10#ifndef EIGEN_SPARSEASSIGN_H
11#define EIGEN_SPARSEASSIGN_H
15template<
typename Derived>
16template<
typename OtherDerived>
17Derived& SparseMatrixBase<Derived>::operator=(
const EigenBase<OtherDerived> &other)
19 internal::call_assignment_no_alias(derived(), other.derived());
23template<
typename Derived>
24template<
typename OtherDerived>
25Derived& SparseMatrixBase<Derived>::operator=(
const ReturnByValue<OtherDerived>& other)
28 other.evalTo(derived());
32template<
typename Derived>
33template<
typename OtherDerived>
34inline Derived& SparseMatrixBase<Derived>::operator=(
const SparseMatrixBase<OtherDerived>& other)
37 internal::Assignment<Derived,OtherDerived,internal::assign_op<Scalar,typename OtherDerived::Scalar> >
38 ::run(derived(), other.derived(), internal::assign_op<Scalar,typename OtherDerived::Scalar>());
42template<
typename Derived>
43inline Derived& SparseMatrixBase<Derived>::operator=(
const Derived& other)
45 internal::call_assignment_no_alias(derived(), other.derived());
70template<
typename DstXprType,
typename SrcXprType>
71void assign_sparse_to_sparse(DstXprType &
dst,
const SrcXprType &
src)
73 typedef typename DstXprType::Scalar Scalar;
77 SrcEvaluatorType srcEvaluator(
src);
81 if ((!transpose) &&
src.isRValue())
86 dst.reserve((std::min)(
src.rows()*
src.cols(), (std::max)(
src.rows(),
src.cols())*2));
90 for (
typename SrcEvaluatorType::InnerIterator it(srcEvaluator, j); it; ++it)
92 Scalar v = it.
value();
93 dst.insertBackByOuterInner(j,it.index()) = v;
101 eigen_assert(( ((internal::traits<DstXprType>::SupportedAccessPatterns & OuterRandomAccessPattern)==OuterRandomAccessPattern) ||
103 "the transpose operation is supposed to be handled in SparseMatrix::operator=");
108 DstXprType temp(src.rows(), src.cols());
110 temp.reserve((std::min)(src.rows()*src.cols(), (std::max)(src.rows(),src.cols())*2));
111 for (
Index j=0; j<outerEvaluationSize; ++j)
114 for (
typename SrcEvaluatorType::InnerIterator it(srcEvaluator, j); it; ++it)
116 Scalar v = it.value();
117 temp.insertBackByOuterInner(Flip?it.index():j,Flip?j:it.index()) = v;
122 dst = temp.markAsRValue();
127template<
typename DstXprType,
typename SrcXprType,
typename Functor>
132 assign_sparse_to_sparse(
dst.derived(),
src.derived());
137template<
typename DstXprType,
typename SrcXprType,
typename Functor,
typename Weak>
140 static void run(DstXprType &
dst,
const SrcXprType &
src,
const Functor &func)
146 resize_if_allowed(
dst,
src, func);
152 func.assignCoeff(
dstEval.coeffRef(i.row(),i.col()), i.value());
157template<
typename DstXprType,
typename Func1,
typename Func2>
160 template<
typename SrcXprType,
typename InitialFunc>
161 static EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE
164 #ifdef EIGEN_SPARSE_ASSIGNMENT_FROM_DENSE_OP_SPARSE_PLUGIN
173 template<
typename Lhs,
typename Rhs,
typename Scalar>
174 static EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE
179 #ifdef EIGEN_SPARSE_ASSIGNMENT_FROM_SPARSE_ADD_DENSE_PLUGIN
189 template<
typename Lhs,
typename Rhs,
typename Scalar>
190 static EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE
195 #ifdef EIGEN_SPARSE_ASSIGNMENT_FROM_SPARSE_SUB_DENSE_PLUGIN
200 call_assignment_no_alias(
dst, -
src.rhs(),
Func1());
205#define EIGEN_CATCH_ASSIGN_DENSE_OP_SPARSE(ASSIGN_OP,BINOP,ASSIGN_OP2) \
206 template< typename DstXprType, typename Lhs, typename Rhs, typename Scalar> \
207 struct Assignment<DstXprType, CwiseBinaryOp<internal::BINOP<Scalar,Scalar>, const Lhs, const Rhs>, internal::ASSIGN_OP<typename DstXprType::Scalar,Scalar>, \
209 typename internal::enable_if< internal::is_same<typename internal::evaluator_traits<Lhs>::Shape,DenseShape>::value \
210 || internal::is_same<typename internal::evaluator_traits<Rhs>::Shape,DenseShape>::value>::type> \
211 : assignment_from_dense_op_sparse<DstXprType, internal::ASSIGN_OP<typename DstXprType::Scalar,typename Lhs::Scalar>, internal::ASSIGN_OP2<typename DstXprType::Scalar,typename Rhs::Scalar> > \
225template<
typename DstXprType,
typename DecType,
typename RhsType,
typename Scalar>
244template<
typename DstXprType,
typename SrcXprType,
typename Functor>
247 typedef typename DstXprType::StorageIndex StorageIndex;
248 typedef typename DstXprType::Scalar Scalar;
250 template<
int Options,
typename AssignFunc>
254 template<
typename DstDerived>
258 template<
typename DstDerived>
262 template<
typename DstDerived>
Generic expression where a coefficient-wise binary operator is applied to two expressions.
Definition CwiseBinaryOp.h:84
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 CoeffReturnType value() const
Definition DenseBase.h:526
EIGEN_DEVICE_FUNC Derived & setZero()
Sets all coefficients in this expression to zero.
Definition CwiseNullaryOp.h:546
Base class for all dense matrices, vectors, and expressions.
Definition MatrixBase.h:50
EIGEN_DEVICE_FUNC DiagonalReturnType diagonal()
Definition Diagonal.h:187
Pseudo expression representing a solving operation.
Definition Solve.h:63
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
Definition Constants.h:528
Definition Constants.h:531
Definition Constants.h:537
The type used to identify a general sparse storage.
Definition Constants.h:510
Definition AssignEvaluator.h:817
Definition AssignEvaluator.h:824
Definition SparseAssign.h:240
Definition Constants.h:545
Definition SparseAssign.h:62
Definition SparseAssign.h:61
Definition SparseUtil.h:137
Definition AssignmentFunctors.h:46
Definition AssignmentFunctors.h:21
Definition SparseAssign.h:159
Definition CoreEvaluators.h:91
Definition BinaryFunctors.h:350
Definition BinaryFunctors.h:33
Definition CoreEvaluators.h:23
Definition CoreEvaluators.h:29
Definition AssignmentFunctors.h:67