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Ted Kremenekd59cccc2008-02-14 18:28:23 +00001// GRSimpleVals.cpp - Transfer functions for tracking simple values -*- 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 files defines GRSimpleVals, a sub-class of GRTransferFuncs that
11// provides transfer functions for performing simple value tracking with
12// limited support for symbolics.
13//
14//===----------------------------------------------------------------------===//
15
16#include "GRSimpleVals.h"
Ted Kremeneke01c9872008-02-14 22:36:46 +000017#include "clang/Basic/Diagnostic.h"
Ted Kremenekd59cccc2008-02-14 18:28:23 +000018
19using namespace clang;
20
Ted Kremeneke01c9872008-02-14 22:36:46 +000021namespace clang {
22 void RunGRSimpleVals(CFG& cfg, FunctionDecl& FD, ASTContext& Ctx,
23 Diagnostic& Diag) {
24
Ted Kremenek546bded2008-02-14 22:54:17 +000025 if (Diag.hasErrorOccurred())
26 return;
27
Ted Kremeneke01c9872008-02-14 22:36:46 +000028 GRCoreEngine<GRExprEngine> Engine(cfg, FD, Ctx);
29 GRExprEngine* CheckerState = &Engine.getCheckerState();
30 GRSimpleVals GRSV;
31 CheckerState->setTransferFunctions(GRSV);
32
33 // Execute the worklist algorithm.
34 Engine.ExecuteWorkList();
35
36 // Look for explicit-Null dereferences and warn about them.
37 for (GRExprEngine::null_iterator I=CheckerState->null_begin(),
38 E=CheckerState->null_end(); I!=E; ++I) {
39
40 const PostStmt& L = cast<PostStmt>((*I)->getLocation());
41 Expr* E = cast<Expr>(L.getStmt());
42
43 Diag.Report(FullSourceLoc(E->getExprLoc(), Ctx.getSourceManager()),
44 diag::chkr_null_deref_after_check);
45 }
46
47#ifndef NDEBUG
48 CheckerState->ViewGraph();
49#endif
50 }
51} // end clang namespace
52
Ted Kremenekd59cccc2008-02-14 18:28:23 +000053//===----------------------------------------------------------------------===//
54// Transfer function for Casts.
55//===----------------------------------------------------------------------===//
56
57RValue GRSimpleVals::EvalCast(ValueManager& ValMgr, NonLValue X,
58 Expr* CastExpr) {
59
60 if (!isa<nonlval::ConcreteInt>(X))
61 return UnknownVal();
62
63 llvm::APSInt V = cast<nonlval::ConcreteInt>(X).getValue();
64 QualType T = CastExpr->getType();
65 V.setIsUnsigned(T->isUnsignedIntegerType() || T->isPointerType());
66 V.extOrTrunc(ValMgr.getContext().getTypeSize(T, CastExpr->getLocStart()));
67
68 if (CastExpr->getType()->isPointerType())
69 return lval::ConcreteInt(ValMgr.getValue(V));
70 else
71 return nonlval::ConcreteInt(ValMgr.getValue(V));
72}
73
74// Casts.
75
76RValue GRSimpleVals::EvalCast(ValueManager& ValMgr, LValue X, Expr* CastExpr) {
77
78 if (CastExpr->getType()->isPointerType())
79 return X;
80
81 assert (CastExpr->getType()->isIntegerType());
82
83 if (!isa<lval::ConcreteInt>(X))
84 return UnknownVal();
85
86 llvm::APSInt V = cast<lval::ConcreteInt>(X).getValue();
87 QualType T = CastExpr->getType();
88 V.setIsUnsigned(T->isUnsignedIntegerType() || T->isPointerType());
89 V.extOrTrunc(ValMgr.getContext().getTypeSize(T, CastExpr->getLocStart()));
90
91 return nonlval::ConcreteInt(ValMgr.getValue(V));
Ted Kremenekc3f261d2008-02-14 18:40:24 +000092}
93
94// Unary operators.
95
96NonLValue GRSimpleVals::EvalMinus(ValueManager& ValMgr, UnaryOperator* U,
97 NonLValue X) {
98
99 switch (X.getSubKind()) {
100 case nonlval::ConcreteIntKind:
101 return cast<nonlval::ConcreteInt>(X).EvalMinus(ValMgr, U);
102 default:
103 return cast<NonLValue>(UnknownVal());
104 }
105}
106
107NonLValue GRSimpleVals::EvalComplement(ValueManager& ValMgr, NonLValue X) {
108 switch (X.getSubKind()) {
109 case nonlval::ConcreteIntKind:
110 return cast<nonlval::ConcreteInt>(X).EvalComplement(ValMgr);
111 default:
112 return cast<NonLValue>(UnknownVal());
113 }
114}
Ted Kremenek6cb0b542008-02-14 19:37:24 +0000115
116// Binary operators.
117
118NonLValue GRSimpleVals::EvalBinaryOp(ValueManager& ValMgr,
119 BinaryOperator::Opcode Op,
120 NonLValue LHS, NonLValue RHS) {
121
122 if (isa<UnknownVal>(LHS) || isa<UnknownVal>(RHS))
123 return cast<NonLValue>(UnknownVal());
124
125 if (isa<UninitializedVal>(LHS) || isa<UninitializedVal>(RHS))
126 return cast<NonLValue>(UninitializedVal());
127
128 while(1) {
129
130 switch (LHS.getSubKind()) {
131 default:
132 return cast<NonLValue>(UnknownVal());
133
134 case nonlval::ConcreteIntKind:
135
136 if (isa<nonlval::ConcreteInt>(RHS)) {
137 const nonlval::ConcreteInt& LHS_CI = cast<nonlval::ConcreteInt>(LHS);
138 const nonlval::ConcreteInt& RHS_CI = cast<nonlval::ConcreteInt>(RHS);
139 return LHS_CI.EvalBinaryOp(ValMgr, Op, RHS_CI);
140 }
141 else if(isa<UnknownVal>(RHS))
142 return cast<NonLValue>(UnknownVal());
143 else {
144 NonLValue tmp = RHS;
145 RHS = LHS;
146 LHS = tmp;
147 continue;
148 }
149
150 case nonlval::SymbolValKind: {
151 if (isa<nonlval::ConcreteInt>(RHS)) {
152 const SymIntConstraint& C =
153 ValMgr.getConstraint(cast<nonlval::SymbolVal>(LHS).getSymbol(), Op,
154 cast<nonlval::ConcreteInt>(RHS).getValue());
155
156 return nonlval::SymIntConstraintVal(C);
157 }
158 else
159 return cast<NonLValue>(UnknownVal());
160 }
161 }
162 }
163}
164
165// Equality operators for LValues.
166
167
168NonLValue GRSimpleVals::EvalEQ(ValueManager& ValMgr, LValue LHS, LValue RHS) {
169
170 switch (LHS.getSubKind()) {
171 default:
172 assert(false && "EQ not implemented for this LValue.");
173 return cast<NonLValue>(UnknownVal());
174
175 case lval::ConcreteIntKind:
176 if (isa<lval::ConcreteInt>(RHS)) {
177 bool b = cast<lval::ConcreteInt>(LHS).getValue() ==
178 cast<lval::ConcreteInt>(RHS).getValue();
179
180 return NonLValue::GetIntTruthValue(ValMgr, b);
181 }
182 else if (isa<lval::SymbolVal>(RHS)) {
183
184 const SymIntConstraint& C =
185 ValMgr.getConstraint(cast<lval::SymbolVal>(RHS).getSymbol(),
186 BinaryOperator::EQ,
187 cast<lval::ConcreteInt>(LHS).getValue());
188
189 return nonlval::SymIntConstraintVal(C);
190 }
191
192 break;
193
194 case lval::SymbolValKind: {
195 if (isa<lval::ConcreteInt>(RHS)) {
196 const SymIntConstraint& C =
197 ValMgr.getConstraint(cast<lval::SymbolVal>(LHS).getSymbol(),
198 BinaryOperator::EQ,
199 cast<lval::ConcreteInt>(RHS).getValue());
200
201 return nonlval::SymIntConstraintVal(C);
202 }
203
204 assert (!isa<lval::SymbolVal>(RHS) && "FIXME: Implement unification.");
205
206 break;
207 }
208
209 case lval::DeclValKind:
210
211 if (isa<lval::DeclVal>(RHS)) {
212 bool b = cast<lval::DeclVal>(LHS) == cast<lval::DeclVal>(RHS);
213 return NonLValue::GetIntTruthValue(ValMgr, b);
214 }
215
216 break;
217 }
218
219 return NonLValue::GetIntTruthValue(ValMgr, false);
220}
221
222NonLValue GRSimpleVals::EvalNE(ValueManager& ValMgr, LValue LHS, LValue RHS) {
223
224 switch (LHS.getSubKind()) {
225 default:
226 assert(false && "NE not implemented for this LValue.");
227 return cast<NonLValue>(UnknownVal());
228
229 case lval::ConcreteIntKind:
230 if (isa<lval::ConcreteInt>(RHS)) {
231 bool b = cast<lval::ConcreteInt>(LHS).getValue() !=
232 cast<lval::ConcreteInt>(RHS).getValue();
233
234 return NonLValue::GetIntTruthValue(ValMgr, b);
235 }
236 else if (isa<lval::SymbolVal>(RHS)) {
237 const SymIntConstraint& C =
238 ValMgr.getConstraint(cast<lval::SymbolVal>(RHS).getSymbol(),
239 BinaryOperator::NE,
240 cast<lval::ConcreteInt>(LHS).getValue());
241
242 return nonlval::SymIntConstraintVal(C);
243 }
244
245 break;
246
247 case lval::SymbolValKind: {
248 if (isa<lval::ConcreteInt>(RHS)) {
249 const SymIntConstraint& C =
250 ValMgr.getConstraint(cast<lval::SymbolVal>(LHS).getSymbol(),
251 BinaryOperator::NE,
252 cast<lval::ConcreteInt>(RHS).getValue());
253
254 return nonlval::SymIntConstraintVal(C);
255 }
256
257 assert (!isa<lval::SymbolVal>(RHS) && "FIXME: Implement sym !=.");
258
259 break;
260 }
261
262 case lval::DeclValKind:
263 if (isa<lval::DeclVal>(RHS)) {
264 bool b = cast<lval::DeclVal>(LHS) == cast<lval::DeclVal>(RHS);
265 return NonLValue::GetIntTruthValue(ValMgr, b);
266 }
267
268 break;
269 }
270
271 return NonLValue::GetIntTruthValue(ValMgr, true);
272}