11 #ifndef EIGEN_ORTHOMETHODS_H
12 #define EIGEN_ORTHOMETHODS_H
27 template<
typename Derived>
28 template<
typename OtherDerived>
29 #ifndef EIGEN_PARSED_BY_DOXYGEN
45 numext::conj(lhs.coeff(1) * rhs.coeff(2) - lhs.coeff(2) * rhs.coeff(1)),
46 numext::conj(lhs.coeff(2) * rhs.coeff(0) - lhs.coeff(0) * rhs.coeff(2)),
47 numext::conj(lhs.coeff(0) * rhs.coeff(1) - lhs.coeff(1) * rhs.coeff(0))
53 template<
int Arch,
typename VectorLhs,
typename VectorRhs,
54 typename Scalar =
typename VectorLhs::Scalar,
58 run(
const VectorLhs& lhs,
const VectorRhs& rhs)
61 numext::conj(lhs.coeff(1) * rhs.coeff(2) - lhs.coeff(2) * rhs.coeff(1)),
62 numext::conj(lhs.coeff(2) * rhs.coeff(0) - lhs.coeff(0) * rhs.coeff(2)),
63 numext::conj(lhs.coeff(0) * rhs.coeff(1) - lhs.coeff(1) * rhs.coeff(0)),
80 template<
typename Derived>
81 template<
typename OtherDerived>
90 DerivedNested lhs(derived());
91 OtherDerivedNested rhs(other.derived());
107 template<
typename ExpressionType,
int Direction>
108 template<
typename OtherDerived>
115 YOU_MIXED_DIFFERENT_NUMERIC_TYPES__YOU_NEED_TO_USE_THE_CAST_METHOD_OF_MATRIXBASE_TO_CAST_NUMERIC_TYPES_EXPLICITLY)
123 eigen_assert(CrossReturnType::RowsAtCompileTime==3 &&
"the matrix must have exactly 3 rows");
124 res.row(0) = (mat.row(1) * vec.coeff(2) - mat.row(2) * vec.coeff(1)).
conjugate();
125 res.row(1) = (mat.row(2) * vec.coeff(0) - mat.row(0) * vec.coeff(2)).
conjugate();
126 res.row(2) = (mat.row(0) * vec.coeff(1) - mat.row(1) * vec.coeff(0)).
conjugate();
130 eigen_assert(CrossReturnType::ColsAtCompileTime==3 &&
"the matrix must have exactly 3 columns");
131 res.col(0) = (mat.col(1) * vec.coeff(2) - mat.col(2) * vec.coeff(1)).
conjugate();
132 res.col(1) = (mat.col(2) * vec.coeff(0) - mat.col(0) * vec.coeff(2)).
conjugate();
133 res.col(2) = (mat.col(0) * vec.coeff(1) - mat.col(1) * vec.coeff(0)).
conjugate();
140 template<
typename Derived,
int Size = Derived::SizeAtCompileTime>
150 VectorType perp = VectorType::Zero(src.size());
153 src.cwiseAbs().maxCoeff(&
maxi);
157 perp.coeffRef(
maxi) = -numext::conj(src.coeff(sndi)) * invnm;
158 perp.coeffRef(sndi) = numext::conj(src.coeff(
maxi)) * invnm;
164 template<
typename Derived>
185 perp.coeffRef(0) = -numext::conj(src.y())*invnm;
186 perp.coeffRef(1) = numext::conj(src.x())*invnm;
187 perp.coeffRef(2) = 0;
196 perp.coeffRef(0) = 0;
197 perp.coeffRef(1) = -numext::conj(src.z())*invnm;
198 perp.coeffRef(2) = numext::conj(src.y())*invnm;
205 template<
typename Derived>
211 {
return VectorType(-numext::conj(src.y()), numext::conj(src.x())).normalized(); }
225 template<
typename Derived>
EIGEN_DEVICE_FUNC ConjugateReturnType conjugate() const
Definition: CommonCwiseUnaryOps.h:74
#define EIGEN_DEVICE_FUNC
Definition: Macros.h:976
#define eigen_assert(x)
Definition: Macros.h:1037
#define EIGEN_STRONG_INLINE
Definition: Macros.h:917
#define EIGEN_STATIC_ASSERT_VECTOR_SPECIFIC_SIZE(TYPE, SIZE)
Definition: StaticAssert.h:157
#define EIGEN_STATIC_ASSERT_VECTOR_ONLY(TYPE)
Definition: StaticAssert.h:142
#define EIGEN_STATIC_ASSERT(CONDITION, MSG)
Definition: StaticAssert.h:127
Base class for all dense matrices, vectors, and expressions.
Definition: MatrixBase.h:50
EIGEN_DEVICE_FUNC cross_product_return_type< OtherDerived >::type cross(const MatrixBase< OtherDerived > &other) const
Base::PlainObject PlainObject
Definition: MatrixBase.h:104
The matrix class, also used for vectors and row-vectors.
Definition: Matrix.h:180
ExpressionType::PlainObject CrossReturnType
Definition: VectorwiseOp.h:712
EIGEN_DEVICE_FUNC PlainObject unitOrthogonal(void) const
Definition: OrthoMethods.h:227
EIGEN_DEVICE_FUNC const CrossReturnType cross(const MatrixBase< OtherDerived > &other) const
Definition: OrthoMethods.h:111
EIGEN_DEVICE_FUNC PlainObject cross3(const MatrixBase< OtherDerived > &other) const
Definition: OrthoMethods.h:83
@ Vertical
Definition: Constants.h:264
const unsigned int PacketAccessBit
Definition: Constants.h:94
@ Target
Definition: Constants.h:492
EIGEN_DEVICE_FUNC bool isMuchSmallerThan(const Scalar &x, const OtherScalar &y, const typename NumTraits< Scalar >::Real &precision=NumTraits< Scalar >::dummy_precision())
Definition: MathFunctions.h:1940
EIGEN_DEVICE_FUNC EIGEN_ALWAYS_INLINE T maxi(const T &x, const T &y)
Definition: MathFunctions.h:1091
Namespace containing all symbols from the Eigen library.
Definition: LDLT.h:16
EIGEN_DEFAULT_DENSE_INDEX_TYPE Index
The Index type as used for the API.
Definition: Meta.h:74
type
The type the bitset is encoded with.
Definition: bitset.hpp:44
Flags
Special flags for archives.
Definition: cereal.hpp:185
Definition: document.h:416
Holds information about the various numeric (i.e. scalar) types allowed by Eigen.
Definition: NumTraits.h:233
Definition: OrthoMethods.h:56
static EIGEN_DEVICE_FUNC internal::plain_matrix_type< VectorLhs >::type run(const VectorLhs &lhs, const VectorRhs &rhs)
Definition: OrthoMethods.h:58
Definition: XprHelper.h:295
T type
Definition: Meta.h:126
Definition: ForwardDeclarations.h:17
static EIGEN_DEVICE_FUNC VectorType run(const Derived &src)
Definition: OrthoMethods.h:210
plain_matrix_type< Derived >::type VectorType
Definition: OrthoMethods.h:208
NumTraits< Scalar >::Real RealScalar
Definition: OrthoMethods.h:169
plain_matrix_type< Derived >::type VectorType
Definition: OrthoMethods.h:167
traits< Derived >::Scalar Scalar
Definition: OrthoMethods.h:168
static EIGEN_DEVICE_FUNC VectorType run(const Derived &src)
Definition: OrthoMethods.h:171
Definition: OrthoMethods.h:142
traits< Derived >::Scalar Scalar
Definition: OrthoMethods.h:144
NumTraits< Scalar >::Real RealScalar
Definition: OrthoMethods.h:145
Matrix< Scalar, 2, 1 > Vector2
Definition: OrthoMethods.h:146
plain_matrix_type< Derived >::type VectorType
Definition: OrthoMethods.h:143
static EIGEN_DEVICE_FUNC VectorType run(const Derived &src)
Definition: OrthoMethods.h:148