808 lines
26 KiB
C
808 lines
26 KiB
C
/*
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* Written by D.P. Manley, Digital Equipment Corporation.
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* Prefixed "C_" to BLAS routines and their declarations.
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*
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* Modified by T. H. Do, 4/08/98, SGI/CRAY Research.
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*/
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#include <stdlib.h>
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#include "cblas.h"
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#include "cblas_test.h"
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void F77_cgemv(int *order, char *transp, int *m, int *n,
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const void *alpha,
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CBLAS_TEST_COMPLEX *a, int *lda, const void *x, int *incx,
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const void *beta, void *y, int *incy) {
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CBLAS_TEST_COMPLEX *A;
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int i,j,LDA;
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enum CBLAS_TRANSPOSE trans;
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get_transpose_type(transp, &trans);
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if (*order == TEST_ROW_MJR) {
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LDA = *n+1;
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A = (CBLAS_TEST_COMPLEX *)malloc( (*m)*LDA*sizeof( CBLAS_TEST_COMPLEX) );
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for( i=0; i<*m; i++ )
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for( j=0; j<*n; j++ ){
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A[ LDA*i+j ].real=a[ (*lda)*j+i ].real;
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A[ LDA*i+j ].imag=a[ (*lda)*j+i ].imag;
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}
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cblas_cgemv( CblasRowMajor, trans, *m, *n, alpha, A, LDA, x, *incx,
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beta, y, *incy );
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free(A);
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}
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else if (*order == TEST_COL_MJR)
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cblas_cgemv( CblasColMajor, trans,
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*m, *n, alpha, a, *lda, x, *incx, beta, y, *incy );
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else
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cblas_cgemv( UNDEFINED, trans,
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*m, *n, alpha, a, *lda, x, *incx, beta, y, *incy );
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}
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void F77_cgbmv(int *order, char *transp, int *m, int *n, int *kl, int *ku,
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CBLAS_TEST_COMPLEX *alpha, CBLAS_TEST_COMPLEX *a, int *lda,
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CBLAS_TEST_COMPLEX *x, int *incx,
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CBLAS_TEST_COMPLEX *beta, CBLAS_TEST_COMPLEX *y, int *incy) {
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CBLAS_TEST_COMPLEX *A;
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int i,j,irow,jcol,LDA;
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enum CBLAS_TRANSPOSE trans;
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get_transpose_type(transp, &trans);
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if (*order == TEST_ROW_MJR) {
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LDA = *ku+*kl+2;
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A=( CBLAS_TEST_COMPLEX* )malloc((*n+*kl)*LDA*sizeof(CBLAS_TEST_COMPLEX));
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for( i=0; i<*ku; i++ ){
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irow=*ku+*kl-i;
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jcol=(*ku)-i;
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for( j=jcol; j<*n; j++ ){
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A[ LDA*(j-jcol)+irow ].real=a[ (*lda)*j+i ].real;
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A[ LDA*(j-jcol)+irow ].imag=a[ (*lda)*j+i ].imag;
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}
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}
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i=*ku;
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irow=*ku+*kl-i;
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for( j=0; j<*n; j++ ){
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A[ LDA*j+irow ].real=a[ (*lda)*j+i ].real;
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A[ LDA*j+irow ].imag=a[ (*lda)*j+i ].imag;
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}
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for( i=*ku+1; i<*ku+*kl+1; i++ ){
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irow=*ku+*kl-i;
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jcol=i-(*ku);
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for( j=jcol; j<(*n+*kl); j++ ){
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A[ LDA*j+irow ].real=a[ (*lda)*(j-jcol)+i ].real;
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A[ LDA*j+irow ].imag=a[ (*lda)*(j-jcol)+i ].imag;
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}
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}
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cblas_cgbmv( CblasRowMajor, trans, *m, *n, *kl, *ku, alpha, A, LDA, x,
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*incx, beta, y, *incy );
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free(A);
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}
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else if (*order == TEST_COL_MJR)
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cblas_cgbmv( CblasColMajor, trans, *m, *n, *kl, *ku, alpha, a, *lda, x,
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*incx, beta, y, *incy );
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else
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cblas_cgbmv( UNDEFINED, trans, *m, *n, *kl, *ku, alpha, a, *lda, x,
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*incx, beta, y, *incy );
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}
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void F77_cgeru(int *order, int *m, int *n, CBLAS_TEST_COMPLEX *alpha,
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CBLAS_TEST_COMPLEX *x, int *incx, CBLAS_TEST_COMPLEX *y, int *incy,
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CBLAS_TEST_COMPLEX *a, int *lda){
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CBLAS_TEST_COMPLEX *A;
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int i,j,LDA;
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if (*order == TEST_ROW_MJR) {
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LDA = *n+1;
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A=(CBLAS_TEST_COMPLEX*)malloc((*m)*LDA*sizeof(CBLAS_TEST_COMPLEX));
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for( i=0; i<*m; i++ )
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for( j=0; j<*n; j++ ){
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A[ LDA*i+j ].real=a[ (*lda)*j+i ].real;
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A[ LDA*i+j ].imag=a[ (*lda)*j+i ].imag;
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}
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cblas_cgeru( CblasRowMajor, *m, *n, alpha, x, *incx, y, *incy, A, LDA );
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for( i=0; i<*m; i++ )
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for( j=0; j<*n; j++ ){
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a[ (*lda)*j+i ].real=A[ LDA*i+j ].real;
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a[ (*lda)*j+i ].imag=A[ LDA*i+j ].imag;
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}
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free(A);
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}
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else if (*order == TEST_COL_MJR)
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cblas_cgeru( CblasColMajor, *m, *n, alpha, x, *incx, y, *incy, a, *lda );
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else
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cblas_cgeru( UNDEFINED, *m, *n, alpha, x, *incx, y, *incy, a, *lda );
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}
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void F77_cgerc(int *order, int *m, int *n, CBLAS_TEST_COMPLEX *alpha,
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CBLAS_TEST_COMPLEX *x, int *incx, CBLAS_TEST_COMPLEX *y, int *incy,
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CBLAS_TEST_COMPLEX *a, int *lda) {
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CBLAS_TEST_COMPLEX *A;
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int i,j,LDA;
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if (*order == TEST_ROW_MJR) {
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LDA = *n+1;
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A=(CBLAS_TEST_COMPLEX* )malloc((*m)*LDA*sizeof(CBLAS_TEST_COMPLEX ) );
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for( i=0; i<*m; i++ )
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for( j=0; j<*n; j++ ){
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A[ LDA*i+j ].real=a[ (*lda)*j+i ].real;
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A[ LDA*i+j ].imag=a[ (*lda)*j+i ].imag;
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}
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cblas_cgerc( CblasRowMajor, *m, *n, alpha, x, *incx, y, *incy, A, LDA );
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for( i=0; i<*m; i++ )
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for( j=0; j<*n; j++ ){
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a[ (*lda)*j+i ].real=A[ LDA*i+j ].real;
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a[ (*lda)*j+i ].imag=A[ LDA*i+j ].imag;
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}
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free(A);
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}
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else if (*order == TEST_COL_MJR)
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cblas_cgerc( CblasColMajor, *m, *n, alpha, x, *incx, y, *incy, a, *lda );
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else
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cblas_cgerc( UNDEFINED, *m, *n, alpha, x, *incx, y, *incy, a, *lda );
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}
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void F77_chemv(int *order, char *uplow, int *n, CBLAS_TEST_COMPLEX *alpha,
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CBLAS_TEST_COMPLEX *a, int *lda, CBLAS_TEST_COMPLEX *x,
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int *incx, CBLAS_TEST_COMPLEX *beta, CBLAS_TEST_COMPLEX *y, int *incy){
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CBLAS_TEST_COMPLEX *A;
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int i,j,LDA;
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enum CBLAS_UPLO uplo;
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get_uplo_type(uplow,&uplo);
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if (*order == TEST_ROW_MJR) {
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LDA = *n+1;
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A = (CBLAS_TEST_COMPLEX *)malloc((*n)*LDA*sizeof(CBLAS_TEST_COMPLEX));
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for( i=0; i<*n; i++ )
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for( j=0; j<*n; j++ ){
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A[ LDA*i+j ].real=a[ (*lda)*j+i ].real;
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A[ LDA*i+j ].imag=a[ (*lda)*j+i ].imag;
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}
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cblas_chemv( CblasRowMajor, uplo, *n, alpha, A, LDA, x, *incx,
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beta, y, *incy );
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free(A);
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}
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else if (*order == TEST_COL_MJR)
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cblas_chemv( CblasColMajor, uplo, *n, alpha, a, *lda, x, *incx,
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beta, y, *incy );
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else
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cblas_chemv( UNDEFINED, uplo, *n, alpha, a, *lda, x, *incx,
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beta, y, *incy );
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}
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void F77_chbmv(int *order, char *uplow, int *n, int *k,
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CBLAS_TEST_COMPLEX *alpha, CBLAS_TEST_COMPLEX *a, int *lda,
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CBLAS_TEST_COMPLEX *x, int *incx, CBLAS_TEST_COMPLEX *beta,
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CBLAS_TEST_COMPLEX *y, int *incy){
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CBLAS_TEST_COMPLEX *A;
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int i,irow,j,jcol,LDA;
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enum CBLAS_UPLO uplo;
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get_uplo_type(uplow,&uplo);
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if (*order == TEST_ROW_MJR) {
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if (uplo != CblasUpper && uplo != CblasLower )
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cblas_chbmv(CblasRowMajor, UNDEFINED, *n, *k, alpha, a, *lda, x,
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*incx, beta, y, *incy );
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else {
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LDA = *k+2;
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A =(CBLAS_TEST_COMPLEX*)malloc((*n+*k)*LDA*sizeof(CBLAS_TEST_COMPLEX));
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if (uplo == CblasUpper) {
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for( i=0; i<*k; i++ ){
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irow=*k-i;
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jcol=(*k)-i;
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for( j=jcol; j<*n; j++ ) {
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A[ LDA*(j-jcol)+irow ].real=a[ (*lda)*j+i ].real;
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A[ LDA*(j-jcol)+irow ].imag=a[ (*lda)*j+i ].imag;
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}
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}
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i=*k;
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irow=*k-i;
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for( j=0; j<*n; j++ ) {
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A[ LDA*j+irow ].real=a[ (*lda)*j+i ].real;
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A[ LDA*j+irow ].imag=a[ (*lda)*j+i ].imag;
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}
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}
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else {
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i=0;
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irow=*k-i;
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for( j=0; j<*n; j++ ) {
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A[ LDA*j+irow ].real=a[ (*lda)*j+i ].real;
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A[ LDA*j+irow ].imag=a[ (*lda)*j+i ].imag;
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}
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for( i=1; i<*k+1; i++ ){
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irow=*k-i;
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jcol=i;
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for( j=jcol; j<(*n+*k); j++ ) {
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A[ LDA*j+irow ].real=a[ (*lda)*(j-jcol)+i ].real;
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A[ LDA*j+irow ].imag=a[ (*lda)*(j-jcol)+i ].imag;
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}
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}
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}
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cblas_chbmv( CblasRowMajor, uplo, *n, *k, alpha, A, LDA, x, *incx,
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beta, y, *incy );
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free(A);
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}
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}
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else if (*order == TEST_COL_MJR)
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cblas_chbmv(CblasColMajor, uplo, *n, *k, alpha, a, *lda, x, *incx,
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beta, y, *incy );
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else
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cblas_chbmv(UNDEFINED, uplo, *n, *k, alpha, a, *lda, x, *incx,
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beta, y, *incy );
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}
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void F77_chpmv(int *order, char *uplow, int *n, CBLAS_TEST_COMPLEX *alpha,
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CBLAS_TEST_COMPLEX *ap, CBLAS_TEST_COMPLEX *x, int *incx,
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CBLAS_TEST_COMPLEX *beta, CBLAS_TEST_COMPLEX *y, int *incy){
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CBLAS_TEST_COMPLEX *A, *AP;
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int i,j,k,LDA;
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enum CBLAS_UPLO uplo;
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get_uplo_type(uplow,&uplo);
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if (*order == TEST_ROW_MJR) {
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if (uplo != CblasUpper && uplo != CblasLower )
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cblas_chpmv(CblasRowMajor, UNDEFINED, *n, alpha, ap, x, *incx,
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beta, y, *incy);
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else {
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LDA = *n;
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A = (CBLAS_TEST_COMPLEX* )malloc(LDA*LDA*sizeof(CBLAS_TEST_COMPLEX ));
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AP = (CBLAS_TEST_COMPLEX* )malloc( (((LDA+1)*LDA)/2)*
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sizeof( CBLAS_TEST_COMPLEX ));
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if (uplo == CblasUpper) {
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for( j=0, k=0; j<*n; j++ )
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for( i=0; i<j+1; i++, k++ ) {
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A[ LDA*i+j ].real=ap[ k ].real;
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A[ LDA*i+j ].imag=ap[ k ].imag;
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}
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for( i=0, k=0; i<*n; i++ )
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for( j=i; j<*n; j++, k++ ) {
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AP[ k ].real=A[ LDA*i+j ].real;
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AP[ k ].imag=A[ LDA*i+j ].imag;
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}
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}
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else {
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for( j=0, k=0; j<*n; j++ )
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for( i=j; i<*n; i++, k++ ) {
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A[ LDA*i+j ].real=ap[ k ].real;
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A[ LDA*i+j ].imag=ap[ k ].imag;
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}
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for( i=0, k=0; i<*n; i++ )
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for( j=0; j<i+1; j++, k++ ) {
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AP[ k ].real=A[ LDA*i+j ].real;
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AP[ k ].imag=A[ LDA*i+j ].imag;
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}
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}
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cblas_chpmv( CblasRowMajor, uplo, *n, alpha, AP, x, *incx, beta, y,
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*incy );
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free(A);
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free(AP);
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}
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}
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else if (*order == TEST_COL_MJR)
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cblas_chpmv( CblasColMajor, uplo, *n, alpha, ap, x, *incx, beta, y,
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*incy );
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else
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cblas_chpmv( UNDEFINED, uplo, *n, alpha, ap, x, *incx, beta, y,
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*incy );
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}
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void F77_ctbmv(int *order, char *uplow, char *transp, char *diagn,
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int *n, int *k, CBLAS_TEST_COMPLEX *a, int *lda, CBLAS_TEST_COMPLEX *x,
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int *incx) {
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CBLAS_TEST_COMPLEX *A;
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int irow, jcol, i, j, LDA;
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enum CBLAS_TRANSPOSE trans;
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enum CBLAS_UPLO uplo;
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enum CBLAS_DIAG diag;
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get_transpose_type(transp,&trans);
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get_uplo_type(uplow,&uplo);
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get_diag_type(diagn,&diag);
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if (*order == TEST_ROW_MJR) {
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if (uplo != CblasUpper && uplo != CblasLower )
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cblas_ctbmv(CblasRowMajor, UNDEFINED, trans, diag, *n, *k, a, *lda,
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x, *incx);
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else {
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LDA = *k+2;
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A=(CBLAS_TEST_COMPLEX *)malloc((*n+*k)*LDA*sizeof(CBLAS_TEST_COMPLEX));
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if (uplo == CblasUpper) {
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for( i=0; i<*k; i++ ){
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irow=*k-i;
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jcol=(*k)-i;
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for( j=jcol; j<*n; j++ ) {
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A[ LDA*(j-jcol)+irow ].real=a[ (*lda)*j+i ].real;
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A[ LDA*(j-jcol)+irow ].imag=a[ (*lda)*j+i ].imag;
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}
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}
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i=*k;
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irow=*k-i;
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for( j=0; j<*n; j++ ) {
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A[ LDA*j+irow ].real=a[ (*lda)*j+i ].real;
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A[ LDA*j+irow ].imag=a[ (*lda)*j+i ].imag;
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}
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}
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else {
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i=0;
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irow=*k-i;
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for( j=0; j<*n; j++ ) {
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A[ LDA*j+irow ].real=a[ (*lda)*j+i ].real;
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A[ LDA*j+irow ].imag=a[ (*lda)*j+i ].imag;
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}
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for( i=1; i<*k+1; i++ ){
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irow=*k-i;
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jcol=i;
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for( j=jcol; j<(*n+*k); j++ ) {
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A[ LDA*j+irow ].real=a[ (*lda)*(j-jcol)+i ].real;
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A[ LDA*j+irow ].imag=a[ (*lda)*(j-jcol)+i ].imag;
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}
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}
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}
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cblas_ctbmv(CblasRowMajor, uplo, trans, diag, *n, *k, A, LDA, x,
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*incx);
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free(A);
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}
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}
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else if (*order == TEST_COL_MJR)
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cblas_ctbmv(CblasColMajor, uplo, trans, diag, *n, *k, a, *lda, x, *incx);
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else
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cblas_ctbmv(UNDEFINED, uplo, trans, diag, *n, *k, a, *lda, x, *incx);
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}
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void F77_ctbsv(int *order, char *uplow, char *transp, char *diagn,
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int *n, int *k, CBLAS_TEST_COMPLEX *a, int *lda, CBLAS_TEST_COMPLEX *x,
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int *incx) {
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CBLAS_TEST_COMPLEX *A;
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int irow, jcol, i, j, LDA;
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enum CBLAS_TRANSPOSE trans;
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enum CBLAS_UPLO uplo;
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enum CBLAS_DIAG diag;
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get_transpose_type(transp,&trans);
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get_uplo_type(uplow,&uplo);
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get_diag_type(diagn,&diag);
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if (*order == TEST_ROW_MJR) {
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if (uplo != CblasUpper && uplo != CblasLower )
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cblas_ctbsv(CblasRowMajor, UNDEFINED, trans, diag, *n, *k, a, *lda, x,
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*incx);
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else {
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LDA = *k+2;
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A=(CBLAS_TEST_COMPLEX*)malloc((*n+*k)*LDA*sizeof(CBLAS_TEST_COMPLEX ));
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if (uplo == CblasUpper) {
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for( i=0; i<*k; i++ ){
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irow=*k-i;
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jcol=(*k)-i;
|
|
for( j=jcol; j<*n; j++ ) {
|
|
A[ LDA*(j-jcol)+irow ].real=a[ (*lda)*j+i ].real;
|
|
A[ LDA*(j-jcol)+irow ].imag=a[ (*lda)*j+i ].imag;
|
|
}
|
|
}
|
|
i=*k;
|
|
irow=*k-i;
|
|
for( j=0; j<*n; j++ ) {
|
|
A[ LDA*j+irow ].real=a[ (*lda)*j+i ].real;
|
|
A[ LDA*j+irow ].imag=a[ (*lda)*j+i ].imag;
|
|
}
|
|
}
|
|
else {
|
|
i=0;
|
|
irow=*k-i;
|
|
for( j=0; j<*n; j++ ) {
|
|
A[ LDA*j+irow ].real=a[ (*lda)*j+i ].real;
|
|
A[ LDA*j+irow ].imag=a[ (*lda)*j+i ].imag;
|
|
}
|
|
for( i=1; i<*k+1; i++ ){
|
|
irow=*k-i;
|
|
jcol=i;
|
|
for( j=jcol; j<(*n+*k); j++ ) {
|
|
A[ LDA*j+irow ].real=a[ (*lda)*(j-jcol)+i ].real;
|
|
A[ LDA*j+irow ].imag=a[ (*lda)*(j-jcol)+i ].imag;
|
|
}
|
|
}
|
|
}
|
|
cblas_ctbsv(CblasRowMajor, uplo, trans, diag, *n, *k, A, LDA,
|
|
x, *incx);
|
|
free(A);
|
|
}
|
|
}
|
|
else if (*order == TEST_COL_MJR)
|
|
cblas_ctbsv(CblasColMajor, uplo, trans, diag, *n, *k, a, *lda, x, *incx);
|
|
else
|
|
cblas_ctbsv(UNDEFINED, uplo, trans, diag, *n, *k, a, *lda, x, *incx);
|
|
}
|
|
|
|
void F77_ctpmv(int *order, char *uplow, char *transp, char *diagn,
|
|
int *n, CBLAS_TEST_COMPLEX *ap, CBLAS_TEST_COMPLEX *x, int *incx) {
|
|
CBLAS_TEST_COMPLEX *A, *AP;
|
|
int i, j, k, LDA;
|
|
enum CBLAS_TRANSPOSE trans;
|
|
enum CBLAS_UPLO uplo;
|
|
enum CBLAS_DIAG diag;
|
|
|
|
get_transpose_type(transp,&trans);
|
|
get_uplo_type(uplow,&uplo);
|
|
get_diag_type(diagn,&diag);
|
|
|
|
if (*order == TEST_ROW_MJR) {
|
|
if (uplo != CblasUpper && uplo != CblasLower )
|
|
cblas_ctpmv( CblasRowMajor, UNDEFINED, trans, diag, *n, ap, x, *incx );
|
|
else {
|
|
LDA = *n;
|
|
A=(CBLAS_TEST_COMPLEX*)malloc(LDA*LDA*sizeof(CBLAS_TEST_COMPLEX));
|
|
AP=(CBLAS_TEST_COMPLEX*)malloc((((LDA+1)*LDA)/2)*
|
|
sizeof(CBLAS_TEST_COMPLEX));
|
|
if (uplo == CblasUpper) {
|
|
for( j=0, k=0; j<*n; j++ )
|
|
for( i=0; i<j+1; i++, k++ ) {
|
|
A[ LDA*i+j ].real=ap[ k ].real;
|
|
A[ LDA*i+j ].imag=ap[ k ].imag;
|
|
}
|
|
for( i=0, k=0; i<*n; i++ )
|
|
for( j=i; j<*n; j++, k++ ) {
|
|
AP[ k ].real=A[ LDA*i+j ].real;
|
|
AP[ k ].imag=A[ LDA*i+j ].imag;
|
|
}
|
|
}
|
|
else {
|
|
for( j=0, k=0; j<*n; j++ )
|
|
for( i=j; i<*n; i++, k++ ) {
|
|
A[ LDA*i+j ].real=ap[ k ].real;
|
|
A[ LDA*i+j ].imag=ap[ k ].imag;
|
|
}
|
|
for( i=0, k=0; i<*n; i++ )
|
|
for( j=0; j<i+1; j++, k++ ) {
|
|
AP[ k ].real=A[ LDA*i+j ].real;
|
|
AP[ k ].imag=A[ LDA*i+j ].imag;
|
|
}
|
|
}
|
|
cblas_ctpmv( CblasRowMajor, uplo, trans, diag, *n, AP, x, *incx );
|
|
free(A);
|
|
free(AP);
|
|
}
|
|
}
|
|
else if (*order == TEST_COL_MJR)
|
|
cblas_ctpmv( CblasColMajor, uplo, trans, diag, *n, ap, x, *incx );
|
|
else
|
|
cblas_ctpmv( UNDEFINED, uplo, trans, diag, *n, ap, x, *incx );
|
|
}
|
|
|
|
void F77_ctpsv(int *order, char *uplow, char *transp, char *diagn,
|
|
int *n, CBLAS_TEST_COMPLEX *ap, CBLAS_TEST_COMPLEX *x, int *incx) {
|
|
CBLAS_TEST_COMPLEX *A, *AP;
|
|
int i, j, k, LDA;
|
|
enum CBLAS_TRANSPOSE trans;
|
|
enum CBLAS_UPLO uplo;
|
|
enum CBLAS_DIAG diag;
|
|
|
|
get_transpose_type(transp,&trans);
|
|
get_uplo_type(uplow,&uplo);
|
|
get_diag_type(diagn,&diag);
|
|
|
|
if (*order == TEST_ROW_MJR) {
|
|
if (uplo != CblasUpper && uplo != CblasLower )
|
|
cblas_ctpsv( CblasRowMajor, UNDEFINED, trans, diag, *n, ap, x, *incx );
|
|
else {
|
|
LDA = *n;
|
|
A=(CBLAS_TEST_COMPLEX*)malloc(LDA*LDA*sizeof(CBLAS_TEST_COMPLEX));
|
|
AP=(CBLAS_TEST_COMPLEX*)malloc((((LDA+1)*LDA)/2)*
|
|
sizeof(CBLAS_TEST_COMPLEX));
|
|
if (uplo == CblasUpper) {
|
|
for( j=0, k=0; j<*n; j++ )
|
|
for( i=0; i<j+1; i++, k++ ) {
|
|
A[ LDA*i+j ].real=ap[ k ].real;
|
|
A[ LDA*i+j ].imag=ap[ k ].imag;
|
|
}
|
|
for( i=0, k=0; i<*n; i++ )
|
|
for( j=i; j<*n; j++, k++ ) {
|
|
AP[ k ].real=A[ LDA*i+j ].real;
|
|
AP[ k ].imag=A[ LDA*i+j ].imag;
|
|
}
|
|
}
|
|
else {
|
|
for( j=0, k=0; j<*n; j++ )
|
|
for( i=j; i<*n; i++, k++ ) {
|
|
A[ LDA*i+j ].real=ap[ k ].real;
|
|
A[ LDA*i+j ].imag=ap[ k ].imag;
|
|
}
|
|
for( i=0, k=0; i<*n; i++ )
|
|
for( j=0; j<i+1; j++, k++ ) {
|
|
AP[ k ].real=A[ LDA*i+j ].real;
|
|
AP[ k ].imag=A[ LDA*i+j ].imag;
|
|
}
|
|
}
|
|
cblas_ctpsv( CblasRowMajor, uplo, trans, diag, *n, AP, x, *incx );
|
|
free(A);
|
|
free(AP);
|
|
}
|
|
}
|
|
else if (*order == TEST_COL_MJR)
|
|
cblas_ctpsv( CblasColMajor, uplo, trans, diag, *n, ap, x, *incx );
|
|
else
|
|
cblas_ctpsv( UNDEFINED, uplo, trans, diag, *n, ap, x, *incx );
|
|
}
|
|
|
|
void F77_ctrmv(int *order, char *uplow, char *transp, char *diagn,
|
|
int *n, CBLAS_TEST_COMPLEX *a, int *lda, CBLAS_TEST_COMPLEX *x,
|
|
int *incx) {
|
|
CBLAS_TEST_COMPLEX *A;
|
|
int i,j,LDA;
|
|
enum CBLAS_TRANSPOSE trans;
|
|
enum CBLAS_UPLO uplo;
|
|
enum CBLAS_DIAG diag;
|
|
|
|
get_transpose_type(transp,&trans);
|
|
get_uplo_type(uplow,&uplo);
|
|
get_diag_type(diagn,&diag);
|
|
|
|
if (*order == TEST_ROW_MJR) {
|
|
LDA=*n+1;
|
|
A=(CBLAS_TEST_COMPLEX*)malloc((*n)*LDA*sizeof(CBLAS_TEST_COMPLEX));
|
|
for( i=0; i<*n; i++ )
|
|
for( j=0; j<*n; j++ ) {
|
|
A[ LDA*i+j ].real=a[ (*lda)*j+i ].real;
|
|
A[ LDA*i+j ].imag=a[ (*lda)*j+i ].imag;
|
|
}
|
|
cblas_ctrmv(CblasRowMajor, uplo, trans, diag, *n, A, LDA, x, *incx);
|
|
free(A);
|
|
}
|
|
else if (*order == TEST_COL_MJR)
|
|
cblas_ctrmv(CblasColMajor, uplo, trans, diag, *n, a, *lda, x, *incx);
|
|
else
|
|
cblas_ctrmv(UNDEFINED, uplo, trans, diag, *n, a, *lda, x, *incx);
|
|
}
|
|
void F77_ctrsv(int *order, char *uplow, char *transp, char *diagn,
|
|
int *n, CBLAS_TEST_COMPLEX *a, int *lda, CBLAS_TEST_COMPLEX *x,
|
|
int *incx) {
|
|
CBLAS_TEST_COMPLEX *A;
|
|
int i,j,LDA;
|
|
enum CBLAS_TRANSPOSE trans;
|
|
enum CBLAS_UPLO uplo;
|
|
enum CBLAS_DIAG diag;
|
|
|
|
get_transpose_type(transp,&trans);
|
|
get_uplo_type(uplow,&uplo);
|
|
get_diag_type(diagn,&diag);
|
|
|
|
if (*order == TEST_ROW_MJR) {
|
|
LDA = *n+1;
|
|
A =(CBLAS_TEST_COMPLEX* )malloc((*n)*LDA*sizeof(CBLAS_TEST_COMPLEX ) );
|
|
for( i=0; i<*n; i++ )
|
|
for( j=0; j<*n; j++ ) {
|
|
A[ LDA*i+j ].real=a[ (*lda)*j+i ].real;
|
|
A[ LDA*i+j ].imag=a[ (*lda)*j+i ].imag;
|
|
}
|
|
cblas_ctrsv(CblasRowMajor, uplo, trans, diag, *n, A, LDA, x, *incx );
|
|
free(A);
|
|
}
|
|
else if (*order == TEST_COL_MJR)
|
|
cblas_ctrsv(CblasColMajor, uplo, trans, diag, *n, a, *lda, x, *incx );
|
|
else
|
|
cblas_ctrsv(UNDEFINED, uplo, trans, diag, *n, a, *lda, x, *incx );
|
|
}
|
|
|
|
void F77_chpr(int *order, char *uplow, int *n, float *alpha,
|
|
CBLAS_TEST_COMPLEX *x, int *incx, CBLAS_TEST_COMPLEX *ap) {
|
|
CBLAS_TEST_COMPLEX *A, *AP;
|
|
int i,j,k,LDA;
|
|
enum CBLAS_UPLO uplo;
|
|
|
|
get_uplo_type(uplow,&uplo);
|
|
|
|
if (*order == TEST_ROW_MJR) {
|
|
if (uplo != CblasUpper && uplo != CblasLower )
|
|
cblas_chpr(CblasRowMajor, UNDEFINED, *n, *alpha, x, *incx, ap );
|
|
else {
|
|
LDA = *n;
|
|
A = (CBLAS_TEST_COMPLEX* )malloc(LDA*LDA*sizeof(CBLAS_TEST_COMPLEX ) );
|
|
AP = ( CBLAS_TEST_COMPLEX* )malloc( (((LDA+1)*LDA)/2)*
|
|
sizeof( CBLAS_TEST_COMPLEX ));
|
|
if (uplo == CblasUpper) {
|
|
for( j=0, k=0; j<*n; j++ )
|
|
for( i=0; i<j+1; i++, k++ ){
|
|
A[ LDA*i+j ].real=ap[ k ].real;
|
|
A[ LDA*i+j ].imag=ap[ k ].imag;
|
|
}
|
|
for( i=0, k=0; i<*n; i++ )
|
|
for( j=i; j<*n; j++, k++ ){
|
|
AP[ k ].real=A[ LDA*i+j ].real;
|
|
AP[ k ].imag=A[ LDA*i+j ].imag;
|
|
}
|
|
}
|
|
else {
|
|
for( j=0, k=0; j<*n; j++ )
|
|
for( i=j; i<*n; i++, k++ ){
|
|
A[ LDA*i+j ].real=ap[ k ].real;
|
|
A[ LDA*i+j ].imag=ap[ k ].imag;
|
|
}
|
|
for( i=0, k=0; i<*n; i++ )
|
|
for( j=0; j<i+1; j++, k++ ){
|
|
AP[ k ].real=A[ LDA*i+j ].real;
|
|
AP[ k ].imag=A[ LDA*i+j ].imag;
|
|
}
|
|
}
|
|
cblas_chpr(CblasRowMajor, uplo, *n, *alpha, x, *incx, AP );
|
|
if (uplo == CblasUpper) {
|
|
for( i=0, k=0; i<*n; i++ )
|
|
for( j=i; j<*n; j++, k++ ){
|
|
A[ LDA*i+j ].real=AP[ k ].real;
|
|
A[ LDA*i+j ].imag=AP[ k ].imag;
|
|
}
|
|
for( j=0, k=0; j<*n; j++ )
|
|
for( i=0; i<j+1; i++, k++ ){
|
|
ap[ k ].real=A[ LDA*i+j ].real;
|
|
ap[ k ].imag=A[ LDA*i+j ].imag;
|
|
}
|
|
}
|
|
else {
|
|
for( i=0, k=0; i<*n; i++ )
|
|
for( j=0; j<i+1; j++, k++ ){
|
|
A[ LDA*i+j ].real=AP[ k ].real;
|
|
A[ LDA*i+j ].imag=AP[ k ].imag;
|
|
}
|
|
for( j=0, k=0; j<*n; j++ )
|
|
for( i=j; i<*n; i++, k++ ){
|
|
ap[ k ].real=A[ LDA*i+j ].real;
|
|
ap[ k ].imag=A[ LDA*i+j ].imag;
|
|
}
|
|
}
|
|
free(A);
|
|
free(AP);
|
|
}
|
|
}
|
|
else if (*order == TEST_COL_MJR)
|
|
cblas_chpr(CblasColMajor, uplo, *n, *alpha, x, *incx, ap );
|
|
else
|
|
cblas_chpr(UNDEFINED, uplo, *n, *alpha, x, *incx, ap );
|
|
}
|
|
|
|
void F77_chpr2(int *order, char *uplow, int *n, CBLAS_TEST_COMPLEX *alpha,
|
|
CBLAS_TEST_COMPLEX *x, int *incx, CBLAS_TEST_COMPLEX *y, int *incy,
|
|
CBLAS_TEST_COMPLEX *ap) {
|
|
CBLAS_TEST_COMPLEX *A, *AP;
|
|
int i,j,k,LDA;
|
|
enum CBLAS_UPLO uplo;
|
|
|
|
get_uplo_type(uplow,&uplo);
|
|
|
|
if (*order == TEST_ROW_MJR) {
|
|
if (uplo != CblasUpper && uplo != CblasLower )
|
|
cblas_chpr2( CblasRowMajor, UNDEFINED, *n, alpha, x, *incx, y,
|
|
*incy, ap );
|
|
else {
|
|
LDA = *n;
|
|
A=(CBLAS_TEST_COMPLEX*)malloc( LDA*LDA*sizeof(CBLAS_TEST_COMPLEX ) );
|
|
AP=(CBLAS_TEST_COMPLEX*)malloc( (((LDA+1)*LDA)/2)*
|
|
sizeof( CBLAS_TEST_COMPLEX ));
|
|
if (uplo == CblasUpper) {
|
|
for( j=0, k=0; j<*n; j++ )
|
|
for( i=0; i<j+1; i++, k++ ) {
|
|
A[ LDA*i+j ].real=ap[ k ].real;
|
|
A[ LDA*i+j ].imag=ap[ k ].imag;
|
|
}
|
|
for( i=0, k=0; i<*n; i++ )
|
|
for( j=i; j<*n; j++, k++ ) {
|
|
AP[ k ].real=A[ LDA*i+j ].real;
|
|
AP[ k ].imag=A[ LDA*i+j ].imag;
|
|
}
|
|
}
|
|
else {
|
|
for( j=0, k=0; j<*n; j++ )
|
|
for( i=j; i<*n; i++, k++ ) {
|
|
A[ LDA*i+j ].real=ap[ k ].real;
|
|
A[ LDA*i+j ].imag=ap[ k ].imag;
|
|
}
|
|
for( i=0, k=0; i<*n; i++ )
|
|
for( j=0; j<i+1; j++, k++ ) {
|
|
AP[ k ].real=A[ LDA*i+j ].real;
|
|
AP[ k ].imag=A[ LDA*i+j ].imag;
|
|
}
|
|
}
|
|
cblas_chpr2( CblasRowMajor, uplo, *n, alpha, x, *incx, y, *incy, AP );
|
|
if (uplo == CblasUpper) {
|
|
for( i=0, k=0; i<*n; i++ )
|
|
for( j=i; j<*n; j++, k++ ) {
|
|
A[ LDA*i+j ].real=AP[ k ].real;
|
|
A[ LDA*i+j ].imag=AP[ k ].imag;
|
|
}
|
|
for( j=0, k=0; j<*n; j++ )
|
|
for( i=0; i<j+1; i++, k++ ) {
|
|
ap[ k ].real=A[ LDA*i+j ].real;
|
|
ap[ k ].imag=A[ LDA*i+j ].imag;
|
|
}
|
|
}
|
|
else {
|
|
for( i=0, k=0; i<*n; i++ )
|
|
for( j=0; j<i+1; j++, k++ ) {
|
|
A[ LDA*i+j ].real=AP[ k ].real;
|
|
A[ LDA*i+j ].imag=AP[ k ].imag;
|
|
}
|
|
for( j=0, k=0; j<*n; j++ )
|
|
for( i=j; i<*n; i++, k++ ) {
|
|
ap[ k ].real=A[ LDA*i+j ].real;
|
|
ap[ k ].imag=A[ LDA*i+j ].imag;
|
|
}
|
|
}
|
|
free(A);
|
|
free(AP);
|
|
}
|
|
}
|
|
else if (*order == TEST_COL_MJR)
|
|
cblas_chpr2( CblasColMajor, uplo, *n, alpha, x, *incx, y, *incy, ap );
|
|
else
|
|
cblas_chpr2( UNDEFINED, uplo, *n, alpha, x, *incx, y, *incy, ap );
|
|
}
|
|
|
|
void F77_cher(int *order, char *uplow, int *n, float *alpha,
|
|
CBLAS_TEST_COMPLEX *x, int *incx, CBLAS_TEST_COMPLEX *a, int *lda) {
|
|
CBLAS_TEST_COMPLEX *A;
|
|
int i,j,LDA;
|
|
enum CBLAS_UPLO uplo;
|
|
|
|
get_uplo_type(uplow,&uplo);
|
|
|
|
if (*order == TEST_ROW_MJR) {
|
|
LDA = *n+1;
|
|
A=(CBLAS_TEST_COMPLEX*)malloc((*n)*LDA*sizeof( CBLAS_TEST_COMPLEX ));
|
|
|
|
for( i=0; i<*n; i++ )
|
|
for( j=0; j<*n; j++ ) {
|
|
A[ LDA*i+j ].real=a[ (*lda)*j+i ].real;
|
|
A[ LDA*i+j ].imag=a[ (*lda)*j+i ].imag;
|
|
}
|
|
|
|
cblas_cher(CblasRowMajor, uplo, *n, *alpha, x, *incx, A, LDA );
|
|
for( i=0; i<*n; i++ )
|
|
for( j=0; j<*n; j++ ) {
|
|
a[ (*lda)*j+i ].real=A[ LDA*i+j ].real;
|
|
a[ (*lda)*j+i ].imag=A[ LDA*i+j ].imag;
|
|
}
|
|
free(A);
|
|
}
|
|
else if (*order == TEST_COL_MJR)
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cblas_cher( CblasColMajor, uplo, *n, *alpha, x, *incx, a, *lda );
|
|
else
|
|
cblas_cher( UNDEFINED, uplo, *n, *alpha, x, *incx, a, *lda );
|
|
}
|
|
|
|
void F77_cher2(int *order, char *uplow, int *n, CBLAS_TEST_COMPLEX *alpha,
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|
CBLAS_TEST_COMPLEX *x, int *incx, CBLAS_TEST_COMPLEX *y, int *incy,
|
|
CBLAS_TEST_COMPLEX *a, int *lda) {
|
|
|
|
CBLAS_TEST_COMPLEX *A;
|
|
int i,j,LDA;
|
|
enum CBLAS_UPLO uplo;
|
|
|
|
get_uplo_type(uplow,&uplo);
|
|
|
|
if (*order == TEST_ROW_MJR) {
|
|
LDA = *n+1;
|
|
A= ( CBLAS_TEST_COMPLEX* )malloc((*n)*LDA*sizeof(CBLAS_TEST_COMPLEX ) );
|
|
|
|
for( i=0; i<*n; i++ )
|
|
for( j=0; j<*n; j++ ) {
|
|
A[ LDA*i+j ].real=a[ (*lda)*j+i ].real;
|
|
A[ LDA*i+j ].imag=a[ (*lda)*j+i ].imag;
|
|
}
|
|
|
|
cblas_cher2(CblasRowMajor, uplo, *n, alpha, x, *incx, y, *incy, A, LDA );
|
|
for( i=0; i<*n; i++ )
|
|
for( j=0; j<*n; j++ ) {
|
|
a[ (*lda)*j+i ].real=A[ LDA*i+j ].real;
|
|
a[ (*lda)*j+i ].imag=A[ LDA*i+j ].imag;
|
|
}
|
|
free(A);
|
|
}
|
|
else if (*order == TEST_COL_MJR)
|
|
cblas_cher2( CblasColMajor, uplo, *n, alpha, x, *incx, y, *incy, a, *lda);
|
|
else
|
|
cblas_cher2( UNDEFINED, uplo, *n, alpha, x, *incx, y, *incy, a, *lda);
|
|
}
|