BasicConstraintManager:
- Fix nonsensical logic in AssumeSymLE. When comparing 'sym <= constant' and the constant is the minimum integer value, add the constraint that 'sym == constant' when the path is deemed feasible. All other cases are feasible. - Improve AssumeSymLT to address <rdar://problem/6407949>. When comparing 'sym < constant' and constant is the minimum integer value we know the path is infeasible. - Add test case for <rdar://problem/6407949>. llvm-svn: 60489
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			@ -313,6 +313,13 @@ const GRState*
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BasicConstraintManager::AssumeSymLT(const GRState* St, SymbolID sym,
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                                    const llvm::APSInt& V, bool& isFeasible) {
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  // Is 'V' the smallest possible value?
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  if (V == llvm::APSInt::getMinValue(V.getBitWidth(), V.isSigned())) {
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    // sym cannot be any value less than 'V'.  This path is infeasible.
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    isFeasible = false;
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    return St;
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  }
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  // FIXME: For now have assuming x < y be the same as assuming sym != V;
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  return AssumeSymNE(St, sym, V, isFeasible);
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}
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			@ -345,16 +352,27 @@ const GRState*
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BasicConstraintManager::AssumeSymLE(const GRState* St, SymbolID sym,
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                                    const llvm::APSInt& V, bool& isFeasible) {
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  // FIXME: Primitive logic for now.  Only reject a path if the value of
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  //  sym is a constant X and !(X <= V).
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  // Reject a path if the value of sym is a constant X and !(X <= V).
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  if (const llvm::APSInt* X = getSymVal(St, sym)) {
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    isFeasible = *X <= V;
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    return St;
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  }
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  isFeasible = !isNotEqual(St, sym, V) || 
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               (V != llvm::APSInt::getMinValue(V.getBitWidth(), V.isSigned()));
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  // Sym is not a constant, but it is worth looking to see if V is the
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  // minimum integer value.
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  if (V == llvm::APSInt::getMinValue(V.getBitWidth(), V.isSigned())) {
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    // If we know that sym != V, then this condition is infeasible since
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    // there is no other value less than V.    
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    isFeasible = !isNotEqual(St, sym, V);
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    // If the path is still feasible then as a consequence we know that
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    // 'sym == V' because we cannot have 'sym < V' (no smaller values).
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    // Add this constraint.
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    if (isFeasible)
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      return AddEQ(St, sym, V);
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  }
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  else
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    isFeasible = true;
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  return St;
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}
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			@ -134,3 +134,13 @@ int* f10(int* p, signed char x, int y) {
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  return p;
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}
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// Test case from <rdar://problem/6407949>
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void f11(unsigned i) {
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  int *x = 0;
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  if (i >= 0) {
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    // always true
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  } else {
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    *x = 42; // no-warning
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  }
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}
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