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Fixed epsilonEqual build
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1e7d12b91b
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45a716b893
@ -30,41 +30,29 @@ namespace glm
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/// True if this expression is satisfied.
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///
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/// @see gtc_epsilon
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template<length_t L, typename T, precision P, template<length_t, typename, precision> class vecType>
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GLM_FUNC_DECL vecType<L, bool, P> epsilonEqual(
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vecType<L, T, P> const& x,
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vecType<L, T, P> const& y,
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T const & epsilon);
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template<length_t L, typename T, precision P>
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GLM_FUNC_DECL vec<L, bool, P> epsilonEqual(vec<L, T, P> const& x, vec<L, T, P> const& y, T const & epsilon);
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/// Returns the component-wise comparison of |x - y| < epsilon.
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/// True if this expression is satisfied.
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///
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/// @see gtc_epsilon
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template<typename genType>
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GLM_FUNC_DECL bool epsilonEqual(
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genType const & x,
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genType const & y,
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genType const & epsilon);
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GLM_FUNC_DECL bool epsilonEqual(genType const & x, genType const & y, genType const & epsilon);
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/// Returns the component-wise comparison of |x - y| < epsilon.
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/// True if this expression is not satisfied.
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///
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/// @see gtc_epsilon
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template<typename genType>
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GLM_FUNC_DECL typename genType::boolType epsilonNotEqual(
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genType const & x,
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genType const & y,
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typename genType::value_type const & epsilon);
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template<length_t L, typename T, precision P>
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GLM_FUNC_DECL vec<L, bool, P> epsilonNotEqual(vec<L, T, P> const& x, vec<L, T, P> const& y, T const & epsilon);
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/// Returns the component-wise comparison of |x - y| >= epsilon.
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/// True if this expression is not satisfied.
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///
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/// @see gtc_epsilon
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template<typename genType>
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GLM_FUNC_DECL bool epsilonNotEqual(
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genType const & x,
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genType const & y,
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genType const & epsilon);
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GLM_FUNC_DECL bool epsilonNotEqual(genType const & x, genType const & y, genType const & epsilon);
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/// @}
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}//namespace glm
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@ -33,91 +33,51 @@ namespace glm
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return abs(x - y) < epsilon;
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}
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template<length_t L, typename T, precision P>
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GLM_FUNC_QUALIFIER vec<L, bool, P> epsilonEqual(vec<L, T, P> const& x, vec<L, T, P> const& y, T const& epsilon)
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{
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return lessThan(abs(x - y), vec<L, T, P>(epsilon));
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}
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template<length_t L, typename T, precision P>
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GLM_FUNC_QUALIFIER vec<L, bool, P> epsilonEqual(vec<L, T, P> const& x, vec<L, T, P> const& y, vec<L, T, P> const& epsilon)
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{
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return lessThan(abs(x - y), vec<L, T, P>(epsilon));
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}
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template<>
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GLM_FUNC_QUALIFIER bool epsilonNotEqual
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(
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float const & x,
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float const & y,
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float const & epsilon
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)
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GLM_FUNC_QUALIFIER bool epsilonNotEqual(float const& x, float const & y, float const& epsilon)
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{
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return abs(x - y) >= epsilon;
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}
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template<>
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GLM_FUNC_QUALIFIER bool epsilonNotEqual
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(
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double const & x,
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double const & y,
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double const & epsilon
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)
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GLM_FUNC_QUALIFIER bool epsilonNotEqual(double const& x, double const& y, double const& epsilon)
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{
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return abs(x - y) >= epsilon;
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}
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template<length_t L, typename T, precision P, template<length_t, typename, precision> class vecType>
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GLM_FUNC_QUALIFIER vecType<L, bool, P> epsilonEqual
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(
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vecType<L, T, P> const& x,
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vecType<L, T, P> const& y,
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T const & epsilon
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)
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template<length_t L, typename T, precision P>
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GLM_FUNC_QUALIFIER vec<L, bool, P> epsilonNotEqual(vec<L, T, P> const& x, vec<L, T, P> const& y, T const& epsilon)
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{
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return lessThan(abs(x - y), vecType<L, T, P>(epsilon));
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return greaterThanEqual(abs(x - y), vec<L, T, P>(epsilon));
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}
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template<length_t L, typename T, precision P, template<length_t, typename, precision> class vecType>
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GLM_FUNC_QUALIFIER vecType<L, bool, P> epsilonEqual
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(
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vecType<L, T, P> const& x,
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vecType<L, T, P> const& y,
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vecType<L, T, P> const& epsilon
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)
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template<length_t L, typename T, precision P>
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GLM_FUNC_QUALIFIER vec<L, bool, P> epsilonNotEqual(vec<L, T, P> const& x, vec<L, T, P> const& y, vec<L, T, P> const& epsilon)
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{
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return lessThan(abs(x - y), vecType<L, T, P>(epsilon));
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}
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template<length_t L, typename T, precision P, template<length_t, typename, precision> class vecType>
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GLM_FUNC_QUALIFIER vecType<L, bool, P> epsilonNotEqual
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(
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vecType<L, T, P> const& x,
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vecType<L, T, P> const& y,
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T const & epsilon
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)
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{
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return greaterThanEqual(abs(x - y), vecType<L, T, P>(epsilon));
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}
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template<length_t L, typename T, precision P, template<length_t, typename, precision> class vecType>
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GLM_FUNC_QUALIFIER vecType<L, bool, P> epsilonNotEqual
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(
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vecType<L, T, P> const& x,
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vecType<L, T, P> const& y,
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vecType<L, T, P> const& epsilon
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)
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{
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return greaterThanEqual(abs(x - y), vecType<L, T, P>(epsilon));
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return greaterThanEqual(abs(x - y), vec<L, T, P>(epsilon));
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}
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template<typename T, precision P>
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GLM_FUNC_QUALIFIER vec<4, bool, P> epsilonEqual
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(
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tquat<T, P> const & x,
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tquat<T, P> const & y,
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T const & epsilon
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)
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GLM_FUNC_QUALIFIER vec<4, bool, P> epsilonEqual(tquat<T, P> const& x, tquat<T, P> const & y, T const& epsilon)
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{
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vec<4, T, P> v(x.x - y.x, x.y - y.y, x.z - y.z, x.w - y.w);
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return lessThan(abs(v), vec<4, T, P>(epsilon));
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}
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template<typename T, precision P>
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GLM_FUNC_QUALIFIER vec<4, bool, P> epsilonNotEqual
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(
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tquat<T, P> const & x,
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tquat<T, P> const & y,
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T const & epsilon
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)
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GLM_FUNC_QUALIFIER vec<4, bool, P> epsilonNotEqual(tquat<T, P> const& x, tquat<T, P> const& y, T const& epsilon)
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{
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vec<4, T, P> v(x.x - y.x, x.y - y.y, x.z - y.z, x.w - y.w);
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return greaterThanEqual(abs(v), vec<4, T, P>(epsilon));
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@ -1,24 +1,35 @@
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#include <glm/common.hpp>
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#include <glm/exponential.hpp>
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#include <glm/gtc/epsilon.hpp>
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#include <glm/gtc/constants.hpp>
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#include <glm/gtc/ulp.hpp>
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#include <glm/gtc/vec1.hpp>
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int test_pow()
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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(10.f, 10.f);
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glm::vec1 B = glm::pow(glm::vec1(10.f), glm::vec1(10.f));
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glm::vec2 C = glm::pow(glm::vec2(10.f), glm::vec2(10.f));
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glm::vec3 D = glm::pow(glm::vec3(10.f), glm::vec3(10.f));
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glm::vec4 E = glm::pow(glm::vec4(10.f), glm::vec4(10.f));
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float A = glm::pow(2.f, 2.f);
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Error += glm::epsilonEqual(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::epsilonEqual(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::epsilonEqual(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::epsilonEqual(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::epsilonEqual(E, glm::vec4(4.f), 0.01f)) ? 0 : 1;
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return Error;
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}
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int test_exp()
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static int test_exp()
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{
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int Error(0);
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int Error = 0;
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float A = glm::exp(10.f);
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glm::vec1 B = glm::exp(glm::vec1(10.f));
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@ -29,22 +40,31 @@ int test_exp()
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return Error;
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}
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int test_log()
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static int test_log()
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{
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int Error(0);
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int Error = 0;
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float A = glm::log(10.f);
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glm::vec1 B = glm::log(glm::vec1(10.f));
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glm::vec2 C = glm::log(glm::vec2(10.f));
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glm::vec3 D = glm::log(glm::vec3(10.f));
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glm::vec4 E = glm::log(glm::vec4(10.f));
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float const A = glm::log(glm::e<float>());
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Error += glm::epsilonEqual(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::epsilonEqual(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::epsilonEqual(B, 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::epsilonEqual(B, 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::epsilonEqual(B, glm::vec4(1.f), 0.01f)) ? 0 : 1;
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return Error;
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}
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int test_exp2()
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static int test_exp2()
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{
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int Error(0);
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int Error = 0;
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float A = glm::exp2(10.f);
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glm::vec1 B = glm::exp2(glm::vec1(10.f));
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@ -55,9 +75,9 @@ int test_exp2()
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return Error;
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}
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int test_log2()
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static int test_log2()
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{
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int Error(0);
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int Error = 0;
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float A = glm::log2(10.f);
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glm::vec1 B = glm::log2(glm::vec1(10.f));
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@ -68,9 +88,9 @@ int test_log2()
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return Error;
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}
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int test_sqrt()
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static int test_sqrt()
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{
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int Error(0);
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int Error = 0;
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# if GLM_ARCH & GLM_ARCH_SSE2_BIT
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for(float f = 0.1f; f < 30.0f; f += 0.1f)
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@ -91,9 +111,9 @@ int test_sqrt()
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return Error;
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}
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int test_inversesqrt()
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static int test_inversesqrt()
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{
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int Error(0);
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int Error = 0;
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glm::uint ulp(0);
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float diff(0.0f);
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@ -114,19 +134,15 @@ int test_inversesqrt()
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int main()
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{
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int Error(0);
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#if !(GLM_COMPILER & GLM_COMPILER_GCC)
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int Error = 0;
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Error += test_pow();
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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_sqrt();
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Error += test_inversesqrt();
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#endif//GLM_COMPILER & GLM_COMPILER_GCC
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//Error += test_sqrt();
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//Error += test_inversesqrt();
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return Error;
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}
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