source: Sophya/trunk/Poubelle/PIext/nobjmgr.cc@ 413

Last change on this file since 413 was 223, checked in by ansari, 26 years ago

Creation module DPC/PIext Reza 09/04/99

File size: 59.4 KB
Line 
1#include <stdio.h>
2#include <stdlib.h>
3#include <ctype.h>
4
5#include <iostream.h>
6#include <string>
7#include <list>
8#include <map>
9#if defined(__KCC__)
10using std::string ;
11#include <list.h>
12#include <map.h>
13#endif
14
15#include "strutil.h"
16#include "datatypes.h"
17//EVOL-PLANCK #include "fitsimage.h"
18
19#include "nobjmgr.h"
20#include "servnobjm.h"
21#include "pistdimgapp.h"
22
23#include "pclassids.h"
24#include "poly.h"
25#include "dvlist.h"
26#include "matrix.h"
27#include "cvector.h"
28//EVOL-PLANCK #include "zfidu.h"
29//EVOL-PLANCK #include "fft.h"
30
31#include "fct1dfit.h"
32#include "fct2dfit.h"
33
34#include "pimgadapter.h"
35#include "pipodrw.h"
36
37#include "pihisto.h"
38#include "hisprof.h"
39#include "pihisto2d.h"
40#include "pintuple.h"
41#include "pisurfdr.h"
42#include "pintup3d.h"
43#include "pigfd1.h"
44#include "pigfd2.h"
45
46// Si le module StarReco++ a ete compile (Pour les StarList, Transfo, etc ...
47#ifdef SANS_EVOLPLANCK
48#include "pistlist.h"
49#include "transfo.h"
50#endif
51
52//++
53// Class NamedObjMgr
54// Lib PI
55// include nobjmgr.h
56//
57// Cette classe fournit les services nécéssaire àla gestion des objets
58// (l'ensemble des objets PPersist de PEIDA++) au sein du programme
59// d'analyse interactive *piapp* . Elle constitue en outre l'interface
60// entre les fonctions utilisateur et l'application graphique.
61//--
62//++
63// Links Voir aussi
64// PIStdImgApp
65// Services2NObjMgr
66// PIACmd
67//--
68
69
70// ..................................................................
71// ...... Gestion des objets nommes, variables globales ............
72struct nobj_item {
73 PPersist* obj;
74 int num;
75 list<int> wrsid;
76 bool operator==(nobj_item const& b) const
77 { return (this->obj == b.obj); }
78};
79
80typedef map<string, nobj_item, less<string> > NObjList;
81
82static NObjList* myObjs;
83static int fgOInit = 0;
84static int myNObj = 0;
85static string* lastobj = NULL;
86
87static PIStdImgApp* myImgApp=NULL;
88static Services2NObjMgr* servnobjm=NULL;
89
90static string* TmpDir; // Repertoire pour les compilations / link dynamique
91
92//++
93// Titre Constructeurs
94//--
95//++
96// NamedObjMgr()
97// Constructeur. Les différents instantiation de la classe "NamedObjMgr"
98// dans une même application créent des objets qui travaillent sur la même
99// liste d'objets. Les objets de cette classe ne possedent en effet pas
100// de variables membres.
101//--
102
103/* --Methode-- */
104NamedObjMgr::NamedObjMgr()
105{
106if (fgOInit == 0) {
107 myObjs = new NObjList;
108 lastobj = new string("");
109 char* varenv;
110 TmpDir = new string("");
111 if ( (varenv=getenv("PEIDA_TMP")) != NULL ) (*TmpDir) = varenv;
112 else if ( (varenv=getenv("TMPDIR")) != NULL ) (*TmpDir) = varenv;
113 int l = (*TmpDir).length();
114 if ( (l>0) && ((*TmpDir)[l-1] != '/') ) (*TmpDir) += '/';
115 servnobjm = new Services2NObjMgr(NULL, (*TmpDir));
116 }
117fgOInit++;
118}
119
120
121/* --Methode-- */
122NamedObjMgr::~NamedObjMgr()
123{
124fgOInit--;
125if (fgOInit == 0) delete myObjs;
126}
127
128//++
129// Titre Méthodes
130//--
131//++
132// void SetImgApp(PIStdImgApp* app)
133// Spécifie l'objet "PIStdImgApp" associé.
134// PIStdImgApp* GetImgApp()
135// Accès à l'objet "PIStdImgApp" associé.
136//--
137
138/* --Methode-- */
139void NamedObjMgr::SetImgApp(PIStdImgApp* app)
140{
141myImgApp = app;
142servnobjm->SetImgApp(app);
143}
144
145/* --Methode-- */
146PIStdImgApp* NamedObjMgr::GetImgApp()
147{
148return(myImgApp);
149}
150
151/* --Methode-- */
152Services2NObjMgr* NamedObjMgr::GetServiceObj()
153{
154return(servnobjm);
155}
156
157//++
158// Titre Gestion de la liste des objets
159//--
160//++
161// void AddObj(PPersist* obj, string& nom)
162// Ajoute l'objet "obj" à la liste, identifié par "nom".
163// Si un objet de même nom existe, l'ancien objet est renommé en concaténant
164// un numéro à son nom.
165// void DelObj(string const& nom, bool fgd=true)
166// Supprime l'objet "nom" de la liste. L'objet est détruit si "fgd==true" ("delete obj")
167// void DelObjects(string const& patt, bool fgd=true)
168// Supprime l'ensemble des objets dont le nom correspond au patron "patt".
169// Le patron peut contenir les caractères "*" et "?" . Les objets sont détruits si "fgd==true"
170// PPersist* GetObj(string const& nom)
171// Retourne l'objet identifié par "nom" dans la liste. Retourne "NULL" si "nom" n'est
172// pas dans la liste.
173// void RenameObj(string const& nom, string& nomnew)
174// Change le nom d'un objet dans la liste.
175// string LastObjName()
176// Renvoie le nom du dernier objet ajouté à la liste
177//--
178
179
180/* --Methode-- */
181void NamedObjMgr::AddObj(PPersist* obj, string& nom)
182{
183
184if (obj == NULL) return;
185// on supprime les blancs de debut et de fin
186size_t p = nom.find_first_not_of(" ");
187if(p>nom.length()) {
188 nom = "";
189} else {
190 nom = nom.substr(p);
191 p = nom.find_first_of(" ");
192 if(p>nom.length()) p=nom.length();
193 nom = nom.substr(0, p);
194}
195
196myNObj++;
197if (nom.length() < 1) nom = servnobjm->PClassIdToShortClassName(obj->ClassId());
198NObjList::iterator it = myObjs->find(nom);
199if (it != myObjs->end()) { // l'objet existe deja
200 char strg[16];
201 sprintf(strg, "%d", myNObj);
202 string nomnew = nom + strg;
203 RenameObj(nom, nomnew);
204 }
205
206(*lastobj) = nom;
207nobj_item no;
208no.obj = obj;
209no.num = myNObj;
210(*myObjs)[(*lastobj)] = no;
211if (myImgApp) {
212 string str = (*lastobj) + " (T= " + servnobjm->PClassIdToClassName(obj->ClassId()) + ")" ;
213 (myImgApp->ObjMgrW())->AddObj(str.c_str(), myNObj+1000);
214}
215
216cout << "NamedObjMgr::AddObj() Object " << (*lastobj) << " ( "
217 << servnobjm->PClassIdToClassName(obj->ClassId()) << " ) added (Total= " << myObjs->size() << ")" << endl;
218return;
219}
220
221/* --Methode-- */
222void NamedObjMgr::DelObj(string const& nom, bool fgd)
223{
224NObjList::iterator it = myObjs->find(nom);
225if (it == myObjs->end()) return;
226list<int>::iterator ii;
227if (myImgApp) {
228//DBG cerr << " *DBG* NamedObjMgr::DelObj Sz= " << (*it).second.wrsid.size() << endl;
229 for(ii=(*it).second.wrsid.begin(); ii != (*it).second.wrsid.end(); ii++)
230 myImgApp->DelWRsId((*ii));
231 (myImgApp->ObjMgrW())->DelObj((*it).second.num+1000);
232}
233if (fgd) delete (*it).second.obj;
234myObjs->erase(it);
235if (fgd) cout << "NamedObjMgr::DelObj() Object " << nom << " deleted (Total= " << myObjs->size() << ")" << endl;
236else cout << "NamedObjMgr::DelObj() Object " << nom << " removed (Total= " << myObjs->size() << ")" << endl;
237return;
238}
239
240/* --Methode-- */
241void NamedObjMgr::DelObjects(string const& patt, bool fgd)
242{
243NObjList::iterator it;
244list<string> odel;
245string cn;
246for(it = myObjs->begin(); it != myObjs->end(); it++) {
247 cn = (*it).first;
248 if (csh_parse(cn.c_str(), patt.c_str()) != 0) odel.push_back(cn);
249 }
250list<string>::iterator ii;
251for(ii=odel.begin(); ii != odel.end(); ii++) DelObj(*ii, fgd);
252}
253
254/* --Methode-- */
255PPersist* NamedObjMgr::GetObj(string const& nom)
256{
257NObjList::iterator it = myObjs->find(nom);
258if (it == myObjs->end()) return(NULL);
259return((*it).second.obj);
260}
261
262/* --Methode-- */
263void NamedObjMgr::RenameObj(string const& nom, string& nomnew)
264{
265PPersist* obj = GetObj(nom);
266if (obj == NULL) return;
267DelObj(nom, false);
268AddObj(obj, nomnew);
269return;
270}
271
272/* --Methode-- */
273string NamedObjMgr::LastObjName()
274{
275return((*lastobj));
276}
277
278//++
279// Titre Entrées-Sorties (I/O) sur les objets
280//--
281//++
282// void ReadObj(PInPersist& s, int num=-1)
283// Lit l'objet à partir avec le tag numéro "num" dans le flot "PInPersist s"
284// et l'ajoute à la liste. Si "num" est négatif, tous les objets présents
285// sur le flot "s" sont créés et ajoutés à la liste.
286// void ReadObj(string const & nomppf, string nobj="")
287// Lit le premier objet à partir du fichier PPF "nomppf". L'objet est ajouté
288// à la liste avec le nom "nobj". Si "nobj" est une chaîne vide, un nom est
289// composé à partir du nom de fichier.
290//--
291
292/* --Methode-- */
293void NamedObjMgr::ReadObj(string const & flnm, string nobj)
294{
295PPersist* obj=NULL;
296bool ok = true;
297
298TRY{
299 PInPersist pis(flnm);
300 obj = PPersistMgr::ReadObject(pis);
301 if (obj == NULL) ok = false;
302} CATCH(merr)
303 { printf("NamedObjMgr::ReadObj()/Error Exception= %ld (%s) \n",
304 (long)merr, PeidaExc(merr)); ok = false; } ENDTRY;
305
306if (!ok) return;
307if (nobj.length()<1) nobj = servnobjm->FileName2Name(flnm);
308AddObj(obj, nobj);
309return;
310}
311
312/* --Methode-- */
313void NamedObjMgr::ReadObj(PInPersist& s, int num)
314{
315int i, cid, key, ln;
316int n0, n1;
317bool ok = true;
318PPersist* obj=NULL;
319string nom;
320
321if ( (s.NbTags() < 1) || (num >= s.NbTags()) ) {
322 if (num >= 0) {
323 printf("NamedObjMgr::ReadObj(PInPersist, %d) Error! NbTags = %d \n", num, s.NbTags());
324 return;
325 }
326 TRY {
327 obj = PPersistMgr::ReadObject(s);
328 if (obj == NULL) ok = false;
329 } CATCH(merr) {
330 printf("NamedObjMgr::ReadObj()/Error Exception= %ld (%s) \n", (long)merr, PeidaExc(merr));
331 ok = false;
332 } ENDTRY;
333 if (!ok) return;
334 nom = "";
335 AddObj(obj, nom);
336}
337
338if (num < 0) { n0 = 0; n1 = s.NbTags(); }
339else { n0 = num; n1 = num+1; }
340for(i=n0; i<n1; i++) {
341 key = s.TagKey(i, cid, ln);
342 if (ln <= 0) nom = "";
343 else nom = s.TagName(i);
344 s.GotoTag(i);
345 TRY {
346 obj = PPersistMgr::ReadObject(s);
347 if (obj == NULL) ok = false;
348 } CATCH(merr) {
349 printf("NamedObjMgr::ReadObj()/Error Exception= %ld (%s) \n", (long)merr, PeidaExc(merr));
350 ok = false;
351 } ENDTRY;
352 if (ok) AddObj(obj, nom);
353}
354
355return;
356}
357/* --Methode-- */
358void NamedObjMgr::ReadAll(string const & flnm)
359{
360bool ok = true;
361PPersist* obj=NULL;
362
363PInPersist* ppin;
364TRY{
365 ppin = new PInPersist(flnm);
366 if (ppin->NbTags() < 1) obj = PPersistMgr::ReadObject((*ppin));
367 else obj = NULL;
368} CATCH(merr)
369 { printf("NamedObjMgr::ReadAll()/Error Exception= %ld (%s) \n",
370 (long)merr, PeidaExc(merr)); ok = false; } ENDTRY;
371
372if (!ok) return;
373if (obj) {
374 string nom = servnobjm->FileName2Name(flnm);
375 AddObj(obj, nom);
376 }
377else ReadObj((*ppin), -1);
378delete ppin;
379return;
380}
381
382/* --Methode-- */
383void NamedObjMgr::ReadFits(string const & flnm, string nobj)
384{
385bool ok = true;
386RzImage* obj;
387
388TRY{
389// obj = RzReadFits((char*)flnm.c_str(), ImgOffX, ImgOffY, ImgSizX, ImgSizY, ImgBitSgn);
390#ifdef SANS_EVOLPLANCK
391 obj = RzReadFits((char*)flnm.c_str());
392#else
393 printf("NamedObjMgr::ReadFITS( NON-Disponible EVOL-PLANCK) \n");
394 obj = NULL;
395#endif
396 if (obj == NULL) ok = false;
397} CATCH(merr) {
398 printf("NamedObjMgr::ReadFITS(_Error Exception= %ld (%s) \n", (long)merr, PeidaExc(merr));
399 ok = false;
400} ENDTRY;
401if (ok) {
402 if (nobj.length()<1) nobj = servnobjm->FileName2Name(flnm);
403 AddObj((PPersist*)obj, nobj);
404}
405return;
406}
407
408
409static int key_for_write = 5000;
410/* --Methode-- */
411void NamedObjMgr::SaveObj(string const& nom, POutPersist& s)
412{
413PPersist* obj=NULL;
414obj = GetObj(nom);
415if (obj == NULL) return;
416printf("NamedObjMgr::SaveObj(%s, ) (Type=%s) \n",
417 nom.c_str(), servnobjm->PClassIdToClassName(obj->ClassId()));
418string nm = nom; // A cause de const
419obj->Write(s, key_for_write, nm);
420key_for_write++;
421return;
422}
423
424/* --Methode-- */
425void NamedObjMgr::SaveAll(string const& flnm)
426{
427bool ok = true;
428
429POutPersist* pout;
430TRY{
431 pout = new POutPersist(flnm);
432} CATCH(merr)
433 { printf("NamedObjMgr::SaveAll()/Error Exception= %ld (%s) \n",
434 (long)merr, PeidaExc(merr)); ok = false; } ENDTRY;
435if (!ok) return;
436NObjList::iterator it;
437for(it = myObjs->begin(); it != myObjs->end(); it++) SaveObj((*it).first, (*pout));
438delete pout;
439return;
440}
441
442/* --Methode-- */
443void NamedObjMgr::SaveFits(string const& nom, string const & flnm)
444{
445
446#ifndef SANS_EVOLPLANCK
447printf("NamedObjMgr::SaveFITS( NON-Disponible EVOL-PLANCK) \n");
448return;
449
450#else
451
452PPersist* obj=NULL;
453obj = GetObj(nom);
454if (obj == NULL) return;
455int cid = obj->ClassId();
456if ( (cid < ClassId_Image) && ( cid > ClassId_Image+kr_8) ) {
457 printf("NamedObjMgr::SaveFits(%s, ) Error - Object is NOT an image (type=%s) \n",
458 nom.c_str(), servnobjm->PClassIdToClassName(obj->ClassId()) );
459 return;
460}
461
462RzImage* pim = (RzImage*)obj;
463TRY {
464 switch (pim->PixelType()) {
465 case kuint_2:
466 {
467 FitsImageU2 imgfits(*pim);
468 imgfits.Save(flnm);
469 }
470 break;
471 case kint_2:
472 {
473 FitsImageI2 imgfits(*pim);
474 imgfits.Save(flnm);
475 }
476 break;
477 case kint_4:
478 {
479 FitsImageI4 imgfits(*pim);
480 imgfits.Save(flnm);
481 }
482 break;
483 case kr_4:
484 {
485 FitsImageR4 imgfits(*pim);
486 imgfits.Save(flnm);
487 }
488 break;
489 default :
490 printf("NamedObjMgr::SaveObj()/Error Type d'image (%d) NON supporte en FITS \n",
491 (int)pim->PixelType());
492 break;
493 }
494} CATCH(merr) {
495 printf("NamedObjMgr::SaveObj()/Error Exception= %ld (%s) \n", (long)merr, PeidaExc(merr));
496} ENDTRY;
497
498#endif
499
500return;
501}
502
503
504/* --Methode-- */
505void NamedObjMgr::ListObjs()
506{
507int k;
508PPersist* obj=NULL;
509string ctyp;
510char strg[256];
511int cid;
512
513cout << "NamedObjMgr::ListObjs() NObjs= " << myObjs->size() << "\n" ;
514NObjList::iterator it; k = 0;
515for(it = myObjs->begin(); it != myObjs->end(); it++) {
516 obj = (*it).second.obj;
517
518 cid = obj->ClassId();
519 ctyp = servnobjm->PClassIdToClassName(cid);
520 sprintf(strg, "%2d/ %16s : %s", k, servnobjm->PClassIdToClassName(obj->ClassId()), ((*it).first).c_str());
521 ctyp = strg;
522 cout << ctyp << "\n" ;
523 k++;
524}
525cout << endl;
526return;
527}
528
529/* --Methode-- */
530void NamedObjMgr::PrintObj(string const& nom)
531{
532PPersist* obj=GetObj(nom);
533if (obj == NULL) {
534 cout << "NamedObjMgr::PrintObj() Error , Pas d'objet de nom " << nom << endl;
535 return;
536}
537
538int cid = obj->ClassId();
539string ctyp = servnobjm->PClassIdToClassName(cid);
540
541cout << "NamedObjMgr::PrintObj(" << nom << ") Type: " << ctyp
542 << "Cid= " << cid << ")" << endl;
543
544int i4dum;
545switch (cid) {
546 case ClassId_Poly1 :
547 ((Poly*)obj)->Print(cout);
548 break;
549 case ClassId_Poly2 :
550 ((Poly2*)obj)->Print(cout);
551 break;
552 case ClassId_Matrix :
553 case ClassId_Vector :
554 cout << *((Matrix*)obj);
555 break;
556
557 case ClassId_DVList :
558 ((DVList*)obj)->Print();
559 break;
560
561 case ClassId_Histo1D :
562 ((Histo*)obj)->Print(60);
563 break;
564 case ClassId_Histo2D :
565 ((Histo2D*)obj)->Print();
566 break;
567 case ClassId_HProf :
568 ((HProf*)obj)->Print(60);
569 break;
570 case ClassId_NTuple :
571 cout << ((NTuple*)obj)->Info();
572 cout << *((NTuple*)obj);
573 break;
574 case ClassId_GeneralFitData :
575 ((GeneralFitData*)obj)->PrintStatus();
576 i4dum = ((GeneralFitData*)obj)->NData();
577 if(i4dum>0) {
578 ((GeneralFitData*)obj)->PrintData(0);
579 ((GeneralFitData*)obj)->PrintData(i4dum-1);
580 }
581 break;
582
583 case ClassId_Image :
584 case ClassId_Image + kuint_1 :
585 case ClassId_Image + kint_1 :
586 case ClassId_Image + kuint_2 :
587 case ClassId_Image + kint_2 :
588 case ClassId_Image + kuint_4 :
589 case ClassId_Image + kint_4 :
590 case ClassId_Image + kr_4 :
591 case ClassId_Image + kr_8 :
592 ((RzImage*)obj)->Print();
593 break;
594
595#ifdef SANS_EVOLPLANCK
596 case ClassId_ZFidu :
597 ((ZFidu*)obj)->Print();
598 break;
599
600 case ClassId_StarList :
601 ((StarList*)obj)->Print(10, 1, 50);
602 break;
603 case ClassId_Transfo :
604 ((Transfo*)obj)->Print(cout);
605 break;
606 case ClassId_PSF :
607 break;
608
609 case ClassId_Star + BStar_Type :
610 case ClassId_Star + RzStar_Type :
611 case ClassId_Star + PSFStar_Type :
612 case ClassId_Star + MCStar_Type :
613 case ClassId_Star + CircRFixStar_Type :
614 case ClassId_Star + PSFDHStar_Type :
615 case ClassId_Star + PSFSEStar_Type :
616 case ClassId_Star + MCDHStar_Type :
617 ((BStar*)obj)->Print(1);
618 break;
619#endif
620
621// - Ajout objet PPF
622 default:
623 break;
624 }
625cout << endl;
626return;
627}
628
629/* --Methode-- */
630void NamedObjMgr::DisplayObj(string const& nom, string dopt)
631{
632PPersist* obj=GetObj(nom);
633if (obj == NULL) {
634 cout << "NamedObjMgr::DisplayObj() Error , Pas d'objet de nom " << nom << endl;
635 return;
636}
637if (!myImgApp) return;
638
639int cid = obj->ClassId();
640string ctyp = servnobjm->PClassIdToClassName(cid);
641
642int wrsid = 0;
643bool fgsr = true;
644// On veut tracer une ligne pour vecteur et histo1D par defaut
645if ( (cid == ClassId_Vector) || (cid == ClassId_Histo1D) ) dopt = "thinline," + dopt;
646else if(cid == ClassId_HProf) dopt = "fcirclemarker5," + dopt;
647int opt = servnobjm->DecodeDispOption(dopt, fgsr);
648
649switch (cid) {
650 case ClassId_Poly1 :
651 case ClassId_Poly2 :
652 case ClassId_DVList :
653 cout << "NamedObjMgr::DisplayObj() Error , Pas de display pour " << ctyp << endl;
654 break;
655
656 case ClassId_Matrix :
657 {
658 wrsid = myImgApp->DispImage(new POMatrixAdapter((Matrix*)obj, false), nom, opt);
659 break;
660 }
661 case ClassId_Vector :
662 {
663 PIYfXDrawer* dr = new PIYfXDrawer( new POVectorAdapter((Vector*)obj, false), NULL, true);
664 wrsid = myImgApp->DispScDrawer( (PIDrawer*)dr, nom, opt);
665 break;
666 }
667 case ClassId_Histo1D :
668 {
669 PIHisto* pih = new PIHisto(((Histo*)obj), false);
670 wrsid = myImgApp->DispScDrawer( (PIDrawer*)pih, nom, opt);
671 break;
672 }
673 case ClassId_Histo2D :
674 {
675 PIHisto2D* pih2 = new PIHisto2D(((Histo2D*)obj), false);
676 wrsid = myImgApp->DispScDrawer( (PIDrawer*)pih2, nom, opt, nom, true);
677 break;
678 }
679 case ClassId_HProf :
680 {
681 PIHisto* pihp = new PIHisto(((Histo*)obj), false);
682 wrsid = myImgApp->DispScDrawer( (PIDrawer*)pihp, nom, opt);
683 break;
684 }
685 case ClassId_GeneralFitData :
686 {
687 GeneralFitData* gfd = (GeneralFitData*)obj;
688 if(gfd->NVar()==1) {
689 PIGenFitDat* pigfd = new PIGenFitDat(gfd,false);
690 wrsid = myImgApp->DispScDrawer((PIDrawer*)pigfd,nom,opt);
691 } else if(gfd->NVar()==2) {
692 PIGenFitDat3D* pigfd = new PIGenFitDat3D(gfd,false);
693 wrsid = myImgApp->Disp3DDrawer(pigfd,nom,opt);
694 } else {
695 cout<<"NamedObjMgr::DisplayObj() Error , Utilisez DisplayGFD pour GeneralFitData "
696 <<ctyp<<"\n de "<<gfd->NVar()<<" variables (!=1,2)"<<endl;
697 }
698 break;
699 }
700
701 case ClassId_NTuple :
702 cout << "NamedObjMgr::DisplayObj() Error , Utilisez DisplayNt pour NTuple " << ctyp << endl;
703 break;
704
705 case ClassId_Image :
706 case ClassId_Image + kuint_1 :
707 case ClassId_Image + kint_1 :
708 case ClassId_Image + kr_8 :
709 case ClassId_Image + kuint_4 :
710 wrsid = myImgApp->DispImage(new RzImageAdapter((RzImage*)obj, false), nom, opt);
711 break;
712 case ClassId_Image + kuint_2 :
713 wrsid = myImgApp->DispImage(new ImageAdapter<uint_2>((ImageU2*)obj, false), nom, opt);
714 break;
715 case ClassId_Image + kint_2 :
716 wrsid = myImgApp->DispImage(new ImageAdapter<int_2>((ImageI2*)obj, false), nom, opt);
717 break;
718 case ClassId_Image + kint_4 :
719 wrsid = myImgApp->DispImage(new ImageAdapter<int_4>((ImageI4*)obj, false), nom, opt);
720 break;
721 case ClassId_Image + kr_4 :
722 wrsid = myImgApp->DispImage(new ImageAdapter<r_4>((ImageR4*)obj, false), nom, opt);
723 break;
724
725#ifdef SANS_EVOLPLANCK
726 case ClassId_ZFidu :
727 {
728 int nx = ((ZFidu*)obj)->XMax() - ((ZFidu*)obj)->XMin();
729 int ny = ((ZFidu*)obj)->YMax() - ((ZFidu*)obj)->YMin();
730 if (nx > 1024) nx = 1024;
731 if (ny > 1024) ny = 1024;
732 if (nx < 128) nx = 128;
733 if (ny < 128) nx = 128;
734 ImageU2* msk = ((ZFidu*)obj)->MakeBadZoneMask(nx, ny);
735 myImgApp->DispImage(new ImageAdapter<uint_2>((ImageU2*)msk, true), nom, opt);
736 break;
737 }
738
739 case ClassId_StarList :
740 {
741 PIStarList* pist = new PIStarList(((StarList*)obj), false);
742 wrsid = myImgApp->DispScDrawer( (PIDrawer*)pist, nom, opt);
743 break;
744 }
745
746 case ClassId_Transfo :
747 case ClassId_PSF :
748 case ClassId_Star + BStar_Type :
749 case ClassId_Star + RzStar_Type :
750 case ClassId_Star + PSFStar_Type :
751 case ClassId_Star + MCStar_Type :
752 case ClassId_Star + CircRFixStar_Type :
753 case ClassId_Star + PSFDHStar_Type :
754 case ClassId_Star + PSFSEStar_Type :
755 case ClassId_Star + MCDHStar_Type :
756 cout << "NamedObjMgr::DisplayObj() Error , Pas de display pour " << ctyp << endl;
757 break;
758#endif
759
760// - Ajout objet PPF
761 default:
762 break;
763 }
764
765if(wrsid != 0) {
766 NObjList::iterator it = myObjs->find(nom);
767 if (it == myObjs->end()) return;
768 (*it).second.wrsid.push_back(wrsid);
769 }
770if (fgsr) myImgApp->RestoreGraphicAtt();
771return;
772}
773
774
775/* --Methode-- */
776void NamedObjMgr::DisplayNT(string const& nom, string& nmx, string& nmy, string& nmz,
777 string& erx, string& ery, string& erz, string dopt)
778{
779PPersist* obj=GetObj(nom);
780if (obj == NULL) {
781 cout << "NamedObjMgr::DisplayNT() Error , Pas d'objet de nom " << nom << endl;
782 return;
783}
784if (!myImgApp) return;
785
786int cid = obj->ClassId();
787if (cid != ClassId_NTuple) {
788 string ctyp = servnobjm->PClassIdToClassName(cid);
789 cout << "NamedObjMgr::DisplayNT() Error , Objet n'est pas un NTuple " << ctyp << endl;
790 return;
791 }
792
793int wrsid = 0;
794bool fgsr = true;
795int opt = servnobjm->DecodeDispOption(dopt, fgsr);
796
797if (nmz.length()>0) { // Display 3D
798 PINTuple3D* pin = new PINTuple3D(((NTuple*)obj), false);
799 pin->SelectXYZ(nmx.c_str(), nmy.c_str(), nmz.c_str());
800 pin->SelectErrBar(erx.c_str(), ery.c_str(), erz.c_str());
801 string titre = nmz + "%" + nmy + "%" + nmz;
802 wrsid = myImgApp->Disp3DDrawer(pin, nom, opt, titre);
803}
804else {
805 PINTuple* pin = new PINTuple(((NTuple*)obj), false);
806 pin->SelectXY(nmx.c_str(), nmy.c_str());
807 pin->SelectErrBar(erx.c_str(), ery.c_str());
808 string titre = nmy + "%" + nmz;
809 wrsid = myImgApp->DispScDrawer( (PIDrawer*)pin, nom, opt, titre);
810 }
811
812if(wrsid >= 0) {
813 NObjList::iterator it = myObjs->find(nom);
814 if (it == myObjs->end()) return;
815 (*it).second.wrsid.push_back(wrsid);
816 }
817
818if (fgsr) myImgApp->RestoreGraphicAtt();
819return;
820}
821
822/* --Methode-- cmv 13/10/98 */
823void NamedObjMgr::DisplayGFD(string const& nom, string& numvarx, string& numvary, string& err, string dopt)
824// Pour le display 2D ou 3D d'un ``GeneralFitData''.
825//| nom = nom de l'objet GeneralFitData a representer.
826//| numvarx = numero (nombre entier) de la 1ere variable d'abscisse.
827//| numvary = numero (nombre entier) de la 2sd variable d'abscisse (3D).
828//| Pour le display 2D, numvary="" string vide.
829//| err = qu'elles erreurs faut il representer ?
830//| - 2D : x y xy (display y=f(x))
831//| - 3D : x y z xy xz yz xzy (display z=f(x,y))
832//| Ceci n'est suivi que si on a PI_NotDefLineAtt, sinon toutes
833//| les barres d'erreurs sont representees.
834//| opt = options generales pour le display.
835{
836PPersist* obj=GetObj(nom);
837if(obj == NULL)
838 {cout << "NamedObjMgr::DisplayGFD() Error , Pas d'objet de nom " << nom << endl;
839 return;}
840if(!myImgApp) return;
841int cid = obj->ClassId();
842if(cid != ClassId_GeneralFitData)
843 {string ctyp = servnobjm->PClassIdToClassName(cid);
844 cout<<"NamedObjMgr::DisplayGFD() Error , Objet n'est pas un GeneralFitData "<<ctyp<<endl;
845 return;}
846
847// Decodage des options classiques
848bool fgsr = true;
849int opt = servnobjm->DecodeDispOption(dopt, fgsr);
850// Decodage des erreurs a representer
851bool errx=false, erry=false, errz=false;
852if(err.length()>0) {
853 for(int i=0;i<err.length();i++)
854 if (err[i]=='x' || err[i]=='X') errx = true;
855 else if(err[i]=='y' || err[i]=='Y') erry = true;
856 else if(err[i]=='z' || err[i]=='Z') errz = true;
857}
858// Decodage des numeros de variables en abscisse
859int numvx=-1, numvy=-1;
860if(numvarx.length()>0) numvx = atoi(numvarx.c_str());
861if(numvary.length()>0) numvy = atoi(numvary.c_str());
862
863int wrsid = 0;
864if(numvy>=0) { // Display 3D
865 PIGenFitDat3D* pigfd = new PIGenFitDat3D(((GeneralFitData*)obj),false);
866 pigfd->SelectXY(numvx,numvy);
867 pigfd->SelectErrBar(errx,erry,errz);
868 wrsid = myImgApp->Disp3DDrawer(pigfd,nom,opt);
869} else { // Display 2D
870 PIGenFitDat* pigfd = new PIGenFitDat(((GeneralFitData*)obj),false);
871 pigfd->SelectX(numvx);
872 pigfd->SelectErrBar(errx,erry);
873 wrsid = myImgApp->DispScDrawer((PIDrawer*)pigfd,nom,opt);
874}
875
876if(wrsid >= 0) {
877 NObjList::iterator it = myObjs->find(nom);
878 if (it == myObjs->end()) return;
879 (*it).second.wrsid.push_back(wrsid);
880}
881if (fgsr) myImgApp->RestoreGraphicAtt();
882return;
883}
884
885/* --Methode--
886void NamedObjMgr::DisplayImage(string const& nom, string dopt)
887{
888 cout << "NamedObjMgr::DisplayImage() a faire ! " << endl;
889}
890*/
891
892
893/* --Methode-- */
894void NamedObjMgr::DisplaySurf3D(string const& nom, string dopt)
895{
896PPersist* obj=GetObj(nom);
897if (obj == NULL) {
898 cout << "NamedObjMgr::DisplaySurf3D() Error , Pas d'objet de nom " << nom << endl;
899 return;
900}
901if (!myImgApp) return;
902
903int cid = obj->ClassId();
904
905
906P2DArrayAdapter* arr=NULL;
907switch (cid) {
908 case ClassId_Matrix :
909 arr = new POMatrixAdapter((Matrix*)obj, false);
910 break;
911 case ClassId_Histo2D :
912 arr = new POH2DAdapter((Histo2D*)obj, false);
913 break;
914 case ClassId_Image :
915 case ClassId_Image + kuint_1 :
916 case ClassId_Image + kint_1 :
917 case ClassId_Image + kr_8 :
918 case ClassId_Image + kuint_4 :
919 arr = new RzImageAdapter((RzImage*)obj, false);
920 break;
921 case ClassId_Image + kuint_2 :
922 arr = new ImageAdapter<uint_2>((ImageU2*)obj, false);
923 break;
924 case ClassId_Image + kint_2 :
925 arr = new ImageAdapter<int_2>((ImageI2*)obj, false);
926 break;
927 case ClassId_Image + kint_4 :
928 arr = new ImageAdapter<int_4>((ImageI4*)obj, false);
929 break;
930 case ClassId_Image + kr_4 :
931 arr = new ImageAdapter<r_4>((ImageR4*)obj, false);
932 break;
933
934 default :
935 cout << "NamedObjMgr::DisplaySurf3D() Error , Pas de display pour " << servnobjm->PClassIdToClassName(cid) << endl;
936 return;
937 }
938
939if (!arr) return;
940if ((arr->XSize() > 250) || (arr->YSize() > 250)) {
941 cout << "NamedObjMgr::DisplaySurf3D() Error , 2D-Array(" << arr->XSize()
942 << "x" << arr->YSize() << ") trop grand (max=250x250)" << endl;
943 delete arr;
944 return;
945 }
946
947int wrsid = 0;
948bool fgsr = true;
949int opt = servnobjm->DecodeDispOption(dopt, fgsr);
950if (cid == ClassId_Histo2D) arr->DefineXYCoordinates(0., 0., 1., 1.);
951PISurfaceDrawer* sdr = new PISurfaceDrawer(arr, true, true, true);
952wrsid = myImgApp->Disp3DDrawer(sdr, nom, opt);
953if(wrsid >= 0) {
954 NObjList::iterator it = myObjs->find(nom);
955 if (it == myObjs->end()) return;
956 (*it).second.wrsid.push_back(wrsid);
957 }
958
959if (fgsr) myImgApp->RestoreGraphicAtt();
960return;
961}
962
963
964/* --Methode-- */
965void NamedObjMgr::SetGraphicAttributes(string gratt)
966{
967bool fg = false;
968servnobjm->DecodeDispOption(gratt, fg);
969}
970/* --Methode-- */
971void NamedObjMgr::SetGraphicWinZone(int nzx, int nzy, bool fcr)
972{
973if (!myImgApp) return;
974if (fcr) myImgApp->CreateGraphWin(nzx, nzy);
975else myImgApp->SetZone(nzx, nzy);
976}
977
978/* --Methode-- */
979void NamedObjMgr::DisplayPoints2D(string const& nom, string& expx, string& expy,
980 string& experrx, string& experry,
981 string& expcut, string dopt)
982{
983PPersist* obj=GetObj(nom);
984if (obj == NULL) {
985 cout << "NamedObjMgr::DisplayPoints2D() Error , Pas d'objet de nom " << nom << endl;
986 return;
987}
988if (!myImgApp) return;
989
990// Creation NTuple
991char* ntn[4] = {"expx","expy","expex","expey",};
992NTuple* nt = NULL;
993bool haserr = false;
994
995if ( (experrx.length() > 0 ) && (experry.length() > 0 ) ) { haserr = true; nt = new NTuple(2, ntn); }
996else { haserr = false; experrx = experry = "0."; nt = new NTuple(2, ntn); }
997
998servnobjm->Nobj_ComputeExpressions(obj, expx, expy, experrx, experry, expcut, nt, NULL, NULL);
999
1000if (nt->NEntry() < 1) {
1001 cout << "NamedObjMgr::DisplayPoints2D() Warning Zero points satisfy cut !" << endl;
1002 delete nt;
1003 return;
1004 }
1005
1006// nt->Show();
1007// nt->Print(0,10);
1008PINTuple* pin = new PINTuple(nt, true);
1009pin->SelectXY(ntn[0], ntn[1]);
1010if ( haserr ) pin->SelectErrBar(ntn[2], ntn[3]);
1011
1012bool fgsr = true;
1013int opt = servnobjm->DecodeDispOption(dopt, fgsr);
1014string titre = nom + ":" + expy + "%" + expx;
1015myImgApp->DispScDrawer( (PIDrawer*)pin, titre, opt);
1016if (fgsr) myImgApp->RestoreGraphicAtt();
1017return;
1018}
1019
1020/* --Methode-- */
1021void NamedObjMgr::DisplayPoints3D(string const& nom, string& expx, string& expy, string& expz,
1022 string& expcut, string dopt)
1023{
1024PPersist* obj=GetObj(nom);
1025if (obj == NULL) {
1026 cout << "NamedObjMgr::DisplayPoints3D() Error , Pas d'objet de nom " << nom << endl;
1027 return;
1028 }
1029if (!myImgApp) return;
1030
1031char* ntn[3] = {"expx","expy","expz"};
1032NTuple* nt = new NTuple(3,ntn); // Creation NTuple
1033
1034string expwt = "1.";
1035servnobjm->Nobj_ComputeExpressions(obj, expx, expy, expz, expwt, expcut, nt, NULL, NULL);
1036
1037if (nt->NEntry() < 1) {
1038 cout << "NamedObjMgr::DisplayPoints3D() Warning Zero points satisfy cut !" << endl;
1039 delete nt;
1040 return;
1041 }
1042nt->Show();
1043nt->Print(0,10);
1044PINTuple3D* pin = new PINTuple3D(nt, true);
1045pin->SelectXYZ(ntn[0], ntn[1], ntn[2]);
1046bool fgsr = true;
1047int opt = servnobjm->DecodeDispOption(dopt, fgsr);
1048
1049// Pour plot a partir de DispScDrawer
1050// string nomdisp = "_NT3D_";
1051// myImgApp->DispScDrawer( (PIDrawer*)pin, nomdisp, opt);
1052// Pour plot a partir de Disp3DDrawer
1053string titre = nom + ":" + expy + "%" + expx;
1054myImgApp->Disp3DDrawer(pin, titre, opt);
1055
1056if (fgsr) myImgApp->RestoreGraphicAtt();
1057return;
1058}
1059
1060/* --Methode-- */
1061void NamedObjMgr::ProjectH1(string const& nom, string& expx, string& expwt, string& expcut, string& nomh1, string dopt)
1062{
1063PPersist* obj=GetObj(nom);
1064
1065if (obj == NULL) {
1066 cout << "NamedObjMgr::ProjectH1() Error , Pas d'objet de nom " << nom << endl;
1067 return;
1068 }
1069if (!myImgApp) return;
1070
1071Histo* h1 = NULL;
1072NTuple* nt = NULL;
1073PPersist* oh = NULL;
1074if (nomh1.length() > 0) oh=GetObj(nomh1);
1075else nomh1 = "H1Proj";
1076if ( (oh != NULL) && (oh->ClassId() == ClassId_Histo1D) ) h1 = (Histo*)oh; // Pas de remise a zero ! h1->Zero();
1077else {
1078 char* ntn[2]= {"hxval", "hwt"};
1079 nt = new NTuple(2,ntn); // Creation NTuple
1080 }
1081string expz = "0.";
1082servnobjm->Nobj_ComputeExpressions(obj, expx, expwt, expz, expwt, expcut, nt, h1, NULL);
1083
1084if ((!h1) && (!nt)) return;
1085if (!h1) {
1086 if (nt->NEntry() < 1) {
1087 cout << "NamedObjMgr::ProjectH1() Warning Zero points satisfy cut !" << endl;
1088 delete nt;
1089 return;
1090 }
1091 float xmin, xmax;
1092 nt->GetMinMax(0, xmin, xmax);
1093 h1 = new Histo(xmin, xmax, 100);
1094 int k;
1095 float* xn;
1096 for(k=0; k<nt->NEntry(); k++) {
1097 xn = nt->GetVec(k);
1098 h1->Add(xn[0], xn[1]);
1099 }
1100 delete nt;
1101 AddObj(h1, nomh1);
1102 }
1103
1104DisplayObj(nomh1, dopt);
1105return;
1106}
1107
1108/* --Methode-- */
1109void NamedObjMgr::ProjectH2(string const& nom, string& expx, string& expy, string& expwt, string& expcut,
1110 string& nomh2, string dopt)
1111{
1112PPersist* obj=GetObj(nom);
1113
1114if (obj == NULL) {
1115 cout << "NamedObjMgr::ProjectH2() Error , Pas d'objet de nom " << nom << endl;
1116 return;
1117 }
1118if (!myImgApp) return;
1119
1120Histo2D* h2 = NULL;
1121NTuple* nt = NULL;
1122PPersist* oh = NULL;
1123if (nomh2.length() > 0) oh=GetObj(nomh2);
1124else nomh2 = "H2Proj";
1125if ( (oh != NULL) && (oh->ClassId() == ClassId_Histo2D) ) h2 = (Histo2D*)oh; // Pas de remise a zero ! h2->Zero();
1126else {
1127 char* ntn[3]= {"hxval", "hyval", "hwt"};
1128 nt = new NTuple(3,ntn); // Creation NTuple
1129 }
1130string expz = "0.";
1131servnobjm->Nobj_ComputeExpressions(obj, expx, expy, expwt, expwt, expcut, nt, NULL, h2);
1132
1133if ((!h2) && (!nt)) return;
1134if (!h2) {
1135 if (nt->NEntry() < 1) {
1136 cout << "NamedObjMgr::ProjectH2() Warning Zero points satisfy cut !" << endl;
1137 delete nt;
1138 return;
1139 }
1140 float xmin, xmax, ymin, ymax;
1141 nt->GetMinMax(0, xmin, xmax);
1142 nt->GetMinMax(0, ymin, ymax);
1143 h2 = new Histo2D(xmin, xmax, 50, ymin, ymax, 50);
1144 int k;
1145 float* xn;
1146 for(k=0; k<nt->NEntry(); k++) {
1147 xn = nt->GetVec(k);
1148 h2->Add(xn[0], xn[1], xn[2]);
1149 }
1150 delete nt;
1151 AddObj(h2, nomh2);
1152 }
1153
1154DisplayObj(nomh2, dopt);
1155return;
1156
1157}
1158
1159/* --Methode-- cmv 13/10/98 */
1160void NamedObjMgr::ProjectHProf(string const& nom, string& expx, string& expy, string& expwt, string& expcut,
1161 string& nomprof, string dopt)
1162// Pour remplir un ``GeneralFitData'' a partir de divers objets:
1163//| nom = nom de l'objet a projeter dans un HProf.
1164//| expx = expression X de definition du bin.
1165//| expy = expression Y a additionner dans le bin.
1166//| expwt = expression W du poids a additionner.
1167//| expcut = expression du test de selection.
1168//| nomprof = nom du HProf engendre (optionnel). Si l'objet n'existe pas
1169//| les limites Xmin,Xmax sont calculees automatiquement.
1170//| sinon ce sont celles de l'objet preexistant.
1171//| opt = options generales pour le display.
1172{
1173PPersist* obj=GetObj(nom);
1174
1175if (obj == NULL) {
1176 cout << "NamedObjMgr::ProjectHProf() Error , Pas d'objet de nom " << nom << endl;
1177 return;
1178 }
1179if (!myImgApp) return;
1180
1181HProf* hprof = NULL;
1182NTuple* nt = NULL;
1183PPersist* oh = NULL;
1184if (nomprof.length() > 0) oh=GetObj(nomprof);
1185else nomprof = "ProfProj";
1186if( (oh!=NULL) && (oh->ClassId()== ClassId_HProf) ) hprof = (HProf*)oh;
1187else {
1188 char* ntn[3]= {"hxval", "hyval", "hwt"};
1189 nt = new NTuple(3,ntn); // Creation NTuple
1190}
1191string expz = "0.";
1192servnobjm->Nobj_ComputeExpressions(obj, expx, expy, expwt, expwt, expcut, nt, NULL, NULL, hprof);
1193
1194if((!hprof) && (!nt)) return;
1195if(!hprof) {
1196 if (nt->NEntry() < 1) {
1197 cout << "NamedObjMgr::ProjectHProf() Warning Zero points satisfy cut !" << endl;
1198 delete nt;
1199 return;
1200 }
1201 float xmin, xmax;
1202 nt->GetMinMax(0, xmin, xmax);
1203 hprof = new HProf(xmin, xmax, 100);
1204 int k;
1205 float* xn;
1206 for(k=0; k<nt->NEntry(); k++) {
1207 xn = nt->GetVec(k);
1208 hprof->Add(xn[0], xn[1], xn[2]);
1209 }
1210 delete nt;
1211 AddObj(hprof, nomprof);
1212 }
1213hprof->UpdateHisto();
1214
1215DisplayObj(nomprof, dopt);
1216return;
1217}
1218
1219/* --Methode-- */
1220void NamedObjMgr::FillVect(string const& nom, string& expx, string& expcut, string& nomvec, string dopt)
1221{
1222PPersist* obj=GetObj(nom);
1223
1224if (obj == NULL) {
1225 cout << "NamedObjMgr::FillVect() Error , Pas d'objet de nom " << nom << endl;
1226 return;
1227 }
1228if (!myImgApp) return;
1229
1230NTuple* nt = NULL;
1231if (nomvec.length() < 1) nomvec = "VecFill";
1232
1233char* ntn[2]= {"vecval", "vecwt"};
1234nt = new NTuple(1,ntn); // Creation NTuple
1235
1236string expwt = "1.";
1237string expz = "0.";
1238servnobjm->Nobj_ComputeExpressions(obj, expx, expz, expz, expwt, expcut, nt, NULL, NULL);
1239
1240if (!nt) return;
1241if (nt->NEntry() < 1) {
1242 cout << "NamedObjMgr::FillVect() Warning Zero points satisfy cut !" << endl;
1243 delete nt;
1244 return;
1245 }
1246
1247Vector* vec = new Vector(nt->NEntry());
1248int k;
1249float* xn;
1250for(k=0; k<nt->NEntry(); k++) {
1251 xn = nt->GetVec(k);
1252 (*vec)(k) = xn[0];
1253 }
1254delete nt;
1255AddObj(vec, nomvec);
1256DisplayObj(nomvec, dopt);
1257return;
1258}
1259
1260/* --Methode-- */
1261void NamedObjMgr::FillNT(string const& nom, string& expx, string& expy, string& expz, string& expt,
1262 string& expcut, string& nomnt)
1263{
1264PPersist* obj=GetObj(nom);
1265
1266if (obj == NULL) {
1267 cout << "NamedObjMgr::FillNT() Error , Pas d'objet de nom " << nom << endl;
1268 return;
1269 }
1270if (!myImgApp) return;
1271
1272bool fgnnt = false;
1273NTuple* nt = NULL;
1274PPersist* oh = NULL;
1275if (nomnt.length() > 0) oh=GetObj(nomnt);
1276else nomnt = "NTFill";
1277if ( (oh != NULL) && (oh->ClassId() == ClassId_NTuple) ) {
1278 nt = (NTuple*)oh;
1279 if (nt->NVar() > 10) {
1280 cout << "NamedObjMgr::FillNT() Warning , Max 10 var ds NTuple -> new NTuple" << endl;
1281 nt = NULL;
1282 }
1283 }
1284if (nt == NULL) {
1285 char* ntn[4]= {"x", "y","z","t"};
1286 nt = new NTuple(4,ntn); // Creation NTuple
1287 fgnnt = true;
1288 }
1289
1290servnobjm->Nobj_ComputeExpressions(obj, expx, expy, expz, expt, expcut, nt, NULL, NULL);
1291
1292if (fgnnt) AddObj(nt, nomnt);
1293return;
1294
1295}
1296
1297/* --Methode-- cmv 13/10/98 */
1298void NamedObjMgr::FillGFD(string const& nom, string& expx, string& expy, string& expz,
1299 string& experr, string& expcut, string& nomgfd)
1300// Pour remplir un ``GeneralFitData'' a partir de divers objets:
1301//| nom = nom de l'objet a transcrire selon 1D: Z=f(X) ou 2D: Z=f(X,Y) .
1302//| Vector,Matrix,Histo,HProf,Histo2D,Image<T>,StarList,NTuple,GeneralFitData
1303//| expx = expression X du GeneralFitData (1er abscisse)
1304//| expy = expression Y du GeneralFitData (2sd abscisse si non "", Z=f(X,Y))
1305//| expz = expression Z du GeneralFitData (valeur de l'ordonnee)
1306//| experr = expression de l'erreur sur l'ordonnee Z
1307//| expcut = expression du test de selection
1308//| nomgfd = nom du GeneralFitData engendre (optionnel)
1309{
1310PPersist* obj=GetObj(nom);
1311if(obj == NULL)
1312 {cout<<"NamedObjMgr::FillGFD() Error , Pas d'objet de nom "<<nom<<endl;
1313 return;}
1314if(!myImgApp) return;
1315
1316// 2D ou 3D?
1317int nvar = 2;
1318if(expy.length()<=0) {nvar = 1; expy = "0.";}
1319
1320// Que faut-il copier dans GeneralFitData
1321int ndata=0;
1322int cid = obj->ClassId();
1323switch (cid) {
1324 case ClassId_Vector :
1325 ndata=((Vector*)obj)->NElts();
1326 break;
1327 case ClassId_Matrix :
1328 ndata=((Matrix*)obj)->NCol()*((Matrix*)obj)->NRows();
1329 break;
1330 case ClassId_Histo1D :
1331 case ClassId_HProf :
1332 ndata=((Histo*)obj)->NBins();
1333 break;
1334 case ClassId_Histo2D :
1335 ndata=((Histo2D*)obj)->NBinX()*((Histo2D*)obj)->NBinY();
1336 break;
1337 case ClassId_Image :
1338 case ClassId_Image + kuint_1 :
1339 case ClassId_Image + kint_1 :
1340 case ClassId_Image + kr_8 :
1341 case ClassId_Image + kuint_4 :
1342 case ClassId_Image + kuint_2 :
1343 case ClassId_Image + kint_2 :
1344 case ClassId_Image + kint_4 :
1345 case ClassId_Image + kr_4 :
1346 ndata=((RzImage*)obj)->XSize()*((RzImage*)obj)->YSize();
1347 break;
1348#ifdef SANS_EVOLPLANCK
1349 case ClassId_StarList :
1350 ndata=((StarList*)obj)->NbStars();
1351 break;
1352#endif
1353 case ClassId_NTuple :
1354 ndata=((NTuple*)obj)->NEntry();
1355 break;
1356 case ClassId_GeneralFitData :
1357 ndata=((GeneralFitData*)obj)->NData();
1358 break;
1359 default :
1360 cout<<"FillGFD Erreur: N/A to "<<servnobjm->PClassIdToClassName(cid)<<endl;
1361 return;
1362}
1363
1364// Nom du GeneralFitData cree.
1365if (nomgfd.length() <= 0) nomgfd = "GFDFill";
1366// Consistence ndata.
1367if(ndata<=0)
1368 {cout<<"NamedObjMgr::FillGFD() Warning ndata="<<ndata<<endl;
1369 return;}
1370
1371// Creation NTuple Buffer
1372char* ntn[4]= {"x","y","f","e"};
1373NTuple*nt = new NTuple(4,ntn);
1374
1375// Remplissage NTuple buffer
1376servnobjm->Nobj_ComputeExpressions(obj, expx, expy, expz, experr, expcut, nt, NULL, NULL);
1377if(nt->NEntry() < 1)
1378 {cout<<"NamedObjMgr::FillGFD() Warning Zero points satisfy cut !"<<endl;
1379 delete nt; return;}
1380
1381//Remplissage de la structure GeneraFitData
1382GeneralFitData* gfd = new GeneralFitData(nvar,ndata,0);
1383int k;
1384float* xn;
1385for(k=0; k<nt->NEntry(); k++) {
1386 xn = nt->GetVec(k);
1387 gfd->AddData(xn,xn[2],xn[3]);
1388}
1389
1390// Menage et table d'objets
1391delete nt;
1392AddObj(gfd, nomgfd);
1393return;
1394}
1395
1396/* --Methode-- */
1397void NamedObjMgr::PlotFunc(string& expfunc, float xmin, float xmax, int np, string dopt)
1398{
1399FILE *fip;
1400string fname = (*TmpDir) + "func1_pia_dl.c";
1401string fnamer = (*TmpDir) + "func1_pia_dl";
1402string cmd;
1403int rc;
1404
1405if (!myImgApp) return;
1406
1407cmd = "rm " + fname;
1408rc = system(cmd.c_str());
1409printf("PlotFunc_Do> %s (Rc=%d)\n", cmd.c_str(), rc);
1410
1411if ((fip = fopen(fname.c_str(), "w")) == NULL) {
1412 string sn = fname;
1413 cout << "NamedObjMgr/PlotFunc_Erreur: Pb. Ouverture " << sn << endl;
1414 return;
1415 }
1416
1417// constitution du fichier a compiler
1418fputs("#include <math.h> \n", fip);
1419fputs("double func1_pia_dl_func(double x) \n{\n", fip);
1420fprintf(fip,"return(%s); \n}\n", expfunc.c_str());
1421fclose(fip);
1422
1423DlFunctionOfX f = (DlFunctionOfX) servnobjm->LinkFunctionFromFile(fnamer, "func1_pia_dl_func");
1424if (!f) return;
1425PlotFunc(f, xmin, xmax, np, dopt);
1426servnobjm->CloseDLL();
1427return;
1428}
1429
1430/* --Methode-- */
1431void NamedObjMgr::PlotFunc2D(string& expfunc, float xmin, float xmax, float ymin, float ymax,
1432 int npx, int npy, string dopt)
1433{
1434FILE *fip;
1435string fname = (*TmpDir) + "func2_pia_dl.c";
1436string fnamer = (*TmpDir) + "func2_pia_dl";
1437string cmd;
1438int rc;
1439
1440if (!myImgApp) return;
1441
1442cmd = "rm " + fname;
1443rc = system(cmd.c_str());
1444printf("PlotFunc2D_Do> %s (Rc=%d)\n", cmd.c_str(), rc);
1445
1446if ((fip = fopen(fname.c_str(), "w")) == NULL) {
1447 string sn = fname;
1448 cout << "NamedObjMgr/PlotFunc2D_Erreur: Pb. Ouverture " << sn << endl;
1449 return;
1450 }
1451
1452// constitution du fichier a compiler
1453fputs("#include <math.h> \n", fip);
1454fputs("double func2_pia_dl_func(double x, double y) \n{\n", fip);
1455fprintf(fip,"return(%s); \n}\n", expfunc.c_str());
1456fclose(fip);
1457
1458DlFunctionOfXY f = (DlFunctionOfXY) servnobjm->LinkFunctionFromFile(fnamer, "func2_pia_dl_func");
1459if (!f) return;
1460PlotFunc2D(f, xmin, xmax, ymin, ymax, npx, npy, dopt);
1461servnobjm->CloseDLL();
1462return;
1463}
1464
1465/* --Methode-- */
1466void NamedObjMgr::PlotFunc(DlFunctionOfX f, float xmin, float xmax, int np, string dopt)
1467{
1468if (!myImgApp) return;
1469
1470int k;
1471if (np < 1) np = 1;
1472if (xmax <= xmin) xmax = xmin+1.;
1473Vector* vpy = new Vector(np);
1474
1475double xx;
1476double dx = (xmax-xmin)/np;
1477TRY {
1478 for(k=0; k<np; k++) { xx = xmin+dx*k; (*vpy)(k) = f(xx); }
1479} CATCH(merr) {
1480 fflush(stdout);
1481 cout << endl;
1482 cerr << endl;
1483 string es = PeidaExc(merr);
1484 cerr << "NamedObjMgr::PlotFunc() Exception :" << merr << es;
1485 delete vpy;
1486 vpy = NULL;
1487 } ENDTRY;
1488
1489
1490if (vpy) {
1491 string nom = "Func";
1492 AddObj(vpy, nom);
1493 P1DArrayAdapter* vya = new POVectorAdapter(vpy, false);
1494 vya->DefineXCoordinate(xmin, (xmax-xmin)/np);
1495 PIYfXDrawer* dr = new PIYfXDrawer(vya, NULL, true) ;
1496 bool fgsr = true;
1497 dopt = "thinline," + dopt;
1498 int opt = servnobjm->DecodeDispOption(dopt, fgsr);
1499 int wrsid = myImgApp->DispScDrawer(dr, nom, opt);
1500 if(wrsid >= 0) {
1501 NObjList::iterator it = myObjs->find(nom);
1502 if (it == myObjs->end()) return;
1503 (*it).second.wrsid.push_back(wrsid);
1504 }
1505 if (fgsr) myImgApp->RestoreGraphicAtt();
1506 }
1507
1508return;
1509}
1510
1511/* --Methode-- */
1512void NamedObjMgr::PlotFunc2D(DlFunctionOfXY f, float xmin, float xmax, float ymin, float ymax,
1513 int npx, int npy, string dopt)
1514{
1515if (!myImgApp) return;
1516
1517if (npx < 1) npx = 1;
1518if (npy < 1) npy = 1;
1519if (xmax <= xmin) xmax = xmin+1.;
1520if (ymax <= ymin) ymax = ymin+1.;
1521
1522Matrix* mtx = new Matrix(npy, npx);
1523
1524int i,j;
1525double xx, yy;
1526double dx = (xmax-xmin)/npx;
1527double dy = (ymax-ymin)/npy;
1528// printf(" -- DBG -- %d %d , %g %g , %g %g \n", npx, npy, xmin, xmax, ymin, ymax);
1529TRY {
1530 for(j=0; j<npy; j++) {
1531 yy = ymin+dy*j;
1532 for(i=0; i<npx; i++) {
1533 xx = xmin+dx*i;
1534 (*mtx)(j, i) = f(xx, yy);
1535 }
1536 }
1537} CATCH(merr) {
1538 fflush(stdout);
1539 cout << endl;
1540 cerr << endl;
1541 string es = PeidaExc(merr);
1542 cerr << "NamedObjMgr::PlotFunc2D() Exception :" << merr << es;
1543 delete mtx; mtx = NULL;
1544 } ENDTRY;
1545
1546if (mtx) {
1547 string nom = "Func2";
1548 AddObj(mtx, nom);
1549 DisplaySurf3D(nom, dopt);
1550 }
1551
1552return;
1553}
1554
1555///////////////////// Fit 1D et 2D //////////////////////////
1556/* --Function static propre aux routines de fit 1D et 2D-- cmv 13/10/98 */
1557struct DFOptions {
1558 int okres, okfun;
1559 int polcx,polcy; double xc,yc;
1560 double err_e, err_E;
1561 double stc2;
1562 int lp,lpg;
1563 int i1,i2,j1,j2;
1564};
1565typedef struct DFOptions DFOPTIONS;
1566static void DecodeFitsOptions(string par,string step,string min,string max,string opt
1567 ,Vector& Par,Vector& Step,Vector& Min,Vector& Max,DFOPTIONS& O);
1568void DecodeFitsOptions(string par,string step,string min,string max,string opt
1569 ,Vector& Par,Vector& Step,Vector& Min,Vector& Max,DFOPTIONS& O)
1570//| Pour decoder les "string" et remplir les vecteurs du fit (cf commentaires dans Fit1D)
1571{
1572// set des vecteurs et decodage des string correspondantes
1573int NParMax = 100;
1574Par.Realloc(NParMax); Step.Realloc(NParMax);
1575Min.Realloc(NParMax); Max.Realloc(NParMax);
1576{
1577 Vector* v; string* s;
1578 {for(int i=0;i<NParMax;i++) {Par(i)=0.; Step(i)=1.; Min(i)=1.; Max(i)=-1.;}}
1579 for(int j=0;j<4;j++) {
1580 if(j==0) {v=&Par; s=&par;}
1581 else if(j==1) {v=&Step; s=&step;}
1582 else if(j==2) {v=&Min; s=&min;}
1583 else if(j==3) {v=&Max; s=&max;}
1584 if(s->length()>0) *s += ",";
1585 for(int i=0;i<NParMax;i++) {
1586 if(s->length()<=0) break;
1587 sscanf(s->c_str(),"%lf",&(*v)(i));
1588 size_t p = s->find_first_of(',') + 1;
1589 if(p>=s->length()) *s = ""; else *s = s->substr(p);
1590 }
1591 }
1592}
1593
1594// Decodage de options de opt
1595O.okres = O.okfun = 0;
1596O.polcx = O.polcy = 0;
1597O.xc = O.yc = 0.;
1598O.stc2 = 1.e-3;
1599O.err_e = O.err_E = -1.;
1600O.lp = 1; O.lpg = 0;
1601O.i1 = O.j1 = O.i2 = O.j2 = -1;
1602
1603if(opt.length()<=0) return;
1604opt = "," + opt + ",";
1605
1606if(strstr(opt.c_str(),",r,")) O.okres = 1; // residus
1607if(strstr(opt.c_str(),",f,")) O.okfun = 1; // fonction fittee
1608if(strstr(opt.c_str(),",x")) { // Demande de centrage (fit X=x-xc)
1609 O.polcx = 2; // Le centrage est calcule automatiquement
1610 size_t p = opt.find(",x");
1611 size_t q = opt.find_first_of(',',p+1);
1612 string dum = opt.substr(p,q-p);
1613 if(dum.length()>2) {
1614 sscanf(dum.c_str(),",x%lf",&O.xc);
1615 O.polcx = 1; // Le centrage est fixe par la valeur lue
1616 }
1617}
1618if(strstr(opt.c_str(),",y")) { // Demande de centrage (fit Y=y-yc)
1619 O.polcy = 2; // Le centrage est calcule automatiquement
1620 size_t p = opt.find(",y");
1621 size_t q = opt.find_first_of(',',p+1);
1622 string dum = opt.substr(p,q-p);
1623 if(dum.length()>2) {
1624 sscanf(dum.c_str(),",y%lf",&O.yc);
1625 O.polcy = 1; // Le centrage est fixe par la valeur lue
1626 }
1627}
1628if(strstr(opt.c_str(),",E")) { // Erreurs imposees a "sqrt(val)" ou "aa.b*sqrt(val)"
1629 size_t p = opt.find(",E");
1630 size_t q = opt.find_first_of(',',p+1);
1631 string dum = opt.substr(p,q-p);
1632 if(dum.length()>2) sscanf(dum.c_str(),",E%lf",&O.err_E);
1633 if(O.err_E<=0.) O.err_E = 1.;
1634 O.err_e=-1.;
1635}
1636if(strstr(opt.c_str(),",e")) { // Erreurs imposees a "1" ou "aa.b"
1637 size_t p = opt.find(",e");
1638 size_t q = opt.find_first_of(',',p+1);
1639 string dum = opt.substr(p,q-p);
1640 if(dum.length()>2) sscanf(dum.c_str(),",e%lf",&O.err_e);
1641 if(O.err_e<=0.) O.err_e = 1.;
1642 O.err_E=-1.;
1643}
1644if(strstr(opt.c_str(),",X")) { // Valeur du StopChi2
1645 size_t p = opt.find(",X");
1646 size_t q = opt.find_first_of(',',p+1);
1647 string dum = opt.substr(p,q-p);
1648 if(dum.length()>2) sscanf(dum.c_str(),",X%lf",&O.stc2);
1649 if(O.stc2<=0.) O.stc2 = 1.e-3;
1650}
1651if(strstr(opt.c_str(),",l")) { // niveau de print
1652 size_t p = opt.find(",l");
1653 size_t q = opt.find_first_of(',',p+1);
1654 string dum = opt.substr(p,q-p);
1655 float ab;
1656 if(dum.length()>2) sscanf(dum.c_str(),",l%f",&ab);
1657 if(ab<0) ab = 0.;
1658 O.lp = (int) ab; O.lpg = (int) 10.*(ab-O.lp);
1659}
1660if(strstr(opt.c_str(),",I")) { // intervalle de fit selon X
1661 size_t p = opt.find(",I");
1662 size_t q = opt.find_first_of(',',p+1);
1663 string dum = opt.substr(p,q-p);
1664 if(dum.length()>2) sscanf(dum.c_str(),",I%d/%d",&O.i1,&O.i2);
1665}
1666if(strstr(opt.c_str(),",J")) { // intervalle de fit selon Y
1667 size_t p = opt.find(",J");
1668 size_t q = opt.find_first_of(',',p+1);
1669 string dum = opt.substr(p,q-p);
1670 if(dum.length()>2) sscanf(dum.c_str(),",J%d/%d",&O.j1,&O.j2);
1671}
1672return;
1673}
1674
1675/* --Methode-- cmv 13/10/98 */
1676void NamedObjMgr:: Fit12D(string const& nom, string& func,
1677 string par,string step,string min,string max,
1678 string opt)
1679//| --------------- Fit d'objets a 1 et 2 dimensions ---------------
1680//| nom : nom de l'objet qui peut etre:
1681//| fit-1D: Vector,Histo1D,HProf ou GeneraFitData(1D)
1682//| fit-2D: Matrix,Histo2D,Imagexx ou GeneraFitData(2D)
1683//| func : pnn = fit polynome degre nn avec classe Poly (lineaire) 1D ou 2D
1684//| : Pnn = fit polynome degre nn avec GeneralFit (non-lineaire) 1D ou 2D
1685//| : gnn = fit gaussienne (hauteur) + polynome de degre nn 1D
1686//| : g = fit gaussienne (hauteur) 1D
1687//| : enn = fit exponentielle + polynome de degre nn 1D
1688//| : e = fit exponentielle 1D
1689//| : Gnn = fit gaussienne (volume) + polynome de degre nn 1D
1690//| : G = fit gaussienne (volume) 1D
1691//| : = fit gaussienne+fond (volume) 2D
1692//| : Gi = fit gaussienne+fond integree (volume) 2D
1693//| : d = fit DL de gaussienne+fond (volume) 2D
1694//| : di = fit DL de gaussienne+fond integree (volume) 2D
1695//| : D = fit DL de gaussienne+fond avec coeff variable p6 (volume) 2D
1696//| : Di = fit DL de gaussienne+fond integree avec coeff variable p6 (volume) 2D
1697//| : M = fit Moffat+fond (expos=p6) (volume) 2D
1698//| : Mi = fit Moffat+fond integree (expos=p6) (volume) 2D
1699//| par : p1,...,pn valeur d'initialisation des parametres (def=0)
1700//| step : s1,...,sn valeur des steps de depart (def=1)
1701//| min : m1,...,mn valeur des minima (def=1)
1702//| max : M1,...,Mn valeur des maxima (def=-1) (max<=min : pas de limite)
1703//| opt : options "Eaa.b,eaa.b,f,r,caa.b,Xaa.b"
1704//| f = generation d'un Objet identique contenant la fonction fittee
1705//| r = generation d'un Objet identique contenant les residus
1706//| Xaa.b = aa.b valeur du DXi2 d'arret (def=1.e-3)
1707//| la.b = niveau "a.b" de print: a=niveau de print Fit1/2D
1708//| b=niveau de debug GeneralFit
1709//| Ii1/i2 numeros des bins X de l'histos utilises pour le fit [i1,i2]
1710//|2D Jj1/j2 numeros des bins Y de l'histos utilises pour le fit [j1,j2]
1711//| - L'erreur est celle associee a l'objet si existe, 1 sinon sauf si
1712//| E = erreur prise comme la racine de la valeur a fitter
1713//| Eaa.b = erreur prise aa.b*sqrt(val)
1714//| e = erreur prise egale a 1 pour toutes les valeurs
1715//| eaa.b = erreur prise egale a aa.b
1716//| xaa.b = demande de centrage: on fit x-aa.b au lieu de x)
1717//| x = demande de centrage: on fit x-xc au lieu de x
1718//| avec xc=abscisse du milieu de l'histogramme
1719//| Actif pour: exp+poly 1D, poly 1D
1720//| gauss+poly 1D (mais xc est le centre de la gaussienne)
1721//|2D yaa.b et y = idem "xaa.b et x" mais pour y
1722{
1723PPersist* obj=GetObj(nom);
1724if (obj == NULL) {
1725 cout<<"NamedObjMgr::Fit12D() Error , Pas d'objet de nom "<<nom<<endl;
1726 return;
1727}
1728if (!myImgApp) return;
1729if(func.length()<=0)
1730 {cout<<"NamedObjMgr::Fit12D() Donnez un nom de fonction a fitter."<<endl;
1731 return;}
1732int cid = obj->ClassId();
1733string ctyp = servnobjm->PClassIdToClassName(cid);
1734
1735int ndim = 0, nbinx=0, nbiny=0, ndata = 0;
1736Vector* v = NULL; Histo* h = NULL;
1737Matrix* m = NULL; Histo2D* h2 = NULL; RzImage* im = NULL;
1738GeneralFitData* g = NULL;
1739switch (cid) {
1740 // 1D
1741 case ClassId_Vector :
1742 ndim = 1;
1743 v = (Vector*) obj; nbinx = v->NElts(); nbiny = 1;
1744 break;
1745 case ClassId_HProf :
1746 case ClassId_Histo1D :
1747 ndim = 1;
1748 h = (Histo*) obj; nbinx = h->NBins(); nbiny = 1;
1749 break;
1750 // 2D
1751 case ClassId_Matrix :
1752 ndim = 2;
1753 m = (Matrix*) obj; nbinx = m->NCol(); nbiny = m->NRows();
1754 break;
1755 case ClassId_Histo2D :
1756 ndim = 2;
1757 h2 = (Histo2D*) obj; nbinx = h2->NBinX(); nbiny = h2->NBinY();
1758 break;
1759 // 1D ou 2D selon
1760 case ClassId_GeneralFitData :
1761 g = (GeneralFitData*) obj; nbinx = g->NData(); nbiny = 1;
1762 if( g->NVar()==1) ndim = 1;
1763 else if(g->NVar()==2) ndim = 2;
1764 else {
1765 cout<<"GeneralFitData ne peut avoir que 1 ou 2 variables d'abscisse: "
1766 <<((GeneralFitData*) obj)->NVar()<<endl; return;}
1767 break;
1768 case ClassId_Image :
1769 case ClassId_Image + kuint_1 :
1770 case ClassId_Image + kuint_2 :
1771 case ClassId_Image + kint_2 :
1772 case ClassId_Image + kint_4 :
1773 case ClassId_Image + kr_4 :
1774 case ClassId_Image + kr_8 :
1775 ndim = 2;
1776 im = (RzImage*) obj; nbinx = im->XSize(); nbiny = im->YSize();
1777 break;
1778 default:
1779 cout<<"NamedObjMgr::Fit12D() Error , Objet n'est pas un "
1780 <<"Histo1D/HProf/Vector/Histo2D/Image/Matrix/GeneralFitData "<<ctyp<<endl;
1781 return;
1782 break;
1783}
1784ndata = nbinx*nbiny;
1785if(ndata<=0)
1786 {cout<<"L'objet a "<<nbinx<<","<<nbiny<<" bins ("<<ndata<<")"<<endl; return;}
1787
1788// Decodage des options et des parametres, mise en forme
1789Vector Par(1); Vector Step(1); Vector Min(1); Vector Max(1); DFOPTIONS O;
1790DecodeFitsOptions(par,step,min,max,opt,Par,Step,Min,Max,O);
1791O.i1 = (O.i1<0||O.i1>=nbinx)? 0: O.i1;
1792O.i2 = (O.i2<0||O.i2>=nbinx||O.i2<O.i1)? nbinx-1: O.i2;
1793if(ndim>=2) {
1794 O.j1 = (O.j1<0||O.j1>=nbiny)? 0: O.j1;
1795 O.j2 = (O.j2<0||O.j2>=nbiny||O.j2<O.j1)? nbiny-1: O.j2;
1796} else O.j2 = O.j1 = 0;
1797if(O.polcx==2) {
1798 if(v||m) O.xc = (O.i2-O.i1+1)/2.;
1799 else if(h) O.xc = (h->XMin()+h->XMax())/2.;
1800 else if(h2) O.xc = (h2->XMin()+h2->XMax())/2.;
1801 else if(g) {double mini,maxi; g->GetMinMax(2,mini,maxi); O.xc=(mini+maxi)/2.;}
1802 else if(im) {O.xc = im->XOrg() * im->XPxSize()*(O.i2-O.i1+1)/2.;}
1803}
1804if(O.polcy==2 && ndim>=2) {
1805 if(m) O.yc = (O.j2-O.j1+1)/2.;
1806 if(h2) O.yc = (h2->YMin()+h2->YMax())/2.;
1807 if(g) {double mini,maxi; g->GetMinMax(12,mini,maxi); O.yc=(mini+maxi)/2.;}
1808 if(im) {O.yc = im->YOrg() * im->YPxSize()*(O.j2-O.j1+1)/2.;}
1809}
1810if(O.lp>0)
1811 cout<<"Fit["<<nbinx<<","<<nbiny<<"] ("<<ndata<<") dim="<<ndim<<":"
1812 <<" Int=["<<O.i1<<","<<O.i2<<"],["<<O.j1<<","<<O.j2<<"]"<<endl
1813 <<" Cent="<<O.polcx<<","<<O.polcy<<","<<O.xc<<"+x"<<","<<O.yc<<"+y"
1814 <<" TypE="<<O.err_e<<","<<O.err_E
1815 <<" StpX2="<<O.stc2
1816 <<" lp,lpg="<<O.lp<<","<<O.lpg<<endl;
1817
1818///////////////////////////////////
1819// Remplissage de GeneralFitData //
1820///////////////////////////////////
1821GeneralFitData mydata(ndim,ndata,0);
1822{for(int i=O.i1;i<=O.i2;i++) for(int j=O.j1;j<=O.j2;j++) {
1823 double x,y,f,e;
1824
1825 if(v)
1826 {x= (double) i; f=(*v)(i); e=1.;}
1827 else if(h)
1828 {x=h->BinCenter(i); f=(*h)(i); e=(h->HasErrors())?h->Error(i):1.;}
1829 else if(m)
1830 {x=(double) i; y=(double) j; f=(*m)(j,i); e=1.;}
1831 else if(h2)
1832 {float xf,yf; h2->BinCenter(i,j,xf,yf); x=(double)xf; y=(double)yf;
1833 f=(*h2)(i,j); e=(h2->HasErrors())?h2->Error(i,j):1.;}
1834 else if(im)
1835 {x=im->XOrg()+(i+0.5)*im->XPxSize(); y=im->YOrg()+(j+0.5)*im->YPxSize();
1836 f=im->DValue(i,j); e=1.;}
1837 else if(g&&ndim==1) {x= g->X(i); f=g->Val(i); e=g->EVal(i);}
1838 else if(g&&ndim==2) {x= g->X(i); y= g->Y(i); f=g->Val(i); e=g->EVal(i);}
1839 else x=y=f=e=0.;
1840
1841 // Gestion des erreurs a utiliser
1842 if(O.err_e>0.) e=O.err_e;
1843 else if(O.err_E>0.) {e=(y<-1.||y>1.)?O.err_E*sqrt(fabs(y)):O.err_E;}
1844
1845 // Remplissage de generalfit
1846 if(func[0]=='p') {x -= O.xc; if(ndim>=2) y -= O.yc;}
1847 if(ndim==1) mydata.AddData1(x,f,e);
1848 else if(ndim==2) mydata.AddData2(x,y,f,e);
1849}}
1850if(mydata.NData()<=0)
1851 {cout<<"Pas de donnees dans GeneralFitData: "<<mydata.NData()<<endl;
1852 return;}
1853if(O.lpg>1) {
1854 mydata.PrintStatus();
1855 mydata.PrintData(0);
1856 mydata.PrintData(mydata.NData()-1);
1857}
1858
1859////////////////////////////////////////////
1860// Identification de la fonction a fitter //
1861////////////////////////////////////////////
1862GeneralFunction* myfunc = NULL;
1863if(func[0]=='p' && ndim==1) {
1864 // Fit de polynome sans passer par les GeneralFit
1865 int degre = 0;
1866 if(func.length()>1) sscanf(func.c_str()+1,"%d",&degre);
1867 cout<<"Fit (lineaire) 1D polynome de degre "<<degre<<endl;
1868 Poly p1(0);
1869 double c2rl = mydata.PolFit(0,p1,degre);
1870 cout<<"C2r_lineaire = "<<c2rl<<endl;
1871 if(O.lp>0) cout<<p1<<endl;
1872 return;
1873
1874} else if(func[0]=='P' && ndim==1) {
1875 // Fit de polynome
1876 int degre = 0;
1877 if(func.length()>1) sscanf(func.c_str()+1,"%d",&degre);
1878 cout<<"Fit polynome 1D de degre "<<degre<<endl;
1879 Polyn1D* myf = new Polyn1D(degre,O.xc);
1880 myfunc = myf;
1881
1882} else if(func[0]=='e' && ndim==1) {
1883 // Fit d'exponentielle
1884 int degre =-1;
1885 if(func.length()>1) sscanf(func.c_str()+1,"%d",&degre);
1886 cout<<"Fit d'exponentielle+polynome 1D de degre "<<degre<<endl;
1887 Exp1DPol* myf;
1888 if(degre>=0) myf = new Exp1DPol((unsigned int)degre,O.xc);
1889 else myf = new Exp1DPol(O.xc);
1890 myfunc = myf;
1891
1892} else if(func[0]=='g' && ndim==1) {
1893 // Fit de gaussienne en hauteur
1894 int degre =-1;
1895 if(func.length()>1) sscanf(func.c_str()+1,"%d",&degre);
1896 cout<<"Fit de Gaussienne_en_hauteur+polynome 1D de degre "<<degre<<endl;
1897 Gauss1DPol* myf;
1898 if(degre>=0) myf = new Gauss1DPol((unsigned int)degre,((O.polcx)?true:false));
1899 else { bool bfg = (O.polcx)?true:false; myf = new Gauss1DPol(bfg); }
1900 myfunc = myf;
1901
1902} else if(func[0]=='G' && ndim==1) {
1903 // Fit de gaussienne en volume
1904 int degre =-1;
1905 if(func.length()>1) sscanf(func.c_str()+1,"%d",&degre);
1906 cout<<"Fit de Gaussienne_en_volume+polynome 1D de degre "<<degre<<endl;
1907 GaussN1DPol* myf;
1908 if(degre>=0) myf = new GaussN1DPol((unsigned int)degre,((O.polcx)?true:false));
1909 else { bool bfg = (O.polcx)?true:false; myf = new GaussN1DPol(bfg); }
1910 myfunc = myf;
1911
1912} else if(func[0]=='p' && ndim==2) {
1913 // Fit de polynome 2D sans passer par les GeneralFit
1914 int degre = 0;
1915 if(func.length()>1) sscanf(func.c_str()+1,"%d",&degre);
1916 cout<<"Fit (lineaire) polynome 2D de degre "<<degre<<endl;
1917 Poly2 p2(0);
1918 double c2rl = mydata.PolFit(0,1,p2,degre);
1919 cout<<"C2r_lineaire = "<<c2rl<<endl;
1920 if(O.lp>0) cout<<p2<<endl;
1921 return;
1922
1923} else if(func[0]=='P' && ndim==2) {
1924 // Fit de polynome 2D
1925 int degre = 0;
1926 if(func.length()>1) sscanf(func.c_str()+1,"%d",&degre);
1927 cout<<"Fit polynome 2D de degre "<<degre<<endl;
1928 Polyn2D* myf = new Polyn2D(degre,O.xc,O.yc);
1929 myfunc = myf;
1930
1931} else if(func[0]=='G' && ndim==2) {
1932 // Fit de gaussienne+fond en volume
1933 int integ = 0;
1934 if(func.length()>1) if(func[1]=='i') integ=1;
1935 cout<<"Fit de Gaussienne+Fond 2D integ="<<integ<<endl;
1936 if(integ) {GauRhInt2D* myf = new GauRhInt2D; myfunc = myf;}
1937 else {GauRho2D* myf = new GauRho2D; myfunc = myf;}
1938
1939} else if(func[0]=='d' && ndim==2) {
1940 // Fit de DL gaussienne+fond en volume
1941 int integ = 0;
1942 if(func.length()>1) if(func[1]=='i') integ=1;
1943 cout<<"Fit de DL de Gaussienne+Fond 2D integ="<<integ<<endl;
1944 if(integ) {GdlRhInt2D* myf = new GdlRhInt2D; myfunc = myf;}
1945 else {GdlRho2D* myf = new GdlRho2D; myfunc = myf;}
1946
1947} else if(func[0]=='D' && ndim==2) {
1948 // Fit de DL gaussienne+fond avec coeff variable p6 en volume
1949 int integ = 0;
1950 if(func.length()>1) if(func[1]=='i') integ=1;
1951 cout<<"Fit de DL de Gaussienne+Fond avec coeff variable (p6) 2D integ="<<integ<<endl;
1952 if(integ) {Gdl1RhInt2D* myf = new Gdl1RhInt2D; myfunc = myf;}
1953 else {Gdl1Rho2D* myf = new Gdl1Rho2D; myfunc = myf;}
1954
1955} else if(func[0]=='M' && ndim==2) {
1956 // Fit de Moffat+fond (volume)
1957 int integ = 0;
1958 if(func.length()>1) if(func[1]=='i') integ=1;
1959 cout<<"Fit de Moffat+Fond (expos=p6) 2D integ="<<integ<<endl;
1960 if(integ) {MofRhInt2D* myf = new MofRhInt2D; myfunc = myf;}
1961 else {MofRho2D* myf = new MofRho2D; myfunc = myf;}
1962
1963} else {
1964 cout<<"Fonction "<<func<<" inconnue pour la dim "<<ndim<<endl;
1965 return;
1966}
1967
1968/////////////////////////
1969// Fit avec generalfit //
1970/////////////////////////
1971if(myfunc->NPar()>Par.NElts())
1972 {cout<<"Trop de parametres: "<<myfunc->NPar()<<">"<<Par.NElts()<<endl;
1973 if(myfunc) delete myfunc; return;}
1974GeneralFit myfit(myfunc);
1975myfit.SetDebug(O.lpg);
1976myfit.SetData(&mydata);
1977myfit.SetStopChi2(O.stc2);
1978{for(int i=0;i<myfunc->NPar();i++) {
1979 char str[10];
1980 sprintf(str,"P%d",i);
1981 myfit.SetParam(i,str,Par(i),Step(i),Min(i),Max(i));
1982}}
1983if(O.lp>1) myfit.PrintFit();
1984double c2r = (double) myfit.Fit();
1985if(O.lp>0) myfit.PrintFit();
1986if(c2r>0.) {
1987 c2r = myfit.GetChi2Red();
1988 cout<<"C2r_Reduit = "<<c2r<<" nstep="<<myfit.GetNStep()<<endl;
1989 Vector ParFit(myfunc->NPar());
1990 for(int i=0;i<myfunc->NPar();i++) ParFit(i)=myfit.GetParm(i);
1991} else {
1992 cout<<"echec Fit, rc = "<<c2r<<" nstep="<<myfit.GetNStep()<<endl;
1993}
1994
1995// Mise a disposition des resultats
1996if(c2r>=0. && myfunc && (O.okres>0||O.okfun>0)) {
1997 string nomres = nom + "res";
1998 string nomfun = nom + "fun";
1999 if(v) {
2000 if(O.okres) {Vector* ob = v->FitResidus(myfit); if(ob) AddObj(ob,nomres);}
2001 if(O.okfun) {Vector* ob = v->FitFunction(myfit); if(ob) AddObj(ob,nomfun);}
2002 } else if(h) {
2003 if(O.okres) {Histo* ob = h->FitResidus(myfit); if(ob) AddObj(ob,nomres);}
2004 if(O.okfun) {Histo* ob = h->FitFunction(myfit); if(ob) AddObj(ob,nomfun);}
2005 } else if(m) {
2006 if(O.okres) {Matrix* ob = m->FitResidus(myfit); if(ob) AddObj(ob,nomres);}
2007 if(O.okfun) {Matrix* ob = m->FitFunction(myfit); if(ob) AddObj(ob,nomfun);}
2008 } else if(h2) {
2009 if(O.okres) {Histo2D* ob = h2->FitResidus(myfit); if(ob) AddObj(ob,nomres);}
2010 if(O.okfun) {Histo2D* ob = h2->FitFunction(myfit); if(ob) AddObj(ob,nomfun);}
2011 } else if(im) {
2012 if(O.okres) {RzImage* ob = im->FitResidus(myfit); if(ob) AddObj(ob,nomres);}
2013 if(O.okfun) {RzImage* ob = im->FitFunction(myfit); if(ob) AddObj(ob,nomfun);}
2014 } else if(g) {
2015 if(O.okres) {GeneralFitData* ob = g->FitResidus(myfit); if(ob) AddObj(ob,nomres);}
2016 if(O.okfun) {GeneralFitData* ob = g->FitFunction(myfit); if(ob) AddObj(ob,nomfun);}
2017 }
2018}
2019
2020// Nettoyage
2021if(myfunc) delete myfunc;
2022return;
2023}
2024
2025/* --Methode-- */
2026void NamedObjMgr::FFT(string const& nom, string dopt)
2027{
2028#ifndef SANS_EVOLPLANCK
2029 cout << cout << "NamedObjMgr::FFT() NON Disponible - Evol-Planck " << endl;
2030#else
2031PPersist* obj=GetObj(nom);
2032if (obj == NULL) {
2033 cout << "NamedObjMgr::FFT() Error , Pas d'objet de nom " << nom << endl;
2034 return;
2035}
2036if (!myImgApp) return;
2037
2038int cid = obj->ClassId();
2039if (cid != ClassId_Vector) {
2040 string ctyp = servnobjm->PClassIdToClassName(cid);
2041 cout << "NamedObjMgr::FFT() Error , Objet n'est pas un vecteur " << ctyp << endl;
2042 return;
2043 }
2044
2045FFT1 fft( *((Vector*)obj) );
2046
2047if (fft.NData() < 1) return;
2048
2049char* ntn[3] = {"refc", "imfc", "pfc"};
2050NTuple* nt = new NTuple(3,ntn); // Creation NTuple
2051Vector* vf = new Vector(fft.NData()/2);
2052
2053float xnt[3];
2054double pf;
2055for(int k=0; k<fft.NData()/2; k++) {
2056 xnt[0] = fft.ReF(k); xnt[1] = fft.ImF(k);
2057 pf = (xnt[0]*xnt[0]+xnt[1]*xnt[1]);
2058 if (pf >= 0.) pf = sqrt(pf);
2059 xnt[2] = pf; (*vf)(k) = pf;
2060 nt->Fill(xnt);
2061 }
2062
2063P1DArrayAdapter* vya = new POVectorAdapter(vf, true);
2064// vya->DefineXCoordinate(xmin, xmax); a determiner
2065PIYfXDrawer* dr = new PIYfXDrawer(vya, NULL, true) ;
2066bool fgsr = true;
2067dopt = "thinline," + dopt;
2068int opt = servnobjm->DecodeDispOption(dopt, fgsr);
2069myImgApp->DispScDrawer(dr, nom, opt);
2070if (fgsr) myImgApp->RestoreGraphicAtt();
2071#endif
2072return;
2073}
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