Bridge++  Ver.2.1.3
force_F_Wilson_TwistedMass_Nf2.cpp
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1 
12 
14  = "Force_F_Wilson_TwistedMass_Nf2";
15 
16 //====================================================================
18 {
19 
21 
22  std::string vlevel;
23  if (!params.fetch_string("verbose_level", vlevel)) {
24  m_vl = vout.set_verbose_level(vlevel);
25  } else {
27  }
28 
29  vout.general(m_vl, "%s: construction\n", class_name.c_str());
31 
32  std::string repr;
33  if (!params.fetch_string("gamma_matrix_type", repr)) {
34  m_repr = repr;
35  } else {
36  m_repr = "Dirac"; // default gamma-matrix type
37  vout.general(m_vl, "gamma_matrix_type is not given: defalt = %s\n",
38  m_repr.c_str());
39  }
40 
41  if ((m_repr != "Dirac") && (m_repr != "Chiral")) {
42  vout.crucial("Error at %s: unsupported gamma-matrix type: %s\n",
43  class_name.c_str(), m_repr.c_str());
44  exit(EXIT_FAILURE);
45  }
46 
47  const int Ndim = CommonParameters::Ndim();
48  const int Nvol = CommonParameters::Nvol();
49 
50  m_boundary.resize(Ndim);
51 
52  set_parameters_impl(params);
53 
54  m_fopr_tw = new Fopr_Wilson_TwistedMass(params);
55 
56  m_force1 = new Field_G(Nvol, Ndim);
57 
58  m_eta = new Field_F(Nvol, 1);
59  m_zeta = new Field_F(Nvol, 1);
60  m_eta2 = new Field_F(Nvol, 1);
61  m_eta3 = new Field_F(Nvol, 1);
62 
64  vout.general(m_vl, "%s: construction finished.\n",
65  class_name.c_str());
66 
67 }
68 
69 //====================================================================
70 void Force_F_Wilson_TwistedMass_Nf2::init(const std::string repr)
71 {
72 
74 
76 
77  vout.general(m_vl, "%s: construction\n", class_name.c_str());
79 
80  m_repr = repr;
81 
82  const int Ndim = CommonParameters::Ndim();
83  const int Nvol = CommonParameters::Nvol();
84 
85  m_boundary.resize(Ndim);
86 
88 
89  m_force1 = new Field_G(Nvol, Ndim);
90 
91  m_eta = new Field_F(Nvol, 1);
92  m_zeta = new Field_F(Nvol, 1);
93  m_eta2 = new Field_F(Nvol, 1);
94  m_eta3 = new Field_F(Nvol, 1);
95 
97  vout.general(m_vl, "%s: construction finished.\n",
98  class_name.c_str());
99 
100 }
101 
102 //====================================================================
104 {
105  delete m_fopr_tw;
106 
107  delete m_force1;
108  delete m_eta;
109  delete m_zeta;
110  delete m_eta2;
111  delete m_eta3;
112 }
113 
114 //====================================================================
116 {
117  set_parameters_impl(params);
118 
119  m_fopr_tw->set_parameters(params);
120 }
121 
122 
123 //====================================================================
125  const Parameters& params)
126 {
127  std::string vlevel;
128  if (!params.fetch_string("verbose_level", vlevel)) {
129  m_vl = vout.set_verbose_level(vlevel);
130  }
131 
132  //- fetch and check input parameters
133  double kappa, tw_mass;
134  std::vector<int> bc;
135 
136  int err = 0;
137  err += params.fetch_double("hopping_parameter", kappa);
138  err += params.fetch_double("twisted_mass", tw_mass);
139  err += params.fetch_int_vector("boundary_condition", bc);
140 
141  if (err) {
142  vout.crucial(m_vl, "Error at %s: input parameter not found.\n",
143  class_name.c_str());
144  exit(EXIT_FAILURE);
145  }
146 
147  set_parameters_impl(kappa, tw_mass, bc);
148 }
149 
150 
151 //====================================================================
153  const double kappa,
154  const double tw_mass,
155  const std::vector<int> bc)
156 {
157  set_parameters_impl(kappa, tw_mass, bc);
158 
160 }
161 
162 
163 //====================================================================
165  const double kappa,
166  const double tw_mass,
167  const std::vector<int> bc)
168 {
169 #pragma omp barrier
170 
171  const int Ndim = CommonParameters::Ndim();
172 
173  assert(bc.size() == Ndim);
174 
175  int ith = ThreadManager::get_thread_id();
176  if (ith == 0) {
177  m_kappa = kappa;
178  m_tw_mass = tw_mass;
179  m_boundary = bc;
180  }
181 #pragma omp barrier
182 
183  vout.general(m_vl, "%s: parameters\n", class_name.c_str());
184  vout.general(m_vl, " gamma-matrix type = %s\n", m_repr.c_str());
185  vout.general(m_vl, " kappa = %12.8f\n", m_kappa);
186  vout.general(m_vl, " tw_mass = %12.8f\n", m_tw_mass);
187  for (int mu = 0; mu < Ndim; ++mu) {
188  vout.general(m_vl, " boundary[%d] = %2d\n", mu, m_boundary[mu]);
189  }
190 
191 }
192 
193 
194 //====================================================================
196 {
197  params.set_double("hopping_parameter", m_kappa);
198  params.set_double("twisted_mass", m_tw_mass);
199  params.set_int_vector("boundary_condition", m_boundary);
200  params.set_string("gamma_matrix_type", m_repr);
201 
202  params.set_string("verbose_level", vout.get_verbose_level(m_vl));
203 }
204 
205 
206 //====================================================================
208 {
209 #pragma omp barrier
210 
211  int ith = ThreadManager::get_thread_id();
212  if (ith == 0) m_U = (Field_G *)U;
213 #pragma omp barrier
214 
215  m_fopr_tw->set_config(U);
216 }
217 
218 //====================================================================
220  const Field& eta_)
221 {
222 #pragma omp barrier
223 
224  copy(*m_eta, eta_);
225 #pragma omp barrier
226 
227  m_fopr_tw->set_mode("H");
228  m_fopr_tw->mult(*m_zeta, *m_eta);
229 
231  copy(force_, *m_force1);
232 #pragma omp barrier
233 
235  axpy(force_, 1.0, *m_force1);
236 #pragma omp barrier
237 
238 }
239 
240 
241 //====================================================================
243  const Field& zeta_,
244  const Field& eta_)
245 {
246 #pragma omp barrier
247 
248  copy(*m_zeta, zeta_);
249  copy(*m_eta, eta_);
250 #pragma omp barrier
251 
253 
254  copy(force_, *m_force1);
255 #pragma omp barrier
256 
257 }
258 
259 //====================================================================
261  Field_G& force,
262  const Field_F& zeta,
263  const Field_F& eta)
264 {
265 #pragma omp barrier
266 
267  const int Ndim = CommonParameters::Ndim();
268 
269  for (int mu = 0; mu < Ndim; ++mu) {
270  m_fopr_tw->mult_gm5p(mu, *m_eta2, eta);
271 
272  mult_Field_Gd(*m_eta3, 0, *m_U, mu, *m_eta2, 0);
273 #pragma omp barrier
274 
275  tensorProd_Field_F(force, mu, zeta, *m_eta3);
276  }
277 
278  scal(force, -m_kappa);
279 #pragma omp barrier
280 }
281 
282 
283 //============================================================END=====
Force_F_Wilson_TwistedMass_Nf2::class_name
static const std::string class_name
Definition: force_F_Wilson_TwistedMass_Nf2.h:36
Force_F_Wilson_TwistedMass_Nf2::m_eta3
Field_F * m_eta3
Definition: force_F_Wilson_TwistedMass_Nf2.h:52
Parameters::set_string
void set_string(const string &key, const string &value)
Definition: parameters.cpp:39
Force_F_Wilson_TwistedMass_Nf2::m_force1
Field_G * m_force1
Definition: force_F_Wilson_TwistedMass_Nf2.h:47
CommonParameters::Ndim
static int Ndim()
Definition: commonParameters.h:117
Parameters
Class for parameters.
Definition: parameters.h:46
Parameters::set_double
void set_double(const string &key, const double value)
Definition: parameters.cpp:33
Bridge::BridgeIO::decrease_indent
void decrease_indent()
Definition: bridgeIO.cpp:518
Bridge::BridgeIO::increase_indent
void increase_indent()
Definition: bridgeIO.cpp:508
CommonParameters::Nvol
static int Nvol()
Definition: commonParameters.h:109
force_F_Wilson_TwistedMass_Nf2.h
Force_F_Wilson_TwistedMass_Nf2::m_vl
Bridge::VerboseLevel m_vl
Definition: force_F_Wilson_TwistedMass_Nf2.h:43
axpy
void axpy(Field &y, const double a, const Field &x)
axpy(y, a, x): y := a * x + y
Definition: field.cpp:381
mult_Field_Gd
void mult_Field_Gd(Field_F &y, const int ex, const Field_G &u, int ex1, const Field_F &x, int ex2)
Definition: field_F_imp.cpp:76
Force_F_Wilson_TwistedMass_Nf2::force_udiv
void force_udiv(Field &force, const Field &eta)
Definition: force_F_Wilson_TwistedMass_Nf2.cpp:219
Force_F_Wilson_TwistedMass_Nf2::force_udiv1
void force_udiv1(Field &force, const Field &zeta, const Field &eta)
Definition: force_F_Wilson_TwistedMass_Nf2.cpp:242
Force_F_Wilson_TwistedMass_Nf2::force_udiv1_impl
void force_udiv1_impl(Field_G &force, const Field_F &zeta, const Field_F &eta)
Definition: force_F_Wilson_TwistedMass_Nf2.cpp:260
copy
void copy(Field &y, const Field &x)
copy(y, x): y = x
Definition: field.cpp:213
tensorProd_Field_F
void tensorProd_Field_F(Field_G &u, const Field_F &v1, const Field_F &v2)
Definition: tensorProd.cpp:35
AFopr_Wilson_TwistedMass::mult_gm5p
void mult_gm5p(const int mu, AFIELD &v, const AFIELD &w)
Definition: afopr_Wilson_TwistedMass-tmpl.h:288
AFopr_Wilson_TwistedMass::set_parameters
void set_parameters(const Parameters &params)
sets parameters by a Parameter object: to be implemented in a subclass.
Definition: afopr_Wilson_TwistedMass-tmpl.h:131
Parameters::fetch_int_vector
int fetch_int_vector(const string &key, vector< int > &value) const
Definition: parameters.cpp:429
Force_F_Wilson_TwistedMass_Nf2::m_eta
Field_F * m_eta
Definition: force_F_Wilson_TwistedMass_Nf2.h:49
Force_F_Wilson_TwistedMass_Nf2::m_zeta
Field_F * m_zeta
Definition: force_F_Wilson_TwistedMass_Nf2.h:50
threadManager.h
Force_F_Wilson_TwistedMass_Nf2::set_config
void set_config(Field *U)
sets verbose level.
Definition: force_F_Wilson_TwistedMass_Nf2.cpp:207
Force_F_Wilson_TwistedMass_Nf2::m_kappa
double m_kappa
Definition: force_F_Wilson_TwistedMass_Nf2.h:39
Fopr_Wilson_TwistedMass
AFopr_Wilson_TwistedMass< Field > Fopr_Wilson_TwistedMass
Twisted-mass Wilson fermion operator.
Definition: fopr_Wilson_TwistedMass.h:29
Parameters::set_int_vector
void set_int_vector(const string &key, const vector< int > &value)
Definition: parameters.cpp:45
AFopr_Wilson_TwistedMass::mult
void mult(AFIELD &v, const AFIELD &w)
multiplies fermion operator to a given field.
Definition: afopr_Wilson_TwistedMass-tmpl.h:226
Force_F_Wilson_TwistedMass_Nf2::m_eta2
Field_F * m_eta2
Definition: force_F_Wilson_TwistedMass_Nf2.h:51
Force_F_Wilson_TwistedMass_Nf2::set_parameters
void set_parameters(const Parameters &params)
sets parameters by a Parameter object: to be implemented in a subclass.
Definition: force_F_Wilson_TwistedMass_Nf2.cpp:115
Force_F_Wilson_TwistedMass_Nf2::get_parameters
void get_parameters(Parameters &params) const
Definition: force_F_Wilson_TwistedMass_Nf2.cpp:195
CommonParameters::Vlevel
static Bridge::VerboseLevel Vlevel()
Definition: commonParameters.h:122
AForce_F< Field >::m_U
Field_G * m_U
Gauge configuration.
Definition: aforce_F.h:42
Bridge::BridgeIO::set_verbose_level
static VerboseLevel set_verbose_level(const std::string &str)
Definition: bridgeIO.cpp:195
AForce_F< Field >::init
virtual void init()
initializer.
Force_F_Wilson_TwistedMass_Nf2::m_boundary
std::vector< int > m_boundary
Definition: force_F_Wilson_TwistedMass_Nf2.h:41
scal
void scal(Field &x, const double a)
scal(x, a): x = a * x
Definition: field.cpp:262
Force_F_Wilson_TwistedMass_Nf2::tidyup
void tidyup()
finalizer.
Definition: force_F_Wilson_TwistedMass_Nf2.cpp:103
Parameters::fetch_string
int fetch_string(const string &key, string &value) const
Definition: parameters.cpp:378
Field_F
Wilson-type fermion field.
Definition: field_F.h:37
Parameters::fetch_double
int fetch_double(const string &key, double &value) const
Definition: parameters.cpp:327
Force_F_Wilson_TwistedMass_Nf2::m_tw_mass
double m_tw_mass
Definition: force_F_Wilson_TwistedMass_Nf2.h:40
Bridge::BridgeIO::crucial
void crucial(const char *format,...)
Definition: bridgeIO.cpp:242
Force_F_Wilson_TwistedMass_Nf2::m_repr
std::string m_repr
Definition: force_F_Wilson_TwistedMass_Nf2.h:42
Field
Container of Field-type object.
Definition: field.h:46
Force_F_Wilson_TwistedMass_Nf2::m_fopr_tw
Fopr_Wilson_TwistedMass * m_fopr_tw
Definition: force_F_Wilson_TwistedMass_Nf2.h:45
ThreadManager::get_thread_id
static int get_thread_id()
returns thread id.
Definition: threadManager.cpp:253
Field_G
SU(N) gauge field.
Definition: field_G.h:38
AFopr_Wilson_TwistedMass::set_config
void set_config(Field *U)
sets the gauge configuration.
Definition: afopr_Wilson_TwistedMass-tmpl.h:212
Force_F_Wilson_TwistedMass_Nf2::set_parameters_impl
void set_parameters_impl(const Parameters &params)
Definition: force_F_Wilson_TwistedMass_Nf2.cpp:124
Bridge::BridgeIO::general
void general(const char *format,...)
Definition: bridgeIO.cpp:262
ThreadManager::assert_single_thread
static void assert_single_thread(const std::string &class_name)
assert currently running on single thread.
Definition: threadManager.cpp:372
Bridge::vout
BridgeIO vout
Definition: bridgeIO.cpp:572
Bridge::BridgeIO::get_verbose_level
static std::string get_verbose_level(const VerboseLevel vl)
Definition: bridgeIO.cpp:216
AFopr_Wilson_TwistedMass::set_mode
void set_mode(std::string mode)
setting the mode of multiplication if necessary. Default implementation here is just to avoid irrelev...
Definition: afopr_Wilson_TwistedMass-tmpl.h:274