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MatrixBase.h
1// This file is part of Eigen, a lightweight C++ template library
2// for linear algebra.
3//
4// Copyright (C) 2006-2009 Benoit Jacob <jacob.benoit.1@gmail.com>
5// Copyright (C) 2008 Gael Guennebaud <gael.guennebaud@inria.fr>
6//
7// This Source Code Form is subject to the terms of the Mozilla
8// Public License v. 2.0. If a copy of the MPL was not distributed
9// with this file, You can obtain one at http://mozilla.org/MPL/2.0/.
10
11#ifndef EIGEN_MATRIXBASE_H
12#define EIGEN_MATRIXBASE_H
13
14namespace Eigen {
15
48template<typename Derived> class MatrixBase
49 : public DenseBase<Derived>
50{
51 public:
52#ifndef EIGEN_PARSED_BY_DOXYGEN
54 typedef typename internal::traits<Derived>::StorageKind StorageKind;
55 typedef typename internal::traits<Derived>::StorageIndex StorageIndex;
56 typedef typename internal::traits<Derived>::Scalar Scalar;
57 typedef typename internal::packet_traits<Scalar>::type PacketScalar;
58 typedef typename NumTraits<Scalar>::Real RealScalar;
59
68 using Base::Flags;
69
70 using Base::derived;
71 using Base::const_cast_derived;
72 using Base::rows;
73 using Base::cols;
74 using Base::size;
75 using Base::coeff;
76 using Base::coeffRef;
77 using Base::lazyAssign;
78 using Base::eval;
79 using Base::operator-;
80 using Base::operator+=;
81 using Base::operator-=;
82 using Base::operator*=;
83 using Base::operator/=;
84
85 typedef typename Base::CoeffReturnType CoeffReturnType;
87 typedef typename Base::RowXpr RowXpr;
88 typedef typename Base::ColXpr ColXpr;
89#endif // not EIGEN_PARSED_BY_DOXYGEN
90
91
92
93#ifndef EIGEN_PARSED_BY_DOXYGEN
95 typedef Matrix<Scalar,EIGEN_SIZE_MAX(RowsAtCompileTime,ColsAtCompileTime),
97#endif // not EIGEN_PARSED_BY_DOXYGEN
98
101 EIGEN_DEVICE_FUNC
102 inline Index diagonalSize() const { return (numext::mini)(rows(),cols()); }
103
104 typedef typename Base::PlainObject PlainObject;
105
106#ifndef EIGEN_PARSED_BY_DOXYGEN
108 typedef CwiseNullaryOp<internal::scalar_constant_op<Scalar>,PlainObject> ConstantReturnType;
112 ConstTransposeReturnType
113 >::type AdjointReturnType;
117 typedef CwiseNullaryOp<internal::scalar_identity_op<Scalar>,PlainObject> IdentityReturnType;
122#endif // not EIGEN_PARSED_BY_DOXYGEN
123
124#define EIGEN_CURRENT_STORAGE_BASE_CLASS Eigen::MatrixBase
125#define EIGEN_DOC_UNARY_ADDONS(X,Y)
126# include "../plugins/CommonCwiseBinaryOps.h"
127# include "../plugins/MatrixCwiseUnaryOps.h"
128# include "../plugins/MatrixCwiseBinaryOps.h"
129# ifdef EIGEN_MATRIXBASE_PLUGIN
130# include EIGEN_MATRIXBASE_PLUGIN
131# endif
132#undef EIGEN_CURRENT_STORAGE_BASE_CLASS
133#undef EIGEN_DOC_UNARY_ADDONS
134
138 EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE
139 Derived& operator=(const MatrixBase& other);
140
141 // We cannot inherit here via Base::operator= since it is causing
142 // trouble with MSVC.
143
144 template <typename OtherDerived>
145 EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE
146 Derived& operator=(const DenseBase<OtherDerived>& other);
147
148 template <typename OtherDerived>
149 EIGEN_DEVICE_FUNC
150 Derived& operator=(const EigenBase<OtherDerived>& other);
151
152 template<typename OtherDerived>
153 EIGEN_DEVICE_FUNC
154 Derived& operator=(const ReturnByValue<OtherDerived>& other);
155
156 template<typename OtherDerived>
157 EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE
158 Derived& operator+=(const MatrixBase<OtherDerived>& other);
159 template<typename OtherDerived>
160 EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE
161 Derived& operator-=(const MatrixBase<OtherDerived>& other);
162
163 template<typename OtherDerived>
164 EIGEN_DEVICE_FUNC
166 operator*(const MatrixBase<OtherDerived> &other) const;
167
168 template<typename OtherDerived>
169 EIGEN_DEVICE_FUNC
171 lazyProduct(const MatrixBase<OtherDerived> &other) const;
172
173 template<typename OtherDerived>
174 Derived& operator*=(const EigenBase<OtherDerived>& other);
175
176 template<typename OtherDerived>
178
179 template<typename OtherDerived>
181
182 template<typename DiagonalDerived>
183 EIGEN_DEVICE_FUNC
185 operator*(const DiagonalBase<DiagonalDerived> &diagonal) const;
186
187 template<typename OtherDerived>
188 EIGEN_DEVICE_FUNC
190 dot(const MatrixBase<OtherDerived>& other) const;
191
192 EIGEN_DEVICE_FUNC RealScalar squaredNorm() const;
193 EIGEN_DEVICE_FUNC RealScalar norm() const;
194 RealScalar stableNorm() const;
195 RealScalar blueNorm() const;
196 RealScalar hypotNorm() const;
197 EIGEN_DEVICE_FUNC const PlainObject normalized() const;
198 EIGEN_DEVICE_FUNC const PlainObject stableNormalized() const;
199 EIGEN_DEVICE_FUNC void normalize();
200 EIGEN_DEVICE_FUNC void stableNormalize();
201
202 EIGEN_DEVICE_FUNC const AdjointReturnType adjoint() const;
203 EIGEN_DEVICE_FUNC void adjointInPlace();
204
206 EIGEN_DEVICE_FUNC
208
210 EIGEN_DEVICE_FUNC
211 const ConstDiagonalReturnType diagonal() const;
212
213 template<int Index>
214 EIGEN_DEVICE_FUNC
216
217 template<int Index>
218 EIGEN_DEVICE_FUNC
220
221 EIGEN_DEVICE_FUNC
223 EIGEN_DEVICE_FUNC
225
226 template<unsigned int Mode> struct TriangularViewReturnType { typedef TriangularView<Derived, Mode> Type; };
227 template<unsigned int Mode> struct ConstTriangularViewReturnType { typedef const TriangularView<const Derived, Mode> Type; };
228
229 template<unsigned int Mode>
230 EIGEN_DEVICE_FUNC
231 typename TriangularViewReturnType<Mode>::Type triangularView();
232 template<unsigned int Mode>
233 EIGEN_DEVICE_FUNC
234 typename ConstTriangularViewReturnType<Mode>::Type triangularView() const;
235
236 template<unsigned int UpLo> struct SelfAdjointViewReturnType { typedef SelfAdjointView<Derived, UpLo> Type; };
237 template<unsigned int UpLo> struct ConstSelfAdjointViewReturnType { typedef const SelfAdjointView<const Derived, UpLo> Type; };
238
239 template<unsigned int UpLo>
240 EIGEN_DEVICE_FUNC
241 typename SelfAdjointViewReturnType<UpLo>::Type selfadjointView();
242 template<unsigned int UpLo>
243 EIGEN_DEVICE_FUNC
244 typename ConstSelfAdjointViewReturnType<UpLo>::Type selfadjointView() const;
245
246 const SparseView<Derived> sparseView(const Scalar& m_reference = Scalar(0),
247 const typename NumTraits<Scalar>::Real& m_epsilon = NumTraits<Scalar>::dummy_precision()) const;
248 EIGEN_DEVICE_FUNC static const IdentityReturnType Identity();
249 EIGEN_DEVICE_FUNC static const IdentityReturnType Identity(Index rows, Index cols);
250 EIGEN_DEVICE_FUNC static const BasisReturnType Unit(Index size, Index i);
251 EIGEN_DEVICE_FUNC static const BasisReturnType Unit(Index i);
252 EIGEN_DEVICE_FUNC static const BasisReturnType UnitX();
253 EIGEN_DEVICE_FUNC static const BasisReturnType UnitY();
254 EIGEN_DEVICE_FUNC static const BasisReturnType UnitZ();
255 EIGEN_DEVICE_FUNC static const BasisReturnType UnitW();
256
257 EIGEN_DEVICE_FUNC
259 const PermutationWrapper<const Derived> asPermutation() const;
260
261 EIGEN_DEVICE_FUNC
262 Derived& setIdentity();
263 EIGEN_DEVICE_FUNC
264 Derived& setIdentity(Index rows, Index cols);
265 EIGEN_DEVICE_FUNC Derived& setUnit(Index i);
266 EIGEN_DEVICE_FUNC Derived& setUnit(Index newSize, Index i);
267
268 bool isIdentity(const RealScalar& prec = NumTraits<Scalar>::dummy_precision()) const;
269 bool isDiagonal(const RealScalar& prec = NumTraits<Scalar>::dummy_precision()) const;
270
271 bool isUpperTriangular(const RealScalar& prec = NumTraits<Scalar>::dummy_precision()) const;
272 bool isLowerTriangular(const RealScalar& prec = NumTraits<Scalar>::dummy_precision()) const;
273
274 template<typename OtherDerived>
275 bool isOrthogonal(const MatrixBase<OtherDerived>& other,
276 const RealScalar& prec = NumTraits<Scalar>::dummy_precision()) const;
277 bool isUnitary(const RealScalar& prec = NumTraits<Scalar>::dummy_precision()) const;
278
283 template<typename OtherDerived>
284 EIGEN_DEVICE_FUNC inline bool operator==(const MatrixBase<OtherDerived>& other) const
285 { return cwiseEqual(other).all(); }
286
291 template<typename OtherDerived>
292 EIGEN_DEVICE_FUNC inline bool operator!=(const MatrixBase<OtherDerived>& other) const
293 { return cwiseNotEqual(other).any(); }
294
296
297 // TODO forceAlignedAccess is temporarily disabled
298 // Need to find a nicer workaround.
299 inline const Derived& forceAlignedAccess() const { return derived(); }
300 inline Derived& forceAlignedAccess() { return derived(); }
301 template<bool Enable> inline const Derived& forceAlignedAccessIf() const { return derived(); }
302 template<bool Enable> inline Derived& forceAlignedAccessIf() { return derived(); }
303
304 EIGEN_DEVICE_FUNC Scalar trace() const;
305
306 template<int p> EIGEN_DEVICE_FUNC RealScalar lpNorm() const;
307
308 EIGEN_DEVICE_FUNC MatrixBase<Derived>& matrix() { return *this; }
309 EIGEN_DEVICE_FUNC const MatrixBase<Derived>& matrix() const { return *this; }
310
313 EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE ArrayWrapper<Derived> array() { return ArrayWrapper<Derived>(derived()); }
316 EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE const ArrayWrapper<const Derived> array() const { return ArrayWrapper<const Derived>(derived()); }
317
319
320 inline const FullPivLU<PlainObject> fullPivLu() const;
321 inline const PartialPivLU<PlainObject> partialPivLu() const;
322
323 inline const PartialPivLU<PlainObject> lu() const;
324
325 EIGEN_DEVICE_FUNC
326 inline const Inverse<Derived> inverse() const;
327
328 template<typename ResultType>
330 ResultType& inverse,
331 typename ResultType::Scalar& determinant,
332 bool& invertible,
334 ) const;
335
336 template<typename ResultType>
337 inline void computeInverseWithCheck(
338 ResultType& inverse,
339 bool& invertible,
341 ) const;
342
343 EIGEN_DEVICE_FUNC
344 Scalar determinant() const;
345
347
348 inline const LLT<PlainObject> llt() const;
349 inline const LDLT<PlainObject> ldlt() const;
350
352
353 inline const HouseholderQR<PlainObject> householderQr() const;
357
359
360 inline EigenvaluesReturnType eigenvalues() const;
361 inline RealScalar operatorNorm() const;
362
364
365 inline JacobiSVD<PlainObject> jacobiSvd(unsigned int computationOptions = 0) const;
366 inline BDCSVD<PlainObject> bdcSvd(unsigned int computationOptions = 0) const;
367
369
370 #ifndef EIGEN_PARSED_BY_DOXYGEN
376 #endif // EIGEN_PARSED_BY_DOXYGEN
377 template<typename OtherDerived>
378 EIGEN_DEVICE_FUNC
379#ifndef EIGEN_PARSED_BY_DOXYGEN
381#else
382 inline PlainObject
383#endif
384 cross(const MatrixBase<OtherDerived>& other) const;
385
386 template<typename OtherDerived>
387 EIGEN_DEVICE_FUNC
388 inline PlainObject cross3(const MatrixBase<OtherDerived>& other) const;
389
390 EIGEN_DEVICE_FUNC
391 inline PlainObject unitOrthogonal(void) const;
392
393 EIGEN_DEVICE_FUNC
395
396 // put this as separate enum value to work around possible GCC 4.3 bug (?)
400 EIGEN_DEVICE_FUNC
401 inline HomogeneousReturnType homogeneous() const;
402
403 enum {
405 };
406 typedef Block<const Derived,
408 internal::traits<Derived>::ColsAtCompileTime==1 ? 1 : SizeMinusOne> ConstStartMinusOne;
409 typedef EIGEN_EXPR_BINARYOP_SCALAR_RETURN_TYPE(ConstStartMinusOne,Scalar,quotient) HNormalizedReturnType;
410 EIGEN_DEVICE_FUNC
411 inline const HNormalizedReturnType hnormalized() const;
412
414
415 EIGEN_DEVICE_FUNC
416 void makeHouseholderInPlace(Scalar& tau, RealScalar& beta);
417 template<typename EssentialPart>
418 EIGEN_DEVICE_FUNC
420 Scalar& tau, RealScalar& beta) const;
421 template<typename EssentialPart>
422 EIGEN_DEVICE_FUNC
424 const Scalar& tau,
425 Scalar* workspace);
426 template<typename EssentialPart>
427 EIGEN_DEVICE_FUNC
429 const Scalar& tau,
430 Scalar* workspace);
431
433
434 template<typename OtherScalar>
435 EIGEN_DEVICE_FUNC
437 template<typename OtherScalar>
438 EIGEN_DEVICE_FUNC
440
442
443 template<typename OtherDerived>
444 EIGEN_STRONG_INLINE const typename SparseMatrixBase<OtherDerived>::template CwiseProductDenseReturnType<Derived>::Type
445 cwiseProduct(const SparseMatrixBase<OtherDerived> &other) const
446 {
447 return other.cwiseProduct(derived());
448 }
449
451
452 typedef typename internal::stem_function<Scalar>::type StemFunction;
453#define EIGEN_MATRIX_FUNCTION(ReturnType, Name, Description) \
454 \
455 const ReturnType<Derived> Name() const;
456#define EIGEN_MATRIX_FUNCTION_1(ReturnType, Name, Description, Argument) \
457 \
458 const ReturnType<Derived> Name(Argument) const;
459
460 EIGEN_MATRIX_FUNCTION(MatrixExponentialReturnValue, exp, exponential)
463 EIGEN_MATRIX_FUNCTION(MatrixFunctionReturnValue, cosh, hyperbolic cosine)
464 EIGEN_MATRIX_FUNCTION(MatrixFunctionReturnValue, sinh, hyperbolic sine)
465#if EIGEN_HAS_CXX11_MATH
468 EIGEN_MATRIX_FUNCTION(MatrixFunctionReturnValue, asinh, inverse hyperbolic sine)
469#endif
470 EIGEN_MATRIX_FUNCTION(MatrixFunctionReturnValue, cos, cosine)
471 EIGEN_MATRIX_FUNCTION(MatrixFunctionReturnValue, sin, sine)
472 EIGEN_MATRIX_FUNCTION(MatrixSquareRootReturnValue, sqrt, square root)
473 EIGEN_MATRIX_FUNCTION(MatrixLogarithmReturnValue, log, logarithm)
474 EIGEN_MATRIX_FUNCTION_1(MatrixPowerReturnValue, pow, power to \c p, const RealScalar& p)
475 EIGEN_MATRIX_FUNCTION_1(MatrixComplexPowerReturnValue, pow, power to \c p, const std::complex<RealScalar>& p)
476
477 protected:
478 EIGEN_DEFAULT_COPY_CONSTRUCTOR(MatrixBase)
479 EIGEN_DEFAULT_EMPTY_CONSTRUCTOR_AND_DESTRUCTOR(MatrixBase)
480
481 private:
482 EIGEN_DEVICE_FUNC explicit MatrixBase(int);
483 EIGEN_DEVICE_FUNC MatrixBase(int,int);
484 template<typename OtherDerived> EIGEN_DEVICE_FUNC explicit MatrixBase(const MatrixBase<OtherDerived>&);
485 protected:
486 // mixing arrays and matrices is not legal
487 template<typename OtherDerived> Derived& operator+=(const ArrayBase<OtherDerived>& )
488 {EIGEN_STATIC_ASSERT(std::ptrdiff_t(sizeof(typename OtherDerived::Scalar))==-1,YOU_CANNOT_MIX_ARRAYS_AND_MATRICES); return *this;}
489 // mixing arrays and matrices is not legal
490 template<typename OtherDerived> Derived& operator-=(const ArrayBase<OtherDerived>& )
491 {EIGEN_STATIC_ASSERT(std::ptrdiff_t(sizeof(typename OtherDerived::Scalar))==-1,YOU_CANNOT_MIX_ARRAYS_AND_MATRICES); return *this;}
492};
493
494
495/***************************************************************************
496* Implementation of matrix base methods
497***************************************************************************/
498
506template<typename Derived>
507template<typename OtherDerived>
508inline Derived&
510{
511 other.derived().applyThisOnTheRight(derived());
512 return derived();
513}
514
520template<typename Derived>
521template<typename OtherDerived>
523{
524 other.derived().applyThisOnTheRight(derived());
525}
526
532template<typename Derived>
533template<typename OtherDerived>
535{
536 other.derived().applyThisOnTheLeft(derived());
537}
538
539} // end namespace Eigen
540
541#endif // EIGEN_MATRIXBASE_H
Expression of a fixed-size or dynamic-size block.
Definition Block.h:105
Base class for all dense matrices, vectors, and arrays.
Definition DenseBase.h:47
@ IsVectorAtCompileTime
This is set to true if either the number of rows or the number of columns is known at compile-time to...
Definition DenseBase.h:153
@ SizeAtCompileTime
This is equal to the number of coefficients, i.e.
Definition DenseBase.h:113
@ MaxSizeAtCompileTime
This value is equal to the maximum possible number of coefficients that this expression might have.
Definition DenseBase.h:141
@ Flags
This stores expression Flags flags which may or may not be inherited by new expressions constructed f...
Definition DenseBase.h:165
@ ColsAtCompileTime
The number of columns at compile-time.
Definition DenseBase.h:106
@ MaxColsAtCompileTime
This value is equal to the maximum possible number of columns that this expression might have.
Definition DenseBase.h:130
@ MaxRowsAtCompileTime
This value is equal to the maximum possible number of rows that this expression might have.
Definition DenseBase.h:119
@ RowsAtCompileTime
The number of rows at compile-time.
Definition DenseBase.h:100
EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE EvalReturnType eval() const
Definition DenseBase.h:407
EIGEN_DEPRECATED EIGEN_DEVICE_FUNC Derived & lazyAssign(const DenseBase< OtherDerived > &other)
internal::conditional< internal::is_same< typenameinternal::traits< Derived >::XprKind, MatrixXpr >::value, PlainMatrix, PlainArray >::type PlainObject
The plain matrix or array type corresponding to this expression.
Definition DenseBase.h:210
Base class for all dense matrices, vectors, and expressions.
Definition MatrixBase.h:50
EIGEN_DEVICE_FUNC RealScalar squaredNorm() const
Definition Dot.h:91
EIGEN_DEVICE_FUNC void makeHouseholderInPlace(Scalar &tau, RealScalar &beta)
Computes the elementary reflector H such that: where the transformation H is: and the vector v is: ...
Definition Householder.h:43
const LDLT< PlainObject > ldlt() const
\cholesky_module
Definition LDLT.h:681
EIGEN_DEVICE_FUNC bool operator==(const MatrixBase< OtherDerived > &other) const
Definition MatrixBase.h:284
RealScalar operatorNorm() const
Computes the L2 operator norm.
Definition MatrixBaseEigenvalues.h:120
const MatrixFunctionReturnValue< Derived > matrixFunction(StemFunction f) const
Helper function for the unsupported MatrixFunctions module.
void computeInverseWithCheck(ResultType &inverse, bool &invertible, const RealScalar &absDeterminantThreshold=NumTraits< Scalar >::dummy_precision()) const
\lu_module
Definition InverseImpl.h:418
static EIGEN_DEVICE_FUNC const BasisReturnType UnitZ()
Definition CwiseNullaryOp.h:950
EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE const ArrayWrapper< const Derived > array() const
Definition MatrixBase.h:316
bool isLowerTriangular(const RealScalar &prec=NumTraits< Scalar >::dummy_precision()) const
Definition TriangularMatrix.h:683
static EIGEN_DEVICE_FUNC const BasisReturnType Unit(Index size, Index i)
Definition CwiseNullaryOp.h:902
EIGEN_DEVICE_FUNC const DiagonalWrapper< const Derived > asDiagonal() const
Definition DiagonalMatrix.h:325
@ SizeAtCompileTime
This is equal to the number of coefficients, i.e.
Definition DenseBase.h:113
const FullPivLU< PlainObject > fullPivLu() const
\lu_module
Definition FullPivLU.h:870
EIGEN_DEVICE_FUNC ScalarBinaryOpTraits< typenameinternal::traits< Derived >::Scalar, typenameinternal::traits< OtherDerived >::Scalar >::ReturnType dot(const MatrixBase< OtherDerived > &other) const
static EIGEN_DEVICE_FUNC const IdentityReturnType Identity()
Definition CwiseNullaryOp.h:799
EigenvaluesReturnType eigenvalues() const
Computes the eigenvalues of a matrix.
Definition MatrixBaseEigenvalues.h:67
const SparseView< Derived > sparseView(const Scalar &m_reference=Scalar(0), const typename NumTraits< Scalar >::Real &m_epsilon=NumTraits< Scalar >::dummy_precision()) const
Definition SparseView.h:226
Derived & operator*=(const EigenBase< OtherDerived > &other)
replaces *this by *this * other.
Definition MatrixBase.h:509
void applyOnTheLeft(const EigenBase< OtherDerived > &other)
replaces *this by other * *this.
Definition MatrixBase.h:534
EIGEN_DEVICE_FUNC Index diagonalSize() const
Definition MatrixBase.h:102
Matrix< Scalar, EIGEN_SIZE_MAX(RowsAtCompileTime, ColsAtCompileTime), EIGEN_SIZE_MAX(RowsAtCompileTime, ColsAtCompileTime)> SquareMatrixType
type of the equivalent square matrix
Definition MatrixBase.h:96
void applyOnTheRight(const EigenBase< OtherDerived > &other)
replaces *this by *this * other.
Definition MatrixBase.h:522
RealScalar blueNorm() const
Definition StableNorm.h:229
EIGEN_DEVICE_FUNC void stableNormalize()
Normalizes the vector while avoid underflow and overflow.
Definition Dot.h:186
bool isIdentity(const RealScalar &prec=NumTraits< Scalar >::dummy_precision()) const
Definition CwiseNullaryOp.h:816
RealScalar hypotNorm() const
Definition StableNorm.h:241
JacobiSVD< PlainObject > jacobiSvd(unsigned int computationOptions=0) const
\svd_module
Definition JacobiSVD.h:806
const PartialPivLU< PlainObject > partialPivLu() const
\lu_module
Definition PartialPivLU.h:602
RealScalar stableNorm() const
Definition StableNorm.h:213
EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE Derived & operator-=(const MatrixBase< OtherDerived > &other)
replaces *this by *this - other.
Definition CwiseBinaryOp.h:162
EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE ArrayWrapper< Derived > array()
Definition MatrixBase.h:313
EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE Derived & operator=(const MatrixBase &other)
Special case of the template operator=, in order to prevent the compiler from generating a default op...
Definition Assign.h:55
EIGEN_DEVICE_FUNC const AdjointReturnType adjoint() const
Definition Transpose.h:221
@ ColsAtCompileTime
The number of columns at compile-time.
Definition DenseBase.h:106
void computeInverseAndDetWithCheck(ResultType &inverse, typename ResultType::Scalar &determinant, bool &invertible, const RealScalar &absDeterminantThreshold=NumTraits< Scalar >::dummy_precision()) const
\lu_module
Definition InverseImpl.h:377
NoAlias< Derived, Eigen::MatrixBase > EIGEN_DEVICE_FUNC noalias()
Definition NoAlias.h:102
EIGEN_DEVICE_FUNC void normalize()
Normalizes the vector, i.e.
Definition Dot.h:140
const FullPivHouseholderQR< PlainObject > fullPivHouseholderQr() const
Definition FullPivHouseholderQR.h:706
bool isUnitary(const RealScalar &prec=NumTraits< Scalar >::dummy_precision()) const
Definition Dot.h:297
const LLT< PlainObject > llt() const
\cholesky_module
Definition LLT.h:540
EIGEN_DEVICE_FUNC bool operator!=(const MatrixBase< OtherDerived > &other) const
Definition MatrixBase.h:292
bool isDiagonal(const RealScalar &prec=NumTraits< Scalar >::dummy_precision()) const
Definition DiagonalMatrix.h:339
const HouseholderQR< PlainObject > householderQr() const
Definition HouseholderQR.h:427
EIGEN_DEVICE_FUNC void applyHouseholderOnTheLeft(const EssentialPart &essential, const Scalar &tau, Scalar *workspace)
Apply the elementary reflector H given by with from the left to a vector or matrix.
Definition Householder.h:116
EIGEN_DEVICE_FUNC void makeHouseholder(EssentialPart &essential, Scalar &tau, RealScalar &beta) const
Computes the elementary reflector H such that: where the transformation H is: and the vector v is: ...
Definition Householder.h:67
bool isUpperTriangular(const RealScalar &prec=NumTraits< Scalar >::dummy_precision()) const
Definition TriangularMatrix.h:658
EIGEN_DEVICE_FUNC const PlainObject normalized() const
Definition Dot.h:119
EIGEN_DEVICE_FUNC const PlainObject stableNormalized() const
Definition Dot.h:162
EIGEN_DEVICE_FUNC Scalar trace() const
Definition Redux.h:508
static EIGEN_DEVICE_FUNC const BasisReturnType UnitY()
Definition CwiseNullaryOp.h:940
static EIGEN_DEVICE_FUNC const BasisReturnType UnitX()
Definition CwiseNullaryOp.h:930
static EIGEN_DEVICE_FUNC const BasisReturnType UnitW()
Definition CwiseNullaryOp.h:960
EIGEN_DEVICE_FUNC RealScalar norm() const
Definition Dot.h:103
EIGEN_DEVICE_FUNC void adjointInPlace()
This is the "in place" version of adjoint(): it replaces *this by its own transpose.
Definition Transpose.h:375
const Derived & forceAlignedAccess() const
Definition MatrixBase.h:299
EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE Derived & operator+=(const MatrixBase< OtherDerived > &other)
replaces *this by *this + other.
Definition CwiseBinaryOp.h:175
EIGEN_DEVICE_FUNC void applyHouseholderOnTheRight(const EssentialPart &essential, const Scalar &tau, Scalar *workspace)
Apply the elementary reflector H given by with from the right to a vector or matrix.
Definition Householder.h:154
@ RowsAtCompileTime
The number of rows at compile-time.
Definition DenseBase.h:100
EIGEN_DEVICE_FUNC Scalar determinant() const
\lu_module
Definition Determinant.h:108
EIGEN_DEVICE_FUNC const Inverse< Derived > inverse() const
\lu_module
Definition InverseImpl.h:348
const ColPivHouseholderQR< PlainObject > colPivHouseholderQr() const
Definition ColPivHouseholderQR.h:667
EIGEN_DEVICE_FUNC Derived & setIdentity()
Writes the identity expression (not necessarily square) into *this.
Definition CwiseNullaryOp.h:873
BDCSVD< PlainObject > bdcSvd(unsigned int computationOptions=0) const
\svd_module
Definition BDCSVD.h:1370
const CompleteOrthogonalDecomposition< PlainObject > completeOrthogonalDecomposition() const
Definition CompleteOrthogonalDecomposition.h:629
EIGEN_DEVICE_FUNC DiagonalReturnType diagonal()
Definition Diagonal.h:187
bool isOrthogonal(const MatrixBase< OtherDerived > &other, const RealScalar &prec=NumTraits< Scalar >::dummy_precision()) const
Definition Dot.h:278
EIGEN_DEVICE_FUNC Derived & setUnit(Index i)
Set the coefficients of *this to the i-th unit (basis) vector.
Definition CwiseNullaryOp.h:972
const PartialPivLU< PlainObject > lu() const
\lu_module
Definition PartialPivLU.h:617
Derived & forceAlignedAccess()
Definition MatrixBase.h:300
Definition ForwardDeclarations.h:309
Definition ForwardDeclarations.h:305
Definition ForwardDeclarations.h:307
Definition ForwardDeclarations.h:308
Definition ForwardDeclarations.h:306
The matrix class, also used for vectors and row-vectors.
Definition Matrix.h:180
Base class of any sparse matrices or sparse expressions.
Definition SparseMatrixBase.h:28
EIGEN_DEVICE_FUNC Matrix< Scalar, 3, 1 > eulerAngles(Index a0, Index a1, Index a2) const
\geometry_module
Definition EulerAngles.h:37
EIGEN_DEVICE_FUNC PlainObject unitOrthogonal(void) const
\geometry_module
Definition OrthoMethods.h:227
EIGEN_DEVICE_FUNC HomogeneousReturnType homogeneous() const
\geometry_module
Definition Homogeneous.h:132
EIGEN_DEVICE_FUNC const HNormalizedReturnType hnormalized() const
\geometry_module
Definition Homogeneous.h:174
EIGEN_DEVICE_FUNC PlainObject cross3(const MatrixBase< OtherDerived > &other) const
\geometry_module
Definition OrthoMethods.h:83
@ ColMajor
Storage order is column major (see TopicStorageOrders).
Definition Constants.h:319
@ Horizontal
For Reverse, all rows are reversed; for PartialReduxExpr and VectorwiseOp, act on rows.
Definition Constants.h:267
@ Vertical
For Reverse, all columns are reversed; for PartialReduxExpr and VectorwiseOp, act on columns.
Definition Constants.h:264
const unsigned int RowMajorBit
for a matrix, this means that the storage order is row-major.
Definition Constants.h:66
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
const int Dynamic
This value means that a positive quantity (e.g., a size) is not known at compile-time,...
Definition Constants.h:22
Holds information about the various numeric (i.e.
Definition NumTraits.h:236
Definition Meta.h:109
Definition ForwardDeclarations.h:17
Definition Meta.h:96