source: src/bin/mpqc/mpqc.cc@ 8860a6

Last change on this file since 8860a6 was 8860a6, checked in by Frederik Heber <heber@…>, 13 years ago

Extract setup of SCFormIO structure into own function.

  • Property mode set to 100644
File size: 36.6 KB
Line 
1//
2// mpqc.cc
3//
4// Copyright (C) 1996 Limit Point Systems, Inc.
5//
6// Author: Edward Seidl <seidl@janed.com>
7// Maintainer: LPS
8//
9// This file is part of MPQC.
10//
11// MPQC is free software; you can redistribute it and/or modify
12// it under the terms of the GNU General Public License as published by
13// the Free Software Foundation; either version 2, or (at your option)
14// any later version.
15//
16// MPQC is distributed in the hope that it will be useful,
17// but WITHOUT ANY WARRANTY; without even the implied warranty of
18// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
19// GNU General Public License for more details.
20//
21// You should have received a copy of the GNU General Public License
22// along with the MPQC; see the file COPYING. If not, write to
23// the Free Software Foundation, 675 Mass Ave, Cambridge, MA 02139, USA.
24//
25// The U.S. Government is granted a limited license as per AL 91-7.
26//
27
28// This is needed to make GNU extensions available, such as
29// feenableexcept and fedisableexcept.
30#ifndef _GNU_SOURCE
31# define _GNU_SOURCE
32#endif
33
34#ifdef HAVE_CONFIG_H
35#include <scconfig.h>
36#endif
37
38#ifdef HAVE_TIME_H
39#include <time.h>
40#endif
41
42#include <scdirlist.h>
43
44#include <new>
45#include <stdexcept>
46#include <string.h>
47#include <unistd.h>
48#include <sys/stat.h>
49#include <fstream>
50
51#include <boost/bind.hpp>
52#include <boost/function.hpp>
53
54#include <scconfig.h>
55#ifdef HAVE_SSTREAM
56# include <sstream>
57#else
58# include <strstream.h>
59#endif
60
61#ifdef HAVE_SYS_RESOURCE_H
62# include <sys/resource.h>
63#endif
64#ifdef HAVE_SYS_TIME_H
65# include <sys/time.h>
66#endif
67
68#include <util/options/GetLongOpt.h>
69#include <util/class/scexception.h>
70#include <util/misc/newstring.h>
71#include <util/keyval/keyval.h>
72#include <util/state/state_bin.h>
73#include <util/group/message.h>
74#include <util/group/memory.h>
75#include <util/group/mstate.h>
76#include <util/group/thread.h>
77#include <util/group/pregtime.h>
78#include <util/misc/bug.h>
79#include <util/misc/formio.h>
80#include <util/misc/exenv.h>
81#ifdef HAVE_CHEMISTRY_CCA
82 #include <util/misc/ccaenv.h>
83#endif
84#include <util/render/render.h>
85
86#include <math/optimize/opt.h>
87
88#include <chemistry/molecule/coor.h>
89#include <chemistry/molecule/energy.h>
90#include <chemistry/molecule/molfreq.h>
91#include <chemistry/molecule/fdhess.h>
92#include <chemistry/molecule/formula.h>
93#include <chemistry/qc/wfn/wfn.h>
94
95// Force linkages:
96#include <util/group/linkage.h>
97#include <chemistry/qc/wfn/linkage.h>
98#include <chemistry/qc/scf/linkage.h>
99#include <chemistry/qc/dft/linkage.h>
100#include <chemistry/qc/mbpt/linkage.h>
101#ifdef HAVE_SC_SRC_LIB_CHEMISTRY_QC_MBPTR12
102# include <chemistry/qc/mbptr12/linkage.h>
103#endif
104#ifdef HAVE_SC_SRC_LIB_CHEMISTRY_QC_CINTS
105# include <chemistry/qc/cints/linkage.h>
106#endif
107//#include <chemistry/qc/psi/linkage.h>
108#include <util/state/linkage.h>
109#ifdef HAVE_SC_SRC_LIB_CHEMISTRY_QC_CC
110# include <chemistry/qc/cc/linkage.h>
111#endif
112#ifdef HAVE_SC_SRC_LIB_CHEMISTRY_QC_PSI
113# include <chemistry/qc/psi/linkage.h>
114#endif
115#ifdef HAVE_SC_SRC_LIB_CHEMISTRY_QC_INTCCA
116# include <chemistry/qc/intcca/linkage.h>
117#endif
118
119#ifdef HAVE_MPI
120#define MPICH_SKIP_MPICXX
121#include <mpi.h>
122#include <util/group/messmpi.h>
123#endif
124
125using namespace std;
126using namespace sc;
127
128#include "mpqcin.h"
129
130//////////////////////////////////////////////////////////////////////////
131
132const KeyValValueboolean truevalue(1), falsevalue(0);
133
134
135static void
136trash_stack_b(int &i, char *&ichar)
137{
138 char stack;
139 ichar = &stack;
140 ichar -= 10;
141 for (i=0; i<1000; i++) {
142 *ichar-- = 0xfe;
143 }
144}
145
146static void
147trash_stack()
148{
149 int i;
150 char *ichar;
151 trash_stack_b(i,ichar);
152}
153
154static void
155clean_up(void)
156{
157 MemoryGrp::set_default_memorygrp(0);
158 MessageGrp::set_default_messagegrp(0);
159 ThreadGrp::set_default_threadgrp(0);
160 SCMatrixKit::set_default_matrixkit(0);
161 Integral::set_default_integral(0);
162 RegionTimer::set_default_regiontimer(0);
163}
164
165#include <signal.h>
166
167#ifdef HAVE_FENV_H
168# include <fenv.h>
169#endif
170
171static void
172print_unseen(const Ref<ParsedKeyVal> &parsedkv,
173 const char *input)
174{
175 if (parsedkv->have_unseen()) {
176 ExEnv::out0() << endl;
177 ExEnv::out0() << indent
178 << "The following keywords in \"" << input << "\" were ignored:"
179 << endl;
180 ExEnv::out0() << incindent;
181 parsedkv->print_unseen(ExEnv::out0());
182 ExEnv::out0() << decindent;
183 }
184}
185
186double EvaluateDensity(
187 SCVector3 &r,
188 Ref<Integral> &intgrl,
189 GaussianBasisSet::ValueData &vdat,
190 Ref<Wavefunction> &wfn);
191
192/** Places all known options into \a options and parses them from argc,argv.
193 *
194 * \param options options structure
195 * \param argc argument count
196 * \param argv argument array
197 * \return return value by GetLongOpt::parse() function
198 */
199int ParseOptions(
200 GetLongOpt &options,
201 int argc,
202 char **argv)
203{
204 options.usage("[options] [filename]");
205 options.enroll("f", GetLongOpt::MandatoryValue,
206 "the name of an object format input file", 0);
207 options.enroll("o", GetLongOpt::MandatoryValue,
208 "the name of the output file", 0);
209 options.enroll("n", GetLongOpt::NoValue,
210 "listen for incoming object format input files", 0);
211 options.enroll("messagegrp", GetLongOpt::MandatoryValue,
212 "which message group to use", 0);
213 options.enroll("threadgrp", GetLongOpt::MandatoryValue,
214 "which thread group to use", 0);
215 options.enroll("memorygrp", GetLongOpt::MandatoryValue,
216 "which memory group to use", 0);
217 options.enroll("integral", GetLongOpt::MandatoryValue,
218 "which integral evaluator to use", 0);
219 options.enroll("l", GetLongOpt::MandatoryValue, "basis set limit", "0");
220 options.enroll("W", GetLongOpt::MandatoryValue,
221 "set the working directory", ".");
222 options.enroll("c", GetLongOpt::NoValue, "check input then exit", 0);
223 options.enroll("v", GetLongOpt::NoValue, "print the version number", 0);
224 options.enroll("w", GetLongOpt::NoValue, "print the warranty", 0);
225 options.enroll("L", GetLongOpt::NoValue, "print the license", 0);
226 options.enroll("k", GetLongOpt::NoValue, "print key/value assignments", 0);
227 options.enroll("i", GetLongOpt::NoValue, "convert simple to OO input", 0);
228 options.enroll("d", GetLongOpt::NoValue, "debug", 0);
229 options.enroll("h", GetLongOpt::NoValue, "print this message", 0);
230 options.enroll("cca-path", GetLongOpt::OptionalValue,
231 "cca component path", "");
232 options.enroll("cca-load", GetLongOpt::OptionalValue,
233 "cca components to load", "");
234
235 int optind = options.parse(argc, argv);
236
237 return optind;
238}
239
240/** Checks for each known option and acts accordingly.
241 *
242 * \param options option structure
243 * \param *output name of outputfile on return
244 * \param *outstream open output stream on return
245 */
246void ComputeOptions(
247 GetLongOpt &options,
248 const char *&output,
249 ostream *&outstream)
250{
251 output = options.retrieve("o");
252 outstream = 0;
253 if (output != 0) {
254 outstream = new ofstream(output);
255 ExEnv::set_out(outstream);
256 }
257
258 if (options.retrieve("h")) {
259 ExEnv::out0()
260 << indent << "MPQC version " << SC_VERSION << endl
261 << indent << "compiled for " << TARGET_ARCH << endl
262 << SCFormIO::copyright << endl;
263 options.usage(ExEnv::out0());
264 exit(0);
265 }
266
267 if (options.retrieve("v")) {
268 ExEnv::out0()
269 << indent << "MPQC version " << SC_VERSION << endl
270 << indent << "compiled for " << TARGET_ARCH << endl
271 << SCFormIO::copyright;
272 exit(0);
273 }
274
275 if (options.retrieve("w")) {
276 ExEnv::out0()
277 << indent << "MPQC version " << SC_VERSION << endl
278 << indent << "compiled for " << TARGET_ARCH << endl
279 << SCFormIO::copyright << endl
280 << SCFormIO::warranty;
281 exit(0);
282 }
283
284 if (options.retrieve("L")) {
285 ExEnv::out0()
286 << indent << "MPQC version " << SC_VERSION << endl
287 << indent << "compiled for " << TARGET_ARCH << endl
288 << SCFormIO::copyright << endl
289 << SCFormIO::license;
290 exit(0);
291 }
292
293 if (options.retrieve("d"))
294 SCFormIO::set_debug(1);
295
296 // set the working dir
297 if (strcmp(options.retrieve("W"),"."))
298 int retval = chdir(options.retrieve("W"));
299
300 // check that n and f/o are not given at the same time
301 if ((options.retrieve("n")) && ((options.retrieve("f")) || (options.retrieve("o")))) {
302 throw invalid_argument("-n must not be given with -f or -o");
303 }
304}
305
306/** Sets object and generic input file names.
307 *
308 * \param object_input filename of object-oriented input
309 * \param generic_input filename of generic input
310 * \param options option structure
311 * \param argc argument count
312 * \param argv argument array
313 */
314void getInputFileNames(
315 const char *&object_input,
316 const char *&generic_input,
317 GetLongOpt &options,
318 int argc,
319 char **argv)
320{
321 // initialize keyval input
322 object_input = options.retrieve("f");
323 generic_input = 0;
324 if (argc - optind == 0) {
325 generic_input = 0;
326 }
327 else if (argc - optind == 1) {
328 generic_input = argv[optind];
329 }
330 else {
331 options.usage();
332 throw invalid_argument("extra arguments given");
333 }
334
335 if (object_input == 0 && generic_input == 0) {
336 generic_input = "mpqc.in";
337 }
338 else if (object_input && generic_input) {
339 options.usage();
340 throw invalid_argument("only one of -f and a file argument can be given");
341 }
342}
343
344/** Gets the MPI Message group.
345 *
346 * \param grp reference to obtained group
347 * \param argc argument count
348 * \param argv argument array
349 */
350void getMessageGroup(
351 Ref<MessageGrp> &grp,
352 int argc,
353 char **argv)
354{
355#if defined(HAVE_MPI) && defined(ALWAYS_USE_MPI)
356 grp = new MPIMessageGrp(&argc, &argv);
357#endif
358 if (grp.null()) grp = MessageGrp::initial_messagegrp(argc, argv);
359 if (grp.nonnull())
360 MessageGrp::set_default_messagegrp(grp);
361 else
362 grp = MessageGrp::get_default_messagegrp();
363}
364
365/** Sets the base name of output files.
366 *
367 * \param input input file name
368 * \param output output file name
369 */
370void setOutputBaseName(const char *input, const char *output)
371{
372 const char *basename_source;
373 if (output) basename_source = output;
374 else basename_source = input;
375 int nfilebase = (int) (::strrchr(basename_source, '.') - basename_source);
376 char *basename = new char[nfilebase + 1];
377 strncpy(basename, basename_source, nfilebase);
378 basename[nfilebase] = '\0';
379 SCFormIO::set_default_basename(basename);
380 delete[] basename;
381}
382
383/** Prints current key values.
384 *
385 * \param keyval key value structure
386 * \param opt optimization structure
387 * \param molname name of molecule
388 * \param restartfile name of restartfile
389 */
390void printOptions(
391 Ref<KeyVal> &keyval,
392 Ref<Optimize> &opt,
393 const char *molname,
394 const char *restartfile)
395{
396 int restart = keyval->booleanvalue("restart",truevalue);
397
398 int checkpoint = keyval->booleanvalue("checkpoint",truevalue);
399
400 int savestate = keyval->booleanvalue("savestate",truevalue);
401
402 int do_energy = keyval->booleanvalue("do_energy",truevalue);
403
404 int do_grad = keyval->booleanvalue("do_gradient",falsevalue);
405
406 int do_opt = keyval->booleanvalue("optimize",truevalue);
407
408 int do_pdb = keyval->booleanvalue("write_pdb",falsevalue);
409
410 int print_mole = keyval->booleanvalue("print_mole",truevalue);
411
412 int print_timings = keyval->booleanvalue("print_timings",truevalue);
413
414 // sanity checks for the benefit of reasonable looking output
415 if (opt.null()) do_opt=0;
416
417 ExEnv::out0() << endl << indent
418 << "MPQC options:" << endl << incindent
419 << indent << "matrixkit = <"
420 << SCMatrixKit::default_matrixkit()->class_name() << ">" << endl
421 << indent << "filename = " << molname << endl
422 << indent << "restart_file = " << restartfile << endl
423 << indent << "restart = " << (restart ? "yes" : "no") << endl
424 << indent << "checkpoint = " << (checkpoint ? "yes" : "no") << endl
425 << indent << "savestate = " << (savestate ? "yes" : "no") << endl
426 << indent << "do_energy = " << (do_energy ? "yes" : "no") << endl
427 << indent << "do_gradient = " << (do_grad ? "yes" : "no") << endl
428 << indent << "optimize = " << (do_opt ? "yes" : "no") << endl
429 << indent << "write_pdb = " << (do_pdb ? "yes" : "no") << endl
430 << indent << "print_mole = " << (print_mole ? "yes" : "no") << endl
431 << indent << "print_timings = " << (print_timings ? "yes" : "no")
432 << endl << decindent;
433
434}
435
436/** Saves the current state to checkpoint file.
437 *
438 * \param keyval key value structure
439 * \param opt optimization structure
440 * \param grp message group
441 * \param mole MolecularEnergy object
442 * \param molname name of molecule
443 * \param ckptfile name of check point file
444 */
445void saveState(
446 char *wfn_file,
447 int savestate,
448 Ref<Optimize> &opt,
449 Ref<MessageGrp> &grp,
450 Ref<MolecularEnergy> &mole,
451 char *&molname,
452 char *&ckptfile)
453{
454 const char *devnull = "/dev/null";
455
456 // function stuff
457 if (savestate) {
458 if (opt.nonnull()) {
459 if (grp->me() == 0) {
460 ckptfile = new char[strlen(molname)+6];
461 sprintf(ckptfile,"%s.ckpt",molname);
462 }
463 else {
464 ckptfile = new char[strlen(devnull)+1];
465 strcpy(ckptfile, devnull);
466 }
467
468 StateOutBin so(ckptfile);
469 SavableState::save_state(opt.pointer(),so);
470 so.close();
471
472 delete[] ckptfile;
473 }
474
475 if (mole.nonnull()) {
476 if (grp->me() == 0) {
477 if (wfn_file == 0) {
478 wfn_file = new char[strlen(molname)+6];
479 sprintf(wfn_file,"%s.wfn",molname);
480 }
481 }
482 else {
483 delete[] wfn_file;
484 wfn_file = new char[strlen(devnull)+1];
485 strcpy(wfn_file, devnull);
486 }
487
488 StateOutBin so(wfn_file);
489 SavableState::save_state(mole.pointer(),so);
490 so.close();
491
492 }
493 }
494 delete[] wfn_file;
495}
496
497/** Sets up indentation and output modes.
498 *
499 * \param grp message group
500 */
501void setupSCFormIO(
502 Ref<MessageGrp> &grp
503 )
504{
505 SCFormIO::setindent(ExEnv::outn(), 2);
506 SCFormIO::setindent(ExEnv::errn(), 2);
507 SCFormIO::setindent(cout, 2);
508 SCFormIO::setindent(cerr, 2);
509
510 SCFormIO::set_printnode(0);
511 if (grp->n() > 1)
512 SCFormIO::init_mp(grp->me());
513}
514
515int
516try_main(int argc, char *argv[])
517{
518 //trash_stack();
519
520 int i;
521 const char *devnull = "/dev/null";
522 atexit(clean_up);
523
524#ifdef HAVE_FEENABLEEXCEPT
525 // this uses a glibc extension to trap on individual exceptions
526# ifdef FE_DIVBYZERO
527 feenableexcept(FE_DIVBYZERO);
528# endif
529# ifdef FE_INVALID
530 feenableexcept(FE_INVALID);
531# endif
532# ifdef FE_OVERFLOW
533 feenableexcept(FE_OVERFLOW);
534# endif
535#endif
536
537#ifdef HAVE_FEDISABLEEXCEPT
538 // this uses a glibc extension to not trap on individual exceptions
539# ifdef FE_UNDERFLOW
540 fedisableexcept(FE_UNDERFLOW);
541# endif
542# ifdef FE_INEXACT
543 fedisableexcept(FE_INEXACT);
544# endif
545#endif
546
547#if defined(HAVE_SETRLIMIT)
548 struct rlimit rlim;
549 rlim.rlim_cur = 0;
550 rlim.rlim_max = 0;
551 setrlimit(RLIMIT_CORE,&rlim);
552#endif
553
554 ExEnv::init(argc, argv);
555
556 // parse commandline options
557 GetLongOpt options;
558 int optind = ParseOptions(options, argc, argv);
559 const char *output = 0;
560 ostream *outstream = 0;
561 ComputeOptions(options, output, outstream);
562
563 // get the message group. first try the commandline and environment
564 Ref<MessageGrp> grp;
565 getMessageGroup(grp, argc, argv);
566
567 // get input file names, either object-oriented or generic
568 const char *object_input = 0;
569 const char *generic_input = 0;
570 getInputFileNames(object_input, generic_input, options, argc, argv);
571 const char *input;
572 if (object_input) input = object_input;
573 if (generic_input) input = generic_input;
574
575 Ref<ParsedKeyVal> parsedkv;
576 // read the input file on only node 0
577 char *in_char_array;
578 if (grp->me() == 0) {
579 ifstream is(input);
580#ifdef HAVE_SSTREAM
581 ostringstream ostrs;
582 is >> ostrs.rdbuf();
583 int n = 1 + strlen(ostrs.str().c_str());
584 in_char_array = strcpy(new char[n],ostrs.str().c_str());
585#else
586 ostrstream ostrs;
587 is >> ostrs.rdbuf();
588 ostrs << ends;
589 in_char_array = ostrs.str();
590 int n = ostrs.pcount();
591#endif
592 grp->bcast(n);
593 grp->bcast(in_char_array, n);
594 }
595 else {
596 int n;
597 grp->bcast(n);
598 in_char_array = new char[n];
599 grp->bcast(in_char_array, n);
600 }
601
602 int use_simple_input;
603 if (generic_input && grp->me() == 0) {
604 MPQCIn mpqcin;
605 use_simple_input = mpqcin.check_string(in_char_array);
606 }
607 else {
608 use_simple_input = 0;
609 }
610 grp->bcast(use_simple_input);
611
612 if (use_simple_input) {
613 MPQCIn mpqcin;
614 char *simple_input_text = mpqcin.parse_string(in_char_array);
615 if (options.retrieve("i")) {
616 ExEnv::out0() << "Generated object-oriented input file:" << endl
617 << simple_input_text
618 << endl;
619 exit(0);
620 }
621 parsedkv = new ParsedKeyVal();
622 parsedkv->parse_string(simple_input_text);
623 delete[] simple_input_text;
624 }
625 else {
626 parsedkv = new ParsedKeyVal();
627 parsedkv->parse_string(in_char_array);
628 }
629 delete[] in_char_array;
630
631 if (options.retrieve("k")) parsedkv->verbose(1);
632 Ref<KeyVal> keyval = new PrefixKeyVal(parsedkv.pointer(),"mpqc");
633
634 // get the basename for output files
635 setOutputBaseName(input, output);
636
637 // set up output classes
638 setupSCFormIO(grp);
639
640 // initialize timing for mpqc
641 grp->sync(); // make sure nodes are sync'ed before starting timings
642 Ref<RegionTimer> tim;
643 if (keyval->exists("timer")) tim << keyval->describedclassvalue("timer");
644 else tim = new ParallelRegionTimer(grp,"mpqc",1,1);
645 RegionTimer::set_default_regiontimer(tim);
646
647 if (tim.nonnull()) tim->enter("input");
648
649 // announce ourselves
650 const char title1[] = "MPQC: Massively Parallel Quantum Chemistry";
651 int ntitle1 = sizeof(title1);
652 const char title2[] = "Version " SC_VERSION;
653 int ntitle2 = sizeof(title2);
654 ExEnv::out0() << endl;
655 ExEnv::out0() << indent;
656 for (i=0; i<(80-ntitle1)/2; i++) ExEnv::out0() << ' ';
657 ExEnv::out0() << title1 << endl;
658 ExEnv::out0() << indent;
659 for (i=0; i<(80-ntitle2)/2; i++) ExEnv::out0() << ' ';
660 ExEnv::out0() << title2 << endl << endl;
661
662 const char *tstr = 0;
663#if defined(HAVE_TIME) && defined(HAVE_CTIME)
664 time_t t;
665 time(&t);
666 tstr = ctime(&t);
667#endif
668 if (!tstr) {
669 tstr = "UNKNOWN";
670 }
671
672 ExEnv::out0()
673 << indent << scprintf("Machine: %s", TARGET_ARCH) << endl
674 << indent << scprintf("User: %s@%s",
675 ExEnv::username(), ExEnv::hostname()) << endl
676 << indent << scprintf("Start Time: %s", tstr) << endl;
677
678 // get the thread group. first try the commandline and environment
679 Ref<ThreadGrp> thread = ThreadGrp::initial_threadgrp(argc, argv);
680
681 // if we still don't have a group, try reading the thread group
682 // from the input
683 if (thread.null()) {
684 thread << keyval->describedclassvalue("thread");
685 }
686
687 if (thread.nonnull())
688 ThreadGrp::set_default_threadgrp(thread);
689 else
690 thread = ThreadGrp::get_default_threadgrp();
691
692 // get the memory group. first try the commandline and environment
693 Ref<MemoryGrp> memory = MemoryGrp::initial_memorygrp(argc, argv);
694
695 // if we still don't have a group, try reading the memory group
696 // from the input
697 if (memory.null()) {
698 memory << keyval->describedclassvalue("memory");
699 }
700
701 if (memory.nonnull())
702 MemoryGrp::set_default_memorygrp(memory);
703 else
704 memory = MemoryGrp::get_default_memorygrp();
705
706 ExEnv::out0() << indent
707 << "Using " << grp->class_name()
708 << " for message passing (number of nodes = " << grp->n() << ")." << endl
709 << indent
710 << "Using " << thread->class_name()
711 << " for threading (number of threads = " << thread->nthread() << ")." << endl
712 << indent
713 << "Using " << memory->class_name()
714 << " for distributed shared memory." << endl
715 << indent
716 << "Total number of processors = " << grp->n() * thread->nthread() << endl;
717
718#ifdef HAVE_CHEMISTRY_CCA
719 // initialize cca framework
720 KeyValValuestring emptystring("");
721 bool do_cca = keyval->booleanvalue("do_cca",falsevalue);
722
723 string cca_path(options.retrieve("cca-path"));
724 string cca_load(options.retrieve("cca-load"));
725 if(cca_path.size()==0)
726 cca_path = keyval->stringvalue("cca_path",emptystring);
727 if(cca_load.size()==0)
728 cca_load = keyval->stringvalue("cca_load",emptystring);
729
730 if( !do_cca && (cca_load.size() > 0 || cca_path.size() > 0) )
731 do_cca = true;
732
733 if(cca_path.size()==0) {
734 #ifdef CCA_PATH
735 cca_path = CCA_PATH;
736 #endif
737 }
738 if(cca_load.size()==0) {
739 cca_load += "MPQC.IntegralEvaluatorFactory";
740 }
741
742 if( cca_load.size() > 0 && cca_path.size() > 0 && do_cca ) {
743 string cca_args = "--path " + cca_path + " --load " + cca_load;
744 ExEnv::out0() << endl << indent << "Initializing CCA framework with args: "
745 << endl << indent << cca_args << endl;
746 CCAEnv::init( cca_args );
747 }
748#endif
749
750 // now set up the debugger
751 Ref<Debugger> debugger; debugger << keyval->describedclassvalue("debug");
752 if (debugger.nonnull()) {
753 Debugger::set_default_debugger(debugger);
754 debugger->set_exec(argv[0]);
755 debugger->set_prefix(grp->me());
756 if (options.retrieve("d"))
757 debugger->debug("Starting debugger because -d given on command line.");
758 }
759
760 // now check to see what matrix kit to use
761 if (keyval->exists("matrixkit"))
762 SCMatrixKit::set_default_matrixkit(
763 dynamic_cast<SCMatrixKit*>(
764 keyval->describedclassvalue("matrixkit").pointer()));
765
766 // get the integral factory. first try commandline and environment
767 Ref<Integral> integral = Integral::initial_integral(argc, argv);
768
769 // if we still don't have a integral, try reading the integral
770 // from the input
771 if (integral.null()) {
772 integral << keyval->describedclassvalue("integrals");
773 }
774
775 if (integral.nonnull())
776 Integral::set_default_integral(integral);
777 else
778 integral = Integral::get_default_integral();
779
780 ExEnv::out0() << endl << indent
781 << "Using " << integral->class_name()
782 << " by default for molecular integrals evaluation" << endl << endl;
783
784 // check for a molecular energy and optimizer
785 const char *basename = SCFormIO::default_basename();
786 KeyValValueString molnamedef(basename);
787 char * molname = keyval->pcharvalue("filename", molnamedef);
788 if (strcmp(molname, basename))
789 SCFormIO::set_default_basename(molname);
790
791 char * ckptfile = new char[strlen(molname)+6];
792 sprintf(ckptfile,"%s.ckpt",molname);
793
794 KeyValValueString restartfiledef(ckptfile);
795 char * restartfile = keyval->pcharvalue("restart_file", restartfiledef);
796
797 char * wfn_file = keyval->pcharvalue("wfn_file");
798 if (wfn_file == 0) {
799 wfn_file = new char[strlen(molname)+6];
800 sprintf(wfn_file,"%s.wfn",molname);
801 }
802 char *mole_ckpt_file = new char[strlen(wfn_file)+1];
803 sprintf(mole_ckpt_file,"%s",wfn_file);
804
805 int restart = keyval->booleanvalue("restart",truevalue);
806
807 int checkpoint = keyval->booleanvalue("checkpoint",truevalue);
808 int checkpoint_freq = keyval->intvalue("checkpoint_freq",KeyValValueint(1));
809
810 int savestate = keyval->booleanvalue("savestate",truevalue);
811
812 struct stat sb;
813 Ref<MolecularEnergy> mole;
814 Ref<Optimize> opt;
815
816 int statresult, statsize;
817 if (restart) {
818 if (grp->me() == 0) {
819 statresult = stat(restartfile,&sb);
820 statsize = (statresult==0) ? sb.st_size : 0;
821 }
822 grp->bcast(statresult);
823 grp->bcast(statsize);
824 }
825 if (restart && statresult==0 && statsize) {
826 BcastStateInBin si(grp,restartfile);
827 if (keyval->exists("override")) {
828 si.set_override(new PrefixKeyVal(keyval,"override"));
829 }
830 char *suf = strrchr(restartfile,'.');
831 if (!strcmp(suf,".wfn")) {
832 mole << SavableState::key_restore_state(si,"mole");
833 ExEnv::out0() << endl
834 << indent << "Restored <" << mole->class_name()
835 << "> from " << restartfile << endl;
836
837 opt << keyval->describedclassvalue("opt");
838 if (opt.nonnull())
839 opt->set_function(mole.pointer());
840 }
841 else {
842 opt << SavableState::key_restore_state(si,"opt");
843 if (opt.nonnull()) {
844 mole << opt->function();
845 ExEnv::out0() << endl << indent
846 << "Restored <Optimize> from " << restartfile << endl;
847 }
848 }
849 } else {
850 mole << keyval->describedclassvalue("mole");
851 opt << keyval->describedclassvalue("opt");
852 }
853
854 if (mole.nonnull()) {
855 MolecularFormula mf(mole->molecule());
856 ExEnv::out0() << endl << indent
857 << "Molecular formula " << mf.formula() << endl;
858 if (checkpoint) {
859 mole->set_checkpoint();
860 if (grp->me() == 0) mole->set_checkpoint_file(mole_ckpt_file);
861 else mole->set_checkpoint_file(devnull);
862 mole->set_checkpoint_freq(checkpoint_freq);
863 }
864 }
865 delete[] mole_ckpt_file;
866
867 if (checkpoint && opt.nonnull()) {
868 opt->set_checkpoint();
869 if (grp->me() == 0) opt->set_checkpoint_file(ckptfile);
870 else opt->set_checkpoint_file(devnull);
871 }
872
873 // see if frequencies are wanted
874
875 Ref<MolecularHessian> molhess;
876 molhess << keyval->describedclassvalue("hess");
877 Ref<MolecularFrequencies> molfreq;
878 molfreq << keyval->describedclassvalue("freq");
879
880 int check = (options.retrieve("c") != 0);
881 int limit = atoi(options.retrieve("l"));
882 if (limit) {
883 Ref<Wavefunction> wfn; wfn << mole;
884 if (wfn.nonnull() && wfn->ao_dimension()->n() > limit) {
885 ExEnv::out0() << endl << indent
886 << "The limit of " << limit << " basis functions has been exceeded."
887 << endl;
888 check = 1;
889 }
890 }
891
892 if (check) {
893 ExEnv::out0() << endl << indent
894 << "Exiting since the check option is on." << endl;
895 exit(0);
896 }
897
898 if (tim.nonnull()) tim->change("calc");
899
900 int do_energy = keyval->booleanvalue("do_energy",truevalue);
901
902 int do_grad = keyval->booleanvalue("do_gradient",falsevalue);
903
904 int do_opt = keyval->booleanvalue("optimize",truevalue);
905
906 int do_pdb = keyval->booleanvalue("write_pdb",falsevalue);
907
908 int print_mole = keyval->booleanvalue("print_mole",truevalue);
909
910 int print_timings = keyval->booleanvalue("print_timings",truevalue);
911
912 // print all current options (keyvalues)
913 printOptions(keyval, opt, molname, restartfile);
914
915 // see if any pictures are desired
916 Ref<Render> renderer;
917 renderer << keyval->describedclassvalue("renderer");
918
919 // If we have a renderer, then we will read in some more info
920 // below. Otherwise we can get rid of the keyval's, to eliminate
921 // superfluous references to objects that we might otherwise be
922 // able to delete. We cannot read in the remaining rendering
923 // objects now, since some of their KeyVal CTOR's are heavyweight,
924 // requiring optimized geometries, etc.
925 if (renderer.null()) {
926 if (parsedkv.nonnull()) print_unseen(parsedkv, input);
927 keyval = 0;
928 parsedkv = 0;
929 }
930
931 delete[] restartfile;
932 delete[] ckptfile;
933
934 int ready_for_freq = 1;
935 if (mole.nonnull()) {
936 if (((do_opt && opt.nonnull()) || do_grad)
937 && !mole->gradient_implemented()) {
938 ExEnv::out0() << indent
939 << "WARNING: optimization or gradient requested but the given"
940 << endl
941 << " MolecularEnergy object cannot do gradients."
942 << endl;
943 }
944
945 if (do_opt && opt.nonnull() && mole->gradient_implemented()) {
946 int result = opt->optimize();
947 if (result) {
948 ExEnv::out0() << indent
949 << "The optimization has converged." << endl << endl;
950 ExEnv::out0() << indent
951 << scprintf("Value of the MolecularEnergy: %15.10f",
952 mole->energy())
953 << endl << endl;
954 } else {
955 ExEnv::out0() << indent
956 << "The optimization has NOT converged." << endl << endl;
957 ready_for_freq = 0;
958 }
959 } else if (do_grad && mole->gradient_implemented()) {
960 mole->do_gradient(1);
961 ExEnv::out0() << endl << indent
962 << scprintf("Value of the MolecularEnergy: %15.10f",
963 mole->energy())
964 << endl;
965 if (mole->value_result().actual_accuracy()
966 > mole->value_result().desired_accuracy()) {
967 ExEnv::out0() << indent
968 << "WARNING: desired accuracy not achieved in energy" << endl;
969 }
970 ExEnv::out0() << endl;
971 // Use result_noupdate since the energy might not have converged
972 // to the desired accuracy in which case grabbing the result will
973 // start up the calculation again. However the gradient might
974 // not have been computed (if we are restarting and the gradient
975 // isn't in the save file for example).
976 RefSCVector grad;
977 if (mole->gradient_result().computed()) {
978 grad = mole->gradient_result().result_noupdate();
979 }
980 else {
981 grad = mole->gradient();
982 }
983 if (grad.nonnull()) {
984 grad.print("Gradient of the MolecularEnergy:");
985 if (mole->gradient_result().actual_accuracy()
986 > mole->gradient_result().desired_accuracy()) {
987 ExEnv::out0() << indent
988 << "WARNING: desired accuracy not achieved in gradient" << endl;
989 }
990 }
991 } else if (do_energy && mole->value_implemented()) {
992 ExEnv::out0() << endl << indent
993 << scprintf("Value of the MolecularEnergy: %15.10f",
994 mole->energy())
995 << endl << endl;
996 }
997 }
998
999 if (tim.nonnull()) tim->exit("calc");
1000
1001 // save this before doing the frequency stuff since that obsoletes the
1002 saveState(wfn_file, savestate, opt, grp, mole, molname, ckptfile);
1003
1004 // Frequency calculation.
1005 if (ready_for_freq && molfreq.nonnull()) {
1006 RefSymmSCMatrix xhessian;
1007 if (molhess.nonnull()) {
1008 // if "hess" input was given, use it to compute the hessian
1009 xhessian = molhess->cartesian_hessian();
1010 }
1011 else if (mole->hessian_implemented()) {
1012 // if mole can compute the hessian, use that hessian
1013 xhessian = mole->get_cartesian_hessian();
1014 }
1015 else if (mole->gradient_implemented()) {
1016 // if mole can compute gradients, use gradients at finite
1017 // displacements to compute the hessian
1018 molhess = new FinDispMolecularHessian(mole);
1019 xhessian = molhess->cartesian_hessian();
1020 }
1021 else {
1022 ExEnv::out0() << "mpqc: WARNING: Frequencies cannot be computed" << endl;
1023 }
1024
1025 if (xhessian.nonnull()) {
1026 char *hessfile = SCFormIO::fileext_to_filename(".hess");
1027 MolecularHessian::write_cartesian_hessian(hessfile,
1028 mole->molecule(), xhessian);
1029 delete[] hessfile;
1030
1031 molfreq->compute_frequencies(xhessian);
1032 // DEGENERACY IS NOT CORRECT FOR NON-SINGLET CASES:
1033 molfreq->thermochemistry(1);
1034 }
1035 }
1036
1037 if (renderer.nonnull()) {
1038 Ref<RenderedObject> rendered;
1039 rendered << keyval->describedclassvalue("rendered");
1040 Ref<AnimatedObject> animated;
1041 animated << keyval->describedclassvalue("rendered");
1042 if (rendered.nonnull()) {
1043 if (tim.nonnull()) tim->enter("render");
1044 if (grp->me() == 0) renderer->render(rendered);
1045 if (tim.nonnull()) tim->exit("render");
1046 }
1047 else if (animated.nonnull()) {
1048 if (tim.nonnull()) tim->enter("render");
1049 if (grp->me() == 0) renderer->animate(animated);
1050 if (tim.nonnull()) tim->exit("render");
1051 }
1052 else {
1053 if (tim.nonnull()) tim->enter("render");
1054 int n = keyval->count("rendered");
1055 for (i=0; i<n; i++) {
1056 rendered << keyval->describedclassvalue("rendered",i);
1057 animated << keyval->describedclassvalue("rendered",i);
1058 if (rendered.nonnull()) {
1059 // make sure the object has a name so we don't overwrite its file
1060 if (rendered->name() == 0) {
1061 char ic[64];
1062 sprintf(ic,"%02d",i);
1063 rendered->set_name(ic);
1064 }
1065 if (grp->me() == 0) renderer->render(rendered);
1066 }
1067 else if (animated.nonnull()) {
1068 // make sure the object has a name so we don't overwrite its file
1069 if (animated->name() == 0) {
1070 char ic[64];
1071 sprintf(ic,"%02d",i);
1072 animated->set_name(ic);
1073 }
1074 if (grp->me() == 0) renderer->animate(animated);
1075 }
1076 }
1077 if (tim.nonnull()) tim->exit("render");
1078 }
1079 Ref<MolFreqAnimate> molfreqanim;
1080 molfreqanim << keyval->describedclassvalue("animate_modes");
1081 if (ready_for_freq && molfreq.nonnull()
1082 && molfreqanim.nonnull()) {
1083 if (tim.nonnull()) tim->enter("render");
1084 molfreq->animate(renderer, molfreqanim);
1085 if (tim.nonnull()) tim->exit("render");
1086 }
1087 }
1088
1089 if (mole.nonnull()) {
1090 if (print_mole)
1091 mole->print(ExEnv::out0());
1092
1093 if (do_pdb && grp->me() == 0) {
1094 ckptfile = new char[strlen(molname)+5];
1095 sprintf(ckptfile, "%s.pdb", molname);
1096 ofstream pdbfile(ckptfile);
1097 mole->molecule()->print_pdb(pdbfile);
1098 delete[] ckptfile;
1099 }
1100
1101 }
1102 else {
1103 ExEnv::out0() << "mpqc: The molecular energy object is null" << endl
1104 << " make sure \"mole\" specifies a MolecularEnergy derivative"
1105 << endl;
1106 }
1107 if (parsedkv.nonnull()) print_unseen(parsedkv, input);
1108
1109 if (print_timings)
1110 if (tim.nonnull()) tim->print(ExEnv::out0());
1111
1112 // here, we may gather the results
1113 // we start to construct the MPQC_Data object
1114 {
1115 Ref<Wavefunction> wfn;
1116 wfn << mole;
1117 ExEnv::out0() << "The number of atomic orbitals: " << wfn->ao_dimension()->n() << endl;
1118 ExEnv::out0() << "The AO density matrix is ";
1119 wfn->ao_density()->print(ExEnv::out0());
1120 ExEnv::out0() << "The natural density matrix is ";
1121 wfn->natural_density()->print(ExEnv::out0());
1122 ExEnv::out0() << "The Gaussian basis is " << wfn->basis()->name() << endl;
1123 ExEnv::out0() << "The Gaussians sit at the following centers: " << endl;
1124 for (int nr = 0; nr< wfn->basis()->ncenter(); ++nr) {
1125 ExEnv::out0() << nr << " basis function has its center at ";
1126 for (int i=0; i < 3; ++i)
1127 ExEnv::out0() << wfn->basis()->r(nr,i) << "\t";
1128 ExEnv::out0() << endl;
1129 }
1130 // GaussianShell is the actual orbital functions it seems ...
1131 //ExEnv::out0() << "There are the following Gaussian Shells: " << endl;
1132 SCVector3 r;
1133 r.x() = r.y() = r.z() = 10;
1134 ExEnv::out0() << "We get the following value at " << r << "." << endl;
1135 Ref<Integral> intgrl = Integral::get_default_integral();
1136 GaussianBasisSet::ValueData vdat(wfn->basis(), integral);
1137 ExEnv::out0() << "Value at (10,10,10) is " << EvaluateDensity(r, intgrl, vdat, wfn) << endl;
1138 boost::function<double (SCVector3 &r)> evaluator =
1139 boost::bind(&EvaluateDensity, _1, boost::ref(intgrl), boost::ref(vdat), boost::ref(wfn));
1140 ExEnv::out0() << "Check against values at " << r << "." << endl;
1141 int nbasis = wfn->basis()->nbasis();
1142 double *b_val = new double[nbasis];
1143 wfn->basis()->values(r, &vdat, b_val);
1144 for (int i=0; i<nbasis; i++) {
1145 //ExEnv::out0() << "Shell nr. " << nr << ": ";
1146 ExEnv::out0() << "Value at (10,10,10) is " << b_val[i] << endl;
1147 }
1148 // perform test integration of density
1149 double delta = 1.;
1150 double sum = 0.;
1151 for (r.x() = -10. ; r.x() < 10.; r.x() += delta)
1152 for (r.y() = -10. ; r.y() < 10.; r.y() += delta)
1153 for (r.z() = -10. ; r.z() < 10.; r.z() += delta) {
1154 wfn->basis()->values(r, &vdat, b_val);
1155 for (int i=0; i<nbasis; i++)
1156 sum += wfn->ao_density()->get_element(i,i)*b_val[i];
1157 }
1158 sum /= pow(20/delta,3);
1159 ExEnv::out0() << "Sum over domain [0:20]^3 with " << delta << " delta is " << sum << "." << endl;
1160 delete[] b_val;
1161 }
1162
1163 delete[] molname;
1164 SCFormIO::set_default_basename(0);
1165
1166 renderer = 0;
1167 molfreq = 0;
1168 molhess = 0;
1169 opt = 0;
1170 mole = 0;
1171 integral = 0;
1172 debugger = 0;
1173 thread = 0;
1174 tim = 0;
1175 keyval = 0;
1176 parsedkv = 0;
1177 grp = 0;
1178 memory = 0;
1179 clean_up();
1180
1181#if defined(HAVE_TIME) && defined(HAVE_CTIME)
1182 time(&t);
1183 tstr = ctime(&t);
1184#endif
1185 if (!tstr) {
1186 tstr = "UNKNOWN";
1187 }
1188 ExEnv::out0() << endl
1189 << indent << scprintf("End Time: %s", tstr) << endl;
1190
1191 if (output != 0) {
1192 ExEnv::set_out(&cout);
1193 delete outstream;
1194 }
1195
1196 return 0;
1197}
1198
1199double EvaluateDensity(SCVector3 &r, Ref<Integral> &intgrl, GaussianBasisSet::ValueData &vdat, Ref<Wavefunction> &wfn)
1200{
1201 ExEnv::out0() << "We get the following values at " << r << "." << endl;
1202 int nbasis = wfn->basis()->nbasis();
1203 double *b_val = new double[nbasis];
1204 wfn->basis()->values(r, &vdat, b_val);
1205 double sum=0.;
1206 for (int i=0; i<nbasis; i++)
1207 sum += b_val[i];
1208 delete[] b_val;
1209 return sum;
1210}
1211
1212int
1213main(int argc, char *argv[])
1214{
1215 try {
1216 try_main(argc, argv);
1217 }
1218 catch (SCException &e) {
1219 cout << argv[0] << ": ERROR: SC EXCEPTION RAISED:" << endl
1220 << e.what()
1221 << endl;
1222 clean_up();
1223 throw;
1224 }
1225 catch (bad_alloc &e) {
1226 cout << argv[0] << ": ERROR: MEMORY ALLOCATION FAILED:" << endl
1227 << e.what()
1228 << endl;
1229 clean_up();
1230 throw;
1231 }
1232 catch (exception &e) {
1233 cout << argv[0] << ": ERROR: EXCEPTION RAISED:" << endl
1234 << e.what()
1235 << endl;
1236 clean_up();
1237 throw;
1238 }
1239 catch (...) {
1240 cout << argv[0] << ": ERROR: UNKNOWN EXCEPTION RAISED" << endl;
1241 clean_up();
1242 throw;
1243 }
1244 return 0;
1245}
1246
1247/////////////////////////////////////////////////////////////////////////////
1248
1249// Local Variables:
1250// mode: c++
1251// c-file-style: "ETS"
1252// End:
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