Statistiques
| Révision :

root / src / blas / saxpy.f @ 7

Historique | Voir | Annoter | Télécharger (1,4 ko)

1 1 equemene
      SUBROUTINE SAXPY(N,SA,SX,INCX,SY,INCY)
2 1 equemene
*     .. Scalar Arguments ..
3 1 equemene
      REAL SA
4 1 equemene
      INTEGER INCX,INCY,N
5 1 equemene
*     ..
6 1 equemene
*     .. Array Arguments ..
7 1 equemene
      REAL SX(*),SY(*)
8 1 equemene
*     ..
9 1 equemene
*
10 1 equemene
*  Purpose
11 1 equemene
*  =======
12 1 equemene
*
13 1 equemene
*     SAXPY constant times a vector plus a vector.
14 1 equemene
*     uses unrolled loop for increments equal to one.
15 1 equemene
*     jack dongarra, linpack, 3/11/78.
16 1 equemene
*     modified 12/3/93, array(1) declarations changed to array(*)
17 1 equemene
*
18 1 equemene
*
19 1 equemene
*     .. Local Scalars ..
20 1 equemene
      INTEGER I,IX,IY,M,MP1
21 1 equemene
*     ..
22 1 equemene
*     .. Intrinsic Functions ..
23 1 equemene
      INTRINSIC MOD
24 1 equemene
*     ..
25 1 equemene
      IF (N.LE.0) RETURN
26 1 equemene
      IF (SA.EQ.0.0) RETURN
27 1 equemene
      IF (INCX.EQ.1 .AND. INCY.EQ.1) GO TO 20
28 1 equemene
*
29 1 equemene
*        code for unequal increments or equal increments
30 1 equemene
*          not equal to 1
31 1 equemene
*
32 1 equemene
      IX = 1
33 1 equemene
      IY = 1
34 1 equemene
      IF (INCX.LT.0) IX = (-N+1)*INCX + 1
35 1 equemene
      IF (INCY.LT.0) IY = (-N+1)*INCY + 1
36 1 equemene
      DO 10 I = 1,N
37 1 equemene
          SY(IY) = SY(IY) + SA*SX(IX)
38 1 equemene
          IX = IX + INCX
39 1 equemene
          IY = IY + INCY
40 1 equemene
   10 CONTINUE
41 1 equemene
      RETURN
42 1 equemene
*
43 1 equemene
*        code for both increments equal to 1
44 1 equemene
*
45 1 equemene
*
46 1 equemene
*        clean-up loop
47 1 equemene
*
48 1 equemene
   20 M = MOD(N,4)
49 1 equemene
      IF (M.EQ.0) GO TO 40
50 1 equemene
      DO 30 I = 1,M
51 1 equemene
          SY(I) = SY(I) + SA*SX(I)
52 1 equemene
   30 CONTINUE
53 1 equemene
      IF (N.LT.4) RETURN
54 1 equemene
   40 MP1 = M + 1
55 1 equemene
      DO 50 I = MP1,N,4
56 1 equemene
          SY(I) = SY(I) + SA*SX(I)
57 1 equemene
          SY(I+1) = SY(I+1) + SA*SX(I+1)
58 1 equemene
          SY(I+2) = SY(I+2) + SA*SX(I+2)
59 1 equemene
          SY(I+3) = SY(I+3) + SA*SX(I+3)
60 1 equemene
   50 CONTINUE
61 1 equemene
      RETURN
62 1 equemene
      END