213 lines
3.9 KiB
C++
213 lines
3.9 KiB
C++
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// RUN: %clang_cc1 -analyze -analyzer-checker=core -analyzer-config suppress-null-return-paths=false -verify %s
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// RUN: %clang_cc1 -analyze -analyzer-checker=core -verify -DSUPPRESSED=1 %s
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namespace rdar12676053 {
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// Delta-reduced from a preprocessed file.
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template<class T>
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class RefCount {
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T *ref;
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public:
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T *operator->() const {
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return ref ? ref : 0;
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}
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};
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class string {};
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class ParserInputState {
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public:
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string filename;
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};
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class Parser {
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void setFilename(const string& f) {
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inputState->filename = f;
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#ifndef SUPPRESSED
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// expected-warning@-2 {{Called C++ object pointer is null}}
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#endif
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}
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protected:
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RefCount<ParserInputState> inputState;
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};
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}
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// This is the standard placement new.
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inline void* operator new(__typeof__(sizeof(int)), void* __p) throw()
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{
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return __p;
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}
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extern bool coin();
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class SomeClass {
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public:
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void doSomething();
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};
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namespace References {
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class Map {
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int *&getNewBox();
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int *firstBox;
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public:
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int *&getValue(int key) {
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if (coin()) {
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return firstBox;
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} else {
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int *&newBox = getNewBox();
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newBox = 0;
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return newBox;
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}
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}
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int *&getValueIndirectly(int key) {
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int *&valueBox = getValue(key);
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return valueBox;
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}
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};
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void testMap(Map &m, int i) {
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*m.getValue(i) = 1;
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#ifndef SUPPRESSED
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// expected-warning@-2 {{Dereference of null pointer}}
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#endif
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*m.getValueIndirectly(i) = 1;
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#ifndef SUPPRESSED
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// expected-warning@-2 {{Dereference of null pointer}}
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#endif
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int *&box = m.getValue(i);
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extern int *getPointer();
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box = getPointer();
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*box = 1; // no-warning
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int *&box2 = m.getValue(i);
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box2 = 0;
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*box2 = 1; // expected-warning {{Dereference of null pointer}}
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}
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SomeClass *&getSomeClass() {
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if (coin()) {
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extern SomeClass *&opaqueClass();
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return opaqueClass();
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} else {
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static SomeClass *sharedClass;
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sharedClass = 0;
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return sharedClass;
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}
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}
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void testClass() {
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getSomeClass()->doSomething();
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#ifndef SUPPRESSED
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// expected-warning@-2 {{Called C++ object pointer is null}}
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#endif
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// Separate the lvalue-to-rvalue conversion from the subsequent dereference.
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SomeClass *object = getSomeClass();
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object->doSomething();
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#ifndef SUPPRESSED
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// expected-warning@-2 {{Called C++ object pointer is null}}
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#endif
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}
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SomeClass *getNull() {
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return 0;
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}
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SomeClass &returnNullReference() {
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SomeClass *x = getNull();
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return *x;
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#ifndef SUPPRESSED
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// expected-warning@-2 {{Returning null reference}}
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#endif
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}
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}
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class X{
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public:
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void get();
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};
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X *getNull() {
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return 0;
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}
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void deref1(X *const &p) {
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return p->get();
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#ifndef SUPPRESSED
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// expected-warning@-2 {{Called C++ object pointer is null}}
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#endif
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}
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void test1() {
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return deref1(getNull());
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}
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void deref2(X *p3) {
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p3->get();
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#ifndef SUPPRESSED
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// expected-warning@-2 {{Called C++ object pointer is null}}
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#endif
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}
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void pass2(X *const &p2) {
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deref2(p2);
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}
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void test2() {
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pass2(getNull());
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}
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void deref3(X *const &p2) {
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X *p3 = p2;
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p3->get();
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#ifndef SUPPRESSED
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// expected-warning@-2 {{Called C++ object pointer is null}}
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#endif
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}
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void test3() {
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deref3(getNull());
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}
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namespace Cleanups {
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class NonTrivial {
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public:
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~NonTrivial();
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SomeClass *getNull() {
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return 0;
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}
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};
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void testImmediate() {
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NonTrivial().getNull()->doSomething();
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#ifndef SUPPRESSED
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// expected-warning@-2 {{Called C++ object pointer is null}}
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#endif
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}
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void testAssignment() {
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SomeClass *ptr = NonTrivial().getNull();
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ptr->doSomething();
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#ifndef SUPPRESSED
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// expected-warning@-2 {{Called C++ object pointer is null}}
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#endif
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}
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void testArgumentHelper(SomeClass *arg) {
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arg->doSomething();
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#ifndef SUPPRESSED
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// expected-warning@-2 {{Called C++ object pointer is null}}
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#endif
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}
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void testArgument() {
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testArgumentHelper(NonTrivial().getNull());
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}
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}
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