10#ifndef EIGEN_CONSERVATIVESPARSESPARSEPRODUCT_H
11#define EIGEN_CONSERVATIVESPARSESPARSEPRODUCT_H
17template<
typename Lhs,
typename Rhs,
typename ResultType>
18static void conservative_sparse_sparse_product_impl(
const Lhs& lhs,
const Rhs& rhs, ResultType& res,
bool sortedInsertion =
false)
20 typedef typename remove_all<Lhs>::type::Scalar LhsScalar;
21 typedef typename remove_all<Rhs>::type::Scalar RhsScalar;
22 typedef typename remove_all<ResultType>::type::Scalar ResScalar;
26 Index cols = rhs.outerSize();
27 eigen_assert(lhs.outerSize() == rhs.innerSize());
29 ei_declare_aligned_stack_constructed_variable(
bool, mask, rows, 0);
30 ei_declare_aligned_stack_constructed_variable(ResScalar, values, rows, 0);
31 ei_declare_aligned_stack_constructed_variable(
Index, indices, rows, 0);
33 std::memset(mask,0,
sizeof(
bool)*rows);
35 evaluator<Lhs> lhsEval(lhs);
36 evaluator<Rhs> rhsEval(rhs);
44 Index estimated_nnz_prod = lhsEval.nonZerosEstimate() + rhsEval.nonZerosEstimate();
47 res.reserve(
Index(estimated_nnz_prod));
49 for (
Index j=0; j<cols; ++j)
54 for (
typename evaluator<Rhs>::InnerIterator rhsIt(rhsEval, j); rhsIt; ++rhsIt)
56 RhsScalar y = rhsIt.
value();
57 Index k = rhsIt.index();
58 for (
typename evaluator<Lhs>::InnerIterator lhsIt(lhsEval, k); lhsIt; ++lhsIt)
60 Index i = lhsIt.index();
61 LhsScalar x = lhsIt.value();
76 for(
Index k=0; k<nnz; ++k)
79 res.insertBackByOuterInnerUnordered(j,i) = values[i];
86 const Index t200 = rows/11;
87 const Index t = (rows*100)/139;
95 if((nnz<200 && nnz<t200) || nnz * numext::log2(
int(nnz)) < t)
97 if(nnz>1) std::sort(indices,indices+nnz);
98 for(
Index k=0; k<nnz; ++k)
100 Index i = indices[k];
101 res.insertBackByOuterInner(j,i) = values[i];
108 for(
Index i=0; i<rows; ++i)
113 res.insertBackByOuterInner(j,i) = values[i];
127template<
typename Lhs,
typename Rhs,
typename ResultType,
133template<
typename Lhs,
typename Rhs,
typename ResultType>
136 typedef typename remove_all<Lhs>::type LhsCleaned;
137 typedef typename LhsCleaned::Scalar Scalar;
139 static void run(
const Lhs& lhs,
const Rhs& rhs, ResultType& res)
148 if(lhs.rows()>rhs.cols())
152 internal::conservative_sparse_sparse_product_impl<Lhs,Rhs,ColMajorMatrix>(lhs, rhs,
resCol,
true);
153 res =
resCol.markAsRValue();
159 internal::conservative_sparse_sparse_product_impl<Lhs,Rhs,ColMajorMatrixAux>(lhs, rhs,
resCol,
false);
161 res =
resRow.markAsRValue();
166template<
typename Lhs,
typename Rhs,
typename ResultType>
169 static void run(
const Lhs& lhs,
const Rhs& rhs, ResultType& res)
175 internal::conservative_sparse_sparse_product_impl<RowMajorRhs,Lhs,RowMajorRes>(
rhsRow, lhs,
resRow);
180template<
typename Lhs,
typename Rhs,
typename ResultType>
183 static void run(
const Lhs& lhs,
const Rhs& rhs, ResultType& res)
189 internal::conservative_sparse_sparse_product_impl<Rhs,RowMajorLhs,RowMajorRes>(rhs,
lhsRow,
resRow);
194template<
typename Lhs,
typename Rhs,
typename ResultType>
197 static void run(
const Lhs& lhs,
const Rhs& rhs, ResultType& res)
201 internal::conservative_sparse_sparse_product_impl<Rhs,Lhs,RowMajorMatrix>(rhs, lhs,
resRow);
207template<
typename Lhs,
typename Rhs,
typename ResultType>
212 static void run(
const Lhs& lhs,
const Rhs& rhs, ResultType& res)
216 internal::conservative_sparse_sparse_product_impl<Lhs,Rhs,ColMajorMatrix>(lhs, rhs,
resCol);
221template<
typename Lhs,
typename Rhs,
typename ResultType>
224 static void run(
const Lhs& lhs,
const Rhs& rhs, ResultType& res)
230 internal::conservative_sparse_sparse_product_impl<ColMajorLhs,Rhs,ColMajorRes>(
lhsCol, rhs,
resCol);
235template<
typename Lhs,
typename Rhs,
typename ResultType>
238 static void run(
const Lhs& lhs,
const Rhs& rhs, ResultType& res)
244 internal::conservative_sparse_sparse_product_impl<Lhs,ColMajorRhs,ColMajorRes>(lhs,
rhsCol,
resCol);
249template<
typename Lhs,
typename Rhs,
typename ResultType>
252 static void run(
const Lhs& lhs,
const Rhs& rhs, ResultType& res)
257 internal::conservative_sparse_sparse_product_impl<Rhs,Lhs,RowMajorMatrix>(rhs, lhs,
resRow);
269template<
typename Lhs,
typename Rhs,
typename ResultType>
270static void sparse_sparse_to_dense_product_impl(
const Lhs& lhs,
const Rhs& rhs, ResultType& res)
272 typedef typename remove_all<Lhs>::type::Scalar LhsScalar;
273 typedef typename remove_all<Rhs>::type::Scalar RhsScalar;
275 eigen_assert(lhs.outerSize() == rhs.innerSize());
280 for (
Index j=0; j<cols; ++j)
290 res.coeffRef(i,j) += x * y;
301template<
typename Lhs,
typename Rhs,
typename ResultType,
306template<
typename Lhs,
typename Rhs,
typename ResultType>
309 static void run(
const Lhs& lhs,
const Rhs& rhs, ResultType& res)
311 internal::sparse_sparse_to_dense_product_impl<Lhs,Rhs,ResultType>(lhs, rhs, res);
315template<
typename Lhs,
typename Rhs,
typename ResultType>
318 static void run(
const Lhs& lhs,
const Rhs& rhs, ResultType& res)
322 internal::sparse_sparse_to_dense_product_impl<ColMajorLhs,Rhs,ResultType>(
lhsCol, rhs, res);
326template<
typename Lhs,
typename Rhs,
typename ResultType>
329 static void run(
const Lhs& lhs,
const Rhs& rhs, ResultType& res)
333 internal::sparse_sparse_to_dense_product_impl<Lhs,ColMajorRhs,ResultType>(lhs,
rhsCol, res);
337template<
typename Lhs,
typename Rhs,
typename ResultType>
340 static void run(
const Lhs& lhs,
const Rhs& rhs, ResultType& res)
343 internal::sparse_sparse_to_dense_product_impl<Rhs,Lhs,Transpose<ResultType> >(rhs, lhs,
trRes);
EIGEN_DEVICE_FUNC EIGEN_CONSTEXPR Index innerSize() const
Definition DenseBase.h:235
EIGEN_DEVICE_FUNC EIGEN_CONSTEXPR Index outerSize() const
Definition DenseBase.h:223
EIGEN_DEVICE_FUNC CoeffReturnType value() const
Definition DenseBase.h:526
Base class for all dense matrices, vectors, and expressions.
Definition MatrixBase.h:50
@ ColMajor
Storage order is column major (see TopicStorageOrders).
Definition Constants.h:319
@ RowMajor
Storage order is row major (see TopicStorageOrders).
Definition Constants.h:321
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 ConservativeSparseSparseProduct.h:131
Definition ConservativeSparseSparseProduct.h:304