| 123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293 | //// Copyright 2005-2007 Adobe Systems Incorporated//// 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_GIL_POINT_HPP#define BOOST_GIL_POINT_HPP#include <boost/gil/utilities.hpp>#include <boost/gil/detail/std_common_type.hpp>#include <boost/config.hpp>#include <cstddef>#include <type_traits>namespace boost { namespace gil {/// \addtogroup PointModel////// Example:/// \code/// point<std::ptrdiff_t> p(3,2);/// assert((p[0] == p.x) && (p[1] == p.y));/// assert(axis_value<0>(p) == 3);/// assert(axis_value<1>(p) == 2);/// \endcode/// \brief 2D point both axes of which have the same dimension type/// \ingroup PointModel/// Models: Point2DConcepttemplate <typename T>class point{public:    using value_type = T;    template<std::size_t D>    struct axis    {        using coord_t = value_type;    };    static constexpr std::size_t num_dimensions = 2;    point() = default;    point(T px, T py) : x(px), y(py) {}    point operator<<(std::ptrdiff_t shift) const    {        return point(x << shift, y << shift);    }    point operator>>(std::ptrdiff_t shift) const    {        return point(x >> shift, y >> shift);    }    point& operator+=(point const& p)    {        x += p.x;        y += p.y;        return *this;    }    point& operator-=(point const& p)    {        x -= p.x;        y -= p.y;        return *this;    }    point& operator/=(double d)    {        if (d < 0 || 0 < d)        {            x = static_cast<T>(x / d);            y = static_cast<T>(y / d);        }        return *this;    }    point& operator*=(double d)    {        x = static_cast<T>(x * d);        y = static_cast<T>(y * d);        return *this;    }    T const& operator[](std::size_t i) const    {        return this->*mem_array[i];    }    T& operator[](std::size_t i)    {        return this->*mem_array[i];    }    T x{0};    T y{0};private:    // this static array of pointers to member variables makes operator[] safe    // and doesn't seem to exhibit any performance penalty.    static T point<T>::* const mem_array[num_dimensions];};/// Alias template for backward compatibility with Boost <=1.68.template <typename T>using point2 = point<T>;/// Common type to represent 2D dimensions or in-memory size of image or view./// @todo TODO: rename to dims_t or dimensions_t for purpose clarity?using point_t = point<std::ptrdiff_t>;template <typename T>T point<T>::* const point<T>::mem_array[point<T>::num_dimensions] ={    &point<T>::x,    &point<T>::y};/// \ingroup PointModeltemplate <typename T>BOOST_FORCEINLINEbool operator==(const point<T>& p1, const point<T>& p2){    return p1.x == p2.x && p1.y == p2.y;}/// \ingroup PointModeltemplate <typename T>BOOST_FORCEINLINEbool operator!=(const point<T>& p1, const point<T>& p2){    return p1.x != p2.x || p1.y != p2.y;}/// \ingroup PointModeltemplate <typename T>BOOST_FORCEINLINEpoint<T> operator+(const point<T>& p1, const point<T>& p2){    return { p1.x + p2.x, p1.y + p2.y };}/// \ingroup PointModeltemplate <typename T>BOOST_FORCEINLINEpoint<T> operator-(const point<T>& p){    return { -p.x, -p.y };}/// \ingroup PointModeltemplate <typename T>BOOST_FORCEINLINEpoint<T> operator-(const point<T>& p1, const point<T>& p2){    return { p1.x - p2.x, p1.y - p2.y };}/// \ingroup PointModeltemplate <typename T, typename D>BOOST_FORCEINLINEauto operator/(point<T> const& p, D d)    -> typename std::enable_if    <        std::is_arithmetic<D>::value,        point<typename detail::std_common_type<T, D>::type>    >::type{    static_assert(std::is_arithmetic<D>::value, "denominator is not arithmetic type");    using result_type = typename detail::std_common_type<T, D>::type;    if (d < 0 || 0 < d)    {        double const x = static_cast<double>(p.x) / static_cast<double>(d);        double const y = static_cast<double>(p.y) / static_cast<double>(d);        return point<result_type>{            static_cast<result_type>(iround(x)),            static_cast<result_type>(iround(y))};    }    else    {        return point<result_type>{0, 0};    }}/// \ingroup PointModeltemplate <typename T, typename M>BOOST_FORCEINLINEauto operator*(point<T> const& p, M m)    -> typename std::enable_if    <        std::is_arithmetic<M>::value,        point<typename detail::std_common_type<T, M>::type>    >::type{    static_assert(std::is_arithmetic<M>::value, "multiplier is not arithmetic type");    using result_type = typename detail::std_common_type<T, M>::type;    return point<result_type>{p.x * m, p.y * m};}/// \ingroup PointModeltemplate <typename T, typename M>BOOST_FORCEINLINEauto operator*(M m, point<T> const& p)    -> typename std::enable_if    <        std::is_arithmetic<M>::value,        point<typename detail::std_common_type<T, M>::type>    >::type{    static_assert(std::is_arithmetic<M>::value, "multiplier is not arithmetic type");    using result_type = typename detail::std_common_type<T, M>::type;    return point<result_type>{p.x * m, p.y * m};}/// \ingroup PointModeltemplate <std::size_t K, typename T>BOOST_FORCEINLINET const& axis_value(point<T> const& p){    static_assert(K < point<T>::num_dimensions, "axis index out of range");    return p[K];}/// \ingroup PointModeltemplate <std::size_t K, typename T>BOOST_FORCEINLINET& axis_value(point<T>& p){    static_assert(K < point<T>::num_dimensions, "axis index out of range");    return p[K];}/// \addtogroup PointAlgorithm////// Example:/// \code/// assert(iround(point<double>(3.1, 3.9)) == point<std::ptrdiff_t>(3,4));/// \endcode/// \ingroup PointAlgorithmtemplate <typename T>inline point<std::ptrdiff_t> iround(point<T> const& p){    static_assert(std::is_integral<T>::value, "T is not integer");    return { static_cast<std::ptrdiff_t>(p.x), static_cast<std::ptrdiff_t>(p.y) };}/// \ingroup PointAlgorithminline point<std::ptrdiff_t> iround(point<float> const& p){    return { iround(p.x), iround(p.y) };}/// \ingroup PointAlgorithminline point<std::ptrdiff_t> iround(point<double> const& p){    return { iround(p.x), iround(p.y) };}/// \ingroup PointAlgorithminline point<std::ptrdiff_t> ifloor(point<float> const& p){    return { ifloor(p.x), ifloor(p.y) };}/// \ingroup PointAlgorithminline point<std::ptrdiff_t> ifloor(point<double> const& p){    return { ifloor(p.x), ifloor(p.y) };}/// \ingroup PointAlgorithminline point<std::ptrdiff_t> iceil(point<float> const& p){    return { iceil(p.x), iceil(p.y) };}/// \ingroup PointAlgorithminline point<std::ptrdiff_t> iceil(point<double> const& p){    return { iceil(p.x), iceil(p.y) };}}} // namespace boost::gil#endif
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