swig/Lib/python/std_deque.i
2004-03-17 09:41:19 +00:00

152 lines
4 KiB
OpenEdge ABL

//
// std::deque
// Python implementation
%include std_container.i
// Deque
%define %std_deque_methods(deque)
%std_sequence_methods(deque)
void pop_front();
void push_front(const value_type& x);
%enddef
%define %std_deque_methods_val(deque)
%std_sequence_methods_val(deque)
void pop_front();
void push_front(value_type x);
%enddef
// ------------------------------------------------------------------------
// std::deque
//
// The aim of all that follows would be to integrate std::deque with
// Python as much as possible, namely, to allow the user to pass and
// be returned Python tuples or lists.
// const declarations are used to guess the intent of the function being
// exported; therefore, the following rationale is applied:
//
// -- f(std::deque<T>), f(const std::deque<T>&):
// the parameter being read-only, either a Python sequence or a
// previously wrapped std::deque<T> can be passed.
// -- f(std::deque<T>&), f(std::deque<T>*):
// the parameter may be modified; therefore, only a wrapped std::deque
// can be passed.
// -- std::deque<T> f(), const std::deque<T>& f():
// the deque is returned by copy; therefore, a Python sequence of T:s
// is returned which is most easily used in other Python functions
// -- std::deque<T>& f(), std::deque<T>* f():
// the deque is returned by reference; therefore, a wrapped std::deque
// is returned
// -- const std::deque<T>* f(), f(const std::deque<T>*):
// for consistency, they expect and return a plain deque pointer.
// ------------------------------------------------------------------------
%{
#include <deque>
%}
%fragment("StdDequeTraits","header",fragment="StdSequenceTraits")
%{
namespace swigpy {
template <class T>
struct traits_asptr<std::deque<T> > {
typedef std::deque<T> deque_type;
typedef T value_type;
static int asptr(PyObject *obj, deque_type **vec) {
return traits_asptr_stdseq<deque_type>::asptr(obj, vec);
}
};
template <class T>
struct traits_from<std::deque<T> > {
typedef std::deque<T> deque_type;
static PyObject *from(const deque_type& vec) {
return traits_from_stdseq<deque_type>::from(vec);
}
};
}
%}
// exported classes
namespace std {
template<class T > class deque {
public:
typedef size_t size_type;
typedef ptrdiff_t difference_type;
typedef T value_type;
typedef value_type* pointer;
typedef const value_type* const_pointer;
typedef value_type& reference;
typedef const value_type& const_reference;
%traits_swigtype(T);
%fragment(SWIG_Traits_frag(std::deque<T >), "header",
fragment=SWIG_Traits_frag(T),
fragment="StdDequeTraits") {
namespace swigpy {
template <> struct traits<std::deque<T > > {
typedef pointer_category category;
static const char* type_name() {
return "std::deque<" #T " >";
}
};
}
}
%typemap_traits_ptr(SWIG_CCode(DEQUE), std::deque<T >);
%std_deque_methods(std::deque<T >);
%pysequence_methods(std::deque<T >);
};
template<class T > class deque<T*> {
public:
typedef size_t size_type;
typedef ptrdiff_t difference_type;
typedef T* value_type;
typedef value_type* pointer;
typedef const value_type* const_pointer;
typedef value_type reference;
typedef value_type const_reference;
%fragment(SWIG_Traits_frag(std::deque<T* >), "header",
fragment="StdDequeTraits") {
namespace swigpy {
template <> struct traits<std::deque<T* > > {
typedef value_category category;
static const char* type_name() {
return "std::deque<" #T " * >";
}
};
}
}
%typemap_traits_ptr(SWIG_CCode(DEQUE), std::deque<T* >);
%std_deque_methods_val(std::deque<T* >);
%pysequence_methods_val(std::deque<T* >);
};
// Add the order operations <,>,<=,=> as needed
%define %std_order_deque(T)
%std_comp_methods(deque<T>);
%enddef
%apply_otypes(%std_order_deque);
}
%define %std_deque_ptypen(...)
%template() std::deque<__VA_ARGS__ >;
%enddef
%apply_cpptypes(%std_deque_ptypen);