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Ted Kremenekef27b4b2008-01-14 23:24:37 +00001//==- GREngine.cpp - Path-Sensitive Dataflow Engine ----------------*- 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 file defines a generic engine for intraprocedural, path-sensitive,
11// dataflow analysis via graph reachability engine.
12//
13//===----------------------------------------------------------------------===//
14
15#include "clang/Analysis/PathSensitive/GREngine.h"
16#include "clang/AST/Expr.h"
17#include "llvm/Support/Compiler.h"
18#include "llvm/Support/Casting.h"
19#include "llvm/ADT/DenseMap.h"
20#include <vector>
21
22using llvm::cast;
23using llvm::isa;
24using namespace clang;
25
26namespace {
27 class VISIBILITY_HIDDEN DFS : public GRWorkList {
28 llvm::SmallVector<GRWorkListUnit,20> Stack;
29public:
30 virtual bool hasWork() const {
31 return !Stack.empty();
32 }
33
34 virtual void Enqueue(const GRWorkListUnit& U) {
35 Stack.push_back(U);
36 }
37
38 virtual GRWorkListUnit Dequeue() {
39 assert (!Stack.empty());
40 const GRWorkListUnit& U = Stack.back();
41 Stack.pop_back(); // This technically "invalidates" U, but we are fine.
42 return U;
43 }
44};
45} // end anonymous namespace
46
Ted Kremenekd2500ab2008-01-16 18:18:48 +000047// Place the dstor for GRWorkList here because it contains virtual member
48// functions, and we the code for the dstor generated in one compilation unit.
49GRWorkList::~GRWorkList() {}
50
Ted Kremenekef27b4b2008-01-14 23:24:37 +000051GRWorkList* GRWorkList::MakeDFS() { return new DFS(); }
52
53/// ExecuteWorkList - Run the worklist algorithm for a maximum number of steps.
54bool GREngineImpl::ExecuteWorkList(unsigned Steps) {
55
56 if (G->num_roots() == 0) { // Initialize the analysis by constructing
57 // the root if none exists.
58
Ted Kremenek7c647412008-01-29 00:33:40 +000059 CFGBlock* Entry = &getCFG().getEntry();
Ted Kremenekef27b4b2008-01-14 23:24:37 +000060
61 assert (Entry->empty() &&
62 "Entry block must be empty.");
63
64 assert (Entry->succ_size() == 1 &&
65 "Entry block must have 1 successor.");
66
67 // Get the solitary successor.
68 CFGBlock* Succ = *(Entry->succ_begin());
69
70 // Construct an edge representing the
71 // starting location in the function.
Ted Kremenek7c647412008-01-29 00:33:40 +000072 BlockEdge StartLoc(getCFG(), Entry, Succ);
Ted Kremenekef27b4b2008-01-14 23:24:37 +000073
74 // Generate the root.
75 GenerateNode(StartLoc, getInitialState());
76 }
77
78 while (Steps && WList->hasWork()) {
79 --Steps;
80 const GRWorkListUnit& WU = WList->Dequeue();
81 ExplodedNodeImpl* Node = WU.getNode();
82
83 // Dispatch on the location type.
84 switch (Node->getLocation().getKind()) {
85 default:
86 assert (isa<BlockEdge>(Node->getLocation()));
87 HandleBlockEdge(cast<BlockEdge>(Node->getLocation()), Node);
88 break;
89
90 case ProgramPoint::BlockEntranceKind:
91 HandleBlockEntrance(cast<BlockEntrance>(Node->getLocation()), Node);
92 break;
93
94 case ProgramPoint::BlockExitKind:
Ted Kremenek3226a652008-01-15 00:24:08 +000095 assert (false && "BlockExit location never occur in forward analysis.");
Ted Kremenekef27b4b2008-01-14 23:24:37 +000096 break;
97
98 case ProgramPoint::PostStmtKind:
99 HandlePostStmt(cast<PostStmt>(Node->getLocation()), WU.getBlock(),
100 WU.getIndex(), Node);
101 break;
102 }
103 }
104
105 return WList->hasWork();
106}
107
108void GREngineImpl::HandleBlockEdge(const BlockEdge& L, ExplodedNodeImpl* Pred) {
109
110 CFGBlock* Blk = L.getDst();
111
112 // Check if we are entering the EXIT block.
Ted Kremenek7c647412008-01-29 00:33:40 +0000113 if (Blk == &getCFG().getExit()) {
Ted Kremenekef27b4b2008-01-14 23:24:37 +0000114
Ted Kremenek7c647412008-01-29 00:33:40 +0000115 assert (getCFG().getExit().size() == 0
116 && "EXIT block cannot contain Stmts.");
Ted Kremenekef27b4b2008-01-14 23:24:37 +0000117
118 // Process the final state transition.
119 void* State = ProcessEOP(Blk, Pred->State);
120
121 bool IsNew;
122 ExplodedNodeImpl* Node = G->getNodeImpl(BlockEntrance(Blk), State, &IsNew);
123 Node->addPredecessor(Pred);
124
125 // If the node was freshly created, mark it as an "End-Of-Path" node.
126 if (IsNew) G->addEndOfPath(Node);
127
128 // This path is done. Don't enqueue any more nodes.
129 return;
130 }
131
132 // FIXME: we will dispatch to a function that
133 // manipulates the state at the entrance to a block.
134
Ted Kremenek3226a652008-01-15 00:24:08 +0000135 GenerateNode(BlockEntrance(Blk), Pred->State, Pred);
Ted Kremenekef27b4b2008-01-14 23:24:37 +0000136}
137
138void GREngineImpl::HandleBlockEntrance(const BlockEntrance& L,
139 ExplodedNodeImpl* Pred) {
140
141 if (Stmt* S = L.getFirstStmt()) {
Ted Kremenek1118e582008-01-29 22:11:49 +0000142 GRStmtNodeBuilderImpl Builder(L.getBlock(), 0, Pred, this);
Ted Kremenekef27b4b2008-01-14 23:24:37 +0000143 ProcessStmt(S, Builder);
144 }
Ted Kremenek3226a652008-01-15 00:24:08 +0000145 else
146 HandleBlockExit(L.getBlock(), Pred);
Ted Kremenekef27b4b2008-01-14 23:24:37 +0000147}
148
149
Ted Kremenek3226a652008-01-15 00:24:08 +0000150void GREngineImpl::HandleBlockExit(CFGBlock * B, ExplodedNodeImpl* Pred) {
Ted Kremenekef27b4b2008-01-14 23:24:37 +0000151
Ted Kremenek19fbb102008-01-29 22:56:11 +0000152 if (Stmt* Term = B->getTerminator()) {
153 switch (Term->getStmtClass()) {
154 default:
155 assert(false && "Analysis for this terminator not implemented.");
156 break;
157
158 case Stmt::IfStmtClass:
159 HandleBranch(cast<IfStmt>(Term)->getCond(), Term, B, Pred);
160 break;
161
162 case Stmt::ForStmtClass:
163 HandleBranch(cast<ForStmt>(Term)->getCond(), Term, B, Pred);
164 break;
165
166 case Stmt::WhileStmtClass:
167 HandleBranch(cast<WhileStmt>(Term)->getCond(), Term, B, Pred);
168 break;
169
170 case Stmt::DoStmtClass:
171 HandleBranch(cast<DoStmt>(Term)->getCond(), Term, B, Pred);
172 break;
173 }
174 }
Ted Kremenekef27b4b2008-01-14 23:24:37 +0000175 else {
176 assert (B->succ_size() == 1 &&
177 "Blocks with no terminator should have at most 1 successor.");
178
Ted Kremenek7c647412008-01-29 00:33:40 +0000179 GenerateNode(BlockEdge(getCFG(),B,*(B->succ_begin())), Pred->State, Pred);
Ted Kremenekef27b4b2008-01-14 23:24:37 +0000180 }
181}
182
Ted Kremenek19fbb102008-01-29 22:56:11 +0000183void GREngineImpl::HandleBranch(Stmt* Cond, Stmt* Term, CFGBlock * B,
184 ExplodedNodeImpl* Pred) {
185 assert (B->succ_size() == 2);
186
187 GRBranchNodeBuilderImpl Builder(B, *(B->succ_begin()), *(B->succ_begin()+1),
188 Pred, this);
189
190 ProcessBranch(Cond, Term, Builder);
191}
192
Ted Kremenekef27b4b2008-01-14 23:24:37 +0000193void GREngineImpl::HandlePostStmt(const PostStmt& L, CFGBlock* B,
194 unsigned StmtIdx, ExplodedNodeImpl* Pred) {
195
196 assert (!B->empty());
197
Ted Kremenek3226a652008-01-15 00:24:08 +0000198 if (StmtIdx == B->size())
199 HandleBlockExit(B, Pred);
Ted Kremenekef27b4b2008-01-14 23:24:37 +0000200 else {
Ted Kremenek1118e582008-01-29 22:11:49 +0000201 GRStmtNodeBuilderImpl Builder(B, StmtIdx, Pred, this);
Ted Kremenekc0f1aae2008-01-16 22:13:19 +0000202 ProcessStmt((*B)[StmtIdx], Builder);
Ted Kremenekef27b4b2008-01-14 23:24:37 +0000203 }
204}
205
206typedef llvm::DenseMap<Stmt*,Stmt*> ParentMapTy;
207/// PopulateParentMap - Recurse the AST starting at 'Parent' and add the
208/// mappings between child and parent to ParentMap.
209static void PopulateParentMap(Stmt* Parent, ParentMapTy& M) {
210 for (Stmt::child_iterator I=Parent->child_begin(),
211 E=Parent->child_end(); I!=E; ++I) {
212
213 assert (M.find(*I) == M.end());
214 M[*I] = Parent;
215 PopulateParentMap(*I, M);
216 }
217}
218
219/// GenerateNode - Utility method to generate nodes, hook up successors,
220/// and add nodes to the worklist.
221void GREngineImpl::GenerateNode(const ProgramPoint& Loc, void* State,
222 ExplodedNodeImpl* Pred) {
223
224 bool IsNew;
225 ExplodedNodeImpl* Node = G->getNodeImpl(Loc, State, &IsNew);
226
227 if (Pred)
228 Node->addPredecessor(Pred); // Link 'Node' with its predecessor.
229 else {
230 assert (IsNew);
231 G->addRoot(Node); // 'Node' has no predecessor. Make it a root.
232 }
233
234 // Only add 'Node' to the worklist if it was freshly generated.
235 if (IsNew) WList->Enqueue(GRWorkListUnit(Node));
236}
237
Ted Kremenek1118e582008-01-29 22:11:49 +0000238GRStmtNodeBuilderImpl::GRStmtNodeBuilderImpl(CFGBlock* b, unsigned idx,
Ted Kremenekef27b4b2008-01-14 23:24:37 +0000239 ExplodedNodeImpl* N, GREngineImpl* e)
240 : Eng(*e), B(*b), Idx(idx), LastNode(N), Populated(false) {
241 Deferred.insert(N);
242}
243
Ted Kremenek1118e582008-01-29 22:11:49 +0000244GRStmtNodeBuilderImpl::~GRStmtNodeBuilderImpl() {
Ted Kremenekef27b4b2008-01-14 23:24:37 +0000245 for (DeferredTy::iterator I=Deferred.begin(), E=Deferred.end(); I!=E; ++I)
Ted Kremenek90960972008-01-30 23:03:39 +0000246 if (!(*I)->isSink())
Ted Kremenekef27b4b2008-01-14 23:24:37 +0000247 GenerateAutoTransition(*I);
248}
249
Ted Kremenek1118e582008-01-29 22:11:49 +0000250void GRStmtNodeBuilderImpl::GenerateAutoTransition(ExplodedNodeImpl* N) {
Ted Kremenek90960972008-01-30 23:03:39 +0000251 assert (!N->isSink());
Ted Kremenekef27b4b2008-01-14 23:24:37 +0000252
253 PostStmt Loc(getStmt());
254
255 if (Loc == N->getLocation()) {
256 // Note: 'N' should be a fresh node because otherwise it shouldn't be
257 // a member of Deferred.
258 Eng.WList->Enqueue(N, B, Idx+1);
259 return;
260 }
261
262 bool IsNew;
263 ExplodedNodeImpl* Succ = Eng.G->getNodeImpl(Loc, N->State, &IsNew);
264 Succ->addPredecessor(N);
265
266 if (IsNew)
267 Eng.WList->Enqueue(Succ, B, Idx+1);
268}
269
Ted Kremenek1118e582008-01-29 22:11:49 +0000270ExplodedNodeImpl* GRStmtNodeBuilderImpl::generateNodeImpl(Stmt* S, void* State,
Ted Kremenekef27b4b2008-01-14 23:24:37 +0000271 ExplodedNodeImpl* Pred) {
272
273 bool IsNew;
274 ExplodedNodeImpl* N = Eng.G->getNodeImpl(PostStmt(S), State, &IsNew);
275 N->addPredecessor(Pred);
276 Deferred.erase(Pred);
277
278 HasGeneratedNode = true;
279
280 if (IsNew) {
281 Deferred.insert(N);
282 LastNode = N;
283 return N;
284 }
285
286 LastNode = NULL;
287 return NULL;
288}
Ted Kremenek19fbb102008-01-29 22:56:11 +0000289
Ted Kremenek90960972008-01-30 23:03:39 +0000290ExplodedNodeImpl* GRBranchNodeBuilderImpl::generateNodeImpl(void* State,
291 bool branch) {
Ted Kremenek19fbb102008-01-29 22:56:11 +0000292 bool IsNew;
293
294 ExplodedNodeImpl* Succ =
295 Eng.G->getNodeImpl(BlockEdge(Eng.getCFG(), Src, branch ? DstT : DstF),
296 State, &IsNew);
297
298 Succ->addPredecessor(Pred);
299
Ted Kremenek6ff3cea2008-01-29 23:32:35 +0000300 if (branch) GeneratedTrue = true;
301 else GeneratedFalse = true;
302
Ted Kremenek90960972008-01-30 23:03:39 +0000303 if (IsNew) {
Ted Kremenek428d39e2008-01-30 23:24:39 +0000304 Deferred.push_back(Succ);
Ted Kremenek90960972008-01-30 23:03:39 +0000305 return Succ;
306 }
307
308 return NULL;
Ted Kremenek19fbb102008-01-29 22:56:11 +0000309}
Ted Kremenek6ff3cea2008-01-29 23:32:35 +0000310
311GRBranchNodeBuilderImpl::~GRBranchNodeBuilderImpl() {
312 if (!GeneratedTrue) generateNodeImpl(Pred->State, true);
313 if (!GeneratedFalse) generateNodeImpl(Pred->State, false);
Ted Kremenek428d39e2008-01-30 23:24:39 +0000314
315 for (DeferredTy::iterator I=Deferred.begin(), E=Deferred.end(); I!=E; ++I)
316 if (!(*I)->isSink()) Eng.WList->Enqueue(GRWorkListUnit(*I));
Ted Kremenek6ff3cea2008-01-29 23:32:35 +0000317}