| 123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350351352353354355356357358359360361362363364365366367368369370371372373374375376377378379380381382383384385386387388389390391392393394395396397398399400401402403404405406407408409410411412413414415416417418419420421422423424425426427428429430431432433434435436437438439440441442443444445446447448449450451452453454455456457458459460461462463464465466467468469470471472473474475476477478479480481482483484485486487488489490491492493494495496497498499500501502503504505506507508509510511512513514515516517518519520521522523524525526527528529530531532533534535536537538539540541542543544545546547548549550551552553554555556557558559560561562563564565566567568569570571572573574575576577578579580581582583584585586587588589590591592593594595596597598599600601602603604605606607608609610611612613614615616617618619620621622623624625626627628629630631632633634635636637638639640641642643644645646647648649650651652653654655656657658659660661662663664665666667668669670671672673674 | //Copyright (c) 2008-2017 Emil Dotchevski and Reverge Studios, Inc.//Distributed under the Boost Software License, Version 1.0. (See accompanying//file LICENSE_1_0.txt or copy at http://www.boost.org/LICENSE_1_0.txt)#ifndef BOOST_QVM_BF14D67E2DDC8E6683EF574961FF698F#define BOOST_QVM_BF14D67E2DDC8E6683EF574961FF698F//This file was generated by a program. Do not edit manually.#include <boost/qvm/deduce_scalar.hpp>#include <boost/qvm/deduce_vec.hpp>#include <boost/qvm/error.hpp>#include <boost/qvm/gen/vec_assign4.hpp>#include <boost/qvm/math.hpp>#include <boost/qvm/static_assert.hpp>#include <boost/qvm/throw_exception.hpp>namespaceboost    {    namespace    qvm        {        template <class A,class B>        BOOST_QVM_INLINE_OPERATIONS        typename lazy_enable_if_c<            vec_traits<A>::dim==4 && vec_traits<B>::dim==4,            deduce_vec2<A,B,4> >::type        operator+( A const & a, B const & b )            {            typedef typename deduce_vec2<A,B,4>::type R;            BOOST_QVM_STATIC_ASSERT(vec_traits<R>::dim==4);            R r;            vec_traits<R>::template write_element<0>(r)=vec_traits<A>::template read_element<0>(a)+vec_traits<B>::template read_element<0>(b);            vec_traits<R>::template write_element<1>(r)=vec_traits<A>::template read_element<1>(a)+vec_traits<B>::template read_element<1>(b);            vec_traits<R>::template write_element<2>(r)=vec_traits<A>::template read_element<2>(a)+vec_traits<B>::template read_element<2>(b);            vec_traits<R>::template write_element<3>(r)=vec_traits<A>::template read_element<3>(a)+vec_traits<B>::template read_element<3>(b);            return r;            }        namespace        sfinae            {            using ::boost::qvm::operator+;            }        namespace        qvm_detail            {            template <int D>            struct plus_vv_defined;            template <>            struct            plus_vv_defined<4>                {                static bool const value=true;                };            }        template <class A,class B>        BOOST_QVM_INLINE_OPERATIONS        typename lazy_enable_if_c<            vec_traits<A>::dim==4 && vec_traits<B>::dim==4,            deduce_vec2<A,B,4> >::type        operator-( A const & a, B const & b )            {            typedef typename deduce_vec2<A,B,4>::type R;            BOOST_QVM_STATIC_ASSERT(vec_traits<R>::dim==4);            R r;            vec_traits<R>::template write_element<0>(r)=vec_traits<A>::template read_element<0>(a)-vec_traits<B>::template read_element<0>(b);            vec_traits<R>::template write_element<1>(r)=vec_traits<A>::template read_element<1>(a)-vec_traits<B>::template read_element<1>(b);            vec_traits<R>::template write_element<2>(r)=vec_traits<A>::template read_element<2>(a)-vec_traits<B>::template read_element<2>(b);            vec_traits<R>::template write_element<3>(r)=vec_traits<A>::template read_element<3>(a)-vec_traits<B>::template read_element<3>(b);            return r;            }        namespace        sfinae            {            using ::boost::qvm::operator-;            }        namespace        qvm_detail            {            template <int D>            struct minus_vv_defined;            template <>            struct            minus_vv_defined<4>                {                static bool const value=true;                };            }        template <class A,class B>        BOOST_QVM_INLINE_OPERATIONS        typename enable_if_c<            vec_traits<A>::dim==4 && vec_traits<B>::dim==4,            A &>::type        operator+=( A & a, B const & b )            {            vec_traits<A>::template write_element<0>(a)+=vec_traits<B>::template read_element<0>(b);            vec_traits<A>::template write_element<1>(a)+=vec_traits<B>::template read_element<1>(b);            vec_traits<A>::template write_element<2>(a)+=vec_traits<B>::template read_element<2>(b);            vec_traits<A>::template write_element<3>(a)+=vec_traits<B>::template read_element<3>(b);            return a;            }        namespace        sfinae            {            using ::boost::qvm::operator+=;            }        namespace        qvm_detail            {            template <int D>            struct plus_eq_vv_defined;            template <>            struct            plus_eq_vv_defined<4>                {                static bool const value=true;                };            }        template <class A,class B>        BOOST_QVM_INLINE_OPERATIONS        typename enable_if_c<            vec_traits<A>::dim==4 && vec_traits<B>::dim==4,            A &>::type        operator-=( A & a, B const & b )            {            vec_traits<A>::template write_element<0>(a)-=vec_traits<B>::template read_element<0>(b);            vec_traits<A>::template write_element<1>(a)-=vec_traits<B>::template read_element<1>(b);            vec_traits<A>::template write_element<2>(a)-=vec_traits<B>::template read_element<2>(b);            vec_traits<A>::template write_element<3>(a)-=vec_traits<B>::template read_element<3>(b);            return a;            }        namespace        sfinae            {            using ::boost::qvm::operator-=;            }        namespace        qvm_detail            {            template <int D>            struct minus_eq_vv_defined;            template <>            struct            minus_eq_vv_defined<4>                {                static bool const value=true;                };            }        template <class A,class B>        BOOST_QVM_INLINE_OPERATIONS        typename lazy_enable_if_c<            vec_traits<A>::dim==4 && is_scalar<B>::value,            deduce_vec<A> >::type        operator*( A const & a, B b )            {            typedef typename deduce_vec<A>::type R;            R r;            vec_traits<R>::template write_element<0>(r)=vec_traits<A>::template read_element<0>(a)*b;            vec_traits<R>::template write_element<1>(r)=vec_traits<A>::template read_element<1>(a)*b;            vec_traits<R>::template write_element<2>(r)=vec_traits<A>::template read_element<2>(a)*b;            vec_traits<R>::template write_element<3>(r)=vec_traits<A>::template read_element<3>(a)*b;            return r;            }        namespace        sfinae            {            using ::boost::qvm::operator*;            }        namespace        qvm_detail            {            template <int D>            struct mul_vs_defined;            template <>            struct            mul_vs_defined<4>                {                static bool const value=true;                };            }        template <class A,class B>        BOOST_QVM_INLINE_OPERATIONS        typename lazy_enable_if_c<            is_scalar<A>::value && vec_traits<B>::dim==4,            deduce_vec<B> >::type        operator*( A a, B const & b )            {            typedef typename deduce_vec<B>::type R;            R r;            vec_traits<R>::template write_element<0>(r)=a*vec_traits<B>::template read_element<0>(b);            vec_traits<R>::template write_element<1>(r)=a*vec_traits<B>::template read_element<1>(b);            vec_traits<R>::template write_element<2>(r)=a*vec_traits<B>::template read_element<2>(b);            vec_traits<R>::template write_element<3>(r)=a*vec_traits<B>::template read_element<3>(b);            return r;            }        namespace        sfinae            {            using ::boost::qvm::operator*;            }        namespace        qvm_detail            {            template <int D>            struct mul_sv_defined;            template <>            struct            mul_sv_defined<4>                {                static bool const value=true;                };            }        template <class A,class  B>        BOOST_QVM_INLINE_OPERATIONS        typename enable_if_c<            vec_traits<A>::dim==4 && is_scalar<B>::value,            A &>::type        operator*=( A & a, B b )            {            vec_traits<A>::template write_element<0>(a)*=b;            vec_traits<A>::template write_element<1>(a)*=b;            vec_traits<A>::template write_element<2>(a)*=b;            vec_traits<A>::template write_element<3>(a)*=b;            return a;            }        namespace        sfinae            {            using ::boost::qvm::operator*=;            }        namespace        qvm_detail            {            template <int D>            struct mul_eq_vs_defined;            template <>            struct            mul_eq_vs_defined<4>                {                static bool const value=true;                };            }        template <class A,class B>        BOOST_QVM_INLINE_OPERATIONS        typename lazy_enable_if_c<            vec_traits<A>::dim==4 && is_scalar<B>::value,            deduce_vec<A> >::type        operator/( A const & a, B b )            {            typedef typename deduce_vec<A>::type R;            R r;            vec_traits<R>::template write_element<0>(r)=vec_traits<A>::template read_element<0>(a)/b;            vec_traits<R>::template write_element<1>(r)=vec_traits<A>::template read_element<1>(a)/b;            vec_traits<R>::template write_element<2>(r)=vec_traits<A>::template read_element<2>(a)/b;            vec_traits<R>::template write_element<3>(r)=vec_traits<A>::template read_element<3>(a)/b;            return r;            }        namespace        sfinae            {            using ::boost::qvm::operator/;            }        namespace        qvm_detail            {            template <int D>            struct div_vs_defined;            template <>            struct            div_vs_defined<4>                {                static bool const value=true;                };            }        template <class A,class  B>        BOOST_QVM_INLINE_OPERATIONS        typename enable_if_c<            vec_traits<A>::dim==4 && is_scalar<B>::value,            A &>::type        operator/=( A & a, B b )            {            vec_traits<A>::template write_element<0>(a)/=b;            vec_traits<A>::template write_element<1>(a)/=b;            vec_traits<A>::template write_element<2>(a)/=b;            vec_traits<A>::template write_element<3>(a)/=b;            return a;            }        namespace        sfinae            {            using ::boost::qvm::operator/=;            }        namespace        qvm_detail            {            template <int D>            struct div_eq_vs_defined;            template <>            struct            div_eq_vs_defined<4>                {                static bool const value=true;                };            }        template <class R,class A>        BOOST_QVM_INLINE_OPERATIONS        typename enable_if_c<            is_vec<A>::value &&            vec_traits<R>::dim==4 && vec_traits<A>::dim==4,            R>::type        convert_to( A const & a )            {            R r;            vec_traits<R>::template write_element<0>(r)=vec_traits<A>::template read_element<0>(a);            vec_traits<R>::template write_element<1>(r)=vec_traits<A>::template read_element<1>(a);            vec_traits<R>::template write_element<2>(r)=vec_traits<A>::template read_element<2>(a);            vec_traits<R>::template write_element<3>(r)=vec_traits<A>::template read_element<3>(a);            return r;            }        namespace        sfinae            {            using ::boost::qvm::convert_to;            }        namespace        qvm_detail            {            template <int D>            struct convert_to_v_defined;            template <>            struct            convert_to_v_defined<4>                {                static bool const value=true;                };            }        template <class A,class B>        BOOST_QVM_INLINE_OPERATIONS        typename enable_if_c<            vec_traits<A>::dim==4 && vec_traits<B>::dim==4,        bool>::type        operator==( A const & a, B const & b )            {            return                vec_traits<A>::template read_element<0>(a)==vec_traits<B>::template read_element<0>(b) &&                vec_traits<A>::template read_element<1>(a)==vec_traits<B>::template read_element<1>(b) &&                vec_traits<A>::template read_element<2>(a)==vec_traits<B>::template read_element<2>(b) &&                vec_traits<A>::template read_element<3>(a)==vec_traits<B>::template read_element<3>(b);            }        namespace        sfinae            {            using ::boost::qvm::operator==;            }        namespace        qvm_detail            {            template <int D>            struct eq_vv_defined;            template <>            struct            eq_vv_defined<4>                {                static bool const value=true;                };            }        template <class A,class B>        BOOST_QVM_INLINE_OPERATIONS        typename enable_if_c<            vec_traits<A>::dim==4 && vec_traits<B>::dim==4,        bool>::type        operator!=( A const & a, B const & b )            {            return                !(vec_traits<A>::template read_element<0>(a)==vec_traits<B>::template read_element<0>(b)) ||                !(vec_traits<A>::template read_element<1>(a)==vec_traits<B>::template read_element<1>(b)) ||                !(vec_traits<A>::template read_element<2>(a)==vec_traits<B>::template read_element<2>(b)) ||                !(vec_traits<A>::template read_element<3>(a)==vec_traits<B>::template read_element<3>(b));            }        namespace        sfinae            {            using ::boost::qvm::operator!=;            }        namespace        qvm_detail            {            template <int D>            struct neq_vv_defined;            template <>            struct            neq_vv_defined<4>                {                static bool const value=true;                };            }        template <class A>        BOOST_QVM_INLINE_OPERATIONS        typename lazy_enable_if_c<            vec_traits<A>::dim==4,            deduce_vec<A> >::type        operator-( A const & a )            {            typedef typename deduce_vec<A>::type R;            R r;            vec_traits<R>::template write_element<0>(r)=-vec_traits<A>::template read_element<0>(a);            vec_traits<R>::template write_element<1>(r)=-vec_traits<A>::template read_element<1>(a);            vec_traits<R>::template write_element<2>(r)=-vec_traits<A>::template read_element<2>(a);            vec_traits<R>::template write_element<3>(r)=-vec_traits<A>::template read_element<3>(a);            return r;            }        namespace        sfinae            {            using ::boost::qvm::operator-;            }        namespace        qvm_detail            {            template <int D>            struct minus_v_defined;            template <>            struct            minus_v_defined<4>                {                static bool const value=true;                };            }        template <class A>        BOOST_QVM_INLINE_OPERATIONS        typename enable_if_c<            is_vec<A>::value && vec_traits<A>::dim==4,            typename vec_traits<A>::scalar_type>::type        mag( A const & a )            {            typedef typename vec_traits<A>::scalar_type T;            T const a0=vec_traits<A>::template read_element<0>(a);            T const a1=vec_traits<A>::template read_element<1>(a);            T const a2=vec_traits<A>::template read_element<2>(a);            T const a3=vec_traits<A>::template read_element<3>(a);            T const m2=a0*a0+a1*a1+a2*a2+a3*a3;            T const mag=sqrt<T>(m2);            return mag;            }        namespace        sfinae            {            using ::boost::qvm::mag;            }        namespace        qvm_detail            {            template <int D>            struct mag_v_defined;            template <>            struct            mag_v_defined<4>                {                static bool const value=true;                };            }        template <class A>        BOOST_QVM_INLINE_OPERATIONS        typename enable_if_c<            is_vec<A>::value && vec_traits<A>::dim==4,            typename vec_traits<A>::scalar_type>::type        mag_sqr( A const & a )            {            typedef typename vec_traits<A>::scalar_type T;            T const a0=vec_traits<A>::template read_element<0>(a);            T const a1=vec_traits<A>::template read_element<1>(a);            T const a2=vec_traits<A>::template read_element<2>(a);            T const a3=vec_traits<A>::template read_element<3>(a);            T const m2=a0*a0+a1*a1+a2*a2+a3*a3;            return m2;            }        namespace        sfinae            {            using ::boost::qvm::mag_sqr;            }        namespace        qvm_detail            {            template <int D>            struct mag_sqr_v_defined;            template <>            struct            mag_sqr_v_defined<4>                {                static bool const value=true;                };            }        template <class A>        BOOST_QVM_INLINE_OPERATIONS        typename lazy_enable_if_c<            vec_traits<A>::dim==4,            deduce_vec<A> >::type        normalized( A const & a )            {            typedef typename vec_traits<A>::scalar_type T;            T const a0=vec_traits<A>::template read_element<0>(a);            T const a1=vec_traits<A>::template read_element<1>(a);            T const a2=vec_traits<A>::template read_element<2>(a);            T const a3=vec_traits<A>::template read_element<3>(a);            T const m2=a0*a0+a1*a1+a2*a2+a3*a3;            if( m2==scalar_traits<typename vec_traits<A>::scalar_type>::value(0) )                BOOST_QVM_THROW_EXCEPTION(zero_magnitude_error());            T const rm=scalar_traits<T>::value(1)/sqrt<T>(m2);            typedef typename deduce_vec<A>::type R;            R r;            vec_traits<R>::template write_element<0>(r)=a0*rm;            vec_traits<R>::template write_element<1>(r)=a1*rm;            vec_traits<R>::template write_element<2>(r)=a2*rm;            vec_traits<R>::template write_element<3>(r)=a3*rm;            return r;            }        namespace        sfinae            {            using ::boost::qvm::normalized;            }        template <class A>        BOOST_QVM_INLINE_OPERATIONS        typename enable_if_c<            vec_traits<A>::dim==4,            void>::type        normalize( A & a )            {            typedef typename vec_traits<A>::scalar_type T;            T const a0=vec_traits<A>::template read_element<0>(a);            T const a1=vec_traits<A>::template read_element<1>(a);            T const a2=vec_traits<A>::template read_element<2>(a);            T const a3=vec_traits<A>::template read_element<3>(a);            T const m2=a0*a0+a1*a1+a2*a2+a3*a3;            if( m2==scalar_traits<typename vec_traits<A>::scalar_type>::value(0) )                BOOST_QVM_THROW_EXCEPTION(zero_magnitude_error());            T const rm=scalar_traits<T>::value(1)/sqrt<T>(m2);            vec_traits<A>::template write_element<0>(a)*=rm;            vec_traits<A>::template write_element<1>(a)*=rm;            vec_traits<A>::template write_element<2>(a)*=rm;            vec_traits<A>::template write_element<3>(a)*=rm;            }        namespace        sfinae            {            using ::boost::qvm::normalize;            }        namespace        qvm_detail            {            template <int D>            struct normalize_v_defined;            template <>            struct            normalize_v_defined<4>                {                static bool const value=true;                };            }        template <class A,class B>        BOOST_QVM_INLINE_OPERATIONS        typename lazy_enable_if_c<            vec_traits<A>::dim==4 && vec_traits<B>::dim==4,            deduce_scalar<typename vec_traits<A>::scalar_type,typename vec_traits<B>::scalar_type> >::type        dot( A const & a, B const & b )            {            typedef typename vec_traits<A>::scalar_type Ta;            typedef typename vec_traits<B>::scalar_type Tb;            typedef typename deduce_scalar<Ta,Tb>::type Tr;            Ta const a0=vec_traits<A>::template read_element<0>(a);            Ta const a1=vec_traits<A>::template read_element<1>(a);            Ta const a2=vec_traits<A>::template read_element<2>(a);            Ta const a3=vec_traits<A>::template read_element<3>(a);            Tb const b0=vec_traits<B>::template read_element<0>(b);            Tb const b1=vec_traits<B>::template read_element<1>(b);            Tb const b2=vec_traits<B>::template read_element<2>(b);            Tb const b3=vec_traits<B>::template read_element<3>(b);            Tr const dot=a0*b0+a1*b1+a2*b2+a3*b3;            return dot;            }        namespace        sfinae            {            using ::boost::qvm::dot;            }        namespace        qvm_detail            {            template <int D>            struct dot_vv_defined;            template <>            struct            dot_vv_defined<4>                {                static bool const value=true;                };            }        }    }#endif
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