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182 lines
5.8 KiB
182 lines
5.8 KiB
/// @ref gtx_simd_mat4 |
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/// @file glm/gtx/simd_mat4.hpp |
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/// |
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/// @see core (dependence) |
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/// |
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/// @defgroup gtx_simd_mat4 GLM_GTX_simd_mat4 |
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/// @ingroup gtx |
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/// |
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/// @brief SIMD implementation of mat4 type. |
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/// |
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/// <glm/gtx/simd_mat4.hpp> need to be included to use these functionalities. |
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#pragma once |
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// Dependencies |
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#include "../detail/setup.hpp" |
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#if(GLM_ARCH != GLM_ARCH_PURE) |
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#if(GLM_ARCH & GLM_ARCH_SSE2_BIT) |
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# include "../detail/intrinsic_matrix.hpp" |
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# include "../gtx/simd_vec4.hpp" |
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#else |
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# error "GLM: GLM_GTX_simd_mat4 requires compiler support of SSE2 through intrinsics" |
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#endif |
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#if GLM_MESSAGES == GLM_MESSAGES_ENABLED && !defined(GLM_EXT_INCLUDED) |
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# pragma message("GLM: GLM_GTX_simd_mat4 extension included") |
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# pragma message("GLM: GLM_GTX_simd_mat4 extension is deprecated and will be removed in GLM 0.9.9. Use mat4 instead and use compiler SIMD arguments.") |
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#endif |
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namespace glm{ |
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namespace detail |
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{ |
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/// 4x4 Matrix implemented using SIMD SEE intrinsics. |
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/// \ingroup gtx_simd_mat4 |
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GLM_ALIGNED_STRUCT(16) fmat4x4SIMD |
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{ |
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typedef float value_type; |
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typedef fvec4SIMD col_type; |
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typedef fvec4SIMD row_type; |
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typedef std::size_t size_type; |
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typedef fmat4x4SIMD type; |
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typedef fmat4x4SIMD transpose_type; |
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typedef tmat4x4<float, defaultp> pure_type; |
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typedef tvec4<float, defaultp> pure_row_type; |
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typedef tvec4<float, defaultp> pure_col_type; |
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typedef tmat4x4<float, defaultp> pure_transpose_type; |
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GLM_FUNC_DECL length_t length() const; |
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fvec4SIMD Data[4]; |
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////////////////////////////////////// |
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// Constructors |
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fmat4x4SIMD() GLM_DEFAULT_CTOR; |
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explicit fmat4x4SIMD(float const & s); |
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explicit fmat4x4SIMD( |
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float const & x0, float const & y0, float const & z0, float const & w0, |
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float const & x1, float const & y1, float const & z1, float const & w1, |
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float const & x2, float const & y2, float const & z2, float const & w2, |
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float const & x3, float const & y3, float const & z3, float const & w3); |
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explicit fmat4x4SIMD( |
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fvec4SIMD const & v0, |
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fvec4SIMD const & v1, |
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fvec4SIMD const & v2, |
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fvec4SIMD const & v3); |
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explicit fmat4x4SIMD( |
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mat4x4 const & m); |
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explicit fmat4x4SIMD( |
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__m128 const in[4]); |
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// Conversions |
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//template <typename U> |
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//explicit tmat4x4(tmat4x4<U> const & m); |
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//explicit tmat4x4(tmat2x2<T> const & x); |
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//explicit tmat4x4(tmat3x3<T> const & x); |
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//explicit tmat4x4(tmat2x3<T> const & x); |
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//explicit tmat4x4(tmat3x2<T> const & x); |
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//explicit tmat4x4(tmat2x4<T> const & x); |
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//explicit tmat4x4(tmat4x2<T> const & x); |
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//explicit tmat4x4(tmat3x4<T> const & x); |
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//explicit tmat4x4(tmat4x3<T> const & x); |
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// Accesses |
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fvec4SIMD & operator[](length_t i); |
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fvec4SIMD const & operator[](length_t i) const; |
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// Unary updatable operators |
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fmat4x4SIMD & operator= (fmat4x4SIMD const & m) GLM_DEFAULT; |
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fmat4x4SIMD & operator+= (float const & s); |
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fmat4x4SIMD & operator+= (fmat4x4SIMD const & m); |
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fmat4x4SIMD & operator-= (float const & s); |
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fmat4x4SIMD & operator-= (fmat4x4SIMD const & m); |
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fmat4x4SIMD & operator*= (float const & s); |
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fmat4x4SIMD & operator*= (fmat4x4SIMD const & m); |
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fmat4x4SIMD & operator/= (float const & s); |
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fmat4x4SIMD & operator/= (fmat4x4SIMD const & m); |
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fmat4x4SIMD & operator++ (); |
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fmat4x4SIMD & operator-- (); |
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}; |
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// Binary operators |
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fmat4x4SIMD operator+ (fmat4x4SIMD const & m, float const & s); |
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fmat4x4SIMD operator+ (float const & s, fmat4x4SIMD const & m); |
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fmat4x4SIMD operator+ (fmat4x4SIMD const & m1, fmat4x4SIMD const & m2); |
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fmat4x4SIMD operator- (fmat4x4SIMD const & m, float const & s); |
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fmat4x4SIMD operator- (float const & s, fmat4x4SIMD const & m); |
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fmat4x4SIMD operator- (fmat4x4SIMD const & m1, fmat4x4SIMD const & m2); |
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fmat4x4SIMD operator* (fmat4x4SIMD const & m, float const & s); |
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fmat4x4SIMD operator* (float const & s, fmat4x4SIMD const & m); |
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fvec4SIMD operator* (fmat4x4SIMD const & m, fvec4SIMD const & v); |
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fvec4SIMD operator* (fvec4SIMD const & v, fmat4x4SIMD const & m); |
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fmat4x4SIMD operator* (fmat4x4SIMD const & m1, fmat4x4SIMD const & m2); |
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fmat4x4SIMD operator/ (fmat4x4SIMD const & m, float const & s); |
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fmat4x4SIMD operator/ (float const & s, fmat4x4SIMD const & m); |
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fvec4SIMD operator/ (fmat4x4SIMD const & m, fvec4SIMD const & v); |
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fvec4SIMD operator/ (fvec4SIMD const & v, fmat4x4SIMD const & m); |
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fmat4x4SIMD operator/ (fmat4x4SIMD const & m1, fmat4x4SIMD const & m2); |
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// Unary constant operators |
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fmat4x4SIMD const operator- (fmat4x4SIMD const & m); |
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fmat4x4SIMD const operator-- (fmat4x4SIMD const & m, int); |
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fmat4x4SIMD const operator++ (fmat4x4SIMD const & m, int); |
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}//namespace detail |
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typedef detail::fmat4x4SIMD simdMat4; |
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/// @addtogroup gtx_simd_mat4 |
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/// @{ |
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//! Convert a simdMat4 to a mat4. |
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//! (From GLM_GTX_simd_mat4 extension) |
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mat4 mat4_cast( |
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detail::fmat4x4SIMD const & x); |
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//! Multiply matrix x by matrix y component-wise, i.e., |
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//! result[i][j] is the scalar product of x[i][j] and y[i][j]. |
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//! (From GLM_GTX_simd_mat4 extension). |
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detail::fmat4x4SIMD matrixCompMult( |
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detail::fmat4x4SIMD const & x, |
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detail::fmat4x4SIMD const & y); |
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//! Treats the first parameter c as a column vector |
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//! and the second parameter r as a row vector |
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//! and does a linear algebraic matrix multiply c * r. |
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//! (From GLM_GTX_simd_mat4 extension). |
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detail::fmat4x4SIMD outerProduct( |
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detail::fvec4SIMD const & c, |
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detail::fvec4SIMD const & r); |
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//! Returns the transposed matrix of x |
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//! (From GLM_GTX_simd_mat4 extension). |
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detail::fmat4x4SIMD transpose( |
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detail::fmat4x4SIMD const & x); |
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//! Return the determinant of a mat4 matrix. |
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//! (From GLM_GTX_simd_mat4 extension). |
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float determinant( |
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detail::fmat4x4SIMD const & m); |
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//! Return the inverse of a mat4 matrix. |
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//! (From GLM_GTX_simd_mat4 extension). |
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detail::fmat4x4SIMD inverse( |
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detail::fmat4x4SIMD const & m); |
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/// @} |
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}// namespace glm |
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#include "simd_mat4.inl" |
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#endif//(GLM_ARCH != GLM_ARCH_PURE)
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