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#include "_vectorize.hpp" |
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#include <cmath> |
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#include <limits> |
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namespace glm |
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{ |
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// radians |
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template<typename genType> |
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GLM_FUNC_QUALIFIER GLM_CONSTEXPR genType radians(genType degrees) |
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{ |
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GLM_STATIC_ASSERT(std::numeric_limits<genType>::is_iec559, "'radians' only accept floating-point input"); |
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✗ |
return degrees * static_cast<genType>(0.01745329251994329576923690768489); |
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} |
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template<length_t L, typename T, qualifier Q> |
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GLM_FUNC_QUALIFIER GLM_CONSTEXPR vec<L, T, Q> radians(vec<L, T, Q> const& v) |
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{ |
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return detail::functor1<vec, L, T, T, Q>::call(radians, v); |
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} |
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// degrees |
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template<typename genType> |
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GLM_FUNC_QUALIFIER GLM_CONSTEXPR genType degrees(genType radians) |
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{ |
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GLM_STATIC_ASSERT(std::numeric_limits<genType>::is_iec559, "'degrees' only accept floating-point input"); |
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return radians * static_cast<genType>(57.295779513082320876798154814105); |
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} |
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template<length_t L, typename T, qualifier Q> |
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GLM_FUNC_QUALIFIER GLM_CONSTEXPR vec<L, T, Q> degrees(vec<L, T, Q> const& v) |
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{ |
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return detail::functor1<vec, L, T, T, Q>::call(degrees, v); |
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} |
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// sin |
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using ::std::sin; |
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template<length_t L, typename T, qualifier Q> |
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GLM_FUNC_QUALIFIER vec<L, T, Q> sin(vec<L, T, Q> const& v) |
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{ |
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return detail::functor1<vec, L, T, T, Q>::call(sin, v); |
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} |
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// cos |
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using std::cos; |
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template<length_t L, typename T, qualifier Q> |
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GLM_FUNC_QUALIFIER vec<L, T, Q> cos(vec<L, T, Q> const& v) |
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{ |
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return detail::functor1<vec, L, T, T, Q>::call(cos, v); |
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} |
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// tan |
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using std::tan; |
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template<length_t L, typename T, qualifier Q> |
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GLM_FUNC_QUALIFIER vec<L, T, Q> tan(vec<L, T, Q> const& v) |
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{ |
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return detail::functor1<vec, L, T, T, Q>::call(tan, v); |
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} |
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// asin |
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using std::asin; |
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template<length_t L, typename T, qualifier Q> |
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GLM_FUNC_QUALIFIER vec<L, T, Q> asin(vec<L, T, Q> const& v) |
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{ |
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return detail::functor1<vec, L, T, T, Q>::call(asin, v); |
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} |
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// acos |
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using std::acos; |
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template<length_t L, typename T, qualifier Q> |
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GLM_FUNC_QUALIFIER vec<L, T, Q> acos(vec<L, T, Q> const& v) |
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{ |
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return detail::functor1<vec, L, T, T, Q>::call(acos, v); |
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} |
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// atan |
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template<typename genType> |
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GLM_FUNC_QUALIFIER genType atan(genType y, genType x) |
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{ |
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GLM_STATIC_ASSERT(std::numeric_limits<genType>::is_iec559, "'atan' only accept floating-point input"); |
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return ::std::atan2(y, x); |
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} |
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template<length_t L, typename T, qualifier Q> |
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GLM_FUNC_QUALIFIER vec<L, T, Q> atan(vec<L, T, Q> const& a, vec<L, T, Q> const& b) |
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{ |
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return detail::functor2<vec, L, T, Q>::call(::std::atan2, a, b); |
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} |
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using std::atan; |
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template<length_t L, typename T, qualifier Q> |
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GLM_FUNC_QUALIFIER vec<L, T, Q> atan(vec<L, T, Q> const& v) |
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{ |
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return detail::functor1<vec, L, T, T, Q>::call(atan, v); |
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} |
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// sinh |
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using std::sinh; |
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template<length_t L, typename T, qualifier Q> |
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GLM_FUNC_QUALIFIER vec<L, T, Q> sinh(vec<L, T, Q> const& v) |
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{ |
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return detail::functor1<vec, L, T, T, Q>::call(sinh, v); |
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} |
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// cosh |
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using std::cosh; |
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template<length_t L, typename T, qualifier Q> |
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GLM_FUNC_QUALIFIER vec<L, T, Q> cosh(vec<L, T, Q> const& v) |
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{ |
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return detail::functor1<vec, L, T, T, Q>::call(cosh, v); |
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} |
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// tanh |
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using std::tanh; |
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template<length_t L, typename T, qualifier Q> |
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GLM_FUNC_QUALIFIER vec<L, T, Q> tanh(vec<L, T, Q> const& v) |
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{ |
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return detail::functor1<vec, L, T, T, Q>::call(tanh, v); |
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} |
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// asinh |
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# if GLM_HAS_CXX11_STL |
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using std::asinh; |
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# else |
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template<typename genType> |
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GLM_FUNC_QUALIFIER genType asinh(genType x) |
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{ |
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GLM_STATIC_ASSERT(std::numeric_limits<genType>::is_iec559, "'asinh' only accept floating-point input"); |
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return (x < static_cast<genType>(0) ? static_cast<genType>(-1) : (x > static_cast<genType>(0) ? static_cast<genType>(1) : static_cast<genType>(0))) * log(std::abs(x) + sqrt(static_cast<genType>(1) + x * x)); |
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} |
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# endif |
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template<length_t L, typename T, qualifier Q> |
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GLM_FUNC_QUALIFIER vec<L, T, Q> asinh(vec<L, T, Q> const& v) |
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{ |
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return detail::functor1<vec, L, T, T, Q>::call(asinh, v); |
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} |
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// acosh |
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# if GLM_HAS_CXX11_STL |
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using std::acosh; |
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# else |
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template<typename genType> |
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GLM_FUNC_QUALIFIER genType acosh(genType x) |
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{ |
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GLM_STATIC_ASSERT(std::numeric_limits<genType>::is_iec559, "'acosh' only accept floating-point input"); |
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if(x < static_cast<genType>(1)) |
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return static_cast<genType>(0); |
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return log(x + sqrt(x * x - static_cast<genType>(1))); |
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} |
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# endif |
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template<length_t L, typename T, qualifier Q> |
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GLM_FUNC_QUALIFIER vec<L, T, Q> acosh(vec<L, T, Q> const& v) |
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{ |
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return detail::functor1<vec, L, T, T, Q>::call(acosh, v); |
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} |
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// atanh |
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# if GLM_HAS_CXX11_STL |
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using std::atanh; |
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# else |
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template<typename genType> |
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GLM_FUNC_QUALIFIER genType atanh(genType x) |
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{ |
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GLM_STATIC_ASSERT(std::numeric_limits<genType>::is_iec559, "'atanh' only accept floating-point input"); |
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if(std::abs(x) >= static_cast<genType>(1)) |
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return 0; |
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return static_cast<genType>(0.5) * log((static_cast<genType>(1) + x) / (static_cast<genType>(1) - x)); |
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} |
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# endif |
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template<length_t L, typename T, qualifier Q> |
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GLM_FUNC_QUALIFIER vec<L, T, Q> atanh(vec<L, T, Q> const& v) |
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{ |
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return detail::functor1<vec, L, T, T, Q>::call(atanh, v); |
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} |
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}//namespace glm |
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#if GLM_CONFIG_SIMD == GLM_ENABLE |
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# include "func_trigonometric_simd.inl" |
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#endif |
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