root / src / blas / sscal.f @ 8
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1 | 1 | pfleura2 | SUBROUTINE SSCAL(N,SA,SX,INCX) |
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2 | 1 | pfleura2 | * .. Scalar Arguments .. |
3 | 1 | pfleura2 | REAL SA |
4 | 1 | pfleura2 | INTEGER INCX,N |
5 | 1 | pfleura2 | * .. |
6 | 1 | pfleura2 | * .. Array Arguments .. |
7 | 1 | pfleura2 | REAL SX(*) |
8 | 1 | pfleura2 | * .. |
9 | 1 | pfleura2 | * |
10 | 1 | pfleura2 | * Purpose |
11 | 1 | pfleura2 | * ======= |
12 | 1 | pfleura2 | * |
13 | 1 | pfleura2 | * scales a vector by a constant. |
14 | 1 | pfleura2 | * uses unrolled loops for increment equal to 1. |
15 | 1 | pfleura2 | * jack dongarra, linpack, 3/11/78. |
16 | 1 | pfleura2 | * modified 3/93 to return if incx .le. 0. |
17 | 1 | pfleura2 | * modified 12/3/93, array(1) declarations changed to array(*) |
18 | 1 | pfleura2 | * |
19 | 1 | pfleura2 | * |
20 | 1 | pfleura2 | * .. Local Scalars .. |
21 | 1 | pfleura2 | INTEGER I,M,MP1,NINCX |
22 | 1 | pfleura2 | * .. |
23 | 1 | pfleura2 | * .. Intrinsic Functions .. |
24 | 1 | pfleura2 | INTRINSIC MOD |
25 | 1 | pfleura2 | * .. |
26 | 1 | pfleura2 | IF (N.LE.0 .OR. INCX.LE.0) RETURN |
27 | 1 | pfleura2 | IF (INCX.EQ.1) GO TO 20 |
28 | 1 | pfleura2 | * |
29 | 1 | pfleura2 | * code for increment not equal to 1 |
30 | 1 | pfleura2 | * |
31 | 1 | pfleura2 | NINCX = N*INCX |
32 | 1 | pfleura2 | DO 10 I = 1,NINCX,INCX |
33 | 1 | pfleura2 | SX(I) = SA*SX(I) |
34 | 1 | pfleura2 | 10 CONTINUE |
35 | 1 | pfleura2 | RETURN |
36 | 1 | pfleura2 | * |
37 | 1 | pfleura2 | * code for increment equal to 1 |
38 | 1 | pfleura2 | * |
39 | 1 | pfleura2 | * |
40 | 1 | pfleura2 | * clean-up loop |
41 | 1 | pfleura2 | * |
42 | 1 | pfleura2 | 20 M = MOD(N,5) |
43 | 1 | pfleura2 | IF (M.EQ.0) GO TO 40 |
44 | 1 | pfleura2 | DO 30 I = 1,M |
45 | 1 | pfleura2 | SX(I) = SA*SX(I) |
46 | 1 | pfleura2 | 30 CONTINUE |
47 | 1 | pfleura2 | IF (N.LT.5) RETURN |
48 | 1 | pfleura2 | 40 MP1 = M + 1 |
49 | 1 | pfleura2 | DO 50 I = MP1,N,5 |
50 | 1 | pfleura2 | SX(I) = SA*SX(I) |
51 | 1 | pfleura2 | SX(I+1) = SA*SX(I+1) |
52 | 1 | pfleura2 | SX(I+2) = SA*SX(I+2) |
53 | 1 | pfleura2 | SX(I+3) = SA*SX(I+3) |
54 | 1 | pfleura2 | SX(I+4) = SA*SX(I+4) |
55 | 1 | pfleura2 | 50 CONTINUE |
56 | 1 | pfleura2 | RETURN |
57 | 1 | pfleura2 | END |