Source module last modified on Thu, 2 Jul 1998, 23:17;
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#DECK DSDOT
DOUBLE PRECISION FUNCTION DSDOT (N, SX, INCX, SY, INCY)
#***BEGIN PROLOGUE DSDOT
#***PURPOSE Compute the inner product of two vectors with extended
# precision accumulation and result.
#***LIBRARY SLATEC (BLAS)
#***CATEGORY D1A4
#***TYPE DOUBLE PRECISION (DSDOT-D, DCDOT-C)
#***KEYWORDS BLAS, COMPLEX VECTORS, DOT PRODUCT, INNER PRODUCT,
# LINEAR ALGEBRA, VECTOR
#***AUTHOR Lawson, C. L., (JPL)
# Hanson, R. J., (SNLA)
# Kincaid, D. R., (U. of Texas)
# Krogh, F. T., (JPL)
#***DESCRIPTION
#
# B L A S Subprogram
# Description of Parameters
#
# --Input--
# N number of elements in input vector(s)
# SX single precision vector with N elements
# INCX storage spacing between elements of SX
# SY single precision vector with N elements
# INCY storage spacing between elements of SY
#
# --Output--
# DSDOT double precision dot product (zero if N.LE.0)
#
# Returns D.P. dot product accumulated in D.P., for S.P. SX and SY
# DSDOT = sum for I = 0 to N-1 of SX(LX+I*INCX) * SY(LY+I*INCY),
# where LX = 1 if INCX .GE. 0, else LX = 1+(1-N)*INCX, and LY is
# defined in a similar way using INCY.
#
#***REFERENCES C. L. Lawson, R. J. Hanson, D. R. Kincaid and F. T.
# Krogh, Basic linear algebra subprograms for Fortran
# usage, Algorithm No. 539, Transactions on Mathematical
# Software 5, 3 (September 1979), pp. 308-323.
#***ROUTINES CALLED (NONE)
#***REVISION HISTORY (YYMMDD)
# 791001 DATE WRITTEN
# 890831 Modified array declarations. (WRB)
# 890831 REVISION DATE from Version 3.2
# 891214 Prologue converted to Version 4.0 format. (BAB)
# 920310 Corrected definition of LX in DESCRIPTION. (WRB)
# 920501 Reformatted the REFERENCES section. (WRB)
#***END PROLOGUE DSDOT
REAL SX(*),SY(*)
#***FIRST EXECUTABLE STATEMENT DSDOT
DSDOT = 0.0D0
IF (N <= 0) RETURN
IF (INCX==INCY && INCX>0) GO TO 20
#
# Code for unequal or nonpositive increments.
#
KX = 1
KY = 1
IF (INCX < 0) KX = 1+(1-N)*INCX
IF (INCY < 0) KY = 1+(1-N)*INCY
DO 10 I = 1,N
DSDOT = DSDOT + DBLE(SX(KX))*DBLE(SY(KY))
KX = KX + INCX
KY = KY + INCY
10 CONTINUE
RETURN
#
# Code for equal, positive, non-unit increments.
#
20 NS = N*INCX
DO 30 I = 1,NS,INCX
DSDOT = DSDOT + DBLE(SX(I))*DBLE(SY(I))
30 CONTINUE
RETURN
END