blob: 79bb03f86ae86579a5ace9bc074fc84ec771f4cd [file] [log] [blame]
// RUN: %clang_cc1 -triple i386-apple-darwin9 -analyze -analyzer-checker=core,core.experimental -analyzer-store=region -verify -fblocks -analyzer-opt-analyze-nested-blocks %s
// RUN: %clang_cc1 -triple x86_64-apple-darwin9 -analyze -analyzer-checker=core,core.experimental -analyzer-store=region -verify -fblocks -analyzer-opt-analyze-nested-blocks %s
// Test basic handling of references.
char &test1_aux();
char *test1() {
return &test1_aux();
}
// Test test1_aux() evaluates to char &.
char test1_as_rvalue() {
return test1_aux();
}
// Test passing a value as a reference. The 'const' in test2_aux() adds
// an ImplicitCastExpr, which is evaluated as an lvalue.
int test2_aux(const int &n);
int test2(int n) {
return test2_aux(n);
}
int test2_b_aux(const short &n);
int test2_b(int n) {
return test2_b_aux(n);
}
// Test getting the lvalue of a derived and converting it to a base. This
// previously crashed.
class Test3_Base {};
class Test3_Derived : public Test3_Base {};
int test3_aux(Test3_Base &x);
int test3(Test3_Derived x) {
return test3_aux(x);
}
//===---------------------------------------------------------------------===//
// Test CFG support for C++ condition variables.
//===---------------------------------------------------------------------===//
int test_init_in_condition_aux();
int test_init_in_condition() {
if (int x = test_init_in_condition_aux()) { // no-warning
return 1;
}
return 0;
}
int test_init_in_condition_switch() {
switch (int x = test_init_in_condition_aux()) { // no-warning
case 1:
return 0;
case 2:
if (x == 2)
return 0;
else {
// Unreachable.
int *p = 0;
*p = 0xDEADBEEF; // no-warning
}
default:
break;
}
return 0;
}
int test_init_in_condition_while() {
int z = 0;
while (int x = ++z) { // no-warning
if (x == 2)
break;
}
if (z == 2)
return 0;
int *p = 0;
*p = 0xDEADBEEF; // no-warning
return 0;
}
int test_init_in_condition_for() {
int z = 0;
for (int x = 0; int y = ++z; ++x) {
if (x == y) // no-warning
break;
}
if (z == 1)
return 0;
int *p = 0;
*p = 0xDEADBEEF; // no-warning
return 0;
}
//===---------------------------------------------------------------------===//
// Test handling of 'this' pointer.
//===---------------------------------------------------------------------===//
class TestHandleThis {
int x;
TestHandleThis();
int foo();
int null_deref_negative();
int null_deref_positive();
};
int TestHandleThis::foo() {
// Assume that 'x' is initialized.
return x + 1; // no-warning
}
int TestHandleThis::null_deref_negative() {
x = 10;
if (x == 10) {
return 1;
}
int *p = 0;
*p = 0xDEADBEEF; // no-warning
return 0;
}
int TestHandleThis::null_deref_positive() {
x = 10;
if (x == 9) {
return 1;
}
int *p = 0;
*p = 0xDEADBEEF; // expected-warning{{null pointer}}
return 0;
}
// PR 7675 - passing literals by-reference
void pr7675(const double &a);
void pr7675(const int &a);
void pr7675(const char &a);
void pr7675_i(const _Complex double &a);
void pr7675_test() {
pr7675(10.0);
pr7675(10);
pr7675('c');
pr7675_i(4.0i);
// Add null deref to ensure we are analyzing the code up to this point.
int *p = 0;
*p = 0xDEADBEEF; // expected-warning{{null pointer}}
}
// <rdar://problem/8375510> - CFGBuilder should handle temporaries.
struct R8375510 {
R8375510();
~R8375510();
R8375510 operator++(int);
};
int r8375510(R8375510 x, R8375510 y) {
for (; ; x++) { }
}
// PR8419 -- this used to crash.
class String8419 {
public:
char& get(int n);
char& operator[](int n);
};
char& get8419();
void Test8419() {
String8419 s;
++(s.get(0));
get8419()--; // used to crash
--s[0]; // used to crash
s[0] &= 1; // used to crash
s[0]++; // used to crash
}
// PR8426 -- this used to crash.
void Use(void* to);
template <class T> class Foo {
~Foo();
struct Bar;
Bar* bar_;
};
template <class T> Foo<T>::~Foo() {
Use(bar_);
T::DoSomething();
bar_->Work();
}
// PR8427 -- this used to crash.
class Dummy {};
bool operator==(Dummy, int);
template <typename T>
class Foo2 {
bool Bar();
};
template <typename T>
bool Foo2<T>::Bar() {
return 0 == T();
}
// PR8433 -- this used to crash.
template <typename T>
class Foo3 {
public:
void Bar();
void Baz();
T value_;
};
template <typename T>
void Foo3<T>::Bar() {
Baz();
value_();
}
//===---------------------------------------------------------------------===//
// Handle misc. C++ constructs.
//===---------------------------------------------------------------------===//
namespace fum {
int i = 3;
};
void test_namespace() {
// Previously triggered a crash.
using namespace fum;
int x = i;
}