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185 lines
5.0 KiB
185 lines
5.0 KiB
#include <glm/gtc/constants.hpp> |
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#include <glm/ext/scalar_relational.hpp> |
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#include <glm/ext/vector_relational.hpp> |
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#include <glm/ext/vector_float1.hpp> |
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#include <glm/ext/vector_float2.hpp> |
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#include <glm/ext/vector_float3.hpp> |
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#include <glm/ext/vector_float4.hpp> |
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#include <glm/common.hpp> |
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#include <glm/exponential.hpp> |
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static int test_pow() |
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{ |
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int Error(0); |
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float A = glm::pow(2.f, 2.f); |
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Error += glm::equal(A, 4.f, 0.01f) ? 0 : 1; |
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glm::vec1 B = glm::pow(glm::vec1(2.f), glm::vec1(2.f)); |
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Error += glm::all(glm::equal(B, glm::vec1(4.f), 0.01f)) ? 0 : 1; |
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glm::vec2 C = glm::pow(glm::vec2(2.f), glm::vec2(2.f)); |
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Error += glm::all(glm::equal(C, glm::vec2(4.f), 0.01f)) ? 0 : 1; |
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glm::vec3 D = glm::pow(glm::vec3(2.f), glm::vec3(2.f)); |
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Error += glm::all(glm::equal(D, glm::vec3(4.f), 0.01f)) ? 0 : 1; |
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glm::vec4 E = glm::pow(glm::vec4(2.f), glm::vec4(2.f)); |
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Error += glm::all(glm::equal(E, glm::vec4(4.f), 0.01f)) ? 0 : 1; |
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return Error; |
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} |
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static int test_sqrt() |
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{ |
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int Error = 0; |
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float A = glm::sqrt(4.f); |
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Error += glm::equal(A, 2.f, 0.01f) ? 0 : 1; |
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glm::vec1 B = glm::sqrt(glm::vec1(4.f)); |
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Error += glm::all(glm::equal(B, glm::vec1(2.f), 0.01f)) ? 0 : 1; |
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glm::vec2 C = glm::sqrt(glm::vec2(4.f)); |
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Error += glm::all(glm::equal(C, glm::vec2(2.f), 0.01f)) ? 0 : 1; |
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glm::vec3 D = glm::sqrt(glm::vec3(4.f)); |
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Error += glm::all(glm::equal(D, glm::vec3(2.f), 0.01f)) ? 0 : 1; |
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glm::vec4 E = glm::sqrt(glm::vec4(4.f)); |
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Error += glm::all(glm::equal(E, glm::vec4(2.f), 0.01f)) ? 0 : 1; |
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return Error; |
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} |
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static int test_exp() |
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{ |
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int Error = 0; |
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float A = glm::exp(1.f); |
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Error += glm::equal(A, glm::e<float>(), 0.01f) ? 0 : 1; |
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glm::vec1 B = glm::exp(glm::vec1(1.f)); |
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Error += glm::all(glm::equal(B, glm::vec1(glm::e<float>()), 0.01f)) ? 0 : 1; |
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glm::vec2 C = glm::exp(glm::vec2(1.f)); |
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Error += glm::all(glm::equal(C, glm::vec2(glm::e<float>()), 0.01f)) ? 0 : 1; |
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glm::vec3 D = glm::exp(glm::vec3(1.f)); |
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Error += glm::all(glm::equal(D, glm::vec3(glm::e<float>()), 0.01f)) ? 0 : 1; |
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glm::vec4 E = glm::exp(glm::vec4(1.f)); |
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Error += glm::all(glm::equal(E, glm::vec4(glm::e<float>()), 0.01f)) ? 0 : 1; |
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return Error; |
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} |
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static int test_log() |
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{ |
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int Error = 0; |
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float const A = glm::log(glm::e<float>()); |
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Error += glm::equal(A, 1.f, 0.01f) ? 0 : 1; |
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glm::vec1 const B = glm::log(glm::vec1(glm::e<float>())); |
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Error += glm::all(glm::equal(B, glm::vec1(1.f), 0.01f)) ? 0 : 1; |
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glm::vec2 const C = glm::log(glm::vec2(glm::e<float>())); |
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Error += glm::all(glm::equal(C, glm::vec2(1.f), 0.01f)) ? 0 : 1; |
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glm::vec3 const D = glm::log(glm::vec3(glm::e<float>())); |
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Error += glm::all(glm::equal(D, glm::vec3(1.f), 0.01f)) ? 0 : 1; |
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glm::vec4 const E = glm::log(glm::vec4(glm::e<float>())); |
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Error += glm::all(glm::equal(E, glm::vec4(1.f), 0.01f)) ? 0 : 1; |
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return Error; |
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} |
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static int test_exp2() |
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{ |
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int Error = 0; |
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float A = glm::exp2(4.f); |
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Error += glm::equal(A, 16.f, 0.01f) ? 0 : 1; |
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glm::vec1 B = glm::exp2(glm::vec1(4.f)); |
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Error += glm::all(glm::equal(B, glm::vec1(16.f), 0.01f)) ? 0 : 1; |
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glm::vec2 C = glm::exp2(glm::vec2(4.f, 3.f)); |
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Error += glm::all(glm::equal(C, glm::vec2(16.f, 8.f), 0.01f)) ? 0 : 1; |
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glm::vec3 D = glm::exp2(glm::vec3(4.f, 3.f, 2.f)); |
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Error += glm::all(glm::equal(D, glm::vec3(16.f, 8.f, 4.f), 0.01f)) ? 0 : 1; |
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glm::vec4 E = glm::exp2(glm::vec4(4.f, 3.f, 2.f, 1.f)); |
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Error += glm::all(glm::equal(E, glm::vec4(16.f, 8.f, 4.f, 2.f), 0.01f)) ? 0 : 1; |
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# if GLM_HAS_CXX11_STL |
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//large exponent |
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float F = glm::exp2(23.f); |
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Error += glm::equal(F, 8388608.f, 0.01f) ? 0 : 1; |
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# endif |
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return Error; |
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} |
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static int test_log2() |
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{ |
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int Error = 0; |
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float A = glm::log2(16.f); |
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Error += glm::equal(A, 4.f, 0.01f) ? 0 : 1; |
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glm::vec1 B = glm::log2(glm::vec1(16.f)); |
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Error += glm::all(glm::equal(B, glm::vec1(4.f), 0.01f)) ? 0 : 1; |
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glm::vec2 C = glm::log2(glm::vec2(16.f, 8.f)); |
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Error += glm::all(glm::equal(C, glm::vec2(4.f, 3.f), 0.01f)) ? 0 : 1; |
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glm::vec3 D = glm::log2(glm::vec3(16.f, 8.f, 4.f)); |
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Error += glm::all(glm::equal(D, glm::vec3(4.f, 3.f, 2.f), 0.01f)) ? 0 : 1; |
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glm::vec4 E = glm::log2(glm::vec4(16.f, 8.f, 4.f, 2.f)); |
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Error += glm::all(glm::equal(E, glm::vec4(4.f, 3.f, 2.f, 1.f), 0.01f)) ? 0 : 1; |
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return Error; |
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} |
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static int test_inversesqrt() |
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{ |
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int Error = 0; |
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float A = glm::inversesqrt(16.f) * glm::sqrt(16.f); |
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Error += glm::equal(A, 1.f, 0.01f) ? 0 : 1; |
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glm::vec1 B = glm::inversesqrt(glm::vec1(16.f)) * glm::sqrt(16.f); |
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Error += glm::all(glm::equal(B, glm::vec1(1.f), 0.01f)) ? 0 : 1; |
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glm::vec2 C = glm::inversesqrt(glm::vec2(16.f)) * glm::sqrt(16.f); |
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Error += glm::all(glm::equal(C, glm::vec2(1.f), 0.01f)) ? 0 : 1; |
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glm::vec3 D = glm::inversesqrt(glm::vec3(16.f)) * glm::sqrt(16.f); |
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Error += glm::all(glm::equal(D, glm::vec3(1.f), 0.01f)) ? 0 : 1; |
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glm::vec4 E = glm::inversesqrt(glm::vec4(16.f)) * glm::sqrt(16.f); |
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Error += glm::all(glm::equal(E, glm::vec4(1.f), 0.01f)) ? 0 : 1; |
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return Error; |
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} |
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int main() |
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{ |
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int Error = 0; |
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Error += test_pow(); |
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Error += test_sqrt(); |
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Error += test_exp(); |
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Error += test_log(); |
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Error += test_exp2(); |
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Error += test_log2(); |
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Error += test_inversesqrt(); |
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return Error; |
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} |
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