Bridge++  Ver.2.1.3
smear_HYP_SF.cpp
Go to the documentation of this file.
1 
10 #include "lib/Smear/smear_HYP_SF.h"
12 
13 #ifdef USE_FACTORY_AUTOREGISTER
14 namespace {
15  bool init = Smear_HYP_SF::register_factory();
16 }
17 #endif
18 
19 const std::string Smear_HYP_SF::class_name = "Smear_HYP_SF";
20 
21 //====================================================================
22 void Smear_HYP_SF::init(const Parameters& params)
23 {
25 
26  std::string vlevel;
27  if (!params.fetch_string("verbose_level", vlevel)) {
28  m_vl = vout.set_verbose_level(vlevel);
29  } else {
31  }
32 
33  vout.general(m_vl, "%s: construction\n", class_name.c_str());
35 
38 
39  set_parameters(params);
40 
41  m_shift = new ShiftField_lex();
42 
43  m_U.resize(m_Ndim);
44  m_v1.resize(size_v1());
45  m_v2.resize(size_v2());
46 
47  m_c1 = new Field_G(m_Nvol, 1);
48  m_c2 = new Field_G(m_Nvol, 1);
49  m_c3 = new Field_G(m_Nvol, 1);
50  m_ut = new Field_G(m_Nvol, 1);
51  m_vt1 = new Field_G(m_Nvol, 1);
52  m_vt2 = new Field_G(m_Nvol, 1);
53 
55  vout.general(m_vl, "%s: construction finished.\n",
56  class_name.c_str());
57 
58 }
59 
60 //====================================================================
62 {
63  delete m_shift;
64 
65  delete m_c1;
66  delete m_c2;
67  delete m_c3;
68  delete m_ut;
69  delete m_vt1;
70  delete m_vt2;
71 }
72 
73 //====================================================================
75 {
76  std::string vlevel;
77  if (!params.fetch_string("verbose_level", vlevel)) {
78  m_vl = vout.set_verbose_level(vlevel);
79  }
80 
81  //- fetch input parameters
82  double alpha1, alpha2, alpha3;
83  std::vector<double> phi, phipr;
84 
85  int err = 0;
86  err += params.fetch_double("alpha1", alpha1);
87  err += params.fetch_double("alpha2", alpha2);
88  err += params.fetch_double("alpha3", alpha3);
89  err += params.fetch_double_vector("phi", phi);
90  err += params.fetch_double_vector("phipr", phipr);
91 
92  if (err) {
93  vout.crucial(m_vl, "Error at %s: input parameter not found.\n",
94  class_name.c_str());
95  exit(EXIT_FAILURE);
96  }
97 
98  set_parameters(alpha1, alpha2, alpha3, phi, phipr);
99 }
100 
101 
102 //====================================================================
103 void Smear_HYP_SF::set_parameters(const double alpha1,
104  const double alpha2,
105  const double alpha3,
106  const std::vector<double>& phi,
107  const std::vector<double>& phipr)
108 {
109 #pragma omp barrier
110 
111  int ith = ThreadManager::get_thread_id();
112  if (ith == 0) {
113  m_alpha1 = alpha1;
114  m_alpha2 = alpha2;
115  m_alpha3 = alpha3;
116 
117  m_phi.resize(3);
118  m_phipr.resize(3);
119  for (int i = 0; i < 3; ++i) {
120  m_phi[i] = phi[i];
121  m_phipr[i] = phipr[i];
122  }
123 
126  }
127 #pragma omp barrier
128 
129  //- print input parameters
130  vout.general(m_vl, "%s: parameters\n", class_name.c_str());
131  vout.general(m_vl, " alpha1 = %10.6F\n", m_alpha1);
132  vout.general(m_vl, " alpha2 = %10.6F\n", m_alpha2);
133  vout.general(m_vl, " alpha3 = %10.6F\n", m_alpha3);
134 
135  vout.general(m_vl, " phi1 = %12.6f\n", m_phi[0]);
136  vout.general(m_vl, " phi2 = %12.6f\n", m_phi[1]);
137  vout.general(m_vl, " phi3 = %12.6f\n", m_phi[2]);
138  vout.general(m_vl, " phipr1= %12.6f\n", m_phipr[0]);
139  vout.general(m_vl, " phipr2= %12.6f\n", m_phipr[1]);
140  vout.general(m_vl, " phipr3= %12.6f\n", m_phipr[2]);
141 
142 }
143 
144 
145 //====================================================================
147 {
148  params.set_double("alpha1", m_alpha1);
149  params.set_double("alpha2", m_alpha2);
150  params.set_double("alpha3", m_alpha3);
151  params.set_double_vector("phi", m_phi);
152  params.set_double_vector("phipr", m_phipr);
153 
154  params.set_string("verbose_level", vout.get_verbose_level(m_vl));
155 }
156 
157 
158 //====================================================================
159 void Smear_HYP_SF::smear(Field_G& Usmear, const Field_G& U)
160 {
161  assert(U.nvol() == m_Nvol);
162  assert(U.nex() == m_Ndim);
163 
164  assert(Usmear.nvol() == m_Nvol);
165  assert(Usmear.nex() == m_Ndim);
166 
167  for (int mu = 0; mu < m_Ndim; ++mu) {
168 
169  copy(m_U[mu], 0, U, mu);
170 #pragma omp barrier
171 
172  if (mu != 3){
174 #pragma omp barrier
175  }
176  }
177 
178  step1();
179  // vout.general(m_vl,"level-1 step finished.\n");
180  step2();
181  // vout.general(m_vl,"level-2 step finished.\n");
182  step3(Usmear);
183  // vout.general(m_vl,"level-3 step finished.\n");
184 }
185 
186 
187 //====================================================================
189 {
190  for (int mu = 0; mu < m_Ndim; ++mu) {
191  for (int nu = 0; nu < m_Ndim; ++nu) {
192  if (nu == mu) continue;
193 
194  for (int rho = nu + 1; rho < m_Ndim; ++rho) {
195  if (rho == mu) continue;
196 
197  int sig = 6 - mu - nu - rho;
198  staple(*m_c1, m_U[mu], m_U[sig], mu, sig);
199 
200  scal(*m_c1, m_alpha3 * 0.5); // c1 *= m_alpha3 / 2.0;
201 #pragma omp barrier
202 
203  m_proj->project(m_v1[index_v1(mu, nu, rho)], m_alpha3,
204  *m_c1, m_U[mu]);
205 
206  if (mu != 3){
208 #pragma omp barrier
209  }
210  }
211  }
212  }
213 
214 }
215 
216 
217 //====================================================================
219 {
220  for (int mu = 0; mu < m_Ndim; ++mu) {
221  for (int nu = 0; nu < m_Ndim; ++nu) {
222  if (nu == mu) continue;
223 
224  m_c2->set(0.0);
225 #pragma omp barrier
226 
227  for (int rho = 0; rho < m_Ndim; ++rho) {
228  if ((rho != mu) && (rho != nu)) {
229  staple(*m_ut, m_v1[index_v1(mu, nu, rho)],
230  m_v1[index_v1(rho, nu, mu)], mu, rho);
231  axpy(*m_c2, 0, 1.0, *m_ut, 0);
232 #pragma omp barrier
233  }
234  }
235 
236  scal(*m_c2, m_alpha2 * 0.25);
237 #pragma omp barrier
238 
239  m_proj->project(m_v2[index_v2(mu, nu)], m_alpha2, *m_c2, m_U[mu]);
240 
241  if (mu != 3){
243 #pragma omp barrier
244  }
245  }
246  }
247 
248 }
249 
250 
251 //====================================================================
253 {
254  for (int mu = 0; mu < m_Ndim; ++mu) {
255  m_c3->set(0.0);
256 #pragma omp barrier
257 
258  for (int nu = 0; nu < m_Ndim; ++nu) {
259  if (nu != mu) {
260  staple(*m_ut, m_v2[index_v2(mu, nu)],
261  m_v2[index_v2(nu, mu)], mu, nu);
262  axpy(*m_c3, 0, 1.0, *m_ut, 0);
263 #pragma omp barrier
264  }
265  }
266 
267  scal(*m_c3, m_alpha1 / 6.0); // c3 *= m_alpha1 / 6.0;
268 #pragma omp barrier
269 
270  m_proj->project(*m_ut, m_alpha1, *m_c3, m_U[mu]);
271 
272  if (mu != 3){
274 #pragma omp barrier
275  }
276 
277  copy(v, mu, *m_ut, 0);
278 #pragma omp barrier
279  }
280 }
281 
282 
283 //====================================================================
285  const Field_G& u_mu, const Field_G& u_nu,
286  const int mu, const int nu)
287 {
288  //- upper direction
289  m_shift->backward(*m_vt1, u_mu, nu);
290 
291  if (nu == 3){
293 #pragma omp barrier
294  }
295 
296  mult_Field_Gnn(*m_vt2, 0, u_nu, 0, *m_vt1, 0);
297 
298  m_shift->backward(*m_vt1, u_nu, mu);
299 
300  if (mu == 3){
302 #pragma omp barrier
303  }
304 
305  mult_Field_Gnd(c, 0, *m_vt2, 0, *m_vt1, 0);
306 #pragma omp barrier
307 
308  //- lower direction
309  m_shift->backward(*m_vt2, u_nu, mu);
310 
311  if (mu == 3){
313 #pragma omp barrier
314  }
315 
316  mult_Field_Gnn(*m_vt1, 0, u_mu, 0, *m_vt2, 0);
317 #pragma omp barrier
318 
319  mult_Field_Gdn(*m_vt2, 0, u_nu, 0, *m_vt1, 0);
320 #pragma omp barrier
321 
322  m_shift->forward(*m_vt1, *m_vt2, nu);
323 
324  axpy(c, 0, 1.0, *m_vt1, 0);
325 #pragma omp barrier
326 
327 }
328 
329 
330 //============================================================END=====
Smear_HYP_SF::m_proj
Projection * m_proj
Definition: smear_HYP_SF.h:46
Field_SF::set_boundary_wkpr
void set_boundary_wkpr(Field_G &u, const Mat_SU_N &wkpr)
Definition: field_SF.cpp:63
Smear_HYP_SF::m_alpha2
double m_alpha2
HYP smearing parameters.
Definition: smear_HYP_SF.h:41
Smear_HYP_SF::m_vt2
Field_G * m_vt2
Definition: smear_HYP_SF.h:61
mult_Field_Gdn
void mult_Field_Gdn(Field_G &W, const int ex, const Field_G &U1, const int ex1, const Field_G &U2, const int ex2)
Definition: field_G_imp.cpp:134
Parameters::set_string
void set_string(const string &key, const string &value)
Definition: parameters.cpp:39
ShiftField_lex::forward
void forward(Field &, const Field &, const int mu)
Definition: shiftField_lex.cpp:79
CommonParameters::Ndim
static int Ndim()
Definition: commonParameters.h:117
Smear_HYP_SF::m_alpha3
double m_alpha3
HYP smearing parameters.
Definition: smear_HYP_SF.h:42
Field::set
void set(const int jin, const int site, const int jex, double v)
Definition: field.h:175
Parameters
Class for parameters.
Definition: parameters.h:46
Parameters::set_double
void set_double(const string &key, const double value)
Definition: parameters.cpp:33
Smear_HYP_SF::m_c3
Field_G * m_c3
Definition: smear_HYP_SF.h:58
Bridge::BridgeIO::decrease_indent
void decrease_indent()
Definition: bridgeIO.cpp:518
Smear_HYP_SF::step1
void step1()
Definition: smear_HYP_SF.cpp:188
Smear_HYP_SF::m_ut
Field_G * m_ut
Definition: smear_HYP_SF.h:59
Bridge::BridgeIO::increase_indent
void increase_indent()
Definition: bridgeIO.cpp:508
Field::nex
int nex() const
Definition: field.h:128
Smear_HYP_SF::staple
void staple(Field_G &, const Field_G &, const Field_G &, const int mu, const int nu)
Definition: smear_HYP_SF.cpp:284
Smear_HYP_SF::smear
void smear(Field_G &Usmear, const Field_G &U)
Definition: smear_HYP_SF.cpp:159
CommonParameters::Nvol
static int Nvol()
Definition: commonParameters.h:109
Smear_HYP_SF::m_Ndim
int m_Ndim
Definition: smear_HYP_SF.h:39
Field_SF::set_boundary_wk
void set_boundary_wk(Field_G &u, const Mat_SU_N &wk)
Definition: field_SF.cpp:32
Smear_HYP_SF::init
void init(const Parameters &params)
Definition: smear_HYP_SF.cpp:22
axpy
void axpy(Field &y, const double a, const Field &x)
axpy(y, a, x): y := a * x + y
Definition: field.cpp:381
Smear_HYP_SF::m_U
std::vector< Field_G > m_U
Definition: smear_HYP_SF.h:47
Parameters::set_double_vector
void set_double_vector(const string &key, const vector< double > &value)
Definition: parameters.cpp:42
Smear_HYP_SF::m_phipr
std::vector< double > m_phipr
raw parameter values
Definition: smear_HYP_SF.h:44
copy
void copy(Field &y, const Field &x)
copy(y, x): y = x
Definition: field.cpp:213
Smear_HYP_SF::m_alpha1
double m_alpha1
HYP smearing parameters.
Definition: smear_HYP_SF.h:40
Smear_HYP_SF::m_wk
Mat_SU_N m_wk
SF boundary condition at t=0.
Definition: smear_HYP_SF.h:53
Smear_HYP_SF::m_v2
std::vector< Field_G > m_v2
Definition: smear_HYP_SF.h:49
Smear_HYP_SF::step3
void step3(Field_G &)
Definition: smear_HYP_SF.cpp:252
Smear_HYP_SF::m_vl
Bridge::VerboseLevel m_vl
Definition: smear_HYP_SF.h:37
threadManager.h
Smear_HYP_SF::get_parameters
void get_parameters(Parameters &params) const
Definition: smear_HYP_SF.cpp:146
Smear_HYP_SF::tidyup
void tidyup()
Definition: smear_HYP_SF.cpp:61
Smear_HYP_SF::size_v1
int size_v1()
Definition: smear_HYP_SF.h:110
Field::nvol
int nvol() const
Definition: field.h:127
Smear_HYP_SF::index_v2
int index_v2(const int mu, int nu)
Definition: smear_HYP_SF.h:104
Smear_HYP_SF::size_v2
int size_v2()
Definition: smear_HYP_SF.h:112
Smear_HYP_SF::step2
void step2()
Definition: smear_HYP_SF.cpp:218
Field_SF::set_boundary_matrix
void set_boundary_matrix(Mat_SU_N &wk, const std::vector< double > &phi)
Definition: field_SF.cpp:216
ShiftField_lex
Methods to shift a field in the lexical site index.
Definition: shiftField_lex.h:39
Smear_HYP_SF::m_vt1
Field_G * m_vt1
Definition: smear_HYP_SF.h:60
CommonParameters::Vlevel
static Bridge::VerboseLevel Vlevel()
Definition: commonParameters.h:122
Bridge::BridgeIO::set_verbose_level
static VerboseLevel set_verbose_level(const std::string &str)
Definition: bridgeIO.cpp:195
mult_Field_Gnn
void mult_Field_Gnn(Field_G &W, const int ex, const Field_G &U1, const int ex1, const Field_G &U2, const int ex2)
Definition: field_G_imp.cpp:95
ShiftField_lex::backward
void backward(Field &, const Field &, const int mu)
Definition: shiftField_lex.cpp:59
Smear_HYP_SF::class_name
static const std::string class_name
Definition: smear_HYP_SF.h:34
Smear_HYP_SF::m_v1
std::vector< Field_G > m_v1
Definition: smear_HYP_SF.h:48
scal
void scal(Field &x, const double a)
scal(x, a): x = a * x
Definition: field.cpp:262
Parameters::fetch_string
int fetch_string(const string &key, string &value) const
Definition: parameters.cpp:378
Smear_HYP_SF::m_wkpr
Mat_SU_N m_wkpr
SF boundary condition at t=Nt.
Definition: smear_HYP_SF.h:54
Parameters::fetch_double
int fetch_double(const string &key, double &value) const
Definition: parameters.cpp:327
Smear_HYP_SF::m_Nvol
int m_Nvol
Definition: smear_HYP_SF.h:39
Bridge::BridgeIO::crucial
void crucial(const char *format,...)
Definition: bridgeIO.cpp:242
Smear_HYP_SF::m_c2
Field_G * m_c2
Definition: smear_HYP_SF.h:57
Smear_HYP_SF::index_v1
int index_v1(const int mu, const int nu, const int rho)
Definition: smear_HYP_SF.h:97
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
Parameters::fetch_double_vector
int fetch_double_vector(const string &key, vector< double > &value) const
Definition: parameters.cpp:410
Smear_HYP_SF::m_shift
ShiftField_lex * m_shift
Definition: smear_HYP_SF.h:51
Smear_HYP_SF::m_phi
std::vector< double > m_phi
raw parameter values
Definition: smear_HYP_SF.h:43
Bridge::BridgeIO::general
void general(const char *format,...)
Definition: bridgeIO.cpp:262
Smear_HYP_SF::set_parameters
void set_parameters(const Parameters &params)
Definition: smear_HYP_SF.cpp:74
Smear_HYP_SF::m_c1
Field_G * m_c1
Definition: smear_HYP_SF.h:56
mult_Field_Gnd
void mult_Field_Gnd(Field_G &W, const int ex, const Field_G &U1, const int ex1, const Field_G &U2, const int ex2)
Definition: field_G_imp.cpp:173
smear_HYP_SF.h
ThreadManager::assert_single_thread
static void assert_single_thread(const std::string &class_name)
assert currently running on single thread.
Definition: threadManager.cpp:372
AProjection::project
virtual void project(Field_G &v, const double alpha, const Field_G &C, const Field_G &U)=0
projection V = P[alpha, C, U]
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