397 lines
14 KiB
C++
397 lines
14 KiB
C++
//==--- RetainCountChecker.h - Checks for leaks and other issues -*- C++ -*--//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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//===----------------------------------------------------------------------===//
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//
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// This file defines the methods for RetainCountChecker, which implements
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// a reference count checker for Core Foundation and Cocoa on (Mac OS X).
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//
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//===----------------------------------------------------------------------===//
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#ifndef LLVM_CLANG_LIB_STATICANALYZER_CHECKERS_RETAINCOUNTCHECKER_H
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#define LLVM_CLANG_LIB_STATICANALYZER_CHECKERS_RETAINCOUNTCHECKER_H
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#include "clang/StaticAnalyzer/Checkers/BuiltinCheckerRegistration.h"
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#include "RetainCountDiagnostics.h"
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#include "clang/AST/Attr.h"
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#include "clang/AST/DeclCXX.h"
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#include "clang/AST/DeclObjC.h"
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#include "clang/AST/ParentMap.h"
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#include "clang/Analysis/DomainSpecific/CocoaConventions.h"
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#include "clang/Analysis/PathDiagnostic.h"
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#include "clang/Analysis/RetainSummaryManager.h"
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#include "clang/Basic/LangOptions.h"
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#include "clang/Basic/SourceManager.h"
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#include "clang/Analysis/SelectorExtras.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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#include "clang/StaticAnalyzer/Core/PathSensitive/ProgramStateTrait.h"
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#include "clang/StaticAnalyzer/Core/PathSensitive/SymbolManager.h"
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#include "llvm/ADT/DenseMap.h"
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#include "llvm/ADT/FoldingSet.h"
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#include "llvm/ADT/ImmutableList.h"
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#include "llvm/ADT/ImmutableMap.h"
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#include "llvm/ADT/STLExtras.h"
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#include "llvm/ADT/SmallString.h"
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#include "llvm/ADT/StringExtras.h"
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#include <cstdarg>
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#include <utility>
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namespace clang {
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namespace ento {
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namespace retaincountchecker {
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/// Metadata on reference.
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class RefVal {
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public:
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enum Kind {
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Owned = 0, // Owning reference.
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NotOwned, // Reference is not owned by still valid (not freed).
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Released, // Object has been released.
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ReturnedOwned, // Returned object passes ownership to caller.
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ReturnedNotOwned, // Return object does not pass ownership to caller.
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ERROR_START,
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ErrorDeallocNotOwned, // -dealloc called on non-owned object.
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ErrorUseAfterRelease, // Object used after released.
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ErrorReleaseNotOwned, // Release of an object that was not owned.
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ERROR_LEAK_START,
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ErrorLeak, // A memory leak due to excessive reference counts.
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ErrorLeakReturned, // A memory leak due to the returning method not having
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// the correct naming conventions.
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ErrorOverAutorelease,
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ErrorReturnedNotOwned
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};
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/// Tracks how an object referenced by an ivar has been used.
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///
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/// This accounts for us not knowing if an arbitrary ivar is supposed to be
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/// stored at +0 or +1.
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enum class IvarAccessHistory {
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None,
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AccessedDirectly,
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ReleasedAfterDirectAccess
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};
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private:
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/// The number of outstanding retains.
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unsigned Cnt;
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/// The number of outstanding autoreleases.
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unsigned ACnt;
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/// The (static) type of the object at the time we started tracking it.
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QualType T;
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/// The current state of the object.
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///
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/// See the RefVal::Kind enum for possible values.
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unsigned RawKind : 5;
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/// The kind of object being tracked (CF or ObjC or OSObject), if known.
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///
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/// See the ObjKind enum for possible values.
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unsigned RawObjectKind : 3;
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/// True if the current state and/or retain count may turn out to not be the
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/// best possible approximation of the reference counting state.
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///
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/// If true, the checker may decide to throw away ("override") this state
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/// in favor of something else when it sees the object being used in new ways.
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///
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/// This setting should not be propagated to state derived from this state.
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/// Once we start deriving new states, it would be inconsistent to override
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/// them.
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unsigned RawIvarAccessHistory : 2;
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RefVal(Kind k, ObjKind o, unsigned cnt, unsigned acnt, QualType t,
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IvarAccessHistory IvarAccess)
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: Cnt(cnt), ACnt(acnt), T(t), RawKind(static_cast<unsigned>(k)),
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RawObjectKind(static_cast<unsigned>(o)),
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RawIvarAccessHistory(static_cast<unsigned>(IvarAccess)) {
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assert(getKind() == k && "not enough bits for the kind");
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assert(getObjKind() == o && "not enough bits for the object kind");
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assert(getIvarAccessHistory() == IvarAccess && "not enough bits");
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}
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public:
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Kind getKind() const { return static_cast<Kind>(RawKind); }
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ObjKind getObjKind() const {
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return static_cast<ObjKind>(RawObjectKind);
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}
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unsigned getCount() const { return Cnt; }
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unsigned getAutoreleaseCount() const { return ACnt; }
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unsigned getCombinedCounts() const { return Cnt + ACnt; }
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void clearCounts() {
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Cnt = 0;
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ACnt = 0;
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}
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void setCount(unsigned i) {
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Cnt = i;
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}
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void setAutoreleaseCount(unsigned i) {
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ACnt = i;
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}
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QualType getType() const { return T; }
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/// Returns what the analyzer knows about direct accesses to a particular
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/// instance variable.
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///
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/// If the object with this refcount wasn't originally from an Objective-C
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/// ivar region, this should always return IvarAccessHistory::None.
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IvarAccessHistory getIvarAccessHistory() const {
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return static_cast<IvarAccessHistory>(RawIvarAccessHistory);
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}
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bool isOwned() const {
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return getKind() == Owned;
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}
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bool isNotOwned() const {
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return getKind() == NotOwned;
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}
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bool isReturnedOwned() const {
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return getKind() == ReturnedOwned;
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}
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bool isReturnedNotOwned() const {
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return getKind() == ReturnedNotOwned;
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}
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/// Create a state for an object whose lifetime is the responsibility of the
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/// current function, at least partially.
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///
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/// Most commonly, this is an owned object with a retain count of +1.
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static RefVal makeOwned(ObjKind o, QualType t) {
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return RefVal(Owned, o, /*Count=*/1, 0, t, IvarAccessHistory::None);
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}
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/// Create a state for an object whose lifetime is not the responsibility of
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/// the current function.
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///
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/// Most commonly, this is an unowned object with a retain count of +0.
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static RefVal makeNotOwned(ObjKind o, QualType t) {
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return RefVal(NotOwned, o, /*Count=*/0, 0, t, IvarAccessHistory::None);
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}
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RefVal operator-(size_t i) const {
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return RefVal(getKind(), getObjKind(), getCount() - i,
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getAutoreleaseCount(), getType(), getIvarAccessHistory());
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}
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RefVal operator+(size_t i) const {
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return RefVal(getKind(), getObjKind(), getCount() + i,
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getAutoreleaseCount(), getType(), getIvarAccessHistory());
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}
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RefVal operator^(Kind k) const {
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return RefVal(k, getObjKind(), getCount(), getAutoreleaseCount(),
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getType(), getIvarAccessHistory());
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}
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RefVal autorelease() const {
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return RefVal(getKind(), getObjKind(), getCount(), getAutoreleaseCount()+1,
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getType(), getIvarAccessHistory());
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}
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RefVal withIvarAccess() const {
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assert(getIvarAccessHistory() == IvarAccessHistory::None);
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return RefVal(getKind(), getObjKind(), getCount(), getAutoreleaseCount(),
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getType(), IvarAccessHistory::AccessedDirectly);
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}
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RefVal releaseViaIvar() const {
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assert(getIvarAccessHistory() == IvarAccessHistory::AccessedDirectly);
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return RefVal(getKind(), getObjKind(), getCount(), getAutoreleaseCount(),
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getType(), IvarAccessHistory::ReleasedAfterDirectAccess);
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}
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// Comparison, profiling, and pretty-printing.
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bool hasSameState(const RefVal &X) const {
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return getKind() == X.getKind() && Cnt == X.Cnt && ACnt == X.ACnt &&
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getIvarAccessHistory() == X.getIvarAccessHistory();
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}
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bool operator==(const RefVal& X) const {
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return T == X.T && hasSameState(X) && getObjKind() == X.getObjKind();
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}
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void Profile(llvm::FoldingSetNodeID& ID) const {
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ID.Add(T);
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ID.AddInteger(RawKind);
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ID.AddInteger(Cnt);
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ID.AddInteger(ACnt);
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ID.AddInteger(RawObjectKind);
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ID.AddInteger(RawIvarAccessHistory);
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}
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void print(raw_ostream &Out) const;
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};
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class RetainCountChecker
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: public Checker< check::Bind,
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check::DeadSymbols,
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check::BeginFunction,
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check::EndFunction,
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check::PostStmt<BlockExpr>,
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check::PostStmt<CastExpr>,
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check::PostStmt<ObjCArrayLiteral>,
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check::PostStmt<ObjCDictionaryLiteral>,
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check::PostStmt<ObjCBoxedExpr>,
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check::PostStmt<ObjCIvarRefExpr>,
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check::PostCall,
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check::RegionChanges,
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eval::Assume,
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eval::Call > {
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public:
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std::unique_ptr<RefCountBug> UseAfterRelease;
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std::unique_ptr<RefCountBug> ReleaseNotOwned;
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std::unique_ptr<RefCountBug> DeallocNotOwned;
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std::unique_ptr<RefCountBug> FreeNotOwned;
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std::unique_ptr<RefCountBug> OverAutorelease;
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std::unique_ptr<RefCountBug> ReturnNotOwnedForOwned;
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std::unique_ptr<RefCountBug> LeakWithinFunction;
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std::unique_ptr<RefCountBug> LeakAtReturn;
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mutable std::unique_ptr<RetainSummaryManager> Summaries;
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static std::unique_ptr<CheckerProgramPointTag> DeallocSentTag;
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static std::unique_ptr<CheckerProgramPointTag> CastFailTag;
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/// Track Objective-C and CoreFoundation objects.
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bool TrackObjCAndCFObjects = false;
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/// Track sublcasses of OSObject.
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bool TrackOSObjects = false;
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/// Track initial parameters (for the entry point) for NS/CF objects.
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bool TrackNSCFStartParam = false;
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RetainCountChecker() {};
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RetainSummaryManager &getSummaryManager(ASTContext &Ctx) const {
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if (!Summaries)
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Summaries.reset(
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new RetainSummaryManager(Ctx, TrackObjCAndCFObjects, TrackOSObjects));
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return *Summaries;
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}
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RetainSummaryManager &getSummaryManager(CheckerContext &C) const {
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return getSummaryManager(C.getASTContext());
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}
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void printState(raw_ostream &Out, ProgramStateRef State,
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const char *NL, const char *Sep) const override;
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void checkBind(SVal loc, SVal val, const Stmt *S, CheckerContext &C) const;
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void checkPostStmt(const BlockExpr *BE, CheckerContext &C) const;
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void checkPostStmt(const CastExpr *CE, CheckerContext &C) const;
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void checkPostStmt(const ObjCArrayLiteral *AL, CheckerContext &C) const;
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void checkPostStmt(const ObjCDictionaryLiteral *DL, CheckerContext &C) const;
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void checkPostStmt(const ObjCBoxedExpr *BE, CheckerContext &C) const;
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void checkPostStmt(const ObjCIvarRefExpr *IRE, CheckerContext &C) const;
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void checkPostCall(const CallEvent &Call, CheckerContext &C) const;
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void checkSummary(const RetainSummary &Summ, const CallEvent &Call,
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CheckerContext &C) const;
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void processSummaryOfInlined(const RetainSummary &Summ,
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const CallEvent &Call,
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CheckerContext &C) const;
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bool evalCall(const CallEvent &Call, CheckerContext &C) const;
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ProgramStateRef evalAssume(ProgramStateRef state, SVal Cond,
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bool Assumption) const;
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ProgramStateRef
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checkRegionChanges(ProgramStateRef state,
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const InvalidatedSymbols *invalidated,
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ArrayRef<const MemRegion *> ExplicitRegions,
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ArrayRef<const MemRegion *> Regions,
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const LocationContext* LCtx,
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const CallEvent *Call) const;
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ExplodedNode* checkReturnWithRetEffect(const ReturnStmt *S, CheckerContext &C,
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ExplodedNode *Pred, RetEffect RE, RefVal X,
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SymbolRef Sym, ProgramStateRef state) const;
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void checkDeadSymbols(SymbolReaper &SymReaper, CheckerContext &C) const;
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void checkBeginFunction(CheckerContext &C) const;
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void checkEndFunction(const ReturnStmt *RS, CheckerContext &C) const;
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ProgramStateRef updateSymbol(ProgramStateRef state, SymbolRef sym,
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RefVal V, ArgEffect E, RefVal::Kind &hasErr,
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CheckerContext &C) const;
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const RefCountBug &errorKindToBugKind(RefVal::Kind ErrorKind,
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SymbolRef Sym) const;
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void processNonLeakError(ProgramStateRef St, SourceRange ErrorRange,
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RefVal::Kind ErrorKind, SymbolRef Sym,
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CheckerContext &C) const;
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void processObjCLiterals(CheckerContext &C, const Expr *Ex) const;
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ProgramStateRef handleSymbolDeath(ProgramStateRef state,
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SymbolRef sid, RefVal V,
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SmallVectorImpl<SymbolRef> &Leaked) const;
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ProgramStateRef
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handleAutoreleaseCounts(ProgramStateRef state, ExplodedNode *Pred,
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const ProgramPointTag *Tag, CheckerContext &Ctx,
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SymbolRef Sym,
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RefVal V,
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const ReturnStmt *S=nullptr) const;
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ExplodedNode *processLeaks(ProgramStateRef state,
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SmallVectorImpl<SymbolRef> &Leaked,
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CheckerContext &Ctx,
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ExplodedNode *Pred = nullptr) const;
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static const CheckerProgramPointTag &getDeallocSentTag() {
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return *DeallocSentTag;
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}
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static const CheckerProgramPointTag &getCastFailTag() { return *CastFailTag; }
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private:
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/// Perform the necessary checks and state adjustments at the end of the
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/// function.
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/// \p S Return statement, may be null.
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ExplodedNode * processReturn(const ReturnStmt *S, CheckerContext &C) const;
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};
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//===----------------------------------------------------------------------===//
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// RefBindings - State used to track object reference counts.
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//===----------------------------------------------------------------------===//
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const RefVal *getRefBinding(ProgramStateRef State, SymbolRef Sym);
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/// Returns true if this stack frame is for an Objective-C method that is a
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/// property getter or setter whose body has been synthesized by the analyzer.
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inline bool isSynthesizedAccessor(const StackFrameContext *SFC) {
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auto Method = dyn_cast_or_null<ObjCMethodDecl>(SFC->getDecl());
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if (!Method || !Method->isPropertyAccessor())
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return false;
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return SFC->getAnalysisDeclContext()->isBodyAutosynthesized();
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}
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} // end namespace retaincountchecker
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} // end namespace ento
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} // end namespace clang
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#endif
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