blob: 32cc9843fb0510af670366f2f8ddf75b95766c85 [file] [log] [blame]
Anders Carlsson35a36eb2010-05-26 05:41:04 +00001//=== RecordLayoutBuilder.cpp - Helper class for building record layouts ---==//
Anders Carlsson79474332009-07-18 20:20:21 +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
Chandler Carruth3a022472012-12-04 09:13:33 +000010#include "clang/AST/RecordLayout.h"
Benjamin Kramer2ef30312012-07-04 18:45:14 +000011#include "clang/AST/ASTContext.h"
Anders Carlsson79474332009-07-18 20:20:21 +000012#include "clang/AST/Attr.h"
Anders Carlsson5adde292010-11-24 22:55:48 +000013#include "clang/AST/CXXInheritance.h"
Anders Carlsson79474332009-07-18 20:20:21 +000014#include "clang/AST/Decl.h"
Anders Carlsson6d9f6f32009-07-19 00:18:47 +000015#include "clang/AST/DeclCXX.h"
Anders Carlsson4f516282009-07-18 20:50:59 +000016#include "clang/AST/DeclObjC.h"
Anders Carlsson79474332009-07-18 20:20:21 +000017#include "clang/AST/Expr.h"
Anders Carlsson79474332009-07-18 20:20:21 +000018#include "clang/Basic/TargetInfo.h"
Argyrios Kyrtzidisca0d0cd2010-09-22 14:32:24 +000019#include "clang/Sema/SemaDiagnostic.h"
Daniel Dunbaraa423af2010-04-08 02:59:49 +000020#include "llvm/ADT/SmallSet.h"
Ted Kremenekf75d0892011-03-19 01:00:36 +000021#include "llvm/Support/CrashRecoveryContext.h"
Chandler Carruth3a022472012-12-04 09:13:33 +000022#include "llvm/Support/Format.h"
23#include "llvm/Support/MathExtras.h"
Anders Carlsson79474332009-07-18 20:20:21 +000024
25using namespace clang;
26
Benjamin Kramerc7656cd2010-05-26 09:58:31 +000027namespace {
Anders Carlssonf58de112010-05-26 15:32:58 +000028
Anders Carlssona7f3cdb2010-05-28 21:24:37 +000029/// BaseSubobjectInfo - Represents a single base subobject in a complete class.
30/// For a class hierarchy like
31///
32/// class A { };
33/// class B : A { };
34/// class C : A, B { };
35///
36/// The BaseSubobjectInfo graph for C will have three BaseSubobjectInfo
37/// instances, one for B and two for A.
38///
39/// If a base is virtual, it will only have one BaseSubobjectInfo allocated.
40struct BaseSubobjectInfo {
41 /// Class - The class for this base info.
Anders Carlsson056818f2010-05-28 21:13:31 +000042 const CXXRecordDecl *Class;
Anders Carlssona7f3cdb2010-05-28 21:24:37 +000043
44 /// IsVirtual - Whether the BaseInfo represents a virtual base or not.
Anders Carlsson056818f2010-05-28 21:13:31 +000045 bool IsVirtual;
46
Anders Carlssona7f3cdb2010-05-28 21:24:37 +000047 /// Bases - Information about the base subobjects.
Chris Lattner0e62c1c2011-07-23 10:55:15 +000048 SmallVector<BaseSubobjectInfo*, 4> Bases;
Anders Carlssona7f3cdb2010-05-28 21:24:37 +000049
Anders Carlssone3c24c72010-05-29 17:35:14 +000050 /// PrimaryVirtualBaseInfo - Holds the base info for the primary virtual base
51 /// of this base info (if one exists).
52 BaseSubobjectInfo *PrimaryVirtualBaseInfo;
Anders Carlssona7f3cdb2010-05-28 21:24:37 +000053
54 // FIXME: Document.
55 const BaseSubobjectInfo *Derived;
Anders Carlsson056818f2010-05-28 21:13:31 +000056};
57
Anders Carlssonf58de112010-05-26 15:32:58 +000058/// EmptySubobjectMap - Keeps track of which empty subobjects exist at different
59/// offsets while laying out a C++ class.
60class EmptySubobjectMap {
Jay Foad39c79802011-01-12 09:06:06 +000061 const ASTContext &Context;
Anders Carlsson233e2722010-10-31 21:54:55 +000062 uint64_t CharWidth;
63
Anders Carlssonf58de112010-05-26 15:32:58 +000064 /// Class - The class whose empty entries we're keeping track of.
65 const CXXRecordDecl *Class;
Daniel Dunbar592a85c2010-05-27 02:25:46 +000066
Anders Carlsson439edd12010-05-27 05:41:06 +000067 /// EmptyClassOffsets - A map from offsets to empty record decls.
Chris Lattner0e62c1c2011-07-23 10:55:15 +000068 typedef SmallVector<const CXXRecordDecl *, 1> ClassVectorTy;
Anders Carlssonf8f756d2010-10-31 21:22:43 +000069 typedef llvm::DenseMap<CharUnits, ClassVectorTy> EmptyClassOffsetsMapTy;
Anders Carlsson439edd12010-05-27 05:41:06 +000070 EmptyClassOffsetsMapTy EmptyClassOffsets;
71
Anders Carlssoncc5de092010-06-08 15:56:03 +000072 /// MaxEmptyClassOffset - The highest offset known to contain an empty
73 /// base subobject.
Anders Carlsson725190f2010-10-31 21:39:24 +000074 CharUnits MaxEmptyClassOffset;
Anders Carlssoncc5de092010-06-08 15:56:03 +000075
Daniel Dunbar592a85c2010-05-27 02:25:46 +000076 /// ComputeEmptySubobjectSizes - Compute the size of the largest base or
Anders Carlssonc5ca1f72010-05-26 15:54:25 +000077 /// member subobject that is empty.
78 void ComputeEmptySubobjectSizes();
Anders Carlsson439edd12010-05-27 05:41:06 +000079
Anders Carlsson725190f2010-10-31 21:39:24 +000080 void AddSubobjectAtOffset(const CXXRecordDecl *RD, CharUnits Offset);
Anders Carlssondb319762010-05-27 18:20:57 +000081
Anders Carlssona7f3cdb2010-05-28 21:24:37 +000082 void UpdateEmptyBaseSubobjects(const BaseSubobjectInfo *Info,
Anders Carlsson28466ab2010-10-31 22:13:23 +000083 CharUnits Offset, bool PlacingEmptyBase);
Anders Carlsson439edd12010-05-27 05:41:06 +000084
Anders Carlssondb319762010-05-27 18:20:57 +000085 void UpdateEmptyFieldSubobjects(const CXXRecordDecl *RD,
86 const CXXRecordDecl *Class,
Anders Carlsson28466ab2010-10-31 22:13:23 +000087 CharUnits Offset);
88 void UpdateEmptyFieldSubobjects(const FieldDecl *FD, CharUnits Offset);
Anders Carlssondb319762010-05-27 18:20:57 +000089
Anders Carlssoncc5de092010-06-08 15:56:03 +000090 /// AnyEmptySubobjectsBeyondOffset - Returns whether there are any empty
91 /// subobjects beyond the given offset.
Anders Carlsson725190f2010-10-31 21:39:24 +000092 bool AnyEmptySubobjectsBeyondOffset(CharUnits Offset) const {
Anders Carlssoncc5de092010-06-08 15:56:03 +000093 return Offset <= MaxEmptyClassOffset;
94 }
95
Anders Carlsson233e2722010-10-31 21:54:55 +000096 CharUnits
97 getFieldOffset(const ASTRecordLayout &Layout, unsigned FieldNo) const {
98 uint64_t FieldOffset = Layout.getFieldOffset(FieldNo);
99 assert(FieldOffset % CharWidth == 0 &&
100 "Field offset not at char boundary!");
101
Ken Dyck7c4026b2011-01-24 01:28:50 +0000102 return Context.toCharUnitsFromBits(FieldOffset);
Anders Carlssonf8f756d2010-10-31 21:22:43 +0000103 }
Anders Carlssonf8f756d2010-10-31 21:22:43 +0000104
Charles Davisc2c576a2010-08-19 00:55:19 +0000105protected:
Anders Carlsson725190f2010-10-31 21:39:24 +0000106 bool CanPlaceSubobjectAtOffset(const CXXRecordDecl *RD,
107 CharUnits Offset) const;
Charles Davisc2c576a2010-08-19 00:55:19 +0000108
109 bool CanPlaceBaseSubobjectAtOffset(const BaseSubobjectInfo *Info,
Anders Carlsson28466ab2010-10-31 22:13:23 +0000110 CharUnits Offset);
Charles Davisc2c576a2010-08-19 00:55:19 +0000111
112 bool CanPlaceFieldSubobjectAtOffset(const CXXRecordDecl *RD,
113 const CXXRecordDecl *Class,
Anders Carlsson28466ab2010-10-31 22:13:23 +0000114 CharUnits Offset) const;
Charles Davisc2c576a2010-08-19 00:55:19 +0000115 bool CanPlaceFieldSubobjectAtOffset(const FieldDecl *FD,
Anders Carlsson233e2722010-10-31 21:54:55 +0000116 CharUnits Offset) const;
Charles Davisc2c576a2010-08-19 00:55:19 +0000117
Anders Carlssonf58de112010-05-26 15:32:58 +0000118public:
Anders Carlssonc5ca1f72010-05-26 15:54:25 +0000119 /// This holds the size of the largest empty subobject (either a base
Daniel Dunbar592a85c2010-05-27 02:25:46 +0000120 /// or a member). Will be zero if the record being built doesn't contain
Anders Carlssonc5ca1f72010-05-26 15:54:25 +0000121 /// any empty classes.
Anders Carlsson28466ab2010-10-31 22:13:23 +0000122 CharUnits SizeOfLargestEmptySubobject;
Daniel Dunbar592a85c2010-05-27 02:25:46 +0000123
Jay Foad39c79802011-01-12 09:06:06 +0000124 EmptySubobjectMap(const ASTContext &Context, const CXXRecordDecl *Class)
Anders Carlsson28466ab2010-10-31 22:13:23 +0000125 : Context(Context), CharWidth(Context.getCharWidth()), Class(Class) {
Anders Carlssonc121b4e2010-05-27 00:07:01 +0000126 ComputeEmptySubobjectSizes();
127 }
128
129 /// CanPlaceBaseAtOffset - Return whether the given base class can be placed
130 /// at the given offset.
Daniel Dunbar592a85c2010-05-27 02:25:46 +0000131 /// Returns false if placing the record will result in two components
Anders Carlssonc121b4e2010-05-27 00:07:01 +0000132 /// (direct or indirect) of the same type having the same offset.
Anders Carlssoncc5de092010-06-08 15:56:03 +0000133 bool CanPlaceBaseAtOffset(const BaseSubobjectInfo *Info,
Anders Carlsson28466ab2010-10-31 22:13:23 +0000134 CharUnits Offset);
Anders Carlssondb319762010-05-27 18:20:57 +0000135
136 /// CanPlaceFieldAtOffset - Return whether a field can be placed at the given
137 /// offset.
Anders Carlsson28466ab2010-10-31 22:13:23 +0000138 bool CanPlaceFieldAtOffset(const FieldDecl *FD, CharUnits Offset);
Anders Carlssonf58de112010-05-26 15:32:58 +0000139};
Anders Carlssonc5ca1f72010-05-26 15:54:25 +0000140
141void EmptySubobjectMap::ComputeEmptySubobjectSizes() {
142 // Check the bases.
143 for (CXXRecordDecl::base_class_const_iterator I = Class->bases_begin(),
144 E = Class->bases_end(); I != E; ++I) {
145 const CXXRecordDecl *BaseDecl =
146 cast<CXXRecordDecl>(I->getType()->getAs<RecordType>()->getDecl());
147
Anders Carlsson28466ab2010-10-31 22:13:23 +0000148 CharUnits EmptySize;
Anders Carlssonc5ca1f72010-05-26 15:54:25 +0000149 const ASTRecordLayout &Layout = Context.getASTRecordLayout(BaseDecl);
150 if (BaseDecl->isEmpty()) {
151 // If the class decl is empty, get its size.
Ken Dyckc8ae5502011-02-09 01:59:34 +0000152 EmptySize = Layout.getSize();
Anders Carlssonc5ca1f72010-05-26 15:54:25 +0000153 } else {
154 // Otherwise, we get the largest empty subobject for the decl.
155 EmptySize = Layout.getSizeOfLargestEmptySubobject();
156 }
Daniel Dunbar592a85c2010-05-27 02:25:46 +0000157
Anders Carlsson28466ab2010-10-31 22:13:23 +0000158 if (EmptySize > SizeOfLargestEmptySubobject)
159 SizeOfLargestEmptySubobject = EmptySize;
Anders Carlssonc5ca1f72010-05-26 15:54:25 +0000160 }
Daniel Dunbar592a85c2010-05-27 02:25:46 +0000161
Anders Carlssonc5ca1f72010-05-26 15:54:25 +0000162 // Check the fields.
163 for (CXXRecordDecl::field_iterator I = Class->field_begin(),
164 E = Class->field_end(); I != E; ++I) {
Daniel Dunbar592a85c2010-05-27 02:25:46 +0000165
166 const RecordType *RT =
David Blaikie40ed2972012-06-06 20:45:41 +0000167 Context.getBaseElementType(I->getType())->getAs<RecordType>();
Daniel Dunbar592a85c2010-05-27 02:25:46 +0000168
Anders Carlssonc5ca1f72010-05-26 15:54:25 +0000169 // We only care about record types.
170 if (!RT)
171 continue;
172
Anders Carlsson28466ab2010-10-31 22:13:23 +0000173 CharUnits EmptySize;
Anders Carlssonc5ca1f72010-05-26 15:54:25 +0000174 const CXXRecordDecl *MemberDecl = cast<CXXRecordDecl>(RT->getDecl());
175 const ASTRecordLayout &Layout = Context.getASTRecordLayout(MemberDecl);
176 if (MemberDecl->isEmpty()) {
177 // If the class decl is empty, get its size.
Ken Dyckc8ae5502011-02-09 01:59:34 +0000178 EmptySize = Layout.getSize();
Anders Carlssonc5ca1f72010-05-26 15:54:25 +0000179 } else {
180 // Otherwise, we get the largest empty subobject for the decl.
181 EmptySize = Layout.getSizeOfLargestEmptySubobject();
182 }
Daniel Dunbar592a85c2010-05-27 02:25:46 +0000183
Anders Carlsson28466ab2010-10-31 22:13:23 +0000184 if (EmptySize > SizeOfLargestEmptySubobject)
185 SizeOfLargestEmptySubobject = EmptySize;
Anders Carlssonc5ca1f72010-05-26 15:54:25 +0000186 }
187}
188
Daniel Dunbar592a85c2010-05-27 02:25:46 +0000189bool
Anders Carlssondb319762010-05-27 18:20:57 +0000190EmptySubobjectMap::CanPlaceSubobjectAtOffset(const CXXRecordDecl *RD,
Anders Carlsson725190f2010-10-31 21:39:24 +0000191 CharUnits Offset) const {
Anders Carlssondb319762010-05-27 18:20:57 +0000192 // We only need to check empty bases.
193 if (!RD->isEmpty())
194 return true;
195
Anders Carlsson725190f2010-10-31 21:39:24 +0000196 EmptyClassOffsetsMapTy::const_iterator I = EmptyClassOffsets.find(Offset);
Anders Carlssondb319762010-05-27 18:20:57 +0000197 if (I == EmptyClassOffsets.end())
198 return true;
199
200 const ClassVectorTy& Classes = I->second;
201 if (std::find(Classes.begin(), Classes.end(), RD) == Classes.end())
202 return true;
203
204 // There is already an empty class of the same type at this offset.
205 return false;
206}
207
208void EmptySubobjectMap::AddSubobjectAtOffset(const CXXRecordDecl *RD,
Anders Carlsson725190f2010-10-31 21:39:24 +0000209 CharUnits Offset) {
Anders Carlssondb319762010-05-27 18:20:57 +0000210 // We only care about empty bases.
211 if (!RD->isEmpty())
212 return;
213
Reid Kleckner369f3162013-05-14 20:30:42 +0000214 // If we have empty structures inside a union, we can assign both
Rafael Espindola7bcde192010-12-29 23:02:58 +0000215 // the same offset. Just avoid pushing them twice in the list.
Anders Carlsson725190f2010-10-31 21:39:24 +0000216 ClassVectorTy& Classes = EmptyClassOffsets[Offset];
Rafael Espindola7bcde192010-12-29 23:02:58 +0000217 if (std::find(Classes.begin(), Classes.end(), RD) != Classes.end())
218 return;
219
Anders Carlssondb319762010-05-27 18:20:57 +0000220 Classes.push_back(RD);
Anders Carlssoncc5de092010-06-08 15:56:03 +0000221
222 // Update the empty class offset.
Anders Carlsson725190f2010-10-31 21:39:24 +0000223 if (Offset > MaxEmptyClassOffset)
224 MaxEmptyClassOffset = Offset;
Anders Carlssondb319762010-05-27 18:20:57 +0000225}
226
227bool
Anders Carlsson28466ab2010-10-31 22:13:23 +0000228EmptySubobjectMap::CanPlaceBaseSubobjectAtOffset(const BaseSubobjectInfo *Info,
229 CharUnits Offset) {
Anders Carlsson45c1d282010-06-08 16:20:35 +0000230 // We don't have to keep looking past the maximum offset that's known to
231 // contain an empty class.
Anders Carlsson28466ab2010-10-31 22:13:23 +0000232 if (!AnyEmptySubobjectsBeyondOffset(Offset))
Anders Carlsson45c1d282010-06-08 16:20:35 +0000233 return true;
234
Anders Carlsson28466ab2010-10-31 22:13:23 +0000235 if (!CanPlaceSubobjectAtOffset(Info->Class, Offset))
Anders Carlssondb319762010-05-27 18:20:57 +0000236 return false;
237
Anders Carlsson439edd12010-05-27 05:41:06 +0000238 // Traverse all non-virtual bases.
Anders Carlssona7774a62010-05-29 21:10:24 +0000239 const ASTRecordLayout &Layout = Context.getASTRecordLayout(Info->Class);
Anders Carlsson439edd12010-05-27 05:41:06 +0000240 for (unsigned I = 0, E = Info->Bases.size(); I != E; ++I) {
Anders Carlssona7f3cdb2010-05-28 21:24:37 +0000241 BaseSubobjectInfo* Base = Info->Bases[I];
Anders Carlsson439edd12010-05-27 05:41:06 +0000242 if (Base->IsVirtual)
243 continue;
244
Anders Carlsson0a14ee92010-11-01 00:21:58 +0000245 CharUnits BaseOffset = Offset + Layout.getBaseClassOffset(Base->Class);
Anders Carlsson439edd12010-05-27 05:41:06 +0000246
247 if (!CanPlaceBaseSubobjectAtOffset(Base, BaseOffset))
248 return false;
249 }
250
Anders Carlssone3c24c72010-05-29 17:35:14 +0000251 if (Info->PrimaryVirtualBaseInfo) {
252 BaseSubobjectInfo *PrimaryVirtualBaseInfo = Info->PrimaryVirtualBaseInfo;
Anders Carlsson439edd12010-05-27 05:41:06 +0000253
254 if (Info == PrimaryVirtualBaseInfo->Derived) {
255 if (!CanPlaceBaseSubobjectAtOffset(PrimaryVirtualBaseInfo, Offset))
256 return false;
257 }
258 }
259
Anders Carlssondb319762010-05-27 18:20:57 +0000260 // Traverse all member variables.
261 unsigned FieldNo = 0;
262 for (CXXRecordDecl::field_iterator I = Info->Class->field_begin(),
263 E = Info->Class->field_end(); I != E; ++I, ++FieldNo) {
David Blaikie40ed2972012-06-06 20:45:41 +0000264 if (I->isBitField())
Anders Carlsson233e2722010-10-31 21:54:55 +0000265 continue;
266
Anders Carlsson28466ab2010-10-31 22:13:23 +0000267 CharUnits FieldOffset = Offset + getFieldOffset(Layout, FieldNo);
David Blaikie40ed2972012-06-06 20:45:41 +0000268 if (!CanPlaceFieldSubobjectAtOffset(*I, FieldOffset))
Anders Carlssondb319762010-05-27 18:20:57 +0000269 return false;
270 }
271
Anders Carlsson439edd12010-05-27 05:41:06 +0000272 return true;
273}
274
Anders Carlssona7f3cdb2010-05-28 21:24:37 +0000275void EmptySubobjectMap::UpdateEmptyBaseSubobjects(const BaseSubobjectInfo *Info,
Anders Carlsson28466ab2010-10-31 22:13:23 +0000276 CharUnits Offset,
Anders Carlssoncc59cc52010-06-13 18:00:18 +0000277 bool PlacingEmptyBase) {
278 if (!PlacingEmptyBase && Offset >= SizeOfLargestEmptySubobject) {
279 // We know that the only empty subobjects that can conflict with empty
280 // subobject of non-empty bases, are empty bases that can be placed at
281 // offset zero. Because of this, we only need to keep track of empty base
282 // subobjects with offsets less than the size of the largest empty
283 // subobject for our class.
284 return;
285 }
286
Anders Carlsson28466ab2010-10-31 22:13:23 +0000287 AddSubobjectAtOffset(Info->Class, Offset);
Anders Carlssona7774a62010-05-29 21:10:24 +0000288
Anders Carlsson439edd12010-05-27 05:41:06 +0000289 // Traverse all non-virtual bases.
Anders Carlssona7774a62010-05-29 21:10:24 +0000290 const ASTRecordLayout &Layout = Context.getASTRecordLayout(Info->Class);
Anders Carlsson439edd12010-05-27 05:41:06 +0000291 for (unsigned I = 0, E = Info->Bases.size(); I != E; ++I) {
Anders Carlssona7f3cdb2010-05-28 21:24:37 +0000292 BaseSubobjectInfo* Base = Info->Bases[I];
Anders Carlsson439edd12010-05-27 05:41:06 +0000293 if (Base->IsVirtual)
294 continue;
Anders Carlssona7774a62010-05-29 21:10:24 +0000295
Anders Carlsson0a14ee92010-11-01 00:21:58 +0000296 CharUnits BaseOffset = Offset + Layout.getBaseClassOffset(Base->Class);
Anders Carlssoncc59cc52010-06-13 18:00:18 +0000297 UpdateEmptyBaseSubobjects(Base, BaseOffset, PlacingEmptyBase);
Anders Carlsson439edd12010-05-27 05:41:06 +0000298 }
299
Anders Carlssone3c24c72010-05-29 17:35:14 +0000300 if (Info->PrimaryVirtualBaseInfo) {
301 BaseSubobjectInfo *PrimaryVirtualBaseInfo = Info->PrimaryVirtualBaseInfo;
Anders Carlsson439edd12010-05-27 05:41:06 +0000302
303 if (Info == PrimaryVirtualBaseInfo->Derived)
Anders Carlssoncc59cc52010-06-13 18:00:18 +0000304 UpdateEmptyBaseSubobjects(PrimaryVirtualBaseInfo, Offset,
305 PlacingEmptyBase);
Anders Carlsson439edd12010-05-27 05:41:06 +0000306 }
Anders Carlssondb319762010-05-27 18:20:57 +0000307
Anders Carlssondb319762010-05-27 18:20:57 +0000308 // Traverse all member variables.
309 unsigned FieldNo = 0;
310 for (CXXRecordDecl::field_iterator I = Info->Class->field_begin(),
311 E = Info->Class->field_end(); I != E; ++I, ++FieldNo) {
David Blaikie40ed2972012-06-06 20:45:41 +0000312 if (I->isBitField())
Anders Carlsson233e2722010-10-31 21:54:55 +0000313 continue;
Anders Carlssona7774a62010-05-29 21:10:24 +0000314
Anders Carlsson28466ab2010-10-31 22:13:23 +0000315 CharUnits FieldOffset = Offset + getFieldOffset(Layout, FieldNo);
David Blaikie40ed2972012-06-06 20:45:41 +0000316 UpdateEmptyFieldSubobjects(*I, FieldOffset);
Anders Carlssondb319762010-05-27 18:20:57 +0000317 }
Anders Carlsson439edd12010-05-27 05:41:06 +0000318}
319
Anders Carlssona60b86a2010-05-29 20:49:49 +0000320bool EmptySubobjectMap::CanPlaceBaseAtOffset(const BaseSubobjectInfo *Info,
Anders Carlsson28466ab2010-10-31 22:13:23 +0000321 CharUnits Offset) {
Anders Carlssonc121b4e2010-05-27 00:07:01 +0000322 // If we know this class doesn't have any empty subobjects we don't need to
323 // bother checking.
Anders Carlsson28466ab2010-10-31 22:13:23 +0000324 if (SizeOfLargestEmptySubobject.isZero())
Anders Carlssonc121b4e2010-05-27 00:07:01 +0000325 return true;
326
Anders Carlsson439edd12010-05-27 05:41:06 +0000327 if (!CanPlaceBaseSubobjectAtOffset(Info, Offset))
328 return false;
Anders Carlssondb319762010-05-27 18:20:57 +0000329
330 // We are able to place the base at this offset. Make sure to update the
331 // empty base subobject map.
Anders Carlssoncc59cc52010-06-13 18:00:18 +0000332 UpdateEmptyBaseSubobjects(Info, Offset, Info->Class->isEmpty());
Anders Carlssonc121b4e2010-05-27 00:07:01 +0000333 return true;
334}
335
Anders Carlssondb319762010-05-27 18:20:57 +0000336bool
337EmptySubobjectMap::CanPlaceFieldSubobjectAtOffset(const CXXRecordDecl *RD,
338 const CXXRecordDecl *Class,
Anders Carlsson28466ab2010-10-31 22:13:23 +0000339 CharUnits Offset) const {
Anders Carlsson45c1d282010-06-08 16:20:35 +0000340 // We don't have to keep looking past the maximum offset that's known to
341 // contain an empty class.
Anders Carlsson28466ab2010-10-31 22:13:23 +0000342 if (!AnyEmptySubobjectsBeyondOffset(Offset))
Anders Carlsson45c1d282010-06-08 16:20:35 +0000343 return true;
344
Anders Carlsson28466ab2010-10-31 22:13:23 +0000345 if (!CanPlaceSubobjectAtOffset(RD, Offset))
Anders Carlssondb319762010-05-27 18:20:57 +0000346 return false;
347
348 const ASTRecordLayout &Layout = Context.getASTRecordLayout(RD);
349
350 // Traverse all non-virtual bases.
351 for (CXXRecordDecl::base_class_const_iterator I = RD->bases_begin(),
352 E = RD->bases_end(); I != E; ++I) {
353 if (I->isVirtual())
354 continue;
355
356 const CXXRecordDecl *BaseDecl =
357 cast<CXXRecordDecl>(I->getType()->getAs<RecordType>()->getDecl());
358
Anders Carlsson0a14ee92010-11-01 00:21:58 +0000359 CharUnits BaseOffset = Offset + Layout.getBaseClassOffset(BaseDecl);
Anders Carlssondb319762010-05-27 18:20:57 +0000360 if (!CanPlaceFieldSubobjectAtOffset(BaseDecl, Class, BaseOffset))
361 return false;
362 }
363
Anders Carlsson44687202010-06-08 19:09:24 +0000364 if (RD == Class) {
365 // This is the most derived class, traverse virtual bases as well.
366 for (CXXRecordDecl::base_class_const_iterator I = RD->vbases_begin(),
367 E = RD->vbases_end(); I != E; ++I) {
368 const CXXRecordDecl *VBaseDecl =
369 cast<CXXRecordDecl>(I->getType()->getAs<RecordType>()->getDecl());
370
Anders Carlsson3f018712010-10-31 23:45:59 +0000371 CharUnits VBaseOffset = Offset + Layout.getVBaseClassOffset(VBaseDecl);
Anders Carlsson44687202010-06-08 19:09:24 +0000372 if (!CanPlaceFieldSubobjectAtOffset(VBaseDecl, Class, VBaseOffset))
373 return false;
374 }
375 }
376
Anders Carlssondb319762010-05-27 18:20:57 +0000377 // Traverse all member variables.
378 unsigned FieldNo = 0;
379 for (CXXRecordDecl::field_iterator I = RD->field_begin(), E = RD->field_end();
380 I != E; ++I, ++FieldNo) {
David Blaikie40ed2972012-06-06 20:45:41 +0000381 if (I->isBitField())
Anders Carlsson233e2722010-10-31 21:54:55 +0000382 continue;
383
Anders Carlsson28466ab2010-10-31 22:13:23 +0000384 CharUnits FieldOffset = Offset + getFieldOffset(Layout, FieldNo);
Anders Carlssondb319762010-05-27 18:20:57 +0000385
David Blaikie40ed2972012-06-06 20:45:41 +0000386 if (!CanPlaceFieldSubobjectAtOffset(*I, FieldOffset))
Anders Carlssondb319762010-05-27 18:20:57 +0000387 return false;
388 }
389
390 return true;
391}
392
Anders Carlsson233e2722010-10-31 21:54:55 +0000393bool
394EmptySubobjectMap::CanPlaceFieldSubobjectAtOffset(const FieldDecl *FD,
395 CharUnits Offset) const {
Anders Carlsson45c1d282010-06-08 16:20:35 +0000396 // We don't have to keep looking past the maximum offset that's known to
397 // contain an empty class.
Anders Carlsson233e2722010-10-31 21:54:55 +0000398 if (!AnyEmptySubobjectsBeyondOffset(Offset))
Anders Carlsson45c1d282010-06-08 16:20:35 +0000399 return true;
400
Anders Carlssondb319762010-05-27 18:20:57 +0000401 QualType T = FD->getType();
402 if (const RecordType *RT = T->getAs<RecordType>()) {
403 const CXXRecordDecl *RD = cast<CXXRecordDecl>(RT->getDecl());
Anders Carlsson28466ab2010-10-31 22:13:23 +0000404 return CanPlaceFieldSubobjectAtOffset(RD, RD, Offset);
Anders Carlssondb319762010-05-27 18:20:57 +0000405 }
406
407 // If we have an array type we need to look at every element.
408 if (const ConstantArrayType *AT = Context.getAsConstantArrayType(T)) {
409 QualType ElemTy = Context.getBaseElementType(AT);
410 const RecordType *RT = ElemTy->getAs<RecordType>();
411 if (!RT)
412 return true;
413
414 const CXXRecordDecl *RD = cast<CXXRecordDecl>(RT->getDecl());
415 const ASTRecordLayout &Layout = Context.getASTRecordLayout(RD);
416
417 uint64_t NumElements = Context.getConstantArrayElementCount(AT);
Anders Carlsson233e2722010-10-31 21:54:55 +0000418 CharUnits ElementOffset = Offset;
Anders Carlssondb319762010-05-27 18:20:57 +0000419 for (uint64_t I = 0; I != NumElements; ++I) {
Anders Carlsson45c1d282010-06-08 16:20:35 +0000420 // We don't have to keep looking past the maximum offset that's known to
421 // contain an empty class.
Anders Carlsson233e2722010-10-31 21:54:55 +0000422 if (!AnyEmptySubobjectsBeyondOffset(ElementOffset))
Anders Carlsson45c1d282010-06-08 16:20:35 +0000423 return true;
424
Anders Carlsson28466ab2010-10-31 22:13:23 +0000425 if (!CanPlaceFieldSubobjectAtOffset(RD, RD, ElementOffset))
Anders Carlssondb319762010-05-27 18:20:57 +0000426 return false;
427
Ken Dyckc8ae5502011-02-09 01:59:34 +0000428 ElementOffset += Layout.getSize();
Anders Carlssondb319762010-05-27 18:20:57 +0000429 }
430 }
431
432 return true;
433}
434
435bool
Anders Carlsson28466ab2010-10-31 22:13:23 +0000436EmptySubobjectMap::CanPlaceFieldAtOffset(const FieldDecl *FD,
437 CharUnits Offset) {
438 if (!CanPlaceFieldSubobjectAtOffset(FD, Offset))
Anders Carlssondb319762010-05-27 18:20:57 +0000439 return false;
440
441 // We are able to place the member variable at this offset.
442 // Make sure to update the empty base subobject map.
443 UpdateEmptyFieldSubobjects(FD, Offset);
444 return true;
445}
446
447void EmptySubobjectMap::UpdateEmptyFieldSubobjects(const CXXRecordDecl *RD,
448 const CXXRecordDecl *Class,
Anders Carlsson28466ab2010-10-31 22:13:23 +0000449 CharUnits Offset) {
Anders Carlssonae111dc2010-06-13 17:49:16 +0000450 // We know that the only empty subobjects that can conflict with empty
Anders Carlssoncc59cc52010-06-13 18:00:18 +0000451 // field subobjects are subobjects of empty bases that can be placed at offset
Anders Carlssonae111dc2010-06-13 17:49:16 +0000452 // zero. Because of this, we only need to keep track of empty field
453 // subobjects with offsets less than the size of the largest empty
454 // subobject for our class.
455 if (Offset >= SizeOfLargestEmptySubobject)
456 return;
457
Anders Carlsson28466ab2010-10-31 22:13:23 +0000458 AddSubobjectAtOffset(RD, Offset);
Anders Carlssondb319762010-05-27 18:20:57 +0000459
460 const ASTRecordLayout &Layout = Context.getASTRecordLayout(RD);
461
462 // Traverse all non-virtual bases.
463 for (CXXRecordDecl::base_class_const_iterator I = RD->bases_begin(),
464 E = RD->bases_end(); I != E; ++I) {
465 if (I->isVirtual())
466 continue;
467
468 const CXXRecordDecl *BaseDecl =
469 cast<CXXRecordDecl>(I->getType()->getAs<RecordType>()->getDecl());
470
Anders Carlsson0a14ee92010-11-01 00:21:58 +0000471 CharUnits BaseOffset = Offset + Layout.getBaseClassOffset(BaseDecl);
Anders Carlssondb319762010-05-27 18:20:57 +0000472 UpdateEmptyFieldSubobjects(BaseDecl, Class, BaseOffset);
473 }
474
Anders Carlsson44687202010-06-08 19:09:24 +0000475 if (RD == Class) {
476 // This is the most derived class, traverse virtual bases as well.
477 for (CXXRecordDecl::base_class_const_iterator I = RD->vbases_begin(),
478 E = RD->vbases_end(); I != E; ++I) {
479 const CXXRecordDecl *VBaseDecl =
480 cast<CXXRecordDecl>(I->getType()->getAs<RecordType>()->getDecl());
481
Anders Carlsson3f018712010-10-31 23:45:59 +0000482 CharUnits VBaseOffset = Offset + Layout.getVBaseClassOffset(VBaseDecl);
Anders Carlsson44687202010-06-08 19:09:24 +0000483 UpdateEmptyFieldSubobjects(VBaseDecl, Class, VBaseOffset);
484 }
485 }
486
Anders Carlssondb319762010-05-27 18:20:57 +0000487 // Traverse all member variables.
488 unsigned FieldNo = 0;
489 for (CXXRecordDecl::field_iterator I = RD->field_begin(), E = RD->field_end();
490 I != E; ++I, ++FieldNo) {
David Blaikie40ed2972012-06-06 20:45:41 +0000491 if (I->isBitField())
Anders Carlsson09814d32010-11-01 15:14:51 +0000492 continue;
493
Anders Carlsson28466ab2010-10-31 22:13:23 +0000494 CharUnits FieldOffset = Offset + getFieldOffset(Layout, FieldNo);
Anders Carlssondb319762010-05-27 18:20:57 +0000495
David Blaikie40ed2972012-06-06 20:45:41 +0000496 UpdateEmptyFieldSubobjects(*I, FieldOffset);
Anders Carlssondb319762010-05-27 18:20:57 +0000497 }
498}
499
500void EmptySubobjectMap::UpdateEmptyFieldSubobjects(const FieldDecl *FD,
Anders Carlsson28466ab2010-10-31 22:13:23 +0000501 CharUnits Offset) {
Anders Carlssondb319762010-05-27 18:20:57 +0000502 QualType T = FD->getType();
503 if (const RecordType *RT = T->getAs<RecordType>()) {
504 const CXXRecordDecl *RD = cast<CXXRecordDecl>(RT->getDecl());
505 UpdateEmptyFieldSubobjects(RD, RD, Offset);
506 return;
507 }
508
509 // If we have an array type we need to update every element.
510 if (const ConstantArrayType *AT = Context.getAsConstantArrayType(T)) {
511 QualType ElemTy = Context.getBaseElementType(AT);
512 const RecordType *RT = ElemTy->getAs<RecordType>();
513 if (!RT)
514 return;
515
516 const CXXRecordDecl *RD = cast<CXXRecordDecl>(RT->getDecl());
517 const ASTRecordLayout &Layout = Context.getASTRecordLayout(RD);
518
519 uint64_t NumElements = Context.getConstantArrayElementCount(AT);
Anders Carlsson28466ab2010-10-31 22:13:23 +0000520 CharUnits ElementOffset = Offset;
Anders Carlssondb319762010-05-27 18:20:57 +0000521
522 for (uint64_t I = 0; I != NumElements; ++I) {
Anders Carlssonae111dc2010-06-13 17:49:16 +0000523 // We know that the only empty subobjects that can conflict with empty
Anders Carlssoncc59cc52010-06-13 18:00:18 +0000524 // field subobjects are subobjects of empty bases that can be placed at
Anders Carlssonae111dc2010-06-13 17:49:16 +0000525 // offset zero. Because of this, we only need to keep track of empty field
526 // subobjects with offsets less than the size of the largest empty
527 // subobject for our class.
528 if (ElementOffset >= SizeOfLargestEmptySubobject)
529 return;
530
Anders Carlssondb319762010-05-27 18:20:57 +0000531 UpdateEmptyFieldSubobjects(RD, RD, ElementOffset);
Ken Dyckc8ae5502011-02-09 01:59:34 +0000532 ElementOffset += Layout.getSize();
Anders Carlssondb319762010-05-27 18:20:57 +0000533 }
534 }
535}
536
John McCalle42a3362012-05-01 08:55:32 +0000537typedef llvm::SmallPtrSet<const CXXRecordDecl*, 4> ClassSetTy;
538
Anders Carlssonc2226202010-05-26 05:58:59 +0000539class RecordLayoutBuilder {
Charles Davisc2c576a2010-08-19 00:55:19 +0000540protected:
Anders Carlsson35a36eb2010-05-26 05:41:04 +0000541 // FIXME: Remove this and make the appropriate fields public.
542 friend class clang::ASTContext;
Daniel Dunbar592a85c2010-05-27 02:25:46 +0000543
Jay Foad39c79802011-01-12 09:06:06 +0000544 const ASTContext &Context;
Anders Carlsson35a36eb2010-05-26 05:41:04 +0000545
Anders Carlssonf58de112010-05-26 15:32:58 +0000546 EmptySubobjectMap *EmptySubobjects;
Daniel Dunbar592a85c2010-05-27 02:25:46 +0000547
Anders Carlsson35a36eb2010-05-26 05:41:04 +0000548 /// Size - The current size of the record layout.
549 uint64_t Size;
Daniel Dunbar592a85c2010-05-27 02:25:46 +0000550
Anders Carlsson35a36eb2010-05-26 05:41:04 +0000551 /// Alignment - The current alignment of the record layout.
Ken Dyck4731d5b2011-02-16 02:05:21 +0000552 CharUnits Alignment;
Daniel Dunbar592a85c2010-05-27 02:25:46 +0000553
Argyrios Kyrtzidisca0d0cd2010-09-22 14:32:24 +0000554 /// \brief The alignment if attribute packed is not used.
Ken Dyck1300b3b2011-02-16 02:11:31 +0000555 CharUnits UnpackedAlignment;
Argyrios Kyrtzidisca0d0cd2010-09-22 14:32:24 +0000556
Chris Lattner0e62c1c2011-07-23 10:55:15 +0000557 SmallVector<uint64_t, 16> FieldOffsets;
Anders Carlsson35a36eb2010-05-26 05:41:04 +0000558
Douglas Gregore9fc3772012-01-26 07:55:45 +0000559 /// \brief Whether the external AST source has provided a layout for this
560 /// record.
561 unsigned ExternalLayout : 1;
Douglas Gregor44ba7892012-01-28 00:53:29 +0000562
563 /// \brief Whether we need to infer alignment, even when we have an
564 /// externally-provided layout.
565 unsigned InferAlignment : 1;
Douglas Gregore9fc3772012-01-26 07:55:45 +0000566
Anders Carlsson35a36eb2010-05-26 05:41:04 +0000567 /// Packed - Whether the record is packed or not.
Daniel Dunbar6da10982010-05-27 05:45:51 +0000568 unsigned Packed : 1;
569
570 unsigned IsUnion : 1;
571
572 unsigned IsMac68kAlign : 1;
Fariborz Jahanianbcb23a12011-04-26 23:52:16 +0000573
574 unsigned IsMsStruct : 1;
Anders Carlsson35a36eb2010-05-26 05:41:04 +0000575
Eli Friedman2782dac2013-06-26 20:50:34 +0000576 /// UnfilledBitsInLastUnit - If the last field laid out was a bitfield,
577 /// this contains the number of bits in the last unit that can be used for
578 /// an adjacent bitfield if necessary. The unit in question is usually
579 /// a byte, but larger units are used if IsMsStruct.
580 unsigned char UnfilledBitsInLastUnit;
581 /// LastBitfieldTypeSize - If IsMsStruct, represents the size of the type
582 /// of the previous field if it was a bitfield.
583 unsigned char LastBitfieldTypeSize;
Daniel Dunbar592a85c2010-05-27 02:25:46 +0000584
Anders Carlsson35a36eb2010-05-26 05:41:04 +0000585 /// MaxFieldAlignment - The maximum allowed field alignment. This is set by
Daniel Dunbar592a85c2010-05-27 02:25:46 +0000586 /// #pragma pack.
Ken Dyck02ced6f2011-02-17 01:49:42 +0000587 CharUnits MaxFieldAlignment;
Daniel Dunbar592a85c2010-05-27 02:25:46 +0000588
Anders Carlsson35a36eb2010-05-26 05:41:04 +0000589 /// DataSize - The data size of the record being laid out.
590 uint64_t DataSize;
Daniel Dunbar592a85c2010-05-27 02:25:46 +0000591
Ken Dyckaf1c83f2011-02-16 01:52:01 +0000592 CharUnits NonVirtualSize;
Ken Dycka2d3dda2011-02-16 01:43:15 +0000593 CharUnits NonVirtualAlignment;
Daniel Dunbar592a85c2010-05-27 02:25:46 +0000594
Anders Carlsson35a36eb2010-05-26 05:41:04 +0000595 /// PrimaryBase - the primary base class (if one exists) of the class
596 /// we're laying out.
597 const CXXRecordDecl *PrimaryBase;
Daniel Dunbar592a85c2010-05-27 02:25:46 +0000598
Anders Carlsson35a36eb2010-05-26 05:41:04 +0000599 /// PrimaryBaseIsVirtual - Whether the primary base of the class we're laying
600 /// out is virtual.
601 bool PrimaryBaseIsVirtual;
602
John McCalle42a3362012-05-01 08:55:32 +0000603 /// HasOwnVFPtr - Whether the class provides its own vtable/vftbl
604 /// pointer, as opposed to inheriting one from a primary base class.
605 bool HasOwnVFPtr;
Eli Friedman43114f92011-10-21 22:49:56 +0000606
Anders Carlsson22f57202010-10-31 21:01:46 +0000607 typedef llvm::DenseMap<const CXXRecordDecl *, CharUnits> BaseOffsetsMapTy;
Daniel Dunbar592a85c2010-05-27 02:25:46 +0000608
Anders Carlsson35a36eb2010-05-26 05:41:04 +0000609 /// Bases - base classes and their offsets in the record.
610 BaseOffsetsMapTy Bases;
Daniel Dunbar592a85c2010-05-27 02:25:46 +0000611
Anders Carlsson35a36eb2010-05-26 05:41:04 +0000612 // VBases - virtual base classes and their offsets in the record.
John McCalle42a3362012-05-01 08:55:32 +0000613 ASTRecordLayout::VBaseOffsetsMapTy VBases;
Anders Carlsson35a36eb2010-05-26 05:41:04 +0000614
615 /// IndirectPrimaryBases - Virtual base classes, direct or indirect, that are
616 /// primary base classes for some other direct or indirect base class.
Anders Carlsson5adde292010-11-24 22:55:48 +0000617 CXXIndirectPrimaryBaseSet IndirectPrimaryBases;
Daniel Dunbar592a85c2010-05-27 02:25:46 +0000618
Anders Carlsson35a36eb2010-05-26 05:41:04 +0000619 /// FirstNearlyEmptyVBase - The first nearly empty virtual base class in
620 /// inheritance graph order. Used for determining the primary base class.
621 const CXXRecordDecl *FirstNearlyEmptyVBase;
622
623 /// VisitedVirtualBases - A set of all the visited virtual bases, used to
624 /// avoid visiting virtual bases more than once.
625 llvm::SmallPtrSet<const CXXRecordDecl *, 4> VisitedVirtualBases;
Daniel Dunbar592a85c2010-05-27 02:25:46 +0000626
Douglas Gregore9fc3772012-01-26 07:55:45 +0000627 /// \brief Externally-provided size.
628 uint64_t ExternalSize;
629
630 /// \brief Externally-provided alignment.
631 uint64_t ExternalAlign;
632
633 /// \brief Externally-provided field offsets.
634 llvm::DenseMap<const FieldDecl *, uint64_t> ExternalFieldOffsets;
635
636 /// \brief Externally-provided direct, non-virtual base offsets.
637 llvm::DenseMap<const CXXRecordDecl *, CharUnits> ExternalBaseOffsets;
638
639 /// \brief Externally-provided virtual base offsets.
640 llvm::DenseMap<const CXXRecordDecl *, CharUnits> ExternalVirtualBaseOffsets;
641
John McCall0153cd32011-11-08 04:01:03 +0000642 RecordLayoutBuilder(const ASTContext &Context,
643 EmptySubobjectMap *EmptySubobjects)
Ken Dyck4731d5b2011-02-16 02:05:21 +0000644 : Context(Context), EmptySubobjects(EmptySubobjects), Size(0),
John McCall0153cd32011-11-08 04:01:03 +0000645 Alignment(CharUnits::One()), UnpackedAlignment(CharUnits::One()),
Douglas Gregor44ba7892012-01-28 00:53:29 +0000646 ExternalLayout(false), InferAlignment(false),
647 Packed(false), IsUnion(false), IsMac68kAlign(false), IsMsStruct(false),
Eli Friedman2782dac2013-06-26 20:50:34 +0000648 UnfilledBitsInLastUnit(0), LastBitfieldTypeSize(0),
649 MaxFieldAlignment(CharUnits::Zero()),
Ken Dyck02ced6f2011-02-17 01:49:42 +0000650 DataSize(0), NonVirtualSize(CharUnits::Zero()),
Fariborz Jahanianeb397412011-05-02 17:20:56 +0000651 NonVirtualAlignment(CharUnits::One()),
Eli Friedman481673f2013-06-26 23:47:39 +0000652 PrimaryBase(0), PrimaryBaseIsVirtual(false),
John McCalle42a3362012-05-01 08:55:32 +0000653 HasOwnVFPtr(false),
Eli Friedman84d2d3a2011-09-27 19:12:27 +0000654 FirstNearlyEmptyVBase(0) { }
Daniel Dunbar592a85c2010-05-27 02:25:46 +0000655
John McCall0153cd32011-11-08 04:01:03 +0000656 /// Reset this RecordLayoutBuilder to a fresh state, using the given
657 /// alignment as the initial alignment. This is used for the
658 /// correct layout of vb-table pointers in MSVC.
659 void resetWithTargetAlignment(CharUnits TargetAlignment) {
660 const ASTContext &Context = this->Context;
661 EmptySubobjectMap *EmptySubobjects = this->EmptySubobjects;
662 this->~RecordLayoutBuilder();
663 new (this) RecordLayoutBuilder(Context, EmptySubobjects);
664 Alignment = UnpackedAlignment = TargetAlignment;
665 }
666
Anders Carlsson35a36eb2010-05-26 05:41:04 +0000667 void Layout(const RecordDecl *D);
Anders Carlssonc28a6c92010-05-26 15:10:00 +0000668 void Layout(const CXXRecordDecl *D);
Anders Carlsson35a36eb2010-05-26 05:41:04 +0000669 void Layout(const ObjCInterfaceDecl *D);
670
671 void LayoutFields(const RecordDecl *D);
672 void LayoutField(const FieldDecl *D);
Argyrios Kyrtzidisca0d0cd2010-09-22 14:32:24 +0000673 void LayoutWideBitField(uint64_t FieldSize, uint64_t TypeSize,
674 bool FieldPacked, const FieldDecl *D);
Anders Carlsson35a36eb2010-05-26 05:41:04 +0000675 void LayoutBitField(const FieldDecl *D);
John McCall0153cd32011-11-08 04:01:03 +0000676
John McCall359b8852013-01-25 22:30:49 +0000677 TargetCXXABI getCXXABI() const {
678 return Context.getTargetInfo().getCXXABI();
679 }
680
Anders Carlssone3c24c72010-05-29 17:35:14 +0000681 /// BaseSubobjectInfoAllocator - Allocator for BaseSubobjectInfo objects.
682 llvm::SpecificBumpPtrAllocator<BaseSubobjectInfo> BaseSubobjectInfoAllocator;
683
684 typedef llvm::DenseMap<const CXXRecordDecl *, BaseSubobjectInfo *>
685 BaseSubobjectInfoMapTy;
686
687 /// VirtualBaseInfo - Map from all the (direct or indirect) virtual bases
688 /// of the class we're laying out to their base subobject info.
689 BaseSubobjectInfoMapTy VirtualBaseInfo;
690
691 /// NonVirtualBaseInfo - Map from all the direct non-virtual bases of the
692 /// class we're laying out to their base subobject info.
693 BaseSubobjectInfoMapTy NonVirtualBaseInfo;
694
695 /// ComputeBaseSubobjectInfo - Compute the base subobject information for the
696 /// bases of the given class.
697 void ComputeBaseSubobjectInfo(const CXXRecordDecl *RD);
698
699 /// ComputeBaseSubobjectInfo - Compute the base subobject information for a
700 /// single class and all of its base classes.
701 BaseSubobjectInfo *ComputeBaseSubobjectInfo(const CXXRecordDecl *RD,
702 bool IsVirtual,
703 BaseSubobjectInfo *Derived);
Anders Carlsson35a36eb2010-05-26 05:41:04 +0000704
705 /// DeterminePrimaryBase - Determine the primary base of the given class.
706 void DeterminePrimaryBase(const CXXRecordDecl *RD);
707
708 void SelectPrimaryVBase(const CXXRecordDecl *RD);
Daniel Dunbar592a85c2010-05-27 02:25:46 +0000709
Eli Friedman43114f92011-10-21 22:49:56 +0000710 void EnsureVTablePointerAlignment(CharUnits UnpackedBaseAlign);
Charles Davisc2c576a2010-08-19 00:55:19 +0000711
Daniel Dunbar592a85c2010-05-27 02:25:46 +0000712 /// LayoutNonVirtualBases - Determines the primary base class (if any) and
Anders Carlsson35a36eb2010-05-26 05:41:04 +0000713 /// lays it out. Will then proceed to lay out all non-virtual base clasess.
714 void LayoutNonVirtualBases(const CXXRecordDecl *RD);
715
716 /// LayoutNonVirtualBase - Lays out a single non-virtual base.
Anders Carlssonbb0e6782010-05-29 17:42:25 +0000717 void LayoutNonVirtualBase(const BaseSubobjectInfo *Base);
Anders Carlsson35a36eb2010-05-26 05:41:04 +0000718
Anders Carlssona2f8e412010-10-31 22:20:42 +0000719 void AddPrimaryVirtualBaseOffsets(const BaseSubobjectInfo *Info,
720 CharUnits Offset);
Anders Carlsson35a36eb2010-05-26 05:41:04 +0000721
722 /// LayoutVirtualBases - Lays out all the virtual bases.
723 void LayoutVirtualBases(const CXXRecordDecl *RD,
724 const CXXRecordDecl *MostDerivedClass);
725
726 /// LayoutVirtualBase - Lays out a single virtual base.
Warren Hunt55d8e822013-10-23 23:53:07 +0000727 void LayoutVirtualBase(const BaseSubobjectInfo *Base);
Anders Carlsson35a36eb2010-05-26 05:41:04 +0000728
Daniel Dunbar592a85c2010-05-27 02:25:46 +0000729 /// LayoutBase - Will lay out a base and return the offset where it was
Anders Carlssona2f8e412010-10-31 22:20:42 +0000730 /// placed, in chars.
731 CharUnits LayoutBase(const BaseSubobjectInfo *Base);
Anders Carlsson35a36eb2010-05-26 05:41:04 +0000732
Anders Carlssonc28a6c92010-05-26 15:10:00 +0000733 /// InitializeLayout - Initialize record layout for the given record decl.
Daniel Dunbar6da10982010-05-27 05:45:51 +0000734 void InitializeLayout(const Decl *D);
Anders Carlssonc28a6c92010-05-26 15:10:00 +0000735
Anders Carlsson35a36eb2010-05-26 05:41:04 +0000736 /// FinishLayout - Finalize record layout. Adjust record size based on the
737 /// alignment.
Argyrios Kyrtzidisca0d0cd2010-09-22 14:32:24 +0000738 void FinishLayout(const NamedDecl *D);
Anders Carlsson35a36eb2010-05-26 05:41:04 +0000739
Ken Dyck85ef0432011-02-19 18:58:07 +0000740 void UpdateAlignment(CharUnits NewAlignment, CharUnits UnpackedNewAlignment);
741 void UpdateAlignment(CharUnits NewAlignment) {
Argyrios Kyrtzidisca0d0cd2010-09-22 14:32:24 +0000742 UpdateAlignment(NewAlignment, NewAlignment);
743 }
744
Douglas Gregor44ba7892012-01-28 00:53:29 +0000745 /// \brief Retrieve the externally-supplied field offset for the given
746 /// field.
747 ///
748 /// \param Field The field whose offset is being queried.
749 /// \param ComputedOffset The offset that we've computed for this field.
750 uint64_t updateExternalFieldOffset(const FieldDecl *Field,
751 uint64_t ComputedOffset);
752
Argyrios Kyrtzidisca0d0cd2010-09-22 14:32:24 +0000753 void CheckFieldPadding(uint64_t Offset, uint64_t UnpaddedOffset,
754 uint64_t UnpackedOffset, unsigned UnpackedAlign,
755 bool isPacked, const FieldDecl *D);
756
757 DiagnosticBuilder Diag(SourceLocation Loc, unsigned DiagID);
Anders Carlsson35a36eb2010-05-26 05:41:04 +0000758
Ken Dyckecfc7552011-02-24 01:13:28 +0000759 CharUnits getSize() const {
Ken Dyck3c215f22011-02-24 01:33:05 +0000760 assert(Size % Context.getCharWidth() == 0);
Ken Dyckecfc7552011-02-24 01:13:28 +0000761 return Context.toCharUnitsFromBits(Size);
762 }
763 uint64_t getSizeInBits() const { return Size; }
764
765 void setSize(CharUnits NewSize) { Size = Context.toBits(NewSize); }
766 void setSize(uint64_t NewSize) { Size = NewSize; }
767
Eli Friedman84d2d3a2011-09-27 19:12:27 +0000768 CharUnits getAligment() const { return Alignment; }
769
Ken Dyckecfc7552011-02-24 01:13:28 +0000770 CharUnits getDataSize() const {
Ken Dyck3c215f22011-02-24 01:33:05 +0000771 assert(DataSize % Context.getCharWidth() == 0);
Ken Dyckecfc7552011-02-24 01:13:28 +0000772 return Context.toCharUnitsFromBits(DataSize);
773 }
774 uint64_t getDataSizeInBits() const { return DataSize; }
775
776 void setDataSize(CharUnits NewSize) { DataSize = Context.toBits(NewSize); }
777 void setDataSize(uint64_t NewSize) { DataSize = NewSize; }
778
Dmitri Gribenkoa664e5b2012-09-15 20:20:27 +0000779 RecordLayoutBuilder(const RecordLayoutBuilder &) LLVM_DELETED_FUNCTION;
780 void operator=(const RecordLayoutBuilder &) LLVM_DELETED_FUNCTION;
Anders Carlsson35a36eb2010-05-26 05:41:04 +0000781};
Benjamin Kramerc7656cd2010-05-26 09:58:31 +0000782} // end anonymous namespace
Anders Carlsson35a36eb2010-05-26 05:41:04 +0000783
Anders Carlsson81430692009-09-22 03:02:06 +0000784void
Anders Carlssonc2226202010-05-26 05:58:59 +0000785RecordLayoutBuilder::SelectPrimaryVBase(const CXXRecordDecl *RD) {
Anders Carlssonf2fa75b2010-03-11 03:39:12 +0000786 for (CXXRecordDecl::base_class_const_iterator I = RD->bases_begin(),
Daniel Dunbaraa423af2010-04-08 02:59:49 +0000787 E = RD->bases_end(); I != E; ++I) {
Anders Carlssonf2fa75b2010-03-11 03:39:12 +0000788 assert(!I->getType()->isDependentType() &&
Sebastian Redl1054fae2009-10-25 17:03:50 +0000789 "Cannot layout class with dependent bases.");
Daniel Dunbaraa423af2010-04-08 02:59:49 +0000790
Mike Stump11289f42009-09-09 15:08:12 +0000791 const CXXRecordDecl *Base =
Anders Carlssonf2fa75b2010-03-11 03:39:12 +0000792 cast<CXXRecordDecl>(I->getType()->getAs<RecordType>()->getDecl());
Anders Carlsson8630b5b2010-03-11 00:15:35 +0000793
Anders Carlssonf2fa75b2010-03-11 03:39:12 +0000794 // Check if this is a nearly empty virtual base.
Anders Carlsson60a62632010-11-25 01:51:53 +0000795 if (I->isVirtual() && Context.isNearlyEmpty(Base)) {
Anders Carlssonf2fa75b2010-03-11 03:39:12 +0000796 // If it's not an indirect primary base, then we've found our primary
797 // base.
Anders Carlsson81430692009-09-22 03:02:06 +0000798 if (!IndirectPrimaryBases.count(Base)) {
Anders Carlssond20e7cd2010-05-26 05:20:58 +0000799 PrimaryBase = Base;
800 PrimaryBaseIsVirtual = true;
Mike Stump6f3793b2009-08-12 21:50:08 +0000801 return;
802 }
Daniel Dunbaraa423af2010-04-08 02:59:49 +0000803
Anders Carlssonf2fa75b2010-03-11 03:39:12 +0000804 // Is this the first nearly empty virtual base?
805 if (!FirstNearlyEmptyVBase)
806 FirstNearlyEmptyVBase = Base;
Mike Stump6f3793b2009-08-12 21:50:08 +0000807 }
Daniel Dunbaraa423af2010-04-08 02:59:49 +0000808
Anders Carlsson8630b5b2010-03-11 00:15:35 +0000809 SelectPrimaryVBase(Base);
Anders Carlssond20e7cd2010-05-26 05:20:58 +0000810 if (PrimaryBase)
Zhongxing Xuec345b72010-02-15 04:28:35 +0000811 return;
Mike Stump6f3793b2009-08-12 21:50:08 +0000812 }
813}
814
Anders Carlsson8630b5b2010-03-11 00:15:35 +0000815/// DeterminePrimaryBase - Determine the primary base of the given class.
Anders Carlssonc2226202010-05-26 05:58:59 +0000816void RecordLayoutBuilder::DeterminePrimaryBase(const CXXRecordDecl *RD) {
Anders Carlsson8630b5b2010-03-11 00:15:35 +0000817 // If the class isn't dynamic, it won't have a primary base.
818 if (!RD->isDynamicClass())
819 return;
Daniel Dunbaraa423af2010-04-08 02:59:49 +0000820
Anders Carlsson81430692009-09-22 03:02:06 +0000821 // Compute all the primary virtual bases for all of our direct and
Mike Stump590a7c72009-08-13 23:26:06 +0000822 // indirect bases, and record all their primary virtual base classes.
Anders Carlsson5adde292010-11-24 22:55:48 +0000823 RD->getIndirectPrimaryBases(IndirectPrimaryBases);
Mike Stump590a7c72009-08-13 23:26:06 +0000824
Daniel Dunbaraa423af2010-04-08 02:59:49 +0000825 // If the record has a dynamic base class, attempt to choose a primary base
826 // class. It is the first (in direct base class order) non-virtual dynamic
Anders Carlsson81430692009-09-22 03:02:06 +0000827 // base class, if one exists.
Mike Stumpd8fe7b22009-08-05 22:37:18 +0000828 for (CXXRecordDecl::base_class_const_iterator i = RD->bases_begin(),
Daniel Dunbaraa423af2010-04-08 02:59:49 +0000829 e = RD->bases_end(); i != e; ++i) {
Anders Carlsson03ff3792009-11-27 22:05:05 +0000830 // Ignore virtual bases.
831 if (i->isVirtual())
832 continue;
Daniel Dunbaraa423af2010-04-08 02:59:49 +0000833
Anders Carlsson03ff3792009-11-27 22:05:05 +0000834 const CXXRecordDecl *Base =
835 cast<CXXRecordDecl>(i->getType()->getAs<RecordType>()->getDecl());
836
Warren Hunt55d8e822013-10-23 23:53:07 +0000837 if (Base->isDynamicClass()) {
Anders Carlsson03ff3792009-11-27 22:05:05 +0000838 // We found it.
Anders Carlssond20e7cd2010-05-26 05:20:58 +0000839 PrimaryBase = Base;
840 PrimaryBaseIsVirtual = false;
Anders Carlsson03ff3792009-11-27 22:05:05 +0000841 return;
Mike Stumpd8fe7b22009-08-05 22:37:18 +0000842 }
843 }
844
Eli Friedman5e9534b2011-10-18 00:55:28 +0000845 // Under the Itanium ABI, if there is no non-virtual primary base class,
846 // try to compute the primary virtual base. The primary virtual base is
847 // the first nearly empty virtual base that is not an indirect primary
848 // virtual base class, if one exists.
Anders Carlsson8630b5b2010-03-11 00:15:35 +0000849 if (RD->getNumVBases() != 0) {
850 SelectPrimaryVBase(RD);
Anders Carlssond20e7cd2010-05-26 05:20:58 +0000851 if (PrimaryBase)
Anders Carlsson8630b5b2010-03-11 00:15:35 +0000852 return;
853 }
Mike Stumpd8fe7b22009-08-05 22:37:18 +0000854
Eli Friedman5e9534b2011-10-18 00:55:28 +0000855 // Otherwise, it is the first indirect primary base class, if one exists.
Anders Carlsson8630b5b2010-03-11 00:15:35 +0000856 if (FirstNearlyEmptyVBase) {
Anders Carlssond20e7cd2010-05-26 05:20:58 +0000857 PrimaryBase = FirstNearlyEmptyVBase;
858 PrimaryBaseIsVirtual = true;
Mike Stumpd8fe7b22009-08-05 22:37:18 +0000859 return;
Anders Carlsson8630b5b2010-03-11 00:15:35 +0000860 }
Daniel Dunbaraa423af2010-04-08 02:59:49 +0000861
Anders Carlssond20e7cd2010-05-26 05:20:58 +0000862 assert(!PrimaryBase && "Should not get here with a primary base!");
Mike Stumpd8fe7b22009-08-05 22:37:18 +0000863}
864
Anders Carlssone3c24c72010-05-29 17:35:14 +0000865BaseSubobjectInfo *
866RecordLayoutBuilder::ComputeBaseSubobjectInfo(const CXXRecordDecl *RD,
867 bool IsVirtual,
868 BaseSubobjectInfo *Derived) {
869 BaseSubobjectInfo *Info;
870
871 if (IsVirtual) {
872 // Check if we already have info about this virtual base.
873 BaseSubobjectInfo *&InfoSlot = VirtualBaseInfo[RD];
874 if (InfoSlot) {
875 assert(InfoSlot->Class == RD && "Wrong class for virtual base info!");
876 return InfoSlot;
877 }
878
879 // We don't, create it.
880 InfoSlot = new (BaseSubobjectInfoAllocator.Allocate()) BaseSubobjectInfo;
881 Info = InfoSlot;
882 } else {
883 Info = new (BaseSubobjectInfoAllocator.Allocate()) BaseSubobjectInfo;
884 }
885
886 Info->Class = RD;
887 Info->IsVirtual = IsVirtual;
888 Info->Derived = 0;
889 Info->PrimaryVirtualBaseInfo = 0;
890
891 const CXXRecordDecl *PrimaryVirtualBase = 0;
892 BaseSubobjectInfo *PrimaryVirtualBaseInfo = 0;
893
894 // Check if this base has a primary virtual base.
895 if (RD->getNumVBases()) {
896 const ASTRecordLayout &Layout = Context.getASTRecordLayout(RD);
Anders Carlsson7f95cd12010-11-24 23:12:57 +0000897 if (Layout.isPrimaryBaseVirtual()) {
Anders Carlssone3c24c72010-05-29 17:35:14 +0000898 // This base does have a primary virtual base.
899 PrimaryVirtualBase = Layout.getPrimaryBase();
900 assert(PrimaryVirtualBase && "Didn't have a primary virtual base!");
901
902 // Now check if we have base subobject info about this primary base.
903 PrimaryVirtualBaseInfo = VirtualBaseInfo.lookup(PrimaryVirtualBase);
904
905 if (PrimaryVirtualBaseInfo) {
906 if (PrimaryVirtualBaseInfo->Derived) {
907 // We did have info about this primary base, and it turns out that it
908 // has already been claimed as a primary virtual base for another
909 // base.
910 PrimaryVirtualBase = 0;
911 } else {
912 // We can claim this base as our primary base.
913 Info->PrimaryVirtualBaseInfo = PrimaryVirtualBaseInfo;
914 PrimaryVirtualBaseInfo->Derived = Info;
915 }
916 }
917 }
918 }
919
920 // Now go through all direct bases.
921 for (CXXRecordDecl::base_class_const_iterator I = RD->bases_begin(),
922 E = RD->bases_end(); I != E; ++I) {
923 bool IsVirtual = I->isVirtual();
924
925 const CXXRecordDecl *BaseDecl =
926 cast<CXXRecordDecl>(I->getType()->getAs<RecordType>()->getDecl());
927
928 Info->Bases.push_back(ComputeBaseSubobjectInfo(BaseDecl, IsVirtual, Info));
929 }
930
931 if (PrimaryVirtualBase && !PrimaryVirtualBaseInfo) {
932 // Traversing the bases must have created the base info for our primary
933 // virtual base.
934 PrimaryVirtualBaseInfo = VirtualBaseInfo.lookup(PrimaryVirtualBase);
935 assert(PrimaryVirtualBaseInfo &&
936 "Did not create a primary virtual base!");
937
938 // Claim the primary virtual base as our primary virtual base.
939 Info->PrimaryVirtualBaseInfo = PrimaryVirtualBaseInfo;
940 PrimaryVirtualBaseInfo->Derived = Info;
941 }
942
943 return Info;
944}
945
946void RecordLayoutBuilder::ComputeBaseSubobjectInfo(const CXXRecordDecl *RD) {
947 for (CXXRecordDecl::base_class_const_iterator I = RD->bases_begin(),
948 E = RD->bases_end(); I != E; ++I) {
949 bool IsVirtual = I->isVirtual();
950
951 const CXXRecordDecl *BaseDecl =
952 cast<CXXRecordDecl>(I->getType()->getAs<RecordType>()->getDecl());
953
954 // Compute the base subobject info for this base.
955 BaseSubobjectInfo *Info = ComputeBaseSubobjectInfo(BaseDecl, IsVirtual, 0);
956
957 if (IsVirtual) {
958 // ComputeBaseInfo has already added this base for us.
959 assert(VirtualBaseInfo.count(BaseDecl) &&
960 "Did not add virtual base!");
961 } else {
962 // Add the base info to the map of non-virtual bases.
963 assert(!NonVirtualBaseInfo.count(BaseDecl) &&
964 "Non-virtual base already exists!");
965 NonVirtualBaseInfo.insert(std::make_pair(BaseDecl, Info));
966 }
967 }
968}
969
Anders Carlsson09ffa322010-03-10 22:21:28 +0000970void
Eli Friedman43114f92011-10-21 22:49:56 +0000971RecordLayoutBuilder::EnsureVTablePointerAlignment(CharUnits UnpackedBaseAlign) {
Eli Friedman5e9534b2011-10-18 00:55:28 +0000972 CharUnits BaseAlign = (Packed) ? CharUnits::One() : UnpackedBaseAlign;
973
974 // The maximum field alignment overrides base align.
975 if (!MaxFieldAlignment.isZero()) {
976 BaseAlign = std::min(BaseAlign, MaxFieldAlignment);
977 UnpackedBaseAlign = std::min(UnpackedBaseAlign, MaxFieldAlignment);
978 }
979
980 // Round up the current record size to pointer alignment.
Eli Friedman43114f92011-10-21 22:49:56 +0000981 setSize(getSize().RoundUpToAlignment(BaseAlign));
982 setDataSize(getSize());
Eli Friedman5e9534b2011-10-18 00:55:28 +0000983
984 // Update the alignment.
985 UpdateAlignment(BaseAlign, UnpackedBaseAlign);
986}
987
988void
Anders Carlssonc2226202010-05-26 05:58:59 +0000989RecordLayoutBuilder::LayoutNonVirtualBases(const CXXRecordDecl *RD) {
Anders Carlssone3c24c72010-05-29 17:35:14 +0000990 // Then, determine the primary base class.
Anders Carlsson8630b5b2010-03-11 00:15:35 +0000991 DeterminePrimaryBase(RD);
Daniel Dunbaraa423af2010-04-08 02:59:49 +0000992
Anders Carlssone3c24c72010-05-29 17:35:14 +0000993 // Compute base subobject info.
994 ComputeBaseSubobjectInfo(RD);
995
Anders Carlsson8630b5b2010-03-11 00:15:35 +0000996 // If we have a primary base class, lay it out.
Anders Carlssond20e7cd2010-05-26 05:20:58 +0000997 if (PrimaryBase) {
998 if (PrimaryBaseIsVirtual) {
Anders Carlssone3c24c72010-05-29 17:35:14 +0000999 // If the primary virtual base was a primary virtual base of some other
1000 // base class we'll have to steal it.
1001 BaseSubobjectInfo *PrimaryBaseInfo = VirtualBaseInfo.lookup(PrimaryBase);
1002 PrimaryBaseInfo->Derived = 0;
1003
Anders Carlsson8630b5b2010-03-11 00:15:35 +00001004 // We have a virtual primary base, insert it as an indirect primary base.
Anders Carlssond20e7cd2010-05-26 05:20:58 +00001005 IndirectPrimaryBases.insert(PrimaryBase);
Anders Carlssonfe900962010-03-11 05:42:17 +00001006
Daniel Dunbar592a85c2010-05-27 02:25:46 +00001007 assert(!VisitedVirtualBases.count(PrimaryBase) &&
Anders Carlssond20e7cd2010-05-26 05:20:58 +00001008 "vbase already visited!");
1009 VisitedVirtualBases.insert(PrimaryBase);
Daniel Dunbar592a85c2010-05-27 02:25:46 +00001010
Anders Carlssond6ff5d72010-05-29 17:48:36 +00001011 LayoutVirtualBase(PrimaryBaseInfo);
Anders Carlssonbb0e6782010-05-29 17:42:25 +00001012 } else {
1013 BaseSubobjectInfo *PrimaryBaseInfo =
1014 NonVirtualBaseInfo.lookup(PrimaryBase);
1015 assert(PrimaryBaseInfo &&
1016 "Did not find base info for non-virtual primary base!");
1017
1018 LayoutNonVirtualBase(PrimaryBaseInfo);
1019 }
Daniel Dunbaraa423af2010-04-08 02:59:49 +00001020
John McCall0153cd32011-11-08 04:01:03 +00001021 // If this class needs a vtable/vf-table and didn't get one from a
1022 // primary base, add it in now.
Warren Hunt55d8e822013-10-23 23:53:07 +00001023 } else if (RD->isDynamicClass()) {
Eli Friedman5e9534b2011-10-18 00:55:28 +00001024 assert(DataSize == 0 && "Vtable pointer must be at offset zero!");
Eli Friedman5e9534b2011-10-18 00:55:28 +00001025 CharUnits PtrWidth =
1026 Context.toCharUnitsFromBits(Context.getTargetInfo().getPointerWidth(0));
Eli Friedman43114f92011-10-21 22:49:56 +00001027 CharUnits PtrAlign =
1028 Context.toCharUnitsFromBits(Context.getTargetInfo().getPointerAlign(0));
1029 EnsureVTablePointerAlignment(PtrAlign);
John McCalle42a3362012-05-01 08:55:32 +00001030 HasOwnVFPtr = true;
Eli Friedman5e9534b2011-10-18 00:55:28 +00001031 setSize(getSize() + PtrWidth);
1032 setDataSize(getSize());
1033 }
1034
John McCall0153cd32011-11-08 04:01:03 +00001035 bool HasDirectVirtualBases = false;
1036 bool HasNonVirtualBaseWithVBTable = false;
1037
Anders Carlsson8630b5b2010-03-11 00:15:35 +00001038 // Now lay out the non-virtual bases.
1039 for (CXXRecordDecl::base_class_const_iterator I = RD->bases_begin(),
Daniel Dunbaraa423af2010-04-08 02:59:49 +00001040 E = RD->bases_end(); I != E; ++I) {
Anders Carlsson8630b5b2010-03-11 00:15:35 +00001041
John McCall0153cd32011-11-08 04:01:03 +00001042 // Ignore virtual bases, but remember that we saw one.
1043 if (I->isVirtual()) {
1044 HasDirectVirtualBases = true;
Anders Carlsson8630b5b2010-03-11 00:15:35 +00001045 continue;
John McCall0153cd32011-11-08 04:01:03 +00001046 }
Anders Carlsson8630b5b2010-03-11 00:15:35 +00001047
Anders Carlssonbb0e6782010-05-29 17:42:25 +00001048 const CXXRecordDecl *BaseDecl =
John McCall0153cd32011-11-08 04:01:03 +00001049 cast<CXXRecordDecl>(I->getType()->castAs<RecordType>()->getDecl());
Anders Carlsson8630b5b2010-03-11 00:15:35 +00001050
John McCall0153cd32011-11-08 04:01:03 +00001051 // Remember if this base has virtual bases itself.
Reid Klecknerf5370dd2013-10-11 20:41:08 +00001052 if (BaseDecl->getNumVBases())
John McCall0153cd32011-11-08 04:01:03 +00001053 HasNonVirtualBaseWithVBTable = true;
1054
1055 // Skip the primary base, because we've already laid it out. The
1056 // !PrimaryBaseIsVirtual check is required because we might have a
1057 // non-virtual base of the same type as a primary virtual base.
Anders Carlssonbb0e6782010-05-29 17:42:25 +00001058 if (BaseDecl == PrimaryBase && !PrimaryBaseIsVirtual)
Anders Carlsson8630b5b2010-03-11 00:15:35 +00001059 continue;
1060
1061 // Lay out the base.
Anders Carlssonbb0e6782010-05-29 17:42:25 +00001062 BaseSubobjectInfo *BaseInfo = NonVirtualBaseInfo.lookup(BaseDecl);
1063 assert(BaseInfo && "Did not find base info for non-virtual base!");
1064
1065 LayoutNonVirtualBase(BaseInfo);
Anders Carlsson09ffa322010-03-10 22:21:28 +00001066 }
1067}
1068
Anders Carlssonbb0e6782010-05-29 17:42:25 +00001069void RecordLayoutBuilder::LayoutNonVirtualBase(const BaseSubobjectInfo *Base) {
Anders Carlsson0d0b5882010-03-10 22:26:24 +00001070 // Layout the base.
Anders Carlssona2f8e412010-10-31 22:20:42 +00001071 CharUnits Offset = LayoutBase(Base);
Daniel Dunbaraa423af2010-04-08 02:59:49 +00001072
Anders Carlsson0d0b5882010-03-10 22:26:24 +00001073 // Add its base class offset.
Anders Carlssonbb0e6782010-05-29 17:42:25 +00001074 assert(!Bases.count(Base->Class) && "base offset already exists!");
Anders Carlssona2f8e412010-10-31 22:20:42 +00001075 Bases.insert(std::make_pair(Base->Class, Offset));
Anders Carlsson6b0d9142010-05-29 19:44:50 +00001076
1077 AddPrimaryVirtualBaseOffsets(Base, Offset);
Anders Carlsson09ffa322010-03-10 22:21:28 +00001078}
Mike Stump2b84dd32009-11-05 04:02:15 +00001079
Daniel Dunbaraa423af2010-04-08 02:59:49 +00001080void
Anders Carlsson6b0d9142010-05-29 19:44:50 +00001081RecordLayoutBuilder::AddPrimaryVirtualBaseOffsets(const BaseSubobjectInfo *Info,
Anders Carlssona2f8e412010-10-31 22:20:42 +00001082 CharUnits Offset) {
Anders Carlsson6b0d9142010-05-29 19:44:50 +00001083 // This base isn't interesting, it has no virtual bases.
1084 if (!Info->Class->getNumVBases())
1085 return;
1086
1087 // First, check if we have a virtual primary base to add offsets for.
1088 if (Info->PrimaryVirtualBaseInfo) {
1089 assert(Info->PrimaryVirtualBaseInfo->IsVirtual &&
1090 "Primary virtual base is not virtual!");
1091 if (Info->PrimaryVirtualBaseInfo->Derived == Info) {
1092 // Add the offset.
1093 assert(!VBases.count(Info->PrimaryVirtualBaseInfo->Class) &&
1094 "primary vbase offset already exists!");
1095 VBases.insert(std::make_pair(Info->PrimaryVirtualBaseInfo->Class,
John McCalle42a3362012-05-01 08:55:32 +00001096 ASTRecordLayout::VBaseInfo(Offset, false)));
Anders Carlssonea7b1822010-04-15 16:12:58 +00001097
Anders Carlsson6b0d9142010-05-29 19:44:50 +00001098 // Traverse the primary virtual base.
1099 AddPrimaryVirtualBaseOffsets(Info->PrimaryVirtualBaseInfo, Offset);
1100 }
Anders Carlssonea7b1822010-04-15 16:12:58 +00001101 }
1102
Anders Carlsson6b0d9142010-05-29 19:44:50 +00001103 // Now go through all direct non-virtual bases.
1104 const ASTRecordLayout &Layout = Context.getASTRecordLayout(Info->Class);
1105 for (unsigned I = 0, E = Info->Bases.size(); I != E; ++I) {
1106 const BaseSubobjectInfo *Base = Info->Bases[I];
1107 if (Base->IsVirtual)
Anders Carlssonea7b1822010-04-15 16:12:58 +00001108 continue;
Daniel Dunbar592a85c2010-05-27 02:25:46 +00001109
Anders Carlsson0a14ee92010-11-01 00:21:58 +00001110 CharUnits BaseOffset = Offset + Layout.getBaseClassOffset(Base->Class);
Anders Carlsson6b0d9142010-05-29 19:44:50 +00001111 AddPrimaryVirtualBaseOffsets(Base, BaseOffset);
Anders Carlssonea7b1822010-04-15 16:12:58 +00001112 }
1113}
1114
1115void
Anders Carlssonc2226202010-05-26 05:58:59 +00001116RecordLayoutBuilder::LayoutVirtualBases(const CXXRecordDecl *RD,
Anders Carlssonea7b1822010-04-15 16:12:58 +00001117 const CXXRecordDecl *MostDerivedClass) {
Anders Carlssonde710c92010-03-11 04:33:54 +00001118 const CXXRecordDecl *PrimaryBase;
Anders Carlsson291279e2010-04-10 18:42:27 +00001119 bool PrimaryBaseIsVirtual;
Anders Carlssonfe900962010-03-11 05:42:17 +00001120
Anders Carlsson291279e2010-04-10 18:42:27 +00001121 if (MostDerivedClass == RD) {
Anders Carlssond20e7cd2010-05-26 05:20:58 +00001122 PrimaryBase = this->PrimaryBase;
1123 PrimaryBaseIsVirtual = this->PrimaryBaseIsVirtual;
Anders Carlsson291279e2010-04-10 18:42:27 +00001124 } else {
Anders Carlsson5efc56e2010-04-16 15:07:51 +00001125 const ASTRecordLayout &Layout = Context.getASTRecordLayout(RD);
Anders Carlssonde710c92010-03-11 04:33:54 +00001126 PrimaryBase = Layout.getPrimaryBase();
Anders Carlsson7f95cd12010-11-24 23:12:57 +00001127 PrimaryBaseIsVirtual = Layout.isPrimaryBaseVirtual();
Anders Carlsson291279e2010-04-10 18:42:27 +00001128 }
1129
Anders Carlssonf7b7a1e2010-03-11 04:24:02 +00001130 for (CXXRecordDecl::base_class_const_iterator I = RD->bases_begin(),
1131 E = RD->bases_end(); I != E; ++I) {
1132 assert(!I->getType()->isDependentType() &&
Sebastian Redl1054fae2009-10-25 17:03:50 +00001133 "Cannot layout class with dependent bases.");
Daniel Dunbaraa423af2010-04-08 02:59:49 +00001134
Anders Carlssond6ff5d72010-05-29 17:48:36 +00001135 const CXXRecordDecl *BaseDecl =
John McCall0153cd32011-11-08 04:01:03 +00001136 cast<CXXRecordDecl>(I->getType()->castAs<RecordType>()->getDecl());
Anders Carlssonf7b7a1e2010-03-11 04:24:02 +00001137
1138 if (I->isVirtual()) {
Anders Carlssond6ff5d72010-05-29 17:48:36 +00001139 if (PrimaryBase != BaseDecl || !PrimaryBaseIsVirtual) {
1140 bool IndirectPrimaryBase = IndirectPrimaryBases.count(BaseDecl);
Daniel Dunbaraa423af2010-04-08 02:59:49 +00001141
Anders Carlsson291279e2010-04-10 18:42:27 +00001142 // Only lay out the virtual base if it's not an indirect primary base.
1143 if (!IndirectPrimaryBase) {
1144 // Only visit virtual bases once.
Anders Carlssond6ff5d72010-05-29 17:48:36 +00001145 if (!VisitedVirtualBases.insert(BaseDecl))
Anders Carlsson291279e2010-04-10 18:42:27 +00001146 continue;
Daniel Dunbar592a85c2010-05-27 02:25:46 +00001147
Anders Carlssond6ff5d72010-05-29 17:48:36 +00001148 const BaseSubobjectInfo *BaseInfo = VirtualBaseInfo.lookup(BaseDecl);
1149 assert(BaseInfo && "Did not find virtual base info!");
1150 LayoutVirtualBase(BaseInfo);
Anders Carlsson6a848892010-03-11 04:10:39 +00001151 }
Mike Stump2b84dd32009-11-05 04:02:15 +00001152 }
Mike Stumpc2f591b2009-08-13 22:53:07 +00001153 }
Daniel Dunbaraa423af2010-04-08 02:59:49 +00001154
Anders Carlssond6ff5d72010-05-29 17:48:36 +00001155 if (!BaseDecl->getNumVBases()) {
Anders Carlssonf7b7a1e2010-03-11 04:24:02 +00001156 // This base isn't interesting since it doesn't have any virtual bases.
1157 continue;
Mike Stump996576f32009-08-16 19:04:13 +00001158 }
Anders Carlssonf7b7a1e2010-03-11 04:24:02 +00001159
Anders Carlssond6ff5d72010-05-29 17:48:36 +00001160 LayoutVirtualBases(BaseDecl, MostDerivedClass);
Mike Stump6b2556f2009-08-06 13:41:24 +00001161 }
1162}
1163
Warren Hunt55d8e822013-10-23 23:53:07 +00001164void RecordLayoutBuilder::LayoutVirtualBase(const BaseSubobjectInfo *Base) {
Anders Carlsson6b0d9142010-05-29 19:44:50 +00001165 assert(!Base->Derived && "Trying to lay out a primary virtual base!");
1166
Anders Carlsson0d0b5882010-03-10 22:26:24 +00001167 // Layout the base.
Anders Carlssona2f8e412010-10-31 22:20:42 +00001168 CharUnits Offset = LayoutBase(Base);
Anders Carlsson0d0b5882010-03-10 22:26:24 +00001169
1170 // Add its base class offset.
Anders Carlssond6ff5d72010-05-29 17:48:36 +00001171 assert(!VBases.count(Base->Class) && "vbase offset already exists!");
John McCalle42a3362012-05-01 08:55:32 +00001172 VBases.insert(std::make_pair(Base->Class,
Warren Hunt55d8e822013-10-23 23:53:07 +00001173 ASTRecordLayout::VBaseInfo(Offset, false)));
John McCalle42a3362012-05-01 08:55:32 +00001174
Warren Hunt55d8e822013-10-23 23:53:07 +00001175 AddPrimaryVirtualBaseOffsets(Base, Offset);
Anders Carlsson09ffa322010-03-10 22:21:28 +00001176}
1177
Anders Carlssona2f8e412010-10-31 22:20:42 +00001178CharUnits RecordLayoutBuilder::LayoutBase(const BaseSubobjectInfo *Base) {
Anders Carlssond7f3fcf2010-05-29 20:47:33 +00001179 const ASTRecordLayout &Layout = Context.getASTRecordLayout(Base->Class);
Anders Carlsson09ffa322010-03-10 22:21:28 +00001180
Douglas Gregore9fc3772012-01-26 07:55:45 +00001181
1182 CharUnits Offset;
1183
1184 // Query the external layout to see if it provides an offset.
1185 bool HasExternalLayout = false;
1186 if (ExternalLayout) {
1187 llvm::DenseMap<const CXXRecordDecl *, CharUnits>::iterator Known;
1188 if (Base->IsVirtual) {
1189 Known = ExternalVirtualBaseOffsets.find(Base->Class);
1190 if (Known != ExternalVirtualBaseOffsets.end()) {
1191 Offset = Known->second;
1192 HasExternalLayout = true;
1193 }
1194 } else {
1195 Known = ExternalBaseOffsets.find(Base->Class);
1196 if (Known != ExternalBaseOffsets.end()) {
1197 Offset = Known->second;
1198 HasExternalLayout = true;
1199 }
1200 }
1201 }
1202
Eli Friedman69d27d22013-07-16 00:21:28 +00001203 CharUnits UnpackedBaseAlign = Layout.getNonVirtualAlign();
1204 CharUnits BaseAlign = (Packed) ? CharUnits::One() : UnpackedBaseAlign;
1205
Anders Carlsson09ffa322010-03-10 22:21:28 +00001206 // If we have an empty base class, try to place it at offset 0.
Anders Carlssond7f3fcf2010-05-29 20:47:33 +00001207 if (Base->Class->isEmpty() &&
Douglas Gregore9fc3772012-01-26 07:55:45 +00001208 (!HasExternalLayout || Offset == CharUnits::Zero()) &&
Anders Carlsson28466ab2010-10-31 22:13:23 +00001209 EmptySubobjects->CanPlaceBaseAtOffset(Base, CharUnits::Zero())) {
Ken Dyck1b4420e2011-02-28 02:01:38 +00001210 setSize(std::max(getSize(), Layout.getSize()));
Eli Friedman69d27d22013-07-16 00:21:28 +00001211 UpdateAlignment(BaseAlign, UnpackedBaseAlign);
Anders Carlsson09ffa322010-03-10 22:21:28 +00001212
Anders Carlssona2f8e412010-10-31 22:20:42 +00001213 return CharUnits::Zero();
Anders Carlsson09ffa322010-03-10 22:21:28 +00001214 }
Daniel Dunbaraa423af2010-04-08 02:59:49 +00001215
Argyrios Kyrtzidis8b542742010-12-09 00:35:20 +00001216 // The maximum field alignment overrides base align.
Ken Dyck02ced6f2011-02-17 01:49:42 +00001217 if (!MaxFieldAlignment.isZero()) {
Ken Dyck85ef0432011-02-19 18:58:07 +00001218 BaseAlign = std::min(BaseAlign, MaxFieldAlignment);
1219 UnpackedBaseAlign = std::min(UnpackedBaseAlign, MaxFieldAlignment);
Argyrios Kyrtzidis8b542742010-12-09 00:35:20 +00001220 }
Daniel Dunbaraa423af2010-04-08 02:59:49 +00001221
Douglas Gregore9fc3772012-01-26 07:55:45 +00001222 if (!HasExternalLayout) {
1223 // Round up the current record size to the base's alignment boundary.
1224 Offset = getDataSize().RoundUpToAlignment(BaseAlign);
Daniel Dunbaraa423af2010-04-08 02:59:49 +00001225
Douglas Gregore9fc3772012-01-26 07:55:45 +00001226 // Try to place the base.
1227 while (!EmptySubobjects->CanPlaceBaseAtOffset(Base, Offset))
1228 Offset += BaseAlign;
1229 } else {
1230 bool Allowed = EmptySubobjects->CanPlaceBaseAtOffset(Base, Offset);
1231 (void)Allowed;
1232 assert(Allowed && "Base subobject externally placed at overlapping offset");
Douglas Gregor1423a5c2012-10-26 22:31:14 +00001233
1234 if (InferAlignment && Offset < getDataSize().RoundUpToAlignment(BaseAlign)){
1235 // The externally-supplied base offset is before the base offset we
1236 // computed. Assume that the structure is packed.
1237 Alignment = CharUnits::One();
1238 InferAlignment = false;
1239 }
Douglas Gregore9fc3772012-01-26 07:55:45 +00001240 }
1241
Anders Carlssond7f3fcf2010-05-29 20:47:33 +00001242 if (!Base->Class->isEmpty()) {
Anders Carlsson09ffa322010-03-10 22:21:28 +00001243 // Update the data size.
Ken Dyck1b4420e2011-02-28 02:01:38 +00001244 setDataSize(Offset + Layout.getNonVirtualSize());
Anders Carlsson09ffa322010-03-10 22:21:28 +00001245
Ken Dyck1b4420e2011-02-28 02:01:38 +00001246 setSize(std::max(getSize(), getDataSize()));
Anders Carlsson09ffa322010-03-10 22:21:28 +00001247 } else
Ken Dyck1b4420e2011-02-28 02:01:38 +00001248 setSize(std::max(getSize(), Offset + Layout.getSize()));
Anders Carlsson09ffa322010-03-10 22:21:28 +00001249
1250 // Remember max struct/class alignment.
Argyrios Kyrtzidis8b542742010-12-09 00:35:20 +00001251 UpdateAlignment(BaseAlign, UnpackedBaseAlign);
Anders Carlsson09ffa322010-03-10 22:21:28 +00001252
Ken Dyck1b4420e2011-02-28 02:01:38 +00001253 return Offset;
Anders Carlsson09ffa322010-03-10 22:21:28 +00001254}
1255
Daniel Dunbar6da10982010-05-27 05:45:51 +00001256void RecordLayoutBuilder::InitializeLayout(const Decl *D) {
Eli Friedman9ee2d0472012-10-12 23:29:20 +00001257 if (const RecordDecl *RD = dyn_cast<RecordDecl>(D)) {
Daniel Dunbar6da10982010-05-27 05:45:51 +00001258 IsUnion = RD->isUnion();
Eli Friedman9ee2d0472012-10-12 23:29:20 +00001259 IsMsStruct = RD->isMsStruct(Context);
1260 }
Daniel Dunbar592a85c2010-05-27 02:25:46 +00001261
Eli Friedman9ee2d0472012-10-12 23:29:20 +00001262 Packed = D->hasAttr<PackedAttr>();
Daniel Dunbar592a85c2010-05-27 02:25:46 +00001263
Daniel Dunbar096ed292011-10-05 21:04:55 +00001264 // Honor the default struct packing maximum alignment flag.
David Blaikiebbafb8a2012-03-11 07:00:24 +00001265 if (unsigned DefaultMaxFieldAlignment = Context.getLangOpts().PackStruct) {
Daniel Dunbar096ed292011-10-05 21:04:55 +00001266 MaxFieldAlignment = CharUnits::fromQuantity(DefaultMaxFieldAlignment);
1267 }
1268
Daniel Dunbar6da10982010-05-27 05:45:51 +00001269 // mac68k alignment supersedes maximum field alignment and attribute aligned,
1270 // and forces all structures to have 2-byte alignment. The IBM docs on it
1271 // allude to additional (more complicated) semantics, especially with regard
1272 // to bit-fields, but gcc appears not to follow that.
1273 if (D->hasAttr<AlignMac68kAttr>()) {
1274 IsMac68kAlign = true;
Ken Dyck02ced6f2011-02-17 01:49:42 +00001275 MaxFieldAlignment = CharUnits::fromQuantity(2);
Ken Dyck4731d5b2011-02-16 02:05:21 +00001276 Alignment = CharUnits::fromQuantity(2);
Daniel Dunbar6da10982010-05-27 05:45:51 +00001277 } else {
1278 if (const MaxFieldAlignmentAttr *MFAA = D->getAttr<MaxFieldAlignmentAttr>())
Ken Dyck02ced6f2011-02-17 01:49:42 +00001279 MaxFieldAlignment = Context.toCharUnitsFromBits(MFAA->getAlignment());
Daniel Dunbar592a85c2010-05-27 02:25:46 +00001280
Alexis Huntdcfba7b2010-08-18 23:23:40 +00001281 if (unsigned MaxAlign = D->getMaxAlignment())
Ken Dyck85ef0432011-02-19 18:58:07 +00001282 UpdateAlignment(Context.toCharUnitsFromBits(MaxAlign));
Daniel Dunbar6da10982010-05-27 05:45:51 +00001283 }
Douglas Gregore9fc3772012-01-26 07:55:45 +00001284
1285 // If there is an external AST source, ask it for the various offsets.
1286 if (const RecordDecl *RD = dyn_cast<RecordDecl>(D))
1287 if (ExternalASTSource *External = Context.getExternalSource()) {
1288 ExternalLayout = External->layoutRecordType(RD,
1289 ExternalSize,
1290 ExternalAlign,
1291 ExternalFieldOffsets,
1292 ExternalBaseOffsets,
1293 ExternalVirtualBaseOffsets);
1294
1295 // Update based on external alignment.
1296 if (ExternalLayout) {
Douglas Gregor44ba7892012-01-28 00:53:29 +00001297 if (ExternalAlign > 0) {
1298 Alignment = Context.toCharUnitsFromBits(ExternalAlign);
Douglas Gregor44ba7892012-01-28 00:53:29 +00001299 } else {
1300 // The external source didn't have alignment information; infer it.
1301 InferAlignment = true;
1302 }
Douglas Gregore9fc3772012-01-26 07:55:45 +00001303 }
1304 }
Anders Carlssonc28a6c92010-05-26 15:10:00 +00001305}
Anders Carlsson6d9f6f32009-07-19 00:18:47 +00001306
Anders Carlssonc28a6c92010-05-26 15:10:00 +00001307void RecordLayoutBuilder::Layout(const RecordDecl *D) {
1308 InitializeLayout(D);
Anders Carlsson118ce162009-07-18 21:48:39 +00001309 LayoutFields(D);
Mike Stump11289f42009-09-09 15:08:12 +00001310
Anders Carlsson79474332009-07-18 20:20:21 +00001311 // Finally, round the size of the total struct up to the alignment of the
1312 // struct itself.
Argyrios Kyrtzidisca0d0cd2010-09-22 14:32:24 +00001313 FinishLayout(D);
Anders Carlssonc28a6c92010-05-26 15:10:00 +00001314}
1315
1316void RecordLayoutBuilder::Layout(const CXXRecordDecl *RD) {
1317 InitializeLayout(RD);
1318
Anders Carlssonc28a6c92010-05-26 15:10:00 +00001319 // Lay out the vtable and the non-virtual bases.
1320 LayoutNonVirtualBases(RD);
1321
1322 LayoutFields(RD);
1323
Ken Dycke7380752011-03-10 01:53:59 +00001324 NonVirtualSize = Context.toCharUnitsFromBits(
1325 llvm::RoundUpToAlignment(getSizeInBits(),
Douglas Gregore8bbc122011-09-02 00:18:52 +00001326 Context.getTargetInfo().getCharAlign()));
Ken Dyck4731d5b2011-02-16 02:05:21 +00001327 NonVirtualAlignment = Alignment;
Anders Carlssonc28a6c92010-05-26 15:10:00 +00001328
Warren Hunt55d8e822013-10-23 23:53:07 +00001329 // Lay out the virtual bases and add the primary virtual base offsets.
1330 LayoutVirtualBases(RD, RD);
John McCall0153cd32011-11-08 04:01:03 +00001331
1332 // Finally, round the size of the total struct up to the alignment
Eli Friedman83a12582011-12-01 00:37:01 +00001333 // of the struct itself.
1334 FinishLayout(RD);
Anders Carlssonc28a6c92010-05-26 15:10:00 +00001335
Anders Carlsson5b441d72010-04-10 21:24:48 +00001336#ifndef NDEBUG
Anders Carlssonc28a6c92010-05-26 15:10:00 +00001337 // Check that we have base offsets for all bases.
1338 for (CXXRecordDecl::base_class_const_iterator I = RD->bases_begin(),
1339 E = RD->bases_end(); I != E; ++I) {
1340 if (I->isVirtual())
1341 continue;
Daniel Dunbar592a85c2010-05-27 02:25:46 +00001342
Anders Carlssonc28a6c92010-05-26 15:10:00 +00001343 const CXXRecordDecl *BaseDecl =
1344 cast<CXXRecordDecl>(I->getType()->getAs<RecordType>()->getDecl());
1345
1346 assert(Bases.count(BaseDecl) && "Did not find base offset!");
1347 }
Daniel Dunbar592a85c2010-05-27 02:25:46 +00001348
Anders Carlssonc28a6c92010-05-26 15:10:00 +00001349 // And all virtual bases.
1350 for (CXXRecordDecl::base_class_const_iterator I = RD->vbases_begin(),
1351 E = RD->vbases_end(); I != E; ++I) {
1352 const CXXRecordDecl *BaseDecl =
1353 cast<CXXRecordDecl>(I->getType()->getAs<RecordType>()->getDecl());
Daniel Dunbar592a85c2010-05-27 02:25:46 +00001354
Anders Carlssonc28a6c92010-05-26 15:10:00 +00001355 assert(VBases.count(BaseDecl) && "Did not find base offset!");
Anders Carlsson5b441d72010-04-10 21:24:48 +00001356 }
1357#endif
Anders Carlsson79474332009-07-18 20:20:21 +00001358}
1359
Anders Carlssonc2226202010-05-26 05:58:59 +00001360void RecordLayoutBuilder::Layout(const ObjCInterfaceDecl *D) {
Anders Carlsson4f516282009-07-18 20:50:59 +00001361 if (ObjCInterfaceDecl *SD = D->getSuperClass()) {
Anders Carlsson5efc56e2010-04-16 15:07:51 +00001362 const ASTRecordLayout &SL = Context.getASTObjCInterfaceLayout(SD);
Anders Carlsson4f516282009-07-18 20:50:59 +00001363
Ken Dyck85ef0432011-02-19 18:58:07 +00001364 UpdateAlignment(SL.getAlignment());
Mike Stump11289f42009-09-09 15:08:12 +00001365
Anders Carlsson4f516282009-07-18 20:50:59 +00001366 // We start laying out ivars not at the end of the superclass
1367 // structure, but at the next byte following the last field.
Ken Dyckecfc7552011-02-24 01:13:28 +00001368 setSize(SL.getDataSize());
Ken Dyck1b4420e2011-02-28 02:01:38 +00001369 setDataSize(getSize());
Anders Carlsson4f516282009-07-18 20:50:59 +00001370 }
Mike Stump11289f42009-09-09 15:08:12 +00001371
Daniel Dunbar6da10982010-05-27 05:45:51 +00001372 InitializeLayout(D);
Anders Carlsson4f516282009-07-18 20:50:59 +00001373 // Layout each ivar sequentially.
Jordy Rosea91768e2011-07-22 02:08:32 +00001374 for (const ObjCIvarDecl *IVD = D->all_declared_ivar_begin(); IVD;
1375 IVD = IVD->getNextIvar())
Fariborz Jahanianb26d5782011-06-28 18:05:25 +00001376 LayoutField(IVD);
Mike Stump11289f42009-09-09 15:08:12 +00001377
Anders Carlsson4f516282009-07-18 20:50:59 +00001378 // Finally, round the size of the total struct up to the alignment of the
1379 // struct itself.
Argyrios Kyrtzidisca0d0cd2010-09-22 14:32:24 +00001380 FinishLayout(D);
Anders Carlsson4f516282009-07-18 20:50:59 +00001381}
1382
Anders Carlssonc2226202010-05-26 05:58:59 +00001383void RecordLayoutBuilder::LayoutFields(const RecordDecl *D) {
Anders Carlsson118ce162009-07-18 21:48:39 +00001384 // Layout each field, for now, just sequentially, respecting alignment. In
1385 // the future, this will need to be tweakable by targets.
Mike Stump11289f42009-09-09 15:08:12 +00001386 for (RecordDecl::field_iterator Field = D->field_begin(),
Eli Friedman481673f2013-06-26 23:47:39 +00001387 FieldEnd = D->field_end(); Field != FieldEnd; ++Field)
David Blaikie40ed2972012-06-06 20:45:41 +00001388 LayoutField(*Field);
Anders Carlsson118ce162009-07-18 21:48:39 +00001389}
1390
Daniel Dunbar592a85c2010-05-27 02:25:46 +00001391void RecordLayoutBuilder::LayoutWideBitField(uint64_t FieldSize,
Argyrios Kyrtzidisca0d0cd2010-09-22 14:32:24 +00001392 uint64_t TypeSize,
1393 bool FieldPacked,
1394 const FieldDecl *D) {
David Blaikiebbafb8a2012-03-11 07:00:24 +00001395 assert(Context.getLangOpts().CPlusPlus &&
Anders Carlsson57235162010-04-16 15:57:11 +00001396 "Can only have wide bit-fields in C++!");
Daniel Dunbar592a85c2010-05-27 02:25:46 +00001397
Anders Carlsson57235162010-04-16 15:57:11 +00001398 // Itanium C++ ABI 2.4:
Daniel Dunbar592a85c2010-05-27 02:25:46 +00001399 // If sizeof(T)*8 < n, let T' be the largest integral POD type with
Anders Carlsson57235162010-04-16 15:57:11 +00001400 // sizeof(T')*8 <= n.
Daniel Dunbar592a85c2010-05-27 02:25:46 +00001401
Anders Carlsson57235162010-04-16 15:57:11 +00001402 QualType IntegralPODTypes[] = {
Daniel Dunbar592a85c2010-05-27 02:25:46 +00001403 Context.UnsignedCharTy, Context.UnsignedShortTy, Context.UnsignedIntTy,
Anders Carlsson57235162010-04-16 15:57:11 +00001404 Context.UnsignedLongTy, Context.UnsignedLongLongTy
1405 };
1406
Anders Carlsson57235162010-04-16 15:57:11 +00001407 QualType Type;
1408 for (unsigned I = 0, E = llvm::array_lengthof(IntegralPODTypes);
1409 I != E; ++I) {
1410 uint64_t Size = Context.getTypeSize(IntegralPODTypes[I]);
Anders Carlsson57235162010-04-16 15:57:11 +00001411
1412 if (Size > FieldSize)
1413 break;
1414
1415 Type = IntegralPODTypes[I];
1416 }
1417 assert(!Type.isNull() && "Did not find a type!");
Daniel Dunbar592a85c2010-05-27 02:25:46 +00001418
Ken Dyckdbe37f32011-03-01 01:36:00 +00001419 CharUnits TypeAlign = Context.getTypeAlignInChars(Type);
Anders Carlsson57235162010-04-16 15:57:11 +00001420
1421 // We're not going to use any of the unfilled bits in the last byte.
Eli Friedman2782dac2013-06-26 20:50:34 +00001422 UnfilledBitsInLastUnit = 0;
1423 LastBitfieldTypeSize = 0;
Anders Carlsson57235162010-04-16 15:57:11 +00001424
Anders Carlssonaad5fa82010-04-17 20:21:41 +00001425 uint64_t FieldOffset;
Eli Friedman2782dac2013-06-26 20:50:34 +00001426 uint64_t UnpaddedFieldOffset = getDataSizeInBits() - UnfilledBitsInLastUnit;
Daniel Dunbar592a85c2010-05-27 02:25:46 +00001427
Anders Carlsson57235162010-04-16 15:57:11 +00001428 if (IsUnion) {
Ken Dyckecfc7552011-02-24 01:13:28 +00001429 setDataSize(std::max(getDataSizeInBits(), FieldSize));
Anders Carlssonaad5fa82010-04-17 20:21:41 +00001430 FieldOffset = 0;
Anders Carlsson57235162010-04-16 15:57:11 +00001431 } else {
Chad Rosiere1a6a0e2011-08-05 22:38:04 +00001432 // The bitfield is allocated starting at the next offset aligned
1433 // appropriately for T', with length n bits.
Ken Dyckdbe37f32011-03-01 01:36:00 +00001434 FieldOffset = llvm::RoundUpToAlignment(getDataSizeInBits(),
1435 Context.toBits(TypeAlign));
Daniel Dunbar592a85c2010-05-27 02:25:46 +00001436
Anders Carlsson57235162010-04-16 15:57:11 +00001437 uint64_t NewSizeInBits = FieldOffset + FieldSize;
Daniel Dunbar592a85c2010-05-27 02:25:46 +00001438
Ken Dycka1a2e8d2011-03-10 02:00:35 +00001439 setDataSize(llvm::RoundUpToAlignment(NewSizeInBits,
Douglas Gregore8bbc122011-09-02 00:18:52 +00001440 Context.getTargetInfo().getCharAlign()));
Eli Friedman2782dac2013-06-26 20:50:34 +00001441 UnfilledBitsInLastUnit = getDataSizeInBits() - NewSizeInBits;
Anders Carlsson57235162010-04-16 15:57:11 +00001442 }
1443
1444 // Place this field at the current location.
1445 FieldOffsets.push_back(FieldOffset);
1446
Argyrios Kyrtzidisca0d0cd2010-09-22 14:32:24 +00001447 CheckFieldPadding(FieldOffset, UnpaddedFieldOffset, FieldOffset,
Ken Dyckdbe37f32011-03-01 01:36:00 +00001448 Context.toBits(TypeAlign), FieldPacked, D);
Argyrios Kyrtzidisca0d0cd2010-09-22 14:32:24 +00001449
Anders Carlsson57235162010-04-16 15:57:11 +00001450 // Update the size.
Ken Dyckecfc7552011-02-24 01:13:28 +00001451 setSize(std::max(getSizeInBits(), getDataSizeInBits()));
Daniel Dunbar592a85c2010-05-27 02:25:46 +00001452
Anders Carlsson57235162010-04-16 15:57:11 +00001453 // Remember max struct/class alignment.
Ken Dyckdbe37f32011-03-01 01:36:00 +00001454 UpdateAlignment(TypeAlign);
Anders Carlsson57235162010-04-16 15:57:11 +00001455}
1456
Anders Carlssonc2226202010-05-26 05:58:59 +00001457void RecordLayoutBuilder::LayoutBitField(const FieldDecl *D) {
Anders Carlsson07209442009-11-22 17:37:31 +00001458 bool FieldPacked = Packed || D->hasAttr<PackedAttr>();
Richard Smithcaf33902011-10-10 18:28:20 +00001459 uint64_t FieldSize = D->getBitWidthValue(Context);
Anders Carlsson5efc56e2010-04-16 15:07:51 +00001460 std::pair<uint64_t, unsigned> FieldInfo = Context.getTypeInfo(D->getType());
Anders Carlsson07209442009-11-22 17:37:31 +00001461 uint64_t TypeSize = FieldInfo.first;
1462 unsigned FieldAlign = FieldInfo.second;
Eli Friedman2782dac2013-06-26 20:50:34 +00001463
1464 if (IsMsStruct) {
1465 // The field alignment for integer types in ms_struct structs is
1466 // always the size.
Fariborz Jahanian7adbed62011-05-09 22:03:17 +00001467 FieldAlign = TypeSize;
Eli Friedman2782dac2013-06-26 20:50:34 +00001468 // Ignore zero-length bitfields after non-bitfields in ms_struct structs.
1469 if (!FieldSize && !LastBitfieldTypeSize)
1470 FieldAlign = 1;
1471 // If a bitfield is followed by a bitfield of a different size, don't
1472 // pack the bits together in ms_struct structs.
1473 if (LastBitfieldTypeSize != TypeSize) {
1474 UnfilledBitsInLastUnit = 0;
1475 LastBitfieldTypeSize = 0;
1476 }
1477 }
1478
1479 uint64_t UnpaddedFieldOffset = getDataSizeInBits() - UnfilledBitsInLastUnit;
1480 uint64_t FieldOffset = IsUnion ? 0 : UnpaddedFieldOffset;
Chad Rosier18903ee2011-08-04 01:21:14 +00001481
Eli Friedman481673f2013-06-26 23:47:39 +00001482 bool ZeroLengthBitfield = false;
1483 if (!Context.getTargetInfo().useBitFieldTypeAlignment() &&
1484 Context.getTargetInfo().useZeroLengthBitfieldAlignment() &&
1485 FieldSize == 0) {
Eli Friedman2782dac2013-06-26 20:50:34 +00001486 // The alignment of a zero-length bitfield affects the alignment
1487 // of the next member. The alignment is the max of the zero
1488 // length bitfield's alignment and a target specific fixed value.
Eli Friedman481673f2013-06-26 23:47:39 +00001489 ZeroLengthBitfield = true;
Eli Friedman2782dac2013-06-26 20:50:34 +00001490 unsigned ZeroLengthBitfieldBoundary =
1491 Context.getTargetInfo().getZeroLengthBitfieldBoundary();
1492 if (ZeroLengthBitfieldBoundary > FieldAlign)
1493 FieldAlign = ZeroLengthBitfieldBoundary;
Fariborz Jahanianfc0fe6e2011-05-03 20:21:04 +00001494 }
Daniel Dunbaraa423af2010-04-08 02:59:49 +00001495
Anders Carlsson57235162010-04-16 15:57:11 +00001496 if (FieldSize > TypeSize) {
Argyrios Kyrtzidisca0d0cd2010-09-22 14:32:24 +00001497 LayoutWideBitField(FieldSize, TypeSize, FieldPacked, D);
Anders Carlsson57235162010-04-16 15:57:11 +00001498 return;
1499 }
1500
Argyrios Kyrtzidisca0d0cd2010-09-22 14:32:24 +00001501 // The align if the field is not packed. This is to check if the attribute
1502 // was unnecessary (-Wpacked).
1503 unsigned UnpackedFieldAlign = FieldAlign;
1504 uint64_t UnpackedFieldOffset = FieldOffset;
Douglas Gregore8bbc122011-09-02 00:18:52 +00001505 if (!Context.getTargetInfo().useBitFieldTypeAlignment() && !ZeroLengthBitfield)
Argyrios Kyrtzidisca0d0cd2010-09-22 14:32:24 +00001506 UnpackedFieldAlign = 1;
1507
Chad Rosiere1a6a0e2011-08-05 22:38:04 +00001508 if (FieldPacked ||
Douglas Gregore8bbc122011-09-02 00:18:52 +00001509 (!Context.getTargetInfo().useBitFieldTypeAlignment() && !ZeroLengthBitfield))
Anders Carlsson07209442009-11-22 17:37:31 +00001510 FieldAlign = 1;
Alexis Huntdcfba7b2010-08-18 23:23:40 +00001511 FieldAlign = std::max(FieldAlign, D->getMaxAlignment());
Argyrios Kyrtzidisca0d0cd2010-09-22 14:32:24 +00001512 UnpackedFieldAlign = std::max(UnpackedFieldAlign, D->getMaxAlignment());
Anders Carlsson07209442009-11-22 17:37:31 +00001513
1514 // The maximum field alignment overrides the aligned attribute.
Eli Friedmana91d38a2011-12-02 02:38:48 +00001515 if (!MaxFieldAlignment.isZero() && FieldSize != 0) {
Ken Dyck02ced6f2011-02-17 01:49:42 +00001516 unsigned MaxFieldAlignmentInBits = Context.toBits(MaxFieldAlignment);
1517 FieldAlign = std::min(FieldAlign, MaxFieldAlignmentInBits);
1518 UnpackedFieldAlign = std::min(UnpackedFieldAlign, MaxFieldAlignmentInBits);
Argyrios Kyrtzidisca0d0cd2010-09-22 14:32:24 +00001519 }
Daniel Dunbaraa423af2010-04-08 02:59:49 +00001520
Eli Friedman2782dac2013-06-26 20:50:34 +00001521 // ms_struct bitfields always have to start at a round alignment.
1522 if (IsMsStruct && !LastBitfieldTypeSize) {
1523 FieldOffset = llvm::RoundUpToAlignment(FieldOffset, FieldAlign);
1524 UnpackedFieldOffset = llvm::RoundUpToAlignment(UnpackedFieldOffset,
1525 UnpackedFieldAlign);
1526 }
1527
Douglas Gregor44ba7892012-01-28 00:53:29 +00001528 // Check if we need to add padding to give the field the correct alignment.
1529 if (FieldSize == 0 ||
1530 (MaxFieldAlignment.isZero() &&
1531 (FieldOffset & (FieldAlign-1)) + FieldSize > TypeSize))
1532 FieldOffset = llvm::RoundUpToAlignment(FieldOffset, FieldAlign);
Daniel Dunbaraa423af2010-04-08 02:59:49 +00001533
Douglas Gregor44ba7892012-01-28 00:53:29 +00001534 if (FieldSize == 0 ||
1535 (MaxFieldAlignment.isZero() &&
1536 (UnpackedFieldOffset & (UnpackedFieldAlign-1)) + FieldSize > TypeSize))
1537 UnpackedFieldOffset = llvm::RoundUpToAlignment(UnpackedFieldOffset,
1538 UnpackedFieldAlign);
Argyrios Kyrtzidisca0d0cd2010-09-22 14:32:24 +00001539
Chad Rosiere1a6a0e2011-08-05 22:38:04 +00001540 // Padding members don't affect overall alignment, unless zero length bitfield
1541 // alignment is enabled.
Eli Friedman2782dac2013-06-26 20:50:34 +00001542 if (!D->getIdentifier() &&
1543 !Context.getTargetInfo().useZeroLengthBitfieldAlignment() &&
1544 !IsMsStruct)
Argyrios Kyrtzidisca0d0cd2010-09-22 14:32:24 +00001545 FieldAlign = UnpackedFieldAlign = 1;
Daniel Dunbaraa423af2010-04-08 02:59:49 +00001546
Douglas Gregor44ba7892012-01-28 00:53:29 +00001547 if (ExternalLayout)
1548 FieldOffset = updateExternalFieldOffset(D, FieldOffset);
1549
Anders Carlsson07209442009-11-22 17:37:31 +00001550 // Place this field at the current location.
1551 FieldOffsets.push_back(FieldOffset);
Daniel Dunbaraa423af2010-04-08 02:59:49 +00001552
Douglas Gregore9fc3772012-01-26 07:55:45 +00001553 if (!ExternalLayout)
1554 CheckFieldPadding(FieldOffset, UnpaddedFieldOffset, UnpackedFieldOffset,
1555 UnpackedFieldAlign, FieldPacked, D);
Argyrios Kyrtzidisca0d0cd2010-09-22 14:32:24 +00001556
Anders Carlssonba958402009-11-22 19:13:51 +00001557 // Update DataSize to include the last byte containing (part of) the bitfield.
1558 if (IsUnion) {
1559 // FIXME: I think FieldSize should be TypeSize here.
Ken Dyckecfc7552011-02-24 01:13:28 +00001560 setDataSize(std::max(getDataSizeInBits(), FieldSize));
Anders Carlssonba958402009-11-22 19:13:51 +00001561 } else {
Eli Friedman2782dac2013-06-26 20:50:34 +00001562 if (IsMsStruct && FieldSize) {
1563 // Under ms_struct, a bitfield always takes up space equal to the size
1564 // of the type. We can't just change the alignment computation on the
1565 // other codepath because of the way this interacts with #pragma pack:
1566 // in a packed struct, we need to allocate misaligned space in the
1567 // struct to hold the bitfield.
1568 if (!UnfilledBitsInLastUnit) {
1569 setDataSize(FieldOffset + TypeSize);
1570 UnfilledBitsInLastUnit = TypeSize - FieldSize;
1571 } else if (UnfilledBitsInLastUnit < FieldSize) {
1572 setDataSize(getDataSizeInBits() + TypeSize);
1573 UnfilledBitsInLastUnit = TypeSize - FieldSize;
1574 } else {
1575 UnfilledBitsInLastUnit -= FieldSize;
1576 }
1577 LastBitfieldTypeSize = TypeSize;
1578 } else {
1579 uint64_t NewSizeInBits = FieldOffset + FieldSize;
1580 uint64_t BitfieldAlignment = Context.getTargetInfo().getCharAlign();
1581 setDataSize(llvm::RoundUpToAlignment(NewSizeInBits, BitfieldAlignment));
1582 UnfilledBitsInLastUnit = getDataSizeInBits() - NewSizeInBits;
1583 LastBitfieldTypeSize = 0;
1584 }
Anders Carlssonba958402009-11-22 19:13:51 +00001585 }
Daniel Dunbaraa423af2010-04-08 02:59:49 +00001586
Anders Carlssonba958402009-11-22 19:13:51 +00001587 // Update the size.
Ken Dyckecfc7552011-02-24 01:13:28 +00001588 setSize(std::max(getSizeInBits(), getDataSizeInBits()));
Daniel Dunbaraa423af2010-04-08 02:59:49 +00001589
Anders Carlsson07209442009-11-22 17:37:31 +00001590 // Remember max struct/class alignment.
Ken Dyck85ef0432011-02-19 18:58:07 +00001591 UpdateAlignment(Context.toCharUnitsFromBits(FieldAlign),
1592 Context.toCharUnitsFromBits(UnpackedFieldAlign));
Anders Carlsson07209442009-11-22 17:37:31 +00001593}
1594
Douglas Gregore9fc3772012-01-26 07:55:45 +00001595void RecordLayoutBuilder::LayoutField(const FieldDecl *D) {
Anders Carlsson07209442009-11-22 17:37:31 +00001596 if (D->isBitField()) {
1597 LayoutBitField(D);
1598 return;
1599 }
1600
Eli Friedman2782dac2013-06-26 20:50:34 +00001601 uint64_t UnpaddedFieldOffset = getDataSizeInBits() - UnfilledBitsInLastUnit;
Argyrios Kyrtzidisca0d0cd2010-09-22 14:32:24 +00001602
Anders Carlssonba958402009-11-22 19:13:51 +00001603 // Reset the unfilled bits.
Eli Friedman2782dac2013-06-26 20:50:34 +00001604 UnfilledBitsInLastUnit = 0;
1605 LastBitfieldTypeSize = 0;
Anders Carlssonba958402009-11-22 19:13:51 +00001606
Anders Carlsson07209442009-11-22 17:37:31 +00001607 bool FieldPacked = Packed || D->hasAttr<PackedAttr>();
Ken Dyck6d90e892011-02-20 02:06:09 +00001608 CharUnits FieldOffset =
Ken Dyckecfc7552011-02-24 01:13:28 +00001609 IsUnion ? CharUnits::Zero() : getDataSize();
Ken Dyck6d90e892011-02-20 02:06:09 +00001610 CharUnits FieldSize;
1611 CharUnits FieldAlign;
Daniel Dunbaraa423af2010-04-08 02:59:49 +00001612
Anders Carlsson07209442009-11-22 17:37:31 +00001613 if (D->getType()->isIncompleteArrayType()) {
1614 // This is a flexible array member; we can't directly
1615 // query getTypeInfo about these, so we figure it out here.
1616 // Flexible array members don't have any size, but they
1617 // have to be aligned appropriately for their element type.
Ken Dyck6d90e892011-02-20 02:06:09 +00001618 FieldSize = CharUnits::Zero();
Anders Carlsson5efc56e2010-04-16 15:07:51 +00001619 const ArrayType* ATy = Context.getAsArrayType(D->getType());
Ken Dyck6d90e892011-02-20 02:06:09 +00001620 FieldAlign = Context.getTypeAlignInChars(ATy->getElementType());
Anders Carlsson07209442009-11-22 17:37:31 +00001621 } else if (const ReferenceType *RT = D->getType()->getAs<ReferenceType>()) {
1622 unsigned AS = RT->getPointeeType().getAddressSpace();
Ken Dyck6d90e892011-02-20 02:06:09 +00001623 FieldSize =
Douglas Gregore8bbc122011-09-02 00:18:52 +00001624 Context.toCharUnitsFromBits(Context.getTargetInfo().getPointerWidth(AS));
Ken Dyck6d90e892011-02-20 02:06:09 +00001625 FieldAlign =
Douglas Gregore8bbc122011-09-02 00:18:52 +00001626 Context.toCharUnitsFromBits(Context.getTargetInfo().getPointerAlign(AS));
Anders Carlsson79474332009-07-18 20:20:21 +00001627 } else {
Ken Dyck6d90e892011-02-20 02:06:09 +00001628 std::pair<CharUnits, CharUnits> FieldInfo =
1629 Context.getTypeInfoInChars(D->getType());
Anders Carlsson07209442009-11-22 17:37:31 +00001630 FieldSize = FieldInfo.first;
1631 FieldAlign = FieldInfo.second;
Chad Rosier18903ee2011-08-04 01:21:14 +00001632
Eli Friedman9ee2d0472012-10-12 23:29:20 +00001633 if (IsMsStruct) {
Douglas Gregordbe39272011-02-01 15:15:22 +00001634 // If MS bitfield layout is required, figure out what type is being
1635 // laid out and align the field to the width of that type.
1636
1637 // Resolve all typedefs down to their base type and round up the field
1638 // alignment if necessary.
1639 QualType T = Context.getBaseElementType(D->getType());
1640 if (const BuiltinType *BTy = T->getAs<BuiltinType>()) {
Ken Dyck6d90e892011-02-20 02:06:09 +00001641 CharUnits TypeSize = Context.getTypeSizeInChars(BTy);
Douglas Gregordbe39272011-02-01 15:15:22 +00001642 if (TypeSize > FieldAlign)
1643 FieldAlign = TypeSize;
1644 }
1645 }
Anders Carlsson79474332009-07-18 20:20:21 +00001646 }
Mike Stump11289f42009-09-09 15:08:12 +00001647
Argyrios Kyrtzidisca0d0cd2010-09-22 14:32:24 +00001648 // The align if the field is not packed. This is to check if the attribute
1649 // was unnecessary (-Wpacked).
Ken Dyck6d90e892011-02-20 02:06:09 +00001650 CharUnits UnpackedFieldAlign = FieldAlign;
1651 CharUnits UnpackedFieldOffset = FieldOffset;
Argyrios Kyrtzidisca0d0cd2010-09-22 14:32:24 +00001652
Anders Carlsson07209442009-11-22 17:37:31 +00001653 if (FieldPacked)
Ken Dyck6d90e892011-02-20 02:06:09 +00001654 FieldAlign = CharUnits::One();
1655 CharUnits MaxAlignmentInChars =
1656 Context.toCharUnitsFromBits(D->getMaxAlignment());
1657 FieldAlign = std::max(FieldAlign, MaxAlignmentInChars);
1658 UnpackedFieldAlign = std::max(UnpackedFieldAlign, MaxAlignmentInChars);
Anders Carlsson07209442009-11-22 17:37:31 +00001659
1660 // The maximum field alignment overrides the aligned attribute.
Ken Dyck02ced6f2011-02-17 01:49:42 +00001661 if (!MaxFieldAlignment.isZero()) {
Ken Dyck6d90e892011-02-20 02:06:09 +00001662 FieldAlign = std::min(FieldAlign, MaxFieldAlignment);
1663 UnpackedFieldAlign = std::min(UnpackedFieldAlign, MaxFieldAlignment);
Argyrios Kyrtzidisca0d0cd2010-09-22 14:32:24 +00001664 }
Anders Carlsson07209442009-11-22 17:37:31 +00001665
Douglas Gregor44ba7892012-01-28 00:53:29 +00001666 // Round up the current record size to the field's alignment boundary.
1667 FieldOffset = FieldOffset.RoundUpToAlignment(FieldAlign);
1668 UnpackedFieldOffset =
1669 UnpackedFieldOffset.RoundUpToAlignment(UnpackedFieldAlign);
1670
1671 if (ExternalLayout) {
1672 FieldOffset = Context.toCharUnitsFromBits(
1673 updateExternalFieldOffset(D, Context.toBits(FieldOffset)));
1674
1675 if (!IsUnion && EmptySubobjects) {
1676 // Record the fact that we're placing a field at this offset.
1677 bool Allowed = EmptySubobjects->CanPlaceFieldAtOffset(D, FieldOffset);
1678 (void)Allowed;
1679 assert(Allowed && "Externally-placed field cannot be placed here");
1680 }
1681 } else {
Douglas Gregore9fc3772012-01-26 07:55:45 +00001682 if (!IsUnion && EmptySubobjects) {
1683 // Check if we can place the field at this offset.
1684 while (!EmptySubobjects->CanPlaceFieldAtOffset(D, FieldOffset)) {
1685 // We couldn't place the field at the offset. Try again at a new offset.
1686 FieldOffset += FieldAlign;
1687 }
Anders Carlsson07209442009-11-22 17:37:31 +00001688 }
Anders Carlsson07209442009-11-22 17:37:31 +00001689 }
Douglas Gregore9fc3772012-01-26 07:55:45 +00001690
Anders Carlsson79474332009-07-18 20:20:21 +00001691 // Place this field at the current location.
Ken Dyck6d90e892011-02-20 02:06:09 +00001692 FieldOffsets.push_back(Context.toBits(FieldOffset));
Mike Stump11289f42009-09-09 15:08:12 +00001693
Douglas Gregore9fc3772012-01-26 07:55:45 +00001694 if (!ExternalLayout)
1695 CheckFieldPadding(Context.toBits(FieldOffset), UnpaddedFieldOffset,
1696 Context.toBits(UnpackedFieldOffset),
1697 Context.toBits(UnpackedFieldAlign), FieldPacked, D);
Argyrios Kyrtzidisca0d0cd2010-09-22 14:32:24 +00001698
Anders Carlsson79474332009-07-18 20:20:21 +00001699 // Reserve space for this field.
Eli Friedman43f18342012-01-12 23:27:03 +00001700 uint64_t FieldSizeInBits = Context.toBits(FieldSize);
Anders Carlsson79474332009-07-18 20:20:21 +00001701 if (IsUnion)
Eli Friedman2e108372012-01-12 23:48:56 +00001702 setDataSize(std::max(getDataSizeInBits(), FieldSizeInBits));
Anders Carlsson79474332009-07-18 20:20:21 +00001703 else
Eli Friedman2e108372012-01-12 23:48:56 +00001704 setDataSize(FieldOffset + FieldSize);
Mike Stump11289f42009-09-09 15:08:12 +00001705
Eli Friedman2e108372012-01-12 23:48:56 +00001706 // Update the size.
1707 setSize(std::max(getSizeInBits(), getDataSizeInBits()));
Mike Stump11289f42009-09-09 15:08:12 +00001708
Anders Carlsson79474332009-07-18 20:20:21 +00001709 // Remember max struct/class alignment.
Ken Dyck6d90e892011-02-20 02:06:09 +00001710 UpdateAlignment(FieldAlign, UnpackedFieldAlign);
Anders Carlsson79474332009-07-18 20:20:21 +00001711}
1712
Argyrios Kyrtzidisca0d0cd2010-09-22 14:32:24 +00001713void RecordLayoutBuilder::FinishLayout(const NamedDecl *D) {
Anders Carlsson79474332009-07-18 20:20:21 +00001714 // In C++, records cannot be of size 0.
David Blaikiebbafb8a2012-03-11 07:00:24 +00001715 if (Context.getLangOpts().CPlusPlus && getSizeInBits() == 0) {
Fariborz Jahanian09b23312011-02-02 19:36:18 +00001716 if (const CXXRecordDecl *RD = dyn_cast<CXXRecordDecl>(D)) {
1717 // Compatibility with gcc requires a class (pod or non-pod)
1718 // which is not empty but of size 0; such as having fields of
1719 // array of zero-length, remains of Size 0
1720 if (RD->isEmpty())
Ken Dyck1b4420e2011-02-28 02:01:38 +00001721 setSize(CharUnits::One());
Fariborz Jahanian09b23312011-02-02 19:36:18 +00001722 }
1723 else
Ken Dyck1b4420e2011-02-28 02:01:38 +00001724 setSize(CharUnits::One());
Fariborz Jahanian09b23312011-02-02 19:36:18 +00001725 }
Eli Friedman83a12582011-12-01 00:37:01 +00001726
Douglas Gregor1423a5c2012-10-26 22:31:14 +00001727 // Finally, round the size of the record up to the alignment of the
1728 // record itself.
Eli Friedman2782dac2013-06-26 20:50:34 +00001729 uint64_t UnpaddedSize = getSizeInBits() - UnfilledBitsInLastUnit;
Douglas Gregor1423a5c2012-10-26 22:31:14 +00001730 uint64_t UnpackedSizeInBits =
1731 llvm::RoundUpToAlignment(getSizeInBits(),
1732 Context.toBits(UnpackedAlignment));
1733 CharUnits UnpackedSize = Context.toCharUnitsFromBits(UnpackedSizeInBits);
1734 uint64_t RoundedSize
1735 = llvm::RoundUpToAlignment(getSizeInBits(), Context.toBits(Alignment));
1736
1737 if (ExternalLayout) {
1738 // If we're inferring alignment, and the external size is smaller than
1739 // our size after we've rounded up to alignment, conservatively set the
1740 // alignment to 1.
1741 if (InferAlignment && ExternalSize < RoundedSize) {
1742 Alignment = CharUnits::One();
1743 InferAlignment = false;
1744 }
1745 setSize(ExternalSize);
1746 return;
1747 }
1748
Douglas Gregor1423a5c2012-10-26 22:31:14 +00001749 // Set the size to the final size.
1750 setSize(RoundedSize);
Argyrios Kyrtzidisca0d0cd2010-09-22 14:32:24 +00001751
Douglas Gregore8bbc122011-09-02 00:18:52 +00001752 unsigned CharBitNum = Context.getTargetInfo().getCharWidth();
Argyrios Kyrtzidisca0d0cd2010-09-22 14:32:24 +00001753 if (const RecordDecl *RD = dyn_cast<RecordDecl>(D)) {
1754 // Warn if padding was introduced to the struct/class/union.
Ken Dyckecfc7552011-02-24 01:13:28 +00001755 if (getSizeInBits() > UnpaddedSize) {
1756 unsigned PadSize = getSizeInBits() - UnpaddedSize;
Argyrios Kyrtzidisca0d0cd2010-09-22 14:32:24 +00001757 bool InBits = true;
1758 if (PadSize % CharBitNum == 0) {
1759 PadSize = PadSize / CharBitNum;
1760 InBits = false;
1761 }
1762 Diag(RD->getLocation(), diag::warn_padded_struct_size)
1763 << Context.getTypeDeclType(RD)
1764 << PadSize
1765 << (InBits ? 1 : 0) /*(byte|bit)*/ << (PadSize > 1); // plural or not
1766 }
1767
1768 // Warn if we packed it unnecessarily. If the alignment is 1 byte don't
1769 // bother since there won't be alignment issues.
Ken Dyckecfc7552011-02-24 01:13:28 +00001770 if (Packed && UnpackedAlignment > CharUnits::One() &&
Ken Dyck1b4420e2011-02-28 02:01:38 +00001771 getSize() == UnpackedSize)
Argyrios Kyrtzidisca0d0cd2010-09-22 14:32:24 +00001772 Diag(D->getLocation(), diag::warn_unnecessary_packed)
1773 << Context.getTypeDeclType(RD);
1774 }
Anders Carlsson79474332009-07-18 20:20:21 +00001775}
1776
Ken Dyck85ef0432011-02-19 18:58:07 +00001777void RecordLayoutBuilder::UpdateAlignment(CharUnits NewAlignment,
1778 CharUnits UnpackedNewAlignment) {
Douglas Gregore9fc3772012-01-26 07:55:45 +00001779 // The alignment is not modified when using 'mac68k' alignment or when
Douglas Gregor44ba7892012-01-28 00:53:29 +00001780 // we have an externally-supplied layout that also provides overall alignment.
1781 if (IsMac68kAlign || (ExternalLayout && !InferAlignment))
Daniel Dunbar6da10982010-05-27 05:45:51 +00001782 return;
1783
Ken Dyck85ef0432011-02-19 18:58:07 +00001784 if (NewAlignment > Alignment) {
1785 assert(llvm::isPowerOf2_32(NewAlignment.getQuantity() &&
1786 "Alignment not a power of 2"));
1787 Alignment = NewAlignment;
Argyrios Kyrtzidisca0d0cd2010-09-22 14:32:24 +00001788 }
1789
Ken Dyck85ef0432011-02-19 18:58:07 +00001790 if (UnpackedNewAlignment > UnpackedAlignment) {
1791 assert(llvm::isPowerOf2_32(UnpackedNewAlignment.getQuantity() &&
Argyrios Kyrtzidisca0d0cd2010-09-22 14:32:24 +00001792 "Alignment not a power of 2"));
Ken Dyck85ef0432011-02-19 18:58:07 +00001793 UnpackedAlignment = UnpackedNewAlignment;
Argyrios Kyrtzidisca0d0cd2010-09-22 14:32:24 +00001794 }
1795}
1796
Douglas Gregor44ba7892012-01-28 00:53:29 +00001797uint64_t
1798RecordLayoutBuilder::updateExternalFieldOffset(const FieldDecl *Field,
1799 uint64_t ComputedOffset) {
1800 assert(ExternalFieldOffsets.find(Field) != ExternalFieldOffsets.end() &&
1801 "Field does not have an external offset");
1802
1803 uint64_t ExternalFieldOffset = ExternalFieldOffsets[Field];
1804
1805 if (InferAlignment && ExternalFieldOffset < ComputedOffset) {
1806 // The externally-supplied field offset is before the field offset we
1807 // computed. Assume that the structure is packed.
Douglas Gregor1423a5c2012-10-26 22:31:14 +00001808 Alignment = CharUnits::One();
Douglas Gregor44ba7892012-01-28 00:53:29 +00001809 InferAlignment = false;
1810 }
1811
1812 // Use the externally-supplied field offset.
Benjamin Kramer648e68b2012-08-31 22:14:25 +00001813 return ExternalFieldOffset;
1814}
1815
1816/// \brief Get diagnostic %select index for tag kind for
1817/// field padding diagnostic message.
1818/// WARNING: Indexes apply to particular diagnostics only!
1819///
1820/// \returns diagnostic %select index.
1821static unsigned getPaddingDiagFromTagKind(TagTypeKind Tag) {
1822 switch (Tag) {
1823 case TTK_Struct: return 0;
1824 case TTK_Interface: return 1;
1825 case TTK_Class: return 2;
1826 default: llvm_unreachable("Invalid tag kind for field padding diagnostic!");
1827 }
1828}
1829
1830void RecordLayoutBuilder::CheckFieldPadding(uint64_t Offset,
1831 uint64_t UnpaddedOffset,
1832 uint64_t UnpackedOffset,
Argyrios Kyrtzidisca0d0cd2010-09-22 14:32:24 +00001833 unsigned UnpackedAlign,
1834 bool isPacked,
1835 const FieldDecl *D) {
1836 // We let objc ivars without warning, objc interfaces generally are not used
1837 // for padding tricks.
1838 if (isa<ObjCIvarDecl>(D))
Anders Carlsson79474332009-07-18 20:20:21 +00001839 return;
Mike Stump11289f42009-09-09 15:08:12 +00001840
Ted Kremenekfed48af2011-09-06 19:40:45 +00001841 // Don't warn about structs created without a SourceLocation. This can
1842 // be done by clients of the AST, such as codegen.
1843 if (D->getLocation().isInvalid())
1844 return;
1845
Douglas Gregore8bbc122011-09-02 00:18:52 +00001846 unsigned CharBitNum = Context.getTargetInfo().getCharWidth();
Mike Stump11289f42009-09-09 15:08:12 +00001847
Argyrios Kyrtzidisca0d0cd2010-09-22 14:32:24 +00001848 // Warn if padding was introduced to the struct/class.
1849 if (!IsUnion && Offset > UnpaddedOffset) {
1850 unsigned PadSize = Offset - UnpaddedOffset;
1851 bool InBits = true;
1852 if (PadSize % CharBitNum == 0) {
1853 PadSize = PadSize / CharBitNum;
1854 InBits = false;
Benjamin Kramer648e68b2012-08-31 22:14:25 +00001855 }
1856 if (D->getIdentifier())
1857 Diag(D->getLocation(), diag::warn_padded_struct_field)
1858 << getPaddingDiagFromTagKind(D->getParent()->getTagKind())
1859 << Context.getTypeDeclType(D->getParent())
1860 << PadSize
1861 << (InBits ? 1 : 0) /*(byte|bit)*/ << (PadSize > 1) // plural or not
1862 << D->getIdentifier();
1863 else
1864 Diag(D->getLocation(), diag::warn_padded_struct_anon_field)
1865 << getPaddingDiagFromTagKind(D->getParent()->getTagKind())
1866 << Context.getTypeDeclType(D->getParent())
1867 << PadSize
1868 << (InBits ? 1 : 0) /*(byte|bit)*/ << (PadSize > 1); // plural or not
Argyrios Kyrtzidisca0d0cd2010-09-22 14:32:24 +00001869 }
1870
1871 // Warn if we packed it unnecessarily. If the alignment is 1 byte don't
1872 // bother since there won't be alignment issues.
1873 if (isPacked && UnpackedAlign > CharBitNum && Offset == UnpackedOffset)
1874 Diag(D->getLocation(), diag::warn_unnecessary_packed)
1875 << D->getIdentifier();
Anders Carlsson79474332009-07-18 20:20:21 +00001876}
Mike Stump11289f42009-09-09 15:08:12 +00001877
John McCall6bd2a892013-01-25 22:31:03 +00001878static const CXXMethodDecl *computeKeyFunction(ASTContext &Context,
1879 const CXXRecordDecl *RD) {
Daniel Dunbarccabe482010-04-19 20:44:53 +00001880 // If a class isn't polymorphic it doesn't have a key function.
Anders Carlsson5ebf8b42009-12-07 04:35:11 +00001881 if (!RD->isPolymorphic())
Anders Carlssonb1d3f7c2009-11-30 23:41:22 +00001882 return 0;
Eli Friedmanf2c79b62009-12-08 03:56:49 +00001883
Eli Friedman300f55d2011-06-10 21:53:06 +00001884 // A class that is not externally visible doesn't have a key function. (Or
Eli Friedmanf2c79b62009-12-08 03:56:49 +00001885 // at least, there's no point to assigning a key function to such a class;
1886 // this doesn't affect the ABI.)
Rafael Espindola3ae00052013-05-13 00:12:11 +00001887 if (!RD->isExternallyVisible())
Eli Friedmanf2c79b62009-12-08 03:56:49 +00001888 return 0;
1889
Argyrios Kyrtzidis8c64bbe2010-10-13 02:39:41 +00001890 // Template instantiations don't have key functions,see Itanium C++ ABI 5.2.6.
1891 // Same behavior as GCC.
1892 TemplateSpecializationKind TSK = RD->getTemplateSpecializationKind();
1893 if (TSK == TSK_ImplicitInstantiation ||
1894 TSK == TSK_ExplicitInstantiationDefinition)
1895 return 0;
1896
John McCall6bd2a892013-01-25 22:31:03 +00001897 bool allowInlineFunctions =
1898 Context.getTargetInfo().getCXXABI().canKeyFunctionBeInline();
1899
Daniel Dunbaraa423af2010-04-08 02:59:49 +00001900 for (CXXRecordDecl::method_iterator I = RD->method_begin(),
1901 E = RD->method_end(); I != E; ++I) {
David Blaikie40ed2972012-06-06 20:45:41 +00001902 const CXXMethodDecl *MD = *I;
Daniel Dunbaraa423af2010-04-08 02:59:49 +00001903
Anders Carlssonb1d3f7c2009-11-30 23:41:22 +00001904 if (!MD->isVirtual())
1905 continue;
Daniel Dunbaraa423af2010-04-08 02:59:49 +00001906
Anders Carlssonb1d3f7c2009-11-30 23:41:22 +00001907 if (MD->isPure())
1908 continue;
Eli Friedmanf2c79b62009-12-08 03:56:49 +00001909
Anders Carlssonf98849e2009-12-02 17:15:43 +00001910 // Ignore implicit member functions, they are always marked as inline, but
1911 // they don't have a body until they're defined.
1912 if (MD->isImplicit())
1913 continue;
Daniel Dunbaraa423af2010-04-08 02:59:49 +00001914
Douglas Gregora318efd2010-01-05 19:06:31 +00001915 if (MD->isInlineSpecified())
1916 continue;
Eli Friedman71a26d82009-12-06 20:50:05 +00001917
1918 if (MD->hasInlineBody())
Anders Carlssonb1d3f7c2009-11-30 23:41:22 +00001919 continue;
Daniel Dunbaraa423af2010-04-08 02:59:49 +00001920
Benjamin Kramer4a902082012-08-03 15:43:22 +00001921 // Ignore inline deleted or defaulted functions.
Benjamin Kramer73d1be72012-08-03 08:39:58 +00001922 if (!MD->isUserProvided())
1923 continue;
1924
John McCall6bd2a892013-01-25 22:31:03 +00001925 // In certain ABIs, ignore functions with out-of-line inline definitions.
1926 if (!allowInlineFunctions) {
1927 const FunctionDecl *Def;
1928 if (MD->hasBody(Def) && Def->isInlineSpecified())
1929 continue;
1930 }
1931
Anders Carlssonb1d3f7c2009-11-30 23:41:22 +00001932 // We found it.
1933 return MD;
1934 }
Daniel Dunbaraa423af2010-04-08 02:59:49 +00001935
Anders Carlssonb1d3f7c2009-11-30 23:41:22 +00001936 return 0;
1937}
1938
Argyrios Kyrtzidisca0d0cd2010-09-22 14:32:24 +00001939DiagnosticBuilder
1940RecordLayoutBuilder::Diag(SourceLocation Loc, unsigned DiagID) {
Argyrios Kyrtzidisd0040642010-11-18 20:06:41 +00001941 return Context.getDiagnostics().Report(Loc, DiagID);
Argyrios Kyrtzidisca0d0cd2010-09-22 14:32:24 +00001942}
1943
John McCall5c1f1d02013-01-29 01:14:22 +00001944/// Does the target C++ ABI require us to skip over the tail-padding
1945/// of the given class (considering it as a base class) when allocating
1946/// objects?
1947static bool mustSkipTailPadding(TargetCXXABI ABI, const CXXRecordDecl *RD) {
1948 switch (ABI.getTailPaddingUseRules()) {
1949 case TargetCXXABI::AlwaysUseTailPadding:
1950 return false;
1951
1952 case TargetCXXABI::UseTailPaddingUnlessPOD03:
1953 // FIXME: To the extent that this is meant to cover the Itanium ABI
1954 // rules, we should implement the restrictions about over-sized
1955 // bitfields:
1956 //
1957 // http://mentorembedded.github.com/cxx-abi/abi.html#POD :
1958 // In general, a type is considered a POD for the purposes of
1959 // layout if it is a POD type (in the sense of ISO C++
1960 // [basic.types]). However, a POD-struct or POD-union (in the
1961 // sense of ISO C++ [class]) with a bitfield member whose
1962 // declared width is wider than the declared type of the
1963 // bitfield is not a POD for the purpose of layout. Similarly,
1964 // an array type is not a POD for the purpose of layout if the
1965 // element type of the array is not a POD for the purpose of
1966 // layout.
1967 //
1968 // Where references to the ISO C++ are made in this paragraph,
1969 // the Technical Corrigendum 1 version of the standard is
1970 // intended.
1971 return RD->isPOD();
1972
1973 case TargetCXXABI::UseTailPaddingUnlessPOD11:
1974 // This is equivalent to RD->getTypeForDecl().isCXX11PODType(),
1975 // but with a lot of abstraction penalty stripped off. This does
1976 // assume that these properties are set correctly even in C++98
1977 // mode; fortunately, that is true because we want to assign
1978 // consistently semantics to the type-traits intrinsics (or at
1979 // least as many of them as possible).
1980 return RD->isTrivial() && RD->isStandardLayout();
1981 }
1982
1983 llvm_unreachable("bad tail-padding use kind");
1984}
1985
Warren Hunt8f8bad72013-10-11 20:19:00 +00001986static bool isMsLayout(const RecordDecl* D) {
Warren Hunt55d8e822013-10-23 23:53:07 +00001987 return D->getASTContext().getTargetInfo().getCXXABI().isMicrosoft();
Warren Hunt8f8bad72013-10-11 20:19:00 +00001988}
1989
1990// This section contains an implementation of struct layout that is, up to the
1991// included tests, compatible with cl.exe (2012). The layout produced is
1992// significantly different than those produced by the Itanium ABI. Here we note
1993// the most important differences.
1994//
1995// * The alignment of bitfields in unions is ignored when computing the
1996// alignment of the union.
1997// * The existance of zero-width bitfield that occurs after anything other than
1998// a non-zero length bitfield is ignored.
1999// * The Itanium equivalent vtable pointers are split into a vfptr (virtual
2000// function pointer) and a vbptr (virtual base pointer). They can each be
Warren Hunt55d8e822013-10-23 23:53:07 +00002001// shared with a, non-virtual bases. These bases need not be the same. vfptrs
2002// always occur at offset 0. vbptrs can occur at an
Warren Hunt8f8bad72013-10-11 20:19:00 +00002003// arbitrary offset and are placed after non-virtual bases but before fields.
2004// * Virtual bases sometimes require a 'vtordisp' field that is laid out before
2005// the virtual base and is used in conjunction with virtual overrides during
2006// construction and destruction.
2007// * vfptrs are allocated in a block of memory equal to the alignment of the
Warren Hunt55d8e822013-10-23 23:53:07 +00002008// fields and non-virtual bases at offset 0 in 32 bit mode and in a pointer
2009// sized block of memory in 64 bit mode.
Warren Hunt8f8bad72013-10-11 20:19:00 +00002010// * vbptrs are allocated in a block of memory equal to the alignment of the
Warren Hunt55d8e822013-10-23 23:53:07 +00002011// fields and non-virtual bases. This block is at a potentially unaligned
2012// offset. If the allocation slot is unaligned and the alignment is less than
2013// or equal to the pointer size, additional space is allocated so that the
2014// pointer can be aligned properly. This causes very strange effects on the
2015// placement of objects after the allocated block. (see the code).
Warren Hunt8f8bad72013-10-11 20:19:00 +00002016// * vtordisps are allocated in a block of memory with size and alignment equal
2017// to the alignment of the completed structure (before applying __declspec(
Warren Hunt55d8e822013-10-23 23:53:07 +00002018// align())). The vtordisp always occur at the end of the allocation block,
2019// immediately prior to the virtual base.
Warren Hunt8f8bad72013-10-11 20:19:00 +00002020// * The last zero sized non-virtual base is allocated after the placement of
2021// vbptr if one exists and can be placed at the end of the struct, potentially
2022// aliasing either the first member or another struct allocated after this
2023// one.
2024// * The last zero size virtual base may be placed at the end of the struct.
2025// and can potentially alias a zero sized type in the next struct.
2026
2027namespace {
2028struct MicrosoftRecordLayoutBuilder {
2029 typedef llvm::DenseMap<const CXXRecordDecl *, CharUnits> BaseOffsetsMapTy;
2030 MicrosoftRecordLayoutBuilder(const ASTContext &Context) : Context(Context) {}
2031private:
2032 MicrosoftRecordLayoutBuilder(const MicrosoftRecordLayoutBuilder &)
2033 LLVM_DELETED_FUNCTION;
2034 void operator=(const MicrosoftRecordLayoutBuilder &) LLVM_DELETED_FUNCTION;
2035public:
2036
2037 void layout(const RecordDecl *RD);
2038 void cxxLayout(const CXXRecordDecl *RD);
2039 /// \brief Initializes size and alignment and honors some flags.
2040 void initializeLayout(const RecordDecl *RD);
2041 /// \brief Initialized C++ layout, compute alignment and virtual alignment and
2042 /// existance of vfptrs and vbptrs. Alignment is needed before the vfptr is
2043 /// laid out.
2044 void initializeCXXLayout(const CXXRecordDecl *RD);
2045 void layoutVFPtr(const CXXRecordDecl *RD);
2046 void layoutNonVirtualBases(const CXXRecordDecl *RD);
2047 void layoutNonVirtualBase(const CXXRecordDecl *RD);
2048 void layoutVBPtr(const CXXRecordDecl *RD);
2049 /// \brief Lays out the fields of the record. Also rounds size up to
2050 /// alignment.
2051 void layoutFields(const RecordDecl *RD);
2052 void layoutField(const FieldDecl *FD);
2053 void layoutBitField(const FieldDecl *FD);
2054 /// \brief Lays out a single zero-width bit-field in the record and handles
2055 /// special cases associated with zero-width bit-fields.
2056 void layoutZeroWidthBitField(const FieldDecl *FD);
2057 void layoutVirtualBases(const CXXRecordDecl *RD);
2058 void layoutVirtualBase(const CXXRecordDecl *RD, bool HasVtordisp);
2059 /// \brief Flushes the lazy virtual base and conditionally rounds up to
2060 /// alignment.
2061 void finalizeCXXLayout(const CXXRecordDecl *RD);
2062 void honorDeclspecAlign(const RecordDecl *RD);
2063
2064 /// \brief Updates the alignment of the type. This function doesn't take any
2065 /// properties (such as packedness) into account. getAdjustedFieldInfo()
2066 /// adjustes for packedness.
2067 void updateAlignment(CharUnits NewAlignment) {
2068 Alignment = std::max(Alignment, NewAlignment);
2069 }
2070 /// \brief Gets the size and alignment taking attributes into account.
2071 std::pair<CharUnits, CharUnits> getAdjustedFieldInfo(const FieldDecl *FD);
2072 /// \brief Places a field at offset 0.
2073 void placeFieldAtZero() { FieldOffsets.push_back(0); }
2074 /// \brief Places a field at an offset in CharUnits.
2075 void placeFieldAtOffset(CharUnits FieldOffset) {
2076 FieldOffsets.push_back(Context.toBits(FieldOffset));
2077 }
2078 /// \brief Places a bitfield at a bit offset.
2079 void placeFieldAtBitOffset(uint64_t FieldOffset) {
2080 FieldOffsets.push_back(FieldOffset);
2081 }
2082 /// \brief Compute the set of virtual bases for which vtordisps are required.
2083 llvm::SmallPtrSet<const CXXRecordDecl *, 2>
2084 computeVtorDispSet(const CXXRecordDecl *RD);
2085
2086 const ASTContext &Context;
2087 /// \brief The size of the record being laid out.
2088 CharUnits Size;
2089 /// \brief The current alignment of the record layout.
2090 CharUnits Alignment;
2091 /// \brief The collection of field offsets.
2092 SmallVector<uint64_t, 16> FieldOffsets;
2093 /// \brief The maximum allowed field alignment. This is set by #pragma pack.
2094 CharUnits MaxFieldAlignment;
2095 /// \brief Alignment does not occur for virtual bases unless something
2096 /// forces it to by explicitly using __declspec(align())
2097 bool AlignAfterVBases : 1;
2098 bool IsUnion : 1;
2099 /// \brief True if the last field laid out was a bitfield and was not 0
2100 /// width.
2101 bool LastFieldIsNonZeroWidthBitfield : 1;
2102 /// \brief The size of the allocation of the currently active bitfield.
2103 /// This value isn't meaningful unless LastFieldIsNonZeroWidthBitfield
2104 /// is true.
2105 CharUnits CurrentBitfieldSize;
2106 /// \brief The number of remaining bits in our last bitfield allocation.
2107 /// This value isn't meaningful unless LastFieldIsNonZeroWidthBitfield is
2108 /// true.
2109 unsigned RemainingBitsInField;
2110
2111 /// \brief The data alignment of the record layout.
2112 CharUnits DataSize;
2113 /// \brief The alignment of the non-virtual portion of the record layout
Warren Hunt55d8e822013-10-23 23:53:07 +00002114 /// without the impact of the virtual pointers.
2115 /// Only used for C++ layouts.
2116 CharUnits BasesAndFieldsAlignment;
2117 /// \brief The alignment of the non-virtual portion of the record layout
2118 /// Only used for C++ layouts.
Warren Hunt8f8bad72013-10-11 20:19:00 +00002119 CharUnits NonVirtualAlignment;
2120 /// \brief The additional alignment imposed by the virtual bases.
2121 CharUnits VirtualAlignment;
2122 /// \brief The primary base class (if one exists).
2123 const CXXRecordDecl *PrimaryBase;
2124 /// \brief The class we share our vb-pointer with.
2125 const CXXRecordDecl *SharedVBPtrBase;
2126 /// \brief True if the class has a (not necessarily its own) vftable pointer.
2127 bool HasVFPtr : 1;
2128 /// \brief True if the class has a (not necessarily its own) vbtable pointer.
2129 bool HasVBPtr : 1;
2130 /// \brief Offset to the virtual base table pointer (if one exists).
2131 CharUnits VBPtrOffset;
2132 /// \brief Base classes and their offsets in the record.
2133 BaseOffsetsMapTy Bases;
2134 /// \brief virtual base classes and their offsets in the record.
2135 ASTRecordLayout::VBaseOffsetsMapTy VBases;
2136 /// \brief The size of a pointer.
2137 CharUnits PointerSize;
2138 /// \brief The alignment of a pointer.
2139 CharUnits PointerAlignment;
2140 /// \brief Holds an empty base we haven't yet laid out.
2141 const CXXRecordDecl *LazyEmptyBase;
Warren Hunt55d8e822013-10-23 23:53:07 +00002142 /// \brief Lets us know if the last base we laid out was empty. Only used
2143 /// when adjusting the placement of a last zero-sized base in 64 bit mode.
2144 bool LastBaseWasEmpty;
2145 /// \brief Lets us know if we're in 64-bit mode
2146 bool Is64BitMode;
Warren Hunt8f8bad72013-10-11 20:19:00 +00002147};
2148} // namespace
2149
2150std::pair<CharUnits, CharUnits>
2151MicrosoftRecordLayoutBuilder::getAdjustedFieldInfo(const FieldDecl *FD) {
2152 std::pair<CharUnits, CharUnits> FieldInfo;
2153 if (FD->getType()->isIncompleteArrayType()) {
2154 // This is a flexible array member; we can't directly
2155 // query getTypeInfo about these, so we figure it out here.
2156 // Flexible array members don't have any size, but they
2157 // have to be aligned appropriately for their element type.
2158 FieldInfo.first = CharUnits::Zero();
2159 const ArrayType *ATy = Context.getAsArrayType(FD->getType());
2160 FieldInfo.second = Context.getTypeAlignInChars(ATy->getElementType());
2161 } else if (const ReferenceType *RT = FD->getType()->getAs<ReferenceType>()) {
2162 unsigned AS = RT->getPointeeType().getAddressSpace();
2163 FieldInfo.first = Context
2164 .toCharUnitsFromBits(Context.getTargetInfo().getPointerWidth(AS));
2165 FieldInfo.second = Context
2166 .toCharUnitsFromBits(Context.getTargetInfo().getPointerAlign(AS));
2167 } else
2168 FieldInfo = Context.getTypeInfoInChars(FD->getType());
2169
2170 // If we're not on win32 and using ms_struct the field alignment will be wrong
2171 // for 64 bit types, so we fix that here.
2172 if (FD->getASTContext().getTargetInfo().getTriple().getOS() !=
2173 llvm::Triple::Win32) {
2174 QualType T = Context.getBaseElementType(FD->getType());
2175 if (const BuiltinType *BTy = T->getAs<BuiltinType>()) {
2176 CharUnits TypeSize = Context.getTypeSizeInChars(BTy);
2177 if (TypeSize > FieldInfo.second)
2178 FieldInfo.second = TypeSize;
2179 }
2180 }
2181
2182 // Respect packed attribute.
2183 if (FD->hasAttr<PackedAttr>())
2184 FieldInfo.second = CharUnits::One();
2185 // Respect pack pragma.
2186 else if (!MaxFieldAlignment.isZero())
2187 FieldInfo.second = std::min(FieldInfo.second, MaxFieldAlignment);
2188 // Respect alignment attributes.
2189 if (unsigned fieldAlign = FD->getMaxAlignment()) {
2190 CharUnits FieldAlign = Context.toCharUnitsFromBits(fieldAlign);
2191 AlignAfterVBases = true;
2192 FieldInfo.second = std::max(FieldInfo.second, FieldAlign);
2193 }
2194 return FieldInfo;
2195}
2196
2197void MicrosoftRecordLayoutBuilder::initializeLayout(const RecordDecl *RD) {
2198 IsUnion = RD->isUnion();
Warren Hunt55d8e822013-10-23 23:53:07 +00002199 Is64BitMode = RD->getASTContext().getTargetInfo().getTriple().getArch() ==
2200 llvm::Triple::x86_64;
Warren Hunt8f8bad72013-10-11 20:19:00 +00002201
2202 Size = CharUnits::Zero();
2203 Alignment = CharUnits::One();
2204 AlignAfterVBases = false;
2205
2206 // Compute the maximum field alignment.
2207 MaxFieldAlignment = CharUnits::Zero();
2208 // Honor the default struct packing maximum alignment flag.
2209 if (unsigned DefaultMaxFieldAlignment = Context.getLangOpts().PackStruct)
2210 MaxFieldAlignment = CharUnits::fromQuantity(DefaultMaxFieldAlignment);
2211 // Honor the packing attribute.
2212 if (const MaxFieldAlignmentAttr *MFAA = RD->getAttr<MaxFieldAlignmentAttr>())
2213 MaxFieldAlignment = Context.toCharUnitsFromBits(MFAA->getAlignment());
2214 // Packed attribute forces max field alignment to be 1.
2215 if (RD->hasAttr<PackedAttr>())
2216 MaxFieldAlignment = CharUnits::One();
2217}
2218
2219void MicrosoftRecordLayoutBuilder::layout(const RecordDecl *RD) {
2220 initializeLayout(RD);
2221 layoutFields(RD);
2222 honorDeclspecAlign(RD);
2223}
2224
2225void MicrosoftRecordLayoutBuilder::cxxLayout(const CXXRecordDecl *RD) {
2226 initializeLayout(RD);
2227 initializeCXXLayout(RD);
2228 layoutVFPtr(RD);
2229 layoutNonVirtualBases(RD);
2230 layoutVBPtr(RD);
2231 layoutFields(RD);
2232 DataSize = Size;
2233 NonVirtualAlignment = Alignment;
2234 layoutVirtualBases(RD);
2235 finalizeCXXLayout(RD);
2236 honorDeclspecAlign(RD);
2237}
2238
2239void
2240MicrosoftRecordLayoutBuilder::initializeCXXLayout(const CXXRecordDecl *RD) {
2241 // Calculate pointer size and alignment.
2242 PointerSize =
2243 Context.toCharUnitsFromBits(Context.getTargetInfo().getPointerWidth(0));
2244 PointerAlignment = PointerSize;
2245 if (!MaxFieldAlignment.isZero())
2246 PointerAlignment = std::min(PointerAlignment, MaxFieldAlignment);
2247
2248 // Initialize information about the bases.
2249 HasVBPtr = false;
2250 HasVFPtr = false;
2251 SharedVBPtrBase = 0;
2252 PrimaryBase = 0;
2253 VirtualAlignment = CharUnits::One();
Warren Hunt55d8e822013-10-23 23:53:07 +00002254 AlignAfterVBases = Is64BitMode;
Warren Hunt8f8bad72013-10-11 20:19:00 +00002255
2256 // If the record has a dynamic base class, attempt to choose a primary base
2257 // class. It is the first (in direct base class order) non-virtual dynamic
2258 // base class, if one exists.
2259 for (CXXRecordDecl::base_class_const_iterator i = RD->bases_begin(),
2260 e = RD->bases_end();
2261 i != e; ++i) {
2262 const CXXRecordDecl *BaseDecl =
2263 cast<CXXRecordDecl>(i->getType()->getAs<RecordType>()->getDecl());
2264 const ASTRecordLayout &Layout = Context.getASTRecordLayout(BaseDecl);
2265 // Handle forced alignment.
2266 if (Layout.getAlignAfterVBases())
2267 AlignAfterVBases = true;
2268 // Handle virtual bases.
2269 if (i->isVirtual()) {
2270 VirtualAlignment = std::max(VirtualAlignment, Layout.getAlignment());
2271 HasVBPtr = true;
2272 continue;
2273 }
2274 // We located a primary base class!
2275 if (!PrimaryBase && Layout.hasVFPtr()) {
2276 PrimaryBase = BaseDecl;
2277 HasVFPtr = true;
2278 }
2279 // We located a base to share a VBPtr with!
2280 if (!SharedVBPtrBase && Layout.hasVBPtr()) {
2281 SharedVBPtrBase = BaseDecl;
2282 HasVBPtr = true;
2283 }
2284 updateAlignment(Layout.getAlignment());
2285 }
2286
2287 // Use LayoutFields to compute the alignment of the fields. The layout
2288 // is discarded. This is the simplest way to get all of the bit-field
2289 // behavior correct and is not actually very expensive.
2290 layoutFields(RD);
2291 Size = CharUnits::Zero();
Warren Hunt55d8e822013-10-23 23:53:07 +00002292 BasesAndFieldsAlignment = Alignment;
Warren Hunt8f8bad72013-10-11 20:19:00 +00002293 FieldOffsets.clear();
2294}
2295
2296void MicrosoftRecordLayoutBuilder::layoutVFPtr(const CXXRecordDecl *RD) {
2297 // If we have a primary base then our VFPtr was already laid out
2298 if (PrimaryBase)
2299 return;
2300
2301 // Look at all of our methods to determine if we need a VFPtr. We need a
2302 // vfptr if we define a new virtual function.
2303 if (!HasVFPtr && RD->isDynamicClass())
2304 for (CXXRecordDecl::method_iterator i = RD->method_begin(),
2305 e = RD->method_end();
2306 !HasVFPtr && i != e; ++i)
2307 HasVFPtr = i->isVirtual() && i->size_overridden_methods() == 0;
2308 if (!HasVFPtr)
2309 return;
2310
Warren Hunt55d8e822013-10-23 23:53:07 +00002311 // MSVC 32 (but not 64) potentially over-aligns the vf-table pointer by giving
2312 // it the max alignment of all the non-virtual data in the class. The
2313 // resulting layout is essentially { vftbl, { nvdata } }. This is completely
Warren Hunt8f8bad72013-10-11 20:19:00 +00002314 // unnecessary, but we're not here to pass judgment.
Warren Hunt8f8bad72013-10-11 20:19:00 +00002315 updateAlignment(PointerAlignment);
Warren Hunt55d8e822013-10-23 23:53:07 +00002316 if (Is64BitMode)
2317 Size = Size.RoundUpToAlignment(PointerAlignment) + PointerSize;
2318 else
2319 Size = Size.RoundUpToAlignment(PointerAlignment) + Alignment;
Warren Hunt8f8bad72013-10-11 20:19:00 +00002320}
2321
2322void
2323MicrosoftRecordLayoutBuilder::layoutNonVirtualBases(const CXXRecordDecl *RD) {
2324 LazyEmptyBase = 0;
Warren Hunt55d8e822013-10-23 23:53:07 +00002325 LastBaseWasEmpty = false;
Warren Hunt8f8bad72013-10-11 20:19:00 +00002326
2327 // Lay out the primary base first.
2328 if (PrimaryBase)
2329 layoutNonVirtualBase(PrimaryBase);
2330
2331 // Iterate through the bases and lay out the non-virtual ones.
2332 for (CXXRecordDecl::base_class_const_iterator i = RD->bases_begin(),
2333 e = RD->bases_end();
2334 i != e; ++i) {
2335 if (i->isVirtual())
2336 continue;
2337 const CXXRecordDecl *BaseDecl =
2338 cast<CXXRecordDecl>(i->getType()->castAs<RecordType>()->getDecl());
2339 if (BaseDecl != PrimaryBase)
2340 layoutNonVirtualBase(BaseDecl);
2341 }
2342}
2343
2344void
2345MicrosoftRecordLayoutBuilder::layoutNonVirtualBase(const CXXRecordDecl *RD) {
2346 const ASTRecordLayout *Layout = RD ? &Context.getASTRecordLayout(RD) : 0;
2347
2348 // If we have a lazy empty base we haven't laid out yet, do that now.
2349 if (LazyEmptyBase) {
2350 const ASTRecordLayout &LazyLayout =
2351 Context.getASTRecordLayout(LazyEmptyBase);
2352 Size = Size.RoundUpToAlignment(LazyLayout.getAlignment());
2353 Bases.insert(std::make_pair(LazyEmptyBase, Size));
2354 // Empty bases only consume space when followed by another empty base.
Warren Hunt55d8e822013-10-23 23:53:07 +00002355 if (RD && Layout->getNonVirtualSize().isZero()) {
2356 LastBaseWasEmpty = true;
Warren Hunt8f8bad72013-10-11 20:19:00 +00002357 Size++;
Warren Hunt55d8e822013-10-23 23:53:07 +00002358 }
Warren Hunt8f8bad72013-10-11 20:19:00 +00002359 LazyEmptyBase = 0;
2360 }
2361
2362 // RD is null when flushing the final lazy base.
2363 if (!RD)
2364 return;
2365
2366 if (Layout->getNonVirtualSize().isZero()) {
2367 LazyEmptyBase = RD;
2368 return;
2369 }
2370
2371 // Insert the base here.
2372 CharUnits BaseOffset = Size.RoundUpToAlignment(Layout->getAlignment());
2373 Bases.insert(std::make_pair(RD, BaseOffset));
2374 Size = BaseOffset + Layout->getDataSize();
2375 // Note: we don't update alignment here because it was accounted
2376 // for during initalization.
Warren Hunt55d8e822013-10-23 23:53:07 +00002377 LastBaseWasEmpty = false;
Warren Hunt8f8bad72013-10-11 20:19:00 +00002378}
2379
2380void MicrosoftRecordLayoutBuilder::layoutVBPtr(const CXXRecordDecl *RD) {
2381 if (!HasVBPtr)
2382 VBPtrOffset = CharUnits::fromQuantity(-1);
2383 else if (SharedVBPtrBase) {
2384 const ASTRecordLayout &Layout = Context.getASTRecordLayout(SharedVBPtrBase);
2385 VBPtrOffset = Bases[SharedVBPtrBase] + Layout.getVBPtrOffset();
2386 } else {
Warren Hunt8f8bad72013-10-11 20:19:00 +00002387 VBPtrOffset = Size.RoundUpToAlignment(PointerAlignment);
Warren Hunt55d8e822013-10-23 23:53:07 +00002388 CharUnits OldSize = Size;
2389 Size = VBPtrOffset + PointerSize;
2390 if (BasesAndFieldsAlignment <= PointerAlignment) {
2391 // Handle strange padding rules for the lazily placed base. I have no
2392 // explanation for why the last virtual base is padded in such an odd way.
2393 // Two things to note about this padding are that the rules are different
2394 // if the alignment of the bases+fields is <= to the alignemnt of a
2395 // pointer and that the rule in 64-bit mode behaves differently depending
2396 // on if the second to last base was also zero sized.
2397 Size += OldSize % BasesAndFieldsAlignment.getQuantity();
2398 } else {
2399 if (Is64BitMode)
2400 Size += LastBaseWasEmpty ? CharUnits::One() : CharUnits::Zero();
2401 else
2402 Size = OldSize + BasesAndFieldsAlignment;
2403 }
2404 updateAlignment(PointerAlignment);
Warren Hunt8f8bad72013-10-11 20:19:00 +00002405 }
2406
2407 // Flush the lazy empty base.
2408 layoutNonVirtualBase(0);
2409}
2410
2411void MicrosoftRecordLayoutBuilder::layoutFields(const RecordDecl *RD) {
2412 LastFieldIsNonZeroWidthBitfield = false;
2413 for (RecordDecl::field_iterator Field = RD->field_begin(),
2414 FieldEnd = RD->field_end();
2415 Field != FieldEnd; ++Field)
2416 layoutField(*Field);
2417 Size = Size.RoundUpToAlignment(Alignment);
2418}
2419
2420void MicrosoftRecordLayoutBuilder::layoutField(const FieldDecl *FD) {
2421 if (FD->isBitField()) {
2422 layoutBitField(FD);
2423 return;
2424 }
2425 LastFieldIsNonZeroWidthBitfield = false;
2426
2427 std::pair<CharUnits, CharUnits> FieldInfo = getAdjustedFieldInfo(FD);
2428 CharUnits FieldSize = FieldInfo.first;
2429 CharUnits FieldAlign = FieldInfo.second;
2430
2431 updateAlignment(FieldAlign);
2432 if (IsUnion) {
2433 placeFieldAtZero();
2434 Size = std::max(Size, FieldSize);
2435 } else {
2436 // Round up the current record size to the field's alignment boundary.
2437 CharUnits FieldOffset = Size.RoundUpToAlignment(FieldAlign);
2438 placeFieldAtOffset(FieldOffset);
2439 Size = FieldOffset + FieldSize;
2440 }
2441}
2442
2443void MicrosoftRecordLayoutBuilder::layoutBitField(const FieldDecl *FD) {
2444 unsigned Width = FD->getBitWidthValue(Context);
2445 if (Width == 0) {
2446 layoutZeroWidthBitField(FD);
2447 return;
2448 }
2449
2450 std::pair<CharUnits, CharUnits> FieldInfo = getAdjustedFieldInfo(FD);
2451 CharUnits FieldSize = FieldInfo.first;
2452 CharUnits FieldAlign = FieldInfo.second;
2453
2454 // Clamp the bitfield to a containable size for the sake of being able
2455 // to lay them out. Sema will throw an error.
2456 if (Width > Context.toBits(FieldSize))
2457 Width = Context.toBits(FieldSize);
2458
2459 // Check to see if this bitfield fits into an existing allocation. Note:
2460 // MSVC refuses to pack bitfields of formal types with different sizes
2461 // into the same allocation.
2462 if (!IsUnion && LastFieldIsNonZeroWidthBitfield &&
2463 CurrentBitfieldSize == FieldSize && Width <= RemainingBitsInField) {
2464 placeFieldAtBitOffset(Context.toBits(Size) - RemainingBitsInField);
2465 RemainingBitsInField -= Width;
2466 return;
2467 }
2468
2469 LastFieldIsNonZeroWidthBitfield = true;
2470 CurrentBitfieldSize = FieldSize;
2471 if (IsUnion) {
2472 placeFieldAtZero();
2473 Size = std::max(Size, FieldSize);
2474 // TODO: Add a Sema warning that MS ignores bitfield alignment in unions.
2475 } else {
2476 // Allocate a new block of memory and place the bitfield in it.
2477 CharUnits FieldOffset = Size.RoundUpToAlignment(FieldAlign);
2478 placeFieldAtOffset(FieldOffset);
2479 Size = FieldOffset + FieldSize;
2480 updateAlignment(FieldAlign);
2481 RemainingBitsInField = Context.toBits(FieldSize) - Width;
2482 }
2483}
2484
2485void
2486MicrosoftRecordLayoutBuilder::layoutZeroWidthBitField(const FieldDecl *FD) {
2487 // Zero-width bitfields are ignored unless they follow a non-zero-width
2488 // bitfield.
2489 std::pair<CharUnits, CharUnits> FieldInfo = getAdjustedFieldInfo(FD);
2490 CharUnits FieldSize = FieldInfo.first;
2491 CharUnits FieldAlign = FieldInfo.second;
2492
2493 if (!LastFieldIsNonZeroWidthBitfield) {
2494 placeFieldAtOffset(IsUnion ? CharUnits::Zero() : Size);
2495 // TODO: Add a Sema warning that MS ignores alignment for zero
2496 // sized bitfields that occur after zero-size bitfields or non bitfields.
2497 return;
2498 }
2499
2500 LastFieldIsNonZeroWidthBitfield = false;
2501 if (IsUnion) {
2502 placeFieldAtZero();
2503 Size = std::max(Size, FieldSize);
2504 } else {
2505 // Round up the current record size to the field's alignment boundary.
2506 CharUnits FieldOffset = Size.RoundUpToAlignment(FieldAlign);
2507 placeFieldAtOffset(FieldOffset);
2508 Size = FieldOffset;
2509 updateAlignment(FieldAlign);
2510 }
2511}
2512
2513void MicrosoftRecordLayoutBuilder::layoutVirtualBases(const CXXRecordDecl *RD) {
2514 if (!HasVBPtr)
2515 return;
2516
2517 updateAlignment(VirtualAlignment);
2518
2519 // Zero-sized v-bases obey the alignment attribute so apply it here. The
2520 // alignment attribute is normally accounted for in FinalizeLayout.
2521 if (unsigned MaxAlign = RD->getMaxAlignment())
2522 updateAlignment(Context.toCharUnitsFromBits(MaxAlign));
2523
2524 llvm::SmallPtrSet<const CXXRecordDecl *, 2> HasVtordisp =
2525 computeVtorDispSet(RD);
2526
2527 // Iterate through the virtual bases and lay them out.
2528 for (CXXRecordDecl::base_class_const_iterator i = RD->vbases_begin(),
2529 e = RD->vbases_end();
2530 i != e; ++i) {
2531 const CXXRecordDecl *BaseDecl =
2532 cast<CXXRecordDecl>(i->getType()->castAs<RecordType>()->getDecl());
2533 layoutVirtualBase(BaseDecl, HasVtordisp.count(BaseDecl));
2534 }
2535}
2536
2537void MicrosoftRecordLayoutBuilder::layoutVirtualBase(const CXXRecordDecl *RD,
2538 bool HasVtordisp) {
2539 if (LazyEmptyBase) {
2540 const ASTRecordLayout &LazyLayout =
2541 Context.getASTRecordLayout(LazyEmptyBase);
2542 Size = Size.RoundUpToAlignment(LazyLayout.getAlignment());
2543 VBases.insert(
2544 std::make_pair(LazyEmptyBase, ASTRecordLayout::VBaseInfo(Size, false)));
2545 // Empty bases only consume space when followed by another empty base.
2546 // The space consumed is in an Alignment sized/aligned block and the v-base
2547 // is placed at its alignment offset into the chunk, unless its alignment
Warren Hunt55d8e822013-10-23 23:53:07 +00002548 // is less than 4 bytes, at which it is placed at 4 byte offset in the
2549 // chunk. We have no idea why.
Warren Hunt8f8bad72013-10-11 20:19:00 +00002550 if (RD && Context.getASTRecordLayout(RD).getNonVirtualSize().isZero())
Warren Hunt55d8e822013-10-23 23:53:07 +00002551 Size = Size.RoundUpToAlignment(Alignment) + CharUnits::fromQuantity(4);
Warren Hunt8f8bad72013-10-11 20:19:00 +00002552 LazyEmptyBase = 0;
2553 }
2554
2555 // RD is null when flushing the final lazy virtual base.
2556 if (!RD)
2557 return;
2558
2559 const ASTRecordLayout &Layout = Context.getASTRecordLayout(RD);
2560 if (Layout.getNonVirtualSize().isZero() && !HasVtordisp) {
2561 LazyEmptyBase = RD;
2562 return;
2563 }
2564
2565 CharUnits BaseNVSize = Layout.getNonVirtualSize();
2566 CharUnits BaseAlign = Layout.getAlignment();
2567
Warren Hunt55d8e822013-10-23 23:53:07 +00002568 // vtordisps are always 4 bytes (even in 64-bit mode)
Warren Hunt8f8bad72013-10-11 20:19:00 +00002569 if (HasVtordisp)
Warren Hunt55d8e822013-10-23 23:53:07 +00002570 Size = Size.RoundUpToAlignment(Alignment) + CharUnits::fromQuantity(4);
Warren Hunt8f8bad72013-10-11 20:19:00 +00002571 Size = Size.RoundUpToAlignment(BaseAlign);
2572
2573 // Insert the base here.
2574 CharUnits BaseOffset = Size.RoundUpToAlignment(BaseAlign);
2575 VBases.insert(
2576 std::make_pair(RD, ASTRecordLayout::VBaseInfo(BaseOffset, HasVtordisp)));
2577 Size = BaseOffset + BaseNVSize;
2578 // Note: we don't update alignment here because it was accounted for in
2579 // InitializeLayout.
2580}
2581
2582void MicrosoftRecordLayoutBuilder::finalizeCXXLayout(const CXXRecordDecl *RD) {
2583 // Flush the lazy virtual base.
2584 layoutVirtualBase(0, false);
2585
2586 if (RD->vbases_begin() == RD->vbases_end() || AlignAfterVBases)
2587 Size = Size.RoundUpToAlignment(Alignment);
2588
2589 if (Size.isZero())
2590 Size = Alignment;
2591}
2592
2593void MicrosoftRecordLayoutBuilder::honorDeclspecAlign(const RecordDecl *RD) {
2594 if (unsigned MaxAlign = RD->getMaxAlignment()) {
2595 AlignAfterVBases = true;
2596 updateAlignment(Context.toCharUnitsFromBits(MaxAlign));
2597 Size = Size.RoundUpToAlignment(Alignment);
2598 }
2599}
2600
2601static bool
2602RequiresVtordisp(const llvm::SmallPtrSet<const CXXRecordDecl *, 2> &HasVtordisp,
2603 const CXXRecordDecl *RD) {
2604 if (HasVtordisp.count(RD))
2605 return true;
2606 // If any of a virtual bases non-virtual bases (recursively) requires a
2607 // vtordisp than so does this virtual base.
2608 for (CXXRecordDecl::base_class_const_iterator i = RD->bases_begin(),
2609 e = RD->bases_end();
2610 i != e; ++i)
2611 if (!i->isVirtual() &&
2612 RequiresVtordisp(
2613 HasVtordisp,
2614 cast<CXXRecordDecl>(i->getType()->getAs<RecordType>()->getDecl())))
2615 return true;
2616 return false;
2617}
2618
2619llvm::SmallPtrSet<const CXXRecordDecl *, 2>
2620MicrosoftRecordLayoutBuilder::computeVtorDispSet(const CXXRecordDecl *RD) {
2621 llvm::SmallPtrSet<const CXXRecordDecl *, 2> HasVtordisp;
2622
2623 // If any of our bases need a vtordisp for this type, so do we. Check our
2624 // direct bases for vtordisp requirements.
2625 for (CXXRecordDecl::base_class_const_iterator i = RD->bases_begin(),
2626 e = RD->bases_end();
2627 i != e; ++i) {
2628 const CXXRecordDecl *BaseDecl =
2629 cast<CXXRecordDecl>(i->getType()->getAs<RecordType>()->getDecl());
2630 const ASTRecordLayout &Layout = Context.getASTRecordLayout(BaseDecl);
2631 for (ASTRecordLayout::VBaseOffsetsMapTy::const_iterator
2632 bi = Layout.getVBaseOffsetsMap().begin(),
2633 be = Layout.getVBaseOffsetsMap().end();
2634 bi != be; ++bi)
2635 if (bi->second.hasVtorDisp())
2636 HasVtordisp.insert(bi->first);
2637 }
2638
2639 // If we define a constructor or destructor and override a function that is
2640 // defined in a virtual base's vtable, that virtual bases need a vtordisp.
2641 // Here we collect a list of classes with vtables for which our virtual bases
2642 // actually live. The virtual bases with this property will require
2643 // vtordisps. In addition, virtual bases that contain non-virtual bases that
2644 // define functions we override also require vtordisps, this case is checked
2645 // explicitly below.
2646 if (RD->hasUserDeclaredConstructor() || RD->hasUserDeclaredDestructor()) {
2647 llvm::SmallPtrSet<const CXXMethodDecl *, 8> Work;
2648 // Seed the working set with our non-destructor virtual methods.
2649 for (CXXRecordDecl::method_iterator i = RD->method_begin(),
2650 e = RD->method_end();
2651 i != e; ++i)
Warren Hunt42be7762013-10-14 20:14:09 +00002652 if ((*i)->isVirtual() && !isa<CXXDestructorDecl>(*i))
Warren Hunt8f8bad72013-10-11 20:19:00 +00002653 Work.insert(*i);
2654 while (!Work.empty()) {
2655 const CXXMethodDecl *MD = *Work.begin();
2656 CXXMethodDecl::method_iterator i = MD->begin_overridden_methods(),
2657 e = MD->end_overridden_methods();
2658 if (i == e)
2659 // If a virtual method has no-overrides it lives in its parent's vtable.
2660 HasVtordisp.insert(MD->getParent());
2661 else
2662 Work.insert(i, e);
2663 // We've finished processing this element, remove it from the working set.
2664 Work.erase(MD);
2665 }
2666 }
2667
2668 // Re-check all of our vbases for vtordisp requirements (in case their
2669 // non-virtual bases have vtordisp requirements).
2670 for (CXXRecordDecl::base_class_const_iterator i = RD->vbases_begin(),
2671 e = RD->vbases_end();
2672 i != e; ++i) {
2673 const CXXRecordDecl *BaseDecl = i->getType()->getAsCXXRecordDecl();
2674 if (!HasVtordisp.count(BaseDecl) && RequiresVtordisp(HasVtordisp, BaseDecl))
2675 HasVtordisp.insert(BaseDecl);
2676 }
2677
2678 return HasVtordisp;
2679}
2680
2681/// \brief Get or compute information about the layout of the specified record
2682/// (struct/union/class), which indicates its size and field position
2683/// information.
2684const ASTRecordLayout *
2685ASTContext::BuildMicrosoftASTRecordLayout(const RecordDecl *D) const {
2686 MicrosoftRecordLayoutBuilder Builder(*this);
2687 if (const CXXRecordDecl *RD = dyn_cast<CXXRecordDecl>(D)) {
2688 Builder.cxxLayout(RD);
2689 return new (*this) ASTRecordLayout(
2690 *this, Builder.Size, Builder.Alignment,
2691 Builder.HasVFPtr && !Builder.PrimaryBase, Builder.HasVFPtr,
2692 Builder.HasVBPtr && !Builder.SharedVBPtrBase, Builder.VBPtrOffset,
2693 Builder.DataSize, Builder.FieldOffsets.data(),
2694 Builder.FieldOffsets.size(), Builder.DataSize,
2695 Builder.NonVirtualAlignment, CharUnits::Zero(), Builder.PrimaryBase,
2696 false, Builder.AlignAfterVBases, Builder.Bases, Builder.VBases);
2697 } else {
2698 Builder.layout(D);
2699 return new (*this) ASTRecordLayout(
2700 *this, Builder.Size, Builder.Alignment, Builder.Size,
2701 Builder.FieldOffsets.data(), Builder.FieldOffsets.size());
2702 }
2703}
2704
Anders Carlssondf291d82010-05-26 04:56:53 +00002705/// getASTRecordLayout - Get or compute information about the layout of the
2706/// specified record (struct/union/class), which indicates its size and field
2707/// position information.
Jay Foad39c79802011-01-12 09:06:06 +00002708const ASTRecordLayout &
2709ASTContext::getASTRecordLayout(const RecordDecl *D) const {
John McCall0710e552011-10-07 02:39:22 +00002710 // These asserts test different things. A record has a definition
2711 // as soon as we begin to parse the definition. That definition is
2712 // not a complete definition (which is what isDefinition() tests)
2713 // until we *finish* parsing the definition.
Sean Callanan56c19892012-02-08 00:04:52 +00002714
2715 if (D->hasExternalLexicalStorage() && !D->getDefinition())
2716 getExternalSource()->CompleteType(const_cast<RecordDecl*>(D));
2717
Anders Carlssondf291d82010-05-26 04:56:53 +00002718 D = D->getDefinition();
2719 assert(D && "Cannot get layout of forward declarations!");
Matt Beaumont-Gay35779952013-06-25 22:19:15 +00002720 assert(!D->isInvalidDecl() && "Cannot get layout of invalid decl!");
John McCallf937c022011-10-07 06:10:15 +00002721 assert(D->isCompleteDefinition() && "Cannot layout type before complete!");
Anders Carlssondf291d82010-05-26 04:56:53 +00002722
2723 // Look up this layout, if already laid out, return what we have.
2724 // Note that we can't save a reference to the entry because this function
2725 // is recursive.
2726 const ASTRecordLayout *Entry = ASTRecordLayouts[D];
2727 if (Entry) return *Entry;
2728
Warren Hunt8f8bad72013-10-11 20:19:00 +00002729 const ASTRecordLayout *NewEntry = 0;
Anders Carlssond2954862010-05-26 05:10:47 +00002730
Warren Hunt8f8bad72013-10-11 20:19:00 +00002731 if (isMsLayout(D) && !D->getASTContext().getExternalSource()) {
2732 NewEntry = BuildMicrosoftASTRecordLayout(D);
2733 } else if (const CXXRecordDecl *RD = dyn_cast<CXXRecordDecl>(D)) {
Anders Carlssonc121b4e2010-05-27 00:07:01 +00002734 EmptySubobjectMap EmptySubobjects(*this, RD);
John McCall0153cd32011-11-08 04:01:03 +00002735 RecordLayoutBuilder Builder(*this, &EmptySubobjects);
2736 Builder.Layout(RD);
Anders Carlsson439edd12010-05-27 05:41:06 +00002737
John McCall5c1f1d02013-01-29 01:14:22 +00002738 // In certain situations, we are allowed to lay out objects in the
2739 // tail-padding of base classes. This is ABI-dependent.
2740 // FIXME: this should be stored in the record layout.
2741 bool skipTailPadding =
2742 mustSkipTailPadding(getTargetInfo().getCXXABI(), cast<CXXRecordDecl>(D));
Anders Carlssond2954862010-05-26 05:10:47 +00002743
2744 // FIXME: This should be done in FinalizeLayout.
Ken Dyck1b4420e2011-02-28 02:01:38 +00002745 CharUnits DataSize =
John McCall5c1f1d02013-01-29 01:14:22 +00002746 skipTailPadding ? Builder.getSize() : Builder.getDataSize();
Ken Dyck1b4420e2011-02-28 02:01:38 +00002747 CharUnits NonVirtualSize =
John McCall5c1f1d02013-01-29 01:14:22 +00002748 skipTailPadding ? DataSize : Builder.NonVirtualSize;
Daniel Dunbar592a85c2010-05-27 02:25:46 +00002749 NewEntry =
John McCall0153cd32011-11-08 04:01:03 +00002750 new (*this) ASTRecordLayout(*this, Builder.getSize(),
2751 Builder.Alignment,
John McCalle42a3362012-05-01 08:55:32 +00002752 Builder.HasOwnVFPtr,
Warren Hunt8f8bad72013-10-11 20:19:00 +00002753 RD->isDynamicClass(),
Warren Hunt55d8e822013-10-23 23:53:07 +00002754 false,
2755 CharUnits::fromQuantity(-1),
Ken Dyck1b4420e2011-02-28 02:01:38 +00002756 DataSize,
John McCall0153cd32011-11-08 04:01:03 +00002757 Builder.FieldOffsets.data(),
2758 Builder.FieldOffsets.size(),
Ken Dyckaf1c83f2011-02-16 01:52:01 +00002759 NonVirtualSize,
John McCall0153cd32011-11-08 04:01:03 +00002760 Builder.NonVirtualAlignment,
Anders Carlssonc121b4e2010-05-27 00:07:01 +00002761 EmptySubobjects.SizeOfLargestEmptySubobject,
John McCall0153cd32011-11-08 04:01:03 +00002762 Builder.PrimaryBase,
2763 Builder.PrimaryBaseIsVirtual,
Warren Hunt8f8bad72013-10-11 20:19:00 +00002764 true,
John McCall0153cd32011-11-08 04:01:03 +00002765 Builder.Bases, Builder.VBases);
Anders Carlssond2954862010-05-26 05:10:47 +00002766 } else {
John McCall0153cd32011-11-08 04:01:03 +00002767 RecordLayoutBuilder Builder(*this, /*EmptySubobjects=*/0);
Anders Carlssond2954862010-05-26 05:10:47 +00002768 Builder.Layout(D);
Daniel Dunbar592a85c2010-05-27 02:25:46 +00002769
Anders Carlssond2954862010-05-26 05:10:47 +00002770 NewEntry =
Ken Dyck1b4420e2011-02-28 02:01:38 +00002771 new (*this) ASTRecordLayout(*this, Builder.getSize(),
Ken Dyck4731d5b2011-02-16 02:05:21 +00002772 Builder.Alignment,
Ken Dyck1b4420e2011-02-28 02:01:38 +00002773 Builder.getSize(),
Anders Carlssond2954862010-05-26 05:10:47 +00002774 Builder.FieldOffsets.data(),
2775 Builder.FieldOffsets.size());
2776 }
2777
Anders Carlssondf291d82010-05-26 04:56:53 +00002778 ASTRecordLayouts[D] = NewEntry;
2779
David Blaikiebbafb8a2012-03-11 07:00:24 +00002780 if (getLangOpts().DumpRecordLayouts) {
Argyrios Kyrtzidis8ade08e2013-07-12 22:30:03 +00002781 llvm::outs() << "\n*** Dumping AST Record Layout\n";
2782 DumpRecordLayout(D, llvm::outs(), getLangOpts().DumpRecordLayoutsSimple);
Anders Carlssondf291d82010-05-26 04:56:53 +00002783 }
2784
2785 return *NewEntry;
2786}
2787
John McCall6bd2a892013-01-25 22:31:03 +00002788const CXXMethodDecl *ASTContext::getCurrentKeyFunction(const CXXRecordDecl *RD) {
Reid Kleckner5d7f2982013-05-29 16:18:30 +00002789 if (!getTargetInfo().getCXXABI().hasKeyFunctions())
2790 return 0;
2791
John McCall6bd2a892013-01-25 22:31:03 +00002792 assert(RD->getDefinition() && "Cannot get key function for forward decl!");
Anders Carlssondf291d82010-05-26 04:56:53 +00002793 RD = cast<CXXRecordDecl>(RD->getDefinition());
Daniel Dunbar592a85c2010-05-27 02:25:46 +00002794
Richard Smith676c4042013-08-29 23:59:27 +00002795 LazyDeclPtr &Entry = KeyFunctions[RD];
2796 if (!Entry)
2797 Entry = const_cast<CXXMethodDecl*>(computeKeyFunction(*this, RD));
Daniel Dunbar592a85c2010-05-27 02:25:46 +00002798
Richard Smith676c4042013-08-29 23:59:27 +00002799 return cast_or_null<CXXMethodDecl>(Entry.get(getExternalSource()));
John McCall6bd2a892013-01-25 22:31:03 +00002800}
2801
Richard Smith676c4042013-08-29 23:59:27 +00002802void ASTContext::setNonKeyFunction(const CXXMethodDecl *Method) {
Rafael Espindola8db352d2013-10-17 15:37:26 +00002803 assert(Method == Method->getFirstDecl() &&
John McCall6bd2a892013-01-25 22:31:03 +00002804 "not working with method declaration from class definition");
2805
2806 // Look up the cache entry. Since we're working with the first
2807 // declaration, its parent must be the class definition, which is
2808 // the correct key for the KeyFunctions hash.
Richard Smith676c4042013-08-29 23:59:27 +00002809 llvm::DenseMap<const CXXRecordDecl*, LazyDeclPtr>::iterator
2810 I = KeyFunctions.find(Method->getParent());
John McCall6bd2a892013-01-25 22:31:03 +00002811
2812 // If it's not cached, there's nothing to do.
Richard Smith676c4042013-08-29 23:59:27 +00002813 if (I == KeyFunctions.end()) return;
John McCall6bd2a892013-01-25 22:31:03 +00002814
2815 // If it is cached, check whether it's the target method, and if so,
2816 // remove it from the cache.
Richard Smith676c4042013-08-29 23:59:27 +00002817 if (I->second.get(getExternalSource()) == Method) {
John McCall6bd2a892013-01-25 22:31:03 +00002818 // FIXME: remember that we did this for module / chained PCH state?
Richard Smith676c4042013-08-29 23:59:27 +00002819 KeyFunctions.erase(I);
John McCall6bd2a892013-01-25 22:31:03 +00002820 }
Anders Carlssondf291d82010-05-26 04:56:53 +00002821}
2822
Richard Smithdafff942012-01-14 04:30:29 +00002823static uint64_t getFieldOffset(const ASTContext &C, const FieldDecl *FD) {
2824 const ASTRecordLayout &Layout = C.getASTRecordLayout(FD->getParent());
2825 return Layout.getFieldOffset(FD->getFieldIndex());
2826}
2827
2828uint64_t ASTContext::getFieldOffset(const ValueDecl *VD) const {
2829 uint64_t OffsetInBits;
2830 if (const FieldDecl *FD = dyn_cast<FieldDecl>(VD)) {
2831 OffsetInBits = ::getFieldOffset(*this, FD);
2832 } else {
2833 const IndirectFieldDecl *IFD = cast<IndirectFieldDecl>(VD);
2834
2835 OffsetInBits = 0;
2836 for (IndirectFieldDecl::chain_iterator CI = IFD->chain_begin(),
2837 CE = IFD->chain_end();
2838 CI != CE; ++CI)
2839 OffsetInBits += ::getFieldOffset(*this, cast<FieldDecl>(*CI));
2840 }
2841
2842 return OffsetInBits;
2843}
2844
Eric Christopher8a39a012011-10-05 06:00:51 +00002845/// getObjCLayout - Get or compute information about the layout of the
2846/// given interface.
Anders Carlssondf291d82010-05-26 04:56:53 +00002847///
2848/// \param Impl - If given, also include the layout of the interface's
2849/// implementation. This may differ by including synthesized ivars.
2850const ASTRecordLayout &
2851ASTContext::getObjCLayout(const ObjCInterfaceDecl *D,
Jay Foad39c79802011-01-12 09:06:06 +00002852 const ObjCImplementationDecl *Impl) const {
Douglas Gregor64d92572011-12-20 15:50:13 +00002853 // Retrieve the definition
Sean Callanand9a909c2012-03-15 16:33:08 +00002854 if (D->hasExternalLexicalStorage() && !D->getDefinition())
2855 getExternalSource()->CompleteType(const_cast<ObjCInterfaceDecl*>(D));
Douglas Gregor64d92572011-12-20 15:50:13 +00002856 D = D->getDefinition();
2857 assert(D && D->isThisDeclarationADefinition() && "Invalid interface decl!");
Anders Carlssondf291d82010-05-26 04:56:53 +00002858
2859 // Look up this layout, if already laid out, return what we have.
Roman Divackye6377112012-09-06 15:59:27 +00002860 const ObjCContainerDecl *Key =
2861 Impl ? (const ObjCContainerDecl*) Impl : (const ObjCContainerDecl*) D;
Anders Carlssondf291d82010-05-26 04:56:53 +00002862 if (const ASTRecordLayout *Entry = ObjCLayouts[Key])
2863 return *Entry;
2864
2865 // Add in synthesized ivar count if laying out an implementation.
2866 if (Impl) {
2867 unsigned SynthCount = CountNonClassIvars(D);
2868 // If there aren't any sythesized ivars then reuse the interface
2869 // entry. Note we can't cache this because we simply free all
2870 // entries later; however we shouldn't look up implementations
2871 // frequently.
2872 if (SynthCount == 0)
2873 return getObjCLayout(D, 0);
2874 }
2875
John McCall0153cd32011-11-08 04:01:03 +00002876 RecordLayoutBuilder Builder(*this, /*EmptySubobjects=*/0);
Anders Carlsson6ed3a9a2010-05-26 05:04:25 +00002877 Builder.Layout(D);
2878
Anders Carlssondf291d82010-05-26 04:56:53 +00002879 const ASTRecordLayout *NewEntry =
Ken Dyck1b4420e2011-02-28 02:01:38 +00002880 new (*this) ASTRecordLayout(*this, Builder.getSize(),
Ken Dyck4731d5b2011-02-16 02:05:21 +00002881 Builder.Alignment,
Ken Dyck1b4420e2011-02-28 02:01:38 +00002882 Builder.getDataSize(),
Anders Carlsson6ed3a9a2010-05-26 05:04:25 +00002883 Builder.FieldOffsets.data(),
2884 Builder.FieldOffsets.size());
Daniel Dunbar592a85c2010-05-27 02:25:46 +00002885
Anders Carlssondf291d82010-05-26 04:56:53 +00002886 ObjCLayouts[Key] = NewEntry;
2887
2888 return *NewEntry;
2889}
2890
Chris Lattner0e62c1c2011-07-23 10:55:15 +00002891static void PrintOffset(raw_ostream &OS,
Anders Carlsson3f018712010-10-31 23:45:59 +00002892 CharUnits Offset, unsigned IndentLevel) {
Benjamin Kramer96ad7172011-11-05 09:02:52 +00002893 OS << llvm::format("%4" PRId64 " | ", (int64_t)Offset.getQuantity());
Daniel Dunbaraa423af2010-04-08 02:59:49 +00002894 OS.indent(IndentLevel * 2);
2895}
2896
Eli Benderskyf6f93ee2012-12-08 00:07:24 +00002897static void PrintIndentNoOffset(raw_ostream &OS, unsigned IndentLevel) {
2898 OS << " | ";
2899 OS.indent(IndentLevel * 2);
2900}
2901
Chris Lattner0e62c1c2011-07-23 10:55:15 +00002902static void DumpCXXRecordLayout(raw_ostream &OS,
Jay Foad39c79802011-01-12 09:06:06 +00002903 const CXXRecordDecl *RD, const ASTContext &C,
Anders Carlsson3f018712010-10-31 23:45:59 +00002904 CharUnits Offset,
Daniel Dunbaraa423af2010-04-08 02:59:49 +00002905 unsigned IndentLevel,
2906 const char* Description,
2907 bool IncludeVirtualBases) {
Anders Carlsson3f018712010-10-31 23:45:59 +00002908 const ASTRecordLayout &Layout = C.getASTRecordLayout(RD);
Daniel Dunbaraa423af2010-04-08 02:59:49 +00002909
2910 PrintOffset(OS, Offset, IndentLevel);
Dan Gohman145f3f12010-04-19 16:39:44 +00002911 OS << C.getTypeDeclType(const_cast<CXXRecordDecl *>(RD)).getAsString();
Daniel Dunbaraa423af2010-04-08 02:59:49 +00002912 if (Description)
2913 OS << ' ' << Description;
2914 if (RD->isEmpty())
2915 OS << " (empty)";
2916 OS << '\n';
2917
2918 IndentLevel++;
2919
Anders Carlsson3f018712010-10-31 23:45:59 +00002920 const CXXRecordDecl *PrimaryBase = Layout.getPrimaryBase();
Warren Hunt8f8bad72013-10-11 20:19:00 +00002921 bool HasOwnVFPtr = Layout.hasOwnVFPtr();
2922 bool HasOwnVBPtr = Layout.hasOwnVBPtr();
Daniel Dunbaraa423af2010-04-08 02:59:49 +00002923
2924 // Vtable pointer.
Warren Hunt8f8bad72013-10-11 20:19:00 +00002925 if (RD->isDynamicClass() && !PrimaryBase && !isMsLayout(RD)) {
Daniel Dunbaraa423af2010-04-08 02:59:49 +00002926 PrintOffset(OS, Offset, IndentLevel);
Benjamin Kramerb89514a2011-10-14 18:45:37 +00002927 OS << '(' << *RD << " vtable pointer)\n";
Warren Hunt8f8bad72013-10-11 20:19:00 +00002928 } else if (HasOwnVFPtr) {
2929 PrintOffset(OS, Offset, IndentLevel);
2930 // vfptr (for Microsoft C++ ABI)
2931 OS << '(' << *RD << " vftable pointer)\n";
Daniel Dunbaraa423af2010-04-08 02:59:49 +00002932 }
Warren Hunt8f8bad72013-10-11 20:19:00 +00002933
Daniel Dunbaraa423af2010-04-08 02:59:49 +00002934 // Dump (non-virtual) bases
2935 for (CXXRecordDecl::base_class_const_iterator I = RD->bases_begin(),
2936 E = RD->bases_end(); I != E; ++I) {
2937 assert(!I->getType()->isDependentType() &&
2938 "Cannot layout class with dependent bases.");
2939 if (I->isVirtual())
2940 continue;
2941
2942 const CXXRecordDecl *Base =
2943 cast<CXXRecordDecl>(I->getType()->getAs<RecordType>()->getDecl());
2944
Anders Carlsson3f018712010-10-31 23:45:59 +00002945 CharUnits BaseOffset = Offset + Layout.getBaseClassOffset(Base);
Daniel Dunbaraa423af2010-04-08 02:59:49 +00002946
2947 DumpCXXRecordLayout(OS, Base, C, BaseOffset, IndentLevel,
2948 Base == PrimaryBase ? "(primary base)" : "(base)",
2949 /*IncludeVirtualBases=*/false);
2950 }
Eli Friedman43114f92011-10-21 22:49:56 +00002951
Warren Hunt8f8bad72013-10-11 20:19:00 +00002952 // vbptr (for Microsoft C++ ABI)
2953 if (HasOwnVBPtr) {
Eli Friedman84d2d3a2011-09-27 19:12:27 +00002954 PrintOffset(OS, Offset + Layout.getVBPtrOffset(), IndentLevel);
Benjamin Kramerb89514a2011-10-14 18:45:37 +00002955 OS << '(' << *RD << " vbtable pointer)\n";
Eli Friedman84d2d3a2011-09-27 19:12:27 +00002956 }
Daniel Dunbaraa423af2010-04-08 02:59:49 +00002957
2958 // Dump fields.
2959 uint64_t FieldNo = 0;
2960 for (CXXRecordDecl::field_iterator I = RD->field_begin(),
2961 E = RD->field_end(); I != E; ++I, ++FieldNo) {
David Blaikie40ed2972012-06-06 20:45:41 +00002962 const FieldDecl &Field = **I;
Anders Carlsson3f018712010-10-31 23:45:59 +00002963 CharUnits FieldOffset = Offset +
Ken Dyck86a7fcc2011-01-18 01:56:16 +00002964 C.toCharUnitsFromBits(Layout.getFieldOffset(FieldNo));
Daniel Dunbaraa423af2010-04-08 02:59:49 +00002965
David Blaikie2d7c57e2012-04-30 02:36:29 +00002966 if (const RecordType *RT = Field.getType()->getAs<RecordType>()) {
Daniel Dunbaraa423af2010-04-08 02:59:49 +00002967 if (const CXXRecordDecl *D = dyn_cast<CXXRecordDecl>(RT->getDecl())) {
2968 DumpCXXRecordLayout(OS, D, C, FieldOffset, IndentLevel,
David Blaikie2d7c57e2012-04-30 02:36:29 +00002969 Field.getName().data(),
Daniel Dunbaraa423af2010-04-08 02:59:49 +00002970 /*IncludeVirtualBases=*/true);
2971 continue;
2972 }
2973 }
2974
2975 PrintOffset(OS, FieldOffset, IndentLevel);
David Blaikie2d7c57e2012-04-30 02:36:29 +00002976 OS << Field.getType().getAsString() << ' ' << Field << '\n';
Daniel Dunbaraa423af2010-04-08 02:59:49 +00002977 }
2978
2979 if (!IncludeVirtualBases)
2980 return;
2981
2982 // Dump virtual bases.
John McCalle42a3362012-05-01 08:55:32 +00002983 const ASTRecordLayout::VBaseOffsetsMapTy &vtordisps =
2984 Layout.getVBaseOffsetsMap();
Daniel Dunbaraa423af2010-04-08 02:59:49 +00002985 for (CXXRecordDecl::base_class_const_iterator I = RD->vbases_begin(),
2986 E = RD->vbases_end(); I != E; ++I) {
2987 assert(I->isVirtual() && "Found non-virtual class!");
2988 const CXXRecordDecl *VBase =
2989 cast<CXXRecordDecl>(I->getType()->getAs<RecordType>()->getDecl());
2990
Anders Carlsson3f018712010-10-31 23:45:59 +00002991 CharUnits VBaseOffset = Offset + Layout.getVBaseClassOffset(VBase);
John McCalle42a3362012-05-01 08:55:32 +00002992
2993 if (vtordisps.find(VBase)->second.hasVtorDisp()) {
2994 PrintOffset(OS, VBaseOffset - CharUnits::fromQuantity(4), IndentLevel);
2995 OS << "(vtordisp for vbase " << *VBase << ")\n";
2996 }
2997
Daniel Dunbaraa423af2010-04-08 02:59:49 +00002998 DumpCXXRecordLayout(OS, VBase, C, VBaseOffset, IndentLevel,
2999 VBase == PrimaryBase ?
3000 "(primary virtual base)" : "(virtual base)",
3001 /*IncludeVirtualBases=*/false);
3002 }
Daniel Dunbaraa423af2010-04-08 02:59:49 +00003003
Eli Benderskyf6f93ee2012-12-08 00:07:24 +00003004 PrintIndentNoOffset(OS, IndentLevel - 1);
3005 OS << "[sizeof=" << Layout.getSize().getQuantity();
Warren Hunt8f8bad72013-10-11 20:19:00 +00003006 if (!isMsLayout(RD))
3007 OS << ", dsize=" << Layout.getDataSize().getQuantity();
Ken Dyck7ad11e72011-02-15 02:32:40 +00003008 OS << ", align=" << Layout.getAlignment().getQuantity() << '\n';
Eli Benderskyf6f93ee2012-12-08 00:07:24 +00003009
3010 PrintIndentNoOffset(OS, IndentLevel - 1);
3011 OS << " nvsize=" << Layout.getNonVirtualSize().getQuantity();
3012 OS << ", nvalign=" << Layout.getNonVirtualAlign().getQuantity() << "]\n";
Daniel Dunbaraa423af2010-04-08 02:59:49 +00003013 OS << '\n';
3014}
Daniel Dunbarccabe482010-04-19 20:44:53 +00003015
3016void ASTContext::DumpRecordLayout(const RecordDecl *RD,
Douglas Gregore9fc3772012-01-26 07:55:45 +00003017 raw_ostream &OS,
3018 bool Simple) const {
Daniel Dunbarccabe482010-04-19 20:44:53 +00003019 const ASTRecordLayout &Info = getASTRecordLayout(RD);
3020
3021 if (const CXXRecordDecl *CXXRD = dyn_cast<CXXRecordDecl>(RD))
Douglas Gregore9fc3772012-01-26 07:55:45 +00003022 if (!Simple)
3023 return DumpCXXRecordLayout(OS, CXXRD, *this, CharUnits(), 0, 0,
3024 /*IncludeVirtualBases=*/true);
Daniel Dunbarccabe482010-04-19 20:44:53 +00003025
3026 OS << "Type: " << getTypeDeclType(RD).getAsString() << "\n";
Douglas Gregore9fc3772012-01-26 07:55:45 +00003027 if (!Simple) {
3028 OS << "Record: ";
3029 RD->dump();
3030 }
Daniel Dunbarccabe482010-04-19 20:44:53 +00003031 OS << "\nLayout: ";
3032 OS << "<ASTRecordLayout\n";
Ken Dyckb0fcc592011-02-11 01:54:29 +00003033 OS << " Size:" << toBits(Info.getSize()) << "\n";
Warren Hunt8f8bad72013-10-11 20:19:00 +00003034 if (!isMsLayout(RD))
3035 OS << " DataSize:" << toBits(Info.getDataSize()) << "\n";
Ken Dyck7ad11e72011-02-15 02:32:40 +00003036 OS << " Alignment:" << toBits(Info.getAlignment()) << "\n";
Daniel Dunbarccabe482010-04-19 20:44:53 +00003037 OS << " FieldOffsets: [";
3038 for (unsigned i = 0, e = Info.getFieldCount(); i != e; ++i) {
3039 if (i) OS << ", ";
3040 OS << Info.getFieldOffset(i);
3041 }
3042 OS << "]>\n";
3043}