1 |
molod |
1.3 |
subroutine getdiag (myThid,lev,ipoint,undef,qtmp) |
2 |
molod |
1.1 |
C*********************************************************************** |
3 |
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C PURPOSE |
4 |
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C Retrieve averaged model diagnostic |
5 |
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C INPUT: |
6 |
molod |
1.2 |
C lev ..... Diagnostic LEVEL |
7 |
molod |
1.1 |
C ipoint ..... DIAGNOSTIC NUMBER FROM MENU |
8 |
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C undef ..... UNDEFINED VALUE |
9 |
molod |
1.2 |
C bi ..... X-direction process(or) number |
10 |
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C bj ..... Y-direction process(or) number |
11 |
molod |
1.1 |
C |
12 |
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C OUTPUT: |
13 |
molod |
1.2 |
C qtmp ..... AVERAGED DIAGNOSTIC QUANTITY |
14 |
molod |
1.1 |
C |
15 |
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C*********************************************************************** |
16 |
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implicit none |
17 |
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|
18 |
molod |
1.3 |
#include "EEPARAMS.h" |
19 |
molod |
1.2 |
#include "CPP_OPTIONS.h" |
20 |
molod |
1.1 |
#include "SIZE.h" |
21 |
molod |
1.3 |
|
22 |
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#ifdef ALLOW_FIZHI |
23 |
molod |
1.1 |
#include "fizhi_SIZE.h" |
24 |
molod |
1.3 |
#else |
25 |
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integer Nrphys |
26 |
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parameter (Nrphys=1) |
27 |
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#endif |
28 |
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|
29 |
molod |
1.1 |
#include "diagnostics_SIZE.h" |
30 |
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#include "diagnostics.h" |
31 |
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|
32 |
molod |
1.3 |
integer myThid,lev,ipoint |
33 |
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_RL undef |
34 |
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_RL qtmp(1-OLx:sNx+Olx,1-Oly:sNy+Oly,Nr+Nrphys,Nsx,Nsy) |
35 |
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36 |
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_RL factor |
37 |
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integer i,j,ipnt,klev |
38 |
molod |
1.2 |
integer bi,bj |
39 |
molod |
1.3 |
|
40 |
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if (ipoint.lt.1) go to 999 |
41 |
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|
42 |
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klev = kdiag(ipoint) |
43 |
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if(klev.ge.lev) then |
44 |
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ipnt = idiag(ipoint) + lev - 1 |
45 |
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factor = 1.0 |
46 |
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if(ndiag(ipoint).ne.0) factor = 1.0/ndiag(ipoint) |
47 |
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48 |
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do bj=myByLo(myThid), myByHi(myThid) |
49 |
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do bi=myBxLo(myThid), myBxHi(myThid) |
50 |
molod |
1.1 |
|
51 |
molod |
1.2 |
do j = 1,sNy |
52 |
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do i = 1,sNx |
53 |
molod |
1.3 |
if( qdiag(i,j,ipnt,bi,bj).ne.undef ) then |
54 |
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qtmp(i,j,lev,bi,bj) = qdiag(i,j,ipnt,bi,bj)*factor |
55 |
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else |
56 |
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qtmp(i,j,lev,bi,bj) = undef |
57 |
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endif |
58 |
molod |
1.1 |
enddo |
59 |
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enddo |
60 |
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61 |
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enddo |
62 |
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enddo |
63 |
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|
64 |
molod |
1.3 |
endif |
65 |
molod |
1.1 |
|
66 |
molod |
1.3 |
999 return |
67 |
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end |
68 |
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69 |
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subroutine getdiag2 (myThid,lev,ipoint,undef,qtmp) |
70 |
molod |
1.1 |
C*********************************************************************** |
71 |
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C PURPOSE |
72 |
molod |
1.3 |
C Retrieve averaged model diagnostic |
73 |
molod |
1.1 |
C INPUT: |
74 |
molod |
1.3 |
C lev ..... Diagnostic LEVEL |
75 |
molod |
1.1 |
C ipoint ..... DIAGNOSTIC NUMBER FROM MENU |
76 |
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C undef ..... UNDEFINED VALUE |
77 |
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C |
78 |
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C OUTPUT: |
79 |
molod |
1.3 |
C qtmp ..... AVERAGED DIAGNOSTIC QUANTITY |
80 |
molod |
1.1 |
C |
81 |
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C*********************************************************************** |
82 |
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implicit none |
83 |
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|
84 |
molod |
1.3 |
#include "EEPARAMS.h" |
85 |
molod |
1.2 |
#include "CPP_OPTIONS.h" |
86 |
molod |
1.1 |
#include "SIZE.h" |
87 |
molod |
1.3 |
|
88 |
|
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#ifdef ALLOW_FIZHI |
89 |
molod |
1.1 |
#include "fizhi_SIZE.h" |
90 |
molod |
1.3 |
#else |
91 |
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integer Nrphys |
92 |
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parameter (Nrphys=1) |
93 |
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#endif |
94 |
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|
95 |
molod |
1.1 |
#include "diagnostics_SIZE.h" |
96 |
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#include "diagnostics.h" |
97 |
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|
98 |
molod |
1.3 |
integer myThid,lev,ipoint |
99 |
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_RL undef |
100 |
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_RL qtmp(1-OLx:sNx+Olx,1-Oly:sNy+Oly,Nr+Nrphys,Nsx,Nsy) |
101 |
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|
102 |
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integer i,j,ipnt,klev |
103 |
molod |
1.2 |
integer bi,bj |
104 |
molod |
1.1 |
|
105 |
molod |
1.3 |
if (ipoint.lt.1) go to 999 |
106 |
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|
107 |
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klev = kdiag(ipoint) |
108 |
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if(klev.ge.lev) then |
109 |
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ipnt = idiag(ipoint) + lev - 1 |
110 |
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|
111 |
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do bj=myByLo(myThid), myByHi(myThid) |
112 |
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do bi=myBxLo(myThid), myBxHi(myThid) |
113 |
molod |
1.1 |
|
114 |
molod |
1.2 |
do j = 1,sNy |
115 |
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do i = 1,sNx |
116 |
molod |
1.3 |
if( qdiag(i,j,ipnt,bi,bj).ne.undef ) then |
117 |
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qtmp(i,j,lev,bi,bj) = qdiag(i,j,ipnt,bi,bj) |
118 |
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else |
119 |
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qtmp(i,j,lev,bi,bj) = undef |
120 |
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endif |
121 |
molod |
1.1 |
enddo |
122 |
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enddo |
123 |
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124 |
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enddo |
125 |
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enddo |
126 |
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127 |
molod |
1.3 |
endif |
128 |
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129 |
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999 return |
130 |
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end |
131 |
molod |
1.2 |
subroutine clrindx (myThid,listnum) |
132 |
molod |
1.1 |
C*********************************************************************** |
133 |
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C |
134 |
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C PURPOSE |
135 |
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C DRIVER TO CLEAR DIAGNOSTICS SPECIFIED IN DIAGNOSTIC INDEX LIST |
136 |
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C |
137 |
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C ARGUMENT DESCRIPTION |
138 |
molod |
1.2 |
C listnum .... diagnostics list number |
139 |
molod |
1.1 |
C |
140 |
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C*********************************************************************** |
141 |
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|
142 |
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implicit none |
143 |
molod |
1.2 |
#include "EEPARAMS.h" |
144 |
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#include "CPP_OPTIONS.h" |
145 |
molod |
1.1 |
#include "SIZE.h" |
146 |
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#include "fizhi_SIZE.h" |
147 |
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#include "diagnostics_SIZE.h" |
148 |
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#include "diagnostics.h" |
149 |
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|
150 |
molod |
1.2 |
integer myThid, listnum |
151 |
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|
152 |
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integer m, n |
153 |
molod |
1.1 |
character*8 parms1 |
154 |
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character*1 parse1(8) |
155 |
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character*3 mate_index |
156 |
molod |
1.2 |
integer mate |
157 |
molod |
1.1 |
|
158 |
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equivalence ( parms1 , parse1(1) ) |
159 |
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equivalence ( mate_index , parse1(6) ) |
160 |
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|
161 |
molod |
1.2 |
do n=1,nfields(listnum) |
162 |
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do m=1,ndiagt |
163 |
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if( flds(n,listnum).eq.cdiag(m) .and. idiag(m).ne.0 ) then |
164 |
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call clrdiag (myThid,m) |
165 |
molod |
1.1 |
|
166 |
|
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c Check for Counter Diagnostic |
167 |
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c ---------------------------- |
168 |
molod |
1.2 |
parms1 = gdiag(m) |
169 |
|
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if( parse1(5).eq.'C' ) then |
170 |
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read (mate_index,100) mate |
171 |
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call clrdiag (myThid,mate) |
172 |
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endif |
173 |
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endif |
174 |
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enddo |
175 |
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enddo |
176 |
molod |
1.1 |
|
177 |
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100 format(i3) |
178 |
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RETURN |
179 |
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END |
180 |
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181 |
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|
182 |
molod |
1.2 |
subroutine clrdiag (myThid,index) |
183 |
molod |
1.1 |
C*********************************************************************** |
184 |
|
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C PURPOSE |
185 |
molod |
1.2 |
C ZERO OUT MODEL DIAGNOSTIC ARRAY ELEMENTS |
186 |
molod |
1.1 |
C*********************************************************************** |
187 |
|
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|
188 |
|
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implicit none |
189 |
molod |
1.2 |
#include "EEPARAMS.h" |
190 |
|
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#include "CPP_OPTIONS.h" |
191 |
molod |
1.1 |
#include "SIZE.h" |
192 |
|
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#include "fizhi_SIZE.h" |
193 |
|
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#include "diagnostics_SIZE.h" |
194 |
|
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#include "diagnostics.h" |
195 |
|
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|
196 |
molod |
1.2 |
integer myThid, index |
197 |
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|
198 |
|
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integer bi,bj |
199 |
molod |
1.1 |
integer i,j,k |
200 |
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|
201 |
|
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C ********************************************************************** |
202 |
|
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C **** SET DIAGNOSTIC AND COUNTER TO ZERO **** |
203 |
|
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C ********************************************************************** |
204 |
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|
205 |
molod |
1.2 |
do bj=myByLo(myThid), myByHi(myThid) |
206 |
|
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do bi=myBxLo(myThid), myBxHi(myThid) |
207 |
|
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do k = 1,kdiag(index) |
208 |
|
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do j = 1,sNy |
209 |
|
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do i = 1,sNx |
210 |
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qdiag(i,j,idiag(index)+k-1,bi,bj) = 0.0 |
211 |
molod |
1.1 |
enddo |
212 |
|
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enddo |
213 |
molod |
1.2 |
enddo |
214 |
|
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enddo |
215 |
|
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enddo |
216 |
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217 |
|
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ndiag(index) = 0 |
218 |
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219 |
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return |
220 |
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end |
221 |
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222 |
|
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subroutine setdiag (myThid,num,ndiagmx) |
223 |
|
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C*********************************************************************** |
224 |
|
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C |
225 |
|
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C PURPOSE |
226 |
|
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C SET POINTER LOCATIONS, NAMES, LEVELS and TITLES FOR DIAGNOSTIC NUM |
227 |
|
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C |
228 |
|
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C*********************************************************************** |
229 |
|
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|
230 |
|
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implicit none |
231 |
|
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#include "CPP_OPTIONS.h" |
232 |
|
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#include "SIZE.h" |
233 |
|
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#include "fizhi_SIZE.h" |
234 |
|
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#include "diagnostics_SIZE.h" |
235 |
|
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#include "diagnostics.h" |
236 |
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|
237 |
|
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integer num,myThid,ndiagmx |
238 |
|
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integer ipointer |
239 |
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|
240 |
|
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DATA IPOINTER / 1 / |
241 |
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|
242 |
|
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character*8 parms1 |
243 |
|
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character*1 parse1(8) |
244 |
|
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character*3 mate_index |
245 |
|
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integer mate |
246 |
|
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|
247 |
|
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equivalence ( parms1 , parse1(1) ) |
248 |
|
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equivalence ( mate_index , parse1(6) ) |
249 |
|
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|
250 |
|
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C ********************************************************************** |
251 |
|
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C **** SET POINTERS FOR DIAGNOSTIC NUM **** |
252 |
|
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C ********************************************************************** |
253 |
|
|
|
254 |
|
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parms1 = gdiag(num) |
255 |
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|
256 |
|
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IF( IDIAG(NUM).EQ.0 ) THEN |
257 |
|
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if(ndiagmx+kdiag(num).gt.numdiags) then |
258 |
|
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write(6,4000)num,cdiag(num) |
259 |
|
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else |
260 |
|
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IDIAG(NUM) = IPOINTER |
261 |
|
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IPOINTER = IPOINTER + KDIAG(NUM) |
262 |
|
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ndiagmx = ndiagmx + KDIAG(NUM) |
263 |
|
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if(myThid.eq.0) WRITE(6,2000)KDIAG(NUM),NUM,CDIAG(NUM),ndiagmx |
264 |
|
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endif |
265 |
|
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ELSE |
266 |
|
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if(myThid.eq.0) WRITE(6,3000) NUM, CDIAG(NUM) |
267 |
|
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ENDIF |
268 |
|
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|
269 |
|
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c Check for Counter Diagnostic |
270 |
|
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c ---------------------------- |
271 |
|
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if( parse1(5).eq.'C') then |
272 |
|
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read (mate_index,100) mate |
273 |
|
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|
274 |
|
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IF( IDIAG(mate).EQ.0 ) THEN |
275 |
|
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if(ndiagmx+kdiag(num).gt.numdiags) then |
276 |
|
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write(6,5000)num,cdiag(num) |
277 |
|
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else |
278 |
|
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IDIAG(mate) = IPOINTER |
279 |
|
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IPOINTER = IPOINTER + KDIAG(mate) |
280 |
|
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ndiagmx = ndiagmx + KDIAG(mate) |
281 |
|
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if(myThid.eq.0)WRITE(6,2000)KDIAG(mate),mate,CDIAG(mate),ndiagmx |
282 |
|
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endif |
283 |
|
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ELSE |
284 |
|
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if(myThid.eq.0) WRITE(6,3000) mate, CDIAG(mate) |
285 |
|
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ENDIF |
286 |
|
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endif |
287 |
|
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|
288 |
|
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RETURN |
289 |
molod |
1.1 |
|
290 |
molod |
1.2 |
100 format(i3) |
291 |
|
|
2000 FORMAT(1X,'Allocating ',I2,' Level(s) for Diagnostic # ',I3, |
292 |
|
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. ' (',A8,'), Total Number of Diagnostics: ',I5) |
293 |
|
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3000 FORMAT(1X,'Diagnostic # ',I3,' (',A8,') has already been set') |
294 |
|
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4000 FORMAT(1X,'Unable to allocate space for Diagnostic # ',I3, |
295 |
|
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. ' (',A8,')') |
296 |
|
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5000 FORMAT(1X,'Unable to allocate space for Counter Diagnostic # ', |
297 |
|
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. I3,' (',A8,')',' WARNING - Diag will not accumulate properly') |
298 |
|
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END |