/usr/include/ug/ls.h is in libug-dev 3.11.0-1.
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The actual contents of the file can be viewed below.
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// vi: set et ts=4 sw=2 sts=2:
/****************************************************************************/
/* */
/* File: ls.h */
/* */
/* Purpose: definition of the linear solver num proc type */
/* */
/* Author: Christian Wieners */
/* Institut fuer Computeranwendungen III */
/* Universitaet Stuttgart */
/* Pfaffenwaldring 27 */
/* 70569 Stuttgart */
/* email: ug@ica3.uni-stuttgart.de */
/* */
/* History: November 29, 1996 */
/* */
/* Remarks: */
/* */
/****************************************************************************/
/* RCS_ID
$Header$
*/
/****************************************************************************/
/* */
/* auto include mechanism and other include files */
/* */
/****************************************************************************/
#ifndef __LS__
#define __LS__
#include "np.h"
#include "namespace.h"
START_UGDIM_NAMESPACE
/****************************************************************************/
/* */
/* defines in the following order */
/* */
/* compile time constants defining static data size (i.e. arrays) */
/* other constants */
/* macros */
/* */
/****************************************************************************/
#define LINEAR_SOLVER_CLASS_NAME "linear_solver"
/* access macros */
#define NPLS_A(p) (((NP_LINEAR_SOLVER*)(p))->A)
#define NPLS_b(p) (((NP_LINEAR_SOLVER*)(p))->b)
#define NPLS_x(p) (((NP_LINEAR_SOLVER*)(p))->x)
#define NPLS_red(p) (((NP_LINEAR_SOLVER*)(p))->reduction)
#define NPLS_abs(p) (((NP_LINEAR_SOLVER*)(p))->abslimit)
#define NPLS_setbasetime(p) (((NP_LINEAR_SOLVER*)(p))->setbasetime)
#define NPLS_printbasetime(p) (((NP_LINEAR_SOLVER*)(p))->printbasetime)
/****************************************************************************/
/* */
/* definition of exported data structures */
/* */
/****************************************************************************/
/* a data type for returning the status of the computation */
typedef struct {
INT error_code; /* error code */
INT converged; /* error code */
VEC_SCALAR first_defect; /* first defect */
VEC_SCALAR last_defect; /* last defect */
INT number_of_linear_iterations; /* number of iterations */
} LRESULT;
struct np_linear_solver {
NP_BASE base; /* inherits base class */
/* data (optional, necessary for calling the generic execute routine) */
VECDATA_DESC *x; /* solution */
VECDATA_DESC *b; /* defect */
MATDATA_DESC *A; /* matrix */
VEC_SCALAR reduction; /* reduction factor */
VEC_SCALAR abslimit; /* absolute limit for the defect */
INT setbasetime; /* collect time portions for base level solver */
INT printbasetime; /* print collected time for base level solver */
/* functions */
INT (*PreProcess)
(struct np_linear_solver *, /* pointer to (derived) object */
INT, /* level */
VECDATA_DESC *, /* solution vector */
VECDATA_DESC *, /* defect vector */
MATDATA_DESC *, /* matrix */
INT *, /* baselevel used by the solver */
INT *); /* result */
INT (*Defect) /* b := b - Ax */
(struct np_linear_solver *, /* pointer to (derived) object */
INT, /* level */
VECDATA_DESC *, /* solution vector */
VECDATA_DESC *, /* defect vector */
MATDATA_DESC *, /* matrix */
INT *); /* result */
INT (*Residuum) /* computes norm of the defect */
(struct np_linear_solver *, /* pointer to (derived) object */
INT, /* from level */
INT, /* to level */
VECDATA_DESC *, /* solution vector */
VECDATA_DESC *, /* defect vector */
MATDATA_DESC *, /* matrix */
LRESULT *); /* result structure */
INT (*Solver) /* b := b - Ax */
(struct np_linear_solver *, /* pointer to (derived) object */
INT, /* level */
VECDATA_DESC *, /* solution vector */
VECDATA_DESC *, /* defect vector */
MATDATA_DESC *, /* matrix */
VEC_SCALAR, /* reduction factor */
VEC_SCALAR, /* absolute limit for the defect */
LRESULT *); /* result structure */
INT (*PostProcess)
(struct np_linear_solver *, /* pointer to (derived) object */
INT, /* level */
VECDATA_DESC *, /* solution vector */
VECDATA_DESC *, /* defect vector */
MATDATA_DESC *, /* matrix */
INT *); /* result */
};
typedef struct np_linear_solver NP_LINEAR_SOLVER;
typedef INT (*PreProcessLinearSolverProcPtr) \
(NP_LINEAR_SOLVER *, INT, VECDATA_DESC *, VECDATA_DESC *, MATDATA_DESC *, \
INT *, INT *);
typedef INT (*LinearDefectProcPtr) \
(NP_LINEAR_SOLVER *, INT, VECDATA_DESC *, VECDATA_DESC *, MATDATA_DESC *, \
INT *);
typedef INT (*LinearResiduumProcPtr) \
(NP_LINEAR_SOLVER *, INT, VECDATA_DESC *, VECDATA_DESC *, MATDATA_DESC *, \
LRESULT *);
typedef INT (*LinearSolverProcPtr) \
(NP_LINEAR_SOLVER *, INT, VECDATA_DESC *, VECDATA_DESC *, MATDATA_DESC *, \
VEC_SCALAR, VEC_SCALAR, LRESULT *);
typedef INT (*PostProcessLinearSolverProcPtr) \
(NP_LINEAR_SOLVER *, INT, VECDATA_DESC *, VECDATA_DESC *, MATDATA_DESC *, \
INT *);
/****************************************************************************/
/* */
/* definition of exported functions */
/* */
/****************************************************************************/
/* generic init function for LinearSolver num procs */
INT NPLinearSolverInit (NP_LINEAR_SOLVER *theNP, INT argc , char **argv);
/* generic display function for LinearSolver num procs */
INT NPLinearSolverDisplay (NP_LINEAR_SOLVER *theNP);
/* generic execute function for LinearSolver num procs */
INT NPLinearSolverExecute (NP_BASE *theNP, INT argc , char **argv);
/* create standard LinearSolver num proc type */
INT InitLinearSolver (void);
END_UGDIM_NAMESPACE
#endif
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