@ -278,35 +278,39 @@ namespace detail 
			
		
	
		
			
				
						{  
			
		
	
		
			
				
							GLM_STATIC_ASSERT(std::numeric_limits<genType>::is_iec559, "'fract' only accept floating-point inputs");  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
							return x - floor(x) ;  
			
		
	
		
			
				
							return tvec1<genType>(x).x ;  
			
		
	
		
			
				
						}  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
						template <typename T, precision P, template <typename, precision> class vecType>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER vecType<T, P> fract(vecType<T, P> const & x)  
			
		
	
		
			
				
						{  
			
		
	
		
			
				
							return detail::functor1<T, T, P, vecType>::call(fract,  x);  
			
		
	
		
			
				
							return x - floor( x);  
			
		
	
		
			
				
						}  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
						// mod  
			
		
	
		
			
				
						template <typename genType>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER genType mod(genType x, genType y)  
			
		
	
		
			
				
						{  
			
		
	
		
			
				
							GLM_STATIC_ASSERT(std::numeric_limits<genType>::is_iec559, "'mod' only accept floating-point inputs");  
			
		
	
		
			
				
							return tvec1<genType>(x, y).x;  
			
		
	
		
			
				
						}  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
						template <typename T, precision P, template <typename, precision> class vecType>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER vecType<T, P> mod(vecType<T, P> const & x, T y)  
			
		
	
		
			
				
						{  
			
		
	
		
			
				
							GLM_STATIC_ASSERT(std::numeric_limits<T>::is_iec559, "'mod' only accept floating-point inputs");  
			
		
	
		
			
				
							return x - y * floor(x / y);  
			
		
	
		
			
				
						}  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
						template <typename T, precision P, template <typename, precision> class vecType>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER vecType<T, P> mod(vecType<T, P> const & a, vecType<T, P> const & b )  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER vecType<T, P> mod(vecType<T, P> const & x, vecType<T, P> const & y )  
			
		
	
		
			
				
						{  
			
		
	
		
			
				
							return detail::functor2<T, P, vecType>::call(mod, a, b);  
			
		
	
		
			
				
							GLM_STATIC_ASSERT(std::numeric_limits<T>::is_iec559, "'mod' only accept floating-point inputs");  
			
		
	
		
			
				
							return x - y * floor(x / y);  
			
		
	
		
			
				
						}  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
						VECTORIZE_VEC_SCA(mod)  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
						// modf  
			
		
	
		
			
				
						template <typename genType>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER genType modf(genType const &  x, genType & i)  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER genType modf(genType x, genType & i)  
			
		
	
		
			
				
						{  
			
		
	
		
			
				
							GLM_STATIC_ASSERT(std::numeric_limits<genType>::is_iec559, "'modf' only accept floating-point inputs");  
			
		
	
		
			
				
					
 
			
		
	
	
		
			
				
					
						
							
								 
						
						
							
								 
						
						
					 
				
				@ -364,14 +368,18 @@ namespace detail 
			
		
	
		
			
				
							return x < y ? x : y;  
			
		
	
		
			
				
						}  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
						template <typename T, precision P, template <typename, precision> class vecType>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER vecType<T, P> min(vecType<T, P> const & a, T b)  
			
		
	
		
			
				
						{  
			
		
	
		
			
				
							return detail::functor2_vec_sca<T, P, vecType>::call(min, a, b);  
			
		
	
		
			
				
						}  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
						template <typename T, precision P, template <typename, precision> class vecType>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER vecType<T, P> min(vecType<T, P> const & a, vecType<T, P> const & b)  
			
		
	
		
			
				
						{  
			
		
	
		
			
				
							return detail::functor2<T, P, vecType>::call(min, a, b);  
			
		
	
		
			
				
						}  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
						VECTORIZE_VEC_SCA(min)  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
						// max  
			
		
	
		
			
				
						template <typename genType>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER genType max(genType x, genType y)  
			
		
	
	
		
			
				
					
						
						
						
							
								 
						
					 
				
				@ -381,125 +389,85 @@ namespace detail 
			
		
	
		
			
				
							return x > y ? x : y;  
			
		
	
		
			
				
						}  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
						template <typename T, precision P, template <typename, precision> class vecType>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER vecType<T, P> max(vecType<T, P> const & a, T b)  
			
		
	
		
			
				
						{  
			
		
	
		
			
				
							return detail::functor2_vec_sca<T, P, vecType>::call(max, a, b);  
			
		
	
		
			
				
						}  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
						template <typename T, precision P, template <typename, precision> class vecType>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER vecType<T, P> max(vecType<T, P> const & a, vecType<T, P> const & b)  
			
		
	
		
			
				
						{  
			
		
	
		
			
				
							return detail::functor2<T, P, vecType>::call(max, a, b);  
			
		
	
		
			
				
						}  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
						VECTORIZE_VEC_SCA(max)  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
						// clamp  
			
		
	
		
			
				
						template <typename genType>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER genType clamp(genType const &  x, genType const &  minVal, genType const &  maxVal)  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER genType clamp(genType x, genType minVal, genType maxVal)  
			
		
	
		
			
				
						{  
			
		
	
		
			
				
							GLM_STATIC_ASSERT(std::numeric_limits<genType>::is_iec559 || std::numeric_limits<genType>::is_integer, "'clamp' only accept floating-point or integer inputs");  
			
		
	
		
			
				
							  
			
		
	
		
			
				
							return min(maxVal, max(minVal, x));  
			
		
	
		
			
				
						}  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
						template <typename T, precision P>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER tvec2<T, P> clamp(tvec2<T, P> const & x, T const & minVal, T const & maxVal)  
			
		
	
		
			
				
						{  
			
		
	
		
			
				
							GLM_STATIC_ASSERT(std::numeric_limits<T>::is_iec559 || std::numeric_limits<T>::is_integer, "'clamp' only accept floating-point or integer inputs");  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
							return tvec2<T, P>(  
			
		
	
		
			
				
								clamp(x.x, minVal, maxVal),  
			
		
	
		
			
				
								clamp(x.y, minVal, maxVal));  
			
		
	
		
			
				
							return min(max(x, minVal), maxVal);  
			
		
	
		
			
				
						}  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
						template <typename T, precision P>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER tvec3<T, P> clamp(tvec3<T, P> const & x, T const & minVal, T const &  maxVal)  
			
		
	
		
			
				
						template <typename T, precision P, template <typename, precision> class vecType>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER vecType<T, P> clamp(vecType<T, P> const & x, T minVal, T maxVal)  
			
		
	
		
			
				
						{  
			
		
	
		
			
				
							GLM_STATIC_ASSERT(std::numeric_limits<T>::is_iec559 || std::numeric_limits<T>::is_integer, "'clamp' only accept floating-point or integer inputs");  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
							return tvec3<T, P>(  
			
		
	
		
			
				
								clamp(x.x, minVal, maxVal),  
			
		
	
		
			
				
								clamp(x.y, minVal, maxVal),  
			
		
	
		
			
				
								clamp(x.z, minVal, maxVal));  
			
		
	
		
			
				
							return min(max(x, minVal), maxVal);  
			
		
	
		
			
				
						}  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
						template <typename T, precision P>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER tvec4<T, P> clamp(tvec4<T, P> const & x, T const & minVal, T  const & maxVal)  
			
		
	
		
			
				
						template <typename T, precision P, template <typename, precision> class vecType>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER vecType<T, P> clamp(vecType<T, P> const & x, vecType<T, P> const & minVal, vecType<T, P>  const & maxVal)  
			
		
	
		
			
				
						{  
			
		
	
		
			
				
							GLM_STATIC_ASSERT(std::numeric_limits<T>::is_iec559 || std::numeric_limits<T>::is_integer, "'clamp' only accept floating-point or integer inputs");  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
							return tvec4<T, P>(  
			
		
	
		
			
				
								clamp(x.x, minVal, maxVal),  
			
		
	
		
			
				
								clamp(x.y, minVal, maxVal),  
			
		
	
		
			
				
								clamp(x.z, minVal, maxVal),  
			
		
	
		
			
				
								clamp(x.w, minVal, maxVal));  
			
		
	
		
			
				
							return min(max(x, minVal), maxVal);  
			
		
	
		
			
				
						}  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
						template <typename T, precision P>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER tvec2<T, P> clamp(tvec2<T, P> const & x, tvec2<T, P> const & minVal, tvec2<T, P> const & maxVal)  
			
		
	
		
			
				
						{  
			
		
	
		
			
				
							GLM_STATIC_ASSERT(std::numeric_limits<T>::is_iec559 || std::numeric_limits<T>::is_integer, "'clamp' only accept floating-point or integer inputs");  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
							return tvec2<T, P>(  
			
		
	
		
			
				
								clamp(x.x, minVal.x, maxVal.x),  
			
		
	
		
			
				
								clamp(x.y, minVal.y, maxVal.y));  
			
		
	
		
			
				
						}  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
						template <typename T, precision P>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER tvec3<T, P> clamp(tvec3<T, P> const & x, tvec3<T, P> const & minVal, tvec3<T, P> const & maxVal)  
			
		
	
		
			
				
						template <typename genTypeT, typename genTypeU>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER genTypeT mix(genTypeT x, genTypeT y, genTypeU a)  
			
		
	
		
			
				
						{  
			
		
	
		
			
				
							GLM_STATIC_ASSERT(std::numeric_limits<T>::is_iec559 || std::numeric_limits<T>::is_integer, "'clamp' only accept floating-point or integer inputs");  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
							return tvec3<T, P>(  
			
		
	
		
			
				
								clamp(x.x, minVal.x, maxVal.x),  
			
		
	
		
			
				
								clamp(x.y, minVal.y, maxVal.y),  
			
		
	
		
			
				
								clamp(x.z, minVal.z, maxVal.z));  
			
		
	
		
			
				
							return detail::compute_mix<genTypeT, genTypeU>::call(x, y, a);  
			
		
	
		
			
				
						}  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
						template <typename T, precision P>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER tvec4<T, P> clamp(tvec4<T, P> const & x, tvec4<T, P> const & minVal, tvec4<T, P> const & maxVal )  
			
		
	
		
			
				
						template <typename T, typename U, precision P, template <typename, precision> class vecType>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER vecType<T, P> mix(vecType<T, P> const & x, vecType<T, P> const & y, U a)  
			
		
	
		
			
				
						{  
			
		
	
		
			
				
							GLM_STATIC_ASSERT(std::numeric_limits<T>::is_iec559 || std::numeric_limits<T>::is_integer, "'clamp' only accept floating-point or integer inputs");  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
							return tvec4<T, P>(  
			
		
	
		
			
				
								clamp(x.x, minVal.x, maxVal.x),  
			
		
	
		
			
				
								clamp(x.y, minVal.y, maxVal.y),  
			
		
	
		
			
				
								clamp(x.z, minVal.z, maxVal.z),  
			
		
	
		
			
				
								clamp(x.w, minVal.w, maxVal.w));  
			
		
	
		
			
				
							return detail::compute_mix_scalar<T, U, P, vecType>::call(x, y, a);  
			
		
	
		
			
				
						}  
			
		
	
		
			
				
					
  
			
		
	
		
			
				
						  
			
		
	
		
			
				
						template <typename T, typename U, precision P, template <typename, precision> class vecType>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER vecType<T, P> mix(vecType<T, P> const & x, vecType<T, P> const & y, vecType<U, P> const & a)  
			
		
	
		
			
				
						{  
			
		
	
		
			
				
							return detail::compute_mix_vector<T, U, P, vecType>::call(x, y, a);  
			
		
	
		
			
				
						}  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
						template <typename T, typename U, precision P, template <typename, precision> class vecType>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER vecType<T, P> mix(vecType<T, P> const & x, vecType<T, P> const & y, U const & a)  
			
		
	
		
			
				
						{  
			
		
	
		
			
				
							return detail::compute_mix_scalar<T, U, P, vecType>::call(x, y, a);  
			
		
	
		
			
				
						}  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
						template <typename genTypeT, typename genTypeU>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER genTypeT mix(genTypeT const & x, genTypeT const & y, genTypeU const & a)  
			
		
	
		
			
				
						{  
			
		
	
		
			
				
							return detail::compute_mix<genTypeT, genTypeU>::call(x, y, a);  
			
		
	
		
			
				
						}  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
						// step  
			
		
	
		
			
				
						template <typename genType>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER genType step(genType const &  edge, genType const &  x)  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER genType step(genType edge, genType x)  
			
		
	
		
			
				
						{  
			
		
	
		
			
				
							return mix(genType(1), genType(0), glm::lessThan(x, edge));  
			
		
	
		
			
				
							return mix(static_cast<genType>(1), static_cast<genType>(0), glm::lessThan(x, edge));  
			
		
	
		
			
				
						}  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
						template <template <typename, precision> class vecType, typename T, precision P>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER vecType<T, P> step(T const &  edge, vecType<T, P> const & x)  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER vecType<T, P> step(T edge, vecType<T, P> const & x)  
			
		
	
		
			
				
						{  
			
		
	
		
			
				
							GLM_STATIC_ASSERT(std::numeric_limits<T>::is_iec559, "'step' only accept floating-point inputs");  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
							return mix(vecType<T, P>(1), vecType<T, P>(0), glm::lessThan(x, vecType<T, P>(edge)));  
			
		
	
		
			
				
						}  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
						template <template <typename, precision> class vecType, typename T, precision P>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER vecType<T, P> step(vecType<T, P> const & edge, vecType<T, P> const & x)  
			
		
	
		
			
				
						{  
			
		
	
		
			
				
							return mix(vecType<T, P>(1), vecType<T, P>(0), glm::lessThan(x, edge));  
			
		
	
		
			
				
						}  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
						// smoothstep  
			
		
	
		
			
				
						template <typename genType>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER genType smoothstep(genType const & edge0, genType const & edge1, genType const & x)  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER genType smoothstep(genType edge0, genType edge1, genType x)  
			
		
	
		
			
				
						{  
			
		
	
		
			
				
							GLM_STATIC_ASSERT(std::numeric_limits<genType>::is_iec559, "'smoothstep' only accept floating-point inputs");  
			
		
	
		
			
				
					
 
			
		
	
	
		
			
				
					
						
						
						
							
								 
						
					 
				
				@ -507,139 +475,57 @@ namespace detail 
			
		
	
		
			
				
							return tmp * tmp * (genType(3) - genType(2) * tmp);  
			
		
	
		
			
				
						}  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
						template <typename T, precision P>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER tvec2<T, P> smoothstep(T const & edge0, T const & edge1, tvec2<T, P> const & x)  
			
		
	
		
			
				
						{  
			
		
	
		
			
				
							GLM_STATIC_ASSERT(std::numeric_limits<T>::is_iec559, "'smoothstep' only accept floating-point inputs");  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
							return tvec2<T, P>(  
			
		
	
		
			
				
								smoothstep(edge0, edge1, x.x),  
			
		
	
		
			
				
								smoothstep(edge0, edge1, x.y));  
			
		
	
		
			
				
						}  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
						template <typename T, precision P>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER tvec3<T, P> smoothstep(T const & edge0, T const & edge1, tvec3<T, P> const & x)  
			
		
	
		
			
				
						{  
			
		
	
		
			
				
							GLM_STATIC_ASSERT(std::numeric_limits<T>::is_iec559, "'smoothstep' only accept floating-point inputs");  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
							return tvec3<T, P>(  
			
		
	
		
			
				
								smoothstep(edge0, edge1, x.x),  
			
		
	
		
			
				
								smoothstep(edge0, edge1, x.y),  
			
		
	
		
			
				
								smoothstep(edge0, edge1, x.z));  
			
		
	
		
			
				
						}  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
						template <typename T, precision P>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER tvec4<T, P> smoothstep(T const & edge0, T const & edge1, tvec4<T, P> const & x)  
			
		
	
		
			
				
						{  
			
		
	
		
			
				
							GLM_STATIC_ASSERT(std::numeric_limits<T>::is_iec559, "'smoothstep' only accept floating-point inputs");  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
							return tvec4<T, P>(  
			
		
	
		
			
				
								smoothstep(edge0, edge1, x.x),  
			
		
	
		
			
				
								smoothstep(edge0, edge1, x.y),  
			
		
	
		
			
				
								smoothstep(edge0, edge1, x.z),  
			
		
	
		
			
				
								smoothstep(edge0, edge1, x.w));  
			
		
	
		
			
				
						}  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
						template <typename T, precision P>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER tvec2<T, P> smoothstep(tvec2<T, P> const & edge0, tvec2<T, P> const & edge1, tvec2<T, P> const & x)  
			
		
	
		
			
				
						{  
			
		
	
		
			
				
							GLM_STATIC_ASSERT(std::numeric_limits<T>::is_iec559, "'smoothstep' only accept floating-point inputs");  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
							return tvec2<T, P>(  
			
		
	
		
			
				
								smoothstep(edge0.x, edge1.x, x.x),  
			
		
	
		
			
				
								smoothstep(edge0.y, edge1.y, x.y));  
			
		
	
		
			
				
						}  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
						template <typename T, precision P>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER tvec3<T, P> smoothstep(tvec3<T, P> const & edge0, tvec3<T, P> const & edge1, tvec3<T, P> const & x)  
			
		
	
		
			
				
						template <typename T, precision P, template <typename, precision> class vecType>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER vecType<T, P> smoothstep(T edge0, T edge1, vecType<T, P> const & x)  
			
		
	
		
			
				
						{  
			
		
	
		
			
				
							GLM_STATIC_ASSERT(std::numeric_limits<T>::is_iec559, "'smoothstep' only accept floating-point inputs");  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
							return tvec3<T, P>(  
			
		
	
		
			
				
								smoothstep(edge0.x, edge1.x, x.x),  
			
		
	
		
			
				
								smoothstep(edge0.y, edge1.y, x.y),  
			
		
	
		
			
				
								smoothstep(edge0.z, edge1.z, x.z));  
			
		
	
		
			
				
							vecType<T, P> tmp = clamp((x - edge0) / (edge1 - edge0), static_cast<T>(0), static_cast<T>(1));  
			
		
	
		
			
				
							return tmp * tmp * (static_cast<T>(3) - static_cast<T>(2) * tmp);  
			
		
	
		
			
				
						}  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
						template <typename T, precision P>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER tvec4<T, P> smoothstep(tvec4<T, P> const & edge0, tvec4<T, P> const & edge1, tvec4 <T, P> const & x)  
			
		
	
		
			
				
						template <typename T, precision P, template <typename, precision> class vecType>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER vecType<T, P> smoothstep(vecType<T, P> const & edge0, vecType<T, P> const & edge1, vecType<T, P> const & x)  
			
		
	
		
			
				
						{  
			
		
	
		
			
				
							GLM_STATIC_ASSERT(std::numeric_limits<T>::is_iec559, "'smoothstep' only accept floating-point inputs");  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
							return tvec4<T, P>(  
			
		
	
		
			
				
								smoothstep(edge0.x, edge1.x, x.x),  
			
		
	
		
			
				
								smoothstep(edge0.y, edge1.y, x.y),  
			
		
	
		
			
				
								smoothstep(edge0.z, edge1.z, x.z),  
			
		
	
		
			
				
								smoothstep(edge0.w, edge1.w, x.w));  
			
		
	
		
			
				
							vecType<T, P> tmp = clamp((x - edge0) / (edge1 - edge0), static_cast<T>(0), static_cast<T>(1));  
			
		
	
		
			
				
							return tmp * tmp * (static_cast<T>(3) - static_cast<T>(2) * tmp);  
			
		
	
		
			
				
						}  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
						// TODO: Not working on MinGW...  
			
		
	
		
			
				
						template <typename genType>   
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER bool isnan(genType const &  x)  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER bool isnan(genType x)  
			
		
	
		
			
				
						{  
			
		
	
		
			
				
							GLM_STATIC_ASSERT(std::numeric_limits<genType>::is_iec559, "'isnan' only accept floating-point inputs");  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
					#		if(GLM_LANG & GLM_LANG_CXX11_FLAG)   
			
		
	
		
			
				
					#		if GLM_LANG & GLM_LANG_CXX11_FLAG  
			
		
	
		
			
				
								return std::isnan(x);  
			
		
	
		
			
				
					#		elif( GLM_COMPILER & (GLM_COMPILER_VC | GLM_COMPILER_INTEL) )  
			
		
	
		
			
				
					#		elif GLM_COMPILER & (GLM_COMPILER_VC | GLM_COMPILER_INTEL)  
			
		
	
		
			
				
								return _isnan(x) != 0;  
			
		
	
		
			
				
					#		elif( GLM_COMPILER & (GLM_COMPILER_GCC | GLM_COMPILER_CLANG) )  
			
		
	
		
			
				
					#			if( GLM_PLATFORM & GLM_PLATFORM_ANDROID && __cplusplus < 201103L)   
			
		
	
		
			
				
					#		elif GLM_COMPILER & (GLM_COMPILER_GCC | GLM_COMPILER_CLANG)  
			
		
	
		
			
				
					#			if GLM_PLATFORM & GLM_PLATFORM_ANDROID && __cplusplus < 201103L  
			
		
	
		
			
				
									return _isnan(x) != 0;  
			
		
	
		
			
				
					#			else  
			
		
	
		
			
				
									return std::isnan(x);  
			
		
	
		
			
				
					#			endif  
			
		
	
		
			
				
					#		elif(GLM_COMPILER & GLM_COMPILER_CUDA)   
			
		
	
		
			
				
					#		elif GLM_COMPILER & GLM_COMPILER_CUDA  
			
		
	
		
			
				
								return isnan(x) != 0;  
			
		
	
		
			
				
					#		else  
			
		
	
		
			
				
								return std::isnan(x);  
			
		
	
		
			
				
					#		endif  
			
		
	
		
			
				
						}  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
						template <typename T, precision P>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER typename tvec1<T, P>::bool_type isnan(tvec1<T, P> const & x)  
			
		
	
		
			
				
						{  
			
		
	
		
			
				
							GLM_STATIC_ASSERT(std::numeric_limits<T>::is_iec559, "'isnan' only accept floating-point inputs");  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
							return typename tvec1<T, P>::bool_type(  
			
		
	
		
			
				
								isnan(x.x));  
			
		
	
		
			
				
						}  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
						template <typename T, precision P>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER typename tvec2<T, P>::bool_type isnan(tvec2<T, P> const & x)  
			
		
	
		
			
				
						{  
			
		
	
		
			
				
							GLM_STATIC_ASSERT(std::numeric_limits<T>::is_iec559, "'isnan' only accept floating-point inputs");  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
							return typename tvec2<T, P>::bool_type(  
			
		
	
		
			
				
								isnan(x.x),  
			
		
	
		
			
				
								isnan(x.y));  
			
		
	
		
			
				
						}  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
						template <typename T, precision P>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER typename tvec3<T, P>::bool_type isnan(tvec3<T, P> const & x)  
			
		
	
		
			
				
						{  
			
		
	
		
			
				
							GLM_STATIC_ASSERT(std::numeric_limits<T>::is_iec559, "'isnan' only accept floating-point inputs");  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
							return typename tvec3<T, P>::bool_type(  
			
		
	
		
			
				
								isnan(x.x),  
			
		
	
		
			
				
								isnan(x.y),  
			
		
	
		
			
				
								isnan(x.z));  
			
		
	
		
			
				
						}  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
						template <typename T, precision P>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER typename tvec4<T, P>::bool_type isnan(tvec4<T, P> const & x)  
			
		
	
		
			
				
						template <typename T, precision P, template <typename, precision> class vecType>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER vecType<bool, P> isnan(vecType<T, P> const & x)  
			
		
	
		
			
				
						{  
			
		
	
		
			
				
							GLM_STATIC_ASSERT(std::numeric_limits<T>::is_iec559, "'isnan' only accept floating-point inputs");  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
							return typename tvec4<T, P>::bool_type(  
			
		
	
		
			
				
								isnan(x.x),  
			
		
	
		
			
				
								isnan(x.y),  
			
		
	
		
			
				
								isnan(x.z),  
			
		
	
		
			
				
								isnan(x.w));  
			
		
	
		
			
				
							return detail::functor1<bool, T, P, vecType>::call(isnan, x);  
			
		
	
		
			
				
						}  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
						template <typename genType>   
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER bool isinf(genType const &  x)  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER bool isinf(genType x)  
			
		
	
		
			
				
						{  
			
		
	
		
			
				
							GLM_STATIC_ASSERT(std::numeric_limits<genType>::is_iec559, "'isinf' only accept floating-point inputs");  
			
		
	
		
			
				
					
 
			
		
	
	
		
			
				
					
						
						
						
							
								 
						
					 
				
				@ -661,46 +547,12 @@ namespace detail 
			
		
	
		
			
				
					#		endif  
			
		
	
		
			
				
						}  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
						template <typename T, precision P>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER typename tvec1<T, P>::bool_type isinf(tvec1<T, P> const & x)  
			
		
	
		
			
				
						{  
			
		
	
		
			
				
							GLM_STATIC_ASSERT(std::numeric_limits<T>::is_iec559, "'isinf' only accept floating-point inputs");  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
							return typename tvec1<T, P>::bool_type(  
			
		
	
		
			
				
								isinf(x.x));  
			
		
	
		
			
				
						}  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
						template <typename T, precision P>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER typename tvec2<T, P>::bool_type isinf(tvec2<T, P> const & x)  
			
		
	
		
			
				
						{  
			
		
	
		
			
				
							GLM_STATIC_ASSERT(std::numeric_limits<T>::is_iec559, "'isinf' only accept floating-point inputs");  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
							return typename tvec2<T, P>::bool_type(  
			
		
	
		
			
				
								isinf(x.x),  
			
		
	
		
			
				
								isinf(x.y));  
			
		
	
		
			
				
						}  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
						template <typename T, precision P>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER typename tvec3<T, P>::bool_type isinf(tvec3<T, P> const & x)  
			
		
	
		
			
				
						{  
			
		
	
		
			
				
							GLM_STATIC_ASSERT(std::numeric_limits<T>::is_iec559, "'isinf' only accept floating-point inputs");  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
							return typename tvec3<T, P>::bool_type(  
			
		
	
		
			
				
								isinf(x.x),  
			
		
	
		
			
				
								isinf(x.y),  
			
		
	
		
			
				
								isinf(x.z));  
			
		
	
		
			
				
						}  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
						template <typename T, precision P>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER typename tvec4<T, P>::bool_type isinf(tvec4<T, P> const & x)  
			
		
	
		
			
				
						template <typename T, precision P, template <typename, precision> class vecType>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER vecType<bool, P> isinf(vecType<T, P> const & x)  
			
		
	
		
			
				
						{  
			
		
	
		
			
				
							GLM_STATIC_ASSERT(std::numeric_limits<T>::is_iec559, "'isinf ' only accept floating-point inputs");  
			
		
	
		
			
				
							GLM_STATIC_ASSERT(std::numeric_limits<T>::is_iec559, "'isnan' only accept floating-point inputs");  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
							return typename tvec4<T, P>::bool_type(  
			
		
	
		
			
				
								isinf(x.x),  
			
		
	
		
			
				
								isinf(x.y),  
			
		
	
		
			
				
								isinf(x.z),  
			
		
	
		
			
				
								isinf(x.w));  
			
		
	
		
			
				
							return detail::functor1<bool, T, P, vecType>::call(isinf, x);  
			
		
	
		
			
				
						}  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER int floatBitsToInt(float const & v)  
			
		
	
	
		
			
				
					
						
							
								 
						
						
							
								 
						
						
					 
				
				@ -754,7 +606,7 @@ namespace detail 
			
		
	
		
			
				
						}  
			
		
	
		
			
				
					
 
			
		
	
		
			
				
						template <typename genType>  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER genType frexp(genType const &  x, int & exp)  
			
		
	
		
			
				
						GLM_FUNC_QUALIFIER genType frexp(genType x, int & exp)  
			
		
	
		
			
				
						{  
			
		
	
		
			
				
							GLM_STATIC_ASSERT(std::numeric_limits<genType>::is_iec559, "'frexp' only accept floating-point inputs");