/[MITgcm]/MITgcm/pkg/diagnostics/diagnostics_fract_fill.F
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Revision 1.2 - (hide annotations) (download)
Mon Jul 11 18:59:07 2005 UTC (18 years, 11 months ago) by jmc
Branch: MAIN
CVS Tags: checkpoint57t_post, checkpoint57o_post, checkpoint58e_post, checkpoint57m_post, checkpoint57s_post, checkpoint57y_post, checkpoint57y_pre, checkpoint57v_post, checkpoint57r_post, checkpoint58, checkpoint58f_post, checkpoint57x_post, checkpoint57n_post, checkpoint58d_post, checkpoint58c_post, checkpoint57w_post, checkpoint57p_post, checkpint57u_post, checkpoint58a_post, checkpoint57q_post, checkpoint57z_post, checkpoint58b_post, checkpoint57l_post
Changes since 1.1: +14 -11 lines
add option to fill a squared diagnostics directly.

1 jmc 1.2 C $Header: /u/gcmpack/MITgcm/pkg/diagnostics/diagnostics_fract_fill.F,v 1.1 2005/07/10 01:00:09 jmc Exp $
2 jmc 1.1 C $Name: $
3    
4     #include "DIAG_OPTIONS.h"
5    
6     CBOP
7     C !ROUTINE: DIAGNOSTICS_FRACT_FILL
8     C !INTERFACE:
9     SUBROUTINE DIAGNOSTICS_FRACT_FILL(
10 jmc 1.2 I inpFld, fractFld, scaleFact, power, chardiag,
11     I kLev, nLevs, bibjFlg, biArg, bjArg, myThid)
12 jmc 1.1
13     C !DESCRIPTION:
14     C***********************************************************************
15     C Wrapper routine to increment the diagnostics arrays with a field
16 jmc 1.2 C using a scaling factor & square option (power=2)
17     C and using a fraction-weight (assumed to be the counter-mate
18     C of the current diagnostics)
19 jmc 1.1 C Note: 1) fraction-weight has to correspond to the diagnostics
20     C counter-mate (filled independently with a call to
21     C DIAGNOSTICS_FILL)
22     C 2) assume for now that inpFld & fractFld are both _RL and
23     C have the same horizontal shape (overlap,bi,bj ...)
24     C***********************************************************************
25     C !USES:
26     IMPLICIT NONE
27    
28     C == Global variables ===
29     #include "EEPARAMS.h"
30     #include "SIZE.h"
31     #include "DIAGNOSTICS_SIZE.h"
32     #include "DIAGNOSTICS.h"
33    
34     C !INPUT PARAMETERS:
35     C***********************************************************************
36     C Arguments Description
37     C ----------------------
38     C inpFld :: Field to increment diagnostics array
39     C fractFld :: fraction used for weighted average diagnostics
40     C scaleFact :: scaling factor
41 jmc 1.2 C power :: option to fill-in with the field square (power=2)
42 jmc 1.1 C chardiag :: Character expression for diag to fill
43     C kLev :: Integer flag for vertical levels:
44     C > 0 (any integer): WHICH single level to increment in qdiag.
45     C 0,-1 to increment "nLevs" levels in qdiag,
46     C 0 : fill-in in the same order as the input array
47     C -1: fill-in in reverse order.
48     C nLevs :: indicates Number of levels of the input field array
49     C (whether to fill-in all the levels (kLev<1) or just one (kLev>0))
50     C bibjFlg :: Integer flag to indicate instructions for bi bj loop
51     C 0 indicates that the bi-bj loop must be done here
52     C 1 indicates that the bi-bj loop is done OUTSIDE
53     C 2 indicates that the bi-bj loop is done OUTSIDE
54     C AND that we have been sent a local array (with overlap regions)
55     C 3 indicates that the bi-bj loop is done OUTSIDE
56     C AND that we have been sent a local array
57     C AND that the array has no overlap region (interior only)
58     C NOTE - bibjFlg can be NEGATIVE to indicate not to increment counter
59     C biArg :: X-direction tile number - used for bibjFlg=1-3
60     C bjArg :: Y-direction tile number - used for bibjFlg=1-3
61     C myThid :: my thread Id number
62     C***********************************************************************
63     C NOTE: User beware! If a local (1 tile only) array
64     C is sent here, bibjFlg MUST NOT be set to 0
65     C or there will be out of bounds problems!
66     C***********************************************************************
67     _RL inpFld(*)
68     _RL fractFld(*)
69     _RL scaleFact
70 jmc 1.2 INTEGER power
71 jmc 1.1 CHARACTER*8 chardiag
72     INTEGER kLev, nLevs, bibjFlg, biArg, bjArg
73     INTEGER myThid
74     CEOP
75    
76     C !LOCAL VARIABLES:
77     C ndId :: diagnostic Id number (in available diagnostics list)
78     C ===============
79     INTEGER m, n, j, k, l, bi, bj
80     INTEGER ndId, ipt, iSp
81     INTEGER region2fill(0:nRegions)
82     INTEGER mate, nLevFract
83     CHARACTER*8 parms1
84     CHARACTER*(MAX_LEN_MBUF) msgBuf
85    
86     IF ( bibjFlg.EQ.0 ) THEN
87     bi = 1
88     bj = 1
89     ELSE
90     bi = biArg
91     bj = bjArg
92     ENDIF
93     C-- 2D/3D Diagnostics :
94     C Run through list of active diagnostics to make sure
95     C we are trying to fill a valid diagnostic
96     DO n=1,nlists
97     DO m=1,nActive(n)
98     IF ( chardiag.EQ.flds(m,n) .AND. idiag(m,n).GT.0 ) THEN
99     ipt = idiag(m,n)
100     IF ( ndiag(ipt,bi,bj).GE.0 ) THEN
101     ndId = jdiag(m,n)
102     C- check for a counter-mate:
103     mate = 0
104     parms1 = gdiag(ndId)(1:8)
105     IF ( parms1(5:5).EQ.'C' ) READ(parms1,'(5X,I3)') mate
106     IF ( mdiag(m,n).EQ.0 ) mate = 0
107     IF ( mate.LE.0 ) THEN
108     WRITE(msgBuf,'(2A)') 'DIAGNOSTICS_FRACT_FILL: ',
109     & 'did not find a valid counter-mate'
110     CALL PRINT_ERROR( msgBuf , myThid )
111     WRITE(msgBuf,'(2A,I4,2A)') 'DIAGNOSTICS_FRACT_FILL: ',
112     & 'for diag(#',ndId,' ) :', chardiag
113     CALL PRINT_ERROR( msgBuf , myThid )
114     STOP 'ABNORMAL END: S/R DIAGNOSTICS_FRACT_FILL'
115     ENDIF
116     C- set the nb of levels of fraction-weight field (not > kdiag(mate))
117     nLevFract = MIN(nLevs,kdiag(mate))
118     C- diagnostic is valid & active, has a counter-mate, do the filling:
119     CALL DIAGNOSTICS_FILL_FIELD(
120 jmc 1.2 I inpFld, fractFld, scaleFact, power, nLevFract,
121     I ndId, ipt, kLev, nLevs,
122     I bibjFlg, biArg, bjArg, myThid )
123 jmc 1.1 ENDIF
124     ENDIF
125     ENDDO
126     ENDDO
127    
128     C---+----1----+----2----+----3----+----4----+----5----+----6----+----7-|--+----|
129     C-- Global/Regional Statistics :
130    
131     C Run through list of active statistics-diagnostics to make sure
132     C we are trying to compute & fill a valid diagnostic
133    
134     DO n=1,diagSt_nbLists
135     DO m=1,diagSt_nbActv(n)
136     IF ( chardiag.EQ.diagSt_Flds(m,n) .AND. iSdiag(m,n).GT.0 ) THEN
137     iSp = iSdiag(m,n)
138     IF ( qSdiag(0,0,iSp,bi,bj).GE.0. ) THEN
139     ndId = jSdiag(m,n)
140     C- check for a counter-mate:
141     mate = 0
142     parms1 = gdiag(ndId)(1:8)
143     IF ( parms1(5:5).EQ.'C' ) READ(parms1,'(5X,I3)') mate
144     IF ( mSdiag(m,n).EQ.0 ) mate = 0
145     IF ( mate.LE.0 ) THEN
146     WRITE(msgBuf,'(2A)') 'DIAGNOSTICS_FRACT_FILL: ',
147     & 'did not find a valid counter-mate'
148     CALL PRINT_ERROR( msgBuf , myThid )
149     WRITE(msgBuf,'(2A,I4,2A)') 'DIAGNOSTICS_FRACT_FILL: ',
150     & 'for diag(#',ndId,' ) :', chardiag
151     CALL PRINT_ERROR( msgBuf , myThid )
152     STOP 'ABNORMAL END: S/R DIAGNOSTICS_FRACT_FILL'
153     ENDIF
154     C- set the nb of levels of fraction-weight field (not > kdiag(mate))
155     nLevFract = MIN(nLevs,kdiag(mate))
156     C- Find list of regions to fill:
157     DO j=0,nRegions
158     region2fill(j) = diagSt_region(j,n)
159     ENDDO
160     C- if this diagnostics appears in several lists (with same freq)
161     C then add regions from other lists
162     DO l=1,diagSt_nbLists
163     DO k=1,diagSt_nbActv(l)
164     IF ( iSdiag(k,l).EQ.-iSp ) THEN
165     DO j=0,nRegions
166     region2fill(j) = MAX(region2fill(j),diagSt_region(j,l))
167     ENDDO
168     ENDIF
169     ENDDO
170     ENDDO
171     C- diagnostics is valid and Active, has a counter mate: Now do the filling
172     CALL DIAGSTATS_FILL(
173 jmc 1.2 I inpFld, fractFld, scaleFact, power, nLevFract,
174     I ndId, iSp, region2fill, kLev, nLevs,
175     I bibjFlg, biArg, bjArg, myThid )
176 jmc 1.1 ENDIF
177     ENDIF
178     ENDDO
179     ENDDO
180    
181     RETURN
182     END

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