95 int type_inter)
const {
97 assert(
etat != ETATNONDEF) ;
98 assert(
gval->compatible(&mp, lmax, lmin) ) ;
101 if (
etat == ETATZERO) {
102 resu.
annule(lmin, lmax-1) ;
106 int nzin = lmax - lmin ;
108 const Mg3d* mgrid = mp.get_mg() ;
109 for (
int i=lmin; i<lmax; i++) {
110 if ((mgrid->
get_nt(i) > 1)&&(dim_spec==1)) dim_spec = 2;
111 if (mgrid->
get_np(i) > 1) dim_spec = 3;
113 const Coord& rr = mp.r ;
115 int* ntet =
new int[nzin] ;
117 int* nphi =
new int[nzin] ;
119 for (
int i=lmin; i<lmax; i++) {
120 int tmp = mgrid->
get_np(i) ;
122 nphimax = (tmp > nphimax ? tmp : nphimax) ;
125 ntetmax = (tmp > ntetmax ? tmp : ntetmax) ;
128 for (
int i=lmin; i<lmax; i++) {
129 if ((nphimax % nphi[i-lmin]) != 0) {
130 cout <<
"Tbl_val::to_spectral: The numbers of points in phi" << endl ;
131 cout <<
"in the different domains of Meudon grid are not" << endl;
132 cout <<
"well defined; see the documentation." << endl ;
135 assert((ntet[i-lmin]-1) > 0) ;
136 if (((ntetmax-1) % (ntet[i-lmin]-1)) != 0) {
137 cout <<
"Tbl_val::to_spectral: The numbers of points in theta"<< endl ;
138 cout <<
"in the different domains of Meudon grid are not" << endl;
139 cout <<
"well defined; see the documentation." << endl ;
146 if (lmin>0) resu.
annule(0,lmin-1) ;
147 if (lmax < mgrid->get_nzone()) resu.
annule(lmax, mgrid->
get_nzone()-1) ;
149 int fant =
gval->get_fantome() ;
152 for (
int l=lmin; l<lmax; l++) nrarr += mgrid->
get_nr(l) -1 ;
157 int tsize =
dim->dim[0] + 2*fant ;
160 for (
int i=0; i<tsize; i++) fdep.
set(i) =
t[i] ;
165 for (
int l=lmin; l<lmax; l++) {
166 for (
int i=0; i<mgrid->
get_nr(l); i++) {
167 rarr.
set(inum) = (+rr)(l,0,0,i) ;
172 farr =
gval->interpol1(*
gval->zr, rarr, fdep, flag, type_inter) ;
174 for (
int l=lmin; l<lmax; l++) {
175 for (
int i=0; i<mgrid->
get_nr(l); i++) {
185 int tsizex =
dim->dim[1] + 2*fant ;
186 int tsizez =
dim->dim[0] + 2*fant ;
187 Tbl fdep(tsizex, tsizez) ;
189 for (
int j=0; j<tsizex; j++) {
190 for (
int i=0; i<tsizez; i++) {
191 int l = tsizez*j + i ;
195 Tbl farr(ntetmax, nrarr) ;
198 Tbl tetarr(ntetmax) ;
202 for (
int l=lmin; l<lmax; l++) {
203 if (ntetmax == ntet[l-lmin]) ltmax = l ;
204 for (
int i=0; i<mgrid->
get_nr(l); i++) {
205 rarr.
set(inum) = (+rr)(l,0,0,i) ;
211 for (
int j=0; j<ntetmax; j++)
212 tetarr.
set(j) = (+
tet)(ltmax,0,j,0) ;
213 farr =
gval->interpol2(fdep, rarr, tetarr, type_inter) ;
215 for (
int l=lmin; l<lmax; l++) {
216 for (
int j=0; j<ntet[l-lmin]; j++) {
217 int itet = (ntetmax-1)/(ntet[l-lmin]-1)*j ;
218 for (
int i=0; i<mgrid->
get_nr(l); i++) {
222 inum -= mgrid->
get_nr(l) ;
224 inum += mgrid->
get_nr(l) - 1;
230 if (type_inter == 0) {
231 cout <<
"The use of routine INSMTS is not well suited" << endl ;
232 cout <<
"for 3D interpolation." << endl ;
235 int tsizey =
dim->dim[2] + 2*fant ;
236 int tsizex =
dim->dim[1] + 2*fant ;
237 int tsizez =
dim->dim[0] + 2*fant ;
238 Tbl fdep(tsizey, tsizex, tsizez) ;
240 for (
int k=0; k<tsizey; k++) {
241 for (
int j=0; j<tsizex; j++) {
242 for (
int i=0; i<tsizez; i++) {
243 int l = (k*tsizex+j)*tsizez+i ;
248 Tbl farr(nphimax, ntetmax, nrarr) ;
251 Tbl tetarr(ntetmax) ;
253 Tbl phiarr(nphimax) ;
258 for (
int l=lmin; l<lmax; l++) {
259 if (ntetmax == ntet[l-lmin]) ltmax = l ;
260 if (nphimax == nphi[l-lmin]) lpmax = l ;
261 for (
int i=0; i<mgrid->
get_nr(l); i++) {
262 rarr.
set(inum) = (+rr)(l,0,0,i) ;
269 for (
int k=0; k<nphimax; k++) {
270 phiarr.
set(k) = (+
phi)(lpmax,k,0,0) ;
272 for (
int j=0; j<ntetmax; j++)
273 tetarr.
set(j) = (+
tet)(ltmax,0,j,0) ;
274 farr =
gval->interpol3(fdep, rarr, tetarr, phiarr, type_inter) ;
276 for (
int l=lmin; l<lmax; l++) {
277 for (
int k=0; k<nphi[l-lmin]; k++) {
278 int iphi = (nphimax-1)/(nphi[l-lmin]-1)*k ;
279 for (
int j=0; j<ntet[l-lmin]; j++) {
280 int itet = (ntetmax-1)/(ntet[l-lmin]-1)*j ;
281 for (
int i=0; i<mgrid->
get_nr(l); i++) {
285 inum -= mgrid->
get_nr(l) ;
288 inum += mgrid->
get_nr(l) - 1 ;
294 cout <<
"Tbl_val::to_spectral:Strange error..." << endl ;
void from_spectral(const Scalar &meudon, int lmax, int lmin=0, bool interfr=false, bool interft=false)
Interpolation from a Scalar to a Tbl_val (spectral summation).