Annotation of rpl/lapack/blas/zdotc.f, revision 1.8
1.8 ! bertrand 1: *> \brief \b ZDOTC
! 2: *
! 3: * =========== DOCUMENTATION ===========
! 4: *
! 5: * Online html documentation available at
! 6: * http://www.netlib.org/lapack/explore-html/
! 7: *
! 8: * Definition:
! 9: * ===========
! 10: *
! 11: * COMPLEX*16 FUNCTION ZDOTC(N,ZX,INCX,ZY,INCY)
! 12: *
! 13: * .. Scalar Arguments ..
! 14: * INTEGER INCX,INCY,N
! 15: * ..
! 16: * .. Array Arguments ..
! 17: * COMPLEX*16 ZX(*),ZY(*)
! 18: * ..
! 19: *
! 20: *
! 21: *> \par Purpose:
! 22: * =============
! 23: *>
! 24: *> \verbatim
! 25: *>
! 26: *> ZDOTC forms the dot product of a vector.
! 27: *> \endverbatim
! 28: *
! 29: * Authors:
! 30: * ========
! 31: *
! 32: *> \author Univ. of Tennessee
! 33: *> \author Univ. of California Berkeley
! 34: *> \author Univ. of Colorado Denver
! 35: *> \author NAG Ltd.
! 36: *
! 37: *> \date November 2011
! 38: *
! 39: *> \ingroup complex16_blas_level1
! 40: *
! 41: *> \par Further Details:
! 42: * =====================
! 43: *>
! 44: *> \verbatim
! 45: *>
! 46: *> jack dongarra, 3/11/78.
! 47: *> modified 12/3/93, array(1) declarations changed to array(*)
! 48: *> \endverbatim
! 49: *>
! 50: * =====================================================================
! 51: COMPLEX*16 FUNCTION ZDOTC(N,ZX,INCX,ZY,INCY)
! 52: *
! 53: * -- Reference BLAS level1 routine (version 3.4.0) --
! 54: * -- Reference BLAS is a software package provided by Univ. of Tennessee, --
! 55: * -- Univ. of California Berkeley, Univ. of Colorado Denver and NAG Ltd..--
! 56: * November 2011
! 57: *
1.1 bertrand 58: * .. Scalar Arguments ..
59: INTEGER INCX,INCY,N
60: * ..
61: * .. Array Arguments ..
1.8 ! bertrand 62: COMPLEX*16 ZX(*),ZY(*)
1.1 bertrand 63: * ..
64: *
65: * =====================================================================
66: *
67: * .. Local Scalars ..
1.8 ! bertrand 68: COMPLEX*16 ZTEMP
1.1 bertrand 69: INTEGER I,IX,IY
70: * ..
71: * .. Intrinsic Functions ..
72: INTRINSIC DCONJG
73: * ..
74: ZTEMP = (0.0d0,0.0d0)
75: ZDOTC = (0.0d0,0.0d0)
76: IF (N.LE.0) RETURN
1.7 bertrand 77: IF (INCX.EQ.1 .AND. INCY.EQ.1) THEN
78: *
79: * code for both increments equal to 1
80: *
81: DO I = 1,N
82: ZTEMP = ZTEMP + DCONJG(ZX(I))*ZY(I)
83: END DO
84: ELSE
1.1 bertrand 85: *
86: * code for unequal increments or equal increments
87: * not equal to 1
88: *
1.7 bertrand 89: IX = 1
90: IY = 1
91: IF (INCX.LT.0) IX = (-N+1)*INCX + 1
92: IF (INCY.LT.0) IY = (-N+1)*INCY + 1
93: DO I = 1,N
94: ZTEMP = ZTEMP + DCONJG(ZX(IX))*ZY(IY)
95: IX = IX + INCX
96: IY = IY + INCY
97: END DO
98: END IF
1.1 bertrand 99: ZDOTC = ZTEMP
100: RETURN
101: END
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