Bridge++  Ver. 1.2.x
 All Classes Namespaces Files Functions Variables Typedefs Enumerations Enumerator Friends Macros Pages
test_Spectrum_Clover_2ptFunction_eo.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_Clover.h"
24 #include "fopr_Clover_eo.h"
25 #include "fprop_Standard_eo.h"
26 
27 #include "director_Smear.h"
28 #include "fopr_Smeared.h"
29 
30 #include "gammaMatrixSet.h"
31 #include "gaugeFixing.h"
32 #include "projection.h"
33 #include "smear.h"
34 #include "solver.h"
35 #include "source.h"
36 
37 #include "corr2pt_4spinor.h"
38 
39 //====================================================================
41 
55 namespace Test_Spectrum_Clover {
56  const std::string test_name = "Spectrum.Clover.Hadron2ptFunction_eo";
57 
58  //- test-private parameters
59  namespace {
60  const std::string filename_input = "test_Spectrum_Clover_Hadron2ptFunction.yaml";
61  const std::string filename_output = "stdout";
62 
63  class Parameters_Test_Spectrum_Clover : public Parameters {
64  public:
65  Parameters_Test_Spectrum_Clover()
66  {
67  Register_string("gauge_config_status", "NULL");
68  Register_string("gauge_config_type_input", "NULL");
69  Register_string("config_filename_input", "NULL");
70 
71  Register_int("number_of_valence_quarks", 0);
72 
73  Register_string("verbose_level", "NULL");
74 
75  Register_double("expected_result", 0.0);
76  }
77  };
78 
79  class Parameters_Quark : virtual public Parameters {
80  public:
81  Parameters_Quark()
82  {
83  Register_Parameters("Fopr_Clover", ParametersFactory::New("Fopr.Clover"));
84  Register_Parameters("Source", ParametersFactory::New("Source"));
85  }
86  };
87  }
88 
89  //- prototype declaration
90  int hadron_2ptFunction_eo(void);
91 
92 #ifdef USE_TESTMANAGER_AUTOREGISTER
93  namespace {
94 #if defined(USE_GROUP_SU2)
95  // Nc=2 is not available.
96 #else
97  static const bool is_registered = TestManager::RegisterTest(
98  test_name,
100  );
101 #endif
102  }
103 #endif
104 
105  //====================================================================
107  {
108  // #### parameter setup ####
109  int Nc = CommonParameters::Nc();
110  int Nd = CommonParameters::Nd();
111  int Ndim = CommonParameters::Ndim();
112  int Nvol = CommonParameters::Nvol();
113 
114  ParameterManager_YAML params_manager;
115 
116  Parameters *params_test = new Parameters_Test_Spectrum_Clover;
117  Parameters *params_pre = new Parameters;
118 
119  params_pre->Register_Parameters("Test_Spectrum_Clover", params_test);
120 
121  params_manager.read_params(filename_input, params_pre);
122 
123 
124  const int N_quark = params_test->get_int("number_of_valence_quarks");
125  std::vector<Parameters *> params_quark(N_quark);
126 
127  for (int iq = 0; iq < N_quark; ++iq) {
128  params_quark[iq] = new Parameters_Quark;
129  }
130 
131  Parameters *params_gfix = ParametersFactory::New("GaugeFixing");
132  Parameters *params_proj = ParametersFactory::New("Projection");
133  Parameters *params_smear = ParametersFactory::New("Smear");
134  Parameters *params_dr_smear = ParametersFactory::New("Director_Smear");
135  Parameters *params_solver = ParametersFactory::New("Solver");
136  Parameters *params_all = new Parameters;
137 
138 
139  std::stringstream oss;
140 
141  for (int iq = 0; iq < N_quark; ++iq) {
142  oss.str("");
143  oss << "Quark_" << iq + 1;
144  string str = oss.str();
145  params_all->Register_Parameters(str.c_str(), params_quark[iq]);
146  }
147 
148  params_all->Register_Parameters("GaugeFixing", params_gfix);
149  params_all->Register_Parameters("Projection", params_proj);
150  params_all->Register_Parameters("Smear", params_smear);
151  params_all->Register_Parameters("Director_Smear", params_dr_smear);
152  params_all->Register_Parameters("Solver", params_solver);
153 
154  params_manager.read_params(filename_input, params_all);
155 
156  const string str_gconf_status = params_test->get_string("gauge_config_status");
157  const string str_gconf_read = params_test->get_string("gauge_config_type_input");
158  const string readfile = params_test->get_string("config_filename_input");
159  const string str_vlevel = params_test->get_string("verbose_level");
160 
161  const bool do_check = params_test->is_set("expected_result");
162  const double expected_result = do_check ? params_test->get_double("expected_result") : 0.0;
163 
164  const string str_gfix_type = params_gfix->get_string("gauge_fixing_type");
165 
166  std::vector<Parameters *> params_clover(N_quark);
167  std::vector<Parameters *> params_source(N_quark);
168 
169  for (int iq = 0; iq < N_quark; ++iq) {
170  params_clover[iq] = params_quark[iq]->get_Parameters("Fopr_Clover");
171  params_source[iq] = params_quark[iq]->get_Parameters("Source");
172  }
173 
174  const string str_proj_type = params_proj->get_string("projection_type");
175  const string str_smear_type = params_smear->get_string("smear_type");
176  const string str_solver_type = params_solver->get_string("solver_type");
177 
179 
180  //- print input parameters
181  vout.general(vl, " gconf_status = %s\n", str_gconf_status.c_str());
182  vout.general(vl, " gconf_read = %s\n", str_gconf_read.c_str());
183  vout.general(vl, " readfile = %s\n", readfile.c_str());
184  vout.general(vl, " vlevel = %s\n", str_vlevel.c_str());
185  vout.general(vl, " gfix_type = %s\n", str_gfix_type.c_str());
186  vout.general(vl, " proj_type = %s\n", str_proj_type.c_str());
187  vout.general(vl, " smear_type = %s\n", str_smear_type.c_str());
188  vout.general(vl, " solver_type = %s\n", str_solver_type.c_str());
189 
190  // NB. all str_gmset_type are supposed to be the same.
191  string str_gmset_type = params_clover[0]->get_string("gamma_matrix_type");
192  vout.general(vl, " gmset_type = %s\n", str_gmset_type.c_str());
193 
194  std::vector<std::string> str_source_type(N_quark);
195 
196  for (int iq = 0; iq < N_quark; ++iq) {
197  vout.general(vl, " Quark_%d:\n", iq + 1);
198 
199  str_source_type[iq] = params_source[iq]->get_string("source_type");
200  vout.general(vl, " source_type = %s\n", str_source_type[iq].c_str());
201  }
202  vout.general(vl, "\n");
203 
204  //- input parameter check
205  int err = 0;
206  err += ParameterCheck::non_NULL(str_gconf_status);
207 
208  if (err) {
209  vout.crucial(vl, "%s: Input parameters have not been set.\n", test_name.c_str());
210  abort();
211  }
212 
213 
214  // #### Set up a gauge configuration ####
215  Field_G *U = new Field_G(Nvol, Ndim);
216  GaugeConfig *gconf_read = new GaugeConfig(str_gconf_read);
217 
218  if (str_gconf_status == "Continue") {
219  gconf_read->read_file((Field *)U, readfile);
220  } else if (str_gconf_status == "Cold_start") {
221  U->set_unit();
222  } else if (str_gconf_status == "Hot_start") {
223  RandomNumbers_Mseries rand(1234567);
224  U->set_random(&rand);
225  } else {
226  vout.crucial(vl, "%s: unsupported gconf status \"%s\".\n", test_name.c_str(), str_gconf_status.c_str());
227  abort();
228  }
229 
230  Projection *proj = Projection::New(str_proj_type);
231  Smear *smear = Smear::New(str_smear_type, proj);
232  smear->set_parameters(*params_smear);
233 
234  Director_Smear *dr_smear = new Director_Smear((Smear *)smear);
235  dr_smear->set_parameters(*params_dr_smear);
236  dr_smear->set_config(U);
237 
238  int Nsmear = dr_smear->get_Nsmear();
239  Field_G *Usmear = (Field_G *)dr_smear->getptr_smearedConfig(Nsmear);
240 
241 
242  // #### Gauge fixing ####
243  Staples *staple = new Staples;
244  Field_G *Ufix = new Field_G(Nvol, Ndim);
245 
246  int ndelay = 1000;
247  RandomNumbers *rand = new RandomNumbers_Mseries(ndelay);
248 
249  GaugeFixing *gfix = GaugeFixing::New(str_gfix_type, rand);
250  gfix->set_parameters(*params_gfix);
251 
252  double plaq = staple->plaquette(*Usmear);
253  vout.general(vl, "plaq(original) = %18.14f\n", plaq);
254 
255  gfix->fix(*Ufix, *Usmear);
256 
257  double plaq2 = staple->plaquette(*Ufix);
258  vout.general(vl, "plaq(fixed) = %18.14f\n", plaq2);
259  vout.general(vl, "plaq(diff) = %18.10e\n", plaq - plaq2);
260 
261 
262  // #### object setup #####
263  GammaMatrixSet *gmset = GammaMatrixSet::New(str_gmset_type);
264 
265  std::vector<Fopr_Clover_eo *> fopr_c_eo(N_quark);
266  std::vector<Solver *> solver(N_quark);
267  std::vector<Fprop *> fprop_eo(N_quark);
268  std::vector<Source *> source(N_quark);
269 
270  // NB. Fopr_Clover is used only for check of diff2 below.
271  std::vector<Fopr_Clover *> fopr_c(N_quark);
272 
273  for (int iq = 0; iq < N_quark; ++iq) {
274  fopr_c_eo[iq] = new Fopr_Clover_eo(str_gmset_type);
275  fopr_c_eo[iq]->set_parameters(*params_clover[iq]);
276  fopr_c_eo[iq]->set_config(Ufix);
277 
278  solver[iq] = Solver::New(str_solver_type, fopr_c_eo[iq]);
279  solver[iq]->set_parameters(*params_solver);
280 
281  fprop_eo[iq] = new Fprop_Standard_eo(solver[iq]);
282 
283  source[iq] = Source::New(str_source_type[iq]);
284  source[iq]->set_parameters(*params_source[iq]);
285 
286  fopr_c[iq] = new Fopr_Clover(str_gmset_type);
287  fopr_c[iq]->set_parameters(*params_clover[iq]);
288  fopr_c[iq]->set_config(Ufix);
289  }
290 
291  Timer *timer = new Timer(test_name);
292 
293 
294  // #### Execution main part ####
295  timer->start();
296 
297  typedef std::valarray<Field_F> PropagatorSet;
298 
299  std::vector<PropagatorSet> sq(N_quark);
300  for (int iq = 0; iq < N_quark; ++iq) {
301  sq[iq].resize(Nc * Nd);
302 
303  for (int i = 0; i < Nc * Nd; ++i) {
304  sq[iq][i] = 0.0;
305  }
306  }
307 
308  Field_F b;
309  b = 0.0;
310 
311  int Nconv;
312  double diff, diff2;
313 
314  for (int iq = 0; iq < N_quark; ++iq) {
315  vout.general(vl, "Solving quark propagator, flavor = %d:\n", iq + 1);
316  vout.general(vl, " color spin Nconv diff diff2\n");
317 
318  for (int ispin = 0; ispin < Nd; ++ispin) {
319  for (int icolor = 0; icolor < Nc; ++icolor) {
320  int idx = icolor + Nc * ispin;
321  source[iq]->set(b, idx);
322 
323  fprop_eo[iq]->invert_D(sq[iq][idx], b, Nconv, diff);
324 
325  Field_F y(b);
326  fopr_c[iq]->set_mode("D");
327  fopr_c[iq]->mult(y, sq[iq][idx]); // y = fopr_c[iq]->mult(sq[iq][idx]);
328  axpy(y, -1.0, b); // y -= b;
329  diff2 = y.norm2();
330 
331  vout.general(vl, " %2d %2d %6d %12.4e %12.4e\n",
332  icolor, ispin, Nconv, diff, diff2);
333  }
334  }
335 
336  vout.general(vl, "\n");
337  }
338 
339 
340  //- meson correlators
341  std::ofstream log_file;
342  if (filename_output != "stdout") {
343  log_file.open(filename_output.c_str());
344  vout.init(log_file);
345  }
346 
347  vout.general(vl, "2-point correlator:\n");
348  Corr2pt_4spinor corr(gmset);
349  valarray<double> result(N_quark);
350 
351  //- case(iq_1 == iq_2)
352  for (int iq = 0; iq < N_quark; ++iq) {
353  vout.general(vl, "Flavor combination = %d, %d\n", iq + 1, iq + 1);
354  result[iq] = corr.meson_all(sq[iq], sq[iq]);
355  vout.general(vl, "\n");
356  }
357 
358 
359  //- case(iq_1 < iq_2)
360  for (int iq = 0; iq < N_quark; ++iq) {
361  for (int jq = iq + 1; jq < N_quark; ++jq) {
362  vout.general(vl, "Flavor combination = %d, %d\n", iq + 1, jq + 1);
363  double result_2 = corr.meson_all(sq[iq], sq[jq]);
364  vout.general(vl, "\n");
365  }
366  }
367 
368  if (filename_output != "stdout") {
369  log_file.close();
370  vout.init(std::cout);
371  }
372 
373  timer->report();
374 
375 
376  // #### tydy up ####
377  delete params_pre;
378  delete params_test;
379  delete params_gfix;
380  delete params_proj;
381  delete params_smear;
382  delete params_dr_smear;
383  delete params_solver;
384 
385  for (int iq = 0; iq < N_quark; ++iq) {
386  delete params_clover[iq];
387  delete params_source[iq];
388  delete params_quark[iq];
389  }
390 
391  delete params_all;
392 
393  delete timer;
394 
395  delete gconf_read;
396  delete U;
397  delete Ufix;
398 
399  delete dr_smear;
400 
401  delete rand;
402  delete staple;
403 
404  for (int iq = 0; iq < N_quark; ++iq) {
405  delete fopr_c_eo[iq];
406  delete solver[iq];
407  delete fprop_eo[iq];
408  delete source[iq];
409  delete fopr_c[iq];
410  }
411 
412  delete gfix;
413  delete gmset;
414  delete proj;
415  delete smear;
416 
417 
418  if (do_check) {
419  return Test::verify(expected_result, result[0]);
420  } else {
421  vout.detailed(vl, "check skipped: expected_result not set.\n\n");
422  return EXIT_SKIP;
423  }
424  }
425 } // namespace Test_Spectrum_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
double norm2() const
Definition: field.cpp:469
Staple construction.
Definition: staples.h:40
void general(const char *format,...)
Definition: bridgeIO.cpp:38
Container of Field-type object.
Definition: field.h:37
Two-point correlator for Wilson-type fermions.
double plaquette(const Field_G &)
calculates plaquette value.
Definition: staples.cpp:32
virtual void set_parameters(const Parameters &)=0
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
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:79
SU(N) gauge field.
Definition: field_G.h:36
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:366
double get_double(const string &key) const
Definition: parameters.cpp:25
Get quark propagator for Fopr with even-odd site index.
Even-odd Clover fermion operator.
Set of Gamma Matrices: basis class.
void init(std::ostream &os)
Definition: bridgeIO.h:43
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:193
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:26
double meson_all(const std::valarray< Field_F > &sq1, const std::valarray< Field_F > &sq2)
void Register_Parameters(const string &, Parameters *const)
Definition: parameters.cpp:359
base class for projection operator into gauge group.
Definition: projection.h:33
Manager of smeared configurations.
Base class of random number generators.
Definition: randomNumbers.h:40
Bridge::VerboseLevel vl
Definition: checker.cpp:18
VerboseLevel
Definition: bridgeIO.h:25
void set_parameters(const Parameters &params)
set paramters, must be called before set_config
base class for smearing of link variables.
Definition: smear.h:36
Parameter manager with YAML parser.
gauge fixing.
Definition: gaugeFixing.h:34
GaugeConfig class for file I/O of gauge configuration.
Definition: gaugeConfig.h:56
Definition: timer.h:31
virtual void fix(Field_G &Ufix, const Field_G &Uorg)=0
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
static VerboseLevel set_verbose_level(const std::string &str)
Definition: bridgeIO.cpp:191
virtual void set_parameters(const Parameters &params)=0