DenseBase.h
1 // This file is part of Eigen, a lightweight C++ template library
2 // for linear algebra.
3 //
4 // Copyright (C) 2007-2010 Benoit Jacob <jacob.benoit.1@gmail.com>
5 // Copyright (C) 2008-2010 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_DENSEBASE_H
12 #define EIGEN_DENSEBASE_H
13 
14 namespace Eigen {
15 
31 template<typename Derived> class DenseBase
32 #ifndef EIGEN_PARSED_BY_DOXYGEN
33  : public internal::special_scalar_op_base<Derived,typename internal::traits<Derived>::Scalar,
34  typename NumTraits<typename internal::traits<Derived>::Scalar>::Real>
35 #else
36  : public DenseCoeffsBase<Derived>
37 #endif // not EIGEN_PARSED_BY_DOXYGEN
38 {
39  public:
40  using internal::special_scalar_op_base<Derived,typename internal::traits<Derived>::Scalar,
41  typename NumTraits<typename internal::traits<Derived>::Scalar>::Real>::operator*;
42 
43  class InnerIterator;
44 
45  typedef typename internal::traits<Derived>::StorageKind StorageKind;
46 
51  typedef typename internal::traits<Derived>::Index Index;
52 
53  typedef typename internal::traits<Derived>::Scalar Scalar;
54  typedef typename internal::packet_traits<Scalar>::type PacketScalar;
55  typedef typename NumTraits<Scalar>::Real RealScalar;
56 
57  typedef DenseCoeffsBase<Derived> Base;
58  using Base::derived;
59  using Base::const_cast_derived;
60  using Base::rows;
61  using Base::cols;
62  using Base::size;
63  using Base::rowIndexByOuterInner;
64  using Base::colIndexByOuterInner;
65  using Base::coeff;
66  using Base::coeffByOuterInner;
67  using Base::packet;
68  using Base::packetByOuterInner;
69  using Base::writePacket;
70  using Base::writePacketByOuterInner;
71  using Base::coeffRef;
72  using Base::coeffRefByOuterInner;
73  using Base::copyCoeff;
74  using Base::copyCoeffByOuterInner;
75  using Base::copyPacket;
76  using Base::copyPacketByOuterInner;
77  using Base::operator();
78  using Base::operator[];
79  using Base::x;
80  using Base::y;
81  using Base::z;
82  using Base::w;
83  using Base::stride;
84  using Base::innerStride;
85  using Base::outerStride;
86  using Base::rowStride;
87  using Base::colStride;
88  typedef typename Base::CoeffReturnType CoeffReturnType;
89 
90  enum {
91 
92  RowsAtCompileTime = internal::traits<Derived>::RowsAtCompileTime,
98  ColsAtCompileTime = internal::traits<Derived>::ColsAtCompileTime,
105  SizeAtCompileTime = (internal::size_at_compile_time<internal::traits<Derived>::RowsAtCompileTime,
106  internal::traits<Derived>::ColsAtCompileTime>::ret),
111  MaxRowsAtCompileTime = internal::traits<Derived>::MaxRowsAtCompileTime,
122  MaxColsAtCompileTime = internal::traits<Derived>::MaxColsAtCompileTime,
133  MaxSizeAtCompileTime = (internal::size_at_compile_time<internal::traits<Derived>::MaxRowsAtCompileTime,
134  internal::traits<Derived>::MaxColsAtCompileTime>::ret),
145  IsVectorAtCompileTime = internal::traits<Derived>::MaxRowsAtCompileTime == 1
146  || internal::traits<Derived>::MaxColsAtCompileTime == 1,
152  Flags = internal::traits<Derived>::Flags,
159  InnerSizeAtCompileTime = int(IsVectorAtCompileTime) ? int(SizeAtCompileTime)
160  : int(IsRowMajor) ? int(ColsAtCompileTime) : int(RowsAtCompileTime),
161 
162  CoeffReadCost = internal::traits<Derived>::CoeffReadCost,
167  InnerStrideAtCompileTime = internal::inner_stride_at_compile_time<Derived>::ret,
168  OuterStrideAtCompileTime = internal::outer_stride_at_compile_time<Derived>::ret
169  };
171  enum { ThisConstantIsPrivateInPlainObjectBase };
172 
175  inline Index nonZeros() const { return size(); }
186  Index outerSize() const
187  {
188  return IsVectorAtCompileTime ? 1
189  : int(IsRowMajor) ? this->rows() : this->cols();
190  }
197  Index innerSize() const
198  {
199  return IsVectorAtCompileTime ? this->size()
200  : int(IsRowMajor) ? this->cols() : this->rows();
201  }
202 
207  void resize(Index size)
208  {
209  EIGEN_ONLY_USED_FOR_DEBUG(size);
210  eigen_assert(size == this->size()
211  && "DenseBase::resize() does not actually allow to resize.");
212  }
217  void resize(Index rows, Index cols)
218  {
219  EIGEN_ONLY_USED_FOR_DEBUG(rows);
220  EIGEN_ONLY_USED_FOR_DEBUG(cols);
221  eigen_assert(rows == this->rows() && cols == this->cols()
222  && "DenseBase::resize() does not actually allow to resize.");
223  }
224 
225 #ifndef EIGEN_PARSED_BY_DOXYGEN
226 
228  typedef CwiseNullaryOp<internal::scalar_constant_op<Scalar>,Derived> ConstantReturnType;
230  typedef CwiseNullaryOp<internal::linspaced_op<Scalar,false>,Derived> SequentialLinSpacedReturnType;
232  typedef CwiseNullaryOp<internal::linspaced_op<Scalar,true>,Derived> RandomAccessLinSpacedReturnType;
234  typedef Matrix<typename NumTraits<typename internal::traits<Derived>::Scalar>::Real, internal::traits<Derived>::ColsAtCompileTime, 1> EigenvaluesReturnType;
235 
236 #endif // not EIGEN_PARSED_BY_DOXYGEN
237 
239  template<typename OtherDerived>
240  Derived& operator=(const DenseBase<OtherDerived>& other);
241 
245  Derived& operator=(const DenseBase& other);
246 
247  template<typename OtherDerived>
248  Derived& operator=(const EigenBase<OtherDerived> &other);
249 
250  template<typename OtherDerived>
251  Derived& operator+=(const EigenBase<OtherDerived> &other);
252 
253  template<typename OtherDerived>
254  Derived& operator-=(const EigenBase<OtherDerived> &other);
255 
256  template<typename OtherDerived>
257  Derived& operator=(const ReturnByValue<OtherDerived>& func);
258 
259 #ifndef EIGEN_PARSED_BY_DOXYGEN
260 
261  template<typename OtherDerived>
262  Derived& lazyAssign(const DenseBase<OtherDerived>& other);
263 #endif // not EIGEN_PARSED_BY_DOXYGEN
264 
266 
267  template<unsigned int Added,unsigned int Removed>
268  const Flagged<Derived, Added, Removed> flagged() const;
269 
270  template<typename OtherDerived>
272 
276  void transposeInPlace();
277 #ifndef EIGEN_NO_DEBUG
278  protected:
279  template<typename OtherDerived>
280  void checkTransposeAliasing(const OtherDerived& other) const;
281  public:
282 #endif
283 
286  template<int Size> struct FixedSegmentReturnType { typedef VectorBlock<Derived, Size> Type; };
287  template<int Size> struct ConstFixedSegmentReturnType { typedef const VectorBlock<const Derived, Size> Type; };
288 
289  // Note: The "DenseBase::" prefixes are added to help MSVC9 to match these declarations with the later implementations.
290  SegmentReturnType segment(Index start, Index size);
291  typename DenseBase::ConstSegmentReturnType segment(Index start, Index size) const;
292 
293  SegmentReturnType head(Index size);
294  typename DenseBase::ConstSegmentReturnType head(Index size) const;
295 
296  SegmentReturnType tail(Index size);
297  typename DenseBase::ConstSegmentReturnType tail(Index size) const;
298 
299  template<int Size> typename FixedSegmentReturnType<Size>::Type head();
300  template<int Size> typename ConstFixedSegmentReturnType<Size>::Type head() const;
301 
302  template<int Size> typename FixedSegmentReturnType<Size>::Type tail();
303  template<int Size> typename ConstFixedSegmentReturnType<Size>::Type tail() const;
304 
305  template<int Size> typename FixedSegmentReturnType<Size>::Type segment(Index start);
306  template<int Size> typename ConstFixedSegmentReturnType<Size>::Type segment(Index start) const;
307 
308  static const ConstantReturnType
309  Constant(Index rows, Index cols, const Scalar& value);
310  static const ConstantReturnType
311  Constant(Index size, const Scalar& value);
312  static const ConstantReturnType
313  Constant(const Scalar& value);
314 
315  static const SequentialLinSpacedReturnType
316  LinSpaced(Sequential_t, Index size, const Scalar& low, const Scalar& high);
317  static const RandomAccessLinSpacedReturnType
318  LinSpaced(Index size, const Scalar& low, const Scalar& high);
319  static const SequentialLinSpacedReturnType
320  LinSpaced(Sequential_t, const Scalar& low, const Scalar& high);
321  static const RandomAccessLinSpacedReturnType
322  LinSpaced(const Scalar& low, const Scalar& high);
323 
324  template<typename CustomNullaryOp>
326  NullaryExpr(Index rows, Index cols, const CustomNullaryOp& func);
327  template<typename CustomNullaryOp>
329  NullaryExpr(Index size, const CustomNullaryOp& func);
330  template<typename CustomNullaryOp>
332  NullaryExpr(const CustomNullaryOp& func);
333 
334  static const ConstantReturnType Zero(Index rows, Index cols);
335  static const ConstantReturnType Zero(Index size);
336  static const ConstantReturnType Zero();
337  static const ConstantReturnType Ones(Index rows, Index cols);
338  static const ConstantReturnType Ones(Index size);
339  static const ConstantReturnType Ones();
340 
341  void fill(const Scalar& value);
342  Derived& setConstant(const Scalar& value);
343  Derived& setLinSpaced(Index size, const Scalar& low, const Scalar& high);
344  Derived& setLinSpaced(const Scalar& low, const Scalar& high);
345  Derived& setZero();
346  Derived& setOnes();
347  Derived& setRandom();
349  template<typename OtherDerived>
350  bool isApprox(const DenseBase<OtherDerived>& other,
351  RealScalar prec = NumTraits<Scalar>::dummy_precision()) const;
352  bool isMuchSmallerThan(const RealScalar& other,
353  RealScalar prec = NumTraits<Scalar>::dummy_precision()) const;
354  template<typename OtherDerived>
355  bool isMuchSmallerThan(const DenseBase<OtherDerived>& other,
356  RealScalar prec = NumTraits<Scalar>::dummy_precision()) const;
357 
358  bool isApproxToConstant(const Scalar& value, RealScalar prec = NumTraits<Scalar>::dummy_precision()) const;
359  bool isConstant(const Scalar& value, RealScalar prec = NumTraits<Scalar>::dummy_precision()) const;
360  bool isZero(RealScalar prec = NumTraits<Scalar>::dummy_precision()) const;
361  bool isOnes(RealScalar prec = NumTraits<Scalar>::dummy_precision()) const;
362 
363  inline Derived& operator*=(const Scalar& other);
364  inline Derived& operator/=(const Scalar& other);
365 
366  typedef typename internal::add_const_on_value_type<typename internal::eval<Derived>::type>::type EvalReturnType;
372  EIGEN_STRONG_INLINE EvalReturnType eval() const
373  {
374  // Even though MSVC does not honor strong inlining when the return type
375  // is a dynamic matrix, we desperately need strong inlining for fixed
376  // size types on MSVC.
377  return typename internal::eval<Derived>::type(derived());
378  }
379 
383  template<typename OtherDerived>
384  void swap(const DenseBase<OtherDerived>& other,
385  int = OtherDerived::ThisConstantIsPrivateInPlainObjectBase)
386  {
387  SwapWrapper<Derived>(derived()).lazyAssign(other.derived());
388  }
389 
393  template<typename OtherDerived>
395  {
396  SwapWrapper<Derived>(derived()).lazyAssign(other.derived());
397  }
398 
400  inline const NestByValue<Derived> nestByValue() const;
401  inline const ForceAlignedAccess<Derived> forceAlignedAccess() const;
402  inline ForceAlignedAccess<Derived> forceAlignedAccess();
403  template<bool Enable> inline const typename internal::conditional<Enable,ForceAlignedAccess<Derived>,Derived&>::type forceAlignedAccessIf() const;
404  template<bool Enable> inline typename internal::conditional<Enable,ForceAlignedAccess<Derived>,Derived&>::type forceAlignedAccessIf();
405 
406  Scalar sum() const;
407  Scalar mean() const;
408  Scalar trace() const;
409 
410  Scalar prod() const;
411 
412  typename internal::traits<Derived>::Scalar minCoeff() const;
413  typename internal::traits<Derived>::Scalar maxCoeff() const;
415  template<typename IndexType>
416  typename internal::traits<Derived>::Scalar minCoeff(IndexType* row, IndexType* col) const;
417  template<typename IndexType>
418  typename internal::traits<Derived>::Scalar maxCoeff(IndexType* row, IndexType* col) const;
419  template<typename IndexType>
420  typename internal::traits<Derived>::Scalar minCoeff(IndexType* index) const;
421  template<typename IndexType>
422  typename internal::traits<Derived>::Scalar maxCoeff(IndexType* index) const;
423 
424  template<typename BinaryOp>
425  typename internal::result_of<BinaryOp(typename internal::traits<Derived>::Scalar)>::type
426  redux(const BinaryOp& func) const;
427 
428  template<typename Visitor>
429  void visit(Visitor& func) const;
430 
431  inline const WithFormat<Derived> format(const IOFormat& fmt) const;
432 
434  CoeffReturnType value() const
435  {
436  EIGEN_STATIC_ASSERT_SIZE_1x1(Derived)
437  eigen_assert(this->rows() == 1 && this->cols() == 1);
438  return derived().coeff(0,0);
439  }
440 
442 
443  bool all(void) const;
444  bool any(void) const;
445  Index count() const;
446 
447  typedef VectorwiseOp<Derived, Horizontal> RowwiseReturnType;
448  typedef const VectorwiseOp<const Derived, Horizontal> ConstRowwiseReturnType;
449  typedef VectorwiseOp<Derived, Vertical> ColwiseReturnType;
450  typedef const VectorwiseOp<const Derived, Vertical> ConstColwiseReturnType;
451 
456 
457  static const CwiseNullaryOp<internal::scalar_random_op<Scalar>,Derived> Random(Index rows, Index cols);
458  static const CwiseNullaryOp<internal::scalar_random_op<Scalar>,Derived> Random(Index size);
459  static const CwiseNullaryOp<internal::scalar_random_op<Scalar>,Derived> Random();
460 
461  template<typename ThenDerived,typename ElseDerived>
462  const Select<Derived,ThenDerived,ElseDerived>
463  select(const DenseBase<ThenDerived>& thenMatrix,
464  const DenseBase<ElseDerived>& elseMatrix) const;
466  template<typename ThenDerived>
467  inline const Select<Derived,ThenDerived, typename ThenDerived::ConstantReturnType>
468  select(const DenseBase<ThenDerived>& thenMatrix, typename ThenDerived::Scalar elseScalar) const;
469 
470  template<typename ElseDerived>
471  inline const Select<Derived, typename ElseDerived::ConstantReturnType, ElseDerived >
472  select(typename ElseDerived::Scalar thenScalar, const DenseBase<ElseDerived>& elseMatrix) const;
473 
474  template<int p> RealScalar lpNorm() const;
475 
476  template<int RowFactor, int ColFactor>
477  const Replicate<Derived,RowFactor,ColFactor> replicate() const;
478  const Replicate<Derived,Dynamic,Dynamic> replicate(Index rowFacor,Index colFactor) const;
479 
480  typedef Reverse<Derived, BothDirections> ReverseReturnType;
481  typedef const Reverse<const Derived, BothDirections> ConstReverseReturnType;
484  void reverseInPlace();
485 
486 #define EIGEN_CURRENT_STORAGE_BASE_CLASS Eigen::DenseBase
487 # include "../plugins/BlockMethods.h"
488 # ifdef EIGEN_DENSEBASE_PLUGIN
489 # include EIGEN_DENSEBASE_PLUGIN
490 # endif
491 #undef EIGEN_CURRENT_STORAGE_BASE_CLASS
492 
493 #ifdef EIGEN2_SUPPORT
494 
495  Block<Derived> corner(CornerType type, Index cRows, Index cCols);
496  const Block<Derived> corner(CornerType type, Index cRows, Index cCols) const;
497  template<int CRows, int CCols>
499  template<int CRows, int CCols>
500  const Block<Derived, CRows, CCols> corner(CornerType type) const;
501 
502 #endif // EIGEN2_SUPPORT
503 
505  // disable the use of evalTo for dense objects with a nice compilation error
506  template<typename Dest> inline void evalTo(Dest& ) const
507  {
508  EIGEN_STATIC_ASSERT((internal::is_same<Dest,void>::value),THE_EVAL_EVALTO_FUNCTION_SHOULD_NEVER_BE_CALLED_FOR_DENSE_OBJECTS);
509  }
510 
511  protected:
514  {
515  /* Just checks for self-consistency of the flags.
516  * Only do it when debugging Eigen, as this borders on paranoiac and could slow compilation down
517  */
518 #ifdef EIGEN_INTERNAL_DEBUGGING
519  EIGEN_STATIC_ASSERT((EIGEN_IMPLIES(MaxRowsAtCompileTime==1 && MaxColsAtCompileTime!=1, int(IsRowMajor))
520  && EIGEN_IMPLIES(MaxColsAtCompileTime==1 && MaxRowsAtCompileTime!=1, int(!IsRowMajor))),
521  INVALID_STORAGE_ORDER_FOR_THIS_VECTOR_EXPRESSION)
522 #endif
523  }
524 
525  private:
526  explicit DenseBase(int);
527  DenseBase(int,int);
528  template<typename OtherDerived> explicit DenseBase(const DenseBase<OtherDerived>&);
529 };
530 
531 } // end namespace Eigen
532 
533 #endif // EIGEN_DENSEBASE_H
Generic expression of a matrix where all coefficients are defined by a functor.
Definition: CwiseNullaryOp.h:49
Derived & setRandom()
Definition: Random.h:110
RowXpr row(Index i)
Definition: DenseBase.h:570
static const CwiseNullaryOp< CustomNullaryOp, Derived > NullaryExpr(Index rows, Index cols, const CustomNullaryOp &func)
Definition: CwiseNullaryOp.h:117
Scalar prod() const
Definition: Redux.h:384
const Select< Derived, ThenDerived, ElseDerived > select(const DenseBase< ThenDerived > &thenMatrix, const DenseBase< ElseDerived > &elseMatrix) const
Definition: Select.h:124
Enforce aligned packet loads and stores regardless of what is requested.
Definition: ForceAlignedAccess.h:34
bool isApproxToConstant(const Scalar &value, RealScalar prec=NumTraits< Scalar >::dummy_precision()) const
Definition: CwiseNullaryOp.h:298
Index count() const
Definition: BooleanRedux.h:131
Definition: DenseBase.h:157
bool isOnes(RealScalar prec=NumTraits< Scalar >::dummy_precision()) const
Definition: CwiseNullaryOp.h:612
ReverseReturnType reverse()
Definition: Reverse.h:191
internal::traits< Derived >::Scalar maxCoeff() const
Definition: Redux.h:346
const NestByValue< Derived > nestByValue() const
Definition: NestByValue.h:104
void fill(const Scalar &value)
Definition: CwiseNullaryOp.h:322
Expression of the transpose of a matrix.
Definition: Transpose.h:57
Definition: DenseBase.h:133
Derived & setOnes()
Definition: CwiseNullaryOp.h:625
Definition: DenseBase.h:92
Derived & operator=(const DenseBase< OtherDerived > &other)
Definition: Assign.h:541
const Replicate< Derived, RowFactor, ColFactor > replicate() const
Definition: Replicate.h:139
CornerType
Definition: Constants.h:196
Definition: DenseBase.h:162
void visit(Visitor &func) const
Definition: Visitor.h:77
void swap(const DenseBase< OtherDerived > &other, int=OtherDerived::ThisConstantIsPrivateInPlainObjectBase)
Definition: DenseBase.h:384
DenseBase()
Definition: DenseBase.h:513
Derived & setZero()
Definition: CwiseNullaryOp.h:499
Holds information about the various numeric (i.e. scalar) types allowed by Eigen.
Definition: NumTraits.h:88
const Flagged< Derived, Added, Removed > flagged() const
Definition: Flagged.h:133
Pseudo expression providing partial reduction operations.
Definition: ForwardDeclarations.h:213
ConstRowwiseReturnType rowwise() const
Definition: VectorwiseOp.h:580
ColXpr col(Index i)
Definition: DenseBase.h:553
Base class for all dense matrices, vectors, and arrays.
Definition: DenseBase.h:31
Definition: Constants.h:207
CoeffReturnType value() const
Definition: DenseBase.h:434
bool isZero(RealScalar prec=NumTraits< Scalar >::dummy_precision()) const
Definition: CwiseNullaryOp.h:482
Helper class used by the comma initializer operator.
Definition: CommaInitializer.h:28
Definition: DenseBase.h:152
Definition: EigenBase.h:26
void swap(PlainObjectBase< OtherDerived > &other)
Definition: DenseBase.h:394
void reverseInPlace()
Definition: Reverse.h:217
Expression of a fixed-size or dynamic-size sub-vector.
Definition: ForwardDeclarations.h:84
Definition: DenseBase.h:98
Scalar sum() const
Definition: Redux.h:357
Index outerSize() const
Definition: DenseBase.h:186
Derived & setLinSpaced(Index size, const Scalar &low, const Scalar &high)
Sets a linearly space vector.
Definition: CwiseNullaryOp.h:387
bool all(void) const
Definition: BooleanRedux.h:79
Derived & setConstant(const Scalar &value)
Definition: CwiseNullaryOp.h:332
CommaInitializer< Derived > operator<<(const Scalar &s)
Definition: CommaInitializer.h:125
static const CwiseNullaryOp< internal::scalar_random_op< Scalar >, Derived > Random()
Definition: Random.h:97
Index nonZeros() const
Definition: DenseBase.h:175
Dense storage base class for matrices and arrays.
Definition: PlainObjectBase.h:69
Expression of the multiple replication of a matrix or vector.
Definition: Replicate.h:62
Definition: DenseBase.h:122
bool isConstant(const Scalar &value, RealScalar prec=NumTraits< Scalar >::dummy_precision()) const
Definition: CwiseNullaryOp.h:312
ConstColwiseReturnType colwise() const
Definition: VectorwiseOp.h:555
Definition: DenseBase.h:105
Expression which must be nested by value.
Definition: NestByValue.h:35
EvalReturnType eval() const
Definition: DenseBase.h:372
SegmentReturnType segment(Index start, Index size)
Definition: VectorBlock.h:111
Definition: Constants.h:204
const WithFormat< Derived > format(const IOFormat &fmt) const
Definition: IO.h:118
internal::traits< Derived >::Index Index
The type of indices.
Definition: DenseBase.h:51
bool isApprox(const DenseBase< OtherDerived > &other, RealScalar prec=NumTraits< Scalar >::dummy_precision()) const
Definition: Fuzzy.h:98
void transposeInPlace()
Definition: Transpose.h:290
static const ConstantReturnType Ones()
Definition: CwiseNullaryOp.h:597
Expression of a fixed-size or dynamic-size block.
Definition: Block.h:97
Eigen::Transpose< Derived > transpose()
Definition: Transpose.h:198
static const SequentialLinSpacedReturnType LinSpaced(Sequential_t, Index size, const Scalar &low, const Scalar &high)
Sets a linearly space vector.
Definition: CwiseNullaryOp.h:242
bool any(void) const
Definition: BooleanRedux.h:105
SegmentReturnType tail(Index size)
Definition: VectorBlock.h:175
static const ConstantReturnType Zero()
Definition: CwiseNullaryOp.h:468
void resize(Index size)
Definition: DenseBase.h:207
const unsigned int RowMajorBit
Definition: Constants.h:48
Definition: Constants.h:210
internal::traits< Derived >::Scalar minCoeff() const
Definition: Redux.h:337
The matrix class, also used for vectors and row-vectors.
Definition: Matrix.h:127
Index innerSize() const
Definition: DenseBase.h:197
Pseudo expression providing matrix output with given format.
Definition: IO.h:91
Expression of the reverse of a vector or matrix.
Definition: Reverse.h:70
Definition: DenseBase.h:145
Stores a set of parameters controlling the way matrices are printed.
Definition: IO.h:50
void resize(Index rows, Index cols)
Definition: DenseBase.h:217
Scalar mean() const
Definition: Redux.h:370
Definition: DenseBase.h:111
static const ConstantReturnType Constant(Index rows, Index cols, const Scalar &value)
Definition: CwiseNullaryOp.h:179
Expression of a coefficient wise version of the C++ ternary operator ?:
Definition: Select.h:55