tmp/tmpyghgibwr/{from.md → to.md}
RENAMED
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#### Adaptors for pointers to members <a id="depr.member.pointer.adaptors">[[depr.member.pointer.adaptors]]</a>
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The purpose of the following is to provide the same facilities for
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pointer to members as those provided for pointers to functions in
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[[depr.function.pointer.adaptors]].
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``` cpp
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template <class S, class T> class mem_fun_t
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: public unary_function<T*, S> {
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public:
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explicit mem_fun_t(S (T::*p)());
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S operator()(T* p) const;
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};
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```
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`mem_fun_t` calls the member function it is initialized with given a
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pointer argument.
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``` cpp
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template <class S, class T, class A> class mem_fun1_t
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: public binary_function<T*, A, S> {
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public:
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explicit mem_fun1_t(S (T::*p)(A));
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S operator()(T* p, A x) const;
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};
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```
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`mem_fun1_t` calls the member function it is initialized with given a
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pointer argument and an additional argument of the appropriate type.
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``` cpp
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template<class S, class T> mem_fun_t<S,T>
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mem_fun(S (T::*f)());
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template<class S, class T, class A> mem_fun1_t<S,T,A>
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mem_fun(S (T::*f)(A));
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```
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`mem_fun(&X::f)` returns an object through which `X::f` can be called
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given a pointer to an `X` followed by the argument required for `f` (if
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any).
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``` cpp
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template <class S, class T> class mem_fun_ref_t
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: public unary_function<T, S> {
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public:
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explicit mem_fun_ref_t(S (T::*p)());
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S operator()(T& p) const;
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};
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```
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`mem_fun_ref_t` calls the member function it is initialized with given a
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reference argument.
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``` cpp
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template <class S, class T, class A> class mem_fun1_ref_t
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: public binary_function<T, A, S> {
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public:
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explicit mem_fun1_ref_t(S (T::*p)(A));
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S operator()(T& p, A x) const;
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};
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```
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`mem_fun1_ref_t` calls the member function it is initialized with given
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a reference argument and an additional argument of the appropriate type.
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``` cpp
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template<class S, class T> mem_fun_ref_t<S,T>
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mem_fun_ref(S (T::*f)());
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template<class S, class T, class A> mem_fun1_ref_t<S,T,A>
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mem_fun_ref(S (T::*f)(A));
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```
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`mem_fun_ref(&X::f)` returns an object through which `X::f` can be
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called given a reference to an `X` followed by the argument required for
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`f` (if any).
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``` cpp
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template <class S, class T> class const_mem_fun_t
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: public unary_function<const T*, S> {
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public:
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explicit const_mem_fun_t(S (T::*p)() const);
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S operator()(const T* p) const;
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};
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```
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`const_mem_fun_t` calls the member function it is initialized with given
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a pointer argument.
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``` cpp
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template <class S, class T, class A> class const_mem_fun1_t
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: public binary_function<const T*, A, S> {
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public:
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explicit const_mem_fun1_t(S (T::*p)(A) const);
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S operator()(const T* p, A x) const;
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};
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```
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`const_mem_fun1_t` calls the member function it is initialized with
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given a pointer argument and an additional argument of the appropriate
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type.
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``` cpp
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template<class S, class T> const_mem_fun_t<S,T>
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mem_fun(S (T::*f)() const);
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template<class S, class T, class A> const_mem_fun1_t<S,T,A>
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mem_fun(S (T::*f)(A) const);
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```
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`mem_fun(&X::f)` returns an object through which `X::f` can be called
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given a pointer to an `X` followed by the argument required for `f` (if
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any).
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``` cpp
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template <class S, class T> class const_mem_fun_ref_t
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: public unary_function<T, S> {
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public:
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explicit const_mem_fun_ref_t(S (T::*p)() const);
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S operator()(const T& p) const;
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};
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```
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`const_mem_fun_ref_t` calls the member function it is initialized with
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given a reference argument.
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``` cpp
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template <class S, class T, class A> class const_mem_fun1_ref_t
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: public binary_function<T, A, S> {
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public:
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explicit const_mem_fun1_ref_t(S (T::*p)(A) const);
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S operator()(const T& p, A x) const;
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};
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```
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`const_mem_fun1_ref_t` calls the member function it is initialized with
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given a reference argument and an additional argument of the appropriate
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type.
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``` cpp
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template<class S, class T> const_mem_fun_ref_t<S,T>
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mem_fun_ref(S (T::*f)() const);
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template<class S, class T, class A> const_mem_fun1_ref_t<S,T,A>
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mem_fun_ref(S (T::*f)(A) const);
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```
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`mem_fun_ref(&X::f)` returns an object through which `X::f` can be
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called given a reference to an `X` followed by the argument required for
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`f` (if any).
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