/[MITgcm]/MITgcm/pkg/diagnostics/diag_vegtile_fill.F
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Contents of /MITgcm/pkg/diagnostics/diag_vegtile_fill.F

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Revision 1.7 - (show annotations) (download)
Wed Sep 21 19:35:29 2005 UTC (18 years, 7 months ago) by jmc
Branch: MAIN
CVS Tags: checkpoint58l_post, checkpoint57t_post, checkpoint58e_post, mitgcm_mapl_00, checkpoint58u_post, checkpoint58w_post, checkpoint58r_post, checkpoint57y_post, checkpoint58n_post, checkpoint58x_post, checkpoint58t_post, checkpoint58h_post, checkpoint57y_pre, checkpoint58q_post, checkpoint57v_post, checkpoint58j_post, checkpoint59e, checkpoint59d, checkpoint59g, checkpoint59f, checkpoint59a, checkpoint59c, checkpoint59b, checkpoint59m, checkpoint59l, checkpoint59i, checkpoint59h, checkpoint59k, checkpoint59j, checkpoint59, checkpoint58, checkpoint58f_post, checkpoint57x_post, checkpoint58d_post, checkpoint58c_post, checkpoint57w_post, checkpint57u_post, checkpoint58a_post, checkpoint58i_post, checkpoint58g_post, checkpoint58o_post, checkpoint57z_post, checkpoint58y_post, checkpoint58k_post, checkpoint58v_post, checkpoint58s_post, checkpoint58p_post, checkpoint58b_post, checkpoint58m_post
Changes since 1.6: +92 -1 lines
add Stat-Diag filling ; give the right mean value, but min.max & std-dev
 are a mixture of vegetation-tile and grid-cell statistics.

1 C $Header: /u/gcmpack/MITgcm/pkg/diagnostics/diag_vegtile_fill.F,v 1.6 2005/06/26 16:51:49 jmc Exp $
2 C $Name: $
3
4 #include "DIAG_OPTIONS.h"
5
6 CBOP
7 C !ROUTINE: DIAG_VEGTILE_FILL
8 C !INTERFACE:
9 SUBROUTINE DIAG_VEGTILE_FILL (field,indx,chfr,ib,numpts,npeice,
10 . check, chardiag, kLev, nLevs, bi, bj, myThid)
11 C !DESCRIPTION:
12 C***********************************************************************
13 C Increment the diagnostics array with a vegetation tile space field
14 C***********************************************************************
15 C !USES:
16 IMPLICIT NONE
17
18 C == Global variables ===
19 #include "EEPARAMS.h"
20 #include "SIZE.h"
21 #include "DIAGNOSTICS_SIZE.h"
22 #include "DIAGNOSTICS.h"
23
24 C !INPUT PARAMETERS:
25 C***********************************************************************
26 C field - array to be mapped to grid space [ib,levs] and added to qdiag
27 C indx - array of horizontal indeces of grid points to convert to
28 C tile space[numpts]
29 C chfr - fractional area covered by the tile [ib]
30 C ib - inner dimension of source array AND number of points in
31 C array a that need to be pasted
32 C numpts - total number of points which were stripped
33 C npeice - the current strip number to be filled
34 C check - logical to check for undefined values
35 C chardiag ... Character expression for diag to fill
36 C kLev ..... Integer flag for vertical levels:
37 C > 0 (any integer): WHICH single level to increment
38 C 0,-1 to increment "nLevs" levels in qdiag:
39 C 0 : fill-in in the same order as the input array
40 C -1 : fill-in in reverse order.
41 C nLevs ...... indicates Number of levels of the input field array
42 C bi ...... X-direction tile number
43 C bj ...... Y-direction tile number
44 C myThid :: my thread Id number
45 C
46 c IMPORTANT NOTE:
47 c
48 c This routine will result in roundoff differences if called from
49 c within a parallel region.
50 C***********************************************************************
51 CHARACTER*8 chardiag
52 INTEGER kLev, nLevs, bi, bj
53 INTEGER myThid
54 integer ib,numpts,npeice
55 integer indx(numpts)
56 _RL field(ib,nlevs), chfr(ib)
57 logical check
58 CEOP
59
60 C !LOCAL VARIABLES:
61 C ===============
62 INTEGER m, n
63 INTEGER ndiagnum, ipointer
64 INTEGER k, kFirst, kLast
65 INTEGER kd, kd0, ksgn, kStore
66 CHARACTER*(MAX_LEN_MBUF) msgBuf
67 integer i,offset,Lena,newindx,jindx
68 _RL undef,getcon
69 INTEGER iSp, ndId, j,l
70 INTEGER region2fill(0:nRegions)
71 _RL scaleFact
72 _RL gridField(sNx*sNy,nlevs), gridFrac(sNx*sNy)
73
74 C Run through list of active diagnostics to make sure
75 C we are trying to fill a valid diagnostic
76
77 ndiagnum = 0
78 ipointer = 0
79 DO n=1,nlists
80 DO m=1,nActive(n)
81 IF ( chardiag.EQ.flds(m,n) .AND. idiag(m,n).GT.0 ) THEN
82 ndiagnum = jdiag(m,n)
83 ipointer = idiag(m,n)
84 IF ( ndiagnum.NE.0 .AND. ndiag(ipointer,1,1).GE.0 ) THEN
85 C-- do the filling: start here:
86
87 IF ( (ABS(kLev).LE.1) .AND. (npeice.eq.1) ) THEN
88 C Increment the counter for the diagnostic
89 ndiag(ipointer,bi,bj) = ndiag(ipointer,bi,bj) + 1
90 ENDIF
91
92 offset = ib*(npeice-1)
93 Lena = min(ib,numpts-offset)
94 offset = offset+1
95
96 C- Which part of field to add : k = 3rd index,
97 C and do the loop >> do k=kFirst,kLast <<
98 IF (kLev.LE.0) THEN
99 kFirst = 1
100 kLast = nLevs
101 ELSEIF ( nLevs.EQ.1 ) THEN
102 kFirst = 1
103 kLast = 1
104 ELSEIF ( kLev.LE.nLevs ) THEN
105 kFirst = kLev
106 kLast = kLev
107 ELSE
108 STOP 'ABNORMAL END: S/R DIAGNOSTICS_FILL kLev > nLevs > 0'
109 ENDIF
110 C- Which part of qdiag to update: kd = 3rd index,
111 C and do the loop >> do k=kFirst,kLast ; kd = kd0 + k*ksgn <<
112 IF ( kLev.EQ.-1 ) THEN
113 ksgn = -1
114 kd0 = ipointer + nLevs
115 ELSEIF ( kLev.EQ.0 ) THEN
116 ksgn = 1
117 kd0 = ipointer - 1
118 ELSE
119 ksgn = 0
120 kd0 = ipointer + kLev - 1
121 ENDIF
122
123 C- Check for consistency with Nb of levels reserved in storage array
124 kStore = kd0 + MAX(ksgn*kFirst,ksgn*kLast) - ipointer + 1
125 IF ( kStore.GT.kdiag(ndiagnum) ) THEN
126 _BEGIN_MASTER(myThid)
127 WRITE(msgBuf,'(2A,I3,A)') 'DIAGNOSTICS_FILL: ',
128 . 'exceed Nb of levels(=',kdiag(ndiagnum),' ) reserved '
129 CALL PRINT_ERROR( msgBuf , myThid )
130 WRITE(msgBuf,'(2A,I4,2A)') 'DIAGNOSTICS_FILL: ',
131 . 'for Diagnostics #', ndiagnum, ' : ', chardiag
132 CALL PRINT_ERROR( msgBuf , myThid )
133 WRITE(msgBuf,'(2A,2I4,I3)') 'calling DIAGNOSTICS_FILL ',
134 . 'with kLev,nLevs=', kLev,nLevs
135 CALL PRINT_ERROR( msgBuf , myThid )
136 WRITE(msgBuf,'(2A,I6,A)') 'DIAGNOSTICS_FILL: ',
137 . '==> trying to store up to ', kStore, ' levels'
138 CALL PRINT_ERROR( msgBuf , myThid )
139 STOP 'ABNORMAL END: S/R DIAGNOSTICS_FILL'
140 _END_MASTER(myThid)
141 ENDIF
142
143 DO k = kFirst,kLast
144 kd = kd0 + ksgn*k
145 if( check ) then
146 undef = getcon('UNDEF')
147 do i= 1,Lena
148 jindx = 1 + int((indx(i+offset-1)-1)/sNx)
149 newindx = indx(i+offset-1)+(jindx-1)*2*Olx
150 if(qdiag(newindx,1,kd,bi,bj).eq.undef
151 . .or.field(i,k).eq.undef)then
152 qdiag(newindx,1,kd,bi,bj) = undef
153 else
154 qdiag(newindx,1,kd,bi,bj)=qdiag(newindx,1,kd,bi,bj)+
155 . field(i,k)*chfr(i)
156 endif
157 enddo
158 else
159 do i= 1,Lena
160 jindx = 1 + int((indx(i+offset-1)-1)/sNx)
161 newindx = indx(i+offset-1)+(jindx-1)*2*Olx
162 qdiag(newindx,1,kd,bi,bj)=qdiag(newindx,1,kd,bi,bj)+
163 . field(i,k)*chfr(i)
164 enddo
165 endif
166 ENDDO
167
168 C-- do the filling: ends here.
169 ENDIF
170 ENDIF
171 ENDDO
172 ENDDO
173
174 C---+----1----+----2----+----3----+----4----+----5----+----6----+----7-|--+----|
175 C-- Global/Regional Statistics :
176 scaleFact = 1. _d 0
177
178 C Run through list of active statistics-diagnostics to make sure
179 C we are trying to compute & fill a valid diagnostic
180
181 DO n=1,diagSt_nbLists
182 DO m=1,diagSt_nbActv(n)
183 IF ( chardiag.EQ.diagSt_Flds(m,n) .AND. iSdiag(m,n).GT.0 ) THEN
184 iSp = iSdiag(m,n)
185 IF ( qSdiag(0,0,iSp,bi,bj).GE.0. ) THEN
186 ndId = jSdiag(m,n)
187 C- Find list of regions to fill:
188 DO j=0,nRegions
189 region2fill(j) = diagSt_region(j,n)
190 ENDDO
191 C- if this diagnostics appears in several lists (with same freq)
192 C then add regions from other lists
193 DO l=1,diagSt_nbLists
194 DO k=1,diagSt_nbActv(l)
195 IF ( iSdiag(k,l).EQ.-iSp ) THEN
196 DO j=0,nRegions
197 region2fill(j) = MAX(region2fill(j),diagSt_region(j,l))
198 ENDDO
199 ENDIF
200 ENDDO
201 ENDDO
202
203 C- Which part of field to add : k = 3rd index,
204 C and do the loop >> do k=kFirst,kLast <<
205 IF (kLev.LE.0) THEN
206 kFirst = 1
207 kLast = nLevs
208 ELSE
209 kFirst = 1
210 kLast = 1
211 ENDIF
212
213 C- Fill local array with grid-space field after conversion.
214 offset = ib*(npeice-1)
215 Lena = min(ib,numpts-offset)
216 offset = offset+1
217
218 DO i=1,sNx*sNy
219 gridFrac(i)= 0.
220 ENDDO
221 DO i=1,Lena
222 newindx = indx(i+offset-1)
223 gridFrac(newindx)=gridFrac(newindx)+chfr(i)
224 ENDDO
225
226 DO k = kFirst,kLast
227 DO i=1,sNx*sNy
228 gridField(i,k)= 0.
229 ENDDO
230 if( check ) then
231 undef = getcon('UNDEF')
232 do i= 1,Lena
233 newindx = indx(i+offset-1)
234 if(gridField(newindx,k).eq.undef
235 . .or.field(i,k).eq.undef)then
236 gridField(newindx,k)= undef
237 else
238 gridField(newindx,k)=gridField(newindx,k)
239 & +field(i,k)*chfr(i)/gridFrac(newindx)
240 endif
241 enddo
242 else
243 do i= 1,Lena
244 newindx = indx(i+offset-1)
245 gridField(newindx,k)=gridField(newindx,k)
246 & +field(i,k)*chfr(i)/gridFrac(newindx)
247 enddo
248 endif
249 ENDDO
250
251 C- diagnostics is valid and Active: Now do the filling
252 CALL DIAGSTATS_FILL(
253 I gridField, gridFrac, scaleFact, 1, 1,
254 I ndId, iSp, region2fill, kLev, nLevs,
255 I 3, bi, bj, myThid )
256 ENDIF
257 ENDIF
258 ENDDO
259 ENDDO
260
261 1000 format(' ',' Warning: Trying to write to diagnostic ',a8,
262 . ' But it is not a valid (or active) name ')
263 RETURN
264 END

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