xref: /llvm-project-15.0.7/clang/lib/AST/Stmt.cpp (revision 07f4357b)
1 //===--- Stmt.cpp - Statement AST Node Implementation ---------------------===//
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 file implements the Stmt class and statement subclasses.
11 //
12 //===----------------------------------------------------------------------===//
13 
14 #include "clang/AST/Stmt.h"
15 #include "clang/AST/ExprCXX.h"
16 #include "clang/AST/ExprObjC.h"
17 #include "clang/AST/StmtCXX.h"
18 #include "clang/AST/StmtObjC.h"
19 #include "clang/AST/Type.h"
20 #include "clang/AST/ASTContext.h"
21 #include "clang/AST/ASTDiagnostic.h"
22 #include "clang/Basic/TargetInfo.h"
23 #include "llvm/Support/raw_ostream.h"
24 using namespace clang;
25 
26 static struct StmtClassNameTable {
27   const char *Name;
28   unsigned Counter;
29   unsigned Size;
30 } StmtClassInfo[Stmt::lastStmtConstant+1];
31 
32 static StmtClassNameTable &getStmtInfoTableEntry(Stmt::StmtClass E) {
33   static bool Initialized = false;
34   if (Initialized)
35     return StmtClassInfo[E];
36 
37   // Intialize the table on the first use.
38   Initialized = true;
39 #define ABSTRACT_STMT(STMT)
40 #define STMT(CLASS, PARENT) \
41   StmtClassInfo[(unsigned)Stmt::CLASS##Class].Name = #CLASS;    \
42   StmtClassInfo[(unsigned)Stmt::CLASS##Class].Size = sizeof(CLASS);
43 #include "clang/AST/StmtNodes.inc"
44 
45   return StmtClassInfo[E];
46 }
47 
48 const char *Stmt::getStmtClassName() const {
49   return getStmtInfoTableEntry((StmtClass) StmtBits.sClass).Name;
50 }
51 
52 void Stmt::PrintStats() {
53   // Ensure the table is primed.
54   getStmtInfoTableEntry(Stmt::NullStmtClass);
55 
56   unsigned sum = 0;
57   llvm::errs() << "\n*** Stmt/Expr Stats:\n";
58   for (int i = 0; i != Stmt::lastStmtConstant+1; i++) {
59     if (StmtClassInfo[i].Name == 0) continue;
60     sum += StmtClassInfo[i].Counter;
61   }
62   llvm::errs() << "  " << sum << " stmts/exprs total.\n";
63   sum = 0;
64   for (int i = 0; i != Stmt::lastStmtConstant+1; i++) {
65     if (StmtClassInfo[i].Name == 0) continue;
66     if (StmtClassInfo[i].Counter == 0) continue;
67     llvm::errs() << "    " << StmtClassInfo[i].Counter << " "
68                  << StmtClassInfo[i].Name << ", " << StmtClassInfo[i].Size
69                  << " each (" << StmtClassInfo[i].Counter*StmtClassInfo[i].Size
70                  << " bytes)\n";
71     sum += StmtClassInfo[i].Counter*StmtClassInfo[i].Size;
72   }
73 
74   llvm::errs() << "Total bytes = " << sum << "\n";
75 }
76 
77 void Stmt::addStmtClass(StmtClass s) {
78   ++getStmtInfoTableEntry(s).Counter;
79 }
80 
81 static bool StatSwitch = false;
82 
83 bool Stmt::CollectingStats(bool Enable) {
84   if (Enable) StatSwitch = true;
85   return StatSwitch;
86 }
87 
88 Stmt *Stmt::IgnoreImplicit() {
89   Stmt *s = this;
90 
91   if (ExprWithCleanups *ewc = dyn_cast<ExprWithCleanups>(s))
92     s = ewc->getSubExpr();
93 
94   while (ImplicitCastExpr *ice = dyn_cast<ImplicitCastExpr>(s))
95     s = ice->getSubExpr();
96 
97   return s;
98 }
99 
100 /// \brief Strip off all label-like statements.
101 ///
102 /// This will strip off label statements, case statements, and default
103 /// statements recursively.
104 const Stmt *Stmt::stripLabelLikeStatements() const {
105   const Stmt *S = this;
106   while (true) {
107     if (const LabelStmt *LS = dyn_cast<LabelStmt>(S))
108       S = LS->getSubStmt();
109     else if (const SwitchCase *SC = dyn_cast<SwitchCase>(S))
110       S = SC->getSubStmt();
111     else
112       return S;
113   }
114 }
115 
116 namespace {
117   struct good {};
118   struct bad {};
119 
120   // These silly little functions have to be static inline to suppress
121   // unused warnings, and they have to be defined to suppress other
122   // warnings.
123   static inline good is_good(good) { return good(); }
124 
125   typedef Stmt::child_range children_t();
126   template <class T> good implements_children(children_t T::*) {
127     return good();
128   }
129   static inline bad implements_children(children_t Stmt::*) {
130     return bad();
131   }
132 
133   typedef SourceRange getSourceRange_t() const;
134   template <class T> good implements_getSourceRange(getSourceRange_t T::*) {
135     return good();
136   }
137   static inline bad implements_getSourceRange(getSourceRange_t Stmt::*) {
138     return bad();
139   }
140 
141 #define ASSERT_IMPLEMENTS_children(type) \
142   (void) sizeof(is_good(implements_children(&type::children)))
143 #define ASSERT_IMPLEMENTS_getSourceRange(type) \
144   (void) sizeof(is_good(implements_getSourceRange(&type::getSourceRange)))
145 }
146 
147 /// Check whether the various Stmt classes implement their member
148 /// functions.
149 static inline void check_implementations() {
150 #define ABSTRACT_STMT(type)
151 #define STMT(type, base) \
152   ASSERT_IMPLEMENTS_children(type); \
153   ASSERT_IMPLEMENTS_getSourceRange(type);
154 #include "clang/AST/StmtNodes.inc"
155 }
156 
157 Stmt::child_range Stmt::children() {
158   switch (getStmtClass()) {
159   case Stmt::NoStmtClass: llvm_unreachable("statement without class");
160 #define ABSTRACT_STMT(type)
161 #define STMT(type, base) \
162   case Stmt::type##Class: \
163     return static_cast<type*>(this)->children();
164 #include "clang/AST/StmtNodes.inc"
165   }
166   llvm_unreachable("unknown statement kind!");
167 }
168 
169 SourceRange Stmt::getSourceRange() const {
170   switch (getStmtClass()) {
171   case Stmt::NoStmtClass: llvm_unreachable("statement without class");
172 #define ABSTRACT_STMT(type)
173 #define STMT(type, base) \
174   case Stmt::type##Class: \
175     return static_cast<const type*>(this)->getSourceRange();
176 #include "clang/AST/StmtNodes.inc"
177   }
178   llvm_unreachable("unknown statement kind!");
179 }
180 
181 void CompoundStmt::setStmts(ASTContext &C, Stmt **Stmts, unsigned NumStmts) {
182   if (this->Body)
183     C.Deallocate(Body);
184   this->CompoundStmtBits.NumStmts = NumStmts;
185 
186   Body = new (C) Stmt*[NumStmts];
187   memcpy(Body, Stmts, sizeof(Stmt *) * NumStmts);
188 }
189 
190 const char *LabelStmt::getName() const {
191   return getDecl()->getIdentifier()->getNameStart();
192 }
193 
194 // This is defined here to avoid polluting Stmt.h with importing Expr.h
195 SourceRange ReturnStmt::getSourceRange() const {
196   if (RetExpr)
197     return SourceRange(RetLoc, RetExpr->getLocEnd());
198   else
199     return SourceRange(RetLoc);
200 }
201 
202 bool Stmt::hasImplicitControlFlow() const {
203   switch (StmtBits.sClass) {
204     default:
205       return false;
206 
207     case CallExprClass:
208     case ConditionalOperatorClass:
209     case ChooseExprClass:
210     case StmtExprClass:
211     case DeclStmtClass:
212       return true;
213 
214     case Stmt::BinaryOperatorClass: {
215       const BinaryOperator* B = cast<BinaryOperator>(this);
216       if (B->isLogicalOp() || B->getOpcode() == BO_Comma)
217         return true;
218       else
219         return false;
220     }
221   }
222 }
223 
224 Expr *AsmStmt::getOutputExpr(unsigned i) {
225   return cast<Expr>(Exprs[i]);
226 }
227 
228 /// getOutputConstraint - Return the constraint string for the specified
229 /// output operand.  All output constraints are known to be non-empty (either
230 /// '=' or '+').
231 StringRef AsmStmt::getOutputConstraint(unsigned i) const {
232   return getOutputConstraintLiteral(i)->getString();
233 }
234 
235 /// getNumPlusOperands - Return the number of output operands that have a "+"
236 /// constraint.
237 unsigned AsmStmt::getNumPlusOperands() const {
238   unsigned Res = 0;
239   for (unsigned i = 0, e = getNumOutputs(); i != e; ++i)
240     if (isOutputPlusConstraint(i))
241       ++Res;
242   return Res;
243 }
244 
245 Expr *AsmStmt::getInputExpr(unsigned i) {
246   return cast<Expr>(Exprs[i + NumOutputs]);
247 }
248 void AsmStmt::setInputExpr(unsigned i, Expr *E) {
249   Exprs[i + NumOutputs] = E;
250 }
251 
252 
253 /// getInputConstraint - Return the specified input constraint.  Unlike output
254 /// constraints, these can be empty.
255 StringRef AsmStmt::getInputConstraint(unsigned i) const {
256   return getInputConstraintLiteral(i)->getString();
257 }
258 
259 
260 void AsmStmt::setOutputsAndInputsAndClobbers(ASTContext &C,
261                                              IdentifierInfo **Names,
262                                              StringLiteral **Constraints,
263                                              Stmt **Exprs,
264                                              unsigned NumOutputs,
265                                              unsigned NumInputs,
266                                              StringLiteral **Clobbers,
267                                              unsigned NumClobbers) {
268   this->NumOutputs = NumOutputs;
269   this->NumInputs = NumInputs;
270   this->NumClobbers = NumClobbers;
271 
272   unsigned NumExprs = NumOutputs + NumInputs;
273 
274   C.Deallocate(this->Names);
275   this->Names = new (C) IdentifierInfo*[NumExprs];
276   std::copy(Names, Names + NumExprs, this->Names);
277 
278   C.Deallocate(this->Exprs);
279   this->Exprs = new (C) Stmt*[NumExprs];
280   std::copy(Exprs, Exprs + NumExprs, this->Exprs);
281 
282   C.Deallocate(this->Constraints);
283   this->Constraints = new (C) StringLiteral*[NumExprs];
284   std::copy(Constraints, Constraints + NumExprs, this->Constraints);
285 
286   C.Deallocate(this->Clobbers);
287   this->Clobbers = new (C) StringLiteral*[NumClobbers];
288   std::copy(Clobbers, Clobbers + NumClobbers, this->Clobbers);
289 }
290 
291 /// getNamedOperand - Given a symbolic operand reference like %[foo],
292 /// translate this into a numeric value needed to reference the same operand.
293 /// This returns -1 if the operand name is invalid.
294 int AsmStmt::getNamedOperand(StringRef SymbolicName) const {
295   unsigned NumPlusOperands = 0;
296 
297   // Check if this is an output operand.
298   for (unsigned i = 0, e = getNumOutputs(); i != e; ++i) {
299     if (getOutputName(i) == SymbolicName)
300       return i;
301   }
302 
303   for (unsigned i = 0, e = getNumInputs(); i != e; ++i)
304     if (getInputName(i) == SymbolicName)
305       return getNumOutputs() + NumPlusOperands + i;
306 
307   // Not found.
308   return -1;
309 }
310 
311 /// AnalyzeAsmString - Analyze the asm string of the current asm, decomposing
312 /// it into pieces.  If the asm string is erroneous, emit errors and return
313 /// true, otherwise return false.
314 unsigned AsmStmt::AnalyzeAsmString(SmallVectorImpl<AsmStringPiece>&Pieces,
315                                    ASTContext &C, unsigned &DiagOffs) const {
316   StringRef Str = getAsmString()->getString();
317   const char *StrStart = Str.begin();
318   const char *StrEnd = Str.end();
319   const char *CurPtr = StrStart;
320 
321   // "Simple" inline asms have no constraints or operands, just convert the asm
322   // string to escape $'s.
323   if (isSimple()) {
324     std::string Result;
325     for (; CurPtr != StrEnd; ++CurPtr) {
326       switch (*CurPtr) {
327       case '$':
328         Result += "$$";
329         break;
330       default:
331         Result += *CurPtr;
332         break;
333       }
334     }
335     Pieces.push_back(AsmStringPiece(Result));
336     return 0;
337   }
338 
339   // CurStringPiece - The current string that we are building up as we scan the
340   // asm string.
341   std::string CurStringPiece;
342 
343   bool HasVariants = !C.getTargetInfo().hasNoAsmVariants();
344 
345   while (1) {
346     // Done with the string?
347     if (CurPtr == StrEnd) {
348       if (!CurStringPiece.empty())
349         Pieces.push_back(AsmStringPiece(CurStringPiece));
350       return 0;
351     }
352 
353     char CurChar = *CurPtr++;
354     switch (CurChar) {
355     case '$': CurStringPiece += "$$"; continue;
356     case '{': CurStringPiece += (HasVariants ? "$(" : "{"); continue;
357     case '|': CurStringPiece += (HasVariants ? "$|" : "|"); continue;
358     case '}': CurStringPiece += (HasVariants ? "$)" : "}"); continue;
359     case '%':
360       break;
361     default:
362       CurStringPiece += CurChar;
363       continue;
364     }
365 
366     // Escaped "%" character in asm string.
367     if (CurPtr == StrEnd) {
368       // % at end of string is invalid (no escape).
369       DiagOffs = CurPtr-StrStart-1;
370       return diag::err_asm_invalid_escape;
371     }
372 
373     char EscapedChar = *CurPtr++;
374     if (EscapedChar == '%') {  // %% -> %
375       // Escaped percentage sign.
376       CurStringPiece += '%';
377       continue;
378     }
379 
380     if (EscapedChar == '=') {  // %= -> Generate an unique ID.
381       CurStringPiece += "${:uid}";
382       continue;
383     }
384 
385     // Otherwise, we have an operand.  If we have accumulated a string so far,
386     // add it to the Pieces list.
387     if (!CurStringPiece.empty()) {
388       Pieces.push_back(AsmStringPiece(CurStringPiece));
389       CurStringPiece.clear();
390     }
391 
392     // Handle %x4 and %x[foo] by capturing x as the modifier character.
393     char Modifier = '\0';
394     if (isalpha(EscapedChar)) {
395       if (CurPtr == StrEnd) { // Premature end.
396         DiagOffs = CurPtr-StrStart-1;
397         return diag::err_asm_invalid_escape;
398       }
399       Modifier = EscapedChar;
400       EscapedChar = *CurPtr++;
401     }
402 
403     if (isdigit(EscapedChar)) {
404       // %n - Assembler operand n
405       unsigned N = 0;
406 
407       --CurPtr;
408       while (CurPtr != StrEnd && isdigit(*CurPtr))
409         N = N*10 + ((*CurPtr++)-'0');
410 
411       unsigned NumOperands =
412         getNumOutputs() + getNumPlusOperands() + getNumInputs();
413       if (N >= NumOperands) {
414         DiagOffs = CurPtr-StrStart-1;
415         return diag::err_asm_invalid_operand_number;
416       }
417 
418       Pieces.push_back(AsmStringPiece(N, Modifier));
419       continue;
420     }
421 
422     // Handle %[foo], a symbolic operand reference.
423     if (EscapedChar == '[') {
424       DiagOffs = CurPtr-StrStart-1;
425 
426       // Find the ']'.
427       const char *NameEnd = (const char*)memchr(CurPtr, ']', StrEnd-CurPtr);
428       if (NameEnd == 0)
429         return diag::err_asm_unterminated_symbolic_operand_name;
430       if (NameEnd == CurPtr)
431         return diag::err_asm_empty_symbolic_operand_name;
432 
433       StringRef SymbolicName(CurPtr, NameEnd - CurPtr);
434 
435       int N = getNamedOperand(SymbolicName);
436       if (N == -1) {
437         // Verify that an operand with that name exists.
438         DiagOffs = CurPtr-StrStart;
439         return diag::err_asm_unknown_symbolic_operand_name;
440       }
441       Pieces.push_back(AsmStringPiece(N, Modifier));
442 
443       CurPtr = NameEnd+1;
444       continue;
445     }
446 
447     DiagOffs = CurPtr-StrStart-1;
448     return diag::err_asm_invalid_escape;
449   }
450 }
451 
452 QualType CXXCatchStmt::getCaughtType() const {
453   if (ExceptionDecl)
454     return ExceptionDecl->getType();
455   return QualType();
456 }
457 
458 //===----------------------------------------------------------------------===//
459 // Constructors
460 //===----------------------------------------------------------------------===//
461 
462 AsmStmt::AsmStmt(ASTContext &C, SourceLocation asmloc, bool issimple,
463                  bool isvolatile, bool msasm,
464                  unsigned numoutputs, unsigned numinputs,
465                  IdentifierInfo **names, StringLiteral **constraints,
466                  Expr **exprs, StringLiteral *asmstr, unsigned numclobbers,
467                  StringLiteral **clobbers, SourceLocation rparenloc)
468   : Stmt(AsmStmtClass), AsmLoc(asmloc), RParenLoc(rparenloc), AsmStr(asmstr)
469   , IsSimple(issimple), IsVolatile(isvolatile), MSAsm(msasm)
470   , NumOutputs(numoutputs), NumInputs(numinputs), NumClobbers(numclobbers) {
471 
472   unsigned NumExprs = NumOutputs +NumInputs;
473 
474   Names = new (C) IdentifierInfo*[NumExprs];
475   std::copy(names, names + NumExprs, Names);
476 
477   Exprs = new (C) Stmt*[NumExprs];
478   std::copy(exprs, exprs + NumExprs, Exprs);
479 
480   Constraints = new (C) StringLiteral*[NumExprs];
481   std::copy(constraints, constraints + NumExprs, Constraints);
482 
483   Clobbers = new (C) StringLiteral*[NumClobbers];
484   std::copy(clobbers, clobbers + NumClobbers, Clobbers);
485 }
486 
487 ObjCForCollectionStmt::ObjCForCollectionStmt(Stmt *Elem, Expr *Collect,
488                                              Stmt *Body,  SourceLocation FCL,
489                                              SourceLocation RPL)
490 : Stmt(ObjCForCollectionStmtClass) {
491   SubExprs[ELEM] = Elem;
492   SubExprs[COLLECTION] = reinterpret_cast<Stmt*>(Collect);
493   SubExprs[BODY] = Body;
494   ForLoc = FCL;
495   RParenLoc = RPL;
496 }
497 
498 ObjCAtTryStmt::ObjCAtTryStmt(SourceLocation atTryLoc, Stmt *atTryStmt,
499                              Stmt **CatchStmts, unsigned NumCatchStmts,
500                              Stmt *atFinallyStmt)
501   : Stmt(ObjCAtTryStmtClass), AtTryLoc(atTryLoc),
502     NumCatchStmts(NumCatchStmts), HasFinally(atFinallyStmt != 0)
503 {
504   Stmt **Stmts = getStmts();
505   Stmts[0] = atTryStmt;
506   for (unsigned I = 0; I != NumCatchStmts; ++I)
507     Stmts[I + 1] = CatchStmts[I];
508 
509   if (HasFinally)
510     Stmts[NumCatchStmts + 1] = atFinallyStmt;
511 }
512 
513 ObjCAtTryStmt *ObjCAtTryStmt::Create(ASTContext &Context,
514                                      SourceLocation atTryLoc,
515                                      Stmt *atTryStmt,
516                                      Stmt **CatchStmts,
517                                      unsigned NumCatchStmts,
518                                      Stmt *atFinallyStmt) {
519   unsigned Size = sizeof(ObjCAtTryStmt) +
520     (1 + NumCatchStmts + (atFinallyStmt != 0)) * sizeof(Stmt *);
521   void *Mem = Context.Allocate(Size, llvm::alignOf<ObjCAtTryStmt>());
522   return new (Mem) ObjCAtTryStmt(atTryLoc, atTryStmt, CatchStmts, NumCatchStmts,
523                                  atFinallyStmt);
524 }
525 
526 ObjCAtTryStmt *ObjCAtTryStmt::CreateEmpty(ASTContext &Context,
527                                                  unsigned NumCatchStmts,
528                                                  bool HasFinally) {
529   unsigned Size = sizeof(ObjCAtTryStmt) +
530     (1 + NumCatchStmts + HasFinally) * sizeof(Stmt *);
531   void *Mem = Context.Allocate(Size, llvm::alignOf<ObjCAtTryStmt>());
532   return new (Mem) ObjCAtTryStmt(EmptyShell(), NumCatchStmts, HasFinally);
533 }
534 
535 SourceRange ObjCAtTryStmt::getSourceRange() const {
536   SourceLocation EndLoc;
537   if (HasFinally)
538     EndLoc = getFinallyStmt()->getLocEnd();
539   else if (NumCatchStmts)
540     EndLoc = getCatchStmt(NumCatchStmts - 1)->getLocEnd();
541   else
542     EndLoc = getTryBody()->getLocEnd();
543 
544   return SourceRange(AtTryLoc, EndLoc);
545 }
546 
547 CXXTryStmt *CXXTryStmt::Create(ASTContext &C, SourceLocation tryLoc,
548                                Stmt *tryBlock, Stmt **handlers,
549                                unsigned numHandlers) {
550   std::size_t Size = sizeof(CXXTryStmt);
551   Size += ((numHandlers + 1) * sizeof(Stmt));
552 
553   void *Mem = C.Allocate(Size, llvm::alignOf<CXXTryStmt>());
554   return new (Mem) CXXTryStmt(tryLoc, tryBlock, handlers, numHandlers);
555 }
556 
557 CXXTryStmt *CXXTryStmt::Create(ASTContext &C, EmptyShell Empty,
558                                unsigned numHandlers) {
559   std::size_t Size = sizeof(CXXTryStmt);
560   Size += ((numHandlers + 1) * sizeof(Stmt));
561 
562   void *Mem = C.Allocate(Size, llvm::alignOf<CXXTryStmt>());
563   return new (Mem) CXXTryStmt(Empty, numHandlers);
564 }
565 
566 CXXTryStmt::CXXTryStmt(SourceLocation tryLoc, Stmt *tryBlock,
567                        Stmt **handlers, unsigned numHandlers)
568   : Stmt(CXXTryStmtClass), TryLoc(tryLoc), NumHandlers(numHandlers) {
569   Stmt **Stmts = reinterpret_cast<Stmt **>(this + 1);
570   Stmts[0] = tryBlock;
571   std::copy(handlers, handlers + NumHandlers, Stmts + 1);
572 }
573 
574 CXXForRangeStmt::CXXForRangeStmt(DeclStmt *Range, DeclStmt *BeginEndStmt,
575                                  Expr *Cond, Expr *Inc, DeclStmt *LoopVar,
576                                  Stmt *Body, SourceLocation FL,
577                                  SourceLocation CL, SourceLocation RPL)
578   : Stmt(CXXForRangeStmtClass), ForLoc(FL), ColonLoc(CL), RParenLoc(RPL) {
579   SubExprs[RANGE] = Range;
580   SubExprs[BEGINEND] = BeginEndStmt;
581   SubExprs[COND] = reinterpret_cast<Stmt*>(Cond);
582   SubExprs[INC] = reinterpret_cast<Stmt*>(Inc);
583   SubExprs[LOOPVAR] = LoopVar;
584   SubExprs[BODY] = Body;
585 }
586 
587 Expr *CXXForRangeStmt::getRangeInit() {
588   DeclStmt *RangeStmt = getRangeStmt();
589   VarDecl *RangeDecl = dyn_cast_or_null<VarDecl>(RangeStmt->getSingleDecl());
590   assert(RangeDecl &&& "for-range should have a single var decl");
591   return RangeDecl->getInit();
592 }
593 
594 const Expr *CXXForRangeStmt::getRangeInit() const {
595   return const_cast<CXXForRangeStmt*>(this)->getRangeInit();
596 }
597 
598 VarDecl *CXXForRangeStmt::getLoopVariable() {
599   Decl *LV = cast<DeclStmt>(getLoopVarStmt())->getSingleDecl();
600   assert(LV && "No loop variable in CXXForRangeStmt");
601   return cast<VarDecl>(LV);
602 }
603 
604 const VarDecl *CXXForRangeStmt::getLoopVariable() const {
605   return const_cast<CXXForRangeStmt*>(this)->getLoopVariable();
606 }
607 
608 IfStmt::IfStmt(ASTContext &C, SourceLocation IL, VarDecl *var, Expr *cond,
609                Stmt *then, SourceLocation EL, Stmt *elsev)
610   : Stmt(IfStmtClass), IfLoc(IL), ElseLoc(EL)
611 {
612   setConditionVariable(C, var);
613   SubExprs[COND] = reinterpret_cast<Stmt*>(cond);
614   SubExprs[THEN] = then;
615   SubExprs[ELSE] = elsev;
616 }
617 
618 VarDecl *IfStmt::getConditionVariable() const {
619   if (!SubExprs[VAR])
620     return 0;
621 
622   DeclStmt *DS = cast<DeclStmt>(SubExprs[VAR]);
623   return cast<VarDecl>(DS->getSingleDecl());
624 }
625 
626 void IfStmt::setConditionVariable(ASTContext &C, VarDecl *V) {
627   if (!V) {
628     SubExprs[VAR] = 0;
629     return;
630   }
631 
632   SubExprs[VAR] = new (C) DeclStmt(DeclGroupRef(V),
633                                    V->getSourceRange().getBegin(),
634                                    V->getSourceRange().getEnd());
635 }
636 
637 ForStmt::ForStmt(ASTContext &C, Stmt *Init, Expr *Cond, VarDecl *condVar,
638                  Expr *Inc, Stmt *Body, SourceLocation FL, SourceLocation LP,
639                  SourceLocation RP)
640   : Stmt(ForStmtClass), ForLoc(FL), LParenLoc(LP), RParenLoc(RP)
641 {
642   SubExprs[INIT] = Init;
643   setConditionVariable(C, condVar);
644   SubExprs[COND] = reinterpret_cast<Stmt*>(Cond);
645   SubExprs[INC] = reinterpret_cast<Stmt*>(Inc);
646   SubExprs[BODY] = Body;
647 }
648 
649 VarDecl *ForStmt::getConditionVariable() const {
650   if (!SubExprs[CONDVAR])
651     return 0;
652 
653   DeclStmt *DS = cast<DeclStmt>(SubExprs[CONDVAR]);
654   return cast<VarDecl>(DS->getSingleDecl());
655 }
656 
657 void ForStmt::setConditionVariable(ASTContext &C, VarDecl *V) {
658   if (!V) {
659     SubExprs[CONDVAR] = 0;
660     return;
661   }
662 
663   SubExprs[CONDVAR] = new (C) DeclStmt(DeclGroupRef(V),
664                                        V->getSourceRange().getBegin(),
665                                        V->getSourceRange().getEnd());
666 }
667 
668 SwitchStmt::SwitchStmt(ASTContext &C, VarDecl *Var, Expr *cond)
669   : Stmt(SwitchStmtClass), FirstCase(0), AllEnumCasesCovered(0)
670 {
671   setConditionVariable(C, Var);
672   SubExprs[COND] = reinterpret_cast<Stmt*>(cond);
673   SubExprs[BODY] = NULL;
674 }
675 
676 VarDecl *SwitchStmt::getConditionVariable() const {
677   if (!SubExprs[VAR])
678     return 0;
679 
680   DeclStmt *DS = cast<DeclStmt>(SubExprs[VAR]);
681   return cast<VarDecl>(DS->getSingleDecl());
682 }
683 
684 void SwitchStmt::setConditionVariable(ASTContext &C, VarDecl *V) {
685   if (!V) {
686     SubExprs[VAR] = 0;
687     return;
688   }
689 
690   SubExprs[VAR] = new (C) DeclStmt(DeclGroupRef(V),
691                                    V->getSourceRange().getBegin(),
692                                    V->getSourceRange().getEnd());
693 }
694 
695 Stmt *SwitchCase::getSubStmt() {
696   if (isa<CaseStmt>(this))
697     return cast<CaseStmt>(this)->getSubStmt();
698   return cast<DefaultStmt>(this)->getSubStmt();
699 }
700 
701 WhileStmt::WhileStmt(ASTContext &C, VarDecl *Var, Expr *cond, Stmt *body,
702                      SourceLocation WL)
703   : Stmt(WhileStmtClass) {
704   setConditionVariable(C, Var);
705   SubExprs[COND] = reinterpret_cast<Stmt*>(cond);
706   SubExprs[BODY] = body;
707   WhileLoc = WL;
708 }
709 
710 VarDecl *WhileStmt::getConditionVariable() const {
711   if (!SubExprs[VAR])
712     return 0;
713 
714   DeclStmt *DS = cast<DeclStmt>(SubExprs[VAR]);
715   return cast<VarDecl>(DS->getSingleDecl());
716 }
717 
718 void WhileStmt::setConditionVariable(ASTContext &C, VarDecl *V) {
719   if (!V) {
720     SubExprs[VAR] = 0;
721     return;
722   }
723 
724   SubExprs[VAR] = new (C) DeclStmt(DeclGroupRef(V),
725                                    V->getSourceRange().getBegin(),
726                                    V->getSourceRange().getEnd());
727 }
728 
729 // IndirectGotoStmt
730 LabelDecl *IndirectGotoStmt::getConstantTarget() {
731   if (AddrLabelExpr *E =
732         dyn_cast<AddrLabelExpr>(getTarget()->IgnoreParenImpCasts()))
733     return E->getLabel();
734   return 0;
735 }
736 
737 // ReturnStmt
738 const Expr* ReturnStmt::getRetValue() const {
739   return cast_or_null<Expr>(RetExpr);
740 }
741 Expr* ReturnStmt::getRetValue() {
742   return cast_or_null<Expr>(RetExpr);
743 }
744 
745 SEHTryStmt::SEHTryStmt(bool IsCXXTry,
746                        SourceLocation TryLoc,
747                        Stmt *TryBlock,
748                        Stmt *Handler)
749   : Stmt(SEHTryStmtClass),
750     IsCXXTry(IsCXXTry),
751     TryLoc(TryLoc)
752 {
753   Children[TRY]     = TryBlock;
754   Children[HANDLER] = Handler;
755 }
756 
757 SEHTryStmt* SEHTryStmt::Create(ASTContext &C,
758                                bool IsCXXTry,
759                                SourceLocation TryLoc,
760                                Stmt *TryBlock,
761                                Stmt *Handler) {
762   return new(C) SEHTryStmt(IsCXXTry,TryLoc,TryBlock,Handler);
763 }
764 
765 SEHExceptStmt* SEHTryStmt::getExceptHandler() const {
766   return dyn_cast<SEHExceptStmt>(getHandler());
767 }
768 
769 SEHFinallyStmt* SEHTryStmt::getFinallyHandler() const {
770   return dyn_cast<SEHFinallyStmt>(getHandler());
771 }
772 
773 SEHExceptStmt::SEHExceptStmt(SourceLocation Loc,
774                              Expr *FilterExpr,
775                              Stmt *Block)
776   : Stmt(SEHExceptStmtClass),
777     Loc(Loc)
778 {
779   Children[FILTER_EXPR] = reinterpret_cast<Stmt*>(FilterExpr);
780   Children[BLOCK]       = Block;
781 }
782 
783 SEHExceptStmt* SEHExceptStmt::Create(ASTContext &C,
784                                      SourceLocation Loc,
785                                      Expr *FilterExpr,
786                                      Stmt *Block) {
787   return new(C) SEHExceptStmt(Loc,FilterExpr,Block);
788 }
789 
790 SEHFinallyStmt::SEHFinallyStmt(SourceLocation Loc,
791                                Stmt *Block)
792   : Stmt(SEHFinallyStmtClass),
793     Loc(Loc),
794     Block(Block)
795 {}
796 
797 SEHFinallyStmt* SEHFinallyStmt::Create(ASTContext &C,
798                                        SourceLocation Loc,
799                                        Stmt *Block) {
800   return new(C)SEHFinallyStmt(Loc,Block);
801 }
802