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Akira Hatanaka7275da02018-02-28 07:15:55 +00001//===--- CGNonTrivialStruct.cpp - Emit Special Functions for C Structs ----===//
2//
Chandler Carruth2946cd72019-01-19 08:50:56 +00003// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4// See https://llvm.org/LICENSE.txt for license information.
5// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
Akira Hatanaka7275da02018-02-28 07:15:55 +00006//
7//===----------------------------------------------------------------------===//
8//
9// This file defines functions to generate various special functions for C
10// structs.
11//
12//===----------------------------------------------------------------------===//
13
14#include "CodeGenFunction.h"
15#include "CodeGenModule.h"
Akira Hatanaka52a84e72018-04-17 19:05:17 +000016#include "clang/AST/NonTrivialTypeVisitor.h"
Akira Hatanaka7275da02018-02-28 07:15:55 +000017#include "llvm/Support/ScopedPrinter.h"
18#include <array>
19
20using namespace clang;
21using namespace CodeGen;
22
23// Return the size of a field in number of bits.
Akira Hatanaka7c552652018-04-16 20:23:52 +000024static uint64_t getFieldSize(const FieldDecl *FD, QualType FT,
25 ASTContext &Ctx) {
26 if (FD && FD->isBitField())
Akira Hatanaka7275da02018-02-28 07:15:55 +000027 return FD->getBitWidthValue(Ctx);
Akira Hatanaka7c552652018-04-16 20:23:52 +000028 return Ctx.getTypeSize(FT);
Akira Hatanaka7275da02018-02-28 07:15:55 +000029}
30
31namespace {
32enum { DstIdx = 0, SrcIdx = 1 };
33const char *ValNameStr[2] = {"dst", "src"};
34
Akira Hatanaka7275da02018-02-28 07:15:55 +000035template <class Derived> struct StructVisitor {
36 StructVisitor(ASTContext &Ctx) : Ctx(Ctx) {}
37
38 template <class... Ts>
39 void visitStructFields(QualType QT, CharUnits CurStructOffset, Ts... Args) {
40 const RecordDecl *RD = QT->castAs<RecordType>()->getDecl();
41
42 // Iterate over the fields of the struct.
43 for (const FieldDecl *FD : RD->fields()) {
44 QualType FT = FD->getType();
45 FT = QT.isVolatileQualified() ? FT.withVolatile() : FT;
46 asDerived().visit(FT, FD, CurStructOffset, Args...);
47 }
48
49 asDerived().flushTrivialFields(Args...);
50 }
51
52 template <class... Ts> void visitTrivial(Ts... Args) {}
53
Akira Hatanaka7275da02018-02-28 07:15:55 +000054 template <class... Ts> void visitCXXDestructor(Ts... Args) {
55 llvm_unreachable("field of a C++ struct type is not expected");
56 }
57
58 template <class... Ts> void flushTrivialFields(Ts... Args) {}
59
60 uint64_t getFieldOffsetInBits(const FieldDecl *FD) {
61 return FD ? Ctx.getASTRecordLayout(FD->getParent())
62 .getFieldOffset(FD->getFieldIndex())
63 : 0;
64 }
65
66 CharUnits getFieldOffset(const FieldDecl *FD) {
67 return Ctx.toCharUnitsFromBits(getFieldOffsetInBits(FD));
68 }
69
70 Derived &asDerived() { return static_cast<Derived &>(*this); }
71
72 ASTContext &getContext() { return Ctx; }
73 ASTContext &Ctx;
74};
75
76template <class Derived, bool IsMove>
77struct CopyStructVisitor : StructVisitor<Derived>,
78 CopiedTypeVisitor<Derived, IsMove> {
79 using StructVisitor<Derived>::asDerived;
Akira Hatanaka52a84e72018-04-17 19:05:17 +000080 using Super = CopiedTypeVisitor<Derived, IsMove>;
Akira Hatanaka7275da02018-02-28 07:15:55 +000081
82 CopyStructVisitor(ASTContext &Ctx) : StructVisitor<Derived>(Ctx) {}
83
84 template <class... Ts>
85 void preVisit(QualType::PrimitiveCopyKind PCK, QualType FT,
86 const FieldDecl *FD, CharUnits CurStructOffsset,
87 Ts &&... Args) {
88 if (PCK)
89 asDerived().flushTrivialFields(std::forward<Ts>(Args)...);
90 }
91
92 template <class... Ts>
Akira Hatanaka52a84e72018-04-17 19:05:17 +000093 void visitWithKind(QualType::PrimitiveCopyKind PCK, QualType FT,
94 const FieldDecl *FD, CharUnits CurStructOffsset,
95 Ts &&... Args) {
96 if (const auto *AT = asDerived().getContext().getAsArrayType(FT)) {
97 asDerived().visitArray(PCK, AT, FT.isVolatileQualified(), FD,
98 CurStructOffsset, std::forward<Ts>(Args)...);
99 return;
100 }
101
102 Super::visitWithKind(PCK, FT, FD, CurStructOffsset,
103 std::forward<Ts>(Args)...);
104 }
105
106 template <class... Ts>
Akira Hatanaka7275da02018-02-28 07:15:55 +0000107 void visitTrivial(QualType FT, const FieldDecl *FD, CharUnits CurStructOffset,
108 Ts... Args) {
109 assert(!FT.isVolatileQualified() && "volatile field not expected");
110 ASTContext &Ctx = asDerived().getContext();
Akira Hatanaka7c552652018-04-16 20:23:52 +0000111 uint64_t FieldSize = getFieldSize(FD, FT, Ctx);
Akira Hatanaka7275da02018-02-28 07:15:55 +0000112
113 // Ignore zero-sized fields.
114 if (FieldSize == 0)
115 return;
116
117 uint64_t FStartInBits = asDerived().getFieldOffsetInBits(FD);
118 uint64_t FEndInBits = FStartInBits + FieldSize;
119 uint64_t RoundedFEnd = llvm::alignTo(FEndInBits, Ctx.getCharWidth());
120
121 // Set Start if this is the first field of a sequence of trivial fields.
122 if (Start == End)
123 Start = CurStructOffset + Ctx.toCharUnitsFromBits(FStartInBits);
124 End = CurStructOffset + Ctx.toCharUnitsFromBits(RoundedFEnd);
125 }
126
127 CharUnits Start = CharUnits::Zero(), End = CharUnits::Zero();
128};
129
130// This function creates the mangled name of a special function of a non-trivial
131// C struct. Since there is no ODR in C, the function is mangled based on the
132// struct contents and not the name. The mangled name has the following
133// structure:
134//
135// <function-name> ::= <prefix> <alignment-info> "_" <struct-field-info>
136// <prefix> ::= "__destructor_" | "__default_constructor_" |
137// "__copy_constructor_" | "__move_constructor_" |
138// "__copy_assignment_" | "__move_assignment_"
139// <alignment-info> ::= <dst-alignment> ["_" <src-alignment>]
140// <struct-field-info> ::= <field-info>+
141// <field-info> ::= <struct-or-scalar-field-info> | <array-field-info>
142// <struct-or-scalar-field-info> ::= <struct-field-info> | <strong-field-info> |
143// <trivial-field-info>
144// <array-field-info> ::= "_AB" <array-offset> "s" <element-size> "n"
145// <num-elements> <innermost-element-info> "_AE"
146// <innermost-element-info> ::= <struct-or-scalar-field-info>
147// <strong-field-info> ::= "_s" ["b"] ["v"] <field-offset>
148// <trivial-field-info> ::= "_t" ["v"] <field-offset> "_" <field-size>
149
150template <class Derived> struct GenFuncNameBase {
151 std::string getVolatileOffsetStr(bool IsVolatile, CharUnits Offset) {
152 std::string S;
153 if (IsVolatile)
154 S = "v";
155 S += llvm::to_string(Offset.getQuantity());
156 return S;
157 }
158
159 void visitARCStrong(QualType FT, const FieldDecl *FD,
160 CharUnits CurStructOffset) {
161 appendStr("_s");
162 if (FT->isBlockPointerType())
163 appendStr("b");
164 CharUnits FieldOffset = CurStructOffset + asDerived().getFieldOffset(FD);
165 appendStr(getVolatileOffsetStr(FT.isVolatileQualified(), FieldOffset));
166 }
167
Akira Hatanakad791e922018-03-19 17:38:40 +0000168 void visitARCWeak(QualType FT, const FieldDecl *FD,
169 CharUnits CurStructOffset) {
170 appendStr("_w");
171 CharUnits FieldOffset = CurStructOffset + asDerived().getFieldOffset(FD);
172 appendStr(getVolatileOffsetStr(FT.isVolatileQualified(), FieldOffset));
173 }
174
Akira Hatanaka7275da02018-02-28 07:15:55 +0000175 void visitStruct(QualType QT, const FieldDecl *FD,
176 CharUnits CurStructOffset) {
177 CharUnits FieldOffset = CurStructOffset + asDerived().getFieldOffset(FD);
178 asDerived().visitStructFields(QT, FieldOffset);
179 }
180
181 template <class FieldKind>
Akira Hatanaka52a84e72018-04-17 19:05:17 +0000182 void visitArray(FieldKind FK, const ArrayType *AT, bool IsVolatile,
183 const FieldDecl *FD, CharUnits CurStructOffset) {
Akira Hatanaka7275da02018-02-28 07:15:55 +0000184 // String for non-volatile trivial fields is emitted when
185 // flushTrivialFields is called.
186 if (!FK)
Akira Hatanaka52a84e72018-04-17 19:05:17 +0000187 return asDerived().visitTrivial(QualType(AT, 0), FD, CurStructOffset);
Akira Hatanaka7275da02018-02-28 07:15:55 +0000188
Akira Hatanaka9d343072018-10-02 01:00:44 +0000189 asDerived().flushTrivialFields();
Akira Hatanaka7275da02018-02-28 07:15:55 +0000190 CharUnits FieldOffset = CurStructOffset + asDerived().getFieldOffset(FD);
191 ASTContext &Ctx = asDerived().getContext();
Akira Hatanaka52a84e72018-04-17 19:05:17 +0000192 const ConstantArrayType *CAT = cast<ConstantArrayType>(AT);
193 unsigned NumElts = Ctx.getConstantArrayElementCount(CAT);
194 QualType EltTy = Ctx.getBaseElementType(CAT);
Akira Hatanaka7275da02018-02-28 07:15:55 +0000195 CharUnits EltSize = Ctx.getTypeSizeInChars(EltTy);
196 appendStr("_AB" + llvm::to_string(FieldOffset.getQuantity()) + "s" +
197 llvm::to_string(EltSize.getQuantity()) + "n" +
198 llvm::to_string(NumElts));
Akira Hatanaka52a84e72018-04-17 19:05:17 +0000199 EltTy = IsVolatile ? EltTy.withVolatile() : EltTy;
200 asDerived().visitWithKind(FK, EltTy, nullptr, FieldOffset);
Akira Hatanaka7275da02018-02-28 07:15:55 +0000201 appendStr("_AE");
202 }
203
204 void appendStr(StringRef Str) { Name += Str; }
205
206 std::string getName(QualType QT, bool IsVolatile) {
207 QT = IsVolatile ? QT.withVolatile() : QT;
208 asDerived().visitStructFields(QT, CharUnits::Zero());
209 return Name;
210 }
211
212 Derived &asDerived() { return static_cast<Derived &>(*this); }
213
214 std::string Name;
215};
216
217template <class Derived>
218struct GenUnaryFuncName : StructVisitor<Derived>, GenFuncNameBase<Derived> {
219 GenUnaryFuncName(StringRef Prefix, CharUnits DstAlignment, ASTContext &Ctx)
220 : StructVisitor<Derived>(Ctx) {
221 this->appendStr(Prefix);
222 this->appendStr(llvm::to_string(DstAlignment.getQuantity()));
223 }
224};
225
226// Helper function to create a null constant.
227static llvm::Constant *getNullForVariable(Address Addr) {
228 llvm::Type *Ty = Addr.getElementType();
229 return llvm::ConstantPointerNull::get(cast<llvm::PointerType>(Ty));
230}
231
232template <bool IsMove>
233struct GenBinaryFuncName : CopyStructVisitor<GenBinaryFuncName<IsMove>, IsMove>,
234 GenFuncNameBase<GenBinaryFuncName<IsMove>> {
235
236 GenBinaryFuncName(StringRef Prefix, CharUnits DstAlignment,
237 CharUnits SrcAlignment, ASTContext &Ctx)
238 : CopyStructVisitor<GenBinaryFuncName<IsMove>, IsMove>(Ctx) {
239 this->appendStr(Prefix);
240 this->appendStr(llvm::to_string(DstAlignment.getQuantity()));
241 this->appendStr("_" + llvm::to_string(SrcAlignment.getQuantity()));
242 }
243
244 void flushTrivialFields() {
245 if (this->Start == this->End)
246 return;
247
248 this->appendStr("_t" + llvm::to_string(this->Start.getQuantity()) + "w" +
249 llvm::to_string((this->End - this->Start).getQuantity()));
250
251 this->Start = this->End = CharUnits::Zero();
252 }
253
254 void visitVolatileTrivial(QualType FT, const FieldDecl *FD,
255 CharUnits CurStackOffset) {
256 // Because volatile fields can be bit-fields and are individually copied,
257 // their offset and width are in bits.
258 uint64_t OffsetInBits =
259 this->Ctx.toBits(CurStackOffset) + this->getFieldOffsetInBits(FD);
260 this->appendStr("_tv" + llvm::to_string(OffsetInBits) + "w" +
Akira Hatanaka7c552652018-04-16 20:23:52 +0000261 llvm::to_string(getFieldSize(FD, FT, this->Ctx)));
Akira Hatanaka7275da02018-02-28 07:15:55 +0000262 }
263};
264
265struct GenDefaultInitializeFuncName
266 : GenUnaryFuncName<GenDefaultInitializeFuncName>,
267 DefaultInitializedTypeVisitor<GenDefaultInitializeFuncName> {
Akira Hatanaka52a84e72018-04-17 19:05:17 +0000268 using Super = DefaultInitializedTypeVisitor<GenDefaultInitializeFuncName>;
Akira Hatanaka7275da02018-02-28 07:15:55 +0000269 GenDefaultInitializeFuncName(CharUnits DstAlignment, ASTContext &Ctx)
270 : GenUnaryFuncName<GenDefaultInitializeFuncName>("__default_constructor_",
271 DstAlignment, Ctx) {}
Akira Hatanaka52a84e72018-04-17 19:05:17 +0000272 void visitWithKind(QualType::PrimitiveDefaultInitializeKind PDIK, QualType FT,
273 const FieldDecl *FD, CharUnits CurStructOffset) {
274 if (const auto *AT = getContext().getAsArrayType(FT)) {
275 visitArray(PDIK, AT, FT.isVolatileQualified(), FD, CurStructOffset);
276 return;
277 }
278
279 Super::visitWithKind(PDIK, FT, FD, CurStructOffset);
280 }
Akira Hatanaka7275da02018-02-28 07:15:55 +0000281};
282
283struct GenDestructorFuncName : GenUnaryFuncName<GenDestructorFuncName>,
284 DestructedTypeVisitor<GenDestructorFuncName> {
Akira Hatanaka52a84e72018-04-17 19:05:17 +0000285 using Super = DestructedTypeVisitor<GenDestructorFuncName>;
Akira Hatanaka9978da32018-08-10 15:09:24 +0000286 GenDestructorFuncName(const char *Prefix, CharUnits DstAlignment,
287 ASTContext &Ctx)
288 : GenUnaryFuncName<GenDestructorFuncName>(Prefix, DstAlignment,
Akira Hatanaka7275da02018-02-28 07:15:55 +0000289 Ctx) {}
Akira Hatanaka52a84e72018-04-17 19:05:17 +0000290 void visitWithKind(QualType::DestructionKind DK, QualType FT,
291 const FieldDecl *FD, CharUnits CurStructOffset) {
292 if (const auto *AT = getContext().getAsArrayType(FT)) {
293 visitArray(DK, AT, FT.isVolatileQualified(), FD, CurStructOffset);
294 return;
295 }
296
297 Super::visitWithKind(DK, FT, FD, CurStructOffset);
298 }
Akira Hatanaka7275da02018-02-28 07:15:55 +0000299};
300
301// Helper function that creates CGFunctionInfo for an N-ary special function.
302template <size_t N>
303static const CGFunctionInfo &getFunctionInfo(CodeGenModule &CGM,
304 FunctionArgList &Args) {
305 ASTContext &Ctx = CGM.getContext();
306 llvm::SmallVector<ImplicitParamDecl *, N> Params;
307 QualType ParamTy = Ctx.getPointerType(Ctx.VoidPtrTy);
308
309 for (unsigned I = 0; I < N; ++I)
310 Params.push_back(ImplicitParamDecl::Create(
311 Ctx, nullptr, SourceLocation(), &Ctx.Idents.get(ValNameStr[I]), ParamTy,
312 ImplicitParamDecl::Other));
313
314 for (auto &P : Params)
315 Args.push_back(P);
316
317 return CGM.getTypes().arrangeBuiltinFunctionDeclaration(Ctx.VoidTy, Args);
318}
319
320// Template classes that are used as bases for classes that emit special
321// functions.
322template <class Derived> struct GenFuncBase {
323 template <size_t N>
324 void visitStruct(QualType FT, const FieldDecl *FD, CharUnits CurStackOffset,
325 std::array<Address, N> Addrs) {
326 this->asDerived().callSpecialFunction(
327 FT, CurStackOffset + asDerived().getFieldOffset(FD), Addrs);
328 }
329
330 template <class FieldKind, size_t N>
Akira Hatanaka52a84e72018-04-17 19:05:17 +0000331 void visitArray(FieldKind FK, const ArrayType *AT, bool IsVolatile,
332 const FieldDecl *FD, CharUnits CurStackOffset,
333 std::array<Address, N> Addrs) {
Akira Hatanaka7275da02018-02-28 07:15:55 +0000334 // Non-volatile trivial fields are copied when flushTrivialFields is called.
335 if (!FK)
Akira Hatanaka52a84e72018-04-17 19:05:17 +0000336 return asDerived().visitTrivial(QualType(AT, 0), FD, CurStackOffset,
337 Addrs);
Akira Hatanaka7275da02018-02-28 07:15:55 +0000338
Akira Hatanaka9d343072018-10-02 01:00:44 +0000339 asDerived().flushTrivialFields(Addrs);
Akira Hatanaka7275da02018-02-28 07:15:55 +0000340 CodeGenFunction &CGF = *this->CGF;
341 ASTContext &Ctx = CGF.getContext();
342
343 // Compute the end address.
344 QualType BaseEltQT;
345 std::array<Address, N> StartAddrs = Addrs;
346 for (unsigned I = 0; I < N; ++I)
347 StartAddrs[I] = getAddrWithOffset(Addrs[I], CurStackOffset, FD);
348 Address DstAddr = StartAddrs[DstIdx];
Akira Hatanaka52a84e72018-04-17 19:05:17 +0000349 llvm::Value *NumElts = CGF.emitArrayLength(AT, BaseEltQT, DstAddr);
Akira Hatanaka7275da02018-02-28 07:15:55 +0000350 unsigned BaseEltSize = Ctx.getTypeSizeInChars(BaseEltQT).getQuantity();
351 llvm::Value *BaseEltSizeVal =
352 llvm::ConstantInt::get(NumElts->getType(), BaseEltSize);
353 llvm::Value *SizeInBytes =
354 CGF.Builder.CreateNUWMul(BaseEltSizeVal, NumElts);
355 Address BC = CGF.Builder.CreateBitCast(DstAddr, CGF.CGM.Int8PtrTy);
356 llvm::Value *DstArrayEnd =
357 CGF.Builder.CreateInBoundsGEP(BC.getPointer(), SizeInBytes);
358 DstArrayEnd = CGF.Builder.CreateBitCast(DstArrayEnd, CGF.CGM.Int8PtrPtrTy,
359 "dstarray.end");
360 llvm::BasicBlock *PreheaderBB = CGF.Builder.GetInsertBlock();
361
362 // Create the header block and insert the phi instructions.
363 llvm::BasicBlock *HeaderBB = CGF.createBasicBlock("loop.header");
364 CGF.EmitBlock(HeaderBB);
365 llvm::PHINode *PHIs[N];
366
367 for (unsigned I = 0; I < N; ++I) {
368 PHIs[I] = CGF.Builder.CreatePHI(CGF.CGM.Int8PtrPtrTy, 2, "addr.cur");
369 PHIs[I]->addIncoming(StartAddrs[I].getPointer(), PreheaderBB);
370 }
371
372 // Create the exit and loop body blocks.
373 llvm::BasicBlock *ExitBB = CGF.createBasicBlock("loop.exit");
374 llvm::BasicBlock *LoopBB = CGF.createBasicBlock("loop.body");
375
376 // Emit the comparison and conditional branch instruction that jumps to
377 // either the exit or the loop body.
378 llvm::Value *Done =
379 CGF.Builder.CreateICmpEQ(PHIs[DstIdx], DstArrayEnd, "done");
380 CGF.Builder.CreateCondBr(Done, ExitBB, LoopBB);
381
382 // Visit the element of the array in the loop body.
383 CGF.EmitBlock(LoopBB);
Akira Hatanaka52a84e72018-04-17 19:05:17 +0000384 QualType EltQT = AT->getElementType();
Akira Hatanaka7275da02018-02-28 07:15:55 +0000385 CharUnits EltSize = Ctx.getTypeSizeInChars(EltQT);
386 std::array<Address, N> NewAddrs = Addrs;
387
388 for (unsigned I = 0; I < N; ++I)
389 NewAddrs[I] = Address(
390 PHIs[I], StartAddrs[I].getAlignment().alignmentAtOffset(EltSize));
391
Akira Hatanaka52a84e72018-04-17 19:05:17 +0000392 EltQT = IsVolatile ? EltQT.withVolatile() : EltQT;
393 this->asDerived().visitWithKind(FK, EltQT, nullptr, CharUnits::Zero(),
394 NewAddrs);
Akira Hatanaka7275da02018-02-28 07:15:55 +0000395
396 LoopBB = CGF.Builder.GetInsertBlock();
397
398 for (unsigned I = 0; I < N; ++I) {
399 // Instrs to update the destination and source addresses.
400 // Update phi instructions.
401 NewAddrs[I] = getAddrWithOffset(NewAddrs[I], EltSize);
402 PHIs[I]->addIncoming(NewAddrs[I].getPointer(), LoopBB);
403 }
404
405 // Insert an unconditional branch to the header block.
406 CGF.Builder.CreateBr(HeaderBB);
407 CGF.EmitBlock(ExitBB);
408 }
409
410 /// Return an address with the specified offset from the passed address.
411 Address getAddrWithOffset(Address Addr, CharUnits Offset) {
412 assert(Addr.isValid() && "invalid address");
413 if (Offset.getQuantity() == 0)
414 return Addr;
415 Addr = CGF->Builder.CreateBitCast(Addr, CGF->CGM.Int8PtrTy);
416 Addr = CGF->Builder.CreateConstInBoundsGEP(Addr, Offset.getQuantity(),
417 CharUnits::One());
418 return CGF->Builder.CreateBitCast(Addr, CGF->CGM.Int8PtrPtrTy);
419 }
420
421 Address getAddrWithOffset(Address Addr, CharUnits StructFieldOffset,
422 const FieldDecl *FD) {
423 return getAddrWithOffset(Addr, StructFieldOffset +
424 asDerived().getFieldOffset(FD));
425 }
426
427 template <size_t N>
428 llvm::Function *
429 getFunction(StringRef FuncName, QualType QT, std::array<Address, N> Addrs,
430 std::array<CharUnits, N> Alignments, CodeGenModule &CGM) {
431 // If the special function already exists in the module, return it.
432 if (llvm::Function *F = CGM.getModule().getFunction(FuncName)) {
433 bool WrongType = false;
434 if (!F->getReturnType()->isVoidTy())
435 WrongType = true;
436 else {
437 for (const llvm::Argument &Arg : F->args())
438 if (Arg.getType() != CGM.Int8PtrPtrTy)
439 WrongType = true;
440 }
441
442 if (WrongType) {
443 std::string FuncName = F->getName();
444 SourceLocation Loc = QT->castAs<RecordType>()->getDecl()->getLocation();
445 CGM.Error(Loc, "special function " + FuncName +
446 " for non-trivial C struct has incorrect type");
447 return nullptr;
448 }
449 return F;
450 }
451
452 ASTContext &Ctx = CGM.getContext();
453 FunctionArgList Args;
454 const CGFunctionInfo &FI = getFunctionInfo<N>(CGM, Args);
455 llvm::FunctionType *FuncTy = CGM.getTypes().GetFunctionType(FI);
456 llvm::Function *F =
457 llvm::Function::Create(FuncTy, llvm::GlobalValue::LinkOnceODRLinkage,
458 FuncName, &CGM.getModule());
459 F->setVisibility(llvm::GlobalValue::HiddenVisibility);
Erich Keanede6480a32018-11-13 15:48:08 +0000460 CGM.SetLLVMFunctionAttributes(GlobalDecl(), FI, F);
Akira Hatanaka7275da02018-02-28 07:15:55 +0000461 CGM.SetLLVMFunctionAttributesForDefinition(nullptr, F);
462 IdentifierInfo *II = &Ctx.Idents.get(FuncName);
463 FunctionDecl *FD = FunctionDecl::Create(
464 Ctx, Ctx.getTranslationUnitDecl(), SourceLocation(), SourceLocation(),
Jonas Devlieghere64a26302018-11-11 00:56:15 +0000465 II, Ctx.getFunctionType(Ctx.VoidTy, llvm::None, {}), nullptr,
466 SC_PrivateExtern, false, false);
Akira Hatanaka7275da02018-02-28 07:15:55 +0000467 CodeGenFunction NewCGF(CGM);
468 setCGF(&NewCGF);
469 CGF->StartFunction(FD, Ctx.VoidTy, F, FI, Args);
470
471 for (unsigned I = 0; I < N; ++I) {
472 llvm::Value *V = CGF->Builder.CreateLoad(CGF->GetAddrOfLocalVar(Args[I]));
473 Addrs[I] = Address(V, Alignments[I]);
474 }
475
476 asDerived().visitStructFields(QT, CharUnits::Zero(), Addrs);
477 CGF->FinishFunction();
478 return F;
479 }
480
481 template <size_t N>
482 void callFunc(StringRef FuncName, QualType QT, std::array<Address, N> Addrs,
483 CodeGenFunction &CallerCGF) {
484 std::array<CharUnits, N> Alignments;
485 llvm::Value *Ptrs[N];
486
487 for (unsigned I = 0; I < N; ++I) {
488 Alignments[I] = Addrs[I].getAlignment();
489 Ptrs[I] =
490 CallerCGF.Builder.CreateBitCast(Addrs[I], CallerCGF.CGM.Int8PtrPtrTy)
491 .getPointer();
492 }
493
494 if (llvm::Function *F =
495 getFunction(FuncName, QT, Addrs, Alignments, CallerCGF.CGM))
496 CallerCGF.EmitNounwindRuntimeCall(F, Ptrs);
497 }
498
499 Derived &asDerived() { return static_cast<Derived &>(*this); }
500
501 void setCGF(CodeGenFunction *F) { CGF = F; }
502
503 CodeGenFunction *CGF = nullptr;
504};
505
506template <class Derived, bool IsMove>
507struct GenBinaryFunc : CopyStructVisitor<Derived, IsMove>,
508 GenFuncBase<Derived> {
509 GenBinaryFunc(ASTContext &Ctx) : CopyStructVisitor<Derived, IsMove>(Ctx) {}
510
511 void flushTrivialFields(std::array<Address, 2> Addrs) {
512 CharUnits Size = this->End - this->Start;
513
514 if (Size.getQuantity() == 0)
515 return;
516
517 Address DstAddr = this->getAddrWithOffset(Addrs[DstIdx], this->Start);
518 Address SrcAddr = this->getAddrWithOffset(Addrs[SrcIdx], this->Start);
519
520 // Emit memcpy.
521 if (Size.getQuantity() >= 16 || !llvm::isPowerOf2_32(Size.getQuantity())) {
522 llvm::Value *SizeVal =
523 llvm::ConstantInt::get(this->CGF->SizeTy, Size.getQuantity());
524 DstAddr =
525 this->CGF->Builder.CreateElementBitCast(DstAddr, this->CGF->Int8Ty);
526 SrcAddr =
527 this->CGF->Builder.CreateElementBitCast(SrcAddr, this->CGF->Int8Ty);
528 this->CGF->Builder.CreateMemCpy(DstAddr, SrcAddr, SizeVal, false);
529 } else {
530 llvm::Type *Ty = llvm::Type::getIntNTy(
531 this->CGF->getLLVMContext(),
532 Size.getQuantity() * this->CGF->getContext().getCharWidth());
533 DstAddr = this->CGF->Builder.CreateElementBitCast(DstAddr, Ty);
534 SrcAddr = this->CGF->Builder.CreateElementBitCast(SrcAddr, Ty);
535 llvm::Value *SrcVal = this->CGF->Builder.CreateLoad(SrcAddr, false);
536 this->CGF->Builder.CreateStore(SrcVal, DstAddr, false);
537 }
538
539 this->Start = this->End = CharUnits::Zero();
540 }
541
542 template <class... Ts>
543 void visitVolatileTrivial(QualType FT, const FieldDecl *FD, CharUnits Offset,
544 std::array<Address, 2> Addrs) {
Akira Hatanaka7c552652018-04-16 20:23:52 +0000545 LValue DstLV, SrcLV;
546 if (FD) {
547 QualType RT = QualType(FD->getParent()->getTypeForDecl(), 0);
548 llvm::PointerType *PtrTy = this->CGF->ConvertType(RT)->getPointerTo();
549 Address DstAddr = this->getAddrWithOffset(Addrs[DstIdx], Offset);
550 LValue DstBase = this->CGF->MakeAddrLValue(
551 this->CGF->Builder.CreateBitCast(DstAddr, PtrTy), FT);
552 DstLV = this->CGF->EmitLValueForField(DstBase, FD);
553 Address SrcAddr = this->getAddrWithOffset(Addrs[SrcIdx], Offset);
554 LValue SrcBase = this->CGF->MakeAddrLValue(
555 this->CGF->Builder.CreateBitCast(SrcAddr, PtrTy), FT);
556 SrcLV = this->CGF->EmitLValueForField(SrcBase, FD);
557 } else {
558 llvm::PointerType *Ty = this->CGF->ConvertType(FT)->getPointerTo();
559 Address DstAddr = this->CGF->Builder.CreateBitCast(Addrs[DstIdx], Ty);
560 Address SrcAddr = this->CGF->Builder.CreateBitCast(Addrs[SrcIdx], Ty);
561 DstLV = this->CGF->MakeAddrLValue(DstAddr, FT);
562 SrcLV = this->CGF->MakeAddrLValue(SrcAddr, FT);
563 }
Akira Hatanaka7275da02018-02-28 07:15:55 +0000564 RValue SrcVal = this->CGF->EmitLoadOfLValue(SrcLV, SourceLocation());
565 this->CGF->EmitStoreThroughLValue(SrcVal, DstLV);
566 }
567};
568
569// These classes that emit the special functions for a non-trivial struct.
570struct GenDestructor : StructVisitor<GenDestructor>,
571 GenFuncBase<GenDestructor>,
572 DestructedTypeVisitor<GenDestructor> {
Akira Hatanaka52a84e72018-04-17 19:05:17 +0000573 using Super = DestructedTypeVisitor<GenDestructor>;
Akira Hatanaka7275da02018-02-28 07:15:55 +0000574 GenDestructor(ASTContext &Ctx) : StructVisitor<GenDestructor>(Ctx) {}
Akira Hatanaka52a84e72018-04-17 19:05:17 +0000575
576 void visitWithKind(QualType::DestructionKind DK, QualType FT,
577 const FieldDecl *FD, CharUnits CurStructOffset,
578 std::array<Address, 1> Addrs) {
579 if (const auto *AT = getContext().getAsArrayType(FT)) {
580 visitArray(DK, AT, FT.isVolatileQualified(), FD, CurStructOffset, Addrs);
581 return;
582 }
583
584 Super::visitWithKind(DK, FT, FD, CurStructOffset, Addrs);
585 }
586
Akira Hatanaka7275da02018-02-28 07:15:55 +0000587 void visitARCStrong(QualType QT, const FieldDecl *FD,
588 CharUnits CurStackOffset, std::array<Address, 1> Addrs) {
589 CGF->destroyARCStrongImprecise(
590 *CGF, getAddrWithOffset(Addrs[DstIdx], CurStackOffset, FD), QT);
591 }
592
Akira Hatanakad791e922018-03-19 17:38:40 +0000593 void visitARCWeak(QualType QT, const FieldDecl *FD, CharUnits CurStackOffset,
594 std::array<Address, 1> Addrs) {
595 CGF->destroyARCWeak(
596 *CGF, getAddrWithOffset(Addrs[DstIdx], CurStackOffset, FD), QT);
597 }
598
Akira Hatanaka7275da02018-02-28 07:15:55 +0000599 void callSpecialFunction(QualType FT, CharUnits Offset,
600 std::array<Address, 1> Addrs) {
601 CGF->callCStructDestructor(
602 CGF->MakeAddrLValue(getAddrWithOffset(Addrs[DstIdx], Offset), FT));
603 }
604};
605
606struct GenDefaultInitialize
607 : StructVisitor<GenDefaultInitialize>,
608 GenFuncBase<GenDefaultInitialize>,
609 DefaultInitializedTypeVisitor<GenDefaultInitialize> {
Akira Hatanaka52a84e72018-04-17 19:05:17 +0000610 using Super = DefaultInitializedTypeVisitor<GenDefaultInitialize>;
Akira Hatanaka7275da02018-02-28 07:15:55 +0000611 typedef GenFuncBase<GenDefaultInitialize> GenFuncBaseTy;
Akira Hatanaka52a84e72018-04-17 19:05:17 +0000612
Akira Hatanaka7275da02018-02-28 07:15:55 +0000613 GenDefaultInitialize(ASTContext &Ctx)
614 : StructVisitor<GenDefaultInitialize>(Ctx) {}
615
Akira Hatanaka52a84e72018-04-17 19:05:17 +0000616 void visitWithKind(QualType::PrimitiveDefaultInitializeKind PDIK, QualType FT,
617 const FieldDecl *FD, CharUnits CurStructOffset,
618 std::array<Address, 1> Addrs) {
619 if (const auto *AT = getContext().getAsArrayType(FT)) {
620 visitArray(PDIK, AT, FT.isVolatileQualified(), FD, CurStructOffset,
621 Addrs);
622 return;
623 }
624
625 Super::visitWithKind(PDIK, FT, FD, CurStructOffset, Addrs);
626 }
627
Akira Hatanaka7275da02018-02-28 07:15:55 +0000628 void visitARCStrong(QualType QT, const FieldDecl *FD,
629 CharUnits CurStackOffset, std::array<Address, 1> Addrs) {
630 CGF->EmitNullInitialization(
631 getAddrWithOffset(Addrs[DstIdx], CurStackOffset, FD), QT);
632 }
633
Akira Hatanakad791e922018-03-19 17:38:40 +0000634 void visitARCWeak(QualType QT, const FieldDecl *FD, CharUnits CurStackOffset,
635 std::array<Address, 1> Addrs) {
636 CGF->EmitNullInitialization(
637 getAddrWithOffset(Addrs[DstIdx], CurStackOffset, FD), QT);
638 }
639
Akira Hatanaka7275da02018-02-28 07:15:55 +0000640 template <class FieldKind, size_t... Is>
Akira Hatanaka52a84e72018-04-17 19:05:17 +0000641 void visitArray(FieldKind FK, const ArrayType *AT, bool IsVolatile,
642 const FieldDecl *FD, CharUnits CurStackOffset,
643 std::array<Address, 1> Addrs) {
Akira Hatanaka7275da02018-02-28 07:15:55 +0000644 if (!FK)
Akira Hatanaka52a84e72018-04-17 19:05:17 +0000645 return visitTrivial(QualType(AT, 0), FD, CurStackOffset, Addrs);
Akira Hatanaka7275da02018-02-28 07:15:55 +0000646
647 ASTContext &Ctx = getContext();
Akira Hatanaka52a84e72018-04-17 19:05:17 +0000648 CharUnits Size = Ctx.getTypeSizeInChars(QualType(AT, 0));
649 QualType EltTy = Ctx.getBaseElementType(QualType(AT, 0));
Akira Hatanaka7275da02018-02-28 07:15:55 +0000650
651 if (Size < CharUnits::fromQuantity(16) || EltTy->getAs<RecordType>()) {
Akira Hatanaka52a84e72018-04-17 19:05:17 +0000652 GenFuncBaseTy::visitArray(FK, AT, IsVolatile, FD, CurStackOffset, Addrs);
Akira Hatanaka7275da02018-02-28 07:15:55 +0000653 return;
654 }
655
656 llvm::Constant *SizeVal = CGF->Builder.getInt64(Size.getQuantity());
657 Address DstAddr = getAddrWithOffset(Addrs[DstIdx], CurStackOffset, FD);
658 Address Loc = CGF->Builder.CreateElementBitCast(DstAddr, CGF->Int8Ty);
659 CGF->Builder.CreateMemSet(Loc, CGF->Builder.getInt8(0), SizeVal,
Akira Hatanaka52a84e72018-04-17 19:05:17 +0000660 IsVolatile);
Akira Hatanaka7275da02018-02-28 07:15:55 +0000661 }
662
663 void callSpecialFunction(QualType FT, CharUnits Offset,
664 std::array<Address, 1> Addrs) {
665 CGF->callCStructDefaultConstructor(
666 CGF->MakeAddrLValue(getAddrWithOffset(Addrs[DstIdx], Offset), FT));
667 }
668};
669
670struct GenCopyConstructor : GenBinaryFunc<GenCopyConstructor, false> {
671 GenCopyConstructor(ASTContext &Ctx)
672 : GenBinaryFunc<GenCopyConstructor, false>(Ctx) {}
673
674 void visitARCStrong(QualType QT, const FieldDecl *FD,
675 CharUnits CurStackOffset, std::array<Address, 2> Addrs) {
676 Addrs[DstIdx] = getAddrWithOffset(Addrs[DstIdx], CurStackOffset, FD);
677 Addrs[SrcIdx] = getAddrWithOffset(Addrs[SrcIdx], CurStackOffset, FD);
678 llvm::Value *SrcVal = CGF->EmitLoadOfScalar(
679 Addrs[SrcIdx], QT.isVolatileQualified(), QT, SourceLocation());
680 llvm::Value *Val = CGF->EmitARCRetain(QT, SrcVal);
681 CGF->EmitStoreOfScalar(Val, CGF->MakeAddrLValue(Addrs[DstIdx], QT), true);
682 }
Akira Hatanakad791e922018-03-19 17:38:40 +0000683
684 void visitARCWeak(QualType QT, const FieldDecl *FD, CharUnits CurStackOffset,
685 std::array<Address, 2> Addrs) {
686 Addrs[DstIdx] = getAddrWithOffset(Addrs[DstIdx], CurStackOffset, FD);
687 Addrs[SrcIdx] = getAddrWithOffset(Addrs[SrcIdx], CurStackOffset, FD);
688 CGF->EmitARCCopyWeak(Addrs[DstIdx], Addrs[SrcIdx]);
689 }
690
Akira Hatanaka7275da02018-02-28 07:15:55 +0000691 void callSpecialFunction(QualType FT, CharUnits Offset,
692 std::array<Address, 2> Addrs) {
693 CGF->callCStructCopyConstructor(CGF->MakeAddrLValue(Addrs[DstIdx], FT),
694 CGF->MakeAddrLValue(Addrs[SrcIdx], FT));
695 }
696};
697
698struct GenMoveConstructor : GenBinaryFunc<GenMoveConstructor, true> {
699 GenMoveConstructor(ASTContext &Ctx)
700 : GenBinaryFunc<GenMoveConstructor, true>(Ctx) {}
701
702 void visitARCStrong(QualType QT, const FieldDecl *FD,
703 CharUnits CurStackOffset, std::array<Address, 2> Addrs) {
704 Addrs[DstIdx] = getAddrWithOffset(Addrs[DstIdx], CurStackOffset, FD);
705 Addrs[SrcIdx] = getAddrWithOffset(Addrs[SrcIdx], CurStackOffset, FD);
706 LValue SrcLV = CGF->MakeAddrLValue(Addrs[SrcIdx], QT);
707 llvm::Value *SrcVal =
708 CGF->EmitLoadOfLValue(SrcLV, SourceLocation()).getScalarVal();
709 CGF->EmitStoreOfScalar(getNullForVariable(SrcLV.getAddress()), SrcLV);
710 CGF->EmitStoreOfScalar(SrcVal, CGF->MakeAddrLValue(Addrs[DstIdx], QT),
711 /* isInitialization */ true);
712 }
Akira Hatanakad791e922018-03-19 17:38:40 +0000713
714 void visitARCWeak(QualType QT, const FieldDecl *FD, CharUnits CurStackOffset,
715 std::array<Address, 2> Addrs) {
716 Addrs[DstIdx] = getAddrWithOffset(Addrs[DstIdx], CurStackOffset, FD);
717 Addrs[SrcIdx] = getAddrWithOffset(Addrs[SrcIdx], CurStackOffset, FD);
718 CGF->EmitARCMoveWeak(Addrs[DstIdx], Addrs[SrcIdx]);
719 }
720
Akira Hatanaka7275da02018-02-28 07:15:55 +0000721 void callSpecialFunction(QualType FT, CharUnits Offset,
722 std::array<Address, 2> Addrs) {
723 CGF->callCStructMoveConstructor(CGF->MakeAddrLValue(Addrs[DstIdx], FT),
724 CGF->MakeAddrLValue(Addrs[SrcIdx], FT));
725 }
726};
727
728struct GenCopyAssignment : GenBinaryFunc<GenCopyAssignment, false> {
729 GenCopyAssignment(ASTContext &Ctx)
730 : GenBinaryFunc<GenCopyAssignment, false>(Ctx) {}
731
732 void visitARCStrong(QualType QT, const FieldDecl *FD,
733 CharUnits CurStackOffset, std::array<Address, 2> Addrs) {
734 Addrs[DstIdx] = getAddrWithOffset(Addrs[DstIdx], CurStackOffset, FD);
735 Addrs[SrcIdx] = getAddrWithOffset(Addrs[SrcIdx], CurStackOffset, FD);
736 llvm::Value *SrcVal = CGF->EmitLoadOfScalar(
737 Addrs[SrcIdx], QT.isVolatileQualified(), QT, SourceLocation());
738 CGF->EmitARCStoreStrong(CGF->MakeAddrLValue(Addrs[DstIdx], QT), SrcVal,
739 false);
740 }
Akira Hatanakad791e922018-03-19 17:38:40 +0000741
742 void visitARCWeak(QualType QT, const FieldDecl *FD, CharUnits CurStackOffset,
743 std::array<Address, 2> Addrs) {
744 Addrs[DstIdx] = getAddrWithOffset(Addrs[DstIdx], CurStackOffset, FD);
745 Addrs[SrcIdx] = getAddrWithOffset(Addrs[SrcIdx], CurStackOffset, FD);
746 CGF->emitARCCopyAssignWeak(QT, Addrs[DstIdx], Addrs[SrcIdx]);
747 }
748
Akira Hatanaka7275da02018-02-28 07:15:55 +0000749 void callSpecialFunction(QualType FT, CharUnits Offset,
750 std::array<Address, 2> Addrs) {
751 CGF->callCStructCopyAssignmentOperator(
752 CGF->MakeAddrLValue(Addrs[DstIdx], FT),
753 CGF->MakeAddrLValue(Addrs[SrcIdx], FT));
754 }
755};
756
757struct GenMoveAssignment : GenBinaryFunc<GenMoveAssignment, true> {
758 GenMoveAssignment(ASTContext &Ctx)
759 : GenBinaryFunc<GenMoveAssignment, true>(Ctx) {}
760
761 void visitARCStrong(QualType QT, const FieldDecl *FD,
762 CharUnits CurStackOffset, std::array<Address, 2> Addrs) {
763 Addrs[DstIdx] = getAddrWithOffset(Addrs[DstIdx], CurStackOffset, FD);
764 Addrs[SrcIdx] = getAddrWithOffset(Addrs[SrcIdx], CurStackOffset, FD);
765 LValue SrcLV = CGF->MakeAddrLValue(Addrs[SrcIdx], QT);
766 llvm::Value *SrcVal =
767 CGF->EmitLoadOfLValue(SrcLV, SourceLocation()).getScalarVal();
768 CGF->EmitStoreOfScalar(getNullForVariable(SrcLV.getAddress()), SrcLV);
769 LValue DstLV = CGF->MakeAddrLValue(Addrs[DstIdx], QT);
770 llvm::Value *DstVal =
771 CGF->EmitLoadOfLValue(DstLV, SourceLocation()).getScalarVal();
772 CGF->EmitStoreOfScalar(SrcVal, DstLV);
773 CGF->EmitARCRelease(DstVal, ARCImpreciseLifetime);
774 }
775
Akira Hatanakad791e922018-03-19 17:38:40 +0000776 void visitARCWeak(QualType QT, const FieldDecl *FD, CharUnits CurStackOffset,
777 std::array<Address, 2> Addrs) {
778 Addrs[DstIdx] = getAddrWithOffset(Addrs[DstIdx], CurStackOffset, FD);
779 Addrs[SrcIdx] = getAddrWithOffset(Addrs[SrcIdx], CurStackOffset, FD);
780 CGF->emitARCMoveAssignWeak(QT, Addrs[DstIdx], Addrs[SrcIdx]);
781 }
782
Akira Hatanaka7275da02018-02-28 07:15:55 +0000783 void callSpecialFunction(QualType FT, CharUnits Offset,
784 std::array<Address, 2> Addrs) {
785 CGF->callCStructMoveAssignmentOperator(
786 CGF->MakeAddrLValue(Addrs[DstIdx], FT),
787 CGF->MakeAddrLValue(Addrs[SrcIdx], FT));
788 }
789};
790
791} // namespace
792
793void CodeGenFunction::destroyNonTrivialCStruct(CodeGenFunction &CGF,
794 Address Addr, QualType Type) {
795 CGF.callCStructDestructor(CGF.MakeAddrLValue(Addr, Type));
796}
797
798// Default-initialize a variable that is a non-trivial struct or an array of
799// such structure.
800void CodeGenFunction::defaultInitNonTrivialCStructVar(LValue Dst) {
801 GenDefaultInitialize Gen(getContext());
802 Address DstPtr = Builder.CreateBitCast(Dst.getAddress(), CGM.Int8PtrPtrTy);
803 Gen.setCGF(this);
804 QualType QT = Dst.getType();
805 QT = Dst.isVolatile() ? QT.withVolatile() : QT;
806 Gen.visit(QT, nullptr, CharUnits::Zero(), std::array<Address, 1>({{DstPtr}}));
807}
808
809template <class G, size_t N>
810static void callSpecialFunction(G &&Gen, StringRef FuncName, QualType QT,
811 bool IsVolatile, CodeGenFunction &CGF,
812 std::array<Address, N> Addrs) {
813 for (unsigned I = 0; I < N; ++I)
814 Addrs[I] = CGF.Builder.CreateBitCast(Addrs[I], CGF.CGM.Int8PtrPtrTy);
815 QT = IsVolatile ? QT.withVolatile() : QT;
816 Gen.callFunc(FuncName, QT, Addrs, CGF);
817}
818
819// Functions to emit calls to the special functions of a non-trivial C struct.
820void CodeGenFunction::callCStructDefaultConstructor(LValue Dst) {
821 bool IsVolatile = Dst.isVolatile();
822 Address DstPtr = Dst.getAddress();
823 QualType QT = Dst.getType();
824 GenDefaultInitializeFuncName GenName(DstPtr.getAlignment(), getContext());
825 std::string FuncName = GenName.getName(QT, IsVolatile);
826 callSpecialFunction(GenDefaultInitialize(getContext()), FuncName, QT,
827 IsVolatile, *this, std::array<Address, 1>({{DstPtr}}));
828}
829
Akira Hatanaka9978da32018-08-10 15:09:24 +0000830std::string
831CodeGenFunction::getNonTrivialCopyConstructorStr(QualType QT,
832 CharUnits Alignment,
833 bool IsVolatile,
834 ASTContext &Ctx) {
835 GenBinaryFuncName<false> GenName("", Alignment, Alignment, Ctx);
836 return GenName.getName(QT, IsVolatile);
837}
838
839std::string
840CodeGenFunction::getNonTrivialDestructorStr(QualType QT, CharUnits Alignment,
841 bool IsVolatile, ASTContext &Ctx) {
842 GenDestructorFuncName GenName("", Alignment, Ctx);
843 return GenName.getName(QT, IsVolatile);
844}
845
Akira Hatanaka7275da02018-02-28 07:15:55 +0000846void CodeGenFunction::callCStructDestructor(LValue Dst) {
847 bool IsVolatile = Dst.isVolatile();
848 Address DstPtr = Dst.getAddress();
849 QualType QT = Dst.getType();
Akira Hatanaka9978da32018-08-10 15:09:24 +0000850 GenDestructorFuncName GenName("__destructor_", DstPtr.getAlignment(),
851 getContext());
Akira Hatanaka7275da02018-02-28 07:15:55 +0000852 std::string FuncName = GenName.getName(QT, IsVolatile);
853 callSpecialFunction(GenDestructor(getContext()), FuncName, QT, IsVolatile,
854 *this, std::array<Address, 1>({{DstPtr}}));
855}
856
857void CodeGenFunction::callCStructCopyConstructor(LValue Dst, LValue Src) {
858 bool IsVolatile = Dst.isVolatile() || Src.isVolatile();
859 Address DstPtr = Dst.getAddress(), SrcPtr = Src.getAddress();
860 QualType QT = Dst.getType();
861 GenBinaryFuncName<false> GenName("__copy_constructor_", DstPtr.getAlignment(),
862 SrcPtr.getAlignment(), getContext());
863 std::string FuncName = GenName.getName(QT, IsVolatile);
864 callSpecialFunction(GenCopyConstructor(getContext()), FuncName, QT,
865 IsVolatile, *this,
866 std::array<Address, 2>({{DstPtr, SrcPtr}}));
867}
868
869void CodeGenFunction::callCStructCopyAssignmentOperator(LValue Dst, LValue Src
870
871) {
872 bool IsVolatile = Dst.isVolatile() || Src.isVolatile();
873 Address DstPtr = Dst.getAddress(), SrcPtr = Src.getAddress();
874 QualType QT = Dst.getType();
875 GenBinaryFuncName<false> GenName("__copy_assignment_", DstPtr.getAlignment(),
876 SrcPtr.getAlignment(), getContext());
877 std::string FuncName = GenName.getName(QT, IsVolatile);
878 callSpecialFunction(GenCopyAssignment(getContext()), FuncName, QT, IsVolatile,
879 *this, std::array<Address, 2>({{DstPtr, SrcPtr}}));
880}
881
882void CodeGenFunction::callCStructMoveConstructor(LValue Dst, LValue Src) {
883 bool IsVolatile = Dst.isVolatile() || Src.isVolatile();
884 Address DstPtr = Dst.getAddress(), SrcPtr = Src.getAddress();
885 QualType QT = Dst.getType();
886 GenBinaryFuncName<true> GenName("__move_constructor_", DstPtr.getAlignment(),
887 SrcPtr.getAlignment(), getContext());
888 std::string FuncName = GenName.getName(QT, IsVolatile);
889 callSpecialFunction(GenMoveConstructor(getContext()), FuncName, QT,
890 IsVolatile, *this,
891 std::array<Address, 2>({{DstPtr, SrcPtr}}));
892}
893
894void CodeGenFunction::callCStructMoveAssignmentOperator(LValue Dst, LValue Src
895
896) {
897 bool IsVolatile = Dst.isVolatile() || Src.isVolatile();
898 Address DstPtr = Dst.getAddress(), SrcPtr = Src.getAddress();
899 QualType QT = Dst.getType();
900 GenBinaryFuncName<true> GenName("__move_assignment_", DstPtr.getAlignment(),
901 SrcPtr.getAlignment(), getContext());
902 std::string FuncName = GenName.getName(QT, IsVolatile);
903 callSpecialFunction(GenMoveAssignment(getContext()), FuncName, QT, IsVolatile,
904 *this, std::array<Address, 2>({{DstPtr, SrcPtr}}));
905}