| 123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350351352353354355356357358359360361362363364365366367368369370371372373374375376377378379380381382383384385386387388389390391392393394395396397398399400401402403404405406407408409410411412413414415416417418419420421422423424425426427428429430431432433434435436437438439440441442443444445446447448449450451452453454455456457458459460461462463464465466467468469470471472473474475476477478479480481482483484485486487488489490491492493494495496497498499500501502503504505506507508509510511512513514515516517518519520521522523524525526527528529530531532533534535536537538539540541542543544545546547548549550551552553554555556557558559560561562563564565566567568569570571572573574575576577578579580581582583584585586587588589590591592593594595596597598599600601602603604605606607608609610611612613614615616617618619620621622623624625626627628629630631632633634635636637638639640641642643644645646647648649650651652653654655656657658659660661662663664665666667668669670671672673674675676677678679680681682683684685686687688689690691692693694695696697698699700701702703704705706707708709710711712713714715716717718719720721722723724725726727728729 | // Boost.Units - A C++ library for zero-overhead dimensional analysis and // unit/quantity manipulation and conversion//// Copyright (C) 2003-2008 Matthias Christian Schabel// Copyright (C) 2007-2008 Steven Watanabe//// 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_UNITS_CMATH_HPP #define BOOST_UNITS_CMATH_HPP#include <boost/config/no_tr1/cmath.hpp>#include <cstdlib>#include <boost/math/special_functions/fpclassify.hpp>#include <boost/math/special_functions/hypot.hpp>#include <boost/math/special_functions/next.hpp>#include <boost/math/special_functions/round.hpp>#include <boost/math/special_functions/sign.hpp>#include <boost/units/dimensionless_quantity.hpp>#include <boost/units/pow.hpp>#include <boost/units/quantity.hpp>#include <boost/units/detail/cmath_impl.hpp>#include <boost/units/detail/dimensionless_unit.hpp>#include <boost/units/systems/si/plane_angle.hpp>/// \file/// \brief Overloads of functions in \<cmath\> for quantities./// \details Only functions for which a dimensionally-correct result type///   can be determined are overloaded.///   All functions work with dimensionless quantities.// BOOST_PREVENT_MACRO_SUBSTITUTION is needed on certain compilers that define // some <cmath> functions as macros; it is used for all functions even though it// isn't necessary -- I didn't want to think :)//// the form using namespace detail; return(f(x)); is used// to enable ADL for UDTs.namespace boost {namespace units { template<class Unit,class Y>inline BOOST_CONSTEXPRbool isfinite BOOST_PREVENT_MACRO_SUBSTITUTION (const quantity<Unit,Y>& q){     using boost::math::isfinite;    return isfinite BOOST_PREVENT_MACRO_SUBSTITUTION (q.value());}template<class Unit,class Y>inline BOOST_CONSTEXPRbool isinf BOOST_PREVENT_MACRO_SUBSTITUTION (const quantity<Unit,Y>& q){     using boost::math::isinf;    return isinf BOOST_PREVENT_MACRO_SUBSTITUTION (q.value());}template<class Unit,class Y>inlineBOOST_CONSTEXPRbool isnan BOOST_PREVENT_MACRO_SUBSTITUTION (const quantity<Unit,Y>& q){     using boost::math::isnan;    return isnan BOOST_PREVENT_MACRO_SUBSTITUTION (q.value());}template<class Unit,class Y>inline BOOST_CONSTEXPRbool isnormal BOOST_PREVENT_MACRO_SUBSTITUTION (const quantity<Unit,Y>& q){     using boost::math::isnormal;    return isnormal BOOST_PREVENT_MACRO_SUBSTITUTION (q.value());}template<class Unit,class Y>inline BOOST_CONSTEXPRbool isgreater BOOST_PREVENT_MACRO_SUBSTITUTION (const quantity<Unit,Y>& q1,                                            const quantity<Unit,Y>& q2){     using namespace detail;    return isgreater BOOST_PREVENT_MACRO_SUBSTITUTION (q1.value(),q2.value());}template<class Unit,class Y>inline BOOST_CONSTEXPRbool isgreaterequal BOOST_PREVENT_MACRO_SUBSTITUTION (const quantity<Unit,Y>& q1,                                                 const quantity<Unit,Y>& q2){     using namespace detail;    return isgreaterequal BOOST_PREVENT_MACRO_SUBSTITUTION (q1.value(),q2.value());}template<class Unit,class Y>inline BOOST_CONSTEXPRbool isless BOOST_PREVENT_MACRO_SUBSTITUTION (const quantity<Unit,Y>& q1,                                         const quantity<Unit,Y>& q2){     using namespace detail;    return isless BOOST_PREVENT_MACRO_SUBSTITUTION (q1.value(),q2.value());}template<class Unit,class Y>inline BOOST_CONSTEXPRbool islessequal BOOST_PREVENT_MACRO_SUBSTITUTION (const quantity<Unit,Y>& q1,                                              const quantity<Unit,Y>& q2){     using namespace detail;    return islessequal BOOST_PREVENT_MACRO_SUBSTITUTION (q1.value(),q2.value());}template<class Unit,class Y>inline BOOST_CONSTEXPRbool islessgreater BOOST_PREVENT_MACRO_SUBSTITUTION (const quantity<Unit,Y>& q1,                                                const quantity<Unit,Y>& q2){     using namespace detail;    return islessgreater BOOST_PREVENT_MACRO_SUBSTITUTION (q1.value(),q2.value());}template<class Unit,class Y>inline BOOST_CONSTEXPRbool isunordered BOOST_PREVENT_MACRO_SUBSTITUTION (const quantity<Unit,Y>& q1,                                              const quantity<Unit,Y>& q2){     using namespace detail;    return isunordered BOOST_PREVENT_MACRO_SUBSTITUTION (q1.value(),q2.value());}template<class Unit,class Y>inline BOOST_CONSTEXPRquantity<Unit,Y> abs BOOST_PREVENT_MACRO_SUBSTITUTION (const quantity<Unit,Y>& q){    using std::abs;    typedef quantity<Unit,Y>    quantity_type;        return quantity_type::from_value(abs BOOST_PREVENT_MACRO_SUBSTITUTION (q.value()));}template<class Unit,class Y>inline BOOST_CONSTEXPRquantity<Unit,Y> ceil BOOST_PREVENT_MACRO_SUBSTITUTION (const quantity<Unit,Y>& q){    using std::ceil;    typedef quantity<Unit,Y>    quantity_type;        return quantity_type::from_value(ceil BOOST_PREVENT_MACRO_SUBSTITUTION (q.value()));}template<class Unit,class Y>inline BOOST_CONSTEXPRquantity<Unit,Y> copysign BOOST_PREVENT_MACRO_SUBSTITUTION (const quantity<Unit,Y>& q1,         const quantity<Unit,Y>& q2){    using boost::math::copysign;    typedef quantity<Unit,Y>    quantity_type;        return quantity_type::from_value(copysign BOOST_PREVENT_MACRO_SUBSTITUTION (q1.value(),q2.value()));}template<class Unit,class Y>inline BOOST_CONSTEXPRquantity<Unit,Y> fabs BOOST_PREVENT_MACRO_SUBSTITUTION (const quantity<Unit,Y>& q){    using std::fabs;    typedef quantity<Unit,Y>    quantity_type;        return quantity_type::from_value(fabs BOOST_PREVENT_MACRO_SUBSTITUTION (q.value()));}template<class Unit,class Y>inline BOOST_CONSTEXPRquantity<Unit,Y> floor BOOST_PREVENT_MACRO_SUBSTITUTION (const quantity<Unit,Y>& q){    using std::floor;    typedef quantity<Unit,Y>    quantity_type;        return quantity_type::from_value(floor BOOST_PREVENT_MACRO_SUBSTITUTION (q.value()));}template<class Unit,class Y>inline BOOST_CONSTEXPRquantity<Unit,Y> fdim BOOST_PREVENT_MACRO_SUBSTITUTION (const quantity<Unit,Y>& q1,                                       const quantity<Unit,Y>& q2){    using namespace detail;    typedef quantity<Unit,Y>    quantity_type;        return quantity_type::from_value(fdim BOOST_PREVENT_MACRO_SUBSTITUTION (q1.value(),q2.value()));}#if 0template<class Unit1,class Unit2,class Unit3,class Y>inline BOOST_CONSTEXPRtypename add_typeof_helper<    typename multiply_typeof_helper<quantity<Unit1,Y>,                                    quantity<Unit2,Y> >::type,    quantity<Unit3,Y> >::type fma BOOST_PREVENT_MACRO_SUBSTITUTION (const quantity<Unit1,Y>& q1,                                      const quantity<Unit2,Y>& q2,                                      const quantity<Unit3,Y>& q3){    using namespace detail;    typedef quantity<Unit1,Y>   type1;    typedef quantity<Unit2,Y>   type2;    typedef quantity<Unit3,Y>   type3;        typedef typename multiply_typeof_helper<type1,type2>::type  prod_type;    typedef typename add_typeof_helper<prod_type,type3>::type   quantity_type;        return quantity_type::from_value(fma BOOST_PREVENT_MACRO_SUBSTITUTION (q1.value(),q2.value(),q3.value()));}#endiftemplate<class Unit,class Y>inline BOOST_CONSTEXPRquantity<Unit,Y> fmax BOOST_PREVENT_MACRO_SUBSTITUTION (const quantity<Unit,Y>& q1,                                       const quantity<Unit,Y>& q2){    using namespace detail;    typedef quantity<Unit,Y>    quantity_type;        return quantity_type::from_value(fmax BOOST_PREVENT_MACRO_SUBSTITUTION (q1.value(),q2.value()));}template<class Unit,class Y>inline BOOST_CONSTEXPRquantity<Unit,Y> fmin BOOST_PREVENT_MACRO_SUBSTITUTION (const quantity<Unit,Y>& q1,                                       const quantity<Unit,Y>& q2){    using namespace detail;    typedef quantity<Unit,Y>    quantity_type;        return quantity_type::from_value(fmin BOOST_PREVENT_MACRO_SUBSTITUTION (q1.value(),q2.value()));}template<class Unit,class Y>inline BOOST_CONSTEXPRint fpclassify BOOST_PREVENT_MACRO_SUBSTITUTION (const quantity<Unit,Y>& q){     using boost::math::fpclassify;    return fpclassify BOOST_PREVENT_MACRO_SUBSTITUTION (q.value());}template<class Unit,class Y>inline BOOST_CONSTEXPRtypename root_typeof_helper<    typename add_typeof_helper<        typename power_typeof_helper<quantity<Unit,Y>,                                     static_rational<2> >::type,        typename power_typeof_helper<quantity<Unit,Y>,                                     static_rational<2> >::type>::type,        static_rational<2> >::typehypot BOOST_PREVENT_MACRO_SUBSTITUTION (const quantity<Unit,Y>& q1,const quantity<Unit,Y>& q2){    using boost::math::hypot;    typedef quantity<Unit,Y>    type1;        typedef typename power_typeof_helper<type1,static_rational<2> >::type   pow_type;    typedef typename add_typeof_helper<pow_type,pow_type>::type             add_type;    typedef typename root_typeof_helper<add_type,static_rational<2> >::type quantity_type;            return quantity_type::from_value(hypot BOOST_PREVENT_MACRO_SUBSTITUTION (q1.value(),q2.value()));}// does ISO C++ support long long? g++ claims not//template<class Unit,class Y>//inline //BOOST_CONSTEXPR//quantity<Unit,long long> //llrint BOOST_PREVENT_MACRO_SUBSTITUTION (const quantity<Unit,Y>& q)//{//    using namespace detail;////    typedef quantity<Unit,long long>    quantity_type;//    //    return quantity_type::from_value(llrint BOOST_PREVENT_MACRO_SUBSTITUTION (q.value()));//}// does ISO C++ support long long? g++ claims not//template<class Unit,class Y>//inline //BOOST_CONSTEXPR//quantity<Unit,long long> //llround BOOST_PREVENT_MACRO_SUBSTITUTION (const quantity<Unit,Y>& q)//{//    using namespace detail;////    typedef quantity<Unit,long long>    quantity_type;//    //    return quantity_type::from_value(llround BOOST_PREVENT_MACRO_SUBSTITUTION (q.value()));//}#if 0template<class Unit,class Y>inline BOOST_CONSTEXPRquantity<Unit,Y> nearbyint BOOST_PREVENT_MACRO_SUBSTITUTION (const quantity<Unit,Y>& q){    using namespace detail;    typedef quantity<Unit,Y>    quantity_type;        return quantity_type::from_value(nearbyint BOOST_PREVENT_MACRO_SUBSTITUTION (q.value()));}#endiftemplate<class Unit,class Y>inline BOOST_CONSTEXPRquantity<Unit,Y> nextafter BOOST_PREVENT_MACRO_SUBSTITUTION (const quantity<Unit,Y>& q1,                                                             const quantity<Unit,Y>& q2){    using boost::math::nextafter;    typedef quantity<Unit,Y>    quantity_type;        return quantity_type::from_value(nextafter BOOST_PREVENT_MACRO_SUBSTITUTION (q1.value(),q2.value()));}template<class Unit,class Y>inline BOOST_CONSTEXPRquantity<Unit,Y> nexttoward BOOST_PREVENT_MACRO_SUBSTITUTION (const quantity<Unit,Y>& q1,                                                              const quantity<Unit,Y>& q2){    // the only difference between nextafter and nexttowards is    // in the argument types.  Since we are requiring identical    // argument types, there is no difference.    using boost::math::nextafter;    typedef quantity<Unit,Y>    quantity_type;        return quantity_type::from_value(nextafter BOOST_PREVENT_MACRO_SUBSTITUTION (q1.value(),q2.value()));}#if 0template<class Unit,class Y>inline BOOST_CONSTEXPRquantity<Unit,Y> rint BOOST_PREVENT_MACRO_SUBSTITUTION (const quantity<Unit,Y>& q){    using namespace detail;    typedef quantity<Unit,Y>    quantity_type;        return quantity_type::from_value(rint BOOST_PREVENT_MACRO_SUBSTITUTION (q.value()));}#endiftemplate<class Unit,class Y>inline BOOST_CONSTEXPRquantity<Unit,Y> round BOOST_PREVENT_MACRO_SUBSTITUTION (const quantity<Unit,Y>& q){    using boost::math::round;    typedef quantity<Unit,Y>    quantity_type;        return quantity_type::from_value(round BOOST_PREVENT_MACRO_SUBSTITUTION (q.value()));}template<class Unit,class Y>inline BOOST_CONSTEXPRint signbit BOOST_PREVENT_MACRO_SUBSTITUTION (const quantity<Unit,Y>& q){     using boost::math::signbit;    return signbit BOOST_PREVENT_MACRO_SUBSTITUTION (q.value());}template<class Unit,class Y>inline BOOST_CONSTEXPRquantity<Unit,Y> trunc BOOST_PREVENT_MACRO_SUBSTITUTION (const quantity<Unit,Y>& q){    using namespace detail;    typedef quantity<Unit,Y>    quantity_type;        return quantity_type::from_value(trunc BOOST_PREVENT_MACRO_SUBSTITUTION (q.value()));}template<class Unit,class Y>inlineBOOST_CONSTEXPRquantity<Unit, Y>fmod(const quantity<Unit,Y>& q1, const quantity<Unit,Y>& q2){    using std::fmod;        typedef quantity<Unit,Y> quantity_type;    return quantity_type::from_value(fmod(q1.value(), q2.value()));}template<class Unit, class Y>inlineBOOST_CONSTEXPRquantity<Unit, Y>modf(const quantity<Unit, Y>& q1, quantity<Unit, Y>* q2){    using std::modf;    typedef quantity<Unit,Y> quantity_type;    return quantity_type::from_value(modf(q1.value(), &quantity_cast<Y&>(*q2)));}template<class Unit, class Y, class Int>inlineBOOST_CONSTEXPRquantity<Unit, Y>frexp(const quantity<Unit, Y>& q,Int* ex){    using std::frexp;    typedef quantity<Unit,Y> quantity_type;    return quantity_type::from_value(frexp(q.value(),ex));}/// For non-dimensionless quantities, integral and rational powers /// and roots can be computed by @c pow<Ex> and @c root<Rt> respectively.template<class S, class Y>inlineBOOST_CONSTEXPRquantity<BOOST_UNITS_DIMENSIONLESS_UNIT(S), Y>pow(const quantity<BOOST_UNITS_DIMENSIONLESS_UNIT(S), Y>& q1,    const quantity<BOOST_UNITS_DIMENSIONLESS_UNIT(S), Y>& q2){    using std::pow;    typedef quantity<BOOST_UNITS_DIMENSIONLESS_UNIT(S),Y> quantity_type;    return quantity_type::from_value(pow(q1.value(), q2.value()));}template<class S, class Y>inlineBOOST_CONSTEXPRquantity<BOOST_UNITS_DIMENSIONLESS_UNIT(S), Y>exp(const quantity<BOOST_UNITS_DIMENSIONLESS_UNIT(S), Y>& q){    using std::exp;    typedef quantity<BOOST_UNITS_DIMENSIONLESS_UNIT(S), Y> quantity_type;    return quantity_type::from_value(exp(q.value()));}template<class Unit, class Y, class Int>inlineBOOST_CONSTEXPRquantity<Unit, Y>ldexp(const quantity<Unit, Y>& q,const Int& ex){    using std::ldexp;    typedef quantity<Unit,Y> quantity_type;    return quantity_type::from_value(ldexp(q.value(), ex));}template<class S, class Y>inlineBOOST_CONSTEXPRquantity<BOOST_UNITS_DIMENSIONLESS_UNIT(S), Y>log(const quantity<BOOST_UNITS_DIMENSIONLESS_UNIT(S), Y>& q){    using std::log;    typedef quantity<BOOST_UNITS_DIMENSIONLESS_UNIT(S), Y> quantity_type;    return quantity_type::from_value(log(q.value()));}template<class S, class Y>inlineBOOST_CONSTEXPRquantity<BOOST_UNITS_DIMENSIONLESS_UNIT(S), Y>log10(const quantity<BOOST_UNITS_DIMENSIONLESS_UNIT(S), Y>& q){    using std::log10;    typedef quantity<BOOST_UNITS_DIMENSIONLESS_UNIT(S), Y> quantity_type;    return quantity_type::from_value(log10(q.value()));}template<class Unit,class Y>inline BOOST_CONSTEXPRtypename root_typeof_helper<                            quantity<Unit,Y>,                            static_rational<2>                           >::typesqrt(const quantity<Unit,Y>& q){    using std::sqrt;    typedef typename root_typeof_helper<                                        quantity<Unit,Y>,                                        static_rational<2>                                       >::type quantity_type;    return quantity_type::from_value(sqrt(q.value()));}} // namespace units} // namespace boostnamespace boost {namespace units {// trig functions with si argument/return types/// cos of theta in radianstemplate<class Y>BOOST_CONSTEXPRtypename dimensionless_quantity<si::system,Y>::type cos(const quantity<si::plane_angle,Y>& theta){    using std::cos;    return cos(theta.value());}/// sin of theta in radianstemplate<class Y>BOOST_CONSTEXPRtypename dimensionless_quantity<si::system,Y>::type sin(const quantity<si::plane_angle,Y>& theta){    using std::sin;    return sin(theta.value());}/// tan of theta in radianstemplate<class Y>BOOST_CONSTEXPRtypename dimensionless_quantity<si::system,Y>::type tan(const quantity<si::plane_angle,Y>& theta){    using std::tan;    return tan(theta.value());}/// cos of theta in other angular units template<class System,class Y>BOOST_CONSTEXPRtypename dimensionless_quantity<System,Y>::type cos(const quantity<unit<plane_angle_dimension,System>,Y>& theta){    return cos(quantity<si::plane_angle,Y>(theta));}/// sin of theta in other angular units template<class System,class Y>BOOST_CONSTEXPRtypename dimensionless_quantity<System,Y>::type sin(const quantity<unit<plane_angle_dimension,System>,Y>& theta){    return sin(quantity<si::plane_angle,Y>(theta));}/// tan of theta in other angular units template<class System,class Y>BOOST_CONSTEXPRtypename dimensionless_quantity<System,Y>::type tan(const quantity<unit<plane_angle_dimension,System>,Y>& theta){    return tan(quantity<si::plane_angle,Y>(theta));}/// acos of dimensionless quantity returning angle in same systemtemplate<class Y,class System>BOOST_CONSTEXPRquantity<unit<plane_angle_dimension, homogeneous_system<System> >,Y>acos(const quantity<unit<dimensionless_type, homogeneous_system<System> >,Y>& val){    using std::acos;    return quantity<unit<plane_angle_dimension, homogeneous_system<System> >,Y>(acos(val.value())*si::radians);}/// acos of dimensionless quantity returning angle in radianstemplate<class Y>BOOST_CONSTEXPRquantity<angle::radian_base_unit::unit_type,Y>acos(const quantity<unit<dimensionless_type, heterogeneous_dimensionless_system>,Y>& val){    using std::acos;    return quantity<angle::radian_base_unit::unit_type,Y>::from_value(acos(val.value()));}/// asin of dimensionless quantity returning angle in same systemtemplate<class Y,class System>BOOST_CONSTEXPRquantity<unit<plane_angle_dimension, homogeneous_system<System> >,Y>asin(const quantity<unit<dimensionless_type, homogeneous_system<System> >,Y>& val){    using std::asin;    return quantity<unit<plane_angle_dimension, homogeneous_system<System> >,Y>(asin(val.value())*si::radians);}/// asin of dimensionless quantity returning angle in radianstemplate<class Y>BOOST_CONSTEXPRquantity<angle::radian_base_unit::unit_type,Y>asin(const quantity<unit<dimensionless_type, heterogeneous_dimensionless_system>,Y>& val){    using std::asin;    return quantity<angle::radian_base_unit::unit_type,Y>::from_value(asin(val.value()));}/// atan of dimensionless quantity returning angle in same systemtemplate<class Y,class System>BOOST_CONSTEXPRquantity<unit<plane_angle_dimension, homogeneous_system<System> >,Y>atan(const quantity<unit<dimensionless_type, homogeneous_system<System> >, Y>& val){    using std::atan;    return quantity<unit<plane_angle_dimension, homogeneous_system<System> >,Y>(atan(val.value())*si::radians);}/// atan of dimensionless quantity returning angle in radianstemplate<class Y>BOOST_CONSTEXPRquantity<angle::radian_base_unit::unit_type,Y>atan(const quantity<unit<dimensionless_type, heterogeneous_dimensionless_system>, Y>& val){    using std::atan;    return quantity<angle::radian_base_unit::unit_type,Y>::from_value(atan(val.value()));}/// atan2 of @c value_type returning angle in radianstemplate<class Y, class Dimension, class System>BOOST_CONSTEXPRquantity<unit<plane_angle_dimension, homogeneous_system<System> >, Y>atan2(const quantity<unit<Dimension, homogeneous_system<System> >, Y>& y,      const quantity<unit<Dimension, homogeneous_system<System> >, Y>& x){    using std::atan2;    return quantity<unit<plane_angle_dimension, homogeneous_system<System> >, Y>(atan2(y.value(),x.value())*si::radians);}/// atan2 of @c value_type returning angle in radianstemplate<class Y, class Dimension, class System>BOOST_CONSTEXPRquantity<angle::radian_base_unit::unit_type,Y>atan2(const quantity<unit<Dimension, heterogeneous_system<System> >, Y>& y,      const quantity<unit<Dimension, heterogeneous_system<System> >, Y>& x){    using std::atan2;    return quantity<angle::radian_base_unit::unit_type,Y>::from_value(atan2(y.value(),x.value()));}} // namespace units} // namespace boost#endif // BOOST_UNITS_CMATH_HPP
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