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Ginkgo
Generated from pipelines/1330831941 branch based on master. Ginkgo version 1.8.0
A numerical linear algebra library targeting many-core architectures
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5 #ifndef GKO_PUBLIC_CORE_SOLVER_FCG_HPP_
6 #define GKO_PUBLIC_CORE_SOLVER_FCG_HPP_
12 #include <ginkgo/core/base/array.hpp>
13 #include <ginkgo/core/base/exception_helpers.hpp>
14 #include <ginkgo/core/base/lin_op.hpp>
15 #include <ginkgo/core/base/math.hpp>
16 #include <ginkgo/core/base/types.hpp>
17 #include <ginkgo/core/config/config.hpp>
18 #include <ginkgo/core/config/registry.hpp>
19 #include <ginkgo/core/log/logger.hpp>
20 #include <ginkgo/core/matrix/dense.hpp>
21 #include <ginkgo/core/matrix/identity.hpp>
22 #include <ginkgo/core/solver/solver_base.hpp>
23 #include <ginkgo/core/stop/combined.hpp>
24 #include <ginkgo/core/stop/criterion.hpp>
52 template <
typename ValueType = default_precision>
61 using value_type = ValueType;
64 std::unique_ptr<LinOp>
transpose()
const override;
79 parameters_type, Factory> {};
100 config::make_type_descriptor<ValueType>());
103 void apply_impl(
const LinOp* b,
LinOp* x)
const override;
105 template <
typename VectorType>
106 void apply_dense_impl(
const VectorType* b, VectorType* x)
const;
109 LinOp* x)
const override;
111 explicit Fcg(std::shared_ptr<const Executor> exec)
116 std::shared_ptr<const LinOp> system_matrix)
120 std::move(system_matrix), factory->get_parameters()},
121 parameters_{factory->get_parameters()}
126 template <
typename ValueType>
130 static int num_vectors(
const Solver&);
132 static int num_arrays(
const Solver&);
134 static std::vector<std::string> op_names(
const Solver&);
136 static std::vector<std::string> array_names(
const Solver&);
138 static std::vector<int> scalars(
const Solver&);
140 static std::vector<int> vectors(
const Solver&);
143 constexpr
static int r = 0;
145 constexpr
static int z = 1;
147 constexpr
static int p = 2;
149 constexpr
static int q = 3;
151 constexpr
static int t = 4;
153 constexpr
static int alpha = 5;
155 constexpr
static int beta = 6;
157 constexpr
static int prev_rho = 7;
159 constexpr
static int rho = 8;
161 constexpr
static int rho_t = 9;
163 constexpr
static int one = 10;
165 constexpr
static int minus_one = 11;
168 constexpr
static int stop = 0;
170 constexpr
static int tmp = 1;
178 #endif // GKO_PUBLIC_CORE_SOLVER_FCG_HPP_
pnode describes a tree of properties.
Definition: property_tree.hpp:28
Definition: lin_op.hpp:118
Linear operators which support transposition should implement the Transposable interface.
Definition: lin_op.hpp:434
Definition: solver_base.hpp:840
FCG or the flexible conjugate gradient method is an iterative type Krylov subspace method which is su...
Definition: fcg.hpp:53
std::unique_ptr< LinOp > transpose() const override
Returns a LinOp representing the transpose of the Transposable object.
This class describes the value and index types to be used when building a Ginkgo type from a configur...
Definition: type_descriptor.hpp:37
The Ginkgo namespace.
Definition: abstract_factory.hpp:20
#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:1018
std::unique_ptr< LinOp > conj_transpose() const override
Returns a LinOp representing the conjugate transpose of the Transposable object.
bool apply_uses_initial_guess() const override
Return true as iterative solvers use the data in x as an initial guess.
Definition: fcg.hpp:73
This class stores additional context for creating Ginkgo objects from configuration files.
Definition: registry.hpp:168
#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
static parameters_type parse(const config::pnode &config, const config::registry &context, const config::type_descriptor &td_for_child=config::make_type_descriptor< ValueType >())
Create the parameters from the property_tree.
std::shared_ptr< const Executor > get_executor() const noexcept
Returns the Executor of the object.
Definition: polymorphic_object.hpp:235
Traits class providing information on the type and location of workspace vectors inside a solver.
Definition: solver_base.hpp:239
const dim< 2 > & get_size() const noexcept
Returns the size of the operator.
Definition: lin_op.hpp:211
The EnableLinOp mixin can be used to provide sensible default implementations of the majority of the ...
Definition: lin_op.hpp:878
A LinOp implementing this interface stores a system matrix and stopping criterion factory.
Definition: solver_base.hpp:785
constexpr T one()
Returns the multiplicative identity for T.
Definition: math.hpp:775
This mixin inherits from (a subclass of) PolymorphicObject and provides a base implementation of a ne...
Definition: polymorphic_object.hpp:662