fe823a2013-08-01 09:23:19 +00004184 Int = Intrinsic::aarch64_neon_vpminnm;
4185 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vpminnm");
4186 }
Tim Northoverc322f832014-01-30 14:47:51 +00004187 case NEON::BI__builtin_neon_vpmaxq_v: {
Tim Northover2fe823a2013-08-01 09:23:19 +00004188 Int = usgn ? Intrinsic::arm_neon_vpmaxu : Intrinsic::arm_neon_vpmaxs;
4189 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vpmax");
4190 }
Tim Northoverc322f832014-01-30 14:47:51 +00004191 case NEON::BI__builtin_neon_vpminq_v: {
Tim Northover2fe823a2013-08-01 09:23:19 +00004192 Int = usgn ? Intrinsic::arm_neon_vpminu : Intrinsic::arm_neon_vpmins;
4193 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vpmin");
4194 }
Tim Northoverc322f832014-01-30 14:47:51 +00004195 case NEON::BI__builtin_neon_vmulx_v:
4196 case NEON::BI__builtin_neon_vmulxq_v: {
Tim Northover2fe823a2013-08-01 09:23:19 +00004197 Int = Intrinsic::aarch64_neon_vmulx;
4198 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vmulx");
4199 }
Tim Northoverc322f832014-01-30 14:47:51 +00004200 case NEON::BI__builtin_neon_vsqadd_v:
4201 case NEON::BI__builtin_neon_vsqaddq_v: {
Kevin Qin1718af62013-11-14 02:45:18 +00004202 Int = Intrinsic::aarch64_neon_usqadd;
4203 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vsqadd");
4204 }
Tim Northoverc322f832014-01-30 14:47:51 +00004205 case NEON::BI__builtin_neon_vuqadd_v:
4206 case NEON::BI__builtin_neon_vuqaddq_v: {
Kevin Qin1718af62013-11-14 02:45:18 +00004207 Int = Intrinsic::aarch64_neon_suqadd;
4208 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vuqadd");
4209 }
Tim Northoverc322f832014-01-30 14:47:51 +00004210 case NEON::BI__builtin_neon_vrbit_v:
4211 case NEON::BI__builtin_neon_vrbitq_v:
Kevin Qin1718af62013-11-14 02:45:18 +00004212 Int = Intrinsic::aarch64_neon_rbit;
4213 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vrbit");
Tim Northoverc322f832014-01-30 14:47:51 +00004214 case NEON::BI__builtin_neon_vcvt_f32_f64: {
Tim Northover2df47ce2014-02-25 13:53:01 +00004215 NeonTypeFlags SrcFlag = NeonTypeFlags(NeonTypeFlags::Float64, false, true);
4216 Ops[0] = Builder.CreateBitCast(Ops[0], GetNeonType(this, SrcFlag));
Kevin Qin1718af62013-11-14 02:45:18 +00004217 return Builder.CreateFPTrunc(Ops[0], Ty, "vcvt");
4218 }
Tim Northoverc322f832014-01-30 14:47:51 +00004219 case NEON::BI__builtin_neon_vcvtx_f32_v: {
Kevin Qin1718af62013-11-14 02:45:18 +00004220 llvm::Type *EltTy = FloatTy;
4221 llvm::Type *ResTy = llvm::VectorType::get(EltTy, 2);
4222 llvm::Type *Tys[2] = { ResTy, Ty };
Chad Rosier58f6a1f2013-12-10 16:11:55 +00004223 Int = Intrinsic::aarch64_neon_vcvtxn;
Kevin Qin1718af62013-11-14 02:45:18 +00004224 return EmitNeonCall(CGM.getIntrinsic(Int, Tys), Ops, "vcvtx_f32_f64");
4225 }
Tim Northoverc322f832014-01-30 14:47:51 +00004226 case NEON::BI__builtin_neon_vcvt_f64_f32: {
Kevin Qin1718af62013-11-14 02:45:18 +00004227 llvm::Type *OpTy =
4228 GetNeonType(this, NeonTypeFlags(NeonTypeFlags::Float32, false, false));
4229 Ops[0] = Builder.CreateBitCast(Ops[0], OpTy);
4230 return Builder.CreateFPExt(Ops[0], Ty, "vcvt");
4231 }
Tim Northoverc322f832014-01-30 14:47:51 +00004232 case NEON::BI__builtin_neon_vcvt_f64_v:
4233 case NEON::BI__builtin_neon_vcvtq_f64_v: {
Kevin Qin1718af62013-11-14 02:45:18 +00004234 Ops[0] = Builder.CreateBitCast(Ops[0], Ty);
Hao Liua5246fd2013-12-03 06:07:13 +00004235 Ty = GetNeonType(this, NeonTypeFlags(NeonTypeFlags::Float64, false, quad));
Kevin Qin1718af62013-11-14 02:45:18 +00004236 return usgn ? Builder.CreateUIToFP(Ops[0], Ty, "vcvt")
4237 : Builder.CreateSIToFP(Ops[0], Ty, "vcvt");
4238 }
Tim Northoverc322f832014-01-30 14:47:51 +00004239 case NEON::BI__builtin_neon_vrndn_v:
4240 case NEON::BI__builtin_neon_vrndnq_v: {
Kevin Qin1718af62013-11-14 02:45:18 +00004241 Int = Intrinsic::aarch64_neon_frintn;
4242 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vrndn");
4243 }
Tim Northoverc322f832014-01-30 14:47:51 +00004244 case NEON::BI__builtin_neon_vrnda_v:
4245 case NEON::BI__builtin_neon_vrndaq_v: {
Kevin Qin1718af62013-11-14 02:45:18 +00004246 Int = Intrinsic::round;
4247 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vrnda");
4248 }
Tim Northoverc322f832014-01-30 14:47:51 +00004249 case NEON::BI__builtin_neon_vrndp_v:
4250 case NEON::BI__builtin_neon_vrndpq_v: {
Kevin Qin1718af62013-11-14 02:45:18 +00004251 Int = Intrinsic::ceil;
4252 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vrndp");
4253 }
Tim Northoverc322f832014-01-30 14:47:51 +00004254 case NEON::BI__builtin_neon_vrndm_v:
4255 case NEON::BI__builtin_neon_vrndmq_v: {
Kevin Qin1718af62013-11-14 02:45:18 +00004256 Int = Intrinsic::floor;
4257 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vrndm");
4258 }
Tim Northoverc322f832014-01-30 14:47:51 +00004259 case NEON::BI__builtin_neon_vrndx_v:
4260 case NEON::BI__builtin_neon_vrndxq_v: {
Kevin Qin1718af62013-11-14 02:45:18 +00004261 Int = Intrinsic::rint;
4262 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vrndx");
4263 }
Tim Northoverc322f832014-01-30 14:47:51 +00004264 case NEON::BI__builtin_neon_vrnd_v:
4265 case NEON::BI__builtin_neon_vrndq_v: {
Kevin Qin1718af62013-11-14 02:45:18 +00004266 Int = Intrinsic::trunc;
4267 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vrnd");
4268 }
Tim Northoverc322f832014-01-30 14:47:51 +00004269 case NEON::BI__builtin_neon_vrndi_v:
4270 case NEON::BI__builtin_neon_vrndiq_v: {
Kevin Qin1718af62013-11-14 02:45:18 +00004271 Int = Intrinsic::nearbyint;
4272 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vrndi");
4273 }
Tim Northoverc322f832014-01-30 14:47:51 +00004274 case NEON::BI__builtin_neon_vsqrt_v:
4275 case NEON::BI__builtin_neon_vsqrtq_v: {
Hao Liua5246fd2013-12-03 06:07:13 +00004276 Int = Intrinsic::sqrt;
Kevin Qin1718af62013-11-14 02:45:18 +00004277 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vsqrt");
4278 }
Tim Northoverc322f832014-01-30 14:47:51 +00004279 case NEON::BI__builtin_neon_vceqz_v:
4280 case NEON::BI__builtin_neon_vceqzq_v:
Kevin Qin1718af62013-11-14 02:45:18 +00004281 return EmitAArch64CompareBuiltinExpr(Ops[0], Ty, ICmpInst::FCMP_OEQ,
4282 ICmpInst::ICMP_EQ, "vceqz");
Tim Northoverc322f832014-01-30 14:47:51 +00004283 case NEON::BI__builtin_neon_vcgez_v:
4284 case NEON::BI__builtin_neon_vcgezq_v:
Kevin Qin1718af62013-11-14 02:45:18 +00004285 return EmitAArch64CompareBuiltinExpr(Ops[0], Ty, ICmpInst::FCMP_OGE,
4286 ICmpInst::ICMP_SGE, "vcgez");
Tim Northoverc322f832014-01-30 14:47:51 +00004287 case NEON::BI__builtin_neon_vclez_v:
4288 case NEON::BI__builtin_neon_vclezq_v:
Kevin Qin1718af62013-11-14 02:45:18 +00004289 return EmitAArch64CompareBuiltinExpr(Ops[0], Ty, ICmpInst::FCMP_OLE,
4290 ICmpInst::ICMP_SLE, "vclez");
Tim Northoverc322f832014-01-30 14:47:51 +00004291 case NEON::BI__builtin_neon_vcgtz_v:
4292 case NEON::BI__builtin_neon_vcgtzq_v:
Kevin Qin1718af62013-11-14 02:45:18 +00004293 return EmitAArch64CompareBuiltinExpr(Ops[0], Ty, ICmpInst::FCMP_OGT,
4294 ICmpInst::ICMP_SGT, "vcgtz");
Tim Northoverc322f832014-01-30 14:47:51 +00004295 case NEON::BI__builtin_neon_vcltz_v:
4296 case NEON::BI__builtin_neon_vcltzq_v:
Kevin Qin1718af62013-11-14 02:45:18 +00004297 return EmitAArch64CompareBuiltinExpr(Ops[0], Ty, ICmpInst::FCMP_OLT,
4298 ICmpInst::ICMP_SLT, "vcltz");
Tim Northover2fe823a2013-08-01 09:23:19 +00004299 }
Tim Northover8ec8c4b2013-05-04 07:15:13 +00004300}
4301
Chris Lattner5cc15e02010-03-03 19:03:45 +00004302Value *CodeGenFunction::EmitARMBuiltinExpr(unsigned BuiltinID,
4303 const CallExpr *E) {
Rafael Espindola6bb986d2010-06-09 03:48:40 +00004304 if (BuiltinID == ARM::BI__clear_cache) {
Rafael Espindola2219fc52013-05-14 12:45:47 +00004305 assert(E->getNumArgs() == 2 && "__clear_cache takes 2 arguments");
Rafael Espindolaa54062e2010-06-07 17:26:50 +00004306 const FunctionDecl *FD = E->getDirectCallee();
Chris Lattner0e62c1c2011-07-23 10:55:15 +00004307 SmallVector<Value*, 2> Ops;
Rafael Espindola2219fc52013-05-14 12:45:47 +00004308 for (unsigned i = 0; i < 2; i++)
Eric Christophercf5e83b2011-03-14 20:30:34 +00004309 Ops.push_back(EmitScalarExpr(E->getArg(i)));
Chris Lattner2192fe52011-07-18 04:24:23 +00004310 llvm::Type *Ty = CGM.getTypes().ConvertType(FD->getType());
4311 llvm::FunctionType *FTy = cast<llvm::FunctionType>(Ty);
Chris Lattner0e62c1c2011-07-23 10:55:15 +00004312 StringRef Name = FD->getName();
John McCall882987f2013-02-28 19:01:20 +00004313 return EmitNounwindRuntimeCall(CGM.CreateRuntimeFunction(FTy, Name), Ops);
Chris Lattner5cc15e02010-03-03 19:03:45 +00004314 }
Rafael Espindola6bb986d2010-06-09 03:48:40 +00004315
Tim Northover6aacd492013-07-16 09:47:53 +00004316 if (BuiltinID == ARM::BI__builtin_arm_ldrexd ||
4317 (BuiltinID == ARM::BI__builtin_arm_ldrex &&
4318 getContext().getTypeSize(E->getType()) == 64)) {
Bruno Cardoso Lopesfe733742011-05-28 04:11:33 +00004319 Function *F = CGM.getIntrinsic(Intrinsic::arm_ldrexd);
4320
4321 Value *LdPtr = EmitScalarExpr(E->getArg(0));
Tim Northover6aacd492013-07-16 09:47:53 +00004322 Value *Val = Builder.CreateCall(F, Builder.CreateBitCast(LdPtr, Int8PtrTy),
4323 "ldrexd");
Bruno Cardoso Lopesfe733742011-05-28 04:11:33 +00004324
4325 Value *Val0 = Builder.CreateExtractValue(Val, 1);
4326 Value *Val1 = Builder.CreateExtractValue(Val, 0);
4327 Val0 = Builder.CreateZExt(Val0, Int64Ty);
4328 Val1 = Builder.CreateZExt(Val1, Int64Ty);
4329
4330 Value *ShiftCst = llvm::ConstantInt::get(Int64Ty, 32);
4331 Val = Builder.CreateShl(Val0, ShiftCst, "shl", true /* nuw */);
Tim Northover6aacd492013-07-16 09:47:53 +00004332 Val = Builder.CreateOr(Val, Val1);
4333 return Builder.CreateBitCast(Val, ConvertType(E->getType()));
Bruno Cardoso Lopesfe733742011-05-28 04:11:33 +00004334 }
4335
Tim Northover6aacd492013-07-16 09:47:53 +00004336 if (BuiltinID == ARM::BI__builtin_arm_ldrex) {
4337 Value *LoadAddr = EmitScalarExpr(E->getArg(0));
4338
4339 QualType Ty = E->getType();
4340 llvm::Type *RealResTy = ConvertType(Ty);
4341 llvm::Type *IntResTy = llvm::IntegerType::get(getLLVMContext(),
4342 getContext().getTypeSize(Ty));
4343 LoadAddr = Builder.CreateBitCast(LoadAddr, IntResTy->getPointerTo());
4344
4345 Function *F = CGM.getIntrinsic(Intrinsic::arm_ldrex, LoadAddr->getType());
4346 Value *Val = Builder.CreateCall(F, LoadAddr, "ldrex");
4347
4348 if (RealResTy->isPointerTy())
4349 return Builder.CreateIntToPtr(Val, RealResTy);
4350 else {
4351 Val = Builder.CreateTruncOrBitCast(Val, IntResTy);
4352 return Builder.CreateBitCast(Val, RealResTy);
4353 }
4354 }
4355
4356 if (BuiltinID == ARM::BI__builtin_arm_strexd ||
4357 (BuiltinID == ARM::BI__builtin_arm_strex &&
4358 getContext().getTypeSize(E->getArg(0)->getType()) == 64)) {
Bruno Cardoso Lopesfe733742011-05-28 04:11:33 +00004359 Function *F = CGM.getIntrinsic(Intrinsic::arm_strexd);
Chris Lattner845511f2011-06-18 22:49:11 +00004360 llvm::Type *STy = llvm::StructType::get(Int32Ty, Int32Ty, NULL);
Bruno Cardoso Lopesfe733742011-05-28 04:11:33 +00004361
Juergen Ributzkac6ab1f82013-08-19 22:20:37 +00004362 Value *Tmp = CreateMemTemp(E->getArg(0)->getType());
Bruno Cardoso Lopesfe733742011-05-28 04:11:33 +00004363 Value *Val = EmitScalarExpr(E->getArg(0));
4364 Builder.CreateStore(Val, Tmp);
4365
4366 Value *LdPtr = Builder.CreateBitCast(Tmp,llvm::PointerType::getUnqual(STy));
4367 Val = Builder.CreateLoad(LdPtr);
4368
4369 Value *Arg0 = Builder.CreateExtractValue(Val, 0);
4370 Value *Arg1 = Builder.CreateExtractValue(Val, 1);
Tim Northover6aacd492013-07-16 09:47:53 +00004371 Value *StPtr = Builder.CreateBitCast(EmitScalarExpr(E->getArg(1)), Int8PtrTy);
Bruno Cardoso Lopesfe733742011-05-28 04:11:33 +00004372 return Builder.CreateCall3(F, Arg0, Arg1, StPtr, "strexd");
4373 }
4374
Tim Northover6aacd492013-07-16 09:47:53 +00004375 if (BuiltinID == ARM::BI__builtin_arm_strex) {
4376 Value *StoreVal = EmitScalarExpr(E->getArg(0));
4377 Value *StoreAddr = EmitScalarExpr(E->getArg(1));
4378
4379 QualType Ty = E->getArg(0)->getType();
4380 llvm::Type *StoreTy = llvm::IntegerType::get(getLLVMContext(),
4381 getContext().getTypeSize(Ty));
4382 StoreAddr = Builder.CreateBitCast(StoreAddr, StoreTy->getPointerTo());
4383
4384 if (StoreVal->getType()->isPointerTy())
4385 StoreVal = Builder.CreatePtrToInt(StoreVal, Int32Ty);
4386 else {
4387 StoreVal = Builder.CreateBitCast(StoreVal, StoreTy);
4388 StoreVal = Builder.CreateZExtOrBitCast(StoreVal, Int32Ty);
4389 }
4390
4391 Function *F = CGM.getIntrinsic(Intrinsic::arm_strex, StoreAddr->getType());
4392 return Builder.CreateCall2(F, StoreVal, StoreAddr, "strex");
4393 }
4394
4395 if (BuiltinID == ARM::BI__builtin_arm_clrex) {
4396 Function *F = CGM.getIntrinsic(Intrinsic::arm_clrex);
4397 return Builder.CreateCall(F);
4398 }
4399
Joey Gouly75987a62013-10-02 10:00:18 +00004400 if (BuiltinID == ARM::BI__builtin_arm_sevl) {
4401 Function *F = CGM.getIntrinsic(Intrinsic::arm_sevl);
4402 return Builder.CreateCall(F);
4403 }
4404
Joey Gouly1e8637b2013-09-18 10:07:09 +00004405 // CRC32
4406 Intrinsic::ID CRCIntrinsicID = Intrinsic::not_intrinsic;
4407 switch (BuiltinID) {
4408 case ARM::BI__builtin_arm_crc32b:
4409 CRCIntrinsicID = Intrinsic::arm_crc32b; break;
4410 case ARM::BI__builtin_arm_crc32cb:
4411 CRCIntrinsicID = Intrinsic::arm_crc32cb; break;
4412 case ARM::BI__builtin_arm_crc32h:
4413 CRCIntrinsicID = Intrinsic::arm_crc32h; break;
4414 case ARM::BI__builtin_arm_crc32ch:
4415 CRCIntrinsicID = Intrinsic::arm_crc32ch; break;
4416 case ARM::BI__builtin_arm_crc32w:
4417 case ARM::BI__builtin_arm_crc32d:
4418 CRCIntrinsicID = Intrinsic::arm_crc32w; break;
4419 case ARM::BI__builtin_arm_crc32cw:
4420 case ARM::BI__builtin_arm_crc32cd:
4421 CRCIntrinsicID = Intrinsic::arm_crc32cw; break;
4422 }
4423
4424 if (CRCIntrinsicID != Intrinsic::not_intrinsic) {
4425 Value *Arg0 = EmitScalarExpr(E->getArg(0));
4426 Value *Arg1 = EmitScalarExpr(E->getArg(1));
4427
4428 // crc32{c,}d intrinsics are implemnted as two calls to crc32{c,}w
4429 // intrinsics, hence we need different codegen for these cases.
4430 if (BuiltinID == ARM::BI__builtin_arm_crc32d ||
4431 BuiltinID == ARM::BI__builtin_arm_crc32cd) {
4432 Value *C1 = llvm::ConstantInt::get(Int64Ty, 32);
4433 Value *Arg1a = Builder.CreateTruncOrBitCast(Arg1, Int32Ty);
4434 Value *Arg1b = Builder.CreateLShr(Arg1, C1);
4435 Arg1b = Builder.CreateTruncOrBitCast(Arg1b, Int32Ty);
4436
4437 Function *F = CGM.getIntrinsic(CRCIntrinsicID);
4438 Value *Res = Builder.CreateCall2(F, Arg0, Arg1a);
4439 return Builder.CreateCall2(F, Res, Arg1b);
4440 } else {
4441 Arg1 = Builder.CreateZExtOrBitCast(Arg1, Int32Ty);
4442
4443 Function *F = CGM.getIntrinsic(CRCIntrinsicID);
4444 return Builder.CreateCall2(F, Arg0, Arg1);
4445 }
4446 }
4447
Chris Lattner0e62c1c2011-07-23 10:55:15 +00004448 SmallVector<Value*, 4> Ops;
Eli Friedmana5dd5682012-08-23 03:10:17 +00004449 llvm::Value *Align = 0;
4450 for (unsigned i = 0, e = E->getNumArgs() - 1; i != e; i++) {
4451 if (i == 0) {
4452 switch (BuiltinID) {
Tim Northoverc322f832014-01-30 14:47:51 +00004453 case NEON::BI__builtin_neon_vld1_v:
4454 case NEON::BI__builtin_neon_vld1q_v:
4455 case NEON::BI__builtin_neon_vld1q_lane_v:
4456 case NEON::BI__builtin_neon_vld1_lane_v:
4457 case NEON::BI__builtin_neon_vld1_dup_v:
4458 case NEON::BI__builtin_neon_vld1q_dup_v:
4459 case NEON::BI__builtin_neon_vst1_v:
4460 case NEON::BI__builtin_neon_vst1q_v:
4461 case NEON::BI__builtin_neon_vst1q_lane_v:
4462 case NEON::BI__builtin_neon_vst1_lane_v:
4463 case NEON::BI__builtin_neon_vst2_v:
4464 case NEON::BI__builtin_neon_vst2q_v:
4465 case NEON::BI__builtin_neon_vst2_lane_v:
4466 case NEON::BI__builtin_neon_vst2q_lane_v:
4467 case NEON::BI__builtin_neon_vst3_v:
4468 case NEON::BI__builtin_neon_vst3q_v:
4469 case NEON::BI__builtin_neon_vst3_lane_v:
4470 case NEON::BI__builtin_neon_vst3q_lane_v:
4471 case NEON::BI__builtin_neon_vst4_v:
4472 case NEON::BI__builtin_neon_vst4q_v:
4473 case NEON::BI__builtin_neon_vst4_lane_v:
4474 case NEON::BI__builtin_neon_vst4q_lane_v:
Eli Friedmana5dd5682012-08-23 03:10:17 +00004475 // Get the alignment for the argument in addition to the value;
4476 // we'll use it later.
4477 std::pair<llvm::Value*, unsigned> Src =
4478 EmitPointerWithAlignment(E->getArg(0));
4479 Ops.push_back(Src.first);
4480 Align = Builder.getInt32(Src.second);
4481 continue;
4482 }
4483 }
4484 if (i == 1) {
4485 switch (BuiltinID) {
Tim Northoverc322f832014-01-30 14:47:51 +00004486 case NEON::BI__builtin_neon_vld2_v:
4487 case NEON::BI__builtin_neon_vld2q_v:
4488 case NEON::BI__builtin_neon_vld3_v:
4489 case NEON::BI__builtin_neon_vld3q_v:
4490 case NEON::BI__builtin_neon_vld4_v:
4491 case NEON::BI__builtin_neon_vld4q_v:
4492 case NEON::BI__builtin_neon_vld2_lane_v:
4493 case NEON::BI__builtin_neon_vld2q_lane_v:
4494 case NEON::BI__builtin_neon_vld3_lane_v:
4495 case NEON::BI__builtin_neon_vld3q_lane_v:
4496 case NEON::BI__builtin_neon_vld4_lane_v:
4497 case NEON::BI__builtin_neon_vld4q_lane_v:
4498 case NEON::BI__builtin_neon_vld2_dup_v:
4499 case NEON::BI__builtin_neon_vld3_dup_v:
4500 case NEON::BI__builtin_neon_vld4_dup_v:
Eli Friedmana5dd5682012-08-23 03:10:17 +00004501 // Get the alignment for the argument in addition to the value;
4502 // we'll use it later.
4503 std::pair<llvm::Value*, unsigned> Src =
4504 EmitPointerWithAlignment(E->getArg(1));
4505 Ops.push_back(Src.first);
4506 Align = Builder.getInt32(Src.second);
4507 continue;
4508 }
4509 }
Rafael Espindola6bb986d2010-06-09 03:48:40 +00004510 Ops.push_back(EmitScalarExpr(E->getArg(i)));
Eli Friedmana5dd5682012-08-23 03:10:17 +00004511 }
Rafael Espindola6bb986d2010-06-09 03:48:40 +00004512
Bob Wilson445c24f2011-08-13 05:03:46 +00004513 switch (BuiltinID) {
4514 default: break;
Tim Northover02e38602014-02-03 17:28:04 +00004515 // vget_lane and vset_lane are not overloaded and do not have an extra
4516 // argument that specifies the vector type.
Tim Northoverc322f832014-01-30 14:47:51 +00004517 case NEON::BI__builtin_neon_vget_lane_i8:
4518 case NEON::BI__builtin_neon_vget_lane_i16:
4519 case NEON::BI__builtin_neon_vget_lane_i32:
4520 case NEON::BI__builtin_neon_vget_lane_i64:
4521 case NEON::BI__builtin_neon_vget_lane_f32:
4522 case NEON::BI__builtin_neon_vgetq_lane_i8:
4523 case NEON::BI__builtin_neon_vgetq_lane_i16:
4524 case NEON::BI__builtin_neon_vgetq_lane_i32:
4525 case NEON::BI__builtin_neon_vgetq_lane_i64:
4526 case NEON::BI__builtin_neon_vgetq_lane_f32:
Bob Wilson445c24f2011-08-13 05:03:46 +00004527 return Builder.CreateExtractElement(Ops[0], EmitScalarExpr(E->getArg(1)),
4528 "vget_lane");
Tim Northoverc322f832014-01-30 14:47:51 +00004529 case NEON::BI__builtin_neon_vset_lane_i8:
4530 case NEON::BI__builtin_neon_vset_lane_i16:
4531 case NEON::BI__builtin_neon_vset_lane_i32:
4532 case NEON::BI__builtin_neon_vset_lane_i64:
4533 case NEON::BI__builtin_neon_vset_lane_f32:
4534 case NEON::BI__builtin_neon_vsetq_lane_i8:
4535 case NEON::BI__builtin_neon_vsetq_lane_i16:
4536 case NEON::BI__builtin_neon_vsetq_lane_i32:
4537 case NEON::BI__builtin_neon_vsetq_lane_i64:
4538 case NEON::BI__builtin_neon_vsetq_lane_f32:
Bob Wilson445c24f2011-08-13 05:03:46 +00004539 Ops.push_back(EmitScalarExpr(E->getArg(2)));
4540 return Builder.CreateInsertElement(Ops[1], Ops[0], Ops[2], "vset_lane");
Tim Northover02e38602014-02-03 17:28:04 +00004541
4542 // Non-polymorphic crypto instructions also not overloaded
4543 case NEON::BI__builtin_neon_vsha1h_u32:
4544 Ops.push_back(EmitScalarExpr(E->getArg(0)));
4545 return EmitNeonCall(CGM.getIntrinsic(Intrinsic::arm_neon_sha1h), Ops,
4546 "vsha1h");
4547 case NEON::BI__builtin_neon_vsha1cq_u32:
4548 Ops.push_back(EmitScalarExpr(E->getArg(2)));
4549 return EmitNeonCall(CGM.getIntrinsic(Intrinsic::arm_neon_sha1c), Ops,
4550 "vsha1h");
4551 case NEON::BI__builtin_neon_vsha1pq_u32:
4552 Ops.push_back(EmitScalarExpr(E->getArg(2)));
4553 return EmitNeonCall(CGM.getIntrinsic(Intrinsic::arm_neon_sha1p), Ops,
4554 "vsha1h");
4555 case NEON::BI__builtin_neon_vsha1mq_u32:
4556 Ops.push_back(EmitScalarExpr(E->getArg(2)));
4557 return EmitNeonCall(CGM.getIntrinsic(Intrinsic::arm_neon_sha1m), Ops,
4558 "vsha1h");
Bob Wilson445c24f2011-08-13 05:03:46 +00004559 }
4560
4561 // Get the last argument, which specifies the vector type.
Rafael Espindola6bb986d2010-06-09 03:48:40 +00004562 llvm::APSInt Result;
4563 const Expr *Arg = E->getArg(E->getNumArgs()-1);
4564 if (!Arg->isIntegerConstantExpr(Result, getContext()))
4565 return 0;
4566
Nate Begemanf568b072010-08-03 21:32:34 +00004567 if (BuiltinID == ARM::BI__builtin_arm_vcvtr_f ||
4568 BuiltinID == ARM::BI__builtin_arm_vcvtr_d) {
4569 // Determine the overloaded type of this builtin.
Chris Lattnera5f58b02011-07-09 17:41:47 +00004570 llvm::Type *Ty;
Nate Begemanf568b072010-08-03 21:32:34 +00004571 if (BuiltinID == ARM::BI__builtin_arm_vcvtr_f)
Chris Lattnerece04092012-02-07 00:39:47 +00004572 Ty = FloatTy;
Nate Begemanf568b072010-08-03 21:32:34 +00004573 else
Chris Lattnerece04092012-02-07 00:39:47 +00004574 Ty = DoubleTy;
Jim Grosbachd3608f42012-09-21 00:18:27 +00004575
Nate Begemanf568b072010-08-03 21:32:34 +00004576 // Determine whether this is an unsigned conversion or not.
4577 bool usgn = Result.getZExtValue() == 1;
4578 unsigned Int = usgn ? Intrinsic::arm_vcvtru : Intrinsic::arm_vcvtr;
4579
4580 // Call the appropriate intrinsic.
Benjamin Kramer8d375ce2011-07-14 17:45:50 +00004581 Function *F = CGM.getIntrinsic(Int, Ty);
Jay Foad5bd375a2011-07-15 08:37:34 +00004582 return Builder.CreateCall(F, Ops, "vcvtr");
Nate Begemanf568b072010-08-03 21:32:34 +00004583 }
Jim Grosbachd3608f42012-09-21 00:18:27 +00004584
Nate Begemanf568b072010-08-03 21:32:34 +00004585 // Determine the type of this overloaded NEON intrinsic.
Bob Wilson98bc98c2011-11-08 01:16:11 +00004586 NeonTypeFlags Type(Result.getZExtValue());
4587 bool usgn = Type.isUnsigned();
Bob Wilson4fa993f2010-12-03 17:10:22 +00004588 bool rightShift = false;
Rafael Espindola6bb986d2010-06-09 03:48:40 +00004589
Chris Lattnerece04092012-02-07 00:39:47 +00004590 llvm::VectorType *VTy = GetNeonType(this, Type);
Chris Lattnera5f58b02011-07-09 17:41:47 +00004591 llvm::Type *Ty = VTy;
Rafael Espindola6bb986d2010-06-09 03:48:40 +00004592 if (!Ty)
4593 return 0;
4594
Tim Northoverac85c342014-01-30 14:47:57 +00004595 // Many NEON builtins have identical semantics and uses in ARM and
4596 // AArch64. Emit these in a single function.
Tim Northover8fe03d62014-02-21 11:57:24 +00004597 llvm::ArrayRef<NeonIntrinsicInfo> IntrinsicMap(ARMSIMDIntrinsicMap);
4598 const NeonIntrinsicInfo *Builtin = findNeonIntrinsicInMap(
4599 IntrinsicMap, BuiltinID, NEONSIMDIntrinsicsProvenSorted);
4600 if (Builtin)
4601 return EmitCommonNeonBuiltinExpr(
4602 Builtin->BuiltinID, Builtin->LLVMIntrinsic, Builtin->AltLLVMIntrinsic,
4603 Builtin->NameHint, Builtin->TypeModifier, E, Ops, Align);
Tim Northoverac85c342014-01-30 14:47:57 +00004604
Rafael Espindola6bb986d2010-06-09 03:48:40 +00004605 unsigned Int;
4606 switch (BuiltinID) {
4607 default: return 0;
Tim Northoverc322f832014-01-30 14:47:51 +00004608 case NEON::BI__builtin_neon_vld1q_lane_v:
Bob Wilson2605fef2012-08-14 17:27:04 +00004609 // Handle 64-bit integer elements as a special case. Use shuffles of
4610 // one-element vectors to avoid poor code for i64 in the backend.
4611 if (VTy->getElementType()->isIntegerTy(64)) {
4612 // Extract the other lane.
4613 Ops[1] = Builder.CreateBitCast(Ops[1], Ty);
4614 int Lane = cast<ConstantInt>(Ops[2])->getZExtValue();
4615 Value *SV = llvm::ConstantVector::get(ConstantInt::get(Int32Ty, 1-Lane));
4616 Ops[1] = Builder.CreateShuffleVector(Ops[1], Ops[1], SV);
4617 // Load the value as a one-element vector.
4618 Ty = llvm::VectorType::get(VTy->getElementType(), 1);
4619 Function *F = CGM.getIntrinsic(Intrinsic::arm_neon_vld1, Ty);
Eli Friedmana5dd5682012-08-23 03:10:17 +00004620 Value *Ld = Builder.CreateCall2(F, Ops[0], Align);
Bob Wilson2605fef2012-08-14 17:27:04 +00004621 // Combine them.
4622 SmallVector<Constant*, 2> Indices;
4623 Indices.push_back(ConstantInt::get(Int32Ty, 1-Lane));
4624 Indices.push_back(ConstantInt::get(Int32Ty, Lane));
4625 SV = llvm::ConstantVector::get(Indices);
4626 return Builder.CreateShuffleVector(Ops[1], Ld, SV, "vld1q_lane");
4627 }
4628 // fall through
Tim Northoverc322f832014-01-30 14:47:51 +00004629 case NEON::BI__builtin_neon_vld1_lane_v: {
Nate Begemaned48c852010-06-20 23:05:28 +00004630 Ops[1] = Builder.CreateBitCast(Ops[1], Ty);
4631 Ty = llvm::PointerType::getUnqual(VTy->getElementType());
4632 Ops[0] = Builder.CreateBitCast(Ops[0], Ty);
Bob Wilson49708d42012-02-04 23:58:08 +00004633 LoadInst *Ld = Builder.CreateLoad(Ops[0]);
Bob Wilson49708d42012-02-04 23:58:08 +00004634 Ld->setAlignment(cast<ConstantInt>(Align)->getZExtValue());
4635 return Builder.CreateInsertElement(Ops[1], Ld, Ops[2], "vld1_lane");
4636 }
Tim Northoverc322f832014-01-30 14:47:51 +00004637 case NEON::BI__builtin_neon_vld2_dup_v:
4638 case NEON::BI__builtin_neon_vld3_dup_v:
4639 case NEON::BI__builtin_neon_vld4_dup_v: {
Bob Wilson0348af62010-12-10 22:54:58 +00004640 // Handle 64-bit elements as a special-case. There is no "dup" needed.
4641 if (VTy->getElementType()->getPrimitiveSizeInBits() == 64) {
4642 switch (BuiltinID) {
Tim Northoverc322f832014-01-30 14:47:51 +00004643 case NEON::BI__builtin_neon_vld2_dup_v:
Jim Grosbachd3608f42012-09-21 00:18:27 +00004644 Int = Intrinsic::arm_neon_vld2;
Bob Wilson0348af62010-12-10 22:54:58 +00004645 break;
Tim Northoverc322f832014-01-30 14:47:51 +00004646 case NEON::BI__builtin_neon_vld3_dup_v:
Jim Grosbachd3608f42012-09-21 00:18:27 +00004647 Int = Intrinsic::arm_neon_vld3;
Bob Wilson0348af62010-12-10 22:54:58 +00004648 break;
Tim Northoverc322f832014-01-30 14:47:51 +00004649 case NEON::BI__builtin_neon_vld4_dup_v:
Jim Grosbachd3608f42012-09-21 00:18:27 +00004650 Int = Intrinsic::arm_neon_vld4;
Bob Wilson0348af62010-12-10 22:54:58 +00004651 break;
David Blaikie83d382b2011-09-23 05:06:16 +00004652 default: llvm_unreachable("unknown vld_dup intrinsic?");
Bob Wilson0348af62010-12-10 22:54:58 +00004653 }
Benjamin Kramer8d375ce2011-07-14 17:45:50 +00004654 Function *F = CGM.getIntrinsic(Int, Ty);
Bob Wilson0348af62010-12-10 22:54:58 +00004655 Ops[1] = Builder.CreateCall2(F, Ops[1], Align, "vld_dup");
4656 Ty = llvm::PointerType::getUnqual(Ops[1]->getType());
4657 Ops[0] = Builder.CreateBitCast(Ops[0], Ty);
4658 return Builder.CreateStore(Ops[1], Ops[0]);
4659 }
Nate Begemaned48c852010-06-20 23:05:28 +00004660 switch (BuiltinID) {
Tim Northoverc322f832014-01-30 14:47:51 +00004661 case NEON::BI__builtin_neon_vld2_dup_v:
Jim Grosbachd3608f42012-09-21 00:18:27 +00004662 Int = Intrinsic::arm_neon_vld2lane;
Nate Begemaned48c852010-06-20 23:05:28 +00004663 break;
Tim Northoverc322f832014-01-30 14:47:51 +00004664 case NEON::BI__builtin_neon_vld3_dup_v:
Jim Grosbachd3608f42012-09-21 00:18:27 +00004665 Int = Intrinsic::arm_neon_vld3lane;
Nate Begemaned48c852010-06-20 23:05:28 +00004666 break;
Tim Northoverc322f832014-01-30 14:47:51 +00004667 case NEON::BI__builtin_neon_vld4_dup_v:
Jim Grosbachd3608f42012-09-21 00:18:27 +00004668 Int = Intrinsic::arm_neon_vld4lane;
Nate Begemaned48c852010-06-20 23:05:28 +00004669 break;
David Blaikie83d382b2011-09-23 05:06:16 +00004670 default: llvm_unreachable("unknown vld_dup intrinsic?");
Nate Begemaned48c852010-06-20 23:05:28 +00004671 }
Benjamin Kramer8d375ce2011-07-14 17:45:50 +00004672 Function *F = CGM.getIntrinsic(Int, Ty);
Chris Lattner2192fe52011-07-18 04:24:23 +00004673 llvm::StructType *STy = cast<llvm::StructType>(F->getReturnType());
Jim Grosbachd3608f42012-09-21 00:18:27 +00004674
Nate Begemaned48c852010-06-20 23:05:28 +00004675 SmallVector<Value*, 6> Args;
4676 Args.push_back(Ops[1]);
4677 Args.append(STy->getNumElements(), UndefValue::get(Ty));
4678
Chris Lattner5e016ae2010-06-27 07:15:29 +00004679 llvm::Constant *CI = ConstantInt::get(Int32Ty, 0);
Nate Begemaned48c852010-06-20 23:05:28 +00004680 Args.push_back(CI);
Eli Friedmana5dd5682012-08-23 03:10:17 +00004681 Args.push_back(Align);
Jim Grosbachd3608f42012-09-21 00:18:27 +00004682
Jay Foad5bd375a2011-07-15 08:37:34 +00004683 Ops[1] = Builder.CreateCall(F, Args, "vld_dup");
Nate Begemaned48c852010-06-20 23:05:28 +00004684 // splat lane 0 to all elts in each vector of the result.
4685 for (unsigned i = 0, e = STy->getNumElements(); i != e; ++i) {
4686 Value *Val = Builder.CreateExtractValue(Ops[1], i);
4687 Value *Elt = Builder.CreateBitCast(Val, Ty);
4688 Elt = EmitNeonSplat(Elt, CI);
4689 Elt = Builder.CreateBitCast(Elt, Val->getType());
4690 Ops[1] = Builder.CreateInsertValue(Ops[1], Elt, i);
4691 }
4692 Ty = llvm::PointerType::getUnqual(Ops[1]->getType());
4693 Ops[0] = Builder.CreateBitCast(Ops[0], Ty);
4694 return Builder.CreateStore(Ops[1], Ops[0]);
4695 }
Tim Northoverc322f832014-01-30 14:47:51 +00004696 case NEON::BI__builtin_neon_vqrshrn_n_v:
Jim Grosbachd3608f42012-09-21 00:18:27 +00004697 Int =
4698 usgn ? Intrinsic::arm_neon_vqrshiftnu : Intrinsic::arm_neon_vqrshiftns;
Benjamin Kramer8d375ce2011-07-14 17:45:50 +00004699 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vqrshrn_n",
Nate Begeman91e1fea2010-06-14 05:21:25 +00004700 1, true);
Tim Northoverc322f832014-01-30 14:47:51 +00004701 case NEON::BI__builtin_neon_vqrshrun_n_v:
Benjamin Kramer8d375ce2011-07-14 17:45:50 +00004702 return EmitNeonCall(CGM.getIntrinsic(Intrinsic::arm_neon_vqrshiftnsu, Ty),
Bob Wilson482afae2010-12-08 22:37:56 +00004703 Ops, "vqrshrun_n", 1, true);
Tim Northoverc322f832014-01-30 14:47:51 +00004704 case NEON::BI__builtin_neon_vqshlu_n_v:
4705 case NEON::BI__builtin_neon_vqshluq_n_v:
Benjamin Kramer8d375ce2011-07-14 17:45:50 +00004706 return EmitNeonCall(CGM.getIntrinsic(Intrinsic::arm_neon_vqshiftsu, Ty),
Bob Wilson482afae2010-12-08 22:37:56 +00004707 Ops, "vqshlu", 1, false);
Tim Northoverc322f832014-01-30 14:47:51 +00004708 case NEON::BI__builtin_neon_vqshrn_n_v:
Nate Begeman91e1fea2010-06-14 05:21:25 +00004709 Int = usgn ? Intrinsic::arm_neon_vqshiftnu : Intrinsic::arm_neon_vqshiftns;
Benjamin Kramer8d375ce2011-07-14 17:45:50 +00004710 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vqshrn_n",
Nate Begeman91e1fea2010-06-14 05:21:25 +00004711 1, true);
Tim Northoverc322f832014-01-30 14:47:51 +00004712 case NEON::BI__builtin_neon_vqshrun_n_v:
Benjamin Kramer8d375ce2011-07-14 17:45:50 +00004713 return EmitNeonCall(CGM.getIntrinsic(Intrinsic::arm_neon_vqshiftnsu, Ty),
Bob Wilson482afae2010-12-08 22:37:56 +00004714 Ops, "vqshrun_n", 1, true);
Tim Northoverc322f832014-01-30 14:47:51 +00004715 case NEON::BI__builtin_neon_vrecpe_v:
4716 case NEON::BI__builtin_neon_vrecpeq_v:
Benjamin Kramer8d375ce2011-07-14 17:45:50 +00004717 return EmitNeonCall(CGM.getIntrinsic(Intrinsic::arm_neon_vrecpe, Ty),
Nate Begeman8ed060b2010-06-11 22:57:12 +00004718 Ops, "vrecpe");
Tim Northoverc322f832014-01-30 14:47:51 +00004719 case NEON::BI__builtin_neon_vrshrn_n_v:
Benjamin Kramer8d375ce2011-07-14 17:45:50 +00004720 return EmitNeonCall(CGM.getIntrinsic(Intrinsic::arm_neon_vrshiftn, Ty),
Bob Wilson482afae2010-12-08 22:37:56 +00004721 Ops, "vrshrn_n", 1, true);
Tim Northoverc322f832014-01-30 14:47:51 +00004722 case NEON::BI__builtin_neon_vrshr_n_v:
4723 case NEON::BI__builtin_neon_vrshrq_n_v:
Nate Begemanc6ac0ce2010-06-12 06:06:07 +00004724 Int = usgn ? Intrinsic::arm_neon_vrshiftu : Intrinsic::arm_neon_vrshifts;
Benjamin Kramer8d375ce2011-07-14 17:45:50 +00004725 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vrshr_n", 1, true);
Tim Northoverc322f832014-01-30 14:47:51 +00004726 case NEON::BI__builtin_neon_vrsra_n_v:
4727 case NEON::BI__builtin_neon_vrsraq_n_v:
Nate Begemanc6ac0ce2010-06-12 06:06:07 +00004728 Ops[0] = Builder.CreateBitCast(Ops[0], Ty);
4729 Ops[1] = Builder.CreateBitCast(Ops[1], Ty);
4730 Ops[2] = EmitNeonShiftVector(Ops[2], Ty, true);
4731 Int = usgn ? Intrinsic::arm_neon_vrshiftu : Intrinsic::arm_neon_vrshifts;
Jim Grosbachd3608f42012-09-21 00:18:27 +00004732 Ops[1] = Builder.CreateCall2(CGM.getIntrinsic(Int, Ty), Ops[1], Ops[2]);
Nate Begemanc6ac0ce2010-06-12 06:06:07 +00004733 return Builder.CreateAdd(Ops[0], Ops[1], "vrsra_n");
Tim Northoverc322f832014-01-30 14:47:51 +00004734 case NEON::BI__builtin_neon_vsri_n_v:
4735 case NEON::BI__builtin_neon_vsriq_n_v:
Bob Wilson4fa993f2010-12-03 17:10:22 +00004736 rightShift = true;
Tim Northoverc322f832014-01-30 14:47:51 +00004737 case NEON::BI__builtin_neon_vsli_n_v:
4738 case NEON::BI__builtin_neon_vsliq_n_v:
Bob Wilson4fa993f2010-12-03 17:10:22 +00004739 Ops[2] = EmitNeonShiftVector(Ops[2], Ty, rightShift);
Benjamin Kramer8d375ce2011-07-14 17:45:50 +00004740 return EmitNeonCall(CGM.getIntrinsic(Intrinsic::arm_neon_vshiftins, Ty),
Nate Begeman8ed060b2010-06-11 22:57:12 +00004741 Ops, "vsli_n");
Tim Northoverc322f832014-01-30 14:47:51 +00004742 case NEON::BI__builtin_neon_vsra_n_v:
4743 case NEON::BI__builtin_neon_vsraq_n_v:
Nate Begeman8ed060b2010-06-11 22:57:12 +00004744 Ops[0] = Builder.CreateBitCast(Ops[0], Ty);
Amaury de la Vieuville21bf6ed2013-10-04 13:13:15 +00004745 Ops[1] = EmitNeonRShiftImm(Ops[1], Ops[2], Ty, usgn, "vsra_n");
Nate Begeman8ed060b2010-06-11 22:57:12 +00004746 return Builder.CreateAdd(Ops[0], Ops[1]);
Tim Northoverc322f832014-01-30 14:47:51 +00004747 case NEON::BI__builtin_neon_vst1q_lane_v:
Bob Wilson2605fef2012-08-14 17:27:04 +00004748 // Handle 64-bit integer elements as a special case. Use a shuffle to get
4749 // a one-element vector and avoid poor code for i64 in the backend.
4750 if (VTy->getElementType()->isIntegerTy(64)) {
4751 Ops[1] = Builder.CreateBitCast(Ops[1], Ty);
4752 Value *SV = llvm::ConstantVector::get(cast<llvm::Constant>(Ops[2]));
4753 Ops[1] = Builder.CreateShuffleVector(Ops[1], Ops[1], SV);
Eli Friedmana5dd5682012-08-23 03:10:17 +00004754 Ops[2] = Align;
Bob Wilson2605fef2012-08-14 17:27:04 +00004755 return Builder.CreateCall(CGM.getIntrinsic(Intrinsic::arm_neon_vst1,
4756 Ops[1]->getType()), Ops);
4757 }
4758 // fall through
Tim Northoverc322f832014-01-30 14:47:51 +00004759 case NEON::BI__builtin_neon_vst1_lane_v: {
Nate Begeman8ed060b2010-06-11 22:57:12 +00004760 Ops[1] = Builder.CreateBitCast(Ops[1], Ty);
4761 Ops[1] = Builder.CreateExtractElement(Ops[1], Ops[2]);
4762 Ty = llvm::PointerType::getUnqual(Ops[1]->getType());
Bob Wilson49708d42012-02-04 23:58:08 +00004763 StoreInst *St = Builder.CreateStore(Ops[1],
4764 Builder.CreateBitCast(Ops[0], Ty));
Bob Wilson49708d42012-02-04 23:58:08 +00004765 St->setAlignment(cast<ConstantInt>(Align)->getZExtValue());
4766 return St;
4767 }
Tim Northoverc322f832014-01-30 14:47:51 +00004768 case NEON::BI__builtin_neon_vtbl1_v:
Nate Begeman55483092010-06-09 01:10:23 +00004769 return EmitNeonCall(CGM.getIntrinsic(Intrinsic::arm_neon_vtbl1),
4770 Ops, "vtbl1");
Tim Northoverc322f832014-01-30 14:47:51 +00004771 case NEON::BI__builtin_neon_vtbl2_v:
Nate Begeman55483092010-06-09 01:10:23 +00004772 return EmitNeonCall(CGM.getIntrinsic(Intrinsic::arm_neon_vtbl2),
4773 Ops, "vtbl2");
Tim Northoverc322f832014-01-30 14:47:51 +00004774 case NEON::BI__builtin_neon_vtbl3_v:
Nate Begeman55483092010-06-09 01:10:23 +00004775 return EmitNeonCall(CGM.getIntrinsic(Intrinsic::arm_neon_vtbl3),
4776 Ops, "vtbl3");
Tim Northoverc322f832014-01-30 14:47:51 +00004777 case NEON::BI__builtin_neon_vtbl4_v:
Nate Begeman55483092010-06-09 01:10:23 +00004778 return EmitNeonCall(CGM.getIntrinsic(Intrinsic::arm_neon_vtbl4),
4779 Ops, "vtbl4");
Tim Northoverc322f832014-01-30 14:47:51 +00004780 case NEON::BI__builtin_neon_vtbx1_v:
Nate Begeman55483092010-06-09 01:10:23 +00004781 return EmitNeonCall(CGM.getIntrinsic(Intrinsic::arm_neon_vtbx1),
4782 Ops, "vtbx1");
Tim Northoverc322f832014-01-30 14:47:51 +00004783 case NEON::BI__builtin_neon_vtbx2_v:
Nate Begeman55483092010-06-09 01:10:23 +00004784 return EmitNeonCall(CGM.getIntrinsic(Intrinsic::arm_neon_vtbx2),
4785 Ops, "vtbx2");
Tim Northoverc322f832014-01-30 14:47:51 +00004786 case NEON::BI__builtin_neon_vtbx3_v:
Nate Begeman55483092010-06-09 01:10:23 +00004787 return EmitNeonCall(CGM.getIntrinsic(Intrinsic::arm_neon_vtbx3),
4788 Ops, "vtbx3");
Tim Northoverc322f832014-01-30 14:47:51 +00004789 case NEON::BI__builtin_neon_vtbx4_v:
Nate Begeman55483092010-06-09 01:10:23 +00004790 return EmitNeonCall(CGM.getIntrinsic(Intrinsic::arm_neon_vtbx4),
4791 Ops, "vtbx4");
Chris Lattner5cc15e02010-03-03 19:03:45 +00004792 }
4793}
4794
Tim Northovera2ee4332014-03-29 15:09:45 +00004795static Value *EmitARM64TblBuiltinExpr(CodeGenFunction &CGF, unsigned BuiltinID,
4796 const CallExpr *E,
4797 SmallVectorImpl<Value *> &Ops) {
4798 unsigned int Int = 0;
4799 const char *s = NULL;
4800
4801 unsigned TblPos;
4802 switch (BuiltinID) {
4803 default:
4804 return 0;
4805 case NEON::BI__builtin_neon_vtbl1_v:
4806 case NEON::BI__builtin_neon_vqtbl1_v:
4807 case NEON::BI__builtin_neon_vqtbl1q_v:
4808 case NEON::BI__builtin_neon_vtbl2_v:
4809 case NEON::BI__builtin_neon_vqtbl2_v:
4810 case NEON::BI__builtin_neon_vqtbl2q_v:
4811 case NEON::BI__builtin_neon_vtbl3_v:
4812 case NEON::BI__builtin_neon_vqtbl3_v:
4813 case NEON::BI__builtin_neon_vqtbl3q_v:
4814 case NEON::BI__builtin_neon_vtbl4_v:
4815 case NEON::BI__builtin_neon_vqtbl4_v:
4816 case NEON::BI__builtin_neon_vqtbl4q_v:
4817 TblPos = 0;
4818 break;
4819 case NEON::BI__builtin_neon_vtbx1_v:
4820 case NEON::BI__builtin_neon_vqtbx1_v:
4821 case NEON::BI__builtin_neon_vqtbx1q_v:
4822 case NEON::BI__builtin_neon_vtbx2_v:
4823 case NEON::BI__builtin_neon_vqtbx2_v:
4824 case NEON::BI__builtin_neon_vqtbx2q_v:
4825 case NEON::BI__builtin_neon_vtbx3_v:
4826 case NEON::BI__builtin_neon_vqtbx3_v:
4827 case NEON::BI__builtin_neon_vqtbx3q_v:
4828 case NEON::BI__builtin_neon_vtbx4_v:
4829 case NEON::BI__builtin_neon_vqtbx4_v:
4830 case NEON::BI__builtin_neon_vqtbx4q_v:
4831 TblPos = 1;
4832 break;
4833 }
4834
4835 assert(E->getNumArgs() >= 3);
4836
4837 // Get the last argument, which specifies the vector type.
4838 llvm::APSInt Result;
4839 const Expr *Arg = E->getArg(E->getNumArgs() - 1);
4840 if (!Arg->isIntegerConstantExpr(Result, CGF.getContext()))
4841 return 0;
4842
4843 // Determine the type of this overloaded NEON intrinsic.
4844 NeonTypeFlags Type(Result.getZExtValue());
4845 llvm::VectorType *VTy = GetNeonType(&CGF, Type);
4846 llvm::Type *Ty = VTy;
4847 if (!Ty)
4848 return 0;
4849
4850 Arg = E->getArg(TblPos);
4851 unsigned nElts = VTy->getNumElements();
4852
4853 CodeGen::CGBuilderTy &Builder = CGF.Builder;
4854
4855 // AArch64 scalar builtins are not overloaded, they do not have an extra
4856 // argument that specifies the vector type, need to handle each case.
4857 SmallVector<Value *, 2> TblOps;
4858 switch (BuiltinID) {
4859 case NEON::BI__builtin_neon_vtbl1_v: {
4860 TblOps.push_back(Ops[0]);
4861 return packTBLDVectorList(CGF, TblOps, 0, Ops[1], Ty,
4862 Intrinsic::arm64_neon_tbl1, "vtbl1");
4863 }
4864 case NEON::BI__builtin_neon_vtbl2_v: {
4865 TblOps.push_back(Ops[0]);
4866 TblOps.push_back(Ops[1]);
4867 return packTBLDVectorList(CGF, TblOps, 0, Ops[2], Ty,
4868 Intrinsic::arm64_neon_tbl1, "vtbl1");
4869 }
4870 case NEON::BI__builtin_neon_vtbl3_v: {
4871 TblOps.push_back(Ops[0]);
4872 TblOps.push_back(Ops[1]);
4873 TblOps.push_back(Ops[2]);
4874 return packTBLDVectorList(CGF, TblOps, 0, Ops[3], Ty,
4875 Intrinsic::arm64_neon_tbl2, "vtbl2");
4876 }
4877 case NEON::BI__builtin_neon_vtbl4_v: {
4878 TblOps.push_back(Ops[0]);
4879 TblOps.push_back(Ops[1]);
4880 TblOps.push_back(Ops[2]);
4881 TblOps.push_back(Ops[3]);
4882 return packTBLDVectorList(CGF, TblOps, 0, Ops[4], Ty,
4883 Intrinsic::arm64_neon_tbl2, "vtbl2");
4884 }
4885 case NEON::BI__builtin_neon_vtbx1_v: {
4886 TblOps.push_back(Ops[1]);
4887 Value *TblRes = packTBLDVectorList(CGF, TblOps, 0, Ops[2], Ty,
4888 Intrinsic::arm64_neon_tbl1, "vtbl1");
4889
4890 llvm::Constant *Eight = ConstantInt::get(VTy->getElementType(), 8);
4891 Value* EightV = llvm::ConstantVector::getSplat(nElts, Eight);
4892 Value *CmpRes = Builder.CreateICmp(ICmpInst::ICMP_UGE, Ops[2], EightV);
4893 CmpRes = Builder.CreateSExt(CmpRes, Ty);
4894
4895 Value *EltsFromInput = Builder.CreateAnd(CmpRes, Ops[0]);
4896 Value *EltsFromTbl = Builder.CreateAnd(Builder.CreateNot(CmpRes), TblRes);
4897 return Builder.CreateOr(EltsFromInput, EltsFromTbl, "vtbx");
4898 }
4899 case NEON::BI__builtin_neon_vtbx2_v: {
4900 TblOps.push_back(Ops[1]);
4901 TblOps.push_back(Ops[2]);
4902 return packTBLDVectorList(CGF, TblOps, Ops[0], Ops[3], Ty,
4903 Intrinsic::arm64_neon_tbx1, "vtbx1");
4904 }
4905 case NEON::BI__builtin_neon_vtbx3_v: {
4906 TblOps.push_back(Ops[1]);
4907 TblOps.push_back(Ops[2]);
4908 TblOps.push_back(Ops[3]);
4909 Value *TblRes = packTBLDVectorList(CGF, TblOps, 0, Ops[4], Ty,
4910 Intrinsic::arm64_neon_tbl2, "vtbl2");
4911
4912 llvm::Constant *TwentyFour = ConstantInt::get(VTy->getElementType(), 24);
4913 Value* TwentyFourV = llvm::ConstantVector::getSplat(nElts, TwentyFour);
4914 Value *CmpRes = Builder.CreateICmp(ICmpInst::ICMP_UGE, Ops[4],
4915 TwentyFourV);
4916 CmpRes = Builder.CreateSExt(CmpRes, Ty);
4917
4918 Value *EltsFromInput = Builder.CreateAnd(CmpRes, Ops[0]);
4919 Value *EltsFromTbl = Builder.CreateAnd(Builder.CreateNot(CmpRes), TblRes);
4920 return Builder.CreateOr(EltsFromInput, EltsFromTbl, "vtbx");
4921 }
4922 case NEON::BI__builtin_neon_vtbx4_v: {
4923 TblOps.push_back(Ops[1]);
4924 TblOps.push_back(Ops[2]);
4925 TblOps.push_back(Ops[3]);
4926 TblOps.push_back(Ops[4]);
4927 return packTBLDVectorList(CGF, TblOps, Ops[0], Ops[5], Ty,
4928 Intrinsic::arm64_neon_tbx2, "vtbx2");
4929 }
4930 case NEON::BI__builtin_neon_vqtbl1_v:
4931 case NEON::BI__builtin_neon_vqtbl1q_v:
4932 Int = Intrinsic::arm64_neon_tbl1; s = "vtbl1"; break;
4933 case NEON::BI__builtin_neon_vqtbl2_v:
4934 case NEON::BI__builtin_neon_vqtbl2q_v: {
4935 Int = Intrinsic::arm64_neon_tbl2; s = "vtbl2"; break;
4936 case NEON::BI__builtin_neon_vqtbl3_v:
4937 case NEON::BI__builtin_neon_vqtbl3q_v:
4938 Int = Intrinsic::arm64_neon_tbl3; s = "vtbl3"; break;
4939 case NEON::BI__builtin_neon_vqtbl4_v:
4940 case NEON::BI__builtin_neon_vqtbl4q_v:
4941 Int = Intrinsic::arm64_neon_tbl4; s = "vtbl4"; break;
4942 case NEON::BI__builtin_neon_vqtbx1_v:
4943 case NEON::BI__builtin_neon_vqtbx1q_v:
4944 Int = Intrinsic::arm64_neon_tbx1; s = "vtbx1"; break;
4945 case NEON::BI__builtin_neon_vqtbx2_v:
4946 case NEON::BI__builtin_neon_vqtbx2q_v:
4947 Int = Intrinsic::arm64_neon_tbx2; s = "vtbx2"; break;
4948 case NEON::BI__builtin_neon_vqtbx3_v:
4949 case NEON::BI__builtin_neon_vqtbx3q_v:
4950 Int = Intrinsic::arm64_neon_tbx3; s = "vtbx3"; break;
4951 case NEON::BI__builtin_neon_vqtbx4_v:
4952 case NEON::BI__builtin_neon_vqtbx4q_v:
4953 Int = Intrinsic::arm64_neon_tbx4; s = "vtbx4"; break;
4954 }
4955 }
4956
4957 if (!Int)
4958 return 0;
4959
4960 Function *F = CGF.CGM.getIntrinsic(Int, Ty);
4961 return CGF.EmitNeonCall(F, Ops, s);
4962}
4963
4964Value *CodeGenFunction::vectorWrapScalar16(Value *Op) {
4965 llvm::Type *VTy = llvm::VectorType::get(Int16Ty, 4);
4966 Op = Builder.CreateBitCast(Op, Int16Ty);
4967 Value *V = UndefValue::get(VTy);
4968 llvm::Constant *CI = ConstantInt::get(Int32Ty, 0);
4969 Op = Builder.CreateInsertElement(V, Op, CI);
4970 return Op;
4971}
4972
4973Value *CodeGenFunction::vectorWrapScalar8(Value *Op) {
4974 llvm::Type *VTy = llvm::VectorType::get(Int8Ty, 8);
4975 Op = Builder.CreateBitCast(Op, Int8Ty);
4976 Value *V = UndefValue::get(VTy);
4977 llvm::Constant *CI = ConstantInt::get(Int32Ty, 0);
4978 Op = Builder.CreateInsertElement(V, Op, CI);
4979 return Op;
4980}
4981
4982Value *CodeGenFunction::
4983emitVectorWrappedScalar8Intrinsic(unsigned Int, SmallVectorImpl<Value*> &Ops,
4984 const char *Name) {
4985 // i8 is not a legal types for ARM64, so we can't just use
4986 // a normal overloaed intrinsic call for these scalar types. Instead
4987 // we'll build 64-bit vectors w/ lane zero being our input values and
4988 // perform the operation on that. The back end can pattern match directly
4989 // to the scalar instruction.
4990 Ops[0] = vectorWrapScalar8(Ops[0]);
4991 Ops[1] = vectorWrapScalar8(Ops[1]);
4992 llvm::Type *VTy = llvm::VectorType::get(Int8Ty, 8);
4993 Value *V = EmitNeonCall(CGM.getIntrinsic(Int, VTy), Ops, Name);
4994 Constant *CI = ConstantInt::get(Int32Ty, 0);
4995 return Builder.CreateExtractElement(V, CI, "lane0");
4996}
4997
4998Value *CodeGenFunction::
4999emitVectorWrappedScalar16Intrinsic(unsigned Int, SmallVectorImpl<Value*> &Ops,
5000 const char *Name) {
5001 // i16 is not a legal types for ARM64, so we can't just use
5002 // a normal overloaed intrinsic call for these scalar types. Instead
5003 // we'll build 64-bit vectors w/ lane zero being our input values and
5004 // perform the operation on that. The back end can pattern match directly
5005 // to the scalar instruction.
5006 Ops[0] = vectorWrapScalar16(Ops[0]);
5007 Ops[1] = vectorWrapScalar16(Ops[1]);
5008 llvm::Type *VTy = llvm::VectorType::get(Int16Ty, 4);
5009 Value *V = EmitNeonCall(CGM.getIntrinsic(Int, VTy), Ops, Name);
5010 Constant *CI = ConstantInt::get(Int32Ty, 0);
5011 return Builder.CreateExtractElement(V, CI, "lane0");
5012}
5013
5014Value *CodeGenFunction::EmitARM64BuiltinExpr(unsigned BuiltinID,
5015 const CallExpr *E) {
5016 if (BuiltinID == ARM64::BI__clear_cache) {
5017 assert(E->getNumArgs() == 2 && "__clear_cache takes 2 arguments");
5018 const FunctionDecl *FD = E->getDirectCallee();
5019 SmallVector<Value*, 2> Ops;
5020 for (unsigned i = 0; i < 2; i++)
5021 Ops.push_back(EmitScalarExpr(E->getArg(i)));
5022 llvm::Type *Ty = CGM.getTypes().ConvertType(FD->getType());
5023 llvm::FunctionType *FTy = cast<llvm::FunctionType>(Ty);
5024 StringRef Name = FD->getName();
5025 return EmitNounwindRuntimeCall(CGM.CreateRuntimeFunction(FTy, Name), Ops);
5026 }
5027
5028 if (BuiltinID == ARM64::BI__builtin_arm_ldrex &&
5029 getContext().getTypeSize(E->getType()) == 128) {
5030 Function *F = CGM.getIntrinsic(Intrinsic::arm64_ldxp);
5031
5032 Value *LdPtr = EmitScalarExpr(E->getArg(0));
5033 Value *Val = Builder.CreateCall(F, Builder.CreateBitCast(LdPtr, Int8PtrTy),
5034 "ldxp");
5035
5036 Value *Val0 = Builder.CreateExtractValue(Val, 1);
5037 Value *Val1 = Builder.CreateExtractValue(Val, 0);
5038 llvm::Type *Int128Ty = llvm::IntegerType::get(getLLVMContext(), 128);
5039 Val0 = Builder.CreateZExt(Val0, Int128Ty);
5040 Val1 = Builder.CreateZExt(Val1, Int128Ty);
5041
5042 Value *ShiftCst = llvm::ConstantInt::get(Int128Ty, 64);
5043 Val = Builder.CreateShl(Val0, ShiftCst, "shl", true /* nuw */);
5044 Val = Builder.CreateOr(Val, Val1);
5045 return Builder.CreateBitCast(Val, ConvertType(E->getType()));
5046 } else if (BuiltinID == ARM64::BI__builtin_arm_ldrex) {
5047 Value *LoadAddr = EmitScalarExpr(E->getArg(0));
5048
5049 QualType Ty = E->getType();
5050 llvm::Type *RealResTy = ConvertType(Ty);
5051 llvm::Type *IntResTy = llvm::IntegerType::get(getLLVMContext(),
5052 getContext().getTypeSize(Ty));
5053 LoadAddr = Builder.CreateBitCast(LoadAddr, IntResTy->getPointerTo());
5054
5055 Function *F = CGM.getIntrinsic(Intrinsic::arm64_ldxr, LoadAddr->getType());
5056 Value *Val = Builder.CreateCall(F, LoadAddr, "ldxr");
5057
5058 if (RealResTy->isPointerTy())
5059 return Builder.CreateIntToPtr(Val, RealResTy);
5060
5061 Val = Builder.CreateTruncOrBitCast(Val, IntResTy);
5062 return Builder.CreateBitCast(Val, RealResTy);
5063 }
5064
5065 if (BuiltinID == ARM64::BI__builtin_arm_strex &&
5066 getContext().getTypeSize(E->getArg(0)->getType()) == 128) {
5067 Function *F = CGM.getIntrinsic(Intrinsic::arm64_stxp);
5068 llvm::Type *STy = llvm::StructType::get(Int64Ty, Int64Ty, NULL);
5069
5070 Value *One = llvm::ConstantInt::get(Int32Ty, 1);
5071 Value *Tmp = Builder.CreateAlloca(ConvertType(E->getArg(0)->getType()),
5072 One);
5073 Value *Val = EmitScalarExpr(E->getArg(0));
5074 Builder.CreateStore(Val, Tmp);
5075
5076 Value *LdPtr = Builder.CreateBitCast(Tmp,llvm::PointerType::getUnqual(STy));
5077 Val = Builder.CreateLoad(LdPtr);
5078
5079 Value *Arg0 = Builder.CreateExtractValue(Val, 0);
5080 Value *Arg1 = Builder.CreateExtractValue(Val, 1);
5081 Value *StPtr = Builder.CreateBitCast(EmitScalarExpr(E->getArg(1)),
5082 Int8PtrTy);
5083 return Builder.CreateCall3(F, Arg0, Arg1, StPtr, "stxp");
5084 } else if (BuiltinID == ARM64::BI__builtin_arm_strex) {
5085 Value *StoreVal = EmitScalarExpr(E->getArg(0));
5086 Value *StoreAddr = EmitScalarExpr(E->getArg(1));
5087
5088 QualType Ty = E->getArg(0)->getType();
5089 llvm::Type *StoreTy = llvm::IntegerType::get(getLLVMContext(),
5090 getContext().getTypeSize(Ty));
5091 StoreAddr = Builder.CreateBitCast(StoreAddr, StoreTy->getPointerTo());
5092
5093 if (StoreVal->getType()->isPointerTy())
5094 StoreVal = Builder.CreatePtrToInt(StoreVal, Int64Ty);
5095 else {
5096 StoreVal = Builder.CreateBitCast(StoreVal, StoreTy);
5097 StoreVal = Builder.CreateZExtOrBitCast(StoreVal, Int64Ty);
5098 }
5099
5100 Function *F = CGM.getIntrinsic(Intrinsic::arm64_stxr, StoreAddr->getType());
5101 return Builder.CreateCall2(F, StoreVal, StoreAddr, "stxr");
5102 }
5103
5104 if (BuiltinID == ARM64::BI__builtin_arm_clrex) {
5105 Function *F = CGM.getIntrinsic(Intrinsic::arm64_clrex);
5106 return Builder.CreateCall(F);
5107 }
5108
5109 // CRC32
5110 Intrinsic::ID CRCIntrinsicID = Intrinsic::not_intrinsic;
5111 switch (BuiltinID) {
5112 case ARM64::BI__builtin_arm_crc32b:
5113 CRCIntrinsicID = Intrinsic::arm64_crc32b; break;
5114 case ARM64::BI__builtin_arm_crc32cb:
5115 CRCIntrinsicID = Intrinsic::arm64_crc32cb; break;
5116 case ARM64::BI__builtin_arm_crc32h:
5117 CRCIntrinsicID = Intrinsic::arm64_crc32h; break;
5118 case ARM64::BI__builtin_arm_crc32ch:
5119 CRCIntrinsicID = Intrinsic::arm64_crc32ch; break;
5120 case ARM64::BI__builtin_arm_crc32w:
5121 CRCIntrinsicID = Intrinsic::arm64_crc32w; break;
5122 case ARM64::BI__builtin_arm_crc32cw:
5123 CRCIntrinsicID = Intrinsic::arm64_crc32cw; break;
5124 case ARM64::BI__builtin_arm_crc32d:
5125 CRCIntrinsicID = Intrinsic::arm64_crc32x; break;
5126 case ARM64::BI__builtin_arm_crc32cd:
5127 CRCIntrinsicID = Intrinsic::arm64_crc32cx; break;
5128 }
5129
5130 if (CRCIntrinsicID != Intrinsic::not_intrinsic) {
5131 Value *Arg0 = EmitScalarExpr(E->getArg(0));
5132 Value *Arg1 = EmitScalarExpr(E->getArg(1));
5133 Function *F = CGM.getIntrinsic(CRCIntrinsicID);
5134
5135 llvm::Type *DataTy = F->getFunctionType()->getParamType(1);
5136 Arg1 = Builder.CreateZExtOrBitCast(Arg1, DataTy);
5137
5138 return Builder.CreateCall2(F, Arg0, Arg1);
5139 }
5140
5141 llvm::SmallVector<Value*, 4> Ops;
5142 for (unsigned i = 0, e = E->getNumArgs() - 1; i != e; i++)
5143 Ops.push_back(EmitScalarExpr(E->getArg(i)));
5144
5145 llvm::ArrayRef<NeonIntrinsicInfo> SISDMap(ARM64SISDIntrinsicMap);
5146 const NeonIntrinsicInfo *Builtin = findNeonIntrinsicInMap(
5147 SISDMap, BuiltinID, ARM64SISDIntrinsicsProvenSorted);
5148
5149 if (Builtin) {
5150 Ops.push_back(EmitScalarExpr(E->getArg(E->getNumArgs() - 1)));
5151 Value *Result = EmitCommonNeonSISDBuiltinExpr(*this, *Builtin, Ops, E);
5152 assert(Result && "SISD intrinsic should have been handled");
5153 return Result;
5154 }
5155
5156 llvm::APSInt Result;
5157 const Expr *Arg = E->getArg(E->getNumArgs()-1);
5158 NeonTypeFlags Type(0);
5159 if (Arg->isIntegerConstantExpr(Result, getContext()))
5160 // Determine the type of this overloaded NEON intrinsic.
5161 Type = NeonTypeFlags(Result.getZExtValue());
5162
5163 bool usgn = Type.isUnsigned();
5164 bool quad = Type.isQuad();
5165
5166 // Handle non-overloaded intrinsics first.
5167 switch (BuiltinID) {
5168 default: break;
5169 case NEON::BI__builtin_neon_vcvts_u32_f32:
5170 case NEON::BI__builtin_neon_vcvtd_u64_f64:
5171 usgn = true;
5172 // FALL THROUGH
5173 case NEON::BI__builtin_neon_vcvts_s32_f32:
5174 case NEON::BI__builtin_neon_vcvtd_s64_f64: {
5175 Ops.push_back(EmitScalarExpr(E->getArg(0)));
5176 bool Is64 = Ops[0]->getType()->getPrimitiveSizeInBits() == 64;
5177 llvm::Type *InTy = Is64 ? Int64Ty : Int32Ty;
5178 llvm::Type *FTy = Is64 ? DoubleTy : FloatTy;
5179 Ops[0] = Builder.CreateBitCast(Ops[0], FTy);
5180 if (usgn)
5181 return Builder.CreateFPToUI(Ops[0], InTy);
5182 return Builder.CreateFPToSI(Ops[0], InTy);
5183 }
5184 case NEON::BI__builtin_neon_vcvts_f32_u32:
5185 case NEON::BI__builtin_neon_vcvtd_f64_u64:
5186 usgn = true;
5187 // FALL THROUGH
5188 case NEON::BI__builtin_neon_vcvts_f32_s32:
5189 case NEON::BI__builtin_neon_vcvtd_f64_s64: {
5190 Ops.push_back(EmitScalarExpr(E->getArg(0)));
5191 bool Is64 = Ops[0]->getType()->getPrimitiveSizeInBits() == 64;
5192 llvm::Type *InTy = Is64 ? Int64Ty : Int32Ty;
5193 llvm::Type *FTy = Is64 ? DoubleTy : FloatTy;
5194 Ops[0] = Builder.CreateBitCast(Ops[0], InTy);
5195 if (usgn)
5196 return Builder.CreateUIToFP(Ops[0], FTy);
5197 return Builder.CreateSIToFP(Ops[0], FTy);
5198 }
5199 case NEON::BI__builtin_neon_vpaddd_s64: {
5200 llvm::Type *Ty =
5201 llvm::VectorType::get(llvm::Type::getInt64Ty(getLLVMContext()), 2);
5202 Value *Vec = EmitScalarExpr(E->getArg(0));
5203 // The vector is v2f64, so make sure it's bitcast to that.
5204 Vec = Builder.CreateBitCast(Vec, Ty, "v2i64");
5205 llvm::Value *Idx0 = llvm::ConstantInt::get(Int32Ty, 0);
5206 llvm::Value *Idx1 = llvm::ConstantInt::get(Int32Ty, 1);
5207 Value *Op0 = Builder.CreateExtractElement(Vec, Idx0, "lane0");
5208 Value *Op1 = Builder.CreateExtractElement(Vec, Idx1, "lane1");
5209 // Pairwise addition of a v2f64 into a scalar f64.
5210 return Builder.CreateAdd(Op0, Op1, "vpaddd");
5211 }
5212 case NEON::BI__builtin_neon_vpaddd_f64: {
5213 llvm::Type *Ty =
5214 llvm::VectorType::get(llvm::Type::getDoubleTy(getLLVMContext()), 2);
5215 Value *Vec = EmitScalarExpr(E->getArg(0));
5216 // The vector is v2f64, so make sure it's bitcast to that.
5217 Vec = Builder.CreateBitCast(Vec, Ty, "v2f64");
5218 llvm::Value *Idx0 = llvm::ConstantInt::get(Int32Ty, 0);
5219 llvm::Value *Idx1 = llvm::ConstantInt::get(Int32Ty, 1);
5220 Value *Op0 = Builder.CreateExtractElement(Vec, Idx0, "lane0");
5221 Value *Op1 = Builder.CreateExtractElement(Vec, Idx1, "lane1");
5222 // Pairwise addition of a v2f64 into a scalar f64.
5223 return Builder.CreateFAdd(Op0, Op1, "vpaddd");
5224 }
5225 case NEON::BI__builtin_neon_vpadds_f32: {
5226 llvm::Type *Ty =
5227 llvm::VectorType::get(llvm::Type::getFloatTy(getLLVMContext()), 2);
5228 Value *Vec = EmitScalarExpr(E->getArg(0));
5229 // The vector is v2f32, so make sure it's bitcast to that.
5230 Vec = Builder.CreateBitCast(Vec, Ty, "v2f32");
5231 llvm::Value *Idx0 = llvm::ConstantInt::get(Int32Ty, 0);
5232 llvm::Value *Idx1 = llvm::ConstantInt::get(Int32Ty, 1);
5233 Value *Op0 = Builder.CreateExtractElement(Vec, Idx0, "lane0");
5234 Value *Op1 = Builder.CreateExtractElement(Vec, Idx1, "lane1");
5235 // Pairwise addition of a v2f32 into a scalar f32.
5236 return Builder.CreateFAdd(Op0, Op1, "vpaddd");
5237 }
5238 case NEON::BI__builtin_neon_vceqzd_s64:
5239 case NEON::BI__builtin_neon_vceqzd_f64:
5240 case NEON::BI__builtin_neon_vceqzs_f32:
5241 Ops.push_back(EmitScalarExpr(E->getArg(0)));
5242 return EmitAArch64CompareBuiltinExpr(
5243 Ops[0], ConvertType(E->getCallReturnType()), ICmpInst::FCMP_OEQ,
5244 ICmpInst::ICMP_EQ, "vceqz");
5245 case NEON::BI__builtin_neon_vcgezd_s64:
5246 case NEON::BI__builtin_neon_vcgezd_f64:
5247 case NEON::BI__builtin_neon_vcgezs_f32:
5248 Ops.push_back(EmitScalarExpr(E->getArg(0)));
5249 return EmitAArch64CompareBuiltinExpr(
5250 Ops[0], ConvertType(E->getCallReturnType()), ICmpInst::FCMP_OGE,
5251 ICmpInst::ICMP_SGE, "vcgez");
5252 case NEON::BI__builtin_neon_vclezd_s64:
5253 case NEON::BI__builtin_neon_vclezd_f64:
5254 case NEON::BI__builtin_neon_vclezs_f32:
5255 Ops.push_back(EmitScalarExpr(E->getArg(0)));
5256 return EmitAArch64CompareBuiltinExpr(
5257 Ops[0], ConvertType(E->getCallReturnType()), ICmpInst::FCMP_OLE,
5258 ICmpInst::ICMP_SLE, "vclez");
5259 case NEON::BI__builtin_neon_vcgtzd_s64:
5260 case NEON::BI__builtin_neon_vcgtzd_f64:
5261 case NEON::BI__builtin_neon_vcgtzs_f32:
5262 Ops.push_back(EmitScalarExpr(E->getArg(0)));
5263 return EmitAArch64CompareBuiltinExpr(
5264 Ops[0], ConvertType(E->getCallReturnType()), ICmpInst::FCMP_OGT,
5265 ICmpInst::ICMP_SGT, "vcgtz");
5266 case NEON::BI__builtin_neon_vcltzd_s64:
5267 case NEON::BI__builtin_neon_vcltzd_f64:
5268 case NEON::BI__builtin_neon_vcltzs_f32:
5269 Ops.push_back(EmitScalarExpr(E->getArg(0)));
5270 return EmitAArch64CompareBuiltinExpr(
5271 Ops[0], ConvertType(E->getCallReturnType()), ICmpInst::FCMP_OLT,
5272 ICmpInst::ICMP_SLT, "vcltz");
5273
5274 case NEON::BI__builtin_neon_vceqzd_u64: {
5275 llvm::Type *Ty = llvm::Type::getInt64Ty(getLLVMContext());
5276 Ops.push_back(EmitScalarExpr(E->getArg(0)));
5277 Ops[0] = Builder.CreateBitCast(Ops[0], Ty);
5278 Ops[0] = Builder.CreateICmp(llvm::ICmpInst::ICMP_EQ, Ops[0],
5279 llvm::Constant::getNullValue(Ty));
5280 return Builder.CreateSExt(Ops[0], Ty, "vceqzd");
5281 }
5282 case NEON::BI__builtin_neon_vceqd_f64:
5283 case NEON::BI__builtin_neon_vcled_f64:
5284 case NEON::BI__builtin_neon_vcltd_f64:
5285 case NEON::BI__builtin_neon_vcged_f64:
5286 case NEON::BI__builtin_neon_vcgtd_f64: {
5287 llvm::CmpInst::Predicate P;
5288 switch (BuiltinID) {
5289 default: llvm_unreachable("missing builtin ID in switch!");
5290 case NEON::BI__builtin_neon_vceqd_f64: P = llvm::FCmpInst::FCMP_OEQ; break;
5291 case NEON::BI__builtin_neon_vcled_f64: P = llvm::FCmpInst::FCMP_OLE; break;
5292 case NEON::BI__builtin_neon_vcltd_f64: P = llvm::FCmpInst::FCMP_OLT; break;
5293 case NEON::BI__builtin_neon_vcged_f64: P = llvm::FCmpInst::FCMP_OGE; break;
5294 case NEON::BI__builtin_neon_vcgtd_f64: P = llvm::FCmpInst::FCMP_OGT; break;
5295 }
5296 Ops.push_back(EmitScalarExpr(E->getArg(1)));
5297 Ops[0] = Builder.CreateBitCast(Ops[0], DoubleTy);
5298 Ops[1] = Builder.CreateBitCast(Ops[1], DoubleTy);
5299 Ops[0] = Builder.CreateFCmp(P, Ops[0], Ops[1]);
5300 return Builder.CreateSExt(Ops[0], Int64Ty, "vcmpd");
5301 }
5302 case NEON::BI__builtin_neon_vceqs_f32:
5303 case NEON::BI__builtin_neon_vcles_f32:
5304 case NEON::BI__builtin_neon_vclts_f32:
5305 case NEON::BI__builtin_neon_vcges_f32:
5306 case NEON::BI__builtin_neon_vcgts_f32: {
5307 llvm::CmpInst::Predicate P;
5308 switch (BuiltinID) {
5309 default: llvm_unreachable("missing builtin ID in switch!");
5310 case NEON::BI__builtin_neon_vceqs_f32: P = llvm::FCmpInst::FCMP_OEQ; break;
5311 case NEON::BI__builtin_neon_vcles_f32: P = llvm::FCmpInst::FCMP_OLE; break;
5312 case NEON::BI__builtin_neon_vclts_f32: P = llvm::FCmpInst::FCMP_OLT; break;
5313 case NEON::BI__builtin_neon_vcges_f32: P = llvm::FCmpInst::FCMP_OGE; break;
5314 case NEON::BI__builtin_neon_vcgts_f32: P = llvm::FCmpInst::FCMP_OGT; break;
5315 }
5316 Ops.push_back(EmitScalarExpr(E->getArg(1)));
5317 Ops[0] = Builder.CreateBitCast(Ops[0], FloatTy);
5318 Ops[1] = Builder.CreateBitCast(Ops[1], FloatTy);
5319 Ops[0] = Builder.CreateFCmp(P, Ops[0], Ops[1]);
5320 return Builder.CreateSExt(Ops[0], Int32Ty, "vcmpd");
5321 }
5322 case NEON::BI__builtin_neon_vceqd_s64:
5323 case NEON::BI__builtin_neon_vceqd_u64:
5324 case NEON::BI__builtin_neon_vcgtd_s64:
5325 case NEON::BI__builtin_neon_vcgtd_u64:
5326 case NEON::BI__builtin_neon_vcltd_s64:
5327 case NEON::BI__builtin_neon_vcltd_u64:
5328 case NEON::BI__builtin_neon_vcged_u64:
5329 case NEON::BI__builtin_neon_vcged_s64:
5330 case NEON::BI__builtin_neon_vcled_u64:
5331 case NEON::BI__builtin_neon_vcled_s64: {
5332 llvm::CmpInst::Predicate P;
5333 switch (BuiltinID) {
5334 default: llvm_unreachable("missing builtin ID in switch!");
5335 case NEON::BI__builtin_neon_vceqd_s64:
5336 case NEON::BI__builtin_neon_vceqd_u64:P = llvm::ICmpInst::ICMP_EQ;break;
5337 case NEON::BI__builtin_neon_vcgtd_s64:P = llvm::ICmpInst::ICMP_SGT;break;
5338 case NEON::BI__builtin_neon_vcgtd_u64:P = llvm::ICmpInst::ICMP_UGT;break;
5339 case NEON::BI__builtin_neon_vcltd_s64:P = llvm::ICmpInst::ICMP_SLT;break;
5340 case NEON::BI__builtin_neon_vcltd_u64:P = llvm::ICmpInst::ICMP_ULT;break;
5341 case NEON::BI__builtin_neon_vcged_u64:P = llvm::ICmpInst::ICMP_UGE;break;
5342 case NEON::BI__builtin_neon_vcged_s64:P = llvm::ICmpInst::ICMP_SGE;break;
5343 case NEON::BI__builtin_neon_vcled_u64:P = llvm::ICmpInst::ICMP_ULE;break;
5344 case NEON::BI__builtin_neon_vcled_s64:P = llvm::ICmpInst::ICMP_SLE;break;
5345 }
5346 llvm::Type *Ty = llvm::Type::getInt64Ty(getLLVMContext());
5347 Ops.push_back(EmitScalarExpr(E->getArg(1)));
5348 Ops[0] = Builder.CreateBitCast(Ops[0], Ty);
5349 Ops[1] = Builder.CreateBitCast(Ops[1], Ty);
5350 Ops[0] = Builder.CreateICmp(P, Ops[0], Ops[1]);
5351 return Builder.CreateSExt(Ops[0], Ty, "vceqd");
5352 }
5353 case NEON::BI__builtin_neon_vtstd_s64:
5354 case NEON::BI__builtin_neon_vtstd_u64: {
5355 llvm::Type *Ty = llvm::Type::getInt64Ty(getLLVMContext());
5356 Ops.push_back(EmitScalarExpr(E->getArg(1)));
5357 Ops[0] = Builder.CreateBitCast(Ops[0], Ty);
5358 Ops[1] = Builder.CreateBitCast(Ops[1], Ty);
5359 Ops[0] = Builder.CreateAnd(Ops[0], Ops[1]);
5360 Ops[0] = Builder.CreateICmp(ICmpInst::ICMP_NE, Ops[0],
5361 llvm::Constant::getNullValue(Ty));
5362 return Builder.CreateSExt(Ops[0], Ty, "vtstd");
5363 }
5364 case NEON::BI__builtin_neon_vset_lane_i8:
5365 case NEON::BI__builtin_neon_vset_lane_i16:
5366 case NEON::BI__builtin_neon_vset_lane_i32:
5367 case NEON::BI__builtin_neon_vset_lane_i64:
5368 case NEON::BI__builtin_neon_vset_lane_f32:
5369 case NEON::BI__builtin_neon_vsetq_lane_i8:
5370 case NEON::BI__builtin_neon_vsetq_lane_i16:
5371 case NEON::BI__builtin_neon_vsetq_lane_i32:
5372 case NEON::BI__builtin_neon_vsetq_lane_i64:
5373 case NEON::BI__builtin_neon_vsetq_lane_f32:
5374 Ops.push_back(EmitScalarExpr(E->getArg(2)));
5375 return Builder.CreateInsertElement(Ops[1], Ops[0], Ops[2], "vset_lane");
5376 case NEON::BI__builtin_neon_vset_lane_f64:
5377 // The vector type needs a cast for the v1f64 variant.
5378 Ops[1] = Builder.CreateBitCast(Ops[1],
5379 llvm::VectorType::get(DoubleTy, 1));
5380 Ops.push_back(EmitScalarExpr(E->getArg(2)));
5381 return Builder.CreateInsertElement(Ops[1], Ops[0], Ops[2], "vset_lane");
5382 case NEON::BI__builtin_neon_vsetq_lane_f64:
5383 // The vector type needs a cast for the v2f64 variant.
5384 Ops[1] = Builder.CreateBitCast(Ops[1],
5385 llvm::VectorType::get(llvm::Type::getDoubleTy(getLLVMContext()), 2));
5386 Ops.push_back(EmitScalarExpr(E->getArg(2)));
5387 return Builder.CreateInsertElement(Ops[1], Ops[0], Ops[2], "vset_lane");
5388
5389 case NEON::BI__builtin_neon_vget_lane_i8:
5390 case NEON::BI__builtin_neon_vdupb_lane_i8:
5391 Ops[0] = Builder.CreateBitCast(Ops[0],
5392 llvm::VectorType::get(llvm::IntegerType::get(getLLVMContext(), 8), 8));
5393 return Builder.CreateExtractElement(Ops[0], EmitScalarExpr(E->getArg(1)),
5394 "vget_lane");
5395 case NEON::BI__builtin_neon_vgetq_lane_i8:
5396 case NEON::BI__builtin_neon_vdupb_laneq_i8:
5397 Ops[0] = Builder.CreateBitCast(Ops[0],
5398 llvm::VectorType::get(llvm::IntegerType::get(getLLVMContext(), 8), 16));
5399 return Builder.CreateExtractElement(Ops[0], EmitScalarExpr(E->getArg(1)),
5400 "vgetq_lane");
5401 case NEON::BI__builtin_neon_vget_lane_i16:
5402 case NEON::BI__builtin_neon_vduph_lane_i16:
5403 Ops[0] = Builder.CreateBitCast(Ops[0],
5404 llvm::VectorType::get(llvm::IntegerType::get(getLLVMContext(), 16), 4));
5405 return Builder.CreateExtractElement(Ops[0], EmitScalarExpr(E->getArg(1)),
5406 "vget_lane");
5407 case NEON::BI__builtin_neon_vgetq_lane_i16:
5408 case NEON::BI__builtin_neon_vduph_laneq_i16:
5409 Ops[0] = Builder.CreateBitCast(Ops[0],
5410 llvm::VectorType::get(llvm::IntegerType::get(getLLVMContext(), 16), 8));
5411 return Builder.CreateExtractElement(Ops[0], EmitScalarExpr(E->getArg(1)),
5412 "vgetq_lane");
5413 case NEON::BI__builtin_neon_vget_lane_i32:
5414 case NEON::BI__builtin_neon_vdups_lane_i32:
5415 Ops[0] = Builder.CreateBitCast(
5416 Ops[0],
5417 llvm::VectorType::get(llvm::IntegerType::get(getLLVMContext(), 32), 2));
5418 return Builder.CreateExtractElement(Ops[0], EmitScalarExpr(E->getArg(1)),
5419 "vget_lane");
5420 case NEON::BI__builtin_neon_vdups_lane_f32:
5421 Ops[0] = Builder.CreateBitCast(Ops[0],
5422 llvm::VectorType::get(llvm::Type::getFloatTy(getLLVMContext()), 2));
5423 return Builder.CreateExtractElement(Ops[0], EmitScalarExpr(E->getArg(1)),
5424 "vdups_lane");
5425 case NEON::BI__builtin_neon_vgetq_lane_i32:
5426 case NEON::BI__builtin_neon_vdups_laneq_i32:
5427 Ops[0] = Builder.CreateBitCast(Ops[0],
5428 llvm::VectorType::get(llvm::IntegerType::get(getLLVMContext(), 32), 4));
5429 return Builder.CreateExtractElement(Ops[0], EmitScalarExpr(E->getArg(1)),
5430 "vgetq_lane");
5431 case NEON::BI__builtin_neon_vget_lane_i64:
5432 case NEON::BI__builtin_neon_vdupd_lane_i64:
5433 Ops[0] = Builder.CreateBitCast(Ops[0],
5434 llvm::VectorType::get(llvm::IntegerType::get(getLLVMContext(), 64), 1));
5435 return Builder.CreateExtractElement(Ops[0], EmitScalarExpr(E->getArg(1)),
5436 "vget_lane");
5437 case NEON::BI__builtin_neon_vdupd_lane_f64:
5438 Ops[0] = Builder.CreateBitCast(Ops[0],
5439 llvm::VectorType::get(llvm::Type::getDoubleTy(getLLVMContext()), 1));
5440 return Builder.CreateExtractElement(Ops[0], EmitScalarExpr(E->getArg(1)),
5441 "vdupd_lane");
5442 case NEON::BI__builtin_neon_vgetq_lane_i64:
5443 case NEON::BI__builtin_neon_vdupd_laneq_i64:
5444 Ops[0] = Builder.CreateBitCast(Ops[0],
5445 llvm::VectorType::get(llvm::IntegerType::get(getLLVMContext(), 64), 2));
5446 return Builder.CreateExtractElement(Ops[0], EmitScalarExpr(E->getArg(1)),
5447 "vgetq_lane");
5448 case NEON::BI__builtin_neon_vget_lane_f32:
5449 Ops[0] = Builder.CreateBitCast(Ops[0],
5450 llvm::VectorType::get(llvm::Type::getFloatTy(getLLVMContext()), 2));
5451 return Builder.CreateExtractElement(Ops[0], EmitScalarExpr(E->getArg(1)),
5452 "vget_lane");
5453 case NEON::BI__builtin_neon_vget_lane_f64:
5454 Ops[0] = Builder.CreateBitCast(Ops[0],
5455 llvm::VectorType::get(llvm::Type::getDoubleTy(getLLVMContext()), 1));
5456 return Builder.CreateExtractElement(Ops[0], EmitScalarExpr(E->getArg(1)),
5457 "vget_lane");
5458 case NEON::BI__builtin_neon_vgetq_lane_f32:
5459 case NEON::BI__builtin_neon_vdups_laneq_f32:
5460 Ops[0] = Builder.CreateBitCast(Ops[0],
5461 llvm::VectorType::get(llvm::Type::getFloatTy(getLLVMContext()), 4));
5462 return Builder.CreateExtractElement(Ops[0], EmitScalarExpr(E->getArg(1)),
5463 "vgetq_lane");
5464 case NEON::BI__builtin_neon_vgetq_lane_f64:
5465 case NEON::BI__builtin_neon_vdupd_laneq_f64:
5466 Ops[0] = Builder.CreateBitCast(Ops[0],
5467 llvm::VectorType::get(llvm::Type::getDoubleTy(getLLVMContext()), 2));
5468 return Builder.CreateExtractElement(Ops[0], EmitScalarExpr(E->getArg(1)),
5469 "vgetq_lane");
5470 case NEON::BI__builtin_neon_vaddd_s64:
5471 case NEON::BI__builtin_neon_vaddd_u64:
5472 return Builder.CreateAdd(Ops[0], EmitScalarExpr(E->getArg(1)), "vaddd");
5473 case NEON::BI__builtin_neon_vsubd_s64:
5474 case NEON::BI__builtin_neon_vsubd_u64:
5475 return Builder.CreateSub(Ops[0], EmitScalarExpr(E->getArg(1)), "vsubd");
5476 case NEON::BI__builtin_neon_vqdmlalh_s16:
5477 case NEON::BI__builtin_neon_vqdmlslh_s16: {
5478 SmallVector<Value *, 2> ProductOps;
5479 ProductOps.push_back(vectorWrapScalar16(Ops[1]));
5480 ProductOps.push_back(vectorWrapScalar16(EmitScalarExpr(E->getArg(2))));
5481 llvm::Type *VTy = llvm::VectorType::get(Int32Ty, 4);
5482 Ops[1] = EmitNeonCall(CGM.getIntrinsic(Intrinsic::arm64_neon_sqdmull, VTy),
5483 ProductOps, "vqdmlXl");
5484 Constant *CI = ConstantInt::get(Int32Ty, 0);
5485 Ops[1] = Builder.CreateExtractElement(Ops[1], CI, "lane0");
5486
5487 unsigned AccumInt = BuiltinID == NEON::BI__builtin_neon_vqdmlalh_s16
5488 ? Intrinsic::arm64_neon_sqadd
5489 : Intrinsic::arm64_neon_sqsub;
5490 return EmitNeonCall(CGM.getIntrinsic(AccumInt, Int32Ty), Ops, "vqdmlXl");
5491 }
5492 case NEON::BI__builtin_neon_vqshlud_n_s64: {
5493 Ops.push_back(EmitScalarExpr(E->getArg(1)));
5494 Ops[1] = Builder.CreateZExt(Ops[1], Int64Ty);
5495 llvm::Type *VTy = llvm::VectorType::get(Int64Ty, 1);
5496 Ops[0] = EmitNeonCall(CGM.getIntrinsic(Intrinsic::arm64_neon_sqshlu, VTy),
5497 Ops, "vqshlu_n");
5498 return Builder.CreateBitCast(Ops[0], Int64Ty);
5499 }
5500 case NEON::BI__builtin_neon_vqshld_n_u64:
5501 case NEON::BI__builtin_neon_vqshld_n_s64: {
5502 unsigned Int = BuiltinID == NEON::BI__builtin_neon_vqshld_n_u64
5503 ? Intrinsic::arm64_neon_uqshl
5504 : Intrinsic::arm64_neon_sqshl;
5505 Ops.push_back(EmitScalarExpr(E->getArg(1)));
5506 Ops[1] = Builder.CreateZExt(Ops[1], Int64Ty);
5507 llvm::Type *VTy = llvm::VectorType::get(Int64Ty, 1);
5508 Ops[0] = EmitNeonCall(CGM.getIntrinsic(Int, VTy), Ops, "vqshl_n");
5509 return Builder.CreateBitCast(Ops[0], Int64Ty);
5510 }
5511 case NEON::BI__builtin_neon_vrshrd_n_u64:
5512 case NEON::BI__builtin_neon_vrshrd_n_s64: {
5513 unsigned Int = BuiltinID == NEON::BI__builtin_neon_vrshrd_n_u64
5514 ? Intrinsic::arm64_neon_urshl
5515 : Intrinsic::arm64_neon_srshl;
5516 Ops.push_back(EmitScalarExpr(E->getArg(1)));
5517 llvm::Type *VTy = llvm::VectorType::get(Int64Ty, 1);
5518 Ops[0] = EmitNeonCall(CGM.getIntrinsic(Int, VTy), Ops, "vrshr_n", 1, true);
5519 return Builder.CreateBitCast(Ops[0], Int64Ty);
5520 }
5521 case NEON::BI__builtin_neon_vrsrad_n_u64:
5522 case NEON::BI__builtin_neon_vrsrad_n_s64: {
5523 unsigned Int = BuiltinID == NEON::BI__builtin_neon_vrsrad_n_u64
5524 ? Intrinsic::arm64_neon_urshl
5525 : Intrinsic::arm64_neon_srshl;
5526 llvm::Type *VTy = llvm::VectorType::get(Int64Ty, 1);
5527 SmallVector<Value *, 2> ShiftOps;
5528 ShiftOps.push_back(Ops[1]);
5529 ShiftOps.push_back(EmitScalarExpr(E->getArg(2)));
5530 Ops[1] =
5531 EmitNeonCall(CGM.getIntrinsic(Int, VTy), ShiftOps, "vrshr_n", 1, true);
5532 return Builder.CreateAdd(Ops[0], Builder.CreateBitCast(Ops[0], Int64Ty));
5533 }
5534 case NEON::BI__builtin_neon_vshld_n_s64:
5535 case NEON::BI__builtin_neon_vshld_n_u64: {
5536 llvm::ConstantInt *Amt = cast<ConstantInt>(EmitScalarExpr(E->getArg(1)));
5537 return Builder.CreateShl(
5538 Ops[0], ConstantInt::get(Int64Ty, std::min(static_cast<uint64_t>(63),
5539 Amt->getZExtValue())),
5540 "vshr_n");
5541 }
5542 case NEON::BI__builtin_neon_vshrd_n_s64: {
5543 llvm::ConstantInt *Amt = cast<ConstantInt>(EmitScalarExpr(E->getArg(1)));
5544 return Builder.CreateAShr(
5545 Ops[0], ConstantInt::get(Int64Ty, std::min(static_cast<uint64_t>(63),
5546 Amt->getZExtValue())),
5547 "vshr_n");
5548 }
5549 case NEON::BI__builtin_neon_vshrd_n_u64: {
5550 llvm::ConstantInt *Amt = cast<ConstantInt>(EmitScalarExpr(E->getArg(1)));
5551 return Builder.CreateLShr(
5552 Ops[0], ConstantInt::get(Int64Ty, std::min(static_cast<uint64_t>(63),
5553 Amt->getZExtValue())),
5554 "vshr_n");
5555 }
5556 case NEON::BI__builtin_neon_vsrad_n_s64: {
5557 llvm::ConstantInt *Amt = cast<ConstantInt>(EmitScalarExpr(E->getArg(2)));
5558 Ops[1] = Builder.CreateAShr(
5559 Ops[1], ConstantInt::get(Int64Ty, std::min(static_cast<uint64_t>(63),
5560 Amt->getZExtValue())),
5561 "vshr_n");
5562 return Builder.CreateAdd(Ops[0], Ops[1]);
5563 }
5564 case NEON::BI__builtin_neon_vsrad_n_u64: {
5565 llvm::ConstantInt *Amt = cast<ConstantInt>(EmitScalarExpr(E->getArg(2)));
5566 Ops[1] = Builder.CreateLShr(
5567 Ops[1], ConstantInt::get(Int64Ty, std::min(static_cast<uint64_t>(63),
5568 Amt->getZExtValue())),
5569 "vshr_n");
5570 return Builder.CreateAdd(Ops[0], Ops[1]);
5571 }
5572 case NEON::BI__builtin_neon_vqdmlalh_lane_s16:
5573 case NEON::BI__builtin_neon_vqdmlalh_laneq_s16:
5574 case NEON::BI__builtin_neon_vqdmlslh_lane_s16:
5575 case NEON::BI__builtin_neon_vqdmlslh_laneq_s16: {
5576 Ops[2] = Builder.CreateExtractElement(Ops[2], EmitScalarExpr(E->getArg(3)),
5577 "lane");
5578 SmallVector<Value *, 2> ProductOps;
5579 ProductOps.push_back(vectorWrapScalar16(Ops[1]));
5580 ProductOps.push_back(vectorWrapScalar16(Ops[2]));
5581 llvm::Type *VTy = llvm::VectorType::get(Int32Ty, 4);
5582 Ops[1] = EmitNeonCall(CGM.getIntrinsic(Intrinsic::arm64_neon_sqdmull, VTy),
5583 ProductOps, "vqdmlXl");
5584 Constant *CI = ConstantInt::get(Int32Ty, 0);
5585 Ops[1] = Builder.CreateExtractElement(Ops[1], CI, "lane0");
5586 Ops.pop_back();
5587
5588 unsigned AccInt = (BuiltinID == NEON::BI__builtin_neon_vqdmlalh_lane_s16 ||
5589 BuiltinID == NEON::BI__builtin_neon_vqdmlalh_laneq_s16)
5590 ? Intrinsic::arm64_neon_sqadd
5591 : Intrinsic::arm64_neon_sqsub;
5592 return EmitNeonCall(CGM.getIntrinsic(AccInt, Int32Ty), Ops, "vqdmlXl");
5593 }
5594 case NEON::BI__builtin_neon_vqdmlals_s32:
5595 case NEON::BI__builtin_neon_vqdmlsls_s32: {
5596 SmallVector<Value *, 2> ProductOps;
5597 ProductOps.push_back(Ops[1]);
5598 ProductOps.push_back(EmitScalarExpr(E->getArg(2)));
5599 Ops[1] =
5600 EmitNeonCall(CGM.getIntrinsic(Intrinsic::arm64_neon_sqdmulls_scalar),
5601 ProductOps, "vqdmlXl");
5602
5603 unsigned AccumInt = BuiltinID == NEON::BI__builtin_neon_vqdmlals_s32
5604 ? Intrinsic::arm64_neon_sqadd
5605 : Intrinsic::arm64_neon_sqsub;
5606 return EmitNeonCall(CGM.getIntrinsic(AccumInt, Int64Ty), Ops, "vqdmlXl");
5607 }
5608 case NEON::BI__builtin_neon_vqdmlals_lane_s32:
5609 case NEON::BI__builtin_neon_vqdmlals_laneq_s32:
5610 case NEON::BI__builtin_neon_vqdmlsls_lane_s32:
5611 case NEON::BI__builtin_neon_vqdmlsls_laneq_s32: {
5612 Ops[2] = Builder.CreateExtractElement(Ops[2], EmitScalarExpr(E->getArg(3)),
5613 "lane");
5614 SmallVector<Value *, 2> ProductOps;
5615 ProductOps.push_back(Ops[1]);
5616 ProductOps.push_back(Ops[2]);
5617 Ops[1] =
5618 EmitNeonCall(CGM.getIntrinsic(Intrinsic::arm64_neon_sqdmulls_scalar),
5619 ProductOps, "vqdmlXl");
5620 Ops.pop_back();
5621
5622 unsigned AccInt = (BuiltinID == NEON::BI__builtin_neon_vqdmlals_lane_s32 ||
5623 BuiltinID == NEON::BI__builtin_neon_vqdmlals_laneq_s32)
5624 ? Intrinsic::arm64_neon_sqadd
5625 : Intrinsic::arm64_neon_sqsub;
5626 return EmitNeonCall(CGM.getIntrinsic(AccInt, Int64Ty), Ops, "vqdmlXl");
5627 }
5628 }
5629
5630 llvm::VectorType *VTy = GetNeonType(this, Type);
5631 llvm::Type *Ty = VTy;
5632 if (!Ty)
5633 return 0;
5634
5635 // Not all intrinsics handled by the common case work for ARM64 yet, so only
5636 // defer to common code if it's been added to our special map.
5637 Builtin = findNeonIntrinsicInMap(ARM64SIMDIntrinsicMap, BuiltinID,
5638 ARM64SIMDIntrinsicsProvenSorted);
5639
5640 if (Builtin)
5641 return EmitCommonNeonBuiltinExpr(
5642 Builtin->BuiltinID, Builtin->LLVMIntrinsic, Builtin->AltLLVMIntrinsic,
5643 Builtin->NameHint, Builtin->TypeModifier, E, Ops, 0);
5644
5645 if (Value *V = EmitARM64TblBuiltinExpr(*this, BuiltinID, E, Ops))
5646 return V;
5647
5648 unsigned Int;
5649 switch (BuiltinID) {
5650 default: return 0;
5651 case NEON::BI__builtin_neon_vbsl_v:
5652 case NEON::BI__builtin_neon_vbslq_v: {
5653 llvm::Type *BitTy = llvm::VectorType::getInteger(VTy);
5654 Ops[0] = Builder.CreateBitCast(Ops[0], BitTy, "vbsl");
5655 Ops[1] = Builder.CreateBitCast(Ops[1], BitTy, "vbsl");
5656 Ops[2] = Builder.CreateBitCast(Ops[2], BitTy, "vbsl");
5657
5658 Ops[1] = Builder.CreateAnd(Ops[0], Ops[1], "vbsl");
5659 Ops[2] = Builder.CreateAnd(Builder.CreateNot(Ops[0]), Ops[2], "vbsl");
5660 Ops[0] = Builder.CreateOr(Ops[1], Ops[2], "vbsl");
5661 return Builder.CreateBitCast(Ops[0], Ty);
5662 }
5663 case NEON::BI__builtin_neon_vfma_lane_v:
5664 case NEON::BI__builtin_neon_vfmaq_lane_v: { // Only used for FP types
5665 // The ARM builtins (and instructions) have the addend as the first
5666 // operand, but the 'fma' intrinsics have it last. Swap it around here.
5667 Value *Addend = Ops[0];
5668 Value *Multiplicand = Ops[1];
5669 Value *LaneSource = Ops[2];
5670 Ops[0] = Multiplicand;
5671 Ops[1] = LaneSource;
5672 Ops[2] = Addend;
5673
5674 // Now adjust things to handle the lane access.
5675 llvm::Type *SourceTy = BuiltinID == NEON::BI__builtin_neon_vfmaq_lane_v ?
5676 llvm::VectorType::get(VTy->getElementType(), VTy->getNumElements() / 2) :
5677 VTy;
5678 llvm::Constant *cst = cast<Constant>(Ops[3]);
5679 Value *SV = llvm::ConstantVector::getSplat(VTy->getNumElements(), cst);
5680 Ops[1] = Builder.CreateBitCast(Ops[1], SourceTy);
5681 Ops[1] = Builder.CreateShuffleVector(Ops[1], Ops[1], SV, "lane");
5682
5683 Ops.pop_back();
5684 Int = Intrinsic::fma;
5685 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "fmla");
5686 }
5687 case NEON::BI__builtin_neon_vfma_laneq_v: {
5688 llvm::VectorType *VTy = cast<llvm::VectorType>(Ty);
5689 // v1f64 fma should be mapped to Neon scalar f64 fma
5690 if (VTy && VTy->getElementType() == DoubleTy) {
5691 Ops[0] = Builder.CreateBitCast(Ops[0], DoubleTy);
5692 Ops[1] = Builder.CreateBitCast(Ops[1], DoubleTy);
5693 llvm::Type *VTy = GetNeonType(this,
5694 NeonTypeFlags(NeonTypeFlags::Float64, false, true));
5695 Ops[2] = Builder.CreateBitCast(Ops[2], VTy);
5696 Ops[2] = Builder.CreateExtractElement(Ops[2], Ops[3], "extract");
5697 Value *F = CGM.getIntrinsic(Intrinsic::fma, DoubleTy);
5698 Value *Result = Builder.CreateCall3(F, Ops[1], Ops[2], Ops[0]);
5699 return Builder.CreateBitCast(Result, Ty);
5700 }
5701 Value *F = CGM.getIntrinsic(Intrinsic::fma, Ty);
5702 Ops[0] = Builder.CreateBitCast(Ops[0], Ty);
5703 Ops[1] = Builder.CreateBitCast(Ops[1], Ty);
5704
5705 llvm::Type *STy = llvm::VectorType::get(VTy->getElementType(),
5706 VTy->getNumElements() * 2);
5707 Ops[2] = Builder.CreateBitCast(Ops[2], STy);
5708 Value* SV = llvm::ConstantVector::getSplat(VTy->getNumElements(),
5709 cast<ConstantInt>(Ops[3]));
5710 Ops[2] = Builder.CreateShuffleVector(Ops[2], Ops[2], SV, "lane");
5711
5712 return Builder.CreateCall3(F, Ops[2], Ops[1], Ops[0]);
5713 }
5714 case NEON::BI__builtin_neon_vfmaq_laneq_v: {
5715 Value *F = CGM.getIntrinsic(Intrinsic::fma, Ty);
5716 Ops[0] = Builder.CreateBitCast(Ops[0], Ty);
5717 Ops[1] = Builder.CreateBitCast(Ops[1], Ty);
5718
5719 Ops[2] = Builder.CreateBitCast(Ops[2], Ty);
5720 Ops[2] = EmitNeonSplat(Ops[2], cast<ConstantInt>(Ops[3]));
5721 return Builder.CreateCall3(F, Ops[2], Ops[1], Ops[0]);
5722 }
5723 case NEON::BI__builtin_neon_vfmas_lane_f32:
5724 case NEON::BI__builtin_neon_vfmas_laneq_f32:
5725 case NEON::BI__builtin_neon_vfmad_lane_f64:
5726 case NEON::BI__builtin_neon_vfmad_laneq_f64: {
5727 Ops.push_back(EmitScalarExpr(E->getArg(3)));
5728 llvm::Type *Ty = ConvertType(E->getCallReturnType());
5729 Value *F = CGM.getIntrinsic(Intrinsic::fma, Ty);
5730 Ops[2] = Builder.CreateExtractElement(Ops[2], Ops[3], "extract");
5731 return Builder.CreateCall3(F, Ops[1], Ops[2], Ops[0]);
5732 }
5733 case NEON::BI__builtin_neon_vfms_v:
5734 case NEON::BI__builtin_neon_vfmsq_v: { // Only used for FP types
5735 // FIXME: probably remove when we no longer support aarch64_simd.h
5736 // (arm_neon.h delegates to vfma).
5737
5738 // The ARM builtins (and instructions) have the addend as the first
5739 // operand, but the 'fma' intrinsics have it last. Swap it around here.
5740 Value *Subtrahend = Ops[0];
5741 Value *Multiplicand = Ops[2];
5742 Ops[0] = Multiplicand;
5743 Ops[2] = Subtrahend;
5744 Ops[1] = Builder.CreateBitCast(Ops[1], VTy);
5745 Ops[1] = Builder.CreateFNeg(Ops[1]);
5746 Int = Intrinsic::fma;
5747 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "fmls");
5748 }
5749 case NEON::BI__builtin_neon_vmull_v:
5750 // FIXME: improve sharing scheme to cope with 3 alternative LLVM intrinsics.
5751 Int = usgn ? Intrinsic::arm64_neon_umull : Intrinsic::arm64_neon_smull;
5752 Int = Type.isPoly() ? Intrinsic::arm64_neon_pmull : Int;
5753 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vmull");
5754 case NEON::BI__builtin_neon_vmax_v:
5755 case NEON::BI__builtin_neon_vmaxq_v:
5756 // FIXME: improve sharing scheme to cope with 3 alternative LLVM intrinsics.
5757 Int = usgn ? Intrinsic::arm64_neon_umax : Intrinsic::arm64_neon_smax;
5758 if (Ty->isFPOrFPVectorTy()) Int = Intrinsic::arm64_neon_fmax;
5759 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vmax");
5760 case NEON::BI__builtin_neon_vmin_v:
5761 case NEON::BI__builtin_neon_vminq_v:
5762 // FIXME: improve sharing scheme to cope with 3 alternative LLVM intrinsics.
5763 Int = usgn ? Intrinsic::arm64_neon_umin : Intrinsic::arm64_neon_smin;
5764 if (Ty->isFPOrFPVectorTy()) Int = Intrinsic::arm64_neon_fmin;
5765 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vmin");
5766 case NEON::BI__builtin_neon_vabd_v:
5767 case NEON::BI__builtin_neon_vabdq_v:
5768 // FIXME: improve sharing scheme to cope with 3 alternative LLVM intrinsics.
5769 Int = usgn ? Intrinsic::arm64_neon_uabd : Intrinsic::arm64_neon_sabd;
5770 if (Ty->isFPOrFPVectorTy()) Int = Intrinsic::arm64_neon_fabd;
5771 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vabd");
5772 case NEON::BI__builtin_neon_vpadal_v:
5773 case NEON::BI__builtin_neon_vpadalq_v: {
5774 unsigned ArgElts = VTy->getNumElements();
5775 llvm::IntegerType *EltTy = cast<IntegerType>(VTy->getElementType());
5776 unsigned BitWidth = EltTy->getBitWidth();
5777 llvm::Type *ArgTy = llvm::VectorType::get(
5778 llvm::IntegerType::get(getLLVMContext(), BitWidth/2), 2*ArgElts);
5779 llvm::Type* Tys[2] = { VTy, ArgTy };
5780 Int = usgn ? Intrinsic::arm64_neon_uaddlp : Intrinsic::arm64_neon_saddlp;
5781 SmallVector<llvm::Value*, 1> TmpOps;
5782 TmpOps.push_back(Ops[1]);
5783 Function *F = CGM.getIntrinsic(Int, Tys);
5784 llvm::Value *tmp = EmitNeonCall(F, TmpOps, "vpadal");
5785 llvm::Value *addend = Builder.CreateBitCast(Ops[0], tmp->getType());
5786 return Builder.CreateAdd(tmp, addend);
5787 }
5788 case NEON::BI__builtin_neon_vpmin_v:
5789 case NEON::BI__builtin_neon_vpminq_v:
5790 // FIXME: improve sharing scheme to cope with 3 alternative LLVM intrinsics.
5791 Int = usgn ? Intrinsic::arm64_neon_uminp : Intrinsic::arm64_neon_sminp;
5792 if (Ty->isFPOrFPVectorTy()) Int = Intrinsic::arm64_neon_fminp;
5793 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vpmin");
5794 case NEON::BI__builtin_neon_vpmax_v:
5795 case NEON::BI__builtin_neon_vpmaxq_v:
5796 // FIXME: improve sharing scheme to cope with 3 alternative LLVM intrinsics.
5797 Int = usgn ? Intrinsic::arm64_neon_umaxp : Intrinsic::arm64_neon_smaxp;
5798 if (Ty->isFPOrFPVectorTy()) Int = Intrinsic::arm64_neon_fmaxp;
5799 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vpmax");
5800 case NEON::BI__builtin_neon_vminnm_v:
5801 case NEON::BI__builtin_neon_vminnmq_v:
5802 Int = Intrinsic::arm64_neon_fminnm;
5803 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vminnm");
5804 case NEON::BI__builtin_neon_vmaxnm_v:
5805 case NEON::BI__builtin_neon_vmaxnmq_v:
5806 Int = Intrinsic::arm64_neon_fmaxnm;
5807 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vmaxnm");
5808 case NEON::BI__builtin_neon_vrecpss_f32: {
5809 llvm::Type *f32Type = llvm::Type::getFloatTy(getLLVMContext());
5810 Ops.push_back(EmitScalarExpr(E->getArg(1)));
5811 return EmitNeonCall(CGM.getIntrinsic(Intrinsic::arm64_neon_frecps, f32Type),
5812 Ops, "vrecps");
5813 }
5814 case NEON::BI__builtin_neon_vrecpsd_f64: {
5815 llvm::Type *f64Type = llvm::Type::getDoubleTy(getLLVMContext());
5816 Ops.push_back(EmitScalarExpr(E->getArg(1)));
5817 return EmitNeonCall(CGM.getIntrinsic(Intrinsic::arm64_neon_frecps, f64Type),
5818 Ops, "vrecps");
5819 }
5820 case NEON::BI__builtin_neon_vrshr_n_v:
5821 case NEON::BI__builtin_neon_vrshrq_n_v:
5822 // FIXME: this can be shared with 32-bit ARM, but not AArch64 at the
5823 // moment. After the final merge it should be added to
5824 // EmitCommonNeonBuiltinExpr.
5825 Int = usgn ? Intrinsic::arm64_neon_urshl : Intrinsic::arm64_neon_srshl;
5826 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vrshr_n", 1, true);
5827 case NEON::BI__builtin_neon_vqshlu_n_v:
5828 case NEON::BI__builtin_neon_vqshluq_n_v:
5829 // FIXME: AArch64 and ARM use different intrinsics for this, but are
5830 // essentially compatible. It should be in EmitCommonNeonBuiltinExpr after
5831 // the final merge.
5832 Int = Intrinsic::arm64_neon_sqshlu;
5833 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vqshlu_n", 1, false);
5834 case NEON::BI__builtin_neon_vqshrun_n_v:
5835 // FIXME: as above
5836 Int = Intrinsic::arm64_neon_sqshrun;
5837 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vqshrun_n");
5838 case NEON::BI__builtin_neon_vqrshrun_n_v:
5839 // FIXME: and again.
5840 Int = Intrinsic::arm64_neon_sqrshrun;
5841 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vqrshrun_n");
5842 case NEON::BI__builtin_neon_vqshrn_n_v:
5843 // FIXME: guess
5844 Int = usgn ? Intrinsic::arm64_neon_uqshrn : Intrinsic::arm64_neon_sqshrn;
5845 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vqshrn_n");
5846 case NEON::BI__builtin_neon_vrshrn_n_v:
5847 // FIXME: there might be a pattern here.
5848 Int = Intrinsic::arm64_neon_rshrn;
5849 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vrshrn_n");
5850 case NEON::BI__builtin_neon_vqrshrn_n_v:
5851 // FIXME: another one
5852 Int = usgn ? Intrinsic::arm64_neon_uqrshrn : Intrinsic::arm64_neon_sqrshrn;
5853 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vqrshrn_n");
5854 case NEON::BI__builtin_neon_vrnda_v:
5855 case NEON::BI__builtin_neon_vrndaq_v: {
5856 Int = Intrinsic::round;
5857 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vrnda");
5858 }
5859 case NEON::BI__builtin_neon_vrndi_v:
5860 case NEON::BI__builtin_neon_vrndiq_v: {
5861 Int = Intrinsic::nearbyint;
5862 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vrndi");
5863 }
5864 case NEON::BI__builtin_neon_vrndm_v:
5865 case NEON::BI__builtin_neon_vrndmq_v: {
5866 Int = Intrinsic::floor;
5867 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vrndm");
5868 }
5869 case NEON::BI__builtin_neon_vrndn_v:
5870 case NEON::BI__builtin_neon_vrndnq_v: {
5871 Int = Intrinsic::arm64_neon_frintn;
5872 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vrndn");
5873 }
5874 case NEON::BI__builtin_neon_vrndp_v:
5875 case NEON::BI__builtin_neon_vrndpq_v: {
5876 Int = Intrinsic::ceil;
5877 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vrndp");
5878 }
5879 case NEON::BI__builtin_neon_vrndx_v:
5880 case NEON::BI__builtin_neon_vrndxq_v: {
5881 Int = Intrinsic::rint;
5882 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vrndx");
5883 }
5884 case NEON::BI__builtin_neon_vrnd_v:
5885 case NEON::BI__builtin_neon_vrndq_v: {
5886 Int = Intrinsic::trunc;
5887 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vrndz");
5888 }
5889 case NEON::BI__builtin_neon_vceqz_v:
5890 case NEON::BI__builtin_neon_vceqzq_v:
5891 return EmitAArch64CompareBuiltinExpr(Ops[0], Ty, ICmpInst::FCMP_OEQ,
5892 ICmpInst::ICMP_EQ, "vceqz");
5893 case NEON::BI__builtin_neon_vcgez_v:
5894 case NEON::BI__builtin_neon_vcgezq_v:
5895 return EmitAArch64CompareBuiltinExpr(Ops[0], Ty, ICmpInst::FCMP_OGE,
5896 ICmpInst::ICMP_SGE, "vcgez");
5897 case NEON::BI__builtin_neon_vclez_v:
5898 case NEON::BI__builtin_neon_vclezq_v:
5899 return EmitAArch64CompareBuiltinExpr(Ops[0], Ty, ICmpInst::FCMP_OLE,
5900 ICmpInst::ICMP_SLE, "vclez");
5901 case NEON::BI__builtin_neon_vcgtz_v:
5902 case NEON::BI__builtin_neon_vcgtzq_v:
5903 return EmitAArch64CompareBuiltinExpr(Ops[0], Ty, ICmpInst::FCMP_OGT,
5904 ICmpInst::ICMP_SGT, "vcgtz");
5905 case NEON::BI__builtin_neon_vcltz_v:
5906 case NEON::BI__builtin_neon_vcltzq_v:
5907 return EmitAArch64CompareBuiltinExpr(Ops[0], Ty, ICmpInst::FCMP_OLT,
5908 ICmpInst::ICMP_SLT, "vcltz");
5909 case NEON::BI__builtin_neon_vcvt_f64_v:
5910 case NEON::BI__builtin_neon_vcvtq_f64_v:
5911 Ops[0] = Builder.CreateBitCast(Ops[0], Ty);
5912 Ty = GetNeonType(this, NeonTypeFlags(NeonTypeFlags::Float64, false, quad));
5913 return usgn ? Builder.CreateUIToFP(Ops[0], Ty, "vcvt")
5914 : Builder.CreateSIToFP(Ops[0], Ty, "vcvt");
5915 case NEON::BI__builtin_neon_vcvt_f64_f32: {
5916 assert(Type.getEltType() == NeonTypeFlags::Float64 && quad &&
5917 "unexpected vcvt_f64_f32 builtin");
5918 NeonTypeFlags SrcFlag = NeonTypeFlags(NeonTypeFlags::Float32, false, false);
5919 Ops[0] = Builder.CreateBitCast(Ops[0], GetNeonType(this, SrcFlag));
5920
5921 return Builder.CreateFPExt(Ops[0], Ty, "vcvt");
5922 }
5923 case NEON::BI__builtin_neon_vcvt_f32_f64: {
5924 assert(Type.getEltType() == NeonTypeFlags::Float32 &&
5925 "unexpected vcvt_f32_f64 builtin");
5926 NeonTypeFlags SrcFlag = NeonTypeFlags(NeonTypeFlags::Float64, false, true);
5927 Ops[0] = Builder.CreateBitCast(Ops[0], GetNeonType(this, SrcFlag));
5928
5929 return Builder.CreateFPTrunc(Ops[0], Ty, "vcvt");
5930 }
5931 case NEON::BI__builtin_neon_vcvt_s32_v:
5932 case NEON::BI__builtin_neon_vcvt_u32_v:
5933 case NEON::BI__builtin_neon_vcvt_s64_v:
5934 case NEON::BI__builtin_neon_vcvt_u64_v:
5935 case NEON::BI__builtin_neon_vcvtq_s32_v:
5936 case NEON::BI__builtin_neon_vcvtq_u32_v:
5937 case NEON::BI__builtin_neon_vcvtq_s64_v:
5938 case NEON::BI__builtin_neon_vcvtq_u64_v: {
5939 bool Double =
5940 (cast<llvm::IntegerType>(VTy->getElementType())->getBitWidth() == 64);
5941 llvm::Type *InTy =
5942 GetNeonType(this,
5943 NeonTypeFlags(Double ? NeonTypeFlags::Float64
5944 : NeonTypeFlags::Float32, false, quad));
5945 Ops[0] = Builder.CreateBitCast(Ops[0], InTy);
5946 if (usgn)
5947 return Builder.CreateFPToUI(Ops[0], Ty);
5948 return Builder.CreateFPToSI(Ops[0], Ty);
5949 }
5950 case NEON::BI__builtin_neon_vcvta_s32_v:
5951 case NEON::BI__builtin_neon_vcvtaq_s32_v:
5952 case NEON::BI__builtin_neon_vcvta_u32_v:
5953 case NEON::BI__builtin_neon_vcvtaq_u32_v:
5954 case NEON::BI__builtin_neon_vcvta_s64_v:
5955 case NEON::BI__builtin_neon_vcvtaq_s64_v:
5956 case NEON::BI__builtin_neon_vcvta_u64_v:
5957 case NEON::BI__builtin_neon_vcvtaq_u64_v: {
5958 Int = usgn ? Intrinsic::arm64_neon_fcvtau : Intrinsic::arm64_neon_fcvtas;
5959 bool Double =
5960 (cast<llvm::IntegerType>(VTy->getElementType())->getBitWidth() == 64);
5961 llvm::Type *InTy =
5962 GetNeonType(this,
5963 NeonTypeFlags(Double ? NeonTypeFlags::Float64
5964 : NeonTypeFlags::Float32, false, quad));
5965 llvm::Type *Tys[2] = { Ty, InTy };
5966 return EmitNeonCall(CGM.getIntrinsic(Int, Tys), Ops, "vcvta");
5967 }
5968 case NEON::BI__builtin_neon_vcvtm_s32_v:
5969 case NEON::BI__builtin_neon_vcvtmq_s32_v:
5970 case NEON::BI__builtin_neon_vcvtm_u32_v:
5971 case NEON::BI__builtin_neon_vcvtmq_u32_v:
5972 case NEON::BI__builtin_neon_vcvtm_s64_v:
5973 case NEON::BI__builtin_neon_vcvtmq_s64_v:
5974 case NEON::BI__builtin_neon_vcvtm_u64_v:
5975 case NEON::BI__builtin_neon_vcvtmq_u64_v: {
5976 Int = usgn ? Intrinsic::arm64_neon_fcvtmu : Intrinsic::arm64_neon_fcvtms;
5977 bool Double =
5978 (cast<llvm::IntegerType>(VTy->getElementType())->getBitWidth() == 64);
5979 llvm::Type *InTy =
5980 GetNeonType(this,
5981 NeonTypeFlags(Double ? NeonTypeFlags::Float64
5982 : NeonTypeFlags::Float32, false, quad));
5983 llvm::Type *Tys[2] = { Ty, InTy };
5984 return EmitNeonCall(CGM.getIntrinsic(Int, Tys), Ops, "vcvtm");
5985 }
5986 case NEON::BI__builtin_neon_vcvtn_s32_v:
5987 case NEON::BI__builtin_neon_vcvtnq_s32_v:
5988 case NEON::BI__builtin_neon_vcvtn_u32_v:
5989 case NEON::BI__builtin_neon_vcvtnq_u32_v:
5990 case NEON::BI__builtin_neon_vcvtn_s64_v:
5991 case NEON::BI__builtin_neon_vcvtnq_s64_v:
5992 case NEON::BI__builtin_neon_vcvtn_u64_v:
5993 case NEON::BI__builtin_neon_vcvtnq_u64_v: {
5994 Int = usgn ? Intrinsic::arm64_neon_fcvtnu : Intrinsic::arm64_neon_fcvtns;
5995 bool Double =
5996 (cast<llvm::IntegerType>(VTy->getElementType())->getBitWidth() == 64);
5997 llvm::Type *InTy =
5998 GetNeonType(this,
5999 NeonTypeFlags(Double ? NeonTypeFlags::Float64
6000 : NeonTypeFlags::Float32, false, quad));
6001 llvm::Type *Tys[2] = { Ty, InTy };
6002 return EmitNeonCall(CGM.getIntrinsic(Int, Tys), Ops, "vcvtn");
6003 }
6004 case NEON::BI__builtin_neon_vcvtp_s32_v:
6005 case NEON::BI__builtin_neon_vcvtpq_s32_v:
6006 case NEON::BI__builtin_neon_vcvtp_u32_v:
6007 case NEON::BI__builtin_neon_vcvtpq_u32_v:
6008 case NEON::BI__builtin_neon_vcvtp_s64_v:
6009 case NEON::BI__builtin_neon_vcvtpq_s64_v:
6010 case NEON::BI__builtin_neon_vcvtp_u64_v:
6011 case NEON::BI__builtin_neon_vcvtpq_u64_v: {
6012 Int = usgn ? Intrinsic::arm64_neon_fcvtpu : Intrinsic::arm64_neon_fcvtps;
6013 bool Double =
6014 (cast<llvm::IntegerType>(VTy->getElementType())->getBitWidth() == 64);
6015 llvm::Type *InTy =
6016 GetNeonType(this,
6017 NeonTypeFlags(Double ? NeonTypeFlags::Float64
6018 : NeonTypeFlags::Float32, false, quad));
6019 llvm::Type *Tys[2] = { Ty, InTy };
6020 return EmitNeonCall(CGM.getIntrinsic(Int, Tys), Ops, "vcvtp");
6021 }
6022 case NEON::BI__builtin_neon_vmulx_v:
6023 case NEON::BI__builtin_neon_vmulxq_v: {
6024 Int = Intrinsic::arm64_neon_fmulx;
6025 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vmulx");
6026 }
6027 case NEON::BI__builtin_neon_vmul_lane_v:
6028 case NEON::BI__builtin_neon_vmul_laneq_v: {
6029 // v1f64 vmul_lane should be mapped to Neon scalar mul lane
6030 bool Quad = false;
6031 if (BuiltinID == NEON::BI__builtin_neon_vmul_laneq_v)
6032 Quad = true;
6033 Ops[0] = Builder.CreateBitCast(Ops[0], DoubleTy);
6034 llvm::Type *VTy = GetNeonType(this,
6035 NeonTypeFlags(NeonTypeFlags::Float64, false, Quad));
6036 Ops[1] = Builder.CreateBitCast(Ops[1], VTy);
6037 Ops[1] = Builder.CreateExtractElement(Ops[1], Ops[2], "extract");
6038 Value *Result = Builder.CreateFMul(Ops[0], Ops[1]);
6039 return Builder.CreateBitCast(Result, Ty);
6040 }
6041 case NEON::BI__builtin_neon_vpmaxnm_v:
6042 case NEON::BI__builtin_neon_vpmaxnmq_v: {
6043 Int = Intrinsic::arm64_neon_fmaxnmp;
6044 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vpmaxnm");
6045 }
6046 case NEON::BI__builtin_neon_vpminnm_v:
6047 case NEON::BI__builtin_neon_vpminnmq_v: {
6048 Int = Intrinsic::arm64_neon_fminnmp;
6049 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vpminnm");
6050 }
6051 case NEON::BI__builtin_neon_vsqrt_v:
6052 case NEON::BI__builtin_neon_vsqrtq_v: {
6053 Int = Intrinsic::sqrt;
6054 Ops[0] = Builder.CreateBitCast(Ops[0], Ty);
6055 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vsqrt");
6056 }
6057 case NEON::BI__builtin_neon_vrbit_v:
6058 case NEON::BI__builtin_neon_vrbitq_v: {
6059 Int = Intrinsic::arm64_neon_rbit;
6060 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vrbit");
6061 }
6062 case NEON::BI__builtin_neon_vaddv_u8:
6063 // FIXME: These are handled by the AArch64 scalar code.
6064 usgn = true;
6065 // FALLTHROUGH
6066 case NEON::BI__builtin_neon_vaddv_s8: {
6067 Int = usgn ? Intrinsic::arm64_neon_uaddv : Intrinsic::arm64_neon_saddv;
6068 Ty = llvm::IntegerType::get(getLLVMContext(), 32);
6069 VTy =
6070 llvm::VectorType::get(llvm::IntegerType::get(getLLVMContext(), 8), 8);
6071 llvm::Type *Tys[2] = { Ty, VTy };
6072 Ops.push_back(EmitScalarExpr(E->getArg(0)));
6073 Ops[0] = EmitNeonCall(CGM.getIntrinsic(Int, Tys), Ops, "vaddv");
6074 return Builder.CreateTrunc(Ops[0],
6075 llvm::IntegerType::get(getLLVMContext(), 8));
6076 }
6077 case NEON::BI__builtin_neon_vaddv_u16:
6078 usgn = true;
6079 // FALLTHROUGH
6080 case NEON::BI__builtin_neon_vaddv_s16: {
6081 Int = usgn ? Intrinsic::arm64_neon_uaddv : Intrinsic::arm64_neon_saddv;
6082 Ty = llvm::IntegerType::get(getLLVMContext(), 32);
6083 VTy =
6084 llvm::VectorType::get(llvm::IntegerType::get(getLLVMContext(), 16), 4);
6085 llvm::Type *Tys[2] = { Ty, VTy };
6086 Ops.push_back(EmitScalarExpr(E->getArg(0)));
6087 Ops[0] = EmitNeonCall(CGM.getIntrinsic(Int, Tys), Ops, "vaddv");
6088 return Builder.CreateTrunc(Ops[0],
6089 llvm::IntegerType::get(getLLVMContext(), 16));
6090 }
6091 case NEON::BI__builtin_neon_vaddvq_u8:
6092 usgn = true;
6093 // FALLTHROUGH
6094 case NEON::BI__builtin_neon_vaddvq_s8: {
6095 Int = usgn ? Intrinsic::arm64_neon_uaddv : Intrinsic::arm64_neon_saddv;
6096 Ty = llvm::IntegerType::get(getLLVMContext(), 32);
6097 VTy =
6098 llvm::VectorType::get(llvm::IntegerType::get(getLLVMContext(), 8), 16);
6099 llvm::Type *Tys[2] = { Ty, VTy };
6100 Ops.push_back(EmitScalarExpr(E->getArg(0)));
6101 Ops[0] = EmitNeonCall(CGM.getIntrinsic(Int, Tys), Ops, "vaddv");
6102 return Builder.CreateTrunc(Ops[0],
6103 llvm::IntegerType::get(getLLVMContext(), 8));
6104 }
6105 case NEON::BI__builtin_neon_vaddvq_u16:
6106 usgn = true;
6107 // FALLTHROUGH
6108 case NEON::BI__builtin_neon_vaddvq_s16: {
6109 Int = usgn ? Intrinsic::arm64_neon_uaddv : Intrinsic::arm64_neon_saddv;
6110 Ty = llvm::IntegerType::get(getLLVMContext(), 32);
6111 VTy =
6112 llvm::VectorType::get(llvm::IntegerType::get(getLLVMContext(), 16), 8);
6113 llvm::Type *Tys[2] = { Ty, VTy };
6114 Ops.push_back(EmitScalarExpr(E->getArg(0)));
6115 Ops[0] = EmitNeonCall(CGM.getIntrinsic(Int, Tys), Ops, "vaddv");
6116 return Builder.CreateTrunc(Ops[0],
6117 llvm::IntegerType::get(getLLVMContext(), 16));
6118 }
6119 case NEON::BI__builtin_neon_vmaxv_u8: {
6120 Int = Intrinsic::arm64_neon_umaxv;
6121 Ty = llvm::IntegerType::get(getLLVMContext(), 32);
6122 VTy =
6123 llvm::VectorType::get(llvm::IntegerType::get(getLLVMContext(), 8), 8);
6124 llvm::Type *Tys[2] = { Ty, VTy };
6125 Ops.push_back(EmitScalarExpr(E->getArg(0)));
6126 Ops[0] = EmitNeonCall(CGM.getIntrinsic(Int, Tys), Ops, "vmaxv");
6127 return Builder.CreateTrunc(Ops[0],
6128 llvm::IntegerType::get(getLLVMContext(), 8));
6129 }
6130 case NEON::BI__builtin_neon_vmaxv_u16: {
6131 Int = Intrinsic::arm64_neon_umaxv;
6132 Ty = llvm::IntegerType::get(getLLVMContext(), 32);
6133 VTy =
6134 llvm::VectorType::get(llvm::IntegerType::get(getLLVMContext(), 16), 4);
6135 llvm::Type *Tys[2] = { Ty, VTy };
6136 Ops.push_back(EmitScalarExpr(E->getArg(0)));
6137 Ops[0] = EmitNeonCall(CGM.getIntrinsic(Int, Tys), Ops, "vmaxv");
6138 return Builder.CreateTrunc(Ops[0],
6139 llvm::IntegerType::get(getLLVMContext(), 16));
6140 }
6141 case NEON::BI__builtin_neon_vmaxvq_u8: {
6142 Int = Intrinsic::arm64_neon_umaxv;
6143 Ty = llvm::IntegerType::get(getLLVMContext(), 32);
6144 VTy =
6145 llvm::VectorType::get(llvm::IntegerType::get(getLLVMContext(), 8), 16);
6146 llvm::Type *Tys[2] = { Ty, VTy };
6147 Ops.push_back(EmitScalarExpr(E->getArg(0)));
6148 Ops[0] = EmitNeonCall(CGM.getIntrinsic(Int, Tys), Ops, "vmaxv");
6149 return Builder.CreateTrunc(Ops[0],
6150 llvm::IntegerType::get(getLLVMContext(), 8));
6151 }
6152 case NEON::BI__builtin_neon_vmaxvq_u16: {
6153 Int = Intrinsic::arm64_neon_umaxv;
6154 Ty = llvm::IntegerType::get(getLLVMContext(), 32);
6155 VTy =
6156 llvm::VectorType::get(llvm::IntegerType::get(getLLVMContext(), 16), 8);
6157 llvm::Type *Tys[2] = { Ty, VTy };
6158 Ops.push_back(EmitScalarExpr(E->getArg(0)));
6159 Ops[0] = EmitNeonCall(CGM.getIntrinsic(Int, Tys), Ops, "vmaxv");
6160 return Builder.CreateTrunc(Ops[0],
6161 llvm::IntegerType::get(getLLVMContext(), 16));
6162 }
6163 case NEON::BI__builtin_neon_vmaxv_s8: {
6164 Int = Intrinsic::arm64_neon_smaxv;
6165 Ty = llvm::IntegerType::get(getLLVMContext(), 32);
6166 VTy =
6167 llvm::VectorType::get(llvm::IntegerType::get(getLLVMContext(), 8), 8);
6168 llvm::Type *Tys[2] = { Ty, VTy };
6169 Ops.push_back(EmitScalarExpr(E->getArg(0)));
6170 Ops[0] = EmitNeonCall(CGM.getIntrinsic(Int, Tys), Ops, "vmaxv");
6171 return Builder.CreateTrunc(Ops[0],
6172 llvm::IntegerType::get(getLLVMContext(), 8));
6173 }
6174 case NEON::BI__builtin_neon_vmaxv_s16: {
6175 Int = Intrinsic::arm64_neon_smaxv;
6176 Ty = llvm::IntegerType::get(getLLVMContext(), 32);
6177 VTy =
6178 llvm::VectorType::get(llvm::IntegerType::get(getLLVMContext(), 16), 4);
6179 llvm::Type *Tys[2] = { Ty, VTy };
6180 Ops.push_back(EmitScalarExpr(E->getArg(0)));
6181 Ops[0] = EmitNeonCall(CGM.getIntrinsic(Int, Tys), Ops, "vmaxv");
6182 return Builder.CreateTrunc(Ops[0],
6183 llvm::IntegerType::get(getLLVMContext(), 16));
6184 }
6185 case NEON::BI__builtin_neon_vmaxvq_s8: {
6186 Int = Intrinsic::arm64_neon_smaxv;
6187 Ty = llvm::IntegerType::get(getLLVMContext(), 32);
6188 VTy =
6189 llvm::VectorType::get(llvm::IntegerType::get(getLLVMContext(), 8), 16);
6190 llvm::Type *Tys[2] = { Ty, VTy };
6191 Ops.push_back(EmitScalarExpr(E->getArg(0)));
6192 Ops[0] = EmitNeonCall(CGM.getIntrinsic(Int, Tys), Ops, "vmaxv");
6193 return Builder.CreateTrunc(Ops[0],
6194 llvm::IntegerType::get(getLLVMContext(), 8));
6195 }
6196 case NEON::BI__builtin_neon_vmaxvq_s16: {
6197 Int = Intrinsic::arm64_neon_smaxv;
6198 Ty = llvm::IntegerType::get(getLLVMContext(), 32);
6199 VTy =
6200 llvm::VectorType::get(llvm::IntegerType::get(getLLVMContext(), 16), 8);
6201 llvm::Type *Tys[2] = { Ty, VTy };
6202 Ops.push_back(EmitScalarExpr(E->getArg(0)));
6203 Ops[0] = EmitNeonCall(CGM.getIntrinsic(Int, Tys), Ops, "vmaxv");
6204 return Builder.CreateTrunc(Ops[0],
6205 llvm::IntegerType::get(getLLVMContext(), 16));
6206 }
6207 case NEON::BI__builtin_neon_vminv_u8: {
6208 Int = Intrinsic::arm64_neon_uminv;
6209 Ty = llvm::IntegerType::get(getLLVMContext(), 32);
6210 VTy =
6211 llvm::VectorType::get(llvm::IntegerType::get(getLLVMContext(), 8), 8);
6212 llvm::Type *Tys[2] = { Ty, VTy };
6213 Ops.push_back(EmitScalarExpr(E->getArg(0)));
6214 Ops[0] = EmitNeonCall(CGM.getIntrinsic(Int, Tys), Ops, "vminv");
6215 return Builder.CreateTrunc(Ops[0],
6216 llvm::IntegerType::get(getLLVMContext(), 8));
6217 }
6218 case NEON::BI__builtin_neon_vminv_u16: {
6219 Int = Intrinsic::arm64_neon_uminv;
6220 Ty = llvm::IntegerType::get(getLLVMContext(), 32);
6221 VTy =
6222 llvm::VectorType::get(llvm::IntegerType::get(getLLVMContext(), 16), 4);
6223 llvm::Type *Tys[2] = { Ty, VTy };
6224 Ops.push_back(EmitScalarExpr(E->getArg(0)));
6225 Ops[0] = EmitNeonCall(CGM.getIntrinsic(Int, Tys), Ops, "vminv");
6226 return Builder.CreateTrunc(Ops[0],
6227 llvm::IntegerType::get(getLLVMContext(), 16));
6228 }
6229 case NEON::BI__builtin_neon_vminvq_u8: {
6230 Int = Intrinsic::arm64_neon_uminv;
6231 Ty = llvm::IntegerType::get(getLLVMContext(), 32);
6232 VTy =
6233 llvm::VectorType::get(llvm::IntegerType::get(getLLVMContext(), 8), 16);
6234 llvm::Type *Tys[2] = { Ty, VTy };
6235 Ops.push_back(EmitScalarExpr(E->getArg(0)));
6236 Ops[0] = EmitNeonCall(CGM.getIntrinsic(Int, Tys), Ops, "vminv");
6237 return Builder.CreateTrunc(Ops[0],
6238 llvm::IntegerType::get(getLLVMContext(), 8));
6239 }
6240 case NEON::BI__builtin_neon_vminvq_u16: {
6241 Int = Intrinsic::arm64_neon_uminv;
6242 Ty = llvm::IntegerType::get(getLLVMContext(), 32);
6243 VTy =
6244 llvm::VectorType::get(llvm::IntegerType::get(getLLVMContext(), 16), 8);
6245 llvm::Type *Tys[2] = { Ty, VTy };
6246 Ops.push_back(EmitScalarExpr(E->getArg(0)));
6247 Ops[0] = EmitNeonCall(CGM.getIntrinsic(Int, Tys), Ops, "vminv");
6248 return Builder.CreateTrunc(Ops[0],
6249 llvm::IntegerType::get(getLLVMContext(), 16));
6250 }
6251 case NEON::BI__builtin_neon_vminv_s8: {
6252 Int = Intrinsic::arm64_neon_sminv;
6253 Ty = llvm::IntegerType::get(getLLVMContext(), 32);
6254 VTy =
6255 llvm::VectorType::get(llvm::IntegerType::get(getLLVMContext(), 8), 8);
6256 llvm::Type *Tys[2] = { Ty, VTy };
6257 Ops.push_back(EmitScalarExpr(E->getArg(0)));
6258 Ops[0] = EmitNeonCall(CGM.getIntrinsic(Int, Tys), Ops, "vminv");
6259 return Builder.CreateTrunc(Ops[0],
6260 llvm::IntegerType::get(getLLVMContext(), 8));
6261 }
6262 case NEON::BI__builtin_neon_vminv_s16: {
6263 Int = Intrinsic::arm64_neon_sminv;
6264 Ty = llvm::IntegerType::get(getLLVMContext(), 32);
6265 VTy =
6266 llvm::VectorType::get(llvm::IntegerType::get(getLLVMContext(), 16), 4);
6267 llvm::Type *Tys[2] = { Ty, VTy };
6268 Ops.push_back(EmitScalarExpr(E->getArg(0)));
6269 Ops[0] = EmitNeonCall(CGM.getIntrinsic(Int, Tys), Ops, "vminv");
6270 return Builder.CreateTrunc(Ops[0],
6271 llvm::IntegerType::get(getLLVMContext(), 16));
6272 }
6273 case NEON::BI__builtin_neon_vminvq_s8: {
6274 Int = Intrinsic::arm64_neon_sminv;
6275 Ty = llvm::IntegerType::get(getLLVMContext(), 32);
6276 VTy =
6277 llvm::VectorType::get(llvm::IntegerType::get(getLLVMContext(), 8), 16);
6278 llvm::Type *Tys[2] = { Ty, VTy };
6279 Ops.push_back(EmitScalarExpr(E->getArg(0)));
6280 Ops[0] = EmitNeonCall(CGM.getIntrinsic(Int, Tys), Ops, "vminv");
6281 return Builder.CreateTrunc(Ops[0],
6282 llvm::IntegerType::get(getLLVMContext(), 8));
6283 }
6284 case NEON::BI__builtin_neon_vminvq_s16: {
6285 Int = Intrinsic::arm64_neon_sminv;
6286 Ty = llvm::IntegerType::get(getLLVMContext(), 32);
6287 VTy =
6288 llvm::VectorType::get(llvm::IntegerType::get(getLLVMContext(), 16), 8);
6289 llvm::Type *Tys[2] = { Ty, VTy };
6290 Ops.push_back(EmitScalarExpr(E->getArg(0)));
6291 Ops[0] = EmitNeonCall(CGM.getIntrinsic(Int, Tys), Ops, "vminv");
6292 return Builder.CreateTrunc(Ops[0],
6293 llvm::IntegerType::get(getLLVMContext(), 16));
6294 }
6295 case NEON::BI__builtin_neon_vmul_n_f64: {
6296 Ops[0] = Builder.CreateBitCast(Ops[0], DoubleTy);
6297 Value *RHS = Builder.CreateBitCast(EmitScalarExpr(E->getArg(1)), DoubleTy);
6298 return Builder.CreateFMul(Ops[0], RHS);
6299 }
6300 case NEON::BI__builtin_neon_vaddlv_u8: {
6301 Int = Intrinsic::arm64_neon_uaddlv;
6302 Ty = llvm::IntegerType::get(getLLVMContext(), 32);
6303 VTy =
6304 llvm::VectorType::get(llvm::IntegerType::get(getLLVMContext(), 8), 8);
6305 llvm::Type *Tys[2] = { Ty, VTy };
6306 Ops.push_back(EmitScalarExpr(E->getArg(0)));
6307 Ops[0] = EmitNeonCall(CGM.getIntrinsic(Int, Tys), Ops, "vaddlv");
6308 return Builder.CreateTrunc(Ops[0],
6309 llvm::IntegerType::get(getLLVMContext(), 16));
6310 }
6311 case NEON::BI__builtin_neon_vaddlv_u16: {
6312 Int = Intrinsic::arm64_neon_uaddlv;
6313 Ty = llvm::IntegerType::get(getLLVMContext(), 32);
6314 VTy =
6315 llvm::VectorType::get(llvm::IntegerType::get(getLLVMContext(), 16), 4);
6316 llvm::Type *Tys[2] = { Ty, VTy };
6317 Ops.push_back(EmitScalarExpr(E->getArg(0)));
6318 return EmitNeonCall(CGM.getIntrinsic(Int, Tys), Ops, "vaddlv");
6319 }
6320 case NEON::BI__builtin_neon_vaddlvq_u8: {
6321 Int = Intrinsic::arm64_neon_uaddlv;
6322 Ty = llvm::IntegerType::get(getLLVMContext(), 32);
6323 VTy =
6324 llvm::VectorType::get(llvm::IntegerType::get(getLLVMContext(), 8), 16);
6325 llvm::Type *Tys[2] = { Ty, VTy };
6326 Ops.push_back(EmitScalarExpr(E->getArg(0)));
6327 Ops[0] = EmitNeonCall(CGM.getIntrinsic(Int, Tys), Ops, "vaddlv");
6328 return Builder.CreateTrunc(Ops[0],
6329 llvm::IntegerType::get(getLLVMContext(), 16));
6330 }
6331 case NEON::BI__builtin_neon_vaddlvq_u16: {
6332 Int = Intrinsic::arm64_neon_uaddlv;
6333 Ty = llvm::IntegerType::get(getLLVMContext(), 32);
6334 VTy =
6335 llvm::VectorType::get(llvm::IntegerType::get(getLLVMContext(), 16), 8);
6336 llvm::Type *Tys[2] = { Ty, VTy };
6337 Ops.push_back(EmitScalarExpr(E->getArg(0)));
6338 return EmitNeonCall(CGM.getIntrinsic(Int, Tys), Ops, "vaddlv");
6339 }
6340 case NEON::BI__builtin_neon_vaddlv_s8: {
6341 Int = Intrinsic::arm64_neon_saddlv;
6342 Ty = llvm::IntegerType::get(getLLVMContext(), 32);
6343 VTy =
6344 llvm::VectorType::get(llvm::IntegerType::get(getLLVMContext(), 8), 8);
6345 llvm::Type *Tys[2] = { Ty, VTy };
6346 Ops.push_back(EmitScalarExpr(E->getArg(0)));
6347 Ops[0] = EmitNeonCall(CGM.getIntrinsic(Int, Tys), Ops, "vaddlv");
6348 return Builder.CreateTrunc(Ops[0],
6349 llvm::IntegerType::get(getLLVMContext(), 16));
6350 }
6351 case NEON::BI__builtin_neon_vaddlv_s16: {
6352 Int = Intrinsic::arm64_neon_saddlv;
6353 Ty = llvm::IntegerType::get(getLLVMContext(), 32);
6354 VTy =
6355 llvm::VectorType::get(llvm::IntegerType::get(getLLVMContext(), 16), 4);
6356 llvm::Type *Tys[2] = { Ty, VTy };
6357 Ops.push_back(EmitScalarExpr(E->getArg(0)));
6358 return EmitNeonCall(CGM.getIntrinsic(Int, Tys), Ops, "vaddlv");
6359 }
6360 case NEON::BI__builtin_neon_vaddlvq_s8: {
6361 Int = Intrinsic::arm64_neon_saddlv;
6362 Ty = llvm::IntegerType::get(getLLVMContext(), 32);
6363 VTy =
6364 llvm::VectorType::get(llvm::IntegerType::get(getLLVMContext(), 8), 16);
6365 llvm::Type *Tys[2] = { Ty, VTy };
6366 Ops.push_back(EmitScalarExpr(E->getArg(0)));
6367 Ops[0] = EmitNeonCall(CGM.getIntrinsic(Int, Tys), Ops, "vaddlv");
6368 return Builder.CreateTrunc(Ops[0],
6369 llvm::IntegerType::get(getLLVMContext(), 16));
6370 }
6371 case NEON::BI__builtin_neon_vaddlvq_s16: {
6372 Int = Intrinsic::arm64_neon_saddlv;
6373 Ty = llvm::IntegerType::get(getLLVMContext(), 32);
6374 VTy =
6375 llvm::VectorType::get(llvm::IntegerType::get(getLLVMContext(), 16), 8);
6376 llvm::Type *Tys[2] = { Ty, VTy };
6377 Ops.push_back(EmitScalarExpr(E->getArg(0)));
6378 return EmitNeonCall(CGM.getIntrinsic(Int, Tys), Ops, "vaddlv");
6379 }
6380 case NEON::BI__builtin_neon_vsri_n_v:
6381 case NEON::BI__builtin_neon_vsriq_n_v: {
6382 Int = Intrinsic::arm64_neon_vsri;
6383 llvm::Function *Intrin = CGM.getIntrinsic(Int, Ty);
6384 return EmitNeonCall(Intrin, Ops, "vsri_n");
6385 }
6386 case NEON::BI__builtin_neon_vsli_n_v:
6387 case NEON::BI__builtin_neon_vsliq_n_v: {
6388 Int = Intrinsic::arm64_neon_vsli;
6389 llvm::Function *Intrin = CGM.getIntrinsic(Int, Ty);
6390 return EmitNeonCall(Intrin, Ops, "vsli_n");
6391 }
6392 case NEON::BI__builtin_neon_vsra_n_v:
6393 case NEON::BI__builtin_neon_vsraq_n_v:
6394 Ops[0] = Builder.CreateBitCast(Ops[0], Ty);
6395 Ops[1] = EmitNeonRShiftImm(Ops[1], Ops[2], Ty, usgn, "vsra_n");
6396 return Builder.CreateAdd(Ops[0], Ops[1]);
6397 case NEON::BI__builtin_neon_vrsra_n_v:
6398 case NEON::BI__builtin_neon_vrsraq_n_v: {
6399 Int = usgn ? Intrinsic::arm64_neon_urshl : Intrinsic::arm64_neon_srshl;
6400 SmallVector<llvm::Value*,2> TmpOps;
6401 TmpOps.push_back(Ops[1]);
6402 TmpOps.push_back(Ops[2]);
6403 Function* F = CGM.getIntrinsic(Int, Ty);
6404 llvm::Value *tmp = EmitNeonCall(F, TmpOps, "vrshr_n", 1, true);
6405 Ops[0] = Builder.CreateBitCast(Ops[0], VTy);
6406 return Builder.CreateAdd(Ops[0], tmp);
6407 }
6408 // FIXME: Sharing loads & stores with 32-bit is complicated by the absence
6409 // of an Align parameter here.
6410 case NEON::BI__builtin_neon_vld1_x2_v:
6411 case NEON::BI__builtin_neon_vld1q_x2_v:
6412 case NEON::BI__builtin_neon_vld1_x3_v:
6413 case NEON::BI__builtin_neon_vld1q_x3_v:
6414 case NEON::BI__builtin_neon_vld1_x4_v:
6415 case NEON::BI__builtin_neon_vld1q_x4_v: {
6416 llvm::Type *PTy = llvm::PointerType::getUnqual(VTy->getVectorElementType());
6417 Ops[1] = Builder.CreateBitCast(Ops[1], PTy);
6418 llvm::Type *Tys[2] = { VTy, PTy };
6419 unsigned Int;
6420 switch (BuiltinID) {
6421 case NEON::BI__builtin_neon_vld1_x2_v:
6422 case NEON::BI__builtin_neon_vld1q_x2_v:
6423 Int = Intrinsic::arm64_neon_ld1x2;
6424 break;
6425 case NEON::BI__builtin_neon_vld1_x3_v:
6426 case NEON::BI__builtin_neon_vld1q_x3_v:
6427 Int = Intrinsic::arm64_neon_ld1x3;
6428 break;
6429 case NEON::BI__builtin_neon_vld1_x4_v:
6430 case NEON::BI__builtin_neon_vld1q_x4_v:
6431 Int = Intrinsic::arm64_neon_ld1x4;
6432 break;
6433 }
6434 Function *F = CGM.getIntrinsic(Int, Tys);
6435 Ops[1] = Builder.CreateCall(F, Ops[1], "vld1xN");
6436 Ty = llvm::PointerType::getUnqual(Ops[1]->getType());
6437 Ops[0] = Builder.CreateBitCast(Ops[0], Ty);
6438 return Builder.CreateStore(Ops[1], Ops[0]);
6439 }
6440 case NEON::BI__builtin_neon_vst1_x2_v:
6441 case NEON::BI__builtin_neon_vst1q_x2_v:
6442 case NEON::BI__builtin_neon_vst1_x3_v:
6443 case NEON::BI__builtin_neon_vst1q_x3_v:
6444 case NEON::BI__builtin_neon_vst1_x4_v:
6445 case NEON::BI__builtin_neon_vst1q_x4_v: {
6446 llvm::Type *PTy = llvm::PointerType::getUnqual(VTy->getVectorElementType());
6447 llvm::Type *Tys[2] = { VTy, PTy };
6448 unsigned Int;
6449 switch (BuiltinID) {
6450 case NEON::BI__builtin_neon_vst1_x2_v:
6451 case NEON::BI__builtin_neon_vst1q_x2_v:
6452 Int = Intrinsic::arm64_neon_st1x2;
6453 break;
6454 case NEON::BI__builtin_neon_vst1_x3_v:
6455 case NEON::BI__builtin_neon_vst1q_x3_v:
6456 Int = Intrinsic::arm64_neon_st1x3;
6457 break;
6458 case NEON::BI__builtin_neon_vst1_x4_v:
6459 case NEON::BI__builtin_neon_vst1q_x4_v:
6460 Int = Intrinsic::arm64_neon_st1x4;
6461 break;
6462 }
6463 SmallVector<Value *, 4> IntOps(Ops.begin()+1, Ops.end());
6464 IntOps.push_back(Ops[0]);
6465 return EmitNeonCall(CGM.getIntrinsic(Int, Tys), IntOps, "");
6466 }
6467 case NEON::BI__builtin_neon_vld1_v:
6468 case NEON::BI__builtin_neon_vld1q_v:
6469 Ops[0] = Builder.CreateBitCast(Ops[0], llvm::PointerType::getUnqual(VTy));
6470 return Builder.CreateLoad(Ops[0]);
6471 case NEON::BI__builtin_neon_vst1_v:
6472 case NEON::BI__builtin_neon_vst1q_v:
6473 Ops[0] = Builder.CreateBitCast(Ops[0], llvm::PointerType::getUnqual(VTy));
6474 Ops[1] = Builder.CreateBitCast(Ops[1], VTy);
6475 return Builder.CreateStore(Ops[1], Ops[0]);
6476 case NEON::BI__builtin_neon_vld1_lane_v:
6477 case NEON::BI__builtin_neon_vld1q_lane_v:
6478 Ops[1] = Builder.CreateBitCast(Ops[1], Ty);
6479 Ty = llvm::PointerType::getUnqual(VTy->getElementType());
6480 Ops[0] = Builder.CreateBitCast(Ops[0], Ty);
6481 Ops[0] = Builder.CreateLoad(Ops[0]);
6482 return Builder.CreateInsertElement(Ops[1], Ops[0], Ops[2], "vld1_lane");
6483 case NEON::BI__builtin_neon_vld1_dup_v:
6484 case NEON::BI__builtin_neon_vld1q_dup_v: {
6485 Value *V = UndefValue::get(Ty);
6486 Ty = llvm::PointerType::getUnqual(VTy->getElementType());
6487 Ops[0] = Builder.CreateBitCast(Ops[0], Ty);
6488 Ops[0] = Builder.CreateLoad(Ops[0]);
6489 llvm::Constant *CI = ConstantInt::get(Int32Ty, 0);
6490 Ops[0] = Builder.CreateInsertElement(V, Ops[0], CI);
6491 return EmitNeonSplat(Ops[0], CI);
6492 }
6493 case NEON::BI__builtin_neon_vst1_lane_v:
6494 case NEON::BI__builtin_neon_vst1q_lane_v:
6495 Ops[1] = Builder.CreateBitCast(Ops[1], Ty);
6496 Ops[1] = Builder.CreateExtractElement(Ops[1], Ops[2]);
6497 Ty = llvm::PointerType::getUnqual(Ops[1]->getType());
6498 return Builder.CreateStore(Ops[1], Builder.CreateBitCast(Ops[0], Ty));
6499 case NEON::BI__builtin_neon_vld2_v:
6500 case NEON::BI__builtin_neon_vld2q_v: {
6501 llvm::Type *PTy = llvm::PointerType::getUnqual(VTy);
6502 Ops[1] = Builder.CreateBitCast(Ops[1], PTy);
6503 llvm::Type *Tys[2] = { VTy, PTy };
6504 Function *F = CGM.getIntrinsic(Intrinsic::arm64_neon_ld2, Tys);
6505 Ops[1] = Builder.CreateCall(F, Ops[1], "vld2");
6506 Ops[0] = Builder.CreateBitCast(Ops[0],
6507 llvm::PointerType::getUnqual(Ops[1]->getType()));
6508 return Builder.CreateStore(Ops[1], Ops[0]);
6509 }
6510 case NEON::BI__builtin_neon_vld3_v:
6511 case NEON::BI__builtin_neon_vld3q_v: {
6512 llvm::Type *PTy = llvm::PointerType::getUnqual(VTy);
6513 Ops[1] = Builder.CreateBitCast(Ops[1], PTy);
6514 llvm::Type *Tys[2] = { VTy, PTy };
6515 Function *F = CGM.getIntrinsic(Intrinsic::arm64_neon_ld3, Tys);
6516 Ops[1] = Builder.CreateCall(F, Ops[1], "vld3");
6517 Ops[0] = Builder.CreateBitCast(Ops[0],
6518 llvm::PointerType::getUnqual(Ops[1]->getType()));
6519 return Builder.CreateStore(Ops[1], Ops[0]);
6520 }
6521 case NEON::BI__builtin_neon_vld4_v:
6522 case NEON::BI__builtin_neon_vld4q_v: {
6523 llvm::Type *PTy = llvm::PointerType::getUnqual(VTy);
6524 Ops[1] = Builder.CreateBitCast(Ops[1], PTy);
6525 llvm::Type *Tys[2] = { VTy, PTy };
6526 Function *F = CGM.getIntrinsic(Intrinsic::arm64_neon_ld4, Tys);
6527 Ops[1] = Builder.CreateCall(F, Ops[1], "vld4");
6528 Ops[0] = Builder.CreateBitCast(Ops[0],
6529 llvm::PointerType::getUnqual(Ops[1]->getType()));
6530 return Builder.CreateStore(Ops[1], Ops[0]);
6531 }
6532 case NEON::BI__builtin_neon_vld2_dup_v: {
6533 llvm::Type *PTy =
6534 llvm::PointerType::getUnqual(VTy->getElementType());
6535 Ops[1] = Builder.CreateBitCast(Ops[1], PTy);
6536 llvm::Type *Tys[2] = { VTy, PTy };
6537 Function *F = CGM.getIntrinsic(Intrinsic::arm64_neon_ld2r, Tys);
6538 Ops[1] = Builder.CreateCall(F, Ops[1], "vld2");
6539 Ops[0] = Builder.CreateBitCast(Ops[0],
6540 llvm::PointerType::getUnqual(Ops[1]->getType()));
6541 return Builder.CreateStore(Ops[1], Ops[0]);
6542 }
6543 case NEON::BI__builtin_neon_vld3_dup_v: {
6544 llvm::Type *PTy =
6545 llvm::PointerType::getUnqual(VTy->getElementType());
6546 Ops[1] = Builder.CreateBitCast(Ops[1], PTy);
6547 llvm::Type *Tys[2] = { VTy, PTy };
6548 Function *F = CGM.getIntrinsic(Intrinsic::arm64_neon_ld3r, Tys);
6549 Ops[1] = Builder.CreateCall(F, Ops[1], "vld3");
6550 Ops[0] = Builder.CreateBitCast(Ops[0],
6551 llvm::PointerType::getUnqual(Ops[1]->getType()));
6552 return Builder.CreateStore(Ops[1], Ops[0]);
6553 }
6554 case NEON::BI__builtin_neon_vld4_dup_v: {
6555 llvm::Type *PTy =
6556 llvm::PointerType::getUnqual(VTy->getElementType());
6557 Ops[1] = Builder.CreateBitCast(Ops[1], PTy);
6558 llvm::Type *Tys[2] = { VTy, PTy };
6559 Function *F = CGM.getIntrinsic(Intrinsic::arm64_neon_ld4r, Tys);
6560 Ops[1] = Builder.CreateCall(F, Ops[1], "vld4");
6561 Ops[0] = Builder.CreateBitCast(Ops[0],
6562 llvm::PointerType::getUnqual(Ops[1]->getType()));
6563 return Builder.CreateStore(Ops[1], Ops[0]);
6564 }
6565 case NEON::BI__builtin_neon_vld2_lane_v:
6566 case NEON::BI__builtin_neon_vld2q_lane_v: {
6567 llvm::Type *Tys[2] = { VTy, Ops[1]->getType() };
6568 Function *F = CGM.getIntrinsic(Intrinsic::arm64_neon_ld2lane, Tys);
6569 Ops.push_back(Ops[1]);
6570 Ops.erase(Ops.begin()+1);
6571 Ops[1] = Builder.CreateBitCast(Ops[1], Ty);
6572 Ops[2] = Builder.CreateBitCast(Ops[2], Ty);
6573 Ops[3] = Builder.CreateZExt(Ops[3],
6574 llvm::IntegerType::get(getLLVMContext(), 64));
6575 Ops[1] = Builder.CreateCall(F,
6576 ArrayRef<Value*>(Ops).slice(1), "vld2_lane");
6577 Ty = llvm::PointerType::getUnqual(Ops[1]->getType());
6578 Ops[0] = Builder.CreateBitCast(Ops[0], Ty);
6579 return Builder.CreateStore(Ops[1], Ops[0]);
6580 }
6581 case NEON::BI__builtin_neon_vld3_lane_v:
6582 case NEON::BI__builtin_neon_vld3q_lane_v: {
6583 llvm::Type *Tys[2] = { VTy, Ops[1]->getType() };
6584 Function *F = CGM.getIntrinsic(Intrinsic::arm64_neon_ld3lane, Tys);
6585 Ops.push_back(Ops[1]);
6586 Ops.erase(Ops.begin()+1);
6587 Ops[1] = Builder.CreateBitCast(Ops[1], Ty);
6588 Ops[2] = Builder.CreateBitCast(Ops[2], Ty);
6589 Ops[3] = Builder.CreateBitCast(Ops[3], Ty);
6590 Ops[4] = Builder.CreateZExt(Ops[4],
6591 llvm::IntegerType::get(getLLVMContext(), 64));
6592 Ops[1] = Builder.CreateCall(F,
6593 ArrayRef<Value*>(Ops).slice(1), "vld3_lane");
6594 Ty = llvm::PointerType::getUnqual(Ops[1]->getType());
6595 Ops[0] = Builder.CreateBitCast(Ops[0], Ty);
6596 return Builder.CreateStore(Ops[1], Ops[0]);
6597 }
6598 case NEON::BI__builtin_neon_vld4_lane_v:
6599 case NEON::BI__builtin_neon_vld4q_lane_v: {
6600 llvm::Type *Tys[2] = { VTy, Ops[1]->getType() };
6601 Function *F = CGM.getIntrinsic(Intrinsic::arm64_neon_ld4lane, Tys);
6602 Ops.push_back(Ops[1]);
6603 Ops.erase(Ops.begin()+1);
6604 Ops[1] = Builder.CreateBitCast(Ops[1], Ty);
6605 Ops[2] = Builder.CreateBitCast(Ops[2], Ty);
6606 Ops[3] = Builder.CreateBitCast(Ops[3], Ty);
6607 Ops[4] = Builder.CreateBitCast(Ops[4], Ty);
6608 Ops[5] = Builder.CreateZExt(Ops[5],
6609 llvm::IntegerType::get(getLLVMContext(), 64));
6610 Ops[1] = Builder.CreateCall(F,
6611 ArrayRef<Value*>(Ops).slice(1), "vld4_lane");
6612 Ty = llvm::PointerType::getUnqual(Ops[1]->getType());
6613 Ops[0] = Builder.CreateBitCast(Ops[0], Ty);
6614 return Builder.CreateStore(Ops[1], Ops[0]);
6615 }
6616 case NEON::BI__builtin_neon_vst2_v:
6617 case NEON::BI__builtin_neon_vst2q_v: {
6618 Ops.push_back(Ops[0]);
6619 Ops.erase(Ops.begin());
6620 llvm::Type *Tys[2] = { VTy, Ops[2]->getType() };
6621 return EmitNeonCall(CGM.getIntrinsic(Intrinsic::arm64_neon_st2, Tys),
6622 Ops, "");
6623 }
6624 case NEON::BI__builtin_neon_vst2_lane_v:
6625 case NEON::BI__builtin_neon_vst2q_lane_v: {
6626 Ops.push_back(Ops[0]);
6627 Ops.erase(Ops.begin());
6628 Ops[2] = Builder.CreateZExt(Ops[2],
6629 llvm::IntegerType::get(getLLVMContext(), 64));
6630 llvm::Type *Tys[2] = { VTy, Ops[3]->getType() };
6631 return EmitNeonCall(CGM.getIntrinsic(Intrinsic::arm64_neon_st2lane, Tys),
6632 Ops, "");
6633 }
6634 case NEON::BI__builtin_neon_vst3_v:
6635 case NEON::BI__builtin_neon_vst3q_v: {
6636 Ops.push_back(Ops[0]);
6637 Ops.erase(Ops.begin());
6638 llvm::Type *Tys[2] = { VTy, Ops[3]->getType() };
6639 return EmitNeonCall(CGM.getIntrinsic(Intrinsic::arm64_neon_st3, Tys),
6640 Ops, "");
6641 }
6642 case NEON::BI__builtin_neon_vst3_lane_v:
6643 case NEON::BI__builtin_neon_vst3q_lane_v: {
6644 Ops.push_back(Ops[0]);
6645 Ops.erase(Ops.begin());
6646 Ops[3] = Builder.CreateZExt(Ops[3],
6647 llvm::IntegerType::get(getLLVMContext(), 64));
6648 llvm::Type *Tys[2] = { VTy, Ops[4]->getType() };
6649 return EmitNeonCall(CGM.getIntrinsic(Intrinsic::arm64_neon_st3lane, Tys),
6650 Ops, "");
6651 }
6652 case NEON::BI__builtin_neon_vst4_v:
6653 case NEON::BI__builtin_neon_vst4q_v: {
6654 Ops.push_back(Ops[0]);
6655 Ops.erase(Ops.begin());
6656 llvm::Type *Tys[2] = { VTy, Ops[4]->getType() };
6657 return EmitNeonCall(CGM.getIntrinsic(Intrinsic::arm64_neon_st4, Tys),
6658 Ops, "");
6659 }
6660 case NEON::BI__builtin_neon_vst4_lane_v:
6661 case NEON::BI__builtin_neon_vst4q_lane_v: {
6662 Ops.push_back(Ops[0]);
6663 Ops.erase(Ops.begin());
6664 Ops[4] = Builder.CreateZExt(Ops[4],
6665 llvm::IntegerType::get(getLLVMContext(), 64));
6666 llvm::Type *Tys[2] = { VTy, Ops[5]->getType() };
6667 return EmitNeonCall(CGM.getIntrinsic(Intrinsic::arm64_neon_st4lane, Tys),
6668 Ops, "");
6669 }
6670 case NEON::BI__builtin_neon_vtrn_v:
6671 case NEON::BI__builtin_neon_vtrnq_v: {
6672 Ops[0] = Builder.CreateBitCast(Ops[0], llvm::PointerType::getUnqual(Ty));
6673 Ops[1] = Builder.CreateBitCast(Ops[1], Ty);
6674 Ops[2] = Builder.CreateBitCast(Ops[2], Ty);
6675 Value *SV = 0;
6676
6677 for (unsigned vi = 0; vi != 2; ++vi) {
6678 SmallVector<Constant*, 16> Indices;
6679 for (unsigned i = 0, e = VTy->getNumElements(); i != e; i += 2) {
6680 Indices.push_back(ConstantInt::get(Int32Ty, i+vi));
6681 Indices.push_back(ConstantInt::get(Int32Ty, i+e+vi));
6682 }
6683 Value *Addr = Builder.CreateConstInBoundsGEP1_32(Ops[0], vi);
6684 SV = llvm::ConstantVector::get(Indices);
6685 SV = Builder.CreateShuffleVector(Ops[1], Ops[2], SV, "vtrn");
6686 SV = Builder.CreateStore(SV, Addr);
6687 }
6688 return SV;
6689 }
6690 case NEON::BI__builtin_neon_vuzp_v:
6691 case NEON::BI__builtin_neon_vuzpq_v: {
6692 Ops[0] = Builder.CreateBitCast(Ops[0], llvm::PointerType::getUnqual(Ty));
6693 Ops[1] = Builder.CreateBitCast(Ops[1], Ty);
6694 Ops[2] = Builder.CreateBitCast(Ops[2], Ty);
6695 Value *SV = 0;
6696
6697 for (unsigned vi = 0; vi != 2; ++vi) {
6698 SmallVector<Constant*, 16> Indices;
6699 for (unsigned i = 0, e = VTy->getNumElements(); i != e; ++i)
6700 Indices.push_back(ConstantInt::get(Int32Ty, 2*i+vi));
6701
6702 Value *Addr = Builder.CreateConstInBoundsGEP1_32(Ops[0], vi);
6703 SV = llvm::ConstantVector::get(Indices);
6704 SV = Builder.CreateShuffleVector(Ops[1], Ops[2], SV, "vuzp");
6705 SV = Builder.CreateStore(SV, Addr);
6706 }
6707 return SV;
6708 }
6709 case NEON::BI__builtin_neon_vzip_v:
6710 case NEON::BI__builtin_neon_vzipq_v: {
6711 Ops[0] = Builder.CreateBitCast(Ops[0], llvm::PointerType::getUnqual(Ty));
6712 Ops[1] = Builder.CreateBitCast(Ops[1], Ty);
6713 Ops[2] = Builder.CreateBitCast(Ops[2], Ty);
6714 Value *SV = 0;
6715
6716 for (unsigned vi = 0; vi != 2; ++vi) {
6717 SmallVector<Constant*, 16> Indices;
6718 for (unsigned i = 0, e = VTy->getNumElements(); i != e; i += 2) {
6719 Indices.push_back(ConstantInt::get(Int32Ty, (i + vi*e) >> 1));
6720 Indices.push_back(ConstantInt::get(Int32Ty, ((i + vi*e) >> 1)+e));
6721 }
6722 Value *Addr = Builder.CreateConstInBoundsGEP1_32(Ops[0], vi);
6723 SV = llvm::ConstantVector::get(Indices);
6724 SV = Builder.CreateShuffleVector(Ops[1], Ops[2], SV, "vzip");
6725 SV = Builder.CreateStore(SV, Addr);
6726 }
6727 return SV;
6728 }
6729 case NEON::BI__builtin_neon_vqtbl1q_v: {
6730 return EmitNeonCall(CGM.getIntrinsic(Intrinsic::arm64_neon_tbl1, Ty),
6731 Ops, "vtbl1");
6732 }
6733 case NEON::BI__builtin_neon_vqtbl2q_v: {
6734 return EmitNeonCall(CGM.getIntrinsic(Intrinsic::arm64_neon_tbl2, Ty),
6735 Ops, "vtbl2");
6736 }
6737 case NEON::BI__builtin_neon_vqtbl3q_v: {
6738 return EmitNeonCall(CGM.getIntrinsic(Intrinsic::arm64_neon_tbl3, Ty),
6739 Ops, "vtbl3");
6740 }
6741 case NEON::BI__builtin_neon_vqtbl4q_v: {
6742 return EmitNeonCall(CGM.getIntrinsic(Intrinsic::arm64_neon_tbl4, Ty),
6743 Ops, "vtbl4");
6744 }
6745 case NEON::BI__builtin_neon_vqtbx1q_v: {
6746 return EmitNeonCall(CGM.getIntrinsic(Intrinsic::arm64_neon_tbx1, Ty),
6747 Ops, "vtbx1");
6748 }
6749 case NEON::BI__builtin_neon_vqtbx2q_v: {
6750 return EmitNeonCall(CGM.getIntrinsic(Intrinsic::arm64_neon_tbx2, Ty),
6751 Ops, "vtbx2");
6752 }
6753 case NEON::BI__builtin_neon_vqtbx3q_v: {
6754 return EmitNeonCall(CGM.getIntrinsic(Intrinsic::arm64_neon_tbx3, Ty),
6755 Ops, "vtbx3");
6756 }
6757 case NEON::BI__builtin_neon_vqtbx4q_v: {
6758 return EmitNeonCall(CGM.getIntrinsic(Intrinsic::arm64_neon_tbx4, Ty),
6759 Ops, "vtbx4");
6760 }
6761 case NEON::BI__builtin_neon_vsqadd_v:
6762 case NEON::BI__builtin_neon_vsqaddq_v: {
6763 Int = Intrinsic::arm64_neon_usqadd;
6764 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vsqadd");
6765 }
6766 case NEON::BI__builtin_neon_vuqadd_v:
6767 case NEON::BI__builtin_neon_vuqaddq_v: {
6768 Int = Intrinsic::arm64_neon_suqadd;
6769 return EmitNeonCall(CGM.getIntrinsic(Int, Ty), Ops, "vuqadd");
6770 }
6771 }
6772}
6773
Bill Wendling65b2a962010-10-09 08:47:25 +00006774llvm::Value *CodeGenFunction::
Bill Wendlingf1a3fca2012-02-22 09:30:11 +00006775BuildVector(ArrayRef<llvm::Value*> Ops) {
Bill Wendling65b2a962010-10-09 08:47:25 +00006776 assert((Ops.size() & (Ops.size() - 1)) == 0 &&
6777 "Not a power-of-two sized vector!");
6778 bool AllConstants = true;
6779 for (unsigned i = 0, e = Ops.size(); i != e && AllConstants; ++i)
6780 AllConstants &= isa<Constant>(Ops[i]);
6781
6782 // If this is a constant vector, create a ConstantVector.
6783 if (AllConstants) {
Chris Lattner2d6b7b92012-01-25 05:34:41 +00006784 SmallVector<llvm::Constant*, 16> CstOps;
Bill Wendling65b2a962010-10-09 08:47:25 +00006785 for (unsigned i = 0, e = Ops.size(); i != e; ++i)
6786 CstOps.push_back(cast<Constant>(Ops[i]));
6787 return llvm::ConstantVector::get(CstOps);
6788 }
6789
6790 // Otherwise, insertelement the values to build the vector.
6791 Value *Result =
6792 llvm::UndefValue::get(llvm::VectorType::get(Ops[0]->getType(), Ops.size()));
6793
6794 for (unsigned i = 0, e = Ops.size(); i != e; ++i)
Chris Lattner2d6b7b92012-01-25 05:34:41 +00006795 Result = Builder.CreateInsertElement(Result, Ops[i], Builder.getInt32(i));
Bill Wendling65b2a962010-10-09 08:47:25 +00006796
6797 return Result;
6798}
6799
Mike Stump11289f42009-09-09 15:08:12 +00006800Value *CodeGenFunction::EmitX86BuiltinExpr(unsigned BuiltinID,
Chris Lattner13653d72007-12-13 07:34:23 +00006801 const CallExpr *E) {
Chris Lattner0e62c1c2011-07-23 10:55:15 +00006802 SmallVector<Value*, 4> Ops;
Anders Carlsson4d3094a2007-12-14 17:48:24 +00006803
Chris Lattner64d7f2a2010-10-02 00:09:12 +00006804 // Find out if any arguments are required to be integer constant expressions.
6805 unsigned ICEArguments = 0;
6806 ASTContext::GetBuiltinTypeError Error;
6807 getContext().GetBuiltinType(BuiltinID, Error, &ICEArguments);
6808 assert(Error == ASTContext::GE_None && "Should not codegen an error");
6809
6810 for (unsigned i = 0, e = E->getNumArgs(); i != e; i++) {
6811 // If this is a normal argument, just emit it as a scalar.
6812 if ((ICEArguments & (1 << i)) == 0) {
6813 Ops.push_back(EmitScalarExpr(E->getArg(i)));
6814 continue;
6815 }
6816
6817 // If this is required to be a constant, constant fold it so that we know
6818 // that the generated intrinsic gets a ConstantInt.
6819 llvm::APSInt Result;
6820 bool IsConst = E->getArg(i)->isIntegerConstantExpr(Result, getContext());
6821 assert(IsConst && "Constant arg isn't actually constant?"); (void)IsConst;
John McCallad7c5c12011-02-08 08:22:06 +00006822 Ops.push_back(llvm::ConstantInt::get(getLLVMContext(), Result));
Chris Lattner64d7f2a2010-10-02 00:09:12 +00006823 }
Anders Carlsson4d3094a2007-12-14 17:48:24 +00006824
Anders Carlsson895af082007-12-09 23:17:02 +00006825 switch (BuiltinID) {
Anders Carlsson92c4e442007-12-09 23:39:18 +00006826 default: return 0;
Warren Hunt20e4a5d2014-02-21 23:08:53 +00006827 case X86::BI_mm_prefetch: {
6828 Value *Address = EmitScalarExpr(E->getArg(0));
6829 Value *RW = ConstantInt::get(Int32Ty, 0);
6830 Value *Locality = EmitScalarExpr(E->getArg(1));
6831 Value *Data = ConstantInt::get(Int32Ty, 1);
6832 Value *F = CGM.getIntrinsic(Intrinsic::prefetch);
6833 return Builder.CreateCall4(F, Address, RW, Locality, Data);
6834 }
Bill Wendling65b2a962010-10-09 08:47:25 +00006835 case X86::BI__builtin_ia32_vec_init_v8qi:
6836 case X86::BI__builtin_ia32_vec_init_v4hi:
6837 case X86::BI__builtin_ia32_vec_init_v2si:
6838 return Builder.CreateBitCast(BuildVector(Ops),
John McCallad7c5c12011-02-08 08:22:06 +00006839 llvm::Type::getX86_MMXTy(getLLVMContext()));
Argyrios Kyrtzidis073c9cb2010-10-10 03:19:11 +00006840 case X86::BI__builtin_ia32_vec_ext_v2si:
6841 return Builder.CreateExtractElement(Ops[0],
6842 llvm::ConstantInt::get(Ops[1]->getType(), 0));
Nate Begeman91f40e32008-04-14 04:49:57 +00006843 case X86::BI__builtin_ia32_ldmxcsr: {
Juergen Ributzkac6ab1f82013-08-19 22:20:37 +00006844 Value *Tmp = CreateMemTemp(E->getArg(0)->getType());
Nate Begeman91f40e32008-04-14 04:49:57 +00006845 Builder.CreateStore(Ops[0], Tmp);
6846 return Builder.CreateCall(CGM.getIntrinsic(Intrinsic::x86_sse_ldmxcsr),
Juergen Ributzkac6ab1f82013-08-19 22:20:37 +00006847 Builder.CreateBitCast(Tmp, Int8PtrTy));
Nate Begeman91f40e32008-04-14 04:49:57 +00006848 }
6849 case X86::BI__builtin_ia32_stmxcsr: {
Juergen Ributzka53e2f272013-08-19 23:08:53 +00006850 Value *Tmp = CreateMemTemp(E->getType());
Ted Kremenekc14efa72011-08-17 21:04:19 +00006851 Builder.CreateCall(CGM.getIntrinsic(Intrinsic::x86_sse_stmxcsr),
Juergen Ributzkac6ab1f82013-08-19 22:20:37 +00006852 Builder.CreateBitCast(Tmp, Int8PtrTy));
Nate Begeman91f40e32008-04-14 04:49:57 +00006853 return Builder.CreateLoad(Tmp, "stmxcsr");
6854 }
Nate Begeman91f40e32008-04-14 04:49:57 +00006855 case X86::BI__builtin_ia32_storehps:
6856 case X86::BI__builtin_ia32_storelps: {
Chris Lattner5e016ae2010-06-27 07:15:29 +00006857 llvm::Type *PtrTy = llvm::PointerType::getUnqual(Int64Ty);
6858 llvm::Type *VecTy = llvm::VectorType::get(Int64Ty, 2);
Mike Stump11289f42009-09-09 15:08:12 +00006859
Nate Begeman91f40e32008-04-14 04:49:57 +00006860 // cast val v2i64
6861 Ops[1] = Builder.CreateBitCast(Ops[1], VecTy, "cast");
Mike Stump11289f42009-09-09 15:08:12 +00006862
Nate Begeman91f40e32008-04-14 04:49:57 +00006863 // extract (0, 1)
6864 unsigned Index = BuiltinID == X86::BI__builtin_ia32_storelps ? 0 : 1;
Chris Lattner5e016ae2010-06-27 07:15:29 +00006865 llvm::Value *Idx = llvm::ConstantInt::get(Int32Ty, Index);
Nate Begeman91f40e32008-04-14 04:49:57 +00006866 Ops[1] = Builder.CreateExtractElement(Ops[1], Idx, "extract");
6867
6868 // cast pointer to i64 & store
6869 Ops[0] = Builder.CreateBitCast(Ops[0], PtrTy);
6870 return Builder.CreateStore(Ops[1], Ops[0]);
6871 }
Bill Wendling11191f12010-09-28 01:28:56 +00006872 case X86::BI__builtin_ia32_palignr: {
6873 unsigned shiftVal = cast<llvm::ConstantInt>(Ops[2])->getZExtValue();
Jim Grosbachd3608f42012-09-21 00:18:27 +00006874
Bill Wendling11191f12010-09-28 01:28:56 +00006875 // If palignr is shifting the pair of input vectors less than 9 bytes,
6876 // emit a shuffle instruction.
6877 if (shiftVal <= 8) {
Chris Lattner0e62c1c2011-07-23 10:55:15 +00006878 SmallVector<llvm::Constant*, 8> Indices;
Bill Wendling11191f12010-09-28 01:28:56 +00006879 for (unsigned i = 0; i != 8; ++i)
6880 Indices.push_back(llvm::ConstantInt::get(Int32Ty, shiftVal + i));
Jim Grosbachd3608f42012-09-21 00:18:27 +00006881
Chris Lattner91c08ad2011-02-15 00:14:06 +00006882 Value* SV = llvm::ConstantVector::get(Indices);
Bill Wendling11191f12010-09-28 01:28:56 +00006883 return Builder.CreateShuffleVector(Ops[1], Ops[0], SV, "palignr");
6884 }
Jim Grosbachd3608f42012-09-21 00:18:27 +00006885
Bill Wendling11191f12010-09-28 01:28:56 +00006886 // If palignr is shifting the pair of input vectors more than 8 but less
6887 // than 16 bytes, emit a logical right shift of the destination.
6888 if (shiftVal < 16) {
6889 // MMX has these as 1 x i64 vectors for some odd optimization reasons.
Chris Lattner2192fe52011-07-18 04:24:23 +00006890 llvm::Type *VecTy = llvm::VectorType::get(Int64Ty, 1);
Jim Grosbachd3608f42012-09-21 00:18:27 +00006891
Bill Wendling11191f12010-09-28 01:28:56 +00006892 Ops[0] = Builder.CreateBitCast(Ops[0], VecTy, "cast");
6893 Ops[1] = llvm::ConstantInt::get(VecTy, (shiftVal-8) * 8);
Jim Grosbachd3608f42012-09-21 00:18:27 +00006894
Bill Wendling11191f12010-09-28 01:28:56 +00006895 // create i32 constant
6896 llvm::Function *F = CGM.getIntrinsic(Intrinsic::x86_mmx_psrl_q);
Frits van Bommel717d7ed2011-07-18 12:00:32 +00006897 return Builder.CreateCall(F, makeArrayRef(&Ops[0], 2), "palignr");
Bill Wendling11191f12010-09-28 01:28:56 +00006898 }
Jim Grosbachd3608f42012-09-21 00:18:27 +00006899
Eli Friedman2dadd3e2011-09-14 00:52:45 +00006900 // If palignr is shifting the pair of vectors more than 16 bytes, emit zero.
Bill Wendling11191f12010-09-28 01:28:56 +00006901 return llvm::Constant::getNullValue(ConvertType(E->getType()));
6902 }
Nate Begeman67dfd422009-12-14 05:15:02 +00006903 case X86::BI__builtin_ia32_palignr128: {
Nate Begeman72ec6bc2009-12-14 04:57:03 +00006904 unsigned shiftVal = cast<llvm::ConstantInt>(Ops[2])->getZExtValue();
Jim Grosbachd3608f42012-09-21 00:18:27 +00006905
Nate Begeman72ec6bc2009-12-14 04:57:03 +00006906 // If palignr is shifting the pair of input vectors less than 17 bytes,
6907 // emit a shuffle instruction.
6908 if (shiftVal <= 16) {
Chris Lattner0e62c1c2011-07-23 10:55:15 +00006909 SmallVector<llvm::Constant*, 16> Indices;
Nate Begeman72ec6bc2009-12-14 04:57:03 +00006910 for (unsigned i = 0; i != 16; ++i)
Chris Lattner5e016ae2010-06-27 07:15:29 +00006911 Indices.push_back(llvm::ConstantInt::get(Int32Ty, shiftVal + i));
Jim Grosbachd3608f42012-09-21 00:18:27 +00006912
Chris Lattner91c08ad2011-02-15 00:14:06 +00006913 Value* SV = llvm::ConstantVector::get(Indices);
Nate Begeman72ec6bc2009-12-14 04:57:03 +00006914 return Builder.CreateShuffleVector(Ops[1], Ops[0], SV, "palignr");
6915 }
Jim Grosbachd3608f42012-09-21 00:18:27 +00006916
Nate Begeman72ec6bc2009-12-14 04:57:03 +00006917 // If palignr is shifting the pair of input vectors more than 16 but less
6918 // than 32 bytes, emit a logical right shift of the destination.
6919 if (shiftVal < 32) {
Chris Lattner2192fe52011-07-18 04:24:23 +00006920 llvm::Type *VecTy = llvm::VectorType::get(Int64Ty, 2);
Jim Grosbachd3608f42012-09-21 00:18:27 +00006921
Nate Begeman72ec6bc2009-12-14 04:57:03 +00006922 Ops[0] = Builder.CreateBitCast(Ops[0], VecTy, "cast");
Chris Lattner5e016ae2010-06-27 07:15:29 +00006923 Ops[1] = llvm::ConstantInt::get(Int32Ty, (shiftVal-16) * 8);
Jim Grosbachd3608f42012-09-21 00:18:27 +00006924
Nate Begeman72ec6bc2009-12-14 04:57:03 +00006925 // create i32 constant
6926 llvm::Function *F = CGM.getIntrinsic(Intrinsic::x86_sse2_psrl_dq);
Frits van Bommel717d7ed2011-07-18 12:00:32 +00006927 return Builder.CreateCall(F, makeArrayRef(&Ops[0], 2), "palignr");
Nate Begeman72ec6bc2009-12-14 04:57:03 +00006928 }
Jim Grosbachd3608f42012-09-21 00:18:27 +00006929
Nate Begeman72ec6bc2009-12-14 04:57:03 +00006930 // If palignr is shifting the pair of vectors more than 32 bytes, emit zero.
6931 return llvm::Constant::getNullValue(ConvertType(E->getType()));
Eric Christopherc377c812009-12-01 05:00:51 +00006932 }
Craig Topper94aba2c2011-12-19 07:03:25 +00006933 case X86::BI__builtin_ia32_palignr256: {
6934 unsigned shiftVal = cast<llvm::ConstantInt>(Ops[2])->getZExtValue();
6935
6936 // If palignr is shifting the pair of input vectors less than 17 bytes,
6937 // emit a shuffle instruction.
6938 if (shiftVal <= 16) {
6939 SmallVector<llvm::Constant*, 32> Indices;
6940 // 256-bit palignr operates on 128-bit lanes so we need to handle that
6941 for (unsigned l = 0; l != 2; ++l) {
6942 unsigned LaneStart = l * 16;
6943 unsigned LaneEnd = (l+1) * 16;
6944 for (unsigned i = 0; i != 16; ++i) {
6945 unsigned Idx = shiftVal + i + LaneStart;
6946 if (Idx >= LaneEnd) Idx += 16; // end of lane, switch operand
6947 Indices.push_back(llvm::ConstantInt::get(Int32Ty, Idx));
6948 }
6949 }
6950
6951 Value* SV = llvm::ConstantVector::get(Indices);
6952 return Builder.CreateShuffleVector(Ops[1], Ops[0], SV, "palignr");
6953 }
6954
6955 // If palignr is shifting the pair of input vectors more than 16 but less
6956 // than 32 bytes, emit a logical right shift of the destination.
6957 if (shiftVal < 32) {
6958 llvm::Type *VecTy = llvm::VectorType::get(Int64Ty, 4);
6959
6960 Ops[0] = Builder.CreateBitCast(Ops[0], VecTy, "cast");
6961 Ops[1] = llvm::ConstantInt::get(Int32Ty, (shiftVal-16) * 8);
6962
6963 // create i32 constant
6964 llvm::Function *F = CGM.getIntrinsic(Intrinsic::x86_avx2_psrl_dq);
6965 return Builder.CreateCall(F, makeArrayRef(&Ops[0], 2), "palignr");
6966 }
6967
6968 // If palignr is shifting the pair of vectors more than 32 bytes, emit zero.
6969 return llvm::Constant::getNullValue(ConvertType(E->getType()));
6970 }
Bill Wendling5f9150b2011-05-04 02:40:38 +00006971 case X86::BI__builtin_ia32_movntps:
Craig Topperc83dff02012-05-07 06:25:45 +00006972 case X86::BI__builtin_ia32_movntps256:
Bill Wendling5f9150b2011-05-04 02:40:38 +00006973 case X86::BI__builtin_ia32_movntpd:
Craig Topperc83dff02012-05-07 06:25:45 +00006974 case X86::BI__builtin_ia32_movntpd256:
Bill Wendling5f9150b2011-05-04 02:40:38 +00006975 case X86::BI__builtin_ia32_movntdq:
Craig Topperc83dff02012-05-07 06:25:45 +00006976 case X86::BI__builtin_ia32_movntdq256:
Eli Friedmanf9d8c6c2013-09-23 23:38:39 +00006977 case X86::BI__builtin_ia32_movnti:
6978 case X86::BI__builtin_ia32_movnti64: {
Bill Wendling6869b6a2011-05-04 20:28:12 +00006979 llvm::MDNode *Node = llvm::MDNode::get(getLLVMContext(),
6980 Builder.getInt32(1));
Bill Wendling5f9150b2011-05-04 02:40:38 +00006981
6982 // Convert the type of the pointer to a pointer to the stored type.
6983 Value *BC = Builder.CreateBitCast(Ops[0],
6984 llvm::PointerType::getUnqual(Ops[1]->getType()),
6985 "cast");
6986 StoreInst *SI = Builder.CreateStore(Ops[1], BC);
6987 SI->setMetadata(CGM.getModule().getMDKindID("nontemporal"), Node);
Eli Friedmanf9d8c6c2013-09-23 23:38:39 +00006988
6989 // If the operand is an integer, we can't assume alignment. Otherwise,
6990 // assume natural alignment.
6991 QualType ArgTy = E->getArg(1)->getType();
6992 unsigned Align;
6993 if (ArgTy->isIntegerType())
6994 Align = 1;
6995 else
6996 Align = getContext().getTypeSizeInChars(ArgTy).getQuantity();
6997 SI->setAlignment(Align);
Bill Wendling5f9150b2011-05-04 02:40:38 +00006998 return SI;
6999 }
Michael J. Spencer6826eb82011-04-15 15:07:13 +00007000 // 3DNow!
Michael J. Spencer6826eb82011-04-15 15:07:13 +00007001 case X86::BI__builtin_ia32_pswapdsf:
7002 case X86::BI__builtin_ia32_pswapdsi: {
7003 const char *name = 0;
7004 Intrinsic::ID ID = Intrinsic::not_intrinsic;
7005 switch(BuiltinID) {
Craig Topperd6d3a052012-01-30 08:18:19 +00007006 default: llvm_unreachable("Unsupported intrinsic!");
Michael J. Spencer6826eb82011-04-15 15:07:13 +00007007 case X86::BI__builtin_ia32_pswapdsf:
7008 case X86::BI__builtin_ia32_pswapdsi:
7009 name = "pswapd";
7010 ID = Intrinsic::x86_3dnowa_pswapd;
7011 break;
7012 }
Chandler Carrutha2a54102012-02-20 07:35:45 +00007013 llvm::Type *MMXTy = llvm::Type::getX86_MMXTy(getLLVMContext());
7014 Ops[0] = Builder.CreateBitCast(Ops[0], MMXTy, "cast");
Michael J. Spencer6826eb82011-04-15 15:07:13 +00007015 llvm::Function *F = CGM.getIntrinsic(ID);
Jay Foad5bd375a2011-07-15 08:37:34 +00007016 return Builder.CreateCall(F, Ops, name);
Michael J. Spencer6826eb82011-04-15 15:07:13 +00007017 }
Benjamin Kramera43b6992012-07-12 09:33:03 +00007018 case X86::BI__builtin_ia32_rdrand16_step:
7019 case X86::BI__builtin_ia32_rdrand32_step:
Michael Liaoffaae352013-03-29 05:17:55 +00007020 case X86::BI__builtin_ia32_rdrand64_step:
7021 case X86::BI__builtin_ia32_rdseed16_step:
7022 case X86::BI__builtin_ia32_rdseed32_step:
7023 case X86::BI__builtin_ia32_rdseed64_step: {
Benjamin Kramera43b6992012-07-12 09:33:03 +00007024 Intrinsic::ID ID;
7025 switch (BuiltinID) {
7026 default: llvm_unreachable("Unsupported intrinsic!");
7027 case X86::BI__builtin_ia32_rdrand16_step:
7028 ID = Intrinsic::x86_rdrand_16;
7029 break;
7030 case X86::BI__builtin_ia32_rdrand32_step:
7031 ID = Intrinsic::x86_rdrand_32;
7032 break;
7033 case X86::BI__builtin_ia32_rdrand64_step:
7034 ID = Intrinsic::x86_rdrand_64;
7035 break;
Michael Liaoffaae352013-03-29 05:17:55 +00007036 case X86::BI__builtin_ia32_rdseed16_step:
7037 ID = Intrinsic::x86_rdseed_16;
7038 break;
7039 case X86::BI__builtin_ia32_rdseed32_step:
7040 ID = Intrinsic::x86_rdseed_32;
7041 break;
7042 case X86::BI__builtin_ia32_rdseed64_step:
7043 ID = Intrinsic::x86_rdseed_64;
7044 break;
Benjamin Kramera43b6992012-07-12 09:33:03 +00007045 }
7046
7047 Value *Call = Builder.CreateCall(CGM.getIntrinsic(ID));
7048 Builder.CreateStore(Builder.CreateExtractValue(Call, 0), Ops[0]);
7049 return Builder.CreateExtractValue(Call, 1);
7050 }
Juergen Ributzka2c2dbf42013-08-17 16:40:09 +00007051 // AVX2 broadcast
7052 case X86::BI__builtin_ia32_vbroadcastsi256: {
Juergen Ributzkac6ab1f82013-08-19 22:20:37 +00007053 Value *VecTmp = CreateMemTemp(E->getArg(0)->getType());
7054 Builder.CreateStore(Ops[0], VecTmp);
7055 Value *F = CGM.getIntrinsic(Intrinsic::x86_avx2_vbroadcasti128);
7056 return Builder.CreateCall(F, Builder.CreateBitCast(VecTmp, Int8PtrTy));
Juergen Ributzka2c2dbf42013-08-17 16:40:09 +00007057 }
Anders Carlsson895af082007-12-09 23:17:02 +00007058 }
7059}
7060
Tony Linthicum76329bf2011-12-12 21:14:55 +00007061
Mike Stump11289f42009-09-09 15:08:12 +00007062Value *CodeGenFunction::EmitPPCBuiltinExpr(unsigned BuiltinID,
Chris Lattner13653d72007-12-13 07:34:23 +00007063 const CallExpr *E) {
Chris Lattner0e62c1c2011-07-23 10:55:15 +00007064 SmallVector<Value*, 4> Ops;
Chris Lattnerdad40622010-04-14 03:54:58 +00007065
7066 for (unsigned i = 0, e = E->getNumArgs(); i != e; i++)
7067 Ops.push_back(EmitScalarExpr(E->getArg(i)));
7068
7069 Intrinsic::ID ID = Intrinsic::not_intrinsic;
7070
7071 switch (BuiltinID) {
7072 default: return 0;
7073
Anton Korobeynikovcc50b7d2010-06-19 09:47:18 +00007074 // vec_ld, vec_lvsl, vec_lvsr
7075 case PPC::BI__builtin_altivec_lvx:
7076 case PPC::BI__builtin_altivec_lvxl:
7077 case PPC::BI__builtin_altivec_lvebx:
7078 case PPC::BI__builtin_altivec_lvehx:
7079 case PPC::BI__builtin_altivec_lvewx:
7080 case PPC::BI__builtin_altivec_lvsl:
7081 case PPC::BI__builtin_altivec_lvsr:
7082 {
John McCallad7c5c12011-02-08 08:22:06 +00007083 Ops[1] = Builder.CreateBitCast(Ops[1], Int8PtrTy);
Anton Korobeynikovcc50b7d2010-06-19 09:47:18 +00007084
Benjamin Kramer76399eb2011-09-27 21:06:10 +00007085 Ops[0] = Builder.CreateGEP(Ops[1], Ops[0]);
Anton Korobeynikovcc50b7d2010-06-19 09:47:18 +00007086 Ops.pop_back();
7087
7088 switch (BuiltinID) {
David Blaikie83d382b2011-09-23 05:06:16 +00007089 default: llvm_unreachable("Unsupported ld/lvsl/lvsr intrinsic!");
Anton Korobeynikovcc50b7d2010-06-19 09:47:18 +00007090 case PPC::BI__builtin_altivec_lvx:
7091 ID = Intrinsic::ppc_altivec_lvx;
7092 break;
7093 case PPC::BI__builtin_altivec_lvxl:
7094 ID = Intrinsic::ppc_altivec_lvxl;
7095 break;
7096 case PPC::BI__builtin_altivec_lvebx:
7097 ID = Intrinsic::ppc_altivec_lvebx;
7098 break;
7099 case PPC::BI__builtin_altivec_lvehx:
7100 ID = Intrinsic::ppc_altivec_lvehx;
7101 break;
7102 case PPC::BI__builtin_altivec_lvewx:
7103 ID = Intrinsic::ppc_altivec_lvewx;
7104 break;
7105 case PPC::BI__builtin_altivec_lvsl:
7106 ID = Intrinsic::ppc_altivec_lvsl;
7107 break;
7108 case PPC::BI__builtin_altivec_lvsr:
7109 ID = Intrinsic::ppc_altivec_lvsr;
7110 break;
7111 }
7112 llvm::Function *F = CGM.getIntrinsic(ID);
Jay Foad5bd375a2011-07-15 08:37:34 +00007113 return Builder.CreateCall(F, Ops, "");
Anton Korobeynikovcc50b7d2010-06-19 09:47:18 +00007114 }
7115
Chris Lattnerdad40622010-04-14 03:54:58 +00007116 // vec_st
7117 case PPC::BI__builtin_altivec_stvx:
7118 case PPC::BI__builtin_altivec_stvxl:
7119 case PPC::BI__builtin_altivec_stvebx:
7120 case PPC::BI__builtin_altivec_stvehx:
7121 case PPC::BI__builtin_altivec_stvewx:
7122 {
John McCallad7c5c12011-02-08 08:22:06 +00007123 Ops[2] = Builder.CreateBitCast(Ops[2], Int8PtrTy);
Benjamin Kramer76399eb2011-09-27 21:06:10 +00007124 Ops[1] = Builder.CreateGEP(Ops[2], Ops[1]);
Chris Lattnerdad40622010-04-14 03:54:58 +00007125 Ops.pop_back();
7126
7127 switch (BuiltinID) {
David Blaikie83d382b2011-09-23 05:06:16 +00007128 default: llvm_unreachable("Unsupported st intrinsic!");
Chris Lattnerdad40622010-04-14 03:54:58 +00007129 case PPC::BI__builtin_altivec_stvx:
7130 ID = Intrinsic::ppc_altivec_stvx;
7131 break;
7132 case PPC::BI__builtin_altivec_stvxl:
7133 ID = Intrinsic::ppc_altivec_stvxl;
7134 break;
7135 case PPC::BI__builtin_altivec_stvebx:
7136 ID = Intrinsic::ppc_altivec_stvebx;
7137 break;
7138 case PPC::BI__builtin_altivec_stvehx:
7139 ID = Intrinsic::ppc_altivec_stvehx;
7140 break;
7141 case PPC::BI__builtin_altivec_stvewx:
7142 ID = Intrinsic::ppc_altivec_stvewx;
7143 break;
7144 }
7145 llvm::Function *F = CGM.getIntrinsic(ID);
Jay Foad5bd375a2011-07-15 08:37:34 +00007146 return Builder.CreateCall(F, Ops, "");
Chris Lattnerdad40622010-04-14 03:54:58 +00007147 }
7148 }
Mike Stump11289f42009-09-09 15:08:12 +00007149}