Ginkgo Generated from branch based on main. Ginkgo version 1.11.0
A numerical linear algebra library targeting many-core architectures
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par_ic.hpp
1// SPDX-FileCopyrightText: 2017 - 2025 The Ginkgo authors
2//
3// SPDX-License-Identifier: BSD-3-Clause
4
5#ifndef GKO_PUBLIC_CORE_FACTORIZATION_PAR_IC_HPP_
6#define GKO_PUBLIC_CORE_FACTORIZATION_PAR_IC_HPP_
7
8
9#include <memory>
10
11#include <ginkgo/core/base/composition.hpp>
12#include <ginkgo/core/base/lin_op.hpp>
13#include <ginkgo/core/base/types.hpp>
14#include <ginkgo/core/config/config.hpp>
15#include <ginkgo/core/config/registry.hpp>
16#include <ginkgo/core/matrix/csr.hpp>
17
18
19namespace gko {
25namespace factorization {
26
27
68template <typename ValueType = default_precision, typename IndexType = int32>
69class ParIc : public Composition<ValueType> {
70 GKO_ASSERT_SUPPORTED_VALUE_AND_INDEX_TYPE;
71
72public:
73 using value_type = ValueType;
74 using index_type = IndexType;
75 using matrix_type = matrix::Csr<ValueType, IndexType>;
76
77 std::shared_ptr<const matrix_type> get_l_factor() const
78 {
79 // Can be `static_cast` since the type is guaranteed in this class
80 return std::static_pointer_cast<const matrix_type>(
81 this->get_operators()[0]);
82 }
83
84 std::shared_ptr<const matrix_type> get_lt_factor() const
85 {
86 if (this->get_operators().size() == 2) {
87 // Can be `static_cast` since the type is guaranteed in this class
88 return std::static_pointer_cast<const matrix_type>(
89 this->get_operators()[1]);
90 } else {
91 return std::static_pointer_cast<const matrix_type>(
92 share(get_l_factor()->conj_transpose()));
93 }
94 }
95
96 // Remove the possibility of calling `create`, which was enabled by
97 // `Composition`
98 template <typename... Args>
99 static std::unique_ptr<Composition<ValueType>> create(Args&&... args) =
100 delete;
101
103 {
111
123
128 std::shared_ptr<typename matrix_type::strategy_type>
130
137 };
138 GKO_ENABLE_LIN_OP_FACTORY(ParIc, parameters, Factory);
140
155 const config::pnode& config, const config::registry& context,
156 const config::type_descriptor& td_for_child =
157 config::make_type_descriptor<ValueType, IndexType>());
158
159protected:
160 explicit ParIc(const Factory* factory,
161 std::shared_ptr<const LinOp> system_matrix)
162 : Composition<ValueType>(factory->get_executor()),
163 parameters_{factory->get_parameters()}
164 {
165 if (parameters_.l_strategy == nullptr) {
166 parameters_.l_strategy =
167 std::make_shared<typename matrix_type::classical>();
168 }
169 generate(system_matrix, parameters_.skip_sorting,
170 parameters_.both_factors)
171 ->move_to(this);
172 }
173
174 std::unique_ptr<Composition<ValueType>> generate(
175 const std::shared_ptr<const LinOp>& system_matrix, bool skip_sorting,
176 bool both_factors) const;
177};
178
179
180} // namespace factorization
181} // namespace gko
182
183
184#endif // GKO_PUBLIC_CORE_FACTORIZATION_PAR_IC_HPP_
std::unique_ptr< LinOp > conj_transpose() const override
const std::vector< std::shared_ptr< const LinOp > > & get_operators() const noexcept
Definition composition.hpp:55
pnode describes a tree of properties.
Definition property_tree.hpp:28
This class stores additional context for creating Ginkgo objects from configuration files.
Definition registry.hpp:167
This class describes the value and index types to be used when building a Ginkgo type from a configur...
Definition type_descriptor.hpp:39
Definition par_ic.hpp:138
static parameters_type parse(const config::pnode &config, const config::registry &context, const config::type_descriptor &td_for_child=config::make_type_descriptor< ValueType, IndexType >())
Create the parameters from the property_tree.
CSR is a matrix format which stores only the nonzero coefficients by compressing each row of the matr...
Definition csr.hpp:126
#define GKO_CREATE_FACTORY_PARAMETERS(_parameters_name, _factory_name)
This Macro will generate a new type containing the parameters for the factory _factory_name.
Definition abstract_factory.hpp:280
#define GKO_FACTORY_PARAMETER_SCALAR(_name, _default)
Creates a scalar factory parameter in the factory parameters structure.
Definition abstract_factory.hpp:445
#define GKO_ENABLE_BUILD_METHOD(_factory_name)
Defines a build method for the factory, simplifying its construction by removing the repetitive typin...
Definition abstract_factory.hpp:394
#define GKO_ENABLE_LIN_OP_FACTORY(_lin_op, _parameters_name, _factory_name)
This macro will generate a default implementation of a LinOpFactory for the LinOp subclass it is defi...
Definition lin_op.hpp:1017
The Factorization namespace.
Definition ic.hpp:26
The Ginkgo namespace.
Definition abstract_factory.hpp:20
std::size_t size_type
Integral type used for allocation quantities.
Definition types.hpp:90
detail::shared_type< OwningPointer > share(OwningPointer &&p)
Marks the object pointed to by p as shared.
Definition utils_helper.hpp:224
size_type iterations
The number of iterations the compute kernel will use when doing the factorization.
Definition par_ic.hpp:110
bool skip_sorting
The system_matrix, which will be given to this factory, must be sorted (first by row,...
Definition par_ic.hpp:122
bool both_factors
true will generate both L and L^H, false will only generate the L factor, resulting in a Composition ...
Definition par_ic.hpp:136
std::shared_ptr< typename matrix_type::strategy_type > l_strategy
Strategy which will be used by the L matrix.
Definition par_ic.hpp:129