10#ifndef EIGEN_HOMOGENEOUS_H
11#define EIGEN_HOMOGENEOUS_H
32template<
typename MatrixType,
int Direction>
40 RowsPlusOne = (MatrixType::RowsAtCompileTime !=
Dynamic) ?
41 int(MatrixType::RowsAtCompileTime) + 1 :
Dynamic,
42 ColsPlusOne = (MatrixType::ColsAtCompileTime !=
Dynamic) ?
43 int(MatrixType::ColsAtCompileTime) + 1 :
Dynamic,
44 RowsAtCompileTime = Direction==
Vertical ? RowsPlusOne : MatrixType::RowsAtCompileTime,
45 ColsAtCompileTime = Direction==
Horizontal ? ColsPlusOne : MatrixType::ColsAtCompileTime,
46 MaxRowsAtCompileTime = RowsAtCompileTime,
47 MaxColsAtCompileTime = ColsAtCompileTime,
48 TmpFlags = _MatrixTypeNested::Flags & HereditaryBits,
49 Flags = ColsAtCompileTime==1 ? (TmpFlags & ~RowMajorBit)
65 typedef MatrixType NestedExpression;
71 EIGEN_DEVICE_FUNC
explicit inline Homogeneous(
const MatrixType& matrix)
75 EIGEN_DEVICE_FUNC EIGEN_CONSTEXPR
76 inline Index rows()
const EIGEN_NOEXCEPT {
return m_matrix.rows() + (int(Direction)==
Vertical ? 1 : 0); }
77 EIGEN_DEVICE_FUNC EIGEN_CONSTEXPR
78 inline Index cols()
const EIGEN_NOEXCEPT {
return m_matrix.cols() + (int(Direction)==
Horizontal ? 1 : 0); }
80 EIGEN_DEVICE_FUNC
const NestedExpression& nestedExpression()
const {
return m_matrix; }
82 template<
typename Rhs>
90 template<
typename Lhs>
friend
94 eigen_assert(
int(Direction)==
Vertical);
98 template<
typename Scalar,
int Dim,
int Mode,
int Options>
friend
102 eigen_assert(
int(Direction)==
Vertical);
106 template<
typename Func>
107 EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE
typename internal::result_of<Func(Scalar,Scalar)>::type
108 redux(
const Func& func)
const
110 return func(m_matrix.redux(func), Scalar(1));
114 typename MatrixType::Nested m_matrix;
130template<
typename Derived>
134 EIGEN_STATIC_ASSERT_VECTOR_ONLY(Derived);
148template<
typename ExpressionType,
int Direction>
172template<
typename Derived>
176 EIGEN_STATIC_ASSERT_VECTOR_ONLY(Derived);
196template<
typename ExpressionType,
int Direction>
201 Direction==
Vertical ? _expression().rows()-1 : _expression().rows(),
202 Direction==
Horizontal ? _expression().cols()-1 : _expression().cols()).cwiseQuotient(
204 Direction==
Vertical ? HNormalized_SizeMinusOne : 1,
205 Direction==
Horizontal ? HNormalized_SizeMinusOne : 1>
207 Direction==
Vertical ? _expression().rows()-1:0,
208 Direction==
Horizontal ? _expression().cols()-1:0,
209 Direction==
Vertical ? 1 : _expression().rows(),
210 Direction==
Horizontal ? 1 : _expression().cols()),
211 Direction==
Vertical ? _expression().rows()-1 : 1,
212 Direction==
Horizontal ? _expression().cols()-1 : 1));
217template<
typename MatrixOrTransformType>
221 EIGEN_DEVICE_FUNC
static const type& run(
const type &x) {
return x; }
224template<
typename Scalar,
int Dim,
int Mode,
int Options>
228 typedef typename internal::add_const<typename TransformType::ConstAffinePart>::type type;
229 EIGEN_DEVICE_FUNC
static type run (
const TransformType& x) {
return x.affine(); }
232template<
typename Scalar,
int Dim,
int Options>
236 typedef typename TransformType::MatrixType type;
237 EIGEN_DEVICE_FUNC
static const type& run (
const TransformType& x) {
return x.matrix(); }
240template<
typename MatrixType,
typename Lhs>
244 typedef typename remove_all<MatrixType>::type MatrixTypeCleaned;
245 typedef typename remove_all<LhsMatrixType>::type LhsMatrixTypeCleaned;
248 LhsMatrixTypeCleaned::RowsAtCompileTime,
249 MatrixTypeCleaned::ColsAtCompileTime,
250 MatrixTypeCleaned::PlainObject::Options,
251 LhsMatrixTypeCleaned::MaxRowsAtCompileTime,
252 MatrixTypeCleaned::MaxColsAtCompileTime>::type
ReturnType;
255template<
typename MatrixType,
typename Lhs>
257 :
public ReturnByValue<homogeneous_left_product_impl<Homogeneous<MatrixType,Vertical>,Lhs> >
260 typedef typename remove_all<LhsMatrixType>::type LhsMatrixTypeCleaned;
261 typedef typename remove_all<typename LhsMatrixTypeCleaned::Nested>::type LhsMatrixTypeNested;
267 EIGEN_DEVICE_FUNC EIGEN_CONSTEXPR
268 inline Index rows()
const EIGEN_NOEXCEPT {
return m_lhs.rows(); }
269 EIGEN_DEVICE_FUNC EIGEN_CONSTEXPR
270 inline Index cols()
const EIGEN_NOEXCEPT {
return m_rhs.cols(); }
272 template<
typename Dest> EIGEN_DEVICE_FUNC
void evalTo(
Dest&
dst)
const
275 dst =
Block<
const LhsMatrixTypeNested,
276 LhsMatrixTypeNested::RowsAtCompileTime,
277 LhsMatrixTypeNested::ColsAtCompileTime==
Dynamic?
Dynamic:LhsMatrixTypeNested::ColsAtCompileTime-1>
278 (m_lhs,0,0,m_lhs.rows(),m_lhs.cols()-1) * m_rhs;
279 dst += m_lhs.col(m_lhs.cols()-1).rowwise()
283 typename LhsMatrixTypeCleaned::Nested m_lhs;
284 typename MatrixType::Nested m_rhs;
287template<
typename MatrixType,
typename Rhs>
291 MatrixType::RowsAtCompileTime,
292 Rhs::ColsAtCompileTime,
293 MatrixType::PlainObject::Options,
294 MatrixType::MaxRowsAtCompileTime,
298template<
typename MatrixType,
typename Rhs>
300 :
public ReturnByValue<homogeneous_right_product_impl<Homogeneous<MatrixType,Horizontal>,Rhs> >
302 typedef typename remove_all<typename Rhs::Nested>::type RhsNested;
304 : m_lhs(lhs), m_rhs(rhs)
307 EIGEN_DEVICE_FUNC EIGEN_CONSTEXPR
inline Index rows()
const EIGEN_NOEXCEPT {
return m_lhs.rows(); }
308 EIGEN_DEVICE_FUNC EIGEN_CONSTEXPR
inline Index cols()
const EIGEN_NOEXCEPT {
return m_rhs.cols(); }
310 template<
typename Dest> EIGEN_DEVICE_FUNC
void evalTo(
Dest&
dst)
const
313 dst = m_lhs *
Block<
const RhsNested,
314 RhsNested::RowsAtCompileTime==
Dynamic?
Dynamic:RhsNested::RowsAtCompileTime-1,
315 RhsNested::ColsAtCompileTime>
316 (m_rhs,0,0,m_rhs.rows()-1,m_rhs.cols());
317 dst += m_rhs.row(m_rhs.rows()-1).colwise()
321 typename MatrixType::Nested m_lhs;
322 typename Rhs::Nested m_rhs;
325template<
typename ArgType,
int Direction>
335template<
typename ArgType,
int Direction>
337 :
evaluator<typename Homogeneous<ArgType,Direction>::PlainObject >
346 ::new (
static_cast<Base*
>(
this))
Base(m_temp);
354template<
typename DstXprType,
typename ArgType,
typename Scalar>
371template<
typename DstXprType,
typename ArgType,
typename Scalar>
387template<
typename LhsArg,
typename Rhs,
int ProductTag>
390 template<
typename Dest>
397template<
typename Lhs,
typename Rhs>
401 Dim = Lhs::ColsAtCompileTime,
402 Rows = Lhs::RowsAtCompileTime
404 typedef typename Rhs::template ConstNRowsBlockXpr<Dim>::Type LinearBlockConst;
405 typedef typename remove_const<LinearBlockConst>::type LinearBlock;
406 typedef typename Rhs::ConstRowXpr ConstantColumn;
412template<
typename Lhs,
typename Rhs,
int ProductTag>
414 :
public evaluator<typename homogeneous_right_product_refactoring_helper<typename Lhs::NestedExpression,Rhs>::Xpr>
418 typedef typename helper::ConstantBlock ConstantBlock;
419 typedef typename helper::Xpr RefactoredXpr;
424 + ConstantBlock(
xpr.rhs().row(
xpr.rhs().rows()-1),
xpr.lhs().rows(), 1) )
428template<
typename Lhs,
typename RhsArg,
int ProductTag>
431 template<
typename Dest>
440template<
typename Lhs,
typename RhsArg,
int ProductTag>
443 template<
typename Dest>
450template<
typename Lhs,
typename Rhs>
454 Dim = Rhs::RowsAtCompileTime,
455 Cols = Rhs::ColsAtCompileTime
457 typedef typename Lhs::template ConstNColsBlockXpr<Dim>::Type LinearBlockConst;
458 typedef typename remove_const<LinearBlockConst>::type LinearBlock;
459 typedef typename Lhs::ConstColXpr ConstantColumn;
465template<
typename Lhs,
typename Rhs,
int ProductTag>
467 :
public evaluator<typename homogeneous_left_product_refactoring_helper<Lhs,typename Rhs::NestedExpression>::Xpr>
471 typedef typename helper::ConstantBlock ConstantBlock;
472 typedef typename helper::Xpr RefactoredXpr;
477 + ConstantBlock(
xpr.lhs().col(
xpr.lhs().cols()-1),1,
xpr.rhs().cols()) )
481template<
typename Scalar,
int Dim,
int Mode,
int Options,
typename RhsArg,
int ProductTag>
485 template<
typename Dest>
492template<
typename ExpressionType,
int S
ide,
bool Transposed>
Expression of a fixed-size or dynamic-size block.
Definition Block.h:105
EIGEN_DEVICE_FUNC void resize(Index newSize)
Only plain matrices/arrays, not expressions, may be resized; therefore the only useful resize methods...
Definition DenseBase.h:246
EIGEN_DEVICE_FUNC Derived & setOnes()
Sets all coefficients in this expression to one.
Definition CwiseNullaryOp.h:698
\geometry_module
Definition Homogeneous.h:62
Base class for all dense matrices, vectors, and expressions.
Definition MatrixBase.h:50
EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE EvalReturnType eval() const
Definition DenseBase.h:407
@ ColsAtCompileTime
The number of columns at compile-time.
Definition DenseBase.h:106
NoAlias< Derived, Eigen::MatrixBase > EIGEN_DEVICE_FUNC noalias()
Definition NoAlias.h:102
Expression of the product of two arbitrary matrices or vectors.
Definition Product.h:75
Expression of the multiple replication of a matrix or vector.
Definition Replicate.h:63
Definition ReturnByValue.h:52
Pseudo expression providing broadcasting and partial reduction operations.
Definition VectorwiseOp.h:187
Definition XprHelper.h:258
Definition XprHelper.h:110
@ 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
@ Projective
Transformation is a general projective transformation stored as a (Dim+1)^2 matrix.
Definition Constants.h:464
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
Definition Constants.h:528
Definition Constants.h:530
Definition Constants.h:533
Definition AssignEvaluator.h:817
Definition AssignEvaluator.h:824
Definition AssignEvaluator.h:814
Definition Constants.h:542
Definition AssignmentFunctors.h:21
Definition CoreEvaluators.h:80
Definition CoreEvaluators.h:91
Definition ProductEvaluators.h:86
Definition Homogeneous.h:55
Definition Homogeneous.h:452
Definition Homogeneous.h:56
Definition Homogeneous.h:399
Definition ProductEvaluators.h:998
Definition ForwardDeclarations.h:164
Definition Homogeneous.h:219
Definition ForwardDeclarations.h:17
Definition CoreEvaluators.h:65