CodeGenFunction.h revision eb1a1b6df0ba8d6d42e16f056cf54a2c87780ffe
1//===-- CodeGenFunction.h - Per-Function state for LLVM CodeGen -*- C++ -*-===// 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 is the internal per-function state used for llvm translation. 11// 12//===----------------------------------------------------------------------===// 13 14#ifndef CLANG_CODEGEN_CODEGENFUNCTION_H 15#define CLANG_CODEGEN_CODEGENFUNCTION_H 16 17#include "clang/AST/Type.h" 18#include "clang/AST/ExprCXX.h" 19#include "clang/AST/ExprObjC.h" 20#include "clang/Basic/TargetInfo.h" 21#include "llvm/ADT/DenseMap.h" 22#include "llvm/ADT/SmallVector.h" 23#include "llvm/Support/ValueHandle.h" 24#include <map> 25#include "CodeGenModule.h" 26#include "CGBlocks.h" 27#include "CGBuilder.h" 28#include "CGCall.h" 29#include "CGCXX.h" 30#include "CGValue.h" 31 32namespace llvm { 33 class BasicBlock; 34 class LLVMContext; 35 class Module; 36 class SwitchInst; 37 class Value; 38} 39 40namespace clang { 41 class ASTContext; 42 class CXXDestructorDecl; 43 class Decl; 44 class EnumConstantDecl; 45 class FunctionDecl; 46 class FunctionProtoType; 47 class LabelStmt; 48 class ObjCContainerDecl; 49 class ObjCInterfaceDecl; 50 class ObjCIvarDecl; 51 class ObjCMethodDecl; 52 class ObjCImplementationDecl; 53 class ObjCPropertyImplDecl; 54 class TargetInfo; 55 class VarDecl; 56 class ObjCForCollectionStmt; 57 class ObjCAtTryStmt; 58 class ObjCAtThrowStmt; 59 class ObjCAtSynchronizedStmt; 60 61namespace CodeGen { 62 class CodeGenModule; 63 class CodeGenTypes; 64 class CGDebugInfo; 65 class CGFunctionInfo; 66 class CGRecordLayout; 67 68/// CodeGenFunction - This class organizes the per-function state that is used 69/// while generating LLVM code. 70class CodeGenFunction : public BlockFunction { 71 CodeGenFunction(const CodeGenFunction&); // DO NOT IMPLEMENT 72 void operator=(const CodeGenFunction&); // DO NOT IMPLEMENT 73public: 74 CodeGenModule &CGM; // Per-module state. 75 TargetInfo &Target; 76 77 typedef std::pair<llvm::Value *, llvm::Value *> ComplexPairTy; 78 CGBuilderTy Builder; 79 80 /// CurFuncDecl - Holds the Decl for the current function or ObjC method. 81 /// This excludes BlockDecls. 82 const Decl *CurFuncDecl; 83 /// CurCodeDecl - This is the inner-most code context, which includes blocks. 84 const Decl *CurCodeDecl; 85 const CGFunctionInfo *CurFnInfo; 86 QualType FnRetTy; 87 llvm::Function *CurFn; 88 89 /// ReturnBlock - Unified return block. 90 llvm::BasicBlock *ReturnBlock; 91 /// ReturnValue - The temporary alloca to hold the return value. This is null 92 /// iff the function has no return value. 93 llvm::Instruction *ReturnValue; 94 95 /// AllocaInsertPoint - This is an instruction in the entry block before which 96 /// we prefer to insert allocas. 97 llvm::AssertingVH<llvm::Instruction> AllocaInsertPt; 98 99 const llvm::Type *LLVMIntTy; 100 uint32_t LLVMPointerWidth; 101 102public: 103 /// ObjCEHValueStack - Stack of Objective-C exception values, used for 104 /// rethrows. 105 llvm::SmallVector<llvm::Value*, 8> ObjCEHValueStack; 106 107 /// PushCleanupBlock - Push a new cleanup entry on the stack and set the 108 /// passed in block as the cleanup block. 109 void PushCleanupBlock(llvm::BasicBlock *CleanupBlock); 110 111 /// CleanupBlockInfo - A struct representing a popped cleanup block. 112 struct CleanupBlockInfo { 113 /// CleanupBlock - the cleanup block 114 llvm::BasicBlock *CleanupBlock; 115 116 /// SwitchBlock - the block (if any) containing the switch instruction used 117 /// for jumping to the final destination. 118 llvm::BasicBlock *SwitchBlock; 119 120 /// EndBlock - the default destination for the switch instruction. 121 llvm::BasicBlock *EndBlock; 122 123 CleanupBlockInfo(llvm::BasicBlock *cb, llvm::BasicBlock *sb, 124 llvm::BasicBlock *eb) 125 : CleanupBlock(cb), SwitchBlock(sb), EndBlock(eb) {} 126 }; 127 128 /// PopCleanupBlock - Will pop the cleanup entry on the stack, process all 129 /// branch fixups and return a block info struct with the switch block and end 130 /// block. 131 CleanupBlockInfo PopCleanupBlock(); 132 133 /// CleanupScope - RAII object that will create a cleanup block and set the 134 /// insert point to that block. When destructed, it sets the insert point to 135 /// the previous block and pushes a new cleanup entry on the stack. 136 class CleanupScope { 137 CodeGenFunction& CGF; 138 llvm::BasicBlock *CurBB; 139 llvm::BasicBlock *CleanupBB; 140 141 public: 142 CleanupScope(CodeGenFunction &cgf) 143 : CGF(cgf), CurBB(CGF.Builder.GetInsertBlock()) { 144 CleanupBB = CGF.createBasicBlock("cleanup"); 145 CGF.Builder.SetInsertPoint(CleanupBB); 146 } 147 148 ~CleanupScope() { 149 CGF.PushCleanupBlock(CleanupBB); 150 // FIXME: This is silly, move this into the builder. 151 if (CurBB) 152 CGF.Builder.SetInsertPoint(CurBB); 153 else 154 CGF.Builder.ClearInsertionPoint(); 155 } 156 }; 157 158 /// EmitCleanupBlocks - Takes the old cleanup stack size and emits the cleanup 159 /// blocks that have been added. 160 void EmitCleanupBlocks(size_t OldCleanupStackSize); 161 162 /// EmitBranchThroughCleanup - Emit a branch from the current insert block 163 /// through the cleanup handling code (if any) and then on to \arg Dest. 164 /// 165 /// FIXME: Maybe this should really be in EmitBranch? Don't we always want 166 /// this behavior for branches? 167 void EmitBranchThroughCleanup(llvm::BasicBlock *Dest); 168 169 /// PushConditionalTempDestruction - Should be called before a conditional 170 /// part of an expression is emitted. For example, before the RHS of the 171 /// expression below is emitted: 172 /// 173 /// b && f(T()); 174 /// 175 /// This is used to make sure that any temporaryes created in the conditional 176 /// branch are only destroyed if the branch is taken. 177 void PushConditionalTempDestruction(); 178 179 /// PopConditionalTempDestruction - Should be called after a conditional 180 /// part of an expression has been emitted. 181 void PopConditionalTempDestruction(); 182 183private: 184 CGDebugInfo* DebugInfo; 185 186 /// LabelIDs - Track arbitrary ids assigned to labels for use in implementing 187 /// the GCC address-of-label extension and indirect goto. IDs are assigned to 188 /// labels inside getIDForAddrOfLabel(). 189 std::map<const LabelStmt*, unsigned> LabelIDs; 190 191 /// IndirectSwitches - Record the list of switches for indirect 192 /// gotos. Emission of the actual switching code needs to be delayed until all 193 /// AddrLabelExprs have been seen. 194 std::vector<llvm::SwitchInst*> IndirectSwitches; 195 196 /// LocalDeclMap - This keeps track of the LLVM allocas or globals for local C 197 /// decls. 198 llvm::DenseMap<const Decl*, llvm::Value*> LocalDeclMap; 199 200 /// LabelMap - This keeps track of the LLVM basic block for each C label. 201 llvm::DenseMap<const LabelStmt*, llvm::BasicBlock*> LabelMap; 202 203 // BreakContinueStack - This keeps track of where break and continue 204 // statements should jump to. 205 struct BreakContinue { 206 BreakContinue(llvm::BasicBlock *bb, llvm::BasicBlock *cb) 207 : BreakBlock(bb), ContinueBlock(cb) {} 208 209 llvm::BasicBlock *BreakBlock; 210 llvm::BasicBlock *ContinueBlock; 211 }; 212 llvm::SmallVector<BreakContinue, 8> BreakContinueStack; 213 214 /// SwitchInsn - This is nearest current switch instruction. It is null if if 215 /// current context is not in a switch. 216 llvm::SwitchInst *SwitchInsn; 217 218 /// CaseRangeBlock - This block holds if condition check for last case 219 /// statement range in current switch instruction. 220 llvm::BasicBlock *CaseRangeBlock; 221 222 /// InvokeDest - This is the nearest exception target for calls 223 /// which can unwind, when exceptions are being used. 224 llvm::BasicBlock *InvokeDest; 225 226 // VLASizeMap - This keeps track of the associated size for each VLA type. 227 // We track this by the size expression rather than the type itself because 228 // in certain situations, like a const qualifier applied to an VLA typedef, 229 // multiple VLA types can share the same size expression. 230 // FIXME: Maybe this could be a stack of maps that is pushed/popped as we 231 // enter/leave scopes. 232 llvm::DenseMap<const Expr*, llvm::Value*> VLASizeMap; 233 234 /// DidCallStackSave - Whether llvm.stacksave has been called. Used to avoid 235 /// calling llvm.stacksave for multiple VLAs in the same scope. 236 bool DidCallStackSave; 237 238 struct CleanupEntry { 239 /// CleanupBlock - The block of code that does the actual cleanup. 240 llvm::BasicBlock *CleanupBlock; 241 242 /// Blocks - Basic blocks that were emitted in the current cleanup scope. 243 std::vector<llvm::BasicBlock *> Blocks; 244 245 /// BranchFixups - Branch instructions to basic blocks that haven't been 246 /// inserted into the current function yet. 247 std::vector<llvm::BranchInst *> BranchFixups; 248 249 explicit CleanupEntry(llvm::BasicBlock *cb) 250 : CleanupBlock(cb) {} 251 }; 252 253 /// CleanupEntries - Stack of cleanup entries. 254 llvm::SmallVector<CleanupEntry, 8> CleanupEntries; 255 256 typedef llvm::DenseMap<llvm::BasicBlock*, size_t> BlockScopeMap; 257 258 /// BlockScopes - Map of which "cleanup scope" scope basic blocks have. 259 BlockScopeMap BlockScopes; 260 261 /// CXXThisDecl - When parsing an C++ function, this will hold the implicit 262 /// 'this' declaration. 263 ImplicitParamDecl *CXXThisDecl; 264 265 /// CXXLiveTemporaryInfo - Holds information about a live C++ temporary. 266 struct CXXLiveTemporaryInfo { 267 /// Temporary - The live temporary. 268 const CXXTemporary *Temporary; 269 270 /// ThisPtr - The pointer to the temporary. 271 llvm::Value *ThisPtr; 272 273 /// DtorBlock - The destructor block. 274 llvm::BasicBlock *DtorBlock; 275 276 /// CondPtr - If this is a conditional temporary, this is the pointer to 277 /// the condition variable that states whether the destructor should be 278 /// called or not. 279 llvm::Value *CondPtr; 280 281 CXXLiveTemporaryInfo(const CXXTemporary *temporary, 282 llvm::Value *thisptr, llvm::BasicBlock *dtorblock, 283 llvm::Value *condptr) 284 : Temporary(temporary), ThisPtr(thisptr), DtorBlock(dtorblock), 285 CondPtr(condptr) { } 286 }; 287 288 llvm::SmallVector<CXXLiveTemporaryInfo, 4> LiveTemporaries; 289 290 /// ConditionalTempDestructionStack - Contains the number of live temporaries 291 /// when PushConditionalTempDestruction was called. This is used so that 292 /// we know how many temporaries were created by a certain expression. 293 llvm::SmallVector<size_t, 4> ConditionalTempDestructionStack; 294 295public: 296 CodeGenFunction(CodeGenModule &cgm); 297 298 ASTContext &getContext() const; 299 CGDebugInfo *getDebugInfo() { return DebugInfo; } 300 301 llvm::BasicBlock *getInvokeDest() { return InvokeDest; } 302 void setInvokeDest(llvm::BasicBlock *B) { InvokeDest = B; } 303 304 llvm::LLVMContext &getLLVMContext() { return VMContext; } 305 306 //===--------------------------------------------------------------------===// 307 // Objective-C 308 //===--------------------------------------------------------------------===// 309 310 void GenerateObjCMethod(const ObjCMethodDecl *OMD); 311 312 void StartObjCMethod(const ObjCMethodDecl *MD, 313 const ObjCContainerDecl *CD); 314 315 /// GenerateObjCGetter - Synthesize an Objective-C property getter function. 316 void GenerateObjCGetter(ObjCImplementationDecl *IMP, 317 const ObjCPropertyImplDecl *PID); 318 319 /// GenerateObjCSetter - Synthesize an Objective-C property setter function 320 /// for the given property. 321 void GenerateObjCSetter(ObjCImplementationDecl *IMP, 322 const ObjCPropertyImplDecl *PID); 323 324 //===--------------------------------------------------------------------===// 325 // Block Bits 326 //===--------------------------------------------------------------------===// 327 328 llvm::Value *BuildBlockLiteralTmp(const BlockExpr *); 329 llvm::Constant *BuildDescriptorBlockDecl(bool BlockHasCopyDispose, 330 uint64_t Size, 331 const llvm::StructType *, 332 std::vector<HelperInfo> *); 333 334 llvm::Function *GenerateBlockFunction(const BlockExpr *BExpr, 335 const BlockInfo& Info, 336 const Decl *OuterFuncDecl, 337 llvm::DenseMap<const Decl*, llvm::Value*> ldm, 338 uint64_t &Size, uint64_t &Align, 339 llvm::SmallVector<const Expr *, 8> &subBlockDeclRefDecls, 340 bool &subBlockHasCopyDispose); 341 342 void BlockForwardSelf(); 343 llvm::Value *LoadBlockStruct(); 344 345 llvm::Value *GetAddrOfBlockDecl(const BlockDeclRefExpr *E); 346 347 const llvm::Type *BuildByRefType(QualType Ty, uint64_t Align); 348 349 void GenerateCode(const FunctionDecl *FD, 350 llvm::Function *Fn); 351 void StartFunction(const Decl *D, QualType RetTy, 352 llvm::Function *Fn, 353 const FunctionArgList &Args, 354 SourceLocation StartLoc); 355 356 /// EmitReturnBlock - Emit the unified return block, trying to avoid its 357 /// emission when possible. 358 void EmitReturnBlock(); 359 360 /// FinishFunction - Complete IR generation of the current function. It is 361 /// legal to call this function even if there is no current insertion point. 362 void FinishFunction(SourceLocation EndLoc=SourceLocation()); 363 364 /// GenerateVtable - Generate the vtable for the given type. 365 llvm::Value *GenerateVtable(const CXXRecordDecl *RD); 366 367 void EmitCtorPrologue(const CXXConstructorDecl *CD); 368 369 void SynthesizeCXXCopyConstructor(const CXXConstructorDecl *CD, 370 const FunctionDecl *FD, 371 llvm::Function *Fn, 372 const FunctionArgList &Args); 373 374 void SynthesizeCXXCopyAssignment(const CXXMethodDecl *CD, 375 const FunctionDecl *FD, 376 llvm::Function *Fn, 377 const FunctionArgList &Args); 378 379 void SynthesizeDefaultConstructor(const CXXConstructorDecl *CD, 380 const FunctionDecl *FD, 381 llvm::Function *Fn, 382 const FunctionArgList &Args); 383 384 void SynthesizeDefaultDestructor(const CXXDestructorDecl *CD, 385 const FunctionDecl *FD, 386 llvm::Function *Fn, 387 const FunctionArgList &Args); 388 389 /// EmitDtorEpilogue - Emit all code that comes at the end of class's 390 /// destructor. This is to call destructors on members and base classes 391 /// in reverse order of their construction. 392 void EmitDtorEpilogue(const CXXDestructorDecl *DD); 393 394 /// EmitFunctionProlog - Emit the target specific LLVM code to load the 395 /// arguments for the given function. This is also responsible for naming the 396 /// LLVM function arguments. 397 void EmitFunctionProlog(const CGFunctionInfo &FI, 398 llvm::Function *Fn, 399 const FunctionArgList &Args); 400 401 /// EmitFunctionEpilog - Emit the target specific LLVM code to return the 402 /// given temporary. 403 void EmitFunctionEpilog(const CGFunctionInfo &FI, llvm::Value *ReturnValue); 404 405 const llvm::Type *ConvertTypeForMem(QualType T); 406 const llvm::Type *ConvertType(QualType T); 407 408 /// LoadObjCSelf - Load the value of self. This function is only valid while 409 /// generating code for an Objective-C method. 410 llvm::Value *LoadObjCSelf(); 411 412 /// TypeOfSelfObject - Return type of object that this self represents. 413 QualType TypeOfSelfObject(); 414 415 /// hasAggregateLLVMType - Return true if the specified AST type will map into 416 /// an aggregate LLVM type or is void. 417 static bool hasAggregateLLVMType(QualType T); 418 419 /// createBasicBlock - Create an LLVM basic block. 420 llvm::BasicBlock *createBasicBlock(const char *Name="", 421 llvm::Function *Parent=0, 422 llvm::BasicBlock *InsertBefore=0) { 423#ifdef NDEBUG 424 return llvm::BasicBlock::Create(VMContext, "", Parent, InsertBefore); 425#else 426 return llvm::BasicBlock::Create(VMContext, Name, Parent, InsertBefore); 427#endif 428 } 429 430 /// getBasicBlockForLabel - Return the LLVM basicblock that the specified 431 /// label maps to. 432 llvm::BasicBlock *getBasicBlockForLabel(const LabelStmt *S); 433 434 /// SimplifyForwardingBlocks - If the given basic block is only a 435 /// branch to another basic block, simplify it. This assumes that no 436 /// other code could potentially reference the basic block. 437 void SimplifyForwardingBlocks(llvm::BasicBlock *BB); 438 439 /// EmitBlock - Emit the given block \arg BB and set it as the insert point, 440 /// adding a fall-through branch from the current insert block if 441 /// necessary. It is legal to call this function even if there is no current 442 /// insertion point. 443 /// 444 /// IsFinished - If true, indicates that the caller has finished emitting 445 /// branches to the given block and does not expect to emit code into it. This 446 /// means the block can be ignored if it is unreachable. 447 void EmitBlock(llvm::BasicBlock *BB, bool IsFinished=false); 448 449 /// EmitBranch - Emit a branch to the specified basic block from the current 450 /// insert block, taking care to avoid creation of branches from dummy 451 /// blocks. It is legal to call this function even if there is no current 452 /// insertion point. 453 /// 454 /// This function clears the current insertion point. The caller should follow 455 /// calls to this function with calls to Emit*Block prior to generation new 456 /// code. 457 void EmitBranch(llvm::BasicBlock *Block); 458 459 /// HaveInsertPoint - True if an insertion point is defined. If not, this 460 /// indicates that the current code being emitted is unreachable. 461 bool HaveInsertPoint() const { 462 return Builder.GetInsertBlock() != 0; 463 } 464 465 /// EnsureInsertPoint - Ensure that an insertion point is defined so that 466 /// emitted IR has a place to go. Note that by definition, if this function 467 /// creates a block then that block is unreachable; callers may do better to 468 /// detect when no insertion point is defined and simply skip IR generation. 469 void EnsureInsertPoint() { 470 if (!HaveInsertPoint()) 471 EmitBlock(createBasicBlock()); 472 } 473 474 /// ErrorUnsupported - Print out an error that codegen doesn't support the 475 /// specified stmt yet. 476 void ErrorUnsupported(const Stmt *S, const char *Type, 477 bool OmitOnError=false); 478 479 //===--------------------------------------------------------------------===// 480 // Helpers 481 //===--------------------------------------------------------------------===// 482 483 /// CreateTempAlloca - This creates a alloca and inserts it into the entry 484 /// block. 485 llvm::AllocaInst *CreateTempAlloca(const llvm::Type *Ty, 486 const char *Name = "tmp"); 487 488 /// EvaluateExprAsBool - Perform the usual unary conversions on the specified 489 /// expression and compare the result against zero, returning an Int1Ty value. 490 llvm::Value *EvaluateExprAsBool(const Expr *E); 491 492 /// EmitAnyExpr - Emit code to compute the specified expression which can have 493 /// any type. The result is returned as an RValue struct. If this is an 494 /// aggregate expression, the aggloc/agglocvolatile arguments indicate where 495 /// the result should be returned. 496 /// 497 /// \param IgnoreResult - True if the resulting value isn't used. 498 RValue EmitAnyExpr(const Expr *E, llvm::Value *AggLoc = 0, 499 bool IsAggLocVolatile = false, bool IgnoreResult = false, 500 bool IsInitializer = false); 501 502 // EmitVAListRef - Emit a "reference" to a va_list; this is either the address 503 // or the value of the expression, depending on how va_list is defined. 504 llvm::Value *EmitVAListRef(const Expr *E); 505 506 /// EmitAnyExprToTemp - Similary to EmitAnyExpr(), however, the result will 507 /// always be accessible even if no aggregate location is provided. 508 RValue EmitAnyExprToTemp(const Expr *E, bool IsAggLocVolatile = false, 509 bool IsInitializer = false); 510 511 /// EmitAggregateCopy - Emit an aggrate copy. 512 /// 513 /// \param isVolatile - True iff either the source or the destination is 514 /// volatile. 515 void EmitAggregateCopy(llvm::Value *DestPtr, llvm::Value *SrcPtr, 516 QualType EltTy, bool isVolatile=false); 517 518 void EmitAggregateClear(llvm::Value *DestPtr, QualType Ty); 519 520 /// StartBlock - Start new block named N. If insert block is a dummy block 521 /// then reuse it. 522 void StartBlock(const char *N); 523 524 /// GetAddrOfStaticLocalVar - Return the address of a static local variable. 525 llvm::Constant *GetAddrOfStaticLocalVar(const VarDecl *BVD); 526 527 /// GetAddrOfLocalVar - Return the address of a local variable. 528 llvm::Value *GetAddrOfLocalVar(const VarDecl *VD); 529 530 /// getAccessedFieldNo - Given an encoded value and a result number, return 531 /// the input field number being accessed. 532 static unsigned getAccessedFieldNo(unsigned Idx, const llvm::Constant *Elts); 533 534 unsigned GetIDForAddrOfLabel(const LabelStmt *L); 535 536 /// EmitMemSetToZero - Generate code to memset a value of the given type to 0. 537 void EmitMemSetToZero(llvm::Value *DestPtr, QualType Ty); 538 539 // EmitVAArg - Generate code to get an argument from the passed in pointer 540 // and update it accordingly. The return value is a pointer to the argument. 541 // FIXME: We should be able to get rid of this method and use the va_arg 542 // instruction in LLVM instead once it works well enough. 543 llvm::Value *EmitVAArg(llvm::Value *VAListAddr, QualType Ty); 544 545 // EmitVLASize - Generate code for any VLA size expressions that might occur 546 // in a variably modified type. If Ty is a VLA, will return the value that 547 // corresponds to the size in bytes of the VLA type. Will return 0 otherwise. 548 /// 549 /// This function can be called with a null (unreachable) insert point. 550 llvm::Value *EmitVLASize(QualType Ty); 551 552 // GetVLASize - Returns an LLVM value that corresponds to the size in bytes 553 // of a variable length array type. 554 llvm::Value *GetVLASize(const VariableArrayType *); 555 556 /// LoadCXXThis - Load the value of 'this'. This function is only valid while 557 /// generating code for an C++ member function. 558 llvm::Value *LoadCXXThis(); 559 560 /// AddressCXXOfBaseClass - This function will add the necessary delta 561 /// to the load of 'this' and returns address of the base class. 562 // FIXME. This currently only does a derived to non-virtual base conversion. 563 // Other kinds of conversions will come later. 564 llvm::Value *AddressCXXOfBaseClass(llvm::Value *ThisValue, 565 const CXXRecordDecl *ClassDecl, 566 const CXXRecordDecl *BaseClassDecl); 567 568 void EmitClassAggrMemberwiseCopy(llvm::Value *DestValue, 569 llvm::Value *SrcValue, 570 const ArrayType *Array, 571 const CXXRecordDecl *BaseClassDecl, 572 QualType Ty); 573 574 void EmitClassAggrCopyAssignment(llvm::Value *DestValue, 575 llvm::Value *SrcValue, 576 const ArrayType *Array, 577 const CXXRecordDecl *BaseClassDecl, 578 QualType Ty); 579 580 void EmitClassMemberwiseCopy(llvm::Value *DestValue, llvm::Value *SrcValue, 581 const CXXRecordDecl *ClassDecl, 582 const CXXRecordDecl *BaseClassDecl, 583 QualType Ty); 584 585 void EmitClassCopyAssignment(llvm::Value *DestValue, llvm::Value *SrcValue, 586 const CXXRecordDecl *ClassDecl, 587 const CXXRecordDecl *BaseClassDecl, 588 QualType Ty); 589 590 void EmitCXXConstructorCall(const CXXConstructorDecl *D, CXXCtorType Type, 591 llvm::Value *This, 592 CallExpr::const_arg_iterator ArgBeg, 593 CallExpr::const_arg_iterator ArgEnd); 594 595 void EmitCXXAggrConstructorCall(const CXXConstructorDecl *D, 596 const ArrayType *Array, 597 llvm::Value *This); 598 599 void EmitCXXAggrDestructorCall(const CXXDestructorDecl *D, 600 const ArrayType *Array, 601 llvm::Value *This); 602 603 void EmitCXXDestructorCall(const CXXDestructorDecl *D, CXXDtorType Type, 604 llvm::Value *This); 605 606 void PushCXXTemporary(const CXXTemporary *Temporary, llvm::Value *Ptr); 607 void PopCXXTemporary(); 608 609 llvm::Value *EmitCXXNewExpr(const CXXNewExpr *E); 610 void EmitCXXDeleteExpr(const CXXDeleteExpr *E); 611 612 //===--------------------------------------------------------------------===// 613 // Declaration Emission 614 //===--------------------------------------------------------------------===// 615 616 /// EmitDecl - Emit a declaration. 617 /// 618 /// This function can be called with a null (unreachable) insert point. 619 void EmitDecl(const Decl &D); 620 621 /// EmitBlockVarDecl - Emit a block variable declaration. 622 /// 623 /// This function can be called with a null (unreachable) insert point. 624 void EmitBlockVarDecl(const VarDecl &D); 625 626 /// EmitLocalBlockVarDecl - Emit a local block variable declaration. 627 /// 628 /// This function can be called with a null (unreachable) insert point. 629 void EmitLocalBlockVarDecl(const VarDecl &D); 630 631 void EmitStaticBlockVarDecl(const VarDecl &D); 632 633 /// EmitParmDecl - Emit a ParmVarDecl or an ImplicitParamDecl. 634 void EmitParmDecl(const VarDecl &D, llvm::Value *Arg); 635 636 //===--------------------------------------------------------------------===// 637 // Statement Emission 638 //===--------------------------------------------------------------------===// 639 640 /// EmitStopPoint - Emit a debug stoppoint if we are emitting debug info. 641 void EmitStopPoint(const Stmt *S); 642 643 /// EmitStmt - Emit the code for the statement \arg S. It is legal to call 644 /// this function even if there is no current insertion point. 645 /// 646 /// This function may clear the current insertion point; callers should use 647 /// EnsureInsertPoint if they wish to subsequently generate code without first 648 /// calling EmitBlock, EmitBranch, or EmitStmt. 649 void EmitStmt(const Stmt *S); 650 651 /// EmitSimpleStmt - Try to emit a "simple" statement which does not 652 /// necessarily require an insertion point or debug information; typically 653 /// because the statement amounts to a jump or a container of other 654 /// statements. 655 /// 656 /// \return True if the statement was handled. 657 bool EmitSimpleStmt(const Stmt *S); 658 659 RValue EmitCompoundStmt(const CompoundStmt &S, bool GetLast = false, 660 llvm::Value *AggLoc = 0, bool isAggVol = false); 661 662 /// EmitLabel - Emit the block for the given label. It is legal to call this 663 /// function even if there is no current insertion point. 664 void EmitLabel(const LabelStmt &S); // helper for EmitLabelStmt. 665 666 void EmitLabelStmt(const LabelStmt &S); 667 void EmitGotoStmt(const GotoStmt &S); 668 void EmitIndirectGotoStmt(const IndirectGotoStmt &S); 669 void EmitIfStmt(const IfStmt &S); 670 void EmitWhileStmt(const WhileStmt &S); 671 void EmitDoStmt(const DoStmt &S); 672 void EmitForStmt(const ForStmt &S); 673 void EmitReturnStmt(const ReturnStmt &S); 674 void EmitDeclStmt(const DeclStmt &S); 675 void EmitBreakStmt(const BreakStmt &S); 676 void EmitContinueStmt(const ContinueStmt &S); 677 void EmitSwitchStmt(const SwitchStmt &S); 678 void EmitDefaultStmt(const DefaultStmt &S); 679 void EmitCaseStmt(const CaseStmt &S); 680 void EmitCaseStmtRange(const CaseStmt &S); 681 void EmitAsmStmt(const AsmStmt &S); 682 683 void EmitObjCForCollectionStmt(const ObjCForCollectionStmt &S); 684 void EmitObjCAtTryStmt(const ObjCAtTryStmt &S); 685 void EmitObjCAtThrowStmt(const ObjCAtThrowStmt &S); 686 void EmitObjCAtSynchronizedStmt(const ObjCAtSynchronizedStmt &S); 687 688 //===--------------------------------------------------------------------===// 689 // LValue Expression Emission 690 //===--------------------------------------------------------------------===// 691 692 /// GetUndefRValue - Get an appropriate 'undef' rvalue for the given type. 693 RValue GetUndefRValue(QualType Ty); 694 695 /// EmitUnsupportedRValue - Emit a dummy r-value using the type of E 696 /// and issue an ErrorUnsupported style diagnostic (using the 697 /// provided Name). 698 RValue EmitUnsupportedRValue(const Expr *E, 699 const char *Name); 700 701 /// EmitUnsupportedLValue - Emit a dummy l-value using the type of E and issue 702 /// an ErrorUnsupported style diagnostic (using the provided Name). 703 LValue EmitUnsupportedLValue(const Expr *E, 704 const char *Name); 705 706 /// EmitLValue - Emit code to compute a designator that specifies the location 707 /// of the expression. 708 /// 709 /// This can return one of two things: a simple address or a bitfield 710 /// reference. In either case, the LLVM Value* in the LValue structure is 711 /// guaranteed to be an LLVM pointer type. 712 /// 713 /// If this returns a bitfield reference, nothing about the pointee type of 714 /// the LLVM value is known: For example, it may not be a pointer to an 715 /// integer. 716 /// 717 /// If this returns a normal address, and if the lvalue's C type is fixed 718 /// size, this method guarantees that the returned pointer type will point to 719 /// an LLVM type of the same size of the lvalue's type. If the lvalue has a 720 /// variable length type, this is not possible. 721 /// 722 LValue EmitLValue(const Expr *E); 723 724 /// EmitLoadOfScalar - Load a scalar value from an address, taking 725 /// care to appropriately convert from the memory representation to 726 /// the LLVM value representation. 727 llvm::Value *EmitLoadOfScalar(llvm::Value *Addr, bool Volatile, 728 QualType Ty); 729 730 /// EmitStoreOfScalar - Store a scalar value to an address, taking 731 /// care to appropriately convert from the memory representation to 732 /// the LLVM value representation. 733 void EmitStoreOfScalar(llvm::Value *Value, llvm::Value *Addr, 734 bool Volatile, QualType Ty); 735 736 /// EmitLoadOfLValue - Given an expression that represents a value lvalue, 737 /// this method emits the address of the lvalue, then loads the result as an 738 /// rvalue, returning the rvalue. 739 RValue EmitLoadOfLValue(LValue V, QualType LVType); 740 RValue EmitLoadOfExtVectorElementLValue(LValue V, QualType LVType); 741 RValue EmitLoadOfBitfieldLValue(LValue LV, QualType ExprType); 742 RValue EmitLoadOfPropertyRefLValue(LValue LV, QualType ExprType); 743 RValue EmitLoadOfKVCRefLValue(LValue LV, QualType ExprType); 744 745 746 /// EmitStoreThroughLValue - Store the specified rvalue into the specified 747 /// lvalue, where both are guaranteed to the have the same type, and that type 748 /// is 'Ty'. 749 void EmitStoreThroughLValue(RValue Src, LValue Dst, QualType Ty); 750 void EmitStoreThroughExtVectorComponentLValue(RValue Src, LValue Dst, 751 QualType Ty); 752 void EmitStoreThroughPropertyRefLValue(RValue Src, LValue Dst, QualType Ty); 753 void EmitStoreThroughKVCRefLValue(RValue Src, LValue Dst, QualType Ty); 754 755 /// EmitStoreThroughLValue - Store Src into Dst with same constraints as 756 /// EmitStoreThroughLValue. 757 /// 758 /// \param Result [out] - If non-null, this will be set to a Value* for the 759 /// bit-field contents after the store, appropriate for use as the result of 760 /// an assignment to the bit-field. 761 void EmitStoreThroughBitfieldLValue(RValue Src, LValue Dst, QualType Ty, 762 llvm::Value **Result=0); 763 764 // Note: only availabe for agg return types 765 LValue EmitBinaryOperatorLValue(const BinaryOperator *E); 766 // Note: only available for agg return types 767 LValue EmitCallExprLValue(const CallExpr *E); 768 // Note: only available for agg return types 769 LValue EmitVAArgExprLValue(const VAArgExpr *E); 770 LValue EmitDeclRefLValue(const DeclRefExpr *E); 771 LValue EmitStringLiteralLValue(const StringLiteral *E); 772 LValue EmitObjCEncodeExprLValue(const ObjCEncodeExpr *E); 773 LValue EmitPredefinedFunctionName(unsigned Type); 774 LValue EmitPredefinedLValue(const PredefinedExpr *E); 775 LValue EmitUnaryOpLValue(const UnaryOperator *E); 776 LValue EmitArraySubscriptExpr(const ArraySubscriptExpr *E); 777 LValue EmitExtVectorElementExpr(const ExtVectorElementExpr *E); 778 LValue EmitMemberExpr(const MemberExpr *E); 779 LValue EmitCompoundLiteralLValue(const CompoundLiteralExpr *E); 780 LValue EmitConditionalOperator(const ConditionalOperator *E); 781 LValue EmitCastLValue(const CastExpr *E); 782 783 llvm::Value *EmitIvarOffset(const ObjCInterfaceDecl *Interface, 784 const ObjCIvarDecl *Ivar); 785 LValue EmitLValueForField(llvm::Value* Base, FieldDecl* Field, 786 bool isUnion, unsigned CVRQualifiers); 787 LValue EmitLValueForIvar(QualType ObjectTy, 788 llvm::Value* Base, const ObjCIvarDecl *Ivar, 789 unsigned CVRQualifiers); 790 791 LValue EmitLValueForBitfield(llvm::Value* Base, FieldDecl* Field, 792 unsigned CVRQualifiers); 793 794 LValue EmitBlockDeclRefLValue(const BlockDeclRefExpr *E); 795 796 LValue EmitCXXConditionDeclLValue(const CXXConditionDeclExpr *E); 797 LValue EmitCXXConstructLValue(const CXXConstructExpr *E); 798 LValue EmitCXXBindTemporaryLValue(const CXXBindTemporaryExpr *E); 799 800 LValue EmitObjCMessageExprLValue(const ObjCMessageExpr *E); 801 LValue EmitObjCIvarRefLValue(const ObjCIvarRefExpr *E); 802 LValue EmitObjCPropertyRefLValue(const ObjCPropertyRefExpr *E); 803 LValue EmitObjCKVCRefLValue(const ObjCImplicitSetterGetterRefExpr *E); 804 LValue EmitObjCSuperExprLValue(const ObjCSuperExpr *E); 805 LValue EmitStmtExprLValue(const StmtExpr *E); 806 807 //===--------------------------------------------------------------------===// 808 // Scalar Expression Emission 809 //===--------------------------------------------------------------------===// 810 811 /// EmitCall - Generate a call of the given function, expecting the given 812 /// result type, and using the given argument list which specifies both the 813 /// LLVM arguments and the types they were derived from. 814 /// 815 /// \param TargetDecl - If given, the decl of the function in a 816 /// direct call; used to set attributes on the call (noreturn, 817 /// etc.). 818 RValue EmitCall(const CGFunctionInfo &FnInfo, 819 llvm::Value *Callee, 820 const CallArgList &Args, 821 const Decl *TargetDecl = 0); 822 823 RValue EmitCall(llvm::Value *Callee, QualType FnType, 824 CallExpr::const_arg_iterator ArgBeg, 825 CallExpr::const_arg_iterator ArgEnd, 826 const Decl *TargetDecl = 0); 827 RValue EmitCallExpr(const CallExpr *E); 828 829 RValue EmitCXXMemberCall(const CXXMethodDecl *MD, 830 llvm::Value *Callee, 831 llvm::Value *This, 832 CallExpr::const_arg_iterator ArgBeg, 833 CallExpr::const_arg_iterator ArgEnd); 834 RValue EmitCXXMemberCallExpr(const CXXMemberCallExpr *E); 835 836 RValue EmitCXXOperatorMemberCallExpr(const CXXOperatorCallExpr *E, 837 const CXXMethodDecl *MD); 838 839 RValue EmitBuiltinExpr(const FunctionDecl *FD, 840 unsigned BuiltinID, const CallExpr *E); 841 842 RValue EmitBlockCallExpr(const CallExpr *E); 843 844 /// EmitTargetBuiltinExpr - Emit the given builtin call. Returns 0 if the call 845 /// is unhandled by the current target. 846 llvm::Value *EmitTargetBuiltinExpr(unsigned BuiltinID, const CallExpr *E); 847 848 llvm::Value *EmitX86BuiltinExpr(unsigned BuiltinID, const CallExpr *E); 849 llvm::Value *EmitPPCBuiltinExpr(unsigned BuiltinID, const CallExpr *E); 850 851 llvm::Value *EmitShuffleVector(llvm::Value* V1, llvm::Value *V2, ...); 852 llvm::Value *EmitVector(llvm::Value * const *Vals, unsigned NumVals, 853 bool isSplat = false); 854 855 llvm::Value *EmitObjCProtocolExpr(const ObjCProtocolExpr *E); 856 llvm::Value *EmitObjCStringLiteral(const ObjCStringLiteral *E); 857 llvm::Value *EmitObjCSelectorExpr(const ObjCSelectorExpr *E); 858 RValue EmitObjCMessageExpr(const ObjCMessageExpr *E); 859 RValue EmitObjCPropertyGet(const Expr *E); 860 RValue EmitObjCSuperPropertyGet(const Expr *Exp, const Selector &S); 861 void EmitObjCPropertySet(const Expr *E, RValue Src); 862 void EmitObjCSuperPropertySet(const Expr *E, const Selector &S, RValue Src); 863 864 865 /// EmitReferenceBindingToExpr - Emits a reference binding to the passed in 866 /// expression. Will emit a temporary variable if E is not an LValue. 867 RValue EmitReferenceBindingToExpr(const Expr* E, QualType DestType, 868 bool IsInitializer = false); 869 870 //===--------------------------------------------------------------------===// 871 // Expression Emission 872 //===--------------------------------------------------------------------===// 873 874 // Expressions are broken into three classes: scalar, complex, aggregate. 875 876 /// EmitScalarExpr - Emit the computation of the specified expression of LLVM 877 /// scalar type, returning the result. 878 llvm::Value *EmitScalarExpr(const Expr *E , bool IgnoreResultAssign = false); 879 880 /// EmitScalarConversion - Emit a conversion from the specified type to the 881 /// specified destination type, both of which are LLVM scalar types. 882 llvm::Value *EmitScalarConversion(llvm::Value *Src, QualType SrcTy, 883 QualType DstTy); 884 885 /// EmitComplexToScalarConversion - Emit a conversion from the specified 886 /// complex type to the specified destination type, where the destination type 887 /// is an LLVM scalar type. 888 llvm::Value *EmitComplexToScalarConversion(ComplexPairTy Src, QualType SrcTy, 889 QualType DstTy); 890 891 892 /// EmitAggExpr - Emit the computation of the specified expression of 893 /// aggregate type. The result is computed into DestPtr. Note that if 894 /// DestPtr is null, the value of the aggregate expression is not needed. 895 void EmitAggExpr(const Expr *E, llvm::Value *DestPtr, bool VolatileDest, 896 bool IgnoreResult = false, bool IsInitializer = false); 897 898 /// EmitGCMemmoveCollectable - Emit special API for structs with object 899 /// pointers. 900 void EmitGCMemmoveCollectable(llvm::Value *DestPtr, llvm::Value *SrcPtr, 901 unsigned long); 902 903 /// EmitComplexExpr - Emit the computation of the specified expression of 904 /// complex type, returning the result. 905 ComplexPairTy EmitComplexExpr(const Expr *E, bool IgnoreReal = false, 906 bool IgnoreImag = false, 907 bool IgnoreRealAssign = false, 908 bool IgnoreImagAssign = false); 909 910 /// EmitComplexExprIntoAddr - Emit the computation of the specified expression 911 /// of complex type, storing into the specified Value*. 912 void EmitComplexExprIntoAddr(const Expr *E, llvm::Value *DestAddr, 913 bool DestIsVolatile); 914 915 /// StoreComplexToAddr - Store a complex number into the specified address. 916 void StoreComplexToAddr(ComplexPairTy V, llvm::Value *DestAddr, 917 bool DestIsVolatile); 918 /// LoadComplexFromAddr - Load a complex number from the specified address. 919 ComplexPairTy LoadComplexFromAddr(llvm::Value *SrcAddr, bool SrcIsVolatile); 920 921 /// CreateStaticBlockVarDecl - Create a zero-initialized LLVM global 922 /// for a static block var decl. 923 llvm::GlobalVariable * CreateStaticBlockVarDecl(const VarDecl &D, 924 const char *Separator, 925 llvm::GlobalValue::LinkageTypes 926 Linkage); 927 928 /// EmitStaticCXXBlockVarDeclInit - Create the initializer for a C++ 929 /// runtime initialized static block var decl. 930 void EmitStaticCXXBlockVarDeclInit(const VarDecl &D, 931 llvm::GlobalVariable *GV); 932 933 /// EmitCXXGlobalVarDeclInit - Create the initializer for a C++ 934 /// variable with global storage. 935 void EmitCXXGlobalVarDeclInit(const VarDecl &D, llvm::Constant *DeclPtr); 936 937 /// EmitCXXGlobalDtorRegistration - Emits a call to register the global ptr 938 /// with the C++ runtime so that its destructor will be called at exit. 939 void EmitCXXGlobalDtorRegistration(const CXXDestructorDecl *Dtor, 940 llvm::Constant *DeclPtr); 941 942 /// GenerateCXXGlobalInitFunc - Generates code for initializing global 943 /// variables. 944 void GenerateCXXGlobalInitFunc(llvm::Function *Fn, 945 const VarDecl **Decls, 946 unsigned NumDecls); 947 948 void EmitCXXConstructExpr(llvm::Value *Dest, const CXXConstructExpr *E); 949 950 RValue EmitCXXExprWithTemporaries(const CXXExprWithTemporaries *E, 951 llvm::Value *AggLoc = 0, 952 bool IsAggLocVolatile = false, 953 bool IsInitializer = false); 954 955 //===--------------------------------------------------------------------===// 956 // Internal Helpers 957 //===--------------------------------------------------------------------===// 958 959 /// ContainsLabel - Return true if the statement contains a label in it. If 960 /// this statement is not executed normally, it not containing a label means 961 /// that we can just remove the code. 962 static bool ContainsLabel(const Stmt *S, bool IgnoreCaseStmts = false); 963 964 /// ConstantFoldsToSimpleInteger - If the specified expression does not fold 965 /// to a constant, or if it does but contains a label, return 0. If it 966 /// constant folds to 'true' and does not contain a label, return 1, if it 967 /// constant folds to 'false' and does not contain a label, return -1. 968 int ConstantFoldsToSimpleInteger(const Expr *Cond); 969 970 /// EmitBranchOnBoolExpr - Emit a branch on a boolean condition (e.g. for an 971 /// if statement) to the specified blocks. Based on the condition, this might 972 /// try to simplify the codegen of the conditional based on the branch. 973 void EmitBranchOnBoolExpr(const Expr *Cond, llvm::BasicBlock *TrueBlock, 974 llvm::BasicBlock *FalseBlock); 975private: 976 977 /// EmitIndirectSwitches - Emit code for all of the switch 978 /// instructions in IndirectSwitches. 979 void EmitIndirectSwitches(); 980 981 void EmitReturnOfRValue(RValue RV, QualType Ty); 982 983 /// ExpandTypeFromArgs - Reconstruct a structure of type \arg Ty 984 /// from function arguments into \arg Dst. See ABIArgInfo::Expand. 985 /// 986 /// \param AI - The first function argument of the expansion. 987 /// \return The argument following the last expanded function 988 /// argument. 989 llvm::Function::arg_iterator 990 ExpandTypeFromArgs(QualType Ty, LValue Dst, 991 llvm::Function::arg_iterator AI); 992 993 /// ExpandTypeToArgs - Expand an RValue \arg Src, with the LLVM type for \arg 994 /// Ty, into individual arguments on the provided vector \arg Args. See 995 /// ABIArgInfo::Expand. 996 void ExpandTypeToArgs(QualType Ty, RValue Src, 997 llvm::SmallVector<llvm::Value*, 16> &Args); 998 999 llvm::Value* EmitAsmInput(const AsmStmt &S, 1000 const TargetInfo::ConstraintInfo &Info, 1001 const Expr *InputExpr, std::string &ConstraintStr); 1002 1003 /// EmitCleanupBlock - emits a single cleanup block. 1004 void EmitCleanupBlock(); 1005 1006 /// AddBranchFixup - adds a branch instruction to the list of fixups for the 1007 /// current cleanup scope. 1008 void AddBranchFixup(llvm::BranchInst *BI); 1009 1010 /// EmitCallArg - Emit a single call argument. 1011 RValue EmitCallArg(const Expr *E, QualType ArgType); 1012 1013 /// EmitCallArgs - Emit call arguments for a function. 1014 /// The CallArgTypeInfo parameter is used for iterating over the known 1015 /// argument types of the function being called. 1016 template<typename T> 1017 void EmitCallArgs(CallArgList& Args, const T* CallArgTypeInfo, 1018 CallExpr::const_arg_iterator ArgBeg, 1019 CallExpr::const_arg_iterator ArgEnd) { 1020 CallExpr::const_arg_iterator Arg = ArgBeg; 1021 1022 // First, use the argument types that the type info knows about 1023 if (CallArgTypeInfo) { 1024 for (typename T::arg_type_iterator I = CallArgTypeInfo->arg_type_begin(), 1025 E = CallArgTypeInfo->arg_type_end(); I != E; ++I, ++Arg) { 1026 QualType ArgType = *I; 1027 1028 assert(getContext().getCanonicalType(ArgType.getNonReferenceType()). 1029 getTypePtr() == 1030 getContext().getCanonicalType(Arg->getType()).getTypePtr() && 1031 "type mismatch in call argument!"); 1032 1033 Args.push_back(std::make_pair(EmitCallArg(*Arg, ArgType), 1034 ArgType)); 1035 } 1036 1037 // Either we've emitted all the call args, or we have a call to a 1038 // variadic function. 1039 assert((Arg == ArgEnd || CallArgTypeInfo->isVariadic()) && 1040 "Extra arguments in non-variadic function!"); 1041 1042 } 1043 1044 // If we still have any arguments, emit them using the type of the argument. 1045 for (; Arg != ArgEnd; ++Arg) { 1046 QualType ArgType = Arg->getType(); 1047 Args.push_back(std::make_pair(EmitCallArg(*Arg, ArgType), 1048 ArgType)); 1049 } 1050 } 1051}; 1052 1053 1054} // end namespace CodeGen 1055} // end namespace clang 1056 1057#endif 1058