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

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Revision 1.45 - (show annotations) (download)
Thu Jan 7 23:48:01 2010 UTC (14 years, 4 months ago) by jmc
Branch: MAIN
Changes since 1.44: +2 -1 lines
fix previous modif for negative time (if baseTime << 0)

1 C $Header: /u/gcmpack/MITgcm/pkg/diagnostics/diagnostics_out.F,v 1.44 2010/01/07 01:09:40 jmc Exp $
2 C $Name: $
3
4 #include "DIAG_OPTIONS.h"
5
6 C---+----1----+----2----+----3----+----4----+----5----+----6----+----7-|--+----|
7 CBOP 0
8 C !ROUTINE: DIAGNOSTICS_OUT
9
10 C !INTERFACE:
11 SUBROUTINE DIAGNOSTICS_OUT(
12 I listId,
13 I myIter,
14 I myTime,
15 I myThid )
16
17 C !DESCRIPTION:
18 C Write output for diagnostics fields.
19
20 C !USES:
21 IMPLICIT NONE
22 #include "SIZE.h"
23 #include "EEPARAMS.h"
24 #include "PARAMS.h"
25 #include "GRID.h"
26 #include "DIAGNOSTICS_SIZE.h"
27 #include "DIAGNOSTICS.h"
28
29 INTEGER NrMax
30 PARAMETER( NrMax = numLevels )
31
32 C !INPUT PARAMETERS:
33 C listId :: Diagnostics list number being written
34 C myIter :: current iteration number
35 C myTime :: current time of simulation (s)
36 C myThid :: my Thread Id number
37 _RL myTime
38 INTEGER listId, myIter, myThid
39 CEOP
40
41 C !FUNCTIONS:
42 INTEGER ILNBLNK
43 EXTERNAL ILNBLNK
44 #ifdef ALLOW_FIZHI
45 _RL getcon
46 EXTERNAL getcon
47 #endif
48
49 C !LOCAL VARIABLES:
50 C i,j,k :: loop indices
51 C lm :: loop index (averageCycle)
52 C md :: field number in the list "listId".
53 C ndId :: diagnostics Id number (in available diagnostics list)
54 C mate :: counter mate Id number (in available diagnostics list)
55 C ip :: diagnostics pointer to storage array
56 C im :: counter-mate pointer to storage array
57 C
58 C-- COMMON /LOCAL_DIAGNOSTICS_OUT/ local common block (for multi-threaded)
59 C qtmp1 :: thread-shared temporary array (needs to be in common block):
60 C to write a diagnostic field to file, copy it first from (big)
61 C diagnostic storage qdiag into it.
62 COMMON /LOCAL_DIAGNOSTICS_OUT/ qtmp1
63 _RL qtmp1(1-OLx:sNx+OLx,1-OLy:sNy+OLy,NrMax,nSx,nSy)
64
65 INTEGER i, j, k, lm
66 INTEGER bi, bj
67 INTEGER md, ndId, ip, im
68 INTEGER mate, mVec
69 CHARACTER*10 gcode
70 _RL undef
71 _RL tmpLev
72 INTEGER ilen
73
74 INTEGER ioUnit
75 CHARACTER*(MAX_LEN_FNAM) fn
76 CHARACTER*(MAX_LEN_MBUF) suff
77 CHARACTER*(MAX_LEN_MBUF) msgBuf
78 INTEGER prec, nRec, nTimRec
79 _RL timeRec(2)
80 #ifdef ALLOW_MDSIO
81 LOGICAL glf
82 #endif
83 #ifdef ALLOW_MNC
84 INTEGER ll, llMx, jj, jjMx
85 INTEGER ii, klev
86 CHARACTER*(MAX_LEN_FNAM) diag_mnc_bn
87 INTEGER CW_DIMS, NLEN
88 PARAMETER ( CW_DIMS = 10 )
89 PARAMETER ( NLEN = 80 )
90 INTEGER dim(CW_DIMS), ib(CW_DIMS), ie(CW_DIMS)
91 CHARACTER*(NLEN) dn(CW_DIMS)
92 CHARACTER*(NLEN) d_cw_name
93 CHARACTER*(NLEN) dn_blnk
94 #ifdef DIAG_MNC_COORD_NEEDSWORK
95 CHARACTER*(5) ctmp
96 _RS ztmp(NrMax)
97 #endif
98 LOGICAL useMissingValue, useMisValForThisDiag
99 REAL*8 misvalLoc
100 REAL*8 misval_r8(2)
101 REAL*4 misval_r4(2)
102 INTEGER misvalIntLoc, misval_int(2)
103 #endif /* ALLOW_MNC */
104
105 C---+----1----+----2----+----3----+----4----+----5----+----6----+----7-|--+----|
106
107 C--- set file properties
108 ioUnit= standardMessageUnit
109 undef = UNSET_RL
110 #ifdef ALLOW_FIZHI
111 c IF ( useFIZHI ) undef = getcon('UNDEF')
112 undef = getcon('UNDEF')
113 #endif
114 WRITE(suff,'(I10.10)') myIter
115 ilen = ILNBLNK(fnames(listId))
116 WRITE( fn, '(A,A,A)' ) fnames(listId)(1:ilen),'.',suff(1:10)
117
118 C-- Set time information:
119 IF ( freq(listId).LT.0. ) THEN
120 C- Snap-shot: store a unique time (which is consistent with State-Var timing)
121 nTimRec = 1
122 timeRec(1) = myTime
123 ELSE
124 C- Time-average: store the 2 edges of the time-averaging interval.
125 C this time is consitent with intermediate Var (i.e., non-state, e.g, flux,
126 C tendencies) timing. For State-Var, this is shifted by + halt time-step.
127 nTimRec = 2
128
129 C- end of time-averaging interval:
130 timeRec(2) = myTime
131
132 C- begining of time-averaging interval:
133 c timeRec(1) = myTime - freq(listId)
134 C a) find the time of the previous multiple of output freq:
135 timeRec(1) = myTime-deltaTClock*0.5 _d 0
136 timeRec(1) = (timeRec(1)-phase(listId))/freq(listId)
137 i = INT( timeRec(1) )
138 IF ( timeRec(1).LT.0. ) i = i - 1
139 timeRec(1) = phase(listId) + freq(listId)*FLOAT(i)
140 c if ( listId.eq.2 ) write(0,*) 'f',i,timeRec(1)/deltaTClock
141 timeRec(1) = MAX( timeRec(1), startTime )
142
143 C b) round off to nearest multiple of time-step:
144 timeRec(1) = (timeRec(1)-baseTime)/deltaTClock
145 i = NINT( timeRec(1) )
146 C if just half way, NINT will return the next time-step: correct this
147 tmpLev = FLOAT(i) - 0.5 _d 0
148 IF ( timeRec(1).EQ.tmpLev ) i = i - 1
149 timeRec(1) = baseTime + deltaTClock*FLOAT(i)
150 c if ( listId.eq.2 ) write(0,*) i,timeRec(1)/deltaTClock
151 ENDIF
152
153 #ifdef ALLOW_MNC
154 C-- this is a trick to reverse the order of the loops on md (= field)
155 C and lm (= averagePeriod): binary output: lm loop inside md loop ;
156 C mnc ouput: md loop inside lm loop.
157 IF (useMNC .AND. diag_mnc) THEN
158 jjMx = averageCycle(listId)
159 llMx = 1
160 ELSE
161 jjMx = 1
162 llMx = averageCycle(listId)
163 ENDIF
164 DO jj=1,jjMx
165
166 IF (useMNC .AND. diag_mnc) THEN
167 C Handle missing value attribute (land points)
168 useMissingValue = .FALSE.
169 #ifdef DIAGNOSTICS_MISSING_VALUE
170 useMissingValue = .TRUE.
171 #endif /* DIAGNOSTICS_MISSING_VALUE */
172 IF ( misvalFlt(listId) .NE. UNSET_RL ) THEN
173 misvalLoc = misvalFlt(listId)
174 ELSE
175 misvalLoc = undef
176 ENDIF
177 C Defaults to UNSET_I
178 misvalIntLoc = misvalInt(listId)
179 DO ii=1,2
180 C misval_r4(ii) = UNSET_FLOAT4
181 C misval_r8(ii) = UNSET_FLOAT8
182 misval_r4(ii) = misvalLoc
183 misval_r8(ii) = misvalLoc
184 misval_int(ii) = UNSET_I
185 ENDDO
186 DO i = 1,MAX_LEN_FNAM
187 diag_mnc_bn(i:i) = ' '
188 ENDDO
189 DO i = 1,NLEN
190 dn_blnk(i:i) = ' '
191 ENDDO
192 WRITE( diag_mnc_bn, '(A)' ) fnames(listId)(1:ilen)
193
194 C Update the record dimension by writing the iteration number
195 klev = myIter + jj - jjMx
196 tmpLev = myTime + deltaTClock*(jj -jjMx)
197 CALL MNC_CW_SET_UDIM(diag_mnc_bn, -1, myThid)
198 CALL MNC_CW_RL_W_S('D',diag_mnc_bn,0,0,'T',tmpLev,myThid)
199 CALL MNC_CW_SET_UDIM(diag_mnc_bn, 0, myThid)
200 CALL MNC_CW_I_W_S('I',diag_mnc_bn,0,0,'iter',klev,myThid)
201
202 C NOTE: at some point it would be a good idea to add a time_bounds
203 C variable that has dimension (2,T) and clearly denotes the
204 C beginning and ending times for each diagnostics period
205
206 dn(1)(1:NLEN) = dn_blnk(1:NLEN)
207 WRITE(dn(1),'(a,i6.6)') 'Zmd', nlevels(listId)
208 dim(1) = nlevels(listId)
209 ib(1) = 1
210 ie(1) = nlevels(listId)
211
212 CALL MNC_CW_ADD_GNAME('diag_levels', 1,
213 & dim, dn, ib, ie, myThid)
214 CALL MNC_CW_ADD_VNAME('diag_levels', 'diag_levels',
215 & 0,0, myThid)
216 CALL MNC_CW_ADD_VATTR_TEXT('diag_levels','description',
217 & 'Idicies of vertical levels within the source arrays',
218 & myThid)
219 C suppress the missing value attribute (iflag = 0)
220 IF (useMissingValue)
221 & CALL MNC_CW_VATTR_MISSING('diag_levels', 0,
222 I misval_r8, misval_r4, misval_int,
223 I myThid )
224
225 CALL MNC_CW_RL_W('D',diag_mnc_bn,0,0,
226 & 'diag_levels', levs(1,listId), myThid)
227
228 CALL MNC_CW_DEL_VNAME('diag_levels', myThid)
229 CALL MNC_CW_DEL_GNAME('diag_levels', myThid)
230
231 #ifdef DIAG_MNC_COORD_NEEDSWORK
232 C This part has been placed in an #ifdef because, as its currently
233 C written, it will only work with variables defined on a dynamics
234 C grid. As we start using diagnostics for physics grids, ice
235 C levels, land levels, etc. the different vertical coordinate
236 C dimensions will have to be taken into account.
237
238 C 20051021 JMC & EH3 : We need to extend this so that a few
239 C variables each defined on different grids do not have the same
240 C vertical dimension names so we should be using a pattern such
241 C as: Z[uml]td000000 where the 't' is the type as specified by
242 C gdiag(10)
243
244 C Now define: Zmdxxxxxx, Zudxxxxxx, Zldxxxxxx
245 ctmp(1:5) = 'mul '
246 DO i = 1,3
247 dn(1)(1:NLEN) = dn_blnk(1:NLEN)
248 WRITE(dn(1),'(3a,i6.6)') 'Z',ctmp(i:i),'d',nlevels(listId)
249 CALL MNC_CW_ADD_GNAME(dn(1), 1, dim, dn, ib, ie, myThid)
250 CALL MNC_CW_ADD_VNAME(dn(1), dn(1), 0,0, myThid)
251
252 C The following three ztmp() loops should eventually be modified
253 C to reflect the fractional nature of levs(j,l) -- they should
254 C do something like:
255 C ztmp(j) = rC(INT(FLOOR(levs(j,l))))
256 C + ( rC(INT(FLOOR(levs(j,l))))
257 C + rC(INT(CEIL(levs(j,l)))) )
258 C / ( levs(j,l) - FLOOR(levs(j,l)) )
259 C for averaged levels.
260 IF (i .EQ. 1) THEN
261 DO j = 1,nlevels(listId)
262 ztmp(j) = rC(NINT(levs(j,listId)))
263 ENDDO
264 CALL MNC_CW_ADD_VATTR_TEXT(dn(1),'description',
265 & 'Dimensional coordinate value at the mid point',
266 & myThid)
267 ELSEIF (i .EQ. 2) THEN
268 DO j = 1,nlevels(listId)
269 ztmp(j) = rF(NINT(levs(j,listId)) + 1)
270 ENDDO
271 CALL MNC_CW_ADD_VATTR_TEXT(dn(1),'description',
272 & 'Dimensional coordinate value at the upper point',
273 & myThid)
274 ELSEIF (i .EQ. 3) THEN
275 DO j = 1,nlevels(listId)
276 ztmp(j) = rF(NINT(levs(j,listId)))
277 ENDDO
278 CALL MNC_CW_ADD_VATTR_TEXT(dn(1),'description',
279 & 'Dimensional coordinate value at the lower point',
280 & myThid)
281 ENDIF
282 C suppress the missing value attribute (iflag = 0)
283 IF (useMissingValue)
284 & CALL MNC_CW_VATTR_MISSING(dn(1), 0,
285 I misval_r8, misval_r4, misval_int,
286 I myThid )
287 CALL MNC_CW_RS_W('D',diag_mnc_bn,0,0, dn(1), ztmp, myThid)
288 CALL MNC_CW_DEL_VNAME(dn(1), myThid)
289 CALL MNC_CW_DEL_GNAME(dn(1), myThid)
290 ENDDO
291 #endif /* DIAG_MNC_COORD_NEEDSWORK */
292
293 ENDIF
294 #endif /* ALLOW_MNC */
295
296 C---+----1----+----2----+----3----+----4----+----5----+----6----+----7-|--+----|
297
298 DO md = 1,nfields(listId)
299 ndId = jdiag(md,listId)
300 gcode = gdiag(ndId)(1:10)
301 mate = 0
302 mVec = 0
303 IF ( gcode(5:5).EQ.'C' ) THEN
304 C- Check for Mate of a Counter Diagnostic
305 mate = hdiag(ndId)
306 ELSEIF ( gcode(1:1).EQ.'U' .OR. gcode(1:1).EQ.'V' ) THEN
307 C- Check for Mate of a Vector Diagnostic
308 mVec = hdiag(ndId)
309 ENDIF
310 IF ( idiag(md,listId).NE.0 .AND. gcode(5:5).NE.'D' ) THEN
311 C-- Start processing 1 Fld :
312 #ifdef ALLOW_MNC
313 DO ll=1,llMx
314 lm = jj+ll-1
315 #else
316 DO lm=1,averageCycle(listId)
317 #endif
318
319 ip = ABS(idiag(md,listId)) + kdiag(ndId)*(lm-1)
320 im = mdiag(md,listId)
321 IF (mate.GT.0) im = im + kdiag(mate)*(lm-1)
322 IF (mVec.GT.0) im = im + kdiag(mVec)*(lm-1)
323
324 IF ( ndiag(ip,1,1).EQ.0 ) THEN
325 C- Empty diagnostics case :
326
327 _BEGIN_MASTER( myThid )
328 WRITE(msgBuf,'(A,I10)')
329 & '- WARNING - from DIAGNOSTICS_OUT at iter=', myIter
330 CALL PRINT_MESSAGE( msgBuf, errorMessageUnit,
331 & SQUEEZE_RIGHT, myThid)
332 WRITE(msgBuf,'(A,I6,3A,I4,2A)')
333 & '- WARNING - diag.#',ndId, ' : ',flds(md,listId),
334 & ' (#',md,' ) in outp.Stream: ',fnames(listId)
335 CALL PRINT_MESSAGE( msgBuf, errorMessageUnit,
336 & SQUEEZE_RIGHT, myThid)
337 IF ( averageCycle(listId).GT.1 ) THEN
338 WRITE(msgBuf,'(A,2(I3,A))')
339 & '- WARNING - has not been filled (ndiag(lm=',lm,')=',
340 & ndiag(ip,1,1), ' )'
341 ELSE
342 WRITE(msgBuf,'(A,2(I3,A))')
343 & '- WARNING - has not been filled (ndiag=',
344 & ndiag(ip,1,1), ' )'
345 ENDIF
346 CALL PRINT_MESSAGE( msgBuf, errorMessageUnit,
347 & SQUEEZE_RIGHT, myThid)
348 WRITE(msgBuf,'(A)')
349 & 'WARNING DIAGNOSTICS_OUT => write ZEROS instead'
350 CALL PRINT_MESSAGE( msgBuf, errorMessageUnit,
351 & SQUEEZE_RIGHT, myThid)
352 _END_MASTER( myThid )
353 DO bj = myByLo(myThid), myByHi(myThid)
354 DO bi = myBxLo(myThid), myBxHi(myThid)
355 DO k = 1,nlevels(listId)
356 DO j = 1-OLy,sNy+OLy
357 DO i = 1-OLx,sNx+OLx
358 qtmp1(i,j,k,bi,bj) = 0. _d 0
359 ENDDO
360 ENDDO
361 ENDDO
362 ENDDO
363 ENDDO
364
365 ELSE
366 C- diagnostics is not empty :
367
368 IF ( debugLevel.GE.debLevA .AND. myThid.EQ.1 ) THEN
369 WRITE(ioUnit,'(A,I6,3A,I8,2A)')
370 & ' Computing Diagnostic # ', ndId, ' ', cdiag(ndId),
371 & ' Counter:',ndiag(ip,1,1),' Parms: ',gdiag(ndId)
372 IF ( mate.GT.0 ) THEN
373 WRITE(ioUnit,'(3A,I6,2A)')
374 & ' use Counter Mate for ', cdiag(ndId),
375 & ' Diagnostic # ',mate, ' ', cdiag(mate)
376 ELSEIF ( mVec.GT.0 ) THEN
377 IF ( im.GT.0 .AND. ndiag(MAX(1,im),1,1).GT.0 ) THEN
378 WRITE(ioUnit,'(3A,I6,3A)')
379 & ' Vector Mate for ', cdiag(ndId),
380 & ' Diagnostic # ',mVec, ' ', cdiag(mVec),
381 & ' exists '
382 ELSE
383 WRITE(ioUnit,'(3A,I6,3A)')
384 & ' Vector Mate for ', cdiag(ndId),
385 & ' Diagnostic # ',mVec, ' ', cdiag(mVec),
386 & ' not enabled'
387 ENDIF
388 ENDIF
389 ENDIF
390
391 IF ( fflags(listId)(2:2).EQ.'P' ) THEN
392 C- get all the levels (for vertical interpolation)
393 DO bj = myByLo(myThid), myByHi(myThid)
394 DO bi = myBxLo(myThid), myBxHi(myThid)
395 DO k = 1,kdiag(ndId)
396 tmpLev = k
397 CALL GETDIAG(
398 I tmpLev,undef,
399 O qtmp1(1-OLx,1-OLy,k,bi,bj),
400 I ndId,mate,ip,im,bi,bj,myThid)
401 ENDDO
402 ENDDO
403 ENDDO
404 ELSE
405 C- get only selected levels:
406 DO bj = myByLo(myThid), myByHi(myThid)
407 DO bi = myBxLo(myThid), myBxHi(myThid)
408 DO k = 1,nlevels(listId)
409 CALL GETDIAG(
410 I levs(k,listId),undef,
411 O qtmp1(1-OLx,1-OLy,k,bi,bj),
412 I ndId,mate,ip,im,bi,bj,myThid)
413 ENDDO
414 ENDDO
415 ENDDO
416 ENDIF
417
418 C- end of empty diag / not empty block
419 ENDIF
420
421 C-----------------------------------------------------------------------
422 C Check to see if we need to interpolate before output
423 C-----------------------------------------------------------------------
424 IF ( fflags(listId)(2:2).EQ.'P' ) THEN
425 C- Do vertical interpolation:
426 IF ( fluidIsAir ) THEN
427 C jmc: for now, this can only work in an atmospheric set-up (fluidIsAir);
428 CALL DIAGNOSTICS_INTERP_VERT(
429 I listId, md, ndId, ip, im, lm,
430 U qtmp1,
431 I undef, myTime, myIter, myThid )
432 ELSE
433 WRITE(msgBuf,'(2A)') 'DIAGNOSTICS_OUT: ',
434 & 'INTERP_VERT not allowed in this config'
435 CALL PRINT_ERROR( msgBuf , myThid )
436 STOP 'ABNORMAL END: S/R DIAGNOSTICS_OUT'
437 ENDIF
438 ENDIF
439
440 C-- Ready to write field "md", element "lm" in averageCycle(listId)
441
442 C- write to binary file, using MDSIO pkg:
443 IF ( diag_mdsio ) THEN
444 nRec = lm + (md-1)*averageCycle(listId)
445 C default precision for output files
446 prec = writeBinaryPrec
447 C fFlag(1)=R(or D): force it to be 32-bit(or 64) precision
448 IF ( fflags(listId)(1:1).EQ.'R' ) prec = precFloat32
449 IF ( fflags(listId)(1:1).EQ.'D' ) prec = precFloat64
450 C a hack not to write meta files now: pass -nRec < 0 to MDS_WRITE S/R
451 CALL WRITE_REC_LEV_RL(
452 I fn, prec,
453 I NrMax, 1, nlevels(listId),
454 I qtmp1, -nRec, myIter, myThid )
455 ENDIF
456
457 #ifdef ALLOW_MNC
458 IF (useMNC .AND. diag_mnc) THEN
459
460 _BEGIN_MASTER( myThid )
461
462 DO ii = 1,CW_DIMS
463 d_cw_name(1:NLEN) = dn_blnk(1:NLEN)
464 dn(ii)(1:NLEN) = dn_blnk(1:NLEN)
465 ENDDO
466
467 C Note that the "d_cw_name" variable is a hack that hides a
468 C subtlety within MNC. Basically, each MNC-wrapped file is
469 C caching its own concept of what each "grid name" (that is, a
470 C dimension group name) means. So one cannot re-use the same
471 C "grid" name for different collections of dimensions within a
472 C given file. By appending the "ndId" values to each name, we
473 C guarantee uniqueness within each MNC-produced file.
474 WRITE(d_cw_name,'(a,i6.6)') 'd_cw_',ndId
475
476 C XY dimensions
477 dim(1) = sNx + 2*OLx
478 dim(2) = sNy + 2*OLy
479 ib(1) = OLx + 1
480 ib(2) = OLy + 1
481 IF (gdiag(ndId)(2:2) .EQ. 'M') THEN
482 dn(1)(1:2) = 'X'
483 ie(1) = OLx + sNx
484 dn(2)(1:2) = 'Y'
485 ie(2) = OLy + sNy
486 ELSEIF (gdiag(ndId)(2:2) .EQ. 'U') THEN
487 dn(1)(1:3) = 'Xp1'
488 ie(1) = OLx + sNx + 1
489 dn(2)(1:2) = 'Y'
490 ie(2) = OLy + sNy
491 ELSEIF (gdiag(ndId)(2:2) .EQ. 'V') THEN
492 dn(1)(1:2) = 'X'
493 ie(1) = OLx + sNx
494 dn(2)(1:3) = 'Yp1'
495 ie(2) = OLy + sNy + 1
496 ELSEIF (gdiag(ndId)(2:2) .EQ. 'Z') THEN
497 dn(1)(1:3) = 'Xp1'
498 ie(1) = OLx + sNx + 1
499 dn(2)(1:3) = 'Yp1'
500 ie(2) = OLy + sNy + 1
501 ENDIF
502
503 C Z is special since it varies
504 WRITE(dn(3),'(a,i6.6)') 'Zd', nlevels(listId)
505 IF ( (gdiag(ndId)(10:10) .EQ. 'R')
506 & .AND. (gdiag(ndId)(9:9) .EQ. 'M') ) THEN
507 WRITE(dn(3),'(a,i6.6)') 'Zmd', nlevels(listId)
508 ENDIF
509 IF ( (gdiag(ndId)(10:10) .EQ. 'R')
510 & .AND. (gdiag(ndId)(9:9) .EQ. 'L') ) THEN
511 WRITE(dn(3),'(a,i6.6)') 'Zld', nlevels(listId)
512 ENDIF
513 IF ( (gdiag(ndId)(10:10) .EQ. 'R')
514 & .AND. (gdiag(ndId)(9:9) .EQ. 'U') ) THEN
515 WRITE(dn(3),'(a,i6.6)') 'Zud', nlevels(listId)
516 ENDIF
517 dim(3) = NrMax
518 ib(3) = 1
519 ie(3) = nlevels(listId)
520
521 C Time dimension
522 dn(4)(1:1) = 'T'
523 dim(4) = -1
524 ib(4) = 1
525 ie(4) = 1
526
527 CALL MNC_CW_ADD_GNAME(d_cw_name, 4,
528 & dim, dn, ib, ie, myThid)
529 CALL MNC_CW_ADD_VNAME(cdiag(ndId), d_cw_name,
530 & 4,5, myThid)
531 CALL MNC_CW_ADD_VATTR_TEXT(cdiag(ndId),'description',
532 & tdiag(ndId),myThid)
533 CALL MNC_CW_ADD_VATTR_TEXT(cdiag(ndId),'units',
534 & udiag(ndId),myThid)
535
536 C Missing values only for scalar diagnostics at mass points (so far)
537 useMisValForThisDiag = useMissingValue
538 & .AND.gdiag(ndId)(1:2).EQ.'SM'
539 IF ( useMisValForThisDiag ) THEN
540 C assign missing values and set flag for adding the netCDF atttibute
541 CALL MNC_CW_VATTR_MISSING(cdiag(ndId), 2,
542 I misval_r8, misval_r4, misval_int,
543 I myThid )
544 C and now use the missing values for masking out the land points
545 DO bj = myByLo(myThid), myByHi(myThid)
546 DO bi = myBxLo(myThid), myBxHi(myThid)
547 DO k = 1,nlevels(listId)
548 klev = NINT(levs(k,listId))
549 DO j = 1-OLy,sNy+OLy
550 DO i = 1-OLx,sNx+OLx
551 IF ( maskC(i,j,klev,bi,bj) .EQ. 0. )
552 & qtmp1(i,j,k,bi,bj) = misvalLoc
553 ENDDO
554 ENDDO
555 ENDDO
556 ENDDO
557 ENDDO
558 ELSE
559 C suppress the missing value attribute (iflag = 0)
560 C Note: We have to call the following subroutine for each mnc that has
561 C been created "on the fly" by mnc_cw_add_vname and will be deleted
562 C by mnc_cw_del_vname, because all of these variables use the same
563 C identifier so that mnc_cw_vfmv(indv) needs to be overwritten for
564 C each of these variables
565 CALL MNC_CW_VATTR_MISSING(cdiag(ndId), 0,
566 I misval_r8, misval_r4, misval_int,
567 I myThid )
568 ENDIF
569
570 IF ( ((writeBinaryPrec .EQ. precFloat32)
571 & .AND. (fflags(listId)(1:1) .NE. 'D'))
572 & .OR. (fflags(listId)(1:1) .EQ. 'R') ) THEN
573 CALL MNC_CW_RL_W('R',diag_mnc_bn,0,0,
574 & cdiag(ndId), qtmp1, myThid)
575 ELSEIF ( (writeBinaryPrec .EQ. precFloat64)
576 & .OR. (fflags(listId)(1:1) .EQ. 'D') ) THEN
577 CALL MNC_CW_RL_W('D',diag_mnc_bn,0,0,
578 & cdiag(ndId), qtmp1, myThid)
579 ENDIF
580
581 CALL MNC_CW_DEL_VNAME(cdiag(ndId), myThid)
582 CALL MNC_CW_DEL_GNAME(d_cw_name, myThid)
583
584 _END_MASTER( myThid )
585
586 ENDIF
587 #endif /* ALLOW_MNC */
588
589 C-- end loop on lm (or ll if ALLOW_MNC) counter
590 ENDDO
591 C-- end of Processing Fld # md
592 ENDIF
593 ENDDO
594
595 #ifdef ALLOW_MNC
596 C-- end loop on jj counter
597 ENDDO
598 #endif
599
600 #ifdef ALLOW_MDSIO
601 IF (diag_mdsio) THEN
602 C- Note: temporary: since it's a pain to add more arguments to
603 C all MDSIO S/R, uses instead this specific S/R to write only
604 C meta files but with more informations in it.
605 glf = globalFiles
606 nRec = nfields(listId)*averageCycle(listId)
607 CALL MDS_WR_METAFILES(fn, prec, glf, .FALSE.,
608 & 0, 0, nlevels(listId), ' ',
609 & nfields(listId), flds(1,listId), nTimRec, timeRec,
610 & nRec, myIter, myThid)
611 ENDIF
612 #endif /* ALLOW_MDSIO */
613
614 RETURN
615 END
616
617 C---+----1----+----2----+----3----+----4----+----5----+----6----+----7-|--+----|

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