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#ifndef EIGEN_PARAMETRIZEDLINE_H |
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#define EIGEN_PARAMETRIZEDLINE_H |
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namespace Eigen { |
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template <typename _Scalar, int _AmbientDim, int _Options> |
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class ParametrizedLine |
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{ |
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public: |
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EIGEN_MAKE_ALIGNED_OPERATOR_NEW_IF_VECTORIZABLE_FIXED_SIZE(_Scalar,_AmbientDim) |
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enum { |
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AmbientDimAtCompileTime = _AmbientDim, |
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Options = _Options |
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}; |
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typedef _Scalar Scalar; |
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typedef typename NumTraits<Scalar>::Real RealScalar; |
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typedef Eigen::Index Index; |
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typedef Matrix<Scalar,AmbientDimAtCompileTime,1,Options> VectorType; |
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EIGEN_DEVICE_FUNC inline ParametrizedLine() {} |
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template<int OtherOptions> |
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EIGEN_DEVICE_FUNC ParametrizedLine(const ParametrizedLine<Scalar,AmbientDimAtCompileTime,OtherOptions>& other) |
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: m_origin(other.origin()), m_direction(other.direction()) |
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{} |
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EIGEN_DEVICE_FUNC inline explicit ParametrizedLine(Index _dim) : m_origin(_dim), m_direction(_dim) {} |
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EIGEN_DEVICE_FUNC ParametrizedLine(const VectorType& origin, const VectorType& direction) |
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: m_origin(origin), m_direction(direction) {} |
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template <int OtherOptions> |
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EIGEN_DEVICE_FUNC explicit ParametrizedLine(const Hyperplane<_Scalar, _AmbientDim, OtherOptions>& hyperplane); |
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EIGEN_DEVICE_FUNC static inline ParametrizedLine Through(const VectorType& p0, const VectorType& p1) |
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{ return ParametrizedLine(p0, (p1-p0).normalized()); } |
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EIGEN_DEVICE_FUNC ~ParametrizedLine() {} |
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EIGEN_DEVICE_FUNC inline Index dim() const { return m_direction.size(); } |
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EIGEN_DEVICE_FUNC const VectorType& origin() const { return m_origin; } |
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EIGEN_DEVICE_FUNC VectorType& origin() { return m_origin; } |
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EIGEN_DEVICE_FUNC const VectorType& direction() const { return m_direction; } |
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EIGEN_DEVICE_FUNC VectorType& direction() { return m_direction; } |
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EIGEN_DEVICE_FUNC RealScalar squaredDistance(const VectorType& p) const |
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{ |
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VectorType diff = p - origin(); |
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return (diff - direction().dot(diff) * direction()).squaredNorm(); |
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} |
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EIGEN_DEVICE_FUNC RealScalar distance(const VectorType& p) const { EIGEN_USING_STD(sqrt) return sqrt(squaredDistance(p)); } |
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EIGEN_DEVICE_FUNC VectorType projection(const VectorType& p) const |
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{ return origin() + direction().dot(p-origin()) * direction(); } |
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EIGEN_DEVICE_FUNC VectorType pointAt(const Scalar& t) const; |
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template <int OtherOptions> |
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EIGEN_DEVICE_FUNC Scalar intersectionParameter(const Hyperplane<_Scalar, _AmbientDim, OtherOptions>& hyperplane) const; |
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template <int OtherOptions> |
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EIGEN_DEVICE_FUNC Scalar intersection(const Hyperplane<_Scalar, _AmbientDim, OtherOptions>& hyperplane) const; |
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template <int OtherOptions> |
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EIGEN_DEVICE_FUNC VectorType intersectionPoint(const Hyperplane<_Scalar, _AmbientDim, OtherOptions>& hyperplane) const; |
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template<typename XprType> |
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EIGEN_DEVICE_FUNC inline ParametrizedLine& transform(const MatrixBase<XprType>& mat, TransformTraits traits = Affine) |
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{ |
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if (traits==Affine) |
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direction() = (mat * direction()).normalized(); |
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else if (traits==Isometry) |
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direction() = mat * direction(); |
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else |
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{ |
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eigen_assert(0 && "invalid traits value in ParametrizedLine::transform()"); |
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} |
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origin() = mat * origin(); |
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return *this; |
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} |
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template<int TrOptions> |
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EIGEN_DEVICE_FUNC inline ParametrizedLine& transform(const Transform<Scalar,AmbientDimAtCompileTime,Affine,TrOptions>& t, |
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TransformTraits traits = Affine) |
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{ |
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transform(t.linear(), traits); |
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origin() += t.translation(); |
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return *this; |
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} |
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template<typename NewScalarType> |
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EIGEN_DEVICE_FUNC inline typename internal::cast_return_type<ParametrizedLine, |
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ParametrizedLine<NewScalarType,AmbientDimAtCompileTime,Options> >::type cast() const |
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{ |
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return typename internal::cast_return_type<ParametrizedLine, |
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ParametrizedLine<NewScalarType,AmbientDimAtCompileTime,Options> >::type(*this); |
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} |
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template<typename OtherScalarType,int OtherOptions> |
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EIGEN_DEVICE_FUNC inline explicit ParametrizedLine(const ParametrizedLine<OtherScalarType,AmbientDimAtCompileTime,OtherOptions>& other) |
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{ |
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m_origin = other.origin().template cast<Scalar>(); |
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m_direction = other.direction().template cast<Scalar>(); |
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} |
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EIGEN_DEVICE_FUNC bool isApprox(const ParametrizedLine& other, const typename NumTraits<Scalar>::Real& prec = NumTraits<Scalar>::dummy_precision()) const |
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{ return m_origin.isApprox(other.m_origin, prec) && m_direction.isApprox(other.m_direction, prec); } |
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protected: |
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VectorType m_origin, m_direction; |
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}; |
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template <typename _Scalar, int _AmbientDim, int _Options> |
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template <int OtherOptions> |
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EIGEN_DEVICE_FUNC inline ParametrizedLine<_Scalar, _AmbientDim,_Options>::ParametrizedLine(const Hyperplane<_Scalar, _AmbientDim,OtherOptions>& hyperplane) |
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{ |
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EIGEN_STATIC_ASSERT_VECTOR_SPECIFIC_SIZE(VectorType, 2) |
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direction() = hyperplane.normal().unitOrthogonal(); |
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origin() = -hyperplane.normal()*hyperplane.offset(); |
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} |
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template <typename _Scalar, int _AmbientDim, int _Options> |
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EIGEN_DEVICE_FUNC inline typename ParametrizedLine<_Scalar, _AmbientDim,_Options>::VectorType |
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ParametrizedLine<_Scalar, _AmbientDim,_Options>::pointAt(const _Scalar& t) const |
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{ |
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return origin() + (direction()*t); |
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} |
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template <typename _Scalar, int _AmbientDim, int _Options> |
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template <int OtherOptions> |
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EIGEN_DEVICE_FUNC inline _Scalar ParametrizedLine<_Scalar, _AmbientDim,_Options>::intersectionParameter(const Hyperplane<_Scalar, _AmbientDim, OtherOptions>& hyperplane) const |
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{ |
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return -(hyperplane.offset()+hyperplane.normal().dot(origin())) |
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/ hyperplane.normal().dot(direction()); |
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} |
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template <typename _Scalar, int _AmbientDim, int _Options> |
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template <int OtherOptions> |
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EIGEN_DEVICE_FUNC inline _Scalar ParametrizedLine<_Scalar, _AmbientDim,_Options>::intersection(const Hyperplane<_Scalar, _AmbientDim, OtherOptions>& hyperplane) const |
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{ |
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return intersectionParameter(hyperplane); |
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} |
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template <typename _Scalar, int _AmbientDim, int _Options> |
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template <int OtherOptions> |
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EIGEN_DEVICE_FUNC inline typename ParametrizedLine<_Scalar, _AmbientDim,_Options>::VectorType |
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ParametrizedLine<_Scalar, _AmbientDim,_Options>::intersectionPoint(const Hyperplane<_Scalar, _AmbientDim, OtherOptions>& hyperplane) const |
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{ |
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return pointAt(intersectionParameter(hyperplane)); |
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} |
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} |
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#endif |
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