📄 saxpy.c
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/* blas/saxpy.f -- translated by f2c (version 20050501).
You must link the resulting object file with libf2c:
on Microsoft Windows system, link with libf2c.lib;
on Linux or Unix systems, link with .../path/to/libf2c.a -lm
or, if you install libf2c.a in a standard place, with -lf2c -lm
-- in that order, at the end of the command line, as in
cc *.o -lf2c -lm
Source for libf2c is in /netlib/f2c/libf2c.zip, e.g.,
http://www.netlib.org/f2c/libf2c.zip
*/
#ifdef __cplusplus
extern "C" {
#endif
#include "v3p_netlib.h"
/*< subroutine saxpy(n,sa,sx,incx,sy,incy) >*/
/* Subroutine */ int saxpy_(integer *n, real *sa, real *sx, integer *incx,
real *sy, integer *incy)
{
/* System generated locals */
integer i__1;
/* Local variables */
integer i__, m, ix, iy, mp1;
/* constant times a vector plus a vector. */
/* uses unrolled loop for increments equal to one. */
/* jack dongarra, linpack, 3/11/78. */
/* modified 12/3/93, array(1) declarations changed to array(*) */
/*< real sx(*),sy(*),sa >*/
/*< integer i,incx,incy,ix,iy,m,mp1,n >*/
/*< if(n.le.0)return >*/
/* Parameter adjustments */
--sy;
--sx;
/* Function Body */
if (*n <= 0) {
return 0;
}
/*< if (sa .eq. 0.0) return >*/
if (*sa == (float)0.) {
return 0;
}
/*< if(incx.eq.1.and.incy.eq.1)go to 20 >*/
if (*incx == 1 && *incy == 1) {
goto L20;
}
/* code for unequal increments or equal increments */
/* not equal to 1 */
/*< ix = 1 >*/
ix = 1;
/*< iy = 1 >*/
iy = 1;
/*< if(incx.lt.0)ix = (-n+1)*incx + 1 >*/
if (*incx < 0) {
ix = (-(*n) + 1) * *incx + 1;
}
/*< if(incy.lt.0)iy = (-n+1)*incy + 1 >*/
if (*incy < 0) {
iy = (-(*n) + 1) * *incy + 1;
}
/*< do 10 i = 1,n >*/
i__1 = *n;
for (i__ = 1; i__ <= i__1; ++i__) {
/*< sy(iy) = sy(iy) + sa*sx(ix) >*/
sy[iy] += *sa * sx[ix];
/*< ix = ix + incx >*/
ix += *incx;
/*< iy = iy + incy >*/
iy += *incy;
/*< 10 continue >*/
/* L10: */
}
/*< return >*/
return 0;
/* code for both increments equal to 1 */
/* clean-up loop */
/*< 20 m = mod(n,4) >*/
L20:
m = *n % 4;
/*< if( m .eq. 0 ) go to 40 >*/
if (m == 0) {
goto L40;
}
/*< do 30 i = 1,m >*/
i__1 = m;
for (i__ = 1; i__ <= i__1; ++i__) {
/*< sy(i) = sy(i) + sa*sx(i) >*/
sy[i__] += *sa * sx[i__];
/*< 30 continue >*/
/* L30: */
}
/*< if( n .lt. 4 ) return >*/
if (*n < 4) {
return 0;
}
/*< 40 mp1 = m + 1 >*/
L40:
mp1 = m + 1;
/*< do 50 i = mp1,n,4 >*/
i__1 = *n;
for (i__ = mp1; i__ <= i__1; i__ += 4) {
/*< sy(i) = sy(i) + sa*sx(i) >*/
sy[i__] += *sa * sx[i__];
/*< sy(i + 1) = sy(i + 1) + sa*sx(i + 1) >*/
sy[i__ + 1] += *sa * sx[i__ + 1];
/*< sy(i + 2) = sy(i + 2) + sa*sx(i + 2) >*/
sy[i__ + 2] += *sa * sx[i__ + 2];
/*< sy(i + 3) = sy(i + 3) + sa*sx(i + 3) >*/
sy[i__ + 3] += *sa * sx[i__ + 3];
/*< 50 continue >*/
/* L50: */
}
/*< return >*/
return 0;
/*< end >*/
} /* saxpy_ */
#ifdef __cplusplus
}
#endif
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