root / src / blas / dznrm2.f @ 5
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1 | 1 | pfleura2 | DOUBLE PRECISION FUNCTION DZNRM2(N,X,INCX) |
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2 | 1 | pfleura2 | * .. Scalar Arguments .. |
3 | 1 | pfleura2 | INTEGER INCX,N |
4 | 1 | pfleura2 | * .. |
5 | 1 | pfleura2 | * .. Array Arguments .. |
6 | 1 | pfleura2 | DOUBLE COMPLEX X(*) |
7 | 1 | pfleura2 | * .. |
8 | 1 | pfleura2 | * |
9 | 1 | pfleura2 | * Purpose |
10 | 1 | pfleura2 | * ======= |
11 | 1 | pfleura2 | * |
12 | 1 | pfleura2 | * DZNRM2 returns the euclidean norm of a vector via the function |
13 | 1 | pfleura2 | * name, so that |
14 | 1 | pfleura2 | * |
15 | 1 | pfleura2 | * DZNRM2 := sqrt( conjg( x' )*x ) |
16 | 1 | pfleura2 | * |
17 | 1 | pfleura2 | * |
18 | 1 | pfleura2 | * -- This version written on 25-October-1982. |
19 | 1 | pfleura2 | * Modified on 14-October-1993 to inline the call to ZLASSQ. |
20 | 1 | pfleura2 | * Sven Hammarling, Nag Ltd. |
21 | 1 | pfleura2 | * |
22 | 1 | pfleura2 | * |
23 | 1 | pfleura2 | * .. Parameters .. |
24 | 1 | pfleura2 | DOUBLE PRECISION ONE,ZERO |
25 | 1 | pfleura2 | PARAMETER (ONE=1.0D+0,ZERO=0.0D+0) |
26 | 1 | pfleura2 | * .. |
27 | 1 | pfleura2 | * .. Local Scalars .. |
28 | 1 | pfleura2 | DOUBLE PRECISION NORM,SCALE,SSQ,TEMP |
29 | 1 | pfleura2 | INTEGER IX |
30 | 1 | pfleura2 | * .. |
31 | 1 | pfleura2 | * .. Intrinsic Functions .. |
32 | 1 | pfleura2 | INTRINSIC ABS,DBLE,DIMAG,SQRT |
33 | 1 | pfleura2 | * .. |
34 | 1 | pfleura2 | IF (N.LT.1 .OR. INCX.LT.1) THEN |
35 | 1 | pfleura2 | NORM = ZERO |
36 | 1 | pfleura2 | ELSE |
37 | 1 | pfleura2 | SCALE = ZERO |
38 | 1 | pfleura2 | SSQ = ONE |
39 | 1 | pfleura2 | * The following loop is equivalent to this call to the LAPACK |
40 | 1 | pfleura2 | * auxiliary routine: |
41 | 1 | pfleura2 | * CALL ZLASSQ( N, X, INCX, SCALE, SSQ ) |
42 | 1 | pfleura2 | * |
43 | 1 | pfleura2 | DO 10 IX = 1,1 + (N-1)*INCX,INCX |
44 | 1 | pfleura2 | IF (DBLE(X(IX)).NE.ZERO) THEN |
45 | 1 | pfleura2 | TEMP = ABS(DBLE(X(IX))) |
46 | 1 | pfleura2 | IF (SCALE.LT.TEMP) THEN |
47 | 1 | pfleura2 | SSQ = ONE + SSQ* (SCALE/TEMP)**2 |
48 | 1 | pfleura2 | SCALE = TEMP |
49 | 1 | pfleura2 | ELSE |
50 | 1 | pfleura2 | SSQ = SSQ + (TEMP/SCALE)**2 |
51 | 1 | pfleura2 | END IF |
52 | 1 | pfleura2 | END IF |
53 | 1 | pfleura2 | IF (DIMAG(X(IX)).NE.ZERO) THEN |
54 | 1 | pfleura2 | TEMP = ABS(DIMAG(X(IX))) |
55 | 1 | pfleura2 | IF (SCALE.LT.TEMP) THEN |
56 | 1 | pfleura2 | SSQ = ONE + SSQ* (SCALE/TEMP)**2 |
57 | 1 | pfleura2 | SCALE = TEMP |
58 | 1 | pfleura2 | ELSE |
59 | 1 | pfleura2 | SSQ = SSQ + (TEMP/SCALE)**2 |
60 | 1 | pfleura2 | END IF |
61 | 1 | pfleura2 | END IF |
62 | 1 | pfleura2 | 10 CONTINUE |
63 | 1 | pfleura2 | NORM = SCALE*SQRT(SSQ) |
64 | 1 | pfleura2 | END IF |
65 | 1 | pfleura2 | * |
66 | 1 | pfleura2 | DZNRM2 = NORM |
67 | 1 | pfleura2 | RETURN |
68 | 1 | pfleura2 | * |
69 | 1 | pfleura2 | * End of DZNRM2. |
70 | 1 | pfleura2 | * |
71 | 1 | pfleura2 | END |