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#ifndef Magnum_Math_Vector2_h
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#define Magnum_Math_Vector2_h
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/*
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Copyright © 2010, 2011, 2012 Vladimír Vondruš <mosra@centrum.cz>
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This file is part of Magnum.
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Magnum is free software: you can redistribute it and/or modify
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it under the terms of the GNU Lesser General Public License version 2
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only, as published by the Free Software Foundation.
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Magnum is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU Lesser General Public License version 2 for more details.
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*/
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/** @file
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* @brief Class Magnum::Math::Vector2
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*/
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#include "Vector.h"
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namespace Magnum { namespace Math {
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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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@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 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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* @code
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* Matrix3::translation(Vector2::xAxis(5.0f)); // same as Matrix3::translation({5.0f, 0.0f});
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* @endcode
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* @see yAxis(), xScale(), Matrix3::right()
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*/
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inline constexpr static Vector2<T> xAxis(T length = T(1)) { return Vector2<T>(length, T()); }
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/**
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* @brief %Vector in direction of Y axis (up)
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*
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* See xAxis() for more information.
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* @see yScale(), Matrix3::up()
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*/
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inline constexpr static Vector2<T> yAxis(T length = T(1)) { return Vector2<T>(T(), length); }
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/**
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* @brief Scaling vector in 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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* @code
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* Matrix3::scaling(Vector2::xScale(-2.0f)); // same as Matrix3::scaling({-2.0f, 1.0f});
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* @endcode
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* @see yScale(), xAxis()
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*/
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inline constexpr static Vector2<T> xScale(T scale) { return Vector2<T>(scale, T(1)); }
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/**
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* @brief Scaling vector in direction of Y axis (height)
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*
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* See xScale() for more information.
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* @see yAxis()
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*/
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inline constexpr static Vector2<T> yScale(T scale) { return Vector2<T>(T(1), scale); }
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/** @copydoc Vector::Vector() */
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inline constexpr Vector2() {}
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/** @copydoc Vector::Vector(T) */
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inline constexpr explicit Vector2(T value): Vector<2, T>(value, value) {}
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/** @brief Copy constructor */
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inline constexpr Vector2(const RectangularMatrix<1, 2, T>& other): Vector<2, T>(other) {}
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/**
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* @brief Constructor
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* @param x X component
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* @param y Y component
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*/
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inline constexpr Vector2(T x, T y): Vector<2, T>(x, y) {}
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inline T& x() { return (*this)[0]; } /**< @brief X component */
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inline constexpr T x() const { return (*this)[0]; } /**< @overload */
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inline T& y() { return (*this)[1]; } /**< @brief Y component */
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inline constexpr T y() const { return (*this)[1]; } /**< @overload */
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MAGNUM_VECTOR_SUBCLASS_IMPLEMENTATION(Vector2, 2)
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MAGNUM_RECTANGULARMATRIX_SUBCLASS_OPERATOR_IMPLEMENTATION(1, 2, Vector2<T>)
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};
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MAGNUM_VECTOR_SUBCLASS_OPERATOR_IMPLEMENTATION(Vector2, 2)
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/** @debugoperator{Magnum::Math::Vector2} */
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template<class T> inline Corrade::Utility::Debug operator<<(Corrade::Utility::Debug debug, const Vector2<T>& value) {
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return debug << static_cast<const Vector<2, T>&>(value);
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}
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}}
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namespace Corrade { namespace Utility {
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/** @configurationvalue{Magnum::Math::Vector2} */
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template<class T> struct ConfigurationValue<Magnum::Math::Vector2<T>>: public ConfigurationValue<Magnum::Math::Vector<2, T>> {};
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}}
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#endif
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