389 lines
14 KiB
C++
389 lines
14 KiB
C++
/// @ref core
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/// @file glm/detail/type_vec2.hpp
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#pragma once
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#include "type_vec.hpp"
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#if GLM_SWIZZLE == GLM_SWIZZLE_ENABLED
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# if GLM_HAS_UNRESTRICTED_UNIONS
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# include "_swizzle.hpp"
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# else
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# include "_swizzle_func.hpp"
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# endif
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#endif //GLM_SWIZZLE
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#include <cstddef>
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namespace glm
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{
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template <typename T, precision P = defaultp>
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struct tvec2
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{
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// -- Implementation detail --
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typedef T value_type;
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typedef tvec2<T, P> type;
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typedef tvec2<bool, P> bool_type;
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// -- Data --
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# if GLM_HAS_ONLY_XYZW
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T x, y;
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# elif GLM_HAS_ALIGNED_TYPE
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# if GLM_COMPILER & GLM_COMPILER_GCC
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# pragma GCC diagnostic push
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# pragma GCC diagnostic ignored "-Wpedantic"
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# endif
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# if GLM_COMPILER & GLM_COMPILER_CLANG
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# pragma clang diagnostic push
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# pragma clang diagnostic ignored "-Wgnu-anonymous-struct"
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# pragma clang diagnostic ignored "-Wnested-anon-types"
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# endif
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union
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{
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struct{ T x, y; };
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struct{ T r, g; };
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struct{ T s, t; };
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# if GLM_SWIZZLE == GLM_SWIZZLE_ENABLED
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_GLM_SWIZZLE2_2_MEMBERS(T, P, glm::tvec2, x, y)
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_GLM_SWIZZLE2_2_MEMBERS(T, P, glm::tvec2, r, g)
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_GLM_SWIZZLE2_2_MEMBERS(T, P, glm::tvec2, s, t)
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_GLM_SWIZZLE2_3_MEMBERS(T, P, glm::tvec3, x, y)
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_GLM_SWIZZLE2_3_MEMBERS(T, P, glm::tvec3, r, g)
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_GLM_SWIZZLE2_3_MEMBERS(T, P, glm::tvec3, s, t)
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_GLM_SWIZZLE2_4_MEMBERS(T, P, glm::tvec4, x, y)
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_GLM_SWIZZLE2_4_MEMBERS(T, P, glm::tvec4, r, g)
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_GLM_SWIZZLE2_4_MEMBERS(T, P, glm::tvec4, s, t)
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# endif//GLM_SWIZZLE
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};
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# if GLM_COMPILER & GLM_COMPILER_CLANG
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# pragma clang diagnostic pop
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# endif
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# if GLM_COMPILER & GLM_COMPILER_GCC
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# pragma GCC diagnostic pop
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# endif
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# else
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union {T x, r, s;};
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union {T y, g, t;};
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# if GLM_SWIZZLE == GLM_SWIZZLE_ENABLED
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GLM_SWIZZLE_GEN_VEC_FROM_VEC2(T, P, tvec2, tvec2, tvec3, tvec4)
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# endif//GLM_SWIZZLE
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# endif
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// -- Component accesses --
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/// Return the count of components of the vector
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typedef length_t length_type;
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GLM_FUNC_DECL static length_type length(){return 2;}
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GLM_FUNC_DECL T & operator[](length_type i);
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GLM_FUNC_DECL T const & operator[](length_type i) const;
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// -- Implicit basic constructors --
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GLM_FUNC_DECL GLM_CONSTEXPR_CTOR tvec2() GLM_DEFAULT_CTOR;
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GLM_FUNC_DECL GLM_CONSTEXPR_CTOR tvec2(tvec2<T, P> const& v) GLM_DEFAULT;
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template <precision Q>
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GLM_FUNC_DECL GLM_CONSTEXPR_CTOR tvec2(tvec2<T, Q> const& v);
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// -- Explicit basic constructors --
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GLM_FUNC_DECL GLM_CONSTEXPR_CTOR explicit tvec2(ctor);
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GLM_FUNC_DECL GLM_CONSTEXPR_CTOR explicit tvec2(T scalar);
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GLM_FUNC_DECL GLM_CONSTEXPR_CTOR tvec2(T s1, T s2);
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// -- Conversion constructors --
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/// Explicit converions (From section 5.4.1 Conversion and scalar constructors of GLSL 1.30.08 specification)
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template <typename A, typename B>
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GLM_FUNC_DECL GLM_CONSTEXPR_CTOR tvec2(A x, B y);
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template <typename A, typename B>
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GLM_FUNC_DECL GLM_CONSTEXPR_CTOR tvec2(tvec1<A, P> const & v1, tvec1<B, P> const & v2);
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// -- Conversion vector constructors --
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/// Explicit conversions (From section 5.4.1 Conversion and scalar constructors of GLSL 1.30.08 specification)
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template <typename U, precision Q>
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GLM_FUNC_DECL GLM_CONSTEXPR_CTOR GLM_EXPLICIT tvec2(tvec3<U, Q> const & v);
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/// Explicit conversions (From section 5.4.1 Conversion and scalar constructors of GLSL 1.30.08 specification)
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template <typename U, precision Q>
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GLM_FUNC_DECL GLM_CONSTEXPR_CTOR GLM_EXPLICIT tvec2(tvec4<U, Q> const & v);
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/// Explicit conversions (From section 5.4.1 Conversion and scalar constructors of GLSL 1.30.08 specification)
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template <typename U, precision Q>
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GLM_FUNC_DECL GLM_CONSTEXPR_CTOR GLM_EXPLICIT tvec2(tvec2<U, Q> const & v);
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// -- Swizzle constructors --
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# if GLM_HAS_UNRESTRICTED_UNIONS && (GLM_SWIZZLE == GLM_SWIZZLE_ENABLED)
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template <int E0, int E1>
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GLM_FUNC_DECL tvec2(detail::_swizzle<2, T, P, glm::tvec2, E0, E1,-1,-2> const& that)
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{
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*this = that();
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}
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# endif// GLM_HAS_UNRESTRICTED_UNIONS && (GLM_SWIZZLE == GLM_SWIZZLE_ENABLED)
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// -- Unary arithmetic operators --
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GLM_FUNC_DECL tvec2<T, P>& operator=(tvec2<T, P> const & v) GLM_DEFAULT;
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template <typename U>
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GLM_FUNC_DECL tvec2<T, P>& operator=(tvec2<U, P> const & v);
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template <typename U>
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GLM_FUNC_DECL tvec2<T, P>& operator+=(U scalar);
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template <typename U>
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GLM_FUNC_DECL tvec2<T, P>& operator+=(tvec1<U, P> const & v);
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template <typename U>
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GLM_FUNC_DECL tvec2<T, P>& operator+=(tvec2<U, P> const & v);
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template <typename U>
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GLM_FUNC_DECL tvec2<T, P>& operator-=(U scalar);
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template <typename U>
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GLM_FUNC_DECL tvec2<T, P>& operator-=(tvec1<U, P> const & v);
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template <typename U>
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GLM_FUNC_DECL tvec2<T, P>& operator-=(tvec2<U, P> const & v);
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template <typename U>
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GLM_FUNC_DECL tvec2<T, P>& operator*=(U scalar);
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template <typename U>
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GLM_FUNC_DECL tvec2<T, P>& operator*=(tvec1<U, P> const & v);
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template <typename U>
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GLM_FUNC_DECL tvec2<T, P>& operator*=(tvec2<U, P> const & v);
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template <typename U>
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GLM_FUNC_DECL tvec2<T, P>& operator/=(U scalar);
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template <typename U>
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GLM_FUNC_DECL tvec2<T, P>& operator/=(tvec1<U, P> const & v);
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template <typename U>
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GLM_FUNC_DECL tvec2<T, P>& operator/=(tvec2<U, P> const & v);
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// -- Increment and decrement operators --
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GLM_FUNC_DECL tvec2<T, P> & operator++();
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GLM_FUNC_DECL tvec2<T, P> & operator--();
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GLM_FUNC_DECL tvec2<T, P> operator++(int);
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GLM_FUNC_DECL tvec2<T, P> operator--(int);
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// -- Unary bit operators --
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template <typename U>
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GLM_FUNC_DECL tvec2<T, P> & operator%=(U scalar);
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template <typename U>
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GLM_FUNC_DECL tvec2<T, P> & operator%=(tvec1<U, P> const & v);
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template <typename U>
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GLM_FUNC_DECL tvec2<T, P> & operator%=(tvec2<U, P> const & v);
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template <typename U>
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GLM_FUNC_DECL tvec2<T, P> & operator&=(U scalar);
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template <typename U>
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GLM_FUNC_DECL tvec2<T, P> & operator&=(tvec1<U, P> const & v);
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template <typename U>
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GLM_FUNC_DECL tvec2<T, P> & operator&=(tvec2<U, P> const & v);
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template <typename U>
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GLM_FUNC_DECL tvec2<T, P> & operator|=(U scalar);
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template <typename U>
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GLM_FUNC_DECL tvec2<T, P> & operator|=(tvec1<U, P> const & v);
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template <typename U>
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GLM_FUNC_DECL tvec2<T, P> & operator|=(tvec2<U, P> const & v);
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template <typename U>
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GLM_FUNC_DECL tvec2<T, P> & operator^=(U scalar);
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template <typename U>
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GLM_FUNC_DECL tvec2<T, P> & operator^=(tvec1<U, P> const & v);
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template <typename U>
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GLM_FUNC_DECL tvec2<T, P> & operator^=(tvec2<U, P> const & v);
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template <typename U>
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GLM_FUNC_DECL tvec2<T, P> & operator<<=(U scalar);
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template <typename U>
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GLM_FUNC_DECL tvec2<T, P> & operator<<=(tvec1<U, P> const & v);
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template <typename U>
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GLM_FUNC_DECL tvec2<T, P> & operator<<=(tvec2<U, P> const & v);
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template <typename U>
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GLM_FUNC_DECL tvec2<T, P> & operator>>=(U scalar);
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template <typename U>
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GLM_FUNC_DECL tvec2<T, P> & operator>>=(tvec1<U, P> const & v);
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template <typename U>
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GLM_FUNC_DECL tvec2<T, P> & operator>>=(tvec2<U, P> const & v);
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};
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// -- Unary operators --
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator+(tvec2<T, P> const & v);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator-(tvec2<T, P> const & v);
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// -- Binary operators --
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator+(tvec2<T, P> const & v, T scalar);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator+(tvec2<T, P> const & v1, tvec1<T, P> const & v2);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator+(T scalar, tvec2<T, P> const & v);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator+(tvec1<T, P> const & v1, tvec2<T, P> const & v2);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator+(tvec2<T, P> const & v1, tvec2<T, P> const & v2);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator-(tvec2<T, P> const & v, T scalar);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator-(tvec2<T, P> const & v1, tvec1<T, P> const & v2);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator-(T scalar, tvec2<T, P> const & v);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator-(tvec1<T, P> const & v1, tvec2<T, P> const & v2);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator-(tvec2<T, P> const & v1, tvec2<T, P> const & v2);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator*(tvec2<T, P> const & v, T scalar);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator*(tvec2<T, P> const & v1, tvec1<T, P> const & v2);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator*(T scalar, tvec2<T, P> const & v);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator*(tvec1<T, P> const & v1, tvec2<T, P> const & v2);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator*(tvec2<T, P> const & v1, tvec2<T, P> const & v2);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator/(tvec2<T, P> const & v, T scalar);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator/(tvec2<T, P> const & v1, tvec1<T, P> const & v2);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator/(T scalar, tvec2<T, P> const & v);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator/(tvec1<T, P> const & v1, tvec2<T, P> const & v2);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator/(tvec2<T, P> const & v1, tvec2<T, P> const & v2);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator%(tvec2<T, P> const & v, T scalar);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator%(tvec2<T, P> const & v1, tvec1<T, P> const & v2);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator%(T scalar, tvec2<T, P> const & v);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator%(tvec1<T, P> const & v1, tvec2<T, P> const & v2);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator%(tvec2<T, P> const & v1, tvec2<T, P> const & v2);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator&(tvec2<T, P> const & v, T scalar);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator&(tvec2<T, P> const & v1, tvec1<T, P> const & v2);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator&(T scalar, tvec2<T, P> const & v);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator&(tvec1<T, P> const & v1, tvec2<T, P> const & v2);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator&(tvec2<T, P> const & v1, tvec2<T, P> const & v2);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator|(tvec2<T, P> const & v, T scalar);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator|(tvec2<T, P> const & v1, tvec1<T, P> const & v2);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator|(T scalar, tvec2<T, P> const & v);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator|(tvec1<T, P> const & v1, tvec2<T, P> const & v2);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator|(tvec2<T, P> const & v1, tvec2<T, P> const & v2);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator^(tvec2<T, P> const & v, T scalar);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator^(tvec2<T, P> const & v1, tvec1<T, P> const & v2);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator^(T scalar, tvec2<T, P> const & v);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator^(tvec1<T, P> const & v1, tvec2<T, P> const & v2);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator^(tvec2<T, P> const & v1, tvec2<T, P> const & v2);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator<<(tvec2<T, P> const & v, T scalar);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator<<(tvec2<T, P> const & v1, tvec1<T, P> const & v2);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator<<(T scalar, tvec2<T, P> const & v);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator<<(tvec1<T, P> const & v1, tvec2<T, P> const & v2);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator<<(tvec2<T, P> const & v1, tvec2<T, P> const & v2);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator>>(tvec2<T, P> const & v, T scalar);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator>>(tvec2<T, P> const & v1, tvec1<T, P> const & v2);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator>>(T scalar, tvec2<T, P> const & v);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator>>(tvec1<T, P> const & v1, tvec2<T, P> const & v2);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator>>(tvec2<T, P> const & v1, tvec2<T, P> const & v2);
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template <typename T, precision P>
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GLM_FUNC_DECL tvec2<T, P> operator~(tvec2<T, P> const & v);
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// -- Boolean operators --
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template <typename T, precision P>
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GLM_FUNC_DECL bool operator==(tvec2<T, P> const & v1, tvec2<T, P> const & v2);
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template <typename T, precision P>
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GLM_FUNC_DECL bool operator!=(tvec2<T, P> const & v1, tvec2<T, P> const & v2);
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template <precision P>
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GLM_FUNC_DECL tvec2<bool, P> operator&&(tvec2<bool, P> const & v1, tvec2<bool, P> const & v2);
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template <precision P>
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GLM_FUNC_DECL tvec2<bool, P> operator||(tvec2<bool, P> const & v1, tvec2<bool, P> const & v2);
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}//namespace glm
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#ifndef GLM_EXTERNAL_TEMPLATE
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#include "type_vec2.inl"
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#endif//GLM_EXTERNAL_TEMPLATE
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