2013-07-16 06:42:44 +00:00
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///////////////////////////////////////////////////////////////////////////////////////////////////
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2014-02-17 18:42:52 +00:00
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// OpenGL Mathematics Copyright (c) 2005 - 2013 G-Truc Creation (www.g-truc.net)
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2013-07-16 06:42:44 +00:00
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///////////////////////////////////////////////////////////////////////////////////////////////////
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// Created : 2007-03-05
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// Updated : 2010-02-16
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// Licence : This source is under MIT License
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// File : glm/gtx/vector_query.inl
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///////////////////////////////////////////////////////////////////////////////////////////////////
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// Dependency:
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// - GLM core
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///////////////////////////////////////////////////////////////////////////////////////////////////
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#include <cassert>
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namespace glm
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{
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template <typename T>
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GLM_FUNC_QUALIFIER bool areCollinear
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(
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detail::tvec2<T> const & v0,
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detail::tvec2<T> const & v1,
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typename detail::tvec2<T>::value_type const & epsilon
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)
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{
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return length(cross(detail::tvec3<T>(v0, T(0)), detail::tvec3<T>(v1, T(0)))) < epsilon;
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}
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template <typename T>
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GLM_FUNC_QUALIFIER bool areCollinear
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(
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detail::tvec3<T> const & v0,
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detail::tvec3<T> const & v1,
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typename detail::tvec3<T>::value_type const & epsilon
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)
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{
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return length(cross(v0, v1)) < epsilon;
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}
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template <typename T>
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GLM_FUNC_QUALIFIER bool areCollinear
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(
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detail::tvec4<T> const & v0,
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detail::tvec4<T> const & v1,
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typename detail::tvec4<T>::value_type const & epsilon
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)
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{
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return length(cross(detail::tvec3<T>(v0), detail::tvec3<T>(v1))) < epsilon;
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}
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template <typename genType>
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GLM_FUNC_QUALIFIER bool areOrthogonal
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(
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genType const & v0,
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genType const & v1,
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typename genType::value_type const & epsilon
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)
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{
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return abs(dot(v0, v1)) <= max(
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typename genType::value_type(1),
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length(v0)) * max(
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typename genType::value_type(1),
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length(v1)) * epsilon;
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}
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template <typename genType, template <typename> class vecType>
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GLM_FUNC_QUALIFIER bool isNormalized
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(
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vecType<genType> const & v,
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genType const & epsilon
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)
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{
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return abs(length(v) - genType(1)) <= genType(2) * epsilon;
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}
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template <typename valType>
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GLM_FUNC_QUALIFIER bool isNull
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(
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detail::tvec2<valType> const & v,
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valType const & epsilon
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)
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{
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return length(v) <= epsilon;
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}
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template <typename valType>
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GLM_FUNC_QUALIFIER bool isNull
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(
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detail::tvec3<valType> const & v,
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valType const & epsilon
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)
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{
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return length(v) <= epsilon;
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}
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template <typename valType>
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GLM_FUNC_QUALIFIER bool isNull
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(
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detail::tvec4<valType> const & v,
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valType const & epsilon
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)
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{
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return length(v) <= epsilon;
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}
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template <typename T>
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GLM_FUNC_QUALIFIER bool isCompNull
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(
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T const & s,
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T const & epsilon
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)
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{
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return abs(s) < epsilon;
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}
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template <typename T>
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GLM_FUNC_QUALIFIER detail::tvec2<bool> isCompNull
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(
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detail::tvec2<T> const & v,
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T const & epsilon)
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{
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return detail::tvec2<bool>(
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(abs(v.x) < epsilon),
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(abs(v.y) < epsilon));
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}
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template <typename T>
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GLM_FUNC_QUALIFIER detail::tvec3<bool> isCompNull
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(
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detail::tvec3<T> const & v,
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T const & epsilon
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)
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{
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return detail::tvec3<bool>(
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abs(v.x) < epsilon,
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abs(v.y) < epsilon,
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abs(v.z) < epsilon);
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}
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template <typename T>
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GLM_FUNC_QUALIFIER detail::tvec4<bool> isCompNull
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(
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detail::tvec4<T> const & v,
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T const & epsilon
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)
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{
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return detail::tvec4<bool>(
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abs(v.x) < epsilon,
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abs(v.y) < epsilon,
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abs(v.z) < epsilon,
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abs(v.w) < epsilon);
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}
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template <typename genType>
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GLM_FUNC_QUALIFIER bool areOrthonormal
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(
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genType const & v0,
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genType const & v1,
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typename genType::value_type const & epsilon
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)
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{
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return isNormalized(v0, epsilon) && isNormalized(v1, epsilon) && (abs(dot(v0, v1)) <= epsilon);
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}
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}//namespace glm
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