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Anders Carlsson2bb27f52009-10-11 22:13:54 +00001//===--- CGVtable.cpp - Emit LLVM Code for C++ vtables --------------------===//
2//
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//
10// This contains code dealing with C++ code generation of virtual tables.
11//
12//===----------------------------------------------------------------------===//
13
14#include "CodeGenModule.h"
15#include "CodeGenFunction.h"
Anders Carlssonf942ee02009-11-27 20:47:55 +000016#include "clang/AST/CXXInheritance.h"
Anders Carlsson2bb27f52009-10-11 22:13:54 +000017#include "clang/AST/RecordLayout.h"
Anders Carlssond420a312009-11-26 19:32:45 +000018#include "llvm/ADT/DenseSet.h"
Anders Carlssond46ed892010-02-27 16:18:19 +000019#include "llvm/ADT/SetVector.h"
Chandler Carruth94eab4a2010-02-13 10:38:52 +000020#include "llvm/Support/Compiler.h"
Anders Carlsson5d40c6f2010-02-11 08:02:13 +000021#include "llvm/Support/Format.h"
Zhongxing Xu1721ef72009-11-13 05:46:16 +000022#include <cstdio>
Anders Carlsson2bb27f52009-10-11 22:13:54 +000023
24using namespace clang;
25using namespace CodeGen;
26
Anders Carlssond59885022009-11-27 22:21:51 +000027namespace {
Anders Carlsson5d40c6f2010-02-11 08:02:13 +000028
Anders Carlsson075056a2010-02-23 01:34:28 +000029/// BaseOffset - Represents an offset from a derived class to a direct or
30/// indirect base class.
31struct BaseOffset {
32 /// DerivedClass - The derived class.
33 const CXXRecordDecl *DerivedClass;
34
35 /// VirtualBase - If the path from the derived class to the base class
36 /// involves a virtual base class, this holds its declaration.
37 const CXXRecordDecl *VirtualBase;
38
39 /// NonVirtualOffset - The offset from the derived class to the base class.
40 /// (Or the offset from the virtual base class to the base class, if the
41 /// path from the derived class to the base class involves a virtual base
42 /// class.
43 int64_t NonVirtualOffset;
44
45 BaseOffset() : DerivedClass(0), VirtualBase(0), NonVirtualOffset(0) { }
46 BaseOffset(const CXXRecordDecl *DerivedClass,
47 const CXXRecordDecl *VirtualBase, int64_t NonVirtualOffset)
48 : DerivedClass(DerivedClass), VirtualBase(VirtualBase),
49 NonVirtualOffset(NonVirtualOffset) { }
50
51 bool isEmpty() const { return !NonVirtualOffset && !VirtualBase; }
52};
53
Anders Carlssone8ac42a2010-02-11 21:24:32 +000054/// FinalOverriders - Contains the final overrider member functions for all
55/// member functions in the base subobjects of a class.
56class FinalOverriders {
Anders Carlsson136bd192010-02-12 16:55:34 +000057public:
58 /// OverriderInfo - Information about a final overrider.
59 struct OverriderInfo {
60 /// Method - The method decl of the overrider.
61 const CXXMethodDecl *Method;
Anders Carlsson5a7654a2010-02-18 16:29:24 +000062
63 /// BaseOffset - the base offset of the overrider.
64 uint64_t BaseOffset;
Anders Carlsson136bd192010-02-12 16:55:34 +000065
Anders Carlsson5a7654a2010-02-18 16:29:24 +000066 OverriderInfo() : Method(0), BaseOffset(0) { }
Anders Carlsson136bd192010-02-12 16:55:34 +000067 };
68
69private:
Anders Carlssone8ac42a2010-02-11 21:24:32 +000070 /// MostDerivedClass - The most derived class for which the final overriders
71 /// are stored.
72 const CXXRecordDecl *MostDerivedClass;
73
74 ASTContext &Context;
75
76 /// MostDerivedClassLayout - the AST record layout of the most derived class.
77 const ASTRecordLayout &MostDerivedClassLayout;
78
Anders Carlssoneee53d92010-02-13 02:02:03 +000079 /// BaseSubobjectMethodPairTy - Uniquely identifies a member function
80 /// in a base subobject.
81 typedef std::pair<BaseSubobject, const CXXMethodDecl *>
82 BaseSubobjectMethodPairTy;
83
84 typedef llvm::DenseMap<BaseSubobjectMethodPairTy,
Anders Carlsson136bd192010-02-12 16:55:34 +000085 OverriderInfo> OverridersMapTy;
Anders Carlssone8ac42a2010-02-11 21:24:32 +000086
87 /// OverridersMap - The final overriders for all virtual member functions of
88 /// all the base subobjects of the most derived class.
89 OverridersMapTy OverridersMap;
90
Anders Carlsson6a7e6a42010-02-14 00:37:35 +000091 /// VisitedVirtualBases - A set of all the visited virtual bases, used to
92 /// avoid visiting virtual bases more than once.
93 llvm::SmallPtrSet<const CXXRecordDecl *, 4> VisitedVirtualBases;
94
Anders Carlssoneee53d92010-02-13 02:02:03 +000095 typedef llvm::DenseMap<BaseSubobjectMethodPairTy, BaseOffset>
96 AdjustmentOffsetsMapTy;
97
98 /// ReturnAdjustments - Holds return adjustments for all the overriders that
99 /// need to perform return value adjustments.
100 AdjustmentOffsetsMapTy ReturnAdjustments;
Anders Carlssoncce9ee82010-02-13 23:17:31 +0000101
Anders Carlsson9fbf6d92010-02-12 01:40:03 +0000102 typedef llvm::SmallVector<uint64_t, 1> OffsetVectorTy;
103
104 /// SubobjectOffsetsMapTy - This map is used for keeping track of all the
105 /// base subobject offsets that a single class declaration might refer to.
106 ///
107 /// For example, in:
108 ///
109 /// struct A { virtual void f(); };
110 /// struct B1 : A { };
111 /// struct B2 : A { };
112 /// struct C : B1, B2 { virtual void f(); };
113 ///
114 /// when we determine that C::f() overrides A::f(), we need to update the
115 /// overriders map for both A-in-B1 and A-in-B2 and the subobject offsets map
116 /// will have the subobject offsets for both A copies.
117 typedef llvm::DenseMap<const CXXRecordDecl *, OffsetVectorTy>
118 SubobjectOffsetsMapTy;
119
Anders Carlssone8ac42a2010-02-11 21:24:32 +0000120 /// ComputeFinalOverriders - Compute the final overriders for a given base
121 /// subobject (and all its direct and indirect bases).
Anders Carlsson9fbf6d92010-02-12 01:40:03 +0000122 void ComputeFinalOverriders(BaseSubobject Base,
Anders Carlsson231461f2010-02-17 17:48:25 +0000123 bool BaseSubobjectIsVisitedVBase,
Anders Carlsson9fbf6d92010-02-12 01:40:03 +0000124 SubobjectOffsetsMapTy &Offsets);
Anders Carlssone8ac42a2010-02-11 21:24:32 +0000125
126 /// AddOverriders - Add the final overriders for this base subobject to the
127 /// map of final overriders.
Anders Carlsson9fbf6d92010-02-12 01:40:03 +0000128 void AddOverriders(BaseSubobject Base, SubobjectOffsetsMapTy &Offsets);
129
130 /// PropagateOverrider - Propagate the NewMD overrider to all the functions
131 /// that OldMD overrides. For example, if we have:
132 ///
133 /// struct A { virtual void f(); };
134 /// struct B : A { virtual void f(); };
135 /// struct C : B { virtual void f(); };
136 ///
137 /// and we want to override B::f with C::f, we also need to override A::f with
138 /// C::f.
139 void PropagateOverrider(const CXXMethodDecl *OldMD,
Anders Carlssona678aa12010-02-13 22:23:31 +0000140 BaseSubobject NewBase,
Anders Carlsson9fbf6d92010-02-12 01:40:03 +0000141 const CXXMethodDecl *NewMD,
142 SubobjectOffsetsMapTy &Offsets);
Anders Carlssone8ac42a2010-02-11 21:24:32 +0000143
Anders Carlsson9fbf6d92010-02-12 01:40:03 +0000144 static void MergeSubobjectOffsets(const SubobjectOffsetsMapTy &NewOffsets,
145 SubobjectOffsetsMapTy &Offsets);
146
Anders Carlssone8ac42a2010-02-11 21:24:32 +0000147public:
148 explicit FinalOverriders(const CXXRecordDecl *MostDerivedClass);
Anders Carlsson8025e7b2010-02-24 22:18:01 +0000149
Anders Carlssone8ac42a2010-02-11 21:24:32 +0000150 /// getOverrider - Get the final overrider for the given method declaration in
151 /// the given base subobject.
Anders Carlsson6a6cbfc2010-02-13 20:11:51 +0000152 OverriderInfo getOverrider(BaseSubobject Base,
153 const CXXMethodDecl *MD) const {
Anders Carlssone8ac42a2010-02-11 21:24:32 +0000154 assert(OverridersMap.count(std::make_pair(Base, MD)) &&
155 "Did not find overrider!");
156
157 return OverridersMap.lookup(std::make_pair(Base, MD));
158 }
159
Anders Carlssond3adb0c2010-02-13 23:40:17 +0000160 /// getReturnAdjustmentOffset - Get the return adjustment offset for the
161 /// method decl in the given base subobject. Returns an empty base offset if
162 /// no adjustment is needed.
Anders Carlsson6a6cbfc2010-02-13 20:11:51 +0000163 BaseOffset getReturnAdjustmentOffset(BaseSubobject Base,
164 const CXXMethodDecl *MD) const {
165 return ReturnAdjustments.lookup(std::make_pair(Base, MD));
166 }
167
Anders Carlssone8ac42a2010-02-11 21:24:32 +0000168 /// dump - dump the final overriders.
Anders Carlsson6a7e6a42010-02-14 00:37:35 +0000169 void dump() {
170 assert(VisitedVirtualBases.empty() &&
171 "Visited virtual bases aren't empty!");
172 dump(llvm::errs(), BaseSubobject(MostDerivedClass, 0));
173 VisitedVirtualBases.clear();
Anders Carlssone8ac42a2010-02-11 21:24:32 +0000174 }
175
176 /// dump - dump the final overriders for a base subobject, and all its direct
177 /// and indirect base subobjects.
Anders Carlsson6a7e6a42010-02-14 00:37:35 +0000178 void dump(llvm::raw_ostream &Out, BaseSubobject Base);
Anders Carlssone8ac42a2010-02-11 21:24:32 +0000179};
Anders Carlssoneee53d92010-02-13 02:02:03 +0000180
Anders Carlsson603d7d12010-02-27 20:02:53 +0000181#define DUMP_OVERRIDERS 0
182
Anders Carlssone8ac42a2010-02-11 21:24:32 +0000183FinalOverriders::FinalOverriders(const CXXRecordDecl *MostDerivedClass)
184 : MostDerivedClass(MostDerivedClass),
185 Context(MostDerivedClass->getASTContext()),
186 MostDerivedClassLayout(Context.getASTRecordLayout(MostDerivedClass)) {
187
188 // Compute the final overriders.
Anders Carlsson9fbf6d92010-02-12 01:40:03 +0000189 SubobjectOffsetsMapTy Offsets;
Anders Carlsson231461f2010-02-17 17:48:25 +0000190 ComputeFinalOverriders(BaseSubobject(MostDerivedClass, 0),
191 /*BaseSubobjectIsVisitedVBase=*/false, Offsets);
192 VisitedVirtualBases.clear();
Anders Carlsson603d7d12010-02-27 20:02:53 +0000193
194#if DUMP_OVERRIDERS
Anders Carlssone8ac42a2010-02-11 21:24:32 +0000195 // And dump them (for now).
196 dump();
Anders Carlsson3f9917d2010-02-13 21:33:22 +0000197
198 // Also dump the base offsets (for now).
199 for (SubobjectOffsetsMapTy::const_iterator I = Offsets.begin(),
200 E = Offsets.end(); I != E; ++I) {
201 const OffsetVectorTy& OffsetVector = I->second;
202
203 llvm::errs() << "Base offsets for ";
204 llvm::errs() << I->first->getQualifiedNameAsString() << '\n';
205
206 for (unsigned I = 0, E = OffsetVector.size(); I != E; ++I)
207 llvm::errs() << " " << I << " - " << OffsetVector[I] << '\n';
208 }
Anders Carlsson603d7d12010-02-27 20:02:53 +0000209#endif
Anders Carlssone8ac42a2010-02-11 21:24:32 +0000210}
211
Anders Carlsson9fbf6d92010-02-12 01:40:03 +0000212void FinalOverriders::AddOverriders(BaseSubobject Base,
213 SubobjectOffsetsMapTy &Offsets) {
Anders Carlssone8ac42a2010-02-11 21:24:32 +0000214 const CXXRecordDecl *RD = Base.getBase();
215
216 for (CXXRecordDecl::method_iterator I = RD->method_begin(),
217 E = RD->method_end(); I != E; ++I) {
218 const CXXMethodDecl *MD = *I;
219
220 if (!MD->isVirtual())
221 continue;
222
Anders Carlsson9fbf6d92010-02-12 01:40:03 +0000223 // First, propagate the overrider.
Anders Carlssona678aa12010-02-13 22:23:31 +0000224 PropagateOverrider(MD, Base, MD, Offsets);
Anders Carlsson9fbf6d92010-02-12 01:40:03 +0000225
226 // Add the overrider as the final overrider of itself.
Anders Carlsson136bd192010-02-12 16:55:34 +0000227 OverriderInfo& Overrider = OverridersMap[std::make_pair(Base, MD)];
228 assert(!Overrider.Method && "Overrider should not exist yet!");
Anders Carlssone8ac42a2010-02-11 21:24:32 +0000229
Anders Carlsson5a7654a2010-02-18 16:29:24 +0000230 Overrider.BaseOffset = Base.getBaseOffset();
Anders Carlsson136bd192010-02-12 16:55:34 +0000231 Overrider.Method = MD;
Anders Carlssone8ac42a2010-02-11 21:24:32 +0000232 }
233}
234
Anders Carlsson075056a2010-02-23 01:34:28 +0000235static BaseOffset ComputeBaseOffset(ASTContext &Context,
236 const CXXRecordDecl *DerivedRD,
237 const CXXBasePath &Path) {
Anders Carlssoncce9ee82010-02-13 23:17:31 +0000238 int64_t NonVirtualOffset = 0;
Anders Carlssoneee53d92010-02-13 02:02:03 +0000239
Anders Carlssonf3f67842010-02-13 20:41:15 +0000240 unsigned NonVirtualStart = 0;
241 const CXXRecordDecl *VirtualBase = 0;
242
243 // First, look for the virtual base class.
244 for (unsigned I = 0, E = Path.size(); I != E; ++I) {
245 const CXXBasePathElement &Element = Path[I];
246
247 if (Element.Base->isVirtual()) {
248 // FIXME: Can we break when we find the first virtual base?
249 // (If we can't, can't we just iterate over the path in reverse order?)
250 NonVirtualStart = I + 1;
251 QualType VBaseType = Element.Base->getType();
252 VirtualBase =
253 cast<CXXRecordDecl>(VBaseType->getAs<RecordType>()->getDecl());
254 }
255 }
256
257 // Now compute the non-virtual offset.
258 for (unsigned I = NonVirtualStart, E = Path.size(); I != E; ++I) {
259 const CXXBasePathElement &Element = Path[I];
Anders Carlssoneee53d92010-02-13 02:02:03 +0000260
261 // Check the base class offset.
262 const ASTRecordLayout &Layout = Context.getASTRecordLayout(Element.Class);
Anders Carlssoned7d0e82010-02-25 22:18:35 +0000263
Anders Carlssoneee53d92010-02-13 02:02:03 +0000264 const RecordType *BaseType = Element.Base->getType()->getAs<RecordType>();
265 const CXXRecordDecl *Base = cast<CXXRecordDecl>(BaseType->getDecl());
Anders Carlssoned7d0e82010-02-25 22:18:35 +0000266
Anders Carlssoneee53d92010-02-13 02:02:03 +0000267 NonVirtualOffset += Layout.getBaseClassOffset(Base);
268 }
269
270 // FIXME: This should probably use CharUnits or something. Maybe we should
271 // even change the base offsets in ASTRecordLayout to be specified in
272 // CharUnits.
Anders Carlsson075056a2010-02-23 01:34:28 +0000273 return BaseOffset(DerivedRD, VirtualBase, NonVirtualOffset / 8);
Anders Carlsson258a1e32010-02-14 00:16:19 +0000274
275}
276
Anders Carlsson075056a2010-02-23 01:34:28 +0000277static BaseOffset ComputeBaseOffset(ASTContext &Context,
278 const CXXRecordDecl *BaseRD,
279 const CXXRecordDecl *DerivedRD) {
Anders Carlsson258a1e32010-02-14 00:16:19 +0000280 CXXBasePaths Paths(/*FindAmbiguities=*/false,
281 /*RecordPaths=*/true, /*DetectVirtual=*/false);
282
283 if (!const_cast<CXXRecordDecl *>(DerivedRD)->
284 isDerivedFrom(const_cast<CXXRecordDecl *>(BaseRD), Paths)) {
285 assert(false && "Class must be derived from the passed in base class!");
Anders Carlsson075056a2010-02-23 01:34:28 +0000286 return BaseOffset();
Anders Carlsson258a1e32010-02-14 00:16:19 +0000287 }
288
289 return ComputeBaseOffset(Context, DerivedRD, Paths.front());
Anders Carlssoneee53d92010-02-13 02:02:03 +0000290}
291
Anders Carlsson075056a2010-02-23 01:34:28 +0000292static BaseOffset
Anders Carlssoncce9ee82010-02-13 23:17:31 +0000293ComputeReturnAdjustmentBaseOffset(ASTContext &Context,
294 const CXXMethodDecl *DerivedMD,
295 const CXXMethodDecl *BaseMD) {
Anders Carlssoneee53d92010-02-13 02:02:03 +0000296 const FunctionType *BaseFT = BaseMD->getType()->getAs<FunctionType>();
297 const FunctionType *DerivedFT = DerivedMD->getType()->getAs<FunctionType>();
298
299 // Canonicalize the return types.
300 CanQualType CanDerivedReturnType =
301 Context.getCanonicalType(DerivedFT->getResultType());
302 CanQualType CanBaseReturnType =
303 Context.getCanonicalType(BaseFT->getResultType());
304
305 assert(CanDerivedReturnType->getTypeClass() ==
306 CanBaseReturnType->getTypeClass() &&
307 "Types must have same type class!");
308
309 if (CanDerivedReturnType == CanBaseReturnType) {
310 // No adjustment needed.
Anders Carlsson075056a2010-02-23 01:34:28 +0000311 return BaseOffset();
Anders Carlssoneee53d92010-02-13 02:02:03 +0000312 }
313
314 if (isa<ReferenceType>(CanDerivedReturnType)) {
315 CanDerivedReturnType =
316 CanDerivedReturnType->getAs<ReferenceType>()->getPointeeType();
317 CanBaseReturnType =
318 CanBaseReturnType->getAs<ReferenceType>()->getPointeeType();
319 } else if (isa<PointerType>(CanDerivedReturnType)) {
320 CanDerivedReturnType =
321 CanDerivedReturnType->getAs<PointerType>()->getPointeeType();
322 CanBaseReturnType =
323 CanBaseReturnType->getAs<PointerType>()->getPointeeType();
324 } else {
325 assert(false && "Unexpected return type!");
326 }
327
328 // We need to compare unqualified types here; consider
329 // const T *Base::foo();
330 // T *Derived::foo();
331 if (CanDerivedReturnType.getUnqualifiedType() ==
332 CanBaseReturnType.getUnqualifiedType()) {
333 // No adjustment needed.
Anders Carlsson075056a2010-02-23 01:34:28 +0000334 return BaseOffset();
Anders Carlssoneee53d92010-02-13 02:02:03 +0000335 }
336
337 const CXXRecordDecl *DerivedRD =
338 cast<CXXRecordDecl>(cast<RecordType>(CanDerivedReturnType)->getDecl());
339
340 const CXXRecordDecl *BaseRD =
341 cast<CXXRecordDecl>(cast<RecordType>(CanBaseReturnType)->getDecl());
342
Anders Carlssoncce9ee82010-02-13 23:17:31 +0000343 return ComputeBaseOffset(Context, BaseRD, DerivedRD);
Anders Carlssoneee53d92010-02-13 02:02:03 +0000344}
345
Anders Carlsson9fbf6d92010-02-12 01:40:03 +0000346void FinalOverriders::PropagateOverrider(const CXXMethodDecl *OldMD,
Anders Carlssona678aa12010-02-13 22:23:31 +0000347 BaseSubobject NewBase,
Anders Carlsson9fbf6d92010-02-12 01:40:03 +0000348 const CXXMethodDecl *NewMD,
349 SubobjectOffsetsMapTy &Offsets) {
350 for (CXXMethodDecl::method_iterator I = OldMD->begin_overridden_methods(),
351 E = OldMD->end_overridden_methods(); I != E; ++I) {
352 const CXXMethodDecl *OverriddenMD = *I;
353 const CXXRecordDecl *OverriddenRD = OverriddenMD->getParent();
354
355 // We want to override OverriddenMD in all subobjects, for example:
356 //
357 /// struct A { virtual void f(); };
358 /// struct B1 : A { };
359 /// struct B2 : A { };
360 /// struct C : B1, B2 { virtual void f(); };
361 ///
362 /// When overriding A::f with C::f we need to do so in both A subobjects.
363 const OffsetVectorTy &OffsetVector = Offsets[OverriddenRD];
364
365 // Go through all the subobjects.
366 for (unsigned I = 0, E = OffsetVector.size(); I != E; ++I) {
367 uint64_t Offset = OffsetVector[I];
368
Anders Carlsson258a1e32010-02-14 00:16:19 +0000369 BaseSubobject OverriddenSubobject = BaseSubobject(OverriddenRD, Offset);
Anders Carlssoneee53d92010-02-13 02:02:03 +0000370 BaseSubobjectMethodPairTy SubobjectAndMethod =
Anders Carlsson258a1e32010-02-14 00:16:19 +0000371 std::make_pair(OverriddenSubobject, OverriddenMD);
Anders Carlssoneee53d92010-02-13 02:02:03 +0000372
373 OverriderInfo &Overrider = OverridersMap[SubobjectAndMethod];
374
Anders Carlsson136bd192010-02-12 16:55:34 +0000375 assert(Overrider.Method && "Did not find existing overrider!");
Anders Carlsson9fbf6d92010-02-12 01:40:03 +0000376
Anders Carlssoncce9ee82010-02-13 23:17:31 +0000377 // Check if we need return adjustments or base adjustments.
Anders Carlssonc1290ad2010-02-13 21:16:54 +0000378 // (We don't want to do this for pure virtual member functions).
379 if (!NewMD->isPure()) {
Anders Carlssoncce9ee82010-02-13 23:17:31 +0000380 // Get the return adjustment base offset.
Anders Carlssonc1290ad2010-02-13 21:16:54 +0000381 BaseOffset ReturnBaseOffset =
Anders Carlssoncce9ee82010-02-13 23:17:31 +0000382 ComputeReturnAdjustmentBaseOffset(Context, NewMD, OverriddenMD);
383
Anders Carlssonc1290ad2010-02-13 21:16:54 +0000384 if (!ReturnBaseOffset.isEmpty()) {
385 // Store the return adjustment base offset.
386 ReturnAdjustments[SubobjectAndMethod] = ReturnBaseOffset;
387 }
Anders Carlsson8e661e12010-02-12 17:13:23 +0000388 }
389
Anders Carlsson9fbf6d92010-02-12 01:40:03 +0000390 // Set the new overrider.
Anders Carlsson5a7654a2010-02-18 16:29:24 +0000391 Overrider.BaseOffset = NewBase.getBaseOffset();
Anders Carlsson136bd192010-02-12 16:55:34 +0000392 Overrider.Method = NewMD;
Anders Carlsson9fbf6d92010-02-12 01:40:03 +0000393
394 // And propagate it further.
Anders Carlssona678aa12010-02-13 22:23:31 +0000395 PropagateOverrider(OverriddenMD, NewBase, NewMD, Offsets);
Anders Carlsson9fbf6d92010-02-12 01:40:03 +0000396 }
397 }
398}
399
400void
401FinalOverriders::MergeSubobjectOffsets(const SubobjectOffsetsMapTy &NewOffsets,
402 SubobjectOffsetsMapTy &Offsets) {
403 // Iterate over the new offsets.
404 for (SubobjectOffsetsMapTy::const_iterator I = NewOffsets.begin(),
405 E = NewOffsets.end(); I != E; ++I) {
406 const CXXRecordDecl *NewRD = I->first;
Anders Carlsson3f9917d2010-02-13 21:33:22 +0000407 const OffsetVectorTy& NewOffsetVector = I->second;
Anders Carlsson9fbf6d92010-02-12 01:40:03 +0000408
Anders Carlsson3f9917d2010-02-13 21:33:22 +0000409 OffsetVectorTy &OffsetVector = Offsets[NewRD];
410 if (OffsetVector.empty()) {
Anders Carlsson9fbf6d92010-02-12 01:40:03 +0000411 // There were no previous offsets in this vector, just insert all entries
Anders Carlsson3f9917d2010-02-13 21:33:22 +0000412 // from the new offset vector.
413 OffsetVector.append(NewOffsetVector.begin(), NewOffsetVector.end());
Anders Carlsson9fbf6d92010-02-12 01:40:03 +0000414 continue;
415 }
416
Anders Carlsson3f9917d2010-02-13 21:33:22 +0000417 // We need to merge the new offsets vector into the old, but we don't want
418 // to have duplicate entries. Do this by inserting the old offsets in a set
419 // so they'll be unique. After this, we iterate over the new offset vector
420 // and only append elements that aren't in the set.
421
422 // First, add the existing offsets to the set.
423 llvm::SmallSet<uint64_t, 4> OffsetSet;
424 for (unsigned I = 0, E = OffsetVector.size(); I != E; ++I) {
425 bool Inserted = OffsetSet.insert(OffsetVector[I]);
426 if (!Inserted)
427 assert(false && "Set of offsets should be unique!");
428 }
429
430 // Next, only add the new offsets if they are not already in the set.
431 for (unsigned I = 0, E = NewOffsetVector.size(); I != E; ++I) {
432 uint64_t Offset = NewOffsetVector[I];
433
434 if (OffsetSet.count(Offset)) {
435 // Ignore the offset.
436 continue;
437 }
438
439 // Otherwise, add it to the offsets vector.
440 OffsetVector.push_back(Offset);
441 }
Anders Carlsson9fbf6d92010-02-12 01:40:03 +0000442 }
443}
444
445void FinalOverriders::ComputeFinalOverriders(BaseSubobject Base,
Anders Carlsson231461f2010-02-17 17:48:25 +0000446 bool BaseSubobjectIsVisitedVBase,
Anders Carlsson9fbf6d92010-02-12 01:40:03 +0000447 SubobjectOffsetsMapTy &Offsets) {
Anders Carlssone8ac42a2010-02-11 21:24:32 +0000448 const CXXRecordDecl *RD = Base.getBase();
Anders Carlsson9fbf6d92010-02-12 01:40:03 +0000449 const ASTRecordLayout &Layout = Context.getASTRecordLayout(RD);
Anders Carlssone8ac42a2010-02-11 21:24:32 +0000450
Anders Carlsson9fbf6d92010-02-12 01:40:03 +0000451 SubobjectOffsetsMapTy NewOffsets;
452
453 for (CXXRecordDecl::base_class_const_iterator I = RD->bases_begin(),
454 E = RD->bases_end(); I != E; ++I) {
455 const CXXRecordDecl *BaseDecl =
456 cast<CXXRecordDecl>(I->getType()->getAs<RecordType>()->getDecl());
457
Anders Carlsson033d4862010-02-14 17:05:59 +0000458 // Ignore bases that don't have any virtual member functions.
459 if (!BaseDecl->isPolymorphic())
460 continue;
461
Anders Carlssoned7d0e82010-02-25 22:18:35 +0000462 bool IsVisitedVirtualBase = BaseSubobjectIsVisitedVBase;
Anders Carlsson6a7e6a42010-02-14 00:37:35 +0000463 uint64_t BaseOffset;
464 if (I->isVirtual()) {
Anders Carlsson231461f2010-02-17 17:48:25 +0000465 if (!VisitedVirtualBases.insert(BaseDecl))
466 IsVisitedVirtualBase = true;
Anders Carlsson6a7e6a42010-02-14 00:37:35 +0000467 BaseOffset = MostDerivedClassLayout.getVBaseClassOffset(BaseDecl);
468 } else {
469 BaseOffset = Layout.getBaseClassOffset(BaseDecl) + Base.getBaseOffset();
470 }
471
Anders Carlsson9fbf6d92010-02-12 01:40:03 +0000472 // Compute the final overriders for this base.
Anders Carlsson231461f2010-02-17 17:48:25 +0000473 // We always want to compute the final overriders, even if the base is a
474 // visited virtual base. Consider:
475 //
476 // struct A {
477 // virtual void f();
478 // virtual void g();
479 // };
480 //
481 // struct B : virtual A {
482 // void f();
483 // };
484 //
485 // struct C : virtual A {
486 // void g ();
487 // };
488 //
489 // struct D : B, C { };
490 //
491 // Here, we still want to compute the overriders for A as a base of C,
492 // because otherwise we'll miss that C::g overrides A::f.
493 ComputeFinalOverriders(BaseSubobject(BaseDecl, BaseOffset),
494 IsVisitedVirtualBase, NewOffsets);
Anders Carlsson9fbf6d92010-02-12 01:40:03 +0000495 }
496
497 /// Now add the overriders for this particular subobject.
Anders Carlsson231461f2010-02-17 17:48:25 +0000498 /// (We don't want to do this more than once for a virtual base).
499 if (!BaseSubobjectIsVisitedVBase)
500 AddOverriders(Base, NewOffsets);
Anders Carlsson9fbf6d92010-02-12 01:40:03 +0000501
502 // And merge the newly discovered subobject offsets.
503 MergeSubobjectOffsets(NewOffsets, Offsets);
504
505 /// Finally, add the offset for our own subobject.
506 Offsets[RD].push_back(Base.getBaseOffset());
Anders Carlssone8ac42a2010-02-11 21:24:32 +0000507}
508
Anders Carlsson6a7e6a42010-02-14 00:37:35 +0000509void FinalOverriders::dump(llvm::raw_ostream &Out, BaseSubobject Base) {
Anders Carlssone8ac42a2010-02-11 21:24:32 +0000510 const CXXRecordDecl *RD = Base.getBase();
511 const ASTRecordLayout &Layout = Context.getASTRecordLayout(RD);
512
513 for (CXXRecordDecl::base_class_const_iterator I = RD->bases_begin(),
514 E = RD->bases_end(); I != E; ++I) {
Anders Carlssone8ac42a2010-02-11 21:24:32 +0000515 const CXXRecordDecl *BaseDecl =
516 cast<CXXRecordDecl>(I->getType()->getAs<RecordType>()->getDecl());
517
Anders Carlsson033d4862010-02-14 17:05:59 +0000518 // Ignore bases that don't have any virtual member functions.
519 if (!BaseDecl->isPolymorphic())
520 continue;
521
Anders Carlsson6a7e6a42010-02-14 00:37:35 +0000522 uint64_t BaseOffset;
523 if (I->isVirtual()) {
524 if (!VisitedVirtualBases.insert(BaseDecl)) {
525 // We've visited this base before.
526 continue;
527 }
528
529 BaseOffset = MostDerivedClassLayout.getVBaseClassOffset(BaseDecl);
530 } else {
531 BaseOffset = Layout.getBaseClassOffset(BaseDecl) +
532 Base.getBaseOffset();
533 }
534
Anders Carlssone8ac42a2010-02-11 21:24:32 +0000535 dump(Out, BaseSubobject(BaseDecl, BaseOffset));
536 }
537
538 Out << "Final overriders for (" << RD->getQualifiedNameAsString() << ", ";
539 Out << Base.getBaseOffset() << ")\n";
540
541 // Now dump the overriders for this base subobject.
542 for (CXXRecordDecl::method_iterator I = RD->method_begin(),
543 E = RD->method_end(); I != E; ++I) {
544 const CXXMethodDecl *MD = *I;
545
546 if (!MD->isVirtual())
547 continue;
548
Anders Carlsson136bd192010-02-12 16:55:34 +0000549 OverriderInfo Overrider = getOverrider(Base, MD);
Anders Carlssone8ac42a2010-02-11 21:24:32 +0000550
551 Out << " " << MD->getQualifiedNameAsString() << " - ";
Anders Carlsson8e661e12010-02-12 17:13:23 +0000552 Out << Overrider.Method->getQualifiedNameAsString();
Anders Carlssoneee53d92010-02-13 02:02:03 +0000553
Benjamin Kramer02c67372010-02-13 09:11:28 +0000554 AdjustmentOffsetsMapTy::const_iterator AI =
Anders Carlssoneee53d92010-02-13 02:02:03 +0000555 ReturnAdjustments.find(std::make_pair(Base, MD));
Benjamin Kramer02c67372010-02-13 09:11:28 +0000556 if (AI != ReturnAdjustments.end()) {
557 const BaseOffset &Offset = AI->second;
Anders Carlssonf3f67842010-02-13 20:41:15 +0000558
559 Out << " [ret-adj: ";
560 if (Offset.VirtualBase)
561 Out << Offset.VirtualBase->getQualifiedNameAsString() << " vbase, ";
Anders Carlssoneee53d92010-02-13 02:02:03 +0000562
Anders Carlssonf3f67842010-02-13 20:41:15 +0000563 Out << Offset.NonVirtualOffset << " nv]";
Anders Carlssoneee53d92010-02-13 02:02:03 +0000564 }
Anders Carlssoncce9ee82010-02-13 23:17:31 +0000565
Anders Carlsson8e661e12010-02-12 17:13:23 +0000566 Out << "\n";
Anders Carlssone8ac42a2010-02-11 21:24:32 +0000567 }
568}
569
Anders Carlsson5d40c6f2010-02-11 08:02:13 +0000570/// VtableComponent - Represents a single component in a vtable.
571class VtableComponent {
572public:
573 enum Kind {
574 CK_VCallOffset,
575 CK_VBaseOffset,
576 CK_OffsetToTop,
577 CK_RTTI,
Anders Carlsson5bd8d192010-02-11 18:20:28 +0000578 CK_FunctionPointer,
579
580 /// CK_CompleteDtorPointer - A pointer to the complete destructor.
581 CK_CompleteDtorPointer,
582
583 /// CK_DeletingDtorPointer - A pointer to the deleting destructor.
Anders Carlsson350b56e2010-02-19 20:08:13 +0000584 CK_DeletingDtorPointer,
585
586 /// CK_UnusedFunctionPointer - In some cases, a vtable function pointer
587 /// will end up never being called. Such vtable function pointers are
588 /// represented as a CK_UnusedFunctionPointer.
589 CK_UnusedFunctionPointer
Anders Carlsson5d40c6f2010-02-11 08:02:13 +0000590 };
591
Anders Carlssonb0a588f2010-02-17 06:07:19 +0000592 static VtableComponent MakeVCallOffset(int64_t Offset) {
593 return VtableComponent(CK_VCallOffset, Offset);
594 }
595
Anders Carlssondc2dba32010-02-16 04:49:44 +0000596 static VtableComponent MakeVBaseOffset(int64_t Offset) {
597 return VtableComponent(CK_VBaseOffset, Offset);
598 }
599
Anders Carlsson5d40c6f2010-02-11 08:02:13 +0000600 static VtableComponent MakeOffsetToTop(int64_t Offset) {
601 return VtableComponent(CK_OffsetToTop, Offset);
602 }
603
604 static VtableComponent MakeRTTI(const CXXRecordDecl *RD) {
605 return VtableComponent(CK_RTTI, reinterpret_cast<uintptr_t>(RD));
606 }
607
608 static VtableComponent MakeFunction(const CXXMethodDecl *MD) {
609 assert(!isa<CXXDestructorDecl>(MD) &&
Anders Carlsson5bd8d192010-02-11 18:20:28 +0000610 "Don't use MakeFunction with destructors!");
Anders Carlsson5d40c6f2010-02-11 08:02:13 +0000611
Anders Carlsson5bd8d192010-02-11 18:20:28 +0000612 return VtableComponent(CK_FunctionPointer,
Anders Carlsson5d40c6f2010-02-11 08:02:13 +0000613 reinterpret_cast<uintptr_t>(MD));
614 }
615
Anders Carlsson5bd8d192010-02-11 18:20:28 +0000616 static VtableComponent MakeCompleteDtor(const CXXDestructorDecl *DD) {
617 return VtableComponent(CK_CompleteDtorPointer,
618 reinterpret_cast<uintptr_t>(DD));
619 }
620
621 static VtableComponent MakeDeletingDtor(const CXXDestructorDecl *DD) {
622 return VtableComponent(CK_DeletingDtorPointer,
623 reinterpret_cast<uintptr_t>(DD));
624 }
625
Anders Carlsson350b56e2010-02-19 20:08:13 +0000626 static VtableComponent MakeUnusedFunction(const CXXMethodDecl *MD) {
627 assert(!isa<CXXDestructorDecl>(MD) &&
628 "Don't use MakeUnusedFunction with destructors!");
629 return VtableComponent(CK_UnusedFunctionPointer,
630 reinterpret_cast<uintptr_t>(MD));
631 }
632
Anders Carlsson5d40c6f2010-02-11 08:02:13 +0000633 /// getKind - Get the kind of this vtable component.
634 Kind getKind() const {
635 return (Kind)(Value & 0x7);
636 }
637
Anders Carlssonb0a588f2010-02-17 06:07:19 +0000638 int64_t getVCallOffset() const {
639 assert(getKind() == CK_VCallOffset && "Invalid component kind!");
640
641 return getOffset();
642 }
643
Anders Carlssondc2dba32010-02-16 04:49:44 +0000644 int64_t getVBaseOffset() const {
645 assert(getKind() == CK_VBaseOffset && "Invalid component kind!");
646
647 return getOffset();
648 }
649
Anders Carlsson5d40c6f2010-02-11 08:02:13 +0000650 int64_t getOffsetToTop() const {
651 assert(getKind() == CK_OffsetToTop && "Invalid component kind!");
652
653 return getOffset();
654 }
655
656 const CXXRecordDecl *getRTTIDecl() const {
657 assert(getKind() == CK_RTTI && "Invalid component kind!");
658
659 return reinterpret_cast<CXXRecordDecl *>(getPointer());
660 }
661
662 const CXXMethodDecl *getFunctionDecl() const {
Anders Carlsson5bd8d192010-02-11 18:20:28 +0000663 assert(getKind() == CK_FunctionPointer);
Anders Carlsson5d40c6f2010-02-11 08:02:13 +0000664
665 return reinterpret_cast<CXXMethodDecl *>(getPointer());
666 }
Anders Carlsson5bd8d192010-02-11 18:20:28 +0000667
668 const CXXDestructorDecl *getDestructorDecl() const {
669 assert((getKind() == CK_CompleteDtorPointer ||
670 getKind() == CK_DeletingDtorPointer) && "Invalid component kind!");
671
672 return reinterpret_cast<CXXDestructorDecl *>(getPointer());
673 }
674
Anders Carlsson350b56e2010-02-19 20:08:13 +0000675 const CXXMethodDecl *getUnusedFunctionDecl() const {
676 assert(getKind() == CK_UnusedFunctionPointer);
677
678 return reinterpret_cast<CXXMethodDecl *>(getPointer());
679 }
680
Anders Carlsson5d40c6f2010-02-11 08:02:13 +0000681private:
682 VtableComponent(Kind ComponentKind, int64_t Offset) {
683 assert((ComponentKind == CK_VCallOffset ||
684 ComponentKind == CK_VBaseOffset ||
685 ComponentKind == CK_OffsetToTop) && "Invalid component kind!");
686 assert(Offset <= ((1LL << 56) - 1) && "Offset is too big!");
687
688 Value = ((Offset << 3) | ComponentKind);
689 }
690
691 VtableComponent(Kind ComponentKind, uintptr_t Ptr) {
692 assert((ComponentKind == CK_RTTI ||
Anders Carlsson5bd8d192010-02-11 18:20:28 +0000693 ComponentKind == CK_FunctionPointer ||
694 ComponentKind == CK_CompleteDtorPointer ||
Anders Carlsson350b56e2010-02-19 20:08:13 +0000695 ComponentKind == CK_DeletingDtorPointer ||
696 ComponentKind == CK_UnusedFunctionPointer) &&
Anders Carlsson5d40c6f2010-02-11 08:02:13 +0000697 "Invalid component kind!");
698
699 assert((Ptr & 7) == 0 && "Pointer not sufficiently aligned!");
700
701 Value = Ptr | ComponentKind;
702 }
703
704 int64_t getOffset() const {
705 assert((getKind() == CK_VCallOffset || getKind() == CK_VBaseOffset ||
706 getKind() == CK_OffsetToTop) && "Invalid component kind!");
707
708 return Value >> 3;
709 }
710
711 uintptr_t getPointer() const {
Anders Carlsson5bd8d192010-02-11 18:20:28 +0000712 assert((getKind() == CK_RTTI ||
713 getKind() == CK_FunctionPointer ||
714 getKind() == CK_CompleteDtorPointer ||
Anders Carlsson350b56e2010-02-19 20:08:13 +0000715 getKind() == CK_DeletingDtorPointer ||
716 getKind() == CK_UnusedFunctionPointer) &&
Anders Carlsson5d40c6f2010-02-11 08:02:13 +0000717 "Invalid component kind!");
Anders Carlsson5d40c6f2010-02-11 08:02:13 +0000718
719 return static_cast<uintptr_t>(Value & ~7ULL);
720 }
721
722 /// The kind is stored in the lower 3 bits of the value. For offsets, we
723 /// make use of the facts that classes can't be larger than 2^55 bytes,
724 /// so we store the offset in the lower part of the 61 bytes that remain.
725 /// (The reason that we're not simply using a PointerIntPair here is that we
726 /// need the offsets to be 64-bit, even when on a 32-bit machine).
727 int64_t Value;
728};
729
Anders Carlsson78277c72010-02-18 17:00:09 +0000730/// VCallOffsetMap - Keeps track of vcall offsets when building a vtable.
731struct VCallOffsetMap {
732
733 typedef std::pair<const CXXMethodDecl *, int64_t> MethodAndOffsetPairTy;
734
735 /// Offsets - Keeps track of methods and their offsets.
736 // FIXME: This should be a real map and not a vector.
737 llvm::SmallVector<MethodAndOffsetPairTy, 16> Offsets;
738
Anders Carlsson8847d9e2010-02-18 17:26:40 +0000739 /// MethodsCanShareVCallOffset - Returns whether two virtual member functions
740 /// can share the same vcall offset.
741 static bool MethodsCanShareVCallOffset(const CXXMethodDecl *LHS,
742 const CXXMethodDecl *RHS);
743
Anders Carlsson78277c72010-02-18 17:00:09 +0000744public:
745 /// AddVCallOffset - Adds a vcall offset to the map. Returns true if the
746 /// add was successful, or false if there was already a member function with
747 /// the same signature in the map.
748 bool AddVCallOffset(const CXXMethodDecl *MD, int64_t OffsetOffset);
749
750 /// getVCallOffsetOffset - Returns the vcall offset offset (relative to the
751 /// vtable address point) for the given virtual member function.
752 int64_t getVCallOffsetOffset(const CXXMethodDecl *MD);
753
Anders Carlsson9e3b3a32010-02-25 22:23:13 +0000754 // empty - Return whether the offset map is empty or not.
755 bool empty() const { return Offsets.empty(); }
Anders Carlsson78277c72010-02-18 17:00:09 +0000756};
757
John McCall43c6ffb2010-02-26 20:22:44 +0000758static bool HasSameVirtualSignature(const CXXMethodDecl *LHS,
759 const CXXMethodDecl *RHS) {
760 ASTContext &C = LHS->getASTContext(); // TODO: thread this down
761 CanQual<FunctionProtoType>
762 LT = C.getCanonicalType(LHS->getType()).getAs<FunctionProtoType>(),
763 RT = C.getCanonicalType(RHS->getType()).getAs<FunctionProtoType>();
764
765 // Fast-path matches in the canonical types.
766 if (LT == RT) return true;
767
768 // Force the signatures to match. We can't rely on the overrides
769 // list here because there isn't necessarily an inheritance
770 // relationship between the two methods.
771 if (LT.getQualifiers() != RT.getQualifiers() ||
772 LT->getNumArgs() != RT->getNumArgs())
773 return false;
774 for (unsigned I = 0, E = LT->getNumArgs(); I != E; ++I)
775 if (LT->getArgType(I) != RT->getArgType(I))
776 return false;
777 return true;
778}
779
Anders Carlsson8847d9e2010-02-18 17:26:40 +0000780bool VCallOffsetMap::MethodsCanShareVCallOffset(const CXXMethodDecl *LHS,
781 const CXXMethodDecl *RHS) {
782 assert(LHS->isVirtual() && "LHS must be virtual!");
783 assert(RHS->isVirtual() && "LHS must be virtual!");
784
Anders Carlssond69b2f92010-02-27 04:12:52 +0000785 // A destructor can share a vcall offset with another destructor.
786 if (isa<CXXDestructorDecl>(LHS))
787 return isa<CXXDestructorDecl>(RHS);
788
Anders Carlsson8847d9e2010-02-18 17:26:40 +0000789 // FIXME: We need to check more things here.
790
Anders Carlssond69b2f92010-02-27 04:12:52 +0000791 // The methods must have the same name.
Anders Carlsson8847d9e2010-02-18 17:26:40 +0000792 DeclarationName LHSName = LHS->getDeclName();
793 DeclarationName RHSName = RHS->getDeclName();
John McCall43c6ffb2010-02-26 20:22:44 +0000794 if (LHSName != RHSName)
Anders Carlsson8847d9e2010-02-18 17:26:40 +0000795 return false;
John McCall43c6ffb2010-02-26 20:22:44 +0000796
Anders Carlssond69b2f92010-02-27 04:12:52 +0000797 // And the same signatures.
798 return HasSameVirtualSignature(LHS, RHS);
Anders Carlsson8847d9e2010-02-18 17:26:40 +0000799}
800
Anders Carlsson78277c72010-02-18 17:00:09 +0000801bool VCallOffsetMap::AddVCallOffset(const CXXMethodDecl *MD,
802 int64_t OffsetOffset) {
Anders Carlsson8847d9e2010-02-18 17:26:40 +0000803 // Check if we can reuse an offset.
804 for (unsigned I = 0, E = Offsets.size(); I != E; ++I) {
805 if (MethodsCanShareVCallOffset(Offsets[I].first, MD))
806 return false;
807 }
808
809 // Add the offset.
810 Offsets.push_back(MethodAndOffsetPairTy(MD, OffsetOffset));
Anders Carlsson78277c72010-02-18 17:00:09 +0000811 return true;
812}
813
814int64_t VCallOffsetMap::getVCallOffsetOffset(const CXXMethodDecl *MD) {
Anders Carlsson8847d9e2010-02-18 17:26:40 +0000815 // Look for an offset.
816 for (unsigned I = 0, E = Offsets.size(); I != E; ++I) {
817 if (MethodsCanShareVCallOffset(Offsets[I].first, MD))
818 return Offsets[I].second;
819 }
820
821 assert(false && "Should always find a vcall offset offset!");
Anders Carlsson78277c72010-02-18 17:00:09 +0000822 return 0;
823}
824
Anders Carlsson422f7782010-02-25 03:45:56 +0000825/// VCallAndVBaseOffsetBuilder - Class for building vcall and vbase offsets.
826class VCallAndVBaseOffsetBuilder {
827 /// MostDerivedClass - The most derived class for which we're building this
828 /// vtable.
829 const CXXRecordDecl *MostDerivedClass;
830
Anders Carlssonc3f92a12010-02-27 21:09:00 +0000831 /// MostDerivedClassOffset - If we're building a construction vtable, this
832 /// holds the offset from the layout class to the most derived class.
833 const uint64_t MostDerivedClassOffset;
834
835 /// LayoutClass - The class we're using for layout information. Will be
836 /// different than the most derived class if we're building a construction
837 /// vtable.
838 const CXXRecordDecl *LayoutClass;
839
Anders Carlsson422f7782010-02-25 03:45:56 +0000840 /// Context - The ASTContext which we will use for layout information.
841 ASTContext &Context;
842
843 /// Components - vcall and vbase offset components
844 typedef llvm::SmallVector<VtableComponent, 64> VtableComponentVectorTy;
845 VtableComponentVectorTy Components;
846
847 /// VisitedVirtualBases - Visited virtual bases.
848 llvm::SmallPtrSet<const CXXRecordDecl *, 4> VisitedVirtualBases;
849
850 /// VCallOffsets - Keeps track of vcall offsets.
851 VCallOffsetMap VCallOffsets;
852
853 /// FinalOverriders - The final overriders of the most derived class.
854 /// (Can be null when we're not building a vtable of the most derived class).
855 const FinalOverriders *Overriders;
856
857 /// AddVCallAndVBaseOffsets - Add vcall offsets and vbase offsets for the
858 /// given base subobject.
859 void AddVCallAndVBaseOffsets(BaseSubobject Base, bool BaseIsVirtual,
860 uint64_t RealBaseOffset);
861
862 /// AddVCallOffsets - Add vcall offsets for the given base subobject.
863 void AddVCallOffsets(BaseSubobject Base, uint64_t VBaseOffset);
864
865 /// AddVBaseOffsets - Add vbase offsets for the given class.
866 void AddVBaseOffsets(const CXXRecordDecl *Base, int64_t OffsetToTop);
867
868public:
869 VCallAndVBaseOffsetBuilder(const CXXRecordDecl *MostDerivedClass,
Anders Carlssonc3f92a12010-02-27 21:09:00 +0000870 uint64_t MostDerivedClassOffset,
871 const CXXRecordDecl *LayoutClass,
Anders Carlsson422f7782010-02-25 03:45:56 +0000872 const FinalOverriders *Overriders,
873 BaseSubobject Base, bool BaseIsVirtual)
Anders Carlssonc3f92a12010-02-27 21:09:00 +0000874 : MostDerivedClass(MostDerivedClass),
875 MostDerivedClassOffset(MostDerivedClassOffset), LayoutClass(LayoutClass),
Anders Carlsson422f7782010-02-25 03:45:56 +0000876 Context(MostDerivedClass->getASTContext()), Overriders(Overriders) {
877
878 // Add vcall and vbase offsets.
879 AddVCallAndVBaseOffsets(Base, BaseIsVirtual, Base.getBaseOffset());
880 }
881
882 /// Methods for iterating over the components.
883 typedef VtableComponentVectorTy::const_reverse_iterator const_iterator;
884 const_iterator components_begin() const { return Components.rbegin(); }
885 const_iterator components_end() const { return Components.rend(); }
886
Anders Carlsson422f7782010-02-25 03:45:56 +0000887 const VCallOffsetMap& getVCallOffsets() const { return VCallOffsets; }
888};
889
890void
891VCallAndVBaseOffsetBuilder::AddVCallAndVBaseOffsets(BaseSubobject Base,
892 bool BaseIsVirtual,
893 uint64_t RealBaseOffset) {
894 const ASTRecordLayout &Layout = Context.getASTRecordLayout(Base.getBase());
895
896 // Itanium C++ ABI 2.5.2:
897 // ..in classes sharing a virtual table with a primary base class, the vcall
898 // and vbase offsets added by the derived class all come before the vcall
899 // and vbase offsets required by the base class, so that the latter may be
900 // laid out as required by the base class without regard to additions from
901 // the derived class(es).
902
903 // (Since we're emitting the vcall and vbase offsets in reverse order, we'll
904 // emit them for the primary base first).
905 if (const CXXRecordDecl *PrimaryBase = Layout.getPrimaryBase()) {
906 bool PrimaryBaseIsVirtual = Layout.getPrimaryBaseWasVirtual();
907
908 uint64_t PrimaryBaseOffset;
909
910 // Get the base offset of the primary base.
911 if (PrimaryBaseIsVirtual) {
912 assert(Layout.getVBaseClassOffset(PrimaryBase) == 0 &&
913 "Primary vbase should have a zero offset!");
914
915 const ASTRecordLayout &MostDerivedClassLayout =
916 Context.getASTRecordLayout(MostDerivedClass);
917
918 PrimaryBaseOffset =
919 MostDerivedClassLayout.getVBaseClassOffset(PrimaryBase);
920 } else {
921 assert(Layout.getBaseClassOffset(PrimaryBase) == 0 &&
922 "Primary base should have a zero offset!");
923
924 PrimaryBaseOffset = Base.getBaseOffset();
925 }
926
927 AddVCallAndVBaseOffsets(BaseSubobject(PrimaryBase, PrimaryBaseOffset),
928 PrimaryBaseIsVirtual, RealBaseOffset);
929 }
930
931 // FIXME: Don't use /8 here.
Anders Carlssone02a9262010-02-27 19:21:58 +0000932 int64_t OffsetToTop = -(int64_t)RealBaseOffset / 8;
Anders Carlsson422f7782010-02-25 03:45:56 +0000933 AddVBaseOffsets(Base.getBase(), OffsetToTop);
934
935 // We only want to add vcall offsets for virtual bases.
936 if (BaseIsVirtual)
937 AddVCallOffsets(Base, RealBaseOffset);
938}
939
940void VCallAndVBaseOffsetBuilder::AddVCallOffsets(BaseSubobject Base,
941 uint64_t VBaseOffset) {
942 const CXXRecordDecl *RD = Base.getBase();
943 const ASTRecordLayout &Layout = Context.getASTRecordLayout(RD);
944
John McCall43c6ffb2010-02-26 20:22:44 +0000945 const CXXRecordDecl *PrimaryBase = Layout.getPrimaryBase();
946
Anders Carlsson422f7782010-02-25 03:45:56 +0000947 // Handle the primary base first.
John McCall43c6ffb2010-02-26 20:22:44 +0000948 if (PrimaryBase) {
Anders Carlsson422f7782010-02-25 03:45:56 +0000949 uint64_t PrimaryBaseOffset;
950
951 // Get the base offset of the primary base.
952 if (Layout.getPrimaryBaseWasVirtual()) {
953 assert(Layout.getVBaseClassOffset(PrimaryBase) == 0 &&
954 "Primary vbase should have a zero offset!");
955
956 const ASTRecordLayout &MostDerivedClassLayout =
957 Context.getASTRecordLayout(MostDerivedClass);
958
959 PrimaryBaseOffset =
960 MostDerivedClassLayout.getVBaseClassOffset(PrimaryBase);
961 } else {
962 assert(Layout.getBaseClassOffset(PrimaryBase) == 0 &&
963 "Primary base should have a zero offset!");
964
965 PrimaryBaseOffset = Base.getBaseOffset();
966 }
967
968 AddVCallOffsets(BaseSubobject(PrimaryBase, PrimaryBaseOffset),
969 VBaseOffset);
970 }
971
972 // Add the vcall offsets.
973 for (CXXRecordDecl::method_iterator I = RD->method_begin(),
974 E = RD->method_end(); I != E; ++I) {
975 const CXXMethodDecl *MD = *I;
976
977 if (!MD->isVirtual())
978 continue;
979
980 // OffsetIndex is the index of this vcall offset, relative to the vtable
981 // address point. (We subtract 3 to account for the information just
982 // above the address point, the RTTI info, the offset to top, and the
983 // vcall offset itself).
984 int64_t OffsetIndex = -(int64_t)(3 + Components.size());
985
986 // FIXME: We shouldn't use / 8 here.
987 int64_t OffsetOffset = OffsetIndex *
988 (int64_t)Context.Target.getPointerWidth(0) / 8;
989
990 // Don't add a vcall offset if we already have one for this member function
991 // signature.
992 if (!VCallOffsets.AddVCallOffset(MD, OffsetOffset))
993 continue;
994
995 int64_t Offset = 0;
996
997 if (Overriders) {
998 // Get the final overrider.
999 FinalOverriders::OverriderInfo Overrider =
1000 Overriders->getOverrider(Base, MD);
1001
Anders Carlsson31f595f2010-02-28 00:10:58 +00001002 /// The vcall offset is the offset from the virtual base to the object
1003 /// where the function was overridden.
Anders Carlsson422f7782010-02-25 03:45:56 +00001004 // FIXME: We should not use / 8 here.
1005 Offset = (int64_t)(Overrider.BaseOffset - VBaseOffset) / 8;
1006 }
1007
1008 Components.push_back(VtableComponent::MakeVCallOffset(Offset));
1009 }
1010
1011 // And iterate over all non-virtual bases (ignoring the primary base).
1012 for (CXXRecordDecl::base_class_const_iterator I = RD->bases_begin(),
1013 E = RD->bases_end(); I != E; ++I) {
1014
1015 if (I->isVirtual())
1016 continue;
1017
1018 const CXXRecordDecl *BaseDecl =
1019 cast<CXXRecordDecl>(I->getType()->getAs<RecordType>()->getDecl());
John McCall43c6ffb2010-02-26 20:22:44 +00001020 if (BaseDecl == PrimaryBase)
1021 continue;
Anders Carlsson422f7782010-02-25 03:45:56 +00001022
1023 // Get the base offset of this base.
1024 uint64_t BaseOffset = Base.getBaseOffset() +
1025 Layout.getBaseClassOffset(BaseDecl);
1026
1027 AddVCallOffsets(BaseSubobject(BaseDecl, BaseOffset), VBaseOffset);
1028 }
1029}
1030
Anders Carlsson422f7782010-02-25 03:45:56 +00001031void VCallAndVBaseOffsetBuilder::AddVBaseOffsets(const CXXRecordDecl *RD,
1032 int64_t OffsetToTop) {
Anders Carlssonc3f92a12010-02-27 21:09:00 +00001033 const ASTRecordLayout &LayoutClassLayout =
1034 Context.getASTRecordLayout(LayoutClass);
Anders Carlsson422f7782010-02-25 03:45:56 +00001035
1036 // Add vbase offsets.
1037 for (CXXRecordDecl::base_class_const_iterator I = RD->bases_begin(),
1038 E = RD->bases_end(); I != E; ++I) {
1039 const CXXRecordDecl *BaseDecl =
1040 cast<CXXRecordDecl>(I->getType()->getAs<RecordType>()->getDecl());
1041
1042 // Check if this is a virtual base that we haven't visited before.
1043 if (I->isVirtual() && VisitedVirtualBases.insert(BaseDecl)) {
1044 // FIXME: We shouldn't use / 8 here.
1045 uint64_t Offset =
Anders Carlssonc3f92a12010-02-27 21:09:00 +00001046 OffsetToTop + LayoutClassLayout.getVBaseClassOffset(BaseDecl) / 8;
Anders Carlsson422f7782010-02-25 03:45:56 +00001047
Anders Carlssonc3f92a12010-02-27 21:09:00 +00001048 // The offset should be relative to the most derived class offset.
1049 Offset -= MostDerivedClassOffset / 8;
1050
Anders Carlsson422f7782010-02-25 03:45:56 +00001051 Components.push_back(VtableComponent::MakeVBaseOffset(Offset));
1052 }
1053
1054 // Check the base class looking for more vbase offsets.
1055 AddVBaseOffsets(BaseDecl, OffsetToTop);
1056 }
1057}
1058
Anders Carlsson5d40c6f2010-02-11 08:02:13 +00001059/// VtableBuilder - Class for building vtable layout information.
Benjamin Kramer337e3a52009-11-28 19:45:26 +00001060class VtableBuilder {
Anders Carlsson65b49782010-02-12 05:25:12 +00001061public:
Anders Carlssond46ed892010-02-27 16:18:19 +00001062 /// PrimaryBasesSetVectorTy - A set vector of direct and indirect
1063 /// primary bases.
1064 typedef llvm::SmallSetVector<const CXXRecordDecl *, 8>
1065 PrimaryBasesSetVectorTy;
1066
Anders Carlsson65b49782010-02-12 05:25:12 +00001067private:
Anders Carlssoncf5a8822010-02-13 21:07:32 +00001068 /// VtableInfo - Global vtable information.
1069 CGVtableInfo &VtableInfo;
1070
Anders Carlsson5d40c6f2010-02-11 08:02:13 +00001071 /// MostDerivedClass - The most derived class for which we're building this
1072 /// vtable.
1073 const CXXRecordDecl *MostDerivedClass;
1074
Anders Carlsson93913752010-02-27 20:39:05 +00001075 /// MostDerivedClassOffset - If we're building a construction vtable, this
1076 /// holds the offset from the layout class to the most derived class.
1077 const uint64_t MostDerivedClassOffset;
1078
Anders Carlsson62c6c722010-02-28 00:36:23 +00001079 /// MostDerivedClassIsVirtual - Whether the most derived class is a virtual
1080 /// base. (This only makes sense when building a construction vtable).
1081 bool MostDerivedClassIsVirtual;
1082
Anders Carlsson93913752010-02-27 20:39:05 +00001083 /// LayoutClass - The class we're using for layout information. Will be
1084 /// different than the most derived class if we're building a construction
1085 /// vtable.
1086 const CXXRecordDecl *LayoutClass;
1087
Anders Carlsson5d40c6f2010-02-11 08:02:13 +00001088 /// Context - The ASTContext which we will use for layout information.
Anders Carlsson65b49782010-02-12 05:25:12 +00001089 ASTContext &Context;
Anders Carlsson5d40c6f2010-02-11 08:02:13 +00001090
Anders Carlssone8ac42a2010-02-11 21:24:32 +00001091 /// FinalOverriders - The final overriders of the most derived class.
Anders Carlsson422f7782010-02-25 03:45:56 +00001092 const FinalOverriders Overriders;
Anders Carlssone8ac42a2010-02-11 21:24:32 +00001093
Anders Carlsson9e3b3a32010-02-25 22:23:13 +00001094 /// VCallOffsetsForVBases - Keeps track of vcall offsets for the virtual
1095 /// bases in this vtable.
1096 llvm::DenseMap<const CXXRecordDecl *, VCallOffsetMap> VCallOffsetsForVBases;
Anders Carlsson78277c72010-02-18 17:00:09 +00001097
Anders Carlsson5d40c6f2010-02-11 08:02:13 +00001098 /// Components - The components of the vtable being built.
1099 llvm::SmallVector<VtableComponent, 64> Components;
1100
Anders Carlsson932c2f22010-02-11 17:18:51 +00001101 /// AddressPoints - Address points for the vtable being built.
1102 CGVtableInfo::AddressPointsMapTy AddressPoints;
1103
Anders Carlssond3adb0c2010-02-13 23:40:17 +00001104 /// ReturnAdjustment - A return adjustment.
Anders Carlsson5272c252010-02-12 17:37:14 +00001105 struct ReturnAdjustment {
1106 /// NonVirtual - The non-virtual adjustment from the derived object to its
1107 /// nearest virtual base.
1108 int64_t NonVirtual;
1109
Anders Carlsson78277c72010-02-18 17:00:09 +00001110 /// VBaseOffsetOffset - The offset (in bytes), relative to the address point
Anders Carlssoncf5a8822010-02-13 21:07:32 +00001111 /// of the virtual base class offset.
1112 int64_t VBaseOffsetOffset;
Anders Carlsson5272c252010-02-12 17:37:14 +00001113
Anders Carlssoncf5a8822010-02-13 21:07:32 +00001114 ReturnAdjustment() : NonVirtual(0), VBaseOffsetOffset(0) { }
Anders Carlsson6a6cbfc2010-02-13 20:11:51 +00001115
Anders Carlssoncf5a8822010-02-13 21:07:32 +00001116 bool isEmpty() const { return !NonVirtual && !VBaseOffsetOffset; }
Anders Carlsson6a6cbfc2010-02-13 20:11:51 +00001117 };
1118
1119 /// ReturnAdjustments - The return adjustments needed in this vtable.
1120 llvm::SmallVector<std::pair<uint64_t, ReturnAdjustment>, 16>
1121 ReturnAdjustments;
1122
Anders Carlssond46ed892010-02-27 16:18:19 +00001123 /// MethodInfo - Contains information about a method in a vtable.
1124 /// (Used for computing 'this' pointer adjustment thunks.
1125 struct MethodInfo {
1126 /// BaseOffset - The base offset of this method.
1127 const uint64_t BaseOffset;
1128
1129 /// VtableIndex - The index in the vtable that this method has.
1130 /// (For destructors, this is the index of the complete destructor).
1131 const uint64_t VtableIndex;
1132
1133 MethodInfo(uint64_t BaseOffset, uint64_t VtableIndex)
1134 : BaseOffset(BaseOffset), VtableIndex(VtableIndex) { }
Anders Carlsson40687982010-02-27 16:52:49 +00001135
1136 MethodInfo() : BaseOffset(0), VtableIndex(0) { }
Anders Carlssond46ed892010-02-27 16:18:19 +00001137 };
1138
1139 typedef llvm::DenseMap<const CXXMethodDecl *, MethodInfo> MethodInfoMapTy;
1140
1141 /// MethodInfoMap - The information for all methods in the vtable we're
1142 /// currently building.
1143 MethodInfoMapTy MethodInfoMap;
1144
Anders Carlssond3adb0c2010-02-13 23:40:17 +00001145 /// ThisAdjustment - A 'this' pointer adjustment thunk.
1146 struct ThisAdjustment {
1147 /// NonVirtual - The non-virtual adjustment from the derived object to its
1148 /// nearest virtual base.
1149 int64_t NonVirtual;
1150
John McCall43c6ffb2010-02-26 20:22:44 +00001151 /// VCallOffsetOffset - The offset (in bytes), relative to the address point,
Anders Carlsson78277c72010-02-18 17:00:09 +00001152 /// of the virtual call offset.
1153 int64_t VCallOffsetOffset;
Anders Carlssond3adb0c2010-02-13 23:40:17 +00001154
Anders Carlsson78277c72010-02-18 17:00:09 +00001155 ThisAdjustment() : NonVirtual(0), VCallOffsetOffset(0) { }
Anders Carlssond3adb0c2010-02-13 23:40:17 +00001156
Anders Carlsson78277c72010-02-18 17:00:09 +00001157 bool isEmpty() const { return !NonVirtual && !VCallOffsetOffset; }
Anders Carlssond3adb0c2010-02-13 23:40:17 +00001158 };
1159
1160 /// ThisAdjustments - The 'this' pointer adjustments needed in this vtable.
1161 llvm::SmallVector<std::pair<uint64_t, ThisAdjustment>, 16>
1162 ThisAdjustments;
Anders Carlssond46ed892010-02-27 16:18:19 +00001163
Anders Carlsson40687982010-02-27 16:52:49 +00001164 /// ComputeThisAdjustments - Compute the 'this' pointer adjustments for the
1165 /// part of the vtable we're currently building.
1166 void ComputeThisAdjustments();
1167
Anders Carlssondc2dba32010-02-16 04:49:44 +00001168 typedef llvm::SmallPtrSet<const CXXRecordDecl *, 4> VisitedVirtualBasesSetTy;
1169
Anders Carlssond46ed892010-02-27 16:18:19 +00001170 /// PrimaryVirtualBases - All known virtual bases who are a primary base of
Anders Carlsson0570f712010-02-23 03:48:14 +00001171 /// some other base.
1172 VisitedVirtualBasesSetTy PrimaryVirtualBases;
1173
Anders Carlssoncf5a8822010-02-13 21:07:32 +00001174 /// ComputeReturnAdjustment - Compute the return adjustment given a return
Anders Carlsson6a6cbfc2010-02-13 20:11:51 +00001175 /// adjustment base offset.
Anders Carlsson075056a2010-02-23 01:34:28 +00001176 ReturnAdjustment ComputeReturnAdjustment(BaseOffset Offset);
Anders Carlsson6a6cbfc2010-02-13 20:11:51 +00001177
Anders Carlsson9f19aaaa2010-02-27 19:57:44 +00001178 /// ComputeThisAdjustmentBaseOffset - Compute the base offset for adjusting
1179 /// the 'this' pointer from the base subobject to the derived subobject.
1180 BaseOffset ComputeThisAdjustmentBaseOffset(BaseSubobject Base,
1181 BaseSubobject Derived) const;
1182
Anders Carlsson78277c72010-02-18 17:00:09 +00001183 /// ComputeThisAdjustment - Compute the 'this' pointer adjustment for the
1184 /// given virtual member function and the 'this' pointer adjustment base
1185 /// offset.
1186 ThisAdjustment ComputeThisAdjustment(const CXXMethodDecl *MD,
Anders Carlsson075056a2010-02-23 01:34:28 +00001187 BaseOffset Offset);
Anders Carlssond3adb0c2010-02-13 23:40:17 +00001188
Anders Carlsson6a6cbfc2010-02-13 20:11:51 +00001189 /// AddMethod - Add a single virtual member function to the vtable
1190 /// components vector.
Anders Carlsson40687982010-02-27 16:52:49 +00001191 void AddMethod(const CXXMethodDecl *MD, ReturnAdjustment ReturnAdjustment);
Anders Carlsson6a6cbfc2010-02-13 20:11:51 +00001192
Anders Carlssona8796c62010-02-23 04:26:39 +00001193 /// IsOverriderUsed - Returns whether the overrider will ever be used in this
1194 /// part of the vtable.
1195 ///
1196 /// Itanium C++ ABI 2.5.2:
1197 ///
1198 /// struct A { virtual void f(); };
1199 /// struct B : virtual public A { int i; };
1200 /// struct C : virtual public A { int j; };
1201 /// struct D : public B, public C {};
1202 ///
1203 /// When B and C are declared, A is a primary base in each case, so although
1204 /// vcall offsets are allocated in the A-in-B and A-in-C vtables, no this
1205 /// adjustment is required and no thunk is generated. However, inside D
1206 /// objects, A is no longer a primary base of C, so if we allowed calls to
1207 /// C::f() to use the copy of A's vtable in the C subobject, we would need
1208 /// to adjust this from C* to B::A*, which would require a third-party
1209 /// thunk. Since we require that a call to C::f() first convert to A*,
1210 /// C-in-D's copy of A's vtable is never referenced, so this is not
1211 /// necessary.
1212 bool IsOverriderUsed(BaseSubobject Base,
1213 BaseSubobject FirstBaseInPrimaryBaseChain,
1214 FinalOverriders::OverriderInfo Overrider) const;
1215
Anders Carlsson6a6cbfc2010-02-13 20:11:51 +00001216 /// AddMethods - Add the methods of this base subobject and all its
1217 /// primary bases to the vtable components vector.
Anders Carlssona8796c62010-02-23 04:26:39 +00001218 void AddMethods(BaseSubobject Base, BaseSubobject FirstBaseInPrimaryBaseChain,
Anders Carlssond46ed892010-02-27 16:18:19 +00001219 PrimaryBasesSetVectorTy &PrimaryBases);
Anders Carlssonb716a542010-02-16 16:26:28 +00001220
Anders Carlsson62c6c722010-02-28 00:36:23 +00001221 // LayoutVtable - Layout the vtable for the given base class, including its
Anders Carlssonb716a542010-02-16 16:26:28 +00001222 // secondary vtables and any vtables for virtual bases.
1223 void LayoutVtable();
1224
1225 /// LayoutPrimaryAndAndSecondaryVtables - Layout the primary vtable for the
1226 /// given base subobject, as well as all its secondary vtables.
Anders Carlssondb042202010-02-17 03:11:55 +00001227 void LayoutPrimaryAndAndSecondaryVtables(BaseSubobject Base,
1228 bool BaseIsVirtual);
Anders Carlsson5d40c6f2010-02-11 08:02:13 +00001229
Anders Carlsson14157932010-02-16 16:02:57 +00001230 /// LayoutSecondaryVtables - Layout the secondary vtables for the given base
1231 /// subobject.
1232 void LayoutSecondaryVtables(BaseSubobject Base);
Anders Carlssonb08aaa32010-02-27 04:05:52 +00001233
1234 /// DeterminePrimaryVirtualBases - Determine the primary virtual bases in this
1235 /// class hierarchy.
1236 void DeterminePrimaryVirtualBases(const CXXRecordDecl *RD,
1237 VisitedVirtualBasesSetTy &VBases);
1238
Anders Carlsson13f0f662010-02-16 16:49:35 +00001239 /// LayoutVtablesForVirtualBases - Layout vtables for all virtual bases of the
1240 /// given base (excluding any primary bases).
1241 void LayoutVtablesForVirtualBases(const CXXRecordDecl *RD,
1242 VisitedVirtualBasesSetTy &VBases);
1243
Anders Carlsson31f595f2010-02-28 00:10:58 +00001244 /// isBuildingConstructionVtable - Return whether this vtable builder is
1245 /// building a construction vtable.
1246 bool isBuildingConstructorVtable() const {
1247 return MostDerivedClass != LayoutClass;
1248 }
1249
Anders Carlsson5d40c6f2010-02-11 08:02:13 +00001250public:
Anders Carlsson93913752010-02-27 20:39:05 +00001251 VtableBuilder(CGVtableInfo &VtableInfo, const CXXRecordDecl *MostDerivedClass,
Anders Carlsson62c6c722010-02-28 00:36:23 +00001252 uint64_t MostDerivedClassOffset, bool MostDerivedClassIsVirtual,
Anders Carlsson93913752010-02-27 20:39:05 +00001253 const CXXRecordDecl *LayoutClass)
1254 : VtableInfo(VtableInfo), MostDerivedClass(MostDerivedClass),
Anders Carlsson62c6c722010-02-28 00:36:23 +00001255 MostDerivedClassOffset(MostDerivedClassOffset),
1256 MostDerivedClassIsVirtual(MostDerivedClassIsVirtual),
1257 LayoutClass(LayoutClass), Context(MostDerivedClass->getASTContext()),
1258 Overriders(MostDerivedClass) {
Anders Carlsson5d40c6f2010-02-11 08:02:13 +00001259
Anders Carlssonb716a542010-02-16 16:26:28 +00001260 LayoutVtable();
Anders Carlsson5d40c6f2010-02-11 08:02:13 +00001261 }
1262
1263 /// dumpLayout - Dump the vtable layout.
1264 void dumpLayout(llvm::raw_ostream&);
Anders Carlsson5d40c6f2010-02-11 08:02:13 +00001265};
1266
Anders Carlssond2025412010-02-27 06:38:03 +00001267/// OverridesMethodInBases - Checks whether whether this virtual member
1268/// function overrides a member function in any of the given bases.
Anders Carlsson65b49782010-02-12 05:25:12 +00001269/// Returns the overridden member function, or null if none was found.
1270static const CXXMethodDecl *
Anders Carlssond2025412010-02-27 06:38:03 +00001271OverridesMethodInBases(const CXXMethodDecl *MD,
Anders Carlssond46ed892010-02-27 16:18:19 +00001272 VtableBuilder::PrimaryBasesSetVectorTy &Bases) {
Anders Carlsson65b49782010-02-12 05:25:12 +00001273 for (CXXMethodDecl::method_iterator I = MD->begin_overridden_methods(),
1274 E = MD->end_overridden_methods(); I != E; ++I) {
1275 const CXXMethodDecl *OverriddenMD = *I;
1276 const CXXRecordDecl *OverriddenRD = OverriddenMD->getParent();
1277 assert(OverriddenMD->isCanonicalDecl() &&
1278 "Should have the canonical decl of the overridden RD!");
1279
Anders Carlssond2025412010-02-27 06:38:03 +00001280 if (Bases.count(OverriddenRD))
Anders Carlsson65b49782010-02-12 05:25:12 +00001281 return OverriddenMD;
1282 }
1283
1284 return 0;
1285}
1286
Anders Carlsson40687982010-02-27 16:52:49 +00001287void VtableBuilder::ComputeThisAdjustments() {
Anders Carlsson4d0729a2010-02-27 19:00:53 +00001288 std::map<uint64_t, ThisAdjustment> SortedThisAdjustments;
1289
Anders Carlsson40687982010-02-27 16:52:49 +00001290 // Now go through the method info map and see if any of the methods need
1291 // 'this' pointer adjustments.
1292 for (MethodInfoMapTy::const_iterator I = MethodInfoMap.begin(),
1293 E = MethodInfoMap.end(); I != E; ++I) {
1294 const CXXMethodDecl *MD = I->first;
1295 const MethodInfo &MethodInfo = I->second;
1296
1297 BaseSubobject OverriddenBaseSubobject(MD->getParent(),
1298 MethodInfo.BaseOffset);
1299
1300 // Get the final overrider for this method.
1301 FinalOverriders::OverriderInfo Overrider =
1302 Overriders.getOverrider(OverriddenBaseSubobject, MD);
1303
1304 // Check if we need an adjustment.
1305 if (Overrider.BaseOffset == MethodInfo.BaseOffset)
1306 continue;
1307
Anders Carlsson01d3c7d2010-02-27 18:09:40 +00001308 uint64_t VtableIndex = MethodInfo.VtableIndex;
Anders Carlsson2b381bb2010-02-27 18:16:50 +00001309
1310 // Ignore adjustments for pure virtual member functions.
1311 if (Overrider.Method->isPure())
1312 continue;
1313
1314 // Ignore adjustments for unused function pointers.
Anders Carlsson01d3c7d2010-02-27 18:09:40 +00001315 if (Components[VtableIndex].getKind() ==
1316 VtableComponent::CK_UnusedFunctionPointer)
1317 continue;
1318
Anders Carlsson40687982010-02-27 16:52:49 +00001319 BaseSubobject OverriderBaseSubobject(Overrider.Method->getParent(),
1320 Overrider.BaseOffset);
1321
1322 // Compute the adjustment offset.
1323 BaseOffset ThisAdjustmentOffset =
Anders Carlsson9f19aaaa2010-02-27 19:57:44 +00001324 ComputeThisAdjustmentBaseOffset(OverriddenBaseSubobject,
1325 OverriderBaseSubobject);
1326
Anders Carlsson40687982010-02-27 16:52:49 +00001327 // Then compute the adjustment itself.
1328 ThisAdjustment ThisAdjustment = ComputeThisAdjustment(Overrider.Method,
1329 ThisAdjustmentOffset);
1330
Anders Carlsson01d3c7d2010-02-27 18:09:40 +00001331 // Add it.
Anders Carlsson4d0729a2010-02-27 19:00:53 +00001332 SortedThisAdjustments.insert(std::make_pair(VtableIndex, ThisAdjustment));
Anders Carlsson01d3c7d2010-02-27 18:09:40 +00001333
Anders Carlsson40687982010-02-27 16:52:49 +00001334 if (isa<CXXDestructorDecl>(MD)) {
1335 // Add an adjustment for the deleting destructor as well.
Anders Carlsson4d0729a2010-02-27 19:00:53 +00001336 SortedThisAdjustments.insert(std::make_pair(VtableIndex + 1,
1337 ThisAdjustment));
Anders Carlsson40687982010-02-27 16:52:49 +00001338 }
1339 }
1340
1341 /// Clear the method info map.
1342 MethodInfoMap.clear();
Anders Carlsson4d0729a2010-02-27 19:00:53 +00001343
1344 // Add the sorted elements.
1345 ThisAdjustments.append(SortedThisAdjustments.begin(),
1346 SortedThisAdjustments.end());
Anders Carlsson40687982010-02-27 16:52:49 +00001347}
1348
Anders Carlsson6a6cbfc2010-02-13 20:11:51 +00001349VtableBuilder::ReturnAdjustment
Anders Carlsson075056a2010-02-23 01:34:28 +00001350VtableBuilder::ComputeReturnAdjustment(BaseOffset Offset) {
Anders Carlsson6a6cbfc2010-02-13 20:11:51 +00001351 ReturnAdjustment Adjustment;
1352
1353 if (!Offset.isEmpty()) {
Anders Carlssoncf5a8822010-02-13 21:07:32 +00001354 if (Offset.VirtualBase) {
1355 // Get the virtual base offset offset.
1356 Adjustment.VBaseOffsetOffset =
1357 VtableInfo.getVirtualBaseOffsetIndex(Offset.DerivedClass,
1358 Offset.VirtualBase);
1359 // FIXME: Once the assert in getVirtualBaseOffsetIndex is back again,
1360 // we can get rid of this assert.
1361 assert(Adjustment.VBaseOffsetOffset != 0 &&
1362 "Invalid base offset offset!");
1363 }
Anders Carlsson6a6cbfc2010-02-13 20:11:51 +00001364
1365 Adjustment.NonVirtual = Offset.NonVirtualOffset;
1366 }
1367
1368 return Adjustment;
1369}
1370
Anders Carlsson9f19aaaa2010-02-27 19:57:44 +00001371BaseOffset
1372VtableBuilder::ComputeThisAdjustmentBaseOffset(BaseSubobject Base,
1373 BaseSubobject Derived) const {
1374 const CXXRecordDecl *BaseRD = Base.getBase();
1375 const CXXRecordDecl *DerivedRD = Derived.getBase();
1376
1377 CXXBasePaths Paths(/*FindAmbiguities=*/true,
1378 /*RecordPaths=*/true, /*DetectVirtual=*/true);
1379
1380 if (!const_cast<CXXRecordDecl *>(DerivedRD)->
1381 isDerivedFrom(const_cast<CXXRecordDecl *>(BaseRD), Paths)) {
1382 assert(false && "Class must be derived from the passed in base class!");
1383 return BaseOffset();
1384 }
1385
1386 // We have to go through all the paths, and see which one leads us to the
1387 // right base subobject.
1388 for (CXXBasePaths::const_paths_iterator I = Paths.begin(), E = Paths.end();
1389 I != E; ++I) {
1390 BaseOffset Offset = ComputeBaseOffset(Context, DerivedRD, *I);
1391
1392 // FIXME: Should not use * 8 here.
1393 uint64_t OffsetToBaseSubobject = Offset.NonVirtualOffset * 8;
1394
1395 if (Offset.VirtualBase) {
1396 // If we have a virtual base class, the non-virtual offset is relative
1397 // to the virtual base class offset.
1398 const ASTRecordLayout &MostDerivedClassLayout =
1399 Context.getASTRecordLayout(MostDerivedClass);
1400
1401 /// Get the virtual base offset, relative to the most derived class
1402 /// layout.
1403 OffsetToBaseSubobject +=
1404 MostDerivedClassLayout.getVBaseClassOffset(Offset.VirtualBase);
1405 } else {
1406 // Otherwise, the non-virtual offset is relative to the derived class
1407 // offset.
1408 OffsetToBaseSubobject += Derived.getBaseOffset();
1409 }
1410
1411 // Check if this path gives us the right base subobject.
1412 if (OffsetToBaseSubobject == Base.getBaseOffset()) {
1413 // Since we're going from the base class _to_ the derived class, we'll
1414 // invert the non-virtual offset here.
1415 Offset.NonVirtualOffset = -Offset.NonVirtualOffset;
1416 return Offset;
1417 }
1418 }
1419
1420 return BaseOffset();
1421}
1422
1423
Anders Carlssond3adb0c2010-02-13 23:40:17 +00001424VtableBuilder::ThisAdjustment
Anders Carlsson78277c72010-02-18 17:00:09 +00001425VtableBuilder::ComputeThisAdjustment(const CXXMethodDecl *MD,
Anders Carlsson075056a2010-02-23 01:34:28 +00001426 BaseOffset Offset) {
Anders Carlssond3adb0c2010-02-13 23:40:17 +00001427 ThisAdjustment Adjustment;
1428
1429 if (!Offset.isEmpty()) {
Anders Carlsson8847d9e2010-02-18 17:26:40 +00001430 if (Offset.VirtualBase) {
Anders Carlsson9e3b3a32010-02-25 22:23:13 +00001431 // Get the vcall offset map for this virtual base.
1432 VCallOffsetMap &VCallOffsets = VCallOffsetsForVBases[Offset.VirtualBase];
1433
1434 if (VCallOffsets.empty()) {
1435 // We don't have vcall offsets for this virtual base, go ahead and
1436 // build them.
1437 VCallAndVBaseOffsetBuilder Builder(MostDerivedClass, 0,
Anders Carlssonc3f92a12010-02-27 21:09:00 +00001438 MostDerivedClass, 0,
Anders Carlsson9e3b3a32010-02-25 22:23:13 +00001439 BaseSubobject(Offset.VirtualBase, 0),
1440 /*BaseIsVirtual=*/true);
1441
1442 VCallOffsets = Builder.getVCallOffsets();
1443 }
1444
Anders Carlsson8847d9e2010-02-18 17:26:40 +00001445 Adjustment.VCallOffsetOffset = VCallOffsets.getVCallOffsetOffset(MD);
1446 }
1447
Anders Carlssond3adb0c2010-02-13 23:40:17 +00001448 Adjustment.NonVirtual = Offset.NonVirtualOffset;
1449 }
1450
1451 return Adjustment;
1452}
1453
Anders Carlsson65b49782010-02-12 05:25:12 +00001454void
Anders Carlsson6a6cbfc2010-02-13 20:11:51 +00001455VtableBuilder::AddMethod(const CXXMethodDecl *MD,
Anders Carlsson40687982010-02-27 16:52:49 +00001456 ReturnAdjustment ReturnAdjustment) {
Anders Carlsson6a6cbfc2010-02-13 20:11:51 +00001457 if (const CXXDestructorDecl *DD = dyn_cast<CXXDestructorDecl>(MD)) {
1458 assert(ReturnAdjustment.isEmpty() &&
1459 "Destructor can't have return adjustment!");
Anders Carlssond3adb0c2010-02-13 23:40:17 +00001460
Anders Carlsson6a6cbfc2010-02-13 20:11:51 +00001461 // Add both the complete destructor and the deleting destructor.
1462 Components.push_back(VtableComponent::MakeCompleteDtor(DD));
1463 Components.push_back(VtableComponent::MakeDeletingDtor(DD));
1464 } else {
1465 // Add the return adjustment if necessary.
1466 if (!ReturnAdjustment.isEmpty())
1467 ReturnAdjustments.push_back(std::make_pair(Components.size(),
1468 ReturnAdjustment));
1469
1470 // Add the function.
1471 Components.push_back(VtableComponent::MakeFunction(MD));
1472 }
1473}
1474
Anders Carlssond2025412010-02-27 06:38:03 +00001475/// OverridesIndirectMethodInBase - Return whether the given member function
1476/// overrides any methods in the set of given bases.
1477/// Unlike OverridesMethodInBase, this checks "overriders of overriders".
1478/// For example, if we have:
1479///
1480/// struct A { virtual void f(); }
1481/// struct B : A { virtual void f(); }
1482/// struct C : B { virtual void f(); }
1483///
1484/// OverridesIndirectMethodInBase will return true if given C::f as the method
1485/// and { A } as the set of bases.
1486static bool
1487OverridesIndirectMethodInBases(const CXXMethodDecl *MD,
Anders Carlssond46ed892010-02-27 16:18:19 +00001488 VtableBuilder::PrimaryBasesSetVectorTy &Bases) {
Anders Carlssond2025412010-02-27 06:38:03 +00001489 for (CXXMethodDecl::method_iterator I = MD->begin_overridden_methods(),
1490 E = MD->end_overridden_methods(); I != E; ++I) {
1491 const CXXMethodDecl *OverriddenMD = *I;
1492 const CXXRecordDecl *OverriddenRD = OverriddenMD->getParent();
1493 assert(OverriddenMD->isCanonicalDecl() &&
1494 "Should have the canonical decl of the overridden RD!");
1495
1496 if (Bases.count(OverriddenRD))
1497 return true;
1498
1499 // Check "indirect overriders".
1500 if (OverridesIndirectMethodInBases(OverriddenMD, Bases))
1501 return true;
1502 }
1503
1504 return false;
1505}
1506
Anders Carlssona8796c62010-02-23 04:26:39 +00001507bool
1508VtableBuilder::IsOverriderUsed(BaseSubobject Base,
1509 BaseSubobject FirstBaseInPrimaryBaseChain,
1510 FinalOverriders::OverriderInfo Overrider) const {
1511 // If the base and the first base in the primary base chain have the same
1512 // offsets, then this overrider will be used.
1513 if (Base.getBaseOffset() == FirstBaseInPrimaryBaseChain.getBaseOffset())
Anders Carlsson8939e402010-02-23 06:34:44 +00001514 return true;
1515
1516 // We know now that Base (or a direct or indirect base of it) is a primary
1517 // base in part of the class hierarchy, but not a primary base in the most
1518 // derived class.
1519
1520 // If the overrider is the first base in the primary base chain, we know
1521 // that the overrider will be used.
1522 if (Overrider.Method->getParent() == FirstBaseInPrimaryBaseChain.getBase())
Anders Carlssona8796c62010-02-23 04:26:39 +00001523 return true;
1524
Anders Carlssond46ed892010-02-27 16:18:19 +00001525 VtableBuilder::PrimaryBasesSetVectorTy PrimaryBases;
Anders Carlsson8939e402010-02-23 06:34:44 +00001526
1527 const CXXRecordDecl *RD = FirstBaseInPrimaryBaseChain.getBase();
1528 PrimaryBases.insert(RD);
1529
1530 // Now traverse the base chain, starting with the first base, until we find
1531 // the base that is no longer a primary base.
1532 while (true) {
1533 const ASTRecordLayout &Layout = Context.getASTRecordLayout(RD);
1534 const CXXRecordDecl *PrimaryBase = Layout.getPrimaryBase();
1535
1536 if (!PrimaryBase)
1537 break;
1538
1539 if (Layout.getPrimaryBaseWasVirtual()) {
1540 assert(Layout.getVBaseClassOffset(PrimaryBase) == 0 &&
1541 "Primary base should always be at offset 0!");
1542
1543 const ASTRecordLayout &MostDerivedClassLayout =
1544 Context.getASTRecordLayout(MostDerivedClass);
1545
1546 // Now check if this is the primary base that is not a primary base in the
1547 // most derived class.
1548 if (MostDerivedClassLayout.getVBaseClassOffset(PrimaryBase) !=
1549 FirstBaseInPrimaryBaseChain.getBaseOffset()) {
1550 // We found it, stop walking the chain.
1551 break;
1552 }
1553 } else {
1554 assert(Layout.getBaseClassOffset(PrimaryBase) == 0 &&
1555 "Primary base should always be at offset 0!");
1556 }
Anders Carlsson01d3c7d2010-02-27 18:09:40 +00001557
Anders Carlssonb26c2ab2010-02-27 19:51:04 +00001558 if (!PrimaryBases.insert(PrimaryBase))
1559 assert(false && "Found a duplicate primary base!");
1560
Anders Carlsson01d3c7d2010-02-27 18:09:40 +00001561 RD = PrimaryBase;
Anders Carlsson8939e402010-02-23 06:34:44 +00001562 }
1563
1564 // If the final overrider is an override of one of the primary bases,
1565 // then we know that it will be used.
Anders Carlssond2025412010-02-27 06:38:03 +00001566 return OverridesIndirectMethodInBases(Overrider.Method, PrimaryBases);
Anders Carlssona8796c62010-02-23 04:26:39 +00001567}
1568
Anders Carlsson40687982010-02-27 16:52:49 +00001569/// FindNearestOverriddenMethod - Given a method, returns the overridden method
1570/// from the nearest base. Returns null if no method was found.
1571static const CXXMethodDecl *
1572FindNearestOverriddenMethod(const CXXMethodDecl *MD,
1573 VtableBuilder::PrimaryBasesSetVectorTy &Bases) {
1574 for (int I = Bases.size(), E = 0; I != E; --I) {
1575 const CXXRecordDecl *PrimaryBase = Bases[I - 1];
1576
1577 // Now check the overriden methods.
1578 for (CXXMethodDecl::method_iterator I = MD->begin_overridden_methods(),
1579 E = MD->end_overridden_methods(); I != E; ++I) {
1580 const CXXMethodDecl *OverriddenMD = *I;
1581
1582 // We found our overridden method.
1583 if (OverriddenMD->getParent() == PrimaryBase)
1584 return OverriddenMD;
1585 }
1586 }
1587
1588 return 0;
1589}
1590
Anders Carlsson6a6cbfc2010-02-13 20:11:51 +00001591void
Anders Carlssona8796c62010-02-23 04:26:39 +00001592VtableBuilder::AddMethods(BaseSubobject Base,
1593 BaseSubobject FirstBaseInPrimaryBaseChain,
Anders Carlssond46ed892010-02-27 16:18:19 +00001594 PrimaryBasesSetVectorTy &PrimaryBases) {
Anders Carlsson65b49782010-02-12 05:25:12 +00001595 const CXXRecordDecl *RD = Base.getBase();
1596
1597 const ASTRecordLayout &Layout = Context.getASTRecordLayout(RD);
1598
1599 if (const CXXRecordDecl *PrimaryBase = Layout.getPrimaryBase()) {
Anders Carlsson0570f712010-02-23 03:48:14 +00001600 uint64_t BaseOffset;
1601 if (Layout.getPrimaryBaseWasVirtual()) {
1602 assert(Layout.getVBaseClassOffset(PrimaryBase) == 0 &&
1603 "Primary vbase should have a zero offset!");
1604
1605 const ASTRecordLayout &MostDerivedClassLayout =
1606 Context.getASTRecordLayout(MostDerivedClass);
1607
1608 BaseOffset = MostDerivedClassLayout.getVBaseClassOffset(PrimaryBase);
Anders Carlsson0570f712010-02-23 03:48:14 +00001609 } else {
Anders Carlsson65b49782010-02-12 05:25:12 +00001610 assert(Layout.getBaseClassOffset(PrimaryBase) == 0 &&
1611 "Primary base should have a zero offset!");
Anders Carlsson0570f712010-02-23 03:48:14 +00001612
1613 BaseOffset = Base.getBaseOffset();
1614 }
Anders Carlsson65b49782010-02-12 05:25:12 +00001615
Anders Carlssona8796c62010-02-23 04:26:39 +00001616 AddMethods(BaseSubobject(PrimaryBase, BaseOffset),
1617 FirstBaseInPrimaryBaseChain, PrimaryBases);
Anders Carlsson65b49782010-02-12 05:25:12 +00001618
1619 if (!PrimaryBases.insert(PrimaryBase))
1620 assert(false && "Found a duplicate primary base!");
1621 }
Anders Carlsson932c2f22010-02-11 17:18:51 +00001622
Anders Carlsson5d40c6f2010-02-11 08:02:13 +00001623 // Now go through all virtual member functions and add them.
1624 for (CXXRecordDecl::method_iterator I = RD->method_begin(),
1625 E = RD->method_end(); I != E; ++I) {
1626 const CXXMethodDecl *MD = *I;
Anders Carlsson65b49782010-02-12 05:25:12 +00001627
Anders Carlsson5d40c6f2010-02-11 08:02:13 +00001628 if (!MD->isVirtual())
1629 continue;
Anders Carlsson65b49782010-02-12 05:25:12 +00001630
1631 // Get the final overrider.
Anders Carlsson136bd192010-02-12 16:55:34 +00001632 FinalOverriders::OverriderInfo Overrider =
1633 Overriders.getOverrider(Base, MD);
Anders Carlsson65b49782010-02-12 05:25:12 +00001634
1635 // Check if this virtual member function overrides a method in a primary
1636 // base. If this is the case, and the return type doesn't require adjustment
1637 // then we can just use the member function from the primary base.
Anders Carlsson6a6cbfc2010-02-13 20:11:51 +00001638 if (const CXXMethodDecl *OverriddenMD =
Anders Carlsson40687982010-02-27 16:52:49 +00001639 FindNearestOverriddenMethod(MD, PrimaryBases)) {
Anders Carlssoncce9ee82010-02-13 23:17:31 +00001640 if (ComputeReturnAdjustmentBaseOffset(Context, MD,
Anders Carlsson40687982010-02-27 16:52:49 +00001641 OverriddenMD).isEmpty()) {
1642 // Replace the method info of the overridden method with our own
1643 // method.
1644 assert(MethodInfoMap.count(OverriddenMD) &&
1645 "Did not find the overridden method!");
1646 MethodInfo &OverriddenMethodInfo = MethodInfoMap[OverriddenMD];
1647
1648 MethodInfo MethodInfo(Base.getBaseOffset(),
1649 OverriddenMethodInfo.VtableIndex);
1650
1651 assert(!MethodInfoMap.count(MD) &&
1652 "Should not have method info for this method yet!");
1653
1654 MethodInfoMap.insert(std::make_pair(MD, MethodInfo));
1655 MethodInfoMap.erase(OverriddenMD);
Anders Carlsson6a6cbfc2010-02-13 20:11:51 +00001656 continue;
Anders Carlsson40687982010-02-27 16:52:49 +00001657 }
Anders Carlsson6a6cbfc2010-02-13 20:11:51 +00001658 }
Anders Carlssoneee53d92010-02-13 02:02:03 +00001659
Anders Carlsson40687982010-02-27 16:52:49 +00001660 // Insert the method info for this method.
1661 MethodInfo MethodInfo(Base.getBaseOffset(), Components.size());
1662
1663 assert(!MethodInfoMap.count(MD) &&
1664 "Should not have method info for this method yet!");
1665 MethodInfoMap.insert(std::make_pair(MD, MethodInfo));
Anders Carlsson01d3c7d2010-02-27 18:09:40 +00001666
1667 // Check if this overrider is going to be used.
1668 if (!IsOverriderUsed(Base, FirstBaseInPrimaryBaseChain, Overrider)) {
1669 const CXXMethodDecl *OverriderMD = Overrider.Method;
1670 Components.push_back(VtableComponent::MakeUnusedFunction(OverriderMD));
1671 continue;
1672 }
Anders Carlssona8796c62010-02-23 04:26:39 +00001673
Anders Carlsson6a6cbfc2010-02-13 20:11:51 +00001674 // Check if this overrider needs a return adjustment.
Anders Carlsson075056a2010-02-23 01:34:28 +00001675 BaseOffset ReturnAdjustmentOffset =
Anders Carlsson6a6cbfc2010-02-13 20:11:51 +00001676 Overriders.getReturnAdjustmentOffset(Base, MD);
1677
1678 ReturnAdjustment ReturnAdjustment =
1679 ComputeReturnAdjustment(ReturnAdjustmentOffset);
Anders Carlsson5d40c6f2010-02-11 08:02:13 +00001680
Anders Carlsson40687982010-02-27 16:52:49 +00001681 AddMethod(Overrider.Method, ReturnAdjustment);
Anders Carlsson5d40c6f2010-02-11 08:02:13 +00001682 }
1683}
1684
Anders Carlssonb716a542010-02-16 16:26:28 +00001685void VtableBuilder::LayoutVtable() {
Anders Carlssondb042202010-02-17 03:11:55 +00001686 LayoutPrimaryAndAndSecondaryVtables(BaseSubobject(MostDerivedClass, 0),
Anders Carlsson62c6c722010-02-28 00:36:23 +00001687 MostDerivedClassIsVirtual);
Anders Carlssonb716a542010-02-16 16:26:28 +00001688
Anders Carlsson13f0f662010-02-16 16:49:35 +00001689 VisitedVirtualBasesSetTy VBases;
Anders Carlssonb08aaa32010-02-27 04:05:52 +00001690
1691 // Determine the primary virtual bases.
1692 DeterminePrimaryVirtualBases(MostDerivedClass, VBases);
1693 VBases.clear();
1694
Anders Carlsson13f0f662010-02-16 16:49:35 +00001695 LayoutVtablesForVirtualBases(MostDerivedClass, VBases);
Anders Carlssonb716a542010-02-16 16:26:28 +00001696}
1697
Anders Carlssondb042202010-02-17 03:11:55 +00001698void VtableBuilder::LayoutPrimaryAndAndSecondaryVtables(BaseSubobject Base,
1699 bool BaseIsVirtual) {
Chris Lattnerd2408f72010-02-17 21:42:34 +00001700 assert(Base.getBase()->isDynamicClass() && "class does not have a vtable!");
Anders Carlsson033d4862010-02-14 17:05:59 +00001701
Anders Carlsson77904f12010-02-16 04:59:55 +00001702 // Add vcall and vbase offsets for this vtable.
Anders Carlssonc3f92a12010-02-27 21:09:00 +00001703 VCallAndVBaseOffsetBuilder Builder(MostDerivedClass, MostDerivedClassOffset,
1704 LayoutClass, &Overriders,
Anders Carlsson422f7782010-02-25 03:45:56 +00001705 Base, BaseIsVirtual);
1706 Components.append(Builder.components_begin(), Builder.components_end());
1707
Anders Carlsson9e3b3a32010-02-25 22:23:13 +00001708 // Check if we need to add these vcall offsets.
1709 if (BaseIsVirtual && !Builder.getVCallOffsets().empty()) {
1710 VCallOffsetMap &VCallOffsets = VCallOffsetsForVBases[Base.getBase()];
1711
1712 if (VCallOffsets.empty())
1713 VCallOffsets = Builder.getVCallOffsets();
1714 }
1715
Anders Carlsson77904f12010-02-16 04:59:55 +00001716 // Add the offset to top.
Anders Carlssone75aaa92010-02-13 22:05:23 +00001717 // FIXME: This is not going to be right for construction vtables.
Anders Carlsson258a1e32010-02-14 00:16:19 +00001718 // FIXME: We should not use / 8 here.
Anders Carlssondb042202010-02-17 03:11:55 +00001719 int64_t OffsetToTop = -(int64_t)Base.getBaseOffset() / 8;
Anders Carlssone75aaa92010-02-13 22:05:23 +00001720 Components.push_back(VtableComponent::MakeOffsetToTop(OffsetToTop));
Anders Carlsson65b49782010-02-12 05:25:12 +00001721
1722 // Next, add the RTTI.
Anders Carlssone75aaa92010-02-13 22:05:23 +00001723 Components.push_back(VtableComponent::MakeRTTI(MostDerivedClass));
Anders Carlsson65b49782010-02-12 05:25:12 +00001724
Anders Carlssone8a97562010-02-12 07:43:48 +00001725 uint64_t AddressPoint = Components.size();
Anders Carlsson65b49782010-02-12 05:25:12 +00001726
1727 // Now go through all virtual member functions and add them.
Anders Carlssond46ed892010-02-27 16:18:19 +00001728 PrimaryBasesSetVectorTy PrimaryBases;
Anders Carlssona8796c62010-02-23 04:26:39 +00001729 AddMethods(Base, Base, PrimaryBases);
Anders Carlsson65b49782010-02-12 05:25:12 +00001730
Anders Carlsson40687982010-02-27 16:52:49 +00001731 // Compute 'this' pointer adjustments.
1732 ComputeThisAdjustments();
1733
Anders Carlssone8a97562010-02-12 07:43:48 +00001734 // Record the address point.
1735 AddressPoints.insert(std::make_pair(Base, AddressPoint));
1736
1737 // Record the address points for all primary bases.
Anders Carlssond46ed892010-02-27 16:18:19 +00001738 for (PrimaryBasesSetVectorTy::const_iterator I = PrimaryBases.begin(),
Anders Carlssone8a97562010-02-12 07:43:48 +00001739 E = PrimaryBases.end(); I != E; ++I) {
1740 const CXXRecordDecl *BaseDecl = *I;
1741
1742 // We know that all the primary bases have the same offset as the base
1743 // subobject.
1744 BaseSubobject PrimaryBase(BaseDecl, Base.getBaseOffset());
1745 AddressPoints.insert(std::make_pair(PrimaryBase, AddressPoint));
1746 }
1747
Anders Carlssona9f633b2010-02-24 16:43:12 +00001748 // Layout secondary vtables.
1749 LayoutSecondaryVtables(Base);
Anders Carlsson14157932010-02-16 16:02:57 +00001750}
1751
1752void VtableBuilder::LayoutSecondaryVtables(BaseSubobject Base) {
1753 // Itanium C++ ABI 2.5.2:
1754 // Following the primary virtual table of a derived class are secondary
1755 // virtual tables for each of its proper base classes, except any primary
1756 // base(s) with which it shares its primary virtual table.
1757
1758 const CXXRecordDecl *RD = Base.getBase();
Anders Carlsson65b49782010-02-12 05:25:12 +00001759 const ASTRecordLayout &Layout = Context.getASTRecordLayout(RD);
1760 const CXXRecordDecl *PrimaryBase = Layout.getPrimaryBase();
Anders Carlsson14157932010-02-16 16:02:57 +00001761
Anders Carlsson65b49782010-02-12 05:25:12 +00001762 for (CXXRecordDecl::base_class_const_iterator I = RD->bases_begin(),
1763 E = RD->bases_end(); I != E; ++I) {
Anders Carlsson14157932010-02-16 16:02:57 +00001764 // Ignore virtual bases, we'll emit them later.
1765 if (I->isVirtual())
1766 continue;
1767
Anders Carlsson65b49782010-02-12 05:25:12 +00001768 const CXXRecordDecl *BaseDecl =
1769 cast<CXXRecordDecl>(I->getType()->getAs<RecordType>()->getDecl());
Anders Carlsson033d4862010-02-14 17:05:59 +00001770
Anders Carlssondc2dba32010-02-16 04:49:44 +00001771 // Ignore bases that don't have a vtable.
1772 if (!BaseDecl->isDynamicClass())
1773 continue;
Anders Carlsson033d4862010-02-14 17:05:59 +00001774
Anders Carlssone75aaa92010-02-13 22:05:23 +00001775 // Get the base offset of this base.
1776 uint64_t BaseOffset = Base.getBaseOffset() +
1777 Layout.getBaseClassOffset(BaseDecl);
Anders Carlsson14157932010-02-16 16:02:57 +00001778
1779 // Don't emit a secondary vtable for a primary base. We might however want
1780 // to emit secondary vtables for other bases of this base.
1781 if (BaseDecl == PrimaryBase) {
1782 LayoutSecondaryVtables(BaseSubobject(BaseDecl, BaseOffset));
1783 continue;
1784 }
Anders Carlssone75aaa92010-02-13 22:05:23 +00001785
Anders Carlssonb716a542010-02-16 16:26:28 +00001786 // Layout the primary vtable (and any secondary vtables) for this base.
Anders Carlssondb042202010-02-17 03:11:55 +00001787 LayoutPrimaryAndAndSecondaryVtables(BaseSubobject(BaseDecl, BaseOffset),
1788 /*BaseIsVirtual=*/false);
Anders Carlsson65b49782010-02-12 05:25:12 +00001789 }
1790}
1791
Anders Carlsson13f0f662010-02-16 16:49:35 +00001792void
Anders Carlssonb08aaa32010-02-27 04:05:52 +00001793VtableBuilder::DeterminePrimaryVirtualBases(const CXXRecordDecl *RD,
1794 VisitedVirtualBasesSetTy &VBases) {
1795 const ASTRecordLayout &Layout = Context.getASTRecordLayout(RD);
1796
1797 // Check if this base has a primary base.
1798 if (const CXXRecordDecl *PrimaryBase = Layout.getPrimaryBase()) {
1799 // Check if it's virtual
1800 if (Layout.getPrimaryBaseWasVirtual())
1801 PrimaryVirtualBases.insert(PrimaryBase);
1802 }
1803
1804 // Traverse bases, looking for more primary virtual bases.
1805 for (CXXRecordDecl::base_class_const_iterator I = RD->bases_begin(),
1806 E = RD->bases_end(); I != E; ++I) {
1807 const CXXRecordDecl *BaseDecl =
1808 cast<CXXRecordDecl>(I->getType()->getAs<RecordType>()->getDecl());
1809
1810 if (I->isVirtual() && !VBases.insert(BaseDecl))
1811 continue;
1812
1813 DeterminePrimaryVirtualBases(BaseDecl, VBases);
1814 }
1815}
1816
1817void
Anders Carlsson13f0f662010-02-16 16:49:35 +00001818VtableBuilder::LayoutVtablesForVirtualBases(const CXXRecordDecl *RD,
1819 VisitedVirtualBasesSetTy &VBases) {
1820 // Itanium C++ ABI 2.5.2:
1821 // Then come the virtual base virtual tables, also in inheritance graph
1822 // order, and again excluding primary bases (which share virtual tables with
1823 // the classes for which they are primary).
Anders Carlsson13f0f662010-02-16 16:49:35 +00001824 for (CXXRecordDecl::base_class_const_iterator I = RD->bases_begin(),
1825 E = RD->bases_end(); I != E; ++I) {
1826 const CXXRecordDecl *BaseDecl =
1827 cast<CXXRecordDecl>(I->getType()->getAs<RecordType>()->getDecl());
1828
Anders Carlsson0570f712010-02-23 03:48:14 +00001829 // Check if this base needs a vtable. (If it's virtual, not a primary base
1830 // of some other class, and we haven't visited it before).
Anders Carlsson13f0f662010-02-16 16:49:35 +00001831 if (I->isVirtual() && BaseDecl->isDynamicClass() &&
Anders Carlssonb08aaa32010-02-27 04:05:52 +00001832 !PrimaryVirtualBases.count(BaseDecl) && VBases.insert(BaseDecl)) {
Anders Carlsson13f0f662010-02-16 16:49:35 +00001833 const ASTRecordLayout &MostDerivedClassLayout =
1834 Context.getASTRecordLayout(MostDerivedClass);
1835 uint64_t BaseOffset =
1836 MostDerivedClassLayout.getVBaseClassOffset(BaseDecl);
1837
Anders Carlssondb042202010-02-17 03:11:55 +00001838 LayoutPrimaryAndAndSecondaryVtables(BaseSubobject(BaseDecl, BaseOffset),
1839 /*BaseIsVirtual=*/true);
Anders Carlsson13f0f662010-02-16 16:49:35 +00001840 }
1841
1842 // We only need to check the base for virtual base vtables if it actually
1843 // has virtual bases.
1844 if (BaseDecl->getNumVBases())
1845 LayoutVtablesForVirtualBases(BaseDecl, VBases);
1846 }
1847}
1848
Anders Carlsson5d40c6f2010-02-11 08:02:13 +00001849/// dumpLayout - Dump the vtable layout.
1850void VtableBuilder::dumpLayout(llvm::raw_ostream& Out) {
Anders Carlsson93913752010-02-27 20:39:05 +00001851
1852 if (MostDerivedClass == LayoutClass) {
1853 Out << "Vtable for '";
1854 Out << MostDerivedClass->getQualifiedNameAsString();
1855 } else {
1856 Out << "Construction vtable for ('";
1857 Out << MostDerivedClass->getQualifiedNameAsString() << "', ";
1858 // FIXME: Don't use / 8 .
1859 Out << MostDerivedClassOffset / 8 << ") in '";
1860 Out << LayoutClass->getQualifiedNameAsString();
1861 }
Anders Carlsson5d40c6f2010-02-11 08:02:13 +00001862 Out << "' (" << Components.size() << " entries).\n";
1863
Anders Carlsson932c2f22010-02-11 17:18:51 +00001864 // Iterate through the address points and insert them into a new map where
1865 // they are keyed by the index and not the base object.
1866 // Since an address point can be shared by multiple subobjects, we use an
1867 // STL multimap.
1868 std::multimap<uint64_t, BaseSubobject> AddressPointsByIndex;
1869 for (CGVtableInfo::AddressPointsMapTy::const_iterator I =
1870 AddressPoints.begin(), E = AddressPoints.end(); I != E; ++I) {
1871 const BaseSubobject& Base = I->first;
1872 uint64_t Index = I->second;
Anders Carlsson5d40c6f2010-02-11 08:02:13 +00001873
Anders Carlsson932c2f22010-02-11 17:18:51 +00001874 AddressPointsByIndex.insert(std::make_pair(Index, Base));
1875 }
1876
Anders Carlsson6a6cbfc2010-02-13 20:11:51 +00001877 unsigned NextReturnAdjustmentIndex = 0;
Anders Carlssond3adb0c2010-02-13 23:40:17 +00001878 unsigned NextThisAdjustmentIndex = 0;
Anders Carlsson932c2f22010-02-11 17:18:51 +00001879 for (unsigned I = 0, E = Components.size(); I != E; ++I) {
Anders Carlssone8a97562010-02-12 07:43:48 +00001880 uint64_t Index = I;
Anders Carlsson932c2f22010-02-11 17:18:51 +00001881
1882 Out << llvm::format("%4d | ", I);
1883
Anders Carlsson5d40c6f2010-02-11 08:02:13 +00001884 const VtableComponent &Component = Components[I];
1885
1886 // Dump the component.
1887 switch (Component.getKind()) {
Anders Carlssonb0a588f2010-02-17 06:07:19 +00001888
1889 case VtableComponent::CK_VCallOffset:
1890 Out << "vcall_offset (" << Component.getVCallOffset() << ")";
Anders Carlsson5d40c6f2010-02-11 08:02:13 +00001891 break;
Anders Carlsson77904f12010-02-16 04:59:55 +00001892
1893 case VtableComponent::CK_VBaseOffset:
1894 Out << "vbase_offset (" << Component.getVBaseOffset() << ")";
1895 break;
1896
Anders Carlsson5d40c6f2010-02-11 08:02:13 +00001897 case VtableComponent::CK_OffsetToTop:
1898 Out << "offset_to_top (" << Component.getOffsetToTop() << ")";
1899 break;
1900
1901 case VtableComponent::CK_RTTI:
1902 Out << Component.getRTTIDecl()->getQualifiedNameAsString() << " RTTI";
1903 break;
1904
Anders Carlsson5bd8d192010-02-11 18:20:28 +00001905 case VtableComponent::CK_FunctionPointer: {
Anders Carlsson5d40c6f2010-02-11 08:02:13 +00001906 const CXXMethodDecl *MD = Component.getFunctionDecl();
1907
Anders Carlsson5bd8d192010-02-11 18:20:28 +00001908 std::string Str =
1909 PredefinedExpr::ComputeName(PredefinedExpr::PrettyFunctionNoVirtual,
1910 MD);
1911 Out << Str;
Anders Carlsson09da3372010-02-12 02:38:13 +00001912 if (MD->isPure())
1913 Out << " [pure]";
1914
Anders Carlssond3adb0c2010-02-13 23:40:17 +00001915 // If this function pointer has a return adjustment, dump it.
Anders Carlsson6a6cbfc2010-02-13 20:11:51 +00001916 if (NextReturnAdjustmentIndex < ReturnAdjustments.size() &&
1917 ReturnAdjustments[NextReturnAdjustmentIndex].first == I) {
1918 const ReturnAdjustment Adjustment =
1919 ReturnAdjustments[NextReturnAdjustmentIndex].second;
1920
Anders Carlsson6a6cbfc2010-02-13 20:11:51 +00001921 Out << "\n [return adjustment: ";
Anders Carlssoncf5a8822010-02-13 21:07:32 +00001922 Out << Adjustment.NonVirtual << " non-virtual";
1923
1924 if (Adjustment.VBaseOffsetOffset)
1925 Out << ", " << Adjustment.VBaseOffsetOffset << " vbase offset offset";
Anders Carlsson78277c72010-02-18 17:00:09 +00001926
Anders Carlssoncf5a8822010-02-13 21:07:32 +00001927 Out << ']';
Anders Carlsson6a6cbfc2010-02-13 20:11:51 +00001928
1929 NextReturnAdjustmentIndex++;
1930 }
Anders Carlssond3adb0c2010-02-13 23:40:17 +00001931
1932 // If this function pointer has a 'this' pointer adjustment, dump it.
1933 if (NextThisAdjustmentIndex < ThisAdjustments.size() &&
1934 ThisAdjustments[NextThisAdjustmentIndex].first == I) {
1935 const ThisAdjustment Adjustment =
1936 ThisAdjustments[NextThisAdjustmentIndex].second;
1937
1938 Out << "\n [this adjustment: ";
1939 Out << Adjustment.NonVirtual << " non-virtual";
Anders Carlsson78277c72010-02-18 17:00:09 +00001940
1941 if (Adjustment.VCallOffsetOffset)
1942 Out << ", " << Adjustment.VCallOffsetOffset << " vcall offset offset";
1943
Anders Carlssond3adb0c2010-02-13 23:40:17 +00001944 Out << ']';
1945
1946 NextThisAdjustmentIndex++;
1947 }
Anders Carlsson6a6cbfc2010-02-13 20:11:51 +00001948
Anders Carlsson5bd8d192010-02-11 18:20:28 +00001949 break;
1950 }
Anders Carlsson5d40c6f2010-02-11 08:02:13 +00001951
Anders Carlsson2d3d9032010-02-19 06:03:53 +00001952 case VtableComponent::CK_CompleteDtorPointer:
Anders Carlsson5bd8d192010-02-11 18:20:28 +00001953 case VtableComponent::CK_DeletingDtorPointer: {
Anders Carlsson2d3d9032010-02-19 06:03:53 +00001954 bool IsComplete =
1955 Component.getKind() == VtableComponent::CK_CompleteDtorPointer;
1956
Anders Carlsson5bd8d192010-02-11 18:20:28 +00001957 const CXXDestructorDecl *DD = Component.getDestructorDecl();
1958
Anders Carlsson2d3d9032010-02-19 06:03:53 +00001959 Out << DD->getQualifiedNameAsString();
1960 if (IsComplete)
1961 Out << "() [complete]";
1962 else
1963 Out << "() [deleting]";
1964
Anders Carlsson09da3372010-02-12 02:38:13 +00001965 if (DD->isPure())
1966 Out << " [pure]";
1967
Anders Carlsson2d3d9032010-02-19 06:03:53 +00001968 // If this destructor has a 'this' pointer adjustment, dump it.
1969 if (NextThisAdjustmentIndex < ThisAdjustments.size() &&
1970 ThisAdjustments[NextThisAdjustmentIndex].first == I) {
1971 const ThisAdjustment Adjustment =
1972 ThisAdjustments[NextThisAdjustmentIndex].second;
1973
1974 Out << "\n [this adjustment: ";
1975 Out << Adjustment.NonVirtual << " non-virtual";
1976
1977 if (Adjustment.VCallOffsetOffset)
1978 Out << ", " << Adjustment.VCallOffsetOffset << " vcall offset offset";
1979
1980 Out << ']';
1981
1982 NextThisAdjustmentIndex++;
1983 }
1984
1985
Anders Carlsson5d40c6f2010-02-11 08:02:13 +00001986 break;
1987 }
1988
Anders Carlsson350b56e2010-02-19 20:08:13 +00001989 case VtableComponent::CK_UnusedFunctionPointer: {
1990 const CXXMethodDecl *MD = Component.getUnusedFunctionDecl();
1991
1992 std::string Str =
1993 PredefinedExpr::ComputeName(PredefinedExpr::PrettyFunctionNoVirtual,
1994 MD);
1995 Out << "[unused] " << Str;
1996 if (MD->isPure())
1997 Out << " [pure]";
1998 }
1999
Anders Carlsson5d40c6f2010-02-11 08:02:13 +00002000 }
Anders Carlsson932c2f22010-02-11 17:18:51 +00002001
Anders Carlsson5d40c6f2010-02-11 08:02:13 +00002002 Out << '\n';
Anders Carlssonf98b47d32010-02-27 23:58:01 +00002003
2004 // Dump the next address point.
2005 uint64_t NextIndex = Index + 1;
2006 if (AddressPointsByIndex.count(NextIndex)) {
2007 if (AddressPointsByIndex.count(NextIndex) == 1) {
2008 const BaseSubobject &Base =
2009 AddressPointsByIndex.find(NextIndex)->second;
2010
2011 // FIXME: Instead of dividing by 8, we should be using CharUnits.
2012 Out << " -- (" << Base.getBase()->getQualifiedNameAsString();
2013 Out << ", " << Base.getBaseOffset() / 8 << ") vtable address --\n";
2014 } else {
2015 uint64_t BaseOffset =
2016 AddressPointsByIndex.lower_bound(NextIndex)->second.getBaseOffset();
2017
2018 // We store the class names in a set to get a stable order.
2019 std::set<std::string> ClassNames;
2020 for (std::multimap<uint64_t, BaseSubobject>::const_iterator I =
2021 AddressPointsByIndex.lower_bound(NextIndex), E =
2022 AddressPointsByIndex.upper_bound(NextIndex); I != E; ++I) {
2023 assert(I->second.getBaseOffset() == BaseOffset &&
2024 "Invalid base offset!");
2025 const CXXRecordDecl *RD = I->second.getBase();
2026 ClassNames.insert(RD->getQualifiedNameAsString());
2027 }
2028
2029 for (std::set<std::string>::const_iterator I = ClassNames.begin(),
2030 E = ClassNames.end(); I != E; ++I) {
2031 // FIXME: Instead of dividing by 8, we should be using CharUnits.
2032 Out << " -- (" << *I;
2033 Out << ", " << BaseOffset / 8 << ") vtable address --\n";
2034 }
2035 }
2036 }
Anders Carlsson5d40c6f2010-02-11 08:02:13 +00002037 }
Anders Carlsson93913752010-02-27 20:39:05 +00002038
2039 Out << '\n';
Anders Carlsson5d40c6f2010-02-11 08:02:13 +00002040}
2041
2042}
2043
2044namespace {
2045class OldVtableBuilder {
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002046public:
2047 /// Index_t - Vtable index type.
2048 typedef uint64_t Index_t;
Eli Friedman31bc3ad2009-12-07 23:56:34 +00002049 typedef std::vector<std::pair<GlobalDecl,
2050 std::pair<GlobalDecl, ThunkAdjustment> > >
2051 SavedAdjustmentsVectorTy;
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002052private:
Anders Carlsson472404f2009-12-04 16:19:30 +00002053
Anders Carlssonfe5f7d92009-12-06 01:09:21 +00002054 // VtableComponents - The components of the vtable being built.
2055 typedef llvm::SmallVector<llvm::Constant *, 64> VtableComponentsVectorTy;
2056 VtableComponentsVectorTy VtableComponents;
2057
Eli Friedman6c08ce72009-12-05 01:05:03 +00002058 const bool BuildVtable;
2059
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002060 llvm::Type *Ptr8Ty;
Anders Carlssonbad80eb2009-12-04 18:36:22 +00002061
2062 /// MostDerivedClass - The most derived class that this vtable is being
2063 /// built for.
2064 const CXXRecordDecl *MostDerivedClass;
2065
Mike Stump83066c82009-11-13 01:54:23 +00002066 /// LayoutClass - The most derived class used for virtual base layout
2067 /// information.
2068 const CXXRecordDecl *LayoutClass;
Mike Stump653d0b92009-11-13 02:13:54 +00002069 /// LayoutOffset - The offset for Class in LayoutClass.
2070 uint64_t LayoutOffset;
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002071 /// BLayout - Layout for the most derived class that this vtable is being
2072 /// built for.
2073 const ASTRecordLayout &BLayout;
2074 llvm::SmallSet<const CXXRecordDecl *, 32> IndirectPrimary;
2075 llvm::SmallSet<const CXXRecordDecl *, 32> SeenVBase;
2076 llvm::Constant *rtti;
2077 llvm::LLVMContext &VMContext;
2078 CodeGenModule &CGM; // Per-module state.
Anders Carlssonf2f31f42009-12-04 03:46:21 +00002079
Mike Stump90181eb2010-01-26 00:05:04 +00002080 llvm::DenseMap<const CXXMethodDecl *, Index_t> VCall;
Anders Carlssonfb4dda42009-11-13 17:08:56 +00002081 llvm::DenseMap<GlobalDecl, Index_t> VCallOffset;
Mike Stump77537b12010-01-26 03:42:22 +00002082 llvm::DenseMap<GlobalDecl, Index_t> VCallOffsetForVCall;
Mike Stumpcd6f9ed2009-11-06 23:27:42 +00002083 // This is the offset to the nearest virtual base
Mike Stump90181eb2010-01-26 00:05:04 +00002084 llvm::DenseMap<const CXXMethodDecl *, Index_t> NonVirtualOffset;
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002085 llvm::DenseMap<const CXXRecordDecl *, Index_t> VBIndex;
Mike Stumpbb9ff052009-10-27 23:46:47 +00002086
Anders Carlsson323bb042009-11-26 19:54:33 +00002087 /// PureVirtualFunction - Points to __cxa_pure_virtual.
2088 llvm::Constant *PureVirtualFn;
2089
Anders Carlssona84b6e82009-12-04 02:01:07 +00002090 /// VtableMethods - A data structure for keeping track of methods in a vtable.
2091 /// Can add methods, override methods and iterate in vtable order.
2092 class VtableMethods {
2093 // MethodToIndexMap - Maps from a global decl to the index it has in the
2094 // Methods vector.
2095 llvm::DenseMap<GlobalDecl, uint64_t> MethodToIndexMap;
2096
2097 /// Methods - The methods, in vtable order.
2098 typedef llvm::SmallVector<GlobalDecl, 16> MethodsVectorTy;
2099 MethodsVectorTy Methods;
Eli Friedman8174f2c2009-12-06 22:01:30 +00002100 MethodsVectorTy OrigMethods;
Anders Carlssona84b6e82009-12-04 02:01:07 +00002101
2102 public:
2103 /// AddMethod - Add a method to the vtable methods.
2104 void AddMethod(GlobalDecl GD) {
2105 assert(!MethodToIndexMap.count(GD) &&
2106 "Method has already been added!");
2107
2108 MethodToIndexMap[GD] = Methods.size();
2109 Methods.push_back(GD);
Eli Friedman8174f2c2009-12-06 22:01:30 +00002110 OrigMethods.push_back(GD);
Anders Carlssona84b6e82009-12-04 02:01:07 +00002111 }
2112
2113 /// OverrideMethod - Replace a method with another.
2114 void OverrideMethod(GlobalDecl OverriddenGD, GlobalDecl GD) {
2115 llvm::DenseMap<GlobalDecl, uint64_t>::iterator i
2116 = MethodToIndexMap.find(OverriddenGD);
2117 assert(i != MethodToIndexMap.end() && "Did not find entry!");
2118
2119 // Get the index of the old decl.
2120 uint64_t Index = i->second;
2121
2122 // Replace the old decl with the new decl.
2123 Methods[Index] = GD;
2124
Anders Carlssona84b6e82009-12-04 02:01:07 +00002125 // And add the new.
2126 MethodToIndexMap[GD] = Index;
2127 }
2128
Anders Carlsson7bb70762009-12-04 15:49:02 +00002129 /// getIndex - Gives the index of a passed in GlobalDecl. Returns false if
2130 /// the index couldn't be found.
Benjamin Kramer62ab6162009-12-04 22:45:27 +00002131 bool getIndex(GlobalDecl GD, uint64_t &Index) const {
Anders Carlsson7bb70762009-12-04 15:49:02 +00002132 llvm::DenseMap<GlobalDecl, uint64_t>::const_iterator i
2133 = MethodToIndexMap.find(GD);
Eli Friedman3d2e9de2009-12-04 08:34:14 +00002134
Anders Carlsson7bb70762009-12-04 15:49:02 +00002135 if (i == MethodToIndexMap.end())
2136 return false;
Anders Carlssone6096362009-12-04 03:41:37 +00002137
Anders Carlsson7bb70762009-12-04 15:49:02 +00002138 Index = i->second;
2139 return true;
Anders Carlssone6096362009-12-04 03:41:37 +00002140 }
2141
Eli Friedman8174f2c2009-12-06 22:01:30 +00002142 GlobalDecl getOrigMethod(uint64_t Index) const {
2143 return OrigMethods[Index];
2144 }
2145
Anders Carlssona84b6e82009-12-04 02:01:07 +00002146 MethodsVectorTy::size_type size() const {
2147 return Methods.size();
2148 }
2149
2150 void clear() {
2151 MethodToIndexMap.clear();
2152 Methods.clear();
Eli Friedman8174f2c2009-12-06 22:01:30 +00002153 OrigMethods.clear();
Anders Carlssona84b6e82009-12-04 02:01:07 +00002154 }
2155
Anders Carlssone6096362009-12-04 03:41:37 +00002156 GlobalDecl operator[](uint64_t Index) const {
Anders Carlssona84b6e82009-12-04 02:01:07 +00002157 return Methods[Index];
2158 }
2159 };
2160
2161 /// Methods - The vtable methods we're currently building.
2162 VtableMethods Methods;
2163
Anders Carlsson4c837d22009-12-04 02:26:15 +00002164 /// ThisAdjustments - For a given index in the vtable, contains the 'this'
2165 /// pointer adjustment needed for a method.
2166 typedef llvm::DenseMap<uint64_t, ThunkAdjustment> ThisAdjustmentsMapTy;
2167 ThisAdjustmentsMapTy ThisAdjustments;
Anders Carlssond420a312009-11-26 19:32:45 +00002168
Eli Friedman31bc3ad2009-12-07 23:56:34 +00002169 SavedAdjustmentsVectorTy SavedAdjustments;
Eli Friedman8174f2c2009-12-06 22:01:30 +00002170
Anders Carlssonc521f952009-12-04 02:22:02 +00002171 /// BaseReturnTypes - Contains the base return types of methods who have been
2172 /// overridden with methods whose return types require adjustment. Used for
2173 /// generating covariant thunk information.
2174 typedef llvm::DenseMap<uint64_t, CanQualType> BaseReturnTypesMapTy;
2175 BaseReturnTypesMapTy BaseReturnTypes;
Anders Carlssond420a312009-11-26 19:32:45 +00002176
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002177 std::vector<Index_t> VCalls;
Mike Stump2cefe382009-11-12 20:47:57 +00002178
2179 typedef std::pair<const CXXRecordDecl *, uint64_t> CtorVtable_t;
Mike Stumpcd2b8212009-11-19 20:52:19 +00002180 // subAddressPoints - Used to hold the AddressPoints (offsets) into the built
2181 // vtable for use in computing the initializers for the VTT.
2182 llvm::DenseMap<CtorVtable_t, int64_t> &subAddressPoints;
Mike Stump2cefe382009-11-12 20:47:57 +00002183
Anders Carlsson5f9a8812010-01-14 02:29:07 +00002184 /// AddressPoints - Address points for this vtable.
2185 CGVtableInfo::AddressPointsMapTy& AddressPoints;
2186
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002187 typedef CXXRecordDecl::method_iterator method_iter;
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002188 const uint32_t LLVMPointerWidth;
2189 Index_t extra;
Mike Stump37dbe962009-10-15 02:04:03 +00002190 typedef std::vector<std::pair<const CXXRecordDecl *, int64_t> > Path_t;
Mike Stumpcd2b8212009-11-19 20:52:19 +00002191 static llvm::DenseMap<CtorVtable_t, int64_t>&
2192 AllocAddressPoint(CodeGenModule &cgm, const CXXRecordDecl *l,
2193 const CXXRecordDecl *c) {
Anders Carlsson93a18842010-01-02 18:02:32 +00002194 CGVtableInfo::AddrMap_t *&oref = cgm.getVtableInfo().AddressPoints[l];
Mike Stumpcd2b8212009-11-19 20:52:19 +00002195 if (oref == 0)
Anders Carlsson93a18842010-01-02 18:02:32 +00002196 oref = new CGVtableInfo::AddrMap_t;
Mike Stumpcd2b8212009-11-19 20:52:19 +00002197
2198 llvm::DenseMap<CtorVtable_t, int64_t> *&ref = (*oref)[c];
2199 if (ref == 0)
2200 ref = new llvm::DenseMap<CtorVtable_t, int64_t>;
2201 return *ref;
2202 }
Anders Carlsson323bb042009-11-26 19:54:33 +00002203
Mike Stump90181eb2010-01-26 00:05:04 +00002204 bool DclIsSame(const FunctionDecl *New, const FunctionDecl *Old) {
2205 FunctionTemplateDecl *OldTemplate = Old->getDescribedFunctionTemplate();
2206 FunctionTemplateDecl *NewTemplate = New->getDescribedFunctionTemplate();
2207
2208 // C++ [temp.fct]p2:
2209 // A function template can be overloaded with other function templates
2210 // and with normal (non-template) functions.
2211 if ((OldTemplate == 0) != (NewTemplate == 0))
2212 return false;
2213
2214 // Is the function New an overload of the function Old?
2215 QualType OldQType = CGM.getContext().getCanonicalType(Old->getType());
2216 QualType NewQType = CGM.getContext().getCanonicalType(New->getType());
2217
2218 // Compare the signatures (C++ 1.3.10) of the two functions to
2219 // determine whether they are overloads. If we find any mismatch
2220 // in the signature, they are overloads.
2221
2222 // If either of these functions is a K&R-style function (no
2223 // prototype), then we consider them to have matching signatures.
2224 if (isa<FunctionNoProtoType>(OldQType.getTypePtr()) ||
2225 isa<FunctionNoProtoType>(NewQType.getTypePtr()))
2226 return true;
2227
2228 FunctionProtoType* OldType = cast<FunctionProtoType>(OldQType);
2229 FunctionProtoType* NewType = cast<FunctionProtoType>(NewQType);
2230
2231 // The signature of a function includes the types of its
2232 // parameters (C++ 1.3.10), which includes the presence or absence
2233 // of the ellipsis; see C++ DR 357).
2234 if (OldQType != NewQType &&
2235 (OldType->getNumArgs() != NewType->getNumArgs() ||
2236 OldType->isVariadic() != NewType->isVariadic() ||
2237 !std::equal(OldType->arg_type_begin(), OldType->arg_type_end(),
2238 NewType->arg_type_begin())))
2239 return false;
2240
2241#if 0
2242 // C++ [temp.over.link]p4:
2243 // The signature of a function template consists of its function
2244 // signature, its return type and its template parameter list. The names
2245 // of the template parameters are significant only for establishing the
2246 // relationship between the template parameters and the rest of the
2247 // signature.
2248 //
2249 // We check the return type and template parameter lists for function
2250 // templates first; the remaining checks follow.
2251 if (NewTemplate &&
2252 (!TemplateParameterListsAreEqual(NewTemplate->getTemplateParameters(),
2253 OldTemplate->getTemplateParameters(),
2254 TPL_TemplateMatch) ||
2255 OldType->getResultType() != NewType->getResultType()))
2256 return false;
2257#endif
2258
2259 // If the function is a class member, its signature includes the
2260 // cv-qualifiers (if any) on the function itself.
2261 //
2262 // As part of this, also check whether one of the member functions
2263 // is static, in which case they are not overloads (C++
2264 // 13.1p2). While not part of the definition of the signature,
2265 // this check is important to determine whether these functions
2266 // can be overloaded.
2267 const CXXMethodDecl* OldMethod = dyn_cast<CXXMethodDecl>(Old);
2268 const CXXMethodDecl* NewMethod = dyn_cast<CXXMethodDecl>(New);
2269 if (OldMethod && NewMethod &&
2270 !OldMethod->isStatic() && !NewMethod->isStatic() &&
2271 OldMethod->getTypeQualifiers() != NewMethod->getTypeQualifiers())
2272 return false;
2273
2274 // The signatures match; this is not an overload.
2275 return true;
2276 }
2277
2278 typedef llvm::DenseMap<const CXXMethodDecl *, const CXXMethodDecl*>
2279 ForwardUnique_t;
2280 ForwardUnique_t ForwardUnique;
2281 llvm::DenseMap<const CXXMethodDecl*, const CXXMethodDecl*> UniqueOverrider;
2282
2283 void BuildUniqueOverrider(const CXXMethodDecl *U, const CXXMethodDecl *MD) {
2284 const CXXMethodDecl *PrevU = UniqueOverrider[MD];
2285 assert(U && "no unique overrider");
2286 if (PrevU == U)
2287 return;
2288 if (PrevU != U && PrevU != 0) {
2289 // If already set, note the two sets as the same
2290 if (0)
2291 printf("%s::%s same as %s::%s\n",
Douglas Gregor76eb74a2010-02-22 16:44:27 +00002292 PrevU->getParent()->getNameAsString().c_str(),
2293 PrevU->getNameAsString().c_str(),
2294 U->getParent()->getNameAsString().c_str(),
2295 U->getNameAsString().c_str());
Mike Stump90181eb2010-01-26 00:05:04 +00002296 ForwardUnique[PrevU] = U;
2297 return;
2298 }
2299
2300 // Not set, set it now
2301 if (0)
2302 printf("marking %s::%s %p override as %s::%s\n",
Douglas Gregor76eb74a2010-02-22 16:44:27 +00002303 MD->getParent()->getNameAsString().c_str(),
2304 MD->getNameAsString().c_str(),
Mike Stump90181eb2010-01-26 00:05:04 +00002305 (void*)MD,
Douglas Gregor76eb74a2010-02-22 16:44:27 +00002306 U->getParent()->getNameAsString().c_str(),
2307 U->getNameAsString().c_str());
Mike Stump90181eb2010-01-26 00:05:04 +00002308 UniqueOverrider[MD] = U;
2309
2310 for (CXXMethodDecl::method_iterator mi = MD->begin_overridden_methods(),
2311 me = MD->end_overridden_methods(); mi != me; ++mi) {
2312 BuildUniqueOverrider(U, *mi);
2313 }
2314 }
2315
2316 void BuildUniqueOverriders(const CXXRecordDecl *RD) {
2317 if (0) printf("walking %s\n", RD->getNameAsCString());
2318 for (CXXRecordDecl::method_iterator i = RD->method_begin(),
2319 e = RD->method_end(); i != e; ++i) {
2320 const CXXMethodDecl *MD = *i;
2321 if (!MD->isVirtual())
2322 continue;
2323
2324 if (UniqueOverrider[MD] == 0) {
2325 // Only set this, if it hasn't been set yet.
2326 BuildUniqueOverrider(MD, MD);
2327 if (0)
2328 printf("top set is %s::%s %p\n",
Douglas Gregor76eb74a2010-02-22 16:44:27 +00002329 MD->getParent()->getNameAsString().c_str(),
2330 MD->getNameAsString().c_str(),
Mike Stump90181eb2010-01-26 00:05:04 +00002331 (void*)MD);
2332 ForwardUnique[MD] = MD;
2333 }
2334 }
2335 for (CXXRecordDecl::base_class_const_iterator i = RD->bases_begin(),
2336 e = RD->bases_end(); i != e; ++i) {
2337 const CXXRecordDecl *Base =
2338 cast<CXXRecordDecl>(i->getType()->getAs<RecordType>()->getDecl());
2339 BuildUniqueOverriders(Base);
2340 }
2341 }
2342
2343 static int DclCmp(const void *p1, const void *p2) {
John McCallef3057c2010-02-13 01:04:05 +00002344 const CXXMethodDecl *MD1 = *(const CXXMethodDecl *const *)p1;
2345 const CXXMethodDecl *MD2 = *(const CXXMethodDecl *const *)p2;
2346
2347 return (DeclarationName::compare(MD1->getDeclName(), MD2->getDeclName()));
Mike Stump90181eb2010-01-26 00:05:04 +00002348 }
2349
2350 void MergeForwarding() {
2351 typedef llvm::SmallVector<const CXXMethodDecl *, 100> A_t;
2352 A_t A;
2353 for (ForwardUnique_t::iterator I = ForwardUnique.begin(),
2354 E = ForwardUnique.end(); I != E; ++I) {
2355 if (I->first == I->second)
2356 // Only add the roots of all trees
2357 A.push_back(I->first);
2358 }
2359 llvm::array_pod_sort(A.begin(), A.end(), DclCmp);
2360 for (A_t::iterator I = A.begin(),
2361 E = A.end(); I != E; ++I) {
2362 A_t::iterator J = I;
John McCallef3057c2010-02-13 01:04:05 +00002363 while (++J != E && DclCmp(I, J) == 0)
Mike Stump90181eb2010-01-26 00:05:04 +00002364 if (DclIsSame(*I, *J)) {
Douglas Gregor76eb74a2010-02-22 16:44:27 +00002365 if (0) printf("connecting %s\n", (*I)->getNameAsString().c_str());
Mike Stump90181eb2010-01-26 00:05:04 +00002366 ForwardUnique[*J] = *I;
2367 }
2368 }
2369 }
2370
2371 const CXXMethodDecl *getUnique(const CXXMethodDecl *MD) {
2372 const CXXMethodDecl *U = UniqueOverrider[MD];
2373 assert(U && "unique overrider not found");
2374 while (ForwardUnique.count(U)) {
2375 const CXXMethodDecl *NU = ForwardUnique[U];
2376 if (NU == U) break;
2377 U = NU;
2378 }
2379 return U;
2380 }
Anders Carlsson72281172010-01-26 17:36:47 +00002381
2382 GlobalDecl getUnique(GlobalDecl GD) {
2383 const CXXMethodDecl *Unique = getUnique(cast<CXXMethodDecl>(GD.getDecl()));
2384
2385 if (const CXXConstructorDecl *CD = dyn_cast<CXXConstructorDecl>(Unique))
2386 return GlobalDecl(CD, GD.getCtorType());
2387
2388 if (const CXXDestructorDecl *DD = dyn_cast<CXXDestructorDecl>(Unique))
2389 return GlobalDecl(DD, GD.getDtorType());
2390
2391 return Unique;
Mike Stump90181eb2010-01-26 00:05:04 +00002392 }
2393
Anders Carlsson323bb042009-11-26 19:54:33 +00002394 /// getPureVirtualFn - Return the __cxa_pure_virtual function.
2395 llvm::Constant* getPureVirtualFn() {
2396 if (!PureVirtualFn) {
2397 const llvm::FunctionType *Ty =
2398 llvm::FunctionType::get(llvm::Type::getVoidTy(VMContext),
2399 /*isVarArg=*/false);
2400 PureVirtualFn = wrap(CGM.CreateRuntimeFunction(Ty, "__cxa_pure_virtual"));
2401 }
2402
2403 return PureVirtualFn;
2404 }
2405
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002406public:
Anders Carlsson5d40c6f2010-02-11 08:02:13 +00002407 OldVtableBuilder(const CXXRecordDecl *MostDerivedClass,
Eli Friedman6c08ce72009-12-05 01:05:03 +00002408 const CXXRecordDecl *l, uint64_t lo, CodeGenModule &cgm,
Anders Carlsson5f9a8812010-01-14 02:29:07 +00002409 bool build, CGVtableInfo::AddressPointsMapTy& AddressPoints)
Eli Friedman6c08ce72009-12-05 01:05:03 +00002410 : BuildVtable(build), MostDerivedClass(MostDerivedClass), LayoutClass(l),
2411 LayoutOffset(lo), BLayout(cgm.getContext().getASTRecordLayout(l)),
2412 rtti(0), VMContext(cgm.getModule().getContext()),CGM(cgm),
2413 PureVirtualFn(0),
Anders Carlssonbad80eb2009-12-04 18:36:22 +00002414 subAddressPoints(AllocAddressPoint(cgm, l, MostDerivedClass)),
Anders Carlsson5f9a8812010-01-14 02:29:07 +00002415 AddressPoints(AddressPoints),
2416 LLVMPointerWidth(cgm.getContext().Target.getPointerWidth(0))
2417 {
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002418 Ptr8Ty = llvm::PointerType::get(llvm::Type::getInt8Ty(VMContext), 0);
Anders Carlsson3f4336c2009-12-17 07:09:17 +00002419 if (BuildVtable) {
2420 QualType ClassType = CGM.getContext().getTagDeclType(MostDerivedClass);
2421 rtti = CGM.GetAddrOfRTTIDescriptor(ClassType);
2422 }
Mike Stump90181eb2010-01-26 00:05:04 +00002423 BuildUniqueOverriders(MostDerivedClass);
2424 MergeForwarding();
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002425 }
2426
Anders Carlssonfe5f7d92009-12-06 01:09:21 +00002427 // getVtableComponents - Returns a reference to the vtable components.
2428 const VtableComponentsVectorTy &getVtableComponents() const {
2429 return VtableComponents;
Anders Carlsson472404f2009-12-04 16:19:30 +00002430 }
2431
Anders Carlssone36a6b32010-01-02 01:01:18 +00002432 llvm::DenseMap<const CXXRecordDecl *, uint64_t> &getVBIndex()
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002433 { return VBIndex; }
2434
Eli Friedman31bc3ad2009-12-07 23:56:34 +00002435 SavedAdjustmentsVectorTy &getSavedAdjustments()
2436 { return SavedAdjustments; }
Eli Friedman8174f2c2009-12-06 22:01:30 +00002437
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002438 llvm::Constant *wrap(Index_t i) {
2439 llvm::Constant *m;
2440 m = llvm::ConstantInt::get(llvm::Type::getInt64Ty(VMContext), i);
2441 return llvm::ConstantExpr::getIntToPtr(m, Ptr8Ty);
2442 }
2443
2444 llvm::Constant *wrap(llvm::Constant *m) {
2445 return llvm::ConstantExpr::getBitCast(m, Ptr8Ty);
2446 }
2447
Mike Stumpd2808442010-01-22 02:51:26 +00002448//#define D1(x)
Douglas Gregorf4f2e022010-02-22 16:48:26 +00002449#define D1(X) do { if (getenv("CLANG_VTABLE_DEBUG")) { X; } } while (0)
Mike Stump75ce5732009-10-31 20:06:59 +00002450
2451 void GenerateVBaseOffsets(const CXXRecordDecl *RD, uint64_t Offset,
Mike Stump28431212009-10-13 22:54:56 +00002452 bool updateVBIndex, Index_t current_vbindex) {
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002453 for (CXXRecordDecl::base_class_const_iterator i = RD->bases_begin(),
2454 e = RD->bases_end(); i != e; ++i) {
2455 const CXXRecordDecl *Base =
2456 cast<CXXRecordDecl>(i->getType()->getAs<RecordType>()->getDecl());
Mike Stump28431212009-10-13 22:54:56 +00002457 Index_t next_vbindex = current_vbindex;
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002458 if (i->isVirtual() && !SeenVBase.count(Base)) {
2459 SeenVBase.insert(Base);
Mike Stump28431212009-10-13 22:54:56 +00002460 if (updateVBIndex) {
Mike Stump75ce5732009-10-31 20:06:59 +00002461 next_vbindex = (ssize_t)(-(VCalls.size()*LLVMPointerWidth/8)
Mike Stump28431212009-10-13 22:54:56 +00002462 - 3*LLVMPointerWidth/8);
2463 VBIndex[Base] = next_vbindex;
2464 }
Mike Stump75ce5732009-10-31 20:06:59 +00002465 int64_t BaseOffset = -(Offset/8) + BLayout.getVBaseClassOffset(Base)/8;
2466 VCalls.push_back((0?700:0) + BaseOffset);
2467 D1(printf(" vbase for %s at %d delta %d most derived %s\n",
2468 Base->getNameAsCString(),
2469 (int)-VCalls.size()-3, (int)BaseOffset,
Mike Stumpd2808442010-01-22 02:51:26 +00002470 MostDerivedClass->getNameAsCString()));
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002471 }
Mike Stump28431212009-10-13 22:54:56 +00002472 // We also record offsets for non-virtual bases to closest enclosing
2473 // virtual base. We do this so that we don't have to search
2474 // for the nearst virtual base class when generating thunks.
2475 if (updateVBIndex && VBIndex.count(Base) == 0)
2476 VBIndex[Base] = next_vbindex;
Mike Stump75ce5732009-10-31 20:06:59 +00002477 GenerateVBaseOffsets(Base, Offset, updateVBIndex, next_vbindex);
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002478 }
2479 }
2480
2481 void StartNewTable() {
2482 SeenVBase.clear();
2483 }
2484
Mike Stump8bccbfd2009-10-15 09:30:16 +00002485 Index_t getNVOffset_1(const CXXRecordDecl *D, const CXXRecordDecl *B,
2486 Index_t Offset = 0) {
2487
2488 if (B == D)
2489 return Offset;
2490
2491 const ASTRecordLayout &Layout = CGM.getContext().getASTRecordLayout(D);
2492 for (CXXRecordDecl::base_class_const_iterator i = D->bases_begin(),
2493 e = D->bases_end(); i != e; ++i) {
2494 const CXXRecordDecl *Base =
2495 cast<CXXRecordDecl>(i->getType()->getAs<RecordType>()->getDecl());
2496 int64_t BaseOffset = 0;
2497 if (!i->isVirtual())
2498 BaseOffset = Offset + Layout.getBaseClassOffset(Base);
2499 int64_t o = getNVOffset_1(Base, B, BaseOffset);
2500 if (o >= 0)
2501 return o;
2502 }
2503
2504 return -1;
2505 }
2506
2507 /// getNVOffset - Returns the non-virtual offset for the given (B) base of the
2508 /// derived class D.
2509 Index_t getNVOffset(QualType qB, QualType qD) {
Mike Stump46271322009-11-03 19:03:17 +00002510 qD = qD->getPointeeType();
2511 qB = qB->getPointeeType();
Mike Stump8bccbfd2009-10-15 09:30:16 +00002512 CXXRecordDecl *D = cast<CXXRecordDecl>(qD->getAs<RecordType>()->getDecl());
2513 CXXRecordDecl *B = cast<CXXRecordDecl>(qB->getAs<RecordType>()->getDecl());
2514 int64_t o = getNVOffset_1(D, B);
2515 if (o >= 0)
2516 return o;
2517
2518 assert(false && "FIXME: non-virtual base not found");
2519 return 0;
2520 }
2521
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002522 /// getVbaseOffset - Returns the index into the vtable for the virtual base
2523 /// offset for the given (B) virtual base of the derived class D.
2524 Index_t getVbaseOffset(QualType qB, QualType qD) {
Mike Stump46271322009-11-03 19:03:17 +00002525 qD = qD->getPointeeType();
2526 qB = qB->getPointeeType();
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002527 CXXRecordDecl *D = cast<CXXRecordDecl>(qD->getAs<RecordType>()->getDecl());
2528 CXXRecordDecl *B = cast<CXXRecordDecl>(qB->getAs<RecordType>()->getDecl());
Anders Carlssonbad80eb2009-12-04 18:36:22 +00002529 if (D != MostDerivedClass)
Eli Friedman03aa2f12009-11-30 01:19:33 +00002530 return CGM.getVtableInfo().getVirtualBaseOffsetIndex(D, B);
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002531 llvm::DenseMap<const CXXRecordDecl *, Index_t>::iterator i;
2532 i = VBIndex.find(B);
2533 if (i != VBIndex.end())
2534 return i->second;
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002535
Mike Stump28431212009-10-13 22:54:56 +00002536 assert(false && "FIXME: Base not found");
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002537 return 0;
2538 }
2539
Eli Friedman81fb0d22009-12-04 08:40:51 +00002540 bool OverrideMethod(GlobalDecl GD, bool MorallyVirtual,
2541 Index_t OverrideOffset, Index_t Offset,
2542 int64_t CurrentVBaseOffset);
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002543
Anders Carlsson495634e2009-12-04 02:39:04 +00002544 /// AppendMethods - Append the current methods to the vtable.
Anders Carlssonddf42c82009-12-04 02:56:03 +00002545 void AppendMethodsToVtable();
Anders Carlsson495634e2009-12-04 02:39:04 +00002546
Anders Carlssonfb4dda42009-11-13 17:08:56 +00002547 llvm::Constant *WrapAddrOf(GlobalDecl GD) {
2548 const CXXMethodDecl *MD = cast<CXXMethodDecl>(GD.getDecl());
2549
Anders Carlsson64457732009-11-24 05:08:52 +00002550 const llvm::Type *Ty = CGM.getTypes().GetFunctionTypeForVtable(MD);
Mike Stump18e8b472009-10-27 23:36:26 +00002551
Mike Stumpcdeb8002009-12-03 16:55:20 +00002552 return wrap(CGM.GetAddrOfFunction(GD, Ty));
Mike Stump18e8b472009-10-27 23:36:26 +00002553 }
2554
Mike Stumpcd6f9ed2009-11-06 23:27:42 +00002555 void OverrideMethods(Path_t *Path, bool MorallyVirtual, int64_t Offset,
2556 int64_t CurrentVBaseOffset) {
Mike Stump37dbe962009-10-15 02:04:03 +00002557 for (Path_t::reverse_iterator i = Path->rbegin(),
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002558 e = Path->rend(); i != e; ++i) {
2559 const CXXRecordDecl *RD = i->first;
Mike Stump8bccbfd2009-10-15 09:30:16 +00002560 int64_t OverrideOffset = i->second;
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002561 for (method_iter mi = RD->method_begin(), me = RD->method_end(); mi != me;
2562 ++mi) {
Anders Carlssonfb4dda42009-11-13 17:08:56 +00002563 const CXXMethodDecl *MD = *mi;
2564
2565 if (!MD->isVirtual())
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002566 continue;
2567
Anders Carlssonfb4dda42009-11-13 17:08:56 +00002568 if (const CXXDestructorDecl *DD = dyn_cast<CXXDestructorDecl>(MD)) {
2569 // Override both the complete and the deleting destructor.
2570 GlobalDecl CompDtor(DD, Dtor_Complete);
Eli Friedman81fb0d22009-12-04 08:40:51 +00002571 OverrideMethod(CompDtor, MorallyVirtual, OverrideOffset, Offset,
2572 CurrentVBaseOffset);
2573
Anders Carlssonfb4dda42009-11-13 17:08:56 +00002574 GlobalDecl DeletingDtor(DD, Dtor_Deleting);
Eli Friedman81fb0d22009-12-04 08:40:51 +00002575 OverrideMethod(DeletingDtor, MorallyVirtual, OverrideOffset, Offset,
2576 CurrentVBaseOffset);
Anders Carlssonfb4dda42009-11-13 17:08:56 +00002577 } else {
Eli Friedman81fb0d22009-12-04 08:40:51 +00002578 OverrideMethod(MD, MorallyVirtual, OverrideOffset, Offset,
2579 CurrentVBaseOffset);
Anders Carlssonfb4dda42009-11-13 17:08:56 +00002580 }
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002581 }
2582 }
2583 }
2584
Anders Carlssonfb4dda42009-11-13 17:08:56 +00002585 void AddMethod(const GlobalDecl GD, bool MorallyVirtual, Index_t Offset,
Eli Friedman03aa2f12009-11-30 01:19:33 +00002586 int64_t CurrentVBaseOffset) {
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002587 // If we can find a previously allocated slot for this, reuse it.
Eli Friedman81fb0d22009-12-04 08:40:51 +00002588 if (OverrideMethod(GD, MorallyVirtual, Offset, Offset,
Mike Stumpcd6f9ed2009-11-06 23:27:42 +00002589 CurrentVBaseOffset))
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002590 return;
2591
Mike Stump1f49d652010-01-22 18:48:47 +00002592 D1(printf(" vfn for %s at %d\n",
Douglas Gregor76eb74a2010-02-22 16:44:27 +00002593 dyn_cast<CXXMethodDecl>(GD.getDecl())->getNameAsString().c_str(),
Mike Stump1f49d652010-01-22 18:48:47 +00002594 (int)Methods.size()));
2595
Anders Carlssoncdf18982009-12-04 02:08:24 +00002596 // We didn't find an entry in the vtable that we could use, add a new
2597 // entry.
2598 Methods.AddMethod(GD);
2599
Mike Stumpa04ecfb2010-01-26 21:35:27 +00002600 VCallOffset[GD] = Offset/8 - CurrentVBaseOffset/8;
2601
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002602 if (MorallyVirtual) {
Anders Carlsson72281172010-01-26 17:36:47 +00002603 GlobalDecl UGD = getUnique(GD);
2604 const CXXMethodDecl *UMD = cast<CXXMethodDecl>(UGD.getDecl());
2605
Mike Stump90181eb2010-01-26 00:05:04 +00002606 assert(UMD && "final overrider not found");
2607
2608 Index_t &idx = VCall[UMD];
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002609 // Allocate the first one, after that, we reuse the previous one.
2610 if (idx == 0) {
Anders Carlsson72281172010-01-26 17:36:47 +00002611 VCallOffsetForVCall[UGD] = Offset/8;
Mike Stumpa04ecfb2010-01-26 21:35:27 +00002612 NonVirtualOffset[UMD] = Offset/8 - CurrentVBaseOffset/8;
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002613 idx = VCalls.size()+1;
Mike Stump90181eb2010-01-26 00:05:04 +00002614 VCalls.push_back(Offset/8 - CurrentVBaseOffset/8);
Mike Stump75ce5732009-10-31 20:06:59 +00002615 D1(printf(" vcall for %s at %d with delta %d\n",
Douglas Gregor76eb74a2010-02-22 16:44:27 +00002616 dyn_cast<CXXMethodDecl>(GD.getDecl())->getNameAsString().c_str(),
Mike Stump90181eb2010-01-26 00:05:04 +00002617 (int)-VCalls.size()-3, (int)VCalls[idx-1]));
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002618 }
2619 }
2620 }
2621
2622 void AddMethods(const CXXRecordDecl *RD, bool MorallyVirtual,
Eli Friedman03aa2f12009-11-30 01:19:33 +00002623 Index_t Offset, int64_t CurrentVBaseOffset) {
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002624 for (method_iter mi = RD->method_begin(), me = RD->method_end(); mi != me;
Anders Carlssonfb4dda42009-11-13 17:08:56 +00002625 ++mi) {
2626 const CXXMethodDecl *MD = *mi;
2627 if (!MD->isVirtual())
2628 continue;
2629
2630 if (const CXXDestructorDecl *DD = dyn_cast<CXXDestructorDecl>(MD)) {
2631 // For destructors, add both the complete and the deleting destructor
2632 // to the vtable.
2633 AddMethod(GlobalDecl(DD, Dtor_Complete), MorallyVirtual, Offset,
Mike Stumpcd6f9ed2009-11-06 23:27:42 +00002634 CurrentVBaseOffset);
Eli Friedman03aa2f12009-11-30 01:19:33 +00002635 AddMethod(GlobalDecl(DD, Dtor_Deleting), MorallyVirtual, Offset,
2636 CurrentVBaseOffset);
2637 } else
2638 AddMethod(MD, MorallyVirtual, Offset, CurrentVBaseOffset);
Anders Carlssonfb4dda42009-11-13 17:08:56 +00002639 }
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002640 }
2641
2642 void NonVirtualBases(const CXXRecordDecl *RD, const ASTRecordLayout &Layout,
2643 const CXXRecordDecl *PrimaryBase,
2644 bool PrimaryBaseWasVirtual, bool MorallyVirtual,
Mike Stumpcd6f9ed2009-11-06 23:27:42 +00002645 int64_t Offset, int64_t CurrentVBaseOffset,
2646 Path_t *Path) {
Mike Stump37dbe962009-10-15 02:04:03 +00002647 Path->push_back(std::make_pair(RD, Offset));
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002648 for (CXXRecordDecl::base_class_const_iterator i = RD->bases_begin(),
2649 e = RD->bases_end(); i != e; ++i) {
2650 if (i->isVirtual())
2651 continue;
2652 const CXXRecordDecl *Base =
2653 cast<CXXRecordDecl>(i->getType()->getAs<RecordType>()->getDecl());
Mike Stump9eb76d42010-01-22 06:45:05 +00002654 uint64_t o = Offset + Layout.getBaseClassOffset(Base);
2655 StartNewTable();
2656 GenerateVtableForBase(Base, o, MorallyVirtual, false,
2657 true, Base == PrimaryBase && !PrimaryBaseWasVirtual,
2658 CurrentVBaseOffset, Path);
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002659 }
Mike Stump37dbe962009-10-15 02:04:03 +00002660 Path->pop_back();
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002661 }
2662
Mike Stumpb21c4ee2009-10-14 18:14:51 +00002663// #define D(X) do { X; } while (0)
2664#define D(X)
2665
2666 void insertVCalls(int InsertionPoint) {
Mike Stump75ce5732009-10-31 20:06:59 +00002667 D1(printf("============= combining vbase/vcall\n"));
Mike Stumpb21c4ee2009-10-14 18:14:51 +00002668 D(VCalls.insert(VCalls.begin(), 673));
2669 D(VCalls.push_back(672));
Eli Friedman6c08ce72009-12-05 01:05:03 +00002670
Anders Carlssonfe5f7d92009-12-06 01:09:21 +00002671 VtableComponents.insert(VtableComponents.begin() + InsertionPoint,
2672 VCalls.size(), 0);
Eli Friedman6c08ce72009-12-05 01:05:03 +00002673 if (BuildVtable) {
2674 // The vcalls come first...
2675 for (std::vector<Index_t>::reverse_iterator i = VCalls.rbegin(),
2676 e = VCalls.rend();
2677 i != e; ++i)
Anders Carlssonfe5f7d92009-12-06 01:09:21 +00002678 VtableComponents[InsertionPoint++] = wrap((0?600:0) + *i);
Eli Friedman6c08ce72009-12-05 01:05:03 +00002679 }
Mike Stumpb21c4ee2009-10-14 18:14:51 +00002680 VCalls.clear();
Mike Stump9f23a142009-11-10 02:30:51 +00002681 VCall.clear();
Mike Stumpa04ecfb2010-01-26 21:35:27 +00002682 VCallOffsetForVCall.clear();
2683 VCallOffset.clear();
2684 NonVirtualOffset.clear();
Mike Stumpb21c4ee2009-10-14 18:14:51 +00002685 }
2686
Mike Stump559387f2009-11-13 23:13:20 +00002687 void AddAddressPoints(const CXXRecordDecl *RD, uint64_t Offset,
2688 Index_t AddressPoint) {
2689 D1(printf("XXX address point for %s in %s layout %s at offset %d is %d\n",
Mike Stumpd2808442010-01-22 02:51:26 +00002690 RD->getNameAsCString(), MostDerivedClass->getNameAsCString(),
Mike Stump559387f2009-11-13 23:13:20 +00002691 LayoutClass->getNameAsCString(), (int)Offset, (int)AddressPoint));
Mike Stumpcd2b8212009-11-19 20:52:19 +00002692 subAddressPoints[std::make_pair(RD, Offset)] = AddressPoint;
Anders Carlsson5f9a8812010-01-14 02:29:07 +00002693 AddressPoints[BaseSubobject(RD, Offset)] = AddressPoint;
Mike Stump559387f2009-11-13 23:13:20 +00002694
2695 // Now also add the address point for all our primary bases.
2696 while (1) {
2697 const ASTRecordLayout &Layout = CGM.getContext().getASTRecordLayout(RD);
2698 RD = Layout.getPrimaryBase();
2699 const bool PrimaryBaseWasVirtual = Layout.getPrimaryBaseWasVirtual();
2700 // FIXME: Double check this.
2701 if (RD == 0)
2702 break;
2703 if (PrimaryBaseWasVirtual &&
2704 BLayout.getVBaseClassOffset(RD) != Offset)
2705 break;
2706 D1(printf("XXX address point for %s in %s layout %s at offset %d is %d\n",
Mike Stumpd2808442010-01-22 02:51:26 +00002707 RD->getNameAsCString(), MostDerivedClass->getNameAsCString(),
Mike Stump559387f2009-11-13 23:13:20 +00002708 LayoutClass->getNameAsCString(), (int)Offset, (int)AddressPoint));
Mike Stumpcd2b8212009-11-19 20:52:19 +00002709 subAddressPoints[std::make_pair(RD, Offset)] = AddressPoint;
Anders Carlsson5f9a8812010-01-14 02:29:07 +00002710 AddressPoints[BaseSubobject(RD, Offset)] = AddressPoint;
Mike Stump559387f2009-11-13 23:13:20 +00002711 }
2712 }
2713
2714
Mike Stumpd538a6d2009-12-24 07:29:41 +00002715 void FinishGenerateVtable(const CXXRecordDecl *RD,
2716 const ASTRecordLayout &Layout,
2717 const CXXRecordDecl *PrimaryBase,
Mike Stump9eb76d42010-01-22 06:45:05 +00002718 bool ForNPNVBases, bool WasPrimaryBase,
Mike Stumpd538a6d2009-12-24 07:29:41 +00002719 bool PrimaryBaseWasVirtual,
2720 bool MorallyVirtual, int64_t Offset,
2721 bool ForVirtualBase, int64_t CurrentVBaseOffset,
2722 Path_t *Path) {
Mike Stump37dbe962009-10-15 02:04:03 +00002723 bool alloc = false;
2724 if (Path == 0) {
2725 alloc = true;
2726 Path = new Path_t;
2727 }
2728
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002729 StartNewTable();
2730 extra = 0;
Mike Stump9eb76d42010-01-22 06:45:05 +00002731 Index_t AddressPoint = 0;
2732 int VCallInsertionPoint = 0;
2733 if (!ForNPNVBases || !WasPrimaryBase) {
2734 bool DeferVCalls = MorallyVirtual || ForVirtualBase;
2735 VCallInsertionPoint = VtableComponents.size();
2736 if (!DeferVCalls) {
2737 insertVCalls(VCallInsertionPoint);
2738 } else
2739 // FIXME: just for extra, or for all uses of VCalls.size post this?
2740 extra = -VCalls.size();
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002741
Mike Stump9eb76d42010-01-22 06:45:05 +00002742 // Add the offset to top.
2743 VtableComponents.push_back(BuildVtable ? wrap(-((Offset-LayoutOffset)/8)) : 0);
Anders Carlsson472404f2009-12-04 16:19:30 +00002744
Mike Stump9eb76d42010-01-22 06:45:05 +00002745 // Add the RTTI information.
2746 VtableComponents.push_back(rtti);
Anders Carlsson472404f2009-12-04 16:19:30 +00002747
Mike Stump9eb76d42010-01-22 06:45:05 +00002748 AddressPoint = VtableComponents.size();
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002749
Mike Stump9eb76d42010-01-22 06:45:05 +00002750 AppendMethodsToVtable();
2751 }
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002752
2753 // and then the non-virtual bases.
2754 NonVirtualBases(RD, Layout, PrimaryBase, PrimaryBaseWasVirtual,
Mike Stumpcd6f9ed2009-11-06 23:27:42 +00002755 MorallyVirtual, Offset, CurrentVBaseOffset, Path);
Mike Stumpb21c4ee2009-10-14 18:14:51 +00002756
2757 if (ForVirtualBase) {
Mike Stump2cefe382009-11-12 20:47:57 +00002758 // FIXME: We're adding to VCalls in callers, we need to do the overrides
2759 // in the inner part, so that we know the complete set of vcalls during
2760 // the build and don't have to insert into methods. Saving out the
2761 // AddressPoint here, would need to be fixed, if we didn't do that. Also
2762 // retroactively adding vcalls for overrides later wind up in the wrong
2763 // place, the vcall slot has to be alloted during the walk of the base
2764 // when the function is first introduces.
Mike Stumpb21c4ee2009-10-14 18:14:51 +00002765 AddressPoint += VCalls.size();
Mike Stump2cefe382009-11-12 20:47:57 +00002766 insertVCalls(VCallInsertionPoint);
Mike Stumpb21c4ee2009-10-14 18:14:51 +00002767 }
2768
Mike Stump9eb76d42010-01-22 06:45:05 +00002769 if (!ForNPNVBases || !WasPrimaryBase)
2770 AddAddressPoints(RD, Offset, AddressPoint);
Mike Stump2cefe382009-11-12 20:47:57 +00002771
Mike Stump37dbe962009-10-15 02:04:03 +00002772 if (alloc) {
2773 delete Path;
2774 }
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002775 }
2776
Mike Stump75ce5732009-10-31 20:06:59 +00002777 void Primaries(const CXXRecordDecl *RD, bool MorallyVirtual, int64_t Offset,
2778 bool updateVBIndex, Index_t current_vbindex,
Eli Friedman03aa2f12009-11-30 01:19:33 +00002779 int64_t CurrentVBaseOffset) {
Mike Stump75ce5732009-10-31 20:06:59 +00002780 if (!RD->isDynamicClass())
2781 return;
2782
2783 const ASTRecordLayout &Layout = CGM.getContext().getASTRecordLayout(RD);
2784 const CXXRecordDecl *PrimaryBase = Layout.getPrimaryBase();
2785 const bool PrimaryBaseWasVirtual = Layout.getPrimaryBaseWasVirtual();
2786
2787 // vtables are composed from the chain of primaries.
Eli Friedman65d87222009-12-04 08:52:11 +00002788 if (PrimaryBase && !PrimaryBaseWasVirtual) {
Mike Stump75ce5732009-10-31 20:06:59 +00002789 D1(printf(" doing primaries for %s most derived %s\n",
Mike Stumpd2808442010-01-22 02:51:26 +00002790 RD->getNameAsCString(), MostDerivedClass->getNameAsCString()));
Eli Friedman65d87222009-12-04 08:52:11 +00002791 Primaries(PrimaryBase, PrimaryBaseWasVirtual|MorallyVirtual, Offset,
2792 updateVBIndex, current_vbindex, CurrentVBaseOffset);
Mike Stump75ce5732009-10-31 20:06:59 +00002793 }
2794
2795 D1(printf(" doing vcall entries for %s most derived %s\n",
Mike Stumpd2808442010-01-22 02:51:26 +00002796 RD->getNameAsCString(), MostDerivedClass->getNameAsCString()));
Mike Stump75ce5732009-10-31 20:06:59 +00002797
2798 // And add the virtuals for the class to the primary vtable.
Eli Friedman03aa2f12009-11-30 01:19:33 +00002799 AddMethods(RD, MorallyVirtual, Offset, CurrentVBaseOffset);
Mike Stump75ce5732009-10-31 20:06:59 +00002800 }
2801
2802 void VBPrimaries(const CXXRecordDecl *RD, bool MorallyVirtual, int64_t Offset,
2803 bool updateVBIndex, Index_t current_vbindex,
Mike Stumpcd6f9ed2009-11-06 23:27:42 +00002804 bool RDisVirtualBase, int64_t CurrentVBaseOffset,
Eli Friedman03aa2f12009-11-30 01:19:33 +00002805 bool bottom) {
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002806 if (!RD->isDynamicClass())
2807 return;
2808
2809 const ASTRecordLayout &Layout = CGM.getContext().getASTRecordLayout(RD);
2810 const CXXRecordDecl *PrimaryBase = Layout.getPrimaryBase();
2811 const bool PrimaryBaseWasVirtual = Layout.getPrimaryBaseWasVirtual();
2812
2813 // vtables are composed from the chain of primaries.
2814 if (PrimaryBase) {
Mike Stumpcd6f9ed2009-11-06 23:27:42 +00002815 int BaseCurrentVBaseOffset = CurrentVBaseOffset;
2816 if (PrimaryBaseWasVirtual) {
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002817 IndirectPrimary.insert(PrimaryBase);
Mike Stumpcd6f9ed2009-11-06 23:27:42 +00002818 BaseCurrentVBaseOffset = BLayout.getVBaseClassOffset(PrimaryBase);
2819 }
Mike Stump75ce5732009-10-31 20:06:59 +00002820
2821 D1(printf(" doing primaries for %s most derived %s\n",
Mike Stumpd2808442010-01-22 02:51:26 +00002822 RD->getNameAsCString(), MostDerivedClass->getNameAsCString()));
Mike Stump75ce5732009-10-31 20:06:59 +00002823
2824 VBPrimaries(PrimaryBase, PrimaryBaseWasVirtual|MorallyVirtual, Offset,
Mike Stumpcd6f9ed2009-11-06 23:27:42 +00002825 updateVBIndex, current_vbindex, PrimaryBaseWasVirtual,
Eli Friedman03aa2f12009-11-30 01:19:33 +00002826 BaseCurrentVBaseOffset, false);
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002827 }
2828
Mike Stump75ce5732009-10-31 20:06:59 +00002829 D1(printf(" doing vbase entries for %s most derived %s\n",
Mike Stumpd2808442010-01-22 02:51:26 +00002830 RD->getNameAsCString(), MostDerivedClass->getNameAsCString()));
Mike Stump75ce5732009-10-31 20:06:59 +00002831 GenerateVBaseOffsets(RD, Offset, updateVBIndex, current_vbindex);
2832
2833 if (RDisVirtualBase || bottom) {
2834 Primaries(RD, MorallyVirtual, Offset, updateVBIndex, current_vbindex,
Eli Friedman03aa2f12009-11-30 01:19:33 +00002835 CurrentVBaseOffset);
Mike Stump75ce5732009-10-31 20:06:59 +00002836 }
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002837 }
2838
Mike Stumpd538a6d2009-12-24 07:29:41 +00002839 void GenerateVtableForBase(const CXXRecordDecl *RD, int64_t Offset = 0,
2840 bool MorallyVirtual = false,
2841 bool ForVirtualBase = false,
Mike Stump9eb76d42010-01-22 06:45:05 +00002842 bool ForNPNVBases = false,
2843 bool WasPrimaryBase = true,
Mike Stumpd538a6d2009-12-24 07:29:41 +00002844 int CurrentVBaseOffset = 0,
2845 Path_t *Path = 0) {
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002846 if (!RD->isDynamicClass())
Mike Stumpd538a6d2009-12-24 07:29:41 +00002847 return;
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002848
Mike Stumpfa818082009-11-13 02:35:38 +00002849 // Construction vtable don't need parts that have no virtual bases and
2850 // aren't morally virtual.
Anders Carlssonbad80eb2009-12-04 18:36:22 +00002851 if ((LayoutClass != MostDerivedClass) &&
2852 RD->getNumVBases() == 0 && !MorallyVirtual)
Mike Stumpd538a6d2009-12-24 07:29:41 +00002853 return;
Mike Stumpfa818082009-11-13 02:35:38 +00002854
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002855 const ASTRecordLayout &Layout = CGM.getContext().getASTRecordLayout(RD);
2856 const CXXRecordDecl *PrimaryBase = Layout.getPrimaryBase();
2857 const bool PrimaryBaseWasVirtual = Layout.getPrimaryBaseWasVirtual();
2858
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002859 extra = 0;
Mike Stump75ce5732009-10-31 20:06:59 +00002860 D1(printf("building entries for base %s most derived %s\n",
Mike Stumpd2808442010-01-22 02:51:26 +00002861 RD->getNameAsCString(), MostDerivedClass->getNameAsCString()));
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002862
Mike Stump75ce5732009-10-31 20:06:59 +00002863 if (ForVirtualBase)
2864 extra = VCalls.size();
2865
Mike Stump9eb76d42010-01-22 06:45:05 +00002866 if (!ForNPNVBases || !WasPrimaryBase) {
2867 VBPrimaries(RD, MorallyVirtual, Offset, !ForVirtualBase, 0,
2868 ForVirtualBase, CurrentVBaseOffset, true);
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002869
Mike Stump9eb76d42010-01-22 06:45:05 +00002870 if (Path)
2871 OverrideMethods(Path, MorallyVirtual, Offset, CurrentVBaseOffset);
2872 }
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002873
Mike Stump9eb76d42010-01-22 06:45:05 +00002874 FinishGenerateVtable(RD, Layout, PrimaryBase, ForNPNVBases, WasPrimaryBase,
2875 PrimaryBaseWasVirtual, MorallyVirtual, Offset,
2876 ForVirtualBase, CurrentVBaseOffset, Path);
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002877 }
2878
2879 void GenerateVtableForVBases(const CXXRecordDecl *RD,
2880 int64_t Offset = 0,
Mike Stump37dbe962009-10-15 02:04:03 +00002881 Path_t *Path = 0) {
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002882 bool alloc = false;
2883 if (Path == 0) {
2884 alloc = true;
Mike Stump37dbe962009-10-15 02:04:03 +00002885 Path = new Path_t;
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002886 }
2887 // FIXME: We also need to override using all paths to a virtual base,
2888 // right now, we just process the first path
2889 Path->push_back(std::make_pair(RD, Offset));
2890 for (CXXRecordDecl::base_class_const_iterator i = RD->bases_begin(),
2891 e = RD->bases_end(); i != e; ++i) {
2892 const CXXRecordDecl *Base =
2893 cast<CXXRecordDecl>(i->getType()->getAs<RecordType>()->getDecl());
2894 if (i->isVirtual() && !IndirectPrimary.count(Base)) {
2895 // Mark it so we don't output it twice.
2896 IndirectPrimary.insert(Base);
2897 StartNewTable();
Mike Stumpb21c4ee2009-10-14 18:14:51 +00002898 VCall.clear();
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002899 int64_t BaseOffset = BLayout.getVBaseClassOffset(Base);
Mike Stumpcd6f9ed2009-11-06 23:27:42 +00002900 int64_t CurrentVBaseOffset = BaseOffset;
Mike Stump75ce5732009-10-31 20:06:59 +00002901 D1(printf("vtable %s virtual base %s\n",
Mike Stumpd2808442010-01-22 02:51:26 +00002902 MostDerivedClass->getNameAsCString(), Base->getNameAsCString()));
Mike Stump9eb76d42010-01-22 06:45:05 +00002903 GenerateVtableForBase(Base, BaseOffset, true, true, false,
2904 true, CurrentVBaseOffset, Path);
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002905 }
Mike Stump2cefe382009-11-12 20:47:57 +00002906 int64_t BaseOffset;
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002907 if (i->isVirtual())
2908 BaseOffset = BLayout.getVBaseClassOffset(Base);
Mike Stump2cefe382009-11-12 20:47:57 +00002909 else {
2910 const ASTRecordLayout &Layout = CGM.getContext().getASTRecordLayout(RD);
2911 BaseOffset = Offset + Layout.getBaseClassOffset(Base);
2912 }
2913
Mike Stump37dbe962009-10-15 02:04:03 +00002914 if (Base->getNumVBases()) {
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002915 GenerateVtableForVBases(Base, BaseOffset, Path);
Mike Stump37dbe962009-10-15 02:04:03 +00002916 }
Anders Carlsson2bb27f52009-10-11 22:13:54 +00002917 }
2918 Path->pop_back();
2919 if (alloc)
2920 delete Path;
2921 }
2922};
Anders Carlssonca1bf682009-12-03 01:54:02 +00002923} // end anonymous namespace
2924
Anders Carlsson5d40c6f2010-02-11 08:02:13 +00002925bool OldVtableBuilder::OverrideMethod(GlobalDecl GD, bool MorallyVirtual,
Eli Friedman81fb0d22009-12-04 08:40:51 +00002926 Index_t OverrideOffset, Index_t Offset,
2927 int64_t CurrentVBaseOffset) {
Anders Carlssonca1bf682009-12-03 01:54:02 +00002928 const CXXMethodDecl *MD = cast<CXXMethodDecl>(GD.getDecl());
2929
2930 const bool isPure = MD->isPure();
Anders Carlsson21bbc1e2009-12-05 17:04:47 +00002931
Anders Carlssonca1bf682009-12-03 01:54:02 +00002932 // FIXME: Should OverrideOffset's be Offset?
2933
Anders Carlsson21bbc1e2009-12-05 17:04:47 +00002934 for (CXXMethodDecl::method_iterator mi = MD->begin_overridden_methods(),
2935 e = MD->end_overridden_methods(); mi != e; ++mi) {
Anders Carlssonca1bf682009-12-03 01:54:02 +00002936 GlobalDecl OGD;
Mike Stumpa04ecfb2010-01-26 21:35:27 +00002937 GlobalDecl OGD2;
Anders Carlssonca1bf682009-12-03 01:54:02 +00002938
Anders Carlssonf3935b42009-12-04 05:51:56 +00002939 const CXXMethodDecl *OMD = *mi;
Anders Carlssonca1bf682009-12-03 01:54:02 +00002940 if (const CXXDestructorDecl *DD = dyn_cast<CXXDestructorDecl>(OMD))
2941 OGD = GlobalDecl(DD, GD.getDtorType());
2942 else
2943 OGD = OMD;
Eli Friedman3d2e9de2009-12-04 08:34:14 +00002944
Eli Friedman8174f2c2009-12-06 22:01:30 +00002945 // Check whether this is the method being overridden in this section of
2946 // the vtable.
Anders Carlsson7bb70762009-12-04 15:49:02 +00002947 uint64_t Index;
2948 if (!Methods.getIndex(OGD, Index))
Eli Friedman3d2e9de2009-12-04 08:34:14 +00002949 continue;
2950
Mike Stumpa04ecfb2010-01-26 21:35:27 +00002951 OGD2 = OGD;
2952
Eli Friedman8174f2c2009-12-06 22:01:30 +00002953 // Get the original method, which we should be computing thunks, etc,
2954 // against.
2955 OGD = Methods.getOrigMethod(Index);
2956 OMD = cast<CXXMethodDecl>(OGD.getDecl());
2957
Eli Friedman3d2e9de2009-12-04 08:34:14 +00002958 QualType ReturnType =
2959 MD->getType()->getAs<FunctionType>()->getResultType();
2960 QualType OverriddenReturnType =
2961 OMD->getType()->getAs<FunctionType>()->getResultType();
Anders Carlssonca1bf682009-12-03 01:54:02 +00002962
Eli Friedman3d2e9de2009-12-04 08:34:14 +00002963 // Check if we need a return type adjustment.
Anders Carlssoncce9ee82010-02-13 23:17:31 +00002964 if (!ComputeReturnAdjustmentBaseOffset(CGM.getContext(), MD,
2965 OMD).isEmpty()) {
Eli Friedman3d2e9de2009-12-04 08:34:14 +00002966 CanQualType &BaseReturnType = BaseReturnTypes[Index];
Anders Carlssonca1bf682009-12-03 01:54:02 +00002967
Eli Friedman3d2e9de2009-12-04 08:34:14 +00002968 // Insert the base return type.
2969 if (BaseReturnType.isNull())
2970 BaseReturnType =
2971 CGM.getContext().getCanonicalType(OverriddenReturnType);
2972 }
Anders Carlssona93e9802009-12-04 03:52:52 +00002973
Eli Friedman3d2e9de2009-12-04 08:34:14 +00002974 Methods.OverrideMethod(OGD, GD);
2975
Anders Carlsson72281172010-01-26 17:36:47 +00002976 GlobalDecl UGD = getUnique(GD);
2977 const CXXMethodDecl *UMD = cast<CXXMethodDecl>(UGD.getDecl());
2978 assert(UGD.getDecl() && "unique overrider not found");
2979 assert(UGD == getUnique(OGD) && "unique overrider not unique");
Mike Stump90181eb2010-01-26 00:05:04 +00002980
Eli Friedman3d2e9de2009-12-04 08:34:14 +00002981 ThisAdjustments.erase(Index);
Mike Stump90181eb2010-01-26 00:05:04 +00002982 if (MorallyVirtual || VCall.count(UMD)) {
Mike Stumpa04ecfb2010-01-26 21:35:27 +00002983
Mike Stump90181eb2010-01-26 00:05:04 +00002984 Index_t &idx = VCall[UMD];
Eli Friedman3d2e9de2009-12-04 08:34:14 +00002985 if (idx == 0) {
Mike Stumpa04ecfb2010-01-26 21:35:27 +00002986 VCallOffset[GD] = VCallOffset[OGD];
2987 // NonVirtualOffset[UMD] = CurrentVBaseOffset/8 - OverrideOffset/8;
2988 NonVirtualOffset[UMD] = VCallOffset[OGD];
Mike Stump77537b12010-01-26 03:42:22 +00002989 VCallOffsetForVCall[UMD] = OverrideOffset/8;
Eli Friedman3d2e9de2009-12-04 08:34:14 +00002990 idx = VCalls.size()+1;
Mike Stump77537b12010-01-26 03:42:22 +00002991 VCalls.push_back(OverrideOffset/8 - CurrentVBaseOffset/8);
Eli Friedman3d2e9de2009-12-04 08:34:14 +00002992 D1(printf(" vcall for %s at %d with delta %d most derived %s\n",
2993 MD->getNameAsString().c_str(), (int)-idx-3,
Mike Stumpd2808442010-01-22 02:51:26 +00002994 (int)VCalls[idx-1], MostDerivedClass->getNameAsCString()));
Eli Friedman3d2e9de2009-12-04 08:34:14 +00002995 } else {
Mike Stumpa04ecfb2010-01-26 21:35:27 +00002996 VCallOffset[GD] = NonVirtualOffset[UMD];
Anders Carlsson72281172010-01-26 17:36:47 +00002997 VCalls[idx-1] = -VCallOffsetForVCall[UGD] + OverrideOffset/8;
Eli Friedman3d2e9de2009-12-04 08:34:14 +00002998 D1(printf(" vcall patch for %s at %d with delta %d most derived %s\n",
2999 MD->getNameAsString().c_str(), (int)-idx-3,
Mike Stumpd2808442010-01-22 02:51:26 +00003000 (int)VCalls[idx-1], MostDerivedClass->getNameAsCString()));
Eli Friedman3d2e9de2009-12-04 08:34:14 +00003001 }
Mike Stumpa04ecfb2010-01-26 21:35:27 +00003002 int64_t NonVirtualAdjustment = -VCallOffset[OGD];
Mike Stumpded0a402010-01-26 22:44:01 +00003003 QualType DerivedType = MD->getThisType(CGM.getContext());
3004 QualType BaseType = cast<const CXXMethodDecl>(OGD.getDecl())->getThisType(CGM.getContext());
3005 int64_t NonVirtualAdjustment2 = -(getNVOffset(BaseType, DerivedType)/8);
3006 if (NonVirtualAdjustment2 != NonVirtualAdjustment) {
3007 NonVirtualAdjustment = NonVirtualAdjustment2;
3008 }
Eli Friedman3d2e9de2009-12-04 08:34:14 +00003009 int64_t VirtualAdjustment =
3010 -((idx + extra + 2) * LLVMPointerWidth / 8);
Anders Carlsson657f1392009-12-03 02:32:59 +00003011
Eli Friedman3d2e9de2009-12-04 08:34:14 +00003012 // Optimize out virtual adjustments of 0.
3013 if (VCalls[idx-1] == 0)
3014 VirtualAdjustment = 0;
Anders Carlsson657f1392009-12-03 02:32:59 +00003015
Eli Friedman3d2e9de2009-12-04 08:34:14 +00003016 ThunkAdjustment ThisAdjustment(NonVirtualAdjustment,
3017 VirtualAdjustment);
Anders Carlsson2ca285f2009-12-03 02:22:59 +00003018
Eli Friedman8174f2c2009-12-06 22:01:30 +00003019 if (!isPure && !ThisAdjustment.isEmpty()) {
Eli Friedman3d2e9de2009-12-04 08:34:14 +00003020 ThisAdjustments[Index] = ThisAdjustment;
Eli Friedman31bc3ad2009-12-07 23:56:34 +00003021 SavedAdjustments.push_back(
3022 std::make_pair(GD, std::make_pair(OGD, ThisAdjustment)));
Eli Friedman8174f2c2009-12-06 22:01:30 +00003023 }
Anders Carlssonca1bf682009-12-03 01:54:02 +00003024 return true;
3025 }
Eli Friedman3d2e9de2009-12-04 08:34:14 +00003026
Mike Stumpa04ecfb2010-01-26 21:35:27 +00003027 VCallOffset[GD] = VCallOffset[OGD2] - OverrideOffset/8;
Eli Friedman3d2e9de2009-12-04 08:34:14 +00003028
Mike Stumpa04ecfb2010-01-26 21:35:27 +00003029 int64_t NonVirtualAdjustment = -VCallOffset[GD];
3030 QualType DerivedType = MD->getThisType(CGM.getContext());
3031 QualType BaseType = cast<const CXXMethodDecl>(OGD.getDecl())->getThisType(CGM.getContext());
3032 int64_t NonVirtualAdjustment2 = -(getNVOffset(BaseType, DerivedType)/8);
3033 if (NonVirtualAdjustment2 != NonVirtualAdjustment) {
3034 NonVirtualAdjustment = NonVirtualAdjustment2;
3035 }
3036
Eli Friedman3d2e9de2009-12-04 08:34:14 +00003037 if (NonVirtualAdjustment) {
3038 ThunkAdjustment ThisAdjustment(NonVirtualAdjustment, 0);
3039
Eli Friedmanf2eda5e2009-12-06 22:33:51 +00003040 if (!isPure) {
Eli Friedman3d2e9de2009-12-04 08:34:14 +00003041 ThisAdjustments[Index] = ThisAdjustment;
Eli Friedman31bc3ad2009-12-07 23:56:34 +00003042 SavedAdjustments.push_back(
3043 std::make_pair(GD, std::make_pair(OGD, ThisAdjustment)));
Eli Friedmanf2eda5e2009-12-06 22:33:51 +00003044 }
Eli Friedman3d2e9de2009-12-04 08:34:14 +00003045 }
3046 return true;
Anders Carlssonca1bf682009-12-03 01:54:02 +00003047 }
3048
3049 return false;
Anders Carlssond59885022009-11-27 22:21:51 +00003050}
3051
Anders Carlsson5d40c6f2010-02-11 08:02:13 +00003052void OldVtableBuilder::AppendMethodsToVtable() {
Eli Friedman6c08ce72009-12-05 01:05:03 +00003053 if (!BuildVtable) {
Anders Carlssonfe5f7d92009-12-06 01:09:21 +00003054 VtableComponents.insert(VtableComponents.end(), Methods.size(),
3055 (llvm::Constant *)0);
Eli Friedman6c08ce72009-12-05 01:05:03 +00003056 ThisAdjustments.clear();
3057 BaseReturnTypes.clear();
3058 Methods.clear();
3059 return;
3060 }
3061
Anders Carlsson472404f2009-12-04 16:19:30 +00003062 // Reserve room in the vtable for our new methods.
Anders Carlssonfe5f7d92009-12-06 01:09:21 +00003063 VtableComponents.reserve(VtableComponents.size() + Methods.size());
Anders Carlssonb07567c2009-12-04 03:07:26 +00003064
Anders Carlsson86809cd2009-12-04 02:43:50 +00003065 for (unsigned i = 0, e = Methods.size(); i != e; ++i) {
3066 GlobalDecl GD = Methods[i];
Anders Carlsson5b3ea9b2009-12-04 02:52:22 +00003067 const CXXMethodDecl *MD = cast<CXXMethodDecl>(GD.getDecl());
3068
3069 // Get the 'this' pointer adjustment.
Anders Carlsson86809cd2009-12-04 02:43:50 +00003070 ThunkAdjustment ThisAdjustment = ThisAdjustments.lookup(i);
Anders Carlsson5b3ea9b2009-12-04 02:52:22 +00003071
3072 // Construct the return type adjustment.
3073 ThunkAdjustment ReturnAdjustment;
3074
3075 QualType BaseReturnType = BaseReturnTypes.lookup(i);
3076 if (!BaseReturnType.isNull() && !MD->isPure()) {
3077 QualType DerivedType =
3078 MD->getType()->getAs<FunctionType>()->getResultType();
3079
3080 int64_t NonVirtualAdjustment =
3081 getNVOffset(BaseReturnType, DerivedType) / 8;
3082
3083 int64_t VirtualAdjustment =
3084 getVbaseOffset(BaseReturnType, DerivedType);
3085
3086 ReturnAdjustment = ThunkAdjustment(NonVirtualAdjustment,
3087 VirtualAdjustment);
3088 }
3089
Anders Carlsson50f14742009-12-04 03:06:03 +00003090 llvm::Constant *Method = 0;
Anders Carlsson5b3ea9b2009-12-04 02:52:22 +00003091 if (!ReturnAdjustment.isEmpty()) {
3092 // Build a covariant thunk.
3093 CovariantThunkAdjustment Adjustment(ThisAdjustment, ReturnAdjustment);
Eli Friedman8174f2c2009-12-06 22:01:30 +00003094 Method = wrap(CGM.GetAddrOfCovariantThunk(GD, Adjustment));
Anders Carlsson5b3ea9b2009-12-04 02:52:22 +00003095 } else if (!ThisAdjustment.isEmpty()) {
3096 // Build a "regular" thunk.
Eli Friedman8174f2c2009-12-06 22:01:30 +00003097 Method = wrap(CGM.GetAddrOfThunk(GD, ThisAdjustment));
Anders Carlssonddf42c82009-12-04 02:56:03 +00003098 } else if (MD->isPure()) {
3099 // We have a pure virtual method.
Anders Carlsson50f14742009-12-04 03:06:03 +00003100 Method = getPureVirtualFn();
3101 } else {
3102 // We have a good old regular method.
3103 Method = WrapAddrOf(GD);
Anders Carlsson5b3ea9b2009-12-04 02:52:22 +00003104 }
Anders Carlsson50f14742009-12-04 03:06:03 +00003105
3106 // Add the method to the vtable.
Anders Carlssonfe5f7d92009-12-06 01:09:21 +00003107 VtableComponents.push_back(Method);
Anders Carlsson86809cd2009-12-04 02:43:50 +00003108 }
3109
Anders Carlsson50f14742009-12-04 03:06:03 +00003110
Anders Carlsson86809cd2009-12-04 02:43:50 +00003111 ThisAdjustments.clear();
Anders Carlsson5b3ea9b2009-12-04 02:52:22 +00003112 BaseReturnTypes.clear();
Anders Carlsson86809cd2009-12-04 02:43:50 +00003113
Anders Carlsson495634e2009-12-04 02:39:04 +00003114 Methods.clear();
Anders Carlsson495634e2009-12-04 02:39:04 +00003115}
3116
Anders Carlssonf942ee02009-11-27 20:47:55 +00003117void CGVtableInfo::ComputeMethodVtableIndices(const CXXRecordDecl *RD) {
3118
3119 // Itanium C++ ABI 2.5.2:
Anders Carlsson259688c2010-02-02 03:37:46 +00003120 // The order of the virtual function pointers in a virtual table is the
3121 // order of declaration of the corresponding member functions in the class.
Anders Carlssonf942ee02009-11-27 20:47:55 +00003122 //
Anders Carlsson259688c2010-02-02 03:37:46 +00003123 // There is an entry for any virtual function declared in a class,
3124 // whether it is a new function or overrides a base class function,
3125 // unless it overrides a function from the primary base, and conversion
3126 // between their return types does not require an adjustment.
Anders Carlssonf942ee02009-11-27 20:47:55 +00003127
3128 int64_t CurrentIndex = 0;
3129
3130 const ASTRecordLayout &Layout = CGM.getContext().getASTRecordLayout(RD);
3131 const CXXRecordDecl *PrimaryBase = Layout.getPrimaryBase();
3132
3133 if (PrimaryBase) {
Anders Carlssonc920fa22009-11-30 19:43:26 +00003134 assert(PrimaryBase->isDefinition() &&
3135 "Should have the definition decl of the primary base!");
Anders Carlssonf942ee02009-11-27 20:47:55 +00003136
3137 // Since the record decl shares its vtable pointer with the primary base
3138 // we need to start counting at the end of the primary base's vtable.
3139 CurrentIndex = getNumVirtualFunctionPointers(PrimaryBase);
3140 }
Eli Friedman21517252009-12-15 03:31:17 +00003141
3142 // Collect all the primary bases, so we can check whether methods override
3143 // a method from the base.
Anders Carlssond46ed892010-02-27 16:18:19 +00003144 VtableBuilder::PrimaryBasesSetVectorTy PrimaryBases;
Eli Friedman21517252009-12-15 03:31:17 +00003145 for (ASTRecordLayout::primary_base_info_iterator
3146 I = Layout.primary_base_begin(), E = Layout.primary_base_end();
3147 I != E; ++I)
3148 PrimaryBases.insert((*I).getBase());
3149
Anders Carlssonf942ee02009-11-27 20:47:55 +00003150 const CXXDestructorDecl *ImplicitVirtualDtor = 0;
3151
3152 for (CXXRecordDecl::method_iterator i = RD->method_begin(),
3153 e = RD->method_end(); i != e; ++i) {
3154 const CXXMethodDecl *MD = *i;
3155
3156 // We only want virtual methods.
3157 if (!MD->isVirtual())
3158 continue;
3159
Anders Carlssonf942ee02009-11-27 20:47:55 +00003160 // Check if this method overrides a method in the primary base.
Anders Carlsson65b49782010-02-12 05:25:12 +00003161 if (const CXXMethodDecl *OverriddenMD =
Anders Carlssond2025412010-02-27 06:38:03 +00003162 OverridesMethodInBases(MD, PrimaryBases)) {
Anders Carlsson65b49782010-02-12 05:25:12 +00003163 // Check if converting from the return type of the method to the
3164 // return type of the overridden method requires conversion.
Anders Carlssoncce9ee82010-02-13 23:17:31 +00003165 if (ComputeReturnAdjustmentBaseOffset(CGM.getContext(), MD,
3166 OverriddenMD).isEmpty()) {
Anders Carlsson65b49782010-02-12 05:25:12 +00003167 // This index is shared between the index in the vtable of the primary
3168 // base class.
3169 if (const CXXDestructorDecl *DD = dyn_cast<CXXDestructorDecl>(MD)) {
3170 const CXXDestructorDecl *OverriddenDD =
3171 cast<CXXDestructorDecl>(OverriddenMD);
Anders Carlssonf942ee02009-11-27 20:47:55 +00003172
Anders Carlsson65b49782010-02-12 05:25:12 +00003173 // Add both the complete and deleting entries.
3174 MethodVtableIndices[GlobalDecl(DD, Dtor_Complete)] =
3175 getMethodVtableIndex(GlobalDecl(OverriddenDD, Dtor_Complete));
3176 MethodVtableIndices[GlobalDecl(DD, Dtor_Deleting)] =
3177 getMethodVtableIndex(GlobalDecl(OverriddenDD, Dtor_Deleting));
3178 } else {
3179 MethodVtableIndices[MD] = getMethodVtableIndex(OverriddenMD);
3180 }
3181
3182 // We don't need to add an entry for this method.
Anders Carlsson07604812010-02-12 18:14:46 +00003183 continue;
Anders Carlssonf942ee02009-11-27 20:47:55 +00003184 }
3185 }
3186
Anders Carlssonf942ee02009-11-27 20:47:55 +00003187 if (const CXXDestructorDecl *DD = dyn_cast<CXXDestructorDecl>(MD)) {
3188 if (MD->isImplicit()) {
3189 assert(!ImplicitVirtualDtor &&
3190 "Did already see an implicit virtual dtor!");
3191 ImplicitVirtualDtor = DD;
3192 continue;
3193 }
3194
3195 // Add the complete dtor.
3196 MethodVtableIndices[GlobalDecl(DD, Dtor_Complete)] = CurrentIndex++;
3197
3198 // Add the deleting dtor.
3199 MethodVtableIndices[GlobalDecl(DD, Dtor_Deleting)] = CurrentIndex++;
3200 } else {
3201 // Add the entry.
3202 MethodVtableIndices[MD] = CurrentIndex++;
3203 }
3204 }
3205
3206 if (ImplicitVirtualDtor) {
3207 // Itanium C++ ABI 2.5.2:
Anders Carlssondc2dba32010-02-16 04:49:44 +00003208 // If a class has an implicitly-defined virtual destructor,
3209 // its entries come after the declared virtual function pointers.
Anders Carlssonf942ee02009-11-27 20:47:55 +00003210
3211 // Add the complete dtor.
3212 MethodVtableIndices[GlobalDecl(ImplicitVirtualDtor, Dtor_Complete)] =
3213 CurrentIndex++;
3214
3215 // Add the deleting dtor.
3216 MethodVtableIndices[GlobalDecl(ImplicitVirtualDtor, Dtor_Deleting)] =
3217 CurrentIndex++;
3218 }
3219
3220 NumVirtualFunctionPointers[RD] = CurrentIndex;
3221}
3222
3223uint64_t CGVtableInfo::getNumVirtualFunctionPointers(const CXXRecordDecl *RD) {
3224 llvm::DenseMap<const CXXRecordDecl *, uint64_t>::iterator I =
3225 NumVirtualFunctionPointers.find(RD);
3226 if (I != NumVirtualFunctionPointers.end())
3227 return I->second;
3228
3229 ComputeMethodVtableIndices(RD);
3230
3231 I = NumVirtualFunctionPointers.find(RD);
3232 assert(I != NumVirtualFunctionPointers.end() && "Did not find entry!");
3233 return I->second;
3234}
3235
3236uint64_t CGVtableInfo::getMethodVtableIndex(GlobalDecl GD) {
Anders Carlssonfb4dda42009-11-13 17:08:56 +00003237 MethodVtableIndicesTy::iterator I = MethodVtableIndices.find(GD);
Anders Carlsson2bb27f52009-10-11 22:13:54 +00003238 if (I != MethodVtableIndices.end())
3239 return I->second;
3240
Anders Carlssonfb4dda42009-11-13 17:08:56 +00003241 const CXXRecordDecl *RD = cast<CXXMethodDecl>(GD.getDecl())->getParent();
Anders Carlssonf942ee02009-11-27 20:47:55 +00003242
3243 ComputeMethodVtableIndices(RD);
3244
Anders Carlssonfb4dda42009-11-13 17:08:56 +00003245 I = MethodVtableIndices.find(GD);
Anders Carlsson2bb27f52009-10-11 22:13:54 +00003246 assert(I != MethodVtableIndices.end() && "Did not find index!");
3247 return I->second;
3248}
3249
Eli Friedman31bc3ad2009-12-07 23:56:34 +00003250CGVtableInfo::AdjustmentVectorTy*
3251CGVtableInfo::getAdjustments(GlobalDecl GD) {
3252 SavedAdjustmentsTy::iterator I = SavedAdjustments.find(GD);
3253 if (I != SavedAdjustments.end())
3254 return &I->second;
Eli Friedman8174f2c2009-12-06 22:01:30 +00003255
3256 const CXXRecordDecl *RD = cast<CXXRecordDecl>(GD.getDecl()->getDeclContext());
Eli Friedman31bc3ad2009-12-07 23:56:34 +00003257 if (!SavedAdjustmentRecords.insert(RD).second)
3258 return 0;
Eli Friedman8174f2c2009-12-06 22:01:30 +00003259
Anders Carlsson5f9a8812010-01-14 02:29:07 +00003260 AddressPointsMapTy AddressPoints;
Anders Carlsson5d40c6f2010-02-11 08:02:13 +00003261 OldVtableBuilder b(RD, RD, 0, CGM, false, AddressPoints);
Eli Friedman8174f2c2009-12-06 22:01:30 +00003262 D1(printf("vtable %s\n", RD->getNameAsCString()));
3263 b.GenerateVtableForBase(RD);
3264 b.GenerateVtableForVBases(RD);
Eli Friedman8174f2c2009-12-06 22:01:30 +00003265
Anders Carlsson5d40c6f2010-02-11 08:02:13 +00003266 for (OldVtableBuilder::SavedAdjustmentsVectorTy::iterator
Eli Friedman31bc3ad2009-12-07 23:56:34 +00003267 i = b.getSavedAdjustments().begin(),
3268 e = b.getSavedAdjustments().end(); i != e; i++)
3269 SavedAdjustments[i->first].push_back(i->second);
Eli Friedman8174f2c2009-12-06 22:01:30 +00003270
Eli Friedman31bc3ad2009-12-07 23:56:34 +00003271 I = SavedAdjustments.find(GD);
3272 if (I != SavedAdjustments.end())
3273 return &I->second;
3274
3275 return 0;
Eli Friedman8174f2c2009-12-06 22:01:30 +00003276}
3277
Anders Carlsson2bb27f52009-10-11 22:13:54 +00003278int64_t CGVtableInfo::getVirtualBaseOffsetIndex(const CXXRecordDecl *RD,
3279 const CXXRecordDecl *VBase) {
3280 ClassPairTy ClassPair(RD, VBase);
3281
3282 VirtualBaseClassIndiciesTy::iterator I =
3283 VirtualBaseClassIndicies.find(ClassPair);
3284 if (I != VirtualBaseClassIndicies.end())
3285 return I->second;
3286
Anders Carlsson2bb27f52009-10-11 22:13:54 +00003287 // FIXME: This seems expensive. Can we do a partial job to get
3288 // just this data.
Anders Carlsson5f9a8812010-01-14 02:29:07 +00003289 AddressPointsMapTy AddressPoints;
Anders Carlsson5d40c6f2010-02-11 08:02:13 +00003290 OldVtableBuilder b(RD, RD, 0, CGM, false, AddressPoints);
Mike Stump75ce5732009-10-31 20:06:59 +00003291 D1(printf("vtable %s\n", RD->getNameAsCString()));
Anders Carlsson2bb27f52009-10-11 22:13:54 +00003292 b.GenerateVtableForBase(RD);
3293 b.GenerateVtableForVBases(RD);
3294
3295 for (llvm::DenseMap<const CXXRecordDecl *, uint64_t>::iterator I =
3296 b.getVBIndex().begin(), E = b.getVBIndex().end(); I != E; ++I) {
3297 // Insert all types.
3298 ClassPairTy ClassPair(RD, I->first);
3299
3300 VirtualBaseClassIndicies.insert(std::make_pair(ClassPair, I->second));
3301 }
3302
3303 I = VirtualBaseClassIndicies.find(ClassPair);
Anders Carlsson6a6cbfc2010-02-13 20:11:51 +00003304 // FIXME: The assertion below assertion currently fails with the old vtable
3305 /// layout code if there is a non-virtual thunk adjustment in a vtable.
3306 // Once the new layout is in place, this return should be removed.
3307 if (I == VirtualBaseClassIndicies.end())
3308 return 0;
3309
Anders Carlsson2bb27f52009-10-11 22:13:54 +00003310 assert(I != VirtualBaseClassIndicies.end() && "Did not find index!");
3311
3312 return I->second;
3313}
3314
Anders Carlssonc8e39ec2009-12-05 21:03:56 +00003315uint64_t CGVtableInfo::getVtableAddressPoint(const CXXRecordDecl *RD) {
3316 uint64_t AddressPoint =
Anders Carlsson93a18842010-01-02 18:02:32 +00003317 (*(*(CGM.getVtableInfo().AddressPoints[RD]))[RD])[std::make_pair(RD, 0)];
Anders Carlssonc8e39ec2009-12-05 21:03:56 +00003318
3319 return AddressPoint;
3320}
3321
Anders Carlsson7e28c5f2009-12-06 00:01:05 +00003322llvm::GlobalVariable *
Anders Carlsson0911ae82009-12-06 00:23:49 +00003323CGVtableInfo::GenerateVtable(llvm::GlobalVariable::LinkageTypes Linkage,
Anders Carlsson232324c2009-12-06 00:53:22 +00003324 bool GenerateDefinition,
Anders Carlsson0911ae82009-12-06 00:23:49 +00003325 const CXXRecordDecl *LayoutClass,
Anders Carlsson5f9a8812010-01-14 02:29:07 +00003326 const CXXRecordDecl *RD, uint64_t Offset,
Anders Carlsson62c6c722010-02-28 00:36:23 +00003327 bool IsVirtual,
Anders Carlsson5f9a8812010-01-14 02:29:07 +00003328 AddressPointsMapTy& AddressPoints) {
Anders Carlsson93913752010-02-27 20:39:05 +00003329 if (GenerateDefinition) {
3330 if (LayoutClass == RD) {
Anders Carlsson62c6c722010-02-28 00:36:23 +00003331 assert(!IsVirtual &&
3332 "Can't only have a virtual base in construction vtables!");
3333 VtableBuilder Builder(*this, RD, Offset,
3334 /*MostDerivedClassIsVirtual=*/false,
3335 LayoutClass);
Anders Carlsson603d7d12010-02-27 20:02:53 +00003336
Anders Carlsson93913752010-02-27 20:39:05 +00003337 if (CGM.getLangOptions().DumpVtableLayouts)
3338 Builder.dumpLayout(llvm::errs());
3339 } else if (CGM.getLangOptions().DumpVtableLayouts) {
3340 // We only build construction vtables when dumping vtable layouts for now.
Anders Carlsson62c6c722010-02-28 00:36:23 +00003341 VtableBuilder Builder(*this, RD, Offset,
3342 /*MostDerivedClassIsVirtual=*/IsVirtual,
3343 LayoutClass);
Anders Carlsson603d7d12010-02-27 20:02:53 +00003344 Builder.dumpLayout(llvm::errs());
Anders Carlsson93913752010-02-27 20:39:05 +00003345 }
Anders Carlssoneee53d92010-02-13 02:02:03 +00003346 }
3347
Anders Carlsson2bb27f52009-10-11 22:13:54 +00003348 llvm::SmallString<256> OutName;
Mike Stump2cefe382009-11-12 20:47:57 +00003349 if (LayoutClass != RD)
Anders Carlsson7e28c5f2009-12-06 00:01:05 +00003350 CGM.getMangleContext().mangleCXXCtorVtable(LayoutClass, Offset / 8,
3351 RD, OutName);
Mike Stumpeac45592009-11-11 20:26:26 +00003352 else
Anders Carlsson7e28c5f2009-12-06 00:01:05 +00003353 CGM.getMangleContext().mangleCXXVtable(RD, OutName);
Daniel Dunbare128dd12009-11-21 09:06:22 +00003354 llvm::StringRef Name = OutName.str();
Benjamin Kramerbb0a07b2009-10-11 22:57:54 +00003355
Anders Carlsson7e28c5f2009-12-06 00:01:05 +00003356 llvm::GlobalVariable *GV = CGM.getModule().getGlobalVariable(Name);
Anders Carlsson93a18842010-01-02 18:02:32 +00003357 if (GV == 0 || CGM.getVtableInfo().AddressPoints[LayoutClass] == 0 ||
3358 GV->isDeclaration()) {
Anders Carlsson5d40c6f2010-02-11 08:02:13 +00003359 OldVtableBuilder b(RD, LayoutClass, Offset, CGM, GenerateDefinition,
3360 AddressPoints);
Eli Friedman6c08ce72009-12-05 01:05:03 +00003361
3362 D1(printf("vtable %s\n", RD->getNameAsCString()));
3363 // First comes the vtables for all the non-virtual bases...
Mike Stumpd538a6d2009-12-24 07:29:41 +00003364 b.GenerateVtableForBase(RD, Offset);
Eli Friedman6c08ce72009-12-05 01:05:03 +00003365
3366 // then the vtables for all the virtual bases.
3367 b.GenerateVtableForVBases(RD, Offset);
3368
Anders Carlsson58b271d2009-12-05 22:19:10 +00003369 llvm::Constant *Init = 0;
Anders Carlsson7e28c5f2009-12-06 00:01:05 +00003370 const llvm::Type *Int8PtrTy = llvm::Type::getInt8PtrTy(CGM.getLLVMContext());
Anders Carlsson58b271d2009-12-05 22:19:10 +00003371 llvm::ArrayType *ArrayType =
Anders Carlssonfe5f7d92009-12-06 01:09:21 +00003372 llvm::ArrayType::get(Int8PtrTy, b.getVtableComponents().size());
Anders Carlssona95d4c52009-12-05 21:09:05 +00003373
Anders Carlsson232324c2009-12-06 00:53:22 +00003374 if (GenerateDefinition)
Anders Carlssonfe5f7d92009-12-06 01:09:21 +00003375 Init = llvm::ConstantArray::get(ArrayType, &b.getVtableComponents()[0],
3376 b.getVtableComponents().size());
Anders Carlsson232324c2009-12-06 00:53:22 +00003377
Mike Stumpaa51ad62009-11-19 04:04:36 +00003378 llvm::GlobalVariable *OGV = GV;
Anders Carlsson232324c2009-12-06 00:53:22 +00003379
3380 GV = new llvm::GlobalVariable(CGM.getModule(), ArrayType,
3381 /*isConstant=*/true, Linkage, Init, Name);
Anders Carlssonfe5f7d92009-12-06 01:09:21 +00003382 CGM.setGlobalVisibility(GV, RD);
3383
Mike Stumpaa51ad62009-11-19 04:04:36 +00003384 if (OGV) {
3385 GV->takeName(OGV);
Anders Carlsson58b271d2009-12-05 22:19:10 +00003386 llvm::Constant *NewPtr =
3387 llvm::ConstantExpr::getBitCast(GV, OGV->getType());
Mike Stumpaa51ad62009-11-19 04:04:36 +00003388 OGV->replaceAllUsesWith(NewPtr);
3389 OGV->eraseFromParent();
3390 }
Mike Stumpaa51ad62009-11-19 04:04:36 +00003391 }
Anders Carlssonb3f54b72009-12-05 21:28:12 +00003392
3393 return GV;
Anders Carlsson2bb27f52009-10-11 22:13:54 +00003394}
Mike Stump9f23a142009-11-10 02:30:51 +00003395
Anders Carlsson232324c2009-12-06 00:53:22 +00003396void CGVtableInfo::GenerateClassData(llvm::GlobalVariable::LinkageTypes Linkage,
3397 const CXXRecordDecl *RD) {
Anders Carlssone1b3e622009-12-07 07:59:52 +00003398 llvm::GlobalVariable *&Vtable = Vtables[RD];
3399 if (Vtable) {
3400 assert(Vtable->getInitializer() && "Vtable doesn't have a definition!");
3401 return;
3402 }
3403
Anders Carlsson5f9a8812010-01-14 02:29:07 +00003404 AddressPointsMapTy AddressPoints;
3405 Vtable = GenerateVtable(Linkage, /*GenerateDefinition=*/true, RD, RD, 0,
Anders Carlsson62c6c722010-02-28 00:36:23 +00003406 /*IsVirtual=*/false,
Anders Carlsson5f9a8812010-01-14 02:29:07 +00003407 AddressPoints);
Anders Carlssone36a6b32010-01-02 01:01:18 +00003408 GenerateVTT(Linkage, /*GenerateDefinition=*/true, RD);
Mike Stump1a139f82009-11-19 01:08:19 +00003409}
3410
Anders Carlsson7e28c5f2009-12-06 00:01:05 +00003411llvm::GlobalVariable *CGVtableInfo::getVtable(const CXXRecordDecl *RD) {
Anders Carlsson232324c2009-12-06 00:53:22 +00003412 llvm::GlobalVariable *Vtable = Vtables.lookup(RD);
Anders Carlsson7e28c5f2009-12-06 00:01:05 +00003413
Anders Carlsson5f9a8812010-01-14 02:29:07 +00003414 if (!Vtable) {
3415 AddressPointsMapTy AddressPoints;
Anders Carlsson232324c2009-12-06 00:53:22 +00003416 Vtable = GenerateVtable(llvm::GlobalValue::ExternalLinkage,
Anders Carlsson5f9a8812010-01-14 02:29:07 +00003417 /*GenerateDefinition=*/false, RD, RD, 0,
Anders Carlsson62c6c722010-02-28 00:36:23 +00003418 /*IsVirtual=*/false, AddressPoints);
Anders Carlsson5f9a8812010-01-14 02:29:07 +00003419 }
Mike Stumpaa51ad62009-11-19 04:04:36 +00003420
Anders Carlsson4ed44eb2009-12-05 22:42:54 +00003421 return Vtable;
Mike Stumpd846d082009-11-10 07:44:33 +00003422}
Mike Stumpeac45592009-11-11 20:26:26 +00003423
Anders Carlssonb1d3f7c2009-11-30 23:41:22 +00003424void CGVtableInfo::MaybeEmitVtable(GlobalDecl GD) {
3425 const CXXMethodDecl *MD = cast<CXXMethodDecl>(GD.getDecl());
3426 const CXXRecordDecl *RD = MD->getParent();
3427
Anders Carlsson4ed44eb2009-12-05 22:42:54 +00003428 // If the class doesn't have a vtable we don't need to emit one.
3429 if (!RD->isDynamicClass())
3430 return;
3431
Anders Carlssonb1d3f7c2009-11-30 23:41:22 +00003432 // Get the key function.
Anders Carlsson5ebf8b42009-12-07 04:35:11 +00003433 const CXXMethodDecl *KeyFunction = CGM.getContext().getKeyFunction(RD);
Anders Carlssonb1d3f7c2009-11-30 23:41:22 +00003434
Anders Carlsson4ed44eb2009-12-05 22:42:54 +00003435 if (KeyFunction) {
3436 // We don't have the right key function.
3437 if (KeyFunction->getCanonicalDecl() != MD->getCanonicalDecl())
3438 return;
Anders Carlssonb1d3f7c2009-11-30 23:41:22 +00003439 }
3440
Anders Carlssonb1d3f7c2009-11-30 23:41:22 +00003441 // Emit the data.
Douglas Gregorccecc1b2010-01-06 20:27:16 +00003442 GenerateClassData(CGM.getVtableLinkage(RD), RD);
Eli Friedman8174f2c2009-12-06 22:01:30 +00003443
3444 for (CXXRecordDecl::method_iterator i = RD->method_begin(),
3445 e = RD->method_end(); i != e; ++i) {
Eli Friedman31bc3ad2009-12-07 23:56:34 +00003446 if ((*i)->isVirtual() && ((*i)->hasInlineBody() || (*i)->isImplicit())) {
Eli Friedman8174f2c2009-12-06 22:01:30 +00003447 if (const CXXDestructorDecl *DD = dyn_cast<CXXDestructorDecl>(*i)) {
3448 CGM.BuildThunksForVirtual(GlobalDecl(DD, Dtor_Complete));
3449 CGM.BuildThunksForVirtual(GlobalDecl(DD, Dtor_Deleting));
3450 } else {
3451 CGM.BuildThunksForVirtual(GlobalDecl(*i));
3452 }
3453 }
3454 }
Anders Carlssonb1d3f7c2009-11-30 23:41:22 +00003455}
3456