1fa0734ecSArgyrios Kyrtzidis //=-- ExplodedGraph.cpp - Local, Path-Sens. "Exploded Graph" -*- C++ -*------=//
2fa0734ecSArgyrios Kyrtzidis //
3fa0734ecSArgyrios Kyrtzidis //                     The LLVM Compiler Infrastructure
4fa0734ecSArgyrios Kyrtzidis //
5fa0734ecSArgyrios Kyrtzidis // This file is distributed under the University of Illinois Open Source
6fa0734ecSArgyrios Kyrtzidis // License. See LICENSE.TXT for details.
7fa0734ecSArgyrios Kyrtzidis //
8fa0734ecSArgyrios Kyrtzidis //===----------------------------------------------------------------------===//
9fa0734ecSArgyrios Kyrtzidis //
10fa0734ecSArgyrios Kyrtzidis //  This file defines the template classes ExplodedNode and ExplodedGraph,
11fa0734ecSArgyrios Kyrtzidis //  which represent a path-sensitive, intra-procedural "exploded graph."
12fa0734ecSArgyrios Kyrtzidis //
13fa0734ecSArgyrios Kyrtzidis //===----------------------------------------------------------------------===//
14*7aa3687bSAnna Zaks #define DEBUG_TYPE "CoreEngine"
15fa0734ecSArgyrios Kyrtzidis 
16f8cbac4bSTed Kremenek #include "clang/StaticAnalyzer/Core/PathSensitive/ExplodedGraph.h"
177ba26150SAnna Zaks #include "clang/StaticAnalyzer/Core/PathSensitive/ObjCMessage.h"
18001fd5b4STed Kremenek #include "clang/StaticAnalyzer/Core/PathSensitive/ProgramState.h"
19fa0734ecSArgyrios Kyrtzidis #include "clang/AST/Stmt.h"
2044d2973bSTed Kremenek #include "clang/AST/ParentMap.h"
21fa0734ecSArgyrios Kyrtzidis #include "llvm/ADT/DenseSet.h"
22fa0734ecSArgyrios Kyrtzidis #include "llvm/ADT/DenseMap.h"
23fa0734ecSArgyrios Kyrtzidis #include "llvm/ADT/SmallVector.h"
24*7aa3687bSAnna Zaks #include "llvm/ADT/Statistic.h"
25fa0734ecSArgyrios Kyrtzidis #include <vector>
26fa0734ecSArgyrios Kyrtzidis 
27fa0734ecSArgyrios Kyrtzidis using namespace clang;
28fa0734ecSArgyrios Kyrtzidis using namespace ento;
29fa0734ecSArgyrios Kyrtzidis 
30*7aa3687bSAnna Zaks STATISTIC(NumNodesWithMoreThanTwoSucc,
31*7aa3687bSAnna Zaks             "The # of nodes with more than 2 successors.");
32*7aa3687bSAnna Zaks 
33fa0734ecSArgyrios Kyrtzidis //===----------------------------------------------------------------------===//
34fa0734ecSArgyrios Kyrtzidis // Node auditing.
35fa0734ecSArgyrios Kyrtzidis //===----------------------------------------------------------------------===//
36fa0734ecSArgyrios Kyrtzidis 
37fa0734ecSArgyrios Kyrtzidis // An out of line virtual method to provide a home for the class vtable.
38fa0734ecSArgyrios Kyrtzidis ExplodedNode::Auditor::~Auditor() {}
39fa0734ecSArgyrios Kyrtzidis 
40fa0734ecSArgyrios Kyrtzidis #ifndef NDEBUG
41fa0734ecSArgyrios Kyrtzidis static ExplodedNode::Auditor* NodeAuditor = 0;
42fa0734ecSArgyrios Kyrtzidis #endif
43fa0734ecSArgyrios Kyrtzidis 
44fa0734ecSArgyrios Kyrtzidis void ExplodedNode::SetAuditor(ExplodedNode::Auditor* A) {
45fa0734ecSArgyrios Kyrtzidis #ifndef NDEBUG
46fa0734ecSArgyrios Kyrtzidis   NodeAuditor = A;
47fa0734ecSArgyrios Kyrtzidis #endif
48fa0734ecSArgyrios Kyrtzidis }
49fa0734ecSArgyrios Kyrtzidis 
50fa0734ecSArgyrios Kyrtzidis //===----------------------------------------------------------------------===//
51a40f8ebcSTed Kremenek // Cleanup.
52a40f8ebcSTed Kremenek //===----------------------------------------------------------------------===//
53a40f8ebcSTed Kremenek 
5435e55fe4STed Kremenek static const unsigned CounterTop = 1000;
5535e55fe4STed Kremenek 
5644d2973bSTed Kremenek ExplodedGraph::ExplodedGraph()
5735e55fe4STed Kremenek   : NumNodes(0), reclaimNodes(false), reclaimCounter(CounterTop) {}
5844d2973bSTed Kremenek 
59a2aa929eSTed Kremenek ExplodedGraph::~ExplodedGraph() {}
60a40f8ebcSTed Kremenek 
61a40f8ebcSTed Kremenek //===----------------------------------------------------------------------===//
62a40f8ebcSTed Kremenek // Node reclamation.
63a40f8ebcSTed Kremenek //===----------------------------------------------------------------------===//
64a40f8ebcSTed Kremenek 
651dd7fd71STed Kremenek bool ExplodedGraph::shouldCollect(const ExplodedNode *node) {
667e53bd6fSAnna Zaks   // Reclaim all nodes that match *all* the following criteria:
671dd7fd71STed Kremenek   //
681dd7fd71STed Kremenek   // (1) 1 predecessor (that has one successor)
691dd7fd71STed Kremenek   // (2) 1 successor (that has one predecessor)
701dd7fd71STed Kremenek   // (3) The ProgramPoint is for a PostStmt.
711dd7fd71STed Kremenek   // (4) There is no 'tag' for the ProgramPoint.
721dd7fd71STed Kremenek   // (5) The 'store' is the same as the predecessor.
731dd7fd71STed Kremenek   // (6) The 'GDM' is the same as the predecessor.
741dd7fd71STed Kremenek   // (7) The LocationContext is the same as the predecessor.
751dd7fd71STed Kremenek   // (8) The PostStmt is for a non-consumed Stmt or Expr.
76bec49efdSAnna Zaks   // (9) The successor is a CallExpr StmtPoint (so that we would be able to
77bec49efdSAnna Zaks   //     find it when retrying a call with no inlining).
781dd7fd71STed Kremenek 
791dd7fd71STed Kremenek   // Conditions 1 and 2.
801dd7fd71STed Kremenek   if (node->pred_size() != 1 || node->succ_size() != 1)
811dd7fd71STed Kremenek     return false;
821dd7fd71STed Kremenek 
831dd7fd71STed Kremenek   const ExplodedNode *pred = *(node->pred_begin());
841dd7fd71STed Kremenek   if (pred->succ_size() != 1)
851dd7fd71STed Kremenek     return false;
861dd7fd71STed Kremenek 
871dd7fd71STed Kremenek   const ExplodedNode *succ = *(node->succ_begin());
881dd7fd71STed Kremenek   if (succ->pred_size() != 1)
891dd7fd71STed Kremenek     return false;
901dd7fd71STed Kremenek 
911dd7fd71STed Kremenek   // Condition 3.
921dd7fd71STed Kremenek   ProgramPoint progPoint = node->getLocation();
931dd7fd71STed Kremenek   if (!isa<PostStmt>(progPoint) ||
947e53bd6fSAnna Zaks       (isa<CallEnter>(progPoint) ||
957e53bd6fSAnna Zaks        isa<CallExitBegin>(progPoint) || isa<CallExitEnd>(progPoint)))
961dd7fd71STed Kremenek     return false;
971dd7fd71STed Kremenek 
981dd7fd71STed Kremenek   // Condition 4.
991dd7fd71STed Kremenek   PostStmt ps = cast<PostStmt>(progPoint);
1001dd7fd71STed Kremenek   if (ps.getTag())
1011dd7fd71STed Kremenek     return false;
1021dd7fd71STed Kremenek 
1031dd7fd71STed Kremenek   if (isa<BinaryOperator>(ps.getStmt()))
1041dd7fd71STed Kremenek     return false;
1051dd7fd71STed Kremenek 
1061dd7fd71STed Kremenek   // Conditions 5, 6, and 7.
1071dd7fd71STed Kremenek   ProgramStateRef state = node->getState();
1081dd7fd71STed Kremenek   ProgramStateRef pred_state = pred->getState();
1091dd7fd71STed Kremenek   if (state->store != pred_state->store || state->GDM != pred_state->GDM ||
1101dd7fd71STed Kremenek       progPoint.getLocationContext() != pred->getLocationContext())
1111dd7fd71STed Kremenek     return false;
1121dd7fd71STed Kremenek 
1131dd7fd71STed Kremenek   // Condition 8.
1141dd7fd71STed Kremenek   if (const Expr *Ex = dyn_cast<Expr>(ps.getStmt())) {
1151dd7fd71STed Kremenek     ParentMap &PM = progPoint.getLocationContext()->getParentMap();
1161dd7fd71STed Kremenek     if (!PM.isConsumedExpr(Ex))
1171dd7fd71STed Kremenek       return false;
1181dd7fd71STed Kremenek   }
1191dd7fd71STed Kremenek 
120bec49efdSAnna Zaks   // Condition 9.
121bec49efdSAnna Zaks   const ProgramPoint SuccLoc = succ->getLocation();
122bec49efdSAnna Zaks   if (const StmtPoint *SP = dyn_cast<StmtPoint>(&SuccLoc))
1237ba26150SAnna Zaks     if (CallOrObjCMessage::canBeInlined(SP->getStmt()))
124bec49efdSAnna Zaks       return false;
125bec49efdSAnna Zaks 
1261dd7fd71STed Kremenek   return true;
1271dd7fd71STed Kremenek }
1281dd7fd71STed Kremenek 
1291dd7fd71STed Kremenek void ExplodedGraph::collectNode(ExplodedNode *node) {
1301dd7fd71STed Kremenek   // Removing a node means:
1311dd7fd71STed Kremenek   // (a) changing the predecessors successor to the successor of this node
1321dd7fd71STed Kremenek   // (b) changing the successors predecessor to the predecessor of this node
1331dd7fd71STed Kremenek   // (c) Putting 'node' onto freeNodes.
1341dd7fd71STed Kremenek   assert(node->pred_size() == 1 || node->succ_size() == 1);
1351dd7fd71STed Kremenek   ExplodedNode *pred = *(node->pred_begin());
1361dd7fd71STed Kremenek   ExplodedNode *succ = *(node->succ_begin());
1371dd7fd71STed Kremenek   pred->replaceSuccessor(succ);
1381dd7fd71STed Kremenek   succ->replacePredecessor(pred);
139a2aa929eSTed Kremenek   FreeNodes.push_back(node);
1401dd7fd71STed Kremenek   Nodes.RemoveNode(node);
1411dd7fd71STed Kremenek   --NumNodes;
1421dd7fd71STed Kremenek   node->~ExplodedNode();
1431dd7fd71STed Kremenek }
1441dd7fd71STed Kremenek 
14535e55fe4STed Kremenek void ExplodedGraph::reclaimRecentlyAllocatedNodes() {
146a2aa929eSTed Kremenek   if (ChangedNodes.empty())
147a40f8ebcSTed Kremenek     return;
14844d2973bSTed Kremenek 
14935e55fe4STed Kremenek   // Only periodically relcaim nodes so that we can build up a set of
15035e55fe4STed Kremenek   // nodes that meet the reclamation criteria.  Freshly created nodes
15135e55fe4STed Kremenek   // by definition have no successor, and thus cannot be reclaimed (see below).
15235e55fe4STed Kremenek   assert(reclaimCounter > 0);
15335e55fe4STed Kremenek   if (--reclaimCounter != 0)
15435e55fe4STed Kremenek     return;
15535e55fe4STed Kremenek   reclaimCounter = CounterTop;
15635e55fe4STed Kremenek 
15735e55fe4STed Kremenek   for (NodeVector::iterator it = ChangedNodes.begin(), et = ChangedNodes.end();
158a2aa929eSTed Kremenek        it != et; ++it) {
159a2aa929eSTed Kremenek     ExplodedNode *node = *it;
1601dd7fd71STed Kremenek     if (shouldCollect(node))
1611dd7fd71STed Kremenek       collectNode(node);
162a40f8ebcSTed Kremenek   }
163a2aa929eSTed Kremenek   ChangedNodes.clear();
164a40f8ebcSTed Kremenek }
165a40f8ebcSTed Kremenek 
166a40f8ebcSTed Kremenek //===----------------------------------------------------------------------===//
167fa0734ecSArgyrios Kyrtzidis // ExplodedNode.
168fa0734ecSArgyrios Kyrtzidis //===----------------------------------------------------------------------===//
169fa0734ecSArgyrios Kyrtzidis 
170fa0734ecSArgyrios Kyrtzidis static inline BumpVector<ExplodedNode*>& getVector(void *P) {
171fa0734ecSArgyrios Kyrtzidis   return *reinterpret_cast<BumpVector<ExplodedNode*>*>(P);
172fa0734ecSArgyrios Kyrtzidis }
173fa0734ecSArgyrios Kyrtzidis 
174fa0734ecSArgyrios Kyrtzidis void ExplodedNode::addPredecessor(ExplodedNode *V, ExplodedGraph &G) {
175fa0734ecSArgyrios Kyrtzidis   assert (!V->isSink());
176fa0734ecSArgyrios Kyrtzidis   Preds.addNode(V, G);
177fa0734ecSArgyrios Kyrtzidis   V->Succs.addNode(this, G);
178*7aa3687bSAnna Zaks   if (V->Succs.size() == 3)
179*7aa3687bSAnna Zaks     NumNodesWithMoreThanTwoSucc++;
180fa0734ecSArgyrios Kyrtzidis #ifndef NDEBUG
181fa0734ecSArgyrios Kyrtzidis   if (NodeAuditor) NodeAuditor->AddEdge(V, this);
182fa0734ecSArgyrios Kyrtzidis #endif
183fa0734ecSArgyrios Kyrtzidis }
184fa0734ecSArgyrios Kyrtzidis 
185a40f8ebcSTed Kremenek void ExplodedNode::NodeGroup::replaceNode(ExplodedNode *node) {
186a40f8ebcSTed Kremenek   assert(getKind() == Size1);
187a40f8ebcSTed Kremenek   P = reinterpret_cast<uintptr_t>(node);
188a40f8ebcSTed Kremenek   assert(getKind() == Size1);
189a40f8ebcSTed Kremenek }
190a40f8ebcSTed Kremenek 
191fa0734ecSArgyrios Kyrtzidis void ExplodedNode::NodeGroup::addNode(ExplodedNode *N, ExplodedGraph &G) {
192fa0734ecSArgyrios Kyrtzidis   assert((reinterpret_cast<uintptr_t>(N) & Mask) == 0x0);
193fa0734ecSArgyrios Kyrtzidis   assert(!getFlag());
194fa0734ecSArgyrios Kyrtzidis 
195fa0734ecSArgyrios Kyrtzidis   if (getKind() == Size1) {
196fa0734ecSArgyrios Kyrtzidis     if (ExplodedNode *NOld = getNode()) {
197fa0734ecSArgyrios Kyrtzidis       BumpVectorContext &Ctx = G.getNodeAllocator();
198fa0734ecSArgyrios Kyrtzidis       BumpVector<ExplodedNode*> *V =
199fa0734ecSArgyrios Kyrtzidis         G.getAllocator().Allocate<BumpVector<ExplodedNode*> >();
200fa0734ecSArgyrios Kyrtzidis       new (V) BumpVector<ExplodedNode*>(Ctx, 4);
201fa0734ecSArgyrios Kyrtzidis 
202fa0734ecSArgyrios Kyrtzidis       assert((reinterpret_cast<uintptr_t>(V) & Mask) == 0x0);
203fa0734ecSArgyrios Kyrtzidis       V->push_back(NOld, Ctx);
204fa0734ecSArgyrios Kyrtzidis       V->push_back(N, Ctx);
205fa0734ecSArgyrios Kyrtzidis       P = reinterpret_cast<uintptr_t>(V) | SizeOther;
206fa0734ecSArgyrios Kyrtzidis       assert(getPtr() == (void*) V);
207fa0734ecSArgyrios Kyrtzidis       assert(getKind() == SizeOther);
208fa0734ecSArgyrios Kyrtzidis     }
209fa0734ecSArgyrios Kyrtzidis     else {
210fa0734ecSArgyrios Kyrtzidis       P = reinterpret_cast<uintptr_t>(N);
211fa0734ecSArgyrios Kyrtzidis       assert(getKind() == Size1);
212fa0734ecSArgyrios Kyrtzidis     }
213fa0734ecSArgyrios Kyrtzidis   }
214fa0734ecSArgyrios Kyrtzidis   else {
215fa0734ecSArgyrios Kyrtzidis     assert(getKind() == SizeOther);
216fa0734ecSArgyrios Kyrtzidis     getVector(getPtr()).push_back(N, G.getNodeAllocator());
217fa0734ecSArgyrios Kyrtzidis   }
218fa0734ecSArgyrios Kyrtzidis }
219fa0734ecSArgyrios Kyrtzidis 
220fa0734ecSArgyrios Kyrtzidis unsigned ExplodedNode::NodeGroup::size() const {
221fa0734ecSArgyrios Kyrtzidis   if (getFlag())
222fa0734ecSArgyrios Kyrtzidis     return 0;
223fa0734ecSArgyrios Kyrtzidis 
224fa0734ecSArgyrios Kyrtzidis   if (getKind() == Size1)
225fa0734ecSArgyrios Kyrtzidis     return getNode() ? 1 : 0;
226fa0734ecSArgyrios Kyrtzidis   else
227fa0734ecSArgyrios Kyrtzidis     return getVector(getPtr()).size();
228fa0734ecSArgyrios Kyrtzidis }
229fa0734ecSArgyrios Kyrtzidis 
230fa0734ecSArgyrios Kyrtzidis ExplodedNode **ExplodedNode::NodeGroup::begin() const {
231fa0734ecSArgyrios Kyrtzidis   if (getFlag())
232fa0734ecSArgyrios Kyrtzidis     return NULL;
233fa0734ecSArgyrios Kyrtzidis 
234fa0734ecSArgyrios Kyrtzidis   if (getKind() == Size1)
235fa0734ecSArgyrios Kyrtzidis     return (ExplodedNode**) (getPtr() ? &P : NULL);
236fa0734ecSArgyrios Kyrtzidis   else
237fa0734ecSArgyrios Kyrtzidis     return const_cast<ExplodedNode**>(&*(getVector(getPtr()).begin()));
238fa0734ecSArgyrios Kyrtzidis }
239fa0734ecSArgyrios Kyrtzidis 
240fa0734ecSArgyrios Kyrtzidis ExplodedNode** ExplodedNode::NodeGroup::end() const {
241fa0734ecSArgyrios Kyrtzidis   if (getFlag())
242fa0734ecSArgyrios Kyrtzidis     return NULL;
243fa0734ecSArgyrios Kyrtzidis 
244fa0734ecSArgyrios Kyrtzidis   if (getKind() == Size1)
245fa0734ecSArgyrios Kyrtzidis     return (ExplodedNode**) (getPtr() ? &P+1 : NULL);
246fa0734ecSArgyrios Kyrtzidis   else {
247fa0734ecSArgyrios Kyrtzidis     // Dereferencing end() is undefined behaviour. The vector is not empty, so
248fa0734ecSArgyrios Kyrtzidis     // we can dereference the last elem and then add 1 to the result.
249fa0734ecSArgyrios Kyrtzidis     return const_cast<ExplodedNode**>(getVector(getPtr()).end());
250fa0734ecSArgyrios Kyrtzidis   }
251fa0734ecSArgyrios Kyrtzidis }
252fa0734ecSArgyrios Kyrtzidis 
253fa0734ecSArgyrios Kyrtzidis ExplodedNode *ExplodedGraph::getNode(const ProgramPoint &L,
25449b1e38eSTed Kremenek                                      ProgramStateRef State,
25549ea5bf5SAnna Zaks                                      bool IsSink,
25649ea5bf5SAnna Zaks                                      bool* IsNew) {
257fa0734ecSArgyrios Kyrtzidis   // Profile 'State' to determine if we already have an existing node.
258fa0734ecSArgyrios Kyrtzidis   llvm::FoldingSetNodeID profile;
259fa0734ecSArgyrios Kyrtzidis   void *InsertPos = 0;
260fa0734ecSArgyrios Kyrtzidis 
26149ea5bf5SAnna Zaks   NodeTy::Profile(profile, L, State, IsSink);
262fa0734ecSArgyrios Kyrtzidis   NodeTy* V = Nodes.FindNodeOrInsertPos(profile, InsertPos);
263fa0734ecSArgyrios Kyrtzidis 
264fa0734ecSArgyrios Kyrtzidis   if (!V) {
265a2aa929eSTed Kremenek     if (!FreeNodes.empty()) {
266a2aa929eSTed Kremenek       V = FreeNodes.back();
267a2aa929eSTed Kremenek       FreeNodes.pop_back();
268a40f8ebcSTed Kremenek     }
269a40f8ebcSTed Kremenek     else {
270fa0734ecSArgyrios Kyrtzidis       // Allocate a new node.
271fa0734ecSArgyrios Kyrtzidis       V = (NodeTy*) getAllocator().Allocate<NodeTy>();
272a40f8ebcSTed Kremenek     }
273a40f8ebcSTed Kremenek 
27449ea5bf5SAnna Zaks     new (V) NodeTy(L, State, IsSink);
275fa0734ecSArgyrios Kyrtzidis 
27635e55fe4STed Kremenek     if (reclaimNodes)
27735e55fe4STed Kremenek       ChangedNodes.push_back(V);
27835e55fe4STed Kremenek 
279fa0734ecSArgyrios Kyrtzidis     // Insert the node into the node set and return it.
280fa0734ecSArgyrios Kyrtzidis     Nodes.InsertNode(V, InsertPos);
281fa0734ecSArgyrios Kyrtzidis     ++NumNodes;
282fa0734ecSArgyrios Kyrtzidis 
283fa0734ecSArgyrios Kyrtzidis     if (IsNew) *IsNew = true;
284fa0734ecSArgyrios Kyrtzidis   }
285fa0734ecSArgyrios Kyrtzidis   else
286fa0734ecSArgyrios Kyrtzidis     if (IsNew) *IsNew = false;
287fa0734ecSArgyrios Kyrtzidis 
288fa0734ecSArgyrios Kyrtzidis   return V;
289fa0734ecSArgyrios Kyrtzidis }
290fa0734ecSArgyrios Kyrtzidis 
291fa0734ecSArgyrios Kyrtzidis std::pair<ExplodedGraph*, InterExplodedGraphMap*>
292fa0734ecSArgyrios Kyrtzidis ExplodedGraph::Trim(const NodeTy* const* NBeg, const NodeTy* const* NEnd,
293fa0734ecSArgyrios Kyrtzidis                llvm::DenseMap<const void*, const void*> *InverseMap) const {
294fa0734ecSArgyrios Kyrtzidis 
295fa0734ecSArgyrios Kyrtzidis   if (NBeg == NEnd)
296fa0734ecSArgyrios Kyrtzidis     return std::make_pair((ExplodedGraph*) 0,
297fa0734ecSArgyrios Kyrtzidis                           (InterExplodedGraphMap*) 0);
298fa0734ecSArgyrios Kyrtzidis 
299fa0734ecSArgyrios Kyrtzidis   assert (NBeg < NEnd);
300fa0734ecSArgyrios Kyrtzidis 
301e2778999SDylan Noblesmith   OwningPtr<InterExplodedGraphMap> M(new InterExplodedGraphMap());
302fa0734ecSArgyrios Kyrtzidis 
303fa0734ecSArgyrios Kyrtzidis   ExplodedGraph* G = TrimInternal(NBeg, NEnd, M.get(), InverseMap);
304fa0734ecSArgyrios Kyrtzidis 
305fa0734ecSArgyrios Kyrtzidis   return std::make_pair(static_cast<ExplodedGraph*>(G), M.take());
306fa0734ecSArgyrios Kyrtzidis }
307fa0734ecSArgyrios Kyrtzidis 
308fa0734ecSArgyrios Kyrtzidis ExplodedGraph*
309fa0734ecSArgyrios Kyrtzidis ExplodedGraph::TrimInternal(const ExplodedNode* const* BeginSources,
310fa0734ecSArgyrios Kyrtzidis                             const ExplodedNode* const* EndSources,
311fa0734ecSArgyrios Kyrtzidis                             InterExplodedGraphMap* M,
312fa0734ecSArgyrios Kyrtzidis                    llvm::DenseMap<const void*, const void*> *InverseMap) const {
313fa0734ecSArgyrios Kyrtzidis 
314fa0734ecSArgyrios Kyrtzidis   typedef llvm::DenseSet<const ExplodedNode*> Pass1Ty;
315fa0734ecSArgyrios Kyrtzidis   Pass1Ty Pass1;
316fa0734ecSArgyrios Kyrtzidis 
317fa0734ecSArgyrios Kyrtzidis   typedef llvm::DenseMap<const ExplodedNode*, ExplodedNode*> Pass2Ty;
318fa0734ecSArgyrios Kyrtzidis   Pass2Ty& Pass2 = M->M;
319fa0734ecSArgyrios Kyrtzidis 
3200e62c1ccSChris Lattner   SmallVector<const ExplodedNode*, 10> WL1, WL2;
321fa0734ecSArgyrios Kyrtzidis 
322fa0734ecSArgyrios Kyrtzidis   // ===- Pass 1 (reverse DFS) -===
323fa0734ecSArgyrios Kyrtzidis   for (const ExplodedNode* const* I = BeginSources; I != EndSources; ++I) {
324fa0734ecSArgyrios Kyrtzidis     assert(*I);
325fa0734ecSArgyrios Kyrtzidis     WL1.push_back(*I);
326fa0734ecSArgyrios Kyrtzidis   }
327fa0734ecSArgyrios Kyrtzidis 
328fa0734ecSArgyrios Kyrtzidis   // Process the first worklist until it is empty.  Because it is a std::list
329fa0734ecSArgyrios Kyrtzidis   // it acts like a FIFO queue.
330fa0734ecSArgyrios Kyrtzidis   while (!WL1.empty()) {
331fa0734ecSArgyrios Kyrtzidis     const ExplodedNode *N = WL1.back();
332fa0734ecSArgyrios Kyrtzidis     WL1.pop_back();
333fa0734ecSArgyrios Kyrtzidis 
334fa0734ecSArgyrios Kyrtzidis     // Have we already visited this node?  If so, continue to the next one.
335fa0734ecSArgyrios Kyrtzidis     if (Pass1.count(N))
336fa0734ecSArgyrios Kyrtzidis       continue;
337fa0734ecSArgyrios Kyrtzidis 
338fa0734ecSArgyrios Kyrtzidis     // Otherwise, mark this node as visited.
339fa0734ecSArgyrios Kyrtzidis     Pass1.insert(N);
340fa0734ecSArgyrios Kyrtzidis 
341fa0734ecSArgyrios Kyrtzidis     // If this is a root enqueue it to the second worklist.
342fa0734ecSArgyrios Kyrtzidis     if (N->Preds.empty()) {
343fa0734ecSArgyrios Kyrtzidis       WL2.push_back(N);
344fa0734ecSArgyrios Kyrtzidis       continue;
345fa0734ecSArgyrios Kyrtzidis     }
346fa0734ecSArgyrios Kyrtzidis 
347fa0734ecSArgyrios Kyrtzidis     // Visit our predecessors and enqueue them.
348fa0734ecSArgyrios Kyrtzidis     for (ExplodedNode** I=N->Preds.begin(), **E=N->Preds.end(); I!=E; ++I)
349fa0734ecSArgyrios Kyrtzidis       WL1.push_back(*I);
350fa0734ecSArgyrios Kyrtzidis   }
351fa0734ecSArgyrios Kyrtzidis 
352fa0734ecSArgyrios Kyrtzidis   // We didn't hit a root? Return with a null pointer for the new graph.
353fa0734ecSArgyrios Kyrtzidis   if (WL2.empty())
354fa0734ecSArgyrios Kyrtzidis     return 0;
355fa0734ecSArgyrios Kyrtzidis 
356fa0734ecSArgyrios Kyrtzidis   // Create an empty graph.
357fa0734ecSArgyrios Kyrtzidis   ExplodedGraph* G = MakeEmptyGraph();
358fa0734ecSArgyrios Kyrtzidis 
359fa0734ecSArgyrios Kyrtzidis   // ===- Pass 2 (forward DFS to construct the new graph) -===
360fa0734ecSArgyrios Kyrtzidis   while (!WL2.empty()) {
361fa0734ecSArgyrios Kyrtzidis     const ExplodedNode *N = WL2.back();
362fa0734ecSArgyrios Kyrtzidis     WL2.pop_back();
363fa0734ecSArgyrios Kyrtzidis 
364fa0734ecSArgyrios Kyrtzidis     // Skip this node if we have already processed it.
365fa0734ecSArgyrios Kyrtzidis     if (Pass2.find(N) != Pass2.end())
366fa0734ecSArgyrios Kyrtzidis       continue;
367fa0734ecSArgyrios Kyrtzidis 
368fa0734ecSArgyrios Kyrtzidis     // Create the corresponding node in the new graph and record the mapping
369fa0734ecSArgyrios Kyrtzidis     // from the old node to the new node.
37049ea5bf5SAnna Zaks     ExplodedNode *NewN = G->getNode(N->getLocation(), N->State, N->isSink(), 0);
371fa0734ecSArgyrios Kyrtzidis     Pass2[N] = NewN;
372fa0734ecSArgyrios Kyrtzidis 
373fa0734ecSArgyrios Kyrtzidis     // Also record the reverse mapping from the new node to the old node.
374fa0734ecSArgyrios Kyrtzidis     if (InverseMap) (*InverseMap)[NewN] = N;
375fa0734ecSArgyrios Kyrtzidis 
376fa0734ecSArgyrios Kyrtzidis     // If this node is a root, designate it as such in the graph.
377fa0734ecSArgyrios Kyrtzidis     if (N->Preds.empty())
378fa0734ecSArgyrios Kyrtzidis       G->addRoot(NewN);
379fa0734ecSArgyrios Kyrtzidis 
380fa0734ecSArgyrios Kyrtzidis     // In the case that some of the intended predecessors of NewN have already
381fa0734ecSArgyrios Kyrtzidis     // been created, we should hook them up as predecessors.
382fa0734ecSArgyrios Kyrtzidis 
383fa0734ecSArgyrios Kyrtzidis     // Walk through the predecessors of 'N' and hook up their corresponding
384fa0734ecSArgyrios Kyrtzidis     // nodes in the new graph (if any) to the freshly created node.
385fa0734ecSArgyrios Kyrtzidis     for (ExplodedNode **I=N->Preds.begin(), **E=N->Preds.end(); I!=E; ++I) {
386fa0734ecSArgyrios Kyrtzidis       Pass2Ty::iterator PI = Pass2.find(*I);
387fa0734ecSArgyrios Kyrtzidis       if (PI == Pass2.end())
388fa0734ecSArgyrios Kyrtzidis         continue;
389fa0734ecSArgyrios Kyrtzidis 
390fa0734ecSArgyrios Kyrtzidis       NewN->addPredecessor(PI->second, *G);
391fa0734ecSArgyrios Kyrtzidis     }
392fa0734ecSArgyrios Kyrtzidis 
393fa0734ecSArgyrios Kyrtzidis     // In the case that some of the intended successors of NewN have already
394fa0734ecSArgyrios Kyrtzidis     // been created, we should hook them up as successors.  Otherwise, enqueue
395fa0734ecSArgyrios Kyrtzidis     // the new nodes from the original graph that should have nodes created
396fa0734ecSArgyrios Kyrtzidis     // in the new graph.
397fa0734ecSArgyrios Kyrtzidis     for (ExplodedNode **I=N->Succs.begin(), **E=N->Succs.end(); I!=E; ++I) {
398fa0734ecSArgyrios Kyrtzidis       Pass2Ty::iterator PI = Pass2.find(*I);
399fa0734ecSArgyrios Kyrtzidis       if (PI != Pass2.end()) {
400fa0734ecSArgyrios Kyrtzidis         PI->second->addPredecessor(NewN, *G);
401fa0734ecSArgyrios Kyrtzidis         continue;
402fa0734ecSArgyrios Kyrtzidis       }
403fa0734ecSArgyrios Kyrtzidis 
404fa0734ecSArgyrios Kyrtzidis       // Enqueue nodes to the worklist that were marked during pass 1.
405fa0734ecSArgyrios Kyrtzidis       if (Pass1.count(*I))
406fa0734ecSArgyrios Kyrtzidis         WL2.push_back(*I);
407fa0734ecSArgyrios Kyrtzidis     }
408fa0734ecSArgyrios Kyrtzidis   }
409fa0734ecSArgyrios Kyrtzidis 
410fa0734ecSArgyrios Kyrtzidis   return G;
411fa0734ecSArgyrios Kyrtzidis }
412fa0734ecSArgyrios Kyrtzidis 
41368e081d6SDavid Blaikie void InterExplodedGraphMap::anchor() { }
41468e081d6SDavid Blaikie 
415fa0734ecSArgyrios Kyrtzidis ExplodedNode*
416fa0734ecSArgyrios Kyrtzidis InterExplodedGraphMap::getMappedNode(const ExplodedNode *N) const {
417fa0734ecSArgyrios Kyrtzidis   llvm::DenseMap<const ExplodedNode*, ExplodedNode*>::const_iterator I =
418fa0734ecSArgyrios Kyrtzidis     M.find(N);
419fa0734ecSArgyrios Kyrtzidis 
420fa0734ecSArgyrios Kyrtzidis   return I == M.end() ? 0 : I->second;
421fa0734ecSArgyrios Kyrtzidis }
422fa0734ecSArgyrios Kyrtzidis 
423