Enforced rotation: code cleanup
[alexxy/gromacs.git] / src / gmxlib / txtdump.c
1 /* -*- mode: c; tab-width: 4; indent-tabs-mode: nil; c-basic-offset: 4; c-file-style: "stroustrup"; -*-
2  *
3  * 
4  *                This source code is part of
5  * 
6  *                 G   R   O   M   A   C   S
7  * 
8  *          GROningen MAchine for Chemical Simulations
9  * 
10  *                        VERSION 3.2.0
11  * Written by David van der Spoel, Erik Lindahl, Berk Hess, and others.
12  * Copyright (c) 1991-2000, University of Groningen, The Netherlands.
13  * Copyright (c) 2001-2004, The GROMACS development team,
14  * check out http://www.gromacs.org for more information.
15
16  * This program is free software; you can redistribute it and/or
17  * modify it under the terms of the GNU General Public License
18  * as published by the Free Software Foundation; either version 2
19  * of the License, or (at your option) any later version.
20  * 
21  * If you want to redistribute modifications, please consider that
22  * scientific software is very special. Version control is crucial -
23  * bugs must be traceable. We will be happy to consider code for
24  * inclusion in the official distribution, but derived work must not
25  * be called official GROMACS. Details are found in the README & COPYING
26  * files - if they are missing, get the official version at www.gromacs.org.
27  * 
28  * To help us fund GROMACS development, we humbly ask that you cite
29  * the papers on the package - you can find them in the top README file.
30  * 
31  * For more info, check our website at http://www.gromacs.org
32  * 
33  * And Hey:
34  * GROningen Mixture of Alchemy and Childrens' Stories
35  */
36 #ifdef HAVE_CONFIG_H
37 #include <config.h>
38 #endif
39
40 /* This file is completely threadsafe - please keep it that way! */
41 #ifdef GMX_THREADS
42 #include <thread_mpi.h>
43 #endif
44
45
46 #include <stdio.h>
47 #include "smalloc.h"
48 #include "typedefs.h"
49 #include "names.h"
50 #include "txtdump.h"
51 #include "string2.h"
52 #include "vec.h"
53
54
55 int pr_indent(FILE *fp,int n)
56 {
57   int i;
58
59   for (i=0; i<n; i++) (void) fprintf(fp," ");
60   return n;
61 }
62
63 int available(FILE *fp,void *p,int indent,const char *title)
64 {
65   if (!p) {
66     if (indent > 0)
67       pr_indent(fp,indent);
68     (void) fprintf(fp,"%s: not available\n",title);
69   }
70   return (p!=NULL);
71 }
72
73 int pr_title(FILE *fp,int indent,const char *title)
74 {
75   (void) pr_indent(fp,indent);
76   (void) fprintf(fp,"%s:\n",title);
77   return (indent+INDENT);
78 }
79
80 int pr_title_n(FILE *fp,int indent,const char *title,int n)
81 {
82   (void) pr_indent(fp,indent);
83   (void) fprintf(fp,"%s (%d):\n",title,n);
84   return (indent+INDENT);
85 }
86
87 int pr_title_nxn(FILE *fp,int indent,const char *title,int n1,int n2)
88 {
89   (void) pr_indent(fp,indent);
90   (void) fprintf(fp,"%s (%dx%d):\n",title,n1,n2);
91   return (indent+INDENT);
92 }
93
94 void pr_ivec(FILE *fp,int indent,const char *title,int vec[],int n, gmx_bool bShowNumbers)
95 {
96   int i;
97
98   if (available(fp,vec,indent,title))
99     {
100       indent=pr_title_n(fp,indent,title,n);
101       for (i=0; i<n; i++)
102         {
103           (void) pr_indent(fp,indent);
104           (void) fprintf(fp,"%s[%d]=%d\n",title,bShowNumbers?i:-1,vec[i]);
105         }
106     }
107 }
108
109 void pr_ivec_block(FILE *fp,int indent,const char *title,int vec[],int n, gmx_bool bShowNumbers)
110 {
111     int i,j;
112     
113     if (available(fp,vec,indent,title))
114     {
115         indent=pr_title_n(fp,indent,title,n);
116         i = 0;
117         while (i < n)
118         {
119             j = i+1;
120             while (j < n && vec[j] == vec[j-1]+1)
121             {
122                 j++;
123             }
124             /* Print consecutive groups of 3 or more as blocks */
125             if (j - i < 3)
126             {
127                 while(i < j)
128                 {
129                     (void) pr_indent(fp,indent);
130                     (void) fprintf(fp,"%s[%d]=%d\n",
131                                    title,bShowNumbers?i:-1,vec[i]);
132                     i++;
133                 }
134             }
135             else
136             {
137                 (void) pr_indent(fp,indent);
138                 (void) fprintf(fp,"%s[%d,...,%d] = {%d,...,%d}\n",
139                                title,
140                                bShowNumbers?i:-1,
141                                bShowNumbers?j-1:-1,
142                                vec[i],vec[j-1]); 
143                 i = j;
144             }
145         }
146     }
147 }
148
149 void pr_bvec(FILE *fp,int indent,const char *title,gmx_bool vec[],int n, gmx_bool bShowNumbers)
150 {
151   int i;
152
153   if (available(fp,vec,indent,title))
154     {
155       indent=pr_title_n(fp,indent,title,n);
156       for (i=0; i<n; i++)
157         {
158           (void) pr_indent(fp,indent);
159           (void) fprintf(fp,"%s[%d]=%s\n",title,bShowNumbers?i:-1,
160                          BOOL(vec[i]));
161         }
162     }
163 }
164
165 void pr_ivecs(FILE *fp,int indent,const char *title,ivec vec[],int n, gmx_bool bShowNumbers)
166 {
167   int i,j;
168
169   if (available(fp,vec,indent,title))
170     {  
171       indent=pr_title_nxn(fp,indent,title,n,DIM);
172       for (i=0; i<n; i++)
173         {
174           (void) pr_indent(fp,indent);
175           (void) fprintf(fp,"%s[%d]={",title,bShowNumbers?i:-1);
176           for (j=0; j<DIM; j++)
177             {
178               if (j!=0) (void) fprintf(fp,", ");
179               fprintf(fp,"%d",vec[i][j]);
180             }
181           (void) fprintf(fp,"}\n");
182         }
183     }
184 }
185
186 void pr_rvec(FILE *fp,int indent,const char *title,real vec[],int n, gmx_bool bShowNumbers)
187 {
188   int i;
189
190   if (available(fp,vec,indent,title))
191     {  
192       indent=pr_title_n(fp,indent,title,n);
193       for (i=0; i<n; i++)
194         {
195           pr_indent(fp,indent);
196           fprintf(fp,"%s[%d]=%12.5e\n",title,bShowNumbers?i:-1,vec[i]);
197         }
198     }
199 }
200
201 void pr_dvec(FILE *fp,int indent,const char *title,double vec[],int n, gmx_bool bShowNumbers)
202 {
203         int i;
204         
205         if (available(fp,vec,indent,title))
206     {  
207                 indent=pr_title_n(fp,indent,title,n);
208                 for (i=0; i<n; i++)
209         {
210                         pr_indent(fp,indent);
211                         fprintf(fp,"%s[%d]=%12.5e\n",title,bShowNumbers?i:-1,vec[i]);
212         }
213     }
214 }
215
216
217 /*
218 void pr_mat(FILE *fp,int indent,char *title,matrix m)
219 {
220   int i,j;
221   
222   if (available(fp,m,indent,title)) {  
223     indent=pr_title_n(fp,indent,title,n);
224     for(i=0; i<n; i++) {
225       pr_indent(fp,indent);
226       fprintf(fp,"%s[%d]=%12.5e %12.5e %12.5e\n",
227               title,bShowNumbers?i:-1,m[i][XX],m[i][YY],m[i][ZZ]);
228     }
229   }
230 }
231 */
232
233 void pr_rvecs_len(FILE *fp,int indent,const char *title,rvec vec[],int n)
234 {
235   int i,j;
236
237   if (available(fp,vec,indent,title)) {  
238     indent=pr_title_nxn(fp,indent,title,n,DIM);
239     for (i=0; i<n; i++) {
240       (void) pr_indent(fp,indent);
241       (void) fprintf(fp,"%s[%5d]={",title,i);
242       for (j=0; j<DIM; j++) {
243         if (j != 0) 
244           (void) fprintf(fp,", ");
245         (void) fprintf(fp,"%12.5e",vec[i][j]);
246       }
247       (void) fprintf(fp,"} len=%12.5e\n",norm(vec[i]));
248     }
249   }
250 }
251
252 void pr_rvecs(FILE *fp,int indent,const char *title,rvec vec[],int n)
253 {
254   const char *fshort = "%12.5e";
255   const char *flong  = "%15.8e";
256   const char *format;
257   int i,j;
258
259   if (getenv("LONGFORMAT") != NULL)
260     format = flong;
261   else
262     format = fshort;
263     
264   if (available(fp,vec,indent,title)) {  
265     indent=pr_title_nxn(fp,indent,title,n,DIM);
266     for (i=0; i<n; i++) {
267       (void) pr_indent(fp,indent);
268       (void) fprintf(fp,"%s[%5d]={",title,i);
269       for (j=0; j<DIM; j++) {
270         if (j != 0) 
271           (void) fprintf(fp,", ");
272         (void) fprintf(fp,format,vec[i][j]);
273       }
274       (void) fprintf(fp,"}\n");
275     }
276   }
277 }
278
279
280 void pr_reals(FILE *fp,int indent,const char *title,real *vec,int n)
281 {
282   int i;
283     
284   if (available(fp,vec,indent,title)) {  
285     (void) pr_indent(fp,indent);
286     (void) fprintf(fp,"%s:\t",title);
287     for(i=0; i<n; i++)
288       fprintf(fp,"  %10g",vec[i]);
289     (void) fprintf(fp,"\n");
290   }
291 }
292
293 void pr_doubles(FILE *fp,int indent,const char *title,double *vec,int n)
294 {
295   int i;
296     
297   if (available(fp,vec,indent,title)) {  
298     (void) pr_indent(fp,indent);
299     (void) fprintf(fp,"%s:\t",title);
300     for(i=0; i<n; i++)
301       fprintf(fp,"  %10g",vec[i]);
302     (void) fprintf(fp,"\n");
303   }
304 }
305
306 static void pr_int(FILE *fp,int indent,const char *title,int i)
307 {
308   pr_indent(fp,indent);
309   fprintf(fp,"%-20s = %d\n",title,i);
310 }
311
312 static void pr_gmx_large_int(FILE *fp,int indent,const char *title,gmx_large_int_t i)
313 {
314   char buf[STEPSTRSIZE];
315
316   pr_indent(fp,indent);
317   fprintf(fp,"%-20s = %s\n",title,gmx_step_str(i,buf));
318 }
319
320 static void pr_real(FILE *fp,int indent,const char *title,real r)
321 {
322   pr_indent(fp,indent);
323   fprintf(fp,"%-20s = %g\n",title,r);
324 }
325
326 static void pr_double(FILE *fp,int indent,const char *title,double d)
327 {
328   pr_indent(fp,indent);
329   fprintf(fp,"%-20s = %g\n",title,d);
330 }
331
332 static void pr_str(FILE *fp,int indent,const char *title,const char *s)
333 {
334   pr_indent(fp,indent);
335   fprintf(fp,"%-20s = %s\n",title,s);
336 }
337
338 void pr_qm_opts(FILE *fp,int indent,const char *title,t_grpopts *opts)
339 {
340   int i,m,j;
341
342   fprintf(fp,"%s:\n",title);
343   
344   pr_int(fp,indent,"ngQM",opts->ngQM);
345   if (opts->ngQM > 0) {
346     pr_ivec(fp,indent,"QMmethod",opts->QMmethod,opts->ngQM,FALSE);
347     pr_ivec(fp,indent,"QMbasis",opts->QMbasis,opts->ngQM,FALSE);
348     pr_ivec(fp,indent,"QMcharge",opts->QMcharge,opts->ngQM,FALSE);
349     pr_ivec(fp,indent,"QMmult",opts->QMmult,opts->ngQM,FALSE);
350     pr_bvec(fp,indent,"bSH",opts->bSH,opts->ngQM,FALSE);
351     pr_ivec(fp,indent,"CASorbitals",opts->CASorbitals,opts->ngQM,FALSE);
352     pr_ivec(fp,indent,"CASelectrons",opts->CASelectrons,opts->ngQM,FALSE);
353     pr_rvec(fp,indent,"SAon",opts->SAon,opts->ngQM,FALSE);
354     pr_rvec(fp,indent,"SAon",opts->SAon,opts->ngQM,FALSE);
355     pr_ivec(fp,indent,"SAsteps",opts->SAsteps,opts->ngQM,FALSE);
356     pr_bvec(fp,indent,"bOPT",opts->bOPT,opts->ngQM,FALSE);
357     pr_bvec(fp,indent,"bTS",opts->bTS,opts->ngQM,FALSE);
358   }
359 }
360
361 static void pr_grp_opts(FILE *out,int indent,const char *title,t_grpopts *opts,
362                         gmx_bool bMDPformat)
363 {
364   int i,m,j;
365
366   if (!bMDPformat)
367     fprintf(out,"%s:\n",title);
368   
369   pr_indent(out,indent);
370   fprintf(out,"nrdf%s",bMDPformat ? " = " : ":");
371   for(i=0; (i<opts->ngtc); i++)
372     fprintf(out,"  %10g",opts->nrdf[i]);
373   fprintf(out,"\n");
374   
375   pr_indent(out,indent);
376   fprintf(out,"ref_t%s",bMDPformat ? " = " : ":");
377   for(i=0; (i<opts->ngtc); i++)
378     fprintf(out,"  %10g",opts->ref_t[i]);
379   fprintf(out,"\n");
380
381   pr_indent(out,indent);
382   fprintf(out,"tau_t%s",bMDPformat ? " = " : ":");
383   for(i=0; (i<opts->ngtc); i++)
384     fprintf(out,"  %10g",opts->tau_t[i]);
385   fprintf(out,"\n");  
386   
387   /* Pretty-print the simulated annealing info */
388   fprintf(out,"anneal%s",bMDPformat ? " = " : ":");
389   for(i=0; (i<opts->ngtc); i++)
390     fprintf(out,"  %10s",EANNEAL(opts->annealing[i]));
391   fprintf(out,"\n");  
392  
393   fprintf(out,"ann_npoints%s",bMDPformat ? " = " : ":");
394   for(i=0; (i<opts->ngtc); i++)
395     fprintf(out,"  %10d",opts->anneal_npoints[i]);
396   fprintf(out,"\n");  
397  
398   for(i=0; (i<opts->ngtc); i++) {
399     if(opts->anneal_npoints[i]>0) {
400       fprintf(out,"ann. times [%d]:\t",i);
401       for(j=0; (j<opts->anneal_npoints[i]); j++)
402         fprintf(out,"  %10.1f",opts->anneal_time[i][j]);
403       fprintf(out,"\n");  
404       fprintf(out,"ann. temps [%d]:\t",i);
405       for(j=0; (j<opts->anneal_npoints[i]); j++)
406         fprintf(out,"  %10.1f",opts->anneal_temp[i][j]);
407       fprintf(out,"\n");  
408     }
409   }
410   
411   pr_indent(out,indent);
412   fprintf(out,"acc:\t");
413   for(i=0; (i<opts->ngacc); i++)
414     for(m=0; (m<DIM); m++)
415       fprintf(out,"  %10g",opts->acc[i][m]);
416   fprintf(out,"\n");
417
418   pr_indent(out,indent);
419   fprintf(out,"nfreeze:");
420   for(i=0; (i<opts->ngfrz); i++)
421     for(m=0; (m<DIM); m++)
422       fprintf(out,"  %10s",opts->nFreeze[i][m] ? "Y" : "N");
423   fprintf(out,"\n");
424
425
426   for(i=0; (i<opts->ngener); i++) {
427     pr_indent(out,indent);
428     fprintf(out,"energygrp_flags[%3d]:",i);
429     for(m=0; (m<opts->ngener); m++)
430       fprintf(out," %d",opts->egp_flags[opts->ngener*i+m]);
431     fprintf(out,"\n");
432   }
433
434   fflush(out);
435 }
436
437 static void pr_matrix(FILE *fp,int indent,const char *title,rvec *m,
438                       gmx_bool bMDPformat)
439 {
440   if (bMDPformat)
441     fprintf(fp,"%-10s    = %g %g %g %g %g %g\n",title,
442             m[XX][XX],m[YY][YY],m[ZZ][ZZ],m[XX][YY],m[XX][ZZ],m[YY][ZZ]);
443   else
444     pr_rvecs(fp,indent,title,m,DIM);
445 }
446
447 static void pr_cosine(FILE *fp,int indent,const char *title,t_cosines *cos,
448                       gmx_bool bMDPformat)
449 {
450   int j;
451   
452   if (bMDPformat) {
453     fprintf(fp,"%s = %d\n",title,cos->n);
454   }
455   else {
456     indent=pr_title(fp,indent,title);
457     (void) pr_indent(fp,indent);
458     fprintf(fp,"n = %d\n",cos->n);
459     if (cos->n > 0) {
460       (void) pr_indent(fp,indent+2);
461       fprintf(fp,"a =");
462       for(j=0; (j<cos->n); j++)
463         fprintf(fp," %e",cos->a[j]);
464       fprintf(fp,"\n");
465       (void) pr_indent(fp,indent+2);
466       fprintf(fp,"phi =");
467       for(j=0; (j<cos->n); j++)
468         fprintf(fp," %e",cos->phi[j]);
469       fprintf(fp,"\n");
470     }
471   }
472 }
473
474 #define PS(t,s) pr_str(fp,indent,t,s)
475 #define PI(t,s) pr_int(fp,indent,t,s)
476 #define PSTEP(t,s) pr_gmx_large_int(fp,indent,t,s)
477 #define PR(t,s) pr_real(fp,indent,t,s)
478 #define PD(t,s) pr_double(fp,indent,t,s)
479
480 static void pr_pullgrp(FILE *fp,int indent,int g,t_pullgrp *pg)
481 {
482   pr_indent(fp,indent);
483   fprintf(fp,"pull_group %d:\n",g);
484   indent += 2;
485   pr_ivec_block(fp,indent,"atom",pg->ind,pg->nat,TRUE);
486   pr_rvec(fp,indent,"weight",pg->weight,pg->nweight,TRUE);
487   PI("pbcatom",pg->pbcatom);
488   pr_rvec(fp,indent,"vec",pg->vec,DIM,TRUE);
489   pr_rvec(fp,indent,"init",pg->init,DIM,TRUE);
490   PR("rate",pg->rate);
491   PR("k",pg->k);
492   PR("kB",pg->kB);
493 }
494
495 static void pr_pull(FILE *fp,int indent,t_pull *pull)
496 {
497   int g;
498
499   PS("pull_geometry",EPULLGEOM(pull->eGeom));
500   pr_ivec(fp,indent,"pull_dim",pull->dim,DIM,TRUE);
501   PR("pull_r1",pull->cyl_r1);
502   PR("pull_r0",pull->cyl_r0);
503   PR("pull_constr_tol",pull->constr_tol);
504   PI("pull_nstxout",pull->nstxout);
505   PI("pull_nstfout",pull->nstfout);
506   PI("pull_ngrp",pull->ngrp);
507   for(g=0; g<pull->ngrp+1; g++)
508     pr_pullgrp(fp,indent,g,&pull->grp[g]);
509 }
510
511 static void pr_rotgrp(FILE *fp,int indent,int g,t_rotgrp *rotg)
512 {
513   pr_indent(fp,indent);
514   fprintf(fp,"rotation_group %d:\n",g);
515   indent += 2;
516   PS("type",EROTGEOM(rotg->eType));
517   PS("massw",BOOL(rotg->bMassW));
518   pr_ivec_block(fp,indent,"atom",rotg->ind,rotg->nat,TRUE);
519   pr_rvecs(fp,indent,"x_ref",rotg->x_ref,rotg->nat);
520   pr_rvec(fp,indent,"vec",rotg->vec,DIM,TRUE);
521   pr_rvec(fp,indent,"pivot",rotg->pivot,DIM,TRUE);
522   PR("rate",rotg->rate);
523   PR("k",rotg->k);
524   PR("slab_dist",rotg->slab_dist);
525   PR("min_gaussian",rotg->min_gaussian);
526   PR("epsilon",rotg->eps);
527   PS("fit_method",EROTFIT(rotg->eFittype));
528 }
529
530 static void pr_rot(FILE *fp,int indent,t_rot *rot)
531 {
532   int g;
533
534   PI("rot_nstrout",rot->nstrout);
535   PI("rot_nstsout",rot->nstsout);
536   PI("rot_ngrp",rot->ngrp);
537   for(g=0; g<rot->ngrp; g++)
538     pr_rotgrp(fp,indent,g,&rot->grp[g]);
539 }
540
541 void pr_inputrec(FILE *fp,int indent,const char *title,t_inputrec *ir,
542                  gmx_bool bMDPformat)
543 {
544   const char *infbuf="inf";
545   int  i;
546   
547   if (available(fp,ir,indent,title)) {
548     if (!bMDPformat)
549       indent=pr_title(fp,indent,title);
550     PS("integrator",EI(ir->eI));
551     PSTEP("nsteps",ir->nsteps);
552     PSTEP("init_step",ir->init_step);
553     PS("ns_type",ENS(ir->ns_type));
554     PI("nstlist",ir->nstlist);
555     PI("ndelta",ir->ndelta);
556     PI("nstcomm",ir->nstcomm);
557     PS("comm_mode",ECOM(ir->comm_mode));
558     PI("nstlog",ir->nstlog);
559     PI("nstxout",ir->nstxout);
560     PI("nstvout",ir->nstvout);
561     PI("nstfout",ir->nstfout);
562     PI("nstcalcenergy",ir->nstcalcenergy);
563     PI("nstenergy",ir->nstenergy);
564     PI("nstxtcout",ir->nstxtcout);
565     PR("init_t",ir->init_t);
566     PR("delta_t",ir->delta_t);
567     
568     PR("xtcprec",ir->xtcprec);
569     PI("nkx",ir->nkx);
570     PI("nky",ir->nky);
571     PI("nkz",ir->nkz);
572     PI("pme_order",ir->pme_order);
573     PR("ewald_rtol",ir->ewald_rtol);
574     PR("ewald_geometry",ir->ewald_geometry);
575     PR("epsilon_surface",ir->epsilon_surface);
576     PS("optimize_fft",BOOL(ir->bOptFFT));
577     PS("ePBC",EPBC(ir->ePBC));
578     PS("bPeriodicMols",BOOL(ir->bPeriodicMols));
579     PS("bContinuation",BOOL(ir->bContinuation));
580     PS("bShakeSOR",BOOL(ir->bShakeSOR));
581     PS("etc",ETCOUPLTYPE(ir->etc));
582     PI("nsttcouple",ir->nsttcouple);
583     PS("epc",EPCOUPLTYPE(ir->epc));
584     PS("epctype",EPCOUPLTYPETYPE(ir->epct));
585     PI("nstpcouple",ir->nstpcouple);
586     PR("tau_p",ir->tau_p);
587     pr_matrix(fp,indent,"ref_p",ir->ref_p,bMDPformat);
588     pr_matrix(fp,indent,"compress",ir->compress,bMDPformat);
589     PS("refcoord_scaling",EREFSCALINGTYPE(ir->refcoord_scaling));
590     if (bMDPformat)
591       fprintf(fp,"posres_com  = %g %g %g\n",ir->posres_com[XX],
592               ir->posres_com[YY],ir->posres_com[ZZ]);
593     else
594       pr_rvec(fp,indent,"posres_com",ir->posres_com,DIM,TRUE);
595     if (bMDPformat)
596       fprintf(fp,"posres_comB = %g %g %g\n",ir->posres_comB[XX],
597               ir->posres_comB[YY],ir->posres_comB[ZZ]);
598     else
599       pr_rvec(fp,indent,"posres_comB",ir->posres_comB,DIM,TRUE);
600     PI("andersen_seed",ir->andersen_seed);
601     PR("rlist",ir->rlist);
602     PR("rlistlong",ir->rlistlong);
603     PR("rtpi",ir->rtpi);
604     PS("coulombtype",EELTYPE(ir->coulombtype));
605     PR("rcoulomb_switch",ir->rcoulomb_switch);
606     PR("rcoulomb",ir->rcoulomb);
607     PS("vdwtype",EVDWTYPE(ir->vdwtype));
608     PR("rvdw_switch",ir->rvdw_switch);
609     PR("rvdw",ir->rvdw);
610     if (ir->epsilon_r != 0)
611       PR("epsilon_r",ir->epsilon_r);
612     else
613       PS("epsilon_r",infbuf);
614     if (ir->epsilon_rf != 0)
615       PR("epsilon_rf",ir->epsilon_rf);
616     else
617       PS("epsilon_rf",infbuf);
618     PR("tabext",ir->tabext);
619     PS("implicit_solvent",EIMPLICITSOL(ir->implicit_solvent));
620     PS("gb_algorithm",EGBALGORITHM(ir->gb_algorithm));
621     PR("gb_epsilon_solvent",ir->gb_epsilon_solvent);
622     PI("nstgbradii",ir->nstgbradii);
623     PR("rgbradii",ir->rgbradii);
624     PR("gb_saltconc",ir->gb_saltconc);
625     PR("gb_obc_alpha",ir->gb_obc_alpha);
626     PR("gb_obc_beta",ir->gb_obc_beta);
627     PR("gb_obc_gamma",ir->gb_obc_gamma);
628     PR("gb_dielectric_offset",ir->gb_dielectric_offset);
629     PS("sa_algorithm",ESAALGORITHM(ir->gb_algorithm));
630     PR("sa_surface_tension",ir->sa_surface_tension);
631           
632     PS("DispCorr",EDISPCORR(ir->eDispCorr));
633     PS("free_energy",EFEPTYPE(ir->efep));
634     PR("init_lambda",ir->init_lambda);
635     PR("delta_lambda",ir->delta_lambda);
636     if (!bMDPformat)
637     {
638         PI("n_foreign_lambda",ir->n_flambda);
639     }
640     if (ir->n_flambda > 0)
641     {
642         pr_indent(fp,indent);
643         fprintf(fp,"foreign_lambda%s",bMDPformat ? " = " : ":");
644         for(i=0; i<ir->n_flambda; i++)
645         {
646             fprintf(fp,"  %10g",ir->flambda[i]);
647         }
648         fprintf(fp,"\n");
649     }
650     PR("sc_alpha",ir->sc_alpha);
651     PI("sc_power",ir->sc_power);
652     PR("sc_sigma",ir->sc_sigma);
653     PR("sc_sigma_min",ir->sc_sigma_min);
654     PI("nstdhdl", ir->nstdhdl);
655     PS("separate_dhdl_file", SEPDHDLFILETYPE(ir->separate_dhdl_file));
656     PS("dhdl_derivatives", DHDLDERIVATIVESTYPE(ir->dhdl_derivatives));
657     PI("dh_hist_size", ir->dh_hist_size);
658     PD("dh_hist_spacing", ir->dh_hist_spacing);
659
660     PI("nwall",ir->nwall);
661     PS("wall_type",EWALLTYPE(ir->wall_type));
662     PI("wall_atomtype[0]",ir->wall_atomtype[0]);
663     PI("wall_atomtype[1]",ir->wall_atomtype[1]);
664     PR("wall_density[0]",ir->wall_density[0]);
665     PR("wall_density[1]",ir->wall_density[1]);
666     PR("wall_ewald_zfac",ir->wall_ewald_zfac);
667
668     PS("pull",EPULLTYPE(ir->ePull));
669     if (ir->ePull != epullNO)
670       pr_pull(fp,indent,ir->pull);
671     
672     PS("rotation",BOOL(ir->bRot));
673     if (ir->bRot)
674       pr_rot(fp,indent,ir->rot);
675
676     PS("disre",EDISRETYPE(ir->eDisre));
677     PS("disre_weighting",EDISREWEIGHTING(ir->eDisreWeighting));
678     PS("disre_mixed",BOOL(ir->bDisreMixed));
679     PR("dr_fc",ir->dr_fc);
680     PR("dr_tau",ir->dr_tau);
681     PR("nstdisreout",ir->nstdisreout);
682     PR("orires_fc",ir->orires_fc);
683     PR("orires_tau",ir->orires_tau);
684     PR("nstorireout",ir->nstorireout);
685
686     PR("dihre-fc",ir->dihre_fc);
687     
688     PR("em_stepsize",ir->em_stepsize);
689     PR("em_tol",ir->em_tol);
690     PI("niter",ir->niter);
691     PR("fc_stepsize",ir->fc_stepsize);
692     PI("nstcgsteep",ir->nstcgsteep);
693     PI("nbfgscorr",ir->nbfgscorr);
694
695     PS("ConstAlg",ECONSTRTYPE(ir->eConstrAlg));
696     PR("shake_tol",ir->shake_tol);
697     PI("lincs_order",ir->nProjOrder);
698     PR("lincs_warnangle",ir->LincsWarnAngle);
699     PI("lincs_iter",ir->nLincsIter);
700     PR("bd_fric",ir->bd_fric);
701     PI("ld_seed",ir->ld_seed);
702     PR("cos_accel",ir->cos_accel);
703     pr_matrix(fp,indent,"deform",ir->deform,bMDPformat);
704     PI("userint1",ir->userint1);
705     PI("userint2",ir->userint2);
706     PI("userint3",ir->userint3);
707     PI("userint4",ir->userint4);
708     PR("userreal1",ir->userreal1);
709     PR("userreal2",ir->userreal2);
710     PR("userreal3",ir->userreal3);
711     PR("userreal4",ir->userreal4);
712     pr_grp_opts(fp,indent,"grpopts",&(ir->opts),bMDPformat);
713     pr_cosine(fp,indent,"efield-x",&(ir->ex[XX]),bMDPformat);
714     pr_cosine(fp,indent,"efield-xt",&(ir->et[XX]),bMDPformat);
715     pr_cosine(fp,indent,"efield-y",&(ir->ex[YY]),bMDPformat);
716     pr_cosine(fp,indent,"efield-yt",&(ir->et[YY]),bMDPformat);
717     pr_cosine(fp,indent,"efield-z",&(ir->ex[ZZ]),bMDPformat);
718     pr_cosine(fp,indent,"efield-zt",&(ir->et[ZZ]),bMDPformat);
719     PS("bQMMM",BOOL(ir->bQMMM));
720     PI("QMconstraints",ir->QMconstraints);
721     PI("QMMMscheme",ir->QMMMscheme);
722     PR("scalefactor",ir->scalefactor);
723     pr_qm_opts(fp,indent,"qm_opts",&(ir->opts));
724   }
725 }
726 #undef PS
727 #undef PR
728 #undef PI
729
730 static void pr_harm(FILE *fp,t_iparams *iparams,const char *r,const char *kr)
731 {
732   fprintf(fp,"%sA=%12.5e, %sA=%12.5e, %sB=%12.5e, %sB=%12.5e\n",
733           r,iparams->harmonic.rA,kr,iparams->harmonic.krA,
734           r,iparams->harmonic.rB,kr,iparams->harmonic.krB);
735 }
736
737 void pr_iparams(FILE *fp,t_functype ftype,t_iparams *iparams)
738 {
739   int i;
740   real VA[4],VB[4],*rbcA,*rbcB;
741
742   switch (ftype) {
743   case F_ANGLES:
744   case F_G96ANGLES:
745     pr_harm(fp,iparams,"th","ct");
746     break;
747   case F_CROSS_BOND_BONDS:
748     fprintf(fp,"r1e=%15.8e, r2e=%15.8e, krr=%15.8e\n",
749             iparams->cross_bb.r1e,iparams->cross_bb.r2e,
750             iparams->cross_bb.krr);
751     break;
752   case F_CROSS_BOND_ANGLES:
753     fprintf(fp,"r1e=%15.8e, r1e=%15.8e, r3e=%15.8e, krt=%15.8e\n",
754             iparams->cross_ba.r1e,iparams->cross_ba.r2e,
755             iparams->cross_ba.r3e,iparams->cross_ba.krt);
756     break;
757   case F_UREY_BRADLEY:
758     fprintf(fp,"theta=%15.8e, ktheta=%15.8e, r13=%15.8e, kUB=%15.8e\n",
759             iparams->u_b.theta,iparams->u_b.ktheta,iparams->u_b.r13,iparams->u_b.kUB);
760     break;
761   case F_QUARTIC_ANGLES:
762     fprintf(fp,"theta=%15.8e",iparams->qangle.theta);
763     for(i=0; i<5; i++)
764       fprintf(fp,", c%c=%15.8e",'0'+i,iparams->qangle.c[i]);
765     fprintf(fp,"\n");
766     break;
767   case F_BHAM:
768     fprintf(fp,"a=%15.8e, b=%15.8e, c=%15.8e\n",
769             iparams->bham.a,iparams->bham.b,iparams->bham.c);
770     break;
771   case F_BONDS:
772   case F_G96BONDS:
773   case F_HARMONIC:
774     pr_harm(fp,iparams,"b0","cb");
775     break;
776   case F_IDIHS:
777     pr_harm(fp,iparams,"xi","cx");
778     break;
779   case F_MORSE:
780     fprintf(fp,"b0=%15.8e, cb=%15.8e, beta=%15.8e\n",
781             iparams->morse.b0,iparams->morse.cb,iparams->morse.beta);
782     break;
783   case F_CUBICBONDS:
784     fprintf(fp,"b0=%15.8e, kb=%15.8e, kcub=%15.8e\n",
785             iparams->cubic.b0,iparams->cubic.kb,iparams->cubic.kcub);
786     break;
787   case F_CONNBONDS:
788     fprintf(fp,"\n");
789     break;
790   case F_FENEBONDS:
791     fprintf(fp,"bm=%15.8e, kb=%15.8e\n",iparams->fene.bm,iparams->fene.kb);
792     break;
793   case F_RESTRBONDS:
794       fprintf(fp,"lowA=%15.8e, up1A=%15.8e, up2A=%15.8e, kA=%15.8e, lowB=%15.8e, up1B=%15.8e, up2B=%15.8e, kB=%15.8e,\n",
795               iparams->restraint.lowA,iparams->restraint.up1A,
796               iparams->restraint.up2A,iparams->restraint.kA,
797               iparams->restraint.lowB,iparams->restraint.up1B,
798               iparams->restraint.up2B,iparams->restraint.kB);
799       break;
800   case F_TABBONDS:
801   case F_TABBONDSNC:
802   case F_TABANGLES:
803   case F_TABDIHS:
804     fprintf(fp,"tab=%d, kA=%15.8e, kB=%15.8e\n",
805             iparams->tab.table,iparams->tab.kA,iparams->tab.kB);
806     break;
807   case F_POLARIZATION:
808     fprintf(fp,"alpha=%15.8e\n",iparams->polarize.alpha);
809     break;
810   case F_THOLE_POL:
811     fprintf(fp,"a=%15.8e, alpha1=%15.8e, alpha2=%15.8e, rfac=%15.8e\n",
812             iparams->thole.a,iparams->thole.alpha1,iparams->thole.alpha2,
813             iparams->thole.rfac);
814     break;
815   case F_WATER_POL:
816     fprintf(fp,"al_x=%15.8e, al_y=%15.8e, al_z=%15.8e, rOH=%9.6f, rHH=%9.6f, rOD=%9.6f\n",
817             iparams->wpol.al_x,iparams->wpol.al_y,iparams->wpol.al_z,
818             iparams->wpol.rOH,iparams->wpol.rHH,iparams->wpol.rOD);
819     break;
820   case F_LJ:
821     fprintf(fp,"c6=%15.8e, c12=%15.8e\n",iparams->lj.c6,iparams->lj.c12);
822     break;
823   case F_LJ14:
824     fprintf(fp,"c6A=%15.8e, c12A=%15.8e, c6B=%15.8e, c12B=%15.8e\n",
825             iparams->lj14.c6A,iparams->lj14.c12A,
826             iparams->lj14.c6B,iparams->lj14.c12B);
827     break;
828   case F_LJC14_Q:
829     fprintf(fp,"fqq=%15.8e, qi=%15.8e, qj=%15.8e, c6=%15.8e, c12=%15.8e\n",
830             iparams->ljc14.fqq,
831             iparams->ljc14.qi,iparams->ljc14.qj,
832             iparams->ljc14.c6,iparams->ljc14.c12);
833     break;
834   case F_LJC_PAIRS_NB:
835     fprintf(fp,"qi=%15.8e, qj=%15.8e, c6=%15.8e, c12=%15.8e\n",
836             iparams->ljcnb.qi,iparams->ljcnb.qj,
837             iparams->ljcnb.c6,iparams->ljcnb.c12);
838     break;
839   case F_PDIHS:
840   case F_PIDIHS:
841   case F_ANGRES:
842   case F_ANGRESZ:
843     fprintf(fp,"phiA=%15.8e, cpA=%15.8e, phiB=%15.8e, cpB=%15.8e, mult=%d\n",
844             iparams->pdihs.phiA,iparams->pdihs.cpA,
845             iparams->pdihs.phiB,iparams->pdihs.cpB,
846             iparams->pdihs.mult);
847     break;
848   case F_DISRES:
849     fprintf(fp,"label=%4d, type=%1d, low=%15.8e, up1=%15.8e, up2=%15.8e, fac=%15.8e)\n",
850             iparams->disres.label,iparams->disres.type,
851             iparams->disres.low,iparams->disres.up1,
852             iparams->disres.up2,iparams->disres.kfac);
853     break;
854   case F_ORIRES:
855     fprintf(fp,"ex=%4d, label=%d, power=%4d, c=%15.8e, obs=%15.8e, kfac=%15.8e)\n",
856             iparams->orires.ex,iparams->orires.label,iparams->orires.power,
857             iparams->orires.c,iparams->orires.obs,iparams->orires.kfac);
858     break;
859   case F_DIHRES:
860     fprintf(fp,"label=%d, power=%4d phi=%15.8e, dphi=%15.8e, kfac=%15.8e)\n",
861             iparams->dihres.label,iparams->dihres.power,
862             iparams->dihres.phi,iparams->dihres.dphi,iparams->dihres.kfac);
863     break;
864   case F_POSRES:
865     fprintf(fp,"pos0A=(%15.8e,%15.8e,%15.8e), fcA=(%15.8e,%15.8e,%15.8e), pos0B=(%15.8e,%15.8e,%15.8e), fcB=(%15.8e,%15.8e,%15.8e)\n",
866             iparams->posres.pos0A[XX],iparams->posres.pos0A[YY],
867             iparams->posres.pos0A[ZZ],iparams->posres.fcA[XX],
868             iparams->posres.fcA[YY],iparams->posres.fcA[ZZ],
869             iparams->posres.pos0B[XX],iparams->posres.pos0B[YY],
870             iparams->posres.pos0B[ZZ],iparams->posres.fcB[XX],
871             iparams->posres.fcB[YY],iparams->posres.fcB[ZZ]);
872     break;
873   case F_RBDIHS:
874     for (i=0; i<NR_RBDIHS; i++) 
875       fprintf(fp,"%srbcA[%d]=%15.8e",i==0?"":", ",i,iparams->rbdihs.rbcA[i]);
876     fprintf(fp,"\n");
877     for (i=0; i<NR_RBDIHS; i++) 
878       fprintf(fp,"%srbcB[%d]=%15.8e",i==0?"":", ",i,iparams->rbdihs.rbcB[i]);
879     fprintf(fp,"\n");
880     break;
881   case F_FOURDIHS:
882     /* Use the OPLS -> Ryckaert-Bellemans formula backwards to get the
883      * OPLS potential constants back.
884      */
885     rbcA = iparams->rbdihs.rbcA;
886     rbcB = iparams->rbdihs.rbcB;
887
888     VA[3] = -0.25*rbcA[4];
889     VA[2] = -0.5*rbcA[3];
890     VA[1] = 4.0*VA[3]-rbcA[2];
891     VA[0] = 3.0*VA[2]-2.0*rbcA[1];
892
893     VB[3] = -0.25*rbcB[4];
894     VB[2] = -0.5*rbcB[3];
895     VB[1] = 4.0*VB[3]-rbcB[2];
896     VB[0] = 3.0*VB[2]-2.0*rbcB[1];
897
898     for (i=0; i<NR_FOURDIHS; i++) 
899       fprintf(fp,"%sFourA[%d]=%15.8e",i==0?"":", ",i,VA[i]);
900     fprintf(fp,"\n");
901     for (i=0; i<NR_FOURDIHS; i++) 
902       fprintf(fp,"%sFourB[%d]=%15.8e",i==0?"":", ",i,VB[i]);
903     fprintf(fp,"\n");
904     break;
905    
906   case F_CONSTR:
907   case F_CONSTRNC:
908     fprintf(fp,"dA=%15.8e, dB=%15.8e\n",iparams->constr.dA,iparams->constr.dB);
909     break;
910   case F_SETTLE:
911     fprintf(fp,"doh=%15.8e, dhh=%15.8e\n",iparams->settle.doh,
912             iparams->settle.dhh);
913     break;
914   case F_VSITE2:
915     fprintf(fp,"a=%15.8e\n",iparams->vsite.a);
916     break;
917   case F_VSITE3:
918   case F_VSITE3FD:
919   case F_VSITE3FAD:
920     fprintf(fp,"a=%15.8e, b=%15.8e\n",iparams->vsite.a,iparams->vsite.b);
921     break;
922   case F_VSITE3OUT:
923   case F_VSITE4FD:
924   case F_VSITE4FDN:
925     fprintf(fp,"a=%15.8e, b=%15.8e, c=%15.8e\n",
926             iparams->vsite.a,iparams->vsite.b,iparams->vsite.c);
927     break;
928   case F_VSITEN:
929     fprintf(fp,"n=%2d, a=%15.8e\n",iparams->vsiten.n,iparams->vsiten.a);
930     break;
931   case F_GB12:
932   case F_GB13:
933   case F_GB14:
934     fprintf(fp, "sar=%15.8e, st=%15.8e, pi=%15.8e, gbr=%15.8e, bmlt=%15.8e\n",iparams->gb.sar,iparams->gb.st,iparams->gb.pi,iparams->gb.gbr,iparams->gb.bmlt);
935     break;                
936   case F_CMAP:
937     fprintf(fp, "cmapA=%1d, cmapB=%1d\n",iparams->cmap.cmapA, iparams->cmap.cmapB);
938     break;                
939   default:
940     gmx_fatal(FARGS,"unknown function type %d (%s) in %s line %d",
941               ftype,interaction_function[ftype].name,__FILE__,__LINE__);
942   }
943 }
944
945 void pr_ilist(FILE *fp,int indent,const char *title,
946               t_functype *functype,t_ilist *ilist, gmx_bool bShowNumbers)
947 {
948     int i,j,k,type,ftype;
949     t_iatom *iatoms;
950     
951     if (available(fp,ilist,indent,title) && ilist->nr > 0)
952     {  
953         indent=pr_title(fp,indent,title);
954         (void) pr_indent(fp,indent);
955         fprintf(fp,"nr: %d\n",ilist->nr);
956         if (ilist->nr > 0) {
957             (void) pr_indent(fp,indent);
958             fprintf(fp,"iatoms:\n");
959             iatoms=ilist->iatoms;
960             for (i=j=0; i<ilist->nr;) {
961 #ifndef DEBUG
962                 (void) pr_indent(fp,indent+INDENT);
963                 type=*(iatoms++);
964                 ftype=functype[type];
965                 (void) fprintf(fp,"%d type=%d (%s)",
966                                bShowNumbers?j:-1,bShowNumbers?type:-1,
967                                interaction_function[ftype].name);
968                 j++;
969                 for (k=0; k<interaction_function[ftype].nratoms; k++)
970                     (void) fprintf(fp," %u",*(iatoms++));
971                 (void) fprintf(fp,"\n");
972                 i+=1+interaction_function[ftype].nratoms;
973 #else
974                 fprintf(fp,"%5d%5d\n",i,iatoms[i]);
975                 i++;
976 #endif
977             }
978         }
979     }
980 }
981
982 static void pr_cmap(FILE *fp, int indent, const char *title,
983                     gmx_cmap_t *cmap_grid, gmx_bool bShowNumbers)
984 {
985     int i,j,nelem;
986     real dx,idx;
987         
988     dx    = 360.0 / cmap_grid->grid_spacing;
989     nelem = cmap_grid->grid_spacing*cmap_grid->grid_spacing;
990         
991     if(available(fp,cmap_grid,indent,title))
992     {
993         fprintf(fp,"%s\n",title);
994                 
995         for(i=0;i<cmap_grid->ngrid;i++)
996         {
997             idx = -180.0;
998             fprintf(fp,"%8s %8s %8s %8s\n","V","dVdx","dVdy","d2dV");
999                         
1000             fprintf(fp,"grid[%3d]={\n",bShowNumbers?i:-1);
1001                         
1002             for(j=0;j<nelem;j++)
1003             {
1004                 if( (j%cmap_grid->grid_spacing)==0)
1005                 {
1006                     fprintf(fp,"%8.1f\n",idx);
1007                     idx+=dx;
1008                 }
1009                                 
1010                 fprintf(fp,"%8.3f ",cmap_grid->cmapdata[i].cmap[j*4]);
1011                 fprintf(fp,"%8.3f ",cmap_grid->cmapdata[i].cmap[j*4+1]);
1012                 fprintf(fp,"%8.3f ",cmap_grid->cmapdata[i].cmap[j*4+2]);
1013                 fprintf(fp,"%8.3f\n",cmap_grid->cmapdata[i].cmap[j*4+3]);
1014             }
1015             fprintf(fp,"\n");
1016         }
1017     }
1018         
1019 }
1020
1021 void pr_ffparams(FILE *fp,int indent,const char *title,
1022                  gmx_ffparams_t *ffparams,
1023                  gmx_bool bShowNumbers)
1024 {
1025   int i,j;
1026   
1027   indent=pr_title(fp,indent,title);
1028   (void) pr_indent(fp,indent);
1029   (void) fprintf(fp,"atnr=%d\n",ffparams->atnr);
1030   (void) pr_indent(fp,indent);
1031   (void) fprintf(fp,"ntypes=%d\n",ffparams->ntypes);
1032   for (i=0; i<ffparams->ntypes; i++) {
1033       (void) pr_indent(fp,indent+INDENT);
1034       (void) fprintf(fp,"functype[%d]=%s, ",
1035                      bShowNumbers?i:-1,
1036                      interaction_function[ffparams->functype[i]].name);
1037       pr_iparams(fp,ffparams->functype[i],&ffparams->iparams[i]);
1038   }
1039   (void) pr_double(fp,indent,"reppow",ffparams->reppow);
1040   (void) pr_real(fp,indent,"fudgeQQ",ffparams->fudgeQQ);
1041   pr_cmap(fp,indent,"cmap",&ffparams->cmap_grid,bShowNumbers);
1042 }
1043
1044 void pr_idef(FILE *fp,int indent,const char *title,t_idef *idef, gmx_bool bShowNumbers)
1045 {
1046   int i,j;
1047   
1048   if (available(fp,idef,indent,title)) {  
1049     indent=pr_title(fp,indent,title);
1050     (void) pr_indent(fp,indent);
1051     (void) fprintf(fp,"atnr=%d\n",idef->atnr);
1052     (void) pr_indent(fp,indent);
1053     (void) fprintf(fp,"ntypes=%d\n",idef->ntypes);
1054     for (i=0; i<idef->ntypes; i++) {
1055       (void) pr_indent(fp,indent+INDENT);
1056       (void) fprintf(fp,"functype[%d]=%s, ",
1057                      bShowNumbers?i:-1,
1058                      interaction_function[idef->functype[i]].name);
1059       pr_iparams(fp,idef->functype[i],&idef->iparams[i]);
1060     }
1061     (void) pr_real(fp,indent,"fudgeQQ",idef->fudgeQQ);
1062
1063     for(j=0; (j<F_NRE); j++)
1064       pr_ilist(fp,indent,interaction_function[j].longname,
1065                idef->functype,&idef->il[j],bShowNumbers);
1066   }
1067 }
1068
1069 static int pr_block_title(FILE *fp,int indent,const char *title,t_block *block)
1070 {
1071   int i;
1072
1073   if (available(fp,block,indent,title))
1074     {
1075       indent=pr_title(fp,indent,title);
1076       (void) pr_indent(fp,indent);
1077       (void) fprintf(fp,"nr=%d\n",block->nr);
1078     }
1079   return indent;
1080 }
1081
1082 static int pr_blocka_title(FILE *fp,int indent,const char *title,t_blocka *block)
1083 {
1084   int i;
1085
1086   if (available(fp,block,indent,title))
1087     {
1088       indent=pr_title(fp,indent,title);
1089       (void) pr_indent(fp,indent);
1090       (void) fprintf(fp,"nr=%d\n",block->nr);
1091       (void) pr_indent(fp,indent);
1092       (void) fprintf(fp,"nra=%d\n",block->nra);
1093     }
1094   return indent;
1095 }
1096
1097 static void low_pr_block(FILE *fp,int indent,const char *title,t_block *block, gmx_bool bShowNumbers)
1098 {
1099   int i;
1100   
1101   if (available(fp,block,indent,title))
1102     {
1103       indent=pr_block_title(fp,indent,title,block);
1104       for (i=0; i<=block->nr; i++)
1105         {
1106           (void) pr_indent(fp,indent+INDENT);
1107           (void) fprintf(fp,"%s->index[%d]=%u\n",
1108                          title,bShowNumbers?i:-1,block->index[i]);
1109         }
1110     }
1111 }
1112
1113 static void low_pr_blocka(FILE *fp,int indent,const char *title,t_blocka *block, gmx_bool bShowNumbers)
1114 {
1115   int i;
1116   
1117   if (available(fp,block,indent,title))
1118     {
1119       indent=pr_blocka_title(fp,indent,title,block);
1120       for (i=0; i<=block->nr; i++)
1121         {
1122           (void) pr_indent(fp,indent+INDENT);
1123           (void) fprintf(fp,"%s->index[%d]=%u\n",
1124                          title,bShowNumbers?i:-1,block->index[i]);
1125         }
1126       for (i=0; i<block->nra; i++)
1127         {
1128           (void) pr_indent(fp,indent+INDENT);
1129           (void) fprintf(fp,"%s->a[%d]=%u\n",
1130                          title,bShowNumbers?i:-1,block->a[i]);
1131         }
1132     }
1133 }
1134
1135 void pr_block(FILE *fp,int indent,const char *title,t_block *block,gmx_bool bShowNumbers)
1136 {
1137   int i,j,ok,size,start,end;
1138   
1139   if (available(fp,block,indent,title))
1140     {
1141       indent=pr_block_title(fp,indent,title,block);
1142       start=0;
1143       end=start;
1144       if ((ok=(block->index[start]==0))==0)
1145         (void) fprintf(fp,"block->index[%d] should be 0\n",start);
1146       else
1147         for (i=0; i<block->nr; i++)
1148           {
1149             end=block->index[i+1];
1150             size=pr_indent(fp,indent);
1151             if (end<=start)
1152               size+=fprintf(fp,"%s[%d]={}\n",title,i);
1153             else
1154               size+=fprintf(fp,"%s[%d]={%d..%d}\n",
1155                             title,bShowNumbers?i:-1,
1156                             bShowNumbers?start:-1,bShowNumbers?end-1:-1);
1157             start=end;
1158           }
1159     }
1160 }
1161
1162 void pr_blocka(FILE *fp,int indent,const char *title,t_blocka *block,gmx_bool bShowNumbers)
1163 {
1164   int i,j,ok,size,start,end;
1165   
1166   if (available(fp,block,indent,title))
1167     {
1168       indent=pr_blocka_title(fp,indent,title,block);
1169       start=0;
1170       end=start;
1171       if ((ok=(block->index[start]==0))==0)
1172         (void) fprintf(fp,"block->index[%d] should be 0\n",start);
1173       else
1174         for (i=0; i<block->nr; i++)
1175           {
1176             end=block->index[i+1];
1177             size=pr_indent(fp,indent);
1178             if (end<=start)
1179               size+=fprintf(fp,"%s[%d]={",title,i);
1180             else
1181               size+=fprintf(fp,"%s[%d][%d..%d]={",
1182                             title,bShowNumbers?i:-1,
1183                             bShowNumbers?start:-1,bShowNumbers?end-1:-1);
1184             for (j=start; j<end; j++)
1185               {
1186                 if (j>start) size+=fprintf(fp,", ");
1187                 if ((size)>(USE_WIDTH))
1188                   {
1189                     (void) fprintf(fp,"\n");
1190                     size=pr_indent(fp,indent+INDENT);
1191                   }
1192                 size+=fprintf(fp,"%u",block->a[j]);
1193               }
1194             (void) fprintf(fp,"}\n");
1195             start=end;
1196           }
1197       if ((end!=block->nra)||(!ok)) 
1198         {
1199           (void) pr_indent(fp,indent);
1200           (void) fprintf(fp,"tables inconsistent, dumping complete tables:\n");
1201           low_pr_blocka(fp,indent,title,block,bShowNumbers);
1202         }
1203     }
1204 }
1205
1206 static void pr_strings(FILE *fp,int indent,const char *title,char ***nm,int n, gmx_bool bShowNumbers)
1207 {
1208   int i;
1209
1210   if (available(fp,nm,indent,title))
1211     {  
1212       indent=pr_title_n(fp,indent,title,n);
1213       for (i=0; i<n; i++)
1214         {
1215           (void) pr_indent(fp,indent);
1216           (void) fprintf(fp,"%s[%d]={name=\"%s\"}\n",
1217                          title,bShowNumbers?i:-1,*(nm[i]));
1218         }
1219     }
1220 }
1221
1222 static void pr_strings2(FILE *fp,int indent,const char *title,
1223                         char ***nm,char ***nmB,int n, gmx_bool bShowNumbers)
1224 {
1225   int i;
1226
1227   if (available(fp,nm,indent,title))
1228     {  
1229       indent=pr_title_n(fp,indent,title,n);
1230       for (i=0; i<n; i++)
1231         {
1232           (void) pr_indent(fp,indent);
1233           (void) fprintf(fp,"%s[%d]={name=\"%s\",nameB=\"%s\"}\n",
1234                          title,bShowNumbers?i:-1,*(nm[i]),*(nmB[i]));
1235         }
1236     }
1237 }
1238
1239 static void pr_resinfo(FILE *fp,int indent,const char *title,t_resinfo *resinfo,int n, gmx_bool bShowNumbers)
1240 {
1241     int i;
1242     
1243     if (available(fp,resinfo,indent,title))
1244     {  
1245         indent=pr_title_n(fp,indent,title,n);
1246         for (i=0; i<n; i++)
1247         {
1248             (void) pr_indent(fp,indent);
1249             (void) fprintf(fp,"%s[%d]={name=\"%s\", nr=%d, ic='%c'}\n",
1250                            title,bShowNumbers?i:-1,
1251                            *(resinfo[i].name),resinfo[i].nr,
1252                            (resinfo[i].ic == '\0') ? ' ' : resinfo[i].ic);
1253         }
1254     }
1255 }
1256
1257 static void pr_atom(FILE *fp,int indent,const char *title,t_atom *atom,int n)
1258 {
1259   int i,j;
1260   
1261   if (available(fp,atom,indent,title)) {  
1262     indent=pr_title_n(fp,indent,title,n);
1263     for (i=0; i<n; i++) {
1264       (void) pr_indent(fp,indent);
1265       fprintf(fp,"%s[%6d]={type=%3d, typeB=%3d, ptype=%8s, m=%12.5e, "
1266               "q=%12.5e, mB=%12.5e, qB=%12.5e, resind=%5d, atomnumber=%3d}\n",
1267               title,i,atom[i].type,atom[i].typeB,ptype_str[atom[i].ptype],
1268               atom[i].m,atom[i].q,atom[i].mB,atom[i].qB,
1269               atom[i].resind,atom[i].atomnumber);
1270     }
1271   }
1272 }
1273
1274 static void pr_grps(FILE *fp,int indent,const char *title,t_grps grps[],
1275                     char **grpname[], gmx_bool bShowNumbers)
1276 {
1277     int i,j;
1278
1279     for(i=0; (i<egcNR); i++)
1280     {
1281         fprintf(fp,"%s[%-12s] nr=%d, name=[",title,gtypes[i],grps[i].nr);
1282         for(j=0; (j<grps[i].nr); j++)
1283         {
1284             fprintf(fp," %s",*(grpname[grps[i].nm_ind[j]]));
1285         }
1286         fprintf(fp,"]\n");
1287     }
1288 }
1289
1290 static void pr_groups(FILE *fp,int indent,const char *title,
1291                       gmx_groups_t *groups,
1292                       gmx_bool bShowNumbers)
1293 {
1294     int grpnr[egcNR];
1295     int nat_max,i,g;
1296
1297     pr_grps(fp,indent,"grp",groups->grps,groups->grpname,bShowNumbers);
1298     pr_strings(fp,indent,"grpname",groups->grpname,groups->ngrpname,bShowNumbers);
1299
1300     (void) pr_indent(fp,indent);
1301     fprintf(fp,"groups          ");
1302     for(g=0; g<egcNR; g++)
1303     {
1304        printf(" %5.5s",gtypes[g]);
1305     }
1306     printf("\n");
1307
1308     (void) pr_indent(fp,indent);
1309     fprintf(fp,"allocated       ");
1310     nat_max = 0;
1311     for(g=0; g<egcNR; g++)
1312     {
1313         printf(" %5d",groups->ngrpnr[g]);
1314         nat_max = max(nat_max,groups->ngrpnr[g]);
1315     }
1316     printf("\n");
1317
1318     if (nat_max == 0)
1319     {
1320         (void) pr_indent(fp,indent);
1321         fprintf(fp,"groupnr[%5s] =","*");
1322         for(g=0; g<egcNR; g++)
1323         {
1324             fprintf(fp,"  %3d ",0);
1325         }
1326         fprintf(fp,"\n");
1327     }
1328     else
1329     {
1330         for(i=0; i<nat_max; i++)
1331         {
1332             (void) pr_indent(fp,indent);
1333             fprintf(fp,"groupnr[%5d] =",i);
1334             for(g=0; g<egcNR; g++)
1335             {
1336                 fprintf(fp,"  %3d ",
1337                         groups->grpnr[g] ? groups->grpnr[g][i] : 0);
1338             }
1339             fprintf(fp,"\n");
1340         }
1341     }
1342 }
1343
1344 void pr_atoms(FILE *fp,int indent,const char *title,t_atoms *atoms, 
1345               gmx_bool bShownumbers)
1346 {
1347   if (available(fp,atoms,indent,title))
1348     {
1349       indent=pr_title(fp,indent,title);
1350       pr_atom(fp,indent,"atom",atoms->atom,atoms->nr);
1351       pr_strings(fp,indent,"atom",atoms->atomname,atoms->nr,bShownumbers);
1352       pr_strings2(fp,indent,"type",atoms->atomtype,atoms->atomtypeB,atoms->nr,bShownumbers);
1353       pr_resinfo(fp,indent,"residue",atoms->resinfo,atoms->nres,bShownumbers);
1354     }
1355 }
1356
1357
1358 void pr_atomtypes(FILE *fp,int indent,const char *title,t_atomtypes *atomtypes, 
1359                   gmx_bool bShowNumbers)
1360 {
1361   int i;
1362   if (available(fp,atomtypes,indent,title)) 
1363   {
1364     indent=pr_title(fp,indent,title);
1365     for(i=0;i<atomtypes->nr;i++) {
1366       pr_indent(fp,indent);
1367                 fprintf(fp,
1368                                 "atomtype[%3d]={radius=%12.5e, volume=%12.5e, gb_radius=%12.5e, surftens=%12.5e, atomnumber=%4d, S_hct=%12.5e)}\n",
1369                                 bShowNumbers?i:-1,atomtypes->radius[i],atomtypes->vol[i],
1370                                 atomtypes->gb_radius[i],
1371                                 atomtypes->surftens[i],atomtypes->atomnumber[i],atomtypes->S_hct[i]);
1372     }
1373   }
1374 }
1375
1376 static void pr_moltype(FILE *fp,int indent,const char *title,
1377                        gmx_moltype_t *molt,int n,
1378                        gmx_ffparams_t *ffparams,
1379                        gmx_bool bShowNumbers)
1380 {
1381     int j;
1382
1383     indent = pr_title_n(fp,indent,title,n);
1384     (void) pr_indent(fp,indent);
1385     (void) fprintf(fp,"name=\"%s\"\n",*(molt->name));
1386     pr_atoms(fp,indent,"atoms",&(molt->atoms),bShowNumbers);
1387     pr_block(fp,indent,"cgs",&molt->cgs, bShowNumbers);
1388     pr_blocka(fp,indent,"excls",&molt->excls, bShowNumbers);
1389     for(j=0; (j<F_NRE); j++) {
1390         pr_ilist(fp,indent,interaction_function[j].longname,
1391                  ffparams->functype,&molt->ilist[j],bShowNumbers);
1392     }
1393 }
1394
1395 static void pr_molblock(FILE *fp,int indent,const char *title,
1396                         gmx_molblock_t *molb,int n,
1397                         gmx_moltype_t *molt,
1398                         gmx_bool bShowNumbers)
1399 {
1400     indent = pr_title_n(fp,indent,title,n);
1401     (void) pr_indent(fp,indent);
1402     (void) fprintf(fp,"%-20s = %d \"%s\"\n",
1403                    "moltype",molb->type,*(molt[molb->type].name));
1404     pr_int(fp,indent,"#molecules",molb->nmol);
1405     pr_int(fp,indent,"#atoms_mol",molb->natoms_mol);
1406     pr_int(fp,indent,"#posres_xA",molb->nposres_xA);
1407     if (molb->nposres_xA > 0) {
1408         pr_rvecs(fp,indent,"posres_xA",molb->posres_xA,molb->nposres_xA);
1409     }
1410     pr_int(fp,indent,"#posres_xB",molb->nposres_xB);
1411     if (molb->nposres_xB > 0) {
1412         pr_rvecs(fp,indent,"posres_xB",molb->posres_xB,molb->nposres_xB);
1413     }
1414 }
1415
1416 void pr_mtop(FILE *fp,int indent,const char *title,gmx_mtop_t *mtop,
1417              gmx_bool bShowNumbers)
1418 {
1419     int mt,mb;
1420
1421     if (available(fp,mtop,indent,title)) {
1422         indent=pr_title(fp,indent,title);
1423         (void) pr_indent(fp,indent);
1424         (void) fprintf(fp,"name=\"%s\"\n",*(mtop->name));
1425         pr_int(fp,indent,"#atoms",mtop->natoms);
1426         for(mb=0; mb<mtop->nmolblock; mb++) {
1427             pr_molblock(fp,indent,"molblock",&mtop->molblock[mb],mb,
1428                         mtop->moltype,bShowNumbers);
1429         }
1430         pr_ffparams(fp,indent,"ffparams",&(mtop->ffparams),bShowNumbers);
1431         pr_atomtypes(fp,indent,"atomtypes",&(mtop->atomtypes),bShowNumbers);
1432         for(mt=0; mt<mtop->nmoltype; mt++) {
1433             pr_moltype(fp,indent,"moltype",&mtop->moltype[mt],mt,
1434                        &mtop->ffparams,bShowNumbers);
1435         }
1436         pr_groups(fp,indent,"groups",&mtop->groups,bShowNumbers);
1437     }
1438 }
1439
1440 void pr_top(FILE *fp,int indent,const char *title,t_topology *top, gmx_bool bShowNumbers)
1441 {
1442   if (available(fp,top,indent,title)) {
1443     indent=pr_title(fp,indent,title);
1444     (void) pr_indent(fp,indent);
1445     (void) fprintf(fp,"name=\"%s\"\n",*(top->name));
1446     pr_atoms(fp,indent,"atoms",&(top->atoms),bShowNumbers);
1447     pr_atomtypes(fp,indent,"atomtypes",&(top->atomtypes),bShowNumbers);
1448     pr_block(fp,indent,"cgs",&top->cgs, bShowNumbers);
1449     pr_block(fp,indent,"mols",&top->mols, bShowNumbers);
1450     pr_blocka(fp,indent,"excls",&top->excls, bShowNumbers);
1451     pr_idef(fp,indent,"idef",&top->idef,bShowNumbers);
1452   }
1453 }
1454
1455 void pr_header(FILE *fp,int indent,const char *title,t_tpxheader *sh)
1456 {
1457   char buf[22];
1458     
1459   if (available(fp,sh,indent,title))
1460     {
1461       indent=pr_title(fp,indent,title);
1462       pr_indent(fp,indent);
1463       fprintf(fp,"bIr    = %spresent\n",sh->bIr?"":"not ");
1464       pr_indent(fp,indent);
1465       fprintf(fp,"bBox   = %spresent\n",sh->bBox?"":"not ");
1466       pr_indent(fp,indent);
1467       fprintf(fp,"bTop   = %spresent\n",sh->bTop?"":"not ");
1468       pr_indent(fp,indent);
1469       fprintf(fp,"bX     = %spresent\n",sh->bX?"":"not ");
1470       pr_indent(fp,indent);
1471       fprintf(fp,"bV     = %spresent\n",sh->bV?"":"not ");
1472       pr_indent(fp,indent);
1473       fprintf(fp,"bF     = %spresent\n",sh->bF?"":"not ");
1474       
1475       pr_indent(fp,indent);
1476       fprintf(fp,"natoms = %d\n",sh->natoms);
1477       pr_indent(fp,indent);
1478       fprintf(fp,"lambda = %e\n",sh->lambda);
1479     }
1480 }
1481
1482 void pr_commrec(FILE *fp,int indent,t_commrec *cr)
1483 {
1484   pr_indent(fp,indent);
1485   fprintf(fp,"commrec:\n");
1486   indent+=2;
1487   pr_indent(fp,indent);
1488   fprintf(fp,"nodeid    = %d\n",cr->nodeid);
1489   pr_indent(fp,indent);
1490   fprintf(fp,"nnodes    = %d\n",cr->nnodes);
1491   pr_indent(fp,indent);
1492   fprintf(fp,"npmenodes = %d\n",cr->npmenodes);
1493   /*
1494   pr_indent(fp,indent);
1495   fprintf(fp,"threadid  = %d\n",cr->threadid);
1496   pr_indent(fp,indent);
1497   fprintf(fp,"nthreads  = %d\n",cr->nthreads);
1498   */
1499 }