// RUN: clang-cc -fsyntax-only -verify -std=c++0x %s #include // Don't have decltype yet. typedef __typeof__(nullptr) nullptr_t; struct A {}; int o1(char*); void o1(uintptr_t); void o2(char*); // expected-note {{candidate}} void o2(int A::*); // expected-note {{candidate}} nullptr_t f(nullptr_t null) { // Implicit conversions. null = nullptr; void *p = nullptr; p = null; int *pi = nullptr; pi = null; null = 0; int A::*pm = nullptr; pm = null; void (*pf)() = nullptr; pf = null; void (A::*pmf)() = nullptr; pmf = null; bool b = nullptr; // Can't convert nullptr to integral implicitly. uintptr_t i = nullptr; // expected-error {{incompatible type initializing}} // Operators (void)(null == nullptr); (void)(null <= nullptr); (void)(null == (void*)0); (void)((void*)0 == nullptr); (void)(null <= (void*)0); (void)((void*)0 <= nullptr); (void)(1 > nullptr); // expected-error {{invalid operands to binary expression}} (void)(1 != nullptr); // expected-error {{invalid operands to binary expression}} (void)(1 + nullptr); // expected-error {{invalid operands to binary expression}} (void)(0 ? nullptr : 0); // expected-error {{incompatible operand types}} (void)(0 ? nullptr : (void*)0); // Overloading int t = o1(nullptr); t = o1(null); o2(nullptr); // expected-error {{ambiguous}} // nullptr is an rvalue, null is an lvalue (void)&nullptr; // expected-error {{address expression must be an lvalue}} nullptr_t *pn = &null; // You can reinterpret_cast nullptr to an integer. (void)reinterpret_cast(nullptr); // You can throw nullptr. throw nullptr; } // Template arguments can be nullptr. template struct T {}; typedef T NT;