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Anton Korobeynikov55bcea12010-01-10 12:58:08 +00001//===---- TargetInfo.cpp - Encapsulate target details -----------*- C++ -*-===//
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002//
Chandler Carruth2946cd72019-01-19 08:50:56 +00003// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4// See https://llvm.org/LICENSE.txt for license information.
5// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
Anton Korobeynikov244360d2009-06-05 22:08:42 +00006//
7//===----------------------------------------------------------------------===//
8//
9// These classes wrap the information about a call or function
10// definition used to handle ABI compliancy.
11//
12//===----------------------------------------------------------------------===//
13
Anton Korobeynikov55bcea12010-01-10 12:58:08 +000014#include "TargetInfo.h"
Anton Korobeynikov244360d2009-06-05 22:08:42 +000015#include "ABIInfo.h"
Yaxun Liuc2a87a02017-10-14 12:23:50 +000016#include "CGBlocks.h"
Timur Iskhodzhanov8fe501d2013-04-17 12:54:10 +000017#include "CGCXXABI.h"
Reid Kleckner9b3e3df2014-09-04 20:04:38 +000018#include "CGValue.h"
Anton Korobeynikov244360d2009-06-05 22:08:42 +000019#include "CodeGenFunction.h"
Anders Carlsson15b73de2009-07-18 19:43:29 +000020#include "clang/AST/RecordLayout.h"
Richard Trieu63688182018-12-11 03:18:39 +000021#include "clang/Basic/CodeGenOptions.h"
Mark Laceya8e7df32013-10-30 21:53:58 +000022#include "clang/CodeGen/CGFunctionInfo.h"
John McCall12f23522016-04-04 18:33:08 +000023#include "clang/CodeGen/SwiftCallingConv.h"
Matt Arsenault43fae6c2014-12-04 20:38:18 +000024#include "llvm/ADT/StringExtras.h"
Coby Tayree7b49dc92017-08-24 09:07:34 +000025#include "llvm/ADT/StringSwitch.h"
Daniel Dunbare3532f82009-08-24 08:52:16 +000026#include "llvm/ADT/Triple.h"
Yaxun Liu98f0c432017-10-14 12:51:52 +000027#include "llvm/ADT/Twine.h"
Chandler Carruthffd55512013-01-02 11:45:17 +000028#include "llvm/IR/DataLayout.h"
29#include "llvm/IR/Type.h"
Daniel Dunbar7230fa52009-12-03 09:13:49 +000030#include "llvm/Support/raw_ostream.h"
Saleem Abdulrasool10a49722016-04-08 16:52:00 +000031#include <algorithm> // std::sort
Robert Lytton844aeeb2014-05-02 09:33:20 +000032
Anton Korobeynikov244360d2009-06-05 22:08:42 +000033using namespace clang;
34using namespace CodeGen;
35
Pirama Arumuga Nainarbb846a32016-07-27 19:01:51 +000036// Helper for coercing an aggregate argument or return value into an integer
37// array of the same size (including padding) and alignment. This alternate
38// coercion happens only for the RenderScript ABI and can be removed after
39// runtimes that rely on it are no longer supported.
40//
41// RenderScript assumes that the size of the argument / return value in the IR
42// is the same as the size of the corresponding qualified type. This helper
43// coerces the aggregate type into an array of the same size (including
44// padding). This coercion is used in lieu of expansion of struct members or
45// other canonical coercions that return a coerced-type of larger size.
46//
47// Ty - The argument / return value type
48// Context - The associated ASTContext
49// LLVMContext - The associated LLVMContext
50static ABIArgInfo coerceToIntArray(QualType Ty,
51 ASTContext &Context,
52 llvm::LLVMContext &LLVMContext) {
53 // Alignment and Size are measured in bits.
54 const uint64_t Size = Context.getTypeSize(Ty);
55 const uint64_t Alignment = Context.getTypeAlign(Ty);
56 llvm::Type *IntType = llvm::Type::getIntNTy(LLVMContext, Alignment);
57 const uint64_t NumElements = (Size + Alignment - 1) / Alignment;
58 return ABIArgInfo::getDirect(llvm::ArrayType::get(IntType, NumElements));
59}
60
John McCall943fae92010-05-27 06:19:26 +000061static void AssignToArrayRange(CodeGen::CGBuilderTy &Builder,
62 llvm::Value *Array,
63 llvm::Value *Value,
64 unsigned FirstIndex,
65 unsigned LastIndex) {
66 // Alternatively, we could emit this as a loop in the source.
67 for (unsigned I = FirstIndex; I <= LastIndex; ++I) {
David Blaikiefb901c7a2015-04-04 15:12:29 +000068 llvm::Value *Cell =
69 Builder.CreateConstInBoundsGEP1_32(Builder.getInt8Ty(), Array, I);
John McCall7f416cc2015-09-08 08:05:57 +000070 Builder.CreateAlignedStore(Value, Cell, CharUnits::One());
John McCall943fae92010-05-27 06:19:26 +000071 }
72}
73
John McCalla1dee5302010-08-22 10:59:02 +000074static bool isAggregateTypeForABI(QualType T) {
John McCall47fb9502013-03-07 21:37:08 +000075 return !CodeGenFunction::hasScalarEvaluationKind(T) ||
John McCalla1dee5302010-08-22 10:59:02 +000076 T->isMemberFunctionPointerType();
77}
78
John McCall7f416cc2015-09-08 08:05:57 +000079ABIArgInfo
80ABIInfo::getNaturalAlignIndirect(QualType Ty, bool ByRef, bool Realign,
81 llvm::Type *Padding) const {
82 return ABIArgInfo::getIndirect(getContext().getTypeAlignInChars(Ty),
83 ByRef, Realign, Padding);
84}
85
86ABIArgInfo
87ABIInfo::getNaturalAlignIndirectInReg(QualType Ty, bool Realign) const {
88 return ABIArgInfo::getIndirectInReg(getContext().getTypeAlignInChars(Ty),
89 /*ByRef*/ false, Realign);
90}
91
Charles Davisc7d5c942015-09-17 20:55:33 +000092Address ABIInfo::EmitMSVAArg(CodeGenFunction &CGF, Address VAListAddr,
93 QualType Ty) const {
94 return Address::invalid();
95}
96
Angel Garcia Gomez637d1e62015-10-20 13:23:58 +000097ABIInfo::~ABIInfo() {}
Anton Korobeynikov244360d2009-06-05 22:08:42 +000098
John McCall12f23522016-04-04 18:33:08 +000099/// Does the given lowering require more than the given number of
100/// registers when expanded?
101///
102/// This is intended to be the basis of a reasonable basic implementation
103/// of should{Pass,Return}IndirectlyForSwift.
104///
105/// For most targets, a limit of four total registers is reasonable; this
106/// limits the amount of code required in order to move around the value
107/// in case it wasn't produced immediately prior to the call by the caller
108/// (or wasn't produced in exactly the right registers) or isn't used
109/// immediately within the callee. But some targets may need to further
110/// limit the register count due to an inability to support that many
111/// return registers.
112static bool occupiesMoreThan(CodeGenTypes &cgt,
113 ArrayRef<llvm::Type*> scalarTypes,
114 unsigned maxAllRegisters) {
115 unsigned intCount = 0, fpCount = 0;
116 for (llvm::Type *type : scalarTypes) {
117 if (type->isPointerTy()) {
118 intCount++;
119 } else if (auto intTy = dyn_cast<llvm::IntegerType>(type)) {
120 auto ptrWidth = cgt.getTarget().getPointerWidth(0);
121 intCount += (intTy->getBitWidth() + ptrWidth - 1) / ptrWidth;
122 } else {
123 assert(type->isVectorTy() || type->isFloatingPointTy());
124 fpCount++;
125 }
126 }
127
128 return (intCount + fpCount > maxAllRegisters);
129}
130
131bool SwiftABIInfo::isLegalVectorTypeForSwift(CharUnits vectorSize,
132 llvm::Type *eltTy,
133 unsigned numElts) const {
134 // The default implementation of this assumes that the target guarantees
135 // 128-bit SIMD support but nothing more.
136 return (vectorSize.getQuantity() > 8 && vectorSize.getQuantity() <= 16);
137}
138
Timur Iskhodzhanov8fe501d2013-04-17 12:54:10 +0000139static CGCXXABI::RecordArgABI getRecordArgABI(const RecordType *RT,
Mark Lacey3825e832013-10-06 01:33:34 +0000140 CGCXXABI &CXXABI) {
Timur Iskhodzhanov8fe501d2013-04-17 12:54:10 +0000141 const CXXRecordDecl *RD = dyn_cast<CXXRecordDecl>(RT->getDecl());
Akira Hatanakad791e922018-03-19 17:38:40 +0000142 if (!RD) {
143 if (!RT->getDecl()->canPassInRegisters())
144 return CGCXXABI::RAA_Indirect;
Timur Iskhodzhanov8fe501d2013-04-17 12:54:10 +0000145 return CGCXXABI::RAA_Default;
Akira Hatanakad791e922018-03-19 17:38:40 +0000146 }
Mark Lacey3825e832013-10-06 01:33:34 +0000147 return CXXABI.getRecordArgABI(RD);
Timur Iskhodzhanov8fe501d2013-04-17 12:54:10 +0000148}
149
150static CGCXXABI::RecordArgABI getRecordArgABI(QualType T,
Mark Lacey3825e832013-10-06 01:33:34 +0000151 CGCXXABI &CXXABI) {
Timur Iskhodzhanov8fe501d2013-04-17 12:54:10 +0000152 const RecordType *RT = T->getAs<RecordType>();
153 if (!RT)
154 return CGCXXABI::RAA_Default;
Mark Lacey3825e832013-10-06 01:33:34 +0000155 return getRecordArgABI(RT, CXXABI);
156}
157
Akira Hatanakad791e922018-03-19 17:38:40 +0000158static bool classifyReturnType(const CGCXXABI &CXXABI, CGFunctionInfo &FI,
159 const ABIInfo &Info) {
160 QualType Ty = FI.getReturnType();
161
162 if (const auto *RT = Ty->getAs<RecordType>())
163 if (!isa<CXXRecordDecl>(RT->getDecl()) &&
164 !RT->getDecl()->canPassInRegisters()) {
165 FI.getReturnInfo() = Info.getNaturalAlignIndirect(Ty);
166 return true;
167 }
168
169 return CXXABI.classifyReturnType(FI);
170}
171
Reid Klecknerb1be6832014-11-15 01:41:41 +0000172/// Pass transparent unions as if they were the type of the first element. Sema
173/// should ensure that all elements of the union have the same "machine type".
174static QualType useFirstFieldIfTransparentUnion(QualType Ty) {
175 if (const RecordType *UT = Ty->getAsUnionType()) {
176 const RecordDecl *UD = UT->getDecl();
177 if (UD->hasAttr<TransparentUnionAttr>()) {
178 assert(!UD->field_empty() && "sema created an empty transparent union");
179 return UD->field_begin()->getType();
180 }
181 }
182 return Ty;
183}
184
Mark Lacey3825e832013-10-06 01:33:34 +0000185CGCXXABI &ABIInfo::getCXXABI() const {
186 return CGT.getCXXABI();
Timur Iskhodzhanov8fe501d2013-04-17 12:54:10 +0000187}
188
Chris Lattner2b037972010-07-29 02:01:43 +0000189ASTContext &ABIInfo::getContext() const {
190 return CGT.getContext();
191}
192
193llvm::LLVMContext &ABIInfo::getVMContext() const {
194 return CGT.getLLVMContext();
195}
196
Micah Villmowdd31ca12012-10-08 16:25:52 +0000197const llvm::DataLayout &ABIInfo::getDataLayout() const {
198 return CGT.getDataLayout();
Chris Lattner2b037972010-07-29 02:01:43 +0000199}
200
John McCallc8e01702013-04-16 22:48:15 +0000201const TargetInfo &ABIInfo::getTarget() const {
202 return CGT.getTarget();
203}
Chris Lattner2b037972010-07-29 02:01:43 +0000204
Richard Smithf667ad52017-08-26 01:04:35 +0000205const CodeGenOptions &ABIInfo::getCodeGenOpts() const {
206 return CGT.getCodeGenOpts();
207}
208
209bool ABIInfo::isAndroid() const { return getTarget().getTriple().isAndroid(); }
Nirav Dave9a8f97e2016-02-22 16:48:42 +0000210
Reid Klecknere9f6a712014-10-31 17:10:41 +0000211bool ABIInfo::isHomogeneousAggregateBaseType(QualType Ty) const {
212 return false;
213}
214
215bool ABIInfo::isHomogeneousAggregateSmallEnough(const Type *Base,
216 uint64_t Members) const {
217 return false;
218}
219
Yaron Kerencdae9412016-01-29 19:38:18 +0000220LLVM_DUMP_METHOD void ABIArgInfo::dump() const {
Chris Lattner0e62c1c2011-07-23 10:55:15 +0000221 raw_ostream &OS = llvm::errs();
Daniel Dunbar7230fa52009-12-03 09:13:49 +0000222 OS << "(ABIArgInfo Kind=";
Anton Korobeynikov244360d2009-06-05 22:08:42 +0000223 switch (TheKind) {
224 case Direct:
Chris Lattnerfe34c1d2010-07-29 06:26:06 +0000225 OS << "Direct Type=";
Chris Lattner2192fe52011-07-18 04:24:23 +0000226 if (llvm::Type *Ty = getCoerceToType())
Chris Lattnerfe34c1d2010-07-29 06:26:06 +0000227 Ty->print(OS);
228 else
229 OS << "null";
Anton Korobeynikov244360d2009-06-05 22:08:42 +0000230 break;
Anton Korobeynikov18adbf52009-06-06 09:36:29 +0000231 case Extend:
Daniel Dunbar7230fa52009-12-03 09:13:49 +0000232 OS << "Extend";
Anton Korobeynikov18adbf52009-06-06 09:36:29 +0000233 break;
Anton Korobeynikov244360d2009-06-05 22:08:42 +0000234 case Ignore:
Daniel Dunbar7230fa52009-12-03 09:13:49 +0000235 OS << "Ignore";
Anton Korobeynikov244360d2009-06-05 22:08:42 +0000236 break;
Reid Kleckner314ef7b2014-02-01 00:04:45 +0000237 case InAlloca:
238 OS << "InAlloca Offset=" << getInAllocaFieldIndex();
239 break;
Anton Korobeynikov244360d2009-06-05 22:08:42 +0000240 case Indirect:
John McCall7f416cc2015-09-08 08:05:57 +0000241 OS << "Indirect Align=" << getIndirectAlign().getQuantity()
Joerg Sonnenberger4921fe22011-07-15 18:23:44 +0000242 << " ByVal=" << getIndirectByVal()
Daniel Dunbar7b7c2932010-09-16 20:42:02 +0000243 << " Realign=" << getIndirectRealign();
Anton Korobeynikov244360d2009-06-05 22:08:42 +0000244 break;
245 case Expand:
Daniel Dunbar7230fa52009-12-03 09:13:49 +0000246 OS << "Expand";
Anton Korobeynikov244360d2009-06-05 22:08:42 +0000247 break;
John McCallf26e73d2016-03-11 04:30:43 +0000248 case CoerceAndExpand:
249 OS << "CoerceAndExpand Type=";
250 getCoerceAndExpandType()->print(OS);
251 break;
Anton Korobeynikov244360d2009-06-05 22:08:42 +0000252 }
Daniel Dunbar7230fa52009-12-03 09:13:49 +0000253 OS << ")\n";
Anton Korobeynikov244360d2009-06-05 22:08:42 +0000254}
255
Petar Jovanovic402257b2015-12-04 00:26:47 +0000256// Dynamically round a pointer up to a multiple of the given alignment.
257static llvm::Value *emitRoundPointerUpToAlignment(CodeGenFunction &CGF,
258 llvm::Value *Ptr,
259 CharUnits Align) {
260 llvm::Value *PtrAsInt = Ptr;
261 // OverflowArgArea = (OverflowArgArea + Align - 1) & -Align;
262 PtrAsInt = CGF.Builder.CreatePtrToInt(PtrAsInt, CGF.IntPtrTy);
263 PtrAsInt = CGF.Builder.CreateAdd(PtrAsInt,
264 llvm::ConstantInt::get(CGF.IntPtrTy, Align.getQuantity() - 1));
265 PtrAsInt = CGF.Builder.CreateAnd(PtrAsInt,
266 llvm::ConstantInt::get(CGF.IntPtrTy, -Align.getQuantity()));
267 PtrAsInt = CGF.Builder.CreateIntToPtr(PtrAsInt,
268 Ptr->getType(),
269 Ptr->getName() + ".aligned");
270 return PtrAsInt;
271}
272
John McCall7f416cc2015-09-08 08:05:57 +0000273/// Emit va_arg for a platform using the common void* representation,
274/// where arguments are simply emitted in an array of slots on the stack.
275///
276/// This version implements the core direct-value passing rules.
277///
278/// \param SlotSize - The size and alignment of a stack slot.
279/// Each argument will be allocated to a multiple of this number of
280/// slots, and all the slots will be aligned to this value.
281/// \param AllowHigherAlign - The slot alignment is not a cap;
282/// an argument type with an alignment greater than the slot size
283/// will be emitted on a higher-alignment address, potentially
284/// leaving one or more empty slots behind as padding. If this
285/// is false, the returned address might be less-aligned than
286/// DirectAlign.
287static Address emitVoidPtrDirectVAArg(CodeGenFunction &CGF,
288 Address VAListAddr,
289 llvm::Type *DirectTy,
290 CharUnits DirectSize,
291 CharUnits DirectAlign,
292 CharUnits SlotSize,
293 bool AllowHigherAlign) {
294 // Cast the element type to i8* if necessary. Some platforms define
295 // va_list as a struct containing an i8* instead of just an i8*.
296 if (VAListAddr.getElementType() != CGF.Int8PtrTy)
297 VAListAddr = CGF.Builder.CreateElementBitCast(VAListAddr, CGF.Int8PtrTy);
298
299 llvm::Value *Ptr = CGF.Builder.CreateLoad(VAListAddr, "argp.cur");
300
301 // If the CC aligns values higher than the slot size, do so if needed.
302 Address Addr = Address::invalid();
303 if (AllowHigherAlign && DirectAlign > SlotSize) {
Petar Jovanovic402257b2015-12-04 00:26:47 +0000304 Addr = Address(emitRoundPointerUpToAlignment(CGF, Ptr, DirectAlign),
305 DirectAlign);
John McCall7f416cc2015-09-08 08:05:57 +0000306 } else {
Fangrui Song6907ce22018-07-30 19:24:48 +0000307 Addr = Address(Ptr, SlotSize);
John McCall7f416cc2015-09-08 08:05:57 +0000308 }
309
310 // Advance the pointer past the argument, then store that back.
Rui Ueyama83aa9792016-01-14 21:00:27 +0000311 CharUnits FullDirectSize = DirectSize.alignTo(SlotSize);
James Y Knight3d2df5a2019-02-05 19:01:33 +0000312 Address NextPtr =
313 CGF.Builder.CreateConstInBoundsByteGEP(Addr, FullDirectSize, "argp.next");
314 CGF.Builder.CreateStore(NextPtr.getPointer(), VAListAddr);
John McCall7f416cc2015-09-08 08:05:57 +0000315
316 // If the argument is smaller than a slot, and this is a big-endian
317 // target, the argument will be right-adjusted in its slot.
Strahinja Petrovic515a1eb2016-06-24 12:12:41 +0000318 if (DirectSize < SlotSize && CGF.CGM.getDataLayout().isBigEndian() &&
319 !DirectTy->isStructTy()) {
John McCall7f416cc2015-09-08 08:05:57 +0000320 Addr = CGF.Builder.CreateConstInBoundsByteGEP(Addr, SlotSize - DirectSize);
321 }
322
323 Addr = CGF.Builder.CreateElementBitCast(Addr, DirectTy);
324 return Addr;
325}
326
327/// Emit va_arg for a platform using the common void* representation,
328/// where arguments are simply emitted in an array of slots on the stack.
329///
330/// \param IsIndirect - Values of this type are passed indirectly.
331/// \param ValueInfo - The size and alignment of this type, generally
332/// computed with getContext().getTypeInfoInChars(ValueTy).
333/// \param SlotSizeAndAlign - The size and alignment of a stack slot.
334/// Each argument will be allocated to a multiple of this number of
335/// slots, and all the slots will be aligned to this value.
336/// \param AllowHigherAlign - The slot alignment is not a cap;
337/// an argument type with an alignment greater than the slot size
338/// will be emitted on a higher-alignment address, potentially
339/// leaving one or more empty slots behind as padding.
340static Address emitVoidPtrVAArg(CodeGenFunction &CGF, Address VAListAddr,
341 QualType ValueTy, bool IsIndirect,
342 std::pair<CharUnits, CharUnits> ValueInfo,
343 CharUnits SlotSizeAndAlign,
344 bool AllowHigherAlign) {
345 // The size and alignment of the value that was passed directly.
346 CharUnits DirectSize, DirectAlign;
347 if (IsIndirect) {
348 DirectSize = CGF.getPointerSize();
349 DirectAlign = CGF.getPointerAlign();
350 } else {
351 DirectSize = ValueInfo.first;
352 DirectAlign = ValueInfo.second;
353 }
354
355 // Cast the address we've calculated to the right type.
356 llvm::Type *DirectTy = CGF.ConvertTypeForMem(ValueTy);
357 if (IsIndirect)
358 DirectTy = DirectTy->getPointerTo(0);
359
360 Address Addr = emitVoidPtrDirectVAArg(CGF, VAListAddr, DirectTy,
361 DirectSize, DirectAlign,
362 SlotSizeAndAlign,
363 AllowHigherAlign);
364
365 if (IsIndirect) {
366 Addr = Address(CGF.Builder.CreateLoad(Addr), ValueInfo.second);
367 }
368
369 return Addr;
Fangrui Song6907ce22018-07-30 19:24:48 +0000370
John McCall7f416cc2015-09-08 08:05:57 +0000371}
372
373static Address emitMergePHI(CodeGenFunction &CGF,
374 Address Addr1, llvm::BasicBlock *Block1,
375 Address Addr2, llvm::BasicBlock *Block2,
376 const llvm::Twine &Name = "") {
377 assert(Addr1.getType() == Addr2.getType());
378 llvm::PHINode *PHI = CGF.Builder.CreatePHI(Addr1.getType(), 2, Name);
379 PHI->addIncoming(Addr1.getPointer(), Block1);
380 PHI->addIncoming(Addr2.getPointer(), Block2);
381 CharUnits Align = std::min(Addr1.getAlignment(), Addr2.getAlignment());
382 return Address(PHI, Align);
383}
384
Anton Korobeynikov55bcea12010-01-10 12:58:08 +0000385TargetCodeGenInfo::~TargetCodeGenInfo() { delete Info; }
386
John McCall3480ef22011-08-30 01:42:09 +0000387// If someone can figure out a general rule for this, that would be great.
388// It's probably just doomed to be platform-dependent, though.
389unsigned TargetCodeGenInfo::getSizeOfUnwindException() const {
390 // Verified for:
391 // x86-64 FreeBSD, Linux, Darwin
392 // x86-32 FreeBSD, Linux, Darwin
393 // PowerPC Linux, Darwin
394 // ARM Darwin (*not* EABI)
Tim Northover9bb857a2013-01-31 12:13:10 +0000395 // AArch64 Linux
John McCall3480ef22011-08-30 01:42:09 +0000396 return 32;
397}
398
John McCalla729c622012-02-17 03:33:10 +0000399bool TargetCodeGenInfo::isNoProtoCallVariadic(const CallArgList &args,
400 const FunctionNoProtoType *fnType) const {
John McCallcbc038a2011-09-21 08:08:30 +0000401 // The following conventions are known to require this to be false:
402 // x86_stdcall
403 // MIPS
404 // For everything else, we just prefer false unless we opt out.
405 return false;
406}
407
Reid Klecknere43f0fe2013-05-08 13:44:39 +0000408void
409TargetCodeGenInfo::getDependentLibraryOption(llvm::StringRef Lib,
410 llvm::SmallString<24> &Opt) const {
411 // This assumes the user is passing a library name like "rt" instead of a
412 // filename like "librt.a/so", and that they don't care whether it's static or
413 // dynamic.
414 Opt = "-l";
415 Opt += Lib;
416}
417
Nikolay Haustov8c6538b2016-06-30 09:06:33 +0000418unsigned TargetCodeGenInfo::getOpenCLKernelCallingConv() const {
Pekka Jaaskelainenfc2629a2017-06-01 07:18:49 +0000419 // OpenCL kernels are called via an explicit runtime API with arguments
420 // set with clSetKernelArg(), not as normal sub-functions.
421 // Return SPIR_KERNEL by default as the kernel calling convention to
422 // ensure the fingerprint is fixed such way that each OpenCL argument
423 // gets one matching argument in the produced kernel function argument
424 // list to enable feasible implementation of clSetKernelArg() with
425 // aggregates etc. In case we would use the default C calling conv here,
426 // clSetKernelArg() might break depending on the target-specific
427 // conventions; different targets might split structs passed as values
428 // to multiple function arguments etc.
429 return llvm::CallingConv::SPIR_KERNEL;
Nikolay Haustov8c6538b2016-06-30 09:06:33 +0000430}
Yaxun Liu37ceede2016-07-20 19:21:11 +0000431
Yaxun Liu402804b2016-12-15 08:09:08 +0000432llvm::Constant *TargetCodeGenInfo::getNullPointer(const CodeGen::CodeGenModule &CGM,
433 llvm::PointerType *T, QualType QT) const {
434 return llvm::ConstantPointerNull::get(T);
435}
436
Alexander Richardson6d989432017-10-15 18:48:14 +0000437LangAS TargetCodeGenInfo::getGlobalVarAddressSpace(CodeGenModule &CGM,
438 const VarDecl *D) const {
Yaxun Liucbf647c2017-07-08 13:24:52 +0000439 assert(!CGM.getLangOpts().OpenCL &&
440 !(CGM.getLangOpts().CUDA && CGM.getLangOpts().CUDAIsDevice) &&
441 "Address space agnostic languages only");
Alexander Richardson6d989432017-10-15 18:48:14 +0000442 return D ? D->getType().getAddressSpace() : LangAS::Default;
Yaxun Liucbf647c2017-07-08 13:24:52 +0000443}
444
Yaxun Liu402804b2016-12-15 08:09:08 +0000445llvm::Value *TargetCodeGenInfo::performAddrSpaceCast(
Alexander Richardson6d989432017-10-15 18:48:14 +0000446 CodeGen::CodeGenFunction &CGF, llvm::Value *Src, LangAS SrcAddr,
447 LangAS DestAddr, llvm::Type *DestTy, bool isNonNull) const {
Yaxun Liu402804b2016-12-15 08:09:08 +0000448 // Since target may map different address spaces in AST to the same address
449 // space, an address space conversion may end up as a bitcast.
Yaxun Liucbf647c2017-07-08 13:24:52 +0000450 if (auto *C = dyn_cast<llvm::Constant>(Src))
451 return performAddrSpaceCast(CGF.CGM, C, SrcAddr, DestAddr, DestTy);
Yaxun Liu6d96f1632017-05-18 18:51:09 +0000452 return CGF.Builder.CreatePointerBitCastOrAddrSpaceCast(Src, DestTy);
Yaxun Liu402804b2016-12-15 08:09:08 +0000453}
454
Yaxun Liucbf647c2017-07-08 13:24:52 +0000455llvm::Constant *
456TargetCodeGenInfo::performAddrSpaceCast(CodeGenModule &CGM, llvm::Constant *Src,
Alexander Richardson6d989432017-10-15 18:48:14 +0000457 LangAS SrcAddr, LangAS DestAddr,
Yaxun Liucbf647c2017-07-08 13:24:52 +0000458 llvm::Type *DestTy) const {
459 // Since target may map different address spaces in AST to the same address
460 // space, an address space conversion may end up as a bitcast.
461 return llvm::ConstantExpr::getPointerCast(Src, DestTy);
462}
463
Yaxun Liu39195062017-08-04 18:16:31 +0000464llvm::SyncScope::ID
465TargetCodeGenInfo::getLLVMSyncScopeID(SyncScope S, llvm::LLVMContext &C) const {
466 return C.getOrInsertSyncScopeID(""); /* default sync scope */
467}
468
Daniel Dunbar626f1d82009-09-13 08:03:58 +0000469static bool isEmptyRecord(ASTContext &Context, QualType T, bool AllowArrays);
Anton Korobeynikov244360d2009-06-05 22:08:42 +0000470
Sylvestre Ledru33b5baf2012-09-27 10:16:10 +0000471/// isEmptyField - Return true iff a the field is "empty", that is it
Anton Korobeynikov244360d2009-06-05 22:08:42 +0000472/// is an unnamed bit-field or an (array of) empty record(s).
Daniel Dunbar626f1d82009-09-13 08:03:58 +0000473static bool isEmptyField(ASTContext &Context, const FieldDecl *FD,
474 bool AllowArrays) {
Anton Korobeynikov244360d2009-06-05 22:08:42 +0000475 if (FD->isUnnamedBitfield())
476 return true;
477
478 QualType FT = FD->getType();
Anton Korobeynikov244360d2009-06-05 22:08:42 +0000479
Eli Friedman0b3f2012011-11-18 03:47:20 +0000480 // Constant arrays of empty records count as empty, strip them off.
481 // Constant arrays of zero length always count as empty.
Daniel Dunbar626f1d82009-09-13 08:03:58 +0000482 if (AllowArrays)
Eli Friedman0b3f2012011-11-18 03:47:20 +0000483 while (const ConstantArrayType *AT = Context.getAsConstantArrayType(FT)) {
484 if (AT->getSize() == 0)
485 return true;
Daniel Dunbar626f1d82009-09-13 08:03:58 +0000486 FT = AT->getElementType();
Eli Friedman0b3f2012011-11-18 03:47:20 +0000487 }
Daniel Dunbar626f1d82009-09-13 08:03:58 +0000488
Daniel Dunbarcd20ce12010-05-17 16:46:00 +0000489 const RecordType *RT = FT->getAs<RecordType>();
490 if (!RT)
491 return false;
492
493 // C++ record fields are never empty, at least in the Itanium ABI.
494 //
495 // FIXME: We should use a predicate for whether this behavior is true in the
496 // current ABI.
497 if (isa<CXXRecordDecl>(RT->getDecl()))
498 return false;
499
Daniel Dunbar626f1d82009-09-13 08:03:58 +0000500 return isEmptyRecord(Context, FT, AllowArrays);
Anton Korobeynikov244360d2009-06-05 22:08:42 +0000501}
502
Sylvestre Ledru33b5baf2012-09-27 10:16:10 +0000503/// isEmptyRecord - Return true iff a structure contains only empty
Anton Korobeynikov244360d2009-06-05 22:08:42 +0000504/// fields. Note that a structure with a flexible array member is not
505/// considered empty.
Daniel Dunbar626f1d82009-09-13 08:03:58 +0000506static bool isEmptyRecord(ASTContext &Context, QualType T, bool AllowArrays) {
Ted Kremenekc23c7e62009-07-29 21:53:49 +0000507 const RecordType *RT = T->getAs<RecordType>();
Anton Korobeynikov244360d2009-06-05 22:08:42 +0000508 if (!RT)
Denis Zobnin380b2242016-02-11 11:26:03 +0000509 return false;
Anton Korobeynikov244360d2009-06-05 22:08:42 +0000510 const RecordDecl *RD = RT->getDecl();
511 if (RD->hasFlexibleArrayMember())
512 return false;
Daniel Dunbarcd20ce12010-05-17 16:46:00 +0000513
Argyrios Kyrtzidisd42411f2011-05-17 02:17:52 +0000514 // If this is a C++ record, check the bases first.
Daniel Dunbarcd20ce12010-05-17 16:46:00 +0000515 if (const CXXRecordDecl *CXXRD = dyn_cast<CXXRecordDecl>(RD))
Aaron Ballman574705e2014-03-13 15:41:46 +0000516 for (const auto &I : CXXRD->bases())
517 if (!isEmptyRecord(Context, I.getType(), true))
Argyrios Kyrtzidisd42411f2011-05-17 02:17:52 +0000518 return false;
Daniel Dunbarcd20ce12010-05-17 16:46:00 +0000519
Aaron Ballmane8a8bae2014-03-08 20:12:42 +0000520 for (const auto *I : RD->fields())
521 if (!isEmptyField(Context, I, AllowArrays))
Anton Korobeynikov244360d2009-06-05 22:08:42 +0000522 return false;
523 return true;
524}
525
526/// isSingleElementStruct - Determine if a structure is a "single
527/// element struct", i.e. it has exactly one non-empty field or
528/// exactly one field which is itself a single element
529/// struct. Structures with flexible array members are never
530/// considered single element structs.
531///
532/// \return The field declaration for the single non-empty field, if
533/// it exists.
534static const Type *isSingleElementStruct(QualType T, ASTContext &Context) {
Benjamin Kramer83b1bf32015-03-02 16:09:24 +0000535 const RecordType *RT = T->getAs<RecordType>();
Anton Korobeynikov244360d2009-06-05 22:08:42 +0000536 if (!RT)
Craig Topper8a13c412014-05-21 05:09:00 +0000537 return nullptr;
Anton Korobeynikov244360d2009-06-05 22:08:42 +0000538
539 const RecordDecl *RD = RT->getDecl();
540 if (RD->hasFlexibleArrayMember())
Craig Topper8a13c412014-05-21 05:09:00 +0000541 return nullptr;
Anton Korobeynikov244360d2009-06-05 22:08:42 +0000542
Craig Topper8a13c412014-05-21 05:09:00 +0000543 const Type *Found = nullptr;
Michael J. Spencerb2f376b2010-08-25 18:17:27 +0000544
Daniel Dunbar12ebb472010-05-11 21:15:36 +0000545 // If this is a C++ record, check the bases first.
546 if (const CXXRecordDecl *CXXRD = dyn_cast<CXXRecordDecl>(RD)) {
Aaron Ballman574705e2014-03-13 15:41:46 +0000547 for (const auto &I : CXXRD->bases()) {
Daniel Dunbar12ebb472010-05-11 21:15:36 +0000548 // Ignore empty records.
Aaron Ballman574705e2014-03-13 15:41:46 +0000549 if (isEmptyRecord(Context, I.getType(), true))
Daniel Dunbar12ebb472010-05-11 21:15:36 +0000550 continue;
551
552 // If we already found an element then this isn't a single-element struct.
553 if (Found)
Craig Topper8a13c412014-05-21 05:09:00 +0000554 return nullptr;
Daniel Dunbar12ebb472010-05-11 21:15:36 +0000555
556 // If this is non-empty and not a single element struct, the composite
557 // cannot be a single element struct.
Aaron Ballman574705e2014-03-13 15:41:46 +0000558 Found = isSingleElementStruct(I.getType(), Context);
Daniel Dunbar12ebb472010-05-11 21:15:36 +0000559 if (!Found)
Craig Topper8a13c412014-05-21 05:09:00 +0000560 return nullptr;
Daniel Dunbar12ebb472010-05-11 21:15:36 +0000561 }
562 }
563
564 // Check for single element.
Aaron Ballmane8a8bae2014-03-08 20:12:42 +0000565 for (const auto *FD : RD->fields()) {
Anton Korobeynikov244360d2009-06-05 22:08:42 +0000566 QualType FT = FD->getType();
567
568 // Ignore empty fields.
Daniel Dunbar626f1d82009-09-13 08:03:58 +0000569 if (isEmptyField(Context, FD, true))
Anton Korobeynikov244360d2009-06-05 22:08:42 +0000570 continue;
571
572 // If we already found an element then this isn't a single-element
573 // struct.
574 if (Found)
Craig Topper8a13c412014-05-21 05:09:00 +0000575 return nullptr;
Anton Korobeynikov244360d2009-06-05 22:08:42 +0000576
577 // Treat single element arrays as the element.
578 while (const ConstantArrayType *AT = Context.getAsConstantArrayType(FT)) {
579 if (AT->getSize().getZExtValue() != 1)
580 break;
581 FT = AT->getElementType();
582 }
583
John McCalla1dee5302010-08-22 10:59:02 +0000584 if (!isAggregateTypeForABI(FT)) {
Anton Korobeynikov244360d2009-06-05 22:08:42 +0000585 Found = FT.getTypePtr();
586 } else {
587 Found = isSingleElementStruct(FT, Context);
588 if (!Found)
Craig Topper8a13c412014-05-21 05:09:00 +0000589 return nullptr;
Anton Korobeynikov244360d2009-06-05 22:08:42 +0000590 }
591 }
592
Eli Friedmanee945342011-11-18 01:25:50 +0000593 // We don't consider a struct a single-element struct if it has
594 // padding beyond the element type.
595 if (Found && Context.getTypeSize(Found) != Context.getTypeSize(T))
Craig Topper8a13c412014-05-21 05:09:00 +0000596 return nullptr;
Eli Friedmanee945342011-11-18 01:25:50 +0000597
Anton Korobeynikov244360d2009-06-05 22:08:42 +0000598 return Found;
599}
600
Anton Korobeynikov244360d2009-06-05 22:08:42 +0000601namespace {
James Y Knight29b5f082016-02-24 02:59:33 +0000602Address EmitVAArgInstr(CodeGenFunction &CGF, Address VAListAddr, QualType Ty,
603 const ABIArgInfo &AI) {
604 // This default implementation defers to the llvm backend's va_arg
605 // instruction. It can handle only passing arguments directly
606 // (typically only handled in the backend for primitive types), or
607 // aggregates passed indirectly by pointer (NOTE: if the "byval"
608 // flag has ABI impact in the callee, this implementation cannot
609 // work.)
610
611 // Only a few cases are covered here at the moment -- those needed
612 // by the default abi.
613 llvm::Value *Val;
614
615 if (AI.isIndirect()) {
616 assert(!AI.getPaddingType() &&
Richard Smith81ef0e12016-05-14 01:21:40 +0000617 "Unexpected PaddingType seen in arginfo in generic VAArg emitter!");
James Y Knight29b5f082016-02-24 02:59:33 +0000618 assert(
619 !AI.getIndirectRealign() &&
Richard Smith81ef0e12016-05-14 01:21:40 +0000620 "Unexpected IndirectRealign seen in arginfo in generic VAArg emitter!");
James Y Knight29b5f082016-02-24 02:59:33 +0000621
622 auto TyInfo = CGF.getContext().getTypeInfoInChars(Ty);
623 CharUnits TyAlignForABI = TyInfo.second;
624
625 llvm::Type *BaseTy =
626 llvm::PointerType::getUnqual(CGF.ConvertTypeForMem(Ty));
627 llvm::Value *Addr =
628 CGF.Builder.CreateVAArg(VAListAddr.getPointer(), BaseTy);
629 return Address(Addr, TyAlignForABI);
630 } else {
631 assert((AI.isDirect() || AI.isExtend()) &&
632 "Unexpected ArgInfo Kind in generic VAArg emitter!");
633
634 assert(!AI.getInReg() &&
Richard Smith81ef0e12016-05-14 01:21:40 +0000635 "Unexpected InReg seen in arginfo in generic VAArg emitter!");
James Y Knight29b5f082016-02-24 02:59:33 +0000636 assert(!AI.getPaddingType() &&
Richard Smith81ef0e12016-05-14 01:21:40 +0000637 "Unexpected PaddingType seen in arginfo in generic VAArg emitter!");
James Y Knight29b5f082016-02-24 02:59:33 +0000638 assert(!AI.getDirectOffset() &&
Richard Smith81ef0e12016-05-14 01:21:40 +0000639 "Unexpected DirectOffset seen in arginfo in generic VAArg emitter!");
James Y Knight29b5f082016-02-24 02:59:33 +0000640 assert(!AI.getCoerceToType() &&
Richard Smith81ef0e12016-05-14 01:21:40 +0000641 "Unexpected CoerceToType seen in arginfo in generic VAArg emitter!");
James Y Knight29b5f082016-02-24 02:59:33 +0000642
643 Address Temp = CGF.CreateMemTemp(Ty, "varet");
644 Val = CGF.Builder.CreateVAArg(VAListAddr.getPointer(), CGF.ConvertType(Ty));
645 CGF.Builder.CreateStore(Val, Temp);
646 return Temp;
647 }
648}
649
Anton Korobeynikov244360d2009-06-05 22:08:42 +0000650/// DefaultABIInfo - The default implementation for ABI specific
651/// details. This implementation provides information which results in
652/// self-consistent and sensible LLVM IR generation, but does not
653/// conform to any particular ABI.
654class DefaultABIInfo : public ABIInfo {
Chris Lattner2b037972010-07-29 02:01:43 +0000655public:
656 DefaultABIInfo(CodeGen::CodeGenTypes &CGT) : ABIInfo(CGT) {}
Michael J. Spencerb2f376b2010-08-25 18:17:27 +0000657
Chris Lattner458b2aa2010-07-29 02:16:43 +0000658 ABIArgInfo classifyReturnType(QualType RetTy) const;
659 ABIArgInfo classifyArgumentType(QualType RetTy) const;
Anton Korobeynikov244360d2009-06-05 22:08:42 +0000660
Craig Topper4f12f102014-03-12 06:41:41 +0000661 void computeInfo(CGFunctionInfo &FI) const override {
Reid Kleckner40ca9132014-05-13 22:05:45 +0000662 if (!getCXXABI().classifyReturnType(FI))
663 FI.getReturnInfo() = classifyReturnType(FI.getReturnType());
Aaron Ballmanec47bc22014-03-17 18:10:01 +0000664 for (auto &I : FI.arguments())
665 I.info = classifyArgumentType(I.type);
Anton Korobeynikov244360d2009-06-05 22:08:42 +0000666 }
667
John McCall7f416cc2015-09-08 08:05:57 +0000668 Address EmitVAArg(CodeGenFunction &CGF, Address VAListAddr,
James Y Knight29b5f082016-02-24 02:59:33 +0000669 QualType Ty) const override {
670 return EmitVAArgInstr(CGF, VAListAddr, Ty, classifyArgumentType(Ty));
671 }
Anton Korobeynikov244360d2009-06-05 22:08:42 +0000672};
673
Anton Korobeynikov55bcea12010-01-10 12:58:08 +0000674class DefaultTargetCodeGenInfo : public TargetCodeGenInfo {
675public:
Chris Lattner2b037972010-07-29 02:01:43 +0000676 DefaultTargetCodeGenInfo(CodeGen::CodeGenTypes &CGT)
677 : TargetCodeGenInfo(new DefaultABIInfo(CGT)) {}
Anton Korobeynikov55bcea12010-01-10 12:58:08 +0000678};
679
Chris Lattner458b2aa2010-07-29 02:16:43 +0000680ABIArgInfo DefaultABIInfo::classifyArgumentType(QualType Ty) const {
Reid Klecknerac385062015-05-18 22:46:30 +0000681 Ty = useFirstFieldIfTransparentUnion(Ty);
682
683 if (isAggregateTypeForABI(Ty)) {
684 // Records with non-trivial destructors/copy-constructors should not be
685 // passed by value.
686 if (CGCXXABI::RecordArgABI RAA = getRecordArgABI(Ty, getCXXABI()))
John McCall7f416cc2015-09-08 08:05:57 +0000687 return getNaturalAlignIndirect(Ty, RAA == CGCXXABI::RAA_DirectInMemory);
Reid Klecknerac385062015-05-18 22:46:30 +0000688
John McCall7f416cc2015-09-08 08:05:57 +0000689 return getNaturalAlignIndirect(Ty);
Reid Klecknerac385062015-05-18 22:46:30 +0000690 }
Daniel Dunbar557893d2010-04-21 19:10:51 +0000691
Chris Lattner9723d6c2010-03-11 18:19:55 +0000692 // Treat an enum type as its underlying type.
693 if (const EnumType *EnumTy = Ty->getAs<EnumType>())
694 Ty = EnumTy->getDecl()->getIntegerType();
Douglas Gregora71cc152010-02-02 20:10:50 +0000695
Alex Bradburye41a5e22018-01-12 20:08:16 +0000696 return (Ty->isPromotableIntegerType() ? ABIArgInfo::getExtend(Ty)
697 : ABIArgInfo::getDirect());
Anton Korobeynikov55bcea12010-01-10 12:58:08 +0000698}
699
Bob Wilsonbd4520b2011-01-10 23:54:17 +0000700ABIArgInfo DefaultABIInfo::classifyReturnType(QualType RetTy) const {
701 if (RetTy->isVoidType())
702 return ABIArgInfo::getIgnore();
703
704 if (isAggregateTypeForABI(RetTy))
John McCall7f416cc2015-09-08 08:05:57 +0000705 return getNaturalAlignIndirect(RetTy);
Bob Wilsonbd4520b2011-01-10 23:54:17 +0000706
707 // Treat an enum type as its underlying type.
708 if (const EnumType *EnumTy = RetTy->getAs<EnumType>())
709 RetTy = EnumTy->getDecl()->getIntegerType();
710
Alex Bradburye41a5e22018-01-12 20:08:16 +0000711 return (RetTy->isPromotableIntegerType() ? ABIArgInfo::getExtend(RetTy)
712 : ABIArgInfo::getDirect());
Bob Wilsonbd4520b2011-01-10 23:54:17 +0000713}
714
Derek Schuff09338a22012-09-06 17:37:28 +0000715//===----------------------------------------------------------------------===//
Dan Gohmanc2853072015-09-03 22:51:53 +0000716// WebAssembly ABI Implementation
717//
718// This is a very simple ABI that relies a lot on DefaultABIInfo.
719//===----------------------------------------------------------------------===//
720
Daniel Dunbara39bab32019-01-03 23:24:50 +0000721class WebAssemblyABIInfo final : public SwiftABIInfo {
722 DefaultABIInfo defaultInfo;
723
Dan Gohmanc2853072015-09-03 22:51:53 +0000724public:
725 explicit WebAssemblyABIInfo(CodeGen::CodeGenTypes &CGT)
Daniel Dunbara39bab32019-01-03 23:24:50 +0000726 : SwiftABIInfo(CGT), defaultInfo(CGT) {}
Dan Gohmanc2853072015-09-03 22:51:53 +0000727
728private:
729 ABIArgInfo classifyReturnType(QualType RetTy) const;
730 ABIArgInfo classifyArgumentType(QualType Ty) const;
731
732 // DefaultABIInfo's classifyReturnType and classifyArgumentType are
Richard Smith81ef0e12016-05-14 01:21:40 +0000733 // non-virtual, but computeInfo and EmitVAArg are virtual, so we
James Y Knight29b5f082016-02-24 02:59:33 +0000734 // overload them.
Dan Gohmanc2853072015-09-03 22:51:53 +0000735 void computeInfo(CGFunctionInfo &FI) const override {
736 if (!getCXXABI().classifyReturnType(FI))
737 FI.getReturnInfo() = classifyReturnType(FI.getReturnType());
738 for (auto &Arg : FI.arguments())
739 Arg.info = classifyArgumentType(Arg.type);
740 }
Dan Gohman1fcd10c2016-02-22 19:17:40 +0000741
742 Address EmitVAArg(CodeGenFunction &CGF, Address VAListAddr,
743 QualType Ty) const override;
Daniel Dunbara39bab32019-01-03 23:24:50 +0000744
745 bool shouldPassIndirectlyForSwift(ArrayRef<llvm::Type*> scalars,
746 bool asReturnValue) const override {
747 return occupiesMoreThan(CGT, scalars, /*total*/ 4);
748 }
749
750 bool isSwiftErrorInRegister() const override {
751 return false;
752 }
Dan Gohmanc2853072015-09-03 22:51:53 +0000753};
754
755class WebAssemblyTargetCodeGenInfo final : public TargetCodeGenInfo {
756public:
757 explicit WebAssemblyTargetCodeGenInfo(CodeGen::CodeGenTypes &CGT)
758 : TargetCodeGenInfo(new WebAssemblyABIInfo(CGT)) {}
Sam Clegg6fd7d682018-06-25 18:47:32 +0000759
760 void setTargetAttributes(const Decl *D, llvm::GlobalValue *GV,
761 CodeGen::CodeGenModule &CGM) const override {
Dan Gohmanb4323692019-01-24 21:08:30 +0000762 TargetCodeGenInfo::setTargetAttributes(D, GV, CGM);
763 if (const auto *FD = dyn_cast_or_null<FunctionDecl>(D)) {
764 if (const auto *Attr = FD->getAttr<WebAssemblyImportModuleAttr>()) {
765 llvm::Function *Fn = cast<llvm::Function>(GV);
766 llvm::AttrBuilder B;
Dan Gohmancae84592019-02-01 22:25:23 +0000767 B.addAttribute("wasm-import-module", Attr->getImportModule());
768 Fn->addAttributes(llvm::AttributeList::FunctionIndex, B);
769 }
770 if (const auto *Attr = FD->getAttr<WebAssemblyImportNameAttr>()) {
771 llvm::Function *Fn = cast<llvm::Function>(GV);
772 llvm::AttrBuilder B;
773 B.addAttribute("wasm-import-name", Attr->getImportName());
Dan Gohmanb4323692019-01-24 21:08:30 +0000774 Fn->addAttributes(llvm::AttributeList::FunctionIndex, B);
775 }
776 }
777
Sam Clegg6fd7d682018-06-25 18:47:32 +0000778 if (auto *FD = dyn_cast_or_null<FunctionDecl>(D)) {
779 llvm::Function *Fn = cast<llvm::Function>(GV);
780 if (!FD->doesThisDeclarationHaveABody() && !FD->hasPrototype())
781 Fn->addFnAttr("no-prototype");
782 }
783 }
Dan Gohmanc2853072015-09-03 22:51:53 +0000784};
785
Adrian Prantl9fc8faf2018-05-09 01:00:01 +0000786/// Classify argument of given type \p Ty.
Dan Gohmanc2853072015-09-03 22:51:53 +0000787ABIArgInfo WebAssemblyABIInfo::classifyArgumentType(QualType Ty) const {
788 Ty = useFirstFieldIfTransparentUnion(Ty);
789
790 if (isAggregateTypeForABI(Ty)) {
791 // Records with non-trivial destructors/copy-constructors should not be
792 // passed by value.
Dan Gohmanc2853072015-09-03 22:51:53 +0000793 if (auto RAA = getRecordArgABI(Ty, getCXXABI()))
John McCall7f416cc2015-09-08 08:05:57 +0000794 return getNaturalAlignIndirect(Ty, RAA == CGCXXABI::RAA_DirectInMemory);
Dan Gohmanc2853072015-09-03 22:51:53 +0000795 // Ignore empty structs/unions.
796 if (isEmptyRecord(getContext(), Ty, true))
797 return ABIArgInfo::getIgnore();
798 // Lower single-element structs to just pass a regular value. TODO: We
799 // could do reasonable-size multiple-element structs too, using getExpand(),
800 // though watch out for things like bitfields.
801 if (const Type *SeltTy = isSingleElementStruct(Ty, getContext()))
802 return ABIArgInfo::getDirect(CGT.ConvertType(QualType(SeltTy, 0)));
Dan Gohmanc2853072015-09-03 22:51:53 +0000803 }
804
805 // Otherwise just do the default thing.
Daniel Dunbara39bab32019-01-03 23:24:50 +0000806 return defaultInfo.classifyArgumentType(Ty);
Dan Gohmanc2853072015-09-03 22:51:53 +0000807}
808
809ABIArgInfo WebAssemblyABIInfo::classifyReturnType(QualType RetTy) const {
810 if (isAggregateTypeForABI(RetTy)) {
811 // Records with non-trivial destructors/copy-constructors should not be
812 // returned by value.
813 if (!getRecordArgABI(RetTy, getCXXABI())) {
814 // Ignore empty structs/unions.
815 if (isEmptyRecord(getContext(), RetTy, true))
816 return ABIArgInfo::getIgnore();
817 // Lower single-element structs to just return a regular value. TODO: We
818 // could do reasonable-size multiple-element structs too, using
819 // ABIArgInfo::getDirect().
820 if (const Type *SeltTy = isSingleElementStruct(RetTy, getContext()))
821 return ABIArgInfo::getDirect(CGT.ConvertType(QualType(SeltTy, 0)));
822 }
823 }
824
825 // Otherwise just do the default thing.
Daniel Dunbara39bab32019-01-03 23:24:50 +0000826 return defaultInfo.classifyReturnType(RetTy);
Dan Gohmanc2853072015-09-03 22:51:53 +0000827}
828
Dan Gohman1fcd10c2016-02-22 19:17:40 +0000829Address WebAssemblyABIInfo::EmitVAArg(CodeGenFunction &CGF, Address VAListAddr,
830 QualType Ty) const {
831 return emitVoidPtrVAArg(CGF, VAListAddr, Ty, /*Indirect=*/ false,
832 getContext().getTypeInfoInChars(Ty),
833 CharUnits::fromQuantity(4),
834 /*AllowHigherAlign=*/ true);
835}
836
Dan Gohmanc2853072015-09-03 22:51:53 +0000837//===----------------------------------------------------------------------===//
Derek Schuff09338a22012-09-06 17:37:28 +0000838// le32/PNaCl bitcode ABI Implementation
Eli Bendersky4f6791c2013-04-08 21:31:01 +0000839//
840// This is a simplified version of the x86_32 ABI. Arguments and return values
841// are always passed on the stack.
Derek Schuff09338a22012-09-06 17:37:28 +0000842//===----------------------------------------------------------------------===//
843
844class PNaClABIInfo : public ABIInfo {
845 public:
846 PNaClABIInfo(CodeGen::CodeGenTypes &CGT) : ABIInfo(CGT) {}
847
848 ABIArgInfo classifyReturnType(QualType RetTy) const;
Eli Bendersky4f6791c2013-04-08 21:31:01 +0000849 ABIArgInfo classifyArgumentType(QualType RetTy) const;
Derek Schuff09338a22012-09-06 17:37:28 +0000850
Craig Topper4f12f102014-03-12 06:41:41 +0000851 void computeInfo(CGFunctionInfo &FI) const override;
John McCall7f416cc2015-09-08 08:05:57 +0000852 Address EmitVAArg(CodeGenFunction &CGF,
853 Address VAListAddr, QualType Ty) const override;
Derek Schuff09338a22012-09-06 17:37:28 +0000854};
855
856class PNaClTargetCodeGenInfo : public TargetCodeGenInfo {
857 public:
858 PNaClTargetCodeGenInfo(CodeGen::CodeGenTypes &CGT)
859 : TargetCodeGenInfo(new PNaClABIInfo(CGT)) {}
860};
861
862void PNaClABIInfo::computeInfo(CGFunctionInfo &FI) const {
Reid Kleckner40ca9132014-05-13 22:05:45 +0000863 if (!getCXXABI().classifyReturnType(FI))
Derek Schuff09338a22012-09-06 17:37:28 +0000864 FI.getReturnInfo() = classifyReturnType(FI.getReturnType());
865
Reid Kleckner40ca9132014-05-13 22:05:45 +0000866 for (auto &I : FI.arguments())
867 I.info = classifyArgumentType(I.type);
868}
Derek Schuff09338a22012-09-06 17:37:28 +0000869
John McCall7f416cc2015-09-08 08:05:57 +0000870Address PNaClABIInfo::EmitVAArg(CodeGenFunction &CGF, Address VAListAddr,
871 QualType Ty) const {
James Y Knight29b5f082016-02-24 02:59:33 +0000872 // The PNaCL ABI is a bit odd, in that varargs don't use normal
873 // function classification. Structs get passed directly for varargs
874 // functions, through a rewriting transform in
875 // pnacl-llvm/lib/Transforms/NaCl/ExpandVarArgs.cpp, which allows
876 // this target to actually support a va_arg instructions with an
877 // aggregate type, unlike other targets.
878 return EmitVAArgInstr(CGF, VAListAddr, Ty, ABIArgInfo::getDirect());
Derek Schuff09338a22012-09-06 17:37:28 +0000879}
880
Adrian Prantl9fc8faf2018-05-09 01:00:01 +0000881/// Classify argument of given type \p Ty.
Eli Bendersky4f6791c2013-04-08 21:31:01 +0000882ABIArgInfo PNaClABIInfo::classifyArgumentType(QualType Ty) const {
Derek Schuff09338a22012-09-06 17:37:28 +0000883 if (isAggregateTypeForABI(Ty)) {
Mark Lacey3825e832013-10-06 01:33:34 +0000884 if (CGCXXABI::RecordArgABI RAA = getRecordArgABI(Ty, getCXXABI()))
John McCall7f416cc2015-09-08 08:05:57 +0000885 return getNaturalAlignIndirect(Ty, RAA == CGCXXABI::RAA_DirectInMemory);
886 return getNaturalAlignIndirect(Ty);
Eli Bendersky4f6791c2013-04-08 21:31:01 +0000887 } else if (const EnumType *EnumTy = Ty->getAs<EnumType>()) {
888 // Treat an enum type as its underlying type.
Derek Schuff09338a22012-09-06 17:37:28 +0000889 Ty = EnumTy->getDecl()->getIntegerType();
Eli Bendersky4f6791c2013-04-08 21:31:01 +0000890 } else if (Ty->isFloatingType()) {
891 // Floating-point types don't go inreg.
892 return ABIArgInfo::getDirect();
Derek Schuff09338a22012-09-06 17:37:28 +0000893 }
Eli Bendersky4f6791c2013-04-08 21:31:01 +0000894
Alex Bradburye41a5e22018-01-12 20:08:16 +0000895 return (Ty->isPromotableIntegerType() ? ABIArgInfo::getExtend(Ty)
896 : ABIArgInfo::getDirect());
Derek Schuff09338a22012-09-06 17:37:28 +0000897}
898
899ABIArgInfo PNaClABIInfo::classifyReturnType(QualType RetTy) const {
900 if (RetTy->isVoidType())
901 return ABIArgInfo::getIgnore();
902
Eli Benderskye20dad62013-04-04 22:49:35 +0000903 // In the PNaCl ABI we always return records/structures on the stack.
Derek Schuff09338a22012-09-06 17:37:28 +0000904 if (isAggregateTypeForABI(RetTy))
John McCall7f416cc2015-09-08 08:05:57 +0000905 return getNaturalAlignIndirect(RetTy);
Derek Schuff09338a22012-09-06 17:37:28 +0000906
907 // Treat an enum type as its underlying type.
908 if (const EnumType *EnumTy = RetTy->getAs<EnumType>())
909 RetTy = EnumTy->getDecl()->getIntegerType();
910
Alex Bradburye41a5e22018-01-12 20:08:16 +0000911 return (RetTy->isPromotableIntegerType() ? ABIArgInfo::getExtend(RetTy)
912 : ABIArgInfo::getDirect());
Derek Schuff09338a22012-09-06 17:37:28 +0000913}
914
Chad Rosier651c1832013-03-25 21:00:27 +0000915/// IsX86_MMXType - Return true if this is an MMX type.
916bool IsX86_MMXType(llvm::Type *IRType) {
917 // Return true if the type is an MMX type <2 x i32>, <4 x i16>, or <8 x i8>.
Bill Wendling5cd41c42010-10-18 03:41:31 +0000918 return IRType->isVectorTy() && IRType->getPrimitiveSizeInBits() == 64 &&
919 cast<llvm::VectorType>(IRType)->getElementType()->isIntegerTy() &&
920 IRType->getScalarSizeInBits() != 64;
921}
922
Jay Foad7c57be32011-07-11 09:56:20 +0000923static llvm::Type* X86AdjustInlineAsmType(CodeGen::CodeGenFunction &CGF,
Chris Lattner0e62c1c2011-07-23 10:55:15 +0000924 StringRef Constraint,
Jay Foad7c57be32011-07-11 09:56:20 +0000925 llvm::Type* Ty) {
Coby Tayree7b49dc92017-08-24 09:07:34 +0000926 bool IsMMXCons = llvm::StringSwitch<bool>(Constraint)
927 .Cases("y", "&y", "^Ym", true)
928 .Default(false);
929 if (IsMMXCons && Ty->isVectorTy()) {
Tim Northover0ae93912013-06-07 00:04:50 +0000930 if (cast<llvm::VectorType>(Ty)->getBitWidth() != 64) {
931 // Invalid MMX constraint
Craig Topper8a13c412014-05-21 05:09:00 +0000932 return nullptr;
Tim Northover0ae93912013-06-07 00:04:50 +0000933 }
934
Peter Collingbourne8f5cf742011-02-19 23:03:58 +0000935 return llvm::Type::getX86_MMXTy(CGF.getLLVMContext());
Tim Northover0ae93912013-06-07 00:04:50 +0000936 }
937
938 // No operation needed
Peter Collingbourne8f5cf742011-02-19 23:03:58 +0000939 return Ty;
940}
941
Reid Kleckner80944df2014-10-31 22:00:51 +0000942/// Returns true if this type can be passed in SSE registers with the
943/// X86_VectorCall calling convention. Shared between x86_32 and x86_64.
944static bool isX86VectorTypeForVectorCall(ASTContext &Context, QualType Ty) {
945 if (const BuiltinType *BT = Ty->getAs<BuiltinType>()) {
Erich Keanede1b2a92017-07-21 18:50:36 +0000946 if (BT->isFloatingPoint() && BT->getKind() != BuiltinType::Half) {
947 if (BT->getKind() == BuiltinType::LongDouble) {
948 if (&Context.getTargetInfo().getLongDoubleFormat() ==
949 &llvm::APFloat::x87DoubleExtended())
950 return false;
951 }
Reid Kleckner80944df2014-10-31 22:00:51 +0000952 return true;
Erich Keanede1b2a92017-07-21 18:50:36 +0000953 }
Reid Kleckner80944df2014-10-31 22:00:51 +0000954 } else if (const VectorType *VT = Ty->getAs<VectorType>()) {
955 // vectorcall can pass XMM, YMM, and ZMM vectors. We don't pass SSE1 MMX
956 // registers specially.
957 unsigned VecSize = Context.getTypeSize(VT);
958 if (VecSize == 128 || VecSize == 256 || VecSize == 512)
959 return true;
960 }
961 return false;
962}
963
964/// Returns true if this aggregate is small enough to be passed in SSE registers
965/// in the X86_VectorCall calling convention. Shared between x86_32 and x86_64.
966static bool isX86VectorCallAggregateSmallEnough(uint64_t NumMembers) {
967 return NumMembers <= 4;
968}
969
Erich Keane521ed962017-01-05 00:20:51 +0000970/// Returns a Homogeneous Vector Aggregate ABIArgInfo, used in X86.
971static ABIArgInfo getDirectX86Hva(llvm::Type* T = nullptr) {
972 auto AI = ABIArgInfo::getDirect(T);
973 AI.setInReg(true);
974 AI.setCanBeFlattened(false);
975 return AI;
976}
977
Chris Lattner0cf24192010-06-28 20:05:43 +0000978//===----------------------------------------------------------------------===//
979// X86-32 ABI Implementation
980//===----------------------------------------------------------------------===//
Michael J. Spencerb2f376b2010-08-25 18:17:27 +0000981
Adrian Prantl9fc8faf2018-05-09 01:00:01 +0000982/// Similar to llvm::CCState, but for Clang.
Reid Kleckner661f35b2014-01-18 01:12:41 +0000983struct CCState {
Reid Kleckner80944df2014-10-31 22:00:51 +0000984 CCState(unsigned CC) : CC(CC), FreeRegs(0), FreeSSERegs(0) {}
Reid Kleckner661f35b2014-01-18 01:12:41 +0000985
986 unsigned CC;
987 unsigned FreeRegs;
Reid Kleckner80944df2014-10-31 22:00:51 +0000988 unsigned FreeSSERegs;
Reid Kleckner661f35b2014-01-18 01:12:41 +0000989};
990
Erich Keane521ed962017-01-05 00:20:51 +0000991enum {
992 // Vectorcall only allows the first 6 parameters to be passed in registers.
993 VectorcallMaxParamNumAsReg = 6
994};
995
Anton Korobeynikov244360d2009-06-05 22:08:42 +0000996/// X86_32ABIInfo - The X86-32 ABI information.
John McCall12f23522016-04-04 18:33:08 +0000997class X86_32ABIInfo : public SwiftABIInfo {
Rafael Espindola06b2b4a2012-07-31 02:44:24 +0000998 enum Class {
999 Integer,
1000 Float
1001 };
1002
Daniel Dunbar8a6c91f2010-09-16 20:41:56 +00001003 static const unsigned MinABIStackAlignInBytes = 4;
1004
David Chisnallde3a0692009-08-17 23:08:21 +00001005 bool IsDarwinVectorABI;
Michael Kupersteindc745202015-10-19 07:52:25 +00001006 bool IsRetSmallStructInRegABI;
Timur Iskhodzhanov8fe501d2013-04-17 12:54:10 +00001007 bool IsWin32StructABI;
Michael Kupersteinb1ec50d2015-10-19 08:09:43 +00001008 bool IsSoftFloatABI;
Michael Kuperstein68901882015-10-25 08:18:20 +00001009 bool IsMCUABI;
Rafael Espindola06b2b4a2012-07-31 02:44:24 +00001010 unsigned DefaultNumRegisterParameters;
Anton Korobeynikov244360d2009-06-05 22:08:42 +00001011
1012 static bool isRegisterSize(unsigned Size) {
1013 return (Size == 8 || Size == 16 || Size == 32 || Size == 64);
1014 }
1015
Reid Kleckner80944df2014-10-31 22:00:51 +00001016 bool isHomogeneousAggregateBaseType(QualType Ty) const override {
1017 // FIXME: Assumes vectorcall is in use.
1018 return isX86VectorTypeForVectorCall(getContext(), Ty);
1019 }
1020
1021 bool isHomogeneousAggregateSmallEnough(const Type *Ty,
1022 uint64_t NumMembers) const override {
1023 // FIXME: Assumes vectorcall is in use.
1024 return isX86VectorCallAggregateSmallEnough(NumMembers);
1025 }
1026
Reid Kleckner40ca9132014-05-13 22:05:45 +00001027 bool shouldReturnTypeInRegister(QualType Ty, ASTContext &Context) const;
Anton Korobeynikov244360d2009-06-05 22:08:42 +00001028
Daniel Dunbar557893d2010-04-21 19:10:51 +00001029 /// getIndirectResult - Give a source type \arg Ty, return a suitable result
1030 /// such that the argument will be passed in memory.
Reid Kleckner661f35b2014-01-18 01:12:41 +00001031 ABIArgInfo getIndirectResult(QualType Ty, bool ByVal, CCState &State) const;
1032
John McCall7f416cc2015-09-08 08:05:57 +00001033 ABIArgInfo getIndirectReturnResult(QualType Ty, CCState &State) const;
Daniel Dunbar557893d2010-04-21 19:10:51 +00001034
Adrian Prantl9fc8faf2018-05-09 01:00:01 +00001035 /// Return the alignment to use for the given type on the stack.
Daniel Dunbardd38fbc2010-09-16 20:42:06 +00001036 unsigned getTypeStackAlignInBytes(QualType Ty, unsigned Align) const;
Daniel Dunbar8a6c91f2010-09-16 20:41:56 +00001037
Rafael Espindola06b2b4a2012-07-31 02:44:24 +00001038 Class classify(QualType Ty) const;
Reid Kleckner40ca9132014-05-13 22:05:45 +00001039 ABIArgInfo classifyReturnType(QualType RetTy, CCState &State) const;
Reid Kleckner661f35b2014-01-18 01:12:41 +00001040 ABIArgInfo classifyArgumentType(QualType RetTy, CCState &State) const;
Erich Keane4bd39302017-06-21 16:37:22 +00001041
Fangrui Song6907ce22018-07-30 19:24:48 +00001042 /// Updates the number of available free registers, returns
Michael Kupersteinf3163dc2015-12-28 14:39:54 +00001043 /// true if any registers were allocated.
1044 bool updateFreeRegs(QualType Ty, CCState &State) const;
1045
1046 bool shouldAggregateUseDirect(QualType Ty, CCState &State, bool &InReg,
1047 bool &NeedsPadding) const;
1048 bool shouldPrimitiveUseInReg(QualType Ty, CCState &State) const;
Anton Korobeynikov244360d2009-06-05 22:08:42 +00001049
Reid Kleckner04046052016-05-02 17:41:07 +00001050 bool canExpandIndirectArgument(QualType Ty) const;
1051
Adrian Prantl9fc8faf2018-05-09 01:00:01 +00001052 /// Rewrite the function info so that all memory arguments use
Reid Kleckner314ef7b2014-02-01 00:04:45 +00001053 /// inalloca.
1054 void rewriteWithInAlloca(CGFunctionInfo &FI) const;
1055
1056 void addFieldToArgStruct(SmallVector<llvm::Type *, 6> &FrameFields,
John McCall7f416cc2015-09-08 08:05:57 +00001057 CharUnits &StackOffset, ABIArgInfo &Info,
Reid Kleckner314ef7b2014-02-01 00:04:45 +00001058 QualType Type) const;
Erich Keane521ed962017-01-05 00:20:51 +00001059 void computeVectorCallArgs(CGFunctionInfo &FI, CCState &State,
1060 bool &UsedInAlloca) const;
Reid Kleckner314ef7b2014-02-01 00:04:45 +00001061
Rafael Espindola75419dc2012-07-23 23:30:29 +00001062public:
1063
Craig Topper4f12f102014-03-12 06:41:41 +00001064 void computeInfo(CGFunctionInfo &FI) const override;
John McCall7f416cc2015-09-08 08:05:57 +00001065 Address EmitVAArg(CodeGenFunction &CGF, Address VAListAddr,
1066 QualType Ty) const override;
Anton Korobeynikov244360d2009-06-05 22:08:42 +00001067
Michael Kupersteindc745202015-10-19 07:52:25 +00001068 X86_32ABIInfo(CodeGen::CodeGenTypes &CGT, bool DarwinVectorABI,
1069 bool RetSmallStructInRegABI, bool Win32StructABI,
Michael Kupersteinb1ec50d2015-10-19 08:09:43 +00001070 unsigned NumRegisterParameters, bool SoftFloatABI)
John McCall12f23522016-04-04 18:33:08 +00001071 : SwiftABIInfo(CGT), IsDarwinVectorABI(DarwinVectorABI),
Fangrui Song6907ce22018-07-30 19:24:48 +00001072 IsRetSmallStructInRegABI(RetSmallStructInRegABI),
Michael Kupersteindc745202015-10-19 07:52:25 +00001073 IsWin32StructABI(Win32StructABI),
Manuel Klimekab2e28e2015-10-19 08:43:46 +00001074 IsSoftFloatABI(SoftFloatABI),
Michael Kupersteind749f232015-10-27 07:46:22 +00001075 IsMCUABI(CGT.getTarget().getTriple().isOSIAMCU()),
Manuel Klimekab2e28e2015-10-19 08:43:46 +00001076 DefaultNumRegisterParameters(NumRegisterParameters) {}
John McCall12f23522016-04-04 18:33:08 +00001077
John McCall56331e22018-01-07 06:28:49 +00001078 bool shouldPassIndirectlyForSwift(ArrayRef<llvm::Type*> scalars,
John McCall12f23522016-04-04 18:33:08 +00001079 bool asReturnValue) const override {
1080 // LLVM's x86-32 lowering currently only assigns up to three
1081 // integer registers and three fp registers. Oddly, it'll use up to
1082 // four vector registers for vectors, but those can overlap with the
1083 // scalar registers.
1084 return occupiesMoreThan(CGT, scalars, /*total*/ 3);
Fangrui Song6907ce22018-07-30 19:24:48 +00001085 }
Arnold Schwaighoferb0f2c332016-12-01 18:07:38 +00001086
1087 bool isSwiftErrorInRegister() const override {
1088 // x86-32 lowering does not support passing swifterror in a register.
1089 return false;
1090 }
Anton Korobeynikov244360d2009-06-05 22:08:42 +00001091};
Anton Korobeynikov244360d2009-06-05 22:08:42 +00001092
Anton Korobeynikov55bcea12010-01-10 12:58:08 +00001093class X86_32TargetCodeGenInfo : public TargetCodeGenInfo {
1094public:
Michael Kupersteindc745202015-10-19 07:52:25 +00001095 X86_32TargetCodeGenInfo(CodeGen::CodeGenTypes &CGT, bool DarwinVectorABI,
1096 bool RetSmallStructInRegABI, bool Win32StructABI,
Michael Kupersteinb1ec50d2015-10-19 08:09:43 +00001097 unsigned NumRegisterParameters, bool SoftFloatABI)
1098 : TargetCodeGenInfo(new X86_32ABIInfo(
1099 CGT, DarwinVectorABI, RetSmallStructInRegABI, Win32StructABI,
1100 NumRegisterParameters, SoftFloatABI)) {}
Charles Davis4ea31ab2010-02-13 15:54:06 +00001101
John McCall1fe2a8c2013-06-18 02:46:29 +00001102 static bool isStructReturnInRegABI(
1103 const llvm::Triple &Triple, const CodeGenOptions &Opts);
1104
Eric Christopher162c91c2015-06-05 22:03:00 +00001105 void setTargetAttributes(const Decl *D, llvm::GlobalValue *GV,
Rafael Espindoladeb10be2018-02-07 19:04:41 +00001106 CodeGen::CodeGenModule &CGM) const override;
John McCallbeec5a02010-03-06 00:35:14 +00001107
Craig Topper4f12f102014-03-12 06:41:41 +00001108 int getDwarfEHStackPointer(CodeGen::CodeGenModule &CGM) const override {
John McCallbeec5a02010-03-06 00:35:14 +00001109 // Darwin uses different dwarf register numbers for EH.
John McCallc8e01702013-04-16 22:48:15 +00001110 if (CGM.getTarget().getTriple().isOSDarwin()) return 5;
John McCallbeec5a02010-03-06 00:35:14 +00001111 return 4;
1112 }
1113
1114 bool initDwarfEHRegSizeTable(CodeGen::CodeGenFunction &CGF,
Craig Topper4f12f102014-03-12 06:41:41 +00001115 llvm::Value *Address) const override;
Peter Collingbourne8f5cf742011-02-19 23:03:58 +00001116
Jay Foad7c57be32011-07-11 09:56:20 +00001117 llvm::Type* adjustInlineAsmType(CodeGen::CodeGenFunction &CGF,
Chris Lattner0e62c1c2011-07-23 10:55:15 +00001118 StringRef Constraint,
Craig Topper4f12f102014-03-12 06:41:41 +00001119 llvm::Type* Ty) const override {
Peter Collingbourne8f5cf742011-02-19 23:03:58 +00001120 return X86AdjustInlineAsmType(CGF, Constraint, Ty);
1121 }
1122
Reid Kleckner9b3e3df2014-09-04 20:04:38 +00001123 void addReturnRegisterOutputs(CodeGenFunction &CGF, LValue ReturnValue,
1124 std::string &Constraints,
1125 std::vector<llvm::Type *> &ResultRegTypes,
1126 std::vector<llvm::Type *> &ResultTruncRegTypes,
1127 std::vector<LValue> &ResultRegDests,
1128 std::string &AsmString,
1129 unsigned NumOutputs) const override;
1130
Craig Topper4f12f102014-03-12 06:41:41 +00001131 llvm::Constant *
1132 getUBSanFunctionSignature(CodeGen::CodeGenModule &CGM) const override {
Peter Collingbourneb453cd62013-10-20 21:29:19 +00001133 unsigned Sig = (0xeb << 0) | // jmp rel8
1134 (0x06 << 8) | // .+0x08
Vedant Kumarbb5d4852017-09-13 00:04:35 +00001135 ('v' << 16) |
1136 ('2' << 24);
Peter Collingbourneb453cd62013-10-20 21:29:19 +00001137 return llvm::ConstantInt::get(CGM.Int32Ty, Sig);
1138 }
John McCall01391782016-02-05 21:37:38 +00001139
1140 StringRef getARCRetainAutoreleasedReturnValueMarker() const override {
1141 return "movl\t%ebp, %ebp"
Oliver Stannard7f188642017-08-21 09:54:46 +00001142 "\t\t// marker for objc_retainAutoreleaseReturnValue";
John McCall01391782016-02-05 21:37:38 +00001143 }
Anton Korobeynikov55bcea12010-01-10 12:58:08 +00001144};
1145
Alexander Kornienkoab9db512015-06-22 23:07:51 +00001146}
Anton Korobeynikov244360d2009-06-05 22:08:42 +00001147
Reid Kleckner9b3e3df2014-09-04 20:04:38 +00001148/// Rewrite input constraint references after adding some output constraints.
1149/// In the case where there is one output and one input and we add one output,
1150/// we need to replace all operand references greater than or equal to 1:
1151/// mov $0, $1
1152/// mov eax, $1
1153/// The result will be:
1154/// mov $0, $2
1155/// mov eax, $2
1156static void rewriteInputConstraintReferences(unsigned FirstIn,
1157 unsigned NumNewOuts,
1158 std::string &AsmString) {
1159 std::string Buf;
1160 llvm::raw_string_ostream OS(Buf);
1161 size_t Pos = 0;
1162 while (Pos < AsmString.size()) {
1163 size_t DollarStart = AsmString.find('$', Pos);
1164 if (DollarStart == std::string::npos)
1165 DollarStart = AsmString.size();
1166 size_t DollarEnd = AsmString.find_first_not_of('$', DollarStart);
1167 if (DollarEnd == std::string::npos)
1168 DollarEnd = AsmString.size();
1169 OS << StringRef(&AsmString[Pos], DollarEnd - Pos);
1170 Pos = DollarEnd;
1171 size_t NumDollars = DollarEnd - DollarStart;
1172 if (NumDollars % 2 != 0 && Pos < AsmString.size()) {
1173 // We have an operand reference.
1174 size_t DigitStart = Pos;
1175 size_t DigitEnd = AsmString.find_first_not_of("0123456789", DigitStart);
1176 if (DigitEnd == std::string::npos)
1177 DigitEnd = AsmString.size();
1178 StringRef OperandStr(&AsmString[DigitStart], DigitEnd - DigitStart);
1179 unsigned OperandIndex;
1180 if (!OperandStr.getAsInteger(10, OperandIndex)) {
1181 if (OperandIndex >= FirstIn)
1182 OperandIndex += NumNewOuts;
1183 OS << OperandIndex;
1184 } else {
1185 OS << OperandStr;
1186 }
1187 Pos = DigitEnd;
1188 }
1189 }
1190 AsmString = std::move(OS.str());
1191}
1192
1193/// Add output constraints for EAX:EDX because they are return registers.
1194void X86_32TargetCodeGenInfo::addReturnRegisterOutputs(
1195 CodeGenFunction &CGF, LValue ReturnSlot, std::string &Constraints,
1196 std::vector<llvm::Type *> &ResultRegTypes,
1197 std::vector<llvm::Type *> &ResultTruncRegTypes,
1198 std::vector<LValue> &ResultRegDests, std::string &AsmString,
1199 unsigned NumOutputs) const {
1200 uint64_t RetWidth = CGF.getContext().getTypeSize(ReturnSlot.getType());
1201
1202 // Use the EAX constraint if the width is 32 or smaller and EAX:EDX if it is
1203 // larger.
1204 if (!Constraints.empty())
1205 Constraints += ',';
1206 if (RetWidth <= 32) {
1207 Constraints += "={eax}";
1208 ResultRegTypes.push_back(CGF.Int32Ty);
1209 } else {
1210 // Use the 'A' constraint for EAX:EDX.
1211 Constraints += "=A";
1212 ResultRegTypes.push_back(CGF.Int64Ty);
1213 }
1214
1215 // Truncate EAX or EAX:EDX to an integer of the appropriate size.
1216 llvm::Type *CoerceTy = llvm::IntegerType::get(CGF.getLLVMContext(), RetWidth);
1217 ResultTruncRegTypes.push_back(CoerceTy);
1218
1219 // Coerce the integer by bitcasting the return slot pointer.
1220 ReturnSlot.setAddress(CGF.Builder.CreateBitCast(ReturnSlot.getAddress(),
1221 CoerceTy->getPointerTo()));
1222 ResultRegDests.push_back(ReturnSlot);
1223
1224 rewriteInputConstraintReferences(NumOutputs, 1, AsmString);
1225}
1226
Anton Korobeynikov244360d2009-06-05 22:08:42 +00001227/// shouldReturnTypeInRegister - Determine if the given type should be
Michael Kuperstein68901882015-10-25 08:18:20 +00001228/// returned in a register (for the Darwin and MCU ABI).
Reid Kleckner40ca9132014-05-13 22:05:45 +00001229bool X86_32ABIInfo::shouldReturnTypeInRegister(QualType Ty,
1230 ASTContext &Context) const {
Anton Korobeynikov244360d2009-06-05 22:08:42 +00001231 uint64_t Size = Context.getTypeSize(Ty);
1232
Michael Kupersteinf3163dc2015-12-28 14:39:54 +00001233 // For i386, type must be register sized.
1234 // For the MCU ABI, it only needs to be <= 8-byte
1235 if ((IsMCUABI && Size > 64) || (!IsMCUABI && !isRegisterSize(Size)))
1236 return false;
Anton Korobeynikov244360d2009-06-05 22:08:42 +00001237
1238 if (Ty->isVectorType()) {
1239 // 64- and 128- bit vectors inside structures are not returned in
1240 // registers.
1241 if (Size == 64 || Size == 128)
1242 return false;
1243
1244 return true;
1245 }
1246
Daniel Dunbar4bd95c62010-05-15 00:00:30 +00001247 // If this is a builtin, pointer, enum, complex type, member pointer, or
1248 // member function pointer it is ok.
Daniel Dunbar6b45b672010-05-14 03:40:53 +00001249 if (Ty->getAs<BuiltinType>() || Ty->hasPointerRepresentation() ||
Daniel Dunbarb3b1e532009-09-24 05:12:36 +00001250 Ty->isAnyComplexType() || Ty->isEnumeralType() ||
Daniel Dunbar4bd95c62010-05-15 00:00:30 +00001251 Ty->isBlockPointerType() || Ty->isMemberPointerType())
Anton Korobeynikov244360d2009-06-05 22:08:42 +00001252 return true;
1253
1254 // Arrays are treated like records.
1255 if (const ConstantArrayType *AT = Context.getAsConstantArrayType(Ty))
Reid Kleckner40ca9132014-05-13 22:05:45 +00001256 return shouldReturnTypeInRegister(AT->getElementType(), Context);
Anton Korobeynikov244360d2009-06-05 22:08:42 +00001257
1258 // Otherwise, it must be a record type.
Ted Kremenekc23c7e62009-07-29 21:53:49 +00001259 const RecordType *RT = Ty->getAs<RecordType>();
Anton Korobeynikov244360d2009-06-05 22:08:42 +00001260 if (!RT) return false;
1261
Anders Carlsson40446e82010-01-27 03:25:19 +00001262 // FIXME: Traverse bases here too.
1263
Anton Korobeynikov244360d2009-06-05 22:08:42 +00001264 // Structure types are passed in register if all fields would be
1265 // passed in a register.
Aaron Ballmane8a8bae2014-03-08 20:12:42 +00001266 for (const auto *FD : RT->getDecl()->fields()) {
Anton Korobeynikov244360d2009-06-05 22:08:42 +00001267 // Empty fields are ignored.
Daniel Dunbar626f1d82009-09-13 08:03:58 +00001268 if (isEmptyField(Context, FD, true))
Anton Korobeynikov244360d2009-06-05 22:08:42 +00001269 continue;
1270
1271 // Check fields recursively.
Reid Kleckner40ca9132014-05-13 22:05:45 +00001272 if (!shouldReturnTypeInRegister(FD->getType(), Context))
Anton Korobeynikov244360d2009-06-05 22:08:42 +00001273 return false;
1274 }
Anton Korobeynikov244360d2009-06-05 22:08:42 +00001275 return true;
1276}
1277
Reid Kleckner04046052016-05-02 17:41:07 +00001278static bool is32Or64BitBasicType(QualType Ty, ASTContext &Context) {
1279 // Treat complex types as the element type.
1280 if (const ComplexType *CTy = Ty->getAs<ComplexType>())
1281 Ty = CTy->getElementType();
1282
1283 // Check for a type which we know has a simple scalar argument-passing
1284 // convention without any padding. (We're specifically looking for 32
1285 // and 64-bit integer and integer-equivalents, float, and double.)
1286 if (!Ty->getAs<BuiltinType>() && !Ty->hasPointerRepresentation() &&
1287 !Ty->isEnumeralType() && !Ty->isBlockPointerType())
1288 return false;
1289
1290 uint64_t Size = Context.getTypeSize(Ty);
1291 return Size == 32 || Size == 64;
1292}
1293
Reid Kleckner791bbf62017-01-13 17:18:19 +00001294static bool addFieldSizes(ASTContext &Context, const RecordDecl *RD,
1295 uint64_t &Size) {
1296 for (const auto *FD : RD->fields()) {
1297 // Scalar arguments on the stack get 4 byte alignment on x86. If the
1298 // argument is smaller than 32-bits, expanding the struct will create
1299 // alignment padding.
1300 if (!is32Or64BitBasicType(FD->getType(), Context))
1301 return false;
1302
1303 // FIXME: Reject bit-fields wholesale; there are two problems, we don't know
1304 // how to expand them yet, and the predicate for telling if a bitfield still
1305 // counts as "basic" is more complicated than what we were doing previously.
1306 if (FD->isBitField())
1307 return false;
1308
1309 Size += Context.getTypeSize(FD->getType());
1310 }
1311 return true;
1312}
1313
1314static bool addBaseAndFieldSizes(ASTContext &Context, const CXXRecordDecl *RD,
1315 uint64_t &Size) {
1316 // Don't do this if there are any non-empty bases.
1317 for (const CXXBaseSpecifier &Base : RD->bases()) {
1318 if (!addBaseAndFieldSizes(Context, Base.getType()->getAsCXXRecordDecl(),
1319 Size))
1320 return false;
1321 }
1322 if (!addFieldSizes(Context, RD, Size))
1323 return false;
1324 return true;
1325}
1326
Reid Kleckner04046052016-05-02 17:41:07 +00001327/// Test whether an argument type which is to be passed indirectly (on the
1328/// stack) would have the equivalent layout if it was expanded into separate
1329/// arguments. If so, we prefer to do the latter to avoid inhibiting
1330/// optimizations.
1331bool X86_32ABIInfo::canExpandIndirectArgument(QualType Ty) const {
1332 // We can only expand structure types.
1333 const RecordType *RT = Ty->getAs<RecordType>();
1334 if (!RT)
1335 return false;
1336 const RecordDecl *RD = RT->getDecl();
Reid Kleckner791bbf62017-01-13 17:18:19 +00001337 uint64_t Size = 0;
Reid Kleckner04046052016-05-02 17:41:07 +00001338 if (const CXXRecordDecl *CXXRD = dyn_cast<CXXRecordDecl>(RD)) {
Reid Kleckner791bbf62017-01-13 17:18:19 +00001339 if (!IsWin32StructABI) {
Reid Kleckner04046052016-05-02 17:41:07 +00001340 // On non-Windows, we have to conservatively match our old bitcode
1341 // prototypes in order to be ABI-compatible at the bitcode level.
1342 if (!CXXRD->isCLike())
1343 return false;
1344 } else {
1345 // Don't do this for dynamic classes.
1346 if (CXXRD->isDynamicClass())
1347 return false;
Reid Kleckner04046052016-05-02 17:41:07 +00001348 }
Reid Kleckner791bbf62017-01-13 17:18:19 +00001349 if (!addBaseAndFieldSizes(getContext(), CXXRD, Size))
Reid Kleckner04046052016-05-02 17:41:07 +00001350 return false;
Reid Kleckner791bbf62017-01-13 17:18:19 +00001351 } else {
1352 if (!addFieldSizes(getContext(), RD, Size))
Reid Kleckner04046052016-05-02 17:41:07 +00001353 return false;
Reid Kleckner04046052016-05-02 17:41:07 +00001354 }
1355
1356 // We can do this if there was no alignment padding.
1357 return Size == getContext().getTypeSize(Ty);
1358}
1359
John McCall7f416cc2015-09-08 08:05:57 +00001360ABIArgInfo X86_32ABIInfo::getIndirectReturnResult(QualType RetTy, CCState &State) const {
Reid Kleckner661f35b2014-01-18 01:12:41 +00001361 // If the return value is indirect, then the hidden argument is consuming one
1362 // integer register.
1363 if (State.FreeRegs) {
1364 --State.FreeRegs;
Michael Kupersteinf3163dc2015-12-28 14:39:54 +00001365 if (!IsMCUABI)
1366 return getNaturalAlignIndirectInReg(RetTy);
Reid Kleckner661f35b2014-01-18 01:12:41 +00001367 }
John McCall7f416cc2015-09-08 08:05:57 +00001368 return getNaturalAlignIndirect(RetTy, /*ByVal=*/false);
Reid Kleckner661f35b2014-01-18 01:12:41 +00001369}
1370
Eric Christopher7565e0d2015-05-29 23:09:49 +00001371ABIArgInfo X86_32ABIInfo::classifyReturnType(QualType RetTy,
1372 CCState &State) const {
Chris Lattner458b2aa2010-07-29 02:16:43 +00001373 if (RetTy->isVoidType())
Anton Korobeynikov244360d2009-06-05 22:08:42 +00001374 return ABIArgInfo::getIgnore();
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00001375
Reid Kleckner80944df2014-10-31 22:00:51 +00001376 const Type *Base = nullptr;
1377 uint64_t NumElts = 0;
Erich Keane757d3172016-11-02 18:29:35 +00001378 if ((State.CC == llvm::CallingConv::X86_VectorCall ||
1379 State.CC == llvm::CallingConv::X86_RegCall) &&
Reid Kleckner80944df2014-10-31 22:00:51 +00001380 isHomogeneousAggregate(RetTy, Base, NumElts)) {
1381 // The LLVM struct type for such an aggregate should lower properly.
1382 return ABIArgInfo::getDirect();
1383 }
1384
Chris Lattner458b2aa2010-07-29 02:16:43 +00001385 if (const VectorType *VT = RetTy->getAs<VectorType>()) {
Anton Korobeynikov244360d2009-06-05 22:08:42 +00001386 // On Darwin, some vectors are returned in registers.
David Chisnallde3a0692009-08-17 23:08:21 +00001387 if (IsDarwinVectorABI) {
Chris Lattner458b2aa2010-07-29 02:16:43 +00001388 uint64_t Size = getContext().getTypeSize(RetTy);
Anton Korobeynikov244360d2009-06-05 22:08:42 +00001389
1390 // 128-bit vectors are a special case; they are returned in
1391 // registers and we need to make sure to pick a type the LLVM
1392 // backend will like.
1393 if (Size == 128)
Chris Lattnerfe34c1d2010-07-29 06:26:06 +00001394 return ABIArgInfo::getDirect(llvm::VectorType::get(
Chris Lattner458b2aa2010-07-29 02:16:43 +00001395 llvm::Type::getInt64Ty(getVMContext()), 2));
Anton Korobeynikov244360d2009-06-05 22:08:42 +00001396
1397 // Always return in register if it fits in a general purpose
1398 // register, or if it is 64 bits and has a single element.
1399 if ((Size == 8 || Size == 16 || Size == 32) ||
1400 (Size == 64 && VT->getNumElements() == 1))
Chris Lattnerfe34c1d2010-07-29 06:26:06 +00001401 return ABIArgInfo::getDirect(llvm::IntegerType::get(getVMContext(),
Chris Lattner458b2aa2010-07-29 02:16:43 +00001402 Size));
Anton Korobeynikov244360d2009-06-05 22:08:42 +00001403
John McCall7f416cc2015-09-08 08:05:57 +00001404 return getIndirectReturnResult(RetTy, State);
Anton Korobeynikov244360d2009-06-05 22:08:42 +00001405 }
1406
1407 return ABIArgInfo::getDirect();
Chris Lattner458b2aa2010-07-29 02:16:43 +00001408 }
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00001409
John McCalla1dee5302010-08-22 10:59:02 +00001410 if (isAggregateTypeForABI(RetTy)) {
Anders Carlsson40446e82010-01-27 03:25:19 +00001411 if (const RecordType *RT = RetTy->getAs<RecordType>()) {
Anders Carlsson5789c492009-10-20 22:07:59 +00001412 // Structures with flexible arrays are always indirect.
Anton Korobeynikov244360d2009-06-05 22:08:42 +00001413 if (RT->getDecl()->hasFlexibleArrayMember())
John McCall7f416cc2015-09-08 08:05:57 +00001414 return getIndirectReturnResult(RetTy, State);
Anders Carlsson5789c492009-10-20 22:07:59 +00001415 }
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00001416
David Chisnallde3a0692009-08-17 23:08:21 +00001417 // If specified, structs and unions are always indirect.
Michael Kupersteindc745202015-10-19 07:52:25 +00001418 if (!IsRetSmallStructInRegABI && !RetTy->isAnyComplexType())
John McCall7f416cc2015-09-08 08:05:57 +00001419 return getIndirectReturnResult(RetTy, State);
Anton Korobeynikov244360d2009-06-05 22:08:42 +00001420
Denis Zobnin380b2242016-02-11 11:26:03 +00001421 // Ignore empty structs/unions.
1422 if (isEmptyRecord(getContext(), RetTy, true))
1423 return ABIArgInfo::getIgnore();
1424
Anton Korobeynikov244360d2009-06-05 22:08:42 +00001425 // Small structures which are register sized are generally returned
1426 // in a register.
Reid Kleckner40ca9132014-05-13 22:05:45 +00001427 if (shouldReturnTypeInRegister(RetTy, getContext())) {
Chris Lattner458b2aa2010-07-29 02:16:43 +00001428 uint64_t Size = getContext().getTypeSize(RetTy);
Eli Friedmanee945342011-11-18 01:25:50 +00001429
1430 // As a special-case, if the struct is a "single-element" struct, and
1431 // the field is of type "float" or "double", return it in a
Eli Friedmana98d1f82012-01-25 22:46:34 +00001432 // floating-point register. (MSVC does not apply this special case.)
1433 // We apply a similar transformation for pointer types to improve the
1434 // quality of the generated IR.
Eli Friedmanee945342011-11-18 01:25:50 +00001435 if (const Type *SeltTy = isSingleElementStruct(RetTy, getContext()))
Timur Iskhodzhanov8fe501d2013-04-17 12:54:10 +00001436 if ((!IsWin32StructABI && SeltTy->isRealFloatingType())
Eli Friedmana98d1f82012-01-25 22:46:34 +00001437 || SeltTy->hasPointerRepresentation())
Eli Friedmanee945342011-11-18 01:25:50 +00001438 return ABIArgInfo::getDirect(CGT.ConvertType(QualType(SeltTy, 0)));
1439
1440 // FIXME: We should be able to narrow this integer in cases with dead
1441 // padding.
Chris Lattnerfe34c1d2010-07-29 06:26:06 +00001442 return ABIArgInfo::getDirect(llvm::IntegerType::get(getVMContext(),Size));
Anton Korobeynikov244360d2009-06-05 22:08:42 +00001443 }
1444
John McCall7f416cc2015-09-08 08:05:57 +00001445 return getIndirectReturnResult(RetTy, State);
Anton Korobeynikov244360d2009-06-05 22:08:42 +00001446 }
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00001447
Chris Lattner458b2aa2010-07-29 02:16:43 +00001448 // Treat an enum type as its underlying type.
1449 if (const EnumType *EnumTy = RetTy->getAs<EnumType>())
1450 RetTy = EnumTy->getDecl()->getIntegerType();
1451
Alex Bradburye41a5e22018-01-12 20:08:16 +00001452 return (RetTy->isPromotableIntegerType() ? ABIArgInfo::getExtend(RetTy)
1453 : ABIArgInfo::getDirect());
Anton Korobeynikov244360d2009-06-05 22:08:42 +00001454}
1455
Eli Friedman7919bea2012-06-05 19:40:46 +00001456static bool isSSEVectorType(ASTContext &Context, QualType Ty) {
1457 return Ty->getAs<VectorType>() && Context.getTypeSize(Ty) == 128;
1458}
1459
Daniel Dunbared23de32010-09-16 20:42:00 +00001460static bool isRecordWithSSEVectorType(ASTContext &Context, QualType Ty) {
1461 const RecordType *RT = Ty->getAs<RecordType>();
1462 if (!RT)
1463 return 0;
1464 const RecordDecl *RD = RT->getDecl();
1465
1466 // If this is a C++ record, check the bases first.
1467 if (const CXXRecordDecl *CXXRD = dyn_cast<CXXRecordDecl>(RD))
Aaron Ballman574705e2014-03-13 15:41:46 +00001468 for (const auto &I : CXXRD->bases())
1469 if (!isRecordWithSSEVectorType(Context, I.getType()))
Daniel Dunbared23de32010-09-16 20:42:00 +00001470 return false;
1471
Aaron Ballmane8a8bae2014-03-08 20:12:42 +00001472 for (const auto *i : RD->fields()) {
Daniel Dunbared23de32010-09-16 20:42:00 +00001473 QualType FT = i->getType();
1474
Eli Friedman7919bea2012-06-05 19:40:46 +00001475 if (isSSEVectorType(Context, FT))
Daniel Dunbared23de32010-09-16 20:42:00 +00001476 return true;
1477
1478 if (isRecordWithSSEVectorType(Context, FT))
1479 return true;
1480 }
1481
1482 return false;
1483}
1484
Daniel Dunbardd38fbc2010-09-16 20:42:06 +00001485unsigned X86_32ABIInfo::getTypeStackAlignInBytes(QualType Ty,
1486 unsigned Align) const {
1487 // Otherwise, if the alignment is less than or equal to the minimum ABI
1488 // alignment, just use the default; the backend will handle this.
Daniel Dunbar8a6c91f2010-09-16 20:41:56 +00001489 if (Align <= MinABIStackAlignInBytes)
Daniel Dunbardd38fbc2010-09-16 20:42:06 +00001490 return 0; // Use default alignment.
1491
1492 // On non-Darwin, the stack type alignment is always 4.
1493 if (!IsDarwinVectorABI) {
1494 // Set explicit alignment, since we may need to realign the top.
Daniel Dunbar8a6c91f2010-09-16 20:41:56 +00001495 return MinABIStackAlignInBytes;
Daniel Dunbardd38fbc2010-09-16 20:42:06 +00001496 }
Daniel Dunbar8a6c91f2010-09-16 20:41:56 +00001497
Daniel Dunbared23de32010-09-16 20:42:00 +00001498 // Otherwise, if the type contains an SSE vector type, the alignment is 16.
Eli Friedman7919bea2012-06-05 19:40:46 +00001499 if (Align >= 16 && (isSSEVectorType(getContext(), Ty) ||
1500 isRecordWithSSEVectorType(getContext(), Ty)))
Daniel Dunbared23de32010-09-16 20:42:00 +00001501 return 16;
1502
1503 return MinABIStackAlignInBytes;
Daniel Dunbar8a6c91f2010-09-16 20:41:56 +00001504}
1505
Rafael Espindola703c47f2012-10-19 05:04:37 +00001506ABIArgInfo X86_32ABIInfo::getIndirectResult(QualType Ty, bool ByVal,
Reid Kleckner661f35b2014-01-18 01:12:41 +00001507 CCState &State) const {
Rafael Espindola703c47f2012-10-19 05:04:37 +00001508 if (!ByVal) {
Reid Kleckner661f35b2014-01-18 01:12:41 +00001509 if (State.FreeRegs) {
1510 --State.FreeRegs; // Non-byval indirects just use one pointer.
Michael Kupersteinf3163dc2015-12-28 14:39:54 +00001511 if (!IsMCUABI)
1512 return getNaturalAlignIndirectInReg(Ty);
Rafael Espindola703c47f2012-10-19 05:04:37 +00001513 }
John McCall7f416cc2015-09-08 08:05:57 +00001514 return getNaturalAlignIndirect(Ty, false);
Rafael Espindola703c47f2012-10-19 05:04:37 +00001515 }
Daniel Dunbar53fac692010-04-21 19:49:55 +00001516
Daniel Dunbardd38fbc2010-09-16 20:42:06 +00001517 // Compute the byval alignment.
1518 unsigned TypeAlign = getContext().getTypeAlign(Ty) / 8;
1519 unsigned StackAlign = getTypeStackAlignInBytes(Ty, TypeAlign);
1520 if (StackAlign == 0)
John McCall7f416cc2015-09-08 08:05:57 +00001521 return ABIArgInfo::getIndirect(CharUnits::fromQuantity(4), /*ByVal=*/true);
Daniel Dunbardd38fbc2010-09-16 20:42:06 +00001522
1523 // If the stack alignment is less than the type alignment, realign the
1524 // argument.
Reid Kleckner314ef7b2014-02-01 00:04:45 +00001525 bool Realign = TypeAlign > StackAlign;
John McCall7f416cc2015-09-08 08:05:57 +00001526 return ABIArgInfo::getIndirect(CharUnits::fromQuantity(StackAlign),
1527 /*ByVal=*/true, Realign);
Daniel Dunbar557893d2010-04-21 19:10:51 +00001528}
1529
Rafael Espindola06b2b4a2012-07-31 02:44:24 +00001530X86_32ABIInfo::Class X86_32ABIInfo::classify(QualType Ty) const {
1531 const Type *T = isSingleElementStruct(Ty, getContext());
1532 if (!T)
1533 T = Ty.getTypePtr();
1534
1535 if (const BuiltinType *BT = T->getAs<BuiltinType>()) {
1536 BuiltinType::Kind K = BT->getKind();
1537 if (K == BuiltinType::Float || K == BuiltinType::Double)
1538 return Float;
1539 }
1540 return Integer;
1541}
1542
Michael Kupersteinf3163dc2015-12-28 14:39:54 +00001543bool X86_32ABIInfo::updateFreeRegs(QualType Ty, CCState &State) const {
Michael Kupersteinb1ec50d2015-10-19 08:09:43 +00001544 if (!IsSoftFloatABI) {
1545 Class C = classify(Ty);
1546 if (C == Float)
1547 return false;
1548 }
Rafael Espindola06b2b4a2012-07-31 02:44:24 +00001549
Rafael Espindola077dd592012-10-24 01:58:58 +00001550 unsigned Size = getContext().getTypeSize(Ty);
1551 unsigned SizeInRegs = (Size + 31) / 32;
Rafael Espindolae2a9e902012-10-23 02:04:01 +00001552
1553 if (SizeInRegs == 0)
1554 return false;
1555
Michael Kuperstein68901882015-10-25 08:18:20 +00001556 if (!IsMCUABI) {
1557 if (SizeInRegs > State.FreeRegs) {
1558 State.FreeRegs = 0;
1559 return false;
1560 }
1561 } else {
1562 // The MCU psABI allows passing parameters in-reg even if there are
1563 // earlier parameters that are passed on the stack. Also,
1564 // it does not allow passing >8-byte structs in-register,
1565 // even if there are 3 free registers available.
1566 if (SizeInRegs > State.FreeRegs || SizeInRegs > 2)
1567 return false;
Rafael Espindola06b2b4a2012-07-31 02:44:24 +00001568 }
Rafael Espindola703c47f2012-10-19 05:04:37 +00001569
Reid Kleckner661f35b2014-01-18 01:12:41 +00001570 State.FreeRegs -= SizeInRegs;
Michael Kupersteinf3163dc2015-12-28 14:39:54 +00001571 return true;
1572}
1573
Fangrui Song6907ce22018-07-30 19:24:48 +00001574bool X86_32ABIInfo::shouldAggregateUseDirect(QualType Ty, CCState &State,
Michael Kupersteinf3163dc2015-12-28 14:39:54 +00001575 bool &InReg,
1576 bool &NeedsPadding) const {
Reid Kleckner04046052016-05-02 17:41:07 +00001577 // On Windows, aggregates other than HFAs are never passed in registers, and
1578 // they do not consume register slots. Homogenous floating-point aggregates
1579 // (HFAs) have already been dealt with at this point.
1580 if (IsWin32StructABI && isAggregateTypeForABI(Ty))
1581 return false;
1582
Michael Kupersteinf3163dc2015-12-28 14:39:54 +00001583 NeedsPadding = false;
1584 InReg = !IsMCUABI;
1585
1586 if (!updateFreeRegs(Ty, State))
1587 return false;
1588
1589 if (IsMCUABI)
1590 return true;
Rafael Espindola077dd592012-10-24 01:58:58 +00001591
Reid Kleckner80944df2014-10-31 22:00:51 +00001592 if (State.CC == llvm::CallingConv::X86_FastCall ||
Erich Keane757d3172016-11-02 18:29:35 +00001593 State.CC == llvm::CallingConv::X86_VectorCall ||
1594 State.CC == llvm::CallingConv::X86_RegCall) {
Michael Kupersteinf3163dc2015-12-28 14:39:54 +00001595 if (getContext().getTypeSize(Ty) <= 32 && State.FreeRegs)
Rafael Espindolafad28de2012-10-24 01:59:00 +00001596 NeedsPadding = true;
1597
Rafael Espindola077dd592012-10-24 01:58:58 +00001598 return false;
1599 }
1600
Rafael Espindola703c47f2012-10-19 05:04:37 +00001601 return true;
Rafael Espindola06b2b4a2012-07-31 02:44:24 +00001602}
1603
Michael Kupersteinf3163dc2015-12-28 14:39:54 +00001604bool X86_32ABIInfo::shouldPrimitiveUseInReg(QualType Ty, CCState &State) const {
1605 if (!updateFreeRegs(Ty, State))
1606 return false;
1607
1608 if (IsMCUABI)
1609 return false;
1610
1611 if (State.CC == llvm::CallingConv::X86_FastCall ||
Erich Keane757d3172016-11-02 18:29:35 +00001612 State.CC == llvm::CallingConv::X86_VectorCall ||
1613 State.CC == llvm::CallingConv::X86_RegCall) {
Michael Kupersteinf3163dc2015-12-28 14:39:54 +00001614 if (getContext().getTypeSize(Ty) > 32)
1615 return false;
1616
Fangrui Song6907ce22018-07-30 19:24:48 +00001617 return (Ty->isIntegralOrEnumerationType() || Ty->isPointerType() ||
Michael Kupersteinf3163dc2015-12-28 14:39:54 +00001618 Ty->isReferenceType());
1619 }
1620
1621 return true;
1622}
1623
Reid Kleckner314ef7b2014-02-01 00:04:45 +00001624ABIArgInfo X86_32ABIInfo::classifyArgumentType(QualType Ty,
1625 CCState &State) const {
Anton Korobeynikov244360d2009-06-05 22:08:42 +00001626 // FIXME: Set alignment on indirect arguments.
Reid Kleckner314ef7b2014-02-01 00:04:45 +00001627
Reid Klecknerb1be6832014-11-15 01:41:41 +00001628 Ty = useFirstFieldIfTransparentUnion(Ty);
1629
Reid Kleckner80944df2014-10-31 22:00:51 +00001630 // Check with the C++ ABI first.
1631 const RecordType *RT = Ty->getAs<RecordType>();
1632 if (RT) {
1633 CGCXXABI::RecordArgABI RAA = getRecordArgABI(RT, getCXXABI());
1634 if (RAA == CGCXXABI::RAA_Indirect) {
1635 return getIndirectResult(Ty, false, State);
1636 } else if (RAA == CGCXXABI::RAA_DirectInMemory) {
1637 // The field index doesn't matter, we'll fix it up later.
1638 return ABIArgInfo::getInAlloca(/*FieldIndex=*/0);
1639 }
1640 }
1641
Erich Keane4bd39302017-06-21 16:37:22 +00001642 // Regcall uses the concept of a homogenous vector aggregate, similar
1643 // to other targets.
Reid Kleckner80944df2014-10-31 22:00:51 +00001644 const Type *Base = nullptr;
1645 uint64_t NumElts = 0;
Erich Keane4bd39302017-06-21 16:37:22 +00001646 if (State.CC == llvm::CallingConv::X86_RegCall &&
Reid Kleckner80944df2014-10-31 22:00:51 +00001647 isHomogeneousAggregate(Ty, Base, NumElts)) {
Erich Keane521ed962017-01-05 00:20:51 +00001648
Erich Keane4bd39302017-06-21 16:37:22 +00001649 if (State.FreeSSERegs >= NumElts) {
1650 State.FreeSSERegs -= NumElts;
1651 if (Ty->isBuiltinType() || Ty->isVectorType())
Reid Kleckner80944df2014-10-31 22:00:51 +00001652 return ABIArgInfo::getDirect();
Erich Keane4bd39302017-06-21 16:37:22 +00001653 return ABIArgInfo::getExpand();
Reid Kleckner80944df2014-10-31 22:00:51 +00001654 }
Erich Keane4bd39302017-06-21 16:37:22 +00001655 return getIndirectResult(Ty, /*ByVal=*/false, State);
Reid Kleckner80944df2014-10-31 22:00:51 +00001656 }
1657
1658 if (isAggregateTypeForABI(Ty)) {
Reid Kleckner04046052016-05-02 17:41:07 +00001659 // Structures with flexible arrays are always indirect.
1660 // FIXME: This should not be byval!
1661 if (RT && RT->getDecl()->hasFlexibleArrayMember())
1662 return getIndirectResult(Ty, true, State);
Daniel Dunbar557893d2010-04-21 19:10:51 +00001663
Reid Kleckner04046052016-05-02 17:41:07 +00001664 // Ignore empty structs/unions on non-Windows.
1665 if (!IsWin32StructABI && isEmptyRecord(getContext(), Ty, true))
Anton Korobeynikov244360d2009-06-05 22:08:42 +00001666 return ABIArgInfo::getIgnore();
1667
Rafael Espindolafad28de2012-10-24 01:59:00 +00001668 llvm::LLVMContext &LLVMContext = getVMContext();
1669 llvm::IntegerType *Int32 = llvm::Type::getInt32Ty(LLVMContext);
Reid Kleckner04046052016-05-02 17:41:07 +00001670 bool NeedsPadding = false;
1671 bool InReg;
Michael Kupersteinf3163dc2015-12-28 14:39:54 +00001672 if (shouldAggregateUseDirect(Ty, State, InReg, NeedsPadding)) {
Rafael Espindola703c47f2012-10-19 05:04:37 +00001673 unsigned SizeInRegs = (getContext().getTypeSize(Ty) + 31) / 32;
Craig Topperac9201a2013-07-08 04:47:18 +00001674 SmallVector<llvm::Type*, 3> Elements(SizeInRegs, Int32);
Rafael Espindola703c47f2012-10-19 05:04:37 +00001675 llvm::Type *Result = llvm::StructType::get(LLVMContext, Elements);
Michael Kupersteinf3163dc2015-12-28 14:39:54 +00001676 if (InReg)
1677 return ABIArgInfo::getDirectInReg(Result);
1678 else
1679 return ABIArgInfo::getDirect(Result);
Rafael Espindola703c47f2012-10-19 05:04:37 +00001680 }
Craig Topper8a13c412014-05-21 05:09:00 +00001681 llvm::IntegerType *PaddingType = NeedsPadding ? Int32 : nullptr;
Rafael Espindola703c47f2012-10-19 05:04:37 +00001682
Daniel Dunbar11c08c82009-11-09 01:33:53 +00001683 // Expand small (<= 128-bit) record types when we know that the stack layout
1684 // of those arguments will match the struct. This is important because the
1685 // LLVM backend isn't smart enough to remove byval, which inhibits many
1686 // optimizations.
Michael Kupersteinf3163dc2015-12-28 14:39:54 +00001687 // Don't do this for the MCU if there are still free integer registers
1688 // (see X86_64 ABI for full explanation).
Reid Kleckner04046052016-05-02 17:41:07 +00001689 if (getContext().getTypeSize(Ty) <= 4 * 32 &&
1690 (!IsMCUABI || State.FreeRegs == 0) && canExpandIndirectArgument(Ty))
Reid Kleckner661f35b2014-01-18 01:12:41 +00001691 return ABIArgInfo::getExpandWithPadding(
Reid Kleckner80944df2014-10-31 22:00:51 +00001692 State.CC == llvm::CallingConv::X86_FastCall ||
Erich Keane757d3172016-11-02 18:29:35 +00001693 State.CC == llvm::CallingConv::X86_VectorCall ||
1694 State.CC == llvm::CallingConv::X86_RegCall,
Reid Kleckner80944df2014-10-31 22:00:51 +00001695 PaddingType);
Anton Korobeynikov244360d2009-06-05 22:08:42 +00001696
Reid Kleckner661f35b2014-01-18 01:12:41 +00001697 return getIndirectResult(Ty, true, State);
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00001698 }
1699
Chris Lattnerd774ae92010-08-26 20:05:13 +00001700 if (const VectorType *VT = Ty->getAs<VectorType>()) {
Chris Lattnerd7e54802010-08-26 20:08:43 +00001701 // On Darwin, some vectors are passed in memory, we handle this by passing
1702 // it as an i8/i16/i32/i64.
Chris Lattnerd774ae92010-08-26 20:05:13 +00001703 if (IsDarwinVectorABI) {
1704 uint64_t Size = getContext().getTypeSize(Ty);
Chris Lattnerd774ae92010-08-26 20:05:13 +00001705 if ((Size == 8 || Size == 16 || Size == 32) ||
1706 (Size == 64 && VT->getNumElements() == 1))
1707 return ABIArgInfo::getDirect(llvm::IntegerType::get(getVMContext(),
1708 Size));
Chris Lattnerd774ae92010-08-26 20:05:13 +00001709 }
Bill Wendling5cd41c42010-10-18 03:41:31 +00001710
Chad Rosier651c1832013-03-25 21:00:27 +00001711 if (IsX86_MMXType(CGT.ConvertType(Ty)))
1712 return ABIArgInfo::getDirect(llvm::IntegerType::get(getVMContext(), 64));
Michael J. Spencerf5a1fbc2010-10-19 06:39:39 +00001713
Chris Lattnerd774ae92010-08-26 20:05:13 +00001714 return ABIArgInfo::getDirect();
1715 }
Michael J. Spencerf5a1fbc2010-10-19 06:39:39 +00001716
1717
Chris Lattner458b2aa2010-07-29 02:16:43 +00001718 if (const EnumType *EnumTy = Ty->getAs<EnumType>())
1719 Ty = EnumTy->getDecl()->getIntegerType();
Douglas Gregora71cc152010-02-02 20:10:50 +00001720
Michael Kupersteinf3163dc2015-12-28 14:39:54 +00001721 bool InReg = shouldPrimitiveUseInReg(Ty, State);
Rafael Espindola703c47f2012-10-19 05:04:37 +00001722
1723 if (Ty->isPromotableIntegerType()) {
1724 if (InReg)
Alex Bradburye41a5e22018-01-12 20:08:16 +00001725 return ABIArgInfo::getExtendInReg(Ty);
1726 return ABIArgInfo::getExtend(Ty);
Rafael Espindola703c47f2012-10-19 05:04:37 +00001727 }
Michael Kupersteinf3163dc2015-12-28 14:39:54 +00001728
Rafael Espindola703c47f2012-10-19 05:04:37 +00001729 if (InReg)
1730 return ABIArgInfo::getDirectInReg();
1731 return ABIArgInfo::getDirect();
Anton Korobeynikov244360d2009-06-05 22:08:42 +00001732}
1733
Erich Keane521ed962017-01-05 00:20:51 +00001734void X86_32ABIInfo::computeVectorCallArgs(CGFunctionInfo &FI, CCState &State,
1735 bool &UsedInAlloca) const {
Erich Keane4bd39302017-06-21 16:37:22 +00001736 // Vectorcall x86 works subtly different than in x64, so the format is
1737 // a bit different than the x64 version. First, all vector types (not HVAs)
1738 // are assigned, with the first 6 ending up in the YMM0-5 or XMM0-5 registers.
1739 // This differs from the x64 implementation, where the first 6 by INDEX get
1740 // registers.
1741 // After that, integers AND HVAs are assigned Left to Right in the same pass.
1742 // Integers are passed as ECX/EDX if one is available (in order). HVAs will
1743 // first take up the remaining YMM/XMM registers. If insufficient registers
1744 // remain but an integer register (ECX/EDX) is available, it will be passed
1745 // in that, else, on the stack.
Erich Keane521ed962017-01-05 00:20:51 +00001746 for (auto &I : FI.arguments()) {
Erich Keane4bd39302017-06-21 16:37:22 +00001747 // First pass do all the vector types.
1748 const Type *Base = nullptr;
1749 uint64_t NumElts = 0;
1750 const QualType& Ty = I.type;
1751 if ((Ty->isVectorType() || Ty->isBuiltinType()) &&
1752 isHomogeneousAggregate(Ty, Base, NumElts)) {
1753 if (State.FreeSSERegs >= NumElts) {
1754 State.FreeSSERegs -= NumElts;
1755 I.info = ABIArgInfo::getDirect();
1756 } else {
1757 I.info = classifyArgumentType(Ty, State);
1758 }
1759 UsedInAlloca |= (I.info.getKind() == ABIArgInfo::InAlloca);
1760 }
Erich Keane521ed962017-01-05 00:20:51 +00001761 }
Erich Keane4bd39302017-06-21 16:37:22 +00001762
Erich Keane521ed962017-01-05 00:20:51 +00001763 for (auto &I : FI.arguments()) {
Erich Keane4bd39302017-06-21 16:37:22 +00001764 // Second pass, do the rest!
1765 const Type *Base = nullptr;
1766 uint64_t NumElts = 0;
1767 const QualType& Ty = I.type;
1768 bool IsHva = isHomogeneousAggregate(Ty, Base, NumElts);
1769
1770 if (IsHva && !Ty->isVectorType() && !Ty->isBuiltinType()) {
1771 // Assign true HVAs (non vector/native FP types).
1772 if (State.FreeSSERegs >= NumElts) {
1773 State.FreeSSERegs -= NumElts;
1774 I.info = getDirectX86Hva();
1775 } else {
1776 I.info = getIndirectResult(Ty, /*ByVal=*/false, State);
1777 }
1778 } else if (!IsHva) {
1779 // Assign all Non-HVAs, so this will exclude Vector/FP args.
1780 I.info = classifyArgumentType(Ty, State);
1781 UsedInAlloca |= (I.info.getKind() == ABIArgInfo::InAlloca);
1782 }
Erich Keane521ed962017-01-05 00:20:51 +00001783 }
1784}
1785
Rafael Espindolaa6472962012-07-24 00:01:07 +00001786void X86_32ABIInfo::computeInfo(CGFunctionInfo &FI) const {
Reid Kleckner661f35b2014-01-18 01:12:41 +00001787 CCState State(FI.getCallingConvention());
Michael Kupersteinf3163dc2015-12-28 14:39:54 +00001788 if (IsMCUABI)
1789 State.FreeRegs = 3;
1790 else if (State.CC == llvm::CallingConv::X86_FastCall)
Reid Kleckner661f35b2014-01-18 01:12:41 +00001791 State.FreeRegs = 2;
Reid Kleckner80944df2014-10-31 22:00:51 +00001792 else if (State.CC == llvm::CallingConv::X86_VectorCall) {
1793 State.FreeRegs = 2;
1794 State.FreeSSERegs = 6;
1795 } else if (FI.getHasRegParm())
Reid Kleckner661f35b2014-01-18 01:12:41 +00001796 State.FreeRegs = FI.getRegParm();
Erich Keane757d3172016-11-02 18:29:35 +00001797 else if (State.CC == llvm::CallingConv::X86_RegCall) {
1798 State.FreeRegs = 5;
1799 State.FreeSSERegs = 8;
1800 } else
Reid Kleckner661f35b2014-01-18 01:12:41 +00001801 State.FreeRegs = DefaultNumRegisterParameters;
Rafael Espindola06b2b4a2012-07-31 02:44:24 +00001802
Akira Hatanakad791e922018-03-19 17:38:40 +00001803 if (!::classifyReturnType(getCXXABI(), FI, *this)) {
Reid Kleckner40ca9132014-05-13 22:05:45 +00001804 FI.getReturnInfo() = classifyReturnType(FI.getReturnType(), State);
Reid Kleckner677539d2014-07-10 01:58:55 +00001805 } else if (FI.getReturnInfo().isIndirect()) {
1806 // The C++ ABI is not aware of register usage, so we have to check if the
1807 // return value was sret and put it in a register ourselves if appropriate.
1808 if (State.FreeRegs) {
1809 --State.FreeRegs; // The sret parameter consumes a register.
Michael Kupersteinf3163dc2015-12-28 14:39:54 +00001810 if (!IsMCUABI)
1811 FI.getReturnInfo().setInReg(true);
Reid Kleckner677539d2014-07-10 01:58:55 +00001812 }
1813 }
Rafael Espindola06b2b4a2012-07-31 02:44:24 +00001814
Peter Collingbournef7706832014-12-12 23:41:25 +00001815 // The chain argument effectively gives us another free register.
1816 if (FI.isChainCall())
1817 ++State.FreeRegs;
1818
Reid Kleckner314ef7b2014-02-01 00:04:45 +00001819 bool UsedInAlloca = false;
Erich Keane521ed962017-01-05 00:20:51 +00001820 if (State.CC == llvm::CallingConv::X86_VectorCall) {
1821 computeVectorCallArgs(FI, State, UsedInAlloca);
1822 } else {
1823 // If not vectorcall, revert to normal behavior.
1824 for (auto &I : FI.arguments()) {
1825 I.info = classifyArgumentType(I.type, State);
1826 UsedInAlloca |= (I.info.getKind() == ABIArgInfo::InAlloca);
1827 }
Reid Kleckner314ef7b2014-02-01 00:04:45 +00001828 }
1829
1830 // If we needed to use inalloca for any argument, do a second pass and rewrite
1831 // all the memory arguments to use inalloca.
1832 if (UsedInAlloca)
1833 rewriteWithInAlloca(FI);
1834}
1835
1836void
1837X86_32ABIInfo::addFieldToArgStruct(SmallVector<llvm::Type *, 6> &FrameFields,
John McCall7f416cc2015-09-08 08:05:57 +00001838 CharUnits &StackOffset, ABIArgInfo &Info,
1839 QualType Type) const {
1840 // Arguments are always 4-byte-aligned.
1841 CharUnits FieldAlign = CharUnits::fromQuantity(4);
1842
1843 assert(StackOffset.isMultipleOf(FieldAlign) && "unaligned inalloca struct");
Reid Klecknerd378a712014-04-10 19:09:43 +00001844 Info = ABIArgInfo::getInAlloca(FrameFields.size());
1845 FrameFields.push_back(CGT.ConvertTypeForMem(Type));
John McCall7f416cc2015-09-08 08:05:57 +00001846 StackOffset += getContext().getTypeSizeInChars(Type);
Reid Klecknerd378a712014-04-10 19:09:43 +00001847
John McCall7f416cc2015-09-08 08:05:57 +00001848 // Insert padding bytes to respect alignment.
1849 CharUnits FieldEnd = StackOffset;
Rui Ueyama83aa9792016-01-14 21:00:27 +00001850 StackOffset = FieldEnd.alignTo(FieldAlign);
John McCall7f416cc2015-09-08 08:05:57 +00001851 if (StackOffset != FieldEnd) {
1852 CharUnits NumBytes = StackOffset - FieldEnd;
Reid Kleckner314ef7b2014-02-01 00:04:45 +00001853 llvm::Type *Ty = llvm::Type::getInt8Ty(getVMContext());
John McCall7f416cc2015-09-08 08:05:57 +00001854 Ty = llvm::ArrayType::get(Ty, NumBytes.getQuantity());
Reid Kleckner314ef7b2014-02-01 00:04:45 +00001855 FrameFields.push_back(Ty);
1856 }
Reid Kleckner314ef7b2014-02-01 00:04:45 +00001857}
1858
Reid Kleckner852361d2014-07-26 00:12:26 +00001859static bool isArgInAlloca(const ABIArgInfo &Info) {
1860 // Leave ignored and inreg arguments alone.
1861 switch (Info.getKind()) {
1862 case ABIArgInfo::InAlloca:
1863 return true;
1864 case ABIArgInfo::Indirect:
1865 assert(Info.getIndirectByVal());
1866 return true;
1867 case ABIArgInfo::Ignore:
1868 return false;
1869 case ABIArgInfo::Direct:
1870 case ABIArgInfo::Extend:
Reid Kleckner852361d2014-07-26 00:12:26 +00001871 if (Info.getInReg())
1872 return false;
1873 return true;
Reid Kleckner04046052016-05-02 17:41:07 +00001874 case ABIArgInfo::Expand:
1875 case ABIArgInfo::CoerceAndExpand:
1876 // These are aggregate types which are never passed in registers when
1877 // inalloca is involved.
1878 return true;
Reid Kleckner852361d2014-07-26 00:12:26 +00001879 }
1880 llvm_unreachable("invalid enum");
1881}
1882
Reid Kleckner314ef7b2014-02-01 00:04:45 +00001883void X86_32ABIInfo::rewriteWithInAlloca(CGFunctionInfo &FI) const {
1884 assert(IsWin32StructABI && "inalloca only supported on win32");
1885
1886 // Build a packed struct type for all of the arguments in memory.
1887 SmallVector<llvm::Type *, 6> FrameFields;
1888
John McCall7f416cc2015-09-08 08:05:57 +00001889 // The stack alignment is always 4.
1890 CharUnits StackAlign = CharUnits::fromQuantity(4);
1891
1892 CharUnits StackOffset;
Reid Kleckner852361d2014-07-26 00:12:26 +00001893 CGFunctionInfo::arg_iterator I = FI.arg_begin(), E = FI.arg_end();
1894
1895 // Put 'this' into the struct before 'sret', if necessary.
1896 bool IsThisCall =
1897 FI.getCallingConvention() == llvm::CallingConv::X86_ThisCall;
1898 ABIArgInfo &Ret = FI.getReturnInfo();
1899 if (Ret.isIndirect() && Ret.isSRetAfterThis() && !IsThisCall &&
1900 isArgInAlloca(I->info)) {
1901 addFieldToArgStruct(FrameFields, StackOffset, I->info, I->type);
1902 ++I;
1903 }
Reid Kleckner314ef7b2014-02-01 00:04:45 +00001904
1905 // Put the sret parameter into the inalloca struct if it's in memory.
Reid Kleckner314ef7b2014-02-01 00:04:45 +00001906 if (Ret.isIndirect() && !Ret.getInReg()) {
1907 CanQualType PtrTy = getContext().getPointerType(FI.getReturnType());
1908 addFieldToArgStruct(FrameFields, StackOffset, Ret, PtrTy);
Reid Klecknerfab1e892014-02-25 00:59:14 +00001909 // On Windows, the hidden sret parameter is always returned in eax.
1910 Ret.setInAllocaSRet(IsWin32StructABI);
Reid Kleckner314ef7b2014-02-01 00:04:45 +00001911 }
1912
1913 // Skip the 'this' parameter in ecx.
Reid Kleckner852361d2014-07-26 00:12:26 +00001914 if (IsThisCall)
Reid Kleckner314ef7b2014-02-01 00:04:45 +00001915 ++I;
1916
1917 // Put arguments passed in memory into the struct.
1918 for (; I != E; ++I) {
Reid Kleckner852361d2014-07-26 00:12:26 +00001919 if (isArgInAlloca(I->info))
1920 addFieldToArgStruct(FrameFields, StackOffset, I->info, I->type);
Reid Kleckner314ef7b2014-02-01 00:04:45 +00001921 }
1922
1923 FI.setArgStruct(llvm::StructType::get(getVMContext(), FrameFields,
John McCall7f416cc2015-09-08 08:05:57 +00001924 /*isPacked=*/true),
1925 StackAlign);
Rafael Espindolaa6472962012-07-24 00:01:07 +00001926}
1927
John McCall7f416cc2015-09-08 08:05:57 +00001928Address X86_32ABIInfo::EmitVAArg(CodeGenFunction &CGF,
1929 Address VAListAddr, QualType Ty) const {
Anton Korobeynikov244360d2009-06-05 22:08:42 +00001930
John McCall7f416cc2015-09-08 08:05:57 +00001931 auto TypeInfo = getContext().getTypeInfoInChars(Ty);
Eli Friedman1d7dd3b2011-11-18 02:12:09 +00001932
John McCall7f416cc2015-09-08 08:05:57 +00001933 // x86-32 changes the alignment of certain arguments on the stack.
1934 //
1935 // Just messing with TypeInfo like this works because we never pass
1936 // anything indirectly.
1937 TypeInfo.second = CharUnits::fromQuantity(
1938 getTypeStackAlignInBytes(Ty, TypeInfo.second.getQuantity()));
Eli Friedman1d7dd3b2011-11-18 02:12:09 +00001939
John McCall7f416cc2015-09-08 08:05:57 +00001940 return emitVoidPtrVAArg(CGF, VAListAddr, Ty, /*Indirect*/ false,
1941 TypeInfo, CharUnits::fromQuantity(4),
1942 /*AllowHigherAlign*/ true);
Anton Korobeynikov244360d2009-06-05 22:08:42 +00001943}
1944
Richard Sandiforddcb8d9c2014-07-08 11:10:34 +00001945bool X86_32TargetCodeGenInfo::isStructReturnInRegABI(
1946 const llvm::Triple &Triple, const CodeGenOptions &Opts) {
1947 assert(Triple.getArch() == llvm::Triple::x86);
1948
1949 switch (Opts.getStructReturnConvention()) {
1950 case CodeGenOptions::SRCK_Default:
1951 break;
1952 case CodeGenOptions::SRCK_OnStack: // -fpcc-struct-return
1953 return false;
1954 case CodeGenOptions::SRCK_InRegs: // -freg-struct-return
1955 return true;
1956 }
1957
Michael Kupersteind749f232015-10-27 07:46:22 +00001958 if (Triple.isOSDarwin() || Triple.isOSIAMCU())
Richard Sandiforddcb8d9c2014-07-08 11:10:34 +00001959 return true;
1960
1961 switch (Triple.getOS()) {
Richard Sandiforddcb8d9c2014-07-08 11:10:34 +00001962 case llvm::Triple::DragonFly:
1963 case llvm::Triple::FreeBSD:
1964 case llvm::Triple::OpenBSD:
Richard Sandiforddcb8d9c2014-07-08 11:10:34 +00001965 case llvm::Triple::Win32:
Reid Kleckner2918fef2014-11-24 22:05:42 +00001966 return true;
Richard Sandiforddcb8d9c2014-07-08 11:10:34 +00001967 default:
1968 return false;
1969 }
1970}
1971
Simon Atanasyan1a116db2017-07-20 20:34:18 +00001972void X86_32TargetCodeGenInfo::setTargetAttributes(
Rafael Espindoladeb10be2018-02-07 19:04:41 +00001973 const Decl *D, llvm::GlobalValue *GV, CodeGen::CodeGenModule &CGM) const {
1974 if (GV->isDeclaration())
Simon Atanasyan1a116db2017-07-20 20:34:18 +00001975 return;
Akira Hatanakaaec6b2c2015-10-08 20:26:34 +00001976 if (const FunctionDecl *FD = dyn_cast_or_null<FunctionDecl>(D)) {
Charles Davis4ea31ab2010-02-13 15:54:06 +00001977 if (FD->hasAttr<X86ForceAlignArgPointerAttr>()) {
Charles Davis4ea31ab2010-02-13 15:54:06 +00001978 llvm::Function *Fn = cast<llvm::Function>(GV);
Erich Keaneb127a3942018-04-19 14:27:05 +00001979 Fn->addFnAttr("stackrealign");
Charles Davis4ea31ab2010-02-13 15:54:06 +00001980 }
Alexey Bataevd51e9932016-01-15 04:06:31 +00001981 if (FD->hasAttr<AnyX86InterruptAttr>()) {
1982 llvm::Function *Fn = cast<llvm::Function>(GV);
1983 Fn->setCallingConv(llvm::CallingConv::X86_INTR);
1984 }
Charles Davis4ea31ab2010-02-13 15:54:06 +00001985 }
1986}
1987
John McCallbeec5a02010-03-06 00:35:14 +00001988bool X86_32TargetCodeGenInfo::initDwarfEHRegSizeTable(
1989 CodeGen::CodeGenFunction &CGF,
1990 llvm::Value *Address) const {
1991 CodeGen::CGBuilderTy &Builder = CGF.Builder;
John McCallbeec5a02010-03-06 00:35:14 +00001992
Chris Lattnerece04092012-02-07 00:39:47 +00001993 llvm::Value *Four8 = llvm::ConstantInt::get(CGF.Int8Ty, 4);
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00001994
John McCallbeec5a02010-03-06 00:35:14 +00001995 // 0-7 are the eight integer registers; the order is different
1996 // on Darwin (for EH), but the range is the same.
1997 // 8 is %eip.
John McCall943fae92010-05-27 06:19:26 +00001998 AssignToArrayRange(Builder, Address, Four8, 0, 8);
John McCallbeec5a02010-03-06 00:35:14 +00001999
John McCallc8e01702013-04-16 22:48:15 +00002000 if (CGF.CGM.getTarget().getTriple().isOSDarwin()) {
John McCallbeec5a02010-03-06 00:35:14 +00002001 // 12-16 are st(0..4). Not sure why we stop at 4.
2002 // These have size 16, which is sizeof(long double) on
2003 // platforms with 8-byte alignment for that type.
Chris Lattnerece04092012-02-07 00:39:47 +00002004 llvm::Value *Sixteen8 = llvm::ConstantInt::get(CGF.Int8Ty, 16);
John McCall943fae92010-05-27 06:19:26 +00002005 AssignToArrayRange(Builder, Address, Sixteen8, 12, 16);
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00002006
John McCallbeec5a02010-03-06 00:35:14 +00002007 } else {
2008 // 9 is %eflags, which doesn't get a size on Darwin for some
2009 // reason.
John McCall7f416cc2015-09-08 08:05:57 +00002010 Builder.CreateAlignedStore(
2011 Four8, Builder.CreateConstInBoundsGEP1_32(CGF.Int8Ty, Address, 9),
2012 CharUnits::One());
John McCallbeec5a02010-03-06 00:35:14 +00002013
2014 // 11-16 are st(0..5). Not sure why we stop at 5.
2015 // These have size 12, which is sizeof(long double) on
2016 // platforms with 4-byte alignment for that type.
Chris Lattnerece04092012-02-07 00:39:47 +00002017 llvm::Value *Twelve8 = llvm::ConstantInt::get(CGF.Int8Ty, 12);
John McCall943fae92010-05-27 06:19:26 +00002018 AssignToArrayRange(Builder, Address, Twelve8, 11, 16);
2019 }
John McCallbeec5a02010-03-06 00:35:14 +00002020
2021 return false;
2022}
2023
Chris Lattner0cf24192010-06-28 20:05:43 +00002024//===----------------------------------------------------------------------===//
2025// X86-64 ABI Implementation
2026//===----------------------------------------------------------------------===//
2027
2028
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002029namespace {
Ahmed Bougachad39a4152015-06-22 21:30:39 +00002030/// The AVX ABI level for X86 targets.
2031enum class X86AVXABILevel {
2032 None,
Ahmed Bougacha0b938282015-06-22 21:31:43 +00002033 AVX,
2034 AVX512
Ahmed Bougachad39a4152015-06-22 21:30:39 +00002035};
2036
2037/// \p returns the size in bits of the largest (native) vector for \p AVXLevel.
2038static unsigned getNativeVectorSizeForAVXABI(X86AVXABILevel AVXLevel) {
2039 switch (AVXLevel) {
Ahmed Bougacha0b938282015-06-22 21:31:43 +00002040 case X86AVXABILevel::AVX512:
2041 return 512;
Ahmed Bougachad39a4152015-06-22 21:30:39 +00002042 case X86AVXABILevel::AVX:
2043 return 256;
2044 case X86AVXABILevel::None:
2045 return 128;
2046 }
Yaron Kerenb76cb042015-06-23 09:45:42 +00002047 llvm_unreachable("Unknown AVXLevel");
Ahmed Bougachad39a4152015-06-22 21:30:39 +00002048}
2049
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002050/// X86_64ABIInfo - The X86_64 ABI information.
John McCall12f23522016-04-04 18:33:08 +00002051class X86_64ABIInfo : public SwiftABIInfo {
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002052 enum Class {
2053 Integer = 0,
2054 SSE,
2055 SSEUp,
2056 X87,
2057 X87Up,
2058 ComplexX87,
2059 NoClass,
2060 Memory
2061 };
2062
2063 /// merge - Implement the X86_64 ABI merging algorithm.
2064 ///
2065 /// Merge an accumulating classification \arg Accum with a field
2066 /// classification \arg Field.
2067 ///
2068 /// \param Accum - The accumulating classification. This should
2069 /// always be either NoClass or the result of a previous merge
2070 /// call. In addition, this should never be Memory (the caller
2071 /// should just return Memory for the aggregate).
Chris Lattnerd776fb12010-06-28 21:43:59 +00002072 static Class merge(Class Accum, Class Field);
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002073
Bruno Cardoso Lopes21a41bb2011-07-11 22:41:29 +00002074 /// postMerge - Implement the X86_64 ABI post merging algorithm.
2075 ///
2076 /// Post merger cleanup, reduces a malformed Hi and Lo pair to
2077 /// final MEMORY or SSE classes when necessary.
2078 ///
2079 /// \param AggregateSize - The size of the current aggregate in
2080 /// the classification process.
2081 ///
2082 /// \param Lo - The classification for the parts of the type
2083 /// residing in the low word of the containing object.
2084 ///
2085 /// \param Hi - The classification for the parts of the type
2086 /// residing in the higher words of the containing object.
2087 ///
2088 void postMerge(unsigned AggregateSize, Class &Lo, Class &Hi) const;
2089
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002090 /// classify - Determine the x86_64 register classes in which the
2091 /// given type T should be passed.
2092 ///
2093 /// \param Lo - The classification for the parts of the type
2094 /// residing in the low word of the containing object.
2095 ///
2096 /// \param Hi - The classification for the parts of the type
2097 /// residing in the high word of the containing object.
2098 ///
2099 /// \param OffsetBase - The bit offset of this type in the
2100 /// containing object. Some parameters are classified different
2101 /// depending on whether they straddle an eightbyte boundary.
2102 ///
Eli Friedman96fd2642013-06-12 00:13:45 +00002103 /// \param isNamedArg - Whether the argument in question is a "named"
2104 /// argument, as used in AMD64-ABI 3.5.7.
2105 ///
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002106 /// If a word is unused its result will be NoClass; if a type should
2107 /// be passed in Memory then at least the classification of \arg Lo
2108 /// will be Memory.
2109 ///
Sylvestre Ledru33b5baf2012-09-27 10:16:10 +00002110 /// The \arg Lo class will be NoClass iff the argument is ignored.
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002111 ///
2112 /// If the \arg Lo class is ComplexX87, then the \arg Hi class will
2113 /// also be ComplexX87.
Eli Friedman96fd2642013-06-12 00:13:45 +00002114 void classify(QualType T, uint64_t OffsetBase, Class &Lo, Class &Hi,
2115 bool isNamedArg) const;
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002116
Bruno Cardoso Lopes21a41bb2011-07-11 22:41:29 +00002117 llvm::Type *GetByteVectorType(QualType Ty) const;
Chris Lattnera5f58b02011-07-09 17:41:47 +00002118 llvm::Type *GetSSETypeAtOffset(llvm::Type *IRType,
2119 unsigned IROffset, QualType SourceTy,
2120 unsigned SourceOffset) const;
2121 llvm::Type *GetINTEGERTypeAtOffset(llvm::Type *IRType,
2122 unsigned IROffset, QualType SourceTy,
2123 unsigned SourceOffset) const;
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00002124
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002125 /// getIndirectResult - Give a source type \arg Ty, return a suitable result
Daniel Dunbar53fac692010-04-21 19:49:55 +00002126 /// such that the argument will be returned in memory.
Chris Lattner22a931e2010-06-29 06:01:59 +00002127 ABIArgInfo getIndirectReturnResult(QualType Ty) const;
Daniel Dunbar53fac692010-04-21 19:49:55 +00002128
2129 /// getIndirectResult - Give a source type \arg Ty, return a suitable result
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002130 /// such that the argument will be passed in memory.
Daniel Dunbarf07b5ec2012-03-10 01:03:58 +00002131 ///
2132 /// \param freeIntRegs - The number of free integer registers remaining
2133 /// available.
2134 ABIArgInfo getIndirectResult(QualType Ty, unsigned freeIntRegs) const;
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002135
Chris Lattner458b2aa2010-07-29 02:16:43 +00002136 ABIArgInfo classifyReturnType(QualType RetTy) const;
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002137
Erich Keane757d3172016-11-02 18:29:35 +00002138 ABIArgInfo classifyArgumentType(QualType Ty, unsigned freeIntRegs,
2139 unsigned &neededInt, unsigned &neededSSE,
Eli Friedman96fd2642013-06-12 00:13:45 +00002140 bool isNamedArg) const;
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002141
Erich Keane757d3172016-11-02 18:29:35 +00002142 ABIArgInfo classifyRegCallStructType(QualType Ty, unsigned &NeededInt,
2143 unsigned &NeededSSE) const;
2144
2145 ABIArgInfo classifyRegCallStructTypeImpl(QualType Ty, unsigned &NeededInt,
2146 unsigned &NeededSSE) const;
2147
Eli Friedmanbfd5add2011-12-02 00:11:43 +00002148 bool IsIllegalVectorType(QualType Ty) const;
2149
John McCalle0fda732011-04-21 01:20:55 +00002150 /// The 0.98 ABI revision clarified a lot of ambiguities,
2151 /// unfortunately in ways that were not always consistent with
2152 /// certain previous compilers. In particular, platforms which
2153 /// required strict binary compatibility with older versions of GCC
2154 /// may need to exempt themselves.
2155 bool honorsRevision0_98() const {
John McCallc8e01702013-04-16 22:48:15 +00002156 return !getTarget().getTriple().isOSDarwin();
John McCalle0fda732011-04-21 01:20:55 +00002157 }
2158
Richard Smithf667ad52017-08-26 01:04:35 +00002159 /// GCC classifies <1 x long long> as SSE but some platform ABIs choose to
2160 /// classify it as INTEGER (for compatibility with older clang compilers).
David Majnemere2ae2282016-03-04 05:26:16 +00002161 bool classifyIntegerMMXAsSSE() const {
Richard Smithf667ad52017-08-26 01:04:35 +00002162 // Clang <= 3.8 did not do this.
Akira Hatanakafcbe17c2018-03-28 21:13:14 +00002163 if (getContext().getLangOpts().getClangABICompat() <=
2164 LangOptions::ClangABI::Ver3_8)
Richard Smithf667ad52017-08-26 01:04:35 +00002165 return false;
2166
David Majnemere2ae2282016-03-04 05:26:16 +00002167 const llvm::Triple &Triple = getTarget().getTriple();
2168 if (Triple.isOSDarwin() || Triple.getOS() == llvm::Triple::PS4)
2169 return false;
2170 if (Triple.isOSFreeBSD() && Triple.getOSMajorVersion() >= 10)
2171 return false;
2172 return true;
2173 }
2174
Ahmed Bougachad39a4152015-06-22 21:30:39 +00002175 X86AVXABILevel AVXLevel;
Derek Schuffc7dd7222012-10-11 15:52:22 +00002176 // Some ABIs (e.g. X32 ABI and Native Client OS) use 32 bit pointers on
2177 // 64-bit hardware.
2178 bool Has64BitPointers;
Eli Friedmanbfd5add2011-12-02 00:11:43 +00002179
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002180public:
Ahmed Bougachad39a4152015-06-22 21:30:39 +00002181 X86_64ABIInfo(CodeGen::CodeGenTypes &CGT, X86AVXABILevel AVXLevel) :
John McCall12f23522016-04-04 18:33:08 +00002182 SwiftABIInfo(CGT), AVXLevel(AVXLevel),
Derek Schuff8a872f32012-10-11 18:21:13 +00002183 Has64BitPointers(CGT.getDataLayout().getPointerSize(0) == 8) {
Derek Schuffc7dd7222012-10-11 15:52:22 +00002184 }
Chris Lattner22a931e2010-06-29 06:01:59 +00002185
John McCalla729c622012-02-17 03:33:10 +00002186 bool isPassedUsingAVXType(QualType type) const {
2187 unsigned neededInt, neededSSE;
Daniel Dunbarf07b5ec2012-03-10 01:03:58 +00002188 // The freeIntRegs argument doesn't matter here.
Eli Friedman96fd2642013-06-12 00:13:45 +00002189 ABIArgInfo info = classifyArgumentType(type, 0, neededInt, neededSSE,
2190 /*isNamedArg*/true);
John McCalla729c622012-02-17 03:33:10 +00002191 if (info.isDirect()) {
2192 llvm::Type *ty = info.getCoerceToType();
2193 if (llvm::VectorType *vectorTy = dyn_cast_or_null<llvm::VectorType>(ty))
2194 return (vectorTy->getBitWidth() > 128);
2195 }
2196 return false;
2197 }
2198
Craig Topper4f12f102014-03-12 06:41:41 +00002199 void computeInfo(CGFunctionInfo &FI) const override;
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002200
John McCall7f416cc2015-09-08 08:05:57 +00002201 Address EmitVAArg(CodeGenFunction &CGF, Address VAListAddr,
2202 QualType Ty) const override;
Charles Davisc7d5c942015-09-17 20:55:33 +00002203 Address EmitMSVAArg(CodeGenFunction &CGF, Address VAListAddr,
2204 QualType Ty) const override;
Peter Collingbourne69b004d2015-02-25 23:18:42 +00002205
2206 bool has64BitPointers() const {
2207 return Has64BitPointers;
2208 }
John McCall12f23522016-04-04 18:33:08 +00002209
John McCall56331e22018-01-07 06:28:49 +00002210 bool shouldPassIndirectlyForSwift(ArrayRef<llvm::Type*> scalars,
John McCall12f23522016-04-04 18:33:08 +00002211 bool asReturnValue) const override {
2212 return occupiesMoreThan(CGT, scalars, /*total*/ 4);
Fangrui Song6907ce22018-07-30 19:24:48 +00002213 }
Arnold Schwaighoferb0f2c332016-12-01 18:07:38 +00002214 bool isSwiftErrorInRegister() const override {
2215 return true;
2216 }
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002217};
Anton Korobeynikov55bcea12010-01-10 12:58:08 +00002218
Chris Lattner04dc9572010-08-31 16:44:54 +00002219/// WinX86_64ABIInfo - The Windows X86_64 ABI information.
Arnold Schwaighofer4fc955e2016-10-12 18:59:24 +00002220class WinX86_64ABIInfo : public SwiftABIInfo {
Chris Lattner04dc9572010-08-31 16:44:54 +00002221public:
Reid Kleckner11a17192015-10-28 22:29:52 +00002222 WinX86_64ABIInfo(CodeGen::CodeGenTypes &CGT)
Arnold Schwaighofer4fc955e2016-10-12 18:59:24 +00002223 : SwiftABIInfo(CGT),
Reid Kleckner11a17192015-10-28 22:29:52 +00002224 IsMingw64(getTarget().getTriple().isWindowsGNUEnvironment()) {}
NAKAMURA Takumibd91f502011-01-17 22:56:31 +00002225
Craig Topper4f12f102014-03-12 06:41:41 +00002226 void computeInfo(CGFunctionInfo &FI) const override;
Chris Lattner04dc9572010-08-31 16:44:54 +00002227
John McCall7f416cc2015-09-08 08:05:57 +00002228 Address EmitVAArg(CodeGenFunction &CGF, Address VAListAddr,
2229 QualType Ty) const override;
Reid Kleckner80944df2014-10-31 22:00:51 +00002230
2231 bool isHomogeneousAggregateBaseType(QualType Ty) const override {
2232 // FIXME: Assumes vectorcall is in use.
2233 return isX86VectorTypeForVectorCall(getContext(), Ty);
2234 }
2235
2236 bool isHomogeneousAggregateSmallEnough(const Type *Ty,
2237 uint64_t NumMembers) const override {
2238 // FIXME: Assumes vectorcall is in use.
2239 return isX86VectorCallAggregateSmallEnough(NumMembers);
2240 }
Reid Kleckner11a17192015-10-28 22:29:52 +00002241
John McCall56331e22018-01-07 06:28:49 +00002242 bool shouldPassIndirectlyForSwift(ArrayRef<llvm::Type *> scalars,
Arnold Schwaighofer4fc955e2016-10-12 18:59:24 +00002243 bool asReturnValue) const override {
2244 return occupiesMoreThan(CGT, scalars, /*total*/ 4);
2245 }
2246
Arnold Schwaighoferb0f2c332016-12-01 18:07:38 +00002247 bool isSwiftErrorInRegister() const override {
2248 return true;
2249 }
2250
Reid Kleckner11a17192015-10-28 22:29:52 +00002251private:
Erich Keane521ed962017-01-05 00:20:51 +00002252 ABIArgInfo classify(QualType Ty, unsigned &FreeSSERegs, bool IsReturnType,
2253 bool IsVectorCall, bool IsRegCall) const;
2254 ABIArgInfo reclassifyHvaArgType(QualType Ty, unsigned &FreeSSERegs,
2255 const ABIArgInfo &current) const;
2256 void computeVectorCallArgs(CGFunctionInfo &FI, unsigned FreeSSERegs,
2257 bool IsVectorCall, bool IsRegCall) const;
Reid Kleckner11a17192015-10-28 22:29:52 +00002258
Erich Keane521ed962017-01-05 00:20:51 +00002259 bool IsMingw64;
Chris Lattner04dc9572010-08-31 16:44:54 +00002260};
2261
Anton Korobeynikov55bcea12010-01-10 12:58:08 +00002262class X86_64TargetCodeGenInfo : public TargetCodeGenInfo {
2263public:
Ahmed Bougachad39a4152015-06-22 21:30:39 +00002264 X86_64TargetCodeGenInfo(CodeGen::CodeGenTypes &CGT, X86AVXABILevel AVXLevel)
Alexey Bataev00396512015-07-02 03:40:19 +00002265 : TargetCodeGenInfo(new X86_64ABIInfo(CGT, AVXLevel)) {}
John McCallbeec5a02010-03-06 00:35:14 +00002266
John McCalla729c622012-02-17 03:33:10 +00002267 const X86_64ABIInfo &getABIInfo() const {
2268 return static_cast<const X86_64ABIInfo&>(TargetCodeGenInfo::getABIInfo());
2269 }
2270
Craig Topper4f12f102014-03-12 06:41:41 +00002271 int getDwarfEHStackPointer(CodeGen::CodeGenModule &CGM) const override {
John McCallbeec5a02010-03-06 00:35:14 +00002272 return 7;
2273 }
2274
2275 bool initDwarfEHRegSizeTable(CodeGen::CodeGenFunction &CGF,
Craig Topper4f12f102014-03-12 06:41:41 +00002276 llvm::Value *Address) const override {
Chris Lattnerece04092012-02-07 00:39:47 +00002277 llvm::Value *Eight8 = llvm::ConstantInt::get(CGF.Int8Ty, 8);
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00002278
John McCall943fae92010-05-27 06:19:26 +00002279 // 0-15 are the 16 integer registers.
2280 // 16 is %rip.
Chris Lattnerece04092012-02-07 00:39:47 +00002281 AssignToArrayRange(CGF.Builder, Address, Eight8, 0, 16);
John McCallbeec5a02010-03-06 00:35:14 +00002282 return false;
2283 }
Peter Collingbourne8f5cf742011-02-19 23:03:58 +00002284
Jay Foad7c57be32011-07-11 09:56:20 +00002285 llvm::Type* adjustInlineAsmType(CodeGen::CodeGenFunction &CGF,
Chris Lattner0e62c1c2011-07-23 10:55:15 +00002286 StringRef Constraint,
Craig Topper4f12f102014-03-12 06:41:41 +00002287 llvm::Type* Ty) const override {
Peter Collingbourne8f5cf742011-02-19 23:03:58 +00002288 return X86AdjustInlineAsmType(CGF, Constraint, Ty);
2289 }
2290
John McCalla729c622012-02-17 03:33:10 +00002291 bool isNoProtoCallVariadic(const CallArgList &args,
Craig Topper4f12f102014-03-12 06:41:41 +00002292 const FunctionNoProtoType *fnType) const override {
John McCallcbc038a2011-09-21 08:08:30 +00002293 // The default CC on x86-64 sets %al to the number of SSA
2294 // registers used, and GCC sets this when calling an unprototyped
Eli Friedmanf37bd2f2011-12-01 04:53:19 +00002295 // function, so we override the default behavior. However, don't do
Eli Friedmanb8e45b22011-12-06 03:08:26 +00002296 // that when AVX types are involved: the ABI explicitly states it is
2297 // undefined, and it doesn't work in practice because of how the ABI
2298 // defines varargs anyway.
Reid Kleckner78af0702013-08-27 23:08:25 +00002299 if (fnType->getCallConv() == CC_C) {
Eli Friedmanf37bd2f2011-12-01 04:53:19 +00002300 bool HasAVXType = false;
John McCalla729c622012-02-17 03:33:10 +00002301 for (CallArgList::const_iterator
2302 it = args.begin(), ie = args.end(); it != ie; ++it) {
2303 if (getABIInfo().isPassedUsingAVXType(it->Ty)) {
2304 HasAVXType = true;
2305 break;
Eli Friedmanf37bd2f2011-12-01 04:53:19 +00002306 }
2307 }
John McCalla729c622012-02-17 03:33:10 +00002308
Eli Friedmanf37bd2f2011-12-01 04:53:19 +00002309 if (!HasAVXType)
2310 return true;
2311 }
John McCallcbc038a2011-09-21 08:08:30 +00002312
John McCalla729c622012-02-17 03:33:10 +00002313 return TargetCodeGenInfo::isNoProtoCallVariadic(args, fnType);
John McCallcbc038a2011-09-21 08:08:30 +00002314 }
2315
Craig Topper4f12f102014-03-12 06:41:41 +00002316 llvm::Constant *
2317 getUBSanFunctionSignature(CodeGen::CodeGenModule &CGM) const override {
Vedant Kumarbb5d4852017-09-13 00:04:35 +00002318 unsigned Sig = (0xeb << 0) | // jmp rel8
2319 (0x06 << 8) | // .+0x08
2320 ('v' << 16) |
2321 ('2' << 24);
Peter Collingbourneb453cd62013-10-20 21:29:19 +00002322 return llvm::ConstantInt::get(CGM.Int32Ty, Sig);
2323 }
Alexey Bataevd51e9932016-01-15 04:06:31 +00002324
2325 void setTargetAttributes(const Decl *D, llvm::GlobalValue *GV,
Rafael Espindoladeb10be2018-02-07 19:04:41 +00002326 CodeGen::CodeGenModule &CGM) const override {
2327 if (GV->isDeclaration())
Simon Atanasyan1a116db2017-07-20 20:34:18 +00002328 return;
Alexey Bataevd51e9932016-01-15 04:06:31 +00002329 if (const FunctionDecl *FD = dyn_cast_or_null<FunctionDecl>(D)) {
Erich Keanebb9c7042017-08-30 21:17:40 +00002330 if (FD->hasAttr<X86ForceAlignArgPointerAttr>()) {
Erich Keaneb127a3942018-04-19 14:27:05 +00002331 llvm::Function *Fn = cast<llvm::Function>(GV);
2332 Fn->addFnAttr("stackrealign");
Erich Keanebb9c7042017-08-30 21:17:40 +00002333 }
Alexey Bataevd51e9932016-01-15 04:06:31 +00002334 if (FD->hasAttr<AnyX86InterruptAttr>()) {
2335 llvm::Function *Fn = cast<llvm::Function>(GV);
2336 Fn->setCallingConv(llvm::CallingConv::X86_INTR);
2337 }
2338 }
2339 }
Anton Korobeynikov55bcea12010-01-10 12:58:08 +00002340};
2341
Alex Rosenberg12207fa2015-01-27 14:47:44 +00002342class PS4TargetCodeGenInfo : public X86_64TargetCodeGenInfo {
2343public:
Ahmed Bougachad39a4152015-06-22 21:30:39 +00002344 PS4TargetCodeGenInfo(CodeGen::CodeGenTypes &CGT, X86AVXABILevel AVXLevel)
2345 : X86_64TargetCodeGenInfo(CGT, AVXLevel) {}
Alex Rosenberg12207fa2015-01-27 14:47:44 +00002346
2347 void getDependentLibraryOption(llvm::StringRef Lib,
Alexander Kornienko34eb2072015-04-11 02:00:23 +00002348 llvm::SmallString<24> &Opt) const override {
Alex Rosenberg12207fa2015-01-27 14:47:44 +00002349 Opt = "\01";
Yunzhong Gaod65200c2015-07-20 17:46:56 +00002350 // If the argument contains a space, enclose it in quotes.
2351 if (Lib.find(" ") != StringRef::npos)
2352 Opt += "\"" + Lib.str() + "\"";
2353 else
2354 Opt += Lib;
Alex Rosenberg12207fa2015-01-27 14:47:44 +00002355 }
2356};
2357
Aaron Ballmanef50ee92013-05-24 15:06:56 +00002358static std::string qualifyWindowsLibrary(llvm::StringRef Lib) {
Michael Kupersteinf0e4ccf2015-02-16 11:57:43 +00002359 // If the argument does not end in .lib, automatically add the suffix.
2360 // If the argument contains a space, enclose it in quotes.
2361 // This matches the behavior of MSVC.
2362 bool Quote = (Lib.find(" ") != StringRef::npos);
2363 std::string ArgStr = Quote ? "\"" : "";
2364 ArgStr += Lib;
Martin Storsjo3cd67c92018-10-10 09:01:00 +00002365 if (!Lib.endswith_lower(".lib") && !Lib.endswith_lower(".a"))
Aaron Ballmanef50ee92013-05-24 15:06:56 +00002366 ArgStr += ".lib";
Michael Kupersteinf0e4ccf2015-02-16 11:57:43 +00002367 ArgStr += Quote ? "\"" : "";
Aaron Ballmanef50ee92013-05-24 15:06:56 +00002368 return ArgStr;
2369}
2370
Reid Klecknere43f0fe2013-05-08 13:44:39 +00002371class WinX86_32TargetCodeGenInfo : public X86_32TargetCodeGenInfo {
2372public:
John McCall1fe2a8c2013-06-18 02:46:29 +00002373 WinX86_32TargetCodeGenInfo(CodeGen::CodeGenTypes &CGT,
Michael Kupersteindc745202015-10-19 07:52:25 +00002374 bool DarwinVectorABI, bool RetSmallStructInRegABI, bool Win32StructABI,
2375 unsigned NumRegisterParameters)
2376 : X86_32TargetCodeGenInfo(CGT, DarwinVectorABI, RetSmallStructInRegABI,
Michael Kupersteinb1ec50d2015-10-19 08:09:43 +00002377 Win32StructABI, NumRegisterParameters, false) {}
Reid Klecknere43f0fe2013-05-08 13:44:39 +00002378
Eric Christopher162c91c2015-06-05 22:03:00 +00002379 void setTargetAttributes(const Decl *D, llvm::GlobalValue *GV,
Rafael Espindoladeb10be2018-02-07 19:04:41 +00002380 CodeGen::CodeGenModule &CGM) const override;
Hans Wennborg77dc2362015-01-20 19:45:50 +00002381
Reid Klecknere43f0fe2013-05-08 13:44:39 +00002382 void getDependentLibraryOption(llvm::StringRef Lib,
Craig Topper4f12f102014-03-12 06:41:41 +00002383 llvm::SmallString<24> &Opt) const override {
Reid Klecknere43f0fe2013-05-08 13:44:39 +00002384 Opt = "/DEFAULTLIB:";
Aaron Ballmanef50ee92013-05-24 15:06:56 +00002385 Opt += qualifyWindowsLibrary(Lib);
Reid Klecknere43f0fe2013-05-08 13:44:39 +00002386 }
Aaron Ballman5d041be2013-06-04 02:07:14 +00002387
2388 void getDetectMismatchOption(llvm::StringRef Name,
2389 llvm::StringRef Value,
Craig Topper4f12f102014-03-12 06:41:41 +00002390 llvm::SmallString<32> &Opt) const override {
Eli Friedmanf60b8ce2013-06-07 22:42:22 +00002391 Opt = "/FAILIFMISMATCH:\"" + Name.str() + "=" + Value.str() + "\"";
Aaron Ballman5d041be2013-06-04 02:07:14 +00002392 }
Reid Klecknere43f0fe2013-05-08 13:44:39 +00002393};
2394
Hans Wennborgd43f40d2018-02-23 13:47:36 +00002395static void addStackProbeTargetAttributes(const Decl *D, llvm::GlobalValue *GV,
2396 CodeGen::CodeGenModule &CGM) {
2397 if (llvm::Function *Fn = dyn_cast_or_null<llvm::Function>(GV)) {
Hans Wennborg77dc2362015-01-20 19:45:50 +00002398
Hans Wennborgd43f40d2018-02-23 13:47:36 +00002399 if (CGM.getCodeGenOpts().StackProbeSize != 4096)
Eric Christopher7565e0d2015-05-29 23:09:49 +00002400 Fn->addFnAttr("stack-probe-size",
2401 llvm::utostr(CGM.getCodeGenOpts().StackProbeSize));
Hans Wennborgd43f40d2018-02-23 13:47:36 +00002402 if (CGM.getCodeGenOpts().NoStackArgProbe)
2403 Fn->addFnAttr("no-stack-arg-probe");
Hans Wennborg77dc2362015-01-20 19:45:50 +00002404 }
2405}
2406
Simon Atanasyan1a116db2017-07-20 20:34:18 +00002407void WinX86_32TargetCodeGenInfo::setTargetAttributes(
Rafael Espindoladeb10be2018-02-07 19:04:41 +00002408 const Decl *D, llvm::GlobalValue *GV, CodeGen::CodeGenModule &CGM) const {
2409 X86_32TargetCodeGenInfo::setTargetAttributes(D, GV, CGM);
2410 if (GV->isDeclaration())
Simon Atanasyan1a116db2017-07-20 20:34:18 +00002411 return;
Hans Wennborgd43f40d2018-02-23 13:47:36 +00002412 addStackProbeTargetAttributes(D, GV, CGM);
Hans Wennborg77dc2362015-01-20 19:45:50 +00002413}
2414
Chris Lattner04dc9572010-08-31 16:44:54 +00002415class WinX86_64TargetCodeGenInfo : public TargetCodeGenInfo {
2416public:
Ahmed Bougachad39a4152015-06-22 21:30:39 +00002417 WinX86_64TargetCodeGenInfo(CodeGen::CodeGenTypes &CGT,
2418 X86AVXABILevel AVXLevel)
Alexey Bataev00396512015-07-02 03:40:19 +00002419 : TargetCodeGenInfo(new WinX86_64ABIInfo(CGT)) {}
Chris Lattner04dc9572010-08-31 16:44:54 +00002420
Eric Christopher162c91c2015-06-05 22:03:00 +00002421 void setTargetAttributes(const Decl *D, llvm::GlobalValue *GV,
Rafael Espindoladeb10be2018-02-07 19:04:41 +00002422 CodeGen::CodeGenModule &CGM) const override;
Hans Wennborg77dc2362015-01-20 19:45:50 +00002423
Craig Topper4f12f102014-03-12 06:41:41 +00002424 int getDwarfEHStackPointer(CodeGen::CodeGenModule &CGM) const override {
Chris Lattner04dc9572010-08-31 16:44:54 +00002425 return 7;
2426 }
2427
2428 bool initDwarfEHRegSizeTable(CodeGen::CodeGenFunction &CGF,
Craig Topper4f12f102014-03-12 06:41:41 +00002429 llvm::Value *Address) const override {
Chris Lattnerece04092012-02-07 00:39:47 +00002430 llvm::Value *Eight8 = llvm::ConstantInt::get(CGF.Int8Ty, 8);
Michael J. Spencerf5a1fbc2010-10-19 06:39:39 +00002431
Chris Lattner04dc9572010-08-31 16:44:54 +00002432 // 0-15 are the 16 integer registers.
2433 // 16 is %rip.
Chris Lattnerece04092012-02-07 00:39:47 +00002434 AssignToArrayRange(CGF.Builder, Address, Eight8, 0, 16);
Chris Lattner04dc9572010-08-31 16:44:54 +00002435 return false;
2436 }
Reid Klecknere43f0fe2013-05-08 13:44:39 +00002437
2438 void getDependentLibraryOption(llvm::StringRef Lib,
Craig Topper4f12f102014-03-12 06:41:41 +00002439 llvm::SmallString<24> &Opt) const override {
Reid Klecknere43f0fe2013-05-08 13:44:39 +00002440 Opt = "/DEFAULTLIB:";
Aaron Ballmanef50ee92013-05-24 15:06:56 +00002441 Opt += qualifyWindowsLibrary(Lib);
Reid Klecknere43f0fe2013-05-08 13:44:39 +00002442 }
Aaron Ballman5d041be2013-06-04 02:07:14 +00002443
2444 void getDetectMismatchOption(llvm::StringRef Name,
2445 llvm::StringRef Value,
Craig Topper4f12f102014-03-12 06:41:41 +00002446 llvm::SmallString<32> &Opt) const override {
Eli Friedmanf60b8ce2013-06-07 22:42:22 +00002447 Opt = "/FAILIFMISMATCH:\"" + Name.str() + "=" + Value.str() + "\"";
Aaron Ballman5d041be2013-06-04 02:07:14 +00002448 }
Chris Lattner04dc9572010-08-31 16:44:54 +00002449};
2450
Simon Atanasyan1a116db2017-07-20 20:34:18 +00002451void WinX86_64TargetCodeGenInfo::setTargetAttributes(
Rafael Espindoladeb10be2018-02-07 19:04:41 +00002452 const Decl *D, llvm::GlobalValue *GV, CodeGen::CodeGenModule &CGM) const {
2453 TargetCodeGenInfo::setTargetAttributes(D, GV, CGM);
2454 if (GV->isDeclaration())
Simon Atanasyan1a116db2017-07-20 20:34:18 +00002455 return;
Alexey Bataevd51e9932016-01-15 04:06:31 +00002456 if (const FunctionDecl *FD = dyn_cast_or_null<FunctionDecl>(D)) {
Erich Keanebb9c7042017-08-30 21:17:40 +00002457 if (FD->hasAttr<X86ForceAlignArgPointerAttr>()) {
Erich Keaneb127a3942018-04-19 14:27:05 +00002458 llvm::Function *Fn = cast<llvm::Function>(GV);
2459 Fn->addFnAttr("stackrealign");
Erich Keanebb9c7042017-08-30 21:17:40 +00002460 }
Alexey Bataevd51e9932016-01-15 04:06:31 +00002461 if (FD->hasAttr<AnyX86InterruptAttr>()) {
2462 llvm::Function *Fn = cast<llvm::Function>(GV);
2463 Fn->setCallingConv(llvm::CallingConv::X86_INTR);
2464 }
2465 }
2466
Hans Wennborgd43f40d2018-02-23 13:47:36 +00002467 addStackProbeTargetAttributes(D, GV, CGM);
Hans Wennborg77dc2362015-01-20 19:45:50 +00002468}
Alexander Kornienkoab9db512015-06-22 23:07:51 +00002469}
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002470
Bruno Cardoso Lopes21a41bb2011-07-11 22:41:29 +00002471void X86_64ABIInfo::postMerge(unsigned AggregateSize, Class &Lo,
2472 Class &Hi) const {
2473 // AMD64-ABI 3.2.3p2: Rule 5. Then a post merger cleanup is done:
2474 //
2475 // (a) If one of the classes is Memory, the whole argument is passed in
2476 // memory.
2477 //
2478 // (b) If X87UP is not preceded by X87, the whole argument is passed in
2479 // memory.
2480 //
2481 // (c) If the size of the aggregate exceeds two eightbytes and the first
2482 // eightbyte isn't SSE or any other eightbyte isn't SSEUP, the whole
2483 // argument is passed in memory. NOTE: This is necessary to keep the
2484 // ABI working for processors that don't support the __m256 type.
2485 //
2486 // (d) If SSEUP is not preceded by SSE or SSEUP, it is converted to SSE.
2487 //
2488 // Some of these are enforced by the merging logic. Others can arise
2489 // only with unions; for example:
2490 // union { _Complex double; unsigned; }
2491 //
2492 // Note that clauses (b) and (c) were added in 0.98.
2493 //
2494 if (Hi == Memory)
2495 Lo = Memory;
2496 if (Hi == X87Up && Lo != X87 && honorsRevision0_98())
2497 Lo = Memory;
2498 if (AggregateSize > 128 && (Lo != SSE || Hi != SSEUp))
2499 Lo = Memory;
2500 if (Hi == SSEUp && Lo != SSE)
2501 Hi = SSE;
2502}
2503
Chris Lattnerd776fb12010-06-28 21:43:59 +00002504X86_64ABIInfo::Class X86_64ABIInfo::merge(Class Accum, Class Field) {
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002505 // AMD64-ABI 3.2.3p2: Rule 4. Each field of an object is
2506 // classified recursively so that always two fields are
2507 // considered. The resulting class is calculated according to
2508 // the classes of the fields in the eightbyte:
2509 //
2510 // (a) If both classes are equal, this is the resulting class.
2511 //
2512 // (b) If one of the classes is NO_CLASS, the resulting class is
2513 // the other class.
2514 //
2515 // (c) If one of the classes is MEMORY, the result is the MEMORY
2516 // class.
2517 //
2518 // (d) If one of the classes is INTEGER, the result is the
2519 // INTEGER.
2520 //
2521 // (e) If one of the classes is X87, X87UP, COMPLEX_X87 class,
2522 // MEMORY is used as class.
2523 //
2524 // (f) Otherwise class SSE is used.
2525
2526 // Accum should never be memory (we should have returned) or
2527 // ComplexX87 (because this cannot be passed in a structure).
2528 assert((Accum != Memory && Accum != ComplexX87) &&
2529 "Invalid accumulated classification during merge.");
2530 if (Accum == Field || Field == NoClass)
2531 return Accum;
Chris Lattnerd776fb12010-06-28 21:43:59 +00002532 if (Field == Memory)
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002533 return Memory;
Chris Lattnerd776fb12010-06-28 21:43:59 +00002534 if (Accum == NoClass)
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002535 return Field;
Chris Lattnerd776fb12010-06-28 21:43:59 +00002536 if (Accum == Integer || Field == Integer)
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002537 return Integer;
Chris Lattnerd776fb12010-06-28 21:43:59 +00002538 if (Field == X87 || Field == X87Up || Field == ComplexX87 ||
2539 Accum == X87 || Accum == X87Up)
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002540 return Memory;
Chris Lattnerd776fb12010-06-28 21:43:59 +00002541 return SSE;
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002542}
2543
Chris Lattner5c740f12010-06-30 19:14:05 +00002544void X86_64ABIInfo::classify(QualType Ty, uint64_t OffsetBase,
Eli Friedman96fd2642013-06-12 00:13:45 +00002545 Class &Lo, Class &Hi, bool isNamedArg) const {
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002546 // FIXME: This code can be simplified by introducing a simple value class for
2547 // Class pairs with appropriate constructor methods for the various
2548 // situations.
2549
2550 // FIXME: Some of the split computations are wrong; unaligned vectors
2551 // shouldn't be passed in registers for example, so there is no chance they
2552 // can straddle an eightbyte. Verify & simplify.
2553
2554 Lo = Hi = NoClass;
2555
2556 Class &Current = OffsetBase < 64 ? Lo : Hi;
2557 Current = Memory;
2558
John McCall9dd450b2009-09-21 23:43:11 +00002559 if (const BuiltinType *BT = Ty->getAs<BuiltinType>()) {
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002560 BuiltinType::Kind k = BT->getKind();
2561
2562 if (k == BuiltinType::Void) {
2563 Current = NoClass;
2564 } else if (k == BuiltinType::Int128 || k == BuiltinType::UInt128) {
2565 Lo = Integer;
2566 Hi = Integer;
2567 } else if (k >= BuiltinType::Bool && k <= BuiltinType::LongLong) {
2568 Current = Integer;
Chih-Hung Hsieh241a8902015-08-10 17:33:31 +00002569 } else if (k == BuiltinType::Float || k == BuiltinType::Double) {
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002570 Current = SSE;
2571 } else if (k == BuiltinType::LongDouble) {
Chih-Hung Hsieh241a8902015-08-10 17:33:31 +00002572 const llvm::fltSemantics *LDF = &getTarget().getLongDoubleFormat();
Stephan Bergmann17c7f702016-12-14 11:57:17 +00002573 if (LDF == &llvm::APFloat::IEEEquad()) {
Chih-Hung Hsieh241a8902015-08-10 17:33:31 +00002574 Lo = SSE;
2575 Hi = SSEUp;
Stephan Bergmann17c7f702016-12-14 11:57:17 +00002576 } else if (LDF == &llvm::APFloat::x87DoubleExtended()) {
Chih-Hung Hsieh241a8902015-08-10 17:33:31 +00002577 Lo = X87;
2578 Hi = X87Up;
Stephan Bergmann17c7f702016-12-14 11:57:17 +00002579 } else if (LDF == &llvm::APFloat::IEEEdouble()) {
Chih-Hung Hsieh241a8902015-08-10 17:33:31 +00002580 Current = SSE;
2581 } else
2582 llvm_unreachable("unexpected long double representation!");
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002583 }
2584 // FIXME: _Decimal32 and _Decimal64 are SSE.
2585 // FIXME: _float128 and _Decimal128 are (SSE, SSEUp).
Chris Lattnerd776fb12010-06-28 21:43:59 +00002586 return;
2587 }
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00002588
Chris Lattnerd776fb12010-06-28 21:43:59 +00002589 if (const EnumType *ET = Ty->getAs<EnumType>()) {
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002590 // Classify the underlying integer type.
Eli Friedman96fd2642013-06-12 00:13:45 +00002591 classify(ET->getDecl()->getIntegerType(), OffsetBase, Lo, Hi, isNamedArg);
Chris Lattnerd776fb12010-06-28 21:43:59 +00002592 return;
2593 }
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00002594
Chris Lattnerd776fb12010-06-28 21:43:59 +00002595 if (Ty->hasPointerRepresentation()) {
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002596 Current = Integer;
Chris Lattnerd776fb12010-06-28 21:43:59 +00002597 return;
2598 }
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00002599
Chris Lattnerd776fb12010-06-28 21:43:59 +00002600 if (Ty->isMemberPointerType()) {
Jan Wen Voung01c21e82014-10-02 16:56:57 +00002601 if (Ty->isMemberFunctionPointerType()) {
2602 if (Has64BitPointers) {
2603 // If Has64BitPointers, this is an {i64, i64}, so classify both
2604 // Lo and Hi now.
2605 Lo = Hi = Integer;
2606 } else {
2607 // Otherwise, with 32-bit pointers, this is an {i32, i32}. If that
2608 // straddles an eightbyte boundary, Hi should be classified as well.
2609 uint64_t EB_FuncPtr = (OffsetBase) / 64;
2610 uint64_t EB_ThisAdj = (OffsetBase + 64 - 1) / 64;
2611 if (EB_FuncPtr != EB_ThisAdj) {
2612 Lo = Hi = Integer;
2613 } else {
2614 Current = Integer;
2615 }
2616 }
2617 } else {
Daniel Dunbar36d4d152010-05-15 00:00:37 +00002618 Current = Integer;
Jan Wen Voung01c21e82014-10-02 16:56:57 +00002619 }
Chris Lattnerd776fb12010-06-28 21:43:59 +00002620 return;
2621 }
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00002622
Chris Lattnerd776fb12010-06-28 21:43:59 +00002623 if (const VectorType *VT = Ty->getAs<VectorType>()) {
Chris Lattner2b037972010-07-29 02:01:43 +00002624 uint64_t Size = getContext().getTypeSize(VT);
David Majnemerf8d14db2015-07-17 05:49:13 +00002625 if (Size == 1 || Size == 8 || Size == 16 || Size == 32) {
2626 // gcc passes the following as integer:
2627 // 4 bytes - <4 x char>, <2 x short>, <1 x int>, <1 x float>
2628 // 2 bytes - <2 x char>, <1 x short>
2629 // 1 byte - <1 x char>
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002630 Current = Integer;
2631
2632 // If this type crosses an eightbyte boundary, it should be
2633 // split.
David Majnemerf8d14db2015-07-17 05:49:13 +00002634 uint64_t EB_Lo = (OffsetBase) / 64;
2635 uint64_t EB_Hi = (OffsetBase + Size - 1) / 64;
2636 if (EB_Lo != EB_Hi)
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002637 Hi = Lo;
2638 } else if (Size == 64) {
David Majnemere2ae2282016-03-04 05:26:16 +00002639 QualType ElementType = VT->getElementType();
2640
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002641 // gcc passes <1 x double> in memory. :(
David Majnemere2ae2282016-03-04 05:26:16 +00002642 if (ElementType->isSpecificBuiltinType(BuiltinType::Double))
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002643 return;
2644
David Majnemere2ae2282016-03-04 05:26:16 +00002645 // gcc passes <1 x long long> as SSE but clang used to unconditionally
2646 // pass them as integer. For platforms where clang is the de facto
2647 // platform compiler, we must continue to use integer.
2648 if (!classifyIntegerMMXAsSSE() &&
2649 (ElementType->isSpecificBuiltinType(BuiltinType::LongLong) ||
2650 ElementType->isSpecificBuiltinType(BuiltinType::ULongLong) ||
2651 ElementType->isSpecificBuiltinType(BuiltinType::Long) ||
2652 ElementType->isSpecificBuiltinType(BuiltinType::ULong)))
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002653 Current = Integer;
2654 else
2655 Current = SSE;
2656
2657 // If this type crosses an eightbyte boundary, it should be
2658 // split.
2659 if (OffsetBase && OffsetBase != 64)
2660 Hi = Lo;
Ahmed Bougachad39a4152015-06-22 21:30:39 +00002661 } else if (Size == 128 ||
2662 (isNamedArg && Size <= getNativeVectorSizeForAVXABI(AVXLevel))) {
Bruno Cardoso Lopes21a41bb2011-07-11 22:41:29 +00002663 // Arguments of 256-bits are split into four eightbyte chunks. The
2664 // least significant one belongs to class SSE and all the others to class
2665 // SSEUP. The original Lo and Hi design considers that types can't be
2666 // greater than 128-bits, so a 64-bit split in Hi and Lo makes sense.
2667 // This design isn't correct for 256-bits, but since there're no cases
2668 // where the upper parts would need to be inspected, avoid adding
2669 // complexity and just consider Hi to match the 64-256 part.
Eli Friedman96fd2642013-06-12 00:13:45 +00002670 //
2671 // Note that per 3.5.7 of AMD64-ABI, 256-bit args are only passed in
2672 // registers if they are "named", i.e. not part of the "..." of a
2673 // variadic function.
Ahmed Bougacha0b938282015-06-22 21:31:43 +00002674 //
2675 // Similarly, per 3.2.3. of the AVX512 draft, 512-bits ("named") args are
2676 // split into eight eightbyte chunks, one SSE and seven SSEUP.
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002677 Lo = SSE;
2678 Hi = SSEUp;
2679 }
Chris Lattnerd776fb12010-06-28 21:43:59 +00002680 return;
2681 }
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00002682
Chris Lattnerd776fb12010-06-28 21:43:59 +00002683 if (const ComplexType *CT = Ty->getAs<ComplexType>()) {
Chris Lattner2b037972010-07-29 02:01:43 +00002684 QualType ET = getContext().getCanonicalType(CT->getElementType());
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002685
Chris Lattner2b037972010-07-29 02:01:43 +00002686 uint64_t Size = getContext().getTypeSize(Ty);
Douglas Gregorb90df602010-06-16 00:17:44 +00002687 if (ET->isIntegralOrEnumerationType()) {
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002688 if (Size <= 64)
2689 Current = Integer;
2690 else if (Size <= 128)
2691 Lo = Hi = Integer;
Chih-Hung Hsieh241a8902015-08-10 17:33:31 +00002692 } else if (ET == getContext().FloatTy) {
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002693 Current = SSE;
Chih-Hung Hsieh241a8902015-08-10 17:33:31 +00002694 } else if (ET == getContext().DoubleTy) {
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002695 Lo = Hi = SSE;
Chih-Hung Hsieh241a8902015-08-10 17:33:31 +00002696 } else if (ET == getContext().LongDoubleTy) {
2697 const llvm::fltSemantics *LDF = &getTarget().getLongDoubleFormat();
Stephan Bergmann17c7f702016-12-14 11:57:17 +00002698 if (LDF == &llvm::APFloat::IEEEquad())
Chih-Hung Hsieh241a8902015-08-10 17:33:31 +00002699 Current = Memory;
Stephan Bergmann17c7f702016-12-14 11:57:17 +00002700 else if (LDF == &llvm::APFloat::x87DoubleExtended())
Chih-Hung Hsieh241a8902015-08-10 17:33:31 +00002701 Current = ComplexX87;
Stephan Bergmann17c7f702016-12-14 11:57:17 +00002702 else if (LDF == &llvm::APFloat::IEEEdouble())
Chih-Hung Hsieh241a8902015-08-10 17:33:31 +00002703 Lo = Hi = SSE;
2704 else
2705 llvm_unreachable("unexpected long double representation!");
2706 }
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002707
2708 // If this complex type crosses an eightbyte boundary then it
2709 // should be split.
2710 uint64_t EB_Real = (OffsetBase) / 64;
Chris Lattner2b037972010-07-29 02:01:43 +00002711 uint64_t EB_Imag = (OffsetBase + getContext().getTypeSize(ET)) / 64;
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002712 if (Hi == NoClass && EB_Real != EB_Imag)
2713 Hi = Lo;
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00002714
Chris Lattnerd776fb12010-06-28 21:43:59 +00002715 return;
2716 }
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00002717
Chris Lattner2b037972010-07-29 02:01:43 +00002718 if (const ConstantArrayType *AT = getContext().getAsConstantArrayType(Ty)) {
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002719 // Arrays are treated like structures.
2720
Chris Lattner2b037972010-07-29 02:01:43 +00002721 uint64_t Size = getContext().getTypeSize(Ty);
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002722
2723 // AMD64-ABI 3.2.3p2: Rule 1. If the size of an object is larger
David Majnemerb229cb02016-08-15 06:39:18 +00002724 // than eight eightbytes, ..., it has class MEMORY.
2725 if (Size > 512)
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002726 return;
2727
2728 // AMD64-ABI 3.2.3p2: Rule 1. If ..., or it contains unaligned
2729 // fields, it has class MEMORY.
2730 //
2731 // Only need to check alignment of array base.
Chris Lattner2b037972010-07-29 02:01:43 +00002732 if (OffsetBase % getContext().getTypeAlign(AT->getElementType()))
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002733 return;
2734
2735 // Otherwise implement simplified merge. We could be smarter about
2736 // this, but it isn't worth it and would be harder to verify.
2737 Current = NoClass;
Chris Lattner2b037972010-07-29 02:01:43 +00002738 uint64_t EltSize = getContext().getTypeSize(AT->getElementType());
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002739 uint64_t ArraySize = AT->getSize().getZExtValue();
Bruno Cardoso Lopes75541d02011-07-12 01:27:38 +00002740
2741 // The only case a 256-bit wide vector could be used is when the array
2742 // contains a single 256-bit element. Since Lo and Hi logic isn't extended
2743 // to work for sizes wider than 128, early check and fallback to memory.
David Majnemerb229cb02016-08-15 06:39:18 +00002744 //
2745 if (Size > 128 &&
2746 (Size != EltSize || Size > getNativeVectorSizeForAVXABI(AVXLevel)))
Bruno Cardoso Lopes75541d02011-07-12 01:27:38 +00002747 return;
2748
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002749 for (uint64_t i=0, Offset=OffsetBase; i<ArraySize; ++i, Offset += EltSize) {
2750 Class FieldLo, FieldHi;
Eli Friedman96fd2642013-06-12 00:13:45 +00002751 classify(AT->getElementType(), Offset, FieldLo, FieldHi, isNamedArg);
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002752 Lo = merge(Lo, FieldLo);
2753 Hi = merge(Hi, FieldHi);
2754 if (Lo == Memory || Hi == Memory)
2755 break;
2756 }
2757
Bruno Cardoso Lopes21a41bb2011-07-11 22:41:29 +00002758 postMerge(Size, Lo, Hi);
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002759 assert((Hi != SSEUp || Lo == SSE) && "Invalid SSEUp array classification.");
Chris Lattnerd776fb12010-06-28 21:43:59 +00002760 return;
2761 }
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00002762
Chris Lattnerd776fb12010-06-28 21:43:59 +00002763 if (const RecordType *RT = Ty->getAs<RecordType>()) {
Chris Lattner2b037972010-07-29 02:01:43 +00002764 uint64_t Size = getContext().getTypeSize(Ty);
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002765
2766 // AMD64-ABI 3.2.3p2: Rule 1. If the size of an object is larger
David Majnemerb229cb02016-08-15 06:39:18 +00002767 // than eight eightbytes, ..., it has class MEMORY.
2768 if (Size > 512)
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002769 return;
2770
Anders Carlsson20759ad2009-09-16 15:53:40 +00002771 // AMD64-ABI 3.2.3p2: Rule 2. If a C++ object has either a non-trivial
2772 // copy constructor or a non-trivial destructor, it is passed by invisible
2773 // reference.
Mark Lacey3825e832013-10-06 01:33:34 +00002774 if (getRecordArgABI(RT, getCXXABI()))
Anders Carlsson20759ad2009-09-16 15:53:40 +00002775 return;
Daniel Dunbare1cd0152009-11-22 23:01:23 +00002776
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002777 const RecordDecl *RD = RT->getDecl();
2778
2779 // Assume variable sized types are passed in memory.
2780 if (RD->hasFlexibleArrayMember())
2781 return;
2782
Chris Lattner2b037972010-07-29 02:01:43 +00002783 const ASTRecordLayout &Layout = getContext().getASTRecordLayout(RD);
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002784
2785 // Reset Lo class, this will be recomputed.
2786 Current = NoClass;
Daniel Dunbare1cd0152009-11-22 23:01:23 +00002787
2788 // If this is a C++ record, classify the bases first.
2789 if (const CXXRecordDecl *CXXRD = dyn_cast<CXXRecordDecl>(RD)) {
Aaron Ballman574705e2014-03-13 15:41:46 +00002790 for (const auto &I : CXXRD->bases()) {
2791 assert(!I.isVirtual() && !I.getType()->isDependentType() &&
Daniel Dunbare1cd0152009-11-22 23:01:23 +00002792 "Unexpected base class!");
2793 const CXXRecordDecl *Base =
Aaron Ballman574705e2014-03-13 15:41:46 +00002794 cast<CXXRecordDecl>(I.getType()->getAs<RecordType>()->getDecl());
Daniel Dunbare1cd0152009-11-22 23:01:23 +00002795
2796 // Classify this field.
2797 //
2798 // AMD64-ABI 3.2.3p2: Rule 3. If the size of the aggregate exceeds a
2799 // single eightbyte, each is classified separately. Each eightbyte gets
2800 // initialized to class NO_CLASS.
2801 Class FieldLo, FieldHi;
Benjamin Kramer2ef30312012-07-04 18:45:14 +00002802 uint64_t Offset =
2803 OffsetBase + getContext().toBits(Layout.getBaseClassOffset(Base));
Aaron Ballman574705e2014-03-13 15:41:46 +00002804 classify(I.getType(), Offset, FieldLo, FieldHi, isNamedArg);
Daniel Dunbare1cd0152009-11-22 23:01:23 +00002805 Lo = merge(Lo, FieldLo);
2806 Hi = merge(Hi, FieldHi);
David Majnemercefbc7c2015-07-08 05:14:29 +00002807 if (Lo == Memory || Hi == Memory) {
2808 postMerge(Size, Lo, Hi);
2809 return;
2810 }
Daniel Dunbare1cd0152009-11-22 23:01:23 +00002811 }
2812 }
2813
2814 // Classify the fields one at a time, merging the results.
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002815 unsigned idx = 0;
Bruno Cardoso Lopes0aadf832011-07-12 22:30:58 +00002816 for (RecordDecl::field_iterator i = RD->field_begin(), e = RD->field_end();
Argyrios Kyrtzidiscfbfe782009-06-30 02:36:12 +00002817 i != e; ++i, ++idx) {
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002818 uint64_t Offset = OffsetBase + Layout.getFieldOffset(idx);
2819 bool BitField = i->isBitField();
2820
David Majnemerb439dfe2016-08-15 07:20:40 +00002821 // Ignore padding bit-fields.
2822 if (BitField && i->isUnnamedBitfield())
2823 continue;
2824
Bruno Cardoso Lopes98154a72011-07-13 21:58:55 +00002825 // AMD64-ABI 3.2.3p2: Rule 1. If the size of an object is larger than
2826 // four eightbytes, or it contains unaligned fields, it has class MEMORY.
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002827 //
Bruno Cardoso Lopes98154a72011-07-13 21:58:55 +00002828 // The only case a 256-bit wide vector could be used is when the struct
2829 // contains a single 256-bit element. Since Lo and Hi logic isn't extended
2830 // to work for sizes wider than 128, early check and fallback to memory.
2831 //
David Majnemerb229cb02016-08-15 06:39:18 +00002832 if (Size > 128 && (Size != getContext().getTypeSize(i->getType()) ||
2833 Size > getNativeVectorSizeForAVXABI(AVXLevel))) {
Bruno Cardoso Lopes98154a72011-07-13 21:58:55 +00002834 Lo = Memory;
David Majnemer699dd042015-07-08 05:07:05 +00002835 postMerge(Size, Lo, Hi);
Bruno Cardoso Lopes98154a72011-07-13 21:58:55 +00002836 return;
2837 }
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002838 // Note, skip this test for bit-fields, see below.
Chris Lattner2b037972010-07-29 02:01:43 +00002839 if (!BitField && Offset % getContext().getTypeAlign(i->getType())) {
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002840 Lo = Memory;
David Majnemer699dd042015-07-08 05:07:05 +00002841 postMerge(Size, Lo, Hi);
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002842 return;
2843 }
2844
2845 // Classify this field.
2846 //
2847 // AMD64-ABI 3.2.3p2: Rule 3. If the size of the aggregate
2848 // exceeds a single eightbyte, each is classified
2849 // separately. Each eightbyte gets initialized to class
2850 // NO_CLASS.
2851 Class FieldLo, FieldHi;
2852
2853 // Bit-fields require special handling, they do not force the
2854 // structure to be passed in memory even if unaligned, and
2855 // therefore they can straddle an eightbyte.
2856 if (BitField) {
David Majnemerb439dfe2016-08-15 07:20:40 +00002857 assert(!i->isUnnamedBitfield());
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002858 uint64_t Offset = OffsetBase + Layout.getFieldOffset(idx);
Richard Smithcaf33902011-10-10 18:28:20 +00002859 uint64_t Size = i->getBitWidthValue(getContext());
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002860
2861 uint64_t EB_Lo = Offset / 64;
2862 uint64_t EB_Hi = (Offset + Size - 1) / 64;
Sylvestre Ledru0c4813e2013-10-06 09:54:18 +00002863
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002864 if (EB_Lo) {
2865 assert(EB_Hi == EB_Lo && "Invalid classification, type > 16 bytes.");
2866 FieldLo = NoClass;
2867 FieldHi = Integer;
2868 } else {
2869 FieldLo = Integer;
2870 FieldHi = EB_Hi ? Integer : NoClass;
2871 }
2872 } else
Eli Friedman96fd2642013-06-12 00:13:45 +00002873 classify(i->getType(), Offset, FieldLo, FieldHi, isNamedArg);
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002874 Lo = merge(Lo, FieldLo);
2875 Hi = merge(Hi, FieldHi);
2876 if (Lo == Memory || Hi == Memory)
2877 break;
2878 }
2879
Bruno Cardoso Lopes21a41bb2011-07-11 22:41:29 +00002880 postMerge(Size, Lo, Hi);
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002881 }
2882}
2883
Chris Lattner22a931e2010-06-29 06:01:59 +00002884ABIArgInfo X86_64ABIInfo::getIndirectReturnResult(QualType Ty) const {
Daniel Dunbar53fac692010-04-21 19:49:55 +00002885 // If this is a scalar LLVM value then assume LLVM will pass it in the right
2886 // place naturally.
John McCalla1dee5302010-08-22 10:59:02 +00002887 if (!isAggregateTypeForABI(Ty)) {
Daniel Dunbar53fac692010-04-21 19:49:55 +00002888 // Treat an enum type as its underlying type.
2889 if (const EnumType *EnumTy = Ty->getAs<EnumType>())
2890 Ty = EnumTy->getDecl()->getIntegerType();
2891
Alex Bradburye41a5e22018-01-12 20:08:16 +00002892 return (Ty->isPromotableIntegerType() ? ABIArgInfo::getExtend(Ty)
2893 : ABIArgInfo::getDirect());
Daniel Dunbar53fac692010-04-21 19:49:55 +00002894 }
2895
John McCall7f416cc2015-09-08 08:05:57 +00002896 return getNaturalAlignIndirect(Ty);
Daniel Dunbar53fac692010-04-21 19:49:55 +00002897}
2898
Eli Friedmanbfd5add2011-12-02 00:11:43 +00002899bool X86_64ABIInfo::IsIllegalVectorType(QualType Ty) const {
2900 if (const VectorType *VecTy = Ty->getAs<VectorType>()) {
2901 uint64_t Size = getContext().getTypeSize(VecTy);
Ahmed Bougachad39a4152015-06-22 21:30:39 +00002902 unsigned LargestVector = getNativeVectorSizeForAVXABI(AVXLevel);
Eli Friedmanbfd5add2011-12-02 00:11:43 +00002903 if (Size <= 64 || Size > LargestVector)
2904 return true;
2905 }
2906
2907 return false;
2908}
2909
Daniel Dunbarf07b5ec2012-03-10 01:03:58 +00002910ABIArgInfo X86_64ABIInfo::getIndirectResult(QualType Ty,
2911 unsigned freeIntRegs) const {
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002912 // If this is a scalar LLVM value then assume LLVM will pass it in the right
2913 // place naturally.
Daniel Dunbarf07b5ec2012-03-10 01:03:58 +00002914 //
2915 // This assumption is optimistic, as there could be free registers available
2916 // when we need to pass this argument in memory, and LLVM could try to pass
2917 // the argument in the free register. This does not seem to happen currently,
2918 // but this code would be much safer if we could mark the argument with
2919 // 'onstack'. See PR12193.
Eli Friedmanbfd5add2011-12-02 00:11:43 +00002920 if (!isAggregateTypeForABI(Ty) && !IsIllegalVectorType(Ty)) {
Douglas Gregora71cc152010-02-02 20:10:50 +00002921 // Treat an enum type as its underlying type.
2922 if (const EnumType *EnumTy = Ty->getAs<EnumType>())
2923 Ty = EnumTy->getDecl()->getIntegerType();
2924
Alex Bradburye41a5e22018-01-12 20:08:16 +00002925 return (Ty->isPromotableIntegerType() ? ABIArgInfo::getExtend(Ty)
2926 : ABIArgInfo::getDirect());
Douglas Gregora71cc152010-02-02 20:10:50 +00002927 }
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002928
Mark Lacey3825e832013-10-06 01:33:34 +00002929 if (CGCXXABI::RecordArgABI RAA = getRecordArgABI(Ty, getCXXABI()))
John McCall7f416cc2015-09-08 08:05:57 +00002930 return getNaturalAlignIndirect(Ty, RAA == CGCXXABI::RAA_DirectInMemory);
Anders Carlsson20759ad2009-09-16 15:53:40 +00002931
Chris Lattner44c2b902011-05-22 23:21:23 +00002932 // Compute the byval alignment. We specify the alignment of the byval in all
2933 // cases so that the mid-level optimizer knows the alignment of the byval.
2934 unsigned Align = std::max(getContext().getTypeAlign(Ty) / 8, 8U);
Daniel Dunbarf07b5ec2012-03-10 01:03:58 +00002935
2936 // Attempt to avoid passing indirect results using byval when possible. This
2937 // is important for good codegen.
2938 //
2939 // We do this by coercing the value into a scalar type which the backend can
2940 // handle naturally (i.e., without using byval).
2941 //
2942 // For simplicity, we currently only do this when we have exhausted all of the
2943 // free integer registers. Doing this when there are free integer registers
2944 // would require more care, as we would have to ensure that the coerced value
2945 // did not claim the unused register. That would require either reording the
2946 // arguments to the function (so that any subsequent inreg values came first),
2947 // or only doing this optimization when there were no following arguments that
2948 // might be inreg.
2949 //
2950 // We currently expect it to be rare (particularly in well written code) for
2951 // arguments to be passed on the stack when there are still free integer
2952 // registers available (this would typically imply large structs being passed
2953 // by value), so this seems like a fair tradeoff for now.
2954 //
2955 // We can revisit this if the backend grows support for 'onstack' parameter
2956 // attributes. See PR12193.
2957 if (freeIntRegs == 0) {
2958 uint64_t Size = getContext().getTypeSize(Ty);
2959
2960 // If this type fits in an eightbyte, coerce it into the matching integral
2961 // type, which will end up on the stack (with alignment 8).
2962 if (Align == 8 && Size <= 64)
2963 return ABIArgInfo::getDirect(llvm::IntegerType::get(getVMContext(),
2964 Size));
2965 }
2966
John McCall7f416cc2015-09-08 08:05:57 +00002967 return ABIArgInfo::getIndirect(CharUnits::fromQuantity(Align));
Anton Korobeynikov244360d2009-06-05 22:08:42 +00002968}
2969
Sanjay Pateleb2af4e2015-02-16 17:26:51 +00002970/// The ABI specifies that a value should be passed in a full vector XMM/YMM
2971/// register. Pick an LLVM IR type that will be passed as a vector register.
Bruno Cardoso Lopes21a41bb2011-07-11 22:41:29 +00002972llvm::Type *X86_64ABIInfo::GetByteVectorType(QualType Ty) const {
Sanjay Pateleb2af4e2015-02-16 17:26:51 +00002973 // Wrapper structs/arrays that only contain vectors are passed just like
2974 // vectors; strip them off if present.
2975 if (const Type *InnerTy = isSingleElementStruct(Ty, getContext()))
2976 Ty = QualType(InnerTy, 0);
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00002977
Sanjay Pateleb2af4e2015-02-16 17:26:51 +00002978 llvm::Type *IRType = CGT.ConvertType(Ty);
Chih-Hung Hsieh241a8902015-08-10 17:33:31 +00002979 if (isa<llvm::VectorType>(IRType) ||
2980 IRType->getTypeID() == llvm::Type::FP128TyID)
Andrea Di Biagioe7347c62015-06-02 19:34:40 +00002981 return IRType;
2982
2983 // We couldn't find the preferred IR vector type for 'Ty'.
2984 uint64_t Size = getContext().getTypeSize(Ty);
David Majnemerb229cb02016-08-15 06:39:18 +00002985 assert((Size == 128 || Size == 256 || Size == 512) && "Invalid type found!");
Andrea Di Biagioe7347c62015-06-02 19:34:40 +00002986
2987 // Return a LLVM IR vector type based on the size of 'Ty'.
2988 return llvm::VectorType::get(llvm::Type::getDoubleTy(getVMContext()),
2989 Size / 64);
Chris Lattner4200fe42010-07-29 04:56:46 +00002990}
2991
Chris Lattnerc8b7b532010-07-29 07:30:00 +00002992/// BitsContainNoUserData - Return true if the specified [start,end) bit range
2993/// is known to either be off the end of the specified type or being in
2994/// alignment padding. The user type specified is known to be at most 128 bits
2995/// in size, and have passed through X86_64ABIInfo::classify with a successful
2996/// classification that put one of the two halves in the INTEGER class.
2997///
2998/// It is conservatively correct to return false.
2999static bool BitsContainNoUserData(QualType Ty, unsigned StartBit,
3000 unsigned EndBit, ASTContext &Context) {
3001 // If the bytes being queried are off the end of the type, there is no user
3002 // data hiding here. This handles analysis of builtins, vectors and other
3003 // types that don't contain interesting padding.
3004 unsigned TySize = (unsigned)Context.getTypeSize(Ty);
3005 if (TySize <= StartBit)
3006 return true;
3007
Chris Lattner98076a22010-07-29 07:43:55 +00003008 if (const ConstantArrayType *AT = Context.getAsConstantArrayType(Ty)) {
3009 unsigned EltSize = (unsigned)Context.getTypeSize(AT->getElementType());
3010 unsigned NumElts = (unsigned)AT->getSize().getZExtValue();
3011
3012 // Check each element to see if the element overlaps with the queried range.
3013 for (unsigned i = 0; i != NumElts; ++i) {
3014 // If the element is after the span we care about, then we're done..
3015 unsigned EltOffset = i*EltSize;
3016 if (EltOffset >= EndBit) break;
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00003017
Chris Lattner98076a22010-07-29 07:43:55 +00003018 unsigned EltStart = EltOffset < StartBit ? StartBit-EltOffset :0;
3019 if (!BitsContainNoUserData(AT->getElementType(), EltStart,
3020 EndBit-EltOffset, Context))
3021 return false;
3022 }
3023 // If it overlaps no elements, then it is safe to process as padding.
3024 return true;
3025 }
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00003026
Chris Lattnerc8b7b532010-07-29 07:30:00 +00003027 if (const RecordType *RT = Ty->getAs<RecordType>()) {
3028 const RecordDecl *RD = RT->getDecl();
3029 const ASTRecordLayout &Layout = Context.getASTRecordLayout(RD);
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00003030
Chris Lattnerc8b7b532010-07-29 07:30:00 +00003031 // If this is a C++ record, check the bases first.
3032 if (const CXXRecordDecl *CXXRD = dyn_cast<CXXRecordDecl>(RD)) {
Aaron Ballman574705e2014-03-13 15:41:46 +00003033 for (const auto &I : CXXRD->bases()) {
3034 assert(!I.isVirtual() && !I.getType()->isDependentType() &&
Chris Lattnerc8b7b532010-07-29 07:30:00 +00003035 "Unexpected base class!");
3036 const CXXRecordDecl *Base =
Aaron Ballman574705e2014-03-13 15:41:46 +00003037 cast<CXXRecordDecl>(I.getType()->getAs<RecordType>()->getDecl());
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00003038
Chris Lattnerc8b7b532010-07-29 07:30:00 +00003039 // If the base is after the span we care about, ignore it.
Benjamin Kramer2ef30312012-07-04 18:45:14 +00003040 unsigned BaseOffset = Context.toBits(Layout.getBaseClassOffset(Base));
Chris Lattnerc8b7b532010-07-29 07:30:00 +00003041 if (BaseOffset >= EndBit) continue;
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00003042
Chris Lattnerc8b7b532010-07-29 07:30:00 +00003043 unsigned BaseStart = BaseOffset < StartBit ? StartBit-BaseOffset :0;
Aaron Ballman574705e2014-03-13 15:41:46 +00003044 if (!BitsContainNoUserData(I.getType(), BaseStart,
Chris Lattnerc8b7b532010-07-29 07:30:00 +00003045 EndBit-BaseOffset, Context))
3046 return false;
3047 }
3048 }
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00003049
Chris Lattnerc8b7b532010-07-29 07:30:00 +00003050 // Verify that no field has data that overlaps the region of interest. Yes
3051 // this could be sped up a lot by being smarter about queried fields,
3052 // however we're only looking at structs up to 16 bytes, so we don't care
3053 // much.
3054 unsigned idx = 0;
3055 for (RecordDecl::field_iterator i = RD->field_begin(), e = RD->field_end();
3056 i != e; ++i, ++idx) {
3057 unsigned FieldOffset = (unsigned)Layout.getFieldOffset(idx);
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00003058
Chris Lattnerc8b7b532010-07-29 07:30:00 +00003059 // If we found a field after the region we care about, then we're done.
3060 if (FieldOffset >= EndBit) break;
3061
3062 unsigned FieldStart = FieldOffset < StartBit ? StartBit-FieldOffset :0;
3063 if (!BitsContainNoUserData(i->getType(), FieldStart, EndBit-FieldOffset,
3064 Context))
3065 return false;
3066 }
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00003067
Chris Lattnerc8b7b532010-07-29 07:30:00 +00003068 // If nothing in this record overlapped the area of interest, then we're
3069 // clean.
3070 return true;
3071 }
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00003072
Chris Lattnerc8b7b532010-07-29 07:30:00 +00003073 return false;
3074}
3075
Chris Lattnere556a712010-07-29 18:39:32 +00003076/// ContainsFloatAtOffset - Return true if the specified LLVM IR type has a
3077/// float member at the specified offset. For example, {int,{float}} has a
3078/// float at offset 4. It is conservatively correct for this routine to return
3079/// false.
Chris Lattner2192fe52011-07-18 04:24:23 +00003080static bool ContainsFloatAtOffset(llvm::Type *IRType, unsigned IROffset,
Micah Villmowdd31ca12012-10-08 16:25:52 +00003081 const llvm::DataLayout &TD) {
Chris Lattnere556a712010-07-29 18:39:32 +00003082 // Base case if we find a float.
3083 if (IROffset == 0 && IRType->isFloatTy())
3084 return true;
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00003085
Chris Lattnere556a712010-07-29 18:39:32 +00003086 // If this is a struct, recurse into the field at the specified offset.
Chris Lattner2192fe52011-07-18 04:24:23 +00003087 if (llvm::StructType *STy = dyn_cast<llvm::StructType>(IRType)) {
Chris Lattnere556a712010-07-29 18:39:32 +00003088 const llvm::StructLayout *SL = TD.getStructLayout(STy);
3089 unsigned Elt = SL->getElementContainingOffset(IROffset);
3090 IROffset -= SL->getElementOffset(Elt);
3091 return ContainsFloatAtOffset(STy->getElementType(Elt), IROffset, TD);
3092 }
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00003093
Chris Lattnere556a712010-07-29 18:39:32 +00003094 // If this is an array, recurse into the field at the specified offset.
Chris Lattner2192fe52011-07-18 04:24:23 +00003095 if (llvm::ArrayType *ATy = dyn_cast<llvm::ArrayType>(IRType)) {
3096 llvm::Type *EltTy = ATy->getElementType();
Chris Lattnere556a712010-07-29 18:39:32 +00003097 unsigned EltSize = TD.getTypeAllocSize(EltTy);
3098 IROffset -= IROffset/EltSize*EltSize;
3099 return ContainsFloatAtOffset(EltTy, IROffset, TD);
3100 }
3101
3102 return false;
3103}
3104
Chris Lattner7f4b81a2010-07-29 18:13:09 +00003105
3106/// GetSSETypeAtOffset - Return a type that will be passed by the backend in the
3107/// low 8 bytes of an XMM register, corresponding to the SSE class.
Chris Lattnera5f58b02011-07-09 17:41:47 +00003108llvm::Type *X86_64ABIInfo::
3109GetSSETypeAtOffset(llvm::Type *IRType, unsigned IROffset,
Chris Lattner7f4b81a2010-07-29 18:13:09 +00003110 QualType SourceTy, unsigned SourceOffset) const {
Chris Lattner50a357e2010-07-29 18:19:50 +00003111 // The only three choices we have are either double, <2 x float>, or float. We
Chris Lattner7f4b81a2010-07-29 18:13:09 +00003112 // pass as float if the last 4 bytes is just padding. This happens for
3113 // structs that contain 3 floats.
3114 if (BitsContainNoUserData(SourceTy, SourceOffset*8+32,
3115 SourceOffset*8+64, getContext()))
3116 return llvm::Type::getFloatTy(getVMContext());
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00003117
Chris Lattnere556a712010-07-29 18:39:32 +00003118 // We want to pass as <2 x float> if the LLVM IR type contains a float at
3119 // offset+0 and offset+4. Walk the LLVM IR type to find out if this is the
3120 // case.
Micah Villmowdd31ca12012-10-08 16:25:52 +00003121 if (ContainsFloatAtOffset(IRType, IROffset, getDataLayout()) &&
3122 ContainsFloatAtOffset(IRType, IROffset+4, getDataLayout()))
Chris Lattner9f8b4512010-08-25 23:39:14 +00003123 return llvm::VectorType::get(llvm::Type::getFloatTy(getVMContext()), 2);
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00003124
Chris Lattner7f4b81a2010-07-29 18:13:09 +00003125 return llvm::Type::getDoubleTy(getVMContext());
3126}
3127
3128
Chris Lattner1c56d9a2010-07-29 17:40:35 +00003129/// GetINTEGERTypeAtOffset - The ABI specifies that a value should be passed in
3130/// an 8-byte GPR. This means that we either have a scalar or we are talking
3131/// about the high or low part of an up-to-16-byte struct. This routine picks
3132/// the best LLVM IR type to represent this, which may be i64 or may be anything
Chris Lattnerb22f1c82010-07-28 22:44:07 +00003133/// else that the backend will pass in a GPR that works better (e.g. i8, %foo*,
3134/// etc).
3135///
3136/// PrefType is an LLVM IR type that corresponds to (part of) the IR type for
3137/// the source type. IROffset is an offset in bytes into the LLVM IR type that
3138/// the 8-byte value references. PrefType may be null.
3139///
Alp Toker9907f082014-07-09 14:06:35 +00003140/// SourceTy is the source-level type for the entire argument. SourceOffset is
Chris Lattnerb22f1c82010-07-28 22:44:07 +00003141/// an offset into this that we're processing (which is always either 0 or 8).
3142///
Chris Lattnera5f58b02011-07-09 17:41:47 +00003143llvm::Type *X86_64ABIInfo::
3144GetINTEGERTypeAtOffset(llvm::Type *IRType, unsigned IROffset,
Chris Lattner1c56d9a2010-07-29 17:40:35 +00003145 QualType SourceTy, unsigned SourceOffset) const {
Chris Lattnerc8b7b532010-07-29 07:30:00 +00003146 // If we're dealing with an un-offset LLVM IR type, then it means that we're
3147 // returning an 8-byte unit starting with it. See if we can safely use it.
3148 if (IROffset == 0) {
3149 // Pointers and int64's always fill the 8-byte unit.
Derek Schuffc7dd7222012-10-11 15:52:22 +00003150 if ((isa<llvm::PointerType>(IRType) && Has64BitPointers) ||
3151 IRType->isIntegerTy(64))
Chris Lattnerc8b7b532010-07-29 07:30:00 +00003152 return IRType;
Chris Lattnerb22f1c82010-07-28 22:44:07 +00003153
Chris Lattnerc8b7b532010-07-29 07:30:00 +00003154 // If we have a 1/2/4-byte integer, we can use it only if the rest of the
3155 // goodness in the source type is just tail padding. This is allowed to
3156 // kick in for struct {double,int} on the int, but not on
3157 // struct{double,int,int} because we wouldn't return the second int. We
3158 // have to do this analysis on the source type because we can't depend on
3159 // unions being lowered a specific way etc.
3160 if (IRType->isIntegerTy(8) || IRType->isIntegerTy(16) ||
Derek Schuffc7dd7222012-10-11 15:52:22 +00003161 IRType->isIntegerTy(32) ||
3162 (isa<llvm::PointerType>(IRType) && !Has64BitPointers)) {
3163 unsigned BitWidth = isa<llvm::PointerType>(IRType) ? 32 :
3164 cast<llvm::IntegerType>(IRType)->getBitWidth();
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00003165
Chris Lattnerc8b7b532010-07-29 07:30:00 +00003166 if (BitsContainNoUserData(SourceTy, SourceOffset*8+BitWidth,
3167 SourceOffset*8+64, getContext()))
3168 return IRType;
3169 }
3170 }
Chris Lattnerb22f1c82010-07-28 22:44:07 +00003171
Chris Lattner2192fe52011-07-18 04:24:23 +00003172 if (llvm::StructType *STy = dyn_cast<llvm::StructType>(IRType)) {
Chris Lattnerb22f1c82010-07-28 22:44:07 +00003173 // If this is a struct, recurse into the field at the specified offset.
Micah Villmowdd31ca12012-10-08 16:25:52 +00003174 const llvm::StructLayout *SL = getDataLayout().getStructLayout(STy);
Chris Lattnerb22f1c82010-07-28 22:44:07 +00003175 if (IROffset < SL->getSizeInBytes()) {
3176 unsigned FieldIdx = SL->getElementContainingOffset(IROffset);
3177 IROffset -= SL->getElementOffset(FieldIdx);
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00003178
Chris Lattner1c56d9a2010-07-29 17:40:35 +00003179 return GetINTEGERTypeAtOffset(STy->getElementType(FieldIdx), IROffset,
3180 SourceTy, SourceOffset);
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00003181 }
Chris Lattnerb22f1c82010-07-28 22:44:07 +00003182 }
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00003183
Chris Lattner2192fe52011-07-18 04:24:23 +00003184 if (llvm::ArrayType *ATy = dyn_cast<llvm::ArrayType>(IRType)) {
Chris Lattnera5f58b02011-07-09 17:41:47 +00003185 llvm::Type *EltTy = ATy->getElementType();
Micah Villmowdd31ca12012-10-08 16:25:52 +00003186 unsigned EltSize = getDataLayout().getTypeAllocSize(EltTy);
Chris Lattner98076a22010-07-29 07:43:55 +00003187 unsigned EltOffset = IROffset/EltSize*EltSize;
Chris Lattner1c56d9a2010-07-29 17:40:35 +00003188 return GetINTEGERTypeAtOffset(EltTy, IROffset-EltOffset, SourceTy,
3189 SourceOffset);
Chris Lattner98076a22010-07-29 07:43:55 +00003190 }
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00003191
Chris Lattnerb22f1c82010-07-28 22:44:07 +00003192 // Okay, we don't have any better idea of what to pass, so we pass this in an
3193 // integer register that isn't too big to fit the rest of the struct.
Chris Lattner3f763422010-07-29 17:34:39 +00003194 unsigned TySizeInBytes =
3195 (unsigned)getContext().getTypeSizeInChars(SourceTy).getQuantity();
Chris Lattnerb22f1c82010-07-28 22:44:07 +00003196
Chris Lattner3f763422010-07-29 17:34:39 +00003197 assert(TySizeInBytes != SourceOffset && "Empty field?");
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00003198
Chris Lattnerb22f1c82010-07-28 22:44:07 +00003199 // It is always safe to classify this as an integer type up to i64 that
3200 // isn't larger than the structure.
Chris Lattner3f763422010-07-29 17:34:39 +00003201 return llvm::IntegerType::get(getVMContext(),
3202 std::min(TySizeInBytes-SourceOffset, 8U)*8);
Chris Lattner22a931e2010-06-29 06:01:59 +00003203}
3204
Chris Lattnerd426c8e2010-09-01 00:50:20 +00003205
3206/// GetX86_64ByValArgumentPair - Given a high and low type that can ideally
3207/// be used as elements of a two register pair to pass or return, return a
3208/// first class aggregate to represent them. For example, if the low part of
3209/// a by-value argument should be passed as i32* and the high part as float,
3210/// return {i32*, float}.
Chris Lattnera5f58b02011-07-09 17:41:47 +00003211static llvm::Type *
Jay Foad7c57be32011-07-11 09:56:20 +00003212GetX86_64ByValArgumentPair(llvm::Type *Lo, llvm::Type *Hi,
Micah Villmowdd31ca12012-10-08 16:25:52 +00003213 const llvm::DataLayout &TD) {
Chris Lattnerd426c8e2010-09-01 00:50:20 +00003214 // In order to correctly satisfy the ABI, we need to the high part to start
3215 // at offset 8. If the high and low parts we inferred are both 4-byte types
3216 // (e.g. i32 and i32) then the resultant struct type ({i32,i32}) won't have
3217 // the second element at offset 8. Check for this:
3218 unsigned LoSize = (unsigned)TD.getTypeAllocSize(Lo);
3219 unsigned HiAlign = TD.getABITypeAlignment(Hi);
Rui Ueyama83aa9792016-01-14 21:00:27 +00003220 unsigned HiStart = llvm::alignTo(LoSize, HiAlign);
Chris Lattnerd426c8e2010-09-01 00:50:20 +00003221 assert(HiStart != 0 && HiStart <= 8 && "Invalid x86-64 argument pair!");
Michael J. Spencerf5a1fbc2010-10-19 06:39:39 +00003222
Chris Lattnerd426c8e2010-09-01 00:50:20 +00003223 // To handle this, we have to increase the size of the low part so that the
3224 // second element will start at an 8 byte offset. We can't increase the size
3225 // of the second element because it might make us access off the end of the
3226 // struct.
3227 if (HiStart != 8) {
Derek Schuff5ec51282015-06-24 22:36:38 +00003228 // There are usually two sorts of types the ABI generation code can produce
3229 // for the low part of a pair that aren't 8 bytes in size: float or
3230 // i8/i16/i32. This can also include pointers when they are 32-bit (X32 and
3231 // NaCl).
Chris Lattnerd426c8e2010-09-01 00:50:20 +00003232 // Promote these to a larger type.
3233 if (Lo->isFloatTy())
3234 Lo = llvm::Type::getDoubleTy(Lo->getContext());
3235 else {
Derek Schuff3c6a48d2015-06-24 22:36:36 +00003236 assert((Lo->isIntegerTy() || Lo->isPointerTy())
3237 && "Invalid/unknown lo type");
Chris Lattnerd426c8e2010-09-01 00:50:20 +00003238 Lo = llvm::Type::getInt64Ty(Lo->getContext());
3239 }
3240 }
Michael J. Spencerf5a1fbc2010-10-19 06:39:39 +00003241
Serge Guelton1d993272017-05-09 19:31:30 +00003242 llvm::StructType *Result = llvm::StructType::get(Lo, Hi);
Michael J. Spencerf5a1fbc2010-10-19 06:39:39 +00003243
Chris Lattnerd426c8e2010-09-01 00:50:20 +00003244 // Verify that the second element is at an 8-byte offset.
3245 assert(TD.getStructLayout(Result)->getElementOffset(1) == 8 &&
3246 "Invalid x86-64 argument pair!");
3247 return Result;
3248}
3249
Chris Lattner31faff52010-07-28 23:06:14 +00003250ABIArgInfo X86_64ABIInfo::
Chris Lattner458b2aa2010-07-29 02:16:43 +00003251classifyReturnType(QualType RetTy) const {
Chris Lattner31faff52010-07-28 23:06:14 +00003252 // AMD64-ABI 3.2.3p4: Rule 1. Classify the return type with the
3253 // classification algorithm.
3254 X86_64ABIInfo::Class Lo, Hi;
Eli Friedman96fd2642013-06-12 00:13:45 +00003255 classify(RetTy, 0, Lo, Hi, /*isNamedArg*/ true);
Chris Lattner31faff52010-07-28 23:06:14 +00003256
3257 // Check some invariants.
3258 assert((Hi != Memory || Lo == Memory) && "Invalid memory classification.");
Chris Lattner31faff52010-07-28 23:06:14 +00003259 assert((Hi != SSEUp || Lo == SSE) && "Invalid SSEUp classification.");
3260
Craig Topper8a13c412014-05-21 05:09:00 +00003261 llvm::Type *ResType = nullptr;
Chris Lattner31faff52010-07-28 23:06:14 +00003262 switch (Lo) {
3263 case NoClass:
Chris Lattner8a2f3c72010-07-30 04:02:24 +00003264 if (Hi == NoClass)
3265 return ABIArgInfo::getIgnore();
3266 // If the low part is just padding, it takes no register, leave ResType
3267 // null.
3268 assert((Hi == SSE || Hi == Integer || Hi == X87Up) &&
3269 "Unknown missing lo part");
3270 break;
Chris Lattner31faff52010-07-28 23:06:14 +00003271
3272 case SSEUp:
3273 case X87Up:
David Blaikie83d382b2011-09-23 05:06:16 +00003274 llvm_unreachable("Invalid classification for lo word.");
Chris Lattner31faff52010-07-28 23:06:14 +00003275
3276 // AMD64-ABI 3.2.3p4: Rule 2. Types of class memory are returned via
3277 // hidden argument.
3278 case Memory:
3279 return getIndirectReturnResult(RetTy);
3280
3281 // AMD64-ABI 3.2.3p4: Rule 3. If the class is INTEGER, the next
3282 // available register of the sequence %rax, %rdx is used.
3283 case Integer:
Chris Lattnera5f58b02011-07-09 17:41:47 +00003284 ResType = GetINTEGERTypeAtOffset(CGT.ConvertType(RetTy), 0, RetTy, 0);
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00003285
Chris Lattner1f3a0632010-07-29 21:42:50 +00003286 // If we have a sign or zero extended integer, make sure to return Extend
3287 // so that the parameter gets the right LLVM IR attributes.
3288 if (Hi == NoClass && isa<llvm::IntegerType>(ResType)) {
3289 // Treat an enum type as its underlying type.
3290 if (const EnumType *EnumTy = RetTy->getAs<EnumType>())
3291 RetTy = EnumTy->getDecl()->getIntegerType();
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00003292
Chris Lattner1f3a0632010-07-29 21:42:50 +00003293 if (RetTy->isIntegralOrEnumerationType() &&
3294 RetTy->isPromotableIntegerType())
Alex Bradburye41a5e22018-01-12 20:08:16 +00003295 return ABIArgInfo::getExtend(RetTy);
Chris Lattner1f3a0632010-07-29 21:42:50 +00003296 }
Chris Lattner31faff52010-07-28 23:06:14 +00003297 break;
3298
3299 // AMD64-ABI 3.2.3p4: Rule 4. If the class is SSE, the next
3300 // available SSE register of the sequence %xmm0, %xmm1 is used.
3301 case SSE:
Chris Lattnera5f58b02011-07-09 17:41:47 +00003302 ResType = GetSSETypeAtOffset(CGT.ConvertType(RetTy), 0, RetTy, 0);
Chris Lattnerfa560fe2010-07-28 23:12:33 +00003303 break;
Chris Lattner31faff52010-07-28 23:06:14 +00003304
3305 // AMD64-ABI 3.2.3p4: Rule 6. If the class is X87, the value is
3306 // returned on the X87 stack in %st0 as 80-bit x87 number.
3307 case X87:
Chris Lattner2b037972010-07-29 02:01:43 +00003308 ResType = llvm::Type::getX86_FP80Ty(getVMContext());
Chris Lattnerfa560fe2010-07-28 23:12:33 +00003309 break;
Chris Lattner31faff52010-07-28 23:06:14 +00003310
3311 // AMD64-ABI 3.2.3p4: Rule 8. If the class is COMPLEX_X87, the real
3312 // part of the value is returned in %st0 and the imaginary part in
3313 // %st1.
3314 case ComplexX87:
3315 assert(Hi == ComplexX87 && "Unexpected ComplexX87 classification.");
Chris Lattner845511f2011-06-18 22:49:11 +00003316 ResType = llvm::StructType::get(llvm::Type::getX86_FP80Ty(getVMContext()),
Serge Guelton1d993272017-05-09 19:31:30 +00003317 llvm::Type::getX86_FP80Ty(getVMContext()));
Chris Lattner31faff52010-07-28 23:06:14 +00003318 break;
3319 }
3320
Craig Topper8a13c412014-05-21 05:09:00 +00003321 llvm::Type *HighPart = nullptr;
Chris Lattner31faff52010-07-28 23:06:14 +00003322 switch (Hi) {
3323 // Memory was handled previously and X87 should
3324 // never occur as a hi class.
3325 case Memory:
3326 case X87:
David Blaikie83d382b2011-09-23 05:06:16 +00003327 llvm_unreachable("Invalid classification for hi word.");
Chris Lattner31faff52010-07-28 23:06:14 +00003328
3329 case ComplexX87: // Previously handled.
Chris Lattnerfa560fe2010-07-28 23:12:33 +00003330 case NoClass:
3331 break;
Chris Lattner31faff52010-07-28 23:06:14 +00003332
Chris Lattner52b3c132010-09-01 00:20:33 +00003333 case Integer:
Chris Lattnera5f58b02011-07-09 17:41:47 +00003334 HighPart = GetINTEGERTypeAtOffset(CGT.ConvertType(RetTy), 8, RetTy, 8);
Chris Lattner52b3c132010-09-01 00:20:33 +00003335 if (Lo == NoClass) // Return HighPart at offset 8 in memory.
3336 return ABIArgInfo::getDirect(HighPart, 8);
Chris Lattner31faff52010-07-28 23:06:14 +00003337 break;
Chris Lattner52b3c132010-09-01 00:20:33 +00003338 case SSE:
Chris Lattnera5f58b02011-07-09 17:41:47 +00003339 HighPart = GetSSETypeAtOffset(CGT.ConvertType(RetTy), 8, RetTy, 8);
Chris Lattner52b3c132010-09-01 00:20:33 +00003340 if (Lo == NoClass) // Return HighPart at offset 8 in memory.
3341 return ABIArgInfo::getDirect(HighPart, 8);
Chris Lattner31faff52010-07-28 23:06:14 +00003342 break;
3343
3344 // AMD64-ABI 3.2.3p4: Rule 5. If the class is SSEUP, the eightbyte
Bruno Cardoso Lopes21a41bb2011-07-11 22:41:29 +00003345 // is passed in the next available eightbyte chunk if the last used
3346 // vector register.
Chris Lattner31faff52010-07-28 23:06:14 +00003347 //
Chris Lattner57540c52011-04-15 05:22:18 +00003348 // SSEUP should always be preceded by SSE, just widen.
Chris Lattner31faff52010-07-28 23:06:14 +00003349 case SSEUp:
3350 assert(Lo == SSE && "Unexpected SSEUp classification.");
Bruno Cardoso Lopes21a41bb2011-07-11 22:41:29 +00003351 ResType = GetByteVectorType(RetTy);
Chris Lattner31faff52010-07-28 23:06:14 +00003352 break;
3353
3354 // AMD64-ABI 3.2.3p4: Rule 7. If the class is X87UP, the value is
3355 // returned together with the previous X87 value in %st0.
3356 case X87Up:
Chris Lattner57540c52011-04-15 05:22:18 +00003357 // If X87Up is preceded by X87, we don't need to do
Chris Lattner31faff52010-07-28 23:06:14 +00003358 // anything. However, in some cases with unions it may not be
Chris Lattner57540c52011-04-15 05:22:18 +00003359 // preceded by X87. In such situations we follow gcc and pass the
Chris Lattner31faff52010-07-28 23:06:14 +00003360 // extra bits in an SSE reg.
Chris Lattnerc95a3982010-07-29 17:49:08 +00003361 if (Lo != X87) {
Chris Lattnera5f58b02011-07-09 17:41:47 +00003362 HighPart = GetSSETypeAtOffset(CGT.ConvertType(RetTy), 8, RetTy, 8);
Chris Lattner52b3c132010-09-01 00:20:33 +00003363 if (Lo == NoClass) // Return HighPart at offset 8 in memory.
3364 return ABIArgInfo::getDirect(HighPart, 8);
Chris Lattnerc95a3982010-07-29 17:49:08 +00003365 }
Chris Lattner31faff52010-07-28 23:06:14 +00003366 break;
3367 }
Michael J. Spencerf5a1fbc2010-10-19 06:39:39 +00003368
Chris Lattner52b3c132010-09-01 00:20:33 +00003369 // If a high part was specified, merge it together with the low part. It is
Chris Lattnerbe5eb172010-09-01 00:24:35 +00003370 // known to pass in the high eightbyte of the result. We do this by forming a
3371 // first class struct aggregate with the high and low part: {low, high}
Chris Lattnerd426c8e2010-09-01 00:50:20 +00003372 if (HighPart)
Micah Villmowdd31ca12012-10-08 16:25:52 +00003373 ResType = GetX86_64ByValArgumentPair(ResType, HighPart, getDataLayout());
Chris Lattner31faff52010-07-28 23:06:14 +00003374
Chris Lattner1f3a0632010-07-29 21:42:50 +00003375 return ABIArgInfo::getDirect(ResType);
Chris Lattner31faff52010-07-28 23:06:14 +00003376}
3377
Daniel Dunbarf07b5ec2012-03-10 01:03:58 +00003378ABIArgInfo X86_64ABIInfo::classifyArgumentType(
Eli Friedman96fd2642013-06-12 00:13:45 +00003379 QualType Ty, unsigned freeIntRegs, unsigned &neededInt, unsigned &neededSSE,
3380 bool isNamedArg)
Daniel Dunbarf07b5ec2012-03-10 01:03:58 +00003381 const
3382{
Reid Klecknerb1be6832014-11-15 01:41:41 +00003383 Ty = useFirstFieldIfTransparentUnion(Ty);
3384
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003385 X86_64ABIInfo::Class Lo, Hi;
Eli Friedman96fd2642013-06-12 00:13:45 +00003386 classify(Ty, 0, Lo, Hi, isNamedArg);
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00003387
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003388 // Check some invariants.
3389 // FIXME: Enforce these by construction.
3390 assert((Hi != Memory || Lo == Memory) && "Invalid memory classification.");
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003391 assert((Hi != SSEUp || Lo == SSE) && "Invalid SSEUp classification.");
3392
3393 neededInt = 0;
3394 neededSSE = 0;
Craig Topper8a13c412014-05-21 05:09:00 +00003395 llvm::Type *ResType = nullptr;
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003396 switch (Lo) {
3397 case NoClass:
Chris Lattner8a2f3c72010-07-30 04:02:24 +00003398 if (Hi == NoClass)
3399 return ABIArgInfo::getIgnore();
3400 // If the low part is just padding, it takes no register, leave ResType
3401 // null.
3402 assert((Hi == SSE || Hi == Integer || Hi == X87Up) &&
3403 "Unknown missing lo part");
3404 break;
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00003405
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003406 // AMD64-ABI 3.2.3p3: Rule 1. If the class is MEMORY, pass the argument
3407 // on the stack.
3408 case Memory:
3409
3410 // AMD64-ABI 3.2.3p3: Rule 5. If the class is X87, X87UP or
3411 // COMPLEX_X87, it is passed in memory.
3412 case X87:
3413 case ComplexX87:
Mark Lacey3825e832013-10-06 01:33:34 +00003414 if (getRecordArgABI(Ty, getCXXABI()) == CGCXXABI::RAA_Indirect)
Eli Friedman4774b7e2011-06-29 07:04:55 +00003415 ++neededInt;
Daniel Dunbarf07b5ec2012-03-10 01:03:58 +00003416 return getIndirectResult(Ty, freeIntRegs);
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003417
3418 case SSEUp:
3419 case X87Up:
David Blaikie83d382b2011-09-23 05:06:16 +00003420 llvm_unreachable("Invalid classification for lo word.");
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003421
3422 // AMD64-ABI 3.2.3p3: Rule 2. If the class is INTEGER, the next
3423 // available register of the sequence %rdi, %rsi, %rdx, %rcx, %r8
3424 // and %r9 is used.
3425 case Integer:
Chris Lattner22a931e2010-06-29 06:01:59 +00003426 ++neededInt;
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00003427
Chris Lattnerb22f1c82010-07-28 22:44:07 +00003428 // Pick an 8-byte type based on the preferred type.
Chris Lattnera5f58b02011-07-09 17:41:47 +00003429 ResType = GetINTEGERTypeAtOffset(CGT.ConvertType(Ty), 0, Ty, 0);
Chris Lattner1f3a0632010-07-29 21:42:50 +00003430
3431 // If we have a sign or zero extended integer, make sure to return Extend
3432 // so that the parameter gets the right LLVM IR attributes.
3433 if (Hi == NoClass && isa<llvm::IntegerType>(ResType)) {
3434 // Treat an enum type as its underlying type.
3435 if (const EnumType *EnumTy = Ty->getAs<EnumType>())
3436 Ty = EnumTy->getDecl()->getIntegerType();
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00003437
Chris Lattner1f3a0632010-07-29 21:42:50 +00003438 if (Ty->isIntegralOrEnumerationType() &&
3439 Ty->isPromotableIntegerType())
Alex Bradburye41a5e22018-01-12 20:08:16 +00003440 return ABIArgInfo::getExtend(Ty);
Chris Lattner1f3a0632010-07-29 21:42:50 +00003441 }
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00003442
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003443 break;
3444
3445 // AMD64-ABI 3.2.3p3: Rule 3. If the class is SSE, the next
3446 // available SSE register is used, the registers are taken in the
3447 // order from %xmm0 to %xmm7.
Bill Wendling5cd41c42010-10-18 03:41:31 +00003448 case SSE: {
Chris Lattnera5f58b02011-07-09 17:41:47 +00003449 llvm::Type *IRType = CGT.ConvertType(Ty);
Eli Friedman1310c682011-07-02 00:57:27 +00003450 ResType = GetSSETypeAtOffset(IRType, 0, Ty, 0);
Bill Wendling9987c0e2010-10-18 23:51:38 +00003451 ++neededSSE;
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003452 break;
3453 }
Bill Wendling5cd41c42010-10-18 03:41:31 +00003454 }
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003455
Craig Topper8a13c412014-05-21 05:09:00 +00003456 llvm::Type *HighPart = nullptr;
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003457 switch (Hi) {
3458 // Memory was handled previously, ComplexX87 and X87 should
Chris Lattner57540c52011-04-15 05:22:18 +00003459 // never occur as hi classes, and X87Up must be preceded by X87,
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003460 // which is passed in memory.
3461 case Memory:
3462 case X87:
3463 case ComplexX87:
David Blaikie83d382b2011-09-23 05:06:16 +00003464 llvm_unreachable("Invalid classification for hi word.");
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003465
3466 case NoClass: break;
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00003467
Chris Lattnerbe5eb172010-09-01 00:24:35 +00003468 case Integer:
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003469 ++neededInt;
Chris Lattnerb22f1c82010-07-28 22:44:07 +00003470 // Pick an 8-byte type based on the preferred type.
Chris Lattnera5f58b02011-07-09 17:41:47 +00003471 HighPart = GetINTEGERTypeAtOffset(CGT.ConvertType(Ty), 8, Ty, 8);
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00003472
Chris Lattnerbe5eb172010-09-01 00:24:35 +00003473 if (Lo == NoClass) // Pass HighPart at offset 8 in memory.
3474 return ABIArgInfo::getDirect(HighPart, 8);
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003475 break;
3476
3477 // X87Up generally doesn't occur here (long double is passed in
3478 // memory), except in situations involving unions.
3479 case X87Up:
Chris Lattnerbe5eb172010-09-01 00:24:35 +00003480 case SSE:
Chris Lattnera5f58b02011-07-09 17:41:47 +00003481 HighPart = GetSSETypeAtOffset(CGT.ConvertType(Ty), 8, Ty, 8);
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00003482
Chris Lattnerbe5eb172010-09-01 00:24:35 +00003483 if (Lo == NoClass) // Pass HighPart at offset 8 in memory.
3484 return ABIArgInfo::getDirect(HighPart, 8);
Chris Lattner8a2f3c72010-07-30 04:02:24 +00003485
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003486 ++neededSSE;
3487 break;
3488
3489 // AMD64-ABI 3.2.3p3: Rule 4. If the class is SSEUP, the
3490 // eightbyte is passed in the upper half of the last used SSE
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00003491 // register. This only happens when 128-bit vectors are passed.
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003492 case SSEUp:
Chris Lattnerf4ba08a2010-07-28 23:47:21 +00003493 assert(Lo == SSE && "Unexpected SSEUp classification");
Bruno Cardoso Lopes21a41bb2011-07-11 22:41:29 +00003494 ResType = GetByteVectorType(Ty);
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003495 break;
3496 }
3497
Chris Lattnerbe5eb172010-09-01 00:24:35 +00003498 // If a high part was specified, merge it together with the low part. It is
3499 // known to pass in the high eightbyte of the result. We do this by forming a
3500 // first class struct aggregate with the high and low part: {low, high}
3501 if (HighPart)
Micah Villmowdd31ca12012-10-08 16:25:52 +00003502 ResType = GetX86_64ByValArgumentPair(ResType, HighPart, getDataLayout());
Michael J. Spencerf5a1fbc2010-10-19 06:39:39 +00003503
Chris Lattner1f3a0632010-07-29 21:42:50 +00003504 return ABIArgInfo::getDirect(ResType);
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003505}
3506
Erich Keane757d3172016-11-02 18:29:35 +00003507ABIArgInfo
3508X86_64ABIInfo::classifyRegCallStructTypeImpl(QualType Ty, unsigned &NeededInt,
3509 unsigned &NeededSSE) const {
3510 auto RT = Ty->getAs<RecordType>();
3511 assert(RT && "classifyRegCallStructType only valid with struct types");
3512
3513 if (RT->getDecl()->hasFlexibleArrayMember())
3514 return getIndirectReturnResult(Ty);
3515
3516 // Sum up bases
3517 if (auto CXXRD = dyn_cast<CXXRecordDecl>(RT->getDecl())) {
3518 if (CXXRD->isDynamicClass()) {
3519 NeededInt = NeededSSE = 0;
3520 return getIndirectReturnResult(Ty);
3521 }
3522
3523 for (const auto &I : CXXRD->bases())
3524 if (classifyRegCallStructTypeImpl(I.getType(), NeededInt, NeededSSE)
3525 .isIndirect()) {
3526 NeededInt = NeededSSE = 0;
3527 return getIndirectReturnResult(Ty);
3528 }
3529 }
3530
3531 // Sum up members
3532 for (const auto *FD : RT->getDecl()->fields()) {
3533 if (FD->getType()->isRecordType() && !FD->getType()->isUnionType()) {
3534 if (classifyRegCallStructTypeImpl(FD->getType(), NeededInt, NeededSSE)
3535 .isIndirect()) {
3536 NeededInt = NeededSSE = 0;
3537 return getIndirectReturnResult(Ty);
3538 }
3539 } else {
3540 unsigned LocalNeededInt, LocalNeededSSE;
3541 if (classifyArgumentType(FD->getType(), UINT_MAX, LocalNeededInt,
3542 LocalNeededSSE, true)
3543 .isIndirect()) {
3544 NeededInt = NeededSSE = 0;
3545 return getIndirectReturnResult(Ty);
3546 }
3547 NeededInt += LocalNeededInt;
3548 NeededSSE += LocalNeededSSE;
3549 }
3550 }
3551
3552 return ABIArgInfo::getDirect();
3553}
3554
3555ABIArgInfo X86_64ABIInfo::classifyRegCallStructType(QualType Ty,
3556 unsigned &NeededInt,
3557 unsigned &NeededSSE) const {
3558
3559 NeededInt = 0;
3560 NeededSSE = 0;
3561
3562 return classifyRegCallStructTypeImpl(Ty, NeededInt, NeededSSE);
3563}
3564
Chris Lattner22326a12010-07-29 02:31:05 +00003565void X86_64ABIInfo::computeInfo(CGFunctionInfo &FI) const {
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00003566
Alexander Ivchenko4b20b3c2018-02-08 11:15:21 +00003567 const unsigned CallingConv = FI.getCallingConvention();
3568 // It is possible to force Win64 calling convention on any x86_64 target by
3569 // using __attribute__((ms_abi)). In such case to correctly emit Win64
3570 // compatible code delegate this call to WinX86_64ABIInfo::computeInfo.
3571 if (CallingConv == llvm::CallingConv::Win64) {
3572 WinX86_64ABIInfo Win64ABIInfo(CGT);
3573 Win64ABIInfo.computeInfo(FI);
3574 return;
3575 }
3576
3577 bool IsRegCall = CallingConv == llvm::CallingConv::X86_RegCall;
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003578
3579 // Keep track of the number of assigned registers.
Erich Keane757d3172016-11-02 18:29:35 +00003580 unsigned FreeIntRegs = IsRegCall ? 11 : 6;
3581 unsigned FreeSSERegs = IsRegCall ? 16 : 8;
3582 unsigned NeededInt, NeededSSE;
3583
Akira Hatanakad791e922018-03-19 17:38:40 +00003584 if (!::classifyReturnType(getCXXABI(), FI, *this)) {
Erich Keanede1b2a92017-07-21 18:50:36 +00003585 if (IsRegCall && FI.getReturnType()->getTypePtr()->isRecordType() &&
3586 !FI.getReturnType()->getTypePtr()->isUnionType()) {
3587 FI.getReturnInfo() =
3588 classifyRegCallStructType(FI.getReturnType(), NeededInt, NeededSSE);
3589 if (FreeIntRegs >= NeededInt && FreeSSERegs >= NeededSSE) {
3590 FreeIntRegs -= NeededInt;
3591 FreeSSERegs -= NeededSSE;
3592 } else {
3593 FI.getReturnInfo() = getIndirectReturnResult(FI.getReturnType());
3594 }
3595 } else if (IsRegCall && FI.getReturnType()->getAs<ComplexType>()) {
3596 // Complex Long Double Type is passed in Memory when Regcall
3597 // calling convention is used.
3598 const ComplexType *CT = FI.getReturnType()->getAs<ComplexType>();
3599 if (getContext().getCanonicalType(CT->getElementType()) ==
3600 getContext().LongDoubleTy)
3601 FI.getReturnInfo() = getIndirectReturnResult(FI.getReturnType());
3602 } else
3603 FI.getReturnInfo() = classifyReturnType(FI.getReturnType());
3604 }
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003605
3606 // If the return value is indirect, then the hidden argument is consuming one
3607 // integer register.
3608 if (FI.getReturnInfo().isIndirect())
Erich Keane757d3172016-11-02 18:29:35 +00003609 --FreeIntRegs;
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003610
Peter Collingbournef7706832014-12-12 23:41:25 +00003611 // The chain argument effectively gives us another free register.
3612 if (FI.isChainCall())
Erich Keane757d3172016-11-02 18:29:35 +00003613 ++FreeIntRegs;
Peter Collingbournef7706832014-12-12 23:41:25 +00003614
Alexey Samsonov34625dd2014-09-29 21:21:48 +00003615 unsigned NumRequiredArgs = FI.getNumRequiredArgs();
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003616 // AMD64-ABI 3.2.3p3: Once arguments are classified, the registers
3617 // get assigned (in left-to-right order) for passing as follows...
Alexey Samsonov34625dd2014-09-29 21:21:48 +00003618 unsigned ArgNo = 0;
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003619 for (CGFunctionInfo::arg_iterator it = FI.arg_begin(), ie = FI.arg_end();
Alexey Samsonov34625dd2014-09-29 21:21:48 +00003620 it != ie; ++it, ++ArgNo) {
3621 bool IsNamedArg = ArgNo < NumRequiredArgs;
Eli Friedman96fd2642013-06-12 00:13:45 +00003622
Erich Keane757d3172016-11-02 18:29:35 +00003623 if (IsRegCall && it->type->isStructureOrClassType())
3624 it->info = classifyRegCallStructType(it->type, NeededInt, NeededSSE);
3625 else
3626 it->info = classifyArgumentType(it->type, FreeIntRegs, NeededInt,
3627 NeededSSE, IsNamedArg);
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003628
3629 // AMD64-ABI 3.2.3p3: If there are no registers available for any
3630 // eightbyte of an argument, the whole argument is passed on the
3631 // stack. If registers have already been assigned for some
3632 // eightbytes of such an argument, the assignments get reverted.
Erich Keane757d3172016-11-02 18:29:35 +00003633 if (FreeIntRegs >= NeededInt && FreeSSERegs >= NeededSSE) {
3634 FreeIntRegs -= NeededInt;
3635 FreeSSERegs -= NeededSSE;
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003636 } else {
Erich Keane757d3172016-11-02 18:29:35 +00003637 it->info = getIndirectResult(it->type, FreeIntRegs);
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003638 }
3639 }
3640}
3641
John McCall7f416cc2015-09-08 08:05:57 +00003642static Address EmitX86_64VAArgFromMemory(CodeGenFunction &CGF,
3643 Address VAListAddr, QualType Ty) {
James Y Knight751fe282019-02-09 22:22:28 +00003644 Address overflow_arg_area_p =
3645 CGF.Builder.CreateStructGEP(VAListAddr, 2, "overflow_arg_area_p");
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003646 llvm::Value *overflow_arg_area =
3647 CGF.Builder.CreateLoad(overflow_arg_area_p, "overflow_arg_area");
3648
3649 // AMD64-ABI 3.5.7p5: Step 7. Align l->overflow_arg_area upwards to a 16
3650 // byte boundary if alignment needed by type exceeds 8 byte boundary.
Eli Friedmana1748562011-11-18 02:44:19 +00003651 // It isn't stated explicitly in the standard, but in practice we use
3652 // alignment greater than 16 where necessary.
Petar Jovanovic402257b2015-12-04 00:26:47 +00003653 CharUnits Align = CGF.getContext().getTypeAlignInChars(Ty);
3654 if (Align > CharUnits::fromQuantity(8)) {
3655 overflow_arg_area = emitRoundPointerUpToAlignment(CGF, overflow_arg_area,
3656 Align);
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003657 }
3658
3659 // AMD64-ABI 3.5.7p5: Step 8. Fetch type from l->overflow_arg_area.
Chris Lattner2192fe52011-07-18 04:24:23 +00003660 llvm::Type *LTy = CGF.ConvertTypeForMem(Ty);
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003661 llvm::Value *Res =
3662 CGF.Builder.CreateBitCast(overflow_arg_area,
Owen Anderson9793f0e2009-07-29 22:16:19 +00003663 llvm::PointerType::getUnqual(LTy));
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003664
3665 // AMD64-ABI 3.5.7p5: Step 9. Set l->overflow_arg_area to:
3666 // l->overflow_arg_area + sizeof(type).
3667 // AMD64-ABI 3.5.7p5: Step 10. Align l->overflow_arg_area upwards to
3668 // an 8 byte boundary.
3669
3670 uint64_t SizeInBytes = (CGF.getContext().getTypeSize(Ty) + 7) / 8;
Owen Anderson41a75022009-08-13 21:57:51 +00003671 llvm::Value *Offset =
Chris Lattner5e016ae2010-06-27 07:15:29 +00003672 llvm::ConstantInt::get(CGF.Int32Ty, (SizeInBytes + 7) & ~7);
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003673 overflow_arg_area = CGF.Builder.CreateGEP(overflow_arg_area, Offset,
3674 "overflow_arg_area.next");
3675 CGF.Builder.CreateStore(overflow_arg_area, overflow_arg_area_p);
3676
3677 // AMD64-ABI 3.5.7p5: Step 11. Return the fetched type.
Petar Jovanovic402257b2015-12-04 00:26:47 +00003678 return Address(Res, Align);
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003679}
3680
John McCall7f416cc2015-09-08 08:05:57 +00003681Address X86_64ABIInfo::EmitVAArg(CodeGenFunction &CGF, Address VAListAddr,
3682 QualType Ty) const {
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003683 // Assume that va_list type is correct; should be pointer to LLVM type:
3684 // struct {
3685 // i32 gp_offset;
3686 // i32 fp_offset;
3687 // i8* overflow_arg_area;
3688 // i8* reg_save_area;
3689 // };
Bill Wendling9987c0e2010-10-18 23:51:38 +00003690 unsigned neededInt, neededSSE;
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00003691
John McCall7f416cc2015-09-08 08:05:57 +00003692 Ty = getContext().getCanonicalType(Ty);
Eric Christopher7565e0d2015-05-29 23:09:49 +00003693 ABIArgInfo AI = classifyArgumentType(Ty, 0, neededInt, neededSSE,
Eli Friedman96fd2642013-06-12 00:13:45 +00003694 /*isNamedArg*/false);
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003695
3696 // AMD64-ABI 3.5.7p5: Step 1. Determine whether type may be passed
3697 // in the registers. If not go to step 7.
3698 if (!neededInt && !neededSSE)
John McCall7f416cc2015-09-08 08:05:57 +00003699 return EmitX86_64VAArgFromMemory(CGF, VAListAddr, Ty);
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003700
3701 // AMD64-ABI 3.5.7p5: Step 2. Compute num_gp to hold the number of
3702 // general purpose registers needed to pass type and num_fp to hold
3703 // the number of floating point registers needed.
3704
3705 // AMD64-ABI 3.5.7p5: Step 3. Verify whether arguments fit into
3706 // registers. In the case: l->gp_offset > 48 - num_gp * 8 or
3707 // l->fp_offset > 304 - num_fp * 16 go to step 7.
3708 //
3709 // NOTE: 304 is a typo, there are (6 * 8 + 8 * 16) = 176 bytes of
3710 // register save space).
3711
Craig Topper8a13c412014-05-21 05:09:00 +00003712 llvm::Value *InRegs = nullptr;
John McCall7f416cc2015-09-08 08:05:57 +00003713 Address gp_offset_p = Address::invalid(), fp_offset_p = Address::invalid();
3714 llvm::Value *gp_offset = nullptr, *fp_offset = nullptr;
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003715 if (neededInt) {
James Y Knight751fe282019-02-09 22:22:28 +00003716 gp_offset_p = CGF.Builder.CreateStructGEP(VAListAddr, 0, "gp_offset_p");
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003717 gp_offset = CGF.Builder.CreateLoad(gp_offset_p, "gp_offset");
Chris Lattnerd776fb12010-06-28 21:43:59 +00003718 InRegs = llvm::ConstantInt::get(CGF.Int32Ty, 48 - neededInt * 8);
3719 InRegs = CGF.Builder.CreateICmpULE(gp_offset, InRegs, "fits_in_gp");
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003720 }
3721
3722 if (neededSSE) {
James Y Knight751fe282019-02-09 22:22:28 +00003723 fp_offset_p = CGF.Builder.CreateStructGEP(VAListAddr, 1, "fp_offset_p");
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003724 fp_offset = CGF.Builder.CreateLoad(fp_offset_p, "fp_offset");
3725 llvm::Value *FitsInFP =
Chris Lattnerd776fb12010-06-28 21:43:59 +00003726 llvm::ConstantInt::get(CGF.Int32Ty, 176 - neededSSE * 16);
3727 FitsInFP = CGF.Builder.CreateICmpULE(fp_offset, FitsInFP, "fits_in_fp");
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003728 InRegs = InRegs ? CGF.Builder.CreateAnd(InRegs, FitsInFP) : FitsInFP;
3729 }
3730
3731 llvm::BasicBlock *InRegBlock = CGF.createBasicBlock("vaarg.in_reg");
3732 llvm::BasicBlock *InMemBlock = CGF.createBasicBlock("vaarg.in_mem");
3733 llvm::BasicBlock *ContBlock = CGF.createBasicBlock("vaarg.end");
3734 CGF.Builder.CreateCondBr(InRegs, InRegBlock, InMemBlock);
3735
3736 // Emit code to load the value if it was passed in registers.
3737
3738 CGF.EmitBlock(InRegBlock);
3739
3740 // AMD64-ABI 3.5.7p5: Step 4. Fetch type from l->reg_save_area with
3741 // an offset of l->gp_offset and/or l->fp_offset. This may require
3742 // copying to a temporary location in case the parameter is passed
3743 // in different register classes or requires an alignment greater
3744 // than 8 for general purpose registers and 16 for XMM registers.
3745 //
3746 // FIXME: This really results in shameful code when we end up needing to
3747 // collect arguments from different places; often what should result in a
3748 // simple assembling of a structure from scattered addresses has many more
3749 // loads than necessary. Can we clean this up?
Chris Lattner2192fe52011-07-18 04:24:23 +00003750 llvm::Type *LTy = CGF.ConvertTypeForMem(Ty);
John McCall7f416cc2015-09-08 08:05:57 +00003751 llvm::Value *RegSaveArea = CGF.Builder.CreateLoad(
James Y Knight751fe282019-02-09 22:22:28 +00003752 CGF.Builder.CreateStructGEP(VAListAddr, 3), "reg_save_area");
John McCall7f416cc2015-09-08 08:05:57 +00003753
3754 Address RegAddr = Address::invalid();
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003755 if (neededInt && neededSSE) {
3756 // FIXME: Cleanup.
Chris Lattnerfe34c1d2010-07-29 06:26:06 +00003757 assert(AI.isDirect() && "Unexpected ABI info for mixed regs");
Chris Lattner2192fe52011-07-18 04:24:23 +00003758 llvm::StructType *ST = cast<llvm::StructType>(AI.getCoerceToType());
John McCall7f416cc2015-09-08 08:05:57 +00003759 Address Tmp = CGF.CreateMemTemp(Ty);
3760 Tmp = CGF.Builder.CreateElementBitCast(Tmp, ST);
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003761 assert(ST->getNumElements() == 2 && "Unexpected ABI info for mixed regs");
Chris Lattner2192fe52011-07-18 04:24:23 +00003762 llvm::Type *TyLo = ST->getElementType(0);
3763 llvm::Type *TyHi = ST->getElementType(1);
Chris Lattner51e1cc22010-08-26 06:28:35 +00003764 assert((TyLo->isFPOrFPVectorTy() ^ TyHi->isFPOrFPVectorTy()) &&
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003765 "Unexpected ABI info for mixed regs");
Chris Lattner2192fe52011-07-18 04:24:23 +00003766 llvm::Type *PTyLo = llvm::PointerType::getUnqual(TyLo);
3767 llvm::Type *PTyHi = llvm::PointerType::getUnqual(TyHi);
John McCall7f416cc2015-09-08 08:05:57 +00003768 llvm::Value *GPAddr = CGF.Builder.CreateGEP(RegSaveArea, gp_offset);
3769 llvm::Value *FPAddr = CGF.Builder.CreateGEP(RegSaveArea, fp_offset);
Rafael Espindola0a500af2014-06-24 20:01:50 +00003770 llvm::Value *RegLoAddr = TyLo->isFPOrFPVectorTy() ? FPAddr : GPAddr;
3771 llvm::Value *RegHiAddr = TyLo->isFPOrFPVectorTy() ? GPAddr : FPAddr;
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003772
John McCall7f416cc2015-09-08 08:05:57 +00003773 // Copy the first element.
Peter Collingbourneb367c562016-11-28 22:30:21 +00003774 // FIXME: Our choice of alignment here and below is probably pessimistic.
3775 llvm::Value *V = CGF.Builder.CreateAlignedLoad(
3776 TyLo, CGF.Builder.CreateBitCast(RegLoAddr, PTyLo),
3777 CharUnits::fromQuantity(getDataLayout().getABITypeAlignment(TyLo)));
James Y Knight751fe282019-02-09 22:22:28 +00003778 CGF.Builder.CreateStore(V, CGF.Builder.CreateStructGEP(Tmp, 0));
John McCall7f416cc2015-09-08 08:05:57 +00003779
3780 // Copy the second element.
Peter Collingbourneb367c562016-11-28 22:30:21 +00003781 V = CGF.Builder.CreateAlignedLoad(
3782 TyHi, CGF.Builder.CreateBitCast(RegHiAddr, PTyHi),
3783 CharUnits::fromQuantity(getDataLayout().getABITypeAlignment(TyHi)));
James Y Knight751fe282019-02-09 22:22:28 +00003784 CGF.Builder.CreateStore(V, CGF.Builder.CreateStructGEP(Tmp, 1));
John McCall7f416cc2015-09-08 08:05:57 +00003785
3786 RegAddr = CGF.Builder.CreateElementBitCast(Tmp, LTy);
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003787 } else if (neededInt) {
John McCall7f416cc2015-09-08 08:05:57 +00003788 RegAddr = Address(CGF.Builder.CreateGEP(RegSaveArea, gp_offset),
3789 CharUnits::fromQuantity(8));
3790 RegAddr = CGF.Builder.CreateElementBitCast(RegAddr, LTy);
Eli Friedmanc11c1692013-06-07 23:20:55 +00003791
3792 // Copy to a temporary if necessary to ensure the appropriate alignment.
3793 std::pair<CharUnits, CharUnits> SizeAlign =
John McCall7f416cc2015-09-08 08:05:57 +00003794 getContext().getTypeInfoInChars(Ty);
Eli Friedmanc11c1692013-06-07 23:20:55 +00003795 uint64_t TySize = SizeAlign.first.getQuantity();
John McCall7f416cc2015-09-08 08:05:57 +00003796 CharUnits TyAlign = SizeAlign.second;
3797
3798 // Copy into a temporary if the type is more aligned than the
3799 // register save area.
3800 if (TyAlign.getQuantity() > 8) {
3801 Address Tmp = CGF.CreateMemTemp(Ty);
3802 CGF.Builder.CreateMemCpy(Tmp, RegAddr, TySize, false);
Eli Friedmanc11c1692013-06-07 23:20:55 +00003803 RegAddr = Tmp;
3804 }
Fangrui Song6907ce22018-07-30 19:24:48 +00003805
Chris Lattner0cf24192010-06-28 20:05:43 +00003806 } else if (neededSSE == 1) {
John McCall7f416cc2015-09-08 08:05:57 +00003807 RegAddr = Address(CGF.Builder.CreateGEP(RegSaveArea, fp_offset),
3808 CharUnits::fromQuantity(16));
3809 RegAddr = CGF.Builder.CreateElementBitCast(RegAddr, LTy);
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003810 } else {
Chris Lattner0cf24192010-06-28 20:05:43 +00003811 assert(neededSSE == 2 && "Invalid number of needed registers!");
3812 // SSE registers are spaced 16 bytes apart in the register save
3813 // area, we need to collect the two eightbytes together.
John McCall7f416cc2015-09-08 08:05:57 +00003814 // The ABI isn't explicit about this, but it seems reasonable
3815 // to assume that the slots are 16-byte aligned, since the stack is
3816 // naturally 16-byte aligned and the prologue is expected to store
3817 // all the SSE registers to the RSA.
3818 Address RegAddrLo = Address(CGF.Builder.CreateGEP(RegSaveArea, fp_offset),
3819 CharUnits::fromQuantity(16));
3820 Address RegAddrHi =
3821 CGF.Builder.CreateConstInBoundsByteGEP(RegAddrLo,
3822 CharUnits::fromQuantity(16));
Erich Keane24e68402018-02-02 15:53:35 +00003823 llvm::Type *ST = AI.canHaveCoerceToType()
3824 ? AI.getCoerceToType()
3825 : llvm::StructType::get(CGF.DoubleTy, CGF.DoubleTy);
John McCall7f416cc2015-09-08 08:05:57 +00003826 llvm::Value *V;
3827 Address Tmp = CGF.CreateMemTemp(Ty);
3828 Tmp = CGF.Builder.CreateElementBitCast(Tmp, ST);
Erich Keane24e68402018-02-02 15:53:35 +00003829 V = CGF.Builder.CreateLoad(CGF.Builder.CreateElementBitCast(
3830 RegAddrLo, ST->getStructElementType(0)));
James Y Knight751fe282019-02-09 22:22:28 +00003831 CGF.Builder.CreateStore(V, CGF.Builder.CreateStructGEP(Tmp, 0));
Erich Keane24e68402018-02-02 15:53:35 +00003832 V = CGF.Builder.CreateLoad(CGF.Builder.CreateElementBitCast(
3833 RegAddrHi, ST->getStructElementType(1)));
James Y Knight751fe282019-02-09 22:22:28 +00003834 CGF.Builder.CreateStore(V, CGF.Builder.CreateStructGEP(Tmp, 1));
John McCall7f416cc2015-09-08 08:05:57 +00003835
3836 RegAddr = CGF.Builder.CreateElementBitCast(Tmp, LTy);
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003837 }
3838
3839 // AMD64-ABI 3.5.7p5: Step 5. Set:
3840 // l->gp_offset = l->gp_offset + num_gp * 8
3841 // l->fp_offset = l->fp_offset + num_fp * 16.
3842 if (neededInt) {
Chris Lattner5e016ae2010-06-27 07:15:29 +00003843 llvm::Value *Offset = llvm::ConstantInt::get(CGF.Int32Ty, neededInt * 8);
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003844 CGF.Builder.CreateStore(CGF.Builder.CreateAdd(gp_offset, Offset),
3845 gp_offset_p);
3846 }
3847 if (neededSSE) {
Chris Lattner5e016ae2010-06-27 07:15:29 +00003848 llvm::Value *Offset = llvm::ConstantInt::get(CGF.Int32Ty, neededSSE * 16);
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003849 CGF.Builder.CreateStore(CGF.Builder.CreateAdd(fp_offset, Offset),
3850 fp_offset_p);
3851 }
3852 CGF.EmitBranch(ContBlock);
3853
3854 // Emit code to load the value if it was passed in memory.
3855
3856 CGF.EmitBlock(InMemBlock);
John McCall7f416cc2015-09-08 08:05:57 +00003857 Address MemAddr = EmitX86_64VAArgFromMemory(CGF, VAListAddr, Ty);
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003858
3859 // Return the appropriate result.
3860
3861 CGF.EmitBlock(ContBlock);
John McCall7f416cc2015-09-08 08:05:57 +00003862 Address ResAddr = emitMergePHI(CGF, RegAddr, InRegBlock, MemAddr, InMemBlock,
3863 "vaarg.addr");
Anton Korobeynikov244360d2009-06-05 22:08:42 +00003864 return ResAddr;
3865}
3866
Charles Davisc7d5c942015-09-17 20:55:33 +00003867Address X86_64ABIInfo::EmitMSVAArg(CodeGenFunction &CGF, Address VAListAddr,
3868 QualType Ty) const {
3869 return emitVoidPtrVAArg(CGF, VAListAddr, Ty, /*indirect*/ false,
3870 CGF.getContext().getTypeInfoInChars(Ty),
3871 CharUnits::fromQuantity(8),
3872 /*allowHigherAlign*/ false);
3873}
3874
Erich Keane521ed962017-01-05 00:20:51 +00003875ABIArgInfo
3876WinX86_64ABIInfo::reclassifyHvaArgType(QualType Ty, unsigned &FreeSSERegs,
3877 const ABIArgInfo &current) const {
3878 // Assumes vectorCall calling convention.
3879 const Type *Base = nullptr;
3880 uint64_t NumElts = 0;
3881
3882 if (!Ty->isBuiltinType() && !Ty->isVectorType() &&
3883 isHomogeneousAggregate(Ty, Base, NumElts) && FreeSSERegs >= NumElts) {
3884 FreeSSERegs -= NumElts;
3885 return getDirectX86Hva();
3886 }
3887 return current;
3888}
3889
Reid Kleckner80944df2014-10-31 22:00:51 +00003890ABIArgInfo WinX86_64ABIInfo::classify(QualType Ty, unsigned &FreeSSERegs,
Erich Keane521ed962017-01-05 00:20:51 +00003891 bool IsReturnType, bool IsVectorCall,
3892 bool IsRegCall) const {
NAKAMURA Takumibd91f502011-01-17 22:56:31 +00003893
3894 if (Ty->isVoidType())
3895 return ABIArgInfo::getIgnore();
3896
3897 if (const EnumType *EnumTy = Ty->getAs<EnumType>())
3898 Ty = EnumTy->getDecl()->getIntegerType();
3899
Reid Kleckner80944df2014-10-31 22:00:51 +00003900 TypeInfo Info = getContext().getTypeInfo(Ty);
3901 uint64_t Width = Info.Width;
Reid Kleckner11a17192015-10-28 22:29:52 +00003902 CharUnits Align = getContext().toCharUnitsFromBits(Info.Align);
NAKAMURA Takumibd91f502011-01-17 22:56:31 +00003903
Reid Kleckner9005f412014-05-02 00:51:20 +00003904 const RecordType *RT = Ty->getAs<RecordType>();
3905 if (RT) {
Reid Kleckner40ca9132014-05-13 22:05:45 +00003906 if (!IsReturnType) {
Mark Lacey3825e832013-10-06 01:33:34 +00003907 if (CGCXXABI::RecordArgABI RAA = getRecordArgABI(RT, getCXXABI()))
John McCall7f416cc2015-09-08 08:05:57 +00003908 return getNaturalAlignIndirect(Ty, RAA == CGCXXABI::RAA_DirectInMemory);
Timur Iskhodzhanov8fe501d2013-04-17 12:54:10 +00003909 }
3910
3911 if (RT->getDecl()->hasFlexibleArrayMember())
John McCall7f416cc2015-09-08 08:05:57 +00003912 return getNaturalAlignIndirect(Ty, /*ByVal=*/false);
NAKAMURA Takumibd91f502011-01-17 22:56:31 +00003913
Reid Kleckner9005f412014-05-02 00:51:20 +00003914 }
NAKAMURA Takumif8a6e802011-02-22 03:56:57 +00003915
Reid Kleckner80944df2014-10-31 22:00:51 +00003916 const Type *Base = nullptr;
3917 uint64_t NumElts = 0;
Erich Keane521ed962017-01-05 00:20:51 +00003918 // vectorcall adds the concept of a homogenous vector aggregate, similar to
3919 // other targets.
3920 if ((IsVectorCall || IsRegCall) &&
3921 isHomogeneousAggregate(Ty, Base, NumElts)) {
3922 if (IsRegCall) {
3923 if (FreeSSERegs >= NumElts) {
3924 FreeSSERegs -= NumElts;
3925 if (IsReturnType || Ty->isBuiltinType() || Ty->isVectorType())
3926 return ABIArgInfo::getDirect();
3927 return ABIArgInfo::getExpand();
3928 }
3929 return ABIArgInfo::getIndirect(Align, /*ByVal=*/false);
3930 } else if (IsVectorCall) {
3931 if (FreeSSERegs >= NumElts &&
3932 (IsReturnType || Ty->isBuiltinType() || Ty->isVectorType())) {
3933 FreeSSERegs -= NumElts;
Reid Kleckner80944df2014-10-31 22:00:51 +00003934 return ABIArgInfo::getDirect();
Erich Keane521ed962017-01-05 00:20:51 +00003935 } else if (IsReturnType) {
3936 return ABIArgInfo::getExpand();
3937 } else if (!Ty->isBuiltinType() && !Ty->isVectorType()) {
3938 // HVAs are delayed and reclassified in the 2nd step.
3939 return ABIArgInfo::getIndirect(Align, /*ByVal=*/false);
3940 }
Reid Kleckner80944df2014-10-31 22:00:51 +00003941 }
Reid Kleckner80944df2014-10-31 22:00:51 +00003942 }
3943
Reid Klecknerec87fec2014-05-02 01:17:12 +00003944 if (Ty->isMemberPointerType()) {
Reid Kleckner7f5f0f32014-05-02 01:14:59 +00003945 // If the member pointer is represented by an LLVM int or ptr, pass it
3946 // directly.
3947 llvm::Type *LLTy = CGT.ConvertType(Ty);
3948 if (LLTy->isPointerTy() || LLTy->isIntegerTy())
3949 return ABIArgInfo::getDirect();
Reid Kleckner9005f412014-05-02 00:51:20 +00003950 }
3951
Michael Kuperstein4f818702015-02-24 09:35:58 +00003952 if (RT || Ty->isAnyComplexType() || Ty->isMemberPointerType()) {
NAKAMURA Takumif8a6e802011-02-22 03:56:57 +00003953 // MS x64 ABI requirement: "Any argument that doesn't fit in 8 bytes, or is
3954 // not 1, 2, 4, or 8 bytes, must be passed by reference."
Reid Kleckner80944df2014-10-31 22:00:51 +00003955 if (Width > 64 || !llvm::isPowerOf2_64(Width))
John McCall7f416cc2015-09-08 08:05:57 +00003956 return getNaturalAlignIndirect(Ty, /*ByVal=*/false);
NAKAMURA Takumibd91f502011-01-17 22:56:31 +00003957
Reid Kleckner9005f412014-05-02 00:51:20 +00003958 // Otherwise, coerce it to a small integer.
Reid Kleckner80944df2014-10-31 22:00:51 +00003959 return ABIArgInfo::getDirect(llvm::IntegerType::get(getVMContext(), Width));
NAKAMURA Takumibd91f502011-01-17 22:56:31 +00003960 }
3961
Reid Kleckner08f64e92018-10-31 17:43:55 +00003962 if (const BuiltinType *BT = Ty->getAs<BuiltinType>()) {
3963 switch (BT->getKind()) {
3964 case BuiltinType::Bool:
3965 // Bool type is always extended to the ABI, other builtin types are not
3966 // extended.
3967 return ABIArgInfo::getExtend(Ty);
3968
3969 case BuiltinType::LongDouble:
3970 // Mingw64 GCC uses the old 80 bit extended precision floating point
3971 // unit. It passes them indirectly through memory.
3972 if (IsMingw64) {
3973 const llvm::fltSemantics *LDF = &getTarget().getLongDoubleFormat();
3974 if (LDF == &llvm::APFloat::x87DoubleExtended())
3975 return ABIArgInfo::getIndirect(Align, /*ByVal=*/false);
3976 }
3977 break;
3978
3979 case BuiltinType::Int128:
3980 case BuiltinType::UInt128:
3981 // If it's a parameter type, the normal ABI rule is that arguments larger
3982 // than 8 bytes are passed indirectly. GCC follows it. We follow it too,
3983 // even though it isn't particularly efficient.
3984 if (!IsReturnType)
3985 return ABIArgInfo::getIndirect(Align, /*ByVal=*/false);
3986
3987 // Mingw64 GCC returns i128 in XMM0. Coerce to v2i64 to handle that.
3988 // Clang matches them for compatibility.
3989 return ABIArgInfo::getDirect(
3990 llvm::VectorType::get(llvm::Type::getInt64Ty(getVMContext()), 2));
3991
3992 default:
3993 break;
3994 }
Reid Kleckner11a17192015-10-28 22:29:52 +00003995 }
3996
NAKAMURA Takumibd91f502011-01-17 22:56:31 +00003997 return ABIArgInfo::getDirect();
3998}
3999
Erich Keane521ed962017-01-05 00:20:51 +00004000void WinX86_64ABIInfo::computeVectorCallArgs(CGFunctionInfo &FI,
4001 unsigned FreeSSERegs,
4002 bool IsVectorCall,
4003 bool IsRegCall) const {
4004 unsigned Count = 0;
4005 for (auto &I : FI.arguments()) {
Erich Keane4bd39302017-06-21 16:37:22 +00004006 // Vectorcall in x64 only permits the first 6 arguments to be passed
4007 // as XMM/YMM registers.
Erich Keane521ed962017-01-05 00:20:51 +00004008 if (Count < VectorcallMaxParamNumAsReg)
4009 I.info = classify(I.type, FreeSSERegs, false, IsVectorCall, IsRegCall);
4010 else {
4011 // Since these cannot be passed in registers, pretend no registers
4012 // are left.
4013 unsigned ZeroSSERegsAvail = 0;
4014 I.info = classify(I.type, /*FreeSSERegs=*/ZeroSSERegsAvail, false,
4015 IsVectorCall, IsRegCall);
4016 }
4017 ++Count;
4018 }
4019
Erich Keane521ed962017-01-05 00:20:51 +00004020 for (auto &I : FI.arguments()) {
Erich Keane4bd39302017-06-21 16:37:22 +00004021 I.info = reclassifyHvaArgType(I.type, FreeSSERegs, I.info);
Erich Keane521ed962017-01-05 00:20:51 +00004022 }
4023}
4024
NAKAMURA Takumibd91f502011-01-17 22:56:31 +00004025void WinX86_64ABIInfo::computeInfo(CGFunctionInfo &FI) const {
Reid Kleckner80944df2014-10-31 22:00:51 +00004026 bool IsVectorCall =
4027 FI.getCallingConvention() == llvm::CallingConv::X86_VectorCall;
Erich Keane757d3172016-11-02 18:29:35 +00004028 bool IsRegCall = FI.getCallingConvention() == llvm::CallingConv::X86_RegCall;
Reid Kleckner37abaca2014-05-09 22:46:15 +00004029
Erich Keane757d3172016-11-02 18:29:35 +00004030 unsigned FreeSSERegs = 0;
4031 if (IsVectorCall) {
4032 // We can use up to 4 SSE return registers with vectorcall.
4033 FreeSSERegs = 4;
4034 } else if (IsRegCall) {
4035 // RegCall gives us 16 SSE registers.
4036 FreeSSERegs = 16;
4037 }
4038
Reid Kleckner80944df2014-10-31 22:00:51 +00004039 if (!getCXXABI().classifyReturnType(FI))
Erich Keane521ed962017-01-05 00:20:51 +00004040 FI.getReturnInfo() = classify(FI.getReturnType(), FreeSSERegs, true,
4041 IsVectorCall, IsRegCall);
Reid Kleckner80944df2014-10-31 22:00:51 +00004042
Erich Keane757d3172016-11-02 18:29:35 +00004043 if (IsVectorCall) {
4044 // We can use up to 6 SSE register parameters with vectorcall.
4045 FreeSSERegs = 6;
4046 } else if (IsRegCall) {
Erich Keane521ed962017-01-05 00:20:51 +00004047 // RegCall gives us 16 SSE registers, we can reuse the return registers.
Erich Keane757d3172016-11-02 18:29:35 +00004048 FreeSSERegs = 16;
4049 }
4050
Erich Keane521ed962017-01-05 00:20:51 +00004051 if (IsVectorCall) {
4052 computeVectorCallArgs(FI, FreeSSERegs, IsVectorCall, IsRegCall);
4053 } else {
4054 for (auto &I : FI.arguments())
4055 I.info = classify(I.type, FreeSSERegs, false, IsVectorCall, IsRegCall);
4056 }
4057
NAKAMURA Takumibd91f502011-01-17 22:56:31 +00004058}
4059
John McCall7f416cc2015-09-08 08:05:57 +00004060Address WinX86_64ABIInfo::EmitVAArg(CodeGenFunction &CGF, Address VAListAddr,
4061 QualType Ty) const {
Reid Klecknerb04449d2016-08-25 20:42:26 +00004062
4063 bool IsIndirect = false;
4064
4065 // MS x64 ABI requirement: "Any argument that doesn't fit in 8 bytes, or is
4066 // not 1, 2, 4, or 8 bytes, must be passed by reference."
4067 if (isAggregateTypeForABI(Ty) || Ty->isMemberPointerType()) {
4068 uint64_t Width = getContext().getTypeSize(Ty);
4069 IsIndirect = Width > 64 || !llvm::isPowerOf2_64(Width);
4070 }
4071
4072 return emitVoidPtrVAArg(CGF, VAListAddr, Ty, IsIndirect,
John McCall7f416cc2015-09-08 08:05:57 +00004073 CGF.getContext().getTypeInfoInChars(Ty),
4074 CharUnits::fromQuantity(8),
4075 /*allowHigherAlign*/ false);
Chris Lattner04dc9572010-08-31 16:44:54 +00004076}
Chris Lattner0cf24192010-06-28 20:05:43 +00004077
John McCallea8d8bb2010-03-11 00:10:12 +00004078// PowerPC-32
John McCallea8d8bb2010-03-11 00:10:12 +00004079namespace {
Roman Divacky8a12d842014-11-03 18:32:54 +00004080/// PPC32_SVR4_ABIInfo - The 32-bit PowerPC ELF (SVR4) ABI information.
4081class PPC32_SVR4_ABIInfo : public DefaultABIInfo {
Saleem Abdulrasool2a5015b2017-10-25 17:56:50 +00004082 bool IsSoftFloatABI;
4083
4084 CharUnits getParamTypeAlignment(QualType Ty) const;
4085
John McCallea8d8bb2010-03-11 00:10:12 +00004086public:
Petar Jovanovic88a328f2015-12-14 17:51:50 +00004087 PPC32_SVR4_ABIInfo(CodeGen::CodeGenTypes &CGT, bool SoftFloatABI)
4088 : DefaultABIInfo(CGT), IsSoftFloatABI(SoftFloatABI) {}
Roman Divacky8a12d842014-11-03 18:32:54 +00004089
John McCall7f416cc2015-09-08 08:05:57 +00004090 Address EmitVAArg(CodeGenFunction &CGF, Address VAListAddr,
4091 QualType Ty) const override;
Roman Divacky8a12d842014-11-03 18:32:54 +00004092};
4093
4094class PPC32TargetCodeGenInfo : public TargetCodeGenInfo {
4095public:
Petar Jovanovic88a328f2015-12-14 17:51:50 +00004096 PPC32TargetCodeGenInfo(CodeGenTypes &CGT, bool SoftFloatABI)
4097 : TargetCodeGenInfo(new PPC32_SVR4_ABIInfo(CGT, SoftFloatABI)) {}
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00004098
Craig Topper4f12f102014-03-12 06:41:41 +00004099 int getDwarfEHStackPointer(CodeGen::CodeGenModule &M) const override {
John McCallea8d8bb2010-03-11 00:10:12 +00004100 // This is recovered from gcc output.
4101 return 1; // r1 is the dedicated stack pointer
4102 }
4103
4104 bool initDwarfEHRegSizeTable(CodeGen::CodeGenFunction &CGF,
Craig Topper4f12f102014-03-12 06:41:41 +00004105 llvm::Value *Address) const override;
John McCallea8d8bb2010-03-11 00:10:12 +00004106};
Saleem Abdulrasool2a5015b2017-10-25 17:56:50 +00004107}
John McCallea8d8bb2010-03-11 00:10:12 +00004108
Saleem Abdulrasool2a5015b2017-10-25 17:56:50 +00004109CharUnits PPC32_SVR4_ABIInfo::getParamTypeAlignment(QualType Ty) const {
4110 // Complex types are passed just like their elements
4111 if (const ComplexType *CTy = Ty->getAs<ComplexType>())
4112 Ty = CTy->getElementType();
4113
4114 if (Ty->isVectorType())
4115 return CharUnits::fromQuantity(getContext().getTypeSize(Ty) == 128 ? 16
4116 : 4);
4117
4118 // For single-element float/vector structs, we consider the whole type
4119 // to have the same alignment requirements as its single element.
4120 const Type *AlignTy = nullptr;
4121 if (const Type *EltType = isSingleElementStruct(Ty, getContext())) {
4122 const BuiltinType *BT = EltType->getAs<BuiltinType>();
4123 if ((EltType->isVectorType() && getContext().getTypeSize(EltType) == 128) ||
4124 (BT && BT->isFloatingPoint()))
4125 AlignTy = EltType;
4126 }
4127
4128 if (AlignTy)
4129 return CharUnits::fromQuantity(AlignTy->isVectorType() ? 16 : 4);
4130 return CharUnits::fromQuantity(4);
Alexander Kornienkoab9db512015-06-22 23:07:51 +00004131}
John McCallea8d8bb2010-03-11 00:10:12 +00004132
James Y Knight29b5f082016-02-24 02:59:33 +00004133// TODO: this implementation is now likely redundant with
4134// DefaultABIInfo::EmitVAArg.
John McCall7f416cc2015-09-08 08:05:57 +00004135Address PPC32_SVR4_ABIInfo::EmitVAArg(CodeGenFunction &CGF, Address VAList,
4136 QualType Ty) const {
Saleem Abdulrasool2a5015b2017-10-25 17:56:50 +00004137 if (getTarget().getTriple().isOSDarwin()) {
4138 auto TI = getContext().getTypeInfoInChars(Ty);
4139 TI.second = getParamTypeAlignment(Ty);
4140
4141 CharUnits SlotSize = CharUnits::fromQuantity(4);
4142 return emitVoidPtrVAArg(CGF, VAList, Ty,
4143 classifyArgumentType(Ty).isIndirect(), TI, SlotSize,
4144 /*AllowHigherAlign=*/true);
4145 }
4146
Roman Divacky039b9702016-02-20 08:31:24 +00004147 const unsigned OverflowLimit = 8;
Roman Divacky8a12d842014-11-03 18:32:54 +00004148 if (const ComplexType *CTy = Ty->getAs<ComplexType>()) {
4149 // TODO: Implement this. For now ignore.
4150 (void)CTy;
James Y Knight29b5f082016-02-24 02:59:33 +00004151 return Address::invalid(); // FIXME?
Roman Divacky8a12d842014-11-03 18:32:54 +00004152 }
4153
John McCall7f416cc2015-09-08 08:05:57 +00004154 // struct __va_list_tag {
4155 // unsigned char gpr;
4156 // unsigned char fpr;
4157 // unsigned short reserved;
4158 // void *overflow_arg_area;
4159 // void *reg_save_area;
4160 // };
4161
Roman Divacky8a12d842014-11-03 18:32:54 +00004162 bool isI64 = Ty->isIntegerType() && getContext().getTypeSize(Ty) == 64;
Eric Christopher7565e0d2015-05-29 23:09:49 +00004163 bool isInt =
4164 Ty->isIntegerType() || Ty->isPointerType() || Ty->isAggregateType();
Petar Jovanovic88a328f2015-12-14 17:51:50 +00004165 bool isF64 = Ty->isFloatingType() && getContext().getTypeSize(Ty) == 64;
John McCall7f416cc2015-09-08 08:05:57 +00004166
4167 // All aggregates are passed indirectly? That doesn't seem consistent
4168 // with the argument-lowering code.
4169 bool isIndirect = Ty->isAggregateType();
Roman Divacky8a12d842014-11-03 18:32:54 +00004170
4171 CGBuilderTy &Builder = CGF.Builder;
John McCall7f416cc2015-09-08 08:05:57 +00004172
4173 // The calling convention either uses 1-2 GPRs or 1 FPR.
4174 Address NumRegsAddr = Address::invalid();
Petar Jovanovic88a328f2015-12-14 17:51:50 +00004175 if (isInt || IsSoftFloatABI) {
James Y Knight751fe282019-02-09 22:22:28 +00004176 NumRegsAddr = Builder.CreateStructGEP(VAList, 0, "gpr");
John McCall7f416cc2015-09-08 08:05:57 +00004177 } else {
James Y Knight751fe282019-02-09 22:22:28 +00004178 NumRegsAddr = Builder.CreateStructGEP(VAList, 1, "fpr");
Roman Divacky8a12d842014-11-03 18:32:54 +00004179 }
John McCall7f416cc2015-09-08 08:05:57 +00004180
4181 llvm::Value *NumRegs = Builder.CreateLoad(NumRegsAddr, "numUsedRegs");
4182
4183 // "Align" the register count when TY is i64.
Petar Jovanovic88a328f2015-12-14 17:51:50 +00004184 if (isI64 || (isF64 && IsSoftFloatABI)) {
John McCall7f416cc2015-09-08 08:05:57 +00004185 NumRegs = Builder.CreateAdd(NumRegs, Builder.getInt8(1));
4186 NumRegs = Builder.CreateAnd(NumRegs, Builder.getInt8((uint8_t) ~1U));
4187 }
Roman Divacky8a12d842014-11-03 18:32:54 +00004188
Eric Christopher7565e0d2015-05-29 23:09:49 +00004189 llvm::Value *CC =
Roman Divacky039b9702016-02-20 08:31:24 +00004190 Builder.CreateICmpULT(NumRegs, Builder.getInt8(OverflowLimit), "cond");
Roman Divacky8a12d842014-11-03 18:32:54 +00004191
4192 llvm::BasicBlock *UsingRegs = CGF.createBasicBlock("using_regs");
4193 llvm::BasicBlock *UsingOverflow = CGF.createBasicBlock("using_overflow");
4194 llvm::BasicBlock *Cont = CGF.createBasicBlock("cont");
4195
4196 Builder.CreateCondBr(CC, UsingRegs, UsingOverflow);
4197
John McCall7f416cc2015-09-08 08:05:57 +00004198 llvm::Type *DirectTy = CGF.ConvertType(Ty);
4199 if (isIndirect) DirectTy = DirectTy->getPointerTo(0);
Roman Divacky8a12d842014-11-03 18:32:54 +00004200
John McCall7f416cc2015-09-08 08:05:57 +00004201 // Case 1: consume registers.
4202 Address RegAddr = Address::invalid();
4203 {
4204 CGF.EmitBlock(UsingRegs);
4205
James Y Knight751fe282019-02-09 22:22:28 +00004206 Address RegSaveAreaPtr = Builder.CreateStructGEP(VAList, 4);
John McCall7f416cc2015-09-08 08:05:57 +00004207 RegAddr = Address(Builder.CreateLoad(RegSaveAreaPtr),
4208 CharUnits::fromQuantity(8));
4209 assert(RegAddr.getElementType() == CGF.Int8Ty);
4210
4211 // Floating-point registers start after the general-purpose registers.
Petar Jovanovic88a328f2015-12-14 17:51:50 +00004212 if (!(isInt || IsSoftFloatABI)) {
John McCall7f416cc2015-09-08 08:05:57 +00004213 RegAddr = Builder.CreateConstInBoundsByteGEP(RegAddr,
4214 CharUnits::fromQuantity(32));
4215 }
4216
4217 // Get the address of the saved value by scaling the number of
Fangrui Song6907ce22018-07-30 19:24:48 +00004218 // registers we've used by the number of
Petar Jovanovic88a328f2015-12-14 17:51:50 +00004219 CharUnits RegSize = CharUnits::fromQuantity((isInt || IsSoftFloatABI) ? 4 : 8);
John McCall7f416cc2015-09-08 08:05:57 +00004220 llvm::Value *RegOffset =
4221 Builder.CreateMul(NumRegs, Builder.getInt8(RegSize.getQuantity()));
4222 RegAddr = Address(Builder.CreateInBoundsGEP(CGF.Int8Ty,
4223 RegAddr.getPointer(), RegOffset),
4224 RegAddr.getAlignment().alignmentOfArrayElement(RegSize));
4225 RegAddr = Builder.CreateElementBitCast(RegAddr, DirectTy);
4226
4227 // Increase the used-register count.
Petar Jovanovic88a328f2015-12-14 17:51:50 +00004228 NumRegs =
Fangrui Song6907ce22018-07-30 19:24:48 +00004229 Builder.CreateAdd(NumRegs,
Petar Jovanovic88a328f2015-12-14 17:51:50 +00004230 Builder.getInt8((isI64 || (isF64 && IsSoftFloatABI)) ? 2 : 1));
John McCall7f416cc2015-09-08 08:05:57 +00004231 Builder.CreateStore(NumRegs, NumRegsAddr);
4232
4233 CGF.EmitBranch(Cont);
Roman Divacky8a12d842014-11-03 18:32:54 +00004234 }
Roman Divacky8a12d842014-11-03 18:32:54 +00004235
John McCall7f416cc2015-09-08 08:05:57 +00004236 // Case 2: consume space in the overflow area.
4237 Address MemAddr = Address::invalid();
4238 {
4239 CGF.EmitBlock(UsingOverflow);
Roman Divacky8a12d842014-11-03 18:32:54 +00004240
Roman Divacky039b9702016-02-20 08:31:24 +00004241 Builder.CreateStore(Builder.getInt8(OverflowLimit), NumRegsAddr);
4242
John McCall7f416cc2015-09-08 08:05:57 +00004243 // Everything in the overflow area is rounded up to a size of at least 4.
4244 CharUnits OverflowAreaAlign = CharUnits::fromQuantity(4);
4245
4246 CharUnits Size;
4247 if (!isIndirect) {
4248 auto TypeInfo = CGF.getContext().getTypeInfoInChars(Ty);
Rui Ueyama83aa9792016-01-14 21:00:27 +00004249 Size = TypeInfo.first.alignTo(OverflowAreaAlign);
John McCall7f416cc2015-09-08 08:05:57 +00004250 } else {
4251 Size = CGF.getPointerSize();
4252 }
4253
James Y Knight751fe282019-02-09 22:22:28 +00004254 Address OverflowAreaAddr = Builder.CreateStructGEP(VAList, 3);
Petar Jovanovic402257b2015-12-04 00:26:47 +00004255 Address OverflowArea(Builder.CreateLoad(OverflowAreaAddr, "argp.cur"),
John McCall7f416cc2015-09-08 08:05:57 +00004256 OverflowAreaAlign);
Petar Jovanovic402257b2015-12-04 00:26:47 +00004257 // Round up address of argument to alignment
4258 CharUnits Align = CGF.getContext().getTypeAlignInChars(Ty);
4259 if (Align > OverflowAreaAlign) {
4260 llvm::Value *Ptr = OverflowArea.getPointer();
4261 OverflowArea = Address(emitRoundPointerUpToAlignment(CGF, Ptr, Align),
4262 Align);
4263 }
Fangrui Song6907ce22018-07-30 19:24:48 +00004264
John McCall7f416cc2015-09-08 08:05:57 +00004265 MemAddr = Builder.CreateElementBitCast(OverflowArea, DirectTy);
4266
4267 // Increase the overflow area.
4268 OverflowArea = Builder.CreateConstInBoundsByteGEP(OverflowArea, Size);
4269 Builder.CreateStore(OverflowArea.getPointer(), OverflowAreaAddr);
4270 CGF.EmitBranch(Cont);
4271 }
Roman Divacky8a12d842014-11-03 18:32:54 +00004272
4273 CGF.EmitBlock(Cont);
4274
John McCall7f416cc2015-09-08 08:05:57 +00004275 // Merge the cases with a phi.
4276 Address Result = emitMergePHI(CGF, RegAddr, UsingRegs, MemAddr, UsingOverflow,
4277 "vaarg.addr");
Roman Divacky8a12d842014-11-03 18:32:54 +00004278
John McCall7f416cc2015-09-08 08:05:57 +00004279 // Load the pointer if the argument was passed indirectly.
4280 if (isIndirect) {
4281 Result = Address(Builder.CreateLoad(Result, "aggr"),
4282 getContext().getTypeAlignInChars(Ty));
Roman Divacky8a12d842014-11-03 18:32:54 +00004283 }
4284
4285 return Result;
4286}
4287
John McCallea8d8bb2010-03-11 00:10:12 +00004288bool
4289PPC32TargetCodeGenInfo::initDwarfEHRegSizeTable(CodeGen::CodeGenFunction &CGF,
4290 llvm::Value *Address) const {
4291 // This is calculated from the LLVM and GCC tables and verified
4292 // against gcc output. AFAIK all ABIs use the same encoding.
4293
4294 CodeGen::CGBuilderTy &Builder = CGF.Builder;
John McCallea8d8bb2010-03-11 00:10:12 +00004295
Chris Lattnerece04092012-02-07 00:39:47 +00004296 llvm::IntegerType *i8 = CGF.Int8Ty;
John McCallea8d8bb2010-03-11 00:10:12 +00004297 llvm::Value *Four8 = llvm::ConstantInt::get(i8, 4);
4298 llvm::Value *Eight8 = llvm::ConstantInt::get(i8, 8);
4299 llvm::Value *Sixteen8 = llvm::ConstantInt::get(i8, 16);
4300
4301 // 0-31: r0-31, the 4-byte general-purpose registers
John McCall943fae92010-05-27 06:19:26 +00004302 AssignToArrayRange(Builder, Address, Four8, 0, 31);
John McCallea8d8bb2010-03-11 00:10:12 +00004303
4304 // 32-63: fp0-31, the 8-byte floating-point registers
John McCall943fae92010-05-27 06:19:26 +00004305 AssignToArrayRange(Builder, Address, Eight8, 32, 63);
John McCallea8d8bb2010-03-11 00:10:12 +00004306
4307 // 64-76 are various 4-byte special-purpose registers:
4308 // 64: mq
4309 // 65: lr
4310 // 66: ctr
4311 // 67: ap
4312 // 68-75 cr0-7
4313 // 76: xer
John McCall943fae92010-05-27 06:19:26 +00004314 AssignToArrayRange(Builder, Address, Four8, 64, 76);
John McCallea8d8bb2010-03-11 00:10:12 +00004315
4316 // 77-108: v0-31, the 16-byte vector registers
John McCall943fae92010-05-27 06:19:26 +00004317 AssignToArrayRange(Builder, Address, Sixteen8, 77, 108);
John McCallea8d8bb2010-03-11 00:10:12 +00004318
4319 // 109: vrsave
4320 // 110: vscr
4321 // 111: spe_acc
4322 // 112: spefscr
4323 // 113: sfp
John McCall943fae92010-05-27 06:19:26 +00004324 AssignToArrayRange(Builder, Address, Four8, 109, 113);
John McCallea8d8bb2010-03-11 00:10:12 +00004325
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00004326 return false;
John McCallea8d8bb2010-03-11 00:10:12 +00004327}
4328
Roman Divackyd966e722012-05-09 18:22:46 +00004329// PowerPC-64
4330
4331namespace {
Bill Schmidt25cb3492012-10-03 19:18:57 +00004332/// PPC64_SVR4_ABIInfo - The 64-bit PowerPC ELF (SVR4) ABI information.
Bob Wilsonfa84fc92018-05-25 21:26:03 +00004333class PPC64_SVR4_ABIInfo : public SwiftABIInfo {
Ulrich Weigandb7122372014-07-21 00:48:09 +00004334public:
4335 enum ABIKind {
4336 ELFv1 = 0,
4337 ELFv2
4338 };
4339
4340private:
4341 static const unsigned GPRBits = 64;
4342 ABIKind Kind;
Hal Finkel0d0a1a52015-03-11 19:14:15 +00004343 bool HasQPX;
Hal Finkel415c2a32016-10-02 02:10:45 +00004344 bool IsSoftFloatABI;
Hal Finkel0d0a1a52015-03-11 19:14:15 +00004345
4346 // A vector of float or double will be promoted to <4 x f32> or <4 x f64> and
4347 // will be passed in a QPX register.
4348 bool IsQPXVectorTy(const Type *Ty) const {
4349 if (!HasQPX)
4350 return false;
4351
4352 if (const VectorType *VT = Ty->getAs<VectorType>()) {
4353 unsigned NumElements = VT->getNumElements();
4354 if (NumElements == 1)
4355 return false;
4356
4357 if (VT->getElementType()->isSpecificBuiltinType(BuiltinType::Double)) {
4358 if (getContext().getTypeSize(Ty) <= 256)
4359 return true;
4360 } else if (VT->getElementType()->
4361 isSpecificBuiltinType(BuiltinType::Float)) {
4362 if (getContext().getTypeSize(Ty) <= 128)
4363 return true;
4364 }
4365 }
4366
4367 return false;
4368 }
4369
4370 bool IsQPXVectorTy(QualType Ty) const {
4371 return IsQPXVectorTy(Ty.getTypePtr());
4372 }
Bill Schmidt25cb3492012-10-03 19:18:57 +00004373
4374public:
Hal Finkel415c2a32016-10-02 02:10:45 +00004375 PPC64_SVR4_ABIInfo(CodeGen::CodeGenTypes &CGT, ABIKind Kind, bool HasQPX,
4376 bool SoftFloatABI)
Bob Wilsonfa84fc92018-05-25 21:26:03 +00004377 : SwiftABIInfo(CGT), Kind(Kind), HasQPX(HasQPX),
Hal Finkel415c2a32016-10-02 02:10:45 +00004378 IsSoftFloatABI(SoftFloatABI) {}
Bill Schmidt25cb3492012-10-03 19:18:57 +00004379
Ulrich Weigand77ed89d2012-11-05 19:13:42 +00004380 bool isPromotableTypeForABI(QualType Ty) const;
John McCall7f416cc2015-09-08 08:05:57 +00004381 CharUnits getParamTypeAlignment(QualType Ty) const;
Ulrich Weigand77ed89d2012-11-05 19:13:42 +00004382
4383 ABIArgInfo classifyReturnType(QualType RetTy) const;
4384 ABIArgInfo classifyArgumentType(QualType Ty) const;
4385
Reid Klecknere9f6a712014-10-31 17:10:41 +00004386 bool isHomogeneousAggregateBaseType(QualType Ty) const override;
4387 bool isHomogeneousAggregateSmallEnough(const Type *Ty,
4388 uint64_t Members) const override;
4389
Bill Schmidt84d37792012-10-12 19:26:17 +00004390 // TODO: We can add more logic to computeInfo to improve performance.
4391 // Example: For aggregate arguments that fit in a register, we could
4392 // use getDirectInReg (as is done below for structs containing a single
4393 // floating-point value) to avoid pushing them to memory on function
4394 // entry. This would require changing the logic in PPCISelLowering
4395 // when lowering the parameters in the caller and args in the callee.
Craig Topper4f12f102014-03-12 06:41:41 +00004396 void computeInfo(CGFunctionInfo &FI) const override {
Reid Kleckner40ca9132014-05-13 22:05:45 +00004397 if (!getCXXABI().classifyReturnType(FI))
4398 FI.getReturnInfo() = classifyReturnType(FI.getReturnType());
Aaron Ballmanec47bc22014-03-17 18:10:01 +00004399 for (auto &I : FI.arguments()) {
Bill Schmidt84d37792012-10-12 19:26:17 +00004400 // We rely on the default argument classification for the most part.
4401 // One exception: An aggregate containing a single floating-point
Bill Schmidt179afae2013-07-23 22:15:57 +00004402 // or vector item must be passed in a register if one is available.
Aaron Ballmanec47bc22014-03-17 18:10:01 +00004403 const Type *T = isSingleElementStruct(I.type, getContext());
Bill Schmidt84d37792012-10-12 19:26:17 +00004404 if (T) {
4405 const BuiltinType *BT = T->getAs<BuiltinType>();
Hal Finkel0d0a1a52015-03-11 19:14:15 +00004406 if (IsQPXVectorTy(T) ||
4407 (T->isVectorType() && getContext().getTypeSize(T) == 128) ||
Ulrich Weigandf4eba982014-07-10 16:39:01 +00004408 (BT && BT->isFloatingPoint())) {
Bill Schmidt84d37792012-10-12 19:26:17 +00004409 QualType QT(T, 0);
Aaron Ballmanec47bc22014-03-17 18:10:01 +00004410 I.info = ABIArgInfo::getDirectInReg(CGT.ConvertType(QT));
Bill Schmidt84d37792012-10-12 19:26:17 +00004411 continue;
4412 }
4413 }
Aaron Ballmanec47bc22014-03-17 18:10:01 +00004414 I.info = classifyArgumentType(I.type);
Bill Schmidt84d37792012-10-12 19:26:17 +00004415 }
4416 }
Bill Schmidt25cb3492012-10-03 19:18:57 +00004417
John McCall7f416cc2015-09-08 08:05:57 +00004418 Address EmitVAArg(CodeGenFunction &CGF, Address VAListAddr,
4419 QualType Ty) const override;
Bob Wilsonfa84fc92018-05-25 21:26:03 +00004420
4421 bool shouldPassIndirectlyForSwift(ArrayRef<llvm::Type*> scalars,
4422 bool asReturnValue) const override {
4423 return occupiesMoreThan(CGT, scalars, /*total*/ 4);
4424 }
4425
4426 bool isSwiftErrorInRegister() const override {
4427 return false;
4428 }
Bill Schmidt25cb3492012-10-03 19:18:57 +00004429};
4430
4431class PPC64_SVR4_TargetCodeGenInfo : public TargetCodeGenInfo {
Hal Finkel0d0a1a52015-03-11 19:14:15 +00004432
Bill Schmidt25cb3492012-10-03 19:18:57 +00004433public:
Ulrich Weigandb7122372014-07-21 00:48:09 +00004434 PPC64_SVR4_TargetCodeGenInfo(CodeGenTypes &CGT,
Hal Finkel415c2a32016-10-02 02:10:45 +00004435 PPC64_SVR4_ABIInfo::ABIKind Kind, bool HasQPX,
4436 bool SoftFloatABI)
4437 : TargetCodeGenInfo(new PPC64_SVR4_ABIInfo(CGT, Kind, HasQPX,
4438 SoftFloatABI)) {}
Bill Schmidt25cb3492012-10-03 19:18:57 +00004439
Craig Topper4f12f102014-03-12 06:41:41 +00004440 int getDwarfEHStackPointer(CodeGen::CodeGenModule &M) const override {
Bill Schmidt25cb3492012-10-03 19:18:57 +00004441 // This is recovered from gcc output.
4442 return 1; // r1 is the dedicated stack pointer
4443 }
4444
4445 bool initDwarfEHRegSizeTable(CodeGen::CodeGenFunction &CGF,
Craig Topper4f12f102014-03-12 06:41:41 +00004446 llvm::Value *Address) const override;
Bill Schmidt25cb3492012-10-03 19:18:57 +00004447};
4448
Roman Divackyd966e722012-05-09 18:22:46 +00004449class PPC64TargetCodeGenInfo : public DefaultTargetCodeGenInfo {
4450public:
4451 PPC64TargetCodeGenInfo(CodeGenTypes &CGT) : DefaultTargetCodeGenInfo(CGT) {}
4452
Craig Topper4f12f102014-03-12 06:41:41 +00004453 int getDwarfEHStackPointer(CodeGen::CodeGenModule &M) const override {
Roman Divackyd966e722012-05-09 18:22:46 +00004454 // This is recovered from gcc output.
4455 return 1; // r1 is the dedicated stack pointer
4456 }
4457
4458 bool initDwarfEHRegSizeTable(CodeGen::CodeGenFunction &CGF,
Craig Topper4f12f102014-03-12 06:41:41 +00004459 llvm::Value *Address) const override;
Roman Divackyd966e722012-05-09 18:22:46 +00004460};
4461
Alexander Kornienkoab9db512015-06-22 23:07:51 +00004462}
Roman Divackyd966e722012-05-09 18:22:46 +00004463
Ulrich Weigand77ed89d2012-11-05 19:13:42 +00004464// Return true if the ABI requires Ty to be passed sign- or zero-
4465// extended to 64 bits.
4466bool
4467PPC64_SVR4_ABIInfo::isPromotableTypeForABI(QualType Ty) const {
4468 // Treat an enum type as its underlying type.
4469 if (const EnumType *EnumTy = Ty->getAs<EnumType>())
4470 Ty = EnumTy->getDecl()->getIntegerType();
4471
4472 // Promotable integer types are required to be promoted by the ABI.
4473 if (Ty->isPromotableIntegerType())
4474 return true;
4475
4476 // In addition to the usual promotable integer types, we also need to
4477 // extend all 32-bit types, since the ABI requires promotion to 64 bits.
4478 if (const BuiltinType *BT = Ty->getAs<BuiltinType>())
4479 switch (BT->getKind()) {
4480 case BuiltinType::Int:
4481 case BuiltinType::UInt:
4482 return true;
4483 default:
4484 break;
4485 }
4486
4487 return false;
4488}
4489
John McCall7f416cc2015-09-08 08:05:57 +00004490/// isAlignedParamType - Determine whether a type requires 16-byte or
4491/// higher alignment in the parameter area. Always returns at least 8.
4492CharUnits PPC64_SVR4_ABIInfo::getParamTypeAlignment(QualType Ty) const {
Ulrich Weigand581badc2014-07-10 17:20:07 +00004493 // Complex types are passed just like their elements.
4494 if (const ComplexType *CTy = Ty->getAs<ComplexType>())
4495 Ty = CTy->getElementType();
4496
4497 // Only vector types of size 16 bytes need alignment (larger types are
4498 // passed via reference, smaller types are not aligned).
Hal Finkel0d0a1a52015-03-11 19:14:15 +00004499 if (IsQPXVectorTy(Ty)) {
4500 if (getContext().getTypeSize(Ty) > 128)
John McCall7f416cc2015-09-08 08:05:57 +00004501 return CharUnits::fromQuantity(32);
Hal Finkel0d0a1a52015-03-11 19:14:15 +00004502
John McCall7f416cc2015-09-08 08:05:57 +00004503 return CharUnits::fromQuantity(16);
Hal Finkel0d0a1a52015-03-11 19:14:15 +00004504 } else if (Ty->isVectorType()) {
John McCall7f416cc2015-09-08 08:05:57 +00004505 return CharUnits::fromQuantity(getContext().getTypeSize(Ty) == 128 ? 16 : 8);
Hal Finkel0d0a1a52015-03-11 19:14:15 +00004506 }
Ulrich Weigand581badc2014-07-10 17:20:07 +00004507
4508 // For single-element float/vector structs, we consider the whole type
4509 // to have the same alignment requirements as its single element.
4510 const Type *AlignAsType = nullptr;
4511 const Type *EltType = isSingleElementStruct(Ty, getContext());
4512 if (EltType) {
4513 const BuiltinType *BT = EltType->getAs<BuiltinType>();
Hal Finkel0d0a1a52015-03-11 19:14:15 +00004514 if (IsQPXVectorTy(EltType) || (EltType->isVectorType() &&
Ulrich Weigand581badc2014-07-10 17:20:07 +00004515 getContext().getTypeSize(EltType) == 128) ||
4516 (BT && BT->isFloatingPoint()))
4517 AlignAsType = EltType;
4518 }
4519
Ulrich Weigandb7122372014-07-21 00:48:09 +00004520 // Likewise for ELFv2 homogeneous aggregates.
4521 const Type *Base = nullptr;
4522 uint64_t Members = 0;
4523 if (!AlignAsType && Kind == ELFv2 &&
4524 isAggregateTypeForABI(Ty) && isHomogeneousAggregate(Ty, Base, Members))
4525 AlignAsType = Base;
4526
Ulrich Weigand581badc2014-07-10 17:20:07 +00004527 // With special case aggregates, only vector base types need alignment.
Hal Finkel0d0a1a52015-03-11 19:14:15 +00004528 if (AlignAsType && IsQPXVectorTy(AlignAsType)) {
4529 if (getContext().getTypeSize(AlignAsType) > 128)
John McCall7f416cc2015-09-08 08:05:57 +00004530 return CharUnits::fromQuantity(32);
Hal Finkel0d0a1a52015-03-11 19:14:15 +00004531
John McCall7f416cc2015-09-08 08:05:57 +00004532 return CharUnits::fromQuantity(16);
Hal Finkel0d0a1a52015-03-11 19:14:15 +00004533 } else if (AlignAsType) {
John McCall7f416cc2015-09-08 08:05:57 +00004534 return CharUnits::fromQuantity(AlignAsType->isVectorType() ? 16 : 8);
Hal Finkel0d0a1a52015-03-11 19:14:15 +00004535 }
Ulrich Weigand581badc2014-07-10 17:20:07 +00004536
4537 // Otherwise, we only need alignment for any aggregate type that
4538 // has an alignment requirement of >= 16 bytes.
Hal Finkel0d0a1a52015-03-11 19:14:15 +00004539 if (isAggregateTypeForABI(Ty) && getContext().getTypeAlign(Ty) >= 128) {
4540 if (HasQPX && getContext().getTypeAlign(Ty) >= 256)
John McCall7f416cc2015-09-08 08:05:57 +00004541 return CharUnits::fromQuantity(32);
4542 return CharUnits::fromQuantity(16);
Hal Finkel0d0a1a52015-03-11 19:14:15 +00004543 }
Ulrich Weigand581badc2014-07-10 17:20:07 +00004544
John McCall7f416cc2015-09-08 08:05:57 +00004545 return CharUnits::fromQuantity(8);
Ulrich Weigand581badc2014-07-10 17:20:07 +00004546}
4547
Ulrich Weigandb7122372014-07-21 00:48:09 +00004548/// isHomogeneousAggregate - Return true if a type is an ELFv2 homogeneous
4549/// aggregate. Base is set to the base element type, and Members is set
4550/// to the number of base elements.
Reid Klecknere9f6a712014-10-31 17:10:41 +00004551bool ABIInfo::isHomogeneousAggregate(QualType Ty, const Type *&Base,
4552 uint64_t &Members) const {
Ulrich Weigandb7122372014-07-21 00:48:09 +00004553 if (const ConstantArrayType *AT = getContext().getAsConstantArrayType(Ty)) {
4554 uint64_t NElements = AT->getSize().getZExtValue();
4555 if (NElements == 0)
4556 return false;
4557 if (!isHomogeneousAggregate(AT->getElementType(), Base, Members))
4558 return false;
4559 Members *= NElements;
4560 } else if (const RecordType *RT = Ty->getAs<RecordType>()) {
4561 const RecordDecl *RD = RT->getDecl();
4562 if (RD->hasFlexibleArrayMember())
4563 return false;
4564
4565 Members = 0;
Ulrich Weiganda094f042014-10-29 13:23:20 +00004566
4567 // If this is a C++ record, check the bases first.
4568 if (const CXXRecordDecl *CXXRD = dyn_cast<CXXRecordDecl>(RD)) {
4569 for (const auto &I : CXXRD->bases()) {
4570 // Ignore empty records.
4571 if (isEmptyRecord(getContext(), I.getType(), true))
4572 continue;
4573
4574 uint64_t FldMembers;
4575 if (!isHomogeneousAggregate(I.getType(), Base, FldMembers))
4576 return false;
4577
4578 Members += FldMembers;
4579 }
4580 }
4581
Ulrich Weigandb7122372014-07-21 00:48:09 +00004582 for (const auto *FD : RD->fields()) {
4583 // Ignore (non-zero arrays of) empty records.
4584 QualType FT = FD->getType();
4585 while (const ConstantArrayType *AT =
4586 getContext().getAsConstantArrayType(FT)) {
4587 if (AT->getSize().getZExtValue() == 0)
4588 return false;
4589 FT = AT->getElementType();
4590 }
4591 if (isEmptyRecord(getContext(), FT, true))
4592 continue;
4593
4594 // For compatibility with GCC, ignore empty bitfields in C++ mode.
4595 if (getContext().getLangOpts().CPlusPlus &&
Richard Smith866dee42018-04-02 18:29:43 +00004596 FD->isZeroLengthBitField(getContext()))
Ulrich Weigandb7122372014-07-21 00:48:09 +00004597 continue;
4598
4599 uint64_t FldMembers;
4600 if (!isHomogeneousAggregate(FD->getType(), Base, FldMembers))
4601 return false;
4602
4603 Members = (RD->isUnion() ?
4604 std::max(Members, FldMembers) : Members + FldMembers);
4605 }
4606
4607 if (!Base)
4608 return false;
4609
4610 // Ensure there is no padding.
4611 if (getContext().getTypeSize(Base) * Members !=
4612 getContext().getTypeSize(Ty))
4613 return false;
4614 } else {
4615 Members = 1;
4616 if (const ComplexType *CT = Ty->getAs<ComplexType>()) {
4617 Members = 2;
4618 Ty = CT->getElementType();
4619 }
4620
Reid Klecknere9f6a712014-10-31 17:10:41 +00004621 // Most ABIs only support float, double, and some vector type widths.
4622 if (!isHomogeneousAggregateBaseType(Ty))
Ulrich Weigandb7122372014-07-21 00:48:09 +00004623 return false;
Ulrich Weigandb7122372014-07-21 00:48:09 +00004624
4625 // The base type must be the same for all members. Types that
4626 // agree in both total size and mode (float vs. vector) are
4627 // treated as being equivalent here.
4628 const Type *TyPtr = Ty.getTypePtr();
Ahmed Bougacha40a34c22016-04-19 17:54:29 +00004629 if (!Base) {
Ulrich Weigandb7122372014-07-21 00:48:09 +00004630 Base = TyPtr;
Ahmed Bougacha40a34c22016-04-19 17:54:29 +00004631 // If it's a non-power-of-2 vector, its size is already a power-of-2,
4632 // so make sure to widen it explicitly.
4633 if (const VectorType *VT = Base->getAs<VectorType>()) {
4634 QualType EltTy = VT->getElementType();
4635 unsigned NumElements =
4636 getContext().getTypeSize(VT) / getContext().getTypeSize(EltTy);
4637 Base = getContext()
4638 .getVectorType(EltTy, NumElements, VT->getVectorKind())
4639 .getTypePtr();
4640 }
4641 }
Ulrich Weigandb7122372014-07-21 00:48:09 +00004642
4643 if (Base->isVectorType() != TyPtr->isVectorType() ||
4644 getContext().getTypeSize(Base) != getContext().getTypeSize(TyPtr))
4645 return false;
4646 }
Reid Klecknere9f6a712014-10-31 17:10:41 +00004647 return Members > 0 && isHomogeneousAggregateSmallEnough(Base, Members);
4648}
Ulrich Weigandb7122372014-07-21 00:48:09 +00004649
Reid Klecknere9f6a712014-10-31 17:10:41 +00004650bool PPC64_SVR4_ABIInfo::isHomogeneousAggregateBaseType(QualType Ty) const {
4651 // Homogeneous aggregates for ELFv2 must have base types of float,
4652 // double, long double, or 128-bit vectors.
4653 if (const BuiltinType *BT = Ty->getAs<BuiltinType>()) {
4654 if (BT->getKind() == BuiltinType::Float ||
4655 BT->getKind() == BuiltinType::Double ||
Lei Huang449252d2018-07-05 04:32:01 +00004656 BT->getKind() == BuiltinType::LongDouble ||
4657 (getContext().getTargetInfo().hasFloat128Type() &&
4658 (BT->getKind() == BuiltinType::Float128))) {
Hal Finkel415c2a32016-10-02 02:10:45 +00004659 if (IsSoftFloatABI)
4660 return false;
Reid Klecknere9f6a712014-10-31 17:10:41 +00004661 return true;
Hal Finkel415c2a32016-10-02 02:10:45 +00004662 }
Reid Klecknere9f6a712014-10-31 17:10:41 +00004663 }
4664 if (const VectorType *VT = Ty->getAs<VectorType>()) {
Hal Finkel0d0a1a52015-03-11 19:14:15 +00004665 if (getContext().getTypeSize(VT) == 128 || IsQPXVectorTy(Ty))
Reid Klecknere9f6a712014-10-31 17:10:41 +00004666 return true;
4667 }
4668 return false;
4669}
4670
4671bool PPC64_SVR4_ABIInfo::isHomogeneousAggregateSmallEnough(
4672 const Type *Base, uint64_t Members) const {
Lei Huang449252d2018-07-05 04:32:01 +00004673 // Vector and fp128 types require one register, other floating point types
4674 // require one or two registers depending on their size.
Reid Klecknere9f6a712014-10-31 17:10:41 +00004675 uint32_t NumRegs =
Lei Huang449252d2018-07-05 04:32:01 +00004676 ((getContext().getTargetInfo().hasFloat128Type() &&
4677 Base->isFloat128Type()) ||
4678 Base->isVectorType()) ? 1
4679 : (getContext().getTypeSize(Base) + 63) / 64;
Ulrich Weigandb7122372014-07-21 00:48:09 +00004680
4681 // Homogeneous Aggregates may occupy at most 8 registers.
Reid Klecknere9f6a712014-10-31 17:10:41 +00004682 return Members * NumRegs <= 8;
Ulrich Weigandb7122372014-07-21 00:48:09 +00004683}
4684
Ulrich Weigand77ed89d2012-11-05 19:13:42 +00004685ABIArgInfo
4686PPC64_SVR4_ABIInfo::classifyArgumentType(QualType Ty) const {
Reid Klecknerb1be6832014-11-15 01:41:41 +00004687 Ty = useFirstFieldIfTransparentUnion(Ty);
4688
Bill Schmidt90b22c92012-11-27 02:46:43 +00004689 if (Ty->isAnyComplexType())
4690 return ABIArgInfo::getDirect();
4691
Ulrich Weigandf4eba982014-07-10 16:39:01 +00004692 // Non-Altivec vector types are passed in GPRs (smaller than 16 bytes)
4693 // or via reference (larger than 16 bytes).
Hal Finkel0d0a1a52015-03-11 19:14:15 +00004694 if (Ty->isVectorType() && !IsQPXVectorTy(Ty)) {
Ulrich Weigandf4eba982014-07-10 16:39:01 +00004695 uint64_t Size = getContext().getTypeSize(Ty);
4696 if (Size > 128)
John McCall7f416cc2015-09-08 08:05:57 +00004697 return getNaturalAlignIndirect(Ty, /*ByVal=*/false);
Ulrich Weigandf4eba982014-07-10 16:39:01 +00004698 else if (Size < 128) {
4699 llvm::Type *CoerceTy = llvm::IntegerType::get(getVMContext(), Size);
4700 return ABIArgInfo::getDirect(CoerceTy);
4701 }
4702 }
4703
Ulrich Weigand77ed89d2012-11-05 19:13:42 +00004704 if (isAggregateTypeForABI(Ty)) {
Mark Lacey3825e832013-10-06 01:33:34 +00004705 if (CGCXXABI::RecordArgABI RAA = getRecordArgABI(Ty, getCXXABI()))
John McCall7f416cc2015-09-08 08:05:57 +00004706 return getNaturalAlignIndirect(Ty, RAA == CGCXXABI::RAA_DirectInMemory);
Ulrich Weigand77ed89d2012-11-05 19:13:42 +00004707
John McCall7f416cc2015-09-08 08:05:57 +00004708 uint64_t ABIAlign = getParamTypeAlignment(Ty).getQuantity();
4709 uint64_t TyAlign = getContext().getTypeAlignInChars(Ty).getQuantity();
Ulrich Weigandb7122372014-07-21 00:48:09 +00004710
4711 // ELFv2 homogeneous aggregates are passed as array types.
4712 const Type *Base = nullptr;
4713 uint64_t Members = 0;
4714 if (Kind == ELFv2 &&
4715 isHomogeneousAggregate(Ty, Base, Members)) {
4716 llvm::Type *BaseTy = CGT.ConvertType(QualType(Base, 0));
4717 llvm::Type *CoerceTy = llvm::ArrayType::get(BaseTy, Members);
4718 return ABIArgInfo::getDirect(CoerceTy);
4719 }
4720
Ulrich Weigand601957f2014-07-21 00:56:36 +00004721 // If an aggregate may end up fully in registers, we do not
4722 // use the ByVal method, but pass the aggregate as array.
4723 // This is usually beneficial since we avoid forcing the
4724 // back-end to store the argument to memory.
4725 uint64_t Bits = getContext().getTypeSize(Ty);
4726 if (Bits > 0 && Bits <= 8 * GPRBits) {
4727 llvm::Type *CoerceTy;
4728
4729 // Types up to 8 bytes are passed as integer type (which will be
4730 // properly aligned in the argument save area doubleword).
4731 if (Bits <= GPRBits)
Rui Ueyama83aa9792016-01-14 21:00:27 +00004732 CoerceTy =
4733 llvm::IntegerType::get(getVMContext(), llvm::alignTo(Bits, 8));
Ulrich Weigand601957f2014-07-21 00:56:36 +00004734 // Larger types are passed as arrays, with the base type selected
4735 // according to the required alignment in the save area.
4736 else {
4737 uint64_t RegBits = ABIAlign * 8;
Rui Ueyama83aa9792016-01-14 21:00:27 +00004738 uint64_t NumRegs = llvm::alignTo(Bits, RegBits) / RegBits;
Ulrich Weigand601957f2014-07-21 00:56:36 +00004739 llvm::Type *RegTy = llvm::IntegerType::get(getVMContext(), RegBits);
4740 CoerceTy = llvm::ArrayType::get(RegTy, NumRegs);
4741 }
4742
4743 return ABIArgInfo::getDirect(CoerceTy);
4744 }
4745
Ulrich Weigandb7122372014-07-21 00:48:09 +00004746 // All other aggregates are passed ByVal.
John McCall7f416cc2015-09-08 08:05:57 +00004747 return ABIArgInfo::getIndirect(CharUnits::fromQuantity(ABIAlign),
4748 /*ByVal=*/true,
Ulrich Weigand581badc2014-07-10 17:20:07 +00004749 /*Realign=*/TyAlign > ABIAlign);
Ulrich Weigand77ed89d2012-11-05 19:13:42 +00004750 }
4751
Alex Bradburye41a5e22018-01-12 20:08:16 +00004752 return (isPromotableTypeForABI(Ty) ? ABIArgInfo::getExtend(Ty)
4753 : ABIArgInfo::getDirect());
Ulrich Weigand77ed89d2012-11-05 19:13:42 +00004754}
4755
4756ABIArgInfo
4757PPC64_SVR4_ABIInfo::classifyReturnType(QualType RetTy) const {
4758 if (RetTy->isVoidType())
4759 return ABIArgInfo::getIgnore();
4760
Bill Schmidta3d121c2012-12-17 04:20:17 +00004761 if (RetTy->isAnyComplexType())
4762 return ABIArgInfo::getDirect();
4763
Ulrich Weigandf4eba982014-07-10 16:39:01 +00004764 // Non-Altivec vector types are returned in GPRs (smaller than 16 bytes)
4765 // or via reference (larger than 16 bytes).
Hal Finkel0d0a1a52015-03-11 19:14:15 +00004766 if (RetTy->isVectorType() && !IsQPXVectorTy(RetTy)) {
Ulrich Weigandf4eba982014-07-10 16:39:01 +00004767 uint64_t Size = getContext().getTypeSize(RetTy);
4768 if (Size > 128)
John McCall7f416cc2015-09-08 08:05:57 +00004769 return getNaturalAlignIndirect(RetTy);
Ulrich Weigandf4eba982014-07-10 16:39:01 +00004770 else if (Size < 128) {
4771 llvm::Type *CoerceTy = llvm::IntegerType::get(getVMContext(), Size);
4772 return ABIArgInfo::getDirect(CoerceTy);
4773 }
4774 }
4775
Ulrich Weigandb7122372014-07-21 00:48:09 +00004776 if (isAggregateTypeForABI(RetTy)) {
4777 // ELFv2 homogeneous aggregates are returned as array types.
4778 const Type *Base = nullptr;
4779 uint64_t Members = 0;
4780 if (Kind == ELFv2 &&
4781 isHomogeneousAggregate(RetTy, Base, Members)) {
4782 llvm::Type *BaseTy = CGT.ConvertType(QualType(Base, 0));
4783 llvm::Type *CoerceTy = llvm::ArrayType::get(BaseTy, Members);
4784 return ABIArgInfo::getDirect(CoerceTy);
4785 }
4786
4787 // ELFv2 small aggregates are returned in up to two registers.
4788 uint64_t Bits = getContext().getTypeSize(RetTy);
4789 if (Kind == ELFv2 && Bits <= 2 * GPRBits) {
4790 if (Bits == 0)
4791 return ABIArgInfo::getIgnore();
4792
4793 llvm::Type *CoerceTy;
4794 if (Bits > GPRBits) {
4795 CoerceTy = llvm::IntegerType::get(getVMContext(), GPRBits);
Serge Guelton1d993272017-05-09 19:31:30 +00004796 CoerceTy = llvm::StructType::get(CoerceTy, CoerceTy);
Ulrich Weigandb7122372014-07-21 00:48:09 +00004797 } else
Rui Ueyama83aa9792016-01-14 21:00:27 +00004798 CoerceTy =
4799 llvm::IntegerType::get(getVMContext(), llvm::alignTo(Bits, 8));
Ulrich Weigandb7122372014-07-21 00:48:09 +00004800 return ABIArgInfo::getDirect(CoerceTy);
4801 }
4802
4803 // All other aggregates are returned indirectly.
John McCall7f416cc2015-09-08 08:05:57 +00004804 return getNaturalAlignIndirect(RetTy);
Ulrich Weigandb7122372014-07-21 00:48:09 +00004805 }
Ulrich Weigand77ed89d2012-11-05 19:13:42 +00004806
Alex Bradburye41a5e22018-01-12 20:08:16 +00004807 return (isPromotableTypeForABI(RetTy) ? ABIArgInfo::getExtend(RetTy)
4808 : ABIArgInfo::getDirect());
Ulrich Weigand77ed89d2012-11-05 19:13:42 +00004809}
4810
Bill Schmidt25cb3492012-10-03 19:18:57 +00004811// Based on ARMABIInfo::EmitVAArg, adjusted for 64-bit machine.
John McCall7f416cc2015-09-08 08:05:57 +00004812Address PPC64_SVR4_ABIInfo::EmitVAArg(CodeGenFunction &CGF, Address VAListAddr,
4813 QualType Ty) const {
4814 auto TypeInfo = getContext().getTypeInfoInChars(Ty);
4815 TypeInfo.second = getParamTypeAlignment(Ty);
Bill Schmidt25cb3492012-10-03 19:18:57 +00004816
John McCall7f416cc2015-09-08 08:05:57 +00004817 CharUnits SlotSize = CharUnits::fromQuantity(8);
Bill Schmidt25cb3492012-10-03 19:18:57 +00004818
Bill Schmidt924c4782013-01-14 17:45:36 +00004819 // If we have a complex type and the base type is smaller than 8 bytes,
4820 // the ABI calls for the real and imaginary parts to be right-adjusted
4821 // in separate doublewords. However, Clang expects us to produce a
4822 // pointer to a structure with the two parts packed tightly. So generate
4823 // loads of the real and imaginary parts relative to the va_list pointer,
4824 // and store them to a temporary structure.
John McCall7f416cc2015-09-08 08:05:57 +00004825 if (const ComplexType *CTy = Ty->getAs<ComplexType>()) {
4826 CharUnits EltSize = TypeInfo.first / 2;
4827 if (EltSize < SlotSize) {
4828 Address Addr = emitVoidPtrDirectVAArg(CGF, VAListAddr, CGF.Int8Ty,
4829 SlotSize * 2, SlotSize,
4830 SlotSize, /*AllowHigher*/ true);
4831
4832 Address RealAddr = Addr;
4833 Address ImagAddr = RealAddr;
4834 if (CGF.CGM.getDataLayout().isBigEndian()) {
4835 RealAddr = CGF.Builder.CreateConstInBoundsByteGEP(RealAddr,
4836 SlotSize - EltSize);
4837 ImagAddr = CGF.Builder.CreateConstInBoundsByteGEP(ImagAddr,
4838 2 * SlotSize - EltSize);
4839 } else {
4840 ImagAddr = CGF.Builder.CreateConstInBoundsByteGEP(RealAddr, SlotSize);
4841 }
4842
4843 llvm::Type *EltTy = CGF.ConvertTypeForMem(CTy->getElementType());
4844 RealAddr = CGF.Builder.CreateElementBitCast(RealAddr, EltTy);
4845 ImagAddr = CGF.Builder.CreateElementBitCast(ImagAddr, EltTy);
4846 llvm::Value *Real = CGF.Builder.CreateLoad(RealAddr, ".vareal");
4847 llvm::Value *Imag = CGF.Builder.CreateLoad(ImagAddr, ".vaimag");
4848
4849 Address Temp = CGF.CreateMemTemp(Ty, "vacplx");
4850 CGF.EmitStoreOfComplex({Real, Imag}, CGF.MakeAddrLValue(Temp, Ty),
4851 /*init*/ true);
4852 return Temp;
Ulrich Weigandbebc55b2014-06-20 16:37:40 +00004853 }
Bill Schmidt924c4782013-01-14 17:45:36 +00004854 }
4855
John McCall7f416cc2015-09-08 08:05:57 +00004856 // Otherwise, just use the general rule.
4857 return emitVoidPtrVAArg(CGF, VAListAddr, Ty, /*Indirect*/ false,
4858 TypeInfo, SlotSize, /*AllowHigher*/ true);
Bill Schmidt25cb3492012-10-03 19:18:57 +00004859}
4860
4861static bool
4862PPC64_initDwarfEHRegSizeTable(CodeGen::CodeGenFunction &CGF,
4863 llvm::Value *Address) {
Roman Divackyd966e722012-05-09 18:22:46 +00004864 // This is calculated from the LLVM and GCC tables and verified
4865 // against gcc output. AFAIK all ABIs use the same encoding.
4866
4867 CodeGen::CGBuilderTy &Builder = CGF.Builder;
4868
4869 llvm::IntegerType *i8 = CGF.Int8Ty;
4870 llvm::Value *Four8 = llvm::ConstantInt::get(i8, 4);
4871 llvm::Value *Eight8 = llvm::ConstantInt::get(i8, 8);
4872 llvm::Value *Sixteen8 = llvm::ConstantInt::get(i8, 16);
4873
4874 // 0-31: r0-31, the 8-byte general-purpose registers
4875 AssignToArrayRange(Builder, Address, Eight8, 0, 31);
4876
4877 // 32-63: fp0-31, the 8-byte floating-point registers
4878 AssignToArrayRange(Builder, Address, Eight8, 32, 63);
4879
Hal Finkel84832a72016-08-30 02:38:34 +00004880 // 64-67 are various 8-byte special-purpose registers:
Roman Divackyd966e722012-05-09 18:22:46 +00004881 // 64: mq
4882 // 65: lr
4883 // 66: ctr
4884 // 67: ap
Hal Finkel84832a72016-08-30 02:38:34 +00004885 AssignToArrayRange(Builder, Address, Eight8, 64, 67);
4886
4887 // 68-76 are various 4-byte special-purpose registers:
Roman Divackyd966e722012-05-09 18:22:46 +00004888 // 68-75 cr0-7
4889 // 76: xer
Hal Finkel84832a72016-08-30 02:38:34 +00004890 AssignToArrayRange(Builder, Address, Four8, 68, 76);
Roman Divackyd966e722012-05-09 18:22:46 +00004891
4892 // 77-108: v0-31, the 16-byte vector registers
4893 AssignToArrayRange(Builder, Address, Sixteen8, 77, 108);
4894
4895 // 109: vrsave
4896 // 110: vscr
4897 // 111: spe_acc
4898 // 112: spefscr
4899 // 113: sfp
Hal Finkel84832a72016-08-30 02:38:34 +00004900 // 114: tfhar
4901 // 115: tfiar
4902 // 116: texasr
4903 AssignToArrayRange(Builder, Address, Eight8, 109, 116);
Roman Divackyd966e722012-05-09 18:22:46 +00004904
4905 return false;
4906}
John McCallea8d8bb2010-03-11 00:10:12 +00004907
Bill Schmidt25cb3492012-10-03 19:18:57 +00004908bool
4909PPC64_SVR4_TargetCodeGenInfo::initDwarfEHRegSizeTable(
4910 CodeGen::CodeGenFunction &CGF,
4911 llvm::Value *Address) const {
4912
4913 return PPC64_initDwarfEHRegSizeTable(CGF, Address);
4914}
4915
4916bool
4917PPC64TargetCodeGenInfo::initDwarfEHRegSizeTable(CodeGen::CodeGenFunction &CGF,
4918 llvm::Value *Address) const {
4919
4920 return PPC64_initDwarfEHRegSizeTable(CGF, Address);
4921}
4922
Chris Lattner0cf24192010-06-28 20:05:43 +00004923//===----------------------------------------------------------------------===//
Tim Northover573cbee2014-05-24 12:52:07 +00004924// AArch64 ABI Implementation
Tim Northovera2ee4332014-03-29 15:09:45 +00004925//===----------------------------------------------------------------------===//
4926
4927namespace {
4928
John McCall12f23522016-04-04 18:33:08 +00004929class AArch64ABIInfo : public SwiftABIInfo {
Tim Northovera2ee4332014-03-29 15:09:45 +00004930public:
4931 enum ABIKind {
4932 AAPCS = 0,
Martin Storsjo502de222017-07-13 17:59:14 +00004933 DarwinPCS,
4934 Win64
Tim Northovera2ee4332014-03-29 15:09:45 +00004935 };
4936
4937private:
4938 ABIKind Kind;
4939
4940public:
John McCall12f23522016-04-04 18:33:08 +00004941 AArch64ABIInfo(CodeGenTypes &CGT, ABIKind Kind)
4942 : SwiftABIInfo(CGT), Kind(Kind) {}
Tim Northovera2ee4332014-03-29 15:09:45 +00004943
4944private:
4945 ABIKind getABIKind() const { return Kind; }
4946 bool isDarwinPCS() const { return Kind == DarwinPCS; }
4947
4948 ABIArgInfo classifyReturnType(QualType RetTy) const;
Tim Northoverb047bfa2014-11-27 21:02:49 +00004949 ABIArgInfo classifyArgumentType(QualType RetTy) const;
Reid Klecknere9f6a712014-10-31 17:10:41 +00004950 bool isHomogeneousAggregateBaseType(QualType Ty) const override;
4951 bool isHomogeneousAggregateSmallEnough(const Type *Ty,
4952 uint64_t Members) const override;
4953
Tim Northovera2ee4332014-03-29 15:09:45 +00004954 bool isIllegalVectorType(QualType Ty) const;
4955
David Blaikie1cbb9712014-11-14 19:09:44 +00004956 void computeInfo(CGFunctionInfo &FI) const override {
Akira Hatanakad791e922018-03-19 17:38:40 +00004957 if (!::classifyReturnType(getCXXABI(), FI, *this))
Reid Kleckner40ca9132014-05-13 22:05:45 +00004958 FI.getReturnInfo() = classifyReturnType(FI.getReturnType());
Tim Northover5ffc0922014-04-17 10:20:38 +00004959
Tim Northoverb047bfa2014-11-27 21:02:49 +00004960 for (auto &it : FI.arguments())
4961 it.info = classifyArgumentType(it.type);
Tim Northovera2ee4332014-03-29 15:09:45 +00004962 }
4963
John McCall7f416cc2015-09-08 08:05:57 +00004964 Address EmitDarwinVAArg(Address VAListAddr, QualType Ty,
4965 CodeGenFunction &CGF) const;
Tim Northovera2ee4332014-03-29 15:09:45 +00004966
John McCall7f416cc2015-09-08 08:05:57 +00004967 Address EmitAAPCSVAArg(Address VAListAddr, QualType Ty,
4968 CodeGenFunction &CGF) const;
Tim Northovera2ee4332014-03-29 15:09:45 +00004969
John McCall7f416cc2015-09-08 08:05:57 +00004970 Address EmitVAArg(CodeGenFunction &CGF, Address VAListAddr,
4971 QualType Ty) const override {
Martin Storsjo502de222017-07-13 17:59:14 +00004972 return Kind == Win64 ? EmitMSVAArg(CGF, VAListAddr, Ty)
4973 : isDarwinPCS() ? EmitDarwinVAArg(VAListAddr, Ty, CGF)
4974 : EmitAAPCSVAArg(VAListAddr, Ty, CGF);
Tim Northovera2ee4332014-03-29 15:09:45 +00004975 }
John McCall12f23522016-04-04 18:33:08 +00004976
Martin Storsjo502de222017-07-13 17:59:14 +00004977 Address EmitMSVAArg(CodeGenFunction &CGF, Address VAListAddr,
4978 QualType Ty) const override;
4979
John McCall56331e22018-01-07 06:28:49 +00004980 bool shouldPassIndirectlyForSwift(ArrayRef<llvm::Type*> scalars,
John McCall12f23522016-04-04 18:33:08 +00004981 bool asReturnValue) const override {
4982 return occupiesMoreThan(CGT, scalars, /*total*/ 4);
4983 }
Arnold Schwaighoferb0f2c332016-12-01 18:07:38 +00004984 bool isSwiftErrorInRegister() const override {
4985 return true;
4986 }
Arnold Schwaighofer634e3202017-05-26 18:11:54 +00004987
4988 bool isLegalVectorTypeForSwift(CharUnits totalSize, llvm::Type *eltTy,
4989 unsigned elts) const override;
Tim Northovera2ee4332014-03-29 15:09:45 +00004990};
4991
Tim Northover573cbee2014-05-24 12:52:07 +00004992class AArch64TargetCodeGenInfo : public TargetCodeGenInfo {
Tim Northovera2ee4332014-03-29 15:09:45 +00004993public:
Tim Northover573cbee2014-05-24 12:52:07 +00004994 AArch64TargetCodeGenInfo(CodeGenTypes &CGT, AArch64ABIInfo::ABIKind Kind)
4995 : TargetCodeGenInfo(new AArch64ABIInfo(CGT, Kind)) {}
Tim Northovera2ee4332014-03-29 15:09:45 +00004996
Alexander Kornienko34eb2072015-04-11 02:00:23 +00004997 StringRef getARCRetainAutoreleasedReturnValueMarker() const override {
Oliver Stannard7f188642017-08-21 09:54:46 +00004998 return "mov\tfp, fp\t\t// marker for objc_retainAutoreleaseReturnValue";
Tim Northovera2ee4332014-03-29 15:09:45 +00004999 }
5000
Alexander Kornienko34eb2072015-04-11 02:00:23 +00005001 int getDwarfEHStackPointer(CodeGen::CodeGenModule &M) const override {
5002 return 31;
5003 }
Tim Northovera2ee4332014-03-29 15:09:45 +00005004
Alexander Kornienko34eb2072015-04-11 02:00:23 +00005005 bool doesReturnSlotInterfereWithArgs() const override { return false; }
Luke Cheeseman0ac44c12018-08-17 12:55:05 +00005006
5007 void setTargetAttributes(const Decl *D, llvm::GlobalValue *GV,
5008 CodeGen::CodeGenModule &CGM) const override {
5009 const FunctionDecl *FD = dyn_cast_or_null<FunctionDecl>(D);
5010 if (!FD)
5011 return;
5012 llvm::Function *Fn = cast<llvm::Function>(GV);
5013
5014 auto Kind = CGM.getCodeGenOpts().getSignReturnAddress();
Luke Cheesemana8a24aa2018-10-25 15:23:49 +00005015 if (Kind != CodeGenOptions::SignReturnAddressScope::None) {
5016 Fn->addFnAttr("sign-return-address",
5017 Kind == CodeGenOptions::SignReturnAddressScope::All
5018 ? "all"
5019 : "non-leaf");
Luke Cheeseman0ac44c12018-08-17 12:55:05 +00005020
Luke Cheesemana8a24aa2018-10-25 15:23:49 +00005021 auto Key = CGM.getCodeGenOpts().getSignReturnAddressKey();
5022 Fn->addFnAttr("sign-return-address-key",
5023 Key == CodeGenOptions::SignReturnAddressKeyValue::AKey
5024 ? "a_key"
5025 : "b_key");
5026 }
5027
5028 if (CGM.getCodeGenOpts().BranchTargetEnforcement)
5029 Fn->addFnAttr("branch-target-enforcement");
Luke Cheeseman0ac44c12018-08-17 12:55:05 +00005030 }
Tim Northovera2ee4332014-03-29 15:09:45 +00005031};
Martin Storsjo1c8af272017-07-20 05:47:06 +00005032
5033class WindowsAArch64TargetCodeGenInfo : public AArch64TargetCodeGenInfo {
5034public:
5035 WindowsAArch64TargetCodeGenInfo(CodeGenTypes &CGT, AArch64ABIInfo::ABIKind K)
5036 : AArch64TargetCodeGenInfo(CGT, K) {}
5037
Eli Friedman540be6d2018-10-26 01:31:57 +00005038 void setTargetAttributes(const Decl *D, llvm::GlobalValue *GV,
5039 CodeGen::CodeGenModule &CGM) const override;
5040
Martin Storsjo1c8af272017-07-20 05:47:06 +00005041 void getDependentLibraryOption(llvm::StringRef Lib,
5042 llvm::SmallString<24> &Opt) const override {
5043 Opt = "/DEFAULTLIB:" + qualifyWindowsLibrary(Lib);
5044 }
5045
5046 void getDetectMismatchOption(llvm::StringRef Name, llvm::StringRef Value,
5047 llvm::SmallString<32> &Opt) const override {
5048 Opt = "/FAILIFMISMATCH:\"" + Name.str() + "=" + Value.str() + "\"";
5049 }
5050};
Eli Friedman540be6d2018-10-26 01:31:57 +00005051
5052void WindowsAArch64TargetCodeGenInfo::setTargetAttributes(
5053 const Decl *D, llvm::GlobalValue *GV, CodeGen::CodeGenModule &CGM) const {
5054 AArch64TargetCodeGenInfo::setTargetAttributes(D, GV, CGM);
5055 if (GV->isDeclaration())
5056 return;
5057 addStackProbeTargetAttributes(D, GV, CGM);
5058}
Alexander Kornienkoab9db512015-06-22 23:07:51 +00005059}
Tim Northovera2ee4332014-03-29 15:09:45 +00005060
Tim Northoverb047bfa2014-11-27 21:02:49 +00005061ABIArgInfo AArch64ABIInfo::classifyArgumentType(QualType Ty) const {
Reid Klecknerb1be6832014-11-15 01:41:41 +00005062 Ty = useFirstFieldIfTransparentUnion(Ty);
5063
Tim Northovera2ee4332014-03-29 15:09:45 +00005064 // Handle illegal vector types here.
5065 if (isIllegalVectorType(Ty)) {
5066 uint64_t Size = getContext().getTypeSize(Ty);
Nirav Dave9a8f97e2016-02-22 16:48:42 +00005067 // Android promotes <2 x i8> to i16, not i32
Ahmed Bougacha8862cae2016-04-19 17:54:24 +00005068 if (isAndroid() && (Size <= 16)) {
Nirav Dave9a8f97e2016-02-22 16:48:42 +00005069 llvm::Type *ResType = llvm::Type::getInt16Ty(getVMContext());
5070 return ABIArgInfo::getDirect(ResType);
5071 }
Tim Northovera2ee4332014-03-29 15:09:45 +00005072 if (Size <= 32) {
5073 llvm::Type *ResType = llvm::Type::getInt32Ty(getVMContext());
Tim Northovera2ee4332014-03-29 15:09:45 +00005074 return ABIArgInfo::getDirect(ResType);
5075 }
5076 if (Size == 64) {
5077 llvm::Type *ResType =
5078 llvm::VectorType::get(llvm::Type::getInt32Ty(getVMContext()), 2);
Tim Northovera2ee4332014-03-29 15:09:45 +00005079 return ABIArgInfo::getDirect(ResType);
5080 }
5081 if (Size == 128) {
5082 llvm::Type *ResType =
5083 llvm::VectorType::get(llvm::Type::getInt32Ty(getVMContext()), 4);
Tim Northovera2ee4332014-03-29 15:09:45 +00005084 return ABIArgInfo::getDirect(ResType);
5085 }
John McCall7f416cc2015-09-08 08:05:57 +00005086 return getNaturalAlignIndirect(Ty, /*ByVal=*/false);
Tim Northovera2ee4332014-03-29 15:09:45 +00005087 }
Tim Northovera2ee4332014-03-29 15:09:45 +00005088
5089 if (!isAggregateTypeForABI(Ty)) {
5090 // Treat an enum type as its underlying type.
5091 if (const EnumType *EnumTy = Ty->getAs<EnumType>())
5092 Ty = EnumTy->getDecl()->getIntegerType();
5093
Tim Northovera2ee4332014-03-29 15:09:45 +00005094 return (Ty->isPromotableIntegerType() && isDarwinPCS()
Alex Bradburye41a5e22018-01-12 20:08:16 +00005095 ? ABIArgInfo::getExtend(Ty)
Tim Northovera2ee4332014-03-29 15:09:45 +00005096 : ABIArgInfo::getDirect());
5097 }
5098
5099 // Structures with either a non-trivial destructor or a non-trivial
5100 // copy constructor are always indirect.
Reid Kleckner40ca9132014-05-13 22:05:45 +00005101 if (CGCXXABI::RecordArgABI RAA = getRecordArgABI(Ty, getCXXABI())) {
John McCall7f416cc2015-09-08 08:05:57 +00005102 return getNaturalAlignIndirect(Ty, /*ByVal=*/RAA ==
5103 CGCXXABI::RAA_DirectInMemory);
Tim Northovera2ee4332014-03-29 15:09:45 +00005104 }
5105
5106 // Empty records are always ignored on Darwin, but actually passed in C++ mode
5107 // elsewhere for GNU compatibility.
Tim Northover23bcad22017-05-05 22:36:06 +00005108 uint64_t Size = getContext().getTypeSize(Ty);
5109 bool IsEmpty = isEmptyRecord(getContext(), Ty, true);
5110 if (IsEmpty || Size == 0) {
Tim Northovera2ee4332014-03-29 15:09:45 +00005111 if (!getContext().getLangOpts().CPlusPlus || isDarwinPCS())
5112 return ABIArgInfo::getIgnore();
5113
Tim Northover23bcad22017-05-05 22:36:06 +00005114 // GNU C mode. The only argument that gets ignored is an empty one with size
5115 // 0.
5116 if (IsEmpty && Size == 0)
5117 return ABIArgInfo::getIgnore();
Tim Northovera2ee4332014-03-29 15:09:45 +00005118 return ABIArgInfo::getDirect(llvm::Type::getInt8Ty(getVMContext()));
5119 }
5120
5121 // Homogeneous Floating-point Aggregates (HFAs) need to be expanded.
Craig Topper8a13c412014-05-21 05:09:00 +00005122 const Type *Base = nullptr;
Tim Northovera2ee4332014-03-29 15:09:45 +00005123 uint64_t Members = 0;
Reid Klecknere9f6a712014-10-31 17:10:41 +00005124 if (isHomogeneousAggregate(Ty, Base, Members)) {
Tim Northoverb047bfa2014-11-27 21:02:49 +00005125 return ABIArgInfo::getDirect(
5126 llvm::ArrayType::get(CGT.ConvertType(QualType(Base, 0)), Members));
Tim Northovera2ee4332014-03-29 15:09:45 +00005127 }
5128
5129 // Aggregates <= 16 bytes are passed directly in registers or on the stack.
Tim Northovera2ee4332014-03-29 15:09:45 +00005130 if (Size <= 128) {
Pirama Arumuga Nainarbb846a32016-07-27 19:01:51 +00005131 // On RenderScript, coerce Aggregates <= 16 bytes to an integer array of
5132 // same size and alignment.
5133 if (getTarget().isRenderScriptTarget()) {
5134 return coerceToIntArray(Ty, getContext(), getVMContext());
5135 }
Momchil Velikov20208cc2018-07-30 17:48:23 +00005136 unsigned Alignment;
5137 if (Kind == AArch64ABIInfo::AAPCS) {
5138 Alignment = getContext().getTypeUnadjustedAlign(Ty);
5139 Alignment = Alignment < 128 ? 64 : 128;
5140 } else {
5141 Alignment = getContext().getTypeAlign(Ty);
5142 }
Davide Italiano7a3b69d2017-04-03 16:51:39 +00005143 Size = llvm::alignTo(Size, 64); // round up to multiple of 8 bytes
Tim Northoverb047bfa2014-11-27 21:02:49 +00005144
Tim Northovera2ee4332014-03-29 15:09:45 +00005145 // We use a pair of i64 for 16-byte aggregate with 8-byte alignment.
5146 // For aggregates with 16-byte alignment, we use i128.
Tim Northoverc801b4a2014-04-15 14:55:11 +00005147 if (Alignment < 128 && Size == 128) {
Tim Northovera2ee4332014-03-29 15:09:45 +00005148 llvm::Type *BaseTy = llvm::Type::getInt64Ty(getVMContext());
5149 return ABIArgInfo::getDirect(llvm::ArrayType::get(BaseTy, Size / 64));
5150 }
5151 return ABIArgInfo::getDirect(llvm::IntegerType::get(getVMContext(), Size));
5152 }
5153
John McCall7f416cc2015-09-08 08:05:57 +00005154 return getNaturalAlignIndirect(Ty, /*ByVal=*/false);
Tim Northovera2ee4332014-03-29 15:09:45 +00005155}
5156
Tim Northover573cbee2014-05-24 12:52:07 +00005157ABIArgInfo AArch64ABIInfo::classifyReturnType(QualType RetTy) const {
Tim Northovera2ee4332014-03-29 15:09:45 +00005158 if (RetTy->isVoidType())
5159 return ABIArgInfo::getIgnore();
5160
5161 // Large vector types should be returned via memory.
5162 if (RetTy->isVectorType() && getContext().getTypeSize(RetTy) > 128)
John McCall7f416cc2015-09-08 08:05:57 +00005163 return getNaturalAlignIndirect(RetTy);
Tim Northovera2ee4332014-03-29 15:09:45 +00005164
5165 if (!isAggregateTypeForABI(RetTy)) {
5166 // Treat an enum type as its underlying type.
5167 if (const EnumType *EnumTy = RetTy->getAs<EnumType>())
5168 RetTy = EnumTy->getDecl()->getIntegerType();
5169
Tim Northover4dab6982014-04-18 13:46:08 +00005170 return (RetTy->isPromotableIntegerType() && isDarwinPCS()
Alex Bradburye41a5e22018-01-12 20:08:16 +00005171 ? ABIArgInfo::getExtend(RetTy)
Tim Northover4dab6982014-04-18 13:46:08 +00005172 : ABIArgInfo::getDirect());
Tim Northovera2ee4332014-03-29 15:09:45 +00005173 }
5174
Tim Northover23bcad22017-05-05 22:36:06 +00005175 uint64_t Size = getContext().getTypeSize(RetTy);
5176 if (isEmptyRecord(getContext(), RetTy, true) || Size == 0)
Tim Northovera2ee4332014-03-29 15:09:45 +00005177 return ABIArgInfo::getIgnore();
5178
Craig Topper8a13c412014-05-21 05:09:00 +00005179 const Type *Base = nullptr;
Reid Klecknere9f6a712014-10-31 17:10:41 +00005180 uint64_t Members = 0;
5181 if (isHomogeneousAggregate(RetTy, Base, Members))
Tim Northovera2ee4332014-03-29 15:09:45 +00005182 // Homogeneous Floating-point Aggregates (HFAs) are returned directly.
5183 return ABIArgInfo::getDirect();
5184
5185 // Aggregates <= 16 bytes are returned directly in registers or on the stack.
Tim Northovera2ee4332014-03-29 15:09:45 +00005186 if (Size <= 128) {
Pirama Arumuga Nainarbb846a32016-07-27 19:01:51 +00005187 // On RenderScript, coerce Aggregates <= 16 bytes to an integer array of
5188 // same size and alignment.
5189 if (getTarget().isRenderScriptTarget()) {
5190 return coerceToIntArray(RetTy, getContext(), getVMContext());
5191 }
Pete Cooper635b5092015-04-17 22:16:24 +00005192 unsigned Alignment = getContext().getTypeAlign(RetTy);
Davide Italiano7a3b69d2017-04-03 16:51:39 +00005193 Size = llvm::alignTo(Size, 64); // round up to multiple of 8 bytes
Pete Cooper635b5092015-04-17 22:16:24 +00005194
5195 // We use a pair of i64 for 16-byte aggregate with 8-byte alignment.
5196 // For aggregates with 16-byte alignment, we use i128.
5197 if (Alignment < 128 && Size == 128) {
5198 llvm::Type *BaseTy = llvm::Type::getInt64Ty(getVMContext());
5199 return ABIArgInfo::getDirect(llvm::ArrayType::get(BaseTy, Size / 64));
5200 }
Tim Northovera2ee4332014-03-29 15:09:45 +00005201 return ABIArgInfo::getDirect(llvm::IntegerType::get(getVMContext(), Size));
5202 }
5203
John McCall7f416cc2015-09-08 08:05:57 +00005204 return getNaturalAlignIndirect(RetTy);
Tim Northovera2ee4332014-03-29 15:09:45 +00005205}
5206
Tim Northover573cbee2014-05-24 12:52:07 +00005207/// isIllegalVectorType - check whether the vector type is legal for AArch64.
5208bool AArch64ABIInfo::isIllegalVectorType(QualType Ty) const {
Tim Northovera2ee4332014-03-29 15:09:45 +00005209 if (const VectorType *VT = Ty->getAs<VectorType>()) {
5210 // Check whether VT is legal.
5211 unsigned NumElements = VT->getNumElements();
5212 uint64_t Size = getContext().getTypeSize(VT);
Tim Northover34fd4fb2016-05-03 19:24:47 +00005213 // NumElements should be power of 2.
Tim Northover360d2b32016-05-03 19:22:41 +00005214 if (!llvm::isPowerOf2_32(NumElements))
Tim Northovera2ee4332014-03-29 15:09:45 +00005215 return true;
5216 return Size != 64 && (Size != 128 || NumElements == 1);
5217 }
5218 return false;
5219}
5220
Arnold Schwaighofer634e3202017-05-26 18:11:54 +00005221bool AArch64ABIInfo::isLegalVectorTypeForSwift(CharUnits totalSize,
5222 llvm::Type *eltTy,
5223 unsigned elts) const {
5224 if (!llvm::isPowerOf2_32(elts))
5225 return false;
5226 if (totalSize.getQuantity() != 8 &&
5227 (totalSize.getQuantity() != 16 || elts == 1))
5228 return false;
5229 return true;
5230}
5231
Reid Klecknere9f6a712014-10-31 17:10:41 +00005232bool AArch64ABIInfo::isHomogeneousAggregateBaseType(QualType Ty) const {
5233 // Homogeneous aggregates for AAPCS64 must have base types of a floating
5234 // point type or a short-vector type. This is the same as the 32-bit ABI,
5235 // but with the difference that any floating-point type is allowed,
5236 // including __fp16.
5237 if (const BuiltinType *BT = Ty->getAs<BuiltinType>()) {
5238 if (BT->isFloatingPoint())
5239 return true;
5240 } else if (const VectorType *VT = Ty->getAs<VectorType>()) {
5241 unsigned VecSize = getContext().getTypeSize(VT);
5242 if (VecSize == 64 || VecSize == 128)
5243 return true;
5244 }
5245 return false;
5246}
5247
5248bool AArch64ABIInfo::isHomogeneousAggregateSmallEnough(const Type *Base,
5249 uint64_t Members) const {
5250 return Members <= 4;
5251}
5252
John McCall7f416cc2015-09-08 08:05:57 +00005253Address AArch64ABIInfo::EmitAAPCSVAArg(Address VAListAddr,
Tim Northoverb047bfa2014-11-27 21:02:49 +00005254 QualType Ty,
5255 CodeGenFunction &CGF) const {
5256 ABIArgInfo AI = classifyArgumentType(Ty);
Reid Klecknere9f6a712014-10-31 17:10:41 +00005257 bool IsIndirect = AI.isIndirect();
5258
Tim Northoverb047bfa2014-11-27 21:02:49 +00005259 llvm::Type *BaseTy = CGF.ConvertType(Ty);
5260 if (IsIndirect)
5261 BaseTy = llvm::PointerType::getUnqual(BaseTy);
5262 else if (AI.getCoerceToType())
5263 BaseTy = AI.getCoerceToType();
5264
5265 unsigned NumRegs = 1;
5266 if (llvm::ArrayType *ArrTy = dyn_cast<llvm::ArrayType>(BaseTy)) {
5267 BaseTy = ArrTy->getElementType();
5268 NumRegs = ArrTy->getNumElements();
5269 }
5270 bool IsFPR = BaseTy->isFloatingPointTy() || BaseTy->isVectorTy();
5271
Tim Northovera2ee4332014-03-29 15:09:45 +00005272 // The AArch64 va_list type and handling is specified in the Procedure Call
5273 // Standard, section B.4:
5274 //
5275 // struct {
5276 // void *__stack;
5277 // void *__gr_top;
5278 // void *__vr_top;
5279 // int __gr_offs;
5280 // int __vr_offs;
5281 // };
5282
5283 llvm::BasicBlock *MaybeRegBlock = CGF.createBasicBlock("vaarg.maybe_reg");
5284 llvm::BasicBlock *InRegBlock = CGF.createBasicBlock("vaarg.in_reg");
5285 llvm::BasicBlock *OnStackBlock = CGF.createBasicBlock("vaarg.on_stack");
5286 llvm::BasicBlock *ContBlock = CGF.createBasicBlock("vaarg.end");
Tim Northovera2ee4332014-03-29 15:09:45 +00005287
John McCall7f416cc2015-09-08 08:05:57 +00005288 auto TyInfo = getContext().getTypeInfoInChars(Ty);
5289 CharUnits TyAlign = TyInfo.second;
5290
5291 Address reg_offs_p = Address::invalid();
5292 llvm::Value *reg_offs = nullptr;
Tim Northovera2ee4332014-03-29 15:09:45 +00005293 int reg_top_index;
John McCall7f416cc2015-09-08 08:05:57 +00005294 int RegSize = IsIndirect ? 8 : TyInfo.first.getQuantity();
Tim Northoverb047bfa2014-11-27 21:02:49 +00005295 if (!IsFPR) {
Tim Northovera2ee4332014-03-29 15:09:45 +00005296 // 3 is the field number of __gr_offs
James Y Knight751fe282019-02-09 22:22:28 +00005297 reg_offs_p = CGF.Builder.CreateStructGEP(VAListAddr, 3, "gr_offs_p");
Tim Northovera2ee4332014-03-29 15:09:45 +00005298 reg_offs = CGF.Builder.CreateLoad(reg_offs_p, "gr_offs");
5299 reg_top_index = 1; // field number for __gr_top
Rui Ueyama83aa9792016-01-14 21:00:27 +00005300 RegSize = llvm::alignTo(RegSize, 8);
Tim Northovera2ee4332014-03-29 15:09:45 +00005301 } else {
Tim Northovera2ee4332014-03-29 15:09:45 +00005302 // 4 is the field number of __vr_offs.
James Y Knight751fe282019-02-09 22:22:28 +00005303 reg_offs_p = CGF.Builder.CreateStructGEP(VAListAddr, 4, "vr_offs_p");
Tim Northovera2ee4332014-03-29 15:09:45 +00005304 reg_offs = CGF.Builder.CreateLoad(reg_offs_p, "vr_offs");
5305 reg_top_index = 2; // field number for __vr_top
Tim Northoverb047bfa2014-11-27 21:02:49 +00005306 RegSize = 16 * NumRegs;
Tim Northovera2ee4332014-03-29 15:09:45 +00005307 }
5308
5309 //=======================================
5310 // Find out where argument was passed
5311 //=======================================
5312
5313 // If reg_offs >= 0 we're already using the stack for this type of
5314 // argument. We don't want to keep updating reg_offs (in case it overflows,
5315 // though anyone passing 2GB of arguments, each at most 16 bytes, deserves
5316 // whatever they get).
Craig Topper8a13c412014-05-21 05:09:00 +00005317 llvm::Value *UsingStack = nullptr;
Tim Northovera2ee4332014-03-29 15:09:45 +00005318 UsingStack = CGF.Builder.CreateICmpSGE(
5319 reg_offs, llvm::ConstantInt::get(CGF.Int32Ty, 0));
5320
5321 CGF.Builder.CreateCondBr(UsingStack, OnStackBlock, MaybeRegBlock);
5322
5323 // Otherwise, at least some kind of argument could go in these registers, the
Bob Wilson3abf1692014-04-21 01:23:36 +00005324 // question is whether this particular type is too big.
Tim Northovera2ee4332014-03-29 15:09:45 +00005325 CGF.EmitBlock(MaybeRegBlock);
5326
5327 // Integer arguments may need to correct register alignment (for example a
5328 // "struct { __int128 a; };" gets passed in x_2N, x_{2N+1}). In this case we
5329 // align __gr_offs to calculate the potential address.
John McCall7f416cc2015-09-08 08:05:57 +00005330 if (!IsFPR && !IsIndirect && TyAlign.getQuantity() > 8) {
5331 int Align = TyAlign.getQuantity();
Tim Northovera2ee4332014-03-29 15:09:45 +00005332
5333 reg_offs = CGF.Builder.CreateAdd(
5334 reg_offs, llvm::ConstantInt::get(CGF.Int32Ty, Align - 1),
5335 "align_regoffs");
5336 reg_offs = CGF.Builder.CreateAnd(
5337 reg_offs, llvm::ConstantInt::get(CGF.Int32Ty, -Align),
5338 "aligned_regoffs");
5339 }
5340
5341 // Update the gr_offs/vr_offs pointer for next call to va_arg on this va_list.
John McCall7f416cc2015-09-08 08:05:57 +00005342 // The fact that this is done unconditionally reflects the fact that
5343 // allocating an argument to the stack also uses up all the remaining
5344 // registers of the appropriate kind.
Craig Topper8a13c412014-05-21 05:09:00 +00005345 llvm::Value *NewOffset = nullptr;
Tim Northovera2ee4332014-03-29 15:09:45 +00005346 NewOffset = CGF.Builder.CreateAdd(
5347 reg_offs, llvm::ConstantInt::get(CGF.Int32Ty, RegSize), "new_reg_offs");
5348 CGF.Builder.CreateStore(NewOffset, reg_offs_p);
5349
5350 // Now we're in a position to decide whether this argument really was in
5351 // registers or not.
Craig Topper8a13c412014-05-21 05:09:00 +00005352 llvm::Value *InRegs = nullptr;
Tim Northovera2ee4332014-03-29 15:09:45 +00005353 InRegs = CGF.Builder.CreateICmpSLE(
5354 NewOffset, llvm::ConstantInt::get(CGF.Int32Ty, 0), "inreg");
5355
5356 CGF.Builder.CreateCondBr(InRegs, InRegBlock, OnStackBlock);
5357
5358 //=======================================
5359 // Argument was in registers
5360 //=======================================
5361
5362 // Now we emit the code for if the argument was originally passed in
5363 // registers. First start the appropriate block:
5364 CGF.EmitBlock(InRegBlock);
5365
John McCall7f416cc2015-09-08 08:05:57 +00005366 llvm::Value *reg_top = nullptr;
James Y Knight751fe282019-02-09 22:22:28 +00005367 Address reg_top_p =
5368 CGF.Builder.CreateStructGEP(VAListAddr, reg_top_index, "reg_top_p");
Tim Northovera2ee4332014-03-29 15:09:45 +00005369 reg_top = CGF.Builder.CreateLoad(reg_top_p, "reg_top");
John McCall7f416cc2015-09-08 08:05:57 +00005370 Address BaseAddr(CGF.Builder.CreateInBoundsGEP(reg_top, reg_offs),
5371 CharUnits::fromQuantity(IsFPR ? 16 : 8));
5372 Address RegAddr = Address::invalid();
5373 llvm::Type *MemTy = CGF.ConvertTypeForMem(Ty);
Tim Northovera2ee4332014-03-29 15:09:45 +00005374
5375 if (IsIndirect) {
5376 // If it's been passed indirectly (actually a struct), whatever we find from
5377 // stored registers or on the stack will actually be a struct **.
5378 MemTy = llvm::PointerType::getUnqual(MemTy);
5379 }
5380
Craig Topper8a13c412014-05-21 05:09:00 +00005381 const Type *Base = nullptr;
Reid Klecknere9f6a712014-10-31 17:10:41 +00005382 uint64_t NumMembers = 0;
5383 bool IsHFA = isHomogeneousAggregate(Ty, Base, NumMembers);
James Molloy467be602014-05-07 14:45:55 +00005384 if (IsHFA && NumMembers > 1) {
Tim Northovera2ee4332014-03-29 15:09:45 +00005385 // Homogeneous aggregates passed in registers will have their elements split
5386 // and stored 16-bytes apart regardless of size (they're notionally in qN,
5387 // qN+1, ...). We reload and store into a temporary local variable
5388 // contiguously.
5389 assert(!IsIndirect && "Homogeneous aggregates should be passed directly");
John McCall7f416cc2015-09-08 08:05:57 +00005390 auto BaseTyInfo = getContext().getTypeInfoInChars(QualType(Base, 0));
Tim Northovera2ee4332014-03-29 15:09:45 +00005391 llvm::Type *BaseTy = CGF.ConvertType(QualType(Base, 0));
5392 llvm::Type *HFATy = llvm::ArrayType::get(BaseTy, NumMembers);
John McCall7f416cc2015-09-08 08:05:57 +00005393 Address Tmp = CGF.CreateTempAlloca(HFATy,
5394 std::max(TyAlign, BaseTyInfo.second));
Tim Northovera2ee4332014-03-29 15:09:45 +00005395
John McCall7f416cc2015-09-08 08:05:57 +00005396 // On big-endian platforms, the value will be right-aligned in its slot.
5397 int Offset = 0;
5398 if (CGF.CGM.getDataLayout().isBigEndian() &&
5399 BaseTyInfo.first.getQuantity() < 16)
5400 Offset = 16 - BaseTyInfo.first.getQuantity();
5401
Tim Northovera2ee4332014-03-29 15:09:45 +00005402 for (unsigned i = 0; i < NumMembers; ++i) {
John McCall7f416cc2015-09-08 08:05:57 +00005403 CharUnits BaseOffset = CharUnits::fromQuantity(16 * i + Offset);
5404 Address LoadAddr =
5405 CGF.Builder.CreateConstInBoundsByteGEP(BaseAddr, BaseOffset);
5406 LoadAddr = CGF.Builder.CreateElementBitCast(LoadAddr, BaseTy);
5407
James Y Knight751fe282019-02-09 22:22:28 +00005408 Address StoreAddr = CGF.Builder.CreateConstArrayGEP(Tmp, i);
Tim Northovera2ee4332014-03-29 15:09:45 +00005409
5410 llvm::Value *Elem = CGF.Builder.CreateLoad(LoadAddr);
5411 CGF.Builder.CreateStore(Elem, StoreAddr);
5412 }
5413
John McCall7f416cc2015-09-08 08:05:57 +00005414 RegAddr = CGF.Builder.CreateElementBitCast(Tmp, MemTy);
Tim Northovera2ee4332014-03-29 15:09:45 +00005415 } else {
John McCall7f416cc2015-09-08 08:05:57 +00005416 // Otherwise the object is contiguous in memory.
5417
5418 // It might be right-aligned in its slot.
5419 CharUnits SlotSize = BaseAddr.getAlignment();
5420 if (CGF.CGM.getDataLayout().isBigEndian() && !IsIndirect &&
James Molloy467be602014-05-07 14:45:55 +00005421 (IsHFA || !isAggregateTypeForABI(Ty)) &&
John McCall7f416cc2015-09-08 08:05:57 +00005422 TyInfo.first < SlotSize) {
5423 CharUnits Offset = SlotSize - TyInfo.first;
5424 BaseAddr = CGF.Builder.CreateConstInBoundsByteGEP(BaseAddr, Offset);
Tim Northovera2ee4332014-03-29 15:09:45 +00005425 }
5426
John McCall7f416cc2015-09-08 08:05:57 +00005427 RegAddr = CGF.Builder.CreateElementBitCast(BaseAddr, MemTy);
Tim Northovera2ee4332014-03-29 15:09:45 +00005428 }
5429
5430 CGF.EmitBranch(ContBlock);
5431
5432 //=======================================
5433 // Argument was on the stack
5434 //=======================================
5435 CGF.EmitBlock(OnStackBlock);
5436
James Y Knight751fe282019-02-09 22:22:28 +00005437 Address stack_p = CGF.Builder.CreateStructGEP(VAListAddr, 0, "stack_p");
John McCall7f416cc2015-09-08 08:05:57 +00005438 llvm::Value *OnStackPtr = CGF.Builder.CreateLoad(stack_p, "stack");
Tim Northovera2ee4332014-03-29 15:09:45 +00005439
John McCall7f416cc2015-09-08 08:05:57 +00005440 // Again, stack arguments may need realignment. In this case both integer and
Tim Northovera2ee4332014-03-29 15:09:45 +00005441 // floating-point ones might be affected.
John McCall7f416cc2015-09-08 08:05:57 +00005442 if (!IsIndirect && TyAlign.getQuantity() > 8) {
5443 int Align = TyAlign.getQuantity();
Tim Northovera2ee4332014-03-29 15:09:45 +00005444
John McCall7f416cc2015-09-08 08:05:57 +00005445 OnStackPtr = CGF.Builder.CreatePtrToInt(OnStackPtr, CGF.Int64Ty);
Tim Northovera2ee4332014-03-29 15:09:45 +00005446
John McCall7f416cc2015-09-08 08:05:57 +00005447 OnStackPtr = CGF.Builder.CreateAdd(
5448 OnStackPtr, llvm::ConstantInt::get(CGF.Int64Ty, Align - 1),
Tim Northovera2ee4332014-03-29 15:09:45 +00005449 "align_stack");
John McCall7f416cc2015-09-08 08:05:57 +00005450 OnStackPtr = CGF.Builder.CreateAnd(
5451 OnStackPtr, llvm::ConstantInt::get(CGF.Int64Ty, -Align),
Tim Northovera2ee4332014-03-29 15:09:45 +00005452 "align_stack");
5453
John McCall7f416cc2015-09-08 08:05:57 +00005454 OnStackPtr = CGF.Builder.CreateIntToPtr(OnStackPtr, CGF.Int8PtrTy);
Tim Northovera2ee4332014-03-29 15:09:45 +00005455 }
John McCall7f416cc2015-09-08 08:05:57 +00005456 Address OnStackAddr(OnStackPtr,
5457 std::max(CharUnits::fromQuantity(8), TyAlign));
Tim Northovera2ee4332014-03-29 15:09:45 +00005458
John McCall7f416cc2015-09-08 08:05:57 +00005459 // All stack slots are multiples of 8 bytes.
5460 CharUnits StackSlotSize = CharUnits::fromQuantity(8);
5461 CharUnits StackSize;
Tim Northovera2ee4332014-03-29 15:09:45 +00005462 if (IsIndirect)
John McCall7f416cc2015-09-08 08:05:57 +00005463 StackSize = StackSlotSize;
Tim Northovera2ee4332014-03-29 15:09:45 +00005464 else
Rui Ueyama83aa9792016-01-14 21:00:27 +00005465 StackSize = TyInfo.first.alignTo(StackSlotSize);
Tim Northovera2ee4332014-03-29 15:09:45 +00005466
John McCall7f416cc2015-09-08 08:05:57 +00005467 llvm::Value *StackSizeC = CGF.Builder.getSize(StackSize);
Tim Northovera2ee4332014-03-29 15:09:45 +00005468 llvm::Value *NewStack =
John McCall7f416cc2015-09-08 08:05:57 +00005469 CGF.Builder.CreateInBoundsGEP(OnStackPtr, StackSizeC, "new_stack");
Tim Northovera2ee4332014-03-29 15:09:45 +00005470
5471 // Write the new value of __stack for the next call to va_arg
5472 CGF.Builder.CreateStore(NewStack, stack_p);
5473
5474 if (CGF.CGM.getDataLayout().isBigEndian() && !isAggregateTypeForABI(Ty) &&
John McCall7f416cc2015-09-08 08:05:57 +00005475 TyInfo.first < StackSlotSize) {
5476 CharUnits Offset = StackSlotSize - TyInfo.first;
5477 OnStackAddr = CGF.Builder.CreateConstInBoundsByteGEP(OnStackAddr, Offset);
Tim Northovera2ee4332014-03-29 15:09:45 +00005478 }
5479
John McCall7f416cc2015-09-08 08:05:57 +00005480 OnStackAddr = CGF.Builder.CreateElementBitCast(OnStackAddr, MemTy);
Tim Northovera2ee4332014-03-29 15:09:45 +00005481
5482 CGF.EmitBranch(ContBlock);
5483
5484 //=======================================
5485 // Tidy up
5486 //=======================================
5487 CGF.EmitBlock(ContBlock);
5488
John McCall7f416cc2015-09-08 08:05:57 +00005489 Address ResAddr = emitMergePHI(CGF, RegAddr, InRegBlock,
5490 OnStackAddr, OnStackBlock, "vaargs.addr");
Tim Northovera2ee4332014-03-29 15:09:45 +00005491
5492 if (IsIndirect)
John McCall7f416cc2015-09-08 08:05:57 +00005493 return Address(CGF.Builder.CreateLoad(ResAddr, "vaarg.addr"),
5494 TyInfo.second);
Tim Northovera2ee4332014-03-29 15:09:45 +00005495
5496 return ResAddr;
5497}
5498
John McCall7f416cc2015-09-08 08:05:57 +00005499Address AArch64ABIInfo::EmitDarwinVAArg(Address VAListAddr, QualType Ty,
5500 CodeGenFunction &CGF) const {
5501 // The backend's lowering doesn't support va_arg for aggregates or
5502 // illegal vector types. Lower VAArg here for these cases and use
5503 // the LLVM va_arg instruction for everything else.
Tim Northovera2ee4332014-03-29 15:09:45 +00005504 if (!isAggregateTypeForABI(Ty) && !isIllegalVectorType(Ty))
James Y Knight29b5f082016-02-24 02:59:33 +00005505 return EmitVAArgInstr(CGF, VAListAddr, Ty, ABIArgInfo::getDirect());
Tim Northovera2ee4332014-03-29 15:09:45 +00005506
John McCall7f416cc2015-09-08 08:05:57 +00005507 CharUnits SlotSize = CharUnits::fromQuantity(8);
Tim Northovera2ee4332014-03-29 15:09:45 +00005508
John McCall7f416cc2015-09-08 08:05:57 +00005509 // Empty records are ignored for parameter passing purposes.
Tim Northovera2ee4332014-03-29 15:09:45 +00005510 if (isEmptyRecord(getContext(), Ty, true)) {
John McCall7f416cc2015-09-08 08:05:57 +00005511 Address Addr(CGF.Builder.CreateLoad(VAListAddr, "ap.cur"), SlotSize);
5512 Addr = CGF.Builder.CreateElementBitCast(Addr, CGF.ConvertTypeForMem(Ty));
5513 return Addr;
Tim Northovera2ee4332014-03-29 15:09:45 +00005514 }
5515
John McCall7f416cc2015-09-08 08:05:57 +00005516 // The size of the actual thing passed, which might end up just
5517 // being a pointer for indirect types.
5518 auto TyInfo = getContext().getTypeInfoInChars(Ty);
5519
5520 // Arguments bigger than 16 bytes which aren't homogeneous
5521 // aggregates should be passed indirectly.
5522 bool IsIndirect = false;
5523 if (TyInfo.first.getQuantity() > 16) {
5524 const Type *Base = nullptr;
5525 uint64_t Members = 0;
5526 IsIndirect = !isHomogeneousAggregate(Ty, Base, Members);
Tim Northovera2ee4332014-03-29 15:09:45 +00005527 }
5528
John McCall7f416cc2015-09-08 08:05:57 +00005529 return emitVoidPtrVAArg(CGF, VAListAddr, Ty, IsIndirect,
5530 TyInfo, SlotSize, /*AllowHigherAlign*/ true);
Tim Northovera2ee4332014-03-29 15:09:45 +00005531}
5532
Martin Storsjo502de222017-07-13 17:59:14 +00005533Address AArch64ABIInfo::EmitMSVAArg(CodeGenFunction &CGF, Address VAListAddr,
5534 QualType Ty) const {
5535 return emitVoidPtrVAArg(CGF, VAListAddr, Ty, /*indirect*/ false,
5536 CGF.getContext().getTypeInfoInChars(Ty),
5537 CharUnits::fromQuantity(8),
5538 /*allowHigherAlign*/ false);
5539}
5540
Tim Northovera2ee4332014-03-29 15:09:45 +00005541//===----------------------------------------------------------------------===//
Daniel Dunbard59655c2009-09-12 00:59:49 +00005542// ARM ABI Implementation
Chris Lattner0cf24192010-06-28 20:05:43 +00005543//===----------------------------------------------------------------------===//
Daniel Dunbard59655c2009-09-12 00:59:49 +00005544
5545namespace {
5546
John McCall12f23522016-04-04 18:33:08 +00005547class ARMABIInfo : public SwiftABIInfo {
Daniel Dunbar020daa92009-09-12 01:00:39 +00005548public:
5549 enum ABIKind {
5550 APCS = 0,
5551 AAPCS = 1,
Tim Northover5627d392015-10-30 16:30:45 +00005552 AAPCS_VFP = 2,
5553 AAPCS16_VFP = 3,
Daniel Dunbar020daa92009-09-12 01:00:39 +00005554 };
5555
5556private:
5557 ABIKind Kind;
5558
5559public:
John McCall12f23522016-04-04 18:33:08 +00005560 ARMABIInfo(CodeGenTypes &CGT, ABIKind _Kind)
5561 : SwiftABIInfo(CGT), Kind(_Kind) {
Anton Korobeynikovd90dd792014-12-02 16:04:58 +00005562 setCCs();
John McCall882987f2013-02-28 19:01:20 +00005563 }
Daniel Dunbar020daa92009-09-12 01:00:39 +00005564
John McCall3480ef22011-08-30 01:42:09 +00005565 bool isEABI() const {
Joerg Sonnenberger782e6aa2013-12-12 21:29:27 +00005566 switch (getTarget().getTriple().getEnvironment()) {
5567 case llvm::Triple::Android:
5568 case llvm::Triple::EABI:
Joerg Sonnenbergerd75a1f82013-12-16 19:16:04 +00005569 case llvm::Triple::EABIHF:
Joerg Sonnenberger782e6aa2013-12-12 21:29:27 +00005570 case llvm::Triple::GNUEABI:
Joerg Sonnenberger0c1652d2013-12-16 18:30:28 +00005571 case llvm::Triple::GNUEABIHF:
Rafael Espindola0fa66802016-06-24 21:35:06 +00005572 case llvm::Triple::MuslEABI:
5573 case llvm::Triple::MuslEABIHF:
Joerg Sonnenberger782e6aa2013-12-12 21:29:27 +00005574 return true;
5575 default:
5576 return false;
5577 }
John McCall3480ef22011-08-30 01:42:09 +00005578 }
5579
Joerg Sonnenbergerd75a1f82013-12-16 19:16:04 +00005580 bool isEABIHF() const {
5581 switch (getTarget().getTriple().getEnvironment()) {
5582 case llvm::Triple::EABIHF:
5583 case llvm::Triple::GNUEABIHF:
Rafael Espindola0fa66802016-06-24 21:35:06 +00005584 case llvm::Triple::MuslEABIHF:
Joerg Sonnenbergerd75a1f82013-12-16 19:16:04 +00005585 return true;
5586 default:
5587 return false;
5588 }
5589 }
5590
Daniel Dunbar020daa92009-09-12 01:00:39 +00005591 ABIKind getABIKind() const { return Kind; }
5592
Tim Northovera484bc02013-10-01 14:34:25 +00005593private:
Amara Emerson9dc78782014-01-28 10:56:36 +00005594 ABIArgInfo classifyReturnType(QualType RetTy, bool isVariadic) const;
Tim Northoverbc784d12015-02-24 17:22:40 +00005595 ABIArgInfo classifyArgumentType(QualType RetTy, bool isVariadic) const;
Mikhail Maltseve04ab4f2018-09-12 09:19:19 +00005596 ABIArgInfo classifyHomogeneousAggregate(QualType Ty, const Type *Base,
5597 uint64_t Members) const;
5598 ABIArgInfo coerceIllegalVector(QualType Ty) const;
Manman Renfef9e312012-10-16 19:18:39 +00005599 bool isIllegalVectorType(QualType Ty) const;
Anton Korobeynikov244360d2009-06-05 22:08:42 +00005600
Reid Klecknere9f6a712014-10-31 17:10:41 +00005601 bool isHomogeneousAggregateBaseType(QualType Ty) const override;
5602 bool isHomogeneousAggregateSmallEnough(const Type *Ty,
5603 uint64_t Members) const override;
5604
Craig Topper4f12f102014-03-12 06:41:41 +00005605 void computeInfo(CGFunctionInfo &FI) const override;
Anton Korobeynikov244360d2009-06-05 22:08:42 +00005606
John McCall7f416cc2015-09-08 08:05:57 +00005607 Address EmitVAArg(CodeGenFunction &CGF, Address VAListAddr,
5608 QualType Ty) const override;
John McCall882987f2013-02-28 19:01:20 +00005609
5610 llvm::CallingConv::ID getLLVMDefaultCC() const;
5611 llvm::CallingConv::ID getABIDefaultCC() const;
Anton Korobeynikovd90dd792014-12-02 16:04:58 +00005612 void setCCs();
John McCall12f23522016-04-04 18:33:08 +00005613
John McCall56331e22018-01-07 06:28:49 +00005614 bool shouldPassIndirectlyForSwift(ArrayRef<llvm::Type*> scalars,
John McCall12f23522016-04-04 18:33:08 +00005615 bool asReturnValue) const override {
5616 return occupiesMoreThan(CGT, scalars, /*total*/ 4);
5617 }
Arnold Schwaighoferb0f2c332016-12-01 18:07:38 +00005618 bool isSwiftErrorInRegister() const override {
5619 return true;
5620 }
Arnold Schwaighofer634e3202017-05-26 18:11:54 +00005621 bool isLegalVectorTypeForSwift(CharUnits totalSize, llvm::Type *eltTy,
5622 unsigned elts) const override;
Anton Korobeynikov244360d2009-06-05 22:08:42 +00005623};
5624
Anton Korobeynikov55bcea12010-01-10 12:58:08 +00005625class ARMTargetCodeGenInfo : public TargetCodeGenInfo {
5626public:
Chris Lattner2b037972010-07-29 02:01:43 +00005627 ARMTargetCodeGenInfo(CodeGenTypes &CGT, ARMABIInfo::ABIKind K)
5628 :TargetCodeGenInfo(new ARMABIInfo(CGT, K)) {}
John McCallbeec5a02010-03-06 00:35:14 +00005629
John McCall3480ef22011-08-30 01:42:09 +00005630 const ARMABIInfo &getABIInfo() const {
5631 return static_cast<const ARMABIInfo&>(TargetCodeGenInfo::getABIInfo());
5632 }
5633
Craig Topper4f12f102014-03-12 06:41:41 +00005634 int getDwarfEHStackPointer(CodeGen::CodeGenModule &M) const override {
John McCallbeec5a02010-03-06 00:35:14 +00005635 return 13;
5636 }
Roman Divackyc1617352011-05-18 19:36:54 +00005637
Craig Topper4f12f102014-03-12 06:41:41 +00005638 StringRef getARCRetainAutoreleasedReturnValueMarker() const override {
Oliver Stannard7f188642017-08-21 09:54:46 +00005639 return "mov\tr7, r7\t\t// marker for objc_retainAutoreleaseReturnValue";
John McCall31168b02011-06-15 23:02:42 +00005640 }
5641
Roman Divackyc1617352011-05-18 19:36:54 +00005642 bool initDwarfEHRegSizeTable(CodeGen::CodeGenFunction &CGF,
Craig Topper4f12f102014-03-12 06:41:41 +00005643 llvm::Value *Address) const override {
Chris Lattnerece04092012-02-07 00:39:47 +00005644 llvm::Value *Four8 = llvm::ConstantInt::get(CGF.Int8Ty, 4);
Roman Divackyc1617352011-05-18 19:36:54 +00005645
5646 // 0-15 are the 16 integer registers.
Chris Lattnerece04092012-02-07 00:39:47 +00005647 AssignToArrayRange(CGF.Builder, Address, Four8, 0, 15);
Roman Divackyc1617352011-05-18 19:36:54 +00005648 return false;
5649 }
John McCall3480ef22011-08-30 01:42:09 +00005650
Craig Topper4f12f102014-03-12 06:41:41 +00005651 unsigned getSizeOfUnwindException() const override {
John McCall3480ef22011-08-30 01:42:09 +00005652 if (getABIInfo().isEABI()) return 88;
5653 return TargetCodeGenInfo::getSizeOfUnwindException();
5654 }
Tim Northovera484bc02013-10-01 14:34:25 +00005655
Eric Christopher162c91c2015-06-05 22:03:00 +00005656 void setTargetAttributes(const Decl *D, llvm::GlobalValue *GV,
Rafael Espindoladeb10be2018-02-07 19:04:41 +00005657 CodeGen::CodeGenModule &CGM) const override {
5658 if (GV->isDeclaration())
Simon Atanasyan1a116db2017-07-20 20:34:18 +00005659 return;
Akira Hatanakaaec6b2c2015-10-08 20:26:34 +00005660 const FunctionDecl *FD = dyn_cast_or_null<FunctionDecl>(D);
Tim Northovera484bc02013-10-01 14:34:25 +00005661 if (!FD)
5662 return;
5663
5664 const ARMInterruptAttr *Attr = FD->getAttr<ARMInterruptAttr>();
5665 if (!Attr)
5666 return;
5667
5668 const char *Kind;
5669 switch (Attr->getInterrupt()) {
5670 case ARMInterruptAttr::Generic: Kind = ""; break;
5671 case ARMInterruptAttr::IRQ: Kind = "IRQ"; break;
5672 case ARMInterruptAttr::FIQ: Kind = "FIQ"; break;
5673 case ARMInterruptAttr::SWI: Kind = "SWI"; break;
5674 case ARMInterruptAttr::ABORT: Kind = "ABORT"; break;
5675 case ARMInterruptAttr::UNDEF: Kind = "UNDEF"; break;
5676 }
5677
5678 llvm::Function *Fn = cast<llvm::Function>(GV);
5679
5680 Fn->addFnAttr("interrupt", Kind);
5681
Tim Northover5627d392015-10-30 16:30:45 +00005682 ARMABIInfo::ABIKind ABI = cast<ARMABIInfo>(getABIInfo()).getABIKind();
5683 if (ABI == ARMABIInfo::APCS)
Tim Northovera484bc02013-10-01 14:34:25 +00005684 return;
5685
5686 // AAPCS guarantees that sp will be 8-byte aligned on any public interface,
5687 // however this is not necessarily true on taking any interrupt. Instruct
5688 // the backend to perform a realignment as part of the function prologue.
5689 llvm::AttrBuilder B;
5690 B.addStackAlignmentAttr(8);
Reid Kleckneree4930b2017-05-02 22:07:37 +00005691 Fn->addAttributes(llvm::AttributeList::FunctionIndex, B);
Tim Northovera484bc02013-10-01 14:34:25 +00005692 }
Anton Korobeynikov55bcea12010-01-10 12:58:08 +00005693};
5694
Saleem Abdulrasool71d1dd12015-01-30 23:29:19 +00005695class WindowsARMTargetCodeGenInfo : public ARMTargetCodeGenInfo {
Saleem Abdulrasool71d1dd12015-01-30 23:29:19 +00005696public:
5697 WindowsARMTargetCodeGenInfo(CodeGenTypes &CGT, ARMABIInfo::ABIKind K)
5698 : ARMTargetCodeGenInfo(CGT, K) {}
5699
Eric Christopher162c91c2015-06-05 22:03:00 +00005700 void setTargetAttributes(const Decl *D, llvm::GlobalValue *GV,
Rafael Espindoladeb10be2018-02-07 19:04:41 +00005701 CodeGen::CodeGenModule &CGM) const override;
Saleem Abdulrasool6e9e88b2016-06-23 13:45:33 +00005702
5703 void getDependentLibraryOption(llvm::StringRef Lib,
5704 llvm::SmallString<24> &Opt) const override {
5705 Opt = "/DEFAULTLIB:" + qualifyWindowsLibrary(Lib);
5706 }
5707
5708 void getDetectMismatchOption(llvm::StringRef Name, llvm::StringRef Value,
5709 llvm::SmallString<32> &Opt) const override {
5710 Opt = "/FAILIFMISMATCH:\"" + Name.str() + "=" + Value.str() + "\"";
5711 }
Saleem Abdulrasool71d1dd12015-01-30 23:29:19 +00005712};
5713
Eric Christopher162c91c2015-06-05 22:03:00 +00005714void WindowsARMTargetCodeGenInfo::setTargetAttributes(
Rafael Espindoladeb10be2018-02-07 19:04:41 +00005715 const Decl *D, llvm::GlobalValue *GV, CodeGen::CodeGenModule &CGM) const {
5716 ARMTargetCodeGenInfo::setTargetAttributes(D, GV, CGM);
5717 if (GV->isDeclaration())
Simon Atanasyan1a116db2017-07-20 20:34:18 +00005718 return;
Hans Wennborgd43f40d2018-02-23 13:47:36 +00005719 addStackProbeTargetAttributes(D, GV, CGM);
Saleem Abdulrasool71d1dd12015-01-30 23:29:19 +00005720}
Alexander Kornienkoab9db512015-06-22 23:07:51 +00005721}
Daniel Dunbard59655c2009-09-12 00:59:49 +00005722
Chris Lattner22326a12010-07-29 02:31:05 +00005723void ARMABIInfo::computeInfo(CGFunctionInfo &FI) const {
Akira Hatanakad791e922018-03-19 17:38:40 +00005724 if (!::classifyReturnType(getCXXABI(), FI, *this))
Eric Christopher7565e0d2015-05-29 23:09:49 +00005725 FI.getReturnInfo() =
5726 classifyReturnType(FI.getReturnType(), FI.isVariadic());
Oliver Stannard405bded2014-02-11 09:25:50 +00005727
Tim Northoverbc784d12015-02-24 17:22:40 +00005728 for (auto &I : FI.arguments())
5729 I.info = classifyArgumentType(I.type, FI.isVariadic());
Daniel Dunbar020daa92009-09-12 01:00:39 +00005730
Anton Korobeynikov231e8752011-04-14 20:06:49 +00005731 // Always honor user-specified calling convention.
5732 if (FI.getCallingConvention() != llvm::CallingConv::C)
5733 return;
5734
John McCall882987f2013-02-28 19:01:20 +00005735 llvm::CallingConv::ID cc = getRuntimeCC();
5736 if (cc != llvm::CallingConv::C)
Tim Northoverbc784d12015-02-24 17:22:40 +00005737 FI.setEffectiveCallingConvention(cc);
John McCall882987f2013-02-28 19:01:20 +00005738}
Rafael Espindolaa92c4422010-06-16 16:13:39 +00005739
John McCall882987f2013-02-28 19:01:20 +00005740/// Return the default calling convention that LLVM will use.
5741llvm::CallingConv::ID ARMABIInfo::getLLVMDefaultCC() const {
5742 // The default calling convention that LLVM will infer.
Tim Northoverd88ecb32016-01-27 19:32:40 +00005743 if (isEABIHF() || getTarget().getTriple().isWatchABI())
John McCall882987f2013-02-28 19:01:20 +00005744 return llvm::CallingConv::ARM_AAPCS_VFP;
5745 else if (isEABI())
5746 return llvm::CallingConv::ARM_AAPCS;
5747 else
5748 return llvm::CallingConv::ARM_APCS;
5749}
5750
5751/// Return the calling convention that our ABI would like us to use
5752/// as the C calling convention.
5753llvm::CallingConv::ID ARMABIInfo::getABIDefaultCC() const {
Daniel Dunbar020daa92009-09-12 01:00:39 +00005754 switch (getABIKind()) {
John McCall882987f2013-02-28 19:01:20 +00005755 case APCS: return llvm::CallingConv::ARM_APCS;
5756 case AAPCS: return llvm::CallingConv::ARM_AAPCS;
5757 case AAPCS_VFP: return llvm::CallingConv::ARM_AAPCS_VFP;
Tim Northover5627d392015-10-30 16:30:45 +00005758 case AAPCS16_VFP: return llvm::CallingConv::ARM_AAPCS_VFP;
Daniel Dunbar020daa92009-09-12 01:00:39 +00005759 }
John McCall882987f2013-02-28 19:01:20 +00005760 llvm_unreachable("bad ABI kind");
5761}
5762
Anton Korobeynikovd90dd792014-12-02 16:04:58 +00005763void ARMABIInfo::setCCs() {
John McCall882987f2013-02-28 19:01:20 +00005764 assert(getRuntimeCC() == llvm::CallingConv::C);
5765
5766 // Don't muddy up the IR with a ton of explicit annotations if
5767 // they'd just match what LLVM will infer from the triple.
5768 llvm::CallingConv::ID abiCC = getABIDefaultCC();
5769 if (abiCC != getLLVMDefaultCC())
5770 RuntimeCC = abiCC;
Anton Korobeynikov244360d2009-06-05 22:08:42 +00005771}
5772
Mikhail Maltseve04ab4f2018-09-12 09:19:19 +00005773ABIArgInfo ARMABIInfo::coerceIllegalVector(QualType Ty) const {
5774 uint64_t Size = getContext().getTypeSize(Ty);
5775 if (Size <= 32) {
5776 llvm::Type *ResType =
5777 llvm::Type::getInt32Ty(getVMContext());
5778 return ABIArgInfo::getDirect(ResType);
5779 }
5780 if (Size == 64 || Size == 128) {
5781 llvm::Type *ResType = llvm::VectorType::get(
5782 llvm::Type::getInt32Ty(getVMContext()), Size / 32);
5783 return ABIArgInfo::getDirect(ResType);
5784 }
5785 return getNaturalAlignIndirect(Ty, /*ByVal=*/false);
5786}
5787
5788ABIArgInfo ARMABIInfo::classifyHomogeneousAggregate(QualType Ty,
5789 const Type *Base,
5790 uint64_t Members) const {
5791 assert(Base && "Base class should be set for homogeneous aggregate");
5792 // Base can be a floating-point or a vector.
5793 if (const VectorType *VT = Base->getAs<VectorType>()) {
5794 // FP16 vectors should be converted to integer vectors
5795 if (!getTarget().hasLegalHalfType() &&
5796 (VT->getElementType()->isFloat16Type() ||
5797 VT->getElementType()->isHalfType())) {
5798 uint64_t Size = getContext().getTypeSize(VT);
5799 llvm::Type *NewVecTy = llvm::VectorType::get(
5800 llvm::Type::getInt32Ty(getVMContext()), Size / 32);
5801 llvm::Type *Ty = llvm::ArrayType::get(NewVecTy, Members);
5802 return ABIArgInfo::getDirect(Ty, 0, nullptr, false);
5803 }
5804 }
5805 return ABIArgInfo::getDirect(nullptr, 0, nullptr, false);
5806}
5807
Tim Northoverbc784d12015-02-24 17:22:40 +00005808ABIArgInfo ARMABIInfo::classifyArgumentType(QualType Ty,
5809 bool isVariadic) const {
Manman Ren2a523d82012-10-30 23:21:41 +00005810 // 6.1.2.1 The following argument types are VFP CPRCs:
5811 // A single-precision floating-point type (including promoted
5812 // half-precision types); A double-precision floating-point type;
5813 // A 64-bit or 128-bit containerized vector type; Homogeneous Aggregate
5814 // with a Base Type of a single- or double-precision floating-point type,
5815 // 64-bit containerized vectors or 128-bit containerized vectors with one
5816 // to four Elements.
Tim Northover5a1558e2014-11-07 22:30:50 +00005817 bool IsEffectivelyAAPCS_VFP = getABIKind() == AAPCS_VFP && !isVariadic;
Oliver Stannard2bfdc5b2014-08-27 10:43:15 +00005818
Reid Klecknerb1be6832014-11-15 01:41:41 +00005819 Ty = useFirstFieldIfTransparentUnion(Ty);
5820
Manman Renfef9e312012-10-16 19:18:39 +00005821 // Handle illegal vector types here.
Mikhail Maltseve04ab4f2018-09-12 09:19:19 +00005822 if (isIllegalVectorType(Ty))
5823 return coerceIllegalVector(Ty);
Manman Renfef9e312012-10-16 19:18:39 +00005824
Sjoerd Meijerca8f4e72018-01-23 10:13:49 +00005825 // _Float16 and __fp16 get passed as if it were an int or float, but with
5826 // the top 16 bits unspecified. This is not done for OpenCL as it handles the
5827 // half type natively, and does not need to interwork with AAPCS code.
5828 if ((Ty->isFloat16Type() || Ty->isHalfType()) &&
5829 !getContext().getLangOpts().NativeHalfArgsAndReturns) {
Oliver Stannarddc2854c2015-09-03 12:40:58 +00005830 llvm::Type *ResType = IsEffectivelyAAPCS_VFP ?
5831 llvm::Type::getFloatTy(getVMContext()) :
5832 llvm::Type::getInt32Ty(getVMContext());
5833 return ABIArgInfo::getDirect(ResType);
5834 }
5835
John McCalla1dee5302010-08-22 10:59:02 +00005836 if (!isAggregateTypeForABI(Ty)) {
Douglas Gregora71cc152010-02-02 20:10:50 +00005837 // Treat an enum type as its underlying type.
Oliver Stannard405bded2014-02-11 09:25:50 +00005838 if (const EnumType *EnumTy = Ty->getAs<EnumType>()) {
Douglas Gregora71cc152010-02-02 20:10:50 +00005839 Ty = EnumTy->getDecl()->getIntegerType();
Oliver Stannard405bded2014-02-11 09:25:50 +00005840 }
Douglas Gregora71cc152010-02-02 20:10:50 +00005841
Alex Bradburye41a5e22018-01-12 20:08:16 +00005842 return (Ty->isPromotableIntegerType() ? ABIArgInfo::getExtend(Ty)
Tim Northover5a1558e2014-11-07 22:30:50 +00005843 : ABIArgInfo::getDirect());
Douglas Gregora71cc152010-02-02 20:10:50 +00005844 }
Daniel Dunbar626f1d82009-09-13 08:03:58 +00005845
Oliver Stannard405bded2014-02-11 09:25:50 +00005846 if (CGCXXABI::RecordArgABI RAA = getRecordArgABI(Ty, getCXXABI())) {
John McCall7f416cc2015-09-08 08:05:57 +00005847 return getNaturalAlignIndirect(Ty, RAA == CGCXXABI::RAA_DirectInMemory);
Oliver Stannard405bded2014-02-11 09:25:50 +00005848 }
Tim Northover1060eae2013-06-21 22:49:34 +00005849
Daniel Dunbar09d33622009-09-14 21:54:03 +00005850 // Ignore empty records.
Chris Lattner458b2aa2010-07-29 02:16:43 +00005851 if (isEmptyRecord(getContext(), Ty, true))
Daniel Dunbar09d33622009-09-14 21:54:03 +00005852 return ABIArgInfo::getIgnore();
5853
Tim Northover5a1558e2014-11-07 22:30:50 +00005854 if (IsEffectivelyAAPCS_VFP) {
Manman Ren2a523d82012-10-30 23:21:41 +00005855 // Homogeneous Aggregates need to be expanded when we can fit the aggregate
5856 // into VFP registers.
Craig Topper8a13c412014-05-21 05:09:00 +00005857 const Type *Base = nullptr;
Manman Ren2a523d82012-10-30 23:21:41 +00005858 uint64_t Members = 0;
Mikhail Maltseve04ab4f2018-09-12 09:19:19 +00005859 if (isHomogeneousAggregate(Ty, Base, Members))
5860 return classifyHomogeneousAggregate(Ty, Base, Members);
Tim Northover5627d392015-10-30 16:30:45 +00005861 } else if (getABIKind() == ARMABIInfo::AAPCS16_VFP) {
5862 // WatchOS does have homogeneous aggregates. Note that we intentionally use
5863 // this convention even for a variadic function: the backend will use GPRs
5864 // if needed.
5865 const Type *Base = nullptr;
5866 uint64_t Members = 0;
5867 if (isHomogeneousAggregate(Ty, Base, Members)) {
5868 assert(Base && Members <= 4 && "unexpected homogeneous aggregate");
5869 llvm::Type *Ty =
5870 llvm::ArrayType::get(CGT.ConvertType(QualType(Base, 0)), Members);
5871 return ABIArgInfo::getDirect(Ty, 0, nullptr, false);
5872 }
5873 }
5874
5875 if (getABIKind() == ARMABIInfo::AAPCS16_VFP &&
5876 getContext().getTypeSizeInChars(Ty) > CharUnits::fromQuantity(16)) {
5877 // WatchOS is adopting the 64-bit AAPCS rule on composite types: if they're
5878 // bigger than 128-bits, they get placed in space allocated by the caller,
5879 // and a pointer is passed.
5880 return ABIArgInfo::getIndirect(
5881 CharUnits::fromQuantity(getContext().getTypeAlign(Ty) / 8), false);
Bob Wilsone826a2a2011-08-03 05:58:22 +00005882 }
5883
Manman Ren6c30e132012-08-13 21:23:55 +00005884 // Support byval for ARM.
Manman Ren77b02382012-11-06 19:05:29 +00005885 // The ABI alignment for APCS is 4-byte and for AAPCS at least 4-byte and at
5886 // most 8-byte. We realign the indirect argument if type alignment is bigger
5887 // than ABI alignment.
Manman Ren505d68f2012-11-05 22:42:46 +00005888 uint64_t ABIAlign = 4;
Momchil Velikov20208cc2018-07-30 17:48:23 +00005889 uint64_t TyAlign;
Manman Ren505d68f2012-11-05 22:42:46 +00005890 if (getABIKind() == ARMABIInfo::AAPCS_VFP ||
Momchil Velikov20208cc2018-07-30 17:48:23 +00005891 getABIKind() == ARMABIInfo::AAPCS) {
5892 TyAlign = getContext().getTypeUnadjustedAlignInChars(Ty).getQuantity();
Manman Ren505d68f2012-11-05 22:42:46 +00005893 ABIAlign = std::min(std::max(TyAlign, (uint64_t)4), (uint64_t)8);
Momchil Velikov20208cc2018-07-30 17:48:23 +00005894 } else {
5895 TyAlign = getContext().getTypeAlignInChars(Ty).getQuantity();
5896 }
Manman Ren8cd99812012-11-06 04:58:01 +00005897 if (getContext().getTypeSizeInChars(Ty) > CharUnits::fromQuantity(64)) {
Tim Northover5627d392015-10-30 16:30:45 +00005898 assert(getABIKind() != ARMABIInfo::AAPCS16_VFP && "unexpected byval");
John McCall7f416cc2015-09-08 08:05:57 +00005899 return ABIArgInfo::getIndirect(CharUnits::fromQuantity(ABIAlign),
5900 /*ByVal=*/true,
5901 /*Realign=*/TyAlign > ABIAlign);
Eli Friedmane66abda2012-08-09 00:31:40 +00005902 }
5903
Pirama Arumuga Nainarbb846a32016-07-27 19:01:51 +00005904 // On RenderScript, coerce Aggregates <= 64 bytes to an integer array of
5905 // same size and alignment.
5906 if (getTarget().isRenderScriptTarget()) {
5907 return coerceToIntArray(Ty, getContext(), getVMContext());
5908 }
5909
Daniel Dunbarb34b0802010-09-23 01:54:28 +00005910 // Otherwise, pass by coercing to a structure of the appropriate size.
Chris Lattner2192fe52011-07-18 04:24:23 +00005911 llvm::Type* ElemTy;
Anton Korobeynikov244360d2009-06-05 22:08:42 +00005912 unsigned SizeRegs;
Eli Friedmane66abda2012-08-09 00:31:40 +00005913 // FIXME: Try to match the types of the arguments more accurately where
5914 // we can.
Momchil Velikov20208cc2018-07-30 17:48:23 +00005915 if (TyAlign <= 4) {
Bob Wilson8e2b75d2011-08-01 23:39:04 +00005916 ElemTy = llvm::Type::getInt32Ty(getVMContext());
5917 SizeRegs = (getContext().getTypeSize(Ty) + 31) / 32;
Manman Ren6fdb1582012-06-25 22:04:00 +00005918 } else {
Manman Ren6fdb1582012-06-25 22:04:00 +00005919 ElemTy = llvm::Type::getInt64Ty(getVMContext());
5920 SizeRegs = (getContext().getTypeSize(Ty) + 63) / 64;
Stuart Hastingsf2752a32011-04-27 17:24:02 +00005921 }
Stuart Hastings4b214952011-04-28 18:16:06 +00005922
Tim Northover5a1558e2014-11-07 22:30:50 +00005923 return ABIArgInfo::getDirect(llvm::ArrayType::get(ElemTy, SizeRegs));
Anton Korobeynikov244360d2009-06-05 22:08:42 +00005924}
5925
Chris Lattner458b2aa2010-07-29 02:16:43 +00005926static bool isIntegerLikeType(QualType Ty, ASTContext &Context,
Daniel Dunbar626f1d82009-09-13 08:03:58 +00005927 llvm::LLVMContext &VMContext) {
5928 // APCS, C Language Calling Conventions, Non-Simple Return Values: A structure
5929 // is called integer-like if its size is less than or equal to one word, and
5930 // the offset of each of its addressable sub-fields is zero.
5931
5932 uint64_t Size = Context.getTypeSize(Ty);
5933
5934 // Check that the type fits in a word.
5935 if (Size > 32)
5936 return false;
5937
5938 // FIXME: Handle vector types!
5939 if (Ty->isVectorType())
5940 return false;
5941
Daniel Dunbard53bac72009-09-14 02:20:34 +00005942 // Float types are never treated as "integer like".
5943 if (Ty->isRealFloatingType())
5944 return false;
5945
Daniel Dunbar626f1d82009-09-13 08:03:58 +00005946 // If this is a builtin or pointer type then it is ok.
John McCall9dd450b2009-09-21 23:43:11 +00005947 if (Ty->getAs<BuiltinType>() || Ty->isPointerType())
Daniel Dunbar626f1d82009-09-13 08:03:58 +00005948 return true;
5949
Daniel Dunbar96ebba52010-02-01 23:31:26 +00005950 // Small complex integer types are "integer like".
5951 if (const ComplexType *CT = Ty->getAs<ComplexType>())
5952 return isIntegerLikeType(CT->getElementType(), Context, VMContext);
Daniel Dunbar626f1d82009-09-13 08:03:58 +00005953
5954 // Single element and zero sized arrays should be allowed, by the definition
5955 // above, but they are not.
5956
5957 // Otherwise, it must be a record type.
5958 const RecordType *RT = Ty->getAs<RecordType>();
5959 if (!RT) return false;
5960
5961 // Ignore records with flexible arrays.
5962 const RecordDecl *RD = RT->getDecl();
5963 if (RD->hasFlexibleArrayMember())
5964 return false;
5965
5966 // Check that all sub-fields are at offset 0, and are themselves "integer
5967 // like".
5968 const ASTRecordLayout &Layout = Context.getASTRecordLayout(RD);
5969
5970 bool HadField = false;
5971 unsigned idx = 0;
5972 for (RecordDecl::field_iterator i = RD->field_begin(), e = RD->field_end();
5973 i != e; ++i, ++idx) {
David Blaikie40ed2972012-06-06 20:45:41 +00005974 const FieldDecl *FD = *i;
Daniel Dunbar626f1d82009-09-13 08:03:58 +00005975
Daniel Dunbar45c7ff12010-01-29 03:22:29 +00005976 // Bit-fields are not addressable, we only need to verify they are "integer
5977 // like". We still have to disallow a subsequent non-bitfield, for example:
5978 // struct { int : 0; int x }
5979 // is non-integer like according to gcc.
5980 if (FD->isBitField()) {
5981 if (!RD->isUnion())
5982 HadField = true;
Daniel Dunbar626f1d82009-09-13 08:03:58 +00005983
Daniel Dunbar45c7ff12010-01-29 03:22:29 +00005984 if (!isIntegerLikeType(FD->getType(), Context, VMContext))
5985 return false;
Daniel Dunbar626f1d82009-09-13 08:03:58 +00005986
Daniel Dunbar45c7ff12010-01-29 03:22:29 +00005987 continue;
Daniel Dunbar626f1d82009-09-13 08:03:58 +00005988 }
5989
Daniel Dunbar45c7ff12010-01-29 03:22:29 +00005990 // Check if this field is at offset 0.
5991 if (Layout.getFieldOffset(idx) != 0)
5992 return false;
5993
Daniel Dunbar626f1d82009-09-13 08:03:58 +00005994 if (!isIntegerLikeType(FD->getType(), Context, VMContext))
5995 return false;
Michael J. Spencerb2f376b2010-08-25 18:17:27 +00005996
Daniel Dunbar45c7ff12010-01-29 03:22:29 +00005997 // Only allow at most one field in a structure. This doesn't match the
5998 // wording above, but follows gcc in situations with a field following an
5999 // empty structure.
Daniel Dunbar626f1d82009-09-13 08:03:58 +00006000 if (!RD->isUnion()) {
6001 if (HadField)
6002 return false;
6003
6004 HadField = true;
6005 }
6006 }
6007
6008 return true;
6009}
6010
Oliver Stannard405bded2014-02-11 09:25:50 +00006011ABIArgInfo ARMABIInfo::classifyReturnType(QualType RetTy,
6012 bool isVariadic) const {
Tim Northover5627d392015-10-30 16:30:45 +00006013 bool IsEffectivelyAAPCS_VFP =
6014 (getABIKind() == AAPCS_VFP || getABIKind() == AAPCS16_VFP) && !isVariadic;
Oliver Stannard2bfdc5b2014-08-27 10:43:15 +00006015
Daniel Dunbar626f1d82009-09-13 08:03:58 +00006016 if (RetTy->isVoidType())
Anton Korobeynikov244360d2009-06-05 22:08:42 +00006017 return ABIArgInfo::getIgnore();
Daniel Dunbar626f1d82009-09-13 08:03:58 +00006018
Mikhail Maltseve04ab4f2018-09-12 09:19:19 +00006019 if (const VectorType *VT = RetTy->getAs<VectorType>()) {
6020 // Large vector types should be returned via memory.
6021 if (getContext().getTypeSize(RetTy) > 128)
6022 return getNaturalAlignIndirect(RetTy);
6023 // FP16 vectors should be converted to integer vectors
6024 if (!getTarget().hasLegalHalfType() &&
6025 (VT->getElementType()->isFloat16Type() ||
6026 VT->getElementType()->isHalfType()))
6027 return coerceIllegalVector(RetTy);
Oliver Stannard405bded2014-02-11 09:25:50 +00006028 }
Daniel Dunbar19964db2010-09-23 01:54:32 +00006029
Sjoerd Meijerca8f4e72018-01-23 10:13:49 +00006030 // _Float16 and __fp16 get returned as if it were an int or float, but with
6031 // the top 16 bits unspecified. This is not done for OpenCL as it handles the
6032 // half type natively, and does not need to interwork with AAPCS code.
6033 if ((RetTy->isFloat16Type() || RetTy->isHalfType()) &&
6034 !getContext().getLangOpts().NativeHalfArgsAndReturns) {
Oliver Stannarddc2854c2015-09-03 12:40:58 +00006035 llvm::Type *ResType = IsEffectivelyAAPCS_VFP ?
6036 llvm::Type::getFloatTy(getVMContext()) :
6037 llvm::Type::getInt32Ty(getVMContext());
6038 return ABIArgInfo::getDirect(ResType);
6039 }
6040
John McCalla1dee5302010-08-22 10:59:02 +00006041 if (!isAggregateTypeForABI(RetTy)) {
Douglas Gregora71cc152010-02-02 20:10:50 +00006042 // Treat an enum type as its underlying type.
6043 if (const EnumType *EnumTy = RetTy->getAs<EnumType>())
6044 RetTy = EnumTy->getDecl()->getIntegerType();
6045
Alex Bradburye41a5e22018-01-12 20:08:16 +00006046 return RetTy->isPromotableIntegerType() ? ABIArgInfo::getExtend(RetTy)
Tim Northover5a1558e2014-11-07 22:30:50 +00006047 : ABIArgInfo::getDirect();
Douglas Gregora71cc152010-02-02 20:10:50 +00006048 }
Daniel Dunbar626f1d82009-09-13 08:03:58 +00006049
6050 // Are we following APCS?
6051 if (getABIKind() == APCS) {
Chris Lattner458b2aa2010-07-29 02:16:43 +00006052 if (isEmptyRecord(getContext(), RetTy, false))
Daniel Dunbar626f1d82009-09-13 08:03:58 +00006053 return ABIArgInfo::getIgnore();
6054
Daniel Dunbareedf1512010-02-01 23:31:19 +00006055 // Complex types are all returned as packed integers.
6056 //
6057 // FIXME: Consider using 2 x vector types if the back end handles them
6058 // correctly.
6059 if (RetTy->isAnyComplexType())
Oliver Stannard2bfdc5b2014-08-27 10:43:15 +00006060 return ABIArgInfo::getDirect(llvm::IntegerType::get(
6061 getVMContext(), getContext().getTypeSize(RetTy)));
Daniel Dunbareedf1512010-02-01 23:31:19 +00006062
Daniel Dunbar626f1d82009-09-13 08:03:58 +00006063 // Integer like structures are returned in r0.
Chris Lattner458b2aa2010-07-29 02:16:43 +00006064 if (isIntegerLikeType(RetTy, getContext(), getVMContext())) {
Daniel Dunbar626f1d82009-09-13 08:03:58 +00006065 // Return in the smallest viable integer type.
Chris Lattner458b2aa2010-07-29 02:16:43 +00006066 uint64_t Size = getContext().getTypeSize(RetTy);
Daniel Dunbar626f1d82009-09-13 08:03:58 +00006067 if (Size <= 8)
Chris Lattnerfe34c1d2010-07-29 06:26:06 +00006068 return ABIArgInfo::getDirect(llvm::Type::getInt8Ty(getVMContext()));
Daniel Dunbar626f1d82009-09-13 08:03:58 +00006069 if (Size <= 16)
Chris Lattnerfe34c1d2010-07-29 06:26:06 +00006070 return ABIArgInfo::getDirect(llvm::Type::getInt16Ty(getVMContext()));
6071 return ABIArgInfo::getDirect(llvm::Type::getInt32Ty(getVMContext()));
Daniel Dunbar626f1d82009-09-13 08:03:58 +00006072 }
6073
6074 // Otherwise return in memory.
John McCall7f416cc2015-09-08 08:05:57 +00006075 return getNaturalAlignIndirect(RetTy);
Anton Korobeynikov244360d2009-06-05 22:08:42 +00006076 }
Daniel Dunbar626f1d82009-09-13 08:03:58 +00006077
6078 // Otherwise this is an AAPCS variant.
6079
Chris Lattner458b2aa2010-07-29 02:16:43 +00006080 if (isEmptyRecord(getContext(), RetTy, true))
Daniel Dunbar1ce72512009-09-14 00:56:55 +00006081 return ABIArgInfo::getIgnore();
6082
Bob Wilson1d9269a2011-11-02 04:51:36 +00006083 // Check for homogeneous aggregates with AAPCS-VFP.
Tim Northover5a1558e2014-11-07 22:30:50 +00006084 if (IsEffectivelyAAPCS_VFP) {
Craig Topper8a13c412014-05-21 05:09:00 +00006085 const Type *Base = nullptr;
Tim Northover5627d392015-10-30 16:30:45 +00006086 uint64_t Members = 0;
Mikhail Maltseve04ab4f2018-09-12 09:19:19 +00006087 if (isHomogeneousAggregate(RetTy, Base, Members))
6088 return classifyHomogeneousAggregate(RetTy, Base, Members);
Bob Wilson1d9269a2011-11-02 04:51:36 +00006089 }
6090
Daniel Dunbar626f1d82009-09-13 08:03:58 +00006091 // Aggregates <= 4 bytes are returned in r0; other aggregates
6092 // are returned indirectly.
Chris Lattner458b2aa2010-07-29 02:16:43 +00006093 uint64_t Size = getContext().getTypeSize(RetTy);
Daniel Dunbar1ce72512009-09-14 00:56:55 +00006094 if (Size <= 32) {
Pirama Arumuga Nainarbb846a32016-07-27 19:01:51 +00006095 // On RenderScript, coerce Aggregates <= 4 bytes to an integer array of
6096 // same size and alignment.
6097 if (getTarget().isRenderScriptTarget()) {
6098 return coerceToIntArray(RetTy, getContext(), getVMContext());
6099 }
Christian Pirkerc3d32172014-07-03 09:28:12 +00006100 if (getDataLayout().isBigEndian())
6101 // Return in 32 bit integer integer type (as if loaded by LDR, AAPCS 5.4)
Tim Northover5a1558e2014-11-07 22:30:50 +00006102 return ABIArgInfo::getDirect(llvm::Type::getInt32Ty(getVMContext()));
Christian Pirkerc3d32172014-07-03 09:28:12 +00006103
Daniel Dunbar1ce72512009-09-14 00:56:55 +00006104 // Return in the smallest viable integer type.
6105 if (Size <= 8)
Tim Northover5a1558e2014-11-07 22:30:50 +00006106 return ABIArgInfo::getDirect(llvm::Type::getInt8Ty(getVMContext()));
Daniel Dunbar1ce72512009-09-14 00:56:55 +00006107 if (Size <= 16)
Tim Northover5a1558e2014-11-07 22:30:50 +00006108 return ABIArgInfo::getDirect(llvm::Type::getInt16Ty(getVMContext()));
6109 return ABIArgInfo::getDirect(llvm::Type::getInt32Ty(getVMContext()));
Tim Northover5627d392015-10-30 16:30:45 +00006110 } else if (Size <= 128 && getABIKind() == AAPCS16_VFP) {
6111 llvm::Type *Int32Ty = llvm::Type::getInt32Ty(getVMContext());
6112 llvm::Type *CoerceTy =
Rui Ueyama83aa9792016-01-14 21:00:27 +00006113 llvm::ArrayType::get(Int32Ty, llvm::alignTo(Size, 32) / 32);
Tim Northover5627d392015-10-30 16:30:45 +00006114 return ABIArgInfo::getDirect(CoerceTy);
Daniel Dunbar1ce72512009-09-14 00:56:55 +00006115 }
6116
John McCall7f416cc2015-09-08 08:05:57 +00006117 return getNaturalAlignIndirect(RetTy);
Anton Korobeynikov244360d2009-06-05 22:08:42 +00006118}
6119
Manman Renfef9e312012-10-16 19:18:39 +00006120/// isIllegalVector - check whether Ty is an illegal vector type.
6121bool ARMABIInfo::isIllegalVectorType(QualType Ty) const {
Stephen Hines8267e7d2015-12-04 01:39:30 +00006122 if (const VectorType *VT = Ty->getAs<VectorType> ()) {
Mikhail Maltseve04ab4f2018-09-12 09:19:19 +00006123 // On targets that don't support FP16, FP16 is expanded into float, and we
6124 // don't want the ABI to depend on whether or not FP16 is supported in
6125 // hardware. Thus return false to coerce FP16 vectors into integer vectors.
6126 if (!getTarget().hasLegalHalfType() &&
6127 (VT->getElementType()->isFloat16Type() ||
6128 VT->getElementType()->isHalfType()))
6129 return true;
Stephen Hines8267e7d2015-12-04 01:39:30 +00006130 if (isAndroid()) {
6131 // Android shipped using Clang 3.1, which supported a slightly different
6132 // vector ABI. The primary differences were that 3-element vector types
6133 // were legal, and so were sub 32-bit vectors (i.e. <2 x i8>). This path
6134 // accepts that legacy behavior for Android only.
6135 // Check whether VT is legal.
6136 unsigned NumElements = VT->getNumElements();
6137 // NumElements should be power of 2 or equal to 3.
6138 if (!llvm::isPowerOf2_32(NumElements) && NumElements != 3)
6139 return true;
6140 } else {
6141 // Check whether VT is legal.
6142 unsigned NumElements = VT->getNumElements();
6143 uint64_t Size = getContext().getTypeSize(VT);
6144 // NumElements should be power of 2.
6145 if (!llvm::isPowerOf2_32(NumElements))
6146 return true;
6147 // Size should be greater than 32 bits.
6148 return Size <= 32;
6149 }
Manman Renfef9e312012-10-16 19:18:39 +00006150 }
6151 return false;
6152}
6153
Arnold Schwaighofer634e3202017-05-26 18:11:54 +00006154bool ARMABIInfo::isLegalVectorTypeForSwift(CharUnits vectorSize,
6155 llvm::Type *eltTy,
6156 unsigned numElts) const {
6157 if (!llvm::isPowerOf2_32(numElts))
6158 return false;
6159 unsigned size = getDataLayout().getTypeStoreSizeInBits(eltTy);
6160 if (size > 64)
6161 return false;
6162 if (vectorSize.getQuantity() != 8 &&
6163 (vectorSize.getQuantity() != 16 || numElts == 1))
6164 return false;
6165 return true;
6166}
6167
Reid Klecknere9f6a712014-10-31 17:10:41 +00006168bool ARMABIInfo::isHomogeneousAggregateBaseType(QualType Ty) const {
6169 // Homogeneous aggregates for AAPCS-VFP must have base types of float,
6170 // double, or 64-bit or 128-bit vectors.
6171 if (const BuiltinType *BT = Ty->getAs<BuiltinType>()) {
6172 if (BT->getKind() == BuiltinType::Float ||
6173 BT->getKind() == BuiltinType::Double ||
6174 BT->getKind() == BuiltinType::LongDouble)
6175 return true;
6176 } else if (const VectorType *VT = Ty->getAs<VectorType>()) {
6177 unsigned VecSize = getContext().getTypeSize(VT);
6178 if (VecSize == 64 || VecSize == 128)
6179 return true;
6180 }
6181 return false;
6182}
6183
6184bool ARMABIInfo::isHomogeneousAggregateSmallEnough(const Type *Base,
6185 uint64_t Members) const {
6186 return Members <= 4;
6187}
6188
John McCall7f416cc2015-09-08 08:05:57 +00006189Address ARMABIInfo::EmitVAArg(CodeGenFunction &CGF, Address VAListAddr,
6190 QualType Ty) const {
6191 CharUnits SlotSize = CharUnits::fromQuantity(4);
Anton Korobeynikov244360d2009-06-05 22:08:42 +00006192
John McCall7f416cc2015-09-08 08:05:57 +00006193 // Empty records are ignored for parameter passing purposes.
Tim Northover1711cc92013-06-21 23:05:33 +00006194 if (isEmptyRecord(getContext(), Ty, true)) {
John McCall7f416cc2015-09-08 08:05:57 +00006195 Address Addr(CGF.Builder.CreateLoad(VAListAddr), SlotSize);
6196 Addr = CGF.Builder.CreateElementBitCast(Addr, CGF.ConvertTypeForMem(Ty));
6197 return Addr;
Tim Northover1711cc92013-06-21 23:05:33 +00006198 }
6199
John McCall7f416cc2015-09-08 08:05:57 +00006200 auto TyInfo = getContext().getTypeInfoInChars(Ty);
6201 CharUnits TyAlignForABI = TyInfo.second;
Manman Rencca54d02012-10-16 19:01:37 +00006202
John McCall7f416cc2015-09-08 08:05:57 +00006203 // Use indirect if size of the illegal vector is bigger than 16 bytes.
6204 bool IsIndirect = false;
Tim Northover5627d392015-10-30 16:30:45 +00006205 const Type *Base = nullptr;
6206 uint64_t Members = 0;
John McCall7f416cc2015-09-08 08:05:57 +00006207 if (TyInfo.first > CharUnits::fromQuantity(16) && isIllegalVectorType(Ty)) {
6208 IsIndirect = true;
6209
Tim Northover5627d392015-10-30 16:30:45 +00006210 // ARMv7k passes structs bigger than 16 bytes indirectly, in space
6211 // allocated by the caller.
6212 } else if (TyInfo.first > CharUnits::fromQuantity(16) &&
6213 getABIKind() == ARMABIInfo::AAPCS16_VFP &&
6214 !isHomogeneousAggregate(Ty, Base, Members)) {
6215 IsIndirect = true;
6216
John McCall7f416cc2015-09-08 08:05:57 +00006217 // Otherwise, bound the type's ABI alignment.
Manman Rencca54d02012-10-16 19:01:37 +00006218 // The ABI alignment for 64-bit or 128-bit vectors is 8 for AAPCS and 4 for
6219 // APCS. For AAPCS, the ABI alignment is at least 4-byte and at most 8-byte.
John McCall7f416cc2015-09-08 08:05:57 +00006220 // Our callers should be prepared to handle an under-aligned address.
6221 } else if (getABIKind() == ARMABIInfo::AAPCS_VFP ||
6222 getABIKind() == ARMABIInfo::AAPCS) {
6223 TyAlignForABI = std::max(TyAlignForABI, CharUnits::fromQuantity(4));
6224 TyAlignForABI = std::min(TyAlignForABI, CharUnits::fromQuantity(8));
Tim Northover4c5cb9c2015-11-02 19:32:23 +00006225 } else if (getABIKind() == ARMABIInfo::AAPCS16_VFP) {
6226 // ARMv7k allows type alignment up to 16 bytes.
6227 TyAlignForABI = std::max(TyAlignForABI, CharUnits::fromQuantity(4));
6228 TyAlignForABI = std::min(TyAlignForABI, CharUnits::fromQuantity(16));
John McCall7f416cc2015-09-08 08:05:57 +00006229 } else {
6230 TyAlignForABI = CharUnits::fromQuantity(4);
Manman Renfef9e312012-10-16 19:18:39 +00006231 }
John McCall7f416cc2015-09-08 08:05:57 +00006232 TyInfo.second = TyAlignForABI;
Manman Rencca54d02012-10-16 19:01:37 +00006233
John McCall7f416cc2015-09-08 08:05:57 +00006234 return emitVoidPtrVAArg(CGF, VAListAddr, Ty, IsIndirect, TyInfo,
6235 SlotSize, /*AllowHigherAlign*/ true);
Anton Korobeynikov244360d2009-06-05 22:08:42 +00006236}
6237
Chris Lattner0cf24192010-06-28 20:05:43 +00006238//===----------------------------------------------------------------------===//
Justin Holewinski83e96682012-05-24 17:43:12 +00006239// NVPTX ABI Implementation
Justin Holewinskibd4a3c02011-04-22 11:10:38 +00006240//===----------------------------------------------------------------------===//
6241
6242namespace {
6243
Justin Holewinski83e96682012-05-24 17:43:12 +00006244class NVPTXABIInfo : public ABIInfo {
Justin Holewinskibd4a3c02011-04-22 11:10:38 +00006245public:
Justin Holewinski36837432013-03-30 14:38:24 +00006246 NVPTXABIInfo(CodeGenTypes &CGT) : ABIInfo(CGT) {}
Justin Holewinskibd4a3c02011-04-22 11:10:38 +00006247
6248 ABIArgInfo classifyReturnType(QualType RetTy) const;
6249 ABIArgInfo classifyArgumentType(QualType Ty) const;
6250
Craig Topper4f12f102014-03-12 06:41:41 +00006251 void computeInfo(CGFunctionInfo &FI) const override;
John McCall7f416cc2015-09-08 08:05:57 +00006252 Address EmitVAArg(CodeGenFunction &CGF, Address VAListAddr,
6253 QualType Ty) const override;
Justin Holewinskibd4a3c02011-04-22 11:10:38 +00006254};
6255
Justin Holewinski83e96682012-05-24 17:43:12 +00006256class NVPTXTargetCodeGenInfo : public TargetCodeGenInfo {
Justin Holewinskibd4a3c02011-04-22 11:10:38 +00006257public:
Justin Holewinski83e96682012-05-24 17:43:12 +00006258 NVPTXTargetCodeGenInfo(CodeGenTypes &CGT)
6259 : TargetCodeGenInfo(new NVPTXABIInfo(CGT)) {}
Craig Topper4f12f102014-03-12 06:41:41 +00006260
Eric Christopher162c91c2015-06-05 22:03:00 +00006261 void setTargetAttributes(const Decl *D, llvm::GlobalValue *GV,
Rafael Espindoladeb10be2018-02-07 19:04:41 +00006262 CodeGen::CodeGenModule &M) const override;
Yaxun Liub0eee292018-03-29 14:50:00 +00006263 bool shouldEmitStaticExternCAliases() const override;
Simon Atanasyan1a116db2017-07-20 20:34:18 +00006264
Justin Holewinski36837432013-03-30 14:38:24 +00006265private:
Eli Benderskye06a2c42014-04-15 16:57:05 +00006266 // Adds a NamedMDNode with F, Name, and Operand as operands, and adds the
6267 // resulting MDNode to the nvvm.annotations MDNode.
6268 static void addNVVMMetadata(llvm::Function *F, StringRef Name, int Operand);
Justin Holewinskibd4a3c02011-04-22 11:10:38 +00006269};
6270
Justin Holewinski83e96682012-05-24 17:43:12 +00006271ABIArgInfo NVPTXABIInfo::classifyReturnType(QualType RetTy) const {
Justin Holewinskibd4a3c02011-04-22 11:10:38 +00006272 if (RetTy->isVoidType())
6273 return ABIArgInfo::getIgnore();
Justin Holewinskif9329ff2013-11-20 20:35:34 +00006274
6275 // note: this is different from default ABI
6276 if (!RetTy->isScalarType())
6277 return ABIArgInfo::getDirect();
6278
6279 // Treat an enum type as its underlying type.
6280 if (const EnumType *EnumTy = RetTy->getAs<EnumType>())
6281 RetTy = EnumTy->getDecl()->getIntegerType();
6282
Alex Bradburye41a5e22018-01-12 20:08:16 +00006283 return (RetTy->isPromotableIntegerType() ? ABIArgInfo::getExtend(RetTy)
6284 : ABIArgInfo::getDirect());
Justin Holewinskibd4a3c02011-04-22 11:10:38 +00006285}
6286
Justin Holewinski83e96682012-05-24 17:43:12 +00006287ABIArgInfo NVPTXABIInfo::classifyArgumentType(QualType Ty) const {
Justin Holewinskif9329ff2013-11-20 20:35:34 +00006288 // Treat an enum type as its underlying type.
6289 if (const EnumType *EnumTy = Ty->getAs<EnumType>())
6290 Ty = EnumTy->getDecl()->getIntegerType();
Justin Holewinskibd4a3c02011-04-22 11:10:38 +00006291
Eli Bendersky95338a02014-10-29 13:43:21 +00006292 // Return aggregates type as indirect by value
6293 if (isAggregateTypeForABI(Ty))
John McCall7f416cc2015-09-08 08:05:57 +00006294 return getNaturalAlignIndirect(Ty, /* byval */ true);
Eli Bendersky95338a02014-10-29 13:43:21 +00006295
Alex Bradburye41a5e22018-01-12 20:08:16 +00006296 return (Ty->isPromotableIntegerType() ? ABIArgInfo::getExtend(Ty)
6297 : ABIArgInfo::getDirect());
Justin Holewinskibd4a3c02011-04-22 11:10:38 +00006298}
6299
Justin Holewinski83e96682012-05-24 17:43:12 +00006300void NVPTXABIInfo::computeInfo(CGFunctionInfo &FI) const {
Reid Kleckner40ca9132014-05-13 22:05:45 +00006301 if (!getCXXABI().classifyReturnType(FI))
6302 FI.getReturnInfo() = classifyReturnType(FI.getReturnType());
Aaron Ballmanec47bc22014-03-17 18:10:01 +00006303 for (auto &I : FI.arguments())
6304 I.info = classifyArgumentType(I.type);
Justin Holewinskibd4a3c02011-04-22 11:10:38 +00006305
6306 // Always honor user-specified calling convention.
6307 if (FI.getCallingConvention() != llvm::CallingConv::C)
6308 return;
6309
John McCall882987f2013-02-28 19:01:20 +00006310 FI.setEffectiveCallingConvention(getRuntimeCC());
6311}
6312
John McCall7f416cc2015-09-08 08:05:57 +00006313Address NVPTXABIInfo::EmitVAArg(CodeGenFunction &CGF, Address VAListAddr,
6314 QualType Ty) const {
Justin Holewinski83e96682012-05-24 17:43:12 +00006315 llvm_unreachable("NVPTX does not support varargs");
Justin Holewinskibd4a3c02011-04-22 11:10:38 +00006316}
6317
Simon Atanasyan1a116db2017-07-20 20:34:18 +00006318void NVPTXTargetCodeGenInfo::setTargetAttributes(
Rafael Espindoladeb10be2018-02-07 19:04:41 +00006319 const Decl *D, llvm::GlobalValue *GV, CodeGen::CodeGenModule &M) const {
6320 if (GV->isDeclaration())
Simon Atanasyan1a116db2017-07-20 20:34:18 +00006321 return;
Akira Hatanakaaec6b2c2015-10-08 20:26:34 +00006322 const FunctionDecl *FD = dyn_cast_or_null<FunctionDecl>(D);
Justin Holewinski38031972011-10-05 17:58:44 +00006323 if (!FD) return;
6324
6325 llvm::Function *F = cast<llvm::Function>(GV);
6326
6327 // Perform special handling in OpenCL mode
David Blaikiebbafb8a2012-03-11 07:00:24 +00006328 if (M.getLangOpts().OpenCL) {
Justin Holewinski36837432013-03-30 14:38:24 +00006329 // Use OpenCL function attributes to check for kernel functions
Justin Holewinski38031972011-10-05 17:58:44 +00006330 // By default, all functions are device functions
Justin Holewinski38031972011-10-05 17:58:44 +00006331 if (FD->hasAttr<OpenCLKernelAttr>()) {
Justin Holewinski36837432013-03-30 14:38:24 +00006332 // OpenCL __kernel functions get kernel metadata
Eli Benderskye06a2c42014-04-15 16:57:05 +00006333 // Create !{<func-ref>, metadata !"kernel", i32 1} node
6334 addNVVMMetadata(F, "kernel", 1);
Justin Holewinski38031972011-10-05 17:58:44 +00006335 // And kernel functions are not subject to inlining
Bill Wendling207f0532012-12-20 19:27:06 +00006336 F->addFnAttr(llvm::Attribute::NoInline);
Justin Holewinski38031972011-10-05 17:58:44 +00006337 }
Peter Collingbourne5bad4af2011-10-06 16:49:54 +00006338 }
Justin Holewinski38031972011-10-05 17:58:44 +00006339
Peter Collingbourne5bad4af2011-10-06 16:49:54 +00006340 // Perform special handling in CUDA mode.
David Blaikiebbafb8a2012-03-11 07:00:24 +00006341 if (M.getLangOpts().CUDA) {
Justin Holewinski36837432013-03-30 14:38:24 +00006342 // CUDA __global__ functions get a kernel metadata entry. Since
Peter Collingbourne5bad4af2011-10-06 16:49:54 +00006343 // __global__ functions cannot be called from the device, we do not
6344 // need to set the noinline attribute.
Eli Benderskye06a2c42014-04-15 16:57:05 +00006345 if (FD->hasAttr<CUDAGlobalAttr>()) {
6346 // Create !{<func-ref>, metadata !"kernel", i32 1} node
6347 addNVVMMetadata(F, "kernel", 1);
6348 }
Artem Belevich7093e402015-04-21 22:55:54 +00006349 if (CUDALaunchBoundsAttr *Attr = FD->getAttr<CUDALaunchBoundsAttr>()) {
Eli Benderskye06a2c42014-04-15 16:57:05 +00006350 // Create !{<func-ref>, metadata !"maxntidx", i32 <val>} node
Artem Belevich7093e402015-04-21 22:55:54 +00006351 llvm::APSInt MaxThreads(32);
6352 MaxThreads = Attr->getMaxThreads()->EvaluateKnownConstInt(M.getContext());
6353 if (MaxThreads > 0)
6354 addNVVMMetadata(F, "maxntidx", MaxThreads.getExtValue());
6355
6356 // min blocks is an optional argument for CUDALaunchBoundsAttr. If it was
6357 // not specified in __launch_bounds__ or if the user specified a 0 value,
6358 // we don't have to add a PTX directive.
6359 if (Attr->getMinBlocks()) {
6360 llvm::APSInt MinBlocks(32);
6361 MinBlocks = Attr->getMinBlocks()->EvaluateKnownConstInt(M.getContext());
6362 if (MinBlocks > 0)
6363 // Create !{<func-ref>, metadata !"minctasm", i32 <val>} node
6364 addNVVMMetadata(F, "minctasm", MinBlocks.getExtValue());
Eli Benderskye06a2c42014-04-15 16:57:05 +00006365 }
6366 }
Justin Holewinski38031972011-10-05 17:58:44 +00006367 }
6368}
6369
Eli Benderskye06a2c42014-04-15 16:57:05 +00006370void NVPTXTargetCodeGenInfo::addNVVMMetadata(llvm::Function *F, StringRef Name,
6371 int Operand) {
Justin Holewinski36837432013-03-30 14:38:24 +00006372 llvm::Module *M = F->getParent();
6373 llvm::LLVMContext &Ctx = M->getContext();
6374
6375 // Get "nvvm.annotations" metadata node
6376 llvm::NamedMDNode *MD = M->getOrInsertNamedMetadata("nvvm.annotations");
6377
Duncan P. N. Exon Smithfb494912014-12-09 18:39:32 +00006378 llvm::Metadata *MDVals[] = {
6379 llvm::ConstantAsMetadata::get(F), llvm::MDString::get(Ctx, Name),
6380 llvm::ConstantAsMetadata::get(
6381 llvm::ConstantInt::get(llvm::Type::getInt32Ty(Ctx), Operand))};
Justin Holewinski36837432013-03-30 14:38:24 +00006382 // Append metadata to nvvm.annotations
6383 MD->addOperand(llvm::MDNode::get(Ctx, MDVals));
6384}
Yaxun Liub0eee292018-03-29 14:50:00 +00006385
6386bool NVPTXTargetCodeGenInfo::shouldEmitStaticExternCAliases() const {
6387 return false;
6388}
Alexander Kornienkoab9db512015-06-22 23:07:51 +00006389}
Justin Holewinskibd4a3c02011-04-22 11:10:38 +00006390
6391//===----------------------------------------------------------------------===//
Ulrich Weigand47445072013-05-06 16:26:41 +00006392// SystemZ ABI Implementation
6393//===----------------------------------------------------------------------===//
6394
6395namespace {
6396
Bryan Chane3f1ed52016-04-28 13:56:43 +00006397class SystemZABIInfo : public SwiftABIInfo {
Ulrich Weigand66ff51b2015-05-05 19:35:52 +00006398 bool HasVector;
6399
Ulrich Weigand47445072013-05-06 16:26:41 +00006400public:
Ulrich Weigand66ff51b2015-05-05 19:35:52 +00006401 SystemZABIInfo(CodeGenTypes &CGT, bool HV)
Bryan Chane3f1ed52016-04-28 13:56:43 +00006402 : SwiftABIInfo(CGT), HasVector(HV) {}
Ulrich Weigand47445072013-05-06 16:26:41 +00006403
6404 bool isPromotableIntegerType(QualType Ty) const;
6405 bool isCompoundType(QualType Ty) const;
Ulrich Weigand66ff51b2015-05-05 19:35:52 +00006406 bool isVectorArgumentType(QualType Ty) const;
Ulrich Weigand47445072013-05-06 16:26:41 +00006407 bool isFPArgumentType(QualType Ty) const;
Ulrich Weigand66ff51b2015-05-05 19:35:52 +00006408 QualType GetSingleElementType(QualType Ty) const;
Ulrich Weigand47445072013-05-06 16:26:41 +00006409
6410 ABIArgInfo classifyReturnType(QualType RetTy) const;
6411 ABIArgInfo classifyArgumentType(QualType ArgTy) const;
6412
Craig Topper4f12f102014-03-12 06:41:41 +00006413 void computeInfo(CGFunctionInfo &FI) const override {
Reid Kleckner40ca9132014-05-13 22:05:45 +00006414 if (!getCXXABI().classifyReturnType(FI))
6415 FI.getReturnInfo() = classifyReturnType(FI.getReturnType());
Aaron Ballmanec47bc22014-03-17 18:10:01 +00006416 for (auto &I : FI.arguments())
6417 I.info = classifyArgumentType(I.type);
Ulrich Weigand47445072013-05-06 16:26:41 +00006418 }
6419
John McCall7f416cc2015-09-08 08:05:57 +00006420 Address EmitVAArg(CodeGenFunction &CGF, Address VAListAddr,
6421 QualType Ty) const override;
Bryan Chane3f1ed52016-04-28 13:56:43 +00006422
John McCall56331e22018-01-07 06:28:49 +00006423 bool shouldPassIndirectlyForSwift(ArrayRef<llvm::Type*> scalars,
Bryan Chane3f1ed52016-04-28 13:56:43 +00006424 bool asReturnValue) const override {
6425 return occupiesMoreThan(CGT, scalars, /*total*/ 4);
6426 }
Arnold Schwaighoferb0f2c332016-12-01 18:07:38 +00006427 bool isSwiftErrorInRegister() const override {
Arnold Schwaighofer612d6932017-11-07 16:40:51 +00006428 return false;
Arnold Schwaighoferb0f2c332016-12-01 18:07:38 +00006429 }
Ulrich Weigand47445072013-05-06 16:26:41 +00006430};
6431
6432class SystemZTargetCodeGenInfo : public TargetCodeGenInfo {
6433public:
Ulrich Weigand66ff51b2015-05-05 19:35:52 +00006434 SystemZTargetCodeGenInfo(CodeGenTypes &CGT, bool HasVector)
6435 : TargetCodeGenInfo(new SystemZABIInfo(CGT, HasVector)) {}
Ulrich Weigand47445072013-05-06 16:26:41 +00006436};
6437
Alexander Kornienkoab9db512015-06-22 23:07:51 +00006438}
Ulrich Weigand47445072013-05-06 16:26:41 +00006439
6440bool SystemZABIInfo::isPromotableIntegerType(QualType Ty) const {
6441 // Treat an enum type as its underlying type.
6442 if (const EnumType *EnumTy = Ty->getAs<EnumType>())
6443 Ty = EnumTy->getDecl()->getIntegerType();
6444
6445 // Promotable integer types are required to be promoted by the ABI.
6446 if (Ty->isPromotableIntegerType())
6447 return true;
6448
6449 // 32-bit values must also be promoted.
6450 if (const BuiltinType *BT = Ty->getAs<BuiltinType>())
6451 switch (BT->getKind()) {
6452 case BuiltinType::Int:
6453 case BuiltinType::UInt:
6454 return true;
6455 default:
6456 return false;
6457 }
6458 return false;
6459}
6460
6461bool SystemZABIInfo::isCompoundType(QualType Ty) const {
Ulrich Weigand759449c2015-03-30 13:49:01 +00006462 return (Ty->isAnyComplexType() ||
6463 Ty->isVectorType() ||
6464 isAggregateTypeForABI(Ty));
Ulrich Weigand47445072013-05-06 16:26:41 +00006465}
6466
Ulrich Weigand66ff51b2015-05-05 19:35:52 +00006467bool SystemZABIInfo::isVectorArgumentType(QualType Ty) const {
6468 return (HasVector &&
6469 Ty->isVectorType() &&
6470 getContext().getTypeSize(Ty) <= 128);
6471}
6472
Ulrich Weigand47445072013-05-06 16:26:41 +00006473bool SystemZABIInfo::isFPArgumentType(QualType Ty) const {
6474 if (const BuiltinType *BT = Ty->getAs<BuiltinType>())
6475 switch (BT->getKind()) {
6476 case BuiltinType::Float:
6477 case BuiltinType::Double:
6478 return true;
6479 default:
6480 return false;
6481 }
6482
Ulrich Weigand66ff51b2015-05-05 19:35:52 +00006483 return false;
6484}
6485
6486QualType SystemZABIInfo::GetSingleElementType(QualType Ty) const {
Ulrich Weigand47445072013-05-06 16:26:41 +00006487 if (const RecordType *RT = Ty->getAsStructureType()) {
6488 const RecordDecl *RD = RT->getDecl();
Ulrich Weigand66ff51b2015-05-05 19:35:52 +00006489 QualType Found;
Ulrich Weigand47445072013-05-06 16:26:41 +00006490
6491 // If this is a C++ record, check the bases first.
6492 if (const CXXRecordDecl *CXXRD = dyn_cast<CXXRecordDecl>(RD))
Aaron Ballman574705e2014-03-13 15:41:46 +00006493 for (const auto &I : CXXRD->bases()) {
6494 QualType Base = I.getType();
Ulrich Weigand47445072013-05-06 16:26:41 +00006495
6496 // Empty bases don't affect things either way.
6497 if (isEmptyRecord(getContext(), Base, true))
6498 continue;
6499
Ulrich Weigand66ff51b2015-05-05 19:35:52 +00006500 if (!Found.isNull())
6501 return Ty;
6502 Found = GetSingleElementType(Base);
Ulrich Weigand47445072013-05-06 16:26:41 +00006503 }
6504
6505 // Check the fields.
Aaron Ballmane8a8bae2014-03-08 20:12:42 +00006506 for (const auto *FD : RD->fields()) {
Ulrich Weigand759449c2015-03-30 13:49:01 +00006507 // For compatibility with GCC, ignore empty bitfields in C++ mode.
Ulrich Weigand47445072013-05-06 16:26:41 +00006508 // Unlike isSingleElementStruct(), empty structure and array fields
6509 // do count. So do anonymous bitfields that aren't zero-sized.
Ulrich Weigand759449c2015-03-30 13:49:01 +00006510 if (getContext().getLangOpts().CPlusPlus &&
Richard Smith866dee42018-04-02 18:29:43 +00006511 FD->isZeroLengthBitField(getContext()))
Ulrich Weigand759449c2015-03-30 13:49:01 +00006512 continue;
Ulrich Weigand47445072013-05-06 16:26:41 +00006513
6514 // Unlike isSingleElementStruct(), arrays do not count.
Ulrich Weigand66ff51b2015-05-05 19:35:52 +00006515 // Nested structures still do though.
6516 if (!Found.isNull())
6517 return Ty;
6518 Found = GetSingleElementType(FD->getType());
Ulrich Weigand47445072013-05-06 16:26:41 +00006519 }
6520
6521 // Unlike isSingleElementStruct(), trailing padding is allowed.
6522 // An 8-byte aligned struct s { float f; } is passed as a double.
Ulrich Weigand66ff51b2015-05-05 19:35:52 +00006523 if (!Found.isNull())
6524 return Found;
Ulrich Weigand47445072013-05-06 16:26:41 +00006525 }
6526
Ulrich Weigand66ff51b2015-05-05 19:35:52 +00006527 return Ty;
Ulrich Weigand47445072013-05-06 16:26:41 +00006528}
6529
John McCall7f416cc2015-09-08 08:05:57 +00006530Address SystemZABIInfo::EmitVAArg(CodeGenFunction &CGF, Address VAListAddr,
6531 QualType Ty) const {
Ulrich Weigand47445072013-05-06 16:26:41 +00006532 // Assume that va_list type is correct; should be pointer to LLVM type:
6533 // struct {
6534 // i64 __gpr;
6535 // i64 __fpr;
6536 // i8 *__overflow_arg_area;
6537 // i8 *__reg_save_area;
6538 // };
6539
Ulrich Weigand66ff51b2015-05-05 19:35:52 +00006540 // Every non-vector argument occupies 8 bytes and is passed by preference
6541 // in either GPRs or FPRs. Vector arguments occupy 8 or 16 bytes and are
6542 // always passed on the stack.
John McCall7f416cc2015-09-08 08:05:57 +00006543 Ty = getContext().getCanonicalType(Ty);
6544 auto TyInfo = getContext().getTypeInfoInChars(Ty);
Ulrich Weigand759449c2015-03-30 13:49:01 +00006545 llvm::Type *ArgTy = CGF.ConvertTypeForMem(Ty);
John McCall7f416cc2015-09-08 08:05:57 +00006546 llvm::Type *DirectTy = ArgTy;
Ulrich Weigand47445072013-05-06 16:26:41 +00006547 ABIArgInfo AI = classifyArgumentType(Ty);
Ulrich Weigand47445072013-05-06 16:26:41 +00006548 bool IsIndirect = AI.isIndirect();
Ulrich Weigand759449c2015-03-30 13:49:01 +00006549 bool InFPRs = false;
Ulrich Weigand66ff51b2015-05-05 19:35:52 +00006550 bool IsVector = false;
John McCall7f416cc2015-09-08 08:05:57 +00006551 CharUnits UnpaddedSize;
6552 CharUnits DirectAlign;
Ulrich Weigand47445072013-05-06 16:26:41 +00006553 if (IsIndirect) {
John McCall7f416cc2015-09-08 08:05:57 +00006554 DirectTy = llvm::PointerType::getUnqual(DirectTy);
6555 UnpaddedSize = DirectAlign = CharUnits::fromQuantity(8);
Ulrich Weigand759449c2015-03-30 13:49:01 +00006556 } else {
6557 if (AI.getCoerceToType())
6558 ArgTy = AI.getCoerceToType();
6559 InFPRs = ArgTy->isFloatTy() || ArgTy->isDoubleTy();
Ulrich Weigand66ff51b2015-05-05 19:35:52 +00006560 IsVector = ArgTy->isVectorTy();
John McCall7f416cc2015-09-08 08:05:57 +00006561 UnpaddedSize = TyInfo.first;
6562 DirectAlign = TyInfo.second;
Ulrich Weigand759449c2015-03-30 13:49:01 +00006563 }
John McCall7f416cc2015-09-08 08:05:57 +00006564 CharUnits PaddedSize = CharUnits::fromQuantity(8);
6565 if (IsVector && UnpaddedSize > PaddedSize)
6566 PaddedSize = CharUnits::fromQuantity(16);
6567 assert((UnpaddedSize <= PaddedSize) && "Invalid argument size.");
Ulrich Weigand47445072013-05-06 16:26:41 +00006568
John McCall7f416cc2015-09-08 08:05:57 +00006569 CharUnits Padding = (PaddedSize - UnpaddedSize);
Ulrich Weigand47445072013-05-06 16:26:41 +00006570
Ulrich Weigand66ff51b2015-05-05 19:35:52 +00006571 llvm::Type *IndexTy = CGF.Int64Ty;
John McCall7f416cc2015-09-08 08:05:57 +00006572 llvm::Value *PaddedSizeV =
6573 llvm::ConstantInt::get(IndexTy, PaddedSize.getQuantity());
Ulrich Weigand66ff51b2015-05-05 19:35:52 +00006574
6575 if (IsVector) {
6576 // Work out the address of a vector argument on the stack.
6577 // Vector arguments are always passed in the high bits of a
6578 // single (8 byte) or double (16 byte) stack slot.
John McCall7f416cc2015-09-08 08:05:57 +00006579 Address OverflowArgAreaPtr =
James Y Knight751fe282019-02-09 22:22:28 +00006580 CGF.Builder.CreateStructGEP(VAListAddr, 2, "overflow_arg_area_ptr");
John McCall7f416cc2015-09-08 08:05:57 +00006581 Address OverflowArgArea =
6582 Address(CGF.Builder.CreateLoad(OverflowArgAreaPtr, "overflow_arg_area"),
6583 TyInfo.second);
6584 Address MemAddr =
6585 CGF.Builder.CreateElementBitCast(OverflowArgArea, DirectTy, "mem_addr");
Ulrich Weigand66ff51b2015-05-05 19:35:52 +00006586
6587 // Update overflow_arg_area_ptr pointer
6588 llvm::Value *NewOverflowArgArea =
John McCall7f416cc2015-09-08 08:05:57 +00006589 CGF.Builder.CreateGEP(OverflowArgArea.getPointer(), PaddedSizeV,
6590 "overflow_arg_area");
Ulrich Weigand66ff51b2015-05-05 19:35:52 +00006591 CGF.Builder.CreateStore(NewOverflowArgArea, OverflowArgAreaPtr);
6592
6593 return MemAddr;
6594 }
6595
John McCall7f416cc2015-09-08 08:05:57 +00006596 assert(PaddedSize.getQuantity() == 8);
6597
6598 unsigned MaxRegs, RegCountField, RegSaveIndex;
6599 CharUnits RegPadding;
Ulrich Weigand47445072013-05-06 16:26:41 +00006600 if (InFPRs) {
6601 MaxRegs = 4; // Maximum of 4 FPR arguments
6602 RegCountField = 1; // __fpr
6603 RegSaveIndex = 16; // save offset for f0
John McCall7f416cc2015-09-08 08:05:57 +00006604 RegPadding = CharUnits(); // floats are passed in the high bits of an FPR
Ulrich Weigand47445072013-05-06 16:26:41 +00006605 } else {
6606 MaxRegs = 5; // Maximum of 5 GPR arguments
6607 RegCountField = 0; // __gpr
6608 RegSaveIndex = 2; // save offset for r2
6609 RegPadding = Padding; // values are passed in the low bits of a GPR
6610 }
6611
James Y Knight751fe282019-02-09 22:22:28 +00006612 Address RegCountPtr =
6613 CGF.Builder.CreateStructGEP(VAListAddr, RegCountField, "reg_count_ptr");
Ulrich Weigand47445072013-05-06 16:26:41 +00006614 llvm::Value *RegCount = CGF.Builder.CreateLoad(RegCountPtr, "reg_count");
Ulrich Weigand47445072013-05-06 16:26:41 +00006615 llvm::Value *MaxRegsV = llvm::ConstantInt::get(IndexTy, MaxRegs);
6616 llvm::Value *InRegs = CGF.Builder.CreateICmpULT(RegCount, MaxRegsV,
Oliver Stannard405bded2014-02-11 09:25:50 +00006617 "fits_in_regs");
Ulrich Weigand47445072013-05-06 16:26:41 +00006618
6619 llvm::BasicBlock *InRegBlock = CGF.createBasicBlock("vaarg.in_reg");
6620 llvm::BasicBlock *InMemBlock = CGF.createBasicBlock("vaarg.in_mem");
6621 llvm::BasicBlock *ContBlock = CGF.createBasicBlock("vaarg.end");
6622 CGF.Builder.CreateCondBr(InRegs, InRegBlock, InMemBlock);
6623
6624 // Emit code to load the value if it was passed in registers.
6625 CGF.EmitBlock(InRegBlock);
6626
6627 // Work out the address of an argument register.
Ulrich Weigand47445072013-05-06 16:26:41 +00006628 llvm::Value *ScaledRegCount =
6629 CGF.Builder.CreateMul(RegCount, PaddedSizeV, "scaled_reg_count");
6630 llvm::Value *RegBase =
John McCall7f416cc2015-09-08 08:05:57 +00006631 llvm::ConstantInt::get(IndexTy, RegSaveIndex * PaddedSize.getQuantity()
6632 + RegPadding.getQuantity());
Ulrich Weigand47445072013-05-06 16:26:41 +00006633 llvm::Value *RegOffset =
6634 CGF.Builder.CreateAdd(ScaledRegCount, RegBase, "reg_offset");
John McCall7f416cc2015-09-08 08:05:57 +00006635 Address RegSaveAreaPtr =
James Y Knight751fe282019-02-09 22:22:28 +00006636 CGF.Builder.CreateStructGEP(VAListAddr, 3, "reg_save_area_ptr");
Ulrich Weigand47445072013-05-06 16:26:41 +00006637 llvm::Value *RegSaveArea =
6638 CGF.Builder.CreateLoad(RegSaveAreaPtr, "reg_save_area");
John McCall7f416cc2015-09-08 08:05:57 +00006639 Address RawRegAddr(CGF.Builder.CreateGEP(RegSaveArea, RegOffset,
6640 "raw_reg_addr"),
6641 PaddedSize);
6642 Address RegAddr =
6643 CGF.Builder.CreateElementBitCast(RawRegAddr, DirectTy, "reg_addr");
Ulrich Weigand47445072013-05-06 16:26:41 +00006644
6645 // Update the register count
6646 llvm::Value *One = llvm::ConstantInt::get(IndexTy, 1);
6647 llvm::Value *NewRegCount =
6648 CGF.Builder.CreateAdd(RegCount, One, "reg_count");
6649 CGF.Builder.CreateStore(NewRegCount, RegCountPtr);
6650 CGF.EmitBranch(ContBlock);
6651
6652 // Emit code to load the value if it was passed in memory.
6653 CGF.EmitBlock(InMemBlock);
6654
6655 // Work out the address of a stack argument.
James Y Knight751fe282019-02-09 22:22:28 +00006656 Address OverflowArgAreaPtr =
6657 CGF.Builder.CreateStructGEP(VAListAddr, 2, "overflow_arg_area_ptr");
John McCall7f416cc2015-09-08 08:05:57 +00006658 Address OverflowArgArea =
6659 Address(CGF.Builder.CreateLoad(OverflowArgAreaPtr, "overflow_arg_area"),
6660 PaddedSize);
6661 Address RawMemAddr =
6662 CGF.Builder.CreateConstByteGEP(OverflowArgArea, Padding, "raw_mem_addr");
6663 Address MemAddr =
6664 CGF.Builder.CreateElementBitCast(RawMemAddr, DirectTy, "mem_addr");
Ulrich Weigand47445072013-05-06 16:26:41 +00006665
6666 // Update overflow_arg_area_ptr pointer
6667 llvm::Value *NewOverflowArgArea =
John McCall7f416cc2015-09-08 08:05:57 +00006668 CGF.Builder.CreateGEP(OverflowArgArea.getPointer(), PaddedSizeV,
6669 "overflow_arg_area");
Ulrich Weigand47445072013-05-06 16:26:41 +00006670 CGF.Builder.CreateStore(NewOverflowArgArea, OverflowArgAreaPtr);
6671 CGF.EmitBranch(ContBlock);
6672
6673 // Return the appropriate result.
6674 CGF.EmitBlock(ContBlock);
John McCall7f416cc2015-09-08 08:05:57 +00006675 Address ResAddr = emitMergePHI(CGF, RegAddr, InRegBlock,
6676 MemAddr, InMemBlock, "va_arg.addr");
Ulrich Weigand47445072013-05-06 16:26:41 +00006677
6678 if (IsIndirect)
John McCall7f416cc2015-09-08 08:05:57 +00006679 ResAddr = Address(CGF.Builder.CreateLoad(ResAddr, "indirect_arg"),
6680 TyInfo.second);
Ulrich Weigand47445072013-05-06 16:26:41 +00006681
6682 return ResAddr;
6683}
6684
Ulrich Weigand47445072013-05-06 16:26:41 +00006685ABIArgInfo SystemZABIInfo::classifyReturnType(QualType RetTy) const {
6686 if (RetTy->isVoidType())
6687 return ABIArgInfo::getIgnore();
Ulrich Weigand66ff51b2015-05-05 19:35:52 +00006688 if (isVectorArgumentType(RetTy))
6689 return ABIArgInfo::getDirect();
Ulrich Weigand47445072013-05-06 16:26:41 +00006690 if (isCompoundType(RetTy) || getContext().getTypeSize(RetTy) > 64)
John McCall7f416cc2015-09-08 08:05:57 +00006691 return getNaturalAlignIndirect(RetTy);
Alex Bradburye41a5e22018-01-12 20:08:16 +00006692 return (isPromotableIntegerType(RetTy) ? ABIArgInfo::getExtend(RetTy)
6693 : ABIArgInfo::getDirect());
Ulrich Weigand47445072013-05-06 16:26:41 +00006694}
6695
6696ABIArgInfo SystemZABIInfo::classifyArgumentType(QualType Ty) const {
6697 // Handle the generic C++ ABI.
Mark Lacey3825e832013-10-06 01:33:34 +00006698 if (CGCXXABI::RecordArgABI RAA = getRecordArgABI(Ty, getCXXABI()))
John McCall7f416cc2015-09-08 08:05:57 +00006699 return getNaturalAlignIndirect(Ty, RAA == CGCXXABI::RAA_DirectInMemory);
Ulrich Weigand47445072013-05-06 16:26:41 +00006700
6701 // Integers and enums are extended to full register width.
6702 if (isPromotableIntegerType(Ty))
Alex Bradburye41a5e22018-01-12 20:08:16 +00006703 return ABIArgInfo::getExtend(Ty);
Ulrich Weigand47445072013-05-06 16:26:41 +00006704
Ulrich Weigand66ff51b2015-05-05 19:35:52 +00006705 // Handle vector types and vector-like structure types. Note that
6706 // as opposed to float-like structure types, we do not allow any
6707 // padding for vector-like structures, so verify the sizes match.
Ulrich Weigand47445072013-05-06 16:26:41 +00006708 uint64_t Size = getContext().getTypeSize(Ty);
Ulrich Weigand66ff51b2015-05-05 19:35:52 +00006709 QualType SingleElementTy = GetSingleElementType(Ty);
6710 if (isVectorArgumentType(SingleElementTy) &&
6711 getContext().getTypeSize(SingleElementTy) == Size)
6712 return ABIArgInfo::getDirect(CGT.ConvertType(SingleElementTy));
6713
6714 // Values that are not 1, 2, 4 or 8 bytes in size are passed indirectly.
Ulrich Weigand47445072013-05-06 16:26:41 +00006715 if (Size != 8 && Size != 16 && Size != 32 && Size != 64)
John McCall7f416cc2015-09-08 08:05:57 +00006716 return getNaturalAlignIndirect(Ty, /*ByVal=*/false);
Ulrich Weigand47445072013-05-06 16:26:41 +00006717
6718 // Handle small structures.
6719 if (const RecordType *RT = Ty->getAs<RecordType>()) {
6720 // Structures with flexible arrays have variable length, so really
6721 // fail the size test above.
6722 const RecordDecl *RD = RT->getDecl();
6723 if (RD->hasFlexibleArrayMember())
John McCall7f416cc2015-09-08 08:05:57 +00006724 return getNaturalAlignIndirect(Ty, /*ByVal=*/false);
Ulrich Weigand47445072013-05-06 16:26:41 +00006725
6726 // The structure is passed as an unextended integer, a float, or a double.
6727 llvm::Type *PassTy;
Ulrich Weigand66ff51b2015-05-05 19:35:52 +00006728 if (isFPArgumentType(SingleElementTy)) {
Ulrich Weigand47445072013-05-06 16:26:41 +00006729 assert(Size == 32 || Size == 64);
6730 if (Size == 32)
6731 PassTy = llvm::Type::getFloatTy(getVMContext());
6732 else
6733 PassTy = llvm::Type::getDoubleTy(getVMContext());
6734 } else
6735 PassTy = llvm::IntegerType::get(getVMContext(), Size);
6736 return ABIArgInfo::getDirect(PassTy);
6737 }
6738
6739 // Non-structure compounds are passed indirectly.
6740 if (isCompoundType(Ty))
John McCall7f416cc2015-09-08 08:05:57 +00006741 return getNaturalAlignIndirect(Ty, /*ByVal=*/false);
Ulrich Weigand47445072013-05-06 16:26:41 +00006742
Craig Topper8a13c412014-05-21 05:09:00 +00006743 return ABIArgInfo::getDirect(nullptr);
Ulrich Weigand47445072013-05-06 16:26:41 +00006744}
6745
6746//===----------------------------------------------------------------------===//
Anton Korobeynikov55bcea12010-01-10 12:58:08 +00006747// MSP430 ABI Implementation
Chris Lattner0cf24192010-06-28 20:05:43 +00006748//===----------------------------------------------------------------------===//
Anton Korobeynikov55bcea12010-01-10 12:58:08 +00006749
6750namespace {
6751
6752class MSP430TargetCodeGenInfo : public TargetCodeGenInfo {
6753public:
Chris Lattner2b037972010-07-29 02:01:43 +00006754 MSP430TargetCodeGenInfo(CodeGenTypes &CGT)
6755 : TargetCodeGenInfo(new DefaultABIInfo(CGT)) {}
Eric Christopher162c91c2015-06-05 22:03:00 +00006756 void setTargetAttributes(const Decl *D, llvm::GlobalValue *GV,
Rafael Espindoladeb10be2018-02-07 19:04:41 +00006757 CodeGen::CodeGenModule &M) const override;
Anton Korobeynikov55bcea12010-01-10 12:58:08 +00006758};
6759
Alexander Kornienkoab9db512015-06-22 23:07:51 +00006760}
Anton Korobeynikov55bcea12010-01-10 12:58:08 +00006761
Simon Atanasyan1a116db2017-07-20 20:34:18 +00006762void MSP430TargetCodeGenInfo::setTargetAttributes(
Rafael Espindoladeb10be2018-02-07 19:04:41 +00006763 const Decl *D, llvm::GlobalValue *GV, CodeGen::CodeGenModule &M) const {
6764 if (GV->isDeclaration())
Simon Atanasyan1a116db2017-07-20 20:34:18 +00006765 return;
Akira Hatanakaaec6b2c2015-10-08 20:26:34 +00006766 if (const FunctionDecl *FD = dyn_cast_or_null<FunctionDecl>(D)) {
Anton Korobeynikov383e8272019-01-16 13:44:01 +00006767 const auto *InterruptAttr = FD->getAttr<MSP430InterruptAttr>();
6768 if (!InterruptAttr)
6769 return;
Anton Korobeynikov55bcea12010-01-10 12:58:08 +00006770
Anton Korobeynikov383e8272019-01-16 13:44:01 +00006771 // Handle 'interrupt' attribute:
6772 llvm::Function *F = cast<llvm::Function>(GV);
Anton Korobeynikov55bcea12010-01-10 12:58:08 +00006773
Anton Korobeynikov383e8272019-01-16 13:44:01 +00006774 // Step 1: Set ISR calling convention.
6775 F->setCallingConv(llvm::CallingConv::MSP430_INTR);
Anton Korobeynikov55bcea12010-01-10 12:58:08 +00006776
Anton Korobeynikov383e8272019-01-16 13:44:01 +00006777 // Step 2: Add attributes goodness.
6778 F->addFnAttr(llvm::Attribute::NoInline);
6779 F->addFnAttr("interrupt", llvm::utostr(InterruptAttr->getNumber()));
Anton Korobeynikov244360d2009-06-05 22:08:42 +00006780 }
6781}
6782
Chris Lattner0cf24192010-06-28 20:05:43 +00006783//===----------------------------------------------------------------------===//
John McCall943fae92010-05-27 06:19:26 +00006784// MIPS ABI Implementation. This works for both little-endian and
6785// big-endian variants.
Chris Lattner0cf24192010-06-28 20:05:43 +00006786//===----------------------------------------------------------------------===//
6787
John McCall943fae92010-05-27 06:19:26 +00006788namespace {
Akira Hatanakab579fe52011-06-02 00:09:17 +00006789class MipsABIInfo : public ABIInfo {
Akira Hatanaka14378522011-11-02 23:14:57 +00006790 bool IsO32;
Akira Hatanakae1e3ad32012-07-03 19:24:06 +00006791 unsigned MinABIStackAlignInBytes, StackAlignInBytes;
6792 void CoerceToIntArgs(uint64_t TySize,
Craig Topper5603df42013-07-05 19:34:19 +00006793 SmallVectorImpl<llvm::Type *> &ArgList) const;
Akira Hatanaka8ab86cb2012-05-11 21:56:58 +00006794 llvm::Type* HandleAggregates(QualType Ty, uint64_t TySize) const;
Akira Hatanakaf093f5b2012-01-04 03:34:42 +00006795 llvm::Type* returnAggregateInRegs(QualType RetTy, uint64_t Size) const;
Akira Hatanaka1632af62012-01-09 19:31:25 +00006796 llvm::Type* getPaddingType(uint64_t Align, uint64_t Offset) const;
Akira Hatanakab579fe52011-06-02 00:09:17 +00006797public:
Akira Hatanakac4baedd2013-11-11 22:10:46 +00006798 MipsABIInfo(CodeGenTypes &CGT, bool _IsO32) :
Akira Hatanakae1e3ad32012-07-03 19:24:06 +00006799 ABIInfo(CGT), IsO32(_IsO32), MinABIStackAlignInBytes(IsO32 ? 4 : 8),
Akira Hatanakac4baedd2013-11-11 22:10:46 +00006800 StackAlignInBytes(IsO32 ? 8 : 16) {}
Akira Hatanakab579fe52011-06-02 00:09:17 +00006801
6802 ABIArgInfo classifyReturnType(QualType RetTy) const;
Akira Hatanakaf64e1ad2012-01-07 00:25:33 +00006803 ABIArgInfo classifyArgumentType(QualType RetTy, uint64_t &Offset) const;
Craig Topper4f12f102014-03-12 06:41:41 +00006804 void computeInfo(CGFunctionInfo &FI) const override;
John McCall7f416cc2015-09-08 08:05:57 +00006805 Address EmitVAArg(CodeGenFunction &CGF, Address VAListAddr,
6806 QualType Ty) const override;
Alex Bradburye41a5e22018-01-12 20:08:16 +00006807 ABIArgInfo extendType(QualType Ty) const;
Akira Hatanakab579fe52011-06-02 00:09:17 +00006808};
6809
John McCall943fae92010-05-27 06:19:26 +00006810class MIPSTargetCodeGenInfo : public TargetCodeGenInfo {
Akira Hatanaka0486db02011-09-20 18:23:28 +00006811 unsigned SizeOfUnwindException;
John McCall943fae92010-05-27 06:19:26 +00006812public:
Akira Hatanakac4baedd2013-11-11 22:10:46 +00006813 MIPSTargetCodeGenInfo(CodeGenTypes &CGT, bool IsO32)
6814 : TargetCodeGenInfo(new MipsABIInfo(CGT, IsO32)),
Akira Hatanaka14378522011-11-02 23:14:57 +00006815 SizeOfUnwindException(IsO32 ? 24 : 32) {}
John McCall943fae92010-05-27 06:19:26 +00006816
Craig Topper4f12f102014-03-12 06:41:41 +00006817 int getDwarfEHStackPointer(CodeGen::CodeGenModule &CGM) const override {
John McCall943fae92010-05-27 06:19:26 +00006818 return 29;
6819 }
6820
Eric Christopher162c91c2015-06-05 22:03:00 +00006821 void setTargetAttributes(const Decl *D, llvm::GlobalValue *GV,
Rafael Espindoladeb10be2018-02-07 19:04:41 +00006822 CodeGen::CodeGenModule &CGM) const override {
Akira Hatanakaaec6b2c2015-10-08 20:26:34 +00006823 const FunctionDecl *FD = dyn_cast_or_null<FunctionDecl>(D);
Reed Kotler3d5966f2013-03-13 20:40:30 +00006824 if (!FD) return;
Rafael Espindolaa0851a22013-03-19 14:32:23 +00006825 llvm::Function *Fn = cast<llvm::Function>(GV);
Simon Atanasyan1a116db2017-07-20 20:34:18 +00006826
6827 if (FD->hasAttr<MipsLongCallAttr>())
6828 Fn->addFnAttr("long-call");
6829 else if (FD->hasAttr<MipsShortCallAttr>())
6830 Fn->addFnAttr("short-call");
6831
6832 // Other attributes do not have a meaning for declarations.
Rafael Espindoladeb10be2018-02-07 19:04:41 +00006833 if (GV->isDeclaration())
Simon Atanasyan1a116db2017-07-20 20:34:18 +00006834 return;
6835
Reed Kotler3d5966f2013-03-13 20:40:30 +00006836 if (FD->hasAttr<Mips16Attr>()) {
6837 Fn->addFnAttr("mips16");
6838 }
6839 else if (FD->hasAttr<NoMips16Attr>()) {
6840 Fn->addFnAttr("nomips16");
6841 }
Daniel Sandersbd3f47f2015-11-27 18:03:44 +00006842
Simon Atanasyan2c87f532017-05-22 12:47:43 +00006843 if (FD->hasAttr<MicroMipsAttr>())
6844 Fn->addFnAttr("micromips");
6845 else if (FD->hasAttr<NoMicroMipsAttr>())
6846 Fn->addFnAttr("nomicromips");
6847
Daniel Sandersbd3f47f2015-11-27 18:03:44 +00006848 const MipsInterruptAttr *Attr = FD->getAttr<MipsInterruptAttr>();
6849 if (!Attr)
6850 return;
6851
6852 const char *Kind;
6853 switch (Attr->getInterrupt()) {
Daniel Sandersbd3f47f2015-11-27 18:03:44 +00006854 case MipsInterruptAttr::eic: Kind = "eic"; break;
6855 case MipsInterruptAttr::sw0: Kind = "sw0"; break;
6856 case MipsInterruptAttr::sw1: Kind = "sw1"; break;
6857 case MipsInterruptAttr::hw0: Kind = "hw0"; break;
6858 case MipsInterruptAttr::hw1: Kind = "hw1"; break;
6859 case MipsInterruptAttr::hw2: Kind = "hw2"; break;
6860 case MipsInterruptAttr::hw3: Kind = "hw3"; break;
6861 case MipsInterruptAttr::hw4: Kind = "hw4"; break;
6862 case MipsInterruptAttr::hw5: Kind = "hw5"; break;
6863 }
6864
6865 Fn->addFnAttr("interrupt", Kind);
6866
Reed Kotler373feca2013-01-16 17:10:28 +00006867 }
Reed Kotler3d5966f2013-03-13 20:40:30 +00006868
John McCall943fae92010-05-27 06:19:26 +00006869 bool initDwarfEHRegSizeTable(CodeGen::CodeGenFunction &CGF,
Craig Topper4f12f102014-03-12 06:41:41 +00006870 llvm::Value *Address) const override;
John McCall3480ef22011-08-30 01:42:09 +00006871
Craig Topper4f12f102014-03-12 06:41:41 +00006872 unsigned getSizeOfUnwindException() const override {
Akira Hatanaka0486db02011-09-20 18:23:28 +00006873 return SizeOfUnwindException;
John McCall3480ef22011-08-30 01:42:09 +00006874 }
John McCall943fae92010-05-27 06:19:26 +00006875};
Alexander Kornienkoab9db512015-06-22 23:07:51 +00006876}
John McCall943fae92010-05-27 06:19:26 +00006877
Eric Christopher7565e0d2015-05-29 23:09:49 +00006878void MipsABIInfo::CoerceToIntArgs(
6879 uint64_t TySize, SmallVectorImpl<llvm::Type *> &ArgList) const {
Akira Hatanakae1e3ad32012-07-03 19:24:06 +00006880 llvm::IntegerType *IntTy =
6881 llvm::IntegerType::get(getVMContext(), MinABIStackAlignInBytes * 8);
Akira Hatanaka8ab86cb2012-05-11 21:56:58 +00006882
6883 // Add (TySize / MinABIStackAlignInBytes) args of IntTy.
6884 for (unsigned N = TySize / (MinABIStackAlignInBytes * 8); N; --N)
6885 ArgList.push_back(IntTy);
6886
6887 // If necessary, add one more integer type to ArgList.
6888 unsigned R = TySize % (MinABIStackAlignInBytes * 8);
6889
6890 if (R)
6891 ArgList.push_back(llvm::IntegerType::get(getVMContext(), R));
Akira Hatanaka8ab86cb2012-05-11 21:56:58 +00006892}
6893
Akira Hatanaka101f70d2011-11-02 23:54:49 +00006894// In N32/64, an aligned double precision floating point field is passed in
6895// a register.
Akira Hatanaka8ab86cb2012-05-11 21:56:58 +00006896llvm::Type* MipsABIInfo::HandleAggregates(QualType Ty, uint64_t TySize) const {
Akira Hatanakae1e3ad32012-07-03 19:24:06 +00006897 SmallVector<llvm::Type*, 8> ArgList, IntArgList;
6898
6899 if (IsO32) {
6900 CoerceToIntArgs(TySize, ArgList);
6901 return llvm::StructType::get(getVMContext(), ArgList);
6902 }
Akira Hatanaka101f70d2011-11-02 23:54:49 +00006903
Akira Hatanaka02e13e52012-01-12 00:52:17 +00006904 if (Ty->isComplexType())
6905 return CGT.ConvertType(Ty);
Akira Hatanaka79f04612012-01-10 23:12:19 +00006906
Akira Hatanaka4984f5d2012-02-09 19:54:16 +00006907 const RecordType *RT = Ty->getAs<RecordType>();
Akira Hatanaka101f70d2011-11-02 23:54:49 +00006908
Akira Hatanakae1e3ad32012-07-03 19:24:06 +00006909 // Unions/vectors are passed in integer registers.
6910 if (!RT || !RT->isStructureOrClassType()) {
6911 CoerceToIntArgs(TySize, ArgList);
6912 return llvm::StructType::get(getVMContext(), ArgList);
6913 }
Akira Hatanaka101f70d2011-11-02 23:54:49 +00006914
6915 const RecordDecl *RD = RT->getDecl();
6916 const ASTRecordLayout &Layout = getContext().getASTRecordLayout(RD);
Akira Hatanaka8ab86cb2012-05-11 21:56:58 +00006917 assert(!(TySize % 8) && "Size of structure must be multiple of 8.");
Eric Christopher7565e0d2015-05-29 23:09:49 +00006918
Akira Hatanaka101f70d2011-11-02 23:54:49 +00006919 uint64_t LastOffset = 0;
6920 unsigned idx = 0;
6921 llvm::IntegerType *I64 = llvm::IntegerType::get(getVMContext(), 64);
6922
Akira Hatanaka4984f5d2012-02-09 19:54:16 +00006923 // Iterate over fields in the struct/class and check if there are any aligned
6924 // double fields.
Akira Hatanaka101f70d2011-11-02 23:54:49 +00006925 for (RecordDecl::field_iterator i = RD->field_begin(), e = RD->field_end();
6926 i != e; ++i, ++idx) {
David Blaikie2d7c57e2012-04-30 02:36:29 +00006927 const QualType Ty = i->getType();
Akira Hatanaka101f70d2011-11-02 23:54:49 +00006928 const BuiltinType *BT = Ty->getAs<BuiltinType>();
6929
6930 if (!BT || BT->getKind() != BuiltinType::Double)
6931 continue;
6932
6933 uint64_t Offset = Layout.getFieldOffset(idx);
6934 if (Offset % 64) // Ignore doubles that are not aligned.
6935 continue;
6936
6937 // Add ((Offset - LastOffset) / 64) args of type i64.
6938 for (unsigned j = (Offset - LastOffset) / 64; j > 0; --j)
6939 ArgList.push_back(I64);
6940
6941 // Add double type.
6942 ArgList.push_back(llvm::Type::getDoubleTy(getVMContext()));
6943 LastOffset = Offset + 64;
6944 }
6945
Akira Hatanakae1e3ad32012-07-03 19:24:06 +00006946 CoerceToIntArgs(TySize - LastOffset, IntArgList);
6947 ArgList.append(IntArgList.begin(), IntArgList.end());
Akira Hatanaka101f70d2011-11-02 23:54:49 +00006948
6949 return llvm::StructType::get(getVMContext(), ArgList);
6950}
6951
Akira Hatanakaddd66342013-10-29 18:41:15 +00006952llvm::Type *MipsABIInfo::getPaddingType(uint64_t OrigOffset,
6953 uint64_t Offset) const {
6954 if (OrigOffset + MinABIStackAlignInBytes > Offset)
Craig Topper8a13c412014-05-21 05:09:00 +00006955 return nullptr;
Akira Hatanaka1632af62012-01-09 19:31:25 +00006956
Akira Hatanakaddd66342013-10-29 18:41:15 +00006957 return llvm::IntegerType::get(getVMContext(), (Offset - OrigOffset) * 8);
Akira Hatanaka1632af62012-01-09 19:31:25 +00006958}
Akira Hatanaka21ee88c2012-01-10 22:44:52 +00006959
Akira Hatanakaf64e1ad2012-01-07 00:25:33 +00006960ABIArgInfo
6961MipsABIInfo::classifyArgumentType(QualType Ty, uint64_t &Offset) const {
Daniel Sanders998c9102015-01-14 12:00:12 +00006962 Ty = useFirstFieldIfTransparentUnion(Ty);
6963
Akira Hatanaka1632af62012-01-09 19:31:25 +00006964 uint64_t OrigOffset = Offset;
Akira Hatanaka8ab86cb2012-05-11 21:56:58 +00006965 uint64_t TySize = getContext().getTypeSize(Ty);
Akira Hatanaka1632af62012-01-09 19:31:25 +00006966 uint64_t Align = getContext().getTypeAlign(Ty) / 8;
Akira Hatanaka8ab86cb2012-05-11 21:56:58 +00006967
Akira Hatanakae1e3ad32012-07-03 19:24:06 +00006968 Align = std::min(std::max(Align, (uint64_t)MinABIStackAlignInBytes),
6969 (uint64_t)StackAlignInBytes);
Rui Ueyama83aa9792016-01-14 21:00:27 +00006970 unsigned CurrOffset = llvm::alignTo(Offset, Align);
6971 Offset = CurrOffset + llvm::alignTo(TySize, Align * 8) / 8;
Akira Hatanaka1632af62012-01-09 19:31:25 +00006972
Akira Hatanakae1e3ad32012-07-03 19:24:06 +00006973 if (isAggregateTypeForABI(Ty) || Ty->isVectorType()) {
Akira Hatanakab579fe52011-06-02 00:09:17 +00006974 // Ignore empty aggregates.
Akira Hatanakaf64e1ad2012-01-07 00:25:33 +00006975 if (TySize == 0)
Akira Hatanakab579fe52011-06-02 00:09:17 +00006976 return ABIArgInfo::getIgnore();
6977
Mark Lacey3825e832013-10-06 01:33:34 +00006978 if (CGCXXABI::RecordArgABI RAA = getRecordArgABI(Ty, getCXXABI())) {
Akira Hatanaka8ab86cb2012-05-11 21:56:58 +00006979 Offset = OrigOffset + MinABIStackAlignInBytes;
John McCall7f416cc2015-09-08 08:05:57 +00006980 return getNaturalAlignIndirect(Ty, RAA == CGCXXABI::RAA_DirectInMemory);
Akira Hatanakaf64e1ad2012-01-07 00:25:33 +00006981 }
Akira Hatanakadf425db2011-08-01 18:09:58 +00006982
Akira Hatanaka8ab86cb2012-05-11 21:56:58 +00006983 // If we have reached here, aggregates are passed directly by coercing to
6984 // another structure type. Padding is inserted if the offset of the
6985 // aggregate is unaligned.
Daniel Sandersaa1b3552014-10-24 15:30:16 +00006986 ABIArgInfo ArgInfo =
6987 ABIArgInfo::getDirect(HandleAggregates(Ty, TySize), 0,
6988 getPaddingType(OrigOffset, CurrOffset));
6989 ArgInfo.setInReg(true);
6990 return ArgInfo;
Akira Hatanakab579fe52011-06-02 00:09:17 +00006991 }
6992
6993 // Treat an enum type as its underlying type.
6994 if (const EnumType *EnumTy = Ty->getAs<EnumType>())
6995 Ty = EnumTy->getDecl()->getIntegerType();
6996
Daniel Sanders5b445b32014-10-24 14:42:42 +00006997 // All integral types are promoted to the GPR width.
6998 if (Ty->isIntegralOrEnumerationType())
Alex Bradburye41a5e22018-01-12 20:08:16 +00006999 return extendType(Ty);
Akira Hatanaka1632af62012-01-09 19:31:25 +00007000
Akira Hatanakaddd66342013-10-29 18:41:15 +00007001 return ABIArgInfo::getDirect(
Craig Topper8a13c412014-05-21 05:09:00 +00007002 nullptr, 0, IsO32 ? nullptr : getPaddingType(OrigOffset, CurrOffset));
Akira Hatanakab579fe52011-06-02 00:09:17 +00007003}
7004
Akira Hatanakaf093f5b2012-01-04 03:34:42 +00007005llvm::Type*
7006MipsABIInfo::returnAggregateInRegs(QualType RetTy, uint64_t Size) const {
Akira Hatanakab6f74432012-02-09 18:49:26 +00007007 const RecordType *RT = RetTy->getAs<RecordType>();
Akira Hatanakae1e3ad32012-07-03 19:24:06 +00007008 SmallVector<llvm::Type*, 8> RTList;
Akira Hatanakaf093f5b2012-01-04 03:34:42 +00007009
Akira Hatanakab6f74432012-02-09 18:49:26 +00007010 if (RT && RT->isStructureOrClassType()) {
Akira Hatanakaf093f5b2012-01-04 03:34:42 +00007011 const RecordDecl *RD = RT->getDecl();
Akira Hatanakab6f74432012-02-09 18:49:26 +00007012 const ASTRecordLayout &Layout = getContext().getASTRecordLayout(RD);
7013 unsigned FieldCnt = Layout.getFieldCount();
Akira Hatanakaf093f5b2012-01-04 03:34:42 +00007014
Akira Hatanakab6f74432012-02-09 18:49:26 +00007015 // N32/64 returns struct/classes in floating point registers if the
7016 // following conditions are met:
7017 // 1. The size of the struct/class is no larger than 128-bit.
7018 // 2. The struct/class has one or two fields all of which are floating
7019 // point types.
Eric Christopher7565e0d2015-05-29 23:09:49 +00007020 // 3. The offset of the first field is zero (this follows what gcc does).
Akira Hatanakab6f74432012-02-09 18:49:26 +00007021 //
7022 // Any other composite results are returned in integer registers.
7023 //
7024 if (FieldCnt && (FieldCnt <= 2) && !Layout.getFieldOffset(0)) {
7025 RecordDecl::field_iterator b = RD->field_begin(), e = RD->field_end();
7026 for (; b != e; ++b) {
David Blaikie2d7c57e2012-04-30 02:36:29 +00007027 const BuiltinType *BT = b->getType()->getAs<BuiltinType>();
Akira Hatanakaf093f5b2012-01-04 03:34:42 +00007028
Akira Hatanakab6f74432012-02-09 18:49:26 +00007029 if (!BT || !BT->isFloatingPoint())
7030 break;
Akira Hatanakaf093f5b2012-01-04 03:34:42 +00007031
David Blaikie2d7c57e2012-04-30 02:36:29 +00007032 RTList.push_back(CGT.ConvertType(b->getType()));
Akira Hatanakab6f74432012-02-09 18:49:26 +00007033 }
7034
7035 if (b == e)
7036 return llvm::StructType::get(getVMContext(), RTList,
7037 RD->hasAttr<PackedAttr>());
7038
7039 RTList.clear();
Akira Hatanakaf093f5b2012-01-04 03:34:42 +00007040 }
Akira Hatanakaf093f5b2012-01-04 03:34:42 +00007041 }
7042
Akira Hatanakae1e3ad32012-07-03 19:24:06 +00007043 CoerceToIntArgs(Size, RTList);
Akira Hatanakaf093f5b2012-01-04 03:34:42 +00007044 return llvm::StructType::get(getVMContext(), RTList);
7045}
7046
Akira Hatanakab579fe52011-06-02 00:09:17 +00007047ABIArgInfo MipsABIInfo::classifyReturnType(QualType RetTy) const {
Akira Hatanaka60f5fe62012-01-23 23:18:57 +00007048 uint64_t Size = getContext().getTypeSize(RetTy);
7049
Daniel Sandersed39f582014-09-04 13:28:14 +00007050 if (RetTy->isVoidType())
7051 return ABIArgInfo::getIgnore();
7052
7053 // O32 doesn't treat zero-sized structs differently from other structs.
7054 // However, N32/N64 ignores zero sized return values.
7055 if (!IsO32 && Size == 0)
Akira Hatanakab579fe52011-06-02 00:09:17 +00007056 return ABIArgInfo::getIgnore();
7057
Akira Hatanakac37eddf2012-05-11 21:01:17 +00007058 if (isAggregateTypeForABI(RetTy) || RetTy->isVectorType()) {
Akira Hatanakaf093f5b2012-01-04 03:34:42 +00007059 if (Size <= 128) {
7060 if (RetTy->isAnyComplexType())
7061 return ABIArgInfo::getDirect();
7062
Daniel Sanderse5018b62014-09-04 15:05:39 +00007063 // O32 returns integer vectors in registers and N32/N64 returns all small
Daniel Sanders00a56ff2014-09-04 15:07:43 +00007064 // aggregates in registers.
Daniel Sanderse5018b62014-09-04 15:05:39 +00007065 if (!IsO32 ||
7066 (RetTy->isVectorType() && !RetTy->hasFloatingRepresentation())) {
7067 ABIArgInfo ArgInfo =
7068 ABIArgInfo::getDirect(returnAggregateInRegs(RetTy, Size));
7069 ArgInfo.setInReg(true);
7070 return ArgInfo;
7071 }
Akira Hatanakaf093f5b2012-01-04 03:34:42 +00007072 }
Akira Hatanakab579fe52011-06-02 00:09:17 +00007073
John McCall7f416cc2015-09-08 08:05:57 +00007074 return getNaturalAlignIndirect(RetTy);
Akira Hatanakab579fe52011-06-02 00:09:17 +00007075 }
7076
7077 // Treat an enum type as its underlying type.
7078 if (const EnumType *EnumTy = RetTy->getAs<EnumType>())
7079 RetTy = EnumTy->getDecl()->getIntegerType();
7080
Stefan Maksimovicb9da8a52018-07-30 10:44:46 +00007081 if (RetTy->isPromotableIntegerType())
7082 return ABIArgInfo::getExtend(RetTy);
7083
7084 if ((RetTy->isUnsignedIntegerOrEnumerationType() ||
7085 RetTy->isSignedIntegerOrEnumerationType()) && Size == 32 && !IsO32)
7086 return ABIArgInfo::getSignExtend(RetTy);
7087
7088 return ABIArgInfo::getDirect();
Akira Hatanakab579fe52011-06-02 00:09:17 +00007089}
7090
7091void MipsABIInfo::computeInfo(CGFunctionInfo &FI) const {
Akira Hatanaka32604a92012-01-12 01:10:09 +00007092 ABIArgInfo &RetInfo = FI.getReturnInfo();
Reid Kleckner40ca9132014-05-13 22:05:45 +00007093 if (!getCXXABI().classifyReturnType(FI))
7094 RetInfo = classifyReturnType(FI.getReturnType());
Akira Hatanaka32604a92012-01-12 01:10:09 +00007095
Eric Christopher7565e0d2015-05-29 23:09:49 +00007096 // Check if a pointer to an aggregate is passed as a hidden argument.
Akira Hatanaka8ab86cb2012-05-11 21:56:58 +00007097 uint64_t Offset = RetInfo.isIndirect() ? MinABIStackAlignInBytes : 0;
Akira Hatanaka32604a92012-01-12 01:10:09 +00007098
Aaron Ballmanec47bc22014-03-17 18:10:01 +00007099 for (auto &I : FI.arguments())
7100 I.info = classifyArgumentType(I.type, Offset);
Akira Hatanakab579fe52011-06-02 00:09:17 +00007101}
7102
John McCall7f416cc2015-09-08 08:05:57 +00007103Address MipsABIInfo::EmitVAArg(CodeGenFunction &CGF, Address VAListAddr,
7104 QualType OrigTy) const {
7105 QualType Ty = OrigTy;
Daniel Sanders59229dc2014-11-19 10:01:35 +00007106
Daniel Sanderscdcb5802015-01-13 10:47:00 +00007107 // Integer arguments are promoted to 32-bit on O32 and 64-bit on N32/N64.
7108 // Pointers are also promoted in the same way but this only matters for N32.
Daniel Sanders59229dc2014-11-19 10:01:35 +00007109 unsigned SlotSizeInBits = IsO32 ? 32 : 64;
Daniel Sanderscdcb5802015-01-13 10:47:00 +00007110 unsigned PtrWidth = getTarget().getPointerWidth(0);
John McCall7f416cc2015-09-08 08:05:57 +00007111 bool DidPromote = false;
Daniel Sanderscdcb5802015-01-13 10:47:00 +00007112 if ((Ty->isIntegerType() &&
John McCall7f416cc2015-09-08 08:05:57 +00007113 getContext().getIntWidth(Ty) < SlotSizeInBits) ||
Daniel Sanderscdcb5802015-01-13 10:47:00 +00007114 (Ty->isPointerType() && PtrWidth < SlotSizeInBits)) {
John McCall7f416cc2015-09-08 08:05:57 +00007115 DidPromote = true;
7116 Ty = getContext().getIntTypeForBitwidth(SlotSizeInBits,
7117 Ty->isSignedIntegerType());
Daniel Sanders59229dc2014-11-19 10:01:35 +00007118 }
Eric Christopher7565e0d2015-05-29 23:09:49 +00007119
John McCall7f416cc2015-09-08 08:05:57 +00007120 auto TyInfo = getContext().getTypeInfoInChars(Ty);
Daniel Sanders2ef3cdd32014-08-01 13:26:28 +00007121
John McCall7f416cc2015-09-08 08:05:57 +00007122 // The alignment of things in the argument area is never larger than
7123 // StackAlignInBytes.
7124 TyInfo.second =
7125 std::min(TyInfo.second, CharUnits::fromQuantity(StackAlignInBytes));
7126
7127 // MinABIStackAlignInBytes is the size of argument slots on the stack.
7128 CharUnits ArgSlotSize = CharUnits::fromQuantity(MinABIStackAlignInBytes);
7129
7130 Address Addr = emitVoidPtrVAArg(CGF, VAListAddr, Ty, /*indirect*/ false,
7131 TyInfo, ArgSlotSize, /*AllowHigherAlign*/ true);
7132
7133
7134 // If there was a promotion, "unpromote" into a temporary.
7135 // TODO: can we just use a pointer into a subset of the original slot?
7136 if (DidPromote) {
7137 Address Temp = CGF.CreateMemTemp(OrigTy, "vaarg.promotion-temp");
7138 llvm::Value *Promoted = CGF.Builder.CreateLoad(Addr);
7139
7140 // Truncate down to the right width.
7141 llvm::Type *IntTy = (OrigTy->isIntegerType() ? Temp.getElementType()
7142 : CGF.IntPtrTy);
7143 llvm::Value *V = CGF.Builder.CreateTrunc(Promoted, IntTy);
7144 if (OrigTy->isPointerType())
7145 V = CGF.Builder.CreateIntToPtr(V, Temp.getElementType());
7146
7147 CGF.Builder.CreateStore(V, Temp);
7148 Addr = Temp;
Daniel Sanders2ef3cdd32014-08-01 13:26:28 +00007149 }
Daniel Sanders2ef3cdd32014-08-01 13:26:28 +00007150
John McCall7f416cc2015-09-08 08:05:57 +00007151 return Addr;
Akira Hatanakab579fe52011-06-02 00:09:17 +00007152}
7153
Alex Bradburye41a5e22018-01-12 20:08:16 +00007154ABIArgInfo MipsABIInfo::extendType(QualType Ty) const {
Petar Jovanovic1a3f9652015-05-26 21:07:19 +00007155 int TySize = getContext().getTypeSize(Ty);
Eric Christopher7565e0d2015-05-29 23:09:49 +00007156
Petar Jovanovic1a3f9652015-05-26 21:07:19 +00007157 // MIPS64 ABI requires unsigned 32 bit integers to be sign extended.
7158 if (Ty->isUnsignedIntegerOrEnumerationType() && TySize == 32)
Alex Bradburye41a5e22018-01-12 20:08:16 +00007159 return ABIArgInfo::getSignExtend(Ty);
Eric Christopher7565e0d2015-05-29 23:09:49 +00007160
Alex Bradburye41a5e22018-01-12 20:08:16 +00007161 return ABIArgInfo::getExtend(Ty);
Petar Jovanovic1a3f9652015-05-26 21:07:19 +00007162}
7163
John McCall943fae92010-05-27 06:19:26 +00007164bool
7165MIPSTargetCodeGenInfo::initDwarfEHRegSizeTable(CodeGen::CodeGenFunction &CGF,
7166 llvm::Value *Address) const {
7167 // This information comes from gcc's implementation, which seems to
7168 // as canonical as it gets.
7169
John McCall943fae92010-05-27 06:19:26 +00007170 // Everything on MIPS is 4 bytes. Double-precision FP registers
7171 // are aliased to pairs of single-precision FP registers.
Chris Lattnerece04092012-02-07 00:39:47 +00007172 llvm::Value *Four8 = llvm::ConstantInt::get(CGF.Int8Ty, 4);
John McCall943fae92010-05-27 06:19:26 +00007173
7174 // 0-31 are the general purpose registers, $0 - $31.
7175 // 32-63 are the floating-point registers, $f0 - $f31.
7176 // 64 and 65 are the multiply/divide registers, $hi and $lo.
7177 // 66 is the (notional, I think) register for signal-handler return.
Chris Lattnerece04092012-02-07 00:39:47 +00007178 AssignToArrayRange(CGF.Builder, Address, Four8, 0, 65);
John McCall943fae92010-05-27 06:19:26 +00007179
7180 // 67-74 are the floating-point status registers, $fcc0 - $fcc7.
7181 // They are one bit wide and ignored here.
7182
7183 // 80-111 are the coprocessor 0 registers, $c0r0 - $c0r31.
7184 // (coprocessor 1 is the FP unit)
7185 // 112-143 are the coprocessor 2 registers, $c2r0 - $c2r31.
7186 // 144-175 are the coprocessor 3 registers, $c3r0 - $c3r31.
7187 // 176-181 are the DSP accumulator registers.
Chris Lattnerece04092012-02-07 00:39:47 +00007188 AssignToArrayRange(CGF.Builder, Address, Four8, 80, 181);
John McCall943fae92010-05-27 06:19:26 +00007189 return false;
7190}
7191
Peter Collingbourneadcf7c92011-10-13 16:24:41 +00007192//===----------------------------------------------------------------------===//
Dylan McKaye8232d72017-02-08 05:09:26 +00007193// AVR ABI Implementation.
7194//===----------------------------------------------------------------------===//
7195
7196namespace {
7197class AVRTargetCodeGenInfo : public TargetCodeGenInfo {
7198public:
7199 AVRTargetCodeGenInfo(CodeGenTypes &CGT)
7200 : TargetCodeGenInfo(new DefaultABIInfo(CGT)) { }
7201
7202 void setTargetAttributes(const Decl *D, llvm::GlobalValue *GV,
Rafael Espindoladeb10be2018-02-07 19:04:41 +00007203 CodeGen::CodeGenModule &CGM) const override {
7204 if (GV->isDeclaration())
Simon Atanasyan1a116db2017-07-20 20:34:18 +00007205 return;
Dylan McKaye8232d72017-02-08 05:09:26 +00007206 const auto *FD = dyn_cast_or_null<FunctionDecl>(D);
7207 if (!FD) return;
7208 auto *Fn = cast<llvm::Function>(GV);
7209
7210 if (FD->getAttr<AVRInterruptAttr>())
7211 Fn->addFnAttr("interrupt");
7212
7213 if (FD->getAttr<AVRSignalAttr>())
7214 Fn->addFnAttr("signal");
7215 }
7216};
7217}
7218
7219//===----------------------------------------------------------------------===//
Peter Collingbourneadcf7c92011-10-13 16:24:41 +00007220// TCE ABI Implementation (see http://tce.cs.tut.fi). Uses mostly the defaults.
Eric Christopher7565e0d2015-05-29 23:09:49 +00007221// Currently subclassed only to implement custom OpenCL C function attribute
Peter Collingbourneadcf7c92011-10-13 16:24:41 +00007222// handling.
7223//===----------------------------------------------------------------------===//
7224
7225namespace {
7226
7227class TCETargetCodeGenInfo : public DefaultTargetCodeGenInfo {
7228public:
7229 TCETargetCodeGenInfo(CodeGenTypes &CGT)
7230 : DefaultTargetCodeGenInfo(CGT) {}
7231
Eric Christopher162c91c2015-06-05 22:03:00 +00007232 void setTargetAttributes(const Decl *D, llvm::GlobalValue *GV,
Rafael Espindoladeb10be2018-02-07 19:04:41 +00007233 CodeGen::CodeGenModule &M) const override;
Peter Collingbourneadcf7c92011-10-13 16:24:41 +00007234};
7235
Eric Christopher162c91c2015-06-05 22:03:00 +00007236void TCETargetCodeGenInfo::setTargetAttributes(
Rafael Espindoladeb10be2018-02-07 19:04:41 +00007237 const Decl *D, llvm::GlobalValue *GV, CodeGen::CodeGenModule &M) const {
7238 if (GV->isDeclaration())
Simon Atanasyan1a116db2017-07-20 20:34:18 +00007239 return;
Akira Hatanakaaec6b2c2015-10-08 20:26:34 +00007240 const FunctionDecl *FD = dyn_cast_or_null<FunctionDecl>(D);
Peter Collingbourneadcf7c92011-10-13 16:24:41 +00007241 if (!FD) return;
7242
7243 llvm::Function *F = cast<llvm::Function>(GV);
Eric Christopher7565e0d2015-05-29 23:09:49 +00007244
David Blaikiebbafb8a2012-03-11 07:00:24 +00007245 if (M.getLangOpts().OpenCL) {
Peter Collingbourneadcf7c92011-10-13 16:24:41 +00007246 if (FD->hasAttr<OpenCLKernelAttr>()) {
7247 // OpenCL C Kernel functions are not subject to inlining
Bill Wendling207f0532012-12-20 19:27:06 +00007248 F->addFnAttr(llvm::Attribute::NoInline);
Aaron Ballman36a18ff2013-12-19 13:16:35 +00007249 const ReqdWorkGroupSizeAttr *Attr = FD->getAttr<ReqdWorkGroupSizeAttr>();
7250 if (Attr) {
Peter Collingbourneadcf7c92011-10-13 16:24:41 +00007251 // Convert the reqd_work_group_size() attributes to metadata.
7252 llvm::LLVMContext &Context = F->getContext();
Eric Christopher7565e0d2015-05-29 23:09:49 +00007253 llvm::NamedMDNode *OpenCLMetadata =
7254 M.getModule().getOrInsertNamedMetadata(
7255 "opencl.kernel_wg_size_info");
Peter Collingbourneadcf7c92011-10-13 16:24:41 +00007256
Duncan P. N. Exon Smithfb494912014-12-09 18:39:32 +00007257 SmallVector<llvm::Metadata *, 5> Operands;
7258 Operands.push_back(llvm::ConstantAsMetadata::get(F));
Peter Collingbourneadcf7c92011-10-13 16:24:41 +00007259
Duncan P. N. Exon Smithfb494912014-12-09 18:39:32 +00007260 Operands.push_back(
7261 llvm::ConstantAsMetadata::get(llvm::Constant::getIntegerValue(
7262 M.Int32Ty, llvm::APInt(32, Attr->getXDim()))));
7263 Operands.push_back(
7264 llvm::ConstantAsMetadata::get(llvm::Constant::getIntegerValue(
7265 M.Int32Ty, llvm::APInt(32, Attr->getYDim()))));
7266 Operands.push_back(
7267 llvm::ConstantAsMetadata::get(llvm::Constant::getIntegerValue(
7268 M.Int32Ty, llvm::APInt(32, Attr->getZDim()))));
Peter Collingbourneadcf7c92011-10-13 16:24:41 +00007269
Eric Christopher7565e0d2015-05-29 23:09:49 +00007270 // Add a boolean constant operand for "required" (true) or "hint"
7271 // (false) for implementing the work_group_size_hint attr later.
7272 // Currently always true as the hint is not yet implemented.
Duncan P. N. Exon Smithfb494912014-12-09 18:39:32 +00007273 Operands.push_back(
7274 llvm::ConstantAsMetadata::get(llvm::ConstantInt::getTrue(Context)));
Peter Collingbourneadcf7c92011-10-13 16:24:41 +00007275 OpenCLMetadata->addOperand(llvm::MDNode::get(Context, Operands));
7276 }
7277 }
7278 }
7279}
7280
Alexander Kornienkoab9db512015-06-22 23:07:51 +00007281}
John McCall943fae92010-05-27 06:19:26 +00007282
Tony Linthicum76329bf2011-12-12 21:14:55 +00007283//===----------------------------------------------------------------------===//
7284// Hexagon ABI Implementation
7285//===----------------------------------------------------------------------===//
7286
7287namespace {
7288
7289class HexagonABIInfo : public ABIInfo {
7290
7291
7292public:
7293 HexagonABIInfo(CodeGenTypes &CGT) : ABIInfo(CGT) {}
7294
7295private:
7296
7297 ABIArgInfo classifyReturnType(QualType RetTy) const;
7298 ABIArgInfo classifyArgumentType(QualType RetTy) const;
7299
Craig Topper4f12f102014-03-12 06:41:41 +00007300 void computeInfo(CGFunctionInfo &FI) const override;
Tony Linthicum76329bf2011-12-12 21:14:55 +00007301
John McCall7f416cc2015-09-08 08:05:57 +00007302 Address EmitVAArg(CodeGenFunction &CGF, Address VAListAddr,
7303 QualType Ty) const override;
Tony Linthicum76329bf2011-12-12 21:14:55 +00007304};
7305
7306class HexagonTargetCodeGenInfo : public TargetCodeGenInfo {
7307public:
7308 HexagonTargetCodeGenInfo(CodeGenTypes &CGT)
7309 :TargetCodeGenInfo(new HexagonABIInfo(CGT)) {}
7310
Craig Topper4f12f102014-03-12 06:41:41 +00007311 int getDwarfEHStackPointer(CodeGen::CodeGenModule &M) const override {
Tony Linthicum76329bf2011-12-12 21:14:55 +00007312 return 29;
7313 }
7314};
7315
Alexander Kornienkoab9db512015-06-22 23:07:51 +00007316}
Tony Linthicum76329bf2011-12-12 21:14:55 +00007317
7318void HexagonABIInfo::computeInfo(CGFunctionInfo &FI) const {
Reid Kleckner40ca9132014-05-13 22:05:45 +00007319 if (!getCXXABI().classifyReturnType(FI))
7320 FI.getReturnInfo() = classifyReturnType(FI.getReturnType());
Aaron Ballmanec47bc22014-03-17 18:10:01 +00007321 for (auto &I : FI.arguments())
7322 I.info = classifyArgumentType(I.type);
Tony Linthicum76329bf2011-12-12 21:14:55 +00007323}
7324
7325ABIArgInfo HexagonABIInfo::classifyArgumentType(QualType Ty) const {
7326 if (!isAggregateTypeForABI(Ty)) {
7327 // Treat an enum type as its underlying type.
7328 if (const EnumType *EnumTy = Ty->getAs<EnumType>())
7329 Ty = EnumTy->getDecl()->getIntegerType();
7330
Alex Bradburye41a5e22018-01-12 20:08:16 +00007331 return (Ty->isPromotableIntegerType() ? ABIArgInfo::getExtend(Ty)
7332 : ABIArgInfo::getDirect());
Tony Linthicum76329bf2011-12-12 21:14:55 +00007333 }
7334
Krzysztof Parzyszek408b2722017-05-12 13:18:07 +00007335 if (CGCXXABI::RecordArgABI RAA = getRecordArgABI(Ty, getCXXABI()))
7336 return getNaturalAlignIndirect(Ty, RAA == CGCXXABI::RAA_DirectInMemory);
7337
Tony Linthicum76329bf2011-12-12 21:14:55 +00007338 // Ignore empty records.
7339 if (isEmptyRecord(getContext(), Ty, true))
7340 return ABIArgInfo::getIgnore();
7341
Tony Linthicum76329bf2011-12-12 21:14:55 +00007342 uint64_t Size = getContext().getTypeSize(Ty);
7343 if (Size > 64)
John McCall7f416cc2015-09-08 08:05:57 +00007344 return getNaturalAlignIndirect(Ty, /*ByVal=*/true);
Tony Linthicum76329bf2011-12-12 21:14:55 +00007345 // Pass in the smallest viable integer type.
7346 else if (Size > 32)
7347 return ABIArgInfo::getDirect(llvm::Type::getInt64Ty(getVMContext()));
7348 else if (Size > 16)
7349 return ABIArgInfo::getDirect(llvm::Type::getInt32Ty(getVMContext()));
7350 else if (Size > 8)
7351 return ABIArgInfo::getDirect(llvm::Type::getInt16Ty(getVMContext()));
7352 else
7353 return ABIArgInfo::getDirect(llvm::Type::getInt8Ty(getVMContext()));
7354}
7355
7356ABIArgInfo HexagonABIInfo::classifyReturnType(QualType RetTy) const {
7357 if (RetTy->isVoidType())
7358 return ABIArgInfo::getIgnore();
7359
7360 // Large vector types should be returned via memory.
7361 if (RetTy->isVectorType() && getContext().getTypeSize(RetTy) > 64)
John McCall7f416cc2015-09-08 08:05:57 +00007362 return getNaturalAlignIndirect(RetTy);
Tony Linthicum76329bf2011-12-12 21:14:55 +00007363
7364 if (!isAggregateTypeForABI(RetTy)) {
7365 // Treat an enum type as its underlying type.
7366 if (const EnumType *EnumTy = RetTy->getAs<EnumType>())
7367 RetTy = EnumTy->getDecl()->getIntegerType();
7368
Alex Bradburye41a5e22018-01-12 20:08:16 +00007369 return (RetTy->isPromotableIntegerType() ? ABIArgInfo::getExtend(RetTy)
7370 : ABIArgInfo::getDirect());
Tony Linthicum76329bf2011-12-12 21:14:55 +00007371 }
7372
Tony Linthicum76329bf2011-12-12 21:14:55 +00007373 if (isEmptyRecord(getContext(), RetTy, true))
7374 return ABIArgInfo::getIgnore();
7375
7376 // Aggregates <= 8 bytes are returned in r0; other aggregates
7377 // are returned indirectly.
7378 uint64_t Size = getContext().getTypeSize(RetTy);
7379 if (Size <= 64) {
7380 // Return in the smallest viable integer type.
7381 if (Size <= 8)
7382 return ABIArgInfo::getDirect(llvm::Type::getInt8Ty(getVMContext()));
7383 if (Size <= 16)
7384 return ABIArgInfo::getDirect(llvm::Type::getInt16Ty(getVMContext()));
7385 if (Size <= 32)
7386 return ABIArgInfo::getDirect(llvm::Type::getInt32Ty(getVMContext()));
7387 return ABIArgInfo::getDirect(llvm::Type::getInt64Ty(getVMContext()));
7388 }
7389
John McCall7f416cc2015-09-08 08:05:57 +00007390 return getNaturalAlignIndirect(RetTy, /*ByVal=*/true);
Tony Linthicum76329bf2011-12-12 21:14:55 +00007391}
7392
John McCall7f416cc2015-09-08 08:05:57 +00007393Address HexagonABIInfo::EmitVAArg(CodeGenFunction &CGF, Address VAListAddr,
7394 QualType Ty) const {
7395 // FIXME: Someone needs to audit that this handle alignment correctly.
7396 return emitVoidPtrVAArg(CGF, VAListAddr, Ty, /*indirect*/ false,
7397 getContext().getTypeInfoInChars(Ty),
7398 CharUnits::fromQuantity(4),
7399 /*AllowHigherAlign*/ true);
Tony Linthicum76329bf2011-12-12 21:14:55 +00007400}
7401
Matt Arsenault43fae6c2014-12-04 20:38:18 +00007402//===----------------------------------------------------------------------===//
Jacques Pienaard964cc22016-03-28 21:02:54 +00007403// Lanai ABI Implementation
7404//===----------------------------------------------------------------------===//
7405
Benjamin Kramer5d28c7f2016-04-07 10:14:54 +00007406namespace {
Jacques Pienaard964cc22016-03-28 21:02:54 +00007407class LanaiABIInfo : public DefaultABIInfo {
7408public:
7409 LanaiABIInfo(CodeGen::CodeGenTypes &CGT) : DefaultABIInfo(CGT) {}
7410
7411 bool shouldUseInReg(QualType Ty, CCState &State) const;
7412
7413 void computeInfo(CGFunctionInfo &FI) const override {
7414 CCState State(FI.getCallingConvention());
7415 // Lanai uses 4 registers to pass arguments unless the function has the
7416 // regparm attribute set.
7417 if (FI.getHasRegParm()) {
7418 State.FreeRegs = FI.getRegParm();
7419 } else {
7420 State.FreeRegs = 4;
7421 }
7422
7423 if (!getCXXABI().classifyReturnType(FI))
7424 FI.getReturnInfo() = classifyReturnType(FI.getReturnType());
7425 for (auto &I : FI.arguments())
7426 I.info = classifyArgumentType(I.type, State);
7427 }
7428
Jacques Pienaare74d9132016-04-26 00:09:29 +00007429 ABIArgInfo getIndirectResult(QualType Ty, bool ByVal, CCState &State) const;
Jacques Pienaard964cc22016-03-28 21:02:54 +00007430 ABIArgInfo classifyArgumentType(QualType RetTy, CCState &State) const;
7431};
Benjamin Kramer5d28c7f2016-04-07 10:14:54 +00007432} // end anonymous namespace
Jacques Pienaard964cc22016-03-28 21:02:54 +00007433
7434bool LanaiABIInfo::shouldUseInReg(QualType Ty, CCState &State) const {
7435 unsigned Size = getContext().getTypeSize(Ty);
7436 unsigned SizeInRegs = llvm::alignTo(Size, 32U) / 32U;
7437
7438 if (SizeInRegs == 0)
7439 return false;
7440
7441 if (SizeInRegs > State.FreeRegs) {
7442 State.FreeRegs = 0;
7443 return false;
7444 }
7445
7446 State.FreeRegs -= SizeInRegs;
7447
7448 return true;
7449}
7450
Jacques Pienaare74d9132016-04-26 00:09:29 +00007451ABIArgInfo LanaiABIInfo::getIndirectResult(QualType Ty, bool ByVal,
7452 CCState &State) const {
7453 if (!ByVal) {
7454 if (State.FreeRegs) {
7455 --State.FreeRegs; // Non-byval indirects just use one pointer.
7456 return getNaturalAlignIndirectInReg(Ty);
7457 }
7458 return getNaturalAlignIndirect(Ty, false);
7459 }
7460
7461 // Compute the byval alignment.
Kostya Serebryany0da44422016-04-26 01:53:49 +00007462 const unsigned MinABIStackAlignInBytes = 4;
Jacques Pienaare74d9132016-04-26 00:09:29 +00007463 unsigned TypeAlign = getContext().getTypeAlign(Ty) / 8;
7464 return ABIArgInfo::getIndirect(CharUnits::fromQuantity(4), /*ByVal=*/true,
7465 /*Realign=*/TypeAlign >
7466 MinABIStackAlignInBytes);
7467}
7468
Jacques Pienaard964cc22016-03-28 21:02:54 +00007469ABIArgInfo LanaiABIInfo::classifyArgumentType(QualType Ty,
7470 CCState &State) const {
Jacques Pienaare74d9132016-04-26 00:09:29 +00007471 // Check with the C++ ABI first.
7472 const RecordType *RT = Ty->getAs<RecordType>();
7473 if (RT) {
7474 CGCXXABI::RecordArgABI RAA = getRecordArgABI(RT, getCXXABI());
7475 if (RAA == CGCXXABI::RAA_Indirect) {
7476 return getIndirectResult(Ty, /*ByVal=*/false, State);
7477 } else if (RAA == CGCXXABI::RAA_DirectInMemory) {
7478 return getNaturalAlignIndirect(Ty, /*ByRef=*/true);
7479 }
7480 }
7481
7482 if (isAggregateTypeForABI(Ty)) {
7483 // Structures with flexible arrays are always indirect.
7484 if (RT && RT->getDecl()->hasFlexibleArrayMember())
7485 return getIndirectResult(Ty, /*ByVal=*/true, State);
7486
7487 // Ignore empty structs/unions.
7488 if (isEmptyRecord(getContext(), Ty, true))
7489 return ABIArgInfo::getIgnore();
7490
7491 llvm::LLVMContext &LLVMContext = getVMContext();
7492 unsigned SizeInRegs = (getContext().getTypeSize(Ty) + 31) / 32;
7493 if (SizeInRegs <= State.FreeRegs) {
7494 llvm::IntegerType *Int32 = llvm::Type::getInt32Ty(LLVMContext);
7495 SmallVector<llvm::Type *, 3> Elements(SizeInRegs, Int32);
7496 llvm::Type *Result = llvm::StructType::get(LLVMContext, Elements);
7497 State.FreeRegs -= SizeInRegs;
7498 return ABIArgInfo::getDirectInReg(Result);
7499 } else {
7500 State.FreeRegs = 0;
7501 }
7502 return getIndirectResult(Ty, true, State);
7503 }
Jacques Pienaard964cc22016-03-28 21:02:54 +00007504
7505 // Treat an enum type as its underlying type.
7506 if (const auto *EnumTy = Ty->getAs<EnumType>())
7507 Ty = EnumTy->getDecl()->getIntegerType();
7508
Jacques Pienaare74d9132016-04-26 00:09:29 +00007509 bool InReg = shouldUseInReg(Ty, State);
7510 if (Ty->isPromotableIntegerType()) {
7511 if (InReg)
7512 return ABIArgInfo::getDirectInReg();
Alex Bradburye41a5e22018-01-12 20:08:16 +00007513 return ABIArgInfo::getExtend(Ty);
Jacques Pienaare74d9132016-04-26 00:09:29 +00007514 }
7515 if (InReg)
7516 return ABIArgInfo::getDirectInReg();
Jacques Pienaard964cc22016-03-28 21:02:54 +00007517 return ABIArgInfo::getDirect();
7518}
7519
7520namespace {
7521class LanaiTargetCodeGenInfo : public TargetCodeGenInfo {
7522public:
7523 LanaiTargetCodeGenInfo(CodeGen::CodeGenTypes &CGT)
7524 : TargetCodeGenInfo(new LanaiABIInfo(CGT)) {}
7525};
7526}
7527
7528//===----------------------------------------------------------------------===//
Matt Arsenault43fae6c2014-12-04 20:38:18 +00007529// AMDGPU ABI Implementation
7530//===----------------------------------------------------------------------===//
7531
7532namespace {
7533
Matt Arsenault88d7da02016-08-22 19:25:59 +00007534class AMDGPUABIInfo final : public DefaultABIInfo {
Matt Arsenault88d7da02016-08-22 19:25:59 +00007535private:
Matt Arsenault3fe73952017-08-09 21:44:58 +00007536 static const unsigned MaxNumRegsForArgsRet = 16;
7537
Matt Arsenault3fe73952017-08-09 21:44:58 +00007538 unsigned numRegsForType(QualType Ty) const;
7539
7540 bool isHomogeneousAggregateBaseType(QualType Ty) const override;
7541 bool isHomogeneousAggregateSmallEnough(const Type *Base,
7542 uint64_t Members) const override;
7543
7544public:
7545 explicit AMDGPUABIInfo(CodeGen::CodeGenTypes &CGT) :
7546 DefaultABIInfo(CGT) {}
7547
7548 ABIArgInfo classifyReturnType(QualType RetTy) const;
7549 ABIArgInfo classifyKernelArgumentType(QualType Ty) const;
7550 ABIArgInfo classifyArgumentType(QualType Ty, unsigned &NumRegsLeft) const;
Matt Arsenault88d7da02016-08-22 19:25:59 +00007551
7552 void computeInfo(CGFunctionInfo &FI) const override;
7553};
7554
Matt Arsenault3fe73952017-08-09 21:44:58 +00007555bool AMDGPUABIInfo::isHomogeneousAggregateBaseType(QualType Ty) const {
7556 return true;
7557}
7558
7559bool AMDGPUABIInfo::isHomogeneousAggregateSmallEnough(
7560 const Type *Base, uint64_t Members) const {
7561 uint32_t NumRegs = (getContext().getTypeSize(Base) + 31) / 32;
7562
7563 // Homogeneous Aggregates may occupy at most 16 registers.
7564 return Members * NumRegs <= MaxNumRegsForArgsRet;
7565}
7566
Matt Arsenault3fe73952017-08-09 21:44:58 +00007567/// Estimate number of registers the type will use when passed in registers.
7568unsigned AMDGPUABIInfo::numRegsForType(QualType Ty) const {
7569 unsigned NumRegs = 0;
7570
7571 if (const VectorType *VT = Ty->getAs<VectorType>()) {
7572 // Compute from the number of elements. The reported size is based on the
7573 // in-memory size, which includes the padding 4th element for 3-vectors.
7574 QualType EltTy = VT->getElementType();
7575 unsigned EltSize = getContext().getTypeSize(EltTy);
7576
7577 // 16-bit element vectors should be passed as packed.
7578 if (EltSize == 16)
7579 return (VT->getNumElements() + 1) / 2;
7580
7581 unsigned EltNumRegs = (EltSize + 31) / 32;
7582 return EltNumRegs * VT->getNumElements();
7583 }
7584
7585 if (const RecordType *RT = Ty->getAs<RecordType>()) {
7586 const RecordDecl *RD = RT->getDecl();
7587 assert(!RD->hasFlexibleArrayMember());
7588
7589 for (const FieldDecl *Field : RD->fields()) {
7590 QualType FieldTy = Field->getType();
7591 NumRegs += numRegsForType(FieldTy);
7592 }
7593
7594 return NumRegs;
7595 }
7596
7597 return (getContext().getTypeSize(Ty) + 31) / 32;
7598}
7599
Matt Arsenault88d7da02016-08-22 19:25:59 +00007600void AMDGPUABIInfo::computeInfo(CGFunctionInfo &FI) const {
Matt Arsenault3fe73952017-08-09 21:44:58 +00007601 llvm::CallingConv::ID CC = FI.getCallingConvention();
7602
Matt Arsenault88d7da02016-08-22 19:25:59 +00007603 if (!getCXXABI().classifyReturnType(FI))
7604 FI.getReturnInfo() = classifyReturnType(FI.getReturnType());
7605
Matt Arsenault3fe73952017-08-09 21:44:58 +00007606 unsigned NumRegsLeft = MaxNumRegsForArgsRet;
7607 for (auto &Arg : FI.arguments()) {
7608 if (CC == llvm::CallingConv::AMDGPU_KERNEL) {
7609 Arg.info = classifyKernelArgumentType(Arg.type);
7610 } else {
7611 Arg.info = classifyArgumentType(Arg.type, NumRegsLeft);
7612 }
7613 }
Matt Arsenault88d7da02016-08-22 19:25:59 +00007614}
7615
Matt Arsenault3fe73952017-08-09 21:44:58 +00007616ABIArgInfo AMDGPUABIInfo::classifyReturnType(QualType RetTy) const {
7617 if (isAggregateTypeForABI(RetTy)) {
7618 // Records with non-trivial destructors/copy-constructors should not be
7619 // returned by value.
7620 if (!getRecordArgABI(RetTy, getCXXABI())) {
7621 // Ignore empty structs/unions.
7622 if (isEmptyRecord(getContext(), RetTy, true))
7623 return ABIArgInfo::getIgnore();
7624
7625 // Lower single-element structs to just return a regular value.
7626 if (const Type *SeltTy = isSingleElementStruct(RetTy, getContext()))
7627 return ABIArgInfo::getDirect(CGT.ConvertType(QualType(SeltTy, 0)));
7628
7629 if (const RecordType *RT = RetTy->getAs<RecordType>()) {
7630 const RecordDecl *RD = RT->getDecl();
7631 if (RD->hasFlexibleArrayMember())
7632 return DefaultABIInfo::classifyReturnType(RetTy);
7633 }
7634
7635 // Pack aggregates <= 4 bytes into single VGPR or pair.
7636 uint64_t Size = getContext().getTypeSize(RetTy);
7637 if (Size <= 16)
7638 return ABIArgInfo::getDirect(llvm::Type::getInt16Ty(getVMContext()));
7639
7640 if (Size <= 32)
7641 return ABIArgInfo::getDirect(llvm::Type::getInt32Ty(getVMContext()));
7642
7643 if (Size <= 64) {
7644 llvm::Type *I32Ty = llvm::Type::getInt32Ty(getVMContext());
7645 return ABIArgInfo::getDirect(llvm::ArrayType::get(I32Ty, 2));
7646 }
7647
7648 if (numRegsForType(RetTy) <= MaxNumRegsForArgsRet)
7649 return ABIArgInfo::getDirect();
7650 }
Matt Arsenault88d7da02016-08-22 19:25:59 +00007651 }
7652
Matt Arsenault3fe73952017-08-09 21:44:58 +00007653 // Otherwise just do the default thing.
7654 return DefaultABIInfo::classifyReturnType(RetTy);
7655}
7656
7657/// For kernels all parameters are really passed in a special buffer. It doesn't
7658/// make sense to pass anything byval, so everything must be direct.
7659ABIArgInfo AMDGPUABIInfo::classifyKernelArgumentType(QualType Ty) const {
7660 Ty = useFirstFieldIfTransparentUnion(Ty);
7661
7662 // TODO: Can we omit empty structs?
7663
Matt Arsenault88d7da02016-08-22 19:25:59 +00007664 // Coerce single element structs to its element.
Matt Arsenault3fe73952017-08-09 21:44:58 +00007665 if (const Type *SeltTy = isSingleElementStruct(Ty, getContext()))
7666 return ABIArgInfo::getDirect(CGT.ConvertType(QualType(SeltTy, 0)));
Matt Arsenault88d7da02016-08-22 19:25:59 +00007667
7668 // If we set CanBeFlattened to true, CodeGen will expand the struct to its
7669 // individual elements, which confuses the Clover OpenCL backend; therefore we
7670 // have to set it to false here. Other args of getDirect() are just defaults.
7671 return ABIArgInfo::getDirect(nullptr, 0, nullptr, false);
7672}
7673
Matt Arsenault3fe73952017-08-09 21:44:58 +00007674ABIArgInfo AMDGPUABIInfo::classifyArgumentType(QualType Ty,
7675 unsigned &NumRegsLeft) const {
7676 assert(NumRegsLeft <= MaxNumRegsForArgsRet && "register estimate underflow");
7677
7678 Ty = useFirstFieldIfTransparentUnion(Ty);
7679
7680 if (isAggregateTypeForABI(Ty)) {
7681 // Records with non-trivial destructors/copy-constructors should not be
7682 // passed by value.
7683 if (auto RAA = getRecordArgABI(Ty, getCXXABI()))
7684 return getNaturalAlignIndirect(Ty, RAA == CGCXXABI::RAA_DirectInMemory);
7685
7686 // Ignore empty structs/unions.
7687 if (isEmptyRecord(getContext(), Ty, true))
7688 return ABIArgInfo::getIgnore();
7689
7690 // Lower single-element structs to just pass a regular value. TODO: We
7691 // could do reasonable-size multiple-element structs too, using getExpand(),
7692 // though watch out for things like bitfields.
7693 if (const Type *SeltTy = isSingleElementStruct(Ty, getContext()))
7694 return ABIArgInfo::getDirect(CGT.ConvertType(QualType(SeltTy, 0)));
7695
7696 if (const RecordType *RT = Ty->getAs<RecordType>()) {
7697 const RecordDecl *RD = RT->getDecl();
7698 if (RD->hasFlexibleArrayMember())
7699 return DefaultABIInfo::classifyArgumentType(Ty);
7700 }
7701
7702 // Pack aggregates <= 8 bytes into single VGPR or pair.
7703 uint64_t Size = getContext().getTypeSize(Ty);
7704 if (Size <= 64) {
7705 unsigned NumRegs = (Size + 31) / 32;
7706 NumRegsLeft -= std::min(NumRegsLeft, NumRegs);
7707
7708 if (Size <= 16)
7709 return ABIArgInfo::getDirect(llvm::Type::getInt16Ty(getVMContext()));
7710
7711 if (Size <= 32)
7712 return ABIArgInfo::getDirect(llvm::Type::getInt32Ty(getVMContext()));
7713
7714 // XXX: Should this be i64 instead, and should the limit increase?
7715 llvm::Type *I32Ty = llvm::Type::getInt32Ty(getVMContext());
7716 return ABIArgInfo::getDirect(llvm::ArrayType::get(I32Ty, 2));
7717 }
7718
7719 if (NumRegsLeft > 0) {
7720 unsigned NumRegs = numRegsForType(Ty);
7721 if (NumRegsLeft >= NumRegs) {
7722 NumRegsLeft -= NumRegs;
7723 return ABIArgInfo::getDirect();
7724 }
7725 }
7726 }
7727
7728 // Otherwise just do the default thing.
7729 ABIArgInfo ArgInfo = DefaultABIInfo::classifyArgumentType(Ty);
7730 if (!ArgInfo.isIndirect()) {
7731 unsigned NumRegs = numRegsForType(Ty);
7732 NumRegsLeft -= std::min(NumRegs, NumRegsLeft);
7733 }
7734
7735 return ArgInfo;
7736}
7737
Matt Arsenault43fae6c2014-12-04 20:38:18 +00007738class AMDGPUTargetCodeGenInfo : public TargetCodeGenInfo {
7739public:
7740 AMDGPUTargetCodeGenInfo(CodeGenTypes &CGT)
Matt Arsenault88d7da02016-08-22 19:25:59 +00007741 : TargetCodeGenInfo(new AMDGPUABIInfo(CGT)) {}
Eric Christopher162c91c2015-06-05 22:03:00 +00007742 void setTargetAttributes(const Decl *D, llvm::GlobalValue *GV,
Rafael Espindoladeb10be2018-02-07 19:04:41 +00007743 CodeGen::CodeGenModule &M) const override;
Nikolay Haustov8c6538b2016-06-30 09:06:33 +00007744 unsigned getOpenCLKernelCallingConv() const override;
Nico Weber7849eeb2016-12-14 21:38:18 +00007745
Yaxun Liu402804b2016-12-15 08:09:08 +00007746 llvm::Constant *getNullPointer(const CodeGen::CodeGenModule &CGM,
7747 llvm::PointerType *T, QualType QT) const override;
Yaxun Liu6d96f1632017-05-18 18:51:09 +00007748
Alexander Richardson6d989432017-10-15 18:48:14 +00007749 LangAS getASTAllocaAddressSpace() const override {
7750 return getLangASFromTargetAS(
7751 getABIInfo().getDataLayout().getAllocaAddrSpace());
Yaxun Liu6d96f1632017-05-18 18:51:09 +00007752 }
Alexander Richardson6d989432017-10-15 18:48:14 +00007753 LangAS getGlobalVarAddressSpace(CodeGenModule &CGM,
7754 const VarDecl *D) const override;
Yaxun Liu39195062017-08-04 18:16:31 +00007755 llvm::SyncScope::ID getLLVMSyncScopeID(SyncScope S,
7756 llvm::LLVMContext &C) const override;
Yaxun Liuc2a87a02017-10-14 12:23:50 +00007757 llvm::Function *
7758 createEnqueuedBlockKernel(CodeGenFunction &CGF,
7759 llvm::Function *BlockInvokeFunc,
7760 llvm::Value *BlockLiteral) const override;
Yaxun Liub0eee292018-03-29 14:50:00 +00007761 bool shouldEmitStaticExternCAliases() const override;
Yaxun Liu6c10a662018-06-12 00:16:33 +00007762 void setCUDAKernelCallingConvention(const FunctionType *&FT) const override;
Yaxun Liu402804b2016-12-15 08:09:08 +00007763};
Alexander Kornienkoab9db512015-06-22 23:07:51 +00007764}
Matt Arsenault43fae6c2014-12-04 20:38:18 +00007765
Scott Linder80a1ee42019-02-12 18:30:38 +00007766static bool requiresAMDGPUProtectedVisibility(const Decl *D,
7767 llvm::GlobalValue *GV) {
7768 if (GV->getVisibility() != llvm::GlobalValue::HiddenVisibility)
7769 return false;
7770
7771 return D->hasAttr<OpenCLKernelAttr>() ||
7772 (isa<FunctionDecl>(D) && D->hasAttr<CUDAGlobalAttr>()) ||
7773 (isa<VarDecl>(D) && D->hasAttr<CUDADeviceAttr>());
7774}
7775
Eric Christopher162c91c2015-06-05 22:03:00 +00007776void AMDGPUTargetCodeGenInfo::setTargetAttributes(
Rafael Espindoladeb10be2018-02-07 19:04:41 +00007777 const Decl *D, llvm::GlobalValue *GV, CodeGen::CodeGenModule &M) const {
Scott Linder80a1ee42019-02-12 18:30:38 +00007778 if (requiresAMDGPUProtectedVisibility(D, GV)) {
7779 GV->setVisibility(llvm::GlobalValue::ProtectedVisibility);
7780 GV->setDSOLocal(true);
7781 }
7782
Rafael Espindoladeb10be2018-02-07 19:04:41 +00007783 if (GV->isDeclaration())
Simon Atanasyan1a116db2017-07-20 20:34:18 +00007784 return;
Akira Hatanakaaec6b2c2015-10-08 20:26:34 +00007785 const FunctionDecl *FD = dyn_cast_or_null<FunctionDecl>(D);
Matt Arsenault43fae6c2014-12-04 20:38:18 +00007786 if (!FD)
7787 return;
7788
Konstantin Zhuravlyov5b48d722016-09-26 01:02:57 +00007789 llvm::Function *F = cast<llvm::Function>(GV);
7790
Stanislav Mekhanoshin921a4232017-04-06 18:15:44 +00007791 const auto *ReqdWGS = M.getLangOpts().OpenCL ?
7792 FD->getAttr<ReqdWorkGroupSizeAttr>() : nullptr;
Tony Tye1a3f3a22018-03-23 18:43:15 +00007793
7794 if (M.getLangOpts().OpenCL && FD->hasAttr<OpenCLKernelAttr>() &&
7795 (M.getTriple().getOS() == llvm::Triple::AMDHSA))
Tony Tye68e11a62018-03-23 18:51:45 +00007796 F->addFnAttr("amdgpu-implicitarg-num-bytes", "48");
Tony Tye1a3f3a22018-03-23 18:43:15 +00007797
Stanislav Mekhanoshin921a4232017-04-06 18:15:44 +00007798 const auto *FlatWGS = FD->getAttr<AMDGPUFlatWorkGroupSizeAttr>();
7799 if (ReqdWGS || FlatWGS) {
7800 unsigned Min = FlatWGS ? FlatWGS->getMin() : 0;
7801 unsigned Max = FlatWGS ? FlatWGS->getMax() : 0;
7802 if (ReqdWGS && Min == 0 && Max == 0)
7803 Min = Max = ReqdWGS->getXDim() * ReqdWGS->getYDim() * ReqdWGS->getZDim();
Konstantin Zhuravlyov5b48d722016-09-26 01:02:57 +00007804
7805 if (Min != 0) {
7806 assert(Min <= Max && "Min must be less than or equal Max");
7807
7808 std::string AttrVal = llvm::utostr(Min) + "," + llvm::utostr(Max);
7809 F->addFnAttr("amdgpu-flat-work-group-size", AttrVal);
7810 } else
7811 assert(Max == 0 && "Max must be zero");
Matt Arsenault43fae6c2014-12-04 20:38:18 +00007812 }
7813
Konstantin Zhuravlyov5b48d722016-09-26 01:02:57 +00007814 if (const auto *Attr = FD->getAttr<AMDGPUWavesPerEUAttr>()) {
7815 unsigned Min = Attr->getMin();
7816 unsigned Max = Attr->getMax();
7817
7818 if (Min != 0) {
7819 assert((Max == 0 || Min <= Max) && "Min must be less than or equal Max");
7820
7821 std::string AttrVal = llvm::utostr(Min);
7822 if (Max != 0)
7823 AttrVal = AttrVal + "," + llvm::utostr(Max);
7824 F->addFnAttr("amdgpu-waves-per-eu", AttrVal);
7825 } else
7826 assert(Max == 0 && "Max must be zero");
7827 }
7828
7829 if (const auto *Attr = FD->getAttr<AMDGPUNumSGPRAttr>()) {
Matt Arsenault43fae6c2014-12-04 20:38:18 +00007830 unsigned NumSGPR = Attr->getNumSGPR();
Konstantin Zhuravlyov5b48d722016-09-26 01:02:57 +00007831
Matt Arsenault43fae6c2014-12-04 20:38:18 +00007832 if (NumSGPR != 0)
Konstantin Zhuravlyov5b48d722016-09-26 01:02:57 +00007833 F->addFnAttr("amdgpu-num-sgpr", llvm::utostr(NumSGPR));
7834 }
7835
7836 if (const auto *Attr = FD->getAttr<AMDGPUNumVGPRAttr>()) {
7837 uint32_t NumVGPR = Attr->getNumVGPR();
7838
7839 if (NumVGPR != 0)
7840 F->addFnAttr("amdgpu-num-vgpr", llvm::utostr(NumVGPR));
Matt Arsenault43fae6c2014-12-04 20:38:18 +00007841 }
Yaxun Liuf2e8ab22016-07-19 19:39:45 +00007842}
Tony Linthicum76329bf2011-12-12 21:14:55 +00007843
Nikolay Haustov8c6538b2016-06-30 09:06:33 +00007844unsigned AMDGPUTargetCodeGenInfo::getOpenCLKernelCallingConv() const {
7845 return llvm::CallingConv::AMDGPU_KERNEL;
7846}
7847
Yaxun Liu402804b2016-12-15 08:09:08 +00007848// Currently LLVM assumes null pointers always have value 0,
7849// which results in incorrectly transformed IR. Therefore, instead of
7850// emitting null pointers in private and local address spaces, a null
7851// pointer in generic address space is emitted which is casted to a
7852// pointer in local or private address space.
7853llvm::Constant *AMDGPUTargetCodeGenInfo::getNullPointer(
7854 const CodeGen::CodeGenModule &CGM, llvm::PointerType *PT,
7855 QualType QT) const {
7856 if (CGM.getContext().getTargetNullPointerValue(QT) == 0)
7857 return llvm::ConstantPointerNull::get(PT);
7858
7859 auto &Ctx = CGM.getContext();
7860 auto NPT = llvm::PointerType::get(PT->getElementType(),
7861 Ctx.getTargetAddressSpace(LangAS::opencl_generic));
7862 return llvm::ConstantExpr::getAddrSpaceCast(
7863 llvm::ConstantPointerNull::get(NPT), PT);
7864}
7865
Alexander Richardson6d989432017-10-15 18:48:14 +00007866LangAS
Yaxun Liucbf647c2017-07-08 13:24:52 +00007867AMDGPUTargetCodeGenInfo::getGlobalVarAddressSpace(CodeGenModule &CGM,
7868 const VarDecl *D) const {
7869 assert(!CGM.getLangOpts().OpenCL &&
7870 !(CGM.getLangOpts().CUDA && CGM.getLangOpts().CUDAIsDevice) &&
7871 "Address space agnostic languages only");
Alexander Richardson6d989432017-10-15 18:48:14 +00007872 LangAS DefaultGlobalAS = getLangASFromTargetAS(
7873 CGM.getContext().getTargetAddressSpace(LangAS::opencl_global));
Yaxun Liucbf647c2017-07-08 13:24:52 +00007874 if (!D)
7875 return DefaultGlobalAS;
7876
Alexander Richardson6d989432017-10-15 18:48:14 +00007877 LangAS AddrSpace = D->getType().getAddressSpace();
7878 assert(AddrSpace == LangAS::Default || isTargetAddressSpace(AddrSpace));
Yaxun Liucbf647c2017-07-08 13:24:52 +00007879 if (AddrSpace != LangAS::Default)
7880 return AddrSpace;
7881
7882 if (CGM.isTypeConstant(D->getType(), false)) {
7883 if (auto ConstAS = CGM.getTarget().getConstantAddressSpace())
7884 return ConstAS.getValue();
7885 }
7886 return DefaultGlobalAS;
7887}
7888
Yaxun Liu39195062017-08-04 18:16:31 +00007889llvm::SyncScope::ID
7890AMDGPUTargetCodeGenInfo::getLLVMSyncScopeID(SyncScope S,
7891 llvm::LLVMContext &C) const {
7892 StringRef Name;
7893 switch (S) {
7894 case SyncScope::OpenCLWorkGroup:
7895 Name = "workgroup";
7896 break;
7897 case SyncScope::OpenCLDevice:
7898 Name = "agent";
7899 break;
7900 case SyncScope::OpenCLAllSVMDevices:
7901 Name = "";
7902 break;
7903 case SyncScope::OpenCLSubGroup:
7904 Name = "subgroup";
7905 }
7906 return C.getOrInsertSyncScopeID(Name);
7907}
7908
Yaxun Liub0eee292018-03-29 14:50:00 +00007909bool AMDGPUTargetCodeGenInfo::shouldEmitStaticExternCAliases() const {
7910 return false;
7911}
7912
Yaxun Liu4306f202018-04-20 17:01:03 +00007913void AMDGPUTargetCodeGenInfo::setCUDAKernelCallingConvention(
Yaxun Liu6c10a662018-06-12 00:16:33 +00007914 const FunctionType *&FT) const {
7915 FT = getABIInfo().getContext().adjustFunctionType(
7916 FT, FT->getExtInfo().withCallingConv(CC_OpenCLKernel));
Yaxun Liu4306f202018-04-20 17:01:03 +00007917}
7918
Jakob Stoklund Olesend28ab7e2013-05-27 21:48:25 +00007919//===----------------------------------------------------------------------===//
Chris Dewhurst7e7ee962016-06-08 14:47:25 +00007920// SPARC v8 ABI Implementation.
7921// Based on the SPARC Compliance Definition version 2.4.1.
7922//
7923// Ensures that complex values are passed in registers.
7924//
7925namespace {
7926class SparcV8ABIInfo : public DefaultABIInfo {
7927public:
7928 SparcV8ABIInfo(CodeGenTypes &CGT) : DefaultABIInfo(CGT) {}
7929
7930private:
7931 ABIArgInfo classifyReturnType(QualType RetTy) const;
7932 void computeInfo(CGFunctionInfo &FI) const override;
7933};
7934} // end anonymous namespace
7935
7936
7937ABIArgInfo
7938SparcV8ABIInfo::classifyReturnType(QualType Ty) const {
7939 if (Ty->isAnyComplexType()) {
7940 return ABIArgInfo::getDirect();
7941 }
7942 else {
7943 return DefaultABIInfo::classifyReturnType(Ty);
7944 }
7945}
7946
7947void SparcV8ABIInfo::computeInfo(CGFunctionInfo &FI) const {
7948
7949 FI.getReturnInfo() = classifyReturnType(FI.getReturnType());
7950 for (auto &Arg : FI.arguments())
7951 Arg.info = classifyArgumentType(Arg.type);
7952}
7953
7954namespace {
7955class SparcV8TargetCodeGenInfo : public TargetCodeGenInfo {
7956public:
7957 SparcV8TargetCodeGenInfo(CodeGenTypes &CGT)
7958 : TargetCodeGenInfo(new SparcV8ABIInfo(CGT)) {}
7959};
7960} // end anonymous namespace
7961
7962//===----------------------------------------------------------------------===//
Jakob Stoklund Olesend28ab7e2013-05-27 21:48:25 +00007963// SPARC v9 ABI Implementation.
7964// Based on the SPARC Compliance Definition version 2.4.1.
7965//
7966// Function arguments a mapped to a nominal "parameter array" and promoted to
7967// registers depending on their type. Each argument occupies 8 or 16 bytes in
7968// the array, structs larger than 16 bytes are passed indirectly.
7969//
7970// One case requires special care:
7971//
7972// struct mixed {
7973// int i;
7974// float f;
7975// };
7976//
7977// When a struct mixed is passed by value, it only occupies 8 bytes in the
7978// parameter array, but the int is passed in an integer register, and the float
7979// is passed in a floating point register. This is represented as two arguments
7980// with the LLVM IR inreg attribute:
7981//
7982// declare void f(i32 inreg %i, float inreg %f)
7983//
7984// The code generator will only allocate 4 bytes from the parameter array for
7985// the inreg arguments. All other arguments are allocated a multiple of 8
7986// bytes.
7987//
7988namespace {
7989class SparcV9ABIInfo : public ABIInfo {
7990public:
7991 SparcV9ABIInfo(CodeGenTypes &CGT) : ABIInfo(CGT) {}
7992
7993private:
7994 ABIArgInfo classifyType(QualType RetTy, unsigned SizeLimit) const;
Craig Topper4f12f102014-03-12 06:41:41 +00007995 void computeInfo(CGFunctionInfo &FI) const override;
John McCall7f416cc2015-09-08 08:05:57 +00007996 Address EmitVAArg(CodeGenFunction &CGF, Address VAListAddr,
7997 QualType Ty) const override;
Jakob Stoklund Olesen02dc6a12013-05-28 04:57:37 +00007998
7999 // Coercion type builder for structs passed in registers. The coercion type
8000 // serves two purposes:
8001 //
8002 // 1. Pad structs to a multiple of 64 bits, so they are passed 'left-aligned'
8003 // in registers.
8004 // 2. Expose aligned floating point elements as first-level elements, so the
8005 // code generator knows to pass them in floating point registers.
8006 //
8007 // We also compute the InReg flag which indicates that the struct contains
8008 // aligned 32-bit floats.
8009 //
8010 struct CoerceBuilder {
8011 llvm::LLVMContext &Context;
8012 const llvm::DataLayout &DL;
8013 SmallVector<llvm::Type*, 8> Elems;
8014 uint64_t Size;
8015 bool InReg;
8016
8017 CoerceBuilder(llvm::LLVMContext &c, const llvm::DataLayout &dl)
8018 : Context(c), DL(dl), Size(0), InReg(false) {}
8019
8020 // Pad Elems with integers until Size is ToSize.
8021 void pad(uint64_t ToSize) {
8022 assert(ToSize >= Size && "Cannot remove elements");
8023 if (ToSize == Size)
8024 return;
8025
8026 // Finish the current 64-bit word.
Rui Ueyama83aa9792016-01-14 21:00:27 +00008027 uint64_t Aligned = llvm::alignTo(Size, 64);
Jakob Stoklund Olesen02dc6a12013-05-28 04:57:37 +00008028 if (Aligned > Size && Aligned <= ToSize) {
8029 Elems.push_back(llvm::IntegerType::get(Context, Aligned - Size));
8030 Size = Aligned;
8031 }
8032
8033 // Add whole 64-bit words.
8034 while (Size + 64 <= ToSize) {
8035 Elems.push_back(llvm::Type::getInt64Ty(Context));
8036 Size += 64;
8037 }
8038
8039 // Final in-word padding.
8040 if (Size < ToSize) {
8041 Elems.push_back(llvm::IntegerType::get(Context, ToSize - Size));
8042 Size = ToSize;
8043 }
8044 }
8045
8046 // Add a floating point element at Offset.
8047 void addFloat(uint64_t Offset, llvm::Type *Ty, unsigned Bits) {
8048 // Unaligned floats are treated as integers.
8049 if (Offset % Bits)
8050 return;
8051 // The InReg flag is only required if there are any floats < 64 bits.
8052 if (Bits < 64)
8053 InReg = true;
8054 pad(Offset);
8055 Elems.push_back(Ty);
8056 Size = Offset + Bits;
8057 }
8058
8059 // Add a struct type to the coercion type, starting at Offset (in bits).
8060 void addStruct(uint64_t Offset, llvm::StructType *StrTy) {
8061 const llvm::StructLayout *Layout = DL.getStructLayout(StrTy);
8062 for (unsigned i = 0, e = StrTy->getNumElements(); i != e; ++i) {
8063 llvm::Type *ElemTy = StrTy->getElementType(i);
8064 uint64_t ElemOffset = Offset + Layout->getElementOffsetInBits(i);
8065 switch (ElemTy->getTypeID()) {
8066 case llvm::Type::StructTyID:
8067 addStruct(ElemOffset, cast<llvm::StructType>(ElemTy));
8068 break;
8069 case llvm::Type::FloatTyID:
8070 addFloat(ElemOffset, ElemTy, 32);
8071 break;
8072 case llvm::Type::DoubleTyID:
8073 addFloat(ElemOffset, ElemTy, 64);
8074 break;
8075 case llvm::Type::FP128TyID:
8076 addFloat(ElemOffset, ElemTy, 128);
8077 break;
8078 case llvm::Type::PointerTyID:
8079 if (ElemOffset % 64 == 0) {
8080 pad(ElemOffset);
8081 Elems.push_back(ElemTy);
8082 Size += 64;
8083 }
8084 break;
8085 default:
8086 break;
8087 }
8088 }
8089 }
8090
8091 // Check if Ty is a usable substitute for the coercion type.
8092 bool isUsableType(llvm::StructType *Ty) const {
Benjamin Kramer39ccabe2015-03-02 11:57:06 +00008093 return llvm::makeArrayRef(Elems) == Ty->elements();
Jakob Stoklund Olesen02dc6a12013-05-28 04:57:37 +00008094 }
8095
8096 // Get the coercion type as a literal struct type.
8097 llvm::Type *getType() const {
8098 if (Elems.size() == 1)
8099 return Elems.front();
8100 else
8101 return llvm::StructType::get(Context, Elems);
8102 }
8103 };
Jakob Stoklund Olesend28ab7e2013-05-27 21:48:25 +00008104};
8105} // end anonymous namespace
8106
8107ABIArgInfo
8108SparcV9ABIInfo::classifyType(QualType Ty, unsigned SizeLimit) const {
8109 if (Ty->isVoidType())
8110 return ABIArgInfo::getIgnore();
8111
8112 uint64_t Size = getContext().getTypeSize(Ty);
8113
8114 // Anything too big to fit in registers is passed with an explicit indirect
8115 // pointer / sret pointer.
8116 if (Size > SizeLimit)
John McCall7f416cc2015-09-08 08:05:57 +00008117 return getNaturalAlignIndirect(Ty, /*ByVal=*/false);
Jakob Stoklund Olesend28ab7e2013-05-27 21:48:25 +00008118
8119 // Treat an enum type as its underlying type.
8120 if (const EnumType *EnumTy = Ty->getAs<EnumType>())
8121 Ty = EnumTy->getDecl()->getIntegerType();
8122
8123 // Integer types smaller than a register are extended.
8124 if (Size < 64 && Ty->isIntegerType())
Alex Bradburye41a5e22018-01-12 20:08:16 +00008125 return ABIArgInfo::getExtend(Ty);
Jakob Stoklund Olesend28ab7e2013-05-27 21:48:25 +00008126
8127 // Other non-aggregates go in registers.
8128 if (!isAggregateTypeForABI(Ty))
8129 return ABIArgInfo::getDirect();
8130
Jakob Stoklund Olesenb81eb3e2014-01-12 06:54:56 +00008131 // If a C++ object has either a non-trivial copy constructor or a non-trivial
8132 // destructor, it is passed with an explicit indirect pointer / sret pointer.
8133 if (CGCXXABI::RecordArgABI RAA = getRecordArgABI(Ty, getCXXABI()))
John McCall7f416cc2015-09-08 08:05:57 +00008134 return getNaturalAlignIndirect(Ty, RAA == CGCXXABI::RAA_DirectInMemory);
Jakob Stoklund Olesenb81eb3e2014-01-12 06:54:56 +00008135
Jakob Stoklund Olesend28ab7e2013-05-27 21:48:25 +00008136 // This is a small aggregate type that should be passed in registers.
Jakob Stoklund Olesen02dc6a12013-05-28 04:57:37 +00008137 // Build a coercion type from the LLVM struct type.
8138 llvm::StructType *StrTy = dyn_cast<llvm::StructType>(CGT.ConvertType(Ty));
8139 if (!StrTy)
8140 return ABIArgInfo::getDirect();
8141
8142 CoerceBuilder CB(getVMContext(), getDataLayout());
8143 CB.addStruct(0, StrTy);
Rui Ueyama83aa9792016-01-14 21:00:27 +00008144 CB.pad(llvm::alignTo(CB.DL.getTypeSizeInBits(StrTy), 64));
Jakob Stoklund Olesen02dc6a12013-05-28 04:57:37 +00008145
8146 // Try to use the original type for coercion.
8147 llvm::Type *CoerceTy = CB.isUsableType(StrTy) ? StrTy : CB.getType();
8148
8149 if (CB.InReg)
8150 return ABIArgInfo::getDirectInReg(CoerceTy);
8151 else
8152 return ABIArgInfo::getDirect(CoerceTy);
Jakob Stoklund Olesend28ab7e2013-05-27 21:48:25 +00008153}
8154
John McCall7f416cc2015-09-08 08:05:57 +00008155Address SparcV9ABIInfo::EmitVAArg(CodeGenFunction &CGF, Address VAListAddr,
8156 QualType Ty) const {
Jakob Stoklund Olesen303caed2013-06-05 03:00:18 +00008157 ABIArgInfo AI = classifyType(Ty, 16 * 8);
8158 llvm::Type *ArgTy = CGT.ConvertType(Ty);
8159 if (AI.canHaveCoerceToType() && !AI.getCoerceToType())
8160 AI.setCoerceToType(ArgTy);
8161
John McCall7f416cc2015-09-08 08:05:57 +00008162 CharUnits SlotSize = CharUnits::fromQuantity(8);
Jakob Stoklund Olesen303caed2013-06-05 03:00:18 +00008163
John McCall7f416cc2015-09-08 08:05:57 +00008164 CGBuilderTy &Builder = CGF.Builder;
8165 Address Addr(Builder.CreateLoad(VAListAddr, "ap.cur"), SlotSize);
8166 llvm::Type *ArgPtrTy = llvm::PointerType::getUnqual(ArgTy);
8167
8168 auto TypeInfo = getContext().getTypeInfoInChars(Ty);
8169
8170 Address ArgAddr = Address::invalid();
8171 CharUnits Stride;
Jakob Stoklund Olesen303caed2013-06-05 03:00:18 +00008172 switch (AI.getKind()) {
8173 case ABIArgInfo::Expand:
John McCallf26e73d2016-03-11 04:30:43 +00008174 case ABIArgInfo::CoerceAndExpand:
Reid Kleckner314ef7b2014-02-01 00:04:45 +00008175 case ABIArgInfo::InAlloca:
Jakob Stoklund Olesen303caed2013-06-05 03:00:18 +00008176 llvm_unreachable("Unsupported ABI kind for va_arg");
8177
John McCall7f416cc2015-09-08 08:05:57 +00008178 case ABIArgInfo::Extend: {
8179 Stride = SlotSize;
8180 CharUnits Offset = SlotSize - TypeInfo.first;
8181 ArgAddr = Builder.CreateConstInBoundsByteGEP(Addr, Offset, "extend");
Jakob Stoklund Olesen303caed2013-06-05 03:00:18 +00008182 break;
John McCall7f416cc2015-09-08 08:05:57 +00008183 }
Jakob Stoklund Olesen303caed2013-06-05 03:00:18 +00008184
John McCall7f416cc2015-09-08 08:05:57 +00008185 case ABIArgInfo::Direct: {
8186 auto AllocSize = getDataLayout().getTypeAllocSize(AI.getCoerceToType());
Rui Ueyama83aa9792016-01-14 21:00:27 +00008187 Stride = CharUnits::fromQuantity(AllocSize).alignTo(SlotSize);
Jakob Stoklund Olesen303caed2013-06-05 03:00:18 +00008188 ArgAddr = Addr;
8189 break;
John McCall7f416cc2015-09-08 08:05:57 +00008190 }
Jakob Stoklund Olesen303caed2013-06-05 03:00:18 +00008191
8192 case ABIArgInfo::Indirect:
John McCall7f416cc2015-09-08 08:05:57 +00008193 Stride = SlotSize;
8194 ArgAddr = Builder.CreateElementBitCast(Addr, ArgPtrTy, "indirect");
8195 ArgAddr = Address(Builder.CreateLoad(ArgAddr, "indirect.arg"),
8196 TypeInfo.second);
Jakob Stoklund Olesen303caed2013-06-05 03:00:18 +00008197 break;
8198
8199 case ABIArgInfo::Ignore:
John McCall7f416cc2015-09-08 08:05:57 +00008200 return Address(llvm::UndefValue::get(ArgPtrTy), TypeInfo.second);
Jakob Stoklund Olesen303caed2013-06-05 03:00:18 +00008201 }
8202
8203 // Update VAList.
James Y Knight3d2df5a2019-02-05 19:01:33 +00008204 Address NextPtr = Builder.CreateConstInBoundsByteGEP(Addr, Stride, "ap.next");
8205 Builder.CreateStore(NextPtr.getPointer(), VAListAddr);
Jakob Stoklund Olesen303caed2013-06-05 03:00:18 +00008206
John McCall7f416cc2015-09-08 08:05:57 +00008207 return Builder.CreateBitCast(ArgAddr, ArgPtrTy, "arg.addr");
Jakob Stoklund Olesend28ab7e2013-05-27 21:48:25 +00008208}
8209
8210void SparcV9ABIInfo::computeInfo(CGFunctionInfo &FI) const {
8211 FI.getReturnInfo() = classifyType(FI.getReturnType(), 32 * 8);
Aaron Ballmanec47bc22014-03-17 18:10:01 +00008212 for (auto &I : FI.arguments())
8213 I.info = classifyType(I.type, 16 * 8);
Jakob Stoklund Olesend28ab7e2013-05-27 21:48:25 +00008214}
8215
8216namespace {
8217class SparcV9TargetCodeGenInfo : public TargetCodeGenInfo {
8218public:
8219 SparcV9TargetCodeGenInfo(CodeGenTypes &CGT)
8220 : TargetCodeGenInfo(new SparcV9ABIInfo(CGT)) {}
Roman Divackyf02c9942014-02-24 18:46:27 +00008221
Craig Topper4f12f102014-03-12 06:41:41 +00008222 int getDwarfEHStackPointer(CodeGen::CodeGenModule &M) const override {
Roman Divackyf02c9942014-02-24 18:46:27 +00008223 return 14;
8224 }
8225
8226 bool initDwarfEHRegSizeTable(CodeGen::CodeGenFunction &CGF,
Craig Topper4f12f102014-03-12 06:41:41 +00008227 llvm::Value *Address) const override;
Jakob Stoklund Olesend28ab7e2013-05-27 21:48:25 +00008228};
8229} // end anonymous namespace
8230
Roman Divackyf02c9942014-02-24 18:46:27 +00008231bool
8232SparcV9TargetCodeGenInfo::initDwarfEHRegSizeTable(CodeGen::CodeGenFunction &CGF,
8233 llvm::Value *Address) const {
8234 // This is calculated from the LLVM and GCC tables and verified
8235 // against gcc output. AFAIK all ABIs use the same encoding.
8236
8237 CodeGen::CGBuilderTy &Builder = CGF.Builder;
8238
8239 llvm::IntegerType *i8 = CGF.Int8Ty;
8240 llvm::Value *Four8 = llvm::ConstantInt::get(i8, 4);
8241 llvm::Value *Eight8 = llvm::ConstantInt::get(i8, 8);
8242
8243 // 0-31: the 8-byte general-purpose registers
8244 AssignToArrayRange(Builder, Address, Eight8, 0, 31);
8245
8246 // 32-63: f0-31, the 4-byte floating-point registers
8247 AssignToArrayRange(Builder, Address, Four8, 32, 63);
8248
8249 // Y = 64
8250 // PSR = 65
8251 // WIM = 66
8252 // TBR = 67
8253 // PC = 68
8254 // NPC = 69
8255 // FSR = 70
8256 // CSR = 71
8257 AssignToArrayRange(Builder, Address, Eight8, 64, 71);
Eric Christopher7565e0d2015-05-29 23:09:49 +00008258
Roman Divackyf02c9942014-02-24 18:46:27 +00008259 // 72-87: d0-15, the 8-byte floating-point registers
8260 AssignToArrayRange(Builder, Address, Eight8, 72, 87);
8261
8262 return false;
8263}
8264
Tatyana Krasnukhaf8c264e2018-11-27 19:52:10 +00008265// ARC ABI implementation.
8266namespace {
8267
8268class ARCABIInfo : public DefaultABIInfo {
8269public:
8270 using DefaultABIInfo::DefaultABIInfo;
8271
8272private:
8273 Address EmitVAArg(CodeGenFunction &CGF, Address VAListAddr,
8274 QualType Ty) const override;
8275
8276 void updateState(const ABIArgInfo &Info, QualType Ty, CCState &State) const {
8277 if (!State.FreeRegs)
8278 return;
8279 if (Info.isIndirect() && Info.getInReg())
8280 State.FreeRegs--;
8281 else if (Info.isDirect() && Info.getInReg()) {
8282 unsigned sz = (getContext().getTypeSize(Ty) + 31) / 32;
8283 if (sz < State.FreeRegs)
8284 State.FreeRegs -= sz;
8285 else
8286 State.FreeRegs = 0;
8287 }
8288 }
8289
8290 void computeInfo(CGFunctionInfo &FI) const override {
8291 CCState State(FI.getCallingConvention());
8292 // ARC uses 8 registers to pass arguments.
8293 State.FreeRegs = 8;
8294
8295 if (!getCXXABI().classifyReturnType(FI))
8296 FI.getReturnInfo() = classifyReturnType(FI.getReturnType());
8297 updateState(FI.getReturnInfo(), FI.getReturnType(), State);
8298 for (auto &I : FI.arguments()) {
8299 I.info = classifyArgumentType(I.type, State.FreeRegs);
8300 updateState(I.info, I.type, State);
8301 }
8302 }
8303
8304 ABIArgInfo getIndirectByRef(QualType Ty, bool HasFreeRegs) const;
8305 ABIArgInfo getIndirectByValue(QualType Ty) const;
8306 ABIArgInfo classifyArgumentType(QualType Ty, uint8_t FreeRegs) const;
8307 ABIArgInfo classifyReturnType(QualType RetTy) const;
8308};
8309
8310class ARCTargetCodeGenInfo : public TargetCodeGenInfo {
8311public:
8312 ARCTargetCodeGenInfo(CodeGenTypes &CGT)
8313 : TargetCodeGenInfo(new ARCABIInfo(CGT)) {}
8314};
8315
8316
8317ABIArgInfo ARCABIInfo::getIndirectByRef(QualType Ty, bool HasFreeRegs) const {
8318 return HasFreeRegs ? getNaturalAlignIndirectInReg(Ty) :
8319 getNaturalAlignIndirect(Ty, false);
8320}
8321
8322ABIArgInfo ARCABIInfo::getIndirectByValue(QualType Ty) const {
Daniel Dunbara39bab32019-01-03 23:24:50 +00008323 // Compute the byval alignment.
Tatyana Krasnukhaf8c264e2018-11-27 19:52:10 +00008324 const unsigned MinABIStackAlignInBytes = 4;
8325 unsigned TypeAlign = getContext().getTypeAlign(Ty) / 8;
8326 return ABIArgInfo::getIndirect(CharUnits::fromQuantity(4), /*ByVal=*/true,
8327 TypeAlign > MinABIStackAlignInBytes);
8328}
8329
8330Address ARCABIInfo::EmitVAArg(CodeGenFunction &CGF, Address VAListAddr,
8331 QualType Ty) const {
8332 return emitVoidPtrVAArg(CGF, VAListAddr, Ty, /*indirect*/ false,
8333 getContext().getTypeInfoInChars(Ty),
8334 CharUnits::fromQuantity(4), true);
8335}
8336
8337ABIArgInfo ARCABIInfo::classifyArgumentType(QualType Ty,
8338 uint8_t FreeRegs) const {
8339 // Handle the generic C++ ABI.
8340 const RecordType *RT = Ty->getAs<RecordType>();
8341 if (RT) {
8342 CGCXXABI::RecordArgABI RAA = getRecordArgABI(RT, getCXXABI());
8343 if (RAA == CGCXXABI::RAA_Indirect)
8344 return getIndirectByRef(Ty, FreeRegs > 0);
8345
8346 if (RAA == CGCXXABI::RAA_DirectInMemory)
8347 return getIndirectByValue(Ty);
8348 }
8349
8350 // Treat an enum type as its underlying type.
8351 if (const EnumType *EnumTy = Ty->getAs<EnumType>())
8352 Ty = EnumTy->getDecl()->getIntegerType();
8353
8354 auto SizeInRegs = llvm::alignTo(getContext().getTypeSize(Ty), 32) / 32;
8355
8356 if (isAggregateTypeForABI(Ty)) {
8357 // Structures with flexible arrays are always indirect.
8358 if (RT && RT->getDecl()->hasFlexibleArrayMember())
8359 return getIndirectByValue(Ty);
8360
8361 // Ignore empty structs/unions.
8362 if (isEmptyRecord(getContext(), Ty, true))
8363 return ABIArgInfo::getIgnore();
8364
8365 llvm::LLVMContext &LLVMContext = getVMContext();
8366
8367 llvm::IntegerType *Int32 = llvm::Type::getInt32Ty(LLVMContext);
8368 SmallVector<llvm::Type *, 3> Elements(SizeInRegs, Int32);
8369 llvm::Type *Result = llvm::StructType::get(LLVMContext, Elements);
8370
8371 return FreeRegs >= SizeInRegs ?
8372 ABIArgInfo::getDirectInReg(Result) :
8373 ABIArgInfo::getDirect(Result, 0, nullptr, false);
8374 }
8375
8376 return Ty->isPromotableIntegerType() ?
8377 (FreeRegs >= SizeInRegs ? ABIArgInfo::getExtendInReg(Ty) :
8378 ABIArgInfo::getExtend(Ty)) :
8379 (FreeRegs >= SizeInRegs ? ABIArgInfo::getDirectInReg() :
8380 ABIArgInfo::getDirect());
8381}
8382
8383ABIArgInfo ARCABIInfo::classifyReturnType(QualType RetTy) const {
8384 if (RetTy->isAnyComplexType())
8385 return ABIArgInfo::getDirectInReg();
8386
Daniel Dunbara39bab32019-01-03 23:24:50 +00008387 // Arguments of size > 4 registers are indirect.
Tatyana Krasnukhaf8c264e2018-11-27 19:52:10 +00008388 auto RetSize = llvm::alignTo(getContext().getTypeSize(RetTy), 32) / 32;
8389 if (RetSize > 4)
8390 return getIndirectByRef(RetTy, /*HasFreeRegs*/ true);
8391
8392 return DefaultABIInfo::classifyReturnType(RetTy);
8393}
8394
8395} // End anonymous namespace.
Jakob Stoklund Olesend28ab7e2013-05-27 21:48:25 +00008396
Robert Lytton0e076492013-08-13 09:43:10 +00008397//===----------------------------------------------------------------------===//
Robert Lyttond21e2d72014-03-03 13:45:29 +00008398// XCore ABI Implementation
Robert Lytton0e076492013-08-13 09:43:10 +00008399//===----------------------------------------------------------------------===//
Robert Lytton844aeeb2014-05-02 09:33:20 +00008400
Robert Lytton0e076492013-08-13 09:43:10 +00008401namespace {
Robert Lytton844aeeb2014-05-02 09:33:20 +00008402
8403/// A SmallStringEnc instance is used to build up the TypeString by passing
8404/// it by reference between functions that append to it.
8405typedef llvm::SmallString<128> SmallStringEnc;
8406
8407/// TypeStringCache caches the meta encodings of Types.
8408///
8409/// The reason for caching TypeStrings is two fold:
8410/// 1. To cache a type's encoding for later uses;
8411/// 2. As a means to break recursive member type inclusion.
8412///
8413/// A cache Entry can have a Status of:
8414/// NonRecursive: The type encoding is not recursive;
8415/// Recursive: The type encoding is recursive;
8416/// Incomplete: An incomplete TypeString;
8417/// IncompleteUsed: An incomplete TypeString that has been used in a
8418/// Recursive type encoding.
8419///
8420/// A NonRecursive entry will have all of its sub-members expanded as fully
8421/// as possible. Whilst it may contain types which are recursive, the type
8422/// itself is not recursive and thus its encoding may be safely used whenever
8423/// the type is encountered.
8424///
8425/// A Recursive entry will have all of its sub-members expanded as fully as
8426/// possible. The type itself is recursive and it may contain other types which
8427/// are recursive. The Recursive encoding must not be used during the expansion
8428/// of a recursive type's recursive branch. For simplicity the code uses
8429/// IncompleteCount to reject all usage of Recursive encodings for member types.
8430///
8431/// An Incomplete entry is always a RecordType and only encodes its
8432/// identifier e.g. "s(S){}". Incomplete 'StubEnc' entries are ephemeral and
8433/// are placed into the cache during type expansion as a means to identify and
8434/// handle recursive inclusion of types as sub-members. If there is recursion
8435/// the entry becomes IncompleteUsed.
8436///
8437/// During the expansion of a RecordType's members:
8438///
8439/// If the cache contains a NonRecursive encoding for the member type, the
8440/// cached encoding is used;
8441///
8442/// If the cache contains a Recursive encoding for the member type, the
8443/// cached encoding is 'Swapped' out, as it may be incorrect, and...
8444///
8445/// If the member is a RecordType, an Incomplete encoding is placed into the
8446/// cache to break potential recursive inclusion of itself as a sub-member;
8447///
8448/// Once a member RecordType has been expanded, its temporary incomplete
8449/// entry is removed from the cache. If a Recursive encoding was swapped out
8450/// it is swapped back in;
8451///
8452/// If an incomplete entry is used to expand a sub-member, the incomplete
8453/// entry is marked as IncompleteUsed. The cache keeps count of how many
8454/// IncompleteUsed entries it currently contains in IncompleteUsedCount;
8455///
8456/// If a member's encoding is found to be a NonRecursive or Recursive viz:
8457/// IncompleteUsedCount==0, the member's encoding is added to the cache.
8458/// Else the member is part of a recursive type and thus the recursion has
8459/// been exited too soon for the encoding to be correct for the member.
8460///
8461class TypeStringCache {
8462 enum Status {NonRecursive, Recursive, Incomplete, IncompleteUsed};
8463 struct Entry {
8464 std::string Str; // The encoded TypeString for the type.
8465 enum Status State; // Information about the encoding in 'Str'.
8466 std::string Swapped; // A temporary place holder for a Recursive encoding
8467 // during the expansion of RecordType's members.
8468 };
8469 std::map<const IdentifierInfo *, struct Entry> Map;
8470 unsigned IncompleteCount; // Number of Incomplete entries in the Map.
8471 unsigned IncompleteUsedCount; // Number of IncompleteUsed entries in the Map.
8472public:
Hans Wennborg4afe5042015-07-22 20:46:26 +00008473 TypeStringCache() : IncompleteCount(0), IncompleteUsedCount(0) {}
Robert Lytton844aeeb2014-05-02 09:33:20 +00008474 void addIncomplete(const IdentifierInfo *ID, std::string StubEnc);
8475 bool removeIncomplete(const IdentifierInfo *ID);
8476 void addIfComplete(const IdentifierInfo *ID, StringRef Str,
8477 bool IsRecursive);
8478 StringRef lookupStr(const IdentifierInfo *ID);
8479};
8480
Robert Lyttondb8c1cb2014-05-20 07:19:33 +00008481/// TypeString encodings for enum & union fields must be order.
Robert Lytton844aeeb2014-05-02 09:33:20 +00008482/// FieldEncoding is a helper for this ordering process.
8483class FieldEncoding {
8484 bool HasName;
8485 std::string Enc;
8486public:
Hans Wennborg4afe5042015-07-22 20:46:26 +00008487 FieldEncoding(bool b, SmallStringEnc &e) : HasName(b), Enc(e.c_str()) {}
Malcolm Parsonsf76f6502016-11-02 10:39:27 +00008488 StringRef str() { return Enc; }
Robert Lytton844aeeb2014-05-02 09:33:20 +00008489 bool operator<(const FieldEncoding &rhs) const {
8490 if (HasName != rhs.HasName) return HasName;
8491 return Enc < rhs.Enc;
8492 }
8493};
8494
Robert Lytton7d1db152013-08-19 09:46:39 +00008495class XCoreABIInfo : public DefaultABIInfo {
8496public:
8497 XCoreABIInfo(CodeGen::CodeGenTypes &CGT) : DefaultABIInfo(CGT) {}
John McCall7f416cc2015-09-08 08:05:57 +00008498 Address EmitVAArg(CodeGenFunction &CGF, Address VAListAddr,
8499 QualType Ty) const override;
Robert Lytton7d1db152013-08-19 09:46:39 +00008500};
8501
Robert Lyttond21e2d72014-03-03 13:45:29 +00008502class XCoreTargetCodeGenInfo : public TargetCodeGenInfo {
Robert Lytton844aeeb2014-05-02 09:33:20 +00008503 mutable TypeStringCache TSC;
Robert Lytton0e076492013-08-13 09:43:10 +00008504public:
Robert Lyttond21e2d72014-03-03 13:45:29 +00008505 XCoreTargetCodeGenInfo(CodeGenTypes &CGT)
Robert Lytton7d1db152013-08-19 09:46:39 +00008506 :TargetCodeGenInfo(new XCoreABIInfo(CGT)) {}
Rafael Espindola8dcd6e72014-05-08 15:01:48 +00008507 void emitTargetMD(const Decl *D, llvm::GlobalValue *GV,
8508 CodeGen::CodeGenModule &M) const override;
Robert Lytton0e076492013-08-13 09:43:10 +00008509};
Robert Lytton844aeeb2014-05-02 09:33:20 +00008510
Robert Lytton2d196952013-10-11 10:29:34 +00008511} // End anonymous namespace.
Robert Lytton0e076492013-08-13 09:43:10 +00008512
James Y Knight29b5f082016-02-24 02:59:33 +00008513// TODO: this implementation is likely now redundant with the default
8514// EmitVAArg.
John McCall7f416cc2015-09-08 08:05:57 +00008515Address XCoreABIInfo::EmitVAArg(CodeGenFunction &CGF, Address VAListAddr,
8516 QualType Ty) const {
Robert Lytton7d1db152013-08-19 09:46:39 +00008517 CGBuilderTy &Builder = CGF.Builder;
Robert Lytton7d1db152013-08-19 09:46:39 +00008518
Robert Lytton2d196952013-10-11 10:29:34 +00008519 // Get the VAList.
John McCall7f416cc2015-09-08 08:05:57 +00008520 CharUnits SlotSize = CharUnits::fromQuantity(4);
8521 Address AP(Builder.CreateLoad(VAListAddr), SlotSize);
Robert Lytton7d1db152013-08-19 09:46:39 +00008522
Robert Lytton2d196952013-10-11 10:29:34 +00008523 // Handle the argument.
8524 ABIArgInfo AI = classifyArgumentType(Ty);
John McCall7f416cc2015-09-08 08:05:57 +00008525 CharUnits TypeAlign = getContext().getTypeAlignInChars(Ty);
Robert Lytton2d196952013-10-11 10:29:34 +00008526 llvm::Type *ArgTy = CGT.ConvertType(Ty);
8527 if (AI.canHaveCoerceToType() && !AI.getCoerceToType())
8528 AI.setCoerceToType(ArgTy);
Robert Lytton7d1db152013-08-19 09:46:39 +00008529 llvm::Type *ArgPtrTy = llvm::PointerType::getUnqual(ArgTy);
John McCall7f416cc2015-09-08 08:05:57 +00008530
8531 Address Val = Address::invalid();
8532 CharUnits ArgSize = CharUnits::Zero();
Robert Lytton7d1db152013-08-19 09:46:39 +00008533 switch (AI.getKind()) {
Robert Lytton7d1db152013-08-19 09:46:39 +00008534 case ABIArgInfo::Expand:
John McCallf26e73d2016-03-11 04:30:43 +00008535 case ABIArgInfo::CoerceAndExpand:
Reid Kleckner314ef7b2014-02-01 00:04:45 +00008536 case ABIArgInfo::InAlloca:
Robert Lytton7d1db152013-08-19 09:46:39 +00008537 llvm_unreachable("Unsupported ABI kind for va_arg");
8538 case ABIArgInfo::Ignore:
John McCall7f416cc2015-09-08 08:05:57 +00008539 Val = Address(llvm::UndefValue::get(ArgPtrTy), TypeAlign);
8540 ArgSize = CharUnits::Zero();
Robert Lytton2d196952013-10-11 10:29:34 +00008541 break;
Robert Lytton7d1db152013-08-19 09:46:39 +00008542 case ABIArgInfo::Extend:
8543 case ABIArgInfo::Direct:
John McCall7f416cc2015-09-08 08:05:57 +00008544 Val = Builder.CreateBitCast(AP, ArgPtrTy);
8545 ArgSize = CharUnits::fromQuantity(
8546 getDataLayout().getTypeAllocSize(AI.getCoerceToType()));
Rui Ueyama83aa9792016-01-14 21:00:27 +00008547 ArgSize = ArgSize.alignTo(SlotSize);
Robert Lytton2d196952013-10-11 10:29:34 +00008548 break;
Robert Lytton7d1db152013-08-19 09:46:39 +00008549 case ABIArgInfo::Indirect:
John McCall7f416cc2015-09-08 08:05:57 +00008550 Val = Builder.CreateElementBitCast(AP, ArgPtrTy);
8551 Val = Address(Builder.CreateLoad(Val), TypeAlign);
8552 ArgSize = SlotSize;
Robert Lytton2d196952013-10-11 10:29:34 +00008553 break;
Robert Lytton7d1db152013-08-19 09:46:39 +00008554 }
Robert Lytton2d196952013-10-11 10:29:34 +00008555
8556 // Increment the VAList.
John McCall7f416cc2015-09-08 08:05:57 +00008557 if (!ArgSize.isZero()) {
James Y Knight3d2df5a2019-02-05 19:01:33 +00008558 Address APN = Builder.CreateConstInBoundsByteGEP(AP, ArgSize);
8559 Builder.CreateStore(APN.getPointer(), VAListAddr);
Robert Lytton2d196952013-10-11 10:29:34 +00008560 }
John McCall7f416cc2015-09-08 08:05:57 +00008561
Robert Lytton2d196952013-10-11 10:29:34 +00008562 return Val;
Robert Lytton7d1db152013-08-19 09:46:39 +00008563}
Robert Lytton0e076492013-08-13 09:43:10 +00008564
Robert Lytton844aeeb2014-05-02 09:33:20 +00008565/// During the expansion of a RecordType, an incomplete TypeString is placed
8566/// into the cache as a means to identify and break recursion.
8567/// If there is a Recursive encoding in the cache, it is swapped out and will
8568/// be reinserted by removeIncomplete().
8569/// All other types of encoding should have been used rather than arriving here.
8570void TypeStringCache::addIncomplete(const IdentifierInfo *ID,
8571 std::string StubEnc) {
8572 if (!ID)
8573 return;
8574 Entry &E = Map[ID];
8575 assert( (E.Str.empty() || E.State == Recursive) &&
8576 "Incorrectly use of addIncomplete");
8577 assert(!StubEnc.empty() && "Passing an empty string to addIncomplete()");
8578 E.Swapped.swap(E.Str); // swap out the Recursive
8579 E.Str.swap(StubEnc);
8580 E.State = Incomplete;
8581 ++IncompleteCount;
8582}
8583
8584/// Once the RecordType has been expanded, the temporary incomplete TypeString
8585/// must be removed from the cache.
8586/// If a Recursive was swapped out by addIncomplete(), it will be replaced.
8587/// Returns true if the RecordType was defined recursively.
8588bool TypeStringCache::removeIncomplete(const IdentifierInfo *ID) {
8589 if (!ID)
8590 return false;
8591 auto I = Map.find(ID);
8592 assert(I != Map.end() && "Entry not present");
8593 Entry &E = I->second;
8594 assert( (E.State == Incomplete ||
8595 E.State == IncompleteUsed) &&
8596 "Entry must be an incomplete type");
8597 bool IsRecursive = false;
8598 if (E.State == IncompleteUsed) {
8599 // We made use of our Incomplete encoding, thus we are recursive.
8600 IsRecursive = true;
8601 --IncompleteUsedCount;
8602 }
8603 if (E.Swapped.empty())
8604 Map.erase(I);
8605 else {
8606 // Swap the Recursive back.
8607 E.Swapped.swap(E.Str);
8608 E.Swapped.clear();
8609 E.State = Recursive;
8610 }
8611 --IncompleteCount;
8612 return IsRecursive;
8613}
8614
8615/// Add the encoded TypeString to the cache only if it is NonRecursive or
8616/// Recursive (viz: all sub-members were expanded as fully as possible).
8617void TypeStringCache::addIfComplete(const IdentifierInfo *ID, StringRef Str,
8618 bool IsRecursive) {
8619 if (!ID || IncompleteUsedCount)
8620 return; // No key or it is is an incomplete sub-type so don't add.
8621 Entry &E = Map[ID];
8622 if (IsRecursive && !E.Str.empty()) {
8623 assert(E.State==Recursive && E.Str.size() == Str.size() &&
8624 "This is not the same Recursive entry");
8625 // The parent container was not recursive after all, so we could have used
8626 // this Recursive sub-member entry after all, but we assumed the worse when
8627 // we started viz: IncompleteCount!=0.
8628 return;
8629 }
8630 assert(E.Str.empty() && "Entry already present");
8631 E.Str = Str.str();
8632 E.State = IsRecursive? Recursive : NonRecursive;
8633}
8634
8635/// Return a cached TypeString encoding for the ID. If there isn't one, or we
8636/// are recursively expanding a type (IncompleteCount != 0) and the cached
8637/// encoding is Recursive, return an empty StringRef.
8638StringRef TypeStringCache::lookupStr(const IdentifierInfo *ID) {
8639 if (!ID)
8640 return StringRef(); // We have no key.
8641 auto I = Map.find(ID);
8642 if (I == Map.end())
8643 return StringRef(); // We have no encoding.
8644 Entry &E = I->second;
8645 if (E.State == Recursive && IncompleteCount)
8646 return StringRef(); // We don't use Recursive encodings for member types.
8647
8648 if (E.State == Incomplete) {
8649 // The incomplete type is being used to break out of recursion.
8650 E.State = IncompleteUsed;
8651 ++IncompleteUsedCount;
8652 }
Malcolm Parsonsf76f6502016-11-02 10:39:27 +00008653 return E.Str;
Robert Lytton844aeeb2014-05-02 09:33:20 +00008654}
8655
8656/// The XCore ABI includes a type information section that communicates symbol
8657/// type information to the linker. The linker uses this information to verify
8658/// safety/correctness of things such as array bound and pointers et al.
8659/// The ABI only requires C (and XC) language modules to emit TypeStrings.
8660/// This type information (TypeString) is emitted into meta data for all global
8661/// symbols: definitions, declarations, functions & variables.
8662///
8663/// The TypeString carries type, qualifier, name, size & value details.
8664/// Please see 'Tools Development Guide' section 2.16.2 for format details:
Eric Christopher7565e0d2015-05-29 23:09:49 +00008665/// https://www.xmos.com/download/public/Tools-Development-Guide%28X9114A%29.pdf
Robert Lytton844aeeb2014-05-02 09:33:20 +00008666/// The output is tested by test/CodeGen/xcore-stringtype.c.
8667///
8668static bool getTypeString(SmallStringEnc &Enc, const Decl *D,
8669 CodeGen::CodeGenModule &CGM, TypeStringCache &TSC);
8670
8671/// XCore uses emitTargetMD to emit TypeString metadata for global symbols.
8672void XCoreTargetCodeGenInfo::emitTargetMD(const Decl *D, llvm::GlobalValue *GV,
8673 CodeGen::CodeGenModule &CGM) const {
8674 SmallStringEnc Enc;
8675 if (getTypeString(Enc, D, CGM, TSC)) {
8676 llvm::LLVMContext &Ctx = CGM.getModule().getContext();
Benjamin Kramer30934732016-07-02 11:41:41 +00008677 llvm::Metadata *MDVals[] = {llvm::ConstantAsMetadata::get(GV),
8678 llvm::MDString::get(Ctx, Enc.str())};
Robert Lytton844aeeb2014-05-02 09:33:20 +00008679 llvm::NamedMDNode *MD =
8680 CGM.getModule().getOrInsertNamedMetadata("xcore.typestrings");
8681 MD->addOperand(llvm::MDNode::get(Ctx, MDVals));
8682 }
8683}
8684
Xiuli Pan972bea82016-03-24 03:57:17 +00008685//===----------------------------------------------------------------------===//
8686// SPIR ABI Implementation
8687//===----------------------------------------------------------------------===//
8688
8689namespace {
8690class SPIRTargetCodeGenInfo : public TargetCodeGenInfo {
8691public:
8692 SPIRTargetCodeGenInfo(CodeGen::CodeGenTypes &CGT)
8693 : TargetCodeGenInfo(new DefaultABIInfo(CGT)) {}
Nikolay Haustov8c6538b2016-06-30 09:06:33 +00008694 unsigned getOpenCLKernelCallingConv() const override;
Xiuli Pan972bea82016-03-24 03:57:17 +00008695};
Pekka Jaaskelainenfc2629a2017-06-01 07:18:49 +00008696
Xiuli Pan972bea82016-03-24 03:57:17 +00008697} // End anonymous namespace.
8698
Pekka Jaaskelainenfc2629a2017-06-01 07:18:49 +00008699namespace clang {
8700namespace CodeGen {
8701void computeSPIRKernelABIInfo(CodeGenModule &CGM, CGFunctionInfo &FI) {
8702 DefaultABIInfo SPIRABI(CGM.getTypes());
8703 SPIRABI.computeInfo(FI);
8704}
8705}
8706}
8707
Nikolay Haustov8c6538b2016-06-30 09:06:33 +00008708unsigned SPIRTargetCodeGenInfo::getOpenCLKernelCallingConv() const {
8709 return llvm::CallingConv::SPIR_KERNEL;
8710}
8711
Robert Lytton844aeeb2014-05-02 09:33:20 +00008712static bool appendType(SmallStringEnc &Enc, QualType QType,
8713 const CodeGen::CodeGenModule &CGM,
8714 TypeStringCache &TSC);
8715
8716/// Helper function for appendRecordType().
Eric Christopher7565e0d2015-05-29 23:09:49 +00008717/// Builds a SmallVector containing the encoded field types in declaration
8718/// order.
Robert Lytton844aeeb2014-05-02 09:33:20 +00008719static bool extractFieldType(SmallVectorImpl<FieldEncoding> &FE,
8720 const RecordDecl *RD,
8721 const CodeGen::CodeGenModule &CGM,
8722 TypeStringCache &TSC) {
Hans Wennborga302cd92014-08-21 16:06:57 +00008723 for (const auto *Field : RD->fields()) {
Robert Lytton844aeeb2014-05-02 09:33:20 +00008724 SmallStringEnc Enc;
8725 Enc += "m(";
Hans Wennborga302cd92014-08-21 16:06:57 +00008726 Enc += Field->getName();
Robert Lytton844aeeb2014-05-02 09:33:20 +00008727 Enc += "){";
Hans Wennborga302cd92014-08-21 16:06:57 +00008728 if (Field->isBitField()) {
Robert Lytton844aeeb2014-05-02 09:33:20 +00008729 Enc += "b(";
8730 llvm::raw_svector_ostream OS(Enc);
Hans Wennborga302cd92014-08-21 16:06:57 +00008731 OS << Field->getBitWidthValue(CGM.getContext());
Robert Lytton844aeeb2014-05-02 09:33:20 +00008732 Enc += ':';
8733 }
Hans Wennborga302cd92014-08-21 16:06:57 +00008734 if (!appendType(Enc, Field->getType(), CGM, TSC))
Robert Lytton844aeeb2014-05-02 09:33:20 +00008735 return false;
Hans Wennborga302cd92014-08-21 16:06:57 +00008736 if (Field->isBitField())
Robert Lytton844aeeb2014-05-02 09:33:20 +00008737 Enc += ')';
8738 Enc += '}';
Benjamin Kramer3204b152015-05-29 19:42:19 +00008739 FE.emplace_back(!Field->getName().empty(), Enc);
Robert Lytton844aeeb2014-05-02 09:33:20 +00008740 }
8741 return true;
8742}
8743
8744/// Appends structure and union types to Enc and adds encoding to cache.
8745/// Recursively calls appendType (via extractFieldType) for each field.
8746/// Union types have their fields ordered according to the ABI.
8747static bool appendRecordType(SmallStringEnc &Enc, const RecordType *RT,
8748 const CodeGen::CodeGenModule &CGM,
8749 TypeStringCache &TSC, const IdentifierInfo *ID) {
8750 // Append the cached TypeString if we have one.
8751 StringRef TypeString = TSC.lookupStr(ID);
8752 if (!TypeString.empty()) {
8753 Enc += TypeString;
8754 return true;
8755 }
8756
8757 // Start to emit an incomplete TypeString.
8758 size_t Start = Enc.size();
8759 Enc += (RT->isUnionType()? 'u' : 's');
8760 Enc += '(';
8761 if (ID)
8762 Enc += ID->getName();
8763 Enc += "){";
8764
8765 // We collect all encoded fields and order as necessary.
8766 bool IsRecursive = false;
Robert Lytton844aeeb2014-05-02 09:33:20 +00008767 const RecordDecl *RD = RT->getDecl()->getDefinition();
8768 if (RD && !RD->field_empty()) {
8769 // An incomplete TypeString stub is placed in the cache for this RecordType
8770 // so that recursive calls to this RecordType will use it whilst building a
8771 // complete TypeString for this RecordType.
Robert Lyttondb8c1cb2014-05-20 07:19:33 +00008772 SmallVector<FieldEncoding, 16> FE;
Robert Lytton844aeeb2014-05-02 09:33:20 +00008773 std::string StubEnc(Enc.substr(Start).str());
8774 StubEnc += '}'; // StubEnc now holds a valid incomplete TypeString.
8775 TSC.addIncomplete(ID, std::move(StubEnc));
8776 if (!extractFieldType(FE, RD, CGM, TSC)) {
8777 (void) TSC.removeIncomplete(ID);
8778 return false;
8779 }
8780 IsRecursive = TSC.removeIncomplete(ID);
8781 // The ABI requires unions to be sorted but not structures.
8782 // See FieldEncoding::operator< for sort algorithm.
8783 if (RT->isUnionType())
Fangrui Song55fab262018-09-26 22:16:28 +00008784 llvm::sort(FE);
Robert Lyttondb8c1cb2014-05-20 07:19:33 +00008785 // We can now complete the TypeString.
8786 unsigned E = FE.size();
Robert Lytton844aeeb2014-05-02 09:33:20 +00008787 for (unsigned I = 0; I != E; ++I) {
8788 if (I)
8789 Enc += ',';
8790 Enc += FE[I].str();
8791 }
Robert Lyttondb8c1cb2014-05-20 07:19:33 +00008792 }
Robert Lytton844aeeb2014-05-02 09:33:20 +00008793 Enc += '}';
8794 TSC.addIfComplete(ID, Enc.substr(Start), IsRecursive);
8795 return true;
8796}
8797
8798/// Appends enum types to Enc and adds the encoding to the cache.
8799static bool appendEnumType(SmallStringEnc &Enc, const EnumType *ET,
8800 TypeStringCache &TSC,
8801 const IdentifierInfo *ID) {
8802 // Append the cached TypeString if we have one.
8803 StringRef TypeString = TSC.lookupStr(ID);
8804 if (!TypeString.empty()) {
8805 Enc += TypeString;
8806 return true;
8807 }
8808
8809 size_t Start = Enc.size();
8810 Enc += "e(";
8811 if (ID)
8812 Enc += ID->getName();
8813 Enc += "){";
Robert Lyttondb8c1cb2014-05-20 07:19:33 +00008814
8815 // We collect all encoded enumerations and order them alphanumerically.
Robert Lytton844aeeb2014-05-02 09:33:20 +00008816 if (const EnumDecl *ED = ET->getDecl()->getDefinition()) {
Robert Lyttondb8c1cb2014-05-20 07:19:33 +00008817 SmallVector<FieldEncoding, 16> FE;
8818 for (auto I = ED->enumerator_begin(), E = ED->enumerator_end(); I != E;
8819 ++I) {
8820 SmallStringEnc EnumEnc;
8821 EnumEnc += "m(";
8822 EnumEnc += I->getName();
8823 EnumEnc += "){";
8824 I->getInitVal().toString(EnumEnc);
8825 EnumEnc += '}';
8826 FE.push_back(FieldEncoding(!I->getName().empty(), EnumEnc));
8827 }
Fangrui Song55fab262018-09-26 22:16:28 +00008828 llvm::sort(FE);
Robert Lyttondb8c1cb2014-05-20 07:19:33 +00008829 unsigned E = FE.size();
8830 for (unsigned I = 0; I != E; ++I) {
8831 if (I)
Robert Lytton844aeeb2014-05-02 09:33:20 +00008832 Enc += ',';
Robert Lyttondb8c1cb2014-05-20 07:19:33 +00008833 Enc += FE[I].str();
Robert Lytton844aeeb2014-05-02 09:33:20 +00008834 }
8835 }
8836 Enc += '}';
8837 TSC.addIfComplete(ID, Enc.substr(Start), false);
8838 return true;
8839}
8840
8841/// Appends type's qualifier to Enc.
8842/// This is done prior to appending the type's encoding.
8843static void appendQualifier(SmallStringEnc &Enc, QualType QT) {
8844 // Qualifiers are emitted in alphabetical order.
Craig Topper273dbc62015-10-18 05:29:26 +00008845 static const char *const Table[]={"","c:","r:","cr:","v:","cv:","rv:","crv:"};
Robert Lytton844aeeb2014-05-02 09:33:20 +00008846 int Lookup = 0;
8847 if (QT.isConstQualified())
8848 Lookup += 1<<0;
8849 if (QT.isRestrictQualified())
8850 Lookup += 1<<1;
8851 if (QT.isVolatileQualified())
8852 Lookup += 1<<2;
8853 Enc += Table[Lookup];
8854}
8855
8856/// Appends built-in types to Enc.
8857static bool appendBuiltinType(SmallStringEnc &Enc, const BuiltinType *BT) {
8858 const char *EncType;
8859 switch (BT->getKind()) {
8860 case BuiltinType::Void:
8861 EncType = "0";
8862 break;
8863 case BuiltinType::Bool:
8864 EncType = "b";
8865 break;
8866 case BuiltinType::Char_U:
8867 EncType = "uc";
8868 break;
8869 case BuiltinType::UChar:
8870 EncType = "uc";
8871 break;
8872 case BuiltinType::SChar:
8873 EncType = "sc";
8874 break;
8875 case BuiltinType::UShort:
8876 EncType = "us";
8877 break;
8878 case BuiltinType::Short:
8879 EncType = "ss";
8880 break;
8881 case BuiltinType::UInt:
8882 EncType = "ui";
8883 break;
8884 case BuiltinType::Int:
8885 EncType = "si";
8886 break;
8887 case BuiltinType::ULong:
8888 EncType = "ul";
8889 break;
8890 case BuiltinType::Long:
8891 EncType = "sl";
8892 break;
8893 case BuiltinType::ULongLong:
8894 EncType = "ull";
8895 break;
8896 case BuiltinType::LongLong:
8897 EncType = "sll";
8898 break;
8899 case BuiltinType::Float:
8900 EncType = "ft";
8901 break;
8902 case BuiltinType::Double:
8903 EncType = "d";
8904 break;
8905 case BuiltinType::LongDouble:
8906 EncType = "ld";
8907 break;
8908 default:
8909 return false;
8910 }
8911 Enc += EncType;
8912 return true;
8913}
8914
8915/// Appends a pointer encoding to Enc before calling appendType for the pointee.
8916static bool appendPointerType(SmallStringEnc &Enc, const PointerType *PT,
8917 const CodeGen::CodeGenModule &CGM,
8918 TypeStringCache &TSC) {
8919 Enc += "p(";
8920 if (!appendType(Enc, PT->getPointeeType(), CGM, TSC))
8921 return false;
8922 Enc += ')';
8923 return true;
8924}
8925
8926/// Appends array encoding to Enc before calling appendType for the element.
Robert Lytton6adb20f2014-06-05 09:06:21 +00008927static bool appendArrayType(SmallStringEnc &Enc, QualType QT,
8928 const ArrayType *AT,
Robert Lytton844aeeb2014-05-02 09:33:20 +00008929 const CodeGen::CodeGenModule &CGM,
8930 TypeStringCache &TSC, StringRef NoSizeEnc) {
8931 if (AT->getSizeModifier() != ArrayType::Normal)
8932 return false;
8933 Enc += "a(";
8934 if (const ConstantArrayType *CAT = dyn_cast<ConstantArrayType>(AT))
8935 CAT->getSize().toStringUnsigned(Enc);
8936 else
8937 Enc += NoSizeEnc; // Global arrays use "*", otherwise it is "".
8938 Enc += ':';
Robert Lytton6adb20f2014-06-05 09:06:21 +00008939 // The Qualifiers should be attached to the type rather than the array.
8940 appendQualifier(Enc, QT);
Robert Lytton844aeeb2014-05-02 09:33:20 +00008941 if (!appendType(Enc, AT->getElementType(), CGM, TSC))
8942 return false;
8943 Enc += ')';
8944 return true;
8945}
8946
8947/// Appends a function encoding to Enc, calling appendType for the return type
8948/// and the arguments.
8949static bool appendFunctionType(SmallStringEnc &Enc, const FunctionType *FT,
8950 const CodeGen::CodeGenModule &CGM,
8951 TypeStringCache &TSC) {
8952 Enc += "f{";
8953 if (!appendType(Enc, FT->getReturnType(), CGM, TSC))
8954 return false;
8955 Enc += "}(";
8956 if (const FunctionProtoType *FPT = FT->getAs<FunctionProtoType>()) {
8957 // N.B. we are only interested in the adjusted param types.
8958 auto I = FPT->param_type_begin();
8959 auto E = FPT->param_type_end();
8960 if (I != E) {
8961 do {
8962 if (!appendType(Enc, *I, CGM, TSC))
8963 return false;
8964 ++I;
8965 if (I != E)
8966 Enc += ',';
8967 } while (I != E);
8968 if (FPT->isVariadic())
8969 Enc += ",va";
8970 } else {
8971 if (FPT->isVariadic())
8972 Enc += "va";
8973 else
8974 Enc += '0';
8975 }
8976 }
8977 Enc += ')';
8978 return true;
8979}
8980
8981/// Handles the type's qualifier before dispatching a call to handle specific
8982/// type encodings.
8983static bool appendType(SmallStringEnc &Enc, QualType QType,
8984 const CodeGen::CodeGenModule &CGM,
8985 TypeStringCache &TSC) {
8986
8987 QualType QT = QType.getCanonicalType();
8988
Robert Lytton6adb20f2014-06-05 09:06:21 +00008989 if (const ArrayType *AT = QT->getAsArrayTypeUnsafe())
8990 // The Qualifiers should be attached to the type rather than the array.
8991 // Thus we don't call appendQualifier() here.
8992 return appendArrayType(Enc, QT, AT, CGM, TSC, "");
8993
Robert Lytton844aeeb2014-05-02 09:33:20 +00008994 appendQualifier(Enc, QT);
8995
8996 if (const BuiltinType *BT = QT->getAs<BuiltinType>())
8997 return appendBuiltinType(Enc, BT);
8998
Robert Lytton844aeeb2014-05-02 09:33:20 +00008999 if (const PointerType *PT = QT->getAs<PointerType>())
9000 return appendPointerType(Enc, PT, CGM, TSC);
9001
9002 if (const EnumType *ET = QT->getAs<EnumType>())
9003 return appendEnumType(Enc, ET, TSC, QT.getBaseTypeIdentifier());
9004
9005 if (const RecordType *RT = QT->getAsStructureType())
9006 return appendRecordType(Enc, RT, CGM, TSC, QT.getBaseTypeIdentifier());
9007
9008 if (const RecordType *RT = QT->getAsUnionType())
9009 return appendRecordType(Enc, RT, CGM, TSC, QT.getBaseTypeIdentifier());
9010
9011 if (const FunctionType *FT = QT->getAs<FunctionType>())
9012 return appendFunctionType(Enc, FT, CGM, TSC);
9013
9014 return false;
9015}
9016
9017static bool getTypeString(SmallStringEnc &Enc, const Decl *D,
9018 CodeGen::CodeGenModule &CGM, TypeStringCache &TSC) {
9019 if (!D)
9020 return false;
9021
9022 if (const FunctionDecl *FD = dyn_cast<FunctionDecl>(D)) {
9023 if (FD->getLanguageLinkage() != CLanguageLinkage)
9024 return false;
9025 return appendType(Enc, FD->getType(), CGM, TSC);
9026 }
9027
9028 if (const VarDecl *VD = dyn_cast<VarDecl>(D)) {
9029 if (VD->getLanguageLinkage() != CLanguageLinkage)
9030 return false;
9031 QualType QT = VD->getType().getCanonicalType();
9032 if (const ArrayType *AT = QT->getAsArrayTypeUnsafe()) {
9033 // Global ArrayTypes are given a size of '*' if the size is unknown.
Robert Lytton6adb20f2014-06-05 09:06:21 +00009034 // The Qualifiers should be attached to the type rather than the array.
9035 // Thus we don't call appendQualifier() here.
9036 return appendArrayType(Enc, QT, AT, CGM, TSC, "*");
Robert Lytton844aeeb2014-05-02 09:33:20 +00009037 }
9038 return appendType(Enc, QT, CGM, TSC);
9039 }
9040 return false;
9041}
9042
Alex Bradbury8cbdd482018-01-15 17:54:52 +00009043//===----------------------------------------------------------------------===//
9044// RISCV ABI Implementation
9045//===----------------------------------------------------------------------===//
9046
9047namespace {
9048class RISCVABIInfo : public DefaultABIInfo {
9049private:
9050 unsigned XLen; // Size of the integer ('x') registers in bits.
9051 static const int NumArgGPRs = 8;
9052
9053public:
9054 RISCVABIInfo(CodeGen::CodeGenTypes &CGT, unsigned XLen)
9055 : DefaultABIInfo(CGT), XLen(XLen) {}
9056
9057 // DefaultABIInfo's classifyReturnType and classifyArgumentType are
9058 // non-virtual, but computeInfo is virtual, so we overload it.
9059 void computeInfo(CGFunctionInfo &FI) const override;
9060
9061 ABIArgInfo classifyArgumentType(QualType Ty, bool IsFixed,
9062 int &ArgGPRsLeft) const;
9063 ABIArgInfo classifyReturnType(QualType RetTy) const;
9064
9065 Address EmitVAArg(CodeGenFunction &CGF, Address VAListAddr,
9066 QualType Ty) const override;
9067
9068 ABIArgInfo extendType(QualType Ty) const;
9069};
9070} // end anonymous namespace
9071
9072void RISCVABIInfo::computeInfo(CGFunctionInfo &FI) const {
9073 QualType RetTy = FI.getReturnType();
9074 if (!getCXXABI().classifyReturnType(FI))
9075 FI.getReturnInfo() = classifyReturnType(RetTy);
9076
9077 // IsRetIndirect is true if classifyArgumentType indicated the value should
9078 // be passed indirect or if the type size is greater than 2*xlen. e.g. fp128
9079 // is passed direct in LLVM IR, relying on the backend lowering code to
9080 // rewrite the argument list and pass indirectly on RV32.
9081 bool IsRetIndirect = FI.getReturnInfo().getKind() == ABIArgInfo::Indirect ||
9082 getContext().getTypeSize(RetTy) > (2 * XLen);
9083
9084 // We must track the number of GPRs used in order to conform to the RISC-V
9085 // ABI, as integer scalars passed in registers should have signext/zeroext
9086 // when promoted, but are anyext if passed on the stack. As GPR usage is
9087 // different for variadic arguments, we must also track whether we are
9088 // examining a vararg or not.
9089 int ArgGPRsLeft = IsRetIndirect ? NumArgGPRs - 1 : NumArgGPRs;
9090 int NumFixedArgs = FI.getNumRequiredArgs();
9091
9092 int ArgNum = 0;
9093 for (auto &ArgInfo : FI.arguments()) {
9094 bool IsFixed = ArgNum < NumFixedArgs;
9095 ArgInfo.info = classifyArgumentType(ArgInfo.type, IsFixed, ArgGPRsLeft);
9096 ArgNum++;
9097 }
9098}
9099
9100ABIArgInfo RISCVABIInfo::classifyArgumentType(QualType Ty, bool IsFixed,
9101 int &ArgGPRsLeft) const {
9102 assert(ArgGPRsLeft <= NumArgGPRs && "Arg GPR tracking underflow");
9103 Ty = useFirstFieldIfTransparentUnion(Ty);
9104
9105 // Structures with either a non-trivial destructor or a non-trivial
9106 // copy constructor are always passed indirectly.
9107 if (CGCXXABI::RecordArgABI RAA = getRecordArgABI(Ty, getCXXABI())) {
9108 if (ArgGPRsLeft)
9109 ArgGPRsLeft -= 1;
9110 return getNaturalAlignIndirect(Ty, /*ByVal=*/RAA ==
9111 CGCXXABI::RAA_DirectInMemory);
9112 }
9113
9114 // Ignore empty structs/unions.
9115 if (isEmptyRecord(getContext(), Ty, true))
9116 return ABIArgInfo::getIgnore();
9117
9118 uint64_t Size = getContext().getTypeSize(Ty);
9119 uint64_t NeededAlign = getContext().getTypeAlign(Ty);
9120 bool MustUseStack = false;
9121 // Determine the number of GPRs needed to pass the current argument
9122 // according to the ABI. 2*XLen-aligned varargs are passed in "aligned"
9123 // register pairs, so may consume 3 registers.
9124 int NeededArgGPRs = 1;
9125 if (!IsFixed && NeededAlign == 2 * XLen)
9126 NeededArgGPRs = 2 + (ArgGPRsLeft % 2);
9127 else if (Size > XLen && Size <= 2 * XLen)
9128 NeededArgGPRs = 2;
9129
9130 if (NeededArgGPRs > ArgGPRsLeft) {
9131 MustUseStack = true;
9132 NeededArgGPRs = ArgGPRsLeft;
9133 }
9134
9135 ArgGPRsLeft -= NeededArgGPRs;
9136
9137 if (!isAggregateTypeForABI(Ty) && !Ty->isVectorType()) {
9138 // Treat an enum type as its underlying type.
9139 if (const EnumType *EnumTy = Ty->getAs<EnumType>())
9140 Ty = EnumTy->getDecl()->getIntegerType();
9141
9142 // All integral types are promoted to XLen width, unless passed on the
9143 // stack.
9144 if (Size < XLen && Ty->isIntegralOrEnumerationType() && !MustUseStack) {
9145 return extendType(Ty);
9146 }
9147
9148 return ABIArgInfo::getDirect();
9149 }
9150
9151 // Aggregates which are <= 2*XLen will be passed in registers if possible,
9152 // so coerce to integers.
9153 if (Size <= 2 * XLen) {
9154 unsigned Alignment = getContext().getTypeAlign(Ty);
9155
9156 // Use a single XLen int if possible, 2*XLen if 2*XLen alignment is
9157 // required, and a 2-element XLen array if only XLen alignment is required.
9158 if (Size <= XLen) {
9159 return ABIArgInfo::getDirect(
9160 llvm::IntegerType::get(getVMContext(), XLen));
9161 } else if (Alignment == 2 * XLen) {
9162 return ABIArgInfo::getDirect(
9163 llvm::IntegerType::get(getVMContext(), 2 * XLen));
9164 } else {
9165 return ABIArgInfo::getDirect(llvm::ArrayType::get(
9166 llvm::IntegerType::get(getVMContext(), XLen), 2));
9167 }
9168 }
9169 return getNaturalAlignIndirect(Ty, /*ByVal=*/false);
9170}
9171
9172ABIArgInfo RISCVABIInfo::classifyReturnType(QualType RetTy) const {
9173 if (RetTy->isVoidType())
9174 return ABIArgInfo::getIgnore();
9175
9176 int ArgGPRsLeft = 2;
9177
9178 // The rules for return and argument types are the same, so defer to
9179 // classifyArgumentType.
9180 return classifyArgumentType(RetTy, /*IsFixed=*/true, ArgGPRsLeft);
9181}
9182
9183Address RISCVABIInfo::EmitVAArg(CodeGenFunction &CGF, Address VAListAddr,
9184 QualType Ty) const {
9185 CharUnits SlotSize = CharUnits::fromQuantity(XLen / 8);
9186
9187 // Empty records are ignored for parameter passing purposes.
9188 if (isEmptyRecord(getContext(), Ty, true)) {
9189 Address Addr(CGF.Builder.CreateLoad(VAListAddr), SlotSize);
9190 Addr = CGF.Builder.CreateElementBitCast(Addr, CGF.ConvertTypeForMem(Ty));
9191 return Addr;
9192 }
9193
9194 std::pair<CharUnits, CharUnits> SizeAndAlign =
9195 getContext().getTypeInfoInChars(Ty);
9196
9197 // Arguments bigger than 2*Xlen bytes are passed indirectly.
9198 bool IsIndirect = SizeAndAlign.first > 2 * SlotSize;
9199
9200 return emitVoidPtrVAArg(CGF, VAListAddr, Ty, IsIndirect, SizeAndAlign,
9201 SlotSize, /*AllowHigherAlign=*/true);
9202}
9203
9204ABIArgInfo RISCVABIInfo::extendType(QualType Ty) const {
9205 int TySize = getContext().getTypeSize(Ty);
9206 // RV64 ABI requires unsigned 32 bit integers to be sign extended.
9207 if (XLen == 64 && Ty->isUnsignedIntegerOrEnumerationType() && TySize == 32)
9208 return ABIArgInfo::getSignExtend(Ty);
9209 return ABIArgInfo::getExtend(Ty);
9210}
9211
9212namespace {
9213class RISCVTargetCodeGenInfo : public TargetCodeGenInfo {
9214public:
9215 RISCVTargetCodeGenInfo(CodeGen::CodeGenTypes &CGT, unsigned XLen)
9216 : TargetCodeGenInfo(new RISCVABIInfo(CGT, XLen)) {}
Ana Pazos1eee1b72018-07-26 17:37:45 +00009217
9218 void setTargetAttributes(const Decl *D, llvm::GlobalValue *GV,
9219 CodeGen::CodeGenModule &CGM) const override {
9220 const auto *FD = dyn_cast_or_null<FunctionDecl>(D);
9221 if (!FD) return;
9222
9223 const auto *Attr = FD->getAttr<RISCVInterruptAttr>();
9224 if (!Attr)
9225 return;
9226
9227 const char *Kind;
9228 switch (Attr->getInterrupt()) {
9229 case RISCVInterruptAttr::user: Kind = "user"; break;
9230 case RISCVInterruptAttr::supervisor: Kind = "supervisor"; break;
9231 case RISCVInterruptAttr::machine: Kind = "machine"; break;
9232 }
9233
9234 auto *Fn = cast<llvm::Function>(GV);
9235
9236 Fn->addFnAttr("interrupt", Kind);
9237 }
Alex Bradbury8cbdd482018-01-15 17:54:52 +00009238};
9239} // namespace
Robert Lytton844aeeb2014-05-02 09:33:20 +00009240
Robert Lytton0e076492013-08-13 09:43:10 +00009241//===----------------------------------------------------------------------===//
9242// Driver code
9243//===----------------------------------------------------------------------===//
9244
Rafael Espindola9f834732014-09-19 01:54:22 +00009245bool CodeGenModule::supportsCOMDAT() const {
Xinliang David Li865cfdd2016-05-25 17:25:57 +00009246 return getTriple().supportsCOMDAT();
Rafael Espindola9f834732014-09-19 01:54:22 +00009247}
9248
Chris Lattner2b037972010-07-29 02:01:43 +00009249const TargetCodeGenInfo &CodeGenModule::getTargetCodeGenInfo() {
Anton Korobeynikov55bcea12010-01-10 12:58:08 +00009250 if (TheTargetCodeGenInfo)
9251 return *TheTargetCodeGenInfo;
Anton Korobeynikov244360d2009-06-05 22:08:42 +00009252
Reid Kleckner9305fd12016-04-13 23:37:17 +00009253 // Helper to set the unique_ptr while still keeping the return value.
9254 auto SetCGInfo = [&](TargetCodeGenInfo *P) -> const TargetCodeGenInfo & {
9255 this->TheTargetCodeGenInfo.reset(P);
9256 return *P;
9257 };
9258
John McCallc8e01702013-04-16 22:48:15 +00009259 const llvm::Triple &Triple = getTarget().getTriple();
Daniel Dunbar40165182009-08-24 09:10:05 +00009260 switch (Triple.getArch()) {
Daniel Dunbare3532f82009-08-24 08:52:16 +00009261 default:
Reid Kleckner9305fd12016-04-13 23:37:17 +00009262 return SetCGInfo(new DefaultTargetCodeGenInfo(Types));
Daniel Dunbare3532f82009-08-24 08:52:16 +00009263
Derek Schuff09338a22012-09-06 17:37:28 +00009264 case llvm::Triple::le32:
Reid Kleckner9305fd12016-04-13 23:37:17 +00009265 return SetCGInfo(new PNaClTargetCodeGenInfo(Types));
John McCall943fae92010-05-27 06:19:26 +00009266 case llvm::Triple::mips:
9267 case llvm::Triple::mipsel:
Petar Jovanovic26a4a402015-07-08 13:07:31 +00009268 if (Triple.getOS() == llvm::Triple::NaCl)
Reid Kleckner9305fd12016-04-13 23:37:17 +00009269 return SetCGInfo(new PNaClTargetCodeGenInfo(Types));
9270 return SetCGInfo(new MIPSTargetCodeGenInfo(Types, true));
Akira Hatanakac4baedd2013-11-11 22:10:46 +00009271
Akira Hatanakaec11b4f2011-09-20 18:30:57 +00009272 case llvm::Triple::mips64:
9273 case llvm::Triple::mips64el:
Reid Kleckner9305fd12016-04-13 23:37:17 +00009274 return SetCGInfo(new MIPSTargetCodeGenInfo(Types, false));
Akira Hatanakac4baedd2013-11-11 22:10:46 +00009275
Dylan McKaye8232d72017-02-08 05:09:26 +00009276 case llvm::Triple::avr:
9277 return SetCGInfo(new AVRTargetCodeGenInfo(Types));
9278
Tim Northover25e8a672014-05-24 12:51:25 +00009279 case llvm::Triple::aarch64:
Tim Northover40956e62014-07-23 12:32:58 +00009280 case llvm::Triple::aarch64_be: {
Tim Northover573cbee2014-05-24 12:52:07 +00009281 AArch64ABIInfo::ABIKind Kind = AArch64ABIInfo::AAPCS;
Alp Toker4925ba72014-06-07 23:30:42 +00009282 if (getTarget().getABI() == "darwinpcs")
Tim Northover573cbee2014-05-24 12:52:07 +00009283 Kind = AArch64ABIInfo::DarwinPCS;
Martin Storsjo502de222017-07-13 17:59:14 +00009284 else if (Triple.isOSWindows())
Martin Storsjo1c8af272017-07-20 05:47:06 +00009285 return SetCGInfo(
9286 new WindowsAArch64TargetCodeGenInfo(Types, AArch64ABIInfo::Win64));
Tim Northovera2ee4332014-03-29 15:09:45 +00009287
Reid Kleckner9305fd12016-04-13 23:37:17 +00009288 return SetCGInfo(new AArch64TargetCodeGenInfo(Types, Kind));
Tim Northovera2ee4332014-03-29 15:09:45 +00009289 }
9290
Dan Gohmanc2853072015-09-03 22:51:53 +00009291 case llvm::Triple::wasm32:
9292 case llvm::Triple::wasm64:
Reid Kleckner9305fd12016-04-13 23:37:17 +00009293 return SetCGInfo(new WebAssemblyTargetCodeGenInfo(Types));
Dan Gohmanc2853072015-09-03 22:51:53 +00009294
Daniel Dunbard59655c2009-09-12 00:59:49 +00009295 case llvm::Triple::arm:
Christian Pirkerf01cd6f2014-03-28 14:40:46 +00009296 case llvm::Triple::armeb:
Daniel Dunbard59655c2009-09-12 00:59:49 +00009297 case llvm::Triple::thumb:
Reid Kleckner9305fd12016-04-13 23:37:17 +00009298 case llvm::Triple::thumbeb: {
9299 if (Triple.getOS() == llvm::Triple::Win32) {
9300 return SetCGInfo(
9301 new WindowsARMTargetCodeGenInfo(Types, ARMABIInfo::AAPCS_VFP));
Sandeep Patel45df3dd2011-04-05 00:23:47 +00009302 }
Daniel Dunbard59655c2009-09-12 00:59:49 +00009303
Reid Kleckner9305fd12016-04-13 23:37:17 +00009304 ARMABIInfo::ABIKind Kind = ARMABIInfo::AAPCS;
9305 StringRef ABIStr = getTarget().getABI();
9306 if (ABIStr == "apcs-gnu")
9307 Kind = ARMABIInfo::APCS;
9308 else if (ABIStr == "aapcs16")
9309 Kind = ARMABIInfo::AAPCS16_VFP;
9310 else if (CodeGenOpts.FloatABI == "hard" ||
9311 (CodeGenOpts.FloatABI != "soft" &&
Oleg Ranevskyy7232f662016-05-13 14:45:57 +00009312 (Triple.getEnvironment() == llvm::Triple::GNUEABIHF ||
Rafael Espindola0fa66802016-06-24 21:35:06 +00009313 Triple.getEnvironment() == llvm::Triple::MuslEABIHF ||
Oleg Ranevskyy7232f662016-05-13 14:45:57 +00009314 Triple.getEnvironment() == llvm::Triple::EABIHF)))
Reid Kleckner9305fd12016-04-13 23:37:17 +00009315 Kind = ARMABIInfo::AAPCS_VFP;
9316
9317 return SetCGInfo(new ARMTargetCodeGenInfo(Types, Kind));
9318 }
9319
John McCallea8d8bb2010-03-11 00:10:12 +00009320 case llvm::Triple::ppc:
Reid Kleckner9305fd12016-04-13 23:37:17 +00009321 return SetCGInfo(
9322 new PPC32TargetCodeGenInfo(Types, CodeGenOpts.FloatABI == "soft"));
Roman Divackyd966e722012-05-09 18:22:46 +00009323 case llvm::Triple::ppc64:
Ulrich Weigandb7122372014-07-21 00:48:09 +00009324 if (Triple.isOSBinFormatELF()) {
Ulrich Weigandb7122372014-07-21 00:48:09 +00009325 PPC64_SVR4_ABIInfo::ABIKind Kind = PPC64_SVR4_ABIInfo::ELFv1;
Ulrich Weigand8afad612014-07-28 13:17:52 +00009326 if (getTarget().getABI() == "elfv2")
9327 Kind = PPC64_SVR4_ABIInfo::ELFv2;
Hal Finkel0d0a1a52015-03-11 19:14:15 +00009328 bool HasQPX = getTarget().getABI() == "elfv1-qpx";
Hal Finkel415c2a32016-10-02 02:10:45 +00009329 bool IsSoftFloat = CodeGenOpts.FloatABI == "soft";
Ulrich Weigand8afad612014-07-28 13:17:52 +00009330
Hal Finkel415c2a32016-10-02 02:10:45 +00009331 return SetCGInfo(new PPC64_SVR4_TargetCodeGenInfo(Types, Kind, HasQPX,
9332 IsSoftFloat));
Ulrich Weigandb7122372014-07-21 00:48:09 +00009333 } else
Reid Kleckner9305fd12016-04-13 23:37:17 +00009334 return SetCGInfo(new PPC64TargetCodeGenInfo(Types));
Ulrich Weigandb7122372014-07-21 00:48:09 +00009335 case llvm::Triple::ppc64le: {
Bill Schmidt778d3872013-07-26 01:36:11 +00009336 assert(Triple.isOSBinFormatELF() && "PPC64 LE non-ELF not supported!");
Ulrich Weigandb7122372014-07-21 00:48:09 +00009337 PPC64_SVR4_ABIInfo::ABIKind Kind = PPC64_SVR4_ABIInfo::ELFv2;
Hal Finkel0d0a1a52015-03-11 19:14:15 +00009338 if (getTarget().getABI() == "elfv1" || getTarget().getABI() == "elfv1-qpx")
Ulrich Weigand8afad612014-07-28 13:17:52 +00009339 Kind = PPC64_SVR4_ABIInfo::ELFv1;
Hal Finkel0d0a1a52015-03-11 19:14:15 +00009340 bool HasQPX = getTarget().getABI() == "elfv1-qpx";
Hal Finkel415c2a32016-10-02 02:10:45 +00009341 bool IsSoftFloat = CodeGenOpts.FloatABI == "soft";
Ulrich Weigand8afad612014-07-28 13:17:52 +00009342
Hal Finkel415c2a32016-10-02 02:10:45 +00009343 return SetCGInfo(new PPC64_SVR4_TargetCodeGenInfo(Types, Kind, HasQPX,
9344 IsSoftFloat));
Ulrich Weigandb7122372014-07-21 00:48:09 +00009345 }
John McCallea8d8bb2010-03-11 00:10:12 +00009346
Peter Collingbournec947aae2012-05-20 23:28:41 +00009347 case llvm::Triple::nvptx:
9348 case llvm::Triple::nvptx64:
Reid Kleckner9305fd12016-04-13 23:37:17 +00009349 return SetCGInfo(new NVPTXTargetCodeGenInfo(Types));
Justin Holewinskibd4a3c02011-04-22 11:10:38 +00009350
Anton Korobeynikov55bcea12010-01-10 12:58:08 +00009351 case llvm::Triple::msp430:
Reid Kleckner9305fd12016-04-13 23:37:17 +00009352 return SetCGInfo(new MSP430TargetCodeGenInfo(Types));
Daniel Dunbard59655c2009-09-12 00:59:49 +00009353
Alex Bradbury8cbdd482018-01-15 17:54:52 +00009354 case llvm::Triple::riscv32:
9355 return SetCGInfo(new RISCVTargetCodeGenInfo(Types, 32));
9356 case llvm::Triple::riscv64:
9357 return SetCGInfo(new RISCVTargetCodeGenInfo(Types, 64));
9358
Ulrich Weigand66ff51b2015-05-05 19:35:52 +00009359 case llvm::Triple::systemz: {
9360 bool HasVector = getTarget().getABI() == "vector";
Reid Kleckner9305fd12016-04-13 23:37:17 +00009361 return SetCGInfo(new SystemZTargetCodeGenInfo(Types, HasVector));
Ulrich Weigand66ff51b2015-05-05 19:35:52 +00009362 }
Ulrich Weigand47445072013-05-06 16:26:41 +00009363
Peter Collingbourneadcf7c92011-10-13 16:24:41 +00009364 case llvm::Triple::tce:
Pekka Jaaskelainen67354482016-11-16 15:22:31 +00009365 case llvm::Triple::tcele:
Reid Kleckner9305fd12016-04-13 23:37:17 +00009366 return SetCGInfo(new TCETargetCodeGenInfo(Types));
Peter Collingbourneadcf7c92011-10-13 16:24:41 +00009367
Eli Friedman33465822011-07-08 23:31:17 +00009368 case llvm::Triple::x86: {
John McCall1fe2a8c2013-06-18 02:46:29 +00009369 bool IsDarwinVectorABI = Triple.isOSDarwin();
Michael Kupersteindc745202015-10-19 07:52:25 +00009370 bool RetSmallStructInRegABI =
John McCall1fe2a8c2013-06-18 02:46:29 +00009371 X86_32TargetCodeGenInfo::isStructReturnInRegABI(Triple, CodeGenOpts);
Saleem Abdulrasoolec5c6242014-11-23 02:16:24 +00009372 bool IsWin32FloatStructABI = Triple.isOSWindows() && !Triple.isOSCygMing();
Daniel Dunbar14ad22f2011-04-19 21:43:27 +00009373
John McCall1fe2a8c2013-06-18 02:46:29 +00009374 if (Triple.getOS() == llvm::Triple::Win32) {
Reid Kleckner9305fd12016-04-13 23:37:17 +00009375 return SetCGInfo(new WinX86_32TargetCodeGenInfo(
9376 Types, IsDarwinVectorABI, RetSmallStructInRegABI,
9377 IsWin32FloatStructABI, CodeGenOpts.NumRegisterParameters));
John McCall1fe2a8c2013-06-18 02:46:29 +00009378 } else {
Reid Kleckner9305fd12016-04-13 23:37:17 +00009379 return SetCGInfo(new X86_32TargetCodeGenInfo(
9380 Types, IsDarwinVectorABI, RetSmallStructInRegABI,
9381 IsWin32FloatStructABI, CodeGenOpts.NumRegisterParameters,
9382 CodeGenOpts.FloatABI == "soft"));
Anton Korobeynikov244360d2009-06-05 22:08:42 +00009383 }
Eli Friedman33465822011-07-08 23:31:17 +00009384 }
Anton Korobeynikov244360d2009-06-05 22:08:42 +00009385
Eli Friedmanbfd5add2011-12-02 00:11:43 +00009386 case llvm::Triple::x86_64: {
Ahmed Bougachad39a4152015-06-22 21:30:39 +00009387 StringRef ABI = getTarget().getABI();
Reid Kleckner9305fd12016-04-13 23:37:17 +00009388 X86AVXABILevel AVXLevel =
9389 (ABI == "avx512"
9390 ? X86AVXABILevel::AVX512
9391 : ABI == "avx" ? X86AVXABILevel::AVX : X86AVXABILevel::None);
Ahmed Bougachad39a4152015-06-22 21:30:39 +00009392
Chris Lattner04dc9572010-08-31 16:44:54 +00009393 switch (Triple.getOS()) {
9394 case llvm::Triple::Win32:
Reid Kleckner9305fd12016-04-13 23:37:17 +00009395 return SetCGInfo(new WinX86_64TargetCodeGenInfo(Types, AVXLevel));
Alex Rosenberg12207fa2015-01-27 14:47:44 +00009396 case llvm::Triple::PS4:
Reid Kleckner9305fd12016-04-13 23:37:17 +00009397 return SetCGInfo(new PS4TargetCodeGenInfo(Types, AVXLevel));
Chris Lattner04dc9572010-08-31 16:44:54 +00009398 default:
Reid Kleckner9305fd12016-04-13 23:37:17 +00009399 return SetCGInfo(new X86_64TargetCodeGenInfo(Types, AVXLevel));
Chris Lattner04dc9572010-08-31 16:44:54 +00009400 }
Daniel Dunbare3532f82009-08-24 08:52:16 +00009401 }
Tony Linthicum76329bf2011-12-12 21:14:55 +00009402 case llvm::Triple::hexagon:
Reid Kleckner9305fd12016-04-13 23:37:17 +00009403 return SetCGInfo(new HexagonTargetCodeGenInfo(Types));
Jacques Pienaard964cc22016-03-28 21:02:54 +00009404 case llvm::Triple::lanai:
Reid Kleckner9305fd12016-04-13 23:37:17 +00009405 return SetCGInfo(new LanaiTargetCodeGenInfo(Types));
Matt Arsenault43fae6c2014-12-04 20:38:18 +00009406 case llvm::Triple::r600:
Reid Kleckner9305fd12016-04-13 23:37:17 +00009407 return SetCGInfo(new AMDGPUTargetCodeGenInfo(Types));
Tom Stellardd8e38a32015-01-06 20:34:47 +00009408 case llvm::Triple::amdgcn:
Reid Kleckner9305fd12016-04-13 23:37:17 +00009409 return SetCGInfo(new AMDGPUTargetCodeGenInfo(Types));
Chris Dewhurst7e7ee962016-06-08 14:47:25 +00009410 case llvm::Triple::sparc:
9411 return SetCGInfo(new SparcV8TargetCodeGenInfo(Types));
Jakob Stoklund Olesend28ab7e2013-05-27 21:48:25 +00009412 case llvm::Triple::sparcv9:
Reid Kleckner9305fd12016-04-13 23:37:17 +00009413 return SetCGInfo(new SparcV9TargetCodeGenInfo(Types));
Robert Lytton0e076492013-08-13 09:43:10 +00009414 case llvm::Triple::xcore:
Reid Kleckner9305fd12016-04-13 23:37:17 +00009415 return SetCGInfo(new XCoreTargetCodeGenInfo(Types));
Tatyana Krasnukhaf8c264e2018-11-27 19:52:10 +00009416 case llvm::Triple::arc:
9417 return SetCGInfo(new ARCTargetCodeGenInfo(Types));
Xiuli Pan972bea82016-03-24 03:57:17 +00009418 case llvm::Triple::spir:
9419 case llvm::Triple::spir64:
Reid Kleckner9305fd12016-04-13 23:37:17 +00009420 return SetCGInfo(new SPIRTargetCodeGenInfo(Types));
Eli Friedmanbfd5add2011-12-02 00:11:43 +00009421 }
Anton Korobeynikov244360d2009-06-05 22:08:42 +00009422}
Yaxun Liuc2a87a02017-10-14 12:23:50 +00009423
9424/// Create an OpenCL kernel for an enqueued block.
9425///
9426/// The kernel has the same function type as the block invoke function. Its
9427/// name is the name of the block invoke function postfixed with "_kernel".
9428/// It simply calls the block invoke function then returns.
9429llvm::Function *
9430TargetCodeGenInfo::createEnqueuedBlockKernel(CodeGenFunction &CGF,
9431 llvm::Function *Invoke,
9432 llvm::Value *BlockLiteral) const {
9433 auto *InvokeFT = Invoke->getFunctionType();
9434 llvm::SmallVector<llvm::Type *, 2> ArgTys;
9435 for (auto &P : InvokeFT->params())
9436 ArgTys.push_back(P);
9437 auto &C = CGF.getLLVMContext();
9438 std::string Name = Invoke->getName().str() + "_kernel";
9439 auto *FT = llvm::FunctionType::get(llvm::Type::getVoidTy(C), ArgTys, false);
9440 auto *F = llvm::Function::Create(FT, llvm::GlobalValue::InternalLinkage, Name,
9441 &CGF.CGM.getModule());
9442 auto IP = CGF.Builder.saveIP();
9443 auto *BB = llvm::BasicBlock::Create(C, "entry", F);
9444 auto &Builder = CGF.Builder;
9445 Builder.SetInsertPoint(BB);
9446 llvm::SmallVector<llvm::Value *, 2> Args;
9447 for (auto &A : F->args())
9448 Args.push_back(&A);
9449 Builder.CreateCall(Invoke, Args);
9450 Builder.CreateRetVoid();
9451 Builder.restoreIP(IP);
9452 return F;
9453}
9454
9455/// Create an OpenCL kernel for an enqueued block.
9456///
9457/// The type of the first argument (the block literal) is the struct type
9458/// of the block literal instead of a pointer type. The first argument
9459/// (block literal) is passed directly by value to the kernel. The kernel
9460/// allocates the same type of struct on stack and stores the block literal
9461/// to it and passes its pointer to the block invoke function. The kernel
9462/// has "enqueued-block" function attribute and kernel argument metadata.
9463llvm::Function *AMDGPUTargetCodeGenInfo::createEnqueuedBlockKernel(
9464 CodeGenFunction &CGF, llvm::Function *Invoke,
9465 llvm::Value *BlockLiteral) const {
9466 auto &Builder = CGF.Builder;
9467 auto &C = CGF.getLLVMContext();
9468
9469 auto *BlockTy = BlockLiteral->getType()->getPointerElementType();
9470 auto *InvokeFT = Invoke->getFunctionType();
9471 llvm::SmallVector<llvm::Type *, 2> ArgTys;
9472 llvm::SmallVector<llvm::Metadata *, 8> AddressQuals;
9473 llvm::SmallVector<llvm::Metadata *, 8> AccessQuals;
9474 llvm::SmallVector<llvm::Metadata *, 8> ArgTypeNames;
9475 llvm::SmallVector<llvm::Metadata *, 8> ArgBaseTypeNames;
9476 llvm::SmallVector<llvm::Metadata *, 8> ArgTypeQuals;
9477 llvm::SmallVector<llvm::Metadata *, 8> ArgNames;
9478
9479 ArgTys.push_back(BlockTy);
9480 ArgTypeNames.push_back(llvm::MDString::get(C, "__block_literal"));
9481 AddressQuals.push_back(llvm::ConstantAsMetadata::get(Builder.getInt32(0)));
9482 ArgBaseTypeNames.push_back(llvm::MDString::get(C, "__block_literal"));
9483 ArgTypeQuals.push_back(llvm::MDString::get(C, ""));
9484 AccessQuals.push_back(llvm::MDString::get(C, "none"));
9485 ArgNames.push_back(llvm::MDString::get(C, "block_literal"));
9486 for (unsigned I = 1, E = InvokeFT->getNumParams(); I < E; ++I) {
9487 ArgTys.push_back(InvokeFT->getParamType(I));
Yaxun Liuc2a87a02017-10-14 12:23:50 +00009488 ArgTypeNames.push_back(llvm::MDString::get(C, "void*"));
9489 AddressQuals.push_back(llvm::ConstantAsMetadata::get(Builder.getInt32(3)));
9490 AccessQuals.push_back(llvm::MDString::get(C, "none"));
9491 ArgBaseTypeNames.push_back(llvm::MDString::get(C, "void*"));
9492 ArgTypeQuals.push_back(llvm::MDString::get(C, ""));
9493 ArgNames.push_back(
Yaxun Liu98f0c432017-10-14 12:51:52 +00009494 llvm::MDString::get(C, (Twine("local_arg") + Twine(I)).str()));
Yaxun Liuc2a87a02017-10-14 12:23:50 +00009495 }
9496 std::string Name = Invoke->getName().str() + "_kernel";
9497 auto *FT = llvm::FunctionType::get(llvm::Type::getVoidTy(C), ArgTys, false);
9498 auto *F = llvm::Function::Create(FT, llvm::GlobalValue::InternalLinkage, Name,
9499 &CGF.CGM.getModule());
9500 F->addFnAttr("enqueued-block");
9501 auto IP = CGF.Builder.saveIP();
9502 auto *BB = llvm::BasicBlock::Create(C, "entry", F);
9503 Builder.SetInsertPoint(BB);
9504 unsigned BlockAlign = CGF.CGM.getDataLayout().getPrefTypeAlignment(BlockTy);
9505 auto *BlockPtr = Builder.CreateAlloca(BlockTy, nullptr);
9506 BlockPtr->setAlignment(BlockAlign);
9507 Builder.CreateAlignedStore(F->arg_begin(), BlockPtr, BlockAlign);
9508 auto *Cast = Builder.CreatePointerCast(BlockPtr, InvokeFT->getParamType(0));
9509 llvm::SmallVector<llvm::Value *, 2> Args;
9510 Args.push_back(Cast);
9511 for (auto I = F->arg_begin() + 1, E = F->arg_end(); I != E; ++I)
9512 Args.push_back(I);
9513 Builder.CreateCall(Invoke, Args);
9514 Builder.CreateRetVoid();
9515 Builder.restoreIP(IP);
9516
9517 F->setMetadata("kernel_arg_addr_space", llvm::MDNode::get(C, AddressQuals));
9518 F->setMetadata("kernel_arg_access_qual", llvm::MDNode::get(C, AccessQuals));
9519 F->setMetadata("kernel_arg_type", llvm::MDNode::get(C, ArgTypeNames));
9520 F->setMetadata("kernel_arg_base_type",
9521 llvm::MDNode::get(C, ArgBaseTypeNames));
9522 F->setMetadata("kernel_arg_type_qual", llvm::MDNode::get(C, ArgTypeQuals));
9523 if (CGF.CGM.getCodeGenOpts().EmitOpenCLArgMetadata)
9524 F->setMetadata("kernel_arg_name", llvm::MDNode::get(C, ArgNames));
9525
9526 return F;
9527}