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test_HMC_Clover_Leapfrog_Nf2.cpp
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1 
14 #include "test.h"
15 
16 #include "gaugeConfig.h"
17 
18 #include "action_G_Plaq.h"
19 #include "action_G_Rectangle.h"
20 
21 #include "fopr_Clover.h"
22 #include "force_F_Clover_Nf2.h"
23 
24 #include "randomNumbers_Mseries.h"
25 
26 #include "director_Smear.h"
27 #include "fopr_Smeared.h"
28 #include "force_F_Smeared.h"
29 
30 #include "action_F_Standard_lex.h"
31 #include "fprop_Standard_lex.h"
32 
33 #include "forceSmear.h"
34 #include "projection.h"
35 #include "smear.h"
36 #include "solver.h"
37 
38 #include "hmc_Leapfrog.h"
39 
40 //====================================================================
42 
54 namespace Test_HMC_Clover {
55  const std::string test_name = "HMC.Clover.Leapfrog_Nf2";
56 
57  //- test-private parameters
58  namespace {
59  const std::string filename_input = "test_HMC_Clover_Leapfrog_Nf2.yaml";
60  const std::string filename_output = "stdout";
61 
62  class Parameters_Test_HMC_Clover : public Parameters {
63  public:
64  Parameters_Test_HMC_Clover()
65  {
66  Register_string("gauge_config_status", "NULL");
67 
68  Register_string("gauge_config_type_input", "NULL");
69  Register_string("config_filename_input", "NULL");
70 
71  Register_string("gauge_config_type_output", "NULL");
72  Register_string("config_filename_output", "NULL");
73 
74  Register_int("trajectory_number", 0);
75  Register_int("trajectory_number_step", 0);
76  Register_int("save_config_interval", 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 leapfrog_Nf2(void);
87 
88 #ifdef USE_TESTMANAGER_AUTOREGISTER
89  namespace {
90 #if defined(USE_GROUP_SU2)
91  // Nc=2 is not available.
92 #else
93  static const bool is_registered = TestManager::RegisterTest(
94  test_name,
96  );
97 #endif
98  }
99 #endif
100 
101  //====================================================================
102  int leapfrog_Nf2(void)
103  {
104  // ##### parameter setup #####
105  int Nc = CommonParameters::Nc();
106  int Nvol = CommonParameters::Nvol();
107  int Ndim = CommonParameters::Ndim();
108 
109  Parameters *params_test = new Parameters_Test_HMC_Clover;
110  Parameters *params_action_G = ParametersFactory::New("Action.G_Rectangle");
111  Parameters *params_clover = ParametersFactory::New("Fopr.Clover");
112  Parameters *params_proj = ParametersFactory::New("Projection");
113  Parameters *params_smear = ParametersFactory::New("Smear");
114  Parameters *params_dr_smear = ParametersFactory::New("Director_Smear");
115  Parameters *params_solver_MD = ParametersFactory::New("Solver");
116  Parameters *params_solver_H = ParametersFactory::New("Solver");
117  Parameters *params_hmc = ParametersFactory::New("HMC.Leapfrog");
118  Parameters *params_all = new Parameters;
119 
120  params_all->Register_Parameters("Test_HMC_Clover", params_test);
121  params_all->Register_Parameters("Action_G_Rectangle", params_action_G);
122  params_all->Register_Parameters("Fopr_Clover", params_clover);
123  params_all->Register_Parameters("Projection", params_proj);
124  params_all->Register_Parameters("Smear", params_smear);
125  params_all->Register_Parameters("Director_Smear", params_dr_smear);
126  params_all->Register_Parameters("Solver_MD", params_solver_MD);
127  params_all->Register_Parameters("Solver_H", params_solver_H);
128  params_all->Register_Parameters("HMC_Leapfrog", params_hmc);
129 
130  ParameterManager_YAML params_manager;
131  params_manager.read_params(filename_input, params_all);
132 
133  const string str_gconf_status = params_test->get_string("gauge_config_status");
134  const string str_gconf_read = params_test->get_string("gauge_config_type_input");
135  const string readfile = params_test->get_string("config_filename_input");
136  const string str_gconf_write = params_test->get_string("gauge_config_type_output");
137  const string writefile = params_test->get_string("config_filename_output");
138  int iconf = params_test->get_int("trajectory_number");
139  const int Ntraj = params_test->get_int("trajectory_number_step");
140  const int i_save_conf = params_test->get_int("save_config_interval");
141  const string str_vlevel = params_test->get_string("verbose_level");
142 
143  const bool do_check = params_test->is_set("expected_result");
144  const double expected_result = do_check ? params_test->get_double("expected_result") : 0.0;
145 
146  const string str_gmset_type = params_clover->get_string("gamma_matrix_type");
147  const string str_proj_type = params_proj->get_string("projection_type");
148  const string str_smear_type = params_smear->get_string("smear_type");
149  const string str_solver_MD_type = params_solver_MD->get_string("solver_type");
150  const string str_solver_H_type = params_solver_H->get_string("solver_type");
151 
153 
154  //- print input parameters
155  vout.general(vl, " gconf_status = %s\n", str_gconf_status.c_str());
156  vout.general(vl, " gconf_read = %s\n", str_gconf_read.c_str());
157  vout.general(vl, " readfile = %s\n", readfile.c_str());
158  vout.general(vl, " gconf_write = %s\n", str_gconf_write.c_str());
159  vout.general(vl, " writefile = %s\n", writefile.c_str());
160  vout.general(vl, " iconf = %d\n", iconf);
161  vout.general(vl, " Ntraj = %d\n", Ntraj);
162  vout.general(vl, " i_save_conf = %d\n", i_save_conf);
163  vout.general(vl, " vlevel = %s\n", str_vlevel.c_str());
164  vout.general(vl, " gmset_type = %s\n", str_gmset_type.c_str());
165  vout.general(vl, " proj_type = %s\n", str_proj_type.c_str());
166  vout.general(vl, " smear_type = %s\n", str_smear_type.c_str());
167  vout.general(vl, " solver_MD_type = %s\n", str_solver_MD_type.c_str());
168  vout.general(vl, " solver_H_type = %s\n", str_solver_H_type.c_str());
169  vout.general(vl, "\n");
170 
171  //- input parameter check
172  int err = 0;
173  err += ParameterCheck::non_NULL(str_gconf_status);
174  err += ParameterCheck::non_negative(iconf);
175  err += ParameterCheck::non_negative(Ntraj);
176  err += ParameterCheck::non_negative(i_save_conf);
177 
178  if (err) {
179  vout.crucial(vl, "%s: Input parameters have not been set.\n", test_name.c_str());
180  abort();
181  }
182 
183 
184  // ##### object setup #####
185  Field_G *U = new Field_G(Nvol, Ndim);
186  GaugeConfig *gconf_read = new GaugeConfig(str_gconf_read);
187  GaugeConfig *gconf_write = new GaugeConfig(str_gconf_write);
188 
189  if (str_gconf_status == "Continue") {
190  gconf_read->read_file((Field *)U, readfile);
191  } else if (str_gconf_status == "Cold_start") {
192  U->set_unit();
193  } else if (str_gconf_status == "Hot_start") {
194  RandomNumbers_Mseries rand(1234567);
195  U->set_random(&rand);
196  } else {
197  vout.crucial(vl, "%s: unsupported gconf status \"%s\".\n", test_name.c_str(), str_gconf_status.c_str());
198  abort();
199  }
200 
201  Action_G_Rectangle *action_G = new Action_G_Rectangle; // plaq.+rectangle (SA)
202  action_G->set_parameters(*params_action_G);
203 
204  Fopr_Clover *fopr_c = new Fopr_Clover(str_gmset_type); // define fermion operator (SA)
205  fopr_c->set_parameters(*params_clover);
206 
207  Force_F_Clover_Nf2 *force_fopr_c = new Force_F_Clover_Nf2(str_gmset_type);
208  // define fermion force (SA)
209  force_fopr_c->set_parameters(*params_clover);
210 
211  // define smearing method (SA)
212  Projection *proj = Projection::New(str_proj_type);
213  Smear *smear = Smear::New(str_smear_type, proj);
214  smear->set_parameters(*params_smear);
215 
216  // define force smearing method (SA)
217  ForceSmear *force_smear = ForceSmear::New(str_smear_type, proj);
218  force_smear->set_parameters(*params_smear);
219 
220  Director_Smear *dr_smear = new Director_Smear((Smear *)smear);
221  dr_smear->set_parameters(*params_dr_smear);
222 
223  Fopr_Smeared *fopr_smear = new Fopr_Smeared((Fopr *)fopr_c, dr_smear);
224  // define smeared fermion operator (SA)
225  Force_F_Smeared *force_fopr_smear
226  = new Force_F_Smeared((Force *)force_fopr_c, (ForceSmear *)force_smear, dr_smear);
227  // define smeared fermion force (SA)
228 
229  Solver *solver_MD = Solver::New(str_solver_MD_type, fopr_smear);
230  solver_MD->set_parameters(*params_solver_MD);
231  Fprop *fprop_MD = new Fprop_Standard_lex(solver_MD);
232 
233  Solver *solver_H = Solver::New(str_solver_H_type, fopr_smear);
234  solver_H->set_parameters(*params_solver_H);
235  Fprop *fprop_H = new Fprop_Standard_lex(solver_H);
236 
237  Action_F_Standard_lex *action_F
238  = new Action_F_Standard_lex((Fopr *)fopr_smear, (Force *)force_fopr_smear,
239  fprop_MD, fprop_H);
240  // define fermion action (SA)
241 
242 
243  valarray<Action *> actions(2);
244  actions[0] = (Action *)action_G; // register action[0] (SA)
245  actions[1] = (Action *)action_F; // register action[1] (SA)
246 
247  valarray<Director *> directors(1);
248  directors[0] = (Director *)dr_smear; // register director[0] (SA)
249 
250 
251  //- Random number is initialized with a parameter specified by iconf
252  RandomNumbers *rand = new RandomNumbers_Mseries(iconf);
253 
254 
255  HMC_Leapfrog hmc(actions, directors, rand); // define hmc_leapfrog (SA)
256  hmc.set_parameters(*params_hmc);
257 
258  Timer *timer = new Timer(test_name);
259 
260 
261  // #### Execution main part ####
262  timer->start();
263 
264  vout.general(vl, "HMC: Ntraj = %d\n", Ntraj); // a number of trajectory (SA)
265 
266  double result = 0.0;
267  for (int traj = 0; traj < Ntraj; ++traj) {
268  vout.general(vl, "\n");
269  vout.general(vl, "traj = %d\n", traj);
270 
271  result = hmc.update(*U); // hmc update (SA)
272 
273  if ((iconf + traj + 1) % i_save_conf == 0) {
274  gconf_write->write_file((Field *)U, writefile);
275  }
276  }
277 
278  timer->report();
279 
280 
281  // ##### tidy up #####
282  delete params_test;
283  delete params_action_G;
284  delete params_clover;
285  delete params_proj;
286  delete params_smear;
287  delete params_dr_smear;
288  delete params_solver_MD;
289  delete params_solver_H;
290  delete params_hmc;
291  delete params_all;
292 
293  delete timer;
294 
295  delete U;
296  delete gconf_read;
297  delete gconf_write;
298 
299  delete rand;
300 
301  delete action_G;
302  delete action_F;
303 
304  delete fopr_c;
305  delete force_fopr_c;
306 
307  delete proj;
308  delete smear;
309  delete force_smear;
310  delete dr_smear;
311  delete fopr_smear;
312  delete force_fopr_smear;
313 
314  delete solver_MD;
315  delete fprop_MD;
316  delete solver_H;
317  delete fprop_H;
318 
319 
320  if (do_check) {
321  return Test::verify(expected_result, result);
322  } else {
323  vout.detailed(vl, "check skipped: expected_result not set.\n\n");
324  return EXIT_SKIP;
325  }
326  }
327 } // namespace Test_HMC_Clover
#define EXIT_SKIP
Definition: test.h:17
Random number generator base on M-series.
BridgeIO vout
Definition: bridgeIO.cpp:207
void read_params(const std::string &params_file, Parameters *params)
read parameters from file.
void detailed(const char *format,...)
Definition: bridgeIO.cpp:50
void set_parameters(const Parameters &params)
void general(const char *format,...)
Definition: bridgeIO.cpp:38
Definition: fprop.h:20
Container of Field-type object.
Definition: field.h:37
virtual void set_parameters(const Parameters &)=0
Base class of fermion force calculation.
Definition: force.h:34
int get_int(const string &key) const
Definition: parameters.cpp:40
Class for parameters.
Definition: parameters.h:40
static Parameters * New(const std::string &realm)
void set_random(RandomNumbers *rand)
Definition: field_G_imp.cpp:62
Base class of HMC action class family.
Definition: action.h:35
virtual void set_parameters(const Parameters &params)=0
smeared fermion operator.
Definition: fopr_Smeared.h:40
void set_parameters(const Parameters &params)
Setting parameters of clover fermion force.
void set_unit()
Definition: field_G_imp.cpp:39
Base class for force calculation of smeared operators.
Definition: forceSmear.h:37
static bool RegisterTest(const std::string &key, const Test_function func)
Definition: testManager.h:79
SU(N) gauge field.
Definition: field_G.h:36
Manager of commonly used data object in HMC.
Definition: director.h:33
bool is_set(const string &) const
Definition: parameters.cpp:366
double get_double(const string &key) const
Definition: parameters.cpp:25
double update(Field_G &)
void set_parameters(const Parameters &params)
int non_NULL(const std::string v)
Definition: checker.cpp:61
void start()
Definition: timer.cpp:44
Get quark propagator for Fopr with lexical site index.
void crucial(const char *format,...)
Definition: bridgeIO.cpp:26
void Register_Parameters(const string &, Parameters *const)
Definition: parameters.cpp:359
base class for projection operator into gauge group.
Definition: projection.h:33
void write_file(Field *u, const string &filename)
Definition: gaugeConfig.cpp:97
Manager of smeared configurations.
Base class for linear solver class family.
Definition: solver.h:37
Base class of random number generators.
Definition: randomNumbers.h:40
Bridge::VerboseLevel vl
Definition: checker.cpp:18
VerboseLevel
Definition: bridgeIO.h:25
Force calculation for smeared fermion operators.
void set_parameters(const Parameters &params)
set paramters, must be called before set_config
int non_negative(const int v)
Definition: checker.cpp:21
base class for smearing of link variables.
Definition: smear.h:36
Parameter manager with YAML parser.
GaugeConfig class for file I/O of gauge configuration.
Definition: gaugeConfig.h:56
Definition: timer.h:31
Base class of fermion operator family.
Definition: fopr.h:39
int verify(const double expected, const double result)
Definition: test.cpp:27
void read_file(Field *u, const string &filename)
Definition: gaugeConfig.cpp:85
string get_string(const string &key) const
Definition: parameters.cpp:85
void report(const Bridge::VerboseLevel vl=Bridge::GENERAL)
Definition: timer.cpp:128
virtual void set_parameters(const Parameters &)=0
Standard fermion action for HMC.
static VerboseLevel set_verbose_level(const std::string &str)
Definition: bridgeIO.cpp:191
void set_parameters(const Parameters &params)
Definition: fopr_Clover.cpp:81