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lapacke_zggsvd3_work.c
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1/*****************************************************************************
2 Copyright (c) 2014, Intel Corp.
3 All rights reserved.
4
5 Redistribution and use in source and binary forms, with or without
6 modification, are permitted provided that the following conditions are met:
7
8 * Redistributions of source code must retain the above copyright notice,
9 this list of conditions and the following disclaimer.
10 * Redistributions in binary form must reproduce the above copyright
11 notice, this list of conditions and the following disclaimer in the
12 documentation and/or other materials provided with the distribution.
13 * Neither the name of Intel Corporation nor the names of its contributors
14 may be used to endorse or promote products derived from this software
15 without specific prior written permission.
16
17 THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
18 AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
19 IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
20 ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
21 LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
22 CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
23 SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
24 INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
25 CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
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27 THE POSSIBILITY OF SUCH DAMAGE.
28*****************************************************************************
29* Contents: Native middle-level C interface to LAPACK function zggsvd3
30* Author: Intel Corporation
31*****************************************************************************/
32
33#include "lapacke_utils.h"
34
35lapack_int LAPACKE_zggsvd3_work( int matrix_layout, char jobu, char jobv,
36 char jobq, lapack_int m, lapack_int n,
40 double* alpha, double* beta,
45 double* rwork, lapack_int* iwork )
46{
47 lapack_int info = 0;
48 if( matrix_layout == LAPACK_COL_MAJOR ) {
49 /* Call LAPACK function and adjust info */
50 LAPACK_zggsvd3( &jobu, &jobv, &jobq, &m, &n, &p, k, l, a, &lda, b, &ldb,
51 alpha, beta, u, &ldu, v, &ldv, q, &ldq, work, &lwork,
52 rwork, iwork, &info );
53 if( info < 0 ) {
54 info = info - 1;
55 }
56 } else if( matrix_layout == LAPACK_ROW_MAJOR ) {
57 lapack_int lda_t = MAX(1,m);
58 lapack_int ldb_t = MAX(1,p);
59 lapack_int ldq_t = MAX(1,n);
60 lapack_int ldu_t = MAX(1,m);
61 lapack_int ldv_t = MAX(1,p);
62 lapack_complex_double* a_t = NULL;
63 lapack_complex_double* b_t = NULL;
64 lapack_complex_double* u_t = NULL;
65 lapack_complex_double* v_t = NULL;
66 lapack_complex_double* q_t = NULL;
67 /* Check leading dimension(s) */
68 if( lda < n ) {
69 info = -11;
70 LAPACKE_xerbla( "LAPACKE_zggsvd3_work", info );
71 return info;
72 }
73 if( ldb < n ) {
74 info = -13;
75 LAPACKE_xerbla( "LAPACKE_zggsvd3_work", info );
76 return info;
77 }
78 if( ldq < n ) {
79 info = -21;
80 LAPACKE_xerbla( "LAPACKE_zggsvd3_work", info );
81 return info;
82 }
83 if( ldu < m ) {
84 info = -17;
85 LAPACKE_xerbla( "LAPACKE_zggsvd3_work", info );
86 return info;
87 }
88 if( ldv < p ) {
89 info = -19;
90 LAPACKE_xerbla( "LAPACKE_zggsvd3_work", info );
91 return info;
92 }
93 /* Query optimal working array(s) size if requested */
94 if( lwork == -1 ) {
95 LAPACK_zggsvd3( &jobu, &jobv, &jobq, &m, &n, &p, k, l, a, &lda_t,
96 b, &ldb_t, alpha, beta, u, &ldu_t, v, &ldv_t,
97 q, &ldq_t, work, &lwork, rwork, iwork, &info );
98 return (info < 0) ? (info - 1) : info;
99 }
100 /* Allocate memory for temporary array(s) */
101 a_t = (lapack_complex_double*)
102 LAPACKE_malloc( sizeof(lapack_complex_double) * lda_t * MAX(1,n) );
103 if( a_t == NULL ) {
105 goto exit_level_0;
106 }
107 b_t = (lapack_complex_double*)
108 LAPACKE_malloc( sizeof(lapack_complex_double) * ldb_t * MAX(1,n) );
109 if( b_t == NULL ) {
111 goto exit_level_1;
112 }
113 if( LAPACKE_lsame( jobu, 'u' ) ) {
114 u_t = (lapack_complex_double*)
116 ldu_t * MAX(1,m) );
117 if( u_t == NULL ) {
119 goto exit_level_2;
120 }
121 }
122 if( LAPACKE_lsame( jobv, 'v' ) ) {
123 v_t = (lapack_complex_double*)
125 ldv_t * MAX(1,p) );
126 if( v_t == NULL ) {
128 goto exit_level_3;
129 }
130 }
131 if( LAPACKE_lsame( jobq, 'q' ) ) {
132 q_t = (lapack_complex_double*)
134 ldq_t * MAX(1,n) );
135 if( q_t == NULL ) {
137 goto exit_level_4;
138 }
139 }
140 /* Transpose input matrices */
141 LAPACKE_zge_trans( matrix_layout, m, n, a, lda, a_t, lda_t );
142 LAPACKE_zge_trans( matrix_layout, p, n, b, ldb, b_t, ldb_t );
143 /* Call LAPACK function and adjust info */
144 LAPACK_zggsvd3( &jobu, &jobv, &jobq, &m, &n, &p, k, l, a_t, &lda_t, b_t,
145 &ldb_t, alpha, beta, u_t, &ldu_t, v_t, &ldv_t, q_t,
146 &ldq_t, work, &lwork, rwork, iwork, &info );
147 if( info < 0 ) {
148 info = info - 1;
149 }
150 /* Transpose output matrices */
151 LAPACKE_zge_trans( LAPACK_COL_MAJOR, m, n, a_t, lda_t, a, lda );
152 LAPACKE_zge_trans( LAPACK_COL_MAJOR, p, n, b_t, ldb_t, b, ldb );
153 if( LAPACKE_lsame( jobu, 'u' ) ) {
154 LAPACKE_zge_trans( LAPACK_COL_MAJOR, m, m, u_t, ldu_t, u, ldu );
155 }
156 if( LAPACKE_lsame( jobv, 'v' ) ) {
157 LAPACKE_zge_trans( LAPACK_COL_MAJOR, p, p, v_t, ldv_t, v, ldv );
158 }
159 if( LAPACKE_lsame( jobq, 'q' ) ) {
160 LAPACKE_zge_trans( LAPACK_COL_MAJOR, n, n, q_t, ldq_t, q, ldq );
161 }
162 /* Release memory and exit */
163 if( LAPACKE_lsame( jobq, 'q' ) ) {
164 LAPACKE_free( q_t );
165 }
166exit_level_4:
167 if( LAPACKE_lsame( jobv, 'v' ) ) {
168 LAPACKE_free( v_t );
169 }
170exit_level_3:
171 if( LAPACKE_lsame( jobu, 'u' ) ) {
172 LAPACKE_free( u_t );
173 }
174exit_level_2:
175 LAPACKE_free( b_t );
176exit_level_1:
177 LAPACKE_free( a_t );
178exit_level_0:
179 if( info == LAPACK_TRANSPOSE_MEMORY_ERROR ) {
180 LAPACKE_xerbla( "LAPACKE_zggsvd3_work", info );
181 }
182 } else {
183 info = -1;
184 LAPACKE_xerbla( "LAPACKE_zggsvd3_work", info );
185 }
186 return info;
187}
#define alpha
Definition eval.h:35
#define LAPACK_zggsvd3(...)
Definition lapack.h:5453
#define lapack_int
Definition lapack.h:83
#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)
#define MAX(x, y)
lapack_int LAPACKE_zggsvd3_work(int matrix_layout, char jobu, char jobv, char jobq, lapack_int m, lapack_int n, lapack_int p, lapack_int *k, lapack_int *l, lapack_complex_double *a, lapack_int lda, lapack_complex_double *b, lapack_int ldb, double *alpha, double *beta, lapack_complex_double *u, lapack_int ldu, lapack_complex_double *v, lapack_int ldv, lapack_complex_double *q, lapack_int ldq, lapack_complex_double *work, lapack_int lwork, double *rwork, lapack_int *iwork)
n