KADATH
domain_bispheric_eta_first_affecte_tau.cpp
1 /*
2  Copyright 2017 Philippe Grandclement
3 
4  This file is part of Kadath.
5 
6  Kadath is free software: you can redistribute it and/or modify
7  it under the terms of the GNU General Public License as published by
8  the Free Software Foundation, either version 3 of the License, or
9  (at your option) any later version.
10 
11  Kadath is distributed in the hope that it will be useful,
12  but WITHOUT ANY WARRANTY; without even the implied warranty of
13  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14  GNU General Public License for more details.
15 
16  You should have received a copy of the GNU General Public License
17  along with Kadath. If not, see <http://www.gnu.org/licenses/>.
18 */
19 
20 #include "headcpp.hpp"
21 
22 #include "bispheric.hpp"
23 #include "scalar.hpp"
24 #include "tensor_impl.hpp"
25 #include "tensor.hpp"
26 
27 namespace Kadath {
29 
30  int basep = (*so.get_base().bases_1d[2]) (0) ;
31 
32  so.allocate_coef() ;
33  *so.cf = 0. ;
34  Index pos (nbr_coefs) ;
35  do {
36  bool indic = true ;
37  switch (basep) {
38  case COS :
39  // Last odd ones
40  if ((pos(2)%2==1) && (pos(0)==nbr_coefs(0)-1))
41  indic = false ;
42  // Regularity for even ones :
43  if ((pos(2)!=0) && (pos(2)%2==0) && (pos(0)==0))
44  indic = false ;
45  break ;
46  case SIN :
47  // sin(0)
48  if ((pos(2)==0) || (pos(2)==nbr_coefs(2)-1))
49  indic = false ;
50  // Last odd ones :
51  if ((pos(2)%2==1) && (pos(0)==nbr_coefs(0)-1))
52  indic = false ;
53  // Regularity for even ones :
54  if ((pos(2)%2==0) && (pos(0)==0))
55  indic = false ;
56  break ;
57  default :
58  cerr << "Unknown phi basis in Domain_bispheric_eta_first::affecte_tau_val_domain" << endl ;
59  abort() ;
60  }
61 
62  if (indic) {
63  so.cf->set(pos) = values(conte) ;
64  conte ++ ;
65  }
66  }
67  while (pos.inc()) ;
68 
69  // Regularity on the axis :
70  // Loop on phi :
71  for (int k=1 ; k<nbr_coefs(2); k++) {
72  pos.set(2) = k ;
73  for (int j=0 ; j<nbr_coefs(1) ; j++) {
74  pos.set(1) = j ;
75  int basechi = (*so.get_base().bases_1d[0])(j, k) ;
76 
77  if ((basechi==CHEB_EVEN) || (basechi==LEG_EVEN)) {
78  double summ = 0 ;
79  double val = 1 ;
80  for (int i=1 ; i<nbr_coefs(0) ; i++) {
81  pos.set(0) = i ;
82  switch (basechi) {
83  case CHEB_EVEN :
84  val *= -1. ;
85  summ += val*(*so.cf)(pos) ;
86  break ;
87  case LEG_EVEN :
88  val *= - double(2*i-1)/double(2*i) ;
89  summ += val*(*so.cf)(pos) ;
90  break ;
91  default :
92  cerr << "Unknown base in Domain_bispheric_eta_first::affecte_one_coef" << endl ;
93  abort() ;
94  }
95  }
96  pos.set(0) = 0 ;
97  so.cf->set(pos) = -summ ;
98  }
99  }
100  }
101 }
102 
103 void Domain_bispheric_eta_first::affecte_tau (Tensor& tt, int dom, const Array<double>& cf, int& pos_cf) const {
104 
105  // Check right domain
106  assert (tt.get_space().get_domain(dom)==this) ;
107 
108  int val = tt.get_valence() ;
109  switch (val) {
110  case 0 :
111  affecte_tau_val_domain (tt.set().set_domain(dom), cf, pos_cf) ;
112  break ;
113  case 1 : {
114  bool found = false ;
115  // Cartesian basis
116  if (tt.get_basis().get_basis(dom)==CARTESIAN_BASIS) {
117  affecte_tau_val_domain (tt.set(1).set_domain(dom), cf, pos_cf) ;
118  affecte_tau_val_domain (tt.set(2).set_domain(dom), cf, pos_cf) ;
119  affecte_tau_val_domain (tt.set(3).set_domain(dom), cf, pos_cf) ;
120  found = true ;
121  }
122  if (!found) {
123  cerr << "Unknown type of vector Domain_bispheric_eta_first::affecte_tau" << endl ;
124  abort() ;
125  }
126  }
127  break ;
128  case 2 : {
129  bool found = false ;
130  // Cartesian basis and symetric
131  if ((tt.get_basis().get_basis(dom)==CARTESIAN_BASIS) && (tt.get_n_comp()==6)) {
132  affecte_tau_val_domain (tt.set(1,1).set_domain(dom), cf, pos_cf) ;
133  affecte_tau_val_domain (tt.set(1,2).set_domain(dom), cf, pos_cf) ;
134  affecte_tau_val_domain (tt.set(1,3).set_domain(dom), cf, pos_cf) ;
135  affecte_tau_val_domain (tt.set(2,2).set_domain(dom), cf, pos_cf) ;
136  affecte_tau_val_domain (tt.set(2,3).set_domain(dom), cf, pos_cf) ;
137  affecte_tau_val_domain (tt.set(3,3).set_domain(dom), cf, pos_cf) ;
138  found = true ;
139  }
140  // Cartesian basis and not symetric
141  if ((tt.get_basis().get_basis(dom)==CARTESIAN_BASIS) && (tt.get_n_comp()==9)) {
142  affecte_tau_val_domain (tt.set(1,1).set_domain(dom), cf, pos_cf) ;
143  affecte_tau_val_domain (tt.set(1,2).set_domain(dom), cf, pos_cf) ;
144  affecte_tau_val_domain (tt.set(1,3).set_domain(dom), cf, pos_cf) ;
145  affecte_tau_val_domain (tt.set(2,1).set_domain(dom), cf, pos_cf) ;
146  affecte_tau_val_domain (tt.set(2,2).set_domain(dom), cf, pos_cf) ;
147  affecte_tau_val_domain (tt.set(2,3).set_domain(dom), cf, pos_cf) ;
148  affecte_tau_val_domain (tt.set(3,1).set_domain(dom), cf, pos_cf) ;
149  affecte_tau_val_domain (tt.set(3,2).set_domain(dom), cf, pos_cf) ;
150  affecte_tau_val_domain (tt.set(3,3).set_domain(dom), cf, pos_cf) ;
151  found = true ;
152  }
153  if (!found) {
154  cerr << "Unknown type of 2-tensor Domain_bispheric_eta_first::affecte_tau" << endl ;
155  abort() ;
156  }
157  }
158  break ;
159  default :
160  cerr << "Valence " << val << " not implemented in Domain_bispheric_eta_first::affecte_tau" << endl ;
161  break ;
162  }
163 }
164 }
reference set(const Index &pos)
Read/write of an element.
Definition: array.hpp:186
Bases_container bases_1d
Arrays containing the various basis of decomposition.
int get_basis(int nd) const
Read only the basis in a given domain.
Definition: base_tensor.hpp:93
virtual void affecte_tau(Tensor &, int, const Array< double > &, int &) const
Affects some coefficients to a Tensor.
void affecte_tau_val_domain(Val_domain &so, const Array< double > &cf, int &pos_cf) const
Affects some coefficients to a Val_domain.
Dim_array nbr_coefs
Number of coefficients.
Definition: space.hpp:66
Class that gives the position inside a multi-dimensional Array.
Definition: index.hpp:38
int & set(int i)
Read/write of the position in a given dimension.
Definition: index.hpp:72
bool inc(int increm, int var=0)
Increments the position of the Index.
Definition: index.hpp:99
Val_domain & set_domain(int)
Read/write of a particular Val_domain.
Definition: scalar.hpp:555
const Domain * get_domain(int i) const
returns a pointer on the domain.
Definition: space.hpp:1385
Tensor handling.
Definition: tensor.hpp:149
Scalar & set(const Array< int > &ind)
Returns the value of a component (read/write version).
Definition: tensor_impl.hpp:91
const Base_tensor & get_basis() const
Returns the vectorial basis (triad) on which the components are defined.
Definition: tensor.hpp:504
int get_n_comp() const
Returns the number of stored components.
Definition: tensor.hpp:514
int get_valence() const
Returns the valence.
Definition: tensor.hpp:509
const Space & get_space() const
Returns the Space.
Definition: tensor.hpp:499
Class for storing the basis of decompositions of a field and its values on both the configuration and...
Definition: val_domain.hpp:69
void allocate_coef()
Allocates the values in the coefficient space and destroys the values in the configuration space.
Definition: val_domain.cpp:216
Array< double > * cf
Pointer on the Array of the values in the coefficients space.
Definition: val_domain.hpp:77
const Base_spectral & get_base() const
Returns the basis of decomposition.
Definition: val_domain.hpp:122