source: Sophya/trunk/SophyaPI/PIext/nomtarradapter.cc@ 3033

Last change on this file since 3033 was 3033, checked in by ansari, 19 years ago

Quelques corrections/ajout ds methode NObjMgrAdapter::GetInfoString() pour TArray/TMatrix et NTuple/DataTable , Reza 17/7/2006

File size: 13.0 KB
RevLine 
[2615]1#include "sopnamsp.h"
[1315]2#include "machdefs.h"
3#include <stdlib.h>
4#include <typeinfo>
[2322]5#include <iostream>
[1315]6#include <string>
7#include <complex>
8
9#include "datatype.h"
10
11#include "nomtarradapter.h"
[1321]12#include "tvector.h"
13#include "pitvmaad.h"
[1905]14#include "piyfxdrw.h"
[1315]15
16#include "fioarr.h"
17
[2999]18#include "nobjmgr.h"
[1315]19
20
21//----------------------------------------------------------------
22// Class Adaptateur d'objet (Pour NamedObjMgr) d'objet TMatrix<T>
23//----------------------------------------------------------------
24
25
26/* --Methode-- */
27template <class T>
28NOMAdapter_TArray<T>::NOMAdapter_TArray(TArray<T>* o)
29 : NObjMgrAdapter(o)
30{
31mArr = o;
32}
33
34/* --Methode-- */
35template <class T>
36NOMAdapter_TArray<T>::~NOMAdapter_TArray()
37{
38}
39
40/* --Methode-- */
41template <class T>
42NObjMgrAdapter* NOMAdapter_TArray<T>::Clone(AnyDataObj* o)
43{
44TArray<T>* a = dynamic_cast<TArray<T> *>(o);
45if (a) return ( new NOMAdapter_TArray<T>(a) );
46return ( new NObjMgrAdapter(o) );
47}
48
49/* --Methode-- */
50template <class T>
51string NOMAdapter_TArray<T>::GetDataObjType()
52{
53string type = "TArray< ";
54
55// type += DecodeTypeIdName(typeid(T).name());
56type += DataTypeInfo<T>::getTypeName();
57type += " > ";
58return(type);
59}
60
61/* --Methode-- */
62template <class T>
63AnyDataObj* NOMAdapter_TArray<T>::CloneDataObj(bool share)
64{
65return ( new TArray<T>(*mArr, share) );
66}
67
[2999]68/* --Methode-- */
69template <class T>
70string NOMAdapter_TArray<T>::GetInfoString(vector<string>& opts)
71{
72 if (opts.size() == 0) return mArr->InfoString();
73 else {
74 char buff[128];
75 if (opts[0] == "rank") {
76 sprintf(buff,"%d", (int)mArr->Rank());
77 return string(buff);
78 }
79 if (opts[0] == "sizes") {
[3033]80 string rs;
81 for(int_4 kd=0; kd<mArr->Rank(); kd++) {
82 sprintf(buff, "%ld ", (long)mArr->Size(kd));
83 rs += buff;
84 }
85 return rs;
[2999]86 }
87 else if ((opts[0] == "size") || (opts[0] == "nelts")) {
88 sprintf(buff, "%ld", (long)mArr->Size());
89 return string(buff);
90 }
91 else if (opts[0] == "sum") {
92 MuTyV mtv(mArr->Sum());
93 string s;
94 return mtv.Convert(s);
95 }
96 else return mArr->InfoString();
97 }
98}
[1321]99
100/* --Methode-- */
101template <class T>
[2999]102int NOMAdapter_TArray<T>::PerformOperation(vector<string>& opts)
103{
104 bool ok = false;
105 if ((mArr->Rank() >= 3) && (opts.size() >= 2)) {
106 int_4 ks = atoi(opts[1].c_str());
107 TMatrix<T> * slice = new TMatrix<T>;
108 char buff[40];
109 if (opts[0] == "slicexy") {
110 slice->Share(mArr->SubArray(Range::all(), Range::all(), Range(ks),
111 Range::first(), Range::first()) );
112 ok = true;
113 sprintf(buff,"slicexy_%ld",(long)ks);
114 cout << "PerformOperation(): Extracting SliceXY(" << ks << ") from array" << endl;
115 }
116 else if (opts[0] == "sliceyz") {
[3004]117 slice->Share(mArr->SubArray(Range(ks), Range::all(), Range::all(), Range::first(),
118 Range::first()).CompactAllDimensions() );
[2999]119 ok = true;
120 sprintf(buff,"sliceyz_%ld",(long)ks);
121 cout << "PerformOperation(): Extracting SliceYZ(" << ks << ") from array" << endl;
122 }
123 else if (opts[0] == "slicexz") {
[3004]124 slice->Share(mArr->SubArray(Range::all(), Range(ks), Range::all(), Range::first(),
125 Range::first()).CompactAllDimensions() );
[2999]126 ok = true;
127 sprintf(buff,"slicexz_%ld",(long)ks);
128 cout << "PerformOperation(): Extracting SliceYZ(" << ks << ") from array" << endl;
129 }
130 if (ok) {
131 string nslice;
132 if (opts.size() > 2) nslice = opts[2];
133 else nslice = buff;
134 NamedObjMgr omg;
135 omg.AddObj(slice, nslice, true);
136 return 0;
137 }
138 }
139
140 cout << "NOMAdapter_TArray<T>::PerformOperation(): Error operation/arguments !" << endl;
141 return 1;
142}
143
144/* --Methode-- */
145template <class T>
[1315]146void NOMAdapter_TArray<T>::SavePPF(POutPersist& pos, string const & nom)
147{
148FIO_TArray<T> fio(mArr);
149fio.Write(pos, nom);
150}
151
152/* --Methode-- */
153template <class T>
[2975]154void NOMAdapter_TArray<T>::Print(ostream& os, int lev)
[1315]155{
[2975]156if (lev < 3) mArr->Show(os, false);
157else mArr->Show(os, true);
158if (lev > 0) mArr->Print(os, 10*lev);
[1315]159}
160
[1321]161/* --Methode-- */
162template <class T>
163PIDrawer * NOMAdapter_TArray<T>::GetDrawer(string & dopt)
164{
165if (mArr->NbDimensions() == 1) {
166 // On peut en faire un vecteur ...
167 TVector<T>* v = new TVector<T>(*mArr, true); // on partage les donnees
168 dopt = "thinline," + dopt;
169 return( new PIYfXDrawer( new POTVectorAdapter<T>(v, true), NULL, true) );
170}
171 else return(NULL);
172}
[1315]173
174/* --Methode-- */
175template <class T>
[1321]176P2DArrayAdapter* NOMAdapter_TArray<T>::Get2DArray(string &)
177{
178if (mArr->NbDimensions() <= 2) {
179 // On peut en faire un tableau 2-D ...
180 TMatrix<T>* m = new TMatrix<T>(*mArr, true); // on partage les donnees
181 return ( new POTMatrixAdapter<T>(m, true) );
182}
183else return(NULL);
184}
185
186/* --Methode-- */
187template <class T>
[1315]188NTupleInterface* NOMAdapter_TArray<T>::GetNTupleInterface(bool& adel)
189{
190adel = true;
191return( new NTupInt_TArray<T>(mArr) );
192}
193
194
195
196
197// -------------------------------------------------------------
198
199/* --Methode-- */
200template <class T>
201NTupInt_TArray<T>::NTupInt_TArray(TArray<T>* a)
202{
203mArr = a;
204}
205
206/* --Methode-- */
207template <class T>
208NTupInt_TArray<T>::~NTupInt_TArray()
209{
210}
211
212/* --Methode-- */
213template <class T>
[2683]214sa_size_t NTupInt_TArray<T>::NbLines() const
[1315]215{
216return( mArr->Size() );
217}
218
219/* --Methode-- */
220template <class T>
[2683]221sa_size_t NTupInt_TArray<T>::NbColumns() const
[1315]222{
223return(11);
224}
225
226/* --Methode-- */
227template <class T>
[3004]228r_8 NTupInt_TArray<T>::GetCell(sa_size_t n, sa_size_t k) const
229{
230 if ((n < 0) || (n >= (int)(mArr->Size()) ) )
231 return 0.;
232 if ((k < 0) || (k > 10)) return 0.;
233 GetLineD(n);
234 return mRet[k];
235}
236
237/* --Methode-- */
238template <class T>
239sa_size_t NTupInt_TArray<T>::ColumnIndex(string const & nom) const
240{
241string vardec = "double n,x,y,z,t,u,val,real,imag,mod,phas; \n";
242 if (nom == "n") return 0;
243 else if (nom == "x") return 1;
244 else if (nom == "y") return 2;
245 else if (nom == "z") return 3;
246 else if (nom == "t") return 4;
247 else if (nom == "u") return 5;
248 else if (nom == "val") return 6;
249 else if (nom == "real") return 7;
250 else if (nom == "imag") return 8;
251 else if (nom == "mod") return 9;
252 else if (nom == "phase") return 10;
253 else return -1;
254}
255
256/* --Methode-- */
257template <class T>
258void NTupInt_TArray<T>::GetMinMax(sa_size_t k, double& min, double& max) const
259{
260 if (k == 0) {
261 min = 0.; max = (r_8)(mArr->Size()); }
262 else if (k == 1) {
263 min = 0.; max = (r_8)(mArr->SizeX()); }
264 else if (k == 2) {
265 min = 0.; max = (r_8)(mArr->SizeY()); }
266 else if (k == 3) {
267 min = 0.; max = (r_8)(mArr->SizeZ()); }
268 else if (k == 4) {
269 min = 0.; max = (r_8)(mArr->Size(3)); }
270 else if (k == 5) {
271 min = 0.; max = (r_8)(mArr->Size(4)); }
272 else if ((k == 6) || (k == 7) || (k == 9)) {
273 T tmin, tmax;
274 mArr->MinMax(tmin, tmax);
275 min = (r_8)(tmin);
276 max = (r_8)(tmax);
277 }
278 else { min = max = 0.; }
279 return;
280}
281
282/* --Methode-- */
283template <class T>
[2683]284r_8* NTupInt_TArray<T>::GetLineD(sa_size_t n) const
[1315]285{
286if ((n < 0) || (n >= (int)(mArr->Size()) ) ) {
287 mRet[0] = n;
288 for(int i=1; i<11; i++) mRet[i] = 0.;
289}
290else {
291 sa_size_t ix, iy, iz, it, iu;
292 mArr->IndexAtPosition(n, ix, iy, iz, it, iu);
293 mRet[0] = n; mRet[1] = ix; mRet[2] = iy;
294 mRet[3] = iz; mRet[4] = it; mRet[5] = iu;
295 mRet[6] = (*mArr)(ix,iy,iz,it,iu);
[3004]296 mRet[7] = mRet[6]; mRet[8] = 0.;
297 mRet[9] = mRet[6]; mRet[10] = 0.;
[1315]298 }
299return(mRet);
300}
301
302/* --Methode-- */
303template <class T>
304string NTupInt_TArray<T>::VarList_C(const char* nx) const
305{
306string nomx;
307if (nx) nomx = nx;
308else nomx = "_xh_";
309string vardec = "double n,x,y,z,t,u,val,real,imag,mod,phas; \n";
310vardec += "n = " + nomx + "[0]; x = " + nomx + "[1]; y = " + nomx + "[2]; \n";
311vardec += "z = " + nomx + "[3]; t = " + nomx + "[4]; u = " + nomx + "[5]; \n";
312vardec += "val = " + nomx + "[6]; \n";
313vardec += "real = " + nomx + "[7]; imag = " + nomx + "[8]; \n";
314vardec += "mod = " + nomx + "[9]; phas = " + nomx + "[10]; \n";
315return(vardec);
316}
317
318/* --Methode-- */
[2343]319DECL_TEMP_SPEC /* equivalent a template <> , pour SGI-CC en particulier */
[2689]320r_8* NTupInt_TArray< complex<r_4> >::GetLineD(sa_size_t n) const
[1315]321{
322if ((n < 0) || (n >= (int)(mArr->Size()) ) ) {
323 mRet[0] = n;
324 for(int i=1; i<11; i++) mRet[i] = 0.;
325}
326else {
327 sa_size_t ix, iy, iz, it, iu;
328 mArr->IndexAtPosition(n, ix, iy, iz, it, iu);
329 mRet[0] = n; mRet[1] = ix; mRet[2] = iy;
330 mRet[3] = iz; mRet[4] = it; mRet[5] = iu;
331 mRet[7] = (*mArr)(ix,iy,iz,it,iu).real();
332 mRet[8] = (*mArr)(ix,iy,iz,it,iu).imag();
[3004]333 mRet[6] = mRet[9] = sqrt(mRet[7]*mRet[7]+mRet[8]*mRet[8]);
334 mRet[10] = atan2(mRet[8], mRet[7]);
[1315]335}
336return(mRet);
337}
338
[2343]339DECL_TEMP_SPEC /* equivalent a template <> , pour SGI-CC en particulier */
[2689]340r_8* NTupInt_TArray< complex<r_8> >::GetLineD(sa_size_t n) const
[1315]341{
342if ((n < 0) || (n >= (int)(mArr->Size()) ) ) {
343 mRet[0] = n;
344 for(int i=1; i<11; i++) mRet[i] = 0.;
345}
346else {
347 sa_size_t ix, iy, iz, it, iu;
348 mArr->IndexAtPosition(n, ix, iy, iz, it, iu);
349 mRet[0] = n; mRet[1] = ix; mRet[2] = iy;
350 mRet[3] = iz; mRet[4] = it; mRet[5] = iu;
351 mRet[7] = (*mArr)(ix,iy,iz,it,iu).real();
352 mRet[8] = (*mArr)(ix,iy,iz,it,iu).imag();
[3004]353 mRet[6] = mRet[9] = sqrt(mRet[7]*mRet[7]+mRet[8]*mRet[8]);
354 mRet[10] = atan2(mRet[8], mRet[7]);
[1315]355}
356return(mRet);
357}
358
[3004]359DECL_TEMP_SPEC /* equivalent a template <> , pour SGI-CC en particulier */
360void NTupInt_TArray< complex<r_4> >::GetMinMax(sa_size_t k, double& min, double& max) const
361{
362 if (k == 0) {
363 min = 0.; max = (r_8)(mArr->Size()); }
364 else if (k == 1) {
365 min = 0.; max = (r_8)(mArr->SizeX()); }
366 else if (k == 2) {
367 min = 0.; max = (r_8)(mArr->SizeY()); }
368 else if (k == 3) {
369 min = 0.; max = (r_8)(mArr->SizeZ()); }
370 else if (k == 4) {
371 min = 0.; max = (r_8)(mArr->Size(3)); }
372 else if (k == 5) {
373 min = 0.; max = (r_8)(mArr->Size(4)); }
374 else if ((k >= 6) || (k <= 9)) {
375 r_8 tmin[3] = {9.e39,9.e39,9.e39};
376 r_8 tmax[3] = {-9.e39,-9.e39,-9.e39};
377 for(sa_size_t jj=0; jj<mArr->Size(); jj++) {
378 sa_size_t ix, iy, iz, it, iu;
379 mArr->IndexAtPosition(jj, ix, iy, iz, it, iu);
380 r_8 cv[3];
381 cv[0] = (*mArr)(ix,iy,iz,it,iu).real();
382 cv[1] = (*mArr)(ix,iy,iz,it,iu).imag();
383 cv[2] = sqrt(cv[0]*cv[0]+cv[1]*cv[1]);
384 for(int i=0; i<3; i++) {
385 if (cv[i] < tmin[i]) tmin[i] = cv[i];
386 if (cv[i] > tmax[i]) tmax[i] = cv[i];
387 }
388 }
389 if (k == 7) { min = tmin[0]; max = tmax[0]; }
390 else if (k == 8) { min = tmin[0]; max = tmax[0]; }
391 else { min = tmin[2]; max = tmax[2]; }
392 }
393 else { min = max = 0.; }
394 return;
395}
396DECL_TEMP_SPEC /* equivalent a template <> , pour SGI-CC en particulier */
397void NTupInt_TArray< complex<r_8> >::GetMinMax(sa_size_t k, double& min, double& max) const
398{
399 if (k == 0) {
400 min = 0.; max = (r_8)(mArr->Size()); }
401 else if (k == 1) {
402 min = 0.; max = (r_8)(mArr->SizeX()); }
403 else if (k == 2) {
404 min = 0.; max = (r_8)(mArr->SizeY()); }
405 else if (k == 3) {
406 min = 0.; max = (r_8)(mArr->SizeZ()); }
407 else if (k == 4) {
408 min = 0.; max = (r_8)(mArr->Size(3)); }
409 else if (k == 5) {
410 min = 0.; max = (r_8)(mArr->Size(4)); }
411 else if ((k >= 6) || (k <= 9)) {
412 r_8 tmin[3] = {9.e39,9.e39,9.e39};
413 r_8 tmax[3] = {-9.e39,-9.e39,-9.e39};
414 for(sa_size_t jj=0; jj<mArr->Size(); jj++) {
415 sa_size_t ix, iy, iz, it, iu;
416 mArr->IndexAtPosition(jj, ix, iy, iz, it, iu);
417 r_8 cv[3];
418 cv[0] = (*mArr)(ix,iy,iz,it,iu).real();
419 cv[1] = (*mArr)(ix,iy,iz,it,iu).imag();
420 cv[2] = sqrt(cv[0]*cv[0]+cv[1]*cv[1]);
421 for(int i=0; i<3; i++) {
422 if (cv[i] < tmin[i]) tmin[i] = cv[i];
423 if (cv[i] > tmax[i]) tmax[i] = cv[i];
424 }
425 }
426 if (k == 7) { min = tmin[0]; max = tmax[0]; }
427 else if (k == 8) { min = tmin[0]; max = tmax[0]; }
428 else { min = tmin[2]; max = tmax[2]; }
429 }
430 else { min = max = 0.; }
431 return;
432}
[1315]433
434#ifdef __CXX_PRAGMA_TEMPLATES__
[2930]435#pragma define_template NOMAdapter_TArray<uint_2>
436#pragma define_template NOMAdapter_TArray<int_2>
[1315]437#pragma define_template NOMAdapter_TArray<int_4>
[2930]438#pragma define_template NOMAdapter_TArray<int_8>
[1315]439#pragma define_template NOMAdapter_TArray<r_4>
440#pragma define_template NOMAdapter_TArray<r_8>
441#pragma define_template NOMAdapter_TArray< complex<r_4> >
442#pragma define_template NOMAdapter_TArray< complex<r_8> >
[2930]443#pragma define_template NTupInt_TArray<uint_2>
444#pragma define_template NTupInt_TArray<int_2>
[1315]445#pragma define_template NTupInt_TArray<int_4>
[2930]446#pragma define_template NTupInt_TArray<int_8>
[1315]447#pragma define_template NTupInt_TArray<r_4>
448#pragma define_template NTupInt_TArray<r_8>
449#pragma define_template NTupInt_TArray< complex<r_4> >
450#pragma define_template NTupInt_TArray< complex<r_8> >
451#endif
452
453#if defined(ANSI_TEMPLATES)
[2930]454template class NOMAdapter_TArray<uint_2>;
455template class NOMAdapter_TArray<int_2>;
[1315]456template class NOMAdapter_TArray<int_4>;
[2930]457template class NOMAdapter_TArray<int_8>;
[1315]458template class NOMAdapter_TArray<r_4>;
459template class NOMAdapter_TArray<r_8>;
460template class NOMAdapter_TArray< complex<r_4> >;
461template class NOMAdapter_TArray< complex<r_8> >;
[2930]462template class NTupInt_TArray<uint_2>;
463template class NTupInt_TArray<int_2>;
[1315]464template class NTupInt_TArray<int_4>;
[2930]465template class NTupInt_TArray<int_8>;
[1315]466template class NTupInt_TArray<r_4>;
467template class NTupInt_TArray<r_8>;
468template class NTupInt_TArray< complex<r_4> >;
469template class NTupInt_TArray< complex<r_8> >;
470#endif
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