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207 lines
7.8 KiB
207 lines
7.8 KiB
#ifndef Magnum_Math_Vector2_h |
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#define Magnum_Math_Vector2_h |
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/* |
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This file is part of Magnum. |
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Copyright © 2010, 2011, 2012, 2013, 2014, 2015, 2016, 2017, 2018, 2019, |
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2020, 2021, 2022 Vladimír Vondruš <mosra@centrum.cz> |
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Permission is hereby granted, free of charge, to any person obtaining a |
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copy of this software and associated documentation files (the "Software"), |
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to deal in the Software without restriction, including without limitation |
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the rights to use, copy, modify, merge, publish, distribute, sublicense, |
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and/or sell copies of the Software, and to permit persons to whom the |
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Software is furnished to do so, subject to the following conditions: |
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The above copyright notice and this permission notice shall be included |
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in all copies or substantial portions of the Software. |
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THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR |
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IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, |
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FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL |
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THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER |
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LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING |
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FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER |
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DEALINGS IN THE SOFTWARE. |
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*/ |
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/** @file |
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* @brief Class @ref Magnum::Math::Vector2, function @ref Magnum::Math::cross() |
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*/ |
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#include "Magnum/Math/Vector.h" |
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namespace Magnum { namespace Math { |
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/** |
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@brief 2D cross product |
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2D version of a cross product, also called a [perp-dot product](https://en.wikipedia.org/wiki/Vector_projection#Scalar_rejection), |
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equivalent to calling @ref cross(const Vector3<T>&, const Vector3<T>&) with Z |
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coordinate set to `0` and extracting only Z coordinate from the result (X and Y |
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coordinates are always zero). Returns `0` either when one of the vectors is |
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zero or they are parallel or antiparallel and `1` when two *normalized* vectors |
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are perpendicular. @f[ |
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\boldsymbol a \times \boldsymbol b = \boldsymbol a_\bot \cdot \boldsymbol b = a_xb_y - a_yb_x |
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@f] |
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Value of a 2D cross product is related to a distance of a point and a line, see |
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@ref Distance::linePoint(const Vector2<T>&, const Vector2<T>&, const Vector2<T>&) |
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for more information. |
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@see @ref Vector2::perpendicular(), |
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@ref dot(const Vector<size, T>&, const Vector<size, T>&) |
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*/ |
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template<class T> inline T cross(const Vector2<T>& a, const Vector2<T>& b) { |
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return a._data[0]*b._data[1] - a._data[1]*b._data[0]; |
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} |
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/** |
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@brief Two-component vector |
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@tparam T Data type |
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See @ref matrix-vector for brief introduction. |
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@see @ref Magnum::Vector2, @ref Magnum::Vector3h, @ref Magnum::Vector2d, |
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@ref Magnum::Vector2ub, @ref Magnum::Vector2b, @ref Magnum::Vector2us, |
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@ref Magnum::Vector2s, @ref Magnum::Vector2ui, @ref Magnum::Vector2i |
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@configurationvalueref{Magnum::Math::Vector2} |
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*/ |
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template<class T> class Vector2: public Vector<2, T> { |
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public: |
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/** |
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* @brief Vector in a direction of X axis (right) |
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* |
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* Usable for translation in given axis, for example: |
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* |
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* @snippet MagnumMath.cpp Vector2-xAxis |
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* |
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* @see @ref yAxis(), @ref xScale(), @ref Matrix3::right() |
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*/ |
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constexpr static Vector2<T> xAxis(T length = T(1)) { return {length, T(0)}; } |
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/** |
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* @brief Vector in a direction of Y axis (up) |
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* |
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* See @ref xAxis() for more information. |
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* @see @ref yScale(), @ref Matrix3::up() |
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*/ |
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constexpr static Vector2<T> yAxis(T length = T(1)) { return {T(0), length}; } |
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/** |
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* @brief Scaling vector in a direction of X axis (width) |
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* |
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* Usable for scaling along given direction, for example: |
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* |
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* @snippet MagnumMath.cpp Vector2-xScale |
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* |
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* @see @ref yScale(), @ref xAxis() |
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*/ |
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constexpr static Vector2<T> xScale(T scale) { return {scale, T(1)}; } |
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/** |
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* @brief Scaling vector in a direction of Y axis (height) |
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* |
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* See @ref xScale() for more information. |
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* @see @ref yAxis() |
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*/ |
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constexpr static Vector2<T> yScale(T scale) { return {T(1), scale}; } |
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/** |
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* @brief Default constructor |
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* |
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* Equivalent to @ref Vector2(ZeroInitT). |
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*/ |
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constexpr /*implicit*/ Vector2() noexcept: Vector<2, T>{ZeroInit} {} |
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/** @copydoc Vector::Vector(ZeroInitT) */ |
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constexpr explicit Vector2(ZeroInitT) noexcept: Vector<2, T>{ZeroInit} {} |
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/** @copydoc Vector::Vector(NoInitT) */ |
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explicit Vector2(Magnum::NoInitT) noexcept: Vector<2, T>{Magnum::NoInit} {} |
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/** @copydoc Vector::Vector(T) */ |
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constexpr explicit Vector2(T value) noexcept: Vector<2, T>(value) {} |
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/** |
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* @brief Constructor |
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* |
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* @f[ |
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* \boldsymbol v = \begin{pmatrix} x \\ y \end{pmatrix} |
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* @f] |
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*/ |
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constexpr /*implicit*/ Vector2(T x, T y) noexcept: Vector<2, T>(x, y) {} |
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/** @copydoc Vector::Vector(const Vector<size, U>&) */ |
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template<class U> constexpr explicit Vector2(const Vector<2, U>& other) noexcept: Vector<2, T>(other) {} |
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/** @brief Construct a vector from external representation */ |
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template<class U, class V = |
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#ifndef CORRADE_MSVC2015_COMPATIBILITY /* Causes ICE */ |
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decltype(Implementation::VectorConverter<2, T, U>::from(std::declval<U>())) |
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#else |
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decltype(Implementation::VectorConverter<2, T, U>()) |
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#endif |
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> |
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constexpr explicit Vector2(const U& other): Vector<2, T>(Implementation::VectorConverter<2, T, U>::from(other)) {} |
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/** @brief Copy constructor */ |
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constexpr /*implicit*/ Vector2(const Vector<2, T>& other) noexcept: Vector<2, T>(other) {} |
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T& x() { return Vector<2, T>::_data[0]; } /**< @brief X component */ |
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constexpr T x() const { return Vector<2, T>::_data[0]; } /**< @overload */ |
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T& y() { return Vector<2, T>::_data[1]; } /**< @brief Y component */ |
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constexpr T y() const { return Vector<2, T>::_data[1]; } /**< @overload */ |
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/** |
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* @brief Perpendicular vector |
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* |
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* Returns vector rotated 90° counterclockwise. Enabled only for signed |
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* types. @f[ |
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* \boldsymbol v_\bot = \begin{pmatrix} -v_y \\ v_x \end{pmatrix} |
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* @f] |
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* @see @ref cross(const Vector2<T>&, const Vector2<T>&), |
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* @ref dot(const Vector<size, T>&, const Vector<size, T>&), |
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* @ref Vector::operator-() const "operator-() const" |
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*/ |
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/* For some reason @ref operator-() const doesn't work since 1.8.17 */ |
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#ifdef DOXYGEN_GENERATING_OUTPUT |
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Vector2<T> |
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#else |
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template<class U = T> typename std::enable_if<std::is_signed<U>::value, Vector2<T>>::type |
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#endif |
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perpendicular() const { return {-y(), x()}; } |
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/** |
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* @brief Aspect ratio |
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* |
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* Returns quotient of the two elements. Enabled only for |
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* floating-point types. @f[ |
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* a = \frac{v_x}{v_y} |
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* @f] |
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*/ |
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#ifdef DOXYGEN_GENERATING_OUTPUT |
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T |
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#else |
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template<class U = T> typename std::enable_if<std::is_floating_point<U>::value, T>::type |
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#endif |
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aspectRatio() const { return x()/y(); } |
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MAGNUM_VECTOR_SUBCLASS_IMPLEMENTATION(2, Vector2) |
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private: |
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template<class U> friend U cross(const Vector2<U>&, const Vector2<U>&); |
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}; |
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#ifndef DOXYGEN_GENERATING_OUTPUT |
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MAGNUM_VECTORn_OPERATOR_IMPLEMENTATION(2, Vector2) |
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#endif |
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namespace Implementation { |
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template<std::size_t, class> struct TypeForSize; |
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template<class T> struct TypeForSize<2, T> { typedef Math::Vector2<typename T::Type> Type; }; |
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template<class T> struct StrictWeakOrdering<Vector2<T>>: StrictWeakOrdering<Vector<2, T>> {}; |
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} |
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}} |
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#endif
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