BiCGSTAB or the Bi-Conjugate Gradient-Stabilized is a Krylov subspace solver.
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std::shared_ptr< const LinOp > | get_system_matrix () const |
| Gets the system operator (matrix) of the linear system. More...
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std::shared_ptr< const LinOp > | get_preconditioner () const override |
| Returns the preconditioner operator used by the solver. More...
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const parameters_type & | get_parameters () const |
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const Bicgstab< ValueType > * | apply (const LinOp *b, LinOp *x) const |
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Bicgstab< ValueType > * | apply (const LinOp *b, LinOp *x) |
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const Bicgstab< ValueType > * | apply (const LinOp *alpha, const LinOp *b, const LinOp *beta, LinOp *x) const |
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Bicgstab< ValueType > * | apply (const LinOp *alpha, const LinOp *b, const LinOp *beta, LinOp *x) |
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std::unique_ptr< Bicgstab< ValueType > > | create_default (std::shared_ptr< const Executor > exec) const |
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std::unique_ptr< Bicgstab< ValueType > > | create_default () const |
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std::unique_ptr< Bicgstab< ValueType > > | clone (std::shared_ptr< const Executor > exec) const |
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std::unique_ptr< Bicgstab< ValueType > > | clone () const |
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Bicgstab< ValueType > * | copy_from (const PolymorphicObject *other) |
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Bicgstab< ValueType > * | copy_from (std::unique_ptr< PolymorphicObject > other) |
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Bicgstab< ValueType > * | clear () |
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LinOp * | apply (const LinOp *b, LinOp *x) |
| Applies a linear operator to a vector (or a sequence of vectors). More...
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const LinOp * | apply (const LinOp *b, LinOp *x) const |
| Applies a linear operator to a vector (or a sequence of vectors). More...
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LinOp * | apply (const LinOp *alpha, const LinOp *b, const LinOp *beta, LinOp *x) |
| Performs the operation x = alpha * op(b) + beta * x. More...
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const LinOp * | apply (const LinOp *alpha, const LinOp *b, const LinOp *beta, LinOp *x) const |
| Performs the operation x = alpha * op(b) + beta * x. More...
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const dim< 2 > & | get_size () const noexcept |
| Returns the size of the operator. More...
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std::unique_ptr< LinOp > | create_default (std::shared_ptr< const Executor > exec) const |
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std::unique_ptr< LinOp > | create_default () const |
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std::unique_ptr< LinOp > | clone (std::shared_ptr< const Executor > exec) const |
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std::unique_ptr< LinOp > | clone () const |
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LinOp * | copy_from (const PolymorphicObject *other) |
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LinOp * | copy_from (std::unique_ptr< PolymorphicObject > other) |
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LinOp * | clear () |
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PolymorphicObject & | operator= (const PolymorphicObject &) |
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std::unique_ptr< PolymorphicObject > | create_default (std::shared_ptr< const Executor > exec) const |
| Creates a new "default" object of the same dynamic type as this object. More...
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std::unique_ptr< PolymorphicObject > | create_default () const |
| Creates a new "default" object of the same dynamic type as this object. More...
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std::unique_ptr< PolymorphicObject > | clone (std::shared_ptr< const Executor > exec) const |
| Creates a clone of the object. More...
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std::unique_ptr< PolymorphicObject > | clone () const |
| Creates a clone of the object. More...
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PolymorphicObject * | copy_from (const PolymorphicObject *other) |
| Copies another object into this object. More...
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PolymorphicObject * | copy_from (std::unique_ptr< PolymorphicObject > other) |
| Moves another object into this object. More...
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PolymorphicObject * | clear () |
| Transforms the object into its default state. More...
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std::shared_ptr< const Executor > | get_executor () const noexcept |
| Returns the Executor of the object. More...
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void | add_logger (std::shared_ptr< const Logger > logger) override |
| Adds a new logger to the list of subscribed loggers. More...
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void | remove_logger (const Logger *logger) override |
| Removes a logger from the list of subscribed loggers. More...
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void | convert_to (result_type *result) const override |
| Converts the implementer to an object of type result_type. More...
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void | move_to (result_type *result) override |
| Converts the implementer to an object of type result_type by moving data from this object. More...
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template<typename ValueType = default_precision>
class gko::solver::Bicgstab< ValueType >
BiCGSTAB or the Bi-Conjugate Gradient-Stabilized is a Krylov subspace solver.
Being a generic solver, it is capable of solving general matrices, including non-s.p.d matrices. Though, the memory and the computational requirement of the BiCGSTAB solver are higher than of its s.p.d solver counterpart, it has the capability to solve generic systems. It was developed by stabilizing the BiCG method.
- Template Parameters
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ValueType | precision of the elements of the system matrix. |