| 123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596 | /* dnrm2.f -- translated by f2c (version 20061008).   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*/#include "f2c.h"#include "blaswrap.h"doublereal _starpu_dnrm2_(integer *n, doublereal *x, integer *incx){    /* System generated locals */    integer i__1, i__2;    doublereal ret_val, d__1;    /* Builtin functions */    double sqrt(doublereal);    /* Local variables */    integer ix;    doublereal ssq, norm, scale, absxi;/*     .. Scalar Arguments .. *//*     .. *//*     .. Array Arguments .. *//*     .. *//*  Purpose *//*  ======= *//*  DNRM2 returns the euclidean norm of a vector via the function *//*  name, so that *//*     DNRM2 := sqrt( x'*x ) *//*  -- This version written on 25-October-1982. *//*     Modified on 14-October-1993 to inline the call to DLASSQ. *//*     Sven Hammarling, Nag Ltd. *//*     .. Parameters .. *//*     .. *//*     .. Local Scalars .. *//*     .. *//*     .. Intrinsic Functions .. *//*     .. */    /* Parameter adjustments */    --x;    /* Function Body */    if (*n < 1 || *incx < 1) {	norm = 0.;    } else if (*n == 1) {	norm = abs(x[1]);    } else {	scale = 0.;	ssq = 1.;/*        The following loop is equivalent to this call to the LAPACK *//*        auxiliary routine: *//*        CALL DLASSQ( N, X, INCX, SCALE, SSQ ) */	i__1 = (*n - 1) * *incx + 1;	i__2 = *incx;	for (ix = 1; i__2 < 0 ? ix >= i__1 : ix <= i__1; ix += i__2) {	    if (x[ix] != 0.) {		absxi = (d__1 = x[ix], abs(d__1));		if (scale < absxi) {/* Computing 2nd power */		    d__1 = scale / absxi;		    ssq = ssq * (d__1 * d__1) + 1.;		    scale = absxi;		} else {/* Computing 2nd power */		    d__1 = absxi / scale;		    ssq += d__1 * d__1;		}	    }/* L10: */	}	norm = scale * sqrt(ssq);    }    ret_val = norm;    return ret_val;/*     End of DNRM2. */} /* _starpu_dnrm2_ */
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