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95
external/glm-0.9.9-a2/glm/detail/func_matrix_simd.inl
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95
external/glm-0.9.9-a2/glm/detail/func_matrix_simd.inl
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/// @ref core
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/// @file glm/detail/func_matrix_simd.inl
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#if GLM_ARCH & GLM_ARCH_SSE2_BIT
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#include "type_mat4x4.hpp"
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#include "../geometric.hpp"
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#include "../simd/matrix.h"
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#include <cstring>
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namespace glm{
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namespace detail
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{
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template<qualifier Q>
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struct compute_matrixCompMult<4, 4, float, Q, true>
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{
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GLM_STATIC_ASSERT(detail::is_aligned<Q>::value, "Specialization requires aligned");
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GLM_FUNC_QUALIFIER static mat<4, 4, float, Q> call(mat<4, 4, float, Q> const& x, mat<4, 4, float, Q> const& y)
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{
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mat<4, 4, float, Q> Result;
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glm_mat4_matrixCompMult(
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*static_cast<glm_vec4 const (*)[4]>(&x[0].data),
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*static_cast<glm_vec4 const (*)[4]>(&y[0].data),
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*static_cast<glm_vec4(*)[4]>(&Result[0].data));
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return Result;
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}
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};
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template<qualifier Q>
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struct compute_transpose<4, 4, float, Q, true>
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{
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GLM_FUNC_QUALIFIER static mat<4, 4, float, Q> call(mat<4, 4, float, Q> const& m)
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{
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mat<4, 4, float, Q> Result;
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glm_mat4_transpose(
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*static_cast<glm_vec4 const (*)[4]>(&m[0].data),
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*static_cast<glm_vec4(*)[4]>(&Result[0].data));
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return Result;
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}
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};
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template<qualifier Q>
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struct compute_determinant<4, 4, float, Q, true>
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{
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GLM_FUNC_QUALIFIER static float call(mat<4, 4, float, Q> const& m)
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{
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return _mm_cvtss_f32(glm_mat4_determinant(*reinterpret_cast<__m128 const(*)[4]>(&m[0].data)));
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}
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};
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template<qualifier Q>
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struct compute_inverse<4, 4, float, Q, true>
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{
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GLM_FUNC_QUALIFIER static mat<4, 4, float, Q> call(mat<4, 4, float, Q> const& m)
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{
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mat<4, 4, float, Q> Result;
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glm_mat4_inverse(*reinterpret_cast<__m128 const(*)[4]>(&m[0].data), *reinterpret_cast<__m128(*)[4]>(&Result[0].data));
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return Result;
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}
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};
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}//namespace detail
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template<>
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GLM_FUNC_QUALIFIER mat<4, 4, float, aligned_lowp> outerProduct<4, 4, float, aligned_lowp>(vec<4, float, aligned_lowp> const& c, vec<4, float, aligned_lowp> const& r)
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{
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__m128 NativeResult[4];
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glm_mat4_outerProduct(c.data, r.data, NativeResult);
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mat<4, 4, float, aligned_lowp> Result;
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std::memcpy(&Result[0], &NativeResult[0], sizeof(Result));
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return Result;
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}
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template<>
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GLM_FUNC_QUALIFIER mat<4, 4, float, aligned_mediump> outerProduct<4, 4, float, aligned_mediump>(vec<4, float, aligned_mediump> const& c, vec<4, float, aligned_mediump> const& r)
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{
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__m128 NativeResult[4];
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glm_mat4_outerProduct(c.data, r.data, NativeResult);
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mat<4, 4, float, aligned_mediump> Result;
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std::memcpy(&Result[0], &NativeResult[0], sizeof(Result));
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return Result;
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}
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template<>
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GLM_FUNC_QUALIFIER mat<4, 4, float, aligned_highp> outerProduct<4, 4, float, aligned_highp>(vec<4, float, aligned_highp> const& c, vec<4, float, aligned_highp> const& r)
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{
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__m128 NativeResult[4];
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glm_mat4_outerProduct(c.data, r.data, NativeResult);
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mat<4, 4, float, aligned_highp> Result;
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std::memcpy(&Result[0], &NativeResult[0], sizeof(Result));
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return Result;
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}
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}//namespace glm
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#endif
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