dsdot.c
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00001 /* dsdot.f -- translated by f2c (version 20061008).
00002    You must link the resulting object file with libf2c:
00003         on Microsoft Windows system, link with libf2c.lib;
00004         on Linux or Unix systems, link with .../path/to/libf2c.a -lm
00005         or, if you install libf2c.a in a standard place, with -lf2c -lm
00006         -- in that order, at the end of the command line, as in
00007                 cc *.o -lf2c -lm
00008         Source for libf2c is in /netlib/f2c/libf2c.zip, e.g.,
00009 
00010                 http://www.netlib.org/f2c/libf2c.zip
00011 */
00012 
00013 #include "f2c.h"
00014 #include "blaswrap.h"
00015 
00016 doublereal dsdot_(integer *n, real *sx, integer *incx, real *sy, integer *
00017         incy)
00018 {
00019     /* System generated locals */
00020     integer i__1, i__2;
00021     doublereal ret_val;
00022 
00023     /* Local variables */
00024     integer i__, ns, kx, ky;
00025 
00026 /*     .. Scalar Arguments .. */
00027 /*     .. */
00028 /*     .. Array Arguments .. */
00029 /*     .. */
00030 
00031 /*  AUTHORS */
00032 /*  ======= */
00033 /*  Lawson, C. L., (JPL), Hanson, R. J., (SNLA), */
00034 /*  Kincaid, D. R., (U. of Texas), Krogh, F. T., (JPL) */
00035 
00036 /*  Purpose */
00037 /*  ======= */
00038 /*  Compute the inner product of two vectors with extended */
00039 /*  precision accumulation and result. */
00040 
00041 /*  Returns D.P. dot product accumulated in D.P., for S.P. SX and SY */
00042 /*  DSDOT = sum for I = 0 to N-1 of  SX(LX+I*INCX) * SY(LY+I*INCY), */
00043 /*  where LX = 1 if INCX .GE. 0, else LX = 1+(1-N)*INCX, and LY is */
00044 /*  defined in a similar way using INCY. */
00045 
00046 /*  Arguments */
00047 /*  ========= */
00048 
00049 /*  N      (input) INTEGER */
00050 /*         number of elements in input vector(s) */
00051 
00052 /*  SX     (input) REAL array, dimension(N) */
00053 /*         single precision vector with N elements */
00054 
00055 /*  INCX   (input) INTEGER */
00056 /*          storage spacing between elements of SX */
00057 
00058 /*  SY     (input) REAL array, dimension(N) */
00059 /*         single precision vector with N elements */
00060 
00061 /*  INCY   (input) INTEGER */
00062 /*         storage spacing between elements of SY */
00063 
00064 /*  DSDOT  (output) DOUBLE PRECISION */
00065 /*         DSDOT  double precision dot product (zero if N.LE.0) */
00066 
00067 /*  REFERENCES */
00068 /*  ========== */
00069 
00070 /*  C. L. Lawson, R. J. Hanson, D. R. Kincaid and F. T. */
00071 /*  Krogh, Basic linear algebra subprograms for Fortran */
00072 /*  usage, Algorithm No. 539, Transactions on Mathematical */
00073 /*  Software 5, 3 (September 1979), pp. 308-323. */
00074 
00075 /*  REVISION HISTORY  (YYMMDD) */
00076 /*  ========================== */
00077 
00078 /*  791001  DATE WRITTEN */
00079 /*  890831  Modified array declarations.  (WRB) */
00080 /*  890831  REVISION DATE from Version 3.2 */
00081 /*  891214  Prologue converted to Version 4.0 format.  (BAB) */
00082 /*  920310  Corrected definition of LX in DESCRIPTION.  (WRB) */
00083 /*  920501  Reformatted the REFERENCES section.  (WRB) */
00084 /*  070118  Reformat to LAPACK style (JL) */
00085 
00086 /*  ===================================================================== */
00087 
00088 /*     .. Local Scalars .. */
00089 /*     .. */
00090 /*     .. Intrinsic Functions .. */
00091 /*     .. */
00092     /* Parameter adjustments */
00093     --sy;
00094     --sx;
00095 
00096     /* Function Body */
00097     ret_val = 0.;
00098     if (*n <= 0) {
00099         return ret_val;
00100     }
00101     if (*incx == *incy && *incx > 0) {
00102         goto L20;
00103     }
00104 
00105 /*     Code for unequal or nonpositive increments. */
00106 
00107     kx = 1;
00108     ky = 1;
00109     if (*incx < 0) {
00110         kx = (1 - *n) * *incx + 1;
00111     }
00112     if (*incy < 0) {
00113         ky = (1 - *n) * *incy + 1;
00114     }
00115     i__1 = *n;
00116     for (i__ = 1; i__ <= i__1; ++i__) {
00117         ret_val += (doublereal) sx[kx] * (doublereal) sy[ky];
00118         kx += *incx;
00119         ky += *incy;
00120 /* L10: */
00121     }
00122     return ret_val;
00123 
00124 /*     Code for equal, positive, non-unit increments. */
00125 
00126 L20:
00127     ns = *n * *incx;
00128     i__1 = ns;
00129     i__2 = *incx;
00130     for (i__ = 1; i__2 < 0 ? i__ >= i__1 : i__ <= i__1; i__ += i__2) {
00131         ret_val += (doublereal) sx[i__] * (doublereal) sy[i__];
00132 /* L30: */
00133     }
00134     return ret_val;
00135 } /* dsdot_ */


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autogenerated on Sat Jun 8 2019 18:55:48