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159 lines
4.9 KiB
159 lines
4.9 KiB
#define GLM_FORCE_INLINE |
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#include <glm/ext/matrix_float2x2.hpp> |
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#include <glm/ext/matrix_double2x2.hpp> |
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#include <glm/ext/matrix_float3x3.hpp> |
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#include <glm/ext/matrix_double3x3.hpp> |
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#include <glm/ext/matrix_float4x4.hpp> |
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#include <glm/ext/matrix_double4x4.hpp> |
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#include <glm/ext/matrix_transform.hpp> |
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#include <glm/ext/matrix_relational.hpp> |
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#include <glm/ext/vector_float4.hpp> |
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#if GLM_CONFIG_SIMD == GLM_ENABLE |
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#include <glm/gtc/type_aligned.hpp> |
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#include <vector> |
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#include <chrono> |
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#include <cstdio> |
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template <typename matType, typename vecType> |
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static void test_mat_mul_vec(matType const& M, std::vector<vecType> const& I, std::vector<vecType>& O) |
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{ |
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for (std::size_t i = 0, n = I.size(); i < n; ++i) |
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O[i] = M * I[i]; |
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} |
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template <typename matType, typename vecType> |
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static int launch_mat_mul_vec(std::vector<vecType>& O, matType const& Transform, vecType const& Scale, std::size_t Samples) |
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{ |
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typedef typename matType::value_type T; |
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std::vector<vecType> I(Samples); |
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O.resize(Samples); |
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for(std::size_t i = 0; i < Samples; ++i) |
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I[i] = Scale * static_cast<T>(i); |
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std::chrono::high_resolution_clock::time_point t1 = std::chrono::high_resolution_clock::now(); |
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test_mat_mul_vec<matType, vecType>(Transform, I, O); |
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std::chrono::high_resolution_clock::time_point t2 = std::chrono::high_resolution_clock::now(); |
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return static_cast<int>(std::chrono::duration_cast<std::chrono::microseconds>(t2 - t1).count()); |
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} |
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template <typename packedMatType, typename packedVecType, typename alignedMatType, typename alignedVecType> |
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static int comp_mat2_mul_vec2(std::size_t Samples) |
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{ |
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typedef typename packedMatType::value_type T; |
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int Error = 0; |
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packedMatType const Transform(1, 2, 3, 4); |
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packedVecType const Scale(0.01, 0.02); |
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std::vector<packedVecType> SISD; |
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std::printf("- SISD: %d us\n", launch_mat_mul_vec<packedMatType, packedVecType>(SISD, Transform, Scale, Samples)); |
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std::vector<alignedVecType> SIMD; |
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std::printf("- SIMD: %d us\n", launch_mat_mul_vec<alignedMatType, alignedVecType>(SIMD, Transform, Scale, Samples)); |
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for(std::size_t i = 0; i < Samples; ++i) |
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{ |
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packedVecType const A = SISD[i]; |
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packedVecType const B = packedVecType(SIMD[i]); |
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Error += glm::all(glm::equal(A, B, static_cast<T>(0.001))) ? 0 : 1; |
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} |
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return Error; |
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} |
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template <typename packedMatType, typename packedVecType, typename alignedMatType, typename alignedVecType> |
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static int comp_mat3_mul_vec3(std::size_t Samples) |
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{ |
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typedef typename packedMatType::value_type T; |
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int Error = 0; |
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std::vector<packedVecType> SISD; |
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{ |
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packedMatType const Transform(1, 2, 3, 4, 5, 6, 7, 8, 9); |
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packedVecType const Scale(0.01, 0.02, 0.05); |
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std::printf("- SISD: %d us\n", launch_mat_mul_vec<packedMatType, packedVecType>(SISD, Transform, Scale, Samples)); |
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} |
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std::vector<alignedVecType> SIMD; |
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{ |
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alignedMatType const Transform(1, 2, 3, 4, 5, 6, 7, 8, 9); |
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alignedVecType const Scale(0.01, 0.02, 0.05); |
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std::printf("- SIMD: %d us\n", launch_mat_mul_vec<alignedMatType, alignedVecType>(SIMD, Transform, Scale, Samples)); |
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} |
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for(std::size_t i = 0; i < Samples; ++i) |
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{ |
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packedVecType const A = SISD[i]; |
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packedVecType const B = SIMD[i]; |
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Error += glm::all(glm::equal(A, B, static_cast<T>(0.001))) ? 0 : 1; |
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} |
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return Error; |
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} |
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template <typename packedMatType, typename packedVecType, typename alignedMatType, typename alignedVecType> |
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static int comp_mat4_mul_vec4(std::size_t Samples) |
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{ |
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typedef typename packedMatType::value_type T; |
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int Error = 0; |
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packedMatType const Transform(1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16); |
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packedVecType const Scale(0.01, 0.02, 0.03, 0.05); |
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std::vector<packedVecType> SISD; |
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std::printf("- SISD: %d us\n", launch_mat_mul_vec<packedMatType, packedVecType>(SISD, Transform, Scale, Samples)); |
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std::vector<alignedVecType> SIMD; |
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std::printf("- SIMD: %d us\n", launch_mat_mul_vec<alignedMatType, alignedVecType>(SIMD, Transform, Scale, Samples)); |
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for(std::size_t i = 0; i < Samples; ++i) |
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{ |
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packedVecType const A = SISD[i]; |
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packedVecType const B = SIMD[i]; |
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Error += glm::all(glm::equal(A, B, static_cast<T>(0.001))) ? 0 : 1; |
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} |
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return Error; |
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} |
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int main() |
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{ |
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std::size_t const Samples = 1000; |
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int Error = 0; |
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std::printf("mat2 * vec2:\n"); |
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Error += comp_mat2_mul_vec2<glm::mat2, glm::vec2, glm::aligned_mat2, glm::aligned_vec2>(Samples); |
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std::printf("dmat2 * dvec2:\n"); |
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Error += comp_mat2_mul_vec2<glm::dmat2, glm::dvec2, glm::aligned_dmat2, glm::aligned_dvec2>(Samples); |
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std::printf("mat3 * vec3:\n"); |
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Error += comp_mat3_mul_vec3<glm::mat3, glm::vec3, glm::aligned_mat3, glm::aligned_vec3>(Samples); |
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std::printf("dmat3 * dvec3:\n"); |
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Error += comp_mat3_mul_vec3<glm::dmat3, glm::dvec3, glm::aligned_dmat3, glm::aligned_dvec3>(Samples); |
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std::printf("mat4 * vec4:\n"); |
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Error += comp_mat4_mul_vec4<glm::mat4, glm::vec4, glm::aligned_mat4, glm::aligned_vec4>(Samples); |
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std::printf("dmat4 * dvec4:\n"); |
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Error += comp_mat4_mul_vec4<glm::dmat4, glm::dvec4, glm::aligned_dmat4, glm::aligned_dvec4>(Samples); |
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return Error; |
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} |
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#else |
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int main() |
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{ |
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return 0; |
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} |
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#endif
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