lapacke_zgbsvx_work.c
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00001 /*****************************************************************************
00002   Copyright (c) 2010, Intel Corp.
00003   All rights reserved.
00004 
00005   Redistribution and use in source and binary forms, with or without
00006   modification, are permitted provided that the following conditions are met:
00007 
00008     * Redistributions of source code must retain the above copyright notice,
00009       this list of conditions and the following disclaimer.
00010     * Redistributions in binary form must reproduce the above copyright
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00014       may be used to endorse or promote products derived from this software
00015       without specific prior written permission.
00016 
00017   THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
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00026   ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF
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00028 ******************************************************************************
00029 * Contents: Native middle-level C interface to LAPACK function zgbsvx
00030 * Author: Intel Corporation
00031 * Generated October, 2010
00032 *****************************************************************************/
00033 
00034 #include "lapacke.h"
00035 #include "lapacke_utils.h"
00036 
00037 lapack_int LAPACKE_zgbsvx_work( int matrix_order, char fact, char trans,
00038                                 lapack_int n, lapack_int kl, lapack_int ku,
00039                                 lapack_int nrhs, lapack_complex_double* ab,
00040                                 lapack_int ldab, lapack_complex_double* afb,
00041                                 lapack_int ldafb, lapack_int* ipiv, char* equed,
00042                                 double* r, double* c, lapack_complex_double* b,
00043                                 lapack_int ldb, lapack_complex_double* x,
00044                                 lapack_int ldx, double* rcond, double* ferr,
00045                                 double* berr, lapack_complex_double* work,
00046                                 double* rwork )
00047 {
00048     lapack_int info = 0;
00049     if( matrix_order == LAPACK_COL_MAJOR ) {
00050         /* Call LAPACK function and adjust info */
00051         LAPACK_zgbsvx( &fact, &trans, &n, &kl, &ku, &nrhs, ab, &ldab, afb,
00052                        &ldafb, ipiv, equed, r, c, b, &ldb, x, &ldx, rcond, ferr,
00053                        berr, work, rwork, &info );
00054         if( info < 0 ) {
00055             info = info - 1;
00056         }
00057     } else if( matrix_order == LAPACK_ROW_MAJOR ) {
00058         lapack_int ldab_t = MAX(1,kl+ku+1);
00059         lapack_int ldafb_t = MAX(1,2*kl+ku+1);
00060         lapack_int ldb_t = MAX(1,n);
00061         lapack_int ldx_t = MAX(1,n);
00062         lapack_complex_double* ab_t = NULL;
00063         lapack_complex_double* afb_t = NULL;
00064         lapack_complex_double* b_t = NULL;
00065         lapack_complex_double* x_t = NULL;
00066         /* Check leading dimension(s) */
00067         if( ldab < n ) {
00068             info = -9;
00069             LAPACKE_xerbla( "LAPACKE_zgbsvx_work", info );
00070             return info;
00071         }
00072         if( ldafb < n ) {
00073             info = -11;
00074             LAPACKE_xerbla( "LAPACKE_zgbsvx_work", info );
00075             return info;
00076         }
00077         if( ldb < nrhs ) {
00078             info = -17;
00079             LAPACKE_xerbla( "LAPACKE_zgbsvx_work", info );
00080             return info;
00081         }
00082         if( ldx < nrhs ) {
00083             info = -19;
00084             LAPACKE_xerbla( "LAPACKE_zgbsvx_work", info );
00085             return info;
00086         }
00087         /* Allocate memory for temporary array(s) */
00088         ab_t = (lapack_complex_double*)
00089             LAPACKE_malloc( sizeof(lapack_complex_double) * ldab_t * MAX(1,n) );
00090         if( ab_t == NULL ) {
00091             info = LAPACK_TRANSPOSE_MEMORY_ERROR;
00092             goto exit_level_0;
00093         }
00094         afb_t = (lapack_complex_double*)
00095             LAPACKE_malloc( sizeof(lapack_complex_double) *
00096                             ldafb_t * MAX(1,n) );
00097         if( afb_t == NULL ) {
00098             info = LAPACK_TRANSPOSE_MEMORY_ERROR;
00099             goto exit_level_1;
00100         }
00101         b_t = (lapack_complex_double*)
00102             LAPACKE_malloc( sizeof(lapack_complex_double) *
00103                             ldb_t * MAX(1,nrhs) );
00104         if( b_t == NULL ) {
00105             info = LAPACK_TRANSPOSE_MEMORY_ERROR;
00106             goto exit_level_2;
00107         }
00108         x_t = (lapack_complex_double*)
00109             LAPACKE_malloc( sizeof(lapack_complex_double) *
00110                             ldx_t * MAX(1,nrhs) );
00111         if( x_t == NULL ) {
00112             info = LAPACK_TRANSPOSE_MEMORY_ERROR;
00113             goto exit_level_3;
00114         }
00115         /* Transpose input matrices */
00116         LAPACKE_zgb_trans( matrix_order, n, n, kl, ku, ab, ldab, ab_t, ldab_t );
00117         if( LAPACKE_lsame( fact, 'f' ) ) {
00118             LAPACKE_zgb_trans( matrix_order, n, n, kl, kl+ku, afb, ldafb, afb_t,
00119                                ldafb_t );
00120         }
00121         LAPACKE_zge_trans( matrix_order, n, nrhs, b, ldb, b_t, ldb_t );
00122         /* Call LAPACK function and adjust info */
00123         LAPACK_zgbsvx( &fact, &trans, &n, &kl, &ku, &nrhs, ab_t, &ldab_t, afb_t,
00124                        &ldafb_t, ipiv, equed, r, c, b_t, &ldb_t, x_t, &ldx_t,
00125                        rcond, ferr, berr, work, rwork, &info );
00126         if( info < 0 ) {
00127             info = info - 1;
00128         }
00129         /* Transpose output matrices */
00130         if( LAPACKE_lsame( fact, 'e' ) && ( LAPACKE_lsame( *equed, 'b' ) ||
00131             LAPACKE_lsame( *equed, 'c' ) || LAPACKE_lsame( *equed, 'r' ) ) ) {
00132             LAPACKE_zgb_trans( LAPACK_COL_MAJOR, n, n, kl, ku, ab_t, ldab_t, ab,
00133                                ldab );
00134         }
00135         if( LAPACKE_lsame( fact, 'e' ) || LAPACKE_lsame( fact, 'n' ) ) {
00136             LAPACKE_zgb_trans( LAPACK_COL_MAJOR, n, n, kl, kl+ku, afb_t,
00137                                ldafb_t, afb, ldafb );
00138         }
00139         if( LAPACKE_lsame( fact, 'f' ) && ( LAPACKE_lsame( *equed, 'b' ) ||
00140             LAPACKE_lsame( *equed, 'c' ) || LAPACKE_lsame( *equed, 'r' ) ) ) {
00141             LAPACKE_zge_trans( LAPACK_COL_MAJOR, n, nrhs, b_t, ldb_t, b, ldb );
00142         }
00143         LAPACKE_zge_trans( LAPACK_COL_MAJOR, n, nrhs, x_t, ldx_t, x, ldx );
00144         /* Release memory and exit */
00145         LAPACKE_free( x_t );
00146 exit_level_3:
00147         LAPACKE_free( b_t );
00148 exit_level_2:
00149         LAPACKE_free( afb_t );
00150 exit_level_1:
00151         LAPACKE_free( ab_t );
00152 exit_level_0:
00153         if( info == LAPACK_TRANSPOSE_MEMORY_ERROR ) {
00154             LAPACKE_xerbla( "LAPACKE_zgbsvx_work", info );
00155         }
00156     } else {
00157         info = -1;
00158         LAPACKE_xerbla( "LAPACKE_zgbsvx_work", info );
00159     }
00160     return info;
00161 }


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autogenerated on Sat Jun 8 2019 18:55:54