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静态成员变量的概念检查在gcc上编译错误

[英]Concept checking of static member variables compile error on gcc

我正在尝试应用http://www.drdobbs.com/tools/227500449中描述的技术

使用下面的示例代码,我期望输出:

1 0 0 0
0 1 0 0
0 0 1 0
0 0 0 1

如果我使用clang进行编译,这确实会发生什么。 但是使用gcc,此代码会出现以下错误:

junk.cpp: In instantiation of ‘const bool has_foo_member_variable<B>::value’:
junk.cpp:45:5:   instantiated from ‘void print() [with T = B]’
junk.cpp:82:14:   instantiated from here
junk.cpp:30:75: error: ‘B::foo’ is not a valid template argument for type ‘int B::*’
junk.cpp:30:75: error: it must be a pointer-to-member of the form `&X::Y'
junk.cpp: In instantiation of ‘const bool has_foo_member_variable<D>::value’:
junk.cpp:45:5:   instantiated from ‘void print() [with T = D]’
junk.cpp:84:14:   instantiated from here
junk.cpp:30:75: error: ‘& D::foo’ is not a valid template argument for type ‘int D::*’
junk.cpp:30:75: error: it must be a pointer-to-member of the form `&X::Y'

我正在使用gcc 4.5.1 ...我看起来像gcc没有遵循正确的SFINAE规则,但我不是100%肯定。 clang是否正确,这是一个gcc bug?

#include <iostream>

struct small_type { char dummy; };
struct large_type { char dummy[2]; };

template<class T>
struct has_foo_member_function
{
    template<int (T::*)()> struct tester;
    template<class U> static small_type has_foo(tester<&U::foo> *);
    template<class U> static large_type has_foo(...);
    static const bool value = (sizeof(has_foo<T>(0)) == sizeof(small_type));
};

template<class T>
struct has_foo_static_member_function
{
    template<int (*)()> struct tester;
    template<class U> static small_type has_foo(tester<&U::foo> *);
    template<class U> static large_type has_foo(...);
    static const bool value = (sizeof(has_foo<T>(0)) == sizeof(small_type));
};

template<class T>
struct has_foo_member_variable
{
    template<int T::*> struct tester;
    template<class U> static small_type has_foo(tester<&U::foo> *);
    template<class U> static large_type has_foo(...);
    static const bool value = (sizeof(has_foo<T>(0)) == sizeof(small_type));
};

template<class T>
struct has_foo_static_member_variable
{
    template<int *> struct tester;
    template<class U> static small_type has_foo(tester<&U::foo> *);
    template<class U> static large_type has_foo(...);
    static const bool value = (sizeof(has_foo<T>(0)) == sizeof(small_type));
};

template<class T>
void print()
{
    std::cout << has_foo_member_function<T>::value << " "
        << has_foo_static_member_function<T>::value << " "
        << has_foo_member_variable<T>::value << " "
        << has_foo_static_member_variable<T>::value << "\n";
}

struct A
{
    int foo()
    {
        return 0;
    }
};

struct B
{
    static int foo()
    {
        return 0;
    }
};

struct C
{
    int foo;
};

struct D
{
    static int foo;
};

int main()
{
    print<A>();
    print<B>();
    print<C>();
    print<D>();
}

你的代码是正确的

clang是否正确,这是一个gcc bug?

是的,最有可能。 Comeau确认您的代码是正确的。

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