OpenRadioss 2025.1.11
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lapacke_zgbsvx_work.c File Reference
#include "lapacke_utils.h"

Go to the source code of this file.

Functions

lapack_int LAPACKE_zgbsvx_work (int matrix_layout, char fact, char trans, lapack_int n, lapack_int kl, lapack_int ku, lapack_int nrhs, lapack_complex_double *ab, lapack_int ldab, lapack_complex_double *afb, lapack_int ldafb, lapack_int *ipiv, char *equed, double *r, double *c, lapack_complex_double *b, lapack_int ldb, lapack_complex_double *x, lapack_int ldx, double *rcond, double *ferr, double *berr, lapack_complex_double *work, double *rwork)

Function Documentation

◆ LAPACKE_zgbsvx_work()

lapack_int LAPACKE_zgbsvx_work ( int matrix_layout,
char fact,
char trans,
lapack_int n,
lapack_int kl,
lapack_int ku,
lapack_int nrhs,
lapack_complex_double * ab,
lapack_int ldab,
lapack_complex_double * afb,
lapack_int ldafb,
lapack_int * ipiv,
char * equed,
double * r,
double * c,
lapack_complex_double * b,
lapack_int ldb,
lapack_complex_double * x,
lapack_int ldx,
double * rcond,
double * ferr,
double * berr,
lapack_complex_double * work,
double * rwork )

Definition at line 35 of file lapacke_zgbsvx_work.c.

45{
46 lapack_int info = 0;
47 if( matrix_layout == LAPACK_COL_MAJOR ) {
48 /* Call LAPACK function and adjust info */
49 LAPACK_zgbsvx( &fact, &trans, &n, &kl, &ku, &nrhs, ab, &ldab, afb,
50 &ldafb, ipiv, equed, r, c, b, &ldb, x, &ldx, rcond, ferr,
51 berr, work, rwork, &info );
52 if( info < 0 ) {
53 info = info - 1;
54 }
55 } else if( matrix_layout == LAPACK_ROW_MAJOR ) {
56 lapack_int ldab_t = MAX(1,kl+ku+1);
57 lapack_int ldafb_t = MAX(1,2*kl+ku+1);
58 lapack_int ldb_t = MAX(1,n);
59 lapack_int ldx_t = MAX(1,n);
60 lapack_complex_double* ab_t = NULL;
61 lapack_complex_double* afb_t = NULL;
62 lapack_complex_double* b_t = NULL;
63 lapack_complex_double* x_t = NULL;
64 /* Check leading dimension(s) */
65 if( ldab < n ) {
66 info = -9;
67 LAPACKE_xerbla( "LAPACKE_zgbsvx_work", info );
68 return info;
69 }
70 if( ldafb < n ) {
71 info = -11;
72 LAPACKE_xerbla( "LAPACKE_zgbsvx_work", info );
73 return info;
74 }
75 if( ldb < nrhs ) {
76 info = -17;
77 LAPACKE_xerbla( "LAPACKE_zgbsvx_work", info );
78 return info;
79 }
80 if( ldx < nrhs ) {
81 info = -19;
82 LAPACKE_xerbla( "LAPACKE_zgbsvx_work", info );
83 return info;
84 }
85 /* Allocate memory for temporary array(s) */
86 ab_t = (lapack_complex_double*)
87 LAPACKE_malloc( sizeof(lapack_complex_double) * ldab_t * MAX(1,n) );
88 if( ab_t == NULL ) {
90 goto exit_level_0;
91 }
92 afb_t = (lapack_complex_double*)
94 ldafb_t * MAX(1,n) );
95 if( afb_t == NULL ) {
97 goto exit_level_1;
98 }
101 ldb_t * MAX(1,nrhs) );
102 if( b_t == NULL ) {
104 goto exit_level_2;
105 }
106 x_t = (lapack_complex_double*)
108 ldx_t * MAX(1,nrhs) );
109 if( x_t == NULL ) {
111 goto exit_level_3;
112 }
113 /* Transpose input matrices */
114 LAPACKE_zgb_trans( matrix_layout, n, n, kl, ku, ab, ldab, ab_t, ldab_t );
115 if( LAPACKE_lsame( fact, 'f' ) ) {
116 LAPACKE_zgb_trans( matrix_layout, n, n, kl, kl+ku, afb, ldafb, afb_t,
117 ldafb_t );
118 }
119 LAPACKE_zge_trans( matrix_layout, n, nrhs, b, ldb, b_t, ldb_t );
120 /* Call LAPACK function and adjust info */
121 LAPACK_zgbsvx( &fact, &trans, &n, &kl, &ku, &nrhs, ab_t, &ldab_t, afb_t,
122 &ldafb_t, ipiv, equed, r, c, b_t, &ldb_t, x_t, &ldx_t,
123 rcond, ferr, berr, work, rwork, &info );
124 if( info < 0 ) {
125 info = info - 1;
126 }
127 /* Transpose output matrices */
128 if( LAPACKE_lsame( fact, 'e' ) && ( LAPACKE_lsame( *equed, 'b' ) ||
129 LAPACKE_lsame( *equed, 'c' ) || LAPACKE_lsame( *equed, 'r' ) ) ) {
130 LAPACKE_zgb_trans( LAPACK_COL_MAJOR, n, n, kl, ku, ab_t, ldab_t, ab,
131 ldab );
132 }
133 if( LAPACKE_lsame( fact, 'e' ) || LAPACKE_lsame( fact, 'n' ) ) {
134 LAPACKE_zgb_trans( LAPACK_COL_MAJOR, n, n, kl, kl+ku, afb_t,
135 ldafb_t, afb, ldafb );
136 }
137 if( LAPACKE_lsame( fact, 'f' ) && ( LAPACKE_lsame( *equed, 'b' ) ||
138 LAPACKE_lsame( *equed, 'c' ) || LAPACKE_lsame( *equed, 'r' ) ) ) {
139 LAPACKE_zge_trans( LAPACK_COL_MAJOR, n, nrhs, b_t, ldb_t, b, ldb );
140 }
141 LAPACKE_zge_trans( LAPACK_COL_MAJOR, n, nrhs, x_t, ldx_t, x, ldx );
142 /* Release memory and exit */
143 LAPACKE_free( x_t );
144exit_level_3:
145 LAPACKE_free( b_t );
146exit_level_2:
147 LAPACKE_free( afb_t );
148exit_level_1:
149 LAPACKE_free( ab_t );
150exit_level_0:
151 if( info == LAPACK_TRANSPOSE_MEMORY_ERROR ) {
152 LAPACKE_xerbla( "LAPACKE_zgbsvx_work", info );
153 }
154 } else {
155 info = -1;
156 LAPACKE_xerbla( "LAPACKE_zgbsvx_work", info );
157 }
158 return info;
159}
#define lapack_int
Definition lapack.h:83
#define LAPACK_zgbsvx(...)
Definition lapack.h:1055
#define lapack_complex_double
Definition lapack.h:63
#define LAPACK_COL_MAJOR
Definition lapacke.h:53
#define LAPACKE_free(p)
Definition lapacke.h:46
#define LAPACK_ROW_MAJOR
Definition lapacke.h:52
#define LAPACKE_malloc(size)
Definition lapacke.h:43
#define LAPACK_TRANSPOSE_MEMORY_ERROR
Definition lapacke.h:56
lapack_logical LAPACKE_lsame(char ca, char cb)
void LAPACKE_xerbla(const char *name, lapack_int info)
void LAPACKE_zge_trans(int matrix_layout, lapack_int m, lapack_int n, const lapack_complex_double *in, lapack_int ldin, lapack_complex_double *out, lapack_int ldout)
void LAPACKE_zgb_trans(int matrix_layout, lapack_int m, lapack_int n, lapack_int kl, lapack_int ku, const lapack_complex_double *in, lapack_int ldin, lapack_complex_double *out, lapack_int ldout)
#define MAX(x, y)
n