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[wrffire.git] / wrfv2_fire / external / fftpack / fftpack5 / cmf3kb.F
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1 !CCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCC
2 !                                                                       
3 !   FFTPACK 5.0                                                         
4 !   Copyright (C) 1995-2004, Scientific Computing Division,             
5 !   University Corporation for Atmospheric Research                     
6 !   Licensed under the GNU General Public License (GPL)                 
7 !                                                                       
8 !   Authors:  Paul N. Swarztrauber and Richard A. Valent                
9 !                                                                       
10 !   $Id: cmf3kb.f,v 1.2 2004/06/15 21:08:32 rodney Exp $                
11 !                                                                       
12 !CCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCCC
13                                                                         
14       SUBROUTINE CMF3KB (LOT,IDO,L1,NA,CC,IM1,IN1,CH,IM2,IN2,WA) 
15       REAL  CC(2,IN1,L1,IDO,3),CH(2,IN2,L1,3,IDO),WA(IDO,2,2) 
16       DATA TAUR,TAUI /-.5,.866025403784439/ 
17 !                                                                       
18       M1D = (LOT-1)*IM1+1 
19       M2S = 1-IM2 
20       IF (IDO.GT.1 .OR. NA.EQ.1) GO TO 102 
21       DO 101 K=1,L1 
22          DO 101 M1=1,M1D,IM1 
23          TR2 = CC(1,M1,K,1,2)+CC(1,M1,K,1,3) 
24          CR2 = CC(1,M1,K,1,1)+TAUR*TR2 
25          CC(1,M1,K,1,1) = CC(1,M1,K,1,1)+TR2 
26          TI2 = CC(2,M1,K,1,2)+CC(2,M1,K,1,3) 
27          CI2 = CC(2,M1,K,1,1)+TAUR*TI2 
28          CC(2,M1,K,1,1) = CC(2,M1,K,1,1)+TI2 
29          CR3 = TAUI*(CC(1,M1,K,1,2)-CC(1,M1,K,1,3)) 
30          CI3 = TAUI*(CC(2,M1,K,1,2)-CC(2,M1,K,1,3)) 
31          CC(1,M1,K,1,2) = CR2-CI3 
32          CC(1,M1,K,1,3) = CR2+CI3 
33          CC(2,M1,K,1,2) = CI2+CR3 
34          CC(2,M1,K,1,3) = CI2-CR3 
35   101 CONTINUE 
36       RETURN 
37   102 DO 103 K=1,L1 
38          M2 = M2S 
39          DO 103 M1=1,M1D,IM1 
40          M2 = M2+IM2 
41          TR2 = CC(1,M1,K,1,2)+CC(1,M1,K,1,3) 
42          CR2 = CC(1,M1,K,1,1)+TAUR*TR2 
43          CH(1,M2,K,1,1) = CC(1,M1,K,1,1)+TR2 
44          TI2 = CC(2,M1,K,1,2)+CC(2,M1,K,1,3) 
45          CI2 = CC(2,M1,K,1,1)+TAUR*TI2 
46          CH(2,M2,K,1,1) = CC(2,M1,K,1,1)+TI2 
47          CR3 = TAUI*(CC(1,M1,K,1,2)-CC(1,M1,K,1,3)) 
48          CI3 = TAUI*(CC(2,M1,K,1,2)-CC(2,M1,K,1,3)) 
49          CH(1,M2,K,2,1) = CR2-CI3 
50          CH(1,M2,K,3,1) = CR2+CI3 
51          CH(2,M2,K,2,1) = CI2+CR3 
52          CH(2,M2,K,3,1) = CI2-CR3 
53   103 CONTINUE 
54       IF (IDO .EQ. 1) RETURN 
55       DO 105 I=2,IDO 
56         DO 104 K=1,L1 
57          M2 = M2S 
58          DO 104 M1=1,M1D,IM1 
59          M2 = M2+IM2 
60             TR2 = CC(1,M1,K,I,2)+CC(1,M1,K,I,3) 
61             CR2 = CC(1,M1,K,I,1)+TAUR*TR2 
62             CH(1,M2,K,1,I) = CC(1,M1,K,I,1)+TR2 
63             TI2 = CC(2,M1,K,I,2)+CC(2,M1,K,I,3) 
64             CI2 = CC(2,M1,K,I,1)+TAUR*TI2 
65             CH(2,M2,K,1,I) = CC(2,M1,K,I,1)+TI2 
66             CR3 = TAUI*(CC(1,M1,K,I,2)-CC(1,M1,K,I,3)) 
67             CI3 = TAUI*(CC(2,M1,K,I,2)-CC(2,M1,K,I,3)) 
68             DR2 = CR2-CI3 
69             DR3 = CR2+CI3 
70             DI2 = CI2+CR3 
71             DI3 = CI2-CR3 
72             CH(2,M2,K,2,I) = WA(I,1,1)*DI2+WA(I,1,2)*DR2 
73             CH(1,M2,K,2,I) = WA(I,1,1)*DR2-WA(I,1,2)*DI2 
74             CH(2,M2,K,3,I) = WA(I,2,1)*DI3+WA(I,2,2)*DR3 
75             CH(1,M2,K,3,I) = WA(I,2,1)*DR3-WA(I,2,2)*DI3 
76   104    CONTINUE 
77   105 END DO 
78       RETURN 
79       END