11 #ifndef EIGEN_HYPERPLANE_H    12 #define EIGEN_HYPERPLANE_H    33 template <
typename _Scalar, 
int _AmbientDim, 
int _Options>
    55   template<
int OtherOptions>
    67   inline Hyperplane(
const VectorType& n, 
const VectorType& e)
    91     result.
normal() = (p1 - p0).unitOrthogonal();
    92     result.offset() = -p0.dot(result.normal());
    99   static inline Hyperplane Through(
const VectorType& p0, 
const VectorType& p1, 
const VectorType& p2)
   103     result.
normal() = (p2 - p0).
cross(p1 - p0).normalized();
   104     result.offset() = -p0.dot(result.normal());
   195         Scalar invdet = 
Scalar(1) / det;
   207   template<
typename XprType>
   216       eigen_assert(0 && 
"invalid traits value in Hyperplane::transform()");
   228   template<
int TrOptions>
   242   template<
typename NewScalarType>
   251   template<
typename OtherScalarType,
int OtherOptions>
   253   { 
m_coeffs = other.coeffs().template cast<Scalar>(); }
   259   template<
int OtherOptions>
   261   { 
return m_coeffs.isApprox(other.m_coeffs, prec); }
   270 #endif // EIGEN_HYPERPLANE_H 
const VectorType & origin() const 
const NormalReturnType normal() const 
Scalar signedDistance(const VectorType &p) const 
Hyperplane(const Hyperplane< OtherScalarType, AmbientDimAtCompileTime, OtherOptions > &other)
TFSIMD_FORCE_INLINE Vector3 cross(const Vector3 &v) const 
const Block< const Coefficients, AmbientDimAtCompileTime, 1 > ConstNormalReturnType
NormalReturnType normal()
Holds information about the various numeric (i.e. scalar) types allowed by Eigen. ...
Block< Coefficients, AmbientDimAtCompileTime, 1 > NormalReturnType
bool isMuchSmallerThan(const Scalar &x, const OtherScalar &y, typename NumTraits< Scalar >::Real precision=NumTraits< Scalar >::dummy_precision())
Hyperplane(const VectorType &n, const Scalar &d)
Hyperplane & transform(const MatrixBase< XprType > &mat, TransformTraits traits=Affine)
static Hyperplane Through(const VectorType &p0, const VectorType &p1, const VectorType &p2)
Hyperplane(const ParametrizedLine< Scalar, AmbientDimAtCompileTime > ¶metrized)
VectorType intersection(const Hyperplane &other) const 
const Coefficients & coeffs() const 
Hyperplane(const Hyperplane< Scalar, AmbientDimAtCompileTime, OtherOptions > &other)
EIGEN_STRONG_INLINE const CwiseUnaryOp< internal::scalar_abs_op< Scalar >, const Derived > abs() const 
NumTraits< Scalar >::Real RealScalar
EIGEN_STRONG_INLINE const Scalar & coeff(Index rowId, Index colId) const 
ConstNormalReturnType normal() const 
const VectorType & direction() const 
static Hyperplane Through(const VectorType &p0, const VectorType &p1)
VectorType projection(const VectorType &p) const 
bool isApprox(const Hyperplane< Scalar, AmbientDimAtCompileTime, OtherOptions > &other, const typename NumTraits< Scalar >::Real &prec=NumTraits< Scalar >::dummy_precision()) const 
const Scalar & offset() const 
EIGEN_DEFAULT_DENSE_INDEX_TYPE DenseIndex
Matrix< Scalar, AmbientDimAtCompileTime, 1 > VectorType
Expression of a fixed-size or dynamic-size block. 
internal::cast_return_type< Hyperplane, Hyperplane< NewScalarType, AmbientDimAtCompileTime, Options > >::type cast() const 
#define EIGEN_MAKE_ALIGNED_OPERATOR_NEW_IF_VECTORIZABLE_FIXED_SIZE(Scalar, Size)
const internal::inverse_impl< Derived > inverse() const 
Hyperplane(const VectorType &n, const VectorType &e)
Matrix< Scalar, Index(AmbientDimAtCompileTime)==Dynamic?Dynamic:Index(AmbientDimAtCompileTime)+1, 1, Options > Coefficients
Base class for all dense matrices, vectors, and expressions. 
Hyperplane & transform(const Transform< Scalar, AmbientDimAtCompileTime, Affine, TrOptions > &t, TransformTraits traits=Affine)
#define EIGEN_STATIC_ASSERT_VECTOR_SPECIFIC_SIZE(TYPE, SIZE)
Scalar absDistance(const VectorType &p) const