Bridge++  Ver. 1.3.x
test_Spectrum_2ptFunction_eo_withFileIO.cpp
Go to the documentation of this file.
1 
14 #include "test.h"
15 
16 #include <sstream>
17 
18 #include "gaugeConfig.h"
19 #include "staples.h"
20 
21 #include "randomNumbers_Mseries.h"
22 
23 #include "fopr_eo.h"
24 #include "fprop_Standard_eo.h"
25 
26 #include "director_Smear.h"
27 #include "fopr_Smeared.h"
28 
29 #include "gammaMatrixSet.h"
30 #include "gaugeFixing.h"
31 #include "projection.h"
32 #include "smear.h"
33 #include "solver.h"
34 #include "source.h"
35 
36 #include "corr2pt_4spinor.h"
37 
38 #include "file_utils.h"
39 #include "fieldIO_Binary.h"
40 
41 //====================================================================
43 
60 namespace Test_Spectrum {
61  const std::string test_name = "Spectrum.Hadron2ptFunction_eo_withFileIO";
62 
63  //- test-private parameters
64  namespace {
65  // const std::string filename_input = "test_Spectrum_Clover_Hadron2ptFunction.yaml";
66  const std::string filename_output = "stdout";
67 
68  class Parameters_Test_Spectrum : public Parameters {
69  public:
70  Parameters_Test_Spectrum()
71  {
72  Register_string("gauge_config_status", "NULL");
73  Register_string("gauge_config_type_input", "NULL");
74  Register_string("config_filename_input", "NULL");
75 
76  Register_int("number_of_valence_quarks", 0);
77 
78  Register_string("verbose_level", "NULL");
79 
80  Register_double("expected_result", 0.0);
81  }
82  };
83  }
84 
85  //- prototype declaration
86  int hadron_2ptFunction_eo_withFileIO(const std::string&);
87 
88  int calculate_quark_propagator_eo_withFileIO(const std::string&);
89  int calculate_hadron_correlator_eo_withFileIO(const std::string&);
90 
91  //- hadron_2ptFunction for various fermions
93  {
94  return hadron_2ptFunction_eo_withFileIO("test_Spectrum_Clover_Hadron2ptFunction.yaml");
95  }
96 
97 
98  //- NB. test_Spectrum_Wilson is implemented separately for beginners
99  // int hadron_2ptFunction_Wilson_eo_withFileIO() {
100  // return hadron_2ptFunction_eo_withFileIO("test_Spectrum_Wilson_Hadron2ptFunction.yaml");
101  // }
102 
103 #ifdef USE_TESTMANAGER_AUTOREGISTER
104  namespace {
105 #if defined(USE_GROUP_SU2)
106  // Nc=2 is not available.
107 #else
108  static const bool is_registered_Clover = TestManager::RegisterTest(
109  "Spectrum.Clover_eo.Hadron2ptFunction_withFileIO",
111  );
112 
113  //- NB. test_Spectrum_Wilson is implemented separately for beginners
114  // static const bool is_registered_Wilson = TestManager::RegisterTest(
115  // "Spectrum.Wilson_eo.Hadron2ptFunction_withFileIO",
116  // hadron_2ptFunction_Wilson_eo_withFileIO
117  // );
118 #endif
119  }
120 #endif
121 
122  //====================================================================
123  int hadron_2ptFunction_eo_withFileIO(const std::string& filename_input)
124  {
125  int result = 0;
126 
127  unique_ptr<Timer> timer(new Timer(test_name));
128 
129 
130  // #### Execution main part ####
131  timer->start();
132 
133  result += calculate_quark_propagator_eo_withFileIO(filename_input);
134  result += calculate_hadron_correlator_eo_withFileIO(filename_input);
135 
136  timer->report();
137 
138 
139  return result;
140  }
141 
142 
143  //====================================================================
144  int calculate_quark_propagator_eo_withFileIO(const std::string& filename_input)
145  {
146  // #### parameter setup ####
147  int Nc = CommonParameters::Nc();
148  int Nd = CommonParameters::Nd();
149  int Ndim = CommonParameters::Ndim();
150  int Nvol = CommonParameters::Nvol();
151 
152 
153  unique_ptr<Parameters> params_test(new Parameters_Test_Spectrum);
154  unique_ptr<Parameters> params_pre(new Parameters);
155 
156  params_pre->Register_Parameters("Test_Spectrum", params_test);
157 
158  ParameterManager::read(filename_input, params_pre);
159 
160 
161  const int N_quark = params_test->get_int("number_of_valence_quarks");
162 
163  unique_ptr<Parameters> params_gfix(ParametersFactory::New("GaugeFixing"));
164  unique_ptr<Parameters> params_proj(ParametersFactory::New("Projection"));
165  unique_ptr<Parameters> params_smear(ParametersFactory::New("Smear"));
166  unique_ptr<Parameters> params_dr_smear(ParametersFactory::New("Director_Smear"));
167  unique_ptr<Parameters> params_solver(ParametersFactory::New("Solver"));
168  unique_ptr<Parameters> params_all(new Parameters);
169 
170 #ifdef USE_CPP11
171  std::vector<unique_ptr<Parameters> > params_quark(N_quark);
172  std::vector<unique_ptr<Parameters> > params_fopr(N_quark);
173  std::vector<unique_ptr<Parameters> > params_source(N_quark);
174 
175  for (int iq = 0; iq < N_quark; ++iq) {
176  params_quark[iq].reset(new Parameters);
177  params_fopr[iq].reset(ParametersFactory::New("Fopr"));
178  params_source[iq].reset(ParametersFactory::New("Source"));
179  }
180 #else
181  std::vector<Parameters *> params_quark(N_quark);
182  std::vector<Parameters *> params_fopr(N_quark);
183  std::vector<Parameters *> params_source(N_quark);
184 
185  for (int iq = 0; iq < N_quark; ++iq) {
186  params_quark[iq] = new Parameters;
187  params_fopr[iq] = ParametersFactory::New("Fopr");
188  params_source[iq] = ParametersFactory::New("Source");
189  }
190 #endif
191 
192  for (int iq = 0; iq < N_quark; ++iq) {
193  params_quark[iq]->Register_string("temporary_filename_base", "NULL");
194  params_quark[iq]->Register_Parameters("Fopr", params_fopr[iq]);
195  params_quark[iq]->Register_Parameters("Source", params_source[iq]);
196 
197  std::stringstream qlabel;
198  qlabel << "Quark_" << iq + 1;
199  params_all->Register_Parameters(qlabel.str(), params_quark[iq]);
200  }
201 
202  params_all->Register_Parameters("GaugeFixing", params_gfix);
203  params_all->Register_Parameters("Projection", params_proj);
204  params_all->Register_Parameters("Smear", params_smear);
205  params_all->Register_Parameters("Director_Smear", params_dr_smear);
206  params_all->Register_Parameters("Solver", params_solver);
207 
208  ParameterManager::read(filename_input, params_all);
209 
210  const string str_gconf_status = params_test->get_string("gauge_config_status");
211  const string str_gconf_read = params_test->get_string("gauge_config_type_input");
212  const string readfile = params_test->get_string("config_filename_input");
213  const string str_vlevel = params_test->get_string("verbose_level");
214 
215  const string str_gfix_type = params_gfix->get_string("gauge_fixing_type");
216  const string str_proj_type = params_proj->get_string("projection_type");
217  const string str_smear_type = params_smear->get_string("smear_type");
218  const string str_solver_type = params_solver->get_string("solver_type");
219 
220  std::vector<std::string> savefile_base(N_quark);
221  for (int iq = 0; iq < N_quark; ++iq) {
222  savefile_base[iq] = params_quark[iq]->get_string("temporary_filename_base");
223  }
224 
226 
227  //- print input parameters
228  vout.general(vl, " gconf_status = %s\n", str_gconf_status.c_str());
229  vout.general(vl, " gconf_read = %s\n", str_gconf_read.c_str());
230  vout.general(vl, " readfile = %s\n", readfile.c_str());
231  vout.general(vl, " vlevel = %s\n", str_vlevel.c_str());
232  vout.general(vl, " gfix_type = %s\n", str_gfix_type.c_str());
233  vout.general(vl, " proj_type = %s\n", str_proj_type.c_str());
234  vout.general(vl, " smear_type = %s\n", str_smear_type.c_str());
235  vout.general(vl, " solver_type = %s\n", str_solver_type.c_str());
236 
237  // NB. all str_gmset_type are supposed to be the same.
238  const string str_gmset_type = params_fopr[0]->get_string("gamma_matrix_type");
239  vout.general(vl, " gmset_type = %s\n", str_gmset_type.c_str());
240 
241  std::vector<std::string> str_source_type(N_quark);
242 
243  for (int iq = 0; iq < N_quark; ++iq) {
244  vout.general(vl, " Quark_%d:\n", iq + 1);
245 
246  str_source_type[iq] = params_source[iq]->get_string("source_type");
247  vout.general(vl, " source_type = %s\n", str_source_type[iq].c_str());
248  }
249  vout.general(vl, "\n");
250 
251  //- input parameter check
252  int err = 0;
253  err += ParameterCheck::non_NULL(str_gconf_status);
254 
255  if (err) {
256  vout.crucial(vl, "%s: Input parameters have not been set.\n", test_name.c_str());
257  exit(EXIT_FAILURE);
258  }
259 
260 
261  // #### Set up a gauge configuration ####
262  unique_ptr<Field_G> U(new Field_G(Nvol, Ndim));
263  unique_ptr<GaugeConfig> gconf_read(new GaugeConfig(str_gconf_read));
264 
265  if (str_gconf_status == "Continue") {
266  gconf_read->read_file(U, readfile);
267  } else if (str_gconf_status == "Cold_start") {
268  U->set_unit();
269  } else if (str_gconf_status == "Hot_start") {
270  int i_seed_noise = 1234567;
271  unique_ptr<RandomNumbers> rand(new RandomNumbers_Mseries(i_seed_noise));
272  U->set_random(rand);
273  } else {
274  vout.crucial(vl, "%s: unsupported gconf status \"%s\".\n", test_name.c_str(), str_gconf_status.c_str());
275  exit(EXIT_FAILURE);
276  }
277 
278  unique_ptr<Projection> proj(Projection::New(str_proj_type));
279  unique_ptr<Smear> smear(Smear::New(str_smear_type, proj));
280  smear->set_parameters(*params_smear);
281 
282  unique_ptr<Director_Smear> dr_smear(new Director_Smear(smear));
283  dr_smear->set_parameters(*params_dr_smear);
284  dr_smear->set_config(U);
285 
286  int Nsmear = dr_smear->get_Nsmear();
287  Field_G *Usmear = (Field_G *)dr_smear->getptr_smearedConfig(Nsmear);
288 
289 
290  // #### Gauge fixing ####
291  unique_ptr<Staples> staple(new Staples);
292  unique_ptr<Field_G> Ufix(new Field_G(Nvol, Ndim));
293 
294  int ndelay = 1000;
296 
297  unique_ptr<GaugeFixing> gfix(GaugeFixing::New(str_gfix_type, rand));
298  gfix->set_parameters(*params_gfix);
299 
300  double plaq = staple->plaquette(*Usmear);
301  vout.general(vl, "plaq(original) = %18.14f\n", plaq);
302 
303  gfix->fix(*Ufix, *Usmear);
304 
305  double plaq2 = staple->plaquette(*Ufix);
306  vout.general(vl, "plaq(fixed) = %18.14f\n", plaq2);
307  vout.general(vl, "plaq(diff) = %18.10e\n", plaq - plaq2);
308 
309 
310  // #### object setup #####
311  unique_ptr<GammaMatrixSet> gmset(GammaMatrixSet::New(str_gmset_type));
312 
313 #ifdef USE_CPP11
314  std::vector<unique_ptr<Fopr> > fopr(N_quark);
315  std::vector<unique_ptr<Fopr> > fopr_eo(N_quark);
316  std::vector<unique_ptr<Solver> > solver(N_quark);
317  std::vector<unique_ptr<Fprop> > fprop_eo(N_quark);
318  std::vector<unique_ptr<Source> > source(N_quark);
319 
320  // NB. Fopr is used only for check of diff2 below.
321 
322  for (int iq = 0; iq < N_quark; ++iq) {
323  string str_fopr_type = params_fopr[iq]->get_string("fermion_type");
324 
325  fopr[iq].reset(Fopr::New(str_fopr_type, str_gmset_type));
326  fopr[iq]->set_parameters(*params_fopr[iq]);
327  fopr[iq]->set_config(Ufix);
328 
329  fopr_eo[iq].reset(Fopr::New(str_fopr_type + "_eo", str_gmset_type));
330  fopr_eo[iq]->set_parameters(*params_fopr[iq]);
331  fopr_eo[iq]->set_config(Ufix);
332 
333  solver[iq].reset(Solver::New(str_solver_type, fopr_eo[iq]));
334  solver[iq]->set_parameters(*params_solver);
335 
336  fprop_eo[iq].reset(new Fprop_Standard_eo(solver[iq]));
337 
338  source[iq].reset(Source::New(str_source_type[iq]));
339  source[iq]->set_parameters(*params_source[iq]);
340  }
341 #else
342  std::vector<Fopr *> fopr(N_quark);
343  std::vector<Fopr *> fopr_eo(N_quark);
344  std::vector<Solver *> solver(N_quark);
345  std::vector<Fprop *> fprop_eo(N_quark);
346  std::vector<Source *> source(N_quark);
347 
348  // NB. Fopr is used only for check of diff2 below.
349 
350  for (int iq = 0; iq < N_quark; ++iq) {
351  string str_fopr_type = params_fopr[iq]->get_string("fermion_type");
352 
353  fopr[iq] = Fopr::New(str_fopr_type, str_gmset_type);
354  fopr[iq]->set_parameters(*params_fopr[iq]);
355  fopr[iq]->set_config(Ufix);
356 
357  fopr_eo[iq] = Fopr::New(str_fopr_type + "_eo", str_gmset_type);
358  fopr_eo[iq]->set_parameters(*params_fopr[iq]);
359  fopr_eo[iq]->set_config(Ufix);
360 
361  solver[iq] = Solver::New(str_solver_type, fopr_eo[iq]);
362  solver[iq]->set_parameters(*params_solver);
363 
364  fprop_eo[iq] = new Fprop_Standard_eo(solver[iq]);
365 
366  source[iq] = Source::New(str_source_type[iq]);
367  source[iq]->set_parameters(*params_source[iq]);
368  }
369 #endif
370  vout.general(vl, "\n");
371 
373 
374 
375  // #### Execution main part ####
376  Field_F xq, b;
377  b.set(0.0);
378 
379  int Nconv;
380  double diff, diff2;
381 
382  for (int iq = 0; iq < N_quark; ++iq) {
383  vout.general(vl, "Solving quark propagator, flavor = %d:\n", iq + 1);
384  vout.general(vl, " color spin Nconv diff diff2\n");
385 
386  for (int ispin = 0; ispin < Nd; ++ispin) {
387  for (int icolor = 0; icolor < Nc; ++icolor) {
388  int idx = icolor + Nc * ispin;
389  source[iq]->set(b, idx);
390 
391  fprop_eo[iq]->invert_D(xq, b, Nconv, diff);
392 
393  Field_F y(b);
394  fopr[iq]->set_mode("D");
395  fopr[iq]->mult(y, xq); // y = fopr[iq]->mult(xq);
396  axpy(y, -1.0, b); // y -= b;
397  diff2 = y.norm2();
398 
399  vout.general(vl, " %2d %2d %6d %12.4e %12.4e\n",
400  icolor, ispin, Nconv, diff, diff2);
401 
402  std::string filename = FileUtils::generate_filename("%s_c%d_s%d.dat", savefile_base[iq].c_str(), (icolor + 1), (ispin + 1));
403  field_io->write_file(&xq, filename);
404  }
405  }
406 
407  vout.general(vl, "\n");
408  }
409 
410 #ifdef USE_CPP11
411  // do nothing
412 #else
413  // tidy-up
414  for (int iq = 0; iq < N_quark; ++iq) {
415  delete params_quark[iq];
416  delete params_fopr[iq];
417  delete params_source[iq];
418 
419  delete fopr_eo[iq];
420  delete solver[iq];
421  delete fprop_eo[iq];
422  delete source[iq];
423  delete fopr[iq];
424  }
425 #endif
426 
427  return EXIT_SUCCESS;
428  }
429 
430 
431  //====================================================================
432  int calculate_hadron_correlator_eo_withFileIO(const std::string& filename_input)
433  {
434  // #### parameter setup ####
435  int Nc = CommonParameters::Nc();
436  int Nd = CommonParameters::Nd();
437  int Ndim = CommonParameters::Ndim();
438  int Nvol = CommonParameters::Nvol();
439 
440 
441  unique_ptr<Parameters> params_test(new Parameters_Test_Spectrum);
442  unique_ptr<Parameters> params_pre(new Parameters);
443 
444  params_pre->Register_Parameters("Test_Spectrum", params_test);
445 
446  ParameterManager::read(filename_input, params_pre);
447 
448 
449  const int N_quark = params_test->get_int("number_of_valence_quarks");
450 
451  unique_ptr<Parameters> params_all(new Parameters);
452 
453 #ifdef USE_CPP11
454  std::vector<unique_ptr<Parameters> > params_quark(N_quark);
455  std::vector<unique_ptr<Parameters> > params_fopr(N_quark);
456  std::vector<unique_ptr<Parameters> > params_source(N_quark);
457 
458  for (int iq = 0; iq < N_quark; ++iq) {
459  params_quark[iq].reset(new Parameters);
460  params_fopr[iq].reset(ParametersFactory::New("Fopr"));
461  params_source[iq].reset(ParametersFactory::New("Source"));
462  }
463 #else
464  std::vector<Parameters *> params_quark(N_quark);
465  std::vector<Parameters *> params_fopr(N_quark);
466  std::vector<Parameters *> params_source(N_quark);
467 
468  for (int iq = 0; iq < N_quark; ++iq) {
469  params_quark[iq] = new Parameters;
470  params_fopr[iq] = ParametersFactory::New("Fopr");
471  params_source[iq] = ParametersFactory::New("Source");
472  }
473 #endif
474 
475  for (int iq = 0; iq < N_quark; ++iq) {
476  params_quark[iq]->Register_string("temporary_filename_base", "NULL");
477  params_quark[iq]->Register_Parameters("Fopr", params_fopr[iq]);
478  params_quark[iq]->Register_Parameters("Source", params_source[iq]);
479 
480  std::stringstream qlabel;
481  qlabel << "Quark_" << iq + 1;
482  params_all->Register_Parameters(qlabel.str(), params_quark[iq]);
483  }
484 
485  ParameterManager::read(filename_input, params_all);
486 
487  const string str_vlevel = params_test->get_string("verbose_level");
488 
489  const bool do_check = params_test->is_set("expected_result");
490  const double expected_result = do_check ? params_test->get_double("expected_result") : 0.0;
491 
492  std::vector<std::string> savefile_base(N_quark);
493  for (int iq = 0; iq < N_quark; ++iq) {
494  savefile_base[iq] = params_quark[iq]->get_string("temporary_filename_base");
495  }
496 
498 
499  //- print input parameters
500  vout.general(vl, " vlevel = %s\n", str_vlevel.c_str());
501 
502  // NB. all str_gmset_type are supposed to be the same.
503  string str_gmset_type = params_fopr[0]->get_string("gamma_matrix_type");
504  vout.general(vl, " gmset_type = %s\n", str_gmset_type.c_str());
505 
506  std::vector<std::string> str_source_type(N_quark);
507 
508  for (int iq = 0; iq < N_quark; ++iq) {
509  vout.general(vl, " Quark_%d:\n", iq + 1);
510 
511  str_source_type[iq] = params_source[iq]->get_string("source_type");
512  vout.general(vl, " source_type = %s\n", str_source_type[iq].c_str());
513 
514  vout.general(vl, " savefile_base[iq] = %s[%d]\n", savefile_base[iq].c_str(), iq);
515  }
516  vout.general(vl, "\n");
517 
518 
519  // #### Set up objects #####
520  unique_ptr<GammaMatrixSet> gmset(GammaMatrixSet::New(str_gmset_type));
521 
523 
524 
525  // #### Execution main part ####
526  typedef std::vector<Field_F> PropagatorSet;
527 
528  std::vector<PropagatorSet> sq(N_quark);
529  for (int iq = 0; iq < N_quark; ++iq) {
530  sq[iq].resize(Nc * Nd);
531 
532  for (int i = 0; i < Nc * Nd; ++i) {
533  sq[iq][i].set(0.0);
534  }
535  }
536 
537 
538  for (int iq = 0; iq < N_quark; ++iq) {
539  for (int ispin = 0; ispin < Nd; ++ispin) {
540  for (int icolor = 0; icolor < Nc; ++icolor) {
541  int idx = icolor + Nc * ispin;
542 
543  std::string filename = FileUtils::generate_filename("%s_c%d_s%d.dat", savefile_base[iq].c_str(), (icolor + 1), (ispin + 1));
544  field_io->read_file(&sq[iq][idx], filename);
545  }
546  }
547  }
548 
549 
550  //- meson correlators
551  std::ofstream log_file;
552  if (filename_output != "stdout") {
553  log_file.open(filename_output.c_str());
554  vout.init(log_file);
555  }
556 
557  vout.general(vl, "2-point correlator:\n");
558  Corr2pt_4spinor corr(gmset);
559  std::vector<double> result(N_quark);
560 
561  //- case(iq_1 == iq_2)
562  for (int iq = 0; iq < N_quark; ++iq) {
563  vout.general(vl, "Flavor combination = %d, %d\n", iq + 1, iq + 1);
564  result[iq] = corr.meson_all(sq[iq], sq[iq]);
565  vout.general(vl, "\n");
566  }
567 
568 
569  //- case(iq_1 < iq_2)
570  for (int iq = 0; iq < N_quark; ++iq) {
571  for (int jq = iq + 1; jq < N_quark; ++jq) {
572  vout.general(vl, "Flavor combination = %d, %d\n", iq + 1, jq + 1);
573  double result_2 = corr.meson_all(sq[iq], sq[jq]);
574  vout.general(vl, "\n");
575  }
576  }
577 
578  if (filename_output != "stdout") {
579  log_file.close();
580  vout.init(std::cout);
581  }
582 
583 #ifdef USE_CPP11
584  // do nothing
585 #else
586  // tidy-up
587  for (int iq = 0; iq < N_quark; ++iq) {
588  delete params_quark[iq];
589  delete params_fopr[iq];
590  delete params_source[iq];
591  }
592 #endif
593 
594  if (do_check) {
595  return Test::verify(result[0], expected_result);
596  } else {
597  vout.detailed(vl, "check skipped: expected_result not set.\n\n");
598  return EXIT_SKIP;
599  }
600  }
601 } // namespace Test_Spectrum
#define EXIT_SKIP
Definition: test.h:17
Random number generator base on M-series.
int calculate_hadron_correlator_eo_withFileIO(const std::string &)
int hadron_2ptFunction_eo_withFileIO(const std::string &)
BridgeIO vout
Definition: bridgeIO.cpp:278
void detailed(const char *format,...)
Definition: bridgeIO.cpp:82
double meson_all(const std::vector< Field_F > &sq1, const std::vector< Field_F > &sq2)
double norm2() const
Definition: field.cpp:441
Staple construction.
Definition: staples.h:40
void set(const int jin, const int site, const int jex, double v)
Definition: field.h:155
void general(const char *format,...)
Definition: bridgeIO.cpp:65
Two-point correlator for Wilson-type fermions.
double plaquette(const Field_G &)
calculates plaquette value.
Definition: staples.cpp:36
virtual void set_parameters(const Parameters &)=0
int get_int(const string &key) const
Definition: parameters.cpp:42
Class for parameters.
Definition: parameters.h:38
static Parameters * New(const std::string &realm)
void read_file(Field *U, const string &filename)
Definition: gaugeConfig.cpp:56
void set_random(RandomNumbers *rand)
Definition: field_G_imp.cpp:62
int calculate_quark_propagator_eo_withFileIO(const std::string &)
Wilson-type fermion field.
Definition: field_F.h:37
void set_unit()
Definition: field_G_imp.cpp:39
static bool RegisterTest(const std::string &key, const Test_function func)
Definition: testManager.h:80
Test of spectroscopy.
SU(N) gauge field.
Definition: field_G.h:38
Field * getptr_smearedConfig(int i_smear)
get pointer to i-th smeared config (0th is original thin link)
bool is_set(const string &) const
Definition: parameters.cpp:372
double get_double(const string &key) const
Definition: parameters.cpp:27
std::string generate_filename(const char *fmt,...)
Definition: file_utils.cpp:17
Get quark propagator for Fopr with even-odd site index.
void init(std::ostream &os)
Definition: bridgeIO.h:57
int non_NULL(const std::string v)
Definition: checker.cpp:61
void start()
Definition: timer.cpp:44
void axpy(Field &y, const double a, const Field &x)
axpy(y, a, x): y := a * x + y
Definition: field.cpp:168
void set_config(Field *U)
set pointer to original thin link variable
int get_Nsmear()
get number of applied smearing operation
void crucial(const char *format,...)
Definition: bridgeIO.cpp:48
void Register_Parameters(const string &, Parameters *const)
Definition: parameters.cpp:358
const Format * Trivial
Definition: io_format.cpp:27
Manager of smeared configurations.
int verify(const double result, const double expected, double eps)
Definition: test.cpp:27
FieldIO_Binary class for file I/O of Field data in binary format.
const std::string test_name
Bridge::VerboseLevel vl
Definition: checker.cpp:18
VerboseLevel
Definition: bridgeIO.h:39
virtual void read_file(Field *v, std::string)=0
read data from file.
virtual void write_file(Field *v, std::string)=0
write data to file.
void set_parameters(const Parameters &params)
set parameters, must be called before set_config
static void read(const std::string &params_file, Parameters *params)
GaugeConfig class for file I/O of gauge configuration.
Definition: gaugeConfig.h:61
Definition: timer.h:31
virtual void fix(Field_G &Ufix, const Field_G &Uorg)=0
string get_string(const string &key) const
Definition: parameters.cpp:87
void report(const Bridge::VerboseLevel vl=Bridge::GENERAL)
Definition: timer.cpp:128
static VerboseLevel set_verbose_level(const std::string &str)
Definition: bridgeIO.cpp:28
virtual void set_parameters(const Parameters &params)=0