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path: root/include/clang/Analysis/PathSensitive/GRExprEngine.h
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//===-- GRExprEngine.h - Path-Sensitive Expression-Level Dataflow ---*- C++ -*-=
//
//                     The LLVM Compiler Infrastructure
//
// This file is distributed under the University of Illinois Open Source
// License. See LICENSE.TXT for details.
//
//===----------------------------------------------------------------------===//
//
//  This file defines a meta-engine for path-sensitive dataflow analysis that
//  is built on GREngine, but provides the boilerplate to execute transfer
//  functions and build the ExplodedGraph at the expression level.
//
//===----------------------------------------------------------------------===//

#include "clang/Analysis/PathSensitive/GRCoreEngine.h"
#include "clang/Analysis/PathSensitive/ValueState.h"
#include "clang/Analysis/PathSensitive/GRTransferFuncs.h"

namespace clang {
  
class GRExprEngine {
  
public:
  typedef ValueState                  StateTy;
  typedef ExplodedGraph<GRExprEngine> GraphTy;
  typedef GraphTy::NodeTy             NodeTy;
  
  // Builders.
  typedef GRStmtNodeBuilder<StateTy>               StmtNodeBuilder;
  typedef GRBranchNodeBuilder<GRExprEngine>        BranchNodeBuilder;
  typedef GRIndirectGotoNodeBuilder<GRExprEngine>  IndirectGotoNodeBuilder;
  typedef GRSwitchNodeBuilder<GRExprEngine>        SwitchNodeBuilder;
  typedef ExplodedNodeSet<StateTy>                 NodeSet;
    
protected:
  /// G - the simulation graph.
  GraphTy& G;
  
  /// Liveness - live-variables information the ValueDecl* and block-level
  ///  Expr* in the CFG.  Used to prune out dead state.
  LiveVariables Liveness;
  
  /// Builder - The current GRStmtNodeBuilder which is used when building the
  ///  nodes for a given statement.
  StmtNodeBuilder* Builder;
  
  /// StateMgr - Object that manages the data for all created states.
  ValueStateManager StateMgr;
  
  /// ValueMgr - Object that manages the data for all created RVals.
  BasicValueFactory& BasicVals;
  
  /// TF - Object that represents a bundle of transfer functions
  ///  for manipulating and creating RVals.
  GRTransferFuncs* TF;
  
  /// SymMgr - Object that manages the symbol information.
  SymbolManager& SymMgr;
  
  /// StmtEntryNode - The immediate predecessor node.
  NodeTy* StmtEntryNode;
  
  /// CleanedState - The state for StmtEntryNode "cleaned" of all dead
  ///  variables and symbols (as determined by a liveness analysis).
  ValueState* CleanedState;
  
  /// CurrentStmt - The current block-level statement.
  Stmt* CurrentStmt;

  typedef llvm::SmallPtrSet<NodeTy*,2> UndefBranchesTy;  
  typedef llvm::SmallPtrSet<NodeTy*,2> UndefStoresTy;
  typedef llvm::SmallPtrSet<NodeTy*,2> BadDerefTy;
  typedef llvm::SmallPtrSet<NodeTy*,2> BadCallsTy;
  typedef llvm::SmallPtrSet<NodeTy*,2> UndefReceiversTy;
  typedef llvm::DenseMap<NodeTy*, Expr*> UndefArgsTy;
  typedef llvm::SmallPtrSet<NodeTy*,2> BadDividesTy;
  typedef llvm::SmallPtrSet<NodeTy*,2> NoReturnCallsTy;  
  typedef llvm::SmallPtrSet<NodeTy*,2> UndefResultsTy;  

  
  /// UndefBranches - Nodes in the ExplodedGraph that result from
  ///  taking a branch based on an undefined value.
  UndefBranchesTy UndefBranches;
  
  /// UndefStores - Sinks in the ExplodedGraph that result from
  ///  making a store to an undefined lvalue.
  UndefStoresTy UndefStores;
  
  /// NoReturnCalls - Sinks in the ExplodedGraph that result from
  //  calling a function with the attribute "noreturn".
  NoReturnCallsTy NoReturnCalls;
  
  /// ImplicitNullDeref - Nodes in the ExplodedGraph that result from
  ///  taking a dereference on a symbolic pointer that MAY be NULL.
  BadDerefTy ImplicitNullDeref;
    
  /// ExplicitNullDeref - Nodes in the ExplodedGraph that result from
  ///  taking a dereference on a symbolic pointer that MUST be NULL.
  BadDerefTy ExplicitNullDeref;
  
  /// UnitDeref - Nodes in the ExplodedGraph that result from
  ///  taking a dereference on an undefined value.
  BadDerefTy UndefDeref;

  /// ImplicitBadDivides - Nodes in the ExplodedGraph that result from 
  ///  evaluating a divide or modulo operation where the denominator
  ///  MAY be zero.
  BadDividesTy ImplicitBadDivides;
  
  /// ExplicitBadDivides - Nodes in the ExplodedGraph that result from 
  ///  evaluating a divide or modulo operation where the denominator
  ///  MUST be zero or undefined.
  BadDividesTy ExplicitBadDivides;
  
  /// UndefResults - Nodes in the ExplodedGraph where the operands are defined
  ///  by the result is not.  Excludes divide-by-zero errors.
  UndefResultsTy UndefResults;
  
  /// BadCalls - Nodes in the ExplodedGraph resulting from calls to function
  ///  pointers that are NULL (or other constants) or Undefined.
  BadCallsTy BadCalls;
  
  /// UndefReceiver - Nodes in the ExplodedGraph resulting from message
  ///  ObjC message expressions where the receiver is undefined (uninitialized).
  UndefReceiversTy UndefReceivers;
  
  /// UndefArg - Nodes in the ExplodedGraph resulting from calls to functions
  ///   where a pass-by-value argument has an undefined value.
  UndefArgsTy UndefArgs;
  
  /// MsgExprUndefArgs - Nodes in the ExplodedGraph resulting from
  ///   message expressions where a pass-by-value argument has an undefined
  ///  value.
  UndefArgsTy MsgExprUndefArgs;
  
public:
  GRExprEngine(GraphTy& g) : 
    G(g), Liveness(G.getCFG()),
    Builder(NULL),
    StateMgr(G.getContext(), G.getAllocator()),
    BasicVals(StateMgr.getBasicValueFactory()),
    TF(NULL), // FIXME.
    SymMgr(StateMgr.getSymbolManager()),
    StmtEntryNode(NULL), CleanedState(NULL), CurrentStmt(NULL) {
    
    // Compute liveness information.
    Liveness.runOnCFG(G.getCFG());
    Liveness.runOnAllBlocks(G.getCFG(), NULL, true);
  }
  
  /// getContext - Return the ASTContext associated with this analysis.
  ASTContext& getContext() const { return G.getContext(); }
  
  /// getCFG - Returns the CFG associated with this analysis.
  CFG& getCFG() { return G.getCFG(); }
  
  /// setTransferFunctions
  void setTransferFunctions(GRTransferFuncs* tf) { TF = tf; }
  void setTransferFunctions(GRTransferFuncs& tf) { TF = &tf; }
  
  /// ViewGraph - Visualize the ExplodedGraph created by executing the
  ///  simulation.
  void ViewGraph(bool trim = false);
  
  void ViewGraph(NodeTy** Beg, NodeTy** End);
  
  /// getInitialState - Return the initial state used for the root vertex
  ///  in the ExplodedGraph.
  ValueState* getInitialState();
  
  bool isUndefControlFlow(const NodeTy* N) const {
    return N->isSink() && UndefBranches.count(const_cast<NodeTy*>(N)) != 0;
  }
  
  bool isUndefStore(const NodeTy* N) const {
    return N->isSink() && UndefStores.count(const_cast<NodeTy*>(N)) != 0;
  }
  
  bool isImplicitNullDeref(const NodeTy* N) const {
    return N->isSink() && ImplicitNullDeref.count(const_cast<NodeTy*>(N)) != 0;
  }
  
  bool isExplicitNullDeref(const NodeTy* N) const {
    return N->isSink() && ExplicitNullDeref.count(const_cast<NodeTy*>(N)) != 0;
  }
  
  bool isUndefDeref(const NodeTy* N) const {
    return N->isSink() && UndefDeref.count(const_cast<NodeTy*>(N)) != 0;
  }
  
  bool isImplicitBadDivide(const NodeTy* N) const {
    return N->isSink() && ImplicitBadDivides.count(const_cast<NodeTy*>(N)) != 0; 
  }
  
  bool isExplicitBadDivide(const NodeTy* N) const {
    return N->isSink() && ExplicitBadDivides.count(const_cast<NodeTy*>(N)) != 0; 
  }
  
  bool isNoReturnCall(const NodeTy* N) const {
    return N->isSink() && NoReturnCalls.count(const_cast<NodeTy*>(N)) != 0;
  }
  
  bool isUndefResult(const NodeTy* N) const {
    return N->isSink() && UndefResults.count(const_cast<NodeTy*>(N)) != 0;
  }
  
  bool isBadCall(const NodeTy* N) const {
    return N->isSink() && BadCalls.count(const_cast<NodeTy*>(N)) != 0;
  }
  
  bool isUndefArg(const NodeTy* N) const {
    return N->isSink() &&
           UndefArgs.find(const_cast<NodeTy*>(N)) != UndefArgs.end();
  }
  
  typedef UndefBranchesTy::iterator undef_branch_iterator;
  undef_branch_iterator undef_branches_begin() { return UndefBranches.begin(); }
  undef_branch_iterator undef_branches_end() { return UndefBranches.end(); }  
  
  typedef BadDerefTy::iterator null_deref_iterator;
  null_deref_iterator null_derefs_begin() { return ExplicitNullDeref.begin(); }
  null_deref_iterator null_derefs_end() { return ExplicitNullDeref.end(); }
  
  typedef BadDerefTy::iterator undef_deref_iterator;
  undef_deref_iterator undef_derefs_begin() {