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Fixed initialisation
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848800b5c4
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@ -41,20 +41,20 @@ namespace glm
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// if determinant is near zero, ray lies in plane of triangle
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T const det = glm::dot(edge1, p);
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vec<3, T, Q> qvec;
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vec<3, T, Q> qvec(0);
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if(det > std::numeric_limits<T>::epsilon())
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{
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// calculate distance from vert0 to ray origin
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vec<3, T, Q> const tvec = orig - vert0;
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vec<3, T, Q> const dist = orig - vert0;
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// calculate U parameter and test bounds
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baryPosition.x = glm::dot(tvec, p);
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baryPosition.x = glm::dot(dist, p);
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if(baryPosition.x < static_cast<T>(0) || baryPosition.x > det)
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return false;
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// prepare to test V parameter
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qvec = glm::cross(tvec, edge1);
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qvec = glm::cross(dist, edge1);
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// calculate V parameter and test bounds
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baryPosition.y = glm::dot(dir, qvec);
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@ -64,15 +64,15 @@ namespace glm
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else if(det < -std::numeric_limits<T>::epsilon())
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{
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// calculate distance from vert0 to ray origin
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vec<3, T, Q> const tvec = orig - vert0;
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vec<3, T, Q> const dist = orig - vert0;
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// calculate U parameter and test bounds
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baryPosition.x = glm::dot(tvec, p);
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baryPosition.x = glm::dot(dist, p);
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if((baryPosition.x > static_cast<T>(0)) || (baryPosition.x < det))
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return false;
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// prepare to test V parameter
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qvec = glm::cross(tvec, edge1);
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qvec = glm::cross(dist, edge1);
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// calculate V parameter and test bounds
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baryPosition.y = glm::dot(dir, qvec);
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