mirror of https://github.com/CGAL/cgal
136 lines
5.4 KiB
C++
136 lines
5.4 KiB
C++
#ifndef CGAL_KERNEL_D_CARTESIAN_CONVERTER_H
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#define CGAL_KERNEL_D_CARTESIAN_CONVERTER_H
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#include <CGAL/basic.h>
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#include <CGAL/tuple.h>
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#include <CGAL/Object.h>
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#include <CGAL/NT_converter.h>
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#include <CGAL/functor_tags.h>
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#include <CGAL/Kernel/mpl.h>
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#include <CGAL/is_iterator.h>
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#include <CGAL/transforming_iterator.h>
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#include <boost/utility/enable_if.hpp>
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#include <CGAL/store_kernel.h>
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#include <CGAL/Kernel_d/Kernel_object_converter.h>
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namespace CGAL {
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//TODO: special case when K1==K2 (or they are very close?)
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template<class Final_, class K1, class K2, class List_> class CartesianD_converter_;
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template<class Final_, class K1, class K2> class CartesianD_converter_<Final_,K1,K2,cpp0x::tuple<> > {
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public:
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struct Do_not_use{};
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void operator()(Do_not_use)const{}
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template<class T> struct result;
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Final_& myself(){return *static_cast<Final_*>(this);}
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Final_ const& myself()const{return *static_cast<Final_ const*>(this);}
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};
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#ifdef CGAL_CXX0X
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template<class Final_, class K1, class K2, class T, class...U> class CartesianD_converter_<Final_,K1,K2,cpp0x::tuple<T,U...> >
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: public CartesianD_converter_<Final_,K1,K2,cpp0x::tuple<U...> >
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{
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typedef CartesianD_converter_<Final_,K1,K2,cpp0x::tuple<U...> > Base;
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typedef KO_converter<T,K1,K2> KOC;
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typedef typename KOC::argument_type K1_Obj;
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typedef typename KOC::result_type K2_Obj;
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public:
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using Base::operator(); // don't use directly, just make it accessible to the next level
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K2_Obj operator()(K1_Obj const& o)const{
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return KOC()(this->myself().kernel(),this->myself().kernel2(),this->myself(),o);
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}
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template<class X,int=0> struct result:Base::template result<X>{};
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template<int i> struct result<Final_(K1_Obj),i> {typedef K2_Obj type;};
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};
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#else
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#define CODE(Z,N,_) \
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template<class Final_, class K1, class K2, class T BOOST_PP_COMMA_IF(N) BOOST_PP_ENUM_PARAMS(N,class U)> class CartesianD_converter_<Final_,K1,K2,cpp0x::tuple<T BOOST_PP_COMMA_IF(N) BOOST_PP_ENUM_PARAMS(N,U)> > \
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: public CartesianD_converter_<Final_,K1,K2,cpp0x::tuple<BOOST_PP_ENUM_PARAMS(N,U)> > \
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{ \
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typedef CartesianD_converter_<Final_,K1,K2,cpp0x::tuple<BOOST_PP_ENUM_PARAMS(N,U)> > Base; \
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typedef KO_converter<T,K1,K2> KOC; \
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typedef typename KOC::argument_type K1_Obj; \
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typedef typename KOC::result_type K2_Obj; \
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public: \
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using Base::operator(); \
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K2_Obj operator()(K1_Obj const& o)const{ \
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return KOC()(this->myself().kernel(),this->myself().kernel2(),this->myself(),o); \
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} \
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template<class X,int=0> struct result:Base::template result<X>{}; \
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template<int i> struct result<Final_(K1_Obj),i> {typedef K2_Obj type;}; \
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};
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BOOST_PP_REPEAT_FROM_TO(0, 8, CODE, _ )
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#undef CODE
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#endif
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template<class K1, class K2, class List_=cpp0x::tuple<Point_tag,Vector_tag,Segment_tag> > class CartesianD_converter
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: public Store_kernel<K1>, public Store_kernel2<K2>,
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public CartesianD_converter_<CartesianD_converter<K1,K2,List_>,K1,K2,List_>
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{
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typedef CartesianD_converter Self;
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typedef Self Final_;
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typedef CartesianD_converter_<Self,K1,K2,List_> Base;
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typedef typename K1::FT FT1;
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typedef typename K2::FT FT2;
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typedef NT_converter<FT1, FT2> NTc;
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NTc c; // TODO: compressed storage as this is likely empty and the converter gets passed around (and stored in iterators)
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public:
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CartesianD_converter(){}
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CartesianD_converter(K1 const&a,K2 const&b):Store_kernel<K1>(a),Store_kernel2<K2>(b){}
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// For boost::result_of, used in transforming_iterator
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template<class T,int i=is_iterator<T>::value?42:0> struct result:Base::template result<T>{};
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template<class T> struct result<Final_(T),42> {
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typedef transforming_iterator<Final_,T> type;
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};
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template<int i> struct result<Final_(K1),i>{typedef K2 type;};
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template<int i> struct result<Final_(int),i>{typedef int type;};
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// Ideally the next 2 would come with Point_tag and Vector_tag, but that's hard...
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template<int i> struct result<Final_(Origin),i>{typedef Origin type;};
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template<int i> struct result<Final_(Null_vector),i>{typedef Null_vector type;};
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template<int i> struct result<Final_(Object),i>{typedef Object type;};
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template<int i> struct result<Final_(FT1),i>{typedef FT2 type;};
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using Base::operator();
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typename Store_kernel2<K2>::reference2_type operator()(K1 const&)const{return this->kernel2();}
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int operator()(int i)const{return i;}
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Origin operator()(Origin const&o)const{return o;}
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Null_vector operator()(Null_vector const&v)const{return v;}
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FT2 operator()(FT1 const&x)const{return c(x);}
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//RT2 operator()(typename First_if_different<RT1,FT1>::Type const&x)const{return cr(x);}
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template<class It>
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transforming_iterator<Final_,typename boost::enable_if<is_iterator<It>,It>::type>
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operator()(It const& it)const {
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return make_transforming_iterator(it,*this);
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}
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Object
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operator()(const Object &obj) const
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{
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//TODO: use the tags from List_ instead
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#define CGAL_Kernel_obj(X,Y) \
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if (const typename K1::template Type<X##_tag>::type * ptr = object_cast<typename K1::template Type<X##_tag>::type>(&obj)) \
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return make_object(operator()(*ptr));
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#include <CGAL/Kernel_d/interface_macros.h>
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/*
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if (const std::vector<typename K1::Point> * ptr = object_cast<std::vector<typename K1::Point> >(&obj)) {
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std::vector<typename K2::Point> res (
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operator()(ptr->begin()),
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operator()(ptr->end()) );
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return make_object(res);
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}
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*/
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CGAL_error_msg("Cartesiand_converter is unable to determine what is wrapped in the Object");
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return Object();
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}
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//TODO: convert boost::variant
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};
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} //namespace CGAL
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#endif // CGAL_KERNEL_D_CARTESIAN_CONVERTER_H
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