The analyzer trims unnecessary nodes from the exploded graph before reporting path diagnostics. However, in some cases it can trim all nodes (including the error node), leading to an assertion failure (see https://llvm.org/bugs/show_bug.cgi?id=24184). This commit addresses the issue by adding two new APIs to CheckerContext to explicitly create error nodes. Unless the client provides a custom tag, these APIs tag the node with the checker's tag -- preventing it from being trimmed. The generateErrorNode() method creates a sink error node, while generateNonFatalErrorNode() creates an error node for a path that should continue being explored. The intent is that one of these two methods should be used whenever a checker creates an error node. This commit updates the checkers to use these APIs. These APIs (unlike addTransition() and generateSink()) do not take an explicit Pred node. This is because there are not any error nodes in the checkers that were created with an explicit different than the default (the CheckerContext's Pred node). It also changes generateSink() to require state and pred nodes (previously these were optional) to reduce confusion. Additionally, there were several cases where checkers did check whether a generated node could be null; we now explicitly check for null in these places. This commit also includes a test case written by Ying Yi as part of http://reviews.llvm.org/D12163 (that patch originally addressed this issue but was reverted because it introduced false positive regressions). Differential Revision: http://reviews.llvm.org/D12780 llvm-svn: 247859
224 lines
7.5 KiB
C++
224 lines
7.5 KiB
C++
//===--- NonNullParamChecker.cpp - Undefined arguments checker -*- C++ -*--===//
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//
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// The LLVM Compiler Infrastructure
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//
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// This file is distributed under the University of Illinois Open Source
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// License. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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//
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// This defines NonNullParamChecker, which checks for arguments expected not to
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// be null due to:
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// - the corresponding parameters being declared to have nonnull attribute
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// - the corresponding parameters being references; since the call would form
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// a reference to a null pointer
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//
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//===----------------------------------------------------------------------===//
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#include "ClangSACheckers.h"
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#include "clang/AST/Attr.h"
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#include "clang/StaticAnalyzer/Core/BugReporter/BugType.h"
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#include "clang/StaticAnalyzer/Core/Checker.h"
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#include "clang/StaticAnalyzer/Core/CheckerManager.h"
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#include "clang/StaticAnalyzer/Core/PathSensitive/CallEvent.h"
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#include "clang/StaticAnalyzer/Core/PathSensitive/CheckerContext.h"
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using namespace clang;
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using namespace ento;
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namespace {
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class NonNullParamChecker
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: public Checker< check::PreCall, EventDispatcher<ImplicitNullDerefEvent> > {
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mutable std::unique_ptr<BugType> BTAttrNonNull;
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mutable std::unique_ptr<BugType> BTNullRefArg;
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public:
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void checkPreCall(const CallEvent &Call, CheckerContext &C) const;
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std::unique_ptr<BugReport>
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genReportNullAttrNonNull(const ExplodedNode *ErrorN, const Expr *ArgE) const;
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std::unique_ptr<BugReport>
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genReportReferenceToNullPointer(const ExplodedNode *ErrorN,
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const Expr *ArgE) const;
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};
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} // end anonymous namespace
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void NonNullParamChecker::checkPreCall(const CallEvent &Call,
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CheckerContext &C) const {
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const Decl *FD = Call.getDecl();
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if (!FD)
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return;
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// Merge all non-null attributes
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unsigned NumArgs = Call.getNumArgs();
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llvm::SmallBitVector AttrNonNull(NumArgs);
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for (const auto *NonNull : FD->specific_attrs<NonNullAttr>()) {
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if (!NonNull->args_size()) {
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AttrNonNull.set(0, NumArgs);
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break;
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}
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for (unsigned Val : NonNull->args()) {
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if (Val >= NumArgs)
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continue;
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AttrNonNull.set(Val);
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}
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}
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ProgramStateRef state = C.getState();
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CallEvent::param_type_iterator TyI = Call.param_type_begin(),
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TyE = Call.param_type_end();
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for (unsigned idx = 0; idx < NumArgs; ++idx) {
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// Check if the parameter is a reference. We want to report when reference
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// to a null pointer is passed as a paramter.
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bool haveRefTypeParam = false;
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if (TyI != TyE) {
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haveRefTypeParam = (*TyI)->isReferenceType();
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TyI++;
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}
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bool haveAttrNonNull = AttrNonNull[idx];
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if (!haveAttrNonNull) {
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// Check if the parameter is also marked 'nonnull'.
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ArrayRef<ParmVarDecl*> parms = Call.parameters();
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if (idx < parms.size())
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haveAttrNonNull = parms[idx]->hasAttr<NonNullAttr>();
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}
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if (!haveRefTypeParam && !haveAttrNonNull)
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continue;
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// If the value is unknown or undefined, we can't perform this check.
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const Expr *ArgE = Call.getArgExpr(idx);
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SVal V = Call.getArgSVal(idx);
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Optional<DefinedSVal> DV = V.getAs<DefinedSVal>();
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if (!DV)
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continue;
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// Process the case when the argument is not a location.
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assert(!haveRefTypeParam || DV->getAs<Loc>());
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if (haveAttrNonNull && !DV->getAs<Loc>()) {
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// If the argument is a union type, we want to handle a potential
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// transparent_union GCC extension.
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if (!ArgE)
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continue;
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QualType T = ArgE->getType();
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const RecordType *UT = T->getAsUnionType();
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if (!UT || !UT->getDecl()->hasAttr<TransparentUnionAttr>())
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continue;
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if (Optional<nonloc::CompoundVal> CSV =
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DV->getAs<nonloc::CompoundVal>()) {
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nonloc::CompoundVal::iterator CSV_I = CSV->begin();
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assert(CSV_I != CSV->end());
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V = *CSV_I;
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DV = V.getAs<DefinedSVal>();
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assert(++CSV_I == CSV->end());
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// FIXME: Handle (some_union){ some_other_union_val }, which turns into
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// a LazyCompoundVal inside a CompoundVal.
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if (!V.getAs<Loc>())
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continue;
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// Retrieve the corresponding expression.
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if (const CompoundLiteralExpr *CE = dyn_cast<CompoundLiteralExpr>(ArgE))
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if (const InitListExpr *IE =
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dyn_cast<InitListExpr>(CE->getInitializer()))
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ArgE = dyn_cast<Expr>(*(IE->begin()));
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} else {
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// FIXME: Handle LazyCompoundVals?
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continue;
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}
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}
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ConstraintManager &CM = C.getConstraintManager();
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ProgramStateRef stateNotNull, stateNull;
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std::tie(stateNotNull, stateNull) = CM.assumeDual(state, *DV);
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if (stateNull) {
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if (!stateNotNull) {
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// Generate an error node. Check for a null node in case
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// we cache out.
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if (ExplodedNode *errorNode = C.generateErrorNode(stateNull)) {
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std::unique_ptr<BugReport> R;
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if (haveAttrNonNull)
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R = genReportNullAttrNonNull(errorNode, ArgE);
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else if (haveRefTypeParam)
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R = genReportReferenceToNullPointer(errorNode, ArgE);
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// Highlight the range of the argument that was null.
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R->addRange(Call.getArgSourceRange(idx));
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// Emit the bug report.
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C.emitReport(std::move(R));
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}
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// Always return. Either we cached out or we just emitted an error.
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return;
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}
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if (ExplodedNode *N = C.generateSink(stateNull, C.getPredecessor())) {
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ImplicitNullDerefEvent event = {
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V, false, N, &C.getBugReporter(),
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/*IsDirectDereference=*/haveRefTypeParam};
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dispatchEvent(event);
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}
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}
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// If a pointer value passed the check we should assume that it is
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// indeed not null from this point forward.
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assert(stateNotNull);
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state = stateNotNull;
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}
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// If we reach here all of the arguments passed the nonnull check.
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// If 'state' has been updated generated a new node.
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C.addTransition(state);
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}
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std::unique_ptr<BugReport>
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NonNullParamChecker::genReportNullAttrNonNull(const ExplodedNode *ErrorNode,
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const Expr *ArgE) const {
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// Lazily allocate the BugType object if it hasn't already been
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// created. Ownership is transferred to the BugReporter object once
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// the BugReport is passed to 'EmitWarning'.
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if (!BTAttrNonNull)
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BTAttrNonNull.reset(new BugType(
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this, "Argument with 'nonnull' attribute passed null", "API"));
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auto R = llvm::make_unique<BugReport>(
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*BTAttrNonNull,
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"Null pointer passed as an argument to a 'nonnull' parameter", ErrorNode);
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if (ArgE)
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bugreporter::trackNullOrUndefValue(ErrorNode, ArgE, *R);
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return R;
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}
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std::unique_ptr<BugReport> NonNullParamChecker::genReportReferenceToNullPointer(
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const ExplodedNode *ErrorNode, const Expr *ArgE) const {
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if (!BTNullRefArg)
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BTNullRefArg.reset(new BuiltinBug(this, "Dereference of null pointer"));
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auto R = llvm::make_unique<BugReport>(
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*BTNullRefArg, "Forming reference to null pointer", ErrorNode);
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if (ArgE) {
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const Expr *ArgEDeref = bugreporter::getDerefExpr(ArgE);
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if (!ArgEDeref)
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ArgEDeref = ArgE;
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bugreporter::trackNullOrUndefValue(ErrorNode,
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ArgEDeref,
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*R);
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}
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return R;
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}
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void ento::registerNonNullParamChecker(CheckerManager &mgr) {
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mgr.registerChecker<NonNullParamChecker>();
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}
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