source: issm/trunk/src/c/ModelProcessorx/Model.cpp@ 765

Last change on this file since 765 was 765, checked in by Eric.Larour, 16 years ago

New qmu in core capability. New processing of parameters

File size: 14.6 KB
Line 
1/*! \file Model.cpp
2 * \brief Model structure that mirrors the matlab workspace structure. Servers for the serial
3 * and parallel runs.
4 */
5
6#ifdef HAVE_CONFIG_H
7 #include "config.h"
8#else
9#error "Cannot compile with HAVE_CONFIG_H symbol! run configure first!"
10#endif
11
12#include "../shared/shared.h"
13#include "../io/io.h"
14#include "../include/globals.h"
15#include "../include/macros.h"
16
17#include <string.h>
18#include "stdio.h"
19
20#include "./Model.h"
21
22
23/*!--------------------------------------------------
24 NewModel
25 --------------------------------------------------*/
26
27Model* NewModel(void) {
28 /*! create a new Model object */
29 Model* model=NULL;
30
31 model=(Model*)xmalloc(sizeof(Model));
32
33 /*!initialize all pointers to 0: */
34 model->repository=NULL;
35 model->meshtype=NULL;
36 model->analysis_type=NULL;
37 model->sub_analysis_type=NULL;
38 model->qmu_analysis=0;
39 model->solverstring=NULL;
40 model->numberofresponses=0;
41 model->numberofvariables=0;
42 model->qmu_npart=0;
43 model->numberofelements=0;
44 model->numberofnodes=0;
45 model->x=NULL;
46 model->y=NULL;
47 model->z=NULL;
48 model->elements=NULL;
49 model->elements_type=NULL;
50 model->numberofnodes2d=0;
51 model->elements2d=NULL;
52 model->deadgrids=NULL;
53 model->numlayers=0;
54 model->uppernodes=NULL;
55 model->gridonhutter=NULL;
56 model->gridonmacayeal=NULL;
57 model->gridonpattyn=NULL;
58
59 model->vx_obs=NULL;
60 model->vy_obs=NULL;
61 model->vx=NULL;
62 model->vy=NULL;
63 model->vz=NULL;
64 model->pressure=NULL;
65 model->temperature=NULL;
66 model->melting=NULL;
67 model->elementonbed=NULL;
68 model->elementonsurface=NULL;
69 model->gridonbed=NULL;
70 model->gridonsurface=NULL;
71 model->gridonstokes=NULL;
72 model->borderstokes=NULL;
73 model->thickness=NULL;
74 model->surface=NULL;
75 model->bed=NULL;
76 model->elementoniceshelf=NULL;
77 model->gridonicesheet=NULL;
78
79 model->drag_type=0;
80 model->drag=NULL;
81 model->p=NULL;
82 model->q=NULL;
83
84
85 model->numberofsegs_diag=0;
86 model->numberofsegs_diag_stokes=0;
87 model->segmentonneumann_diag=NULL;
88 model->segmentonneumann_diag_stokes=NULL;
89 model-> neumannvalues_diag=NULL;
90 model-> gridondirichlet_diag=NULL;
91 model-> dirichletvalues_diag=NULL;
92 //prognostic
93 model-> segmentonneumann_prog=NULL;
94 model-> neumannvalues_prog=NULL;
95 model-> gridondirichlet_prog=NULL;
96 model-> dirichletvalues_prog=NULL;
97 //prognostic2
98 model-> segmentonneumann_prog2=NULL;
99 model-> neumannvalues_prog2=NULL;
100 //thermal
101 model-> gridondirichlet_thermal=NULL;
102 model-> dirichletvalues_thermal=NULL;
103 model-> geothermalflux=NULL;
104
105 /*!materials: */
106 model->rho_water=0;
107 model->rho_ice=0;
108 model->g=0;
109 model->n=NULL;
110 model->B=NULL;
111
112 /*!control methods: */
113 model->control_type=NULL;
114
115 /*!solution parameters: */
116 model->fit=NULL;
117 model->meanvel=0;
118 model->epsvel=0;
119 model->artificial_diffusivity=0;
120 model->nsteps=0;
121 model->tolx=0;
122 model->maxiter=NULL;
123 model->mincontrolconstraint=0;
124 model->maxcontrolconstraint=0;
125 model->debug=0;
126 model->plot=0;
127 model->eps_rel=0;
128 model->eps_abs=0;
129 model->dt=0;
130 model->ndt=0;
131 model->penalty_offset=0;
132 model->penalty_melting=0;
133 model->penalty_lock=0;
134 model->sparsity=0;
135 model->connectivity=0;
136 model->lowmem=0;
137 model->optscal=NULL;
138 model->yts=0;
139 model->viscosity_overshoot=0;
140 model->stokesreconditioning=0;
141 model->waitonlock=0;
142
143 /*!thermal parameters: */
144 model->beta=0;
145 model->meltingpoint=0;
146 model->latentheat=0;
147 model->heatcapacity=0;
148 model->thermalconductivity=0;
149 model->min_thermal_constraints=0;
150 model->mixed_layer_capacity=0;
151 model->thermal_exchange_velocity=0;
152
153
154 model->numrifts=0;
155 model->riftsnumpenaltypairs=NULL;
156 model->riftspenaltypairs=NULL;
157 model->riftsfill=NULL;
158 model->riftsfriction=NULL;
159
160 /*!penalties: */
161 model->numpenalties=0;
162 model->penalties=NULL;
163 model->penaltypartitioning=NULL;
164
165 /*!basal: */
166 model->melting=NULL;
167 model->accumulation=NULL;
168
169 /*elements type: */
170 model->ishutter=0;
171 model->ismacayealpattyn=0;
172 model->isstokes=0;
173
174
175 model->epart=NULL;
176 model->npart=NULL;
177 model->my_grids=NULL;
178 model->my_bordergrids=NULL;
179
180 return model;
181}
182
183
184/*!--------------------------------------------------
185 DeleteModel
186 --------------------------------------------------*/
187
188void DeleteModel(Model** pmodel){
189
190 /*!Recover structure: */
191 Model* model = *pmodel;
192
193 int i;
194
195 /*!Two cases here:
196 * - serial mode: matlab's memory manager will take care of delete model when returning from Imp. Do nothing here, so as not to confuse
197 * the memory manager.
198 * - in parallel, anything the io layer does (FetchData) did needs to be erased explicitely in the model.
199 */
200
201 #ifdef _PARALLEL_
202 xfree((void**)&model->x);
203 xfree((void**)&model->y);
204 xfree((void**)&model->z);
205 xfree((void**)&model->elements);
206 xfree((void**)&model->elements_type);
207 xfree((void**)&model->gridonhutter);
208 xfree((void**)&model->gridonmacayeal);
209 if (strcmp(model->meshtype,"3d")==0){
210 xfree((void**)&model->elements2d);
211 xfree((void**)&model->deadgrids);
212 xfree((void**)&model->uppernodes);
213 xfree((void**)&model->gridonpattyn);
214 }
215 xfree((void**)&model->solverstring);
216 xfree((void**)&model->elementonbed);
217 xfree((void**)&model->elementonsurface);
218 xfree((void**)&model->gridonbed);
219 xfree((void**)&model->gridonsurface);
220 xfree((void**)&model->gridonstokes);
221 xfree((void**)&model->borderstokes);
222 xfree((void**)&model->thickness);
223 xfree((void**)&model->surface);
224 xfree((void**)&model->bed);
225 xfree((void**)&model->vx_obs);
226 xfree((void**)&model->vy_obs);
227 xfree((void**)&model->vx);
228 xfree((void**)&model->vy);
229 xfree((void**)&model->vz);
230 xfree((void**)&model->pressure);
231 xfree((void**)&model->temperature);
232 xfree((void**)&model->melting);
233 xfree((void**)&model->drag);
234 xfree((void**)&model->p);
235 xfree((void**)&model->q);
236 xfree((void**)&model->elementoniceshelf);
237 xfree((void**)&model->gridonicesheet);
238 xfree((void**)&model->segmentonneumann_diag);
239 xfree((void**)&model->segmentonneumann_diag_stokes);
240 xfree((void**)&model->neumannvalues_diag);
241 xfree((void**)&model->gridondirichlet_diag);
242 xfree((void**)&model->dirichletvalues_diag);
243 xfree((void**)&model->segmentonneumann_prog);
244 xfree((void**)&model->neumannvalues_prog);
245 xfree((void**)&model->gridondirichlet_prog);
246 xfree((void**)&model->dirichletvalues_prog);
247 xfree((void**)&model->segmentonneumann_prog2);
248 xfree((void**)&model->neumannvalues_prog2);
249 xfree((void**)&model->gridondirichlet_thermal);
250 xfree((void**)&model->dirichletvalues_thermal);
251 xfree((void**)&model->geothermalflux);
252 xfree((void**)&model->melting);
253 xfree((void**)&model->accumulation);
254 xfree((void**)&model->B);
255 xfree((void**)&model->n);
256 xfree((void**)&model->fit);
257 xfree((void**)&model->optscal);
258 xfree((void**)&model->maxiter);
259
260
261 /*!Delete structure fields: */
262 xfree((void**)&model->repository);
263 xfree((void**)&model->meshtype);
264 xfree((void**)&model->analysis_type);
265 xfree((void**)&model->sub_analysis_type);
266
267 if(model->numrifts){
268 for(i=0;i<model->numrifts;i++){
269 double* riftpenaltypairs=model->riftspenaltypairs[i];
270 xfree((void**)&riftpenaltypairs);
271 }
272 xfree((void**)&model->riftspenaltypairs);
273 xfree((void**)&model->riftsnumpenaltypairs);
274 xfree((void**)&model->riftsfill);
275 xfree((void**)&model->riftsfriction);
276 }
277
278 xfree((void**)&model->penalties);
279 xfree((void**)&model->penaltypartitioning);
280
281 xfree((void**)&model->control_type);
282
283 xfree((void**)&model->epart);
284 xfree((void**)&model->npart);
285 xfree((void**)&model->my_grids);
286 xfree((void**)&model->my_bordergrids);
287
288 /*!Delete entire structure: */
289 xfree((void**)pmodel);
290 #endif
291}
292
293/*!--------------------------------------------------
294 ModelInit
295 --------------------------------------------------*/
296
297#undef __FUNCT__
298#define __FUNCT__ "ModelInit"
299
300int ModelInit(Model** pmodel,ConstDataHandle model_handle){
301
302 int i,j;
303
304 /*output: */
305 Model* model=NULL;
306
307 /*Allocate model: */
308 model=NewModel();
309
310 /*In ModelInit, we get all the data that is not difficult to get, and that is small: */
311
312 ModelFetchData((void**)&model->analysis_type,NULL,NULL,model_handle,"analysis_type","String",NULL);
313 ModelFetchData((void**)&model->sub_analysis_type,NULL,NULL,model_handle,"sub_analysis_type","String",NULL);
314 ModelFetchData((void**)&model->qmu_analysis,NULL,NULL,model_handle,"qmu_analysis","Integer",NULL);
315
316 ModelFetchData((void**)&model->meshtype,NULL,NULL,model_handle,"type","String",NULL);
317 /*!Get numberofelements and numberofnodes: */
318 ModelFetchData((void**)&model->numberofnodes,NULL,NULL,model_handle,"numberofgrids","Integer",NULL);
319 ModelFetchData((void**)&model->numberofelements,NULL,NULL,model_handle,"numberofelements","Integer",NULL);
320 /*!In case we are running 3d, we are going to need the collapsed and non-collapsed 2d meshes, from which the 3d mesh was extruded: */
321 if (strcmp(model->meshtype,"3d")==0){
322
323 /*!Deal with 2d mesh: */
324 ModelFetchData((void**)&model->numberofelements2d,NULL,NULL,model_handle,"numberofelements2d","Integer",NULL);
325 ModelFetchData((void**)&model->numberofnodes2d,NULL,NULL,model_handle,"numberofgrids2d","Integer",NULL);
326 ModelFetchData((void**)&model->numlayers,NULL,NULL,model_handle,"numlayers","Integer",NULL);
327 }
328
329
330 /*elements type: */
331 ModelFetchData((void**)&model->ishutter,NULL,NULL,model_handle,"ishutter","Integer",NULL);
332 ModelFetchData((void**)&model->ismacayealpattyn,NULL,NULL,model_handle,"ismacayealpattyn","Integer",NULL);
333 ModelFetchData((void**)&model->isstokes,NULL,NULL,model_handle,"isstokes","Integer",NULL);
334
335 /*!Get drag_type, drag and p,q: */
336 ModelFetchData((void**)&model->drag_type,NULL,NULL,model_handle,"drag_type","Integer",NULL);
337
338 /*!Get materials: */
339 ModelFetchData((void**)&model->rho_water,NULL,NULL,model_handle,"rho_water","Scalar",NULL);
340 ModelFetchData((void**)&model->rho_ice,NULL,NULL,model_handle,"rho_ice","Scalar",NULL);
341 ModelFetchData((void**)&model->g,NULL,NULL,model_handle,"g","Scalar",NULL);
342
343 /*Get control parameters: */
344 ModelFetchData((void**)&model->control_type,NULL,NULL,model_handle,"control_type","String",NULL);
345
346 /*!Get solution parameters: */
347 ModelFetchData((void**)&model->yts,NULL,NULL,model_handle,"yts","Scalar",NULL);
348 ModelFetchData((void**)&model->meanvel,NULL,NULL,model_handle,"meanvel","Scalar",NULL);
349 ModelFetchData((void**)&model->epsvel,NULL,NULL,model_handle,"epsvel","Scalar",NULL);
350 ModelFetchData((void**)&model->debug,NULL,NULL,model_handle,"debug","Integer",NULL);
351 ModelFetchData((void**)&model->plot,NULL,NULL,model_handle,"plot","Integer",NULL);
352 ModelFetchData((void**)&model->artificial_diffusivity,NULL,NULL,model_handle,"artificial_diffusivity","Integer",NULL);
353 ModelFetchData((void**)&model->nsteps,NULL,NULL,model_handle,"nsteps","Integer",NULL);
354 ModelFetchData((void**)&model->tolx,NULL,NULL,model_handle,"tolx","Scalar",NULL);
355 ModelFetchData((void**)&model->mincontrolconstraint,NULL,NULL,model_handle,"mincontrolconstraint","Scalar",NULL);
356 ModelFetchData((void**)&model->maxcontrolconstraint,NULL,NULL,model_handle,"maxcontrolconstraint","Scalar",NULL);
357 ModelFetchData((void**)&model->eps_rel,NULL,NULL,model_handle,"eps_rel","Scalar",NULL);
358 ModelFetchData((void**)&model->eps_abs,NULL,NULL,model_handle,"eps_abs","Scalar",NULL);
359 ModelFetchData((void**)&model->dt,NULL,NULL,model_handle,"dt","Scalar",NULL);
360 ModelFetchData((void**)&model->ndt,NULL,NULL,model_handle,"ndt","Scalar",NULL);
361 ModelFetchData((void**)&model->penalty_offset,NULL,NULL,model_handle,"penalty_offset","Scalar",NULL);
362 ModelFetchData((void**)&model->penalty_melting,NULL,NULL,model_handle,"penalty_melting","Scalar",NULL);
363 ModelFetchData((void**)&model->penalty_lock,NULL,NULL,model_handle,"penalty_lock","Integer",NULL);
364 ModelFetchData((void**)&model->sparsity,NULL,NULL,model_handle,"sparsity","Scalar",NULL);
365 ModelFetchData((void**)&model->connectivity,NULL,NULL,model_handle,"connectivity","Integer",NULL);
366 ModelFetchData((void**)&model->lowmem,NULL,NULL,model_handle,"lowmem","Integer",NULL);
367 ModelFetchData((void**)&model->solverstring,NULL,NULL,model_handle,"solverstring","String",NULL);
368 ModelFetchData((void**)&model->viscosity_overshoot,NULL,NULL,model_handle,"viscosity_overshoot","Scalar",NULL);
369 ModelFetchData((void**)&model->stokesreconditioning,NULL,NULL,model_handle,"stokesreconditioning","Scalar",NULL);
370 ModelFetchData((void**)&model->waitonlock,NULL,NULL,model_handle,"waitonlock","Integer",NULL);
371
372 /*!Get thermal parameters: */
373 ModelFetchData((void**)&model->beta,NULL,NULL,model_handle,"beta","Scalar",NULL);
374 ModelFetchData((void**)&model->meltingpoint,NULL,NULL,model_handle,"meltingpoint","Scalar",NULL);
375 ModelFetchData((void**)&model->latentheat,NULL,NULL,model_handle,"latentheat","Scalar",NULL);
376 ModelFetchData((void**)&model->heatcapacity,NULL,NULL,model_handle,"heatcapacity","Scalar",NULL);
377 ModelFetchData((void**)&model->thermalconductivity,NULL,NULL,model_handle,"thermalconductivity","Scalar",NULL);
378 ModelFetchData((void**)&model->min_thermal_constraints,NULL,NULL,model_handle,"min_thermal_constraints","Integer",NULL);
379 ModelFetchData((void**)&model->mixed_layer_capacity,NULL,NULL,model_handle,"mixed_layer_capacity","Scalar",NULL);
380 ModelFetchData((void**)&model->thermal_exchange_velocity,NULL,NULL,model_handle,"thermal_exchange_velocity","Scalar",NULL);
381
382 /*rifts: */
383 ModelFetchData((void**)&model->numrifts,NULL,NULL,model_handle,"numrifts","Integer",NULL);
384
385 /*qmu: */
386 if(model->qmu_analysis){
387 ModelFetchData((void**)&model->numberofvariables,NULL,NULL,model_handle,"numberofvariables","Integer",NULL);
388 ModelFetchData((void**)&model->numberofresponses,NULL,NULL,model_handle,"numberofresponses","Integer",NULL);
389 ModelFetchData((void**)&model->qmu_npart,NULL,NULL,model_handle,"npart","Integer",NULL);
390 }
391
392 /*Assign output pointers: */
393 *pmodel=model;
394
395 return 1;
396}
397
398/*!--------------------------------------------------
399 ModelEcho
400 --------------------------------------------------*/
401void ModelEcho(Model* model,int which_part,int rank) {
402
403 //which_part determines what gets echoed, otherwise, we'll get too much output.
404 //1-> penalties
405
406 int i,j;
407
408 if(which_part==1 && my_rank==rank && (strcmp(model->meshtype,"3d")==0)){
409 printf("Model penalties: \n");
410 printf(" number of penalties: %i\n",model->numpenalties);
411 printf(" grids: \n");
412
413 for(i=0;i<model->numpenalties;i++){
414 for(j=0;j<model->numlayers;j++){
415 printf("%i ",(int)*(model->penalties+model->numlayers*i+j));
416 }
417 printf("\n");
418 }
419 }
420
421 if(which_part==2 && my_rank==rank){
422 printf("Model rifts: \n");
423 printf(" number of rifts: %i\n",model->numrifts);
424 for(i=0;i<model->numrifts;i++){
425 double* penaltypairs=model->riftspenaltypairs[i];
426 printf(" rift #%i\n",i);
427 for (j=0;j<model->riftsnumpenaltypairs[i];j++){
428 printf(" grids %g %g elements %g %g normal [%g,%g] length %g\n",*(penaltypairs+7*j+0),*(penaltypairs+7*j+1),*(penaltypairs+7*j+2),*(penaltypairs+7*j+3),
429 *(penaltypairs+7*j+4),*(penaltypairs+7*j+5),*(penaltypairs+7*j+6));
430 }
431 printf(" friction %g fill %i\n",model->riftsfriction[i],model->riftsfill[i]);
432 }
433 }
434 cleanup_and_return:
435 return;
436}
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