VectorwiseOp.h revision 7faaa9f3f0df9d23790277834d426c3d992ac3ba
1// This file is part of Eigen, a lightweight C++ template library
2// for linear algebra.
3//
4// Copyright (C) 2008-2010 Gael Guennebaud <gael.guennebaud@inria.fr>
5// Copyright (C) 2006-2008 Benoit Jacob <jacob.benoit.1@gmail.com>
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_PARTIAL_REDUX_H
12#define EIGEN_PARTIAL_REDUX_H
13
14namespace Eigen {
15
16/** \class PartialReduxExpr
17  * \ingroup Core_Module
18  *
19  * \brief Generic expression of a partially reduxed matrix
20  *
21  * \tparam MatrixType the type of the matrix we are applying the redux operation
22  * \tparam MemberOp type of the member functor
23  * \tparam Direction indicates the direction of the redux (#Vertical or #Horizontal)
24  *
25  * This class represents an expression of a partial redux operator of a matrix.
26  * It is the return type of some VectorwiseOp functions,
27  * and most of the time this is the only way it is used.
28  *
29  * \sa class VectorwiseOp
30  */
31
32template< typename MatrixType, typename MemberOp, int Direction>
33class PartialReduxExpr;
34
35namespace internal {
36template<typename MatrixType, typename MemberOp, int Direction>
37struct traits<PartialReduxExpr<MatrixType, MemberOp, Direction> >
38 : traits<MatrixType>
39{
40  typedef typename MemberOp::result_type Scalar;
41  typedef typename traits<MatrixType>::StorageKind StorageKind;
42  typedef typename traits<MatrixType>::XprKind XprKind;
43  typedef typename MatrixType::Scalar InputScalar;
44  typedef typename nested<MatrixType>::type MatrixTypeNested;
45  typedef typename remove_all<MatrixTypeNested>::type _MatrixTypeNested;
46  enum {
47    RowsAtCompileTime = Direction==Vertical   ? 1 : MatrixType::RowsAtCompileTime,
48    ColsAtCompileTime = Direction==Horizontal ? 1 : MatrixType::ColsAtCompileTime,
49    MaxRowsAtCompileTime = Direction==Vertical   ? 1 : MatrixType::MaxRowsAtCompileTime,
50    MaxColsAtCompileTime = Direction==Horizontal ? 1 : MatrixType::MaxColsAtCompileTime,
51    Flags0 = (unsigned int)_MatrixTypeNested::Flags & HereditaryBits,
52    Flags = (Flags0 & ~RowMajorBit) | (RowsAtCompileTime == 1 ? RowMajorBit : 0),
53    TraversalSize = Direction==Vertical ? MatrixType::RowsAtCompileTime :  MatrixType::ColsAtCompileTime
54  };
55  #if EIGEN_GNUC_AT_LEAST(3,4)
56  typedef typename MemberOp::template Cost<InputScalar,int(TraversalSize)> CostOpType;
57  #else
58  typedef typename MemberOp::template Cost<InputScalar,TraversalSize> CostOpType;
59  #endif
60  enum {
61    CoeffReadCost = TraversalSize==Dynamic ? Dynamic
62                  : TraversalSize * traits<_MatrixTypeNested>::CoeffReadCost + int(CostOpType::value)
63  };
64};
65}
66
67template< typename MatrixType, typename MemberOp, int Direction>
68class PartialReduxExpr : internal::no_assignment_operator,
69  public internal::dense_xpr_base< PartialReduxExpr<MatrixType, MemberOp, Direction> >::type
70{
71  public:
72
73    typedef typename internal::dense_xpr_base<PartialReduxExpr>::type Base;
74    EIGEN_DENSE_PUBLIC_INTERFACE(PartialReduxExpr)
75    typedef typename internal::traits<PartialReduxExpr>::MatrixTypeNested MatrixTypeNested;
76    typedef typename internal::traits<PartialReduxExpr>::_MatrixTypeNested _MatrixTypeNested;
77
78    PartialReduxExpr(const MatrixType& mat, const MemberOp& func = MemberOp())
79      : m_matrix(mat), m_functor(func) {}
80
81    Index rows() const { return (Direction==Vertical   ? 1 : m_matrix.rows()); }
82    Index cols() const { return (Direction==Horizontal ? 1 : m_matrix.cols()); }
83
84    EIGEN_STRONG_INLINE const Scalar coeff(Index i, Index j) const
85    {
86      if (Direction==Vertical)
87        return m_functor(m_matrix.col(j));
88      else
89        return m_functor(m_matrix.row(i));
90    }
91
92    const Scalar coeff(Index index) const
93    {
94      if (Direction==Vertical)
95        return m_functor(m_matrix.col(index));
96      else
97        return m_functor(m_matrix.row(index));
98    }
99
100  protected:
101    MatrixTypeNested m_matrix;
102    const MemberOp m_functor;
103};
104
105#define EIGEN_MEMBER_FUNCTOR(MEMBER,COST)                               \
106  template <typename ResultType>                                        \
107  struct member_##MEMBER {                                              \
108    EIGEN_EMPTY_STRUCT_CTOR(member_##MEMBER)                            \
109    typedef ResultType result_type;                                     \
110    template<typename Scalar, int Size> struct Cost                     \
111    { enum { value = COST }; };                                         \
112    template<typename XprType>                                          \
113    EIGEN_STRONG_INLINE ResultType operator()(const XprType& mat) const \
114    { return mat.MEMBER(); } \
115  }
116
117namespace internal {
118
119EIGEN_MEMBER_FUNCTOR(squaredNorm, Size * NumTraits<Scalar>::MulCost + (Size-1)*NumTraits<Scalar>::AddCost);
120EIGEN_MEMBER_FUNCTOR(norm, (Size+5) * NumTraits<Scalar>::MulCost + (Size-1)*NumTraits<Scalar>::AddCost);
121EIGEN_MEMBER_FUNCTOR(stableNorm, (Size+5) * NumTraits<Scalar>::MulCost + (Size-1)*NumTraits<Scalar>::AddCost);
122EIGEN_MEMBER_FUNCTOR(blueNorm, (Size+5) * NumTraits<Scalar>::MulCost + (Size-1)*NumTraits<Scalar>::AddCost);
123EIGEN_MEMBER_FUNCTOR(hypotNorm, (Size-1) * functor_traits<scalar_hypot_op<Scalar> >::Cost );
124EIGEN_MEMBER_FUNCTOR(sum, (Size-1)*NumTraits<Scalar>::AddCost);
125EIGEN_MEMBER_FUNCTOR(mean, (Size-1)*NumTraits<Scalar>::AddCost + NumTraits<Scalar>::MulCost);
126EIGEN_MEMBER_FUNCTOR(minCoeff, (Size-1)*NumTraits<Scalar>::AddCost);
127EIGEN_MEMBER_FUNCTOR(maxCoeff, (Size-1)*NumTraits<Scalar>::AddCost);
128EIGEN_MEMBER_FUNCTOR(all, (Size-1)*NumTraits<Scalar>::AddCost);
129EIGEN_MEMBER_FUNCTOR(any, (Size-1)*NumTraits<Scalar>::AddCost);
130EIGEN_MEMBER_FUNCTOR(count, (Size-1)*NumTraits<Scalar>::AddCost);
131EIGEN_MEMBER_FUNCTOR(prod, (Size-1)*NumTraits<Scalar>::MulCost);
132
133
134template <typename BinaryOp, typename Scalar>
135struct member_redux {
136  typedef typename result_of<
137                     BinaryOp(Scalar)
138                   >::type  result_type;
139  template<typename _Scalar, int Size> struct Cost
140  { enum { value = (Size-1) * functor_traits<BinaryOp>::Cost }; };
141  member_redux(const BinaryOp func) : m_functor(func) {}
142  template<typename Derived>
143  inline result_type operator()(const DenseBase<Derived>& mat) const
144  { return mat.redux(m_functor); }
145  const BinaryOp m_functor;
146};
147}
148
149/** \class VectorwiseOp
150  * \ingroup Core_Module
151  *
152  * \brief Pseudo expression providing partial reduction operations
153  *
154  * \param ExpressionType the type of the object on which to do partial reductions
155  * \param Direction indicates the direction of the redux (#Vertical or #Horizontal)
156  *
157  * This class represents a pseudo expression with partial reduction features.
158  * It is the return type of DenseBase::colwise() and DenseBase::rowwise()
159  * and most of the time this is the only way it is used.
160  *
161  * Example: \include MatrixBase_colwise.cpp
162  * Output: \verbinclude MatrixBase_colwise.out
163  *
164  * \sa DenseBase::colwise(), DenseBase::rowwise(), class PartialReduxExpr
165  */
166template<typename ExpressionType, int Direction> class VectorwiseOp
167{
168  public:
169
170    typedef typename ExpressionType::Scalar Scalar;
171    typedef typename ExpressionType::RealScalar RealScalar;
172    typedef typename ExpressionType::Index Index;
173    typedef typename internal::conditional<internal::must_nest_by_value<ExpressionType>::ret,
174        ExpressionType, ExpressionType&>::type ExpressionTypeNested;
175    typedef typename internal::remove_all<ExpressionTypeNested>::type ExpressionTypeNestedCleaned;
176
177    template<template<typename _Scalar> class Functor,
178                      typename Scalar=typename internal::traits<ExpressionType>::Scalar> struct ReturnType
179    {
180      typedef PartialReduxExpr<ExpressionType,
181                               Functor<Scalar>,
182                               Direction
183                              > Type;
184    };
185
186    template<typename BinaryOp> struct ReduxReturnType
187    {
188      typedef PartialReduxExpr<ExpressionType,
189                               internal::member_redux<BinaryOp,typename internal::traits<ExpressionType>::Scalar>,
190                               Direction
191                              > Type;
192    };
193
194    enum {
195      IsVertical   = (Direction==Vertical) ? 1 : 0,
196      IsHorizontal = (Direction==Horizontal) ? 1 : 0
197    };
198
199  protected:
200
201    /** \internal
202      * \returns the i-th subvector according to the \c Direction */
203    typedef typename internal::conditional<Direction==Vertical,
204                               typename ExpressionType::ColXpr,
205                               typename ExpressionType::RowXpr>::type SubVector;
206    SubVector subVector(Index i)
207    {
208      return SubVector(m_matrix.derived(),i);
209    }
210
211    /** \internal
212      * \returns the number of subvectors in the direction \c Direction */
213    Index subVectors() const
214    { return Direction==Vertical?m_matrix.cols():m_matrix.rows(); }
215
216    template<typename OtherDerived> struct ExtendedType {
217      typedef Replicate<OtherDerived,
218                        Direction==Vertical   ? 1 : ExpressionType::RowsAtCompileTime,
219                        Direction==Horizontal ? 1 : ExpressionType::ColsAtCompileTime> Type;
220    };
221
222    /** \internal
223      * Replicates a vector to match the size of \c *this */
224    template<typename OtherDerived>
225    typename ExtendedType<OtherDerived>::Type
226    extendedTo(const DenseBase<OtherDerived>& other) const
227    {
228      EIGEN_STATIC_ASSERT(EIGEN_IMPLIES(Direction==Vertical, OtherDerived::MaxColsAtCompileTime==1),
229                          YOU_PASSED_A_ROW_VECTOR_BUT_A_COLUMN_VECTOR_WAS_EXPECTED)
230      EIGEN_STATIC_ASSERT(EIGEN_IMPLIES(Direction==Horizontal, OtherDerived::MaxRowsAtCompileTime==1),
231                          YOU_PASSED_A_COLUMN_VECTOR_BUT_A_ROW_VECTOR_WAS_EXPECTED)
232      return typename ExtendedType<OtherDerived>::Type
233                      (other.derived(),
234                       Direction==Vertical   ? 1 : m_matrix.rows(),
235                       Direction==Horizontal ? 1 : m_matrix.cols());
236    }
237
238    template<typename OtherDerived> struct OppositeExtendedType {
239      typedef Replicate<OtherDerived,
240                        Direction==Horizontal ? 1 : ExpressionType::RowsAtCompileTime,
241                        Direction==Vertical   ? 1 : ExpressionType::ColsAtCompileTime> Type;
242    };
243
244    /** \internal
245      * Replicates a vector in the opposite direction to match the size of \c *this */
246    template<typename OtherDerived>
247    typename OppositeExtendedType<OtherDerived>::Type
248    extendedToOpposite(const DenseBase<OtherDerived>& other) const
249    {
250      EIGEN_STATIC_ASSERT(EIGEN_IMPLIES(Direction==Horizontal, OtherDerived::MaxColsAtCompileTime==1),
251                          YOU_PASSED_A_ROW_VECTOR_BUT_A_COLUMN_VECTOR_WAS_EXPECTED)
252      EIGEN_STATIC_ASSERT(EIGEN_IMPLIES(Direction==Vertical, OtherDerived::MaxRowsAtCompileTime==1),
253                          YOU_PASSED_A_COLUMN_VECTOR_BUT_A_ROW_VECTOR_WAS_EXPECTED)
254      return typename OppositeExtendedType<OtherDerived>::Type
255                      (other.derived(),
256                       Direction==Horizontal  ? 1 : m_matrix.rows(),
257                       Direction==Vertical    ? 1 : m_matrix.cols());
258    }
259
260  public:
261
262    inline VectorwiseOp(ExpressionType& matrix) : m_matrix(matrix) {}
263
264    /** \internal */
265    inline const ExpressionType& _expression() const { return m_matrix; }
266
267    /** \returns a row or column vector expression of \c *this reduxed by \a func
268      *
269      * The template parameter \a BinaryOp is the type of the functor
270      * of the custom redux operator. Note that func must be an associative operator.
271      *
272      * \sa class VectorwiseOp, DenseBase::colwise(), DenseBase::rowwise()
273      */
274    template<typename BinaryOp>
275    const typename ReduxReturnType<BinaryOp>::Type
276    redux(const BinaryOp& func = BinaryOp()) const
277    { return typename ReduxReturnType<BinaryOp>::Type(_expression(), func); }
278
279    /** \returns a row (or column) vector expression of the smallest coefficient
280      * of each column (or row) of the referenced expression.
281      *
282      * \warning the result is undefined if \c *this contains NaN.
283      *
284      * Example: \include PartialRedux_minCoeff.cpp
285      * Output: \verbinclude PartialRedux_minCoeff.out
286      *
287      * \sa DenseBase::minCoeff() */
288    const typename ReturnType<internal::member_minCoeff>::Type minCoeff() const
289    { return _expression(); }
290
291    /** \returns a row (or column) vector expression of the largest coefficient
292      * of each column (or row) of the referenced expression.
293      *
294      * \warning the result is undefined if \c *this contains NaN.
295      *
296      * Example: \include PartialRedux_maxCoeff.cpp
297      * Output: \verbinclude PartialRedux_maxCoeff.out
298      *
299      * \sa DenseBase::maxCoeff() */
300    const typename ReturnType<internal::member_maxCoeff>::Type maxCoeff() const
301    { return _expression(); }
302
303    /** \returns a row (or column) vector expression of the squared norm
304      * of each column (or row) of the referenced expression.
305      *
306      * Example: \include PartialRedux_squaredNorm.cpp
307      * Output: \verbinclude PartialRedux_squaredNorm.out
308      *
309      * \sa DenseBase::squaredNorm() */
310    const typename ReturnType<internal::member_squaredNorm,RealScalar>::Type squaredNorm() const
311    { return _expression(); }
312
313    /** \returns a row (or column) vector expression of the norm
314      * of each column (or row) of the referenced expression.
315      *
316      * Example: \include PartialRedux_norm.cpp
317      * Output: \verbinclude PartialRedux_norm.out
318      *
319      * \sa DenseBase::norm() */
320    const typename ReturnType<internal::member_norm,RealScalar>::Type norm() const
321    { return _expression(); }
322
323
324    /** \returns a row (or column) vector expression of the norm
325      * of each column (or row) of the referenced expression, using
326      * blue's algorithm.
327      *
328      * \sa DenseBase::blueNorm() */
329    const typename ReturnType<internal::member_blueNorm,RealScalar>::Type blueNorm() const
330    { return _expression(); }
331
332
333    /** \returns a row (or column) vector expression of the norm
334      * of each column (or row) of the referenced expression, avoiding
335      * underflow and overflow.
336      *
337      * \sa DenseBase::stableNorm() */
338    const typename ReturnType<internal::member_stableNorm,RealScalar>::Type stableNorm() const
339    { return _expression(); }
340
341
342    /** \returns a row (or column) vector expression of the norm
343      * of each column (or row) of the referenced expression, avoiding
344      * underflow and overflow using a concatenation of hypot() calls.
345      *
346      * \sa DenseBase::hypotNorm() */
347    const typename ReturnType<internal::member_hypotNorm,RealScalar>::Type hypotNorm() const
348    { return _expression(); }
349
350    /** \returns a row (or column) vector expression of the sum
351      * of each column (or row) of the referenced expression.
352      *
353      * Example: \include PartialRedux_sum.cpp
354      * Output: \verbinclude PartialRedux_sum.out
355      *
356      * \sa DenseBase::sum() */
357    const typename ReturnType<internal::member_sum>::Type sum() const
358    { return _expression(); }
359
360    /** \returns a row (or column) vector expression of the mean
361    * of each column (or row) of the referenced expression.
362    *
363    * \sa DenseBase::mean() */
364    const typename ReturnType<internal::member_mean>::Type mean() const
365    { return _expression(); }
366
367    /** \returns a row (or column) vector expression representing
368      * whether \b all coefficients of each respective column (or row) are \c true.
369      *
370      * \sa DenseBase::all() */
371    const typename ReturnType<internal::member_all>::Type all() const
372    { return _expression(); }
373
374    /** \returns a row (or column) vector expression representing
375      * whether \b at \b least one coefficient of each respective column (or row) is \c true.
376      *
377      * \sa DenseBase::any() */
378    const typename ReturnType<internal::member_any>::Type any() const
379    { return _expression(); }
380
381    /** \returns a row (or column) vector expression representing
382      * the number of \c true coefficients of each respective column (or row).
383      *
384      * Example: \include PartialRedux_count.cpp
385      * Output: \verbinclude PartialRedux_count.out
386      *
387      * \sa DenseBase::count() */
388    const PartialReduxExpr<ExpressionType, internal::member_count<Index>, Direction> count() const
389    { return _expression(); }
390
391    /** \returns a row (or column) vector expression of the product
392      * of each column (or row) of the referenced expression.
393      *
394      * Example: \include PartialRedux_prod.cpp
395      * Output: \verbinclude PartialRedux_prod.out
396      *
397      * \sa DenseBase::prod() */
398    const typename ReturnType<internal::member_prod>::Type prod() const
399    { return _expression(); }
400
401
402    /** \returns a matrix expression
403      * where each column (or row) are reversed.
404      *
405      * Example: \include Vectorwise_reverse.cpp
406      * Output: \verbinclude Vectorwise_reverse.out
407      *
408      * \sa DenseBase::reverse() */
409    const Reverse<ExpressionType, Direction> reverse() const
410    { return Reverse<ExpressionType, Direction>( _expression() ); }
411
412    typedef Replicate<ExpressionType,Direction==Vertical?Dynamic:1,Direction==Horizontal?Dynamic:1> ReplicateReturnType;
413    const ReplicateReturnType replicate(Index factor) const;
414
415    /**
416      * \return an expression of the replication of each column (or row) of \c *this
417      *
418      * Example: \include DirectionWise_replicate.cpp
419      * Output: \verbinclude DirectionWise_replicate.out
420      *
421      * \sa VectorwiseOp::replicate(Index), DenseBase::replicate(), class Replicate
422      */
423    // NOTE implemented here because of sunstudio's compilation errors
424    template<int Factor> const Replicate<ExpressionType,(IsVertical?Factor:1),(IsHorizontal?Factor:1)>
425    replicate(Index factor = Factor) const
426    {
427      return Replicate<ExpressionType,Direction==Vertical?Factor:1,Direction==Horizontal?Factor:1>
428          (_expression(),Direction==Vertical?factor:1,Direction==Horizontal?factor:1);
429    }
430
431/////////// Artithmetic operators ///////////
432
433    /** Copies the vector \a other to each subvector of \c *this */
434    template<typename OtherDerived>
435    ExpressionType& operator=(const DenseBase<OtherDerived>& other)
436    {
437      EIGEN_STATIC_ASSERT_VECTOR_ONLY(OtherDerived)
438      EIGEN_STATIC_ASSERT_SAME_XPR_KIND(ExpressionType, OtherDerived)
439      //eigen_assert((m_matrix.isNull()) == (other.isNull())); FIXME
440      return const_cast<ExpressionType&>(m_matrix = extendedTo(other.derived()));
441    }
442
443    /** Adds the vector \a other to each subvector of \c *this */
444    template<typename OtherDerived>
445    ExpressionType& operator+=(const DenseBase<OtherDerived>& other)
446    {
447      EIGEN_STATIC_ASSERT_VECTOR_ONLY(OtherDerived)
448      EIGEN_STATIC_ASSERT_SAME_XPR_KIND(ExpressionType, OtherDerived)
449      return const_cast<ExpressionType&>(m_matrix += extendedTo(other.derived()));
450    }
451
452    /** Substracts the vector \a other to each subvector of \c *this */
453    template<typename OtherDerived>
454    ExpressionType& operator-=(const DenseBase<OtherDerived>& other)
455    {
456      EIGEN_STATIC_ASSERT_VECTOR_ONLY(OtherDerived)
457      EIGEN_STATIC_ASSERT_SAME_XPR_KIND(ExpressionType, OtherDerived)
458      return const_cast<ExpressionType&>(m_matrix -= extendedTo(other.derived()));
459    }
460
461    /** Multiples each subvector of \c *this by the vector \a other */
462    template<typename OtherDerived>
463    ExpressionType& operator*=(const DenseBase<OtherDerived>& other)
464    {
465      EIGEN_STATIC_ASSERT_VECTOR_ONLY(OtherDerived)
466      EIGEN_STATIC_ASSERT_ARRAYXPR(ExpressionType)
467      EIGEN_STATIC_ASSERT_SAME_XPR_KIND(ExpressionType, OtherDerived)
468      m_matrix *= extendedTo(other.derived());
469      return const_cast<ExpressionType&>(m_matrix);
470    }
471
472    /** Divides each subvector of \c *this by the vector \a other */
473    template<typename OtherDerived>
474    ExpressionType& operator/=(const DenseBase<OtherDerived>& other)
475    {
476      EIGEN_STATIC_ASSERT_VECTOR_ONLY(OtherDerived)
477      EIGEN_STATIC_ASSERT_ARRAYXPR(ExpressionType)
478      EIGEN_STATIC_ASSERT_SAME_XPR_KIND(ExpressionType, OtherDerived)
479      m_matrix /= extendedTo(other.derived());
480      return const_cast<ExpressionType&>(m_matrix);
481    }
482
483    /** Returns the expression of the sum of the vector \a other to each subvector of \c *this */
484    template<typename OtherDerived> EIGEN_STRONG_INLINE
485    CwiseBinaryOp<internal::scalar_sum_op<Scalar>,
486                  const ExpressionTypeNestedCleaned,
487                  const typename ExtendedType<OtherDerived>::Type>
488    operator+(const DenseBase<OtherDerived>& other) const
489    {
490      EIGEN_STATIC_ASSERT_VECTOR_ONLY(OtherDerived)
491      EIGEN_STATIC_ASSERT_SAME_XPR_KIND(ExpressionType, OtherDerived)
492      return m_matrix + extendedTo(other.derived());
493    }
494
495    /** Returns the expression of the difference between each subvector of \c *this and the vector \a other */
496    template<typename OtherDerived>
497    CwiseBinaryOp<internal::scalar_difference_op<Scalar>,
498                  const ExpressionTypeNestedCleaned,
499                  const typename ExtendedType<OtherDerived>::Type>
500    operator-(const DenseBase<OtherDerived>& other) const
501    {
502      EIGEN_STATIC_ASSERT_VECTOR_ONLY(OtherDerived)
503      EIGEN_STATIC_ASSERT_SAME_XPR_KIND(ExpressionType, OtherDerived)
504      return m_matrix - extendedTo(other.derived());
505    }
506
507    /** Returns the expression where each subvector is the product of the vector \a other
508      * by the corresponding subvector of \c *this */
509    template<typename OtherDerived> EIGEN_STRONG_INLINE
510    CwiseBinaryOp<internal::scalar_product_op<Scalar>,
511                  const ExpressionTypeNestedCleaned,
512                  const typename ExtendedType<OtherDerived>::Type>
513    operator*(const DenseBase<OtherDerived>& other) const
514    {
515      EIGEN_STATIC_ASSERT_VECTOR_ONLY(OtherDerived)
516      EIGEN_STATIC_ASSERT_ARRAYXPR(ExpressionType)
517      EIGEN_STATIC_ASSERT_SAME_XPR_KIND(ExpressionType, OtherDerived)
518      return m_matrix * extendedTo(other.derived());
519    }
520
521    /** Returns the expression where each subvector is the quotient of the corresponding
522      * subvector of \c *this by the vector \a other */
523    template<typename OtherDerived>
524    CwiseBinaryOp<internal::scalar_quotient_op<Scalar>,
525                  const ExpressionTypeNestedCleaned,
526                  const typename ExtendedType<OtherDerived>::Type>
527    operator/(const DenseBase<OtherDerived>& other) const
528    {
529      EIGEN_STATIC_ASSERT_VECTOR_ONLY(OtherDerived)
530      EIGEN_STATIC_ASSERT_ARRAYXPR(ExpressionType)
531      EIGEN_STATIC_ASSERT_SAME_XPR_KIND(ExpressionType, OtherDerived)
532      return m_matrix / extendedTo(other.derived());
533    }
534
535    /** \returns an expression where each column of row of the referenced matrix are normalized.
536      * The referenced matrix is \b not modified.
537      * \sa MatrixBase::normalized(), normalize()
538      */
539    CwiseBinaryOp<internal::scalar_quotient_op<Scalar>,
540                  const ExpressionTypeNestedCleaned,
541                  const typename OppositeExtendedType<typename ReturnType<internal::member_norm,RealScalar>::Type>::Type>
542    normalized() const { return m_matrix.cwiseQuotient(extendedToOpposite(this->norm())); }
543
544
545    /** Normalize in-place each row or columns of the referenced matrix.
546      * \sa MatrixBase::normalize(), normalized()
547      */
548    void normalize() {
549      m_matrix = this->normalized();
550    }
551
552/////////// Geometry module ///////////
553
554    #if EIGEN2_SUPPORT_STAGE > STAGE20_RESOLVE_API_CONFLICTS
555    Homogeneous<ExpressionType,Direction> homogeneous() const;
556    #endif
557
558    typedef typename ExpressionType::PlainObject CrossReturnType;
559    template<typename OtherDerived>
560    const CrossReturnType cross(const MatrixBase<OtherDerived>& other) const;
561
562    enum {
563      HNormalized_Size = Direction==Vertical ? internal::traits<ExpressionType>::RowsAtCompileTime
564                                             : internal::traits<ExpressionType>::ColsAtCompileTime,
565      HNormalized_SizeMinusOne = HNormalized_Size==Dynamic ? Dynamic : HNormalized_Size-1
566    };
567    typedef Block<const ExpressionType,
568                  Direction==Vertical   ? int(HNormalized_SizeMinusOne)
569                                        : int(internal::traits<ExpressionType>::RowsAtCompileTime),
570                  Direction==Horizontal ? int(HNormalized_SizeMinusOne)
571                                        : int(internal::traits<ExpressionType>::ColsAtCompileTime)>
572            HNormalized_Block;
573    typedef Block<const ExpressionType,
574                  Direction==Vertical   ? 1 : int(internal::traits<ExpressionType>::RowsAtCompileTime),
575                  Direction==Horizontal ? 1 : int(internal::traits<ExpressionType>::ColsAtCompileTime)>
576            HNormalized_Factors;
577    typedef CwiseBinaryOp<internal::scalar_quotient_op<typename internal::traits<ExpressionType>::Scalar>,
578                const HNormalized_Block,
579                const Replicate<HNormalized_Factors,
580                  Direction==Vertical   ? HNormalized_SizeMinusOne : 1,
581                  Direction==Horizontal ? HNormalized_SizeMinusOne : 1> >
582            HNormalizedReturnType;
583
584    const HNormalizedReturnType hnormalized() const;
585
586  protected:
587    ExpressionTypeNested m_matrix;
588};
589
590/** \returns a VectorwiseOp wrapper of *this providing additional partial reduction operations
591  *
592  * Example: \include MatrixBase_colwise.cpp
593  * Output: \verbinclude MatrixBase_colwise.out
594  *
595  * \sa rowwise(), class VectorwiseOp, \ref TutorialReductionsVisitorsBroadcasting
596  */
597template<typename Derived>
598inline const typename DenseBase<Derived>::ConstColwiseReturnType
599DenseBase<Derived>::colwise() const
600{
601  return derived();
602}
603
604/** \returns a writable VectorwiseOp wrapper of *this providing additional partial reduction operations
605  *
606  * \sa rowwise(), class VectorwiseOp, \ref TutorialReductionsVisitorsBroadcasting
607  */
608template<typename Derived>
609inline typename DenseBase<Derived>::ColwiseReturnType
610DenseBase<Derived>::colwise()
611{
612  return derived();
613}
614
615/** \returns a VectorwiseOp wrapper of *this providing additional partial reduction operations
616  *
617  * Example: \include MatrixBase_rowwise.cpp
618  * Output: \verbinclude MatrixBase_rowwise.out
619  *
620  * \sa colwise(), class VectorwiseOp, \ref TutorialReductionsVisitorsBroadcasting
621  */
622template<typename Derived>
623inline const typename DenseBase<Derived>::ConstRowwiseReturnType
624DenseBase<Derived>::rowwise() const
625{
626  return derived();
627}
628
629/** \returns a writable VectorwiseOp wrapper of *this providing additional partial reduction operations
630  *
631  * \sa colwise(), class VectorwiseOp, \ref TutorialReductionsVisitorsBroadcasting
632  */
633template<typename Derived>
634inline typename DenseBase<Derived>::RowwiseReturnType
635DenseBase<Derived>::rowwise()
636{
637  return derived();
638}
639
640} // end namespace Eigen
641
642#endif // EIGEN_PARTIAL_REDUX_H
643