/[MITgcm]/MITgcm/model/src/the_model_main.F
ViewVC logotype

Contents of /MITgcm/model/src/the_model_main.F

Parent Directory Parent Directory | Revision Log Revision Log | View Revision Graph Revision Graph


Revision 1.31 - (show annotations) (download)
Mon Aug 30 18:29:27 1999 UTC (24 years, 8 months ago) by adcroft
Branch: MAIN
CVS Tags: checkpoint25, checkpoint26
Changes since 1.30: +1 -19 lines
Corrected interaction between OBCs and algorithm. The
positioning of set_obcs() within the time-stepping sequence
is crucial for stable open-boundaries. Forcing the boundaries
with time-dependent flow previously led to horrible results...

1 C $Header: /u/gcmpack/models/MITgcmUV/model/src/the_model_main.F,v 1.30 1999/07/30 15:46:49 adcroft Exp $
2
3 #include "CPP_OPTIONS.h"
4
5 SUBROUTINE THE_MODEL_MAIN(myThid)
6 C /==========================================================\
7 C | SUBROUTINE THE_MODEL_MAIN |
8 C | o Master controlling routine for model using the MITgcm |
9 C | UV parallel wrapper. |
10 C |==========================================================|
11 C | THE_MODEL_MAIN is invoked by the MITgcm UV parallel |
12 C | wrapper with a single integer argument "myThid". This |
13 C | variable identifies the thread number of an instance of |
14 C | THE_MODEL_MAIN. Each instance of THE_MODEL_MAIN works |
15 C | on a particular region of the models domain and |
16 C | synchronises with other instances as necessary. The |
17 C | routine has to "understand" the MITgcm parallel |
18 C | environment and the numerical algorithm. Editing this |
19 C | routine is best done with some knowledge of both aspects.|
20 C | Notes |
21 C | ===== |
22 C | C*P* comments indicating place holders for which code is |
23 C | presently being developed. |
24 C \==========================================================/
25 IMPLICIT NONE
26 C
27 C Call Tree
28 C =========
29 C
30 C main ( eesupp )
31 C |
32 C .
33 C .
34 C . Generic environment initialisation ( see eesupp/src and
35 C . eesupp/inc )
36 C . multiple threads and/or processes are created in here
37 C .
38 C .
39 C .
40 C |
41 C |-THE_MODEL_MAIN - Begin specific model. One instance
42 C | | of this codes exists for each thread
43 C | | and/or instance. Each instance manages
44 C | | a specifc set of tiles.
45 C | |
46 C | |--INITIALISE
47 C | | o Set initial conditions and model configuration
48 C | | Topography, hydrography, timestep, grid, etc..
49 C | |
50 C ==> | | ** Time stepping loop starts here **
51 C | | |
52 C /|\ | |
53 C | | |--LOAD_EXTERNAL_DATA
54 C /|\ | | o Load and/or set time dependent forcing fields
55 C | | |
56 C /|\ | |--DYNAMICS
57 C | | | o Evaluate "forward" terms
58 C /|\ | |
59 C | | |--DO_THE_MODEL_IO
60 C /|\ | | o Write model state
61 C | | |
62 C /|\ | |--SOLVE_FOR_PRESSURE
63 C | | | o Find pressure field to keep flow non-divergent
64 C /|\ | |
65 C | | |--DO_GTERM_BLOCKING_EXCHANGES
66 C /|\ | | o Update overlap regions
67 C | | |
68 C /|\ | |--WRITE_CHECKPOINT
69 C | | | o Write restart file(s)
70 C /|\ | |
71 C | | |
72 C |<== | | ** Time stepping loop finishes here **
73 C | |
74 C | |--WRITE_STATE
75 C | |--WRITE_CHECKPOINT
76 C |
77 C .
78 C .
79 C . Generic environment termination ( see eesupp/src and
80 C . eesupp/inc )
81 C .
82 C .
83
84 C == Global variables ===
85 #include "SIZE.h"
86 #include "EEPARAMS.h"
87 #include "PARAMS.h"
88 #include "DYNVARS.h"
89 #include "CG2D.h"
90 #ifdef ALLOW_NONHYDROSTATIC
91 #include "CG3D.h"
92 #endif
93
94 C == Routine arguments ==
95 C myThid - Thread number for this instance of the routine.
96 INTEGER myThid
97
98 C == Local variables ==
99 C Note: Under the multi-threaded model myCurrentIter and
100 C myCurrentTime are local variables passed around as routine
101 C arguments. Although this is fiddly it saves the need to
102 C impose additional synchronisation points when they are
103 C updated.
104 C myCurrentIter - Iteration counter for this thread
105 C myCurrentTime - Time counter for this thread
106 C I - Loop counter
107 INTEGER I, myCurrentIter
108 _RL myCurrentTime
109
110 C-- This timer encompasses the whole code
111 CALL TIMER_START('ALL',myThid)
112
113 CALL TIMER_START('SPIN-UP',myThid)
114
115 C-- Set model initial conditions
116 CALL TIMER_START('INITIALISE [SPIN-UP]',myThid)
117 CALL INITIALISE( myThid )
118 myCurrentTime = startTime
119 myCurrentIter = nIter0
120 CALL TIMER_STOP ('INITIALISE [SPIN-UP]',myThid)
121
122 C-- Dump for start state
123 CALL TIMER_START('I/O (WRITE) [SPIN-UP]',myThid)
124 CALL WRITE_STATE( .TRUE., myCurrentTime, myCurrentIter, myThid )
125 CALL TIMER_STOP ('I/O (WRITE) [SPIN-UP]',myThid)
126
127 CALL TIMER_STOP ('SPIN-UP',myThid)
128
129 C-- Begin time stepping loop
130 CALL TIMER_START('MAIN LOOP',myThid)
131 DO I=1, nTimeSteps
132
133 C-- Load forcing/external data fields
134 CALL TIMER_START('I/O (READ) [MAIN LOOP]',myThid)
135 CALL LOAD_EXTERNAL_FIELDS( myCurrentTime, myCurrentIter, myThid )
136 CALL TIMER_STOP ('I/O (READ) [MAIN LOOP]',myThid)
137
138 #ifdef INCLUDE_SHAPIRO_FILTER_CODE
139 C-- Step forward all tiles, filter and exchange.
140 CALL TIMER_START('SHAP_FILT [MAIN LOOP]',myThid)
141 CALL SHAP_FILT( myCurrentTime, myCurrentIter, myThid )
142 CALL TIMER_STOP ('SHAP_FILT [MAIN LOOP]',myThid)
143 #endif
144
145 C-- Step forward fields and calculate time tendency terms
146 CALL TIMER_START('DYNAMICS [MAIN LOOP]',myThid)
147 CALL DYNAMICS( myCurrentTime, myCurrentIter, myThid )
148 CALL TIMER_STOP ('DYNAMICS [MAIN LOOP]',myThid)
149
150 #ifdef ALLOW_NONHYDROSTATIC
151 C-- Step forward W field in N-H algorithm
152 IF ( nonHydrostatic ) THEN
153 CALL TIMER_START('CALC_GW [MAIN LOOP]',myThid)
154 CALL CALC_GW( myThid)
155 CALL TIMER_STOP ('CALC_GW [MAIN LOOP]',myThid)
156 ENDIF
157 #endif
158
159 C-- Do time averages
160 #ifdef INCLUDE_DIAGNOSTICS_INTERFACE_CODE
161 CALL TIMER_START('I/O (WRITE) [MAIN LOOP]',myThid)
162 IF (taveFreq.GT.0.) THEN
163 CALL WRITE_TIME_AVERAGES( myCurrentTime, myCurrentIter, myThid )
164 ENDIF
165 CALL TIMER_STOP ('I/O (WRITE) [MAIN LOOP]',myThid)
166 #endif
167
168 C-- Do IO if needed.
169 C Note:
170 C =====
171 C At this point model arrays hold U,V,T,S at "time-level" N
172 C and cg2d_x at "time-level" N-1/2 where N = I+timeLevBase-1.
173 C By convention this is taken to be the model "state".
174 CALL TIMER_START('I/O (WRITE) [MAIN LOOP]',myThid)
175 CALL DO_THE_MODEL_IO( myCurrentTime, myCurrentIter, myThid )
176 CALL TIMER_STOP ('I/O (WRITE) [MAIN LOOP]',myThid)
177
178 C-- Solve elliptic equation(s).
179 C Two-dimensional only for conventional hydrostatic or
180 C three-dimensional for non-hydrostatic and/or IGW scheme.
181 CALL TIMER_START('SOLVE_FOR_PRESSURE [MAIN LOOP]',myThid)
182 CALL SOLVE_FOR_PRESSURE( myThid )
183 CALL TIMER_STOP ('SOLVE_FOR_PRESSURE [MAIN LOOP]',myThid)
184
185 C-- Do "blocking" sends and receives for tendency "overlap" terms
186 CALL TIMER_START('BLOCKING_EXCHANGES [MAIN LOOP]',myThid)
187 CALL DO_GTERM_BLOCKING_EXCHANGES( myThid )
188 CALL TIMER_STOP ('BLOCKING_EXCHANGES [MAIN LOOP]',myThid)
189
190 myCurrentIter = myCurrentIter + 1
191 myCurrentTime = myCurrentTime + deltaTClock
192
193 C-- Save state for restarts
194 C Note:
195 C =====
196 C Because of the ordering of the timestepping code and
197 C tendency term code at end of loop model arrays hold
198 C U,V,T,S at "time-level" N but gu, gv, gs, gt, guNM1,...
199 C at "time-level" N+1/2 (guNM1 at "time-level" N+1/2 is
200 C gu at "time-level" N-1/2) and cg2d_x at "time-level" N+1/2.
201 C where N = I+timeLevBase-1
202 C Thus a checkpoint contains U.0000000000, GU.0000000001 and
203 C cg2d_x.0000000001 in the indexing scheme used for the model
204 C "state" files. This example is referred to as a checkpoint
205 C at time level 1
206 CALL TIMER_START('I/O (WRITE) [MAIN LOOP]',myThid)
207 CALL
208 & WRITE_CHECKPOINT( .FALSE., myCurrentTime, myCurrentIter, myThid )
209 CALL TIMER_STOP ('I/O (WRITE) [MAIN LOOP]',myThid)
210
211 ENDDO
212 CALL TIMER_STOP ('MAIN LOOP',myThid)
213 CALL TIMER_START('SPIN-DOWN',myThid)
214
215 C-- Final checkpoint (incase the in-loop checkpoint was missed)
216 CALL TIMER_START('I/O (WRITE) [SPIN-DOWN]',myThid)
217 CALL
218 & WRITE_CHECKPOINT( .TRUE., myCurrentTime, myCurrentIter, myThid )
219 CALL TIMER_STOP ('I/O (WRITE) [SPIN-DOWN]',myThid)
220
221 C-- Step-forward U/V/Theta/Salt for purposes of final I/O dump
222 CALL TIMER_START('DYNAMICS [SPIN-DOWN]',myThid)
223 CALL DYNAMICS( myCurrentTime, myCurrentIter, myThid )
224 CALL TIMER_STOP ('DYNAMICS [SPIN-DOWN]',myThid)
225
226 #ifdef ALLOW_NONHYDROSTATIC
227 IF ( nonHydrostatic ) THEN
228 C-- Step forward W field in N-H algorithm
229 CALL TIMER_START('CALC_GW [SPIN-DOWN]',myThid)
230 CALL CALC_GW( myThid)
231 CALL TIMER_STOP ('CALC_GW [SPIN-DOWN]',myThid)
232 ENDIF
233 #endif
234
235 C-- Do time averages
236 #ifdef INCLUDE_DIAGNOSTICS_INTERFACE_CODE
237 IF (taveFreq.GT.0.) THEN
238 CALL TIMER_START('I/O (WRITE) [SPIN-DOWN]',myThid)
239 CALL WRITE_TIME_AVERAGES( myCurrentTime, myCurrentIter, myThid )
240 CALL TIMER_STOP ('I/O (WRITE) [SPIN-DOWN]',myThid)
241 ENDIF
242 #endif
243
244 C-- Dump for end state
245 CALL TIMER_START('I/O (WRITE) [SPIN-DOWN]',myThid)
246 CALL WRITE_STATE( .FALSE., myCurrentTime, myCurrentIter, myThid )
247 CALL TIMER_STOP ('I/O (WRITE) [SPIN-DOWN]',myThid)
248
249 CALL TIMER_STOP ('SPIN-DOWN',myThid)
250 CALL TIMER_STOP ('ALL',myThid)
251
252 C-- Write timer statistics
253 IF ( myThid .EQ. 1 ) THEN
254 CALL TIMER_PRINTALL( myThid )
255 CALL COMM_STATS
256 ENDIF
257
258 RETURN
259 END

  ViewVC Help
Powered by ViewVC 1.1.22