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test_SF_fAfP_Boundary_Meson_2ptFunction.cpp
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1 
14 #include "test.h"
15 
16 #include "Fopr/fopr_Clover_SF.h"
17 #include "Fopr/fopr_Smeared.h"
18 
19 #include "IO/gaugeConfig.h"
20 
24 
25 #include "Tools/gammaMatrixSet.h"
27 
28 //====================================================================
29 
48 namespace Test_SF_fAfP {
49  const std::string test_name = "SF_fAfP.Boundary_Meson_2ptFunction";
50 
51  //- test-private parameters
52  namespace {
53  const std::string filename_input = "test_SF_fAfP_Boundary_Meson_2ptFunction.yaml";
54  }
55 
56  //- prototype declaration
58 
59 #ifdef USE_TESTMANAGER_AUTOREGISTER
60  namespace {
61 #if defined(USE_OPENMP) || defined(USE_GROUP_SU2)
62  // Nc=2 is not available.
63 #else
64  static const bool is_registered = TestManager::RegisterTest(
65  test_name,
67  );
68 #endif
69  }
70 #endif
71 
72  //====================================================================
74  {
75  // ##### parameter setup #####
76  const int Nc = CommonParameters::Nc();
77  const int Nd = CommonParameters::Nd();
78  const int Ndim = CommonParameters::Ndim();
79  const int Nvol = CommonParameters::Nvol();
80 
81  const Parameters params_all = ParameterManager::read(filename_input);
82 
83  const Parameters params_test = params_all.lookup("Test_SF_fAfP");
84  const Parameters params_clover = params_all.lookup("Fopr_Clover_SF");
85  const Parameters params_proj = params_all.lookup("Projection");
86  const Parameters params_smear = params_all.lookup("Smear_SF");
87  const Parameters params_dr_smear = params_all.lookup("Director_Smear");
88  const Parameters params_solver = params_all.lookup("Solver");
89  const Parameters params_source = params_all.lookup("Source_Wall_SF");
90 
91  const string str_gconf_status = params_test.get_string("gauge_config_status");
92  const string str_gconf_read = params_test.get_string("gauge_config_type_input");
93  const string readfile = params_test.get_string("config_filename_input");
94  const string str_rand_type = params_test.get_string("random_number_type");
95  const unsigned long seed = params_test.get_unsigned_long("seed_for_random_number");
96  const string str_vlevel = params_test.get_string("verbose_level");
97 
98  const bool do_check = params_test.is_set("expected_result");
99  const double expected_result = do_check ? params_test.get_double("expected_result") : 0.0;
100 
101  const string str_gmset_type = params_clover.get_string("gamma_matrix_type");
102  const string str_proj_type = params_proj.get_string("projection_type");
103  const string str_smear_type = params_smear.get_string("smear_type");
104  const int Nsmear = params_dr_smear.get_int("number_of_smearing");
105  const string str_solver_type = params_solver.get_string("solver_type");
106 
107  const Bridge::VerboseLevel vl = vout.set_verbose_level(str_vlevel);
108 
109  //- print input parameters
110  vout.general(vl, " gconf_status = %s\n", str_gconf_status.c_str());
111  vout.general(vl, " gconf_read = %s\n", str_gconf_read.c_str());
112  vout.general(vl, " readfile = %s\n", readfile.c_str());
113  vout.general(vl, " rand_type = %s\n", str_rand_type.c_str());
114  vout.general(vl, " seed = %lu\n", seed);
115  vout.general(vl, " vlevel = %s\n", str_vlevel.c_str());
116  vout.general(vl, " gmset_type = %s\n", str_gmset_type.c_str());
117  vout.general(vl, " proj_type = %s\n", str_proj_type.c_str());
118  vout.general(vl, " smear_type = %s\n", str_smear_type.c_str());
119  vout.general(vl, " solver_type = %s\n", str_solver_type.c_str());
120  vout.general(vl, "\n");
121 
122  //- input parameter check
123  int err = 0;
124  err += ParameterCheck::non_NULL(str_gconf_status);
125 
126  if (err) {
127  vout.crucial(vl, "Error at %s: input parameters have not been set\n", test_name.c_str());
128  exit(EXIT_FAILURE);
129  }
130 
131  if ( (Nsmear > 0) && (str_proj_type == "Stout_SU3") ) {
132  if (CommonParameters::Nc() != 3) {
133  vout.crucial(vl, "check skipped: Nc = 3 is needed, but Nc = %d.\n\n", CommonParameters::Nc());
134  return EXIT_SKIP;
135  }
136  }
137 
138 
139  RandomNumberManager::initialize(str_rand_type, seed);
140 
141 
142  // #### Set up a gauge configuration ####
143  unique_ptr<Field_G> U(new Field_G(Nvol, Ndim));
144 
145  if (str_gconf_status == "Continue") {
146  GaugeConfig(str_gconf_read).read(U, readfile);
147  } else if (str_gconf_status == "Cold_start") {
148  GaugeConfig("Unit").read(U);
149  } else if (str_gconf_status == "Hot_start") {
150  GaugeConfig("Random").read(U);
151  } else {
152  vout.crucial(vl, "Error at %s: unsupported gconf status \"%s\"\n", test_name.c_str(), str_gconf_status.c_str());
153  exit(EXIT_FAILURE);
154  }
155 
156  if (Nsmear > 0) {
157  unique_ptr<Projection> proj(Projection::New(str_proj_type));
158  proj->set_parameters(params_all.lookup("Projection"));
159 
160  unique_ptr<Smear> smear(Smear::New(str_smear_type, proj));
161  smear->set_parameters(params_all.lookup("Smear_SF"));
162 
163  const unique_ptr<Director_Smear> dr_smear(new Director_Smear(smear));
164  dr_smear->set_parameters(params_all.lookup("Director_Smear"));
165  dr_smear->set_config(U);
166 
167  const Field_G *Usmear = (Field_G *)dr_smear->getptr_smearedConfig(Nsmear);
168  copy(*U, *Usmear);
169  }
170 
171 
172  // #### object setup #####
173  unique_ptr<GammaMatrixSet> gmset(GammaMatrixSet::New(str_gmset_type));
174 
175  //- NB. Chiral repr has not been implemented for SF, yet.
176  // unique_ptr<Fopr> fopr_c(Fopr::New("Clover_SF", str_gmset_type));
177  unique_ptr<Fopr> fopr(new Fopr_Clover_SF());
178  fopr->set_parameters(params_clover);
179  fopr->set_config(U);
180 
181  unique_ptr<Solver> solver(Solver::New(str_solver_type, fopr));
182  solver->set_parameters(params_solver);
183 
184  const unique_ptr<Fprop> fprop_lex(new Fprop_Standard_lex(solver));
185 
186  const unique_ptr<Source_Wall_SF> source(new Source_Wall_SF());
187  source->set_parameters(params_source);
188  source->set_config(U);
189 
190  const unique_ptr<Timer> timer(new Timer(test_name));
191 
192 
193  // #### Execution main part ####
194  timer->start();
195 
196  std::vector<Field_F> H(Nc * Nd);
197  std::vector<Field_F> Hpr(Nc * Nd);
198 
199  vout.general(vl, "\n");
200  vout.general(vl, "Solving quark propagator:\n");
201  vout.general(vl, " color spin Nconv diff diff2\n");
202 
203  for (int icolor = 0; icolor < Nc; ++icolor) {
204  for (int ispin = 0; ispin < Nd / 2; ++ispin) {
205  Field_F b;
206  source->set_t0(b, icolor, ispin);
207 
208  int idx = icolor + Nc * ispin;
209 
210  Field_F xq;
211  int Nconv;
212  double diff;
213  fprop_lex->invert_D(xq, b, Nconv, diff);
214 
215  Field_F y(b);
216  fopr->set_mode("D");
217 
218  fopr->mult(y, xq); // y = fopr_w->mult(xq);
219  axpy(y, -1.0, b); // y -= b;
220  double diff2 = y.norm2();
221 
222  vout.general(vl, " %2d %2d %6d %12.4e %12.4e\n",
223  icolor, ispin, Nconv, diff, diff2);
224 
225  H[idx] = xq;
226  xq.set(0.0);
227  Hpr[idx] = xq;
228  }
229 
230  for (int ispin = Nd / 2; ispin < Nd; ++ispin) {
231  Field_F b;
232  source->set_tT(b, icolor, ispin);
233 
234  int idx = icolor + Nc * ispin;
235 
236  Field_F xq;
237  int Nconv;
238  double diff;
239  fprop_lex->invert_D(xq, b, Nconv, diff);
240 
241  Field_F y(b);
242  fopr->set_mode("D");
243 
244  fopr->mult(y, xq); // y = fopr_w->mult(xq);
245  axpy(y, -1.0, b); // y -= b;
246  double diff2 = y.norm2();
247 
248  vout.general(vl, " %2d %2d %6d %12.4e %12.4e\n",
249  icolor, ispin, Nconv, diff, diff2);
250 
251  Hpr[idx] = xq;
252  xq.set(0.0);
253  H[idx] = xq;
254  }
255  }
256 
257 #ifdef DEBUG
258  Index_lex index;
259  for (int t = 0; t < 2; ++t) {
260  int site = index.site(0, 0, 0, t);
261  for (int c1 = 0; c1 < Nc; ++c1) {
262  for (int c0 = 0; c0 < Nc; ++c0) {
263  for (int s1 = 0; s1 < Nd; ++s1) {
264  for (int s0 = 0; s0 < Nd; ++s0) {
265  vout.general(vl, "H[%d,%d,%d,%d,%d]=%lf %lf\n",
266  t, c1, c0, s1, s0,
267  H[c0 + Nc * s0].cmp_r(c1, s1, site),
268  H[c0 + Nc * s0].cmp_i(c1, s1, site));
269  }
270  }
271  }
272  }
273  }
274  for (int t = 0; t < 2; ++t) {
275  int site = index.site(0, 0, 0, t);
276  for (int c1 = 0; c1 < Nc; ++c1) {
277  for (int c0 = 0; c0 < Nc; ++c0) {
278  for (int s1 = 0; s1 < Nd; ++s1) {
279  for (int s0 = 0; s0 < Nd; ++s0) {
280  vout.general(vl, "Hpr[%d,%d,%d,%d,%d]=%lf %lf\n",
281  t, c1, c0, s1, s0,
282  Hpr[c0 + Nc * s0].cmp_r(c1, s1, site),
283  Hpr[c0 + Nc * s0].cmp_i(c1, s1, site));
284  }
285  }
286  }
287  }
288  }
289 #endif
290 
291  //- meson correlators
292  vout.general(vl, "\n");
293  vout.general(vl, "boundary 2-point correlator with SF BC:\n");
294 
295  Corr2pt_Wilson_SF corr(gmset);
296  const double result = corr.fAfP(H, Hpr);
297 
298  timer->report();
299 
301 
302 
303  if (do_check) {
304  return Test::verify(result, expected_result);
305  } else {
306  vout.detailed(vl, "check skipped: expected_result not set.\n\n");
307  return EXIT_SKIP;
308  }
309  }
310 } // namespace Test_SF_fAfP
#define EXIT_SKIP
Definition: test.h:17
BridgeIO vout
Definition: bridgeIO.cpp:503
void set_config(Field *U)
setting pointer to configuration
void detailed(const char *format,...)
Definition: bridgeIO.cpp:216
double norm2() const
Definition: field.cpp:637
void set(const int jin, const int site, const int jex, double v)
Definition: field.h:176
virtual void set_parameters(const Parameters &param)=0
int site(const int &x, const int &y, const int &z, const int &t) const
Definition: index_lex.h:53
Wall source for SF boundary propagator.
void general(const char *format,...)
Definition: bridgeIO.cpp:197
virtual void set_mode(const std::string mode)
setting the mode of multiplication if necessary. Default implementation here is just to avoid irrelev...
Definition: fopr.h:94
int solver(const std::string &)
virtual void set_config(Field *)=0
setting pointer to the gauge configuration.
Two-point correlator for Wilson-type fermions with SF BC.
virtual void set_parameters(const Parameters &)=0
int get_int(const string &key) const
Definition: parameters.cpp:192
Class for parameters.
Definition: parameters.h:46
void copy(Field &y, const Field &x)
copy(y, x): y = x
Definition: field.cpp:532
Wilson-type fermion field.
Definition: field_F.h:37
virtual void set_parameters(const Parameters &params)=0
Parameters lookup(const string &key) const
Definition: parameters.h:79
static bool RegisterTest(const std::string &key, const Test_function func)
Definition: testManager.h:69
virtual void invert_D(Field &, const Field &, int &, double &)=0
static bool initialize(const std::string &rng_type, unsigned long seed)
SU(N) gauge field.
Definition: field_G.h:38
void read(Field_G *U, const string &filename=string())
double fAfP(const std::vector< Field_F > &sq1, const std::vector< Field_F > &sq2)
unsigned long get_unsigned_long(const string &key) const
Definition: parameters.cpp:209
double get_double(const string &key) const
Definition: parameters.cpp:175
void set_parameters(const Parameters &params)
Lexical site index.
Definition: index_lex.h:34
virtual void set_parameters(const Parameters &)=0
void set_t0(Field_F &src, const int ic, const int id)
Set the 3D wall source at t=1.
int non_NULL(const std::string v)
bool is_set(const string &key) const
Definition: parameters.cpp:528
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:320
Get quark propagator for Fopr with lexical site index.
void set_config(Field *U)
set pointer to original thin link variable
void crucial(const char *format,...)
Definition: bridgeIO.cpp:178
static void read(const std::string &params_file, Parameters &params)
void set_tT(Field_F &src, const int ic, const int id)
Set the 3D wall source at t=T-1.
Manager of smeared configurations.
int verify(const double result, const double expected, double eps)
Definition: test.cpp:27
Bridge::VerboseLevel vl
Field * getptr_smearedConfig(const int i_smear)
get pointer to i-th smeared config (0th is original thin link)
VerboseLevel
Definition: bridgeIO.h:42
virtual void mult(Field &, const Field &)=0
multiplies fermion operator to a given field (2nd argument)
void set_parameters(const Parameters &params)
set parameters, must be called before set_config
GaugeConfig class for file I/O of gauge configuration.
Definition: gaugeConfig.h:79
Definition: timer.h:31
string get_string(const string &key) const
Definition: parameters.cpp:221
void report(const Bridge::VerboseLevel vl=Bridge::GENERAL)
Definition: timer.cpp:128
static VerboseLevel set_verbose_level(const std::string &str)
Definition: bridgeIO.cpp:131
Clover fermion operator.