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Matrix.h
1 // This file is part of Eigen, a lightweight C++ template library
2 // for linear algebra.
3 //
4 // Copyright (C) 2006-2010 Benoit Jacob <[email protected]>
5 // Copyright (C) 2008-2009 Gael Guennebaud <[email protected]>
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_MATRIX_H
12 #define EIGEN_MATRIX_H
13 
14 namespace Eigen {
15 
104 namespace internal {
105 template<typename _Scalar, int _Rows, int _Cols, int _Options, int _MaxRows, int _MaxCols>
106 struct traits<Matrix<_Scalar, _Rows, _Cols, _Options, _MaxRows, _MaxCols> >
107 {
108  typedef _Scalar Scalar;
109  typedef Dense StorageKind;
110  typedef DenseIndex Index;
111  typedef MatrixXpr XprKind;
112  enum {
113  RowsAtCompileTime = _Rows,
114  ColsAtCompileTime = _Cols,
115  MaxRowsAtCompileTime = _MaxRows,
116  MaxColsAtCompileTime = _MaxCols,
117  Flags = compute_matrix_flags<_Scalar, _Rows, _Cols, _Options, _MaxRows, _MaxCols>::ret,
118  CoeffReadCost = NumTraits<Scalar>::ReadCost,
119  Options = _Options,
120  InnerStrideAtCompileTime = 1,
121  OuterStrideAtCompileTime = (Options&RowMajor) ? ColsAtCompileTime : RowsAtCompileTime
122  };
123 };
124 }
125 
126 template<typename _Scalar, int _Rows, int _Cols, int _Options, int _MaxRows, int _MaxCols>
127 class Matrix
128  : public PlainObjectBase<Matrix<_Scalar, _Rows, _Cols, _Options, _MaxRows, _MaxCols> >
129 {
130  public:
131 
136 
137  enum { Options = _Options };
138 
139  EIGEN_DENSE_PUBLIC_INTERFACE(Matrix)
140 
141  typedef typename Base::PlainObject PlainObject;
142 
143  using Base::base;
144  using Base::coeffRef;
145 
154  EIGEN_STRONG_INLINE Matrix& operator=(const Matrix& other)
155  {
156  return Base::_set(other);
157  }
158 
169  template<typename OtherDerived>
170  EIGEN_STRONG_INLINE Matrix& operator=(const MatrixBase<OtherDerived>& other)
171  {
172  return Base::_set(other);
173  }
174 
175  /* Here, doxygen failed to copy the brief information when using \copydoc */
176 
181  template<typename OtherDerived>
182  EIGEN_STRONG_INLINE Matrix& operator=(const EigenBase<OtherDerived> &other)
183  {
184  return Base::operator=(other);
185  }
186 
187  template<typename OtherDerived>
188  EIGEN_STRONG_INLINE Matrix& operator=(const ReturnByValue<OtherDerived>& func)
189  {
190  return Base::operator=(func);
191  }
192 
203  EIGEN_STRONG_INLINE Matrix() : Base()
204  {
205  Base::_check_template_params();
206  EIGEN_INITIALIZE_COEFFS_IF_THAT_OPTION_IS_ENABLED
207  }
208 
209  // FIXME is it still needed
210  Matrix(internal::constructor_without_unaligned_array_assert)
211  : Base(internal::constructor_without_unaligned_array_assert())
212  { Base::_check_template_params(); EIGEN_INITIALIZE_COEFFS_IF_THAT_OPTION_IS_ENABLED }
213 
214 #ifdef EIGEN_HAVE_RVALUE_REFERENCES
215  Matrix(Matrix&& other)
216  : Base(std::move(other))
217  {
218  Base::_check_template_params();
219  if (RowsAtCompileTime!=Dynamic && ColsAtCompileTime!=Dynamic)
220  Base::_set_noalias(other);
221  }
222  Matrix& operator=(Matrix&& other)
223  {
224  other.swap(*this);
225  return *this;
226  }
227 #endif
228 
235  EIGEN_STRONG_INLINE explicit Matrix(Index dim)
236  : Base(dim, RowsAtCompileTime == 1 ? 1 : dim, ColsAtCompileTime == 1 ? 1 : dim)
237  {
238  Base::_check_template_params();
239  EIGEN_STATIC_ASSERT_VECTOR_ONLY(Matrix)
240  eigen_assert(dim >= 0);
241  eigen_assert(SizeAtCompileTime == Dynamic || SizeAtCompileTime == dim);
242  EIGEN_INITIALIZE_COEFFS_IF_THAT_OPTION_IS_ENABLED
243  }
244 
245  #ifndef EIGEN_PARSED_BY_DOXYGEN
246  template<typename T0, typename T1>
247  EIGEN_STRONG_INLINE Matrix(const T0& x, const T1& y)
248  {
249  Base::_check_template_params();
250  Base::template _init2<T0,T1>(x, y);
251  }
252  #else
253 
258  Matrix(Index rows, Index cols);
260  Matrix(const Scalar& x, const Scalar& y);
261  #endif
262 
264  EIGEN_STRONG_INLINE Matrix(const Scalar& x, const Scalar& y, const Scalar& z)
265  {
266  Base::_check_template_params();
267  EIGEN_STATIC_ASSERT_VECTOR_SPECIFIC_SIZE(Matrix, 3)
268  m_storage.data()[0] = x;
269  m_storage.data()[1] = y;
270  m_storage.data()[2] = z;
271  }
273  EIGEN_STRONG_INLINE Matrix(const Scalar& x, const Scalar& y, const Scalar& z, const Scalar& w)
274  {
275  Base::_check_template_params();
276  EIGEN_STATIC_ASSERT_VECTOR_SPECIFIC_SIZE(Matrix, 4)
277  m_storage.data()[0] = x;
278  m_storage.data()[1] = y;
279  m_storage.data()[2] = z;
280  m_storage.data()[3] = w;
281  }
282 
283  explicit Matrix(const Scalar *data);
284 
286  template<typename OtherDerived>
287  EIGEN_STRONG_INLINE Matrix(const MatrixBase<OtherDerived>& other)
288  : Base(other.rows() * other.cols(), other.rows(), other.cols())
289  {
290  // This test resides here, to bring the error messages closer to the user. Normally, these checks
291  // are performed deeply within the library, thus causing long and scary error traces.
292  EIGEN_STATIC_ASSERT((internal::is_same<Scalar, typename OtherDerived::Scalar>::value),
293  YOU_MIXED_DIFFERENT_NUMERIC_TYPES__YOU_NEED_TO_USE_THE_CAST_METHOD_OF_MATRIXBASE_TO_CAST_NUMERIC_TYPES_EXPLICITLY)
294 
295  Base::_check_template_params();
296  Base::_set_noalias(other);
297  }
299  EIGEN_STRONG_INLINE Matrix(const Matrix& other)
300  : Base(other.rows() * other.cols(), other.rows(), other.cols())
301  {
302  Base::_check_template_params();
303  Base::_set_noalias(other);
304  }
306  template<typename OtherDerived>
307  EIGEN_STRONG_INLINE Matrix(const ReturnByValue<OtherDerived>& other)
308  {
309  Base::_check_template_params();
310  Base::resize(other.rows(), other.cols());
311  other.evalTo(*this);
312  }
313 
317  template<typename OtherDerived>
318  EIGEN_STRONG_INLINE Matrix(const EigenBase<OtherDerived> &other)
319  : Base(other.derived().rows() * other.derived().cols(), other.derived().rows(), other.derived().cols())
320  {
321  Base::_check_template_params();
322  Base::_resize_to_match(other);
323  // FIXME/CHECK: isn't *this = other.derived() more efficient. it allows to
324  // go for pure _set() implementations, right?
325  *this = other;
326  }
327 
332  template<typename OtherDerived>
333  void swap(MatrixBase<OtherDerived> const & other)
334  { this->_swap(other.derived()); }
335 
336  inline Index innerStride() const { return 1; }
337  inline Index outerStride() const { return this->innerSize(); }
338 
340 
341  template<typename OtherDerived>
342  explicit Matrix(const RotationBase<OtherDerived,ColsAtCompileTime>& r);
343  template<typename OtherDerived>
344  Matrix& operator=(const RotationBase<OtherDerived,ColsAtCompileTime>& r);
345 
346  #ifdef EIGEN2_SUPPORT
347  template<typename OtherDerived>
348  explicit Matrix(const eigen2_RotationBase<OtherDerived,ColsAtCompileTime>& r);
349  template<typename OtherDerived>
350  Matrix& operator=(const eigen2_RotationBase<OtherDerived,ColsAtCompileTime>& r);
351  #endif
352 
353  // allow to extend Matrix outside Eigen
354  #ifdef EIGEN_MATRIX_PLUGIN
355  #include EIGEN_MATRIX_PLUGIN
356  #endif
357 
358  protected:
359  template <typename Derived, typename OtherDerived, bool IsVector>
360  friend struct internal::conservative_resize_like_impl;
361 
362  using Base::m_storage;
363 };
364 
385 #define EIGEN_MAKE_TYPEDEFS(Type, TypeSuffix, Size, SizeSuffix) \
386  \
387 typedef Matrix<Type, Size, Size> Matrix##SizeSuffix##TypeSuffix; \
388  \
389 typedef Matrix<Type, Size, 1> Vector##SizeSuffix##TypeSuffix; \
390  \
391 typedef Matrix<Type, 1, Size> RowVector##SizeSuffix##TypeSuffix;
392 
393 #define EIGEN_MAKE_FIXED_TYPEDEFS(Type, TypeSuffix, Size) \
394  \
395 typedef Matrix<Type, Size, Dynamic> Matrix##Size##X##TypeSuffix; \
396  \
397 typedef Matrix<Type, Dynamic, Size> Matrix##X##Size##TypeSuffix;
398 
399 #define EIGEN_MAKE_TYPEDEFS_ALL_SIZES(Type, TypeSuffix) \
400 EIGEN_MAKE_TYPEDEFS(Type, TypeSuffix, 2, 2) \
401 EIGEN_MAKE_TYPEDEFS(Type, TypeSuffix, 3, 3) \
402 EIGEN_MAKE_TYPEDEFS(Type, TypeSuffix, 4, 4) \
403 EIGEN_MAKE_TYPEDEFS(Type, TypeSuffix, Dynamic, X) \
404 EIGEN_MAKE_FIXED_TYPEDEFS(Type, TypeSuffix, 2) \
405 EIGEN_MAKE_FIXED_TYPEDEFS(Type, TypeSuffix, 3) \
406 EIGEN_MAKE_FIXED_TYPEDEFS(Type, TypeSuffix, 4)
407 
408 EIGEN_MAKE_TYPEDEFS_ALL_SIZES(int, i)
409 EIGEN_MAKE_TYPEDEFS_ALL_SIZES(float, f)
410 EIGEN_MAKE_TYPEDEFS_ALL_SIZES(double, d)
411 EIGEN_MAKE_TYPEDEFS_ALL_SIZES(std::complex<float>, cf)
412 EIGEN_MAKE_TYPEDEFS_ALL_SIZES(std::complex<double>, cd)
413 
414 #undef EIGEN_MAKE_TYPEDEFS_ALL_SIZES
415 #undef EIGEN_MAKE_TYPEDEFS
416 #undef EIGEN_MAKE_FIXED_TYPEDEFS
417 
418 } // end namespace Eigen
419 
420 #endif // EIGEN_MATRIX_H
Matrix(const Matrix &other)
Copy constructor.
Definition: Matrix.h:299
PlainObjectBase< Matrix > Base
Base class typedef.
Definition: Matrix.h:135
Matrix & operator=(const EigenBase< OtherDerived > &other)
Copies the generic expression other into *this.
Definition: Matrix.h:182
Matrix()
Default constructor.
Definition: Matrix.h:203
const int Dynamic
Definition: Constants.h:21
Definition: EigenBase.h:26
Matrix(const Scalar &x, const Scalar &y, const Scalar &z, const Scalar &w)
Constructs an initialized 4D vector with given coefficients.
Definition: Matrix.h:273
Dense storage base class for matrices and arrays.
Definition: PlainObjectBase.h:85
Matrix(const Scalar &x, const Scalar &y, const Scalar &z)
Constructs an initialized 3D vector with given coefficients.
Definition: Matrix.h:264
Matrix(Index dim)
Constructs a vector or row-vector with given dimension. This is only for vectors (either row-vectors ...
Definition: Matrix.h:235
Definition: Constants.h:266
Matrix(const EigenBase< OtherDerived > &other)
Copy constructor for generic expressions.
Definition: Matrix.h:318
The matrix class, also used for vectors and row-vectors.
Definition: Matrix.h:127
Base class for all dense matrices, vectors, and expressions.
Definition: MatrixBase.h:48
Matrix(const MatrixBase< OtherDerived > &other)
Constructor copying the value of the expression other.
Definition: Matrix.h:287
Matrix(const ReturnByValue< OtherDerived > &other)
Copy constructor with in-place evaluation.
Definition: Matrix.h:307