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Daniel Dunbar23ee4b72010-03-31 00:11:27 +00001//===--- CGRecordLayoutBuilder.cpp - CGRecordLayout builder ----*- C++ -*-===//
Anders Carlsson307846f2009-07-23 03:17:50 +00002//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
Daniel Dunbar23ee4b72010-03-31 00:11:27 +000010// Builder implementation for CGRecordLayout objects.
Anders Carlsson307846f2009-07-23 03:17:50 +000011//
12//===----------------------------------------------------------------------===//
13
Daniel Dunbar072d0bb2010-03-30 22:26:10 +000014#include "CGRecordLayout.h"
Chandler Carruth3a022472012-12-04 09:13:33 +000015#include "CGCXXABI.h"
16#include "CodeGenTypes.h"
Anders Carlsson307846f2009-07-23 03:17:50 +000017#include "clang/AST/ASTContext.h"
18#include "clang/AST/Attr.h"
Anders Carlsson4131f002010-11-24 22:50:27 +000019#include "clang/AST/CXXInheritance.h"
Anders Carlsson307846f2009-07-23 03:17:50 +000020#include "clang/AST/DeclCXX.h"
21#include "clang/AST/Expr.h"
22#include "clang/AST/RecordLayout.h"
Daniel Dunbard3f3d932011-06-21 18:54:46 +000023#include "clang/Frontend/CodeGenOptions.h"
Chandler Carruthffd55512013-01-02 11:45:17 +000024#include "llvm/IR/DataLayout.h"
25#include "llvm/IR/DerivedTypes.h"
26#include "llvm/IR/Type.h"
Daniel Dunbar2ba67442010-04-21 19:10:49 +000027#include "llvm/Support/Debug.h"
Warren Huntfb00c882014-02-21 23:49:50 +000028#include "llvm/Support/MathExtras.h"
Daniel Dunbarb97bff92010-04-12 18:14:18 +000029#include "llvm/Support/raw_ostream.h"
Anders Carlsson307846f2009-07-23 03:17:50 +000030using namespace clang;
31using namespace CodeGen;
32
John McCallbcd38212010-11-30 23:17:27 +000033namespace {
Warren Huntfb00c882014-02-21 23:49:50 +000034/// The CGRecordLowering is responsible for lowering an ASTRecordLayout to an
35/// llvm::Type. Some of the lowering is straightforward, some is not. Here we
36/// detail some of the complexities and weirdnesses here.
37/// * LLVM does not have unions - Unions can, in theory be represented by any
38/// llvm::Type with correct size. We choose a field via a specific heuristic
39/// and add padding if necessary.
40/// * LLVM does not have bitfields - Bitfields are collected into contiguous
41/// runs and allocated as a single storage type for the run. ASTRecordLayout
42/// contains enough information to determine where the runs break. Microsoft
43/// and Itanium follow different rules and use different codepaths.
44/// * It is desired that, when possible, bitfields use the appropriate iN type
45/// when lowered to llvm types. For example unsigned x : 24 gets lowered to
46/// i24. This isn't always possible because i24 has storage size of 32 bit
47/// and if it is possible to use that extra byte of padding we must use
48/// [i8 x 3] instead of i24. The function clipTailPadding does this.
49/// C++ examples that require clipping:
50/// struct { int a : 24; char b; }; // a must be clipped, b goes at offset 3
51/// struct A { int a : 24; }; // a must be clipped because a struct like B
52// could exist: struct B : A { char b; }; // b goes at offset 3
53/// * Clang ignores 0 sized bitfields and 0 sized bases but *not* zero sized
54/// fields. The existing asserts suggest that LLVM assumes that *every* field
55/// has an underlying storage type. Therefore empty structures containing
56/// zero sized subobjects such as empty records or zero sized arrays still get
57/// a zero sized (empty struct) storage type.
58/// * Clang reads the complete type rather than the base type when generating
59/// code to access fields. Bitfields in tail position with tail padding may
60/// be clipped in the base class but not the complete class (we may discover
61/// that the tail padding is not used in the complete class.) However,
62/// because LLVM reads from the complete type it can generate incorrect code
63/// if we do not clip the tail padding off of the bitfield in the complete
64/// layout. This introduces a somewhat awkward extra unnecessary clip stage.
65/// The location of the clip is stored internally as a sentinal of type
66/// SCISSOR. If LLVM were updated to read base types (which it probably
67/// should because locations of things such as VBases are bogus in the llvm
68/// type anyway) then we could eliminate the SCISSOR.
69/// * Itanium allows nearly empty primary virtual bases. These bases don't get
70/// get their own storage because they're laid out as part of another base
71/// or at the beginning of the structure. Determining if a VBase actually
72/// gets storage awkwardly involves a walk of all bases.
73/// * VFPtrs and VBPtrs do *not* make a record NotZeroInitializable.
74struct CGRecordLowering {
75 // MemberInfo is a helper structure that contains information about a record
76 // member. In additional to the standard member types, there exists a
77 // sentinal member type that ensures correct rounding.
78 struct MemberInfo {
79 CharUnits Offset;
80 enum InfoKind { VFPtr, VBPtr, Field, Base, VBase, Scissor } Kind;
81 llvm::Type *Data;
82 union {
83 const FieldDecl *FD;
84 const CXXRecordDecl *RD;
85 };
86 MemberInfo(CharUnits Offset, InfoKind Kind, llvm::Type *Data,
Craig Topper8a13c412014-05-21 05:09:00 +000087 const FieldDecl *FD = nullptr)
Warren Huntfb00c882014-02-21 23:49:50 +000088 : Offset(Offset), Kind(Kind), Data(Data), FD(FD) {}
89 MemberInfo(CharUnits Offset, InfoKind Kind, llvm::Type *Data,
90 const CXXRecordDecl *RD)
91 : Offset(Offset), Kind(Kind), Data(Data), RD(RD) {}
92 // MemberInfos are sorted so we define a < operator.
93 bool operator <(const MemberInfo& a) const { return Offset < a.Offset; }
94 };
95 // The constructor.
David Majnemerbb513002014-09-28 06:39:30 +000096 CGRecordLowering(CodeGenTypes &Types, const RecordDecl *D, bool Packed);
Warren Huntfb00c882014-02-21 23:49:50 +000097 // Short helper routines.
98 /// \brief Constructs a MemberInfo instance from an offset and llvm::Type *.
99 MemberInfo StorageInfo(CharUnits Offset, llvm::Type *Data) {
100 return MemberInfo(Offset, MemberInfo::Field, Data);
101 }
John McCallf3e86a72015-04-28 00:17:18 +0000102
103 /// The Microsoft bitfield layout rule allocates discrete storage
104 /// units of the field's formal type and only combines adjacent
105 /// fields of the same formal type. We want to emit a layout with
106 /// these discrete storage units instead of combining them into a
107 /// continuous run.
108 bool isDiscreteBitFieldABI() {
Warren Huntfb00c882014-02-21 23:49:50 +0000109 return Context.getTargetInfo().getCXXABI().isMicrosoft() ||
110 D->isMsStruct(Context);
111 }
John McCallf3e86a72015-04-28 00:17:18 +0000112
113 /// The Itanium base layout rule allows virtual bases to overlap
114 /// other bases, which complicates layout in specific ways.
115 ///
116 /// Note specifically that the ms_struct attribute doesn't change this.
117 bool isOverlappingVBaseABI() {
118 return !Context.getTargetInfo().getCXXABI().isMicrosoft();
119 }
120
Warren Huntfb00c882014-02-21 23:49:50 +0000121 /// \brief Wraps llvm::Type::getIntNTy with some implicit arguments.
122 llvm::Type *getIntNType(uint64_t NumBits) {
123 return llvm::Type::getIntNTy(Types.getLLVMContext(),
124 (unsigned)llvm::RoundUpToAlignment(NumBits, 8));
125 }
126 /// \brief Gets an llvm type of size NumBytes and alignment 1.
David Majnemer7a726012014-02-22 00:41:07 +0000127 llvm::Type *getByteArrayType(CharUnits NumBytes) {
Warren Huntfb00c882014-02-21 23:49:50 +0000128 assert(!NumBytes.isZero() && "Empty byte arrays aren't allowed.");
129 llvm::Type *Type = llvm::Type::getInt8Ty(Types.getLLVMContext());
130 return NumBytes == CharUnits::One() ? Type :
131 (llvm::Type *)llvm::ArrayType::get(Type, NumBytes.getQuantity());
132 }
133 /// \brief Gets the storage type for a field decl and handles storage
134 /// for itanium bitfields that are smaller than their declared type.
135 llvm::Type *getStorageType(const FieldDecl *FD) {
136 llvm::Type *Type = Types.ConvertTypeForMem(FD->getType());
John McCallf3e86a72015-04-28 00:17:18 +0000137 if (!FD->isBitField()) return Type;
138 if (isDiscreteBitFieldABI()) return Type;
139 return getIntNType(std::min(FD->getBitWidthValue(Context),
Warren Huntfb00c882014-02-21 23:49:50 +0000140 (unsigned)Context.toBits(getSize(Type))));
141 }
142 /// \brief Gets the llvm Basesubobject type from a CXXRecordDecl.
143 llvm::Type *getStorageType(const CXXRecordDecl *RD) {
144 return Types.getCGRecordLayout(RD).getBaseSubobjectLLVMType();
145 }
146 CharUnits bitsToCharUnits(uint64_t BitOffset) {
147 return Context.toCharUnitsFromBits(BitOffset);
148 }
149 CharUnits getSize(llvm::Type *Type) {
150 return CharUnits::fromQuantity(DataLayout.getTypeAllocSize(Type));
151 }
152 CharUnits getAlignment(llvm::Type *Type) {
153 return CharUnits::fromQuantity(DataLayout.getABITypeAlignment(Type));
154 }
155 bool isZeroInitializable(const FieldDecl *FD) {
David Majnemer67fa0b82015-05-26 21:28:50 +0000156 return Types.isZeroInitializable(FD->getType());
Warren Huntfb00c882014-02-21 23:49:50 +0000157 }
158 bool isZeroInitializable(const RecordDecl *RD) {
David Majnemer67fa0b82015-05-26 21:28:50 +0000159 return Types.isZeroInitializable(RD);
Warren Huntfb00c882014-02-21 23:49:50 +0000160 }
161 void appendPaddingBytes(CharUnits Size) {
162 if (!Size.isZero())
163 FieldTypes.push_back(getByteArrayType(Size));
164 }
165 uint64_t getFieldBitOffset(const FieldDecl *FD) {
166 return Layout.getFieldOffset(FD->getFieldIndex());
167 }
168 // Layout routines.
169 void setBitFieldInfo(const FieldDecl *FD, CharUnits StartOffset,
170 llvm::Type *StorageType);
171 /// \brief Lowers an ASTRecordLayout to a llvm type.
172 void lower(bool NonVirtualBaseType);
173 void lowerUnion();
174 void accumulateFields();
175 void accumulateBitFields(RecordDecl::field_iterator Field,
176 RecordDecl::field_iterator FieldEnd);
177 void accumulateBases();
178 void accumulateVPtrs();
179 void accumulateVBases();
180 /// \brief Recursively searches all of the bases to find out if a vbase is
181 /// not the primary vbase of some base class.
182 bool hasOwnStorage(const CXXRecordDecl *Decl, const CXXRecordDecl *Query);
183 void calculateZeroInit();
184 /// \brief Lowers bitfield storage types to I8 arrays for bitfields with tail
185 /// padding that is or can potentially be used.
186 void clipTailPadding();
187 /// \brief Determines if we need a packed llvm struct.
David Majnemerbb513002014-09-28 06:39:30 +0000188 void determinePacked(bool NVBaseType);
Warren Huntfb00c882014-02-21 23:49:50 +0000189 /// \brief Inserts padding everwhere it's needed.
190 void insertPadding();
191 /// \brief Fills out the structures that are ultimately consumed.
192 void fillOutputFields();
193 // Input memoization fields.
194 CodeGenTypes &Types;
195 const ASTContext &Context;
196 const RecordDecl *D;
197 const CXXRecordDecl *RD;
198 const ASTRecordLayout &Layout;
199 const llvm::DataLayout &DataLayout;
200 // Helpful intermediate data-structures.
201 std::vector<MemberInfo> Members;
202 // Output fields, consumed by CodeGenTypes::ComputeRecordLayout.
Chris Lattner0e62c1c2011-07-23 10:55:15 +0000203 SmallVector<llvm::Type *, 16> FieldTypes;
John McCall0217dfc22011-02-15 06:40:56 +0000204 llvm::DenseMap<const FieldDecl *, unsigned> Fields;
John McCall0217dfc22011-02-15 06:40:56 +0000205 llvm::DenseMap<const FieldDecl *, CGBitFieldInfo> BitFields;
John McCall0217dfc22011-02-15 06:40:56 +0000206 llvm::DenseMap<const CXXRecordDecl *, unsigned> NonVirtualBases;
207 llvm::DenseMap<const CXXRecordDecl *, unsigned> VirtualBases;
Warren Huntfb00c882014-02-21 23:49:50 +0000208 bool IsZeroInitializable : 1;
209 bool IsZeroInitializableAsBase : 1;
210 bool Packed : 1;
Daniel Dunbar23ee4b72010-03-31 00:11:27 +0000211private:
Aaron Ballmanabc18922015-02-15 22:54:08 +0000212 CGRecordLowering(const CGRecordLowering &) = delete;
213 void operator =(const CGRecordLowering &) = delete;
Daniel Dunbar23ee4b72010-03-31 00:11:27 +0000214};
Alexander Kornienkoab9db512015-06-22 23:07:51 +0000215} // namespace {
Daniel Dunbar23ee4b72010-03-31 00:11:27 +0000216
David Majnemerbb513002014-09-28 06:39:30 +0000217CGRecordLowering::CGRecordLowering(CodeGenTypes &Types, const RecordDecl *D, bool Packed)
Warren Hunt0afa2d22014-02-22 00:22:15 +0000218 : Types(Types), Context(Types.getContext()), D(D),
219 RD(dyn_cast<CXXRecordDecl>(D)),
Warren Huntfb00c882014-02-21 23:49:50 +0000220 Layout(Types.getContext().getASTRecordLayout(D)),
Warren Hunt0afa2d22014-02-22 00:22:15 +0000221 DataLayout(Types.getDataLayout()), IsZeroInitializable(true),
David Majnemerbb513002014-09-28 06:39:30 +0000222 IsZeroInitializableAsBase(true), Packed(Packed) {}
Warren Huntfb00c882014-02-21 23:49:50 +0000223
224void CGRecordLowering::setBitFieldInfo(
225 const FieldDecl *FD, CharUnits StartOffset, llvm::Type *StorageType) {
Richard Smithcd45dbc2014-04-19 03:48:30 +0000226 CGBitFieldInfo &Info = BitFields[FD->getCanonicalDecl()];
Warren Huntfb00c882014-02-21 23:49:50 +0000227 Info.IsSigned = FD->getType()->isSignedIntegerOrEnumerationType();
228 Info.Offset = (unsigned)(getFieldBitOffset(FD) - Context.toBits(StartOffset));
229 Info.Size = FD->getBitWidthValue(Context);
230 Info.StorageSize = (unsigned)DataLayout.getTypeAllocSizeInBits(StorageType);
231 // Here we calculate the actual storage alignment of the bits. E.g if we've
232 // got an alignment >= 2 and the bitfield starts at offset 6 we've got an
233 // alignment of 2.
David Majnemere385d892014-02-25 01:20:15 +0000234 Info.StorageAlignment =
235 Layout.getAlignment().alignmentAtOffset(StartOffset).getQuantity();
Warren Huntfb00c882014-02-21 23:49:50 +0000236 if (Info.Size > Info.StorageSize)
237 Info.Size = Info.StorageSize;
238 // Reverse the bit offsets for big endian machines. Because we represent
239 // a bitfield as a single large integer load, we can imagine the bits
240 // counting from the most-significant-bit instead of the
241 // least-significant-bit.
242 if (DataLayout.isBigEndian())
243 Info.Offset = Info.StorageSize - (Info.Offset + Info.Size);
Daniel Dunbar23ee4b72010-03-31 00:11:27 +0000244}
Daniel Dunbar23ee4b72010-03-31 00:11:27 +0000245
Warren Huntfb00c882014-02-21 23:49:50 +0000246void CGRecordLowering::lower(bool NVBaseType) {
247 // The lowering process implemented in this function takes a variety of
248 // carefully ordered phases.
249 // 1) Store all members (fields and bases) in a list and sort them by offset.
250 // 2) Add a 1-byte capstone member at the Size of the structure.
251 // 3) Clip bitfield storages members if their tail padding is or might be
252 // used by another field or base. The clipping process uses the capstone
253 // by treating it as another object that occurs after the record.
254 // 4) Determine if the llvm-struct requires packing. It's important that this
255 // phase occur after clipping, because clipping changes the llvm type.
256 // This phase reads the offset of the capstone when determining packedness
257 // and updates the alignment of the capstone to be equal of the alignment
258 // of the record after doing so.
259 // 5) Insert padding everywhere it is needed. This phase requires 'Packed' to
260 // have been computed and needs to know the alignment of the record in
261 // order to understand if explicit tail padding is needed.
262 // 6) Remove the capstone, we don't need it anymore.
263 // 7) Determine if this record can be zero-initialized. This phase could have
264 // been placed anywhere after phase 1.
265 // 8) Format the complete list of members in a way that can be consumed by
266 // CodeGenTypes::ComputeRecordLayout.
267 CharUnits Size = NVBaseType ? Layout.getNonVirtualSize() : Layout.getSize();
268 if (D->isUnion())
269 return lowerUnion();
270 accumulateFields();
271 // RD implies C++.
272 if (RD) {
273 accumulateVPtrs();
274 accumulateBases();
275 if (Members.empty())
276 return appendPaddingBytes(Size);
277 if (!NVBaseType)
278 accumulateVBases();
279 }
280 std::stable_sort(Members.begin(), Members.end());
281 Members.push_back(StorageInfo(Size, getIntNType(8)));
282 clipTailPadding();
David Majnemerbb513002014-09-28 06:39:30 +0000283 determinePacked(NVBaseType);
Warren Huntfb00c882014-02-21 23:49:50 +0000284 insertPadding();
285 Members.pop_back();
286 calculateZeroInit();
287 fillOutputFields();
288}
Anders Carlsson28a5fa22009-08-08 19:38:24 +0000289
Warren Huntfb00c882014-02-21 23:49:50 +0000290void CGRecordLowering::lowerUnion() {
Warren Huntfed55972014-03-01 00:38:40 +0000291 CharUnits LayoutSize = Layout.getSize();
Craig Topper8a13c412014-05-21 05:09:00 +0000292 llvm::Type *StorageType = nullptr;
David Majnemerb00ddf32014-10-15 07:57:41 +0000293 bool SeenNamedMember = false;
Warren Huntfb00c882014-02-21 23:49:50 +0000294 // Iterate through the fields setting bitFieldInfo and the Fields array. Also
295 // locate the "most appropriate" storage type. The heuristic for finding the
296 // storage type isn't necessary, the first (non-0-length-bitfield) field's
David Majnemer2e29b402014-10-15 07:57:38 +0000297 // type would work fine and be simpler but would be different than what we've
Warren Huntfb00c882014-02-21 23:49:50 +0000298 // been doing and cause lit tests to change.
Aaron Ballmane8a8bae2014-03-08 20:12:42 +0000299 for (const auto *Field : D->fields()) {
Warren Huntfb00c882014-02-21 23:49:50 +0000300 if (Field->isBitField()) {
301 // Skip 0 sized bitfields.
302 if (Field->getBitWidthValue(Context) == 0)
303 continue;
Aaron Ballmane8a8bae2014-03-08 20:12:42 +0000304 llvm::Type *FieldType = getStorageType(Field);
Warren Huntfed55972014-03-01 00:38:40 +0000305 if (LayoutSize < getSize(FieldType))
306 FieldType = getByteArrayType(LayoutSize);
Aaron Ballmane8a8bae2014-03-08 20:12:42 +0000307 setBitFieldInfo(Field, CharUnits::Zero(), FieldType);
Warren Huntfb00c882014-02-21 23:49:50 +0000308 }
Richard Smithcd45dbc2014-04-19 03:48:30 +0000309 Fields[Field->getCanonicalDecl()] = 0;
Aaron Ballmane8a8bae2014-03-08 20:12:42 +0000310 llvm::Type *FieldType = getStorageType(Field);
David Majnemer8476abe2014-10-15 16:36:11 +0000311 // Compute zero-initializable status.
David Majnemerb00ddf32014-10-15 07:57:41 +0000312 // This union might not be zero initialized: it may contain a pointer to
313 // data member which might have some exotic initialization sequence.
314 // If this is the case, then we aught not to try and come up with a "better"
315 // type, it might not be very easy to come up with a Constant which
316 // correctly initializes it.
David Majnemer4e51dfc2015-05-30 09:12:07 +0000317 if (!SeenNamedMember) {
318 SeenNamedMember = Field->getIdentifier();
319 if (!SeenNamedMember)
320 if (const auto *FieldRD =
321 dyn_cast_or_null<RecordDecl>(Field->getType()->getAsTagDecl()))
322 SeenNamedMember = FieldRD->findFirstNamedDataMember();
323 if (SeenNamedMember && !isZeroInitializable(Field)) {
David Majnemer8476abe2014-10-15 16:36:11 +0000324 IsZeroInitializable = IsZeroInitializableAsBase = false;
David Majnemerb00ddf32014-10-15 07:57:41 +0000325 StorageType = FieldType;
326 }
327 }
David Majnemer8476abe2014-10-15 16:36:11 +0000328 // Because our union isn't zero initializable, we won't be getting a better
329 // storage type.
330 if (!IsZeroInitializable)
331 continue;
Warren Huntfb00c882014-02-21 23:49:50 +0000332 // Conditionally update our storage type if we've got a new "better" one.
333 if (!StorageType ||
334 getAlignment(FieldType) > getAlignment(StorageType) ||
335 (getAlignment(FieldType) == getAlignment(StorageType) &&
336 getSize(FieldType) > getSize(StorageType)))
David Majnemer8476abe2014-10-15 16:36:11 +0000337 StorageType = FieldType;
Warren Huntfb00c882014-02-21 23:49:50 +0000338 }
Warren Huntfb00c882014-02-21 23:49:50 +0000339 // If we have no storage type just pad to the appropriate size and return.
340 if (!StorageType)
341 return appendPaddingBytes(LayoutSize);
342 // If our storage size was bigger than our required size (can happen in the
343 // case of packed bitfields on Itanium) then just use an I8 array.
344 if (LayoutSize < getSize(StorageType))
345 StorageType = getByteArrayType(LayoutSize);
346 FieldTypes.push_back(StorageType);
347 appendPaddingBytes(LayoutSize - getSize(StorageType));
348 // Set packed if we need it.
349 if (LayoutSize % getAlignment(StorageType))
350 Packed = true;
351}
352
353void CGRecordLowering::accumulateFields() {
354 for (RecordDecl::field_iterator Field = D->field_begin(),
355 FieldEnd = D->field_end();
356 Field != FieldEnd;)
357 if (Field->isBitField()) {
358 RecordDecl::field_iterator Start = Field;
359 // Iterate to gather the list of bitfields.
360 for (++Field; Field != FieldEnd && Field->isBitField(); ++Field);
361 accumulateBitFields(Start, Field);
362 } else {
363 Members.push_back(MemberInfo(
364 bitsToCharUnits(getFieldBitOffset(*Field)), MemberInfo::Field,
365 getStorageType(*Field), *Field));
366 ++Field;
367 }
368}
369
370void
371CGRecordLowering::accumulateBitFields(RecordDecl::field_iterator Field,
372 RecordDecl::field_iterator FieldEnd) {
373 // Run stores the first element of the current run of bitfields. FieldEnd is
374 // used as a special value to note that we don't have a current run. A
375 // bitfield run is a contiguous collection of bitfields that can be stored in
376 // the same storage block. Zero-sized bitfields and bitfields that would
377 // cross an alignment boundary break a run and start a new one.
378 RecordDecl::field_iterator Run = FieldEnd;
379 // Tail is the offset of the first bit off the end of the current run. It's
380 // used to determine if the ASTRecordLayout is treating these two bitfields as
381 // contiguous. StartBitOffset is offset of the beginning of the Run.
382 uint64_t StartBitOffset, Tail = 0;
John McCallf3e86a72015-04-28 00:17:18 +0000383 if (isDiscreteBitFieldABI()) {
Warren Huntfb00c882014-02-21 23:49:50 +0000384 for (; Field != FieldEnd; ++Field) {
385 uint64_t BitOffset = getFieldBitOffset(*Field);
386 // Zero-width bitfields end runs.
387 if (Field->getBitWidthValue(Context) == 0) {
388 Run = FieldEnd;
389 continue;
390 }
391 llvm::Type *Type = Types.ConvertTypeForMem(Field->getType());
392 // If we don't have a run yet, or don't live within the previous run's
393 // allocated storage then we allocate some storage and start a new run.
394 if (Run == FieldEnd || BitOffset >= Tail) {
395 Run = Field;
396 StartBitOffset = BitOffset;
397 Tail = StartBitOffset + DataLayout.getTypeAllocSizeInBits(Type);
398 // Add the storage member to the record. This must be added to the
399 // record before the bitfield members so that it gets laid out before
400 // the bitfields it contains get laid out.
401 Members.push_back(StorageInfo(bitsToCharUnits(StartBitOffset), Type));
402 }
403 // Bitfields get the offset of their storage but come afterward and remain
404 // there after a stable sort.
405 Members.push_back(MemberInfo(bitsToCharUnits(StartBitOffset),
Craig Topper8a13c412014-05-21 05:09:00 +0000406 MemberInfo::Field, nullptr, *Field));
Warren Huntfb00c882014-02-21 23:49:50 +0000407 }
Anders Carlsson697f6592009-07-23 03:43:54 +0000408 return;
409 }
Warren Huntfb00c882014-02-21 23:49:50 +0000410 for (;;) {
411 // Check to see if we need to start a new run.
412 if (Run == FieldEnd) {
413 // If we're out of fields, return.
414 if (Field == FieldEnd)
415 break;
416 // Any non-zero-length bitfield can start a new run.
417 if (Field->getBitWidthValue(Context) != 0) {
418 Run = Field;
419 StartBitOffset = getFieldBitOffset(*Field);
420 Tail = StartBitOffset + Field->getBitWidthValue(Context);
421 }
422 ++Field;
423 continue;
424 }
Justin Bogner085c4b22014-08-14 15:44:29 +0000425 // Add bitfields to the run as long as they qualify.
Warren Huntfb00c882014-02-21 23:49:50 +0000426 if (Field != FieldEnd && Field->getBitWidthValue(Context) != 0 &&
Justin Bogner085c4b22014-08-14 15:44:29 +0000427 Tail == getFieldBitOffset(*Field)) {
Warren Huntfb00c882014-02-21 23:49:50 +0000428 Tail += Field->getBitWidthValue(Context);
429 ++Field;
430 continue;
431 }
432 // We've hit a break-point in the run and need to emit a storage field.
433 llvm::Type *Type = getIntNType(Tail - StartBitOffset);
434 // Add the storage member to the record and set the bitfield info for all of
435 // the bitfields in the run. Bitfields get the offset of their storage but
436 // come afterward and remain there after a stable sort.
437 Members.push_back(StorageInfo(bitsToCharUnits(StartBitOffset), Type));
438 for (; Run != Field; ++Run)
439 Members.push_back(MemberInfo(bitsToCharUnits(StartBitOffset),
Craig Topper8a13c412014-05-21 05:09:00 +0000440 MemberInfo::Field, nullptr, *Run));
Warren Huntfb00c882014-02-21 23:49:50 +0000441 Run = FieldEnd;
442 }
443}
Anders Carlsson68e0b682009-08-08 18:23:56 +0000444
Warren Huntfb00c882014-02-21 23:49:50 +0000445void CGRecordLowering::accumulateBases() {
446 // If we've got a primary virtual base, we need to add it with the bases.
Warren Huntf0ffdb22014-04-25 21:56:30 +0000447 if (Layout.isPrimaryBaseVirtual()) {
448 const CXXRecordDecl *BaseDecl = Layout.getPrimaryBase();
449 Members.push_back(MemberInfo(CharUnits::Zero(), MemberInfo::Base,
450 getStorageType(BaseDecl), BaseDecl));
451 }
Warren Huntfb00c882014-02-21 23:49:50 +0000452 // Accumulate the non-virtual bases.
Aaron Ballman574705e2014-03-13 15:41:46 +0000453 for (const auto &Base : RD->bases()) {
454 if (Base.isVirtual())
Warren Huntfb00c882014-02-21 23:49:50 +0000455 continue;
John McCall9fc700e2015-04-26 04:43:26 +0000456
457 // Bases can be zero-sized even if not technically empty if they
458 // contain only a trailing array member.
Aaron Ballman574705e2014-03-13 15:41:46 +0000459 const CXXRecordDecl *BaseDecl = Base.getType()->getAsCXXRecordDecl();
John McCall9fc700e2015-04-26 04:43:26 +0000460 if (!BaseDecl->isEmpty() &&
461 !Context.getASTRecordLayout(BaseDecl).getSize().isZero())
Warren Huntfb00c882014-02-21 23:49:50 +0000462 Members.push_back(MemberInfo(Layout.getBaseClassOffset(BaseDecl),
463 MemberInfo::Base, getStorageType(BaseDecl), BaseDecl));
464 }
465}
466
467void CGRecordLowering::accumulateVPtrs() {
468 if (Layout.hasOwnVFPtr())
469 Members.push_back(MemberInfo(CharUnits::Zero(), MemberInfo::VFPtr,
470 llvm::FunctionType::get(getIntNType(32), /*isVarArg=*/true)->
471 getPointerTo()->getPointerTo()));
472 if (Layout.hasOwnVBPtr())
473 Members.push_back(MemberInfo(Layout.getVBPtrOffset(), MemberInfo::VBPtr,
474 llvm::Type::getInt32PtrTy(Types.getLLVMContext())));
475}
476
477void CGRecordLowering::accumulateVBases() {
Warren Huntf0ffdb22014-04-25 21:56:30 +0000478 CharUnits ScissorOffset = Layout.getNonVirtualSize();
479 // In the itanium ABI, it's possible to place a vbase at a dsize that is
480 // smaller than the nvsize. Here we check to see if such a base is placed
481 // before the nvsize and set the scissor offset to that, instead of the
482 // nvsize.
John McCallf3e86a72015-04-28 00:17:18 +0000483 if (isOverlappingVBaseABI())
Warren Huntf0ffdb22014-04-25 21:56:30 +0000484 for (const auto &Base : RD->vbases()) {
485 const CXXRecordDecl *BaseDecl = Base.getType()->getAsCXXRecordDecl();
486 if (BaseDecl->isEmpty())
487 continue;
488 // If the vbase is a primary virtual base of some base, then it doesn't
489 // get its own storage location but instead lives inside of that base.
490 if (Context.isNearlyEmpty(BaseDecl) && !hasOwnStorage(RD, BaseDecl))
491 continue;
492 ScissorOffset = std::min(ScissorOffset,
493 Layout.getVBaseClassOffset(BaseDecl));
494 }
Craig Topper8a13c412014-05-21 05:09:00 +0000495 Members.push_back(MemberInfo(ScissorOffset, MemberInfo::Scissor, nullptr,
496 RD));
Aaron Ballman445a9392014-03-13 16:15:17 +0000497 for (const auto &Base : RD->vbases()) {
498 const CXXRecordDecl *BaseDecl = Base.getType()->getAsCXXRecordDecl();
Warren Huntfb00c882014-02-21 23:49:50 +0000499 if (BaseDecl->isEmpty())
500 continue;
501 CharUnits Offset = Layout.getVBaseClassOffset(BaseDecl);
502 // If the vbase is a primary virtual base of some base, then it doesn't
503 // get its own storage location but instead lives inside of that base.
John McCallf3e86a72015-04-28 00:17:18 +0000504 if (isOverlappingVBaseABI() &&
505 Context.isNearlyEmpty(BaseDecl) &&
Warren Huntfb00c882014-02-21 23:49:50 +0000506 !hasOwnStorage(RD, BaseDecl)) {
Craig Topper8a13c412014-05-21 05:09:00 +0000507 Members.push_back(MemberInfo(Offset, MemberInfo::VBase, nullptr,
508 BaseDecl));
Warren Huntfb00c882014-02-21 23:49:50 +0000509 continue;
510 }
511 // If we've got a vtordisp, add it as a storage type.
512 if (Layout.getVBaseOffsetsMap().find(BaseDecl)->second.hasVtorDisp())
513 Members.push_back(StorageInfo(Offset - CharUnits::fromQuantity(4),
514 getIntNType(32)));
515 Members.push_back(MemberInfo(Offset, MemberInfo::VBase,
516 getStorageType(BaseDecl), BaseDecl));
517 }
518}
519
520bool CGRecordLowering::hasOwnStorage(const CXXRecordDecl *Decl,
521 const CXXRecordDecl *Query) {
522 const ASTRecordLayout &DeclLayout = Context.getASTRecordLayout(Decl);
523 if (DeclLayout.isPrimaryBaseVirtual() && DeclLayout.getPrimaryBase() == Query)
524 return false;
Aaron Ballman574705e2014-03-13 15:41:46 +0000525 for (const auto &Base : Decl->bases())
526 if (!hasOwnStorage(Base.getType()->getAsCXXRecordDecl(), Query))
Warren Huntfb00c882014-02-21 23:49:50 +0000527 return false;
528 return true;
529}
530
531void CGRecordLowering::calculateZeroInit() {
532 for (std::vector<MemberInfo>::const_iterator Member = Members.begin(),
533 MemberEnd = Members.end();
534 IsZeroInitializableAsBase && Member != MemberEnd; ++Member) {
535 if (Member->Kind == MemberInfo::Field) {
536 if (!Member->FD || isZeroInitializable(Member->FD))
537 continue;
538 IsZeroInitializable = IsZeroInitializableAsBase = false;
539 } else if (Member->Kind == MemberInfo::Base ||
540 Member->Kind == MemberInfo::VBase) {
541 if (isZeroInitializable(Member->RD))
542 continue;
543 IsZeroInitializable = false;
544 if (Member->Kind == MemberInfo::Base)
545 IsZeroInitializableAsBase = false;
546 }
547 }
548}
549
550void CGRecordLowering::clipTailPadding() {
551 std::vector<MemberInfo>::iterator Prior = Members.begin();
552 CharUnits Tail = getSize(Prior->Data);
553 for (std::vector<MemberInfo>::iterator Member = Prior + 1,
554 MemberEnd = Members.end();
555 Member != MemberEnd; ++Member) {
556 // Only members with data and the scissor can cut into tail padding.
557 if (!Member->Data && Member->Kind != MemberInfo::Scissor)
558 continue;
559 if (Member->Offset < Tail) {
560 assert(Prior->Kind == MemberInfo::Field && !Prior->FD &&
561 "Only storage fields have tail padding!");
562 Prior->Data = getByteArrayType(bitsToCharUnits(llvm::RoundUpToAlignment(
563 cast<llvm::IntegerType>(Prior->Data)->getIntegerBitWidth(), 8)));
564 }
565 if (Member->Data)
566 Prior = Member;
567 Tail = Prior->Offset + getSize(Prior->Data);
568 }
569}
570
David Majnemerbb513002014-09-28 06:39:30 +0000571void CGRecordLowering::determinePacked(bool NVBaseType) {
572 if (Packed)
573 return;
Warren Huntfb00c882014-02-21 23:49:50 +0000574 CharUnits Alignment = CharUnits::One();
David Majnemerbb513002014-09-28 06:39:30 +0000575 CharUnits NVAlignment = CharUnits::One();
576 CharUnits NVSize =
577 !NVBaseType && RD ? Layout.getNonVirtualSize() : CharUnits::Zero();
Warren Huntfb00c882014-02-21 23:49:50 +0000578 for (std::vector<MemberInfo>::const_iterator Member = Members.begin(),
579 MemberEnd = Members.end();
580 Member != MemberEnd; ++Member) {
581 if (!Member->Data)
582 continue;
583 // If any member falls at an offset that it not a multiple of its alignment,
584 // then the entire record must be packed.
585 if (Member->Offset % getAlignment(Member->Data))
586 Packed = true;
David Majnemerbb513002014-09-28 06:39:30 +0000587 if (Member->Offset < NVSize)
588 NVAlignment = std::max(NVAlignment, getAlignment(Member->Data));
Warren Huntfb00c882014-02-21 23:49:50 +0000589 Alignment = std::max(Alignment, getAlignment(Member->Data));
590 }
591 // If the size of the record (the capstone's offset) is not a multiple of the
592 // record's alignment, it must be packed.
593 if (Members.back().Offset % Alignment)
594 Packed = true;
David Majnemerbb513002014-09-28 06:39:30 +0000595 // If the non-virtual sub-object is not a multiple of the non-virtual
596 // sub-object's alignment, it must be packed. We cannot have a packed
597 // non-virtual sub-object and an unpacked complete object or vise versa.
598 if (NVSize % NVAlignment)
599 Packed = true;
Warren Huntfb00c882014-02-21 23:49:50 +0000600 // Update the alignment of the sentinal.
601 if (!Packed)
602 Members.back().Data = getIntNType(Context.toBits(Alignment));
603}
604
605void CGRecordLowering::insertPadding() {
606 std::vector<std::pair<CharUnits, CharUnits> > Padding;
607 CharUnits Size = CharUnits::Zero();
608 for (std::vector<MemberInfo>::const_iterator Member = Members.begin(),
609 MemberEnd = Members.end();
610 Member != MemberEnd; ++Member) {
611 if (!Member->Data)
612 continue;
613 CharUnits Offset = Member->Offset;
614 assert(Offset >= Size);
615 // Insert padding if we need to.
616 if (Offset != Size.RoundUpToAlignment(Packed ? CharUnits::One() :
617 getAlignment(Member->Data)))
618 Padding.push_back(std::make_pair(Size, Offset - Size));
619 Size = Offset + getSize(Member->Data);
620 }
621 if (Padding.empty())
Anders Carlsson307846f2009-07-23 03:17:50 +0000622 return;
Warren Huntfb00c882014-02-21 23:49:50 +0000623 // Add the padding to the Members list and sort it.
624 for (std::vector<std::pair<CharUnits, CharUnits> >::const_iterator
625 Pad = Padding.begin(), PadEnd = Padding.end();
626 Pad != PadEnd; ++Pad)
627 Members.push_back(StorageInfo(Pad->first, getByteArrayType(Pad->second)));
628 std::stable_sort(Members.begin(), Members.end());
629}
Mike Stump11289f42009-09-09 15:08:12 +0000630
Warren Huntfb00c882014-02-21 23:49:50 +0000631void CGRecordLowering::fillOutputFields() {
632 for (std::vector<MemberInfo>::const_iterator Member = Members.begin(),
633 MemberEnd = Members.end();
634 Member != MemberEnd; ++Member) {
635 if (Member->Data)
636 FieldTypes.push_back(Member->Data);
637 if (Member->Kind == MemberInfo::Field) {
638 if (Member->FD)
Richard Smithcd45dbc2014-04-19 03:48:30 +0000639 Fields[Member->FD->getCanonicalDecl()] = FieldTypes.size() - 1;
Warren Huntfb00c882014-02-21 23:49:50 +0000640 // A field without storage must be a bitfield.
641 if (!Member->Data)
642 setBitFieldInfo(Member->FD, Member->Offset, FieldTypes.back());
643 } else if (Member->Kind == MemberInfo::Base)
644 NonVirtualBases[Member->RD] = FieldTypes.size() - 1;
645 else if (Member->Kind == MemberInfo::VBase)
646 VirtualBases[Member->RD] = FieldTypes.size() - 1;
647 }
Anders Carlsson307846f2009-07-23 03:17:50 +0000648}
649
Daniel Dunbarc7f9bba2010-09-02 23:53:28 +0000650CGBitFieldInfo CGBitFieldInfo::MakeInfo(CodeGenTypes &Types,
Chandler Carruthff0e3a12012-12-06 11:14:44 +0000651 const FieldDecl *FD,
652 uint64_t Offset, uint64_t Size,
653 uint64_t StorageSize,
654 uint64_t StorageAlignment) {
Warren Huntfb00c882014-02-21 23:49:50 +0000655 // This function is vestigial from CGRecordLayoutBuilder days but is still
656 // used in GCObjCRuntime.cpp. That usage has a "fixme" attached to it that
657 // when addressed will allow for the removal of this function.
Chris Lattner2192fe52011-07-18 04:24:23 +0000658 llvm::Type *Ty = Types.ConvertTypeForMem(FD->getType());
John McCall8a3c5552011-02-26 08:41:59 +0000659 CharUnits TypeSizeInBytes =
Micah Villmowdd31ca12012-10-08 16:25:52 +0000660 CharUnits::fromQuantity(Types.getDataLayout().getTypeAllocSize(Ty));
John McCall8a3c5552011-02-26 08:41:59 +0000661 uint64_t TypeSizeInBits = Types.getContext().toBits(TypeSizeInBytes);
Daniel Dunbarf9c24f82010-04-12 21:01:28 +0000662
Douglas Gregor6ab2fa82011-05-20 16:38:50 +0000663 bool IsSigned = FD->getType()->isSignedIntegerOrEnumerationType();
Daniel Dunbarf9c24f82010-04-12 21:01:28 +0000664
Chandler Carruthff0e3a12012-12-06 11:14:44 +0000665 if (Size > TypeSizeInBits) {
Anders Carlssond5f27b02010-04-17 22:54:57 +0000666 // We have a wide bit-field. The extra bits are only used for padding, so
667 // if we have a bitfield of type T, with size N:
668 //
669 // T t : N;
670 //
671 // We can just assume that it's:
672 //
673 // T t : sizeof(T);
674 //
Chandler Carruthff0e3a12012-12-06 11:14:44 +0000675 Size = TypeSizeInBits;
Anders Carlssonbe6f3182010-04-16 16:23:02 +0000676 }
677
Chandler Carruthfd8eca22012-12-09 07:26:04 +0000678 // Reverse the bit offsets for big endian machines. Because we represent
679 // a bitfield as a single large integer load, we can imagine the bits
680 // counting from the most-significant-bit instead of the
681 // least-significant-bit.
682 if (Types.getDataLayout().isBigEndian()) {
683 Offset = StorageSize - (Offset + Size);
684 }
Chris Lattnerfb59c7c2011-02-17 22:09:58 +0000685
Chandler Carruthff0e3a12012-12-06 11:14:44 +0000686 return CGBitFieldInfo(Offset, Size, IsSigned, StorageSize, StorageAlignment);
Daniel Dunbarf9c24f82010-04-12 21:01:28 +0000687}
688
Chris Lattnera5f58b02011-07-09 17:41:47 +0000689CGRecordLayout *CodeGenTypes::ComputeRecordLayout(const RecordDecl *D,
690 llvm::StructType *Ty) {
David Majnemerbb513002014-09-28 06:39:30 +0000691 CGRecordLowering Builder(*this, D, /*Packed=*/false);
Mike Stump11289f42009-09-09 15:08:12 +0000692
David Majnemerbb513002014-09-28 06:39:30 +0000693 Builder.lower(/*NonVirtualBaseType=*/false);
Anders Carlssone1d5ca52009-07-24 15:20:52 +0000694
John McCall0217dfc22011-02-15 06:40:56 +0000695 // If we're in C++, compute the base subobject type.
Craig Topper8a13c412014-05-21 05:09:00 +0000696 llvm::StructType *BaseTy = nullptr;
Warren Huntfb00c882014-02-21 23:49:50 +0000697 if (isa<CXXRecordDecl>(D) && !D->isUnion() && !D->hasAttr<FinalAttr>()) {
698 BaseTy = Ty;
699 if (Builder.Layout.getNonVirtualSize() != Builder.Layout.getSize()) {
David Majnemerbb513002014-09-28 06:39:30 +0000700 CGRecordLowering BaseBuilder(*this, D, /*Packed=*/Builder.Packed);
701 BaseBuilder.lower(/*NonVirtualBaseType=*/true);
Warren Huntfb00c882014-02-21 23:49:50 +0000702 BaseTy = llvm::StructType::create(
703 getLLVMContext(), BaseBuilder.FieldTypes, "", BaseBuilder.Packed);
704 addRecordTypeName(D, BaseTy, ".base");
David Majnemerbb513002014-09-28 06:39:30 +0000705 // BaseTy and Ty must agree on their packedness for getLLVMFieldNo to work
706 // on both of them with the same index.
707 assert(Builder.Packed == BaseBuilder.Packed &&
708 "Non-virtual and complete types must agree on packedness");
Warren Huntfb00c882014-02-21 23:49:50 +0000709 }
Anders Carlssonc1351ca2010-11-09 05:25:47 +0000710 }
711
Reid Klecknerc497f1d2014-02-27 00:03:39 +0000712 // Fill in the struct *after* computing the base type. Filling in the body
713 // signifies that the type is no longer opaque and record layout is complete,
714 // but we may need to recursively layout D while laying D out as a base type.
715 Ty->setBody(Builder.FieldTypes, Builder.Packed);
716
Daniel Dunbar034299e2010-03-31 01:09:11 +0000717 CGRecordLayout *RL =
John McCall0217dfc22011-02-15 06:40:56 +0000718 new CGRecordLayout(Ty, BaseTy, Builder.IsZeroInitializable,
Warren Huntfb00c882014-02-21 23:49:50 +0000719 Builder.IsZeroInitializableAsBase);
Daniel Dunbar034299e2010-03-31 01:09:11 +0000720
John McCall0217dfc22011-02-15 06:40:56 +0000721 RL->NonVirtualBases.swap(Builder.NonVirtualBases);
722 RL->CompleteObjectVirtualBases.swap(Builder.VirtualBases);
Anders Carlsson061ca522010-05-18 05:22:06 +0000723
Anders Carlsson307846f2009-07-23 03:17:50 +0000724 // Add all the field numbers.
John McCall0217dfc22011-02-15 06:40:56 +0000725 RL->FieldInfo.swap(Builder.Fields);
Anders Carlsson307846f2009-07-23 03:17:50 +0000726
727 // Add bitfield info.
John McCall0217dfc22011-02-15 06:40:56 +0000728 RL->BitFields.swap(Builder.BitFields);
Mike Stump11289f42009-09-09 15:08:12 +0000729
Daniel Dunbar2ea51832010-04-19 20:44:47 +0000730 // Dump the layout, if requested.
David Blaikiebbafb8a2012-03-11 07:00:24 +0000731 if (getContext().getLangOpts().DumpRecordLayouts) {
Argyrios Kyrtzidis8ade08e2013-07-12 22:30:03 +0000732 llvm::outs() << "\n*** Dumping IRgen Record Layout\n";
733 llvm::outs() << "Record: ";
734 D->dump(llvm::outs());
735 llvm::outs() << "\nLayout: ";
736 RL->print(llvm::outs());
Daniel Dunbarb935b932010-04-13 20:58:55 +0000737 }
Daniel Dunbarb97bff92010-04-12 18:14:18 +0000738
Daniel Dunbar488f55c2010-04-22 02:35:46 +0000739#ifndef NDEBUG
Daniel Dunbar2ea51832010-04-19 20:44:47 +0000740 // Verify that the computed LLVM struct size matches the AST layout size.
Anders Carlssonc1351ca2010-11-09 05:25:47 +0000741 const ASTRecordLayout &Layout = getContext().getASTRecordLayout(D);
742
Ken Dyckb0fcc592011-02-11 01:54:29 +0000743 uint64_t TypeSizeInBits = getContext().toBits(Layout.getSize());
Micah Villmowdd31ca12012-10-08 16:25:52 +0000744 assert(TypeSizeInBits == getDataLayout().getTypeAllocSizeInBits(Ty) &&
Daniel Dunbar2ea51832010-04-19 20:44:47 +0000745 "Type size mismatch!");
746
Anders Carlssonc1351ca2010-11-09 05:25:47 +0000747 if (BaseTy) {
Ken Dyckbec02852011-02-08 02:02:47 +0000748 CharUnits NonVirtualSize = Layout.getNonVirtualSize();
Ken Dyckbec02852011-02-08 02:02:47 +0000749
750 uint64_t AlignedNonVirtualTypeSizeInBits =
Warren Huntfb00c882014-02-21 23:49:50 +0000751 getContext().toBits(NonVirtualSize);
Anders Carlssonc1351ca2010-11-09 05:25:47 +0000752
753 assert(AlignedNonVirtualTypeSizeInBits ==
Micah Villmowdd31ca12012-10-08 16:25:52 +0000754 getDataLayout().getTypeAllocSizeInBits(BaseTy) &&
Anders Carlssonc1351ca2010-11-09 05:25:47 +0000755 "Type size mismatch!");
756 }
757
Daniel Dunbar2ba67442010-04-21 19:10:49 +0000758 // Verify that the LLVM and AST field offsets agree.
Chris Lattner2192fe52011-07-18 04:24:23 +0000759 llvm::StructType *ST =
Daniel Dunbar2ba67442010-04-21 19:10:49 +0000760 dyn_cast<llvm::StructType>(RL->getLLVMType());
Micah Villmowdd31ca12012-10-08 16:25:52 +0000761 const llvm::StructLayout *SL = getDataLayout().getStructLayout(ST);
Daniel Dunbar2ba67442010-04-21 19:10:49 +0000762
763 const ASTRecordLayout &AST_RL = getContext().getASTRecordLayout(D);
764 RecordDecl::field_iterator it = D->field_begin();
765 for (unsigned i = 0, e = AST_RL.getFieldCount(); i != e; ++i, ++it) {
David Blaikie40ed2972012-06-06 20:45:41 +0000766 const FieldDecl *FD = *it;
Daniel Dunbar488f55c2010-04-22 02:35:46 +0000767
768 // For non-bit-fields, just check that the LLVM struct offset matches the
769 // AST offset.
770 if (!FD->isBitField()) {
Daniel Dunbar2ba67442010-04-21 19:10:49 +0000771 unsigned FieldNo = RL->getLLVMFieldNo(FD);
772 assert(AST_RL.getFieldOffset(i) == SL->getElementOffsetInBits(FieldNo) &&
773 "Invalid field offset!");
Daniel Dunbar488f55c2010-04-22 02:35:46 +0000774 continue;
775 }
Fariborz Jahanianbcb23a12011-04-26 23:52:16 +0000776
Daniel Dunbar488f55c2010-04-22 02:35:46 +0000777 // Ignore unnamed bit-fields.
Eli Friedman2782dac2013-06-26 20:50:34 +0000778 if (!FD->getDeclName())
Daniel Dunbar488f55c2010-04-22 02:35:46 +0000779 continue;
Daniel Dunbar488f55c2010-04-22 02:35:46 +0000780
Chandler Carruthff0e3a12012-12-06 11:14:44 +0000781 // Don't inspect zero-length bitfields.
782 if (FD->getBitWidthValue(getContext()) == 0)
783 continue;
784
Chandler Carruthff0e3a12012-12-06 11:14:44 +0000785 const CGBitFieldInfo &Info = RL->getBitFieldInfo(FD);
Chandler Carruthed72cdc2012-12-09 10:33:27 +0000786 llvm::Type *ElementTy = ST->getTypeAtIndex(RL->getLLVMFieldNo(FD));
787
Chandler Carruthff0e3a12012-12-06 11:14:44 +0000788 // Unions have overlapping elements dictating their layout, but for
789 // non-unions we can verify that this section of the layout is the exact
Chandler Carruthed72cdc2012-12-09 10:33:27 +0000790 // expected size.
Chandler Carruthff0e3a12012-12-06 11:14:44 +0000791 if (D->isUnion()) {
Chandler Carruthed72cdc2012-12-09 10:33:27 +0000792 // For unions we verify that the start is zero and the size
793 // is in-bounds. However, on BE systems, the offset may be non-zero, but
794 // the size + offset should match the storage size in that case as it
795 // "starts" at the back.
796 if (getDataLayout().isBigEndian())
David Greene464d2192013-01-15 23:13:49 +0000797 assert(static_cast<unsigned>(Info.Offset + Info.Size) ==
798 Info.StorageSize &&
Chandler Carruthed72cdc2012-12-09 10:33:27 +0000799 "Big endian union bitfield does not end at the back");
800 else
801 assert(Info.Offset == 0 &&
802 "Little endian union bitfield with a non-zero offset");
Chandler Carruthff0e3a12012-12-06 11:14:44 +0000803 assert(Info.StorageSize <= SL->getSizeInBits() &&
804 "Union not large enough for bitfield storage");
805 } else {
806 assert(Info.StorageSize ==
807 getDataLayout().getTypeAllocSizeInBits(ElementTy) &&
808 "Storage size does not match the element type size");
Daniel Dunbar2ba67442010-04-21 19:10:49 +0000809 }
Chandler Carruthff0e3a12012-12-06 11:14:44 +0000810 assert(Info.Size > 0 && "Empty bitfield!");
Eli Bendersky76bd3d82012-12-18 18:53:14 +0000811 assert(static_cast<unsigned>(Info.Offset) + Info.Size <= Info.StorageSize &&
Chandler Carruthff0e3a12012-12-06 11:14:44 +0000812 "Bitfield outside of its allocated storage");
Daniel Dunbar2ba67442010-04-21 19:10:49 +0000813 }
814#endif
Daniel Dunbar2ea51832010-04-19 20:44:47 +0000815
Daniel Dunbar034299e2010-03-31 01:09:11 +0000816 return RL;
Anders Carlsson307846f2009-07-23 03:17:50 +0000817}
Daniel Dunbarb97bff92010-04-12 18:14:18 +0000818
Chris Lattner0e62c1c2011-07-23 10:55:15 +0000819void CGRecordLayout::print(raw_ostream &OS) const {
Daniel Dunbarb97bff92010-04-12 18:14:18 +0000820 OS << "<CGRecordLayout\n";
John McCall0217dfc22011-02-15 06:40:56 +0000821 OS << " LLVMType:" << *CompleteObjectType << "\n";
822 if (BaseSubobjectType)
823 OS << " NonVirtualBaseLLVMType:" << *BaseSubobjectType << "\n";
John McCall614dbdc2010-08-22 21:01:12 +0000824 OS << " IsZeroInitializable:" << IsZeroInitializable << "\n";
Daniel Dunbarb97bff92010-04-12 18:14:18 +0000825 OS << " BitFields:[\n";
Daniel Dunbarb6f4b052010-04-22 02:35:36 +0000826
827 // Print bit-field infos in declaration order.
828 std::vector<std::pair<unsigned, const CGBitFieldInfo*> > BFIs;
Daniel Dunbarb97bff92010-04-12 18:14:18 +0000829 for (llvm::DenseMap<const FieldDecl*, CGBitFieldInfo>::const_iterator
830 it = BitFields.begin(), ie = BitFields.end();
831 it != ie; ++it) {
Daniel Dunbarb6f4b052010-04-22 02:35:36 +0000832 const RecordDecl *RD = it->first->getParent();
833 unsigned Index = 0;
834 for (RecordDecl::field_iterator
David Blaikie40ed2972012-06-06 20:45:41 +0000835 it2 = RD->field_begin(); *it2 != it->first; ++it2)
Daniel Dunbarb6f4b052010-04-22 02:35:36 +0000836 ++Index;
837 BFIs.push_back(std::make_pair(Index, &it->second));
838 }
839 llvm::array_pod_sort(BFIs.begin(), BFIs.end());
840 for (unsigned i = 0, e = BFIs.size(); i != e; ++i) {
Daniel Dunbarb935b932010-04-13 20:58:55 +0000841 OS.indent(4);
Daniel Dunbarb6f4b052010-04-22 02:35:36 +0000842 BFIs[i].second->print(OS);
Daniel Dunbarb97bff92010-04-12 18:14:18 +0000843 OS << "\n";
844 }
Daniel Dunbarb6f4b052010-04-22 02:35:36 +0000845
Daniel Dunbarb97bff92010-04-12 18:14:18 +0000846 OS << "]>\n";
847}
848
849void CGRecordLayout::dump() const {
850 print(llvm::errs());
851}
852
Chris Lattner0e62c1c2011-07-23 10:55:15 +0000853void CGBitFieldInfo::print(raw_ostream &OS) const {
Chandler Carruthff0e3a12012-12-06 11:14:44 +0000854 OS << "<CGBitFieldInfo"
855 << " Offset:" << Offset
856 << " Size:" << Size
857 << " IsSigned:" << IsSigned
858 << " StorageSize:" << StorageSize
859 << " StorageAlignment:" << StorageAlignment << ">";
Daniel Dunbarb97bff92010-04-12 18:14:18 +0000860}
861
862void CGBitFieldInfo::dump() const {
863 print(llvm::errs());
864}