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			313 lines
		
	
	
		
			9.8 KiB
		
	
	
	
		
			C++
		
	
	
	
			
		
		
	
	
			313 lines
		
	
	
		
			9.8 KiB
		
	
	
	
		
			C++
		
	
	
	
| //==- UninitializedValues.cpp - Find Uninitialized Values -------*- C++ --*-==//
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| //
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| //                     The LLVM Compiler Infrastructure
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| //
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| // This file is distributed under the University of Illinois Open Source
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| // License. See LICENSE.TXT for details.
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| //
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| //===----------------------------------------------------------------------===//
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| //
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| // This file implements Uninitialized Values analysis for source-level CFGs.
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| //
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| //===----------------------------------------------------------------------===//
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| 
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| #include "clang/Analysis/Analyses/UninitializedValues.h"
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| #include "clang/Analysis/Visitors/CFGRecStmtDeclVisitor.h"
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| #include "clang/Analysis/LocalCheckers.h"
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| #include "clang/Analysis/AnalysisDiagnostic.h"
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| #include "clang/AST/ASTContext.h"
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| #include "clang/Analysis/FlowSensitive/DataflowSolver.h"
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| #include "llvm/Support/Compiler.h"
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| 
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| #include "llvm/ADT/SmallPtrSet.h"
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| 
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| using namespace clang;
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| 
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| //===----------------------------------------------------------------------===//
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| // Dataflow initialization logic.
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| //===----------------------------------------------------------------------===//      
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| 
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| namespace {
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| 
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| class VISIBILITY_HIDDEN RegisterDecls
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|   : public CFGRecStmtDeclVisitor<RegisterDecls> {  
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| 
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|   UninitializedValues::AnalysisDataTy& AD;
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| public:
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|   RegisterDecls(UninitializedValues::AnalysisDataTy& ad) :  AD(ad) {}
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|   
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|   void VisitVarDecl(VarDecl* VD) { AD.Register(VD); }
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|   CFG& getCFG() { return AD.getCFG(); }
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| };
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|   
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| } // end anonymous namespace
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| 
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| void UninitializedValues::InitializeValues(const CFG& cfg) {
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|   RegisterDecls R(getAnalysisData());
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|   cfg.VisitBlockStmts(R);
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| }
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| 
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| //===----------------------------------------------------------------------===//
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| // Transfer functions.
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| //===----------------------------------------------------------------------===//      
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| 
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| namespace {
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| class VISIBILITY_HIDDEN TransferFuncs
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|   : public CFGStmtVisitor<TransferFuncs,bool> {
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|     
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|   UninitializedValues::ValTy V;
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|   UninitializedValues::AnalysisDataTy& AD;
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| public:
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|   TransferFuncs(UninitializedValues::AnalysisDataTy& ad) : AD(ad) {}
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|   
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|   UninitializedValues::ValTy& getVal() { return V; }
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|   CFG& getCFG() { return AD.getCFG(); }
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|   
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|   void SetTopValue(UninitializedValues::ValTy& X) {
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|     X.setDeclValues(AD);
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|     X.resetBlkExprValues(AD);
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|   }
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|     
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|   bool VisitDeclRefExpr(DeclRefExpr* DR);
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|   bool VisitBinaryOperator(BinaryOperator* B);
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|   bool VisitUnaryOperator(UnaryOperator* U);
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|   bool VisitStmt(Stmt* S);
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|   bool VisitCallExpr(CallExpr* C);
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|   bool VisitDeclStmt(DeclStmt* D);
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|   bool VisitConditionalOperator(ConditionalOperator* C);
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|   bool BlockStmt_VisitObjCForCollectionStmt(ObjCForCollectionStmt* S);
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|   
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|   bool Visit(Stmt *S);
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|   bool BlockStmt_VisitExpr(Expr* E);
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|     
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|   void VisitTerminator(CFGBlock* B) { }
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| };
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|   
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| static const bool Initialized = false;
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| static const bool Uninitialized = true;  
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| 
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| bool TransferFuncs::VisitDeclRefExpr(DeclRefExpr* DR) {
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|   
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|   if (VarDecl* VD = dyn_cast<VarDecl>(DR->getDecl()))
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|     if (VD->isBlockVarDecl()) {
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|       
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|       if (AD.Observer)
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|         AD.Observer->ObserveDeclRefExpr(V, AD, DR, VD);
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|      
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|       // Pseudo-hack to prevent cascade of warnings.  If an accessed variable
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|       // is uninitialized, then we are already going to flag a warning for
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|       // this variable, which a "source" of uninitialized values.
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|       // We can otherwise do a full "taint" of uninitialized values.  The
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|       // client has both options by toggling AD.FullUninitTaint.
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| 
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|       if (AD.FullUninitTaint)
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|         return V(VD,AD);
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|     }
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|   
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|   return Initialized;
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| }
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| 
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| static VarDecl* FindBlockVarDecl(Expr* E) {
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|   
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|   // Blast through casts and parentheses to find any DeclRefExprs that
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|   // refer to a block VarDecl.
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|   
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|   if (DeclRefExpr* DR = dyn_cast<DeclRefExpr>(E->IgnoreParenCasts()))
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|     if (VarDecl* VD = dyn_cast<VarDecl>(DR->getDecl()))      
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|       if (VD->isBlockVarDecl()) return VD;
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| 
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|   return NULL;
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| }
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| 
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| bool TransferFuncs::VisitBinaryOperator(BinaryOperator* B) {
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| 
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|   if (VarDecl* VD = FindBlockVarDecl(B->getLHS()))
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|     if (B->isAssignmentOp()) {
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|       if (B->getOpcode() == BinaryOperator::Assign)
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|         return V(VD,AD) = Visit(B->getRHS());
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|       else // Handle +=, -=, *=, etc.  We do want '&', not '&&'.
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|         return V(VD,AD) = Visit(B->getLHS()) & Visit(B->getRHS());
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|     }
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| 
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|   return VisitStmt(B);
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| }
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| 
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| bool TransferFuncs::VisitDeclStmt(DeclStmt* S) {
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|   for (DeclStmt::decl_iterator I=S->decl_begin(), E=S->decl_end(); I!=E; ++I) {
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|     VarDecl *VD = dyn_cast<VarDecl>(*I);
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|     if (VD && VD->isBlockVarDecl()) {
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|       if (Stmt* I = VD->getInit()) 
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|         V(VD,AD) = AD.FullUninitTaint ? V(cast<Expr>(I),AD) : Initialized;
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|       else {
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|         // Special case for declarations of array types.  For things like:
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|         //
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|         //  char x[10];
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|         //
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|         // we should treat "x" as being initialized, because the variable
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|         // "x" really refers to the memory block.  Clearly x[1] is
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|         // uninitialized, but expressions like "(char *) x" really do refer to 
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|         // an initialized value.  This simple dataflow analysis does not reason 
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|         // about the contents of arrays, although it could be potentially
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|         // extended to do so if the array were of constant size.
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|         if (VD->getType()->isArrayType())
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|           V(VD,AD) = Initialized;
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|         else        
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|           V(VD,AD) = Uninitialized;
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|       }
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|     }
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|   }
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|   return Uninitialized; // Value is never consumed.
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| }
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|   
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| bool TransferFuncs::VisitCallExpr(CallExpr* C) {
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|   VisitChildren(C);
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|   return Initialized;
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| }
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| 
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| bool TransferFuncs::VisitUnaryOperator(UnaryOperator* U) {
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|   switch (U->getOpcode()) {
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|     case UnaryOperator::AddrOf: {
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|       VarDecl* VD = FindBlockVarDecl(U->getSubExpr());
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|       if (VD && VD->isBlockVarDecl())
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|         return V(VD,AD) = Initialized;
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|       break;
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|     }
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|     
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|     default:
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|       break;
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|   }
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| 
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|   return Visit(U->getSubExpr());
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| }
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|   
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| bool
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| TransferFuncs::BlockStmt_VisitObjCForCollectionStmt(ObjCForCollectionStmt* S) {
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|   // This represents a use of the 'collection'
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|   bool x = Visit(S->getCollection());
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| 
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|   if (x == Uninitialized)
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|     return Uninitialized;
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| 
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|   // This represents an initialization of the 'element' value.
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|   Stmt* Element = S->getElement();
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|   VarDecl* VD = 0;
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| 
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|   if (DeclStmt* DS = dyn_cast<DeclStmt>(Element))
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|     VD = cast<VarDecl>(DS->getSingleDecl());
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|   else {
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|     Expr* ElemExpr = cast<Expr>(Element)->IgnoreParens();
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| 
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|     // Initialize the value of the reference variable.
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|     if (DeclRefExpr* DR = dyn_cast<DeclRefExpr>(ElemExpr))
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|       VD = cast<VarDecl>(DR->getDecl());
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|     else
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|       return Visit(ElemExpr);
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|   }
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|       
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|   V(VD,AD) = Initialized;
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|   return Initialized;
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| }
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|   
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|   
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| bool TransferFuncs::VisitConditionalOperator(ConditionalOperator* C) {
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|   Visit(C->getCond());
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| 
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|   bool rhsResult = Visit(C->getRHS());
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|   // Handle the GNU extension for missing LHS.
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|   if (Expr *lhs = C->getLHS())
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|     return Visit(lhs) & rhsResult; // Yes: we want &, not &&.
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|   else
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|     return rhsResult;
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| }
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| 
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| bool TransferFuncs::VisitStmt(Stmt* S) {
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|   bool x = Initialized;
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| 
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|   // We don't stop at the first subexpression that is Uninitialized because
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|   // evaluating some subexpressions may result in propogating "Uninitialized"
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|   // or "Initialized" to variables referenced in the other subexpressions.
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|   for (Stmt::child_iterator I=S->child_begin(), E=S->child_end(); I!=E; ++I)
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|     if (*I && Visit(*I) == Uninitialized) x = Uninitialized;
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|   
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|   return x;
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| }
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|   
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| bool TransferFuncs::Visit(Stmt *S) {
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|   if (AD.isTracked(static_cast<Expr*>(S))) return V(static_cast<Expr*>(S),AD);
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|   else return static_cast<CFGStmtVisitor<TransferFuncs,bool>*>(this)->Visit(S);
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| }
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| 
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| bool TransferFuncs::BlockStmt_VisitExpr(Expr* E) {
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|   bool x = static_cast<CFGStmtVisitor<TransferFuncs,bool>*>(this)->Visit(E);  
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|   if (AD.isTracked(E)) V(E,AD) = x;
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|   return x;
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| }
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|   
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| } // end anonymous namespace
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| 
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| //===----------------------------------------------------------------------===//
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| // Merge operator.
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| //
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| //  In our transfer functions we take the approach that any
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| //  combination of uninitialized values, e.g.
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| //      Uninitialized + ___ = Uninitialized.
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| //
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| //  Merges take the same approach, preferring soundness.  At a confluence point,
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| //  if any predecessor has a variable marked uninitialized, the value is
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| //  uninitialized at the confluence point.
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| //===----------------------------------------------------------------------===//      
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| 
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| namespace {
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|   typedef StmtDeclBitVector_Types::Union Merge;
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|   typedef DataflowSolver<UninitializedValues,TransferFuncs,Merge> Solver;
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| }
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| 
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| //===----------------------------------------------------------------------===//
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| // Uninitialized values checker.   Scan an AST and flag variable uses
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| //===----------------------------------------------------------------------===//      
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| 
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| UninitializedValues_ValueTypes::ObserverTy::~ObserverTy() {}
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| 
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| namespace {
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| class VISIBILITY_HIDDEN UninitializedValuesChecker
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|   : public UninitializedValues::ObserverTy {
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|     
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|   ASTContext &Ctx;
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|   Diagnostic &Diags;
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|   llvm::SmallPtrSet<VarDecl*,10> AlreadyWarned;
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|   
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| public:
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|   UninitializedValuesChecker(ASTContext &ctx, Diagnostic &diags)
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|     : Ctx(ctx), Diags(diags) {}
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|     
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|   virtual void ObserveDeclRefExpr(UninitializedValues::ValTy& V,
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|                                   UninitializedValues::AnalysisDataTy& AD,
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|                                   DeclRefExpr* DR, VarDecl* VD) {
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| 
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|     assert ( AD.isTracked(VD) && "Unknown VarDecl.");
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|     
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|     if (V(VD,AD) == Uninitialized)
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|       if (AlreadyWarned.insert(VD))
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|         Diags.Report(Ctx.getFullLoc(DR->getSourceRange().getBegin()),
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|                      diag::warn_uninit_val);
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|   }
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| };
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| } // end anonymous namespace
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| 
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| namespace clang {
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| void CheckUninitializedValues(CFG& cfg, ASTContext &Ctx, Diagnostic &Diags,
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|                               bool FullUninitTaint) {
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|   
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|   // Compute the uninitialized values information.
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|   UninitializedValues U(cfg);
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|   U.getAnalysisData().FullUninitTaint = FullUninitTaint;
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|   Solver S(U);
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|   S.runOnCFG(cfg);
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|   
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|   // Scan for DeclRefExprs that use uninitialized values.
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|   UninitializedValuesChecker Observer(Ctx,Diags);
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|   U.getAnalysisData().Observer = &Observer;
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|   S.runOnAllBlocks(cfg);
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| }
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| } // end namespace clang
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