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Last = N;
N = N->pred_empty() ? NULL : *(N->pred_begin());
}
// Get the allocate site.
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assert (Last);
Stmt* FirstStmt = cast<PostStmt>(Last->getLocation()).getStmt();
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SourceManager& SMgr = BR.getContext().getSourceManager();
unsigned AllocLine = SMgr.getLogicalLineNumber(FirstStmt->getLocStart());
// Get the leak site. We may have multiple ExplodedNodes (one with the
// leak) that occur on the same line number; if the node with the leak
// has any immediate predecessor nodes with the same line number, find
// any transitive-successors that have a different statement and use that
// line number instead. This avoids emiting a diagnostic like:
//
// // 'y' is leaked.
// int x = foo(y);
//
// instead we want:
//
// int x = foo(y);
// // 'y' is leaked.
Stmt* S = getStmt(BR); // This is the statement where the leak occured.
assert (S);
unsigned EndLine = SMgr.getLogicalLineNumber(S->getLocStart());
// Look in the *trimmed* graph at the immediate predecessor of EndN. Does
// it occur on the same line?
assert (!EndN->pred_empty()); // Not possible to have 0 predecessors.
N = *(EndN->pred_begin());
do {
ProgramPoint P = N->getLocation();
if (!isa<PostStmt>(P))
break;
// Predecessor at same line?
Stmt* SPred = cast<PostStmt>(P).getStmt();
if (SMgr.getLogicalLineNumber(SPred->getLocStart()) != EndLine)
break;
// The predecessor (where the object was not yet leaked) is a statement
// on the same line. Get the first successor statement that appears
// on a different line. For this operation, we can traverse the
// non-trimmed graph.
N = getEndNode(); // This is the node where the leak occured in the
// original graph.
while (!N->succ_empty()) {
N = *(N->succ_begin());
ProgramPoint P = N->getLocation();
if (!isa<PostStmt>(P))
continue;
Stmt* SSucc = cast<PostStmt>(P).getStmt();
if (SMgr.getLogicalLineNumber(SSucc->getLocStart()) != EndLine) {
S = SSucc;
break;
}
}
}
while (false);
// Construct the location.
FullSourceLoc L(S->getLocStart(), SMgr);
// Generate the diagnostic.
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std::ostringstream os;
os << "Object allocated on line " << AllocLine;
if (FirstDecl)
os << " and stored into '" << FirstDecl->getName() << '\'';
os << " is no longer referenced after this point and has a retain count of +"
<< RetCount << " (object leaked).";
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return new PathDiagnosticPiece(L, os.str());
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}
void UseAfterRelease::EmitWarnings(BugReporter& BR) {
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for (CFRefCount::use_after_iterator I = TF.use_after_begin(),
E = TF.use_after_end(); I != E; ++I) {
CFRefReport report(*this, I->first, I->second.second);
report.addRange(I->second.first->getSourceRange());
BR.EmitWarning(report);
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}
}
void BadRelease::EmitWarnings(BugReporter& BR) {
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for (CFRefCount::bad_release_iterator I = TF.bad_release_begin(),
E = TF.bad_release_end(); I != E; ++I) {
CFRefReport report(*this, I->first, I->second.second);
report.addRange(I->second.first->getSourceRange());
BR.EmitWarning(report);
}
}
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void Leak::EmitWarnings(BugReporter& BR) {
for (CFRefCount::leaks_iterator I = TF.leaks_begin(),
E = TF.leaks_end(); I != E; ++I) {
std::vector<SymbolID>& SymV = *(I->second);
unsigned n = SymV.size();
for (unsigned i = 0; i < n; ++i) {
CFRefReport report(*this, I->first, SymV[i]);
BR.EmitWarning(report);
}
}
}
void Leak::GetErrorNodes(std::vector<ExplodedNode<ValueState>*>& Nodes) {
for (CFRefCount::leaks_iterator I=TF.leaks_begin(), E=TF.leaks_end();
I!=E; ++I)
Nodes.push_back(I->first);
}
//===----------------------------------------------------------------------===//
// Transfer function creation for external clients.
//===----------------------------------------------------------------------===//
GRTransferFuncs* clang::MakeCFRefCountTF(ASTContext& Ctx, bool GCEnabled,
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bool StandardWarnings,
const LangOptions& lopts) {
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return new CFRefCount(Ctx, GCEnabled, StandardWarnings, lopts);