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fopr_Wilson_eo_impl.h
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1 
15 #ifndef FOPR_WILSON_EO_IMPL_INCLUDED
16 #define FOPR_WILSON_EO_IMPL_INCLUDED
17 
18 #include "fopr_Wilson_eo.h"
19 
20 #include "bridgeIO.h"
21 using Bridge::vout;
22 
24 
35 {
36  public:
37  static const std::string class_name;
38 
39  private:
40  int m_Nc, m_Nd, m_Nvc, m_Ndf;
42  int m_Nx, m_Ny, m_Nz, m_Nt, m_Nx2;
43 
44  double m_kappa;
45  std::valarray<int> m_boundary;
46  std::valarray<double> m_boundary2;
47 
49 
50  std::string m_mode;
51  std::string m_repr;
52 
56 
57  valarray<int> m_Leo;
59 
61  double *vcp1_xp, *vcp2_xp, *vcp1_xm, *vcp2_xm;
62  double *vcp1_yp, *vcp2_yp, *vcp1_ym, *vcp2_ym;
63  double *vcp1_zp, *vcp2_zp, *vcp1_zm, *vcp2_zm;
64  double *vcp1_tp, *vcp2_tp, *vcp1_tm, *vcp2_tm;
65 
68  void (Fopr_Wilson_eo::Fopr_Wilson_eo_impl::*m_mult_tp)(Field &, const Field &, const int ieo);
69  void (Fopr_Wilson_eo::Fopr_Wilson_eo_impl::*m_mult_tm)(Field &, const Field &, const int ieo);
70 
71  public:
72 
73  Fopr_Wilson_eo_impl(std::string repr)
74  { init(repr); }
75 
77  { tidyup(); }
78 
79  void set_parameters(const double kappa, const std::valarray<int> bc);
80 
81  void set_config(Field *U);
82 
83  void prePropD(Field&, Field&, const Field&);
84  void postPropD(Field&, const Field&, const Field&);
85  void prePropDag(Field&, Field&, const Field&);
86  void postPropDag(Field&, const Field&, const Field&);
87 
88  void D(Field& v, const Field& f);
89  void Ddag(Field& v, const Field& f);
90  void DdagD(Field& v, const Field& f);
91  void DDdag(Field& v, const Field& f);
92  void H(Field& v, const Field& f);
93 
94  // ieo=0: even <-- odd
95  // ieo=1: odd <-- even
96 
97  void Meo(Field&, const Field&, const int ieo);
98  void Mdageo(Field&, const Field&, const int ieo);
99  void MeoMoe(Field&, const Field&);
100  void Meo_gm5(Field&, const Field&, const int ieo);
101 
102  void mult_gm5(Field&, const Field&);
103  void mult_gm5(Field&);
104  void gm5_dirac(Field&, const Field&);
105  void gm5_chiral(Field&, const Field&);
106  void gm5_self_dirac(Field&);
107  void gm5_self_chiral(Field&);
108 
110  void gm5p(const int mu, Field&, const Field& v);
111 
112  int field_nvol() { return m_Nvol2; }
113  int field_nin() { return m_Nvc * m_Nd; }
114  int field_nex() { return 1; }
115 
117  double flop_count();
118 
119  void mult_p(int mu, Field_F&, const Field_F&, const int ieo);
120  void mult_m(int mu, Field_F&, const Field_F&, const int ieo);
121 
122  private:
123  void init(const std::string);
124  void tidyup();
125 
126  void mult_xp(Field&, const Field&, const int ieo);
127  void mult_xm(Field&, const Field&, const int ieo);
128  void mult_yp(Field&, const Field&, const int ieo);
129  void mult_ym(Field&, const Field&, const int ieo);
130  void mult_zp(Field&, const Field&, const int ieo);
131  void mult_zm(Field&, const Field&, const int ieo);
132  void mult_tp_dirac(Field&, const Field&, const int ieo);
133  void mult_tm_dirac(Field&, const Field&, const int ieo);
134  void mult_tp_chiral(Field&, const Field&, const int ieo);
135  void mult_tm_chiral(Field&, const Field&, const int ieo);
136 
137  void clear_impl(Field&);
138  void scal_impl(Field&, double);
139 
140  // member data for threading
141  int m_Mz, m_Mt;
144 
145  struct mult_arg
146  {
147  int isite;
149  int kz0, kz1, kt0, kt1;
150  };
151  valarray<mult_arg> m_arg;
152 
153  // member functions for threading
154  void setup_thread();
155  void mult_xp1_thread(int, double *, double *, int);
156  void mult_xp2_thread(int, double *, double *, int);
157  void mult_xpb_thread(int, double *, double *, int);
158  void mult_xm1_thread(int, double *, double *, int);
159  void mult_xm2_thread(int, double *, double *, int);
160  void mult_xmb_thread(int, double *, double *, int);
161  void mult_yp1_thread(int, double *, double *, int);
162  void mult_yp2_thread(int, double *, double *, int);
163  void mult_ypb_thread(int, double *, double *, int);
164  void mult_ym1_thread(int, double *, double *, int);
165  void mult_ym2_thread(int, double *, double *, int);
166  void mult_ymb_thread(int, double *, double *, int);
167  void mult_zp1_thread(int, double *, double *, int);
168  void mult_zp2_thread(int, double *, double *, int);
169  void mult_zpb_thread(int, double *, double *, int);
170  void mult_zm1_thread(int, double *, double *, int);
171  void mult_zm2_thread(int, double *, double *, int);
172  void mult_zmb_thread(int, double *, double *, int);
173  void mult_tp1_dirac_thread(int, double *, double *, int);
174  void mult_tp2_dirac_thread(int, double *, double *, int);
175  void mult_tpb_dirac_thread(int, double *, double *, int);
176  void mult_tm1_dirac_thread(int, double *, double *, int);
177  void mult_tm2_dirac_thread(int, double *, double *, int);
178  void mult_tmb_dirac_thread(int, double *, double *, int);
179  void mult_tp1_chiral_thread(int, double *, double *, int);
180  void mult_tp2_chiral_thread(int, double *, double *, int);
181  void mult_tpb_chiral_thread(int, double *, double *, int);
182  void mult_tm1_chiral_thread(int, double *, double *, int);
183  void mult_tm2_chiral_thread(int, double *, double *, int);
184  void mult_tmb_chiral_thread(int, double *, double *, int);
185  void scal_thread(int, double *, double);
186  void clear_thread(int, double *);
187  void gm5_dirac_thread(int, double *, double *);
188  void gm5_chiral_thread(int, double *, double *);
189  void gm5_dirac_thread(int, double *);
190  void gm5_chiral_thread(int, double *);
191 };
192 #endif
void mult_tm2_dirac_thread(int, double *, double *, int)
void prePropD(Field &, Field &, const Field &)
void mult_xp(Field &, const Field &, const int ieo)
void mult_tp1_dirac_thread(int, double *, double *, int)
void mult_tp_chiral(Field &, const Field &, const int ieo)
BridgeIO vout
Definition: bridgeIO.cpp:207
void prePropDag(Field &, Field &, const Field &)
void mult_ym1_thread(int, double *, double *, int)
void(Fopr_Wilson_eo::Fopr_Wilson_eo_impl::* m_mult_tp)(Field &, const Field &, const int ieo)
void MeoMoe(Field &, const Field &)
void mult_xp1_thread(int, double *, double *, int)
void mult_tp_dirac(Field &, const Field &, const int ieo)
void mult_xm(Field &, const Field &, const int ieo)
Implementation of even-odd Wilson fermion operator.
void Meo_gm5(Field &, const Field &, const int ieo)
void mult_tm2_chiral_thread(int, double *, double *, int)
void set_parameters(const double kappa, const std::valarray< int > bc)
void mult_ymb_thread(int, double *, double *, int)
Container of Field-type object.
Definition: field.h:37
void DdagD(Field &v, const Field &f)
void gm5_chiral(Field &, const Field &)
void mult_tmb_dirac_thread(int, double *, double *, int)
void mult_zm(Field &, const Field &, const int ieo)
void gm5_dirac(Field &, const Field &)
void mult_zp1_thread(int, double *, double *, int)
void(Fopr_Wilson_eo::Fopr_Wilson_eo_impl::* m_mult_tm)(Field &, const Field &, const int ieo)
Even-odd site index.
Definition: index_eo.h:39
double * vcp1_xp
arrays for data transfer.
void mult_xp2_thread(int, double *, double *, int)
void mult_gm5(Field &, const Field &)
void postPropDag(Field &, const Field &, const Field &)
Wilson-type fermion field.
Definition: field_F.h:37
void mult_tm_dirac(Field &, const Field &, const int ieo)
Field_G * m_U
dummy: pointing m_Ueo.
void mult_ypb_thread(int, double *, double *, int)
void Meo(Field &, const Field &, const int ieo)
void(Fopr_Wilson_eo::Fopr_Wilson_eo_impl::* m_gm5_self)(Field &)
void postPropD(Field &, const Field &, const Field &)
SU(N) gauge field.
Definition: field_G.h:36
void mult_tm1_dirac_thread(int, double *, double *, int)
void DDdag(Field &v, const Field &f)
void mult_zm2_thread(int, double *, double *, int)
void mult_tmb_chiral_thread(int, double *, double *, int)
void Mdageo(Field &, const Field &, const int ieo)
void mult_xm2_thread(int, double *, double *, int)
void(Fopr_Wilson_eo::Fopr_Wilson_eo_impl::* m_gm5)(Field &, const Field &)
void mult_ym2_thread(int, double *, double *, int)
void mult_zp(Field &, const Field &, const int ieo)
void mult_tm_chiral(Field &, const Field &, const int ieo)
void mult_ym(Field &, const Field &, const int ieo)
void mult_xm1_thread(int, double *, double *, int)
void mult_tp1_chiral_thread(int, double *, double *, int)
void mult_tp2_dirac_thread(int, double *, double *, int)
void mult_tp2_chiral_thread(int, double *, double *, int)
void mult_tpb_chiral_thread(int, double *, double *, int)
void H(Field &v, const Field &f)
void D(Field &v, const Field &f)
std::valarray< double > m_boundary2
b.c. for each node.
VerboseLevel
Definition: bridgeIO.h:25
void mult_zp2_thread(int, double *, double *, int)
std::valarray< int > m_boundary
boundary condition.
void mult_xmb_thread(int, double *, double *, int)
void Ddag(Field &v, const Field &f)
void mult_zmb_thread(int, double *, double *, int)
void mult_yp(Field &, const Field &, const int ieo)
void mult_yp1_thread(int, double *, double *, int)
void mult_zm1_thread(int, double *, double *, int)
void mult_m(int mu, Field_F &, const Field_F &, const int ieo)
double flop_count()
this returns the number of floating point operations of Meo.
void mult_p(int mu, Field_F &, const Field_F &, const int ieo)
void mult_zpb_thread(int, double *, double *, int)
void mult_yp2_thread(int, double *, double *, int)
std::string m_repr
Dirac matrix representation.
void mult_xpb_thread(int, double *, double *, int)
void gm5p(const int mu, Field &, const Field &v)
gamma_5 (1 - gamma_mu) v(x + mu) used in force calculation.
void mult_tm1_chiral_thread(int, double *, double *, int)
void mult_tpb_dirac_thread(int, double *, double *, int)