source: Sophya/trunk/SophyaPI/PIext/piafitting.cc@ 1199

Last change on this file since 1199 was 1111, checked in by ercodmgr, 25 years ago

objfitter pour Histo/Histo2D/HProf/GeneralFitData cmv 28/7/00

File size: 63.3 KB
Line 
1//CMVBUG reste pb suivant sous Linux-egcs (OSF1-cxx c'est ok):
2//openppf cmvwppf.ppf
3//fitw h1g g2 p:4500,45,10,900
4//delobjs h1g
5//clic sur FIT -> OK
6//clic sur FIT 2sd fois -> core dump!!!
7//
8#include <stdio.h>
9#include <stdlib.h>
10#include <ctype.h>
11#include <iostream.h>
12#include <typeinfo>
13
14#include "strutil.h"
15#include "nbtri.h"
16#include "generalfit.h"
17#include "fct1dfit.h"
18#include "fct2dfit.h"
19#include "ntuple.h"
20#include "cimage.h"
21#include "histos.h"
22#include "histos2.h"
23#include "ntuple.h"
24#include "hisprof.h"
25
26#ifdef SANS_EVOLPLANCK
27#include "matrix.h"
28#include "cvector.h"
29#else
30#include "tmatrix.h"
31#include "tvector.h"
32#include "objfitter.h"
33#endif
34
35#include "piafitting.h"
36#include "nobjmgr.h"
37#include "pistdimgapp.h"
38
39////////////////////////////////////////////////////////////////////
40////---------- Classe de fenetre de fit interactive ------------////
41////////////////////////////////////////////////////////////////////
42class PIAFitterWind : public PIWindow {
43public :
44 PIAFitterWind(PIStdImgApp* par, PIAFitter* fiter);
45 virtual ~PIAFitterWind();
46 virtual void Show();
47 virtual void Process(PIMessage msg, PIMsgHandler* sender, void* data=NULL);
48 void SetState(void);
49protected :
50 PIStdImgApp* mDap;
51 PIAFitter* mFitter;
52 PILabel** lab; int nlab;
53 PIText** txt; int ntxt;
54 PIButton** but; int nbut;
55 PICheckBox** ckb; int nckb;
56 PIOptMenu** pom; int npom;
57 bool ReFillGData;
58 int saveI1,saveI2, saveJ1, saveJ2;
59 double ErrValue;
60};
61
62////////////////////////////////////////////////////////////////////////
63// --- Generation automatique du "usage" pour helpfit:
64// 1-/ copier le texte ci-dessous de piafitting.cc dans toto
65// 2-/ cat toto | sed 's?^//?usage+="\\n?' | sed 's?$? ";?'
66// NE PAS EFFACER LA SUITE: c'est elle qui doit etre modifiee,
67// le usage du helpfit sera regenere a l'aide des commandes ci-dessus.
68////////////////////////////////////////////////////////////////////////
69//| --------------- Fit Lineaire a 1 et 2 dimensions ---------------
70//| Syntaxe:
71//| fitlin nom pnn [o:.aa,bb,cc, o;dd,ee,ff o:gg,hh,jj,kk etc...]
72//| avec:
73//| nom : cf commentaire ordre ''fit''
74//| pnn : fit polynome degre nn avec classe Poly (lineaire) 1D ou 2D
75//| o:aa,...,bb : cf commentaires ordre ''fit''
76//|
77////////////////////////////////////////////////////////////////////////
78//| --------------- Fit d'objets a 1 et 2 dimensions ---------------
79//| avec interface d'aide graphique
80//| Syntaxe:
81//| fitw nom func
82//| [p:p1,p2,...,pn s:s1,s2,...,sn m:m1,m2,...,mn M:M1,mM2,...,Mn f:f1,...,fn]
83//| [o:.aa,bb,cc, o;dd,ee,ff o:gg,hh,jj,kk etc...]
84//| cf commentaire ordre ''fit''
85//|
86////////////////////////////////////////////////////////////////////////
87//| --------------- Fit d'objets a 1 et 2 dimensions ---------------
88//| Syntaxe:
89//| fit nom func
90//| [p:p1,p2,...,pn s:s1,s2,...,sn m:m1,m2,...,mn M:M1,mM2,...,Mn f:f1,...,fn]
91//| [o:.aa,bb,cc, o;dd,ee,ff o:gg,hh,jj,kk etc...]
92//|----- OBJET -----
93//| nom : nom de l'objet qui peut etre:
94//| fit-1D: Vector,Histo1D,HProf ou GeneraFitData(1D)
95//| fit-2D: Matrix,Histo2D,Image<T> ou GeneraFitData(2D)
96//|
97//|----- FUNCTION -----
98//| func : pnn : fit polynome degre nn avec GeneralFit (non-lineaire) 1D ou 2D
99//| : gnn : fit gaussienne (hauteur) + polynome de degre nn 1D
100//| : g : fit gaussienne (hauteur) 1D
101//| : enn : fit exponentielle + polynome de degre nn 1D
102//| : e : fit exponentielle 1D
103//| : Gnn : fit gaussienne (volume) + polynome de degre nn 1D
104//| : G : fit gaussienne (volume) 1D
105//| : : fit gaussienne+fond (volume) 2D
106//| : Gi : fit gaussienne+fond integree (volume) 2D
107//| : d : fit DL de gaussienne+fond (volume) 2D
108//| : di : fit DL de gaussienne+fond integree (volume) 2D
109//| : D : fit DL de gaussienne+fond avec coeff variable p6 (volume) 2D
110//| : Di : fit DL de gaussienne+fond integree avec coeff variable p6 (volume) 2D
111//| : M : fit Moffat+fond (expos=p6) (volume) 2D
112//| : Mi : fit Moffat+fond integree (expos=p6) (volume) 2D
113//| : Autre : fonction definie par l'utilisateur (cf commentaires ci apres)
114//|
115//|----- INIT PARAMETRES ET ETAT DU FIT -----
116//| p : p1,...,pn : valeur d'initialisation des parametres (def=0)
117//| s : s1,...,sn : valeur des steps de depart (def=1)
118//| m : m1,...,mn : valeur des minima (def=1)
119//| M : M1,...,Mn : valeur des maxima (def=-1) (max<=min : pas de limite)
120//| f : f1,...,fn : si >=1 parametre fixe sinon libre (def=0)
121//| - Remarque: si pi,si,mi ou Mi = '!' la valeur correspondante n'est pas changee
122//|
123//|----- OPTIONS -----
124//| o : options ''o:Eaa.b,eaa.b,f,r,caa.b,Xaa.b''
125//| F : initialisation a partir des resultats et de l'etat du fit precedent
126//| (option non prioritaire sur les definitions p:,s:,m:,M:,f:o:)
127//| a : initialisation automatique des parametres du fit (si disponible)
128//| (option non prioritaire sur les definitions p:,s:,m:,M:,f:o:
129//| et sur l'initialisation pa l'option ''F'')
130//| f : generation d'un Objet identique contenant la fonction fittee
131//| r : generation d'un Objet identique contenant les residus
132//| Xaa.b : aa.b valeur du DXi2 d'arret (def=1.e-3)
133//| Naa : aa nombre maximum d'iterations (def=100)
134//| la : niveau ''a'' de print: a=niveau de print Fit1/2D
135//| da : niveau ''a'' de debug: a=niveau de GeneralFit
136//| Ii1/i2 : numeros des bins X de l'histos utilises pour le fit [i1,i2]
137//|2D Jj1/j2 : numeros des bins Y de l'histos utilises pour le fit [j1,j2]
138//| - L'erreur est celle associee a l'objet (si elle existe),
139//| elle est mise a 1 sinon, sauf si E... ou e... est precise:
140//| Eaa.b : si |val|>=1 erreur = aa.b*sqrt(|val|)
141//| si |val|<1 erreur = aa.b
142//| si aa.b <=0 alors aa.b=1.0
143//| E seul est equivalent a E1.0
144//| eaa.b : erreur = aa.b
145//| si aa.b <=0 alors aa.b=1.0
146//| e seul est equivalent a e1.0
147//| xaa.b : demande de centrage: on fit x-aa.b au lieu de x)
148//| x : demande de centrage: on fit x-xc au lieu de x
149//| avec xc=abscisse du milieu de l'histogramme
150//| Actif pour exp+poly 1D, poly 1D
151//| Pour gauss+poly 1D, xc est le centre de la gaussienne.
152//|2D yaa.b et y : idem ''xaa.b et x'' mais pour y
153//|
154////////////////////////////////////////////////////////////////////////
155//| --------------- Def des fcts de fit par l'utilisateur ---------------
156//| Pour definir une fonction parametree utilisateur:
157//| Un exemple de fichier contenant des fonctions a fitter: PIext/userfitfunex.c
158//| > crfitfil nom_fichier nom_fonction nvar npar
159//| pour creer un squelette de fichier C contenant la fonction a fitter
160//| nom_fichier : nom du fichier ou est le code de la fonction
161//| c'est un fichier C de nom blabla.c
162//| nom_fonction : nom de la fonction ex: gauss2
163//| nvar : nombre de variables x[] (1D=1, 2D=2, etc...)
164//| npar : nombre de parametre p[]
165//| - La fonction est donc F(x[];p[]), soit par ex:
166//| double gauss2(double const* x,double const* p)
167//| - L'utilisateur a la possibilite de donner egalement la fonction
168//| retournant les derivees de la fonction par rapport aux parametres
169//| double gauss2_der(double const* x,double const* p,double* dp)
170//| ou dp[i] = dF(x[];p[])/dp[i]
171//| Par convention, cette fonction a le meme nom suivi de ''_der''
172//| > crfitfun nom_fichier nom_fonction nvar npar
173//| Permet de compiler le fichier ''nom_fichier'' et de linker
174//| la fonction ''nom_fonction''
175//| - Un meme fichier peut contenir plusieurs fonctions a fitter
176//|
177////////////////////////////////////////////////////////////////////////
178
179/* --Methode-- */
180PIAFitter::PIAFitter(PIACmd *piac, PIStdImgApp* app)
181: mApp(app), FWindFit(NULL)
182, mNObj(""), mObj(NULL), mGData(NULL)
183, mNPar(0), mNVar(0), mNBinX(0), mNBinY(0), mNData(0)
184, mPar(1), mStep(1), mMin(1), mMax(1), mFix(1)
185, mParSave(1), mStepSave(1), mMinSave(1), mMaxSave(1), mFixSave(1)
186, mFit(NULL)
187, mV(NULL), mH(NULL), mM(NULL), mH2(NULL), mIm(NULL), mG(NULL)
188, mFunction(NULL), mFName(""), mFunc(NULL)
189, mDlUFunc(NULL), mNameFitFunc(""), mFitFunc(NULL), mFitFuncDer(NULL)
190, mUFNVar(0), mUFNPar(0)
191{
192// Init et Set des options
193mPar=0.; mStep=1.; mMin=1.; mMax=-1.; mFix=0.;
194mParSave=0.; mStepSave=1.; mMinSave=1.; mMaxSave=-1.; mFixSave=0.;
195ResetOptions();
196mOptSave = mOpt;
197
198// enregistrement des ordres de fit
199string kw, usage, grp = "Fitting";
200
201kw = "helpfit";
202usage="";
203usage+="\n////////////////////////////////////////////////////////////////////// ";
204usage+="\n| --------------- Fit Lineaire a 1 et 2 dimensions --------------- ";
205usage+="\n| Syntaxe: ";
206usage+="\n| fitlin nom pnn [o:.aa,bb,cc, o;dd,ee,ff o:gg,hh,jj,kk etc...] ";
207usage+="\n| avec: ";
208usage+="\n| nom : cf commentaire ordre ''fit'' ";
209usage+="\n| pnn : fit polynome degre nn avec classe Poly (lineaire) 1D ou 2D ";
210usage+="\n| o:aa,...,bb : cf commentaires ordre ''fit'' ";
211usage+="\n| ";
212usage+="\n////////////////////////////////////////////////////////////////////// ";
213usage+="\n| --------------- Fit d'objets a 1 et 2 dimensions --------------- ";
214usage+="\n| avec interface d'aide graphique ";
215usage+="\n| Syntaxe: ";
216usage+="\n| fitw nom func ";
217usage+="\n| [p:p1,p2,...,pn s:s1,s2,...,sn m:m1,m2,...,mn M:M1,mM2,...,Mn f:f1,...,fn] ";
218usage+="\n| [o:.aa,bb,cc, o;dd,ee,ff o:gg,hh,jj,kk etc...] ";
219usage+="\n| cf commentaire ordre ''fit'' ";
220usage+="\n| ";
221usage+="\n////////////////////////////////////////////////////////////////////// ";
222usage+="\n| --------------- Fit d'objets a 1 et 2 dimensions --------------- ";
223usage+="\n| Syntaxe: ";
224usage+="\n| fit nom func ";
225usage+="\n| [p:p1,p2,...,pn s:s1,s2,...,sn m:m1,m2,...,mn M:M1,mM2,...,Mn f:f1,...,fn] ";
226usage+="\n| [o:.aa,bb,cc, o;dd,ee,ff o:gg,hh,jj,kk etc...] ";
227usage+="\n|----- OBJET ----- ";
228usage+="\n| nom : nom de l'objet qui peut etre: ";
229usage+="\n| fit-1D: Vector,Histo1D,HProf ou GeneraFitData(1D) ";
230usage+="\n| fit-2D: Matrix,Histo2D,Image<T> ou GeneraFitData(2D) ";
231usage+="\n| ";
232usage+="\n|----- FUNCTION ----- ";
233usage+="\n| func : pnn : fit polynome degre nn avec GeneralFit (non-lineaire) 1D ou 2D ";
234usage+="\n| : gnn : fit gaussienne (hauteur) + polynome de degre nn 1D ";
235usage+="\n| : g : fit gaussienne (hauteur) 1D ";
236usage+="\n| : enn : fit exponentielle + polynome de degre nn 1D ";
237usage+="\n| : e : fit exponentielle 1D ";
238usage+="\n| : Gnn : fit gaussienne (volume) + polynome de degre nn 1D ";
239usage+="\n| : G : fit gaussienne (volume) 1D ";
240usage+="\n| : : fit gaussienne+fond (volume) 2D ";
241usage+="\n| : Gi : fit gaussienne+fond integree (volume) 2D ";
242usage+="\n| : d : fit DL de gaussienne+fond (volume) 2D ";
243usage+="\n| : di : fit DL de gaussienne+fond integree (volume) 2D ";
244usage+="\n| : D : fit DL de gaussienne+fond avec coeff variable p6 (volume) 2D ";
245usage+="\n| : Di : fit DL de gaussienne+fond integree avec coeff variable p6 (volume) 2D ";
246usage+="\n| : M : fit Moffat+fond (expos=p6) (volume) 2D ";
247usage+="\n| : Mi : fit Moffat+fond integree (expos=p6) (volume) 2D ";
248usage+="\n| : Autre : fonction definie par l'utilisateur (cf commentaires ci apres) ";
249usage+="\n| ";
250usage+="\n|----- INIT PARAMETRES ET ETAT DU FIT ----- ";
251usage+="\n| p : p1,...,pn : valeur d'initialisation des parametres (def=0) ";
252usage+="\n| s : s1,...,sn : valeur des steps de depart (def=1) ";
253usage+="\n| m : m1,...,mn : valeur des minima (def=1) ";
254usage+="\n| M : M1,...,Mn : valeur des maxima (def=-1) (max<=min : pas de limite) ";
255usage+="\n| f : f1,...,fn : si >=1 parametre fixe sinon libre (def=0) ";
256usage+="\n| - Remarque: si pi,si,mi ou Mi = '!' la valeur correspondante n'est pas changee ";
257usage+="\n| ";
258usage+="\n|----- OPTIONS ----- ";
259usage+="\n| o : options ''o:Eaa.b,eaa.b,f,r,caa.b,Xaa.b'' ";
260usage+="\n| F : initialisation a partir des resultats et de l'etat du fit precedent ";
261usage+="\n| (option non prioritaire sur les definitions p:,s:,m:,M:,f:o:) ";
262usage+="\n| a : initialisation automatique des parametres du fit (si disponible) ";
263usage+="\n| (option non prioritaire sur les definitions p:,s:,m:,M:,f:o: ";
264usage+="\n| et sur l'initialisation pa l'option ''F'') ";
265usage+="\n| f : generation d'un Objet identique contenant la fonction fittee ";
266usage+="\n| r : generation d'un Objet identique contenant les residus ";
267usage+="\n| Xaa.b : aa.b valeur du DXi2 d'arret (def=1.e-3) ";
268usage+="\n| Naa : aa nombre maximum d'iterations (def=100) ";
269usage+="\n| la : niveau ''a'' de print: a=niveau de print Fit1/2D ";
270usage+="\n| da : niveau ''a'' de debug: a=niveau de GeneralFit ";
271usage+="\n| Ii1/i2 : numeros des bins X de l'histos utilises pour le fit [i1,i2] ";
272usage+="\n|2D Jj1/j2 : numeros des bins Y de l'histos utilises pour le fit [j1,j2] ";
273usage+="\n| - L'erreur est celle associee a l'objet (si elle existe), ";
274usage+="\n| elle est mise a 1 sinon, sauf si E... ou e... est precise: ";
275usage+="\n| Eaa.b : si |val|>=1 erreur = aa.b*sqrt(|val|) ";
276usage+="\n| si |val|<1 erreur = aa.b ";
277usage+="\n| si aa.b <=0 alors aa.b=1.0 ";
278usage+="\n| E seul est equivalent a E1.0 ";
279usage+="\n| eaa.b : erreur = aa.b ";
280usage+="\n| si aa.b <=0 alors aa.b=1.0 ";
281usage+="\n| e seul est equivalent a e1.0 ";
282usage+="\n| xaa.b : demande de centrage: on fit x-aa.b au lieu de x) ";
283usage+="\n| x : demande de centrage: on fit x-xc au lieu de x ";
284usage+="\n| avec xc=abscisse du milieu de l'histogramme ";
285usage+="\n| Actif pour exp+poly 1D, poly 1D ";
286usage+="\n| Pour gauss+poly 1D, xc est le centre de la gaussienne. ";
287usage+="\n|2D yaa.b et y : idem ''xaa.b et x'' mais pour y ";
288usage+="\n| ";
289usage+="\n////////////////////////////////////////////////////////////////////// ";
290usage+="\n| --------------- Def des fcts de fit par l'utilisateur --------------- ";
291usage+="\n| Pour definir une fonction parametree utilisateur: ";
292usage+="\n| Un exemple de fichier contenant des fonctions a fitter: PIext/userfitfunex.c ";
293usage+="\n| > crfitfil nom_fichier nom_fonction nvar npar ";
294usage+="\n| pour creer un squelette de fichier C contenant la fonction a fitter ";
295usage+="\n| nom_fichier : nom du fichier ou est le code de la fonction ";
296usage+="\n| c'est un fichier C de nom blabla.c ";
297usage+="\n| nom_fonction : nom de la fonction ex: gauss2 ";
298usage+="\n| nvar : nombre de variables x[] (1D=1, 2D=2, etc...) ";
299usage+="\n| npar : nombre de parametre p[] ";
300usage+="\n| - La fonction est donc F(x[];p[]), soit par ex: ";
301usage+="\n| double gauss2(double const* x,double const* p) ";
302usage+="\n| - L'utilisateur a la possibilite de donner egalement la fonction ";
303usage+="\n| retournant les derivees de la fonction par rapport aux parametres ";
304usage+="\n| double gauss2_der(double const* x,double const* p,double* dp) ";
305usage+="\n| ou dp[i] = dF(x[];p[])/dp[i] ";
306usage+="\n| Par convention, cette fonction a le meme nom suivi de ''_der'' ";
307usage+="\n| > crfitfun nom_fichier nom_fonction nvar npar ";
308usage+="\n| Permet de compiler le fichier ''nom_fichier'' et de linker ";
309usage+="\n| la fonction ''nom_fonction'' ";
310usage+="\n| - Un meme fichier peut contenir plusieurs fonctions a fitter ";
311usage+="\n| ";
312usage+="\n////////////////////////////////////////////////////////////////////// ";
313piac->RegisterHelp(kw,usage,grp);
314
315kw = "fit";
316usage = "Fitting function to DataObjects (Histo, Histo2D, Vector, ...)";
317usage += "\n Usage: fit nomobj func [Options]";
318usage += "\n [p:p1,...,pn s:s1,...,sn m:m1,...,mn M:M1,...,Mn o:... o:...]";
319usage += "\n Related commands: fitw fitlin crfitfun crfitfil";
320piac->RegisterCommand(kw,usage,this,grp);
321
322kw = "fitw";
323usage = "Fitting function to DataObjects with Interactive Window Help";
324usage += "\n Usage: fitw nomobj func [Options]";
325usage += "\n [p:p1,...,pn s:s1,...,sn m:m1,...,mn M:M1,...,Mn o:... o:...]";
326usage += "\n Related commands: fit fitlin crfitfun crfitfil";
327piac->RegisterCommand(kw,usage,this,grp);
328
329kw = "fitlin";
330usage = "Linear Fitting of Polynoms to DataObjects";
331usage += "\n Usage: fitlin nomobj func [o:... o:...]";
332usage += "\n Related commands: fit fitw crfitfun crfitfil";
333piac->RegisterCommand(kw,usage,this,grp);
334
335kw = "crfitfun";
336usage = "Creation et link de function utilisateur pour le fit";
337usage += "\n Usage: crfitfun file func nvar npar";
338usage += "\n Related commands: fit fitw fitlin crfitfil";
339piac->RegisterCommand(kw,usage,this,grp);
340
341kw = "crfitfil";
342usage = "Creation de fichier C pour function utilisateur du fit";
343usage += "\n Usage: crfitfil file func nvar npar";
344usage += "\n Related commands: fit fitw fitlin crfitfun";
345piac->RegisterCommand(kw,usage,this,grp);
346}
347
348/* --Methode-- */
349PIAFitter::~PIAFitter()
350{
351if(mFit != NULL) {delete mFit; mFit=NULL;}
352if(mFunction != NULL) {delete mFunction; mFunction=NULL;}
353if(mFunc != NULL) {delete mFunc; mFunc=NULL;}
354if(mGData != NULL) {delete mGData; mGData=NULL;}
355if(FWindFit != NULL) {delete FWindFit; FWindFit=NULL;}
356if (mDlUFunc != NULL) {delete mDlUFunc; mDlUFunc=NULL;}
357}
358
359/* --Methode-- */
360void PIAFitter::ResetDPointer(void)
361// Reset des pointeurs sur les donnees
362{
363mNObj = ""; mObj=NULL;
364mV=NULL; mH=NULL; mM=NULL; mH2=NULL; mIm=NULL; mG=NULL;
365}
366
367/* --Methode-- */
368void PIAFitter::ResetOptions(void)
369// Reset des options
370{
371mOpt.okres = mOpt.okfun = false;
372mOpt.polcx = mOpt.polcy = 0;
373mOpt.xc = mOpt.yc = 0.;
374mOpt.stc2 = 1.e-3;
375mOpt.nstep = 100;
376mOpt.err_e = mOpt.err_E = -1.;
377mOpt.lp = 1; mOpt.lpg = 0;
378mOpt.i1 = mOpt.j1 = mOpt.i2 = mOpt.j2 = -1;
379mOpt.fromlastfit = false;
380mOpt.autoinifit = false;
381}
382
383/* --Methode-- */
384void PIAFitter::DecodeOptions(string opt)
385// Decodage des options a partir des chaines de caracteres
386{
387ResetOptions();
388if(opt.length()<=0) return;
389
390size_t p,q; string dum;
391opt = "," + opt + ",";
392
393if(strstr(opt.c_str(),",F,")) // init options/param a partir du fit precedent
394 {mOpt = mOptSave; mOpt.fromlastfit = true;}
395if(strstr(opt.c_str(),",a,")) mOpt.autoinifit = true; // init auto par fit
396if(strstr(opt.c_str(),",r,")) mOpt.okres = true; // residus
397if(strstr(opt.c_str(),",f,")) mOpt.okfun = true; // fonction fittee
398if(strstr(opt.c_str(),",x")) { // Demande de centrage (fit X=x-xc)
399 mOpt.polcx = 2; // Le centrage est calcule automatiquement
400 p = opt.find(",x"); q = opt.find_first_of(',',p+1);
401 dum = opt.substr(p,q-p);
402 if(dum.length()>2) {
403 sscanf(dum.c_str(),",x%lf",&mOpt.xc);
404 mOpt.polcx = 1; // Le centrage est fixe par la valeur lue
405 }
406}
407if(strstr(opt.c_str(),",y")) { // Demande de centrage (fit Y=y-yc)
408 mOpt.polcy = 2; // Le centrage est calcule automatiquement
409 p = opt.find(",y"); q = opt.find_first_of(',',p+1);
410 dum = opt.substr(p,q-p);
411 if(dum.length()>2) {
412 sscanf(dum.c_str(),",y%lf",&mOpt.yc);
413 mOpt.polcy = 1; // Le centrage est fixe par la valeur lue
414 }
415}
416if(strstr(opt.c_str(),",E")) { // Erreurs imposees a "sqrt(val)" ou "aa.b*sqrt(val)"
417 p = opt.find(",E"); q = opt.find_first_of(',',p+1);
418 dum = opt.substr(p,q-p);
419 if(dum.length()>2) sscanf(dum.c_str(),",E%lf",&mOpt.err_E);
420 if(mOpt.err_E<=0.) mOpt.err_E = 1.; //mOpt.err_e=-1.;
421}
422if(strstr(opt.c_str(),",e")) { // Erreurs imposees a "1" ou "aa.b"
423 p = opt.find(",e"); q = opt.find_first_of(',',p+1);
424 dum = opt.substr(p,q-p);
425 if(dum.length()>2) sscanf(dum.c_str(),",e%lf",&mOpt.err_e);
426 if(mOpt.err_e<=0.) mOpt.err_e = 1.; //mOpt.err_E=-1.;
427}
428if(strstr(opt.c_str(),",X")) { // Valeur du StopChi2
429 p = opt.find(",X"); q = opt.find_first_of(',',p+1);
430 dum = opt.substr(p,q-p);
431 if(dum.length()>2) sscanf(dum.c_str(),",X%lf",&mOpt.stc2);
432}
433if(strstr(opt.c_str(),",N")) { // Nombre maximum d'iterations
434 p = opt.find(",N"); q = opt.find_first_of(',',p+1);
435 dum = opt.substr(p,q-p);
436 if(dum.length()>2) sscanf(dum.c_str(),",N%d",&mOpt.nstep);
437}
438if(strstr(opt.c_str(),",l")) { // niveau de print
439 p = opt.find(",l"); q = opt.find_first_of(',',p+1);
440 dum = opt.substr(p,q-p);
441 if(dum.length()>2) sscanf(dum.c_str(),",l%d",&mOpt.lp);
442}
443if(strstr(opt.c_str(),",d")) { // niveau de debug du fit
444 p = opt.find(",d"); q = opt.find_first_of(',',p+1);
445 dum = opt.substr(p,q-p);
446 if(dum.length()>2) sscanf(dum.c_str(),",d%d",&mOpt.lpg);
447}
448if(strstr(opt.c_str(),",I")) { // intervalle de fit selon X
449 p = opt.find(",I"); q = opt.find_first_of(',',p+1);
450 dum = opt.substr(p,q-p);
451 if(dum.length()>2) sscanf(dum.c_str(),",I%d/%d",&mOpt.i1,&mOpt.i2);
452}
453if(strstr(opt.c_str(),",J")) { // intervalle de fit selon Y
454 p = opt.find(",J"); q = opt.find_first_of(',',p+1);
455 dum = opt.substr(p,q-p);
456 if(dum.length()>2) sscanf(dum.c_str(),",J%d/%d",&mOpt.j1,&mOpt.j2);
457}
458
459return;
460}
461
462/* --Methode-- */
463void PIAFitter::DecodeObject(string obj)
464// Decodage de l'objet a fitter
465{
466NamedObjMgr omg;
467AnyDataObj* mobj = omg.GetObj(obj);
468if(mobj == NULL)
469 {cout<<"PIAFitter::DecodeObject Error , Pas d'objet de nom "<<obj<<endl;
470 return;}
471
472// Reset
473ResetDPointer();
474mNVar = mNBinX = mNBinY = mNData = 0;
475
476mObj = mobj; mNObj = obj;
477string ctyp = typeid(*mObj).name();
478
479// 1D
480if (typeid(*mObj) == typeid(Vector)) {
481 mNVar = 1;
482 mV = (Vector*) mObj; mNBinX = mV->NElts(); mNBinY = 1;
483 }
484else if ( (typeid(*mObj) == typeid(HProf)) || (typeid(*mObj) == typeid(Histo)) ) {
485 mNVar = 1;
486 mH = (Histo*) mObj; mNBinX = mH->NBins(); mNBinY = 1;
487 }
488// 2D
489else if (typeid(*mObj) == typeid(Matrix)) {
490 mNVar = 2;
491 mM = (Matrix*) mObj; mNBinX = mM->NCol(); mNBinY =mM->NRows();
492 }
493else if (typeid(*mObj) == typeid(Histo2D)) {
494 mNVar = 2;
495 mH2 = (Histo2D*) mObj; mNBinX = mH2->NBinX(); mNBinY = mH2->NBinY();
496 }
497else if (typeid(*mObj) == typeid(GeneralFitData)) {
498 mG = (GeneralFitData*) mObj; mNBinX = mG->NData(); mNBinY = 1;
499 if( mG->NVar()==1) mNVar = 1;
500 else if(mG->NVar()==2) mNVar = 2;
501 else
502 {cout<<"PIAFitter::DecodeObject Error: \n"
503 <<" GeneralFitData ne peut avoir que 1 ou 2 variables d'abscisse: "
504 <<((GeneralFitData*) mObj)->NVar()<<endl;
505 return;}
506 }
507#ifdef SANS_EVOLPLANCK
508else if (dynamic_cast<RzImage*>(mObj)) {
509 mNVar = 2;
510 mIm = (RzImage*) mObj; mNBinX = mIm->XSize(); mNBinY = mIm->YSize();
511 }
512#else
513//CMV_A_FAIRE else if (dynamic_cast<RzImage*>(mObj)) {
514//CMV_A_FAIRE mNVar = 2;
515//CMV_A_FAIRE mIm = (RzImage*) mObj; mNBinX = mIm->XSize(); mNBinY = mIm->YSize();
516//CMV_A_FAIRE }
517#endif
518else {
519 cout<<"PIAFitter::DecodeObject Error , Objet n'est pas un "
520 <<"Histo1D/HProf/Vector/Histo2D/Image/Matrix/GeneralFitData "<<ctyp<<endl;
521 return;
522 }
523
524mNData = mNBinX*mNBinY;
525if(mNData<=0) {
526 cout<<"L'objet a "<<mNBinX<<","<<mNBinY<<" bins ("<<mNData<<")"<<endl;
527 return;
528}
529
530return;
531}
532
533/* --Methode-- */
534void PIAFitter::CheckOptions(void)
535// Check consistence des choix des options
536// ATTENTION: cette methode a besoin que l'objet a fitter soit deja lu
537{
538if(mOpt.lp<0) mOpt.lp = 0;
539if(mOpt.lpg<0) mOpt.lpg = 0;
540mOpt.i1 = (mOpt.i1<0||mOpt.i1>=mNBinX)? 0: mOpt.i1;
541mOpt.i2 = (mOpt.i2<0||mOpt.i2>=mNBinX||mOpt.i2<=mOpt.i1)? mNBinX-1: mOpt.i2;
542if(mNVar>=2) {
543 mOpt.j1 = (mOpt.j1<0||mOpt.j1>=mNBinY)? 0: mOpt.j1;
544 mOpt.j2 = (mOpt.j2<0||mOpt.j2>=mNBinY||mOpt.j2<=mOpt.j1)? mNBinY-1: mOpt.j2;
545} else mOpt.j2 = mOpt.j1 = 0;
546if(mOpt.polcx==2) {
547 if(mV||mM) mOpt.xc = (mOpt.i2-mOpt.i1+1)/2.;
548 else if(mH) mOpt.xc = (mH->XMin()+mH->XMax())/2.;
549 else if(mH2) mOpt.xc = (mH2->XMin()+mH2->XMax())/2.;
550 else if(mG) {double mini,maxi; mG->GetMnMx(2,mini,maxi); mOpt.xc=(mini+maxi)/2.;}
551 else if(mIm) {mOpt.xc = mIm->XOrg() * mIm->XPixSize()*(mOpt.i2-mOpt.i1+1)/2.;}
552}
553if(mOpt.polcy==2 && mNVar>=2) {
554 if(mM) mOpt.yc = (mOpt.j2-mOpt.j1+1)/2.;
555 if(mH2) mOpt.yc = (mH2->YMin()+mH2->YMax())/2.;
556 if(mG) {double mini,maxi; mG->GetMnMx(12,mini,maxi); mOpt.yc=(mini+maxi)/2.;}
557 if(mIm) {mOpt.yc = mIm->YOrg() * mIm->YPixSize()*(mOpt.j2-mOpt.j1+1)/2.;}
558}
559if(mOpt.err_e>0.) mOpt.err_E=-1.;
560if(mOpt.err_E>0.) mOpt.err_e =-1.;
561if(mOpt.stc2<=0.) mOpt.stc2 = 1.e-3;
562if(mOpt.nstep<2) mOpt.nstep = 100;
563
564return;
565}
566
567/* --Methode-- */
568void PIAFitter::PrintOptions(void)
569// Print des options
570{
571cout<<"Fit["<<mNBinX<<","<<mNBinY<<"] ("<<mNData<<") dim="<<mNVar<<":"
572 <<" Int=["<<mOpt.i1<<","<<mOpt.i2<<"],["<<mOpt.j1<<","<<mOpt.j2<<"]"<<endl
573 <<" Cent="<<mOpt.polcx<<","<<mOpt.polcy<<","<<mOpt.xc<<"+x"<<","<<mOpt.yc<<"+y"
574 <<" TypE="<<mOpt.err_e<<","<<mOpt.err_E
575 <<" StpX2="<<mOpt.stc2<<" Nstep="<<mOpt.nstep<<endl
576 <<" Init.LFit="<<mOpt.fromlastfit<<" AutoIni.Fit="<<mOpt.autoinifit
577 <<" lp,lpg="<<mOpt.lp<<","<<mOpt.lpg<<endl;
578return;
579}
580
581/* --Methode-- */
582void PIAFitter::FillGData(void)
583// Fill generalfitdata pour le fit
584// ATTENTION: cette methode a besoin que les options soient decodees et checkees
585{
586if(mNData<=0) return;
587if(mGData!=NULL) {delete mGData; mGData=NULL;}
588mGData = new GeneralFitData(mNVar,mNData,0);
589
590for(int i=mOpt.i1;i<=mOpt.i2;i++) for(int j=mOpt.j1;j<=mOpt.j2;j++) {
591 double x,y=0.,f,e;
592
593 if(mV)
594 {x= (double) i; f=(*mV)(i); e=1.;}
595 else if(mH)
596 {x=mH->BinCenter(i); f=(*mH)(i); e=(mH->HasErrors())?mH->Error(i):1.;}
597 else if(mM)
598 {x=(double) i; y=(double) j; f=(*mM)(j,i); e=1.;}
599 else if(mH2)
600 {r_8 xf,yf; mH2->BinCenter(i,j,xf,yf); x=xf; y=yf;
601 f=(*mH2)(i,j); e=(mH2->HasErrors())?mH2->Error(i,j):1.;}
602 else if(mIm)
603 {x=mIm->XOrg()+(i+0.5)*mIm->XPixSize(); y=mIm->YOrg()+(j+0.5)*mIm->YPixSize();
604 f=mIm->DValue(i,j); e=1.;}
605 else if(mG&&mNVar==1) {x= mG->X(i); f=mG->Val(i); e=mG->EVal(i);}
606 else if(mG&&mNVar==2) {x= mG->X(i); y=mG->Y(i); f=mG->Val(i); e=mG->EVal(i);}
607 else x=y=f=e=0.;
608
609 // Gestion des erreurs a utiliser
610 if(mOpt.err_e>0.) e=mOpt.err_e;
611 else if(mOpt.err_E>0.) {e=(f<-1.||f>1.)?mOpt.err_E*sqrt(fabs(f)):mOpt.err_E;}
612
613 // Remplissage de generalfitdata
614 if(mFName[0]=='p') {x -= mOpt.xc; if(mNVar>=2) y -= mOpt.yc;}
615 if(mNVar==1) mGData->AddData1(x,f,e);
616 else if(mNVar==2) mGData->AddData2(x,y,f,e);
617}
618
619if(mGData->NData()<=0) {
620 cout<<"Pas de donnees dans GeneralFitData: "<<mGData->NData()<<endl;
621 return;
622}
623
624if(mOpt.lp>2) {
625 mGData->PrintStatus();
626 mGData->PrintData(0);
627 mGData->PrintData(mGData->NData()-1);
628 double mini,maxi;
629 mGData->GetMnMx(2,mini,maxi);
630 cout<<"Limites ...x0 = ["<<mini<<","<<maxi<<"]"<<endl;
631 if(mNVar==2)
632 {mGData->GetMnMx(12,mini,maxi);
633 cout<<"Limites ...x1 = ["<<mini<<","<<maxi<<"]"<<endl;}
634 mGData->GetMnMx(0,mini,maxi);
635 cout<<"Limites ...y = ["<<mini<<","<<maxi<<"]"<<endl;
636 mGData->GetMnMx(1,mini,maxi);
637 cout<<"Limites ...ey = ["<<mini<<","<<maxi<<"]"<<endl;
638}
639
640return;
641}
642
643/* --Methode-- */
644void PIAFitter::DecodeFunction(string func)
645// Fonction a fitter
646// ATTENTION: cette methode a besoin que les donnees soient lues
647{
648if(func.length()<=0)
649 {cout<<"PIAFitter::DecodeFunction Donnez un nom de fonction a fitter."<<endl;
650 return;}
651if(mFunction!=NULL) {delete mFunction; mFunction=NULL;}
652if(mFunc !=NULL) {delete mFunc; mFunc=NULL;}
653mNPar=0; mFName = "";
654
655if(func == mNameFitFunc) { // Fonction utilisateur
656 mFunc = new GeneralFunc(mUFNVar,mUFNPar,mFitFunc,mFitFuncDer);
657 mNPar = mUFNPar;
658 cout<<"Fonction utilisateur nvar="<<mUFNVar<<", npar="<<mNPar<<endl;
659} else if(func[0]=='p' && mNVar==1) { //polynome
660 int degre=0; if(func.length()>1) sscanf(func.c_str()+1,"%d",&degre);
661 cout<<"Fit polynome 1D de degre "<<degre<<endl;
662 Polyn1D* myf = new Polyn1D(degre,mOpt.xc);
663 mFunction = myf; mNPar = mFunction->NPar(); mFName = func;
664
665} else if(func[0]=='e' && mNVar==1) { //exponentielle
666 int degre=-1; if(func.length()>1) sscanf(func.c_str()+1,"%d",&degre);
667 cout<<"Fit d'exponentielle+polynome 1D de degre "<<degre<<endl;
668 Exp1DPol* myf;
669 if(degre>=0) myf = new Exp1DPol((unsigned int)degre,mOpt.xc);
670 else myf = new Exp1DPol(mOpt.xc);
671 mFunction = myf; mNPar = mFunction->NPar(); mFName = func;
672
673} else if(func[0]=='g' && mNVar==1) { //gaussienne en hauteur
674 int degre=-1; if(func.length()>1) sscanf(func.c_str()+1,"%d",&degre);
675 cout<<"Fit de Gaussienne_en_hauteur+polynome 1D de degre "<<degre<<endl;
676 Gauss1DPol* myf;
677 if(degre>=0) myf = new Gauss1DPol((unsigned int)degre,((mOpt.polcx)?true:false));
678 else { bool bfg = (mOpt.polcx)?true:false; myf = new Gauss1DPol(bfg); }
679 mFunction = myf; mNPar = mFunction->NPar(); mFName = func;
680
681} else if(func[0]=='G' && mNVar==1) { //gaussienne en volume
682 int degre=-1; if(func.length()>1) sscanf(func.c_str()+1,"%d",&degre);
683 cout<<"Fit de Gaussienne_en_volume+polynome 1D de degre "<<degre<<endl;
684 GaussN1DPol* myf;
685 if(degre>=0) myf = new GaussN1DPol((unsigned int)degre,((mOpt.polcx)?true:false));
686 else { bool bfg = (mOpt.polcx)?true:false; myf = new GaussN1DPol(bfg); }
687 mFunction = myf; mNPar = mFunction->NPar(); mFName = func;
688
689} else if(func[0]=='p' && mNVar==2) { //polynome 2D
690 int degre=0; if(func.length()>1) sscanf(func.c_str()+1,"%d",&degre);
691 cout<<"Fit polynome 2D de degre "<<degre<<endl;
692 Polyn2D* myf = new Polyn2D(degre,mOpt.xc,mOpt.yc);
693 mFunction = myf; mNPar = mFunction->NPar(); mFName = func;
694
695} else if(func[0]=='G' && mNVar==2) { //gaussienne+fond en volume
696 int integ=0; if(func.length()>1) if(func[1]=='i') integ=1;
697 cout<<"Fit de Gaussienne+Fond 2D integ="<<integ<<endl;
698 if(integ) {GauRhInt2D* myf = new GauRhInt2D; mFunction = myf;}
699 else {GauRho2D* myf = new GauRho2D; mFunction = myf;}
700 mNPar = mFunction->NPar(); mFName = func;
701
702} else if(func[0]=='d' && mNVar==2) { //DL gaussienne+fond en volume
703 int integ=0; if(func.length()>1) if(func[1]=='i') integ=1;
704 cout<<"Fit de DL de Gaussienne+Fond 2D integ="<<integ<<endl;
705 if(integ) {GdlRhInt2D* myf = new GdlRhInt2D; mFunction = myf;}
706 else {GdlRho2D* myf = new GdlRho2D; mFunction = myf;}
707 mNPar = mFunction->NPar(); mFName = func;
708
709} else if(func[0]=='D' && mNVar==2) { //DL gaussienne+fond avec coeff variable p6 en volume
710 int integ=0; if(func.length()>1) if(func[1]=='i') integ=1;
711 cout<<"Fit de DL de Gaussienne+Fond avec coeff variable (p6) 2D integ="<<integ<<endl;
712 if(integ) {Gdl1RhInt2D* myf = new Gdl1RhInt2D; mFunction = myf;}
713 else {Gdl1Rho2D* myf = new Gdl1Rho2D; mFunction = myf;}
714 mNPar = mFunction->NPar(); mFName = func;
715
716} else if(func[0]=='M' && mNVar==2) { //Moffat+fond (volume)
717 int integ=0; if(func.length()>1) if(func[1]=='i') integ=1;
718 cout<<"Fit de Moffat+Fond (expos=p6) 2D integ="<<integ<<endl;
719 if(integ) {MofRhInt2D* myf = new MofRhInt2D; mFunction = myf;}
720 else {MofRho2D* myf = new MofRho2D; mFunction = myf;}
721 mNPar = mFunction->NPar(); mFName = func;
722
723} else {
724 cout<<"Fonction "<<func<<" inconnue pour la dim "<<mNVar<<endl;
725 return;
726}
727
728return;
729}
730
731/* --Methode-- */
732void PIAFitter::ReSetParam(void)
733// Pour (re)dimensionner les tableaux des parametres
734// ATTENTION: cette methode a besoin que la fonction soit connue
735{
736if(mNPar==0) return;
737mPar.Realloc(mNPar); mPar=0.;
738mStep.Realloc(mNPar); mStep=1.;
739mMin.Realloc(mNPar); mMin=1.;
740mMax.Realloc(mNPar); mMax=-1.;
741mFix.Realloc(mNPar); mFix=0.;
742return;
743}
744
745/* --Methode-- */
746void PIAFitter::AutoIniFit(void)
747// Initialisation automatique des parametres du fit
748{
749if(mFunc) { // Fonction utilisateur
750 cout<<"PIAFitter::AutoIniFit : Fonction utilisateur, pas d'init auto"<<endl;
751} else if(mFName[0]=='p' && mNVar==1) { //poly 1D
752 cout<<"PIAFitter::AutoIniFit : Auto Init type polynome 1D"<<endl;
753 IniFitP1ou2D();
754
755} else if(mFName[0]=='g' && mNVar==1) { //gauss en haut 1D
756 cout<<"PIAFitter::AutoIniFit : Auto Init type gauss_haut+pol 1D"<<endl;
757 IniFitGhP1D();
758
759} else if(mFName[0]=='G' && mNVar==1) { //gauss en vol 1D
760 cout<<"PIAFitter::AutoIniFit : Auto Init type gauss_vol+pol 1D"<<endl;
761 IniFitGvP1D();
762
763} else if(mFName[0]=='p' && mNVar==2) { //poly 2D
764 cout<<"PIAFitter::AutoIniFit : Auto Init type polynome 2D"<<endl;
765 IniFitP1ou2D();
766
767} else if((mFName[0]=='G'||mFName[0]=='d') && mNVar==2) { //gauss+fond en vol
768 cout<<"PIAFitter::AutoIniFit : Auto Init type gauss_vol+fond 2D"<<endl;
769 IniFitGv2D();
770
771} else if(mFName[0]=='D' && mNVar==2) { //DLgauss+fond en vol 2D
772 cout<<"PIAFitter::AutoIniFit : Auto Init type DLgauss_vol+fond 2D"<<endl;
773 IniFitGv2D();
774 Vector dum(mNPar);
775 dum = mPar; mPar(6)=0.5; mPar(7)=dum(6);
776 dum = mStep; mStep(6)=0.05; mStep(7)=dum(6);
777 dum = mMin; mMin(6)=0.; mMin(7)=dum(6);
778 dum = mMax; mMax(6)=10.; mMax(7)=dum(6);
779 dum = mFix; mFix(6)=1.1; mFix(7)=dum(6);
780
781} else if(mFName[0]=='M' && mNVar==2) { //Moffat+fond en vol 2D
782 cout<<"PIAFitter::AutoIniFit : Auto Init type moffat_vol+fond 2D"<<endl;
783 IniFitGv2D();
784 Vector dum(mNPar);
785 dum = mPar; mPar(6)=2.5; mPar(7)=dum(6);
786 dum = mStep; mStep(6)=0.05; mStep(7)=dum(6);
787 dum = mMin; mMin(6)=1.2; mMin(7)=dum(6);
788 dum = mMax; mMax(6)=10.; mMax(7)=dum(6);
789 dum = mFix; mFix(6)=1.1; mFix(7)=dum(6);
790
791} else {
792 cout<<"PIAFitter::AutoIniFit : Fonction "<<mFName
793 <<", \n pas d'init auto en dim "<<mNVar<<endl;
794 return;
795}
796
797return;
798}
799
800/* --Methode-- */
801void PIAFitter::InitParFromLastFit(void)
802// Initialisation du fit a partir des resultats du fit precedent
803// (Les arguments de la ligne de commande sont prioritaires)
804// ATTENTION: cette methode a besoin que la fonction soit connue
805{
806if(mNPar==0) return;
807int n = mParSave.NElts();
808if(n==0) return;
809
810for(int i=0;i<mNPar;i++) {
811 if(i>=n) break;
812 mPar(i) = mParSave(i);
813 mStep(i) = mStepSave(i);
814 mMin(i) = mMinSave(i);
815 mMax(i) = mMaxSave(i);
816 mFix(i) = mFixSave(i);
817}
818
819return;
820}
821
822/* --Methode-- */
823void PIAFitter::DecodeParam(string par,string step,string min,string max,string fix)
824// Decodage des parametres
825// ATTENTION: cette methode a besoin que la fonction soit connue
826// et que les options soient decodees
827{
828if(mNPar==0) return;
829ReSetParam();
830if(mOpt.autoinifit) AutoIniFit();
831if(mOpt.fromlastfit) InitParFromLastFit();
832Vector* v=NULL; string* s=NULL;
833for(int j=0;j<5;j++) {
834 if(j==0) {v=&mPar; s=&par;} else if(j==1) {v=&mStep; s=&step;}
835 else if(j==2) {v=&mMin; s=&min;} else if(j==3) {v=&mMax; s=&max;}
836 else if(j==4) {v=&mFix; s=&fix;}
837 if(s->length()>0) *s += ",";
838 for(int i=0;i<mNPar;i++) {
839 if(s->length()<=0) break;
840 if((*s)[0]!='!') sscanf(s->c_str(),"%lf",&(*v)(i));
841 size_t p = s->find_first_of(',') + 1;
842 if(p>=s->length()) *s = ""; else *s = s->substr(p);
843 }
844}
845return;
846}
847
848/* --Methode-- */
849int PIAFitter::DoFit(void)
850// Fit avec generalfit
851{
852if(mNPar==0) return -1000;
853if((mFunction==NULL && mFunc==NULL) || mGData==NULL) {
854 cout<<"PIAFitter::DoFit error: mFunction,mFunc="<<mFunction<<","<<mFunc
855 <<" mGData="<<mGData<<endl;
856 return -1001;
857}
858// classe GeneraFit
859if(mFit != NULL) {delete mFit; mFit= NULL;}
860if(mFunction) mFit = new GeneralFit(mFunction);
861 else if(mFunc) mFit = new GeneralFit(mFunc);
862if(!mFit) return(-1002);
863
864// Options et Set de GeneralFit
865mFit->SetDebug(mOpt.lpg);
866mFit->SetData(mGData);
867mFit->SetStopChi2(mOpt.stc2);
868mFit->SetMaxStep(mOpt.nstep);
869{for(int i=0;i<mNPar;i++) {
870 char str[10];
871 sprintf(str,"P%d",i);
872 mFit->SetParam(i,str,mPar(i),mStep(i),mMin(i),mMax(i));
873 if((int)(mFix(i)+0.001)>=1.) mFit->SetFix(i);
874}}
875if(mOpt.lp>1) mFit->PrintFit();
876
877// Fit
878#ifdef SANS_EVOLPLANCK
879mParSave = mPar; mStepSave = mStep; mFixSave = mFix;
880mMinSave = mMin; mMaxSave = mMax;
881#else
882mParSave.Clone(mPar); mStepSave.Clone(mStep); mFixSave.Clone(mFix);
883mMinSave.Clone(mMin); mMaxSave.Clone(mMax);
884#endif
885mOptSave = mOpt;
886double c2r = -1.;
887int rcfit = mFit->Fit();
888if(mOpt.lp>0) mFit->PrintFit();
889if(rcfit>0) {
890 c2r = mFit->GetChi2Red();
891 cout<<"C2r_Reduit = "<<c2r<<" nstep="<<mFit->GetNStep()<<" rc="<<rcfit<<endl;
892 for(int i=0;i<mNPar;i++) mParSave(i)=mFit->GetParm(i);
893} else {
894 cout<<"echec Fit, rc = "<<rcfit<<" nstep="<<mFit->GetNStep()<<endl;
895 mFit->PrintFitErr(rcfit);
896}
897
898return rcfit;
899}
900
901/* --Methode-- */
902void PIAFitter::FitFunRes(void)
903// Mise a disposition des resultats (fonction fitee et residus)
904{
905if(mFit && (mOpt.okres||mOpt.okfun)) {
906 NamedObjMgr omg;
907 string nomres = mNObj + "_res";
908 string nomfun = mNObj + "_fun";
909//####################
910#ifdef SANS_EVOLPLANCK
911//####################
912 if(mV) {
913 if(mOpt.okres) {Vector* ob = mV->FitResidus(*mFit); if(ob) omg.AddObj(ob,nomres);}
914 if(mOpt.okfun) {Vector* ob = mV->FitFunction(*mFit); if(ob) omg.AddObj(ob,nomfun);}
915 } else if(mH) {
916 if(mOpt.okres) {Histo* ob = mH->FitResidus(*mFit); if(ob) omg.AddObj(ob,nomres);}
917 if(mOpt.okfun) {Histo* ob = mH->FitFunction(*mFit); if(ob) omg.AddObj(ob,nomfun);}
918 } else if(mM) {
919 if(mOpt.okres) {Matrix* ob = mM->FitResidus(*mFit); if(ob) omg.AddObj(ob,nomres);}
920 if(mOpt.okfun) {Matrix* ob = mM->FitFunction(*mFit); if(ob) omg.AddObj(ob,nomfun);}
921 } else if(mH2) {
922 if(mOpt.okres)
923 {Histo2D* ob = mH2->FitResidus(*mFit); if(ob) omg.AddObj(ob,nomres);}
924 if(mOpt.okfun)
925 {Histo2D* ob = mH2->FitFunction(*mFit); if(ob) omg.AddObj(ob,nomfun);}
926 } else if(mIm) {
927 if(mOpt.okres) {
928 RzImage* ob = mIm->FitResidus(*mFit);
929 if(ob) {ImageR4* rob = new ImageR4(*ob); omg.AddObj(rob,nomres); delete ob;}
930 }
931 if(mOpt.okfun) {
932 RzImage* ob = mIm->FitFunction(*mFit);
933 if(ob) {ImageR4* rob = new ImageR4(*ob); omg.AddObj(rob,nomfun); delete ob;}
934 }
935 } else if(mG) {
936 if(mOpt.okres)
937 {GeneralFitData* ob = mG->FitResidus(*mFit); if(ob) omg.AddObj(ob,nomres);}
938 if(mOpt.okfun)
939 {GeneralFitData* ob = mG->FitFunction(*mFit); if(ob) omg.AddObj(ob,nomfun);}
940 }
941//####################
942#else
943//####################
944 if(mV) {
945 if(mOpt.okres) {
946 Vector* ob = new Vector(ObjectFitter::FitResidus(*mV, *mFit),true);
947 if(ob) omg.AddObj(ob,nomres);
948 }
949 if(mOpt.okfun) {
950 Vector* ob = new Vector(ObjectFitter::FitFunction(*mV, *mFit),true);
951 if(ob) omg.AddObj(ob,nomfun);
952 }
953 } else if(mH) {
954 if(mOpt.okres) {
955 Histo* ob = new Histo(ObjectFitter::FitResidus(*mH, *mFit));
956 if(ob) omg.AddObj(ob,nomres);
957 }
958 if(mOpt.okfun) {
959 Histo* ob = new Histo(ObjectFitter::FitFunction(*mH, *mFit));
960 if(ob) omg.AddObj(ob,nomfun);
961 }
962 } else if(mM) {
963 if(mOpt.okres) {
964 Matrix* ob = new Matrix(ObjectFitter::FitResidus(*mM, *mFit), true);
965 if(ob) omg.AddObj(ob,nomres);
966 }
967 if(mOpt.okfun) {
968 Matrix* ob = new Matrix(ObjectFitter::FitFunction(*mM, *mFit), true);
969 if(ob) omg.AddObj(ob,nomfun);
970 }
971 } else if(mH2) {
972 if(mOpt.okres) {
973 Histo2D* ob = new Histo2D(ObjectFitter::FitResidus(*mH2, *mFit));
974 if(ob) omg.AddObj(ob,nomres);
975 }
976 if(mOpt.okfun) {
977 Histo2D* ob = new Histo2D(ObjectFitter::FitFunction(*mH2, *mFit));
978 if(ob) omg.AddObj(ob,nomfun);
979 }
980//CMV_A_FAIRE } else if(mIm) {
981//CMV_A_FAIRE if(mOpt.okres) {
982//CMV_A_FAIRE RzImage* ob = mIm->FitResidus(*mFit);
983//CMV_A_FAIRE if(ob) {ImageR4* rob = new ImageR4(*ob); omg.AddObj(rob,nomres); delete ob;}
984//CMV _A_FAIRE }
985//CMV_A_FAIRE if(mOpt.okfun) {
986//CMV_A_FAIRE RzImage* ob = mIm->FitFunction(*mFit);
987//CMV_A_FAIRE if(ob) {ImageR4* rob = new ImageR4(*ob); omg.AddObj(rob,nomfun); delete ob;}
988//CMV_A_FAIRE }
989 } else if(mG) {
990 if(mOpt.okres) {
991 //GeneralFitData* ob = new GeneralFitData(mG->FitResidus(*mFit));
992 GeneralFitData* ob = new GeneralFitData(ObjectFitter::FitResidus(*mG, *mFit));
993 if(ob) omg.AddObj(ob,nomres);
994 }
995 if(mOpt.okfun) {
996 //GeneralFitData* ob = new GeneralFitData(mG->FitFunction(*mFit));
997 GeneralFitData* ob = new GeneralFitData(ObjectFitter::FitFunction(*mG, *mFit));
998 if(ob) omg.AddObj(ob,nomfun);
999 }
1000 }
1001//####################
1002#endif
1003//####################
1004}
1005return;
1006}
1007
1008/* --Methode-- */
1009void PIAFitter::LinFit(void)
1010// Fit lineaire de polynomes
1011{
1012if(mFName.length()<=0)
1013 {cout<<"PIAFitter::LinFit Donnez un nom de fonction a fitter."<<endl;
1014 return;}
1015if(!mGData)
1016 {cout<<"PIAFitter::LinFit pas de Data."<<endl; return;}
1017if(mFName[0]!='p')
1018 {cout<<"PIAFitter::LinFit fonction non prevue "<<mFName<<endl;
1019 return;}
1020int degre = 0;
1021if(mFName.length()>1) sscanf(mFName.c_str()+1,"%d",&degre);
1022
1023if(mNVar==1) { // Fit lineaire de polynome 1D
1024 cout<<"Fit (lineaire) 1D polynome de degre "<<degre<<endl;
1025 Poly p1(0);
1026 double c2rl = mGData->PolFit(0,p1,degre);
1027 cout<<"C2r_lineaire = "<<c2rl<<endl;
1028 if(mOpt.lp>0) cout<<p1<<endl;
1029} else if(mNVar==2) { // Fit lineaire de polynome 2D
1030 cout<<"Fit (lineaire) polynome 2D de degre "<<degre<<endl;
1031 Poly2 p2(0);
1032 double c2rl = mGData->PolFit(0,1,p2,degre);
1033 cout<<"C2r_lineaire = "<<c2rl<<endl;
1034 if(mOpt.lp>0) cout<<p2<<endl;
1035}
1036
1037return;
1038}
1039
1040/* --Methode-- */
1041void PIAFitter::LinkFitFunc(string const& fname, string const& funcname
1042 ,int nvar,int npar)
1043// Compilation et link dynamique de la fonction a fitter
1044{
1045if(nvar<1 || npar<1) return;
1046if(mDlUFunc != NULL) {delete mDlUFunc; mDlUFunc=NULL;}
1047mFitFunc = NULL; mFitFuncDer = NULL;
1048mUFNVar= mUFNPar = 0; mNameFitFunc = "";
1049
1050// On compile le fichier C, on fabrique un .so et on l'ouvre
1051mDlUFunc = PDynLinkMgr::BuildFromCFile(fname);
1052if(mDlUFunc == NULL)
1053 {cerr<<"PIAFitter::LinkFitFunc() Erreur building .so "<<endl; return;}
1054
1055// On recupere la fonction de fit
1056mFitFunc = (DlUserFitFunc) mDlUFunc->GetFunction(funcname);
1057if(mFitFunc == NULL) // Probleme, on n'a pas trouve etc ...
1058 {cerr<<"PIAFitter::LinkFitFunc() Erreur linking function"<<funcname<<endl;
1059 delete mDlUFunc; mDlUFunc = NULL; return;}
1060
1061// On recupere la fonction des derivees
1062string fnameder = funcname+"_der";
1063mFitFuncDer = (DlUserFitFuncDer) mDlUFunc->GetFunction(fnameder);
1064if(mFitFuncDer == NULL)
1065 {cout<<"PIAFitter::LinkFitFunc() No derive for"<<fnameder<<endl;}
1066
1067// Variables et pointeurs definissant le link a la fonction utilisateur
1068mNameFitFunc = funcname;
1069mUFNVar = nvar;
1070mUFNPar = npar;
1071cout<<"PIAFitter::LinkFitFunc() UserFitFunc="<<mNameFitFunc
1072 <<" NVar="<<mUFNVar<<" NPar="<<mUFNPar<<endl;
1073
1074return;
1075}
1076
1077/* --Methode-- */
1078void PIAFitter::PrepareFitFuncCFile(string const& fname, string const& funcname
1079 , int nvar, int npar)
1080// Pour ecrire un squelette des fichier C avec pour une fonction a fitter
1081{
1082if(fname.length()<=0 || funcname.length()<=0 || nvar<=0 || npar <=0) {
1083 cerr<<"PIAFitter::PrepareFitFuncCFile: error "
1084 <<" nvar="<<nvar<<" npar="<<npar<<endl
1085 <<" file_name="<<fname<<" func_name="<<funcname<<endl
1086 <<" ---- No File Created ! ----"<<endl;
1087 return;
1088}
1089
1090FILE* fip = fopen(fname.c_str(),"w");
1091if(fip==NULL)
1092 {cerr<<"PIAFitter::PrepareFitFuncCFile: error opening file for writing\n"
1093 <<fname<<endl; return;}
1094
1095fprintf(fip,"#include <stdio.h>\n#include <stdlib.h>\n#include <math.h>\n\n");
1096fprintf(fip,"/* - many functions can be written in this file: */\n");
1097fprintf(fip,"/* here is an exemple for creation of function %s */\n\n"
1098 ,funcname.c_str());
1099fprintf(fip,"double %s(double const* x,double const* p)\n",funcname.c_str());
1100fprintf(fip,"/* Function : F(x[0-%d];p[0-%d]) */\n",nvar-1,npar-1);
1101fprintf(fip,"/* variables x1=x[0],x2=x[1],...,x%d=x[%d] */\n",nvar,nvar-1);
1102fprintf(fip,"/* parameters p1=p[0],p2=p[1],...,p%d=p[%d] */\n",nvar,nvar-1);
1103fprintf(fip,"{\n val = F(x[];p[]);\n return(val);\n}\n\n");
1104string fder = funcname + "_der";
1105fprintf(fip,"/* That function is optional */\n");
1106fprintf(fip,"/*\n");
1107fprintf(fip,"double %s(double const* x,double const* p,double* dp)\n",fder.c_str());
1108fprintf(fip,"{\n");
1109for(int i=0;i<npar;i++) fprintf(fip," dp[%d] = dF(x[];p[])/dp[%d]\n",i,i);
1110fprintf(fip," val = F(x[];p[]);\n return(val);\n}\n\n");
1111fprintf(fip,"*/\n");
1112
1113fclose(fip);
1114}
1115
1116/* --Methode-- */
1117int PIAFitter::Execute(string& kw, vector<string>& tokens)
1118// Execution des commandes de fit : "fit" et "fitw"
1119{
1120////// Les commandes pour creer les fonctions de fit utilisateur
1121if(kw == "crfitfil") {
1122 if (tokens.size() < 4)
1123 {cout<<"Usage:crfitfil filename funcname nvar npar"<<endl;return(-1);}
1124 int nvar = atoi(tokens[2].c_str()), npar = atoi(tokens[3].c_str());
1125 PrepareFitFuncCFile(tokens[0],tokens[1],nvar,npar);
1126 return(0);
1127} else if (kw == "crfitfun") {
1128 if (tokens.size() < 4)
1129 {cout<<"Usage:crfitfun filename funcname nvar npar"<<endl;return(-1);}
1130 int nvar = atoi(tokens[2].c_str()), npar = atoi(tokens[3].c_str());
1131 LinkFitFunc(tokens[0],tokens[1],nvar,npar);
1132 return(0);
1133}
1134
1135////// Les commandes pour fitter
1136if(tokens.size() < 2) {
1137 cout
1138 <<"Usage:fit nomobj func [Options]\n"
1139 <<" ou fitw nomobj func [Options]\n"
1140 <<" avec Options: [p:p1,...,pn s:s1,...,sn m:m1,...,mn \n"
1141 <<" M:M1,...,Mn f:f1,...,fn o:.,.,. o:.,.,.]\n"
1142 <<" ou fitlin nomobj func [o:.,.,. o:.,.,.]\n";
1143 return(-1);
1144}
1145
1146// decodage des arguments de la commande
1147string mSp,mSs,mSm,mSM,mSf,mSo;
1148mSp=""; mSs=""; mSm=""; mSM=""; mSf=""; mSo="";
1149if(tokens.size()>2)
1150 for(int ip=2;ip<(int)tokens.size();ip++) {
1151 if(tokens[ip].length()<=2) continue;
1152 const char *c = tokens[ip].c_str();
1153 if(c[1]!=':') continue;
1154 if(c[0]=='p') mSp=c+2;
1155 else if(c[0]=='s') mSs=c+2;
1156 else if(c[0]=='m') mSm=c+2;
1157 else if(c[0]=='M') mSM=c+2;
1158 else if(c[0]=='f') mSf=c+2;
1159 else if(c[0]=='o') {mSo += ","; mSo += c+2;}
1160 }
1161
1162// Execution des commandes
1163DecodeOptions(mSo);
1164DecodeObject(tokens[0]);
1165CheckOptions();
1166if(mOpt.lp>0) PrintOptions();
1167FillGData();
1168DecodeFunction(tokens[1]);
1169DecodeParam(mSp,mSs,mSm,mSM,mSf);
1170if (kw == "fit") {
1171 int rc = DoFit();
1172 if(rc>=0) FitFunRes();
1173} else if (kw == "fitlin") {
1174 LinFit();
1175} else if (kw == "fitw") {
1176 if(FWindFit!=NULL) {delete FWindFit; FWindFit=NULL;}
1177 FWindFit = new PIAFitterWind(mApp,this);
1178 FWindFit->Show();
1179}
1180
1181return(0);
1182}
1183
1184/* --Methode-- */
1185void PIAFitter::IniFitP1ou2D(void)
1186{
1187if(mNPar==0) return;
1188mPar=0.; mStep=1.; mMin=1.; mMax=-1.; mFix=0.;
1189if(!mGData) return;
1190double mean,sigma;
1191int rc = mGData->GetMeanSigma(0,mean,sigma);
1192if(rc<=0) return;
1193mPar(0) = mean;
1194return;
1195}
1196
1197void PIAFitter::IniFitGhP1D(void)
1198{
1199if(mNPar==0) return;
1200mPar=0.; mStep=1.; mMin=1.; mMax=-1.; mFix=0.;
1201if(mNVar!=1 || mNPar<3) return;
1202double h,v,x0,y0,sx,sy,f;
1203int rc = IniFitGaus(*mGData,h,v,x0,y0,sx,sy,f);
1204if(rc!=0) return;
1205mPar(0)=h; mStep(0)=h/1000.;
1206mPar(1)=x0; mStep(1)=sx/10.;
1207mPar(2)=sx; mStep(2)=sx/10.; mMin(2)=0.; mMax(2)=20.*sx;
1208if(mNPar>3) {mPar(3)=f; mStep(3)=f/1000.;} else mPar(0)=h+f;
1209}
1210
1211void PIAFitter::IniFitGvP1D(void)
1212{
1213if(mNPar==0) return;
1214mPar=0.; mStep=1.; mMin=1.; mMax=-1.; mFix=0.;
1215if(mNVar!=1 || mNPar<3) return;
1216double h,v,x0,y0,sx,sy,f;
1217int rc = IniFitGaus(*mGData,h,v,x0,y0,sx,sy,f);
1218if(rc!=0) return;
1219mPar(0)=v; mStep(0)=v/1000.;
1220mPar(1)=x0; mStep(1)=sx/10.;
1221mPar(2)=sx; mStep(2)=sx/10.; mMin(2)=0.; mMax(2)=20.*sx;
1222if(mNPar>3) {mPar(3)=f; mStep(3)=f/1000.;} else mPar(0)=v+mNData*f;
1223}
1224
1225void PIAFitter::IniFitGv2D(void)
1226{
1227if(mNPar==0) return;
1228mPar=0.; mStep=1.; mMin=1.; mMax=-1.; mFix=0.;
1229if(mNVar!=2 || mNPar<6) return;
1230double h,v,x0,y0,sx,sy,f;
1231int rc = IniFitGaus(*mGData,h,v,x0,y0,sx,sy,f);
1232if(rc!=0) return;
1233mPar(0)=v; mStep(0)=v/1000.;
1234mPar(1)=x0; mStep(1)=sx/10.;
1235mPar(2)=y0; mStep(2)=sy/10.;
1236mPar(3)=sx; mStep(3)=sx/10.; mMin(3)=0.; mMax(3)=20.*sx;
1237mPar(4)=sy; mStep(4)=sy/10.; mMin(4)=0.; mMax(4)=20.*sy;
1238mPar(5)=0.; mStep(5)=0.005; mMin(5)=-1.; mMax(5)=1.;
1239if(mNPar>6) {mPar(6)=f; mStep(6)=f/1000.;} else mPar(0)=v+mNData*f;
1240}
1241
1242int PIAFitter::IniFitGaus(GeneralFitData& g,double& h,double& v
1243 ,double& x0,double& y0,double& sx,double& sy,double& f)
1244// Pour initialiser une gaussienne 1D ou 2D
1245// return code =0 si OK
1246{
1247h=v=x0=y0=sx=sy=f=0.;
1248if(!&g) return(-1);
1249int nvar = g.NVar();
1250int ndata = g.NData();
1251if(nvar<1 || 2<nvar || ndata<=0) return(-2);
1252
1253// X et Y ordonnees croissant
1254double *X=NULL, *Y=NULL;
1255X = new double[ndata];
1256if(nvar==2) Y = new double[ndata];
1257{for(int i=0;i<ndata;i++) {X[i] = g.X(i); if(Y) Y[i] = g.Y(i);}}
1258qsort(X,(size_t) ndata,sizeof(double),qSort_Dble);
1259if(Y) qsort(Y,(size_t) ndata,sizeof(double),qSort_Dble);
1260
1261// determination des zones externes=[0,1/3] et [2/3,1]
1262// et des zones internes=[1/3,2/3]
1263int k1=ndata/3,k2=2*ndata/3;
1264double xmin,xmax, ymin=-1.,ymax=1.;
1265xmin = X[k1]; xmax = X[k2];
1266if(Y) {ymin = Y[k1]; ymax = Y[k2];}
1267
1268// recherche des parametres
1269double nb=0, nc=0;
1270{for(int i=0;i<ndata;i++) {
1271 double val,x,y=0.;
1272 x = g.X(i); if(Y) y = g.Y(i); val = g.Val(i);
1273 if(xmin<x && x<xmax && ymin<y && y<ymax) { // c'est le centre
1274 if(nc==0 || val>h) {h=val; x0=x; y0=y;}
1275 v += val; nc++;
1276 } else {f += val; nb++;} // c'est le bord
1277
1278}}
1279if(nb==0 || nc==0) {delete [] X; if(Y) delete [] Y; return(-3);}
1280
1281// Calcul des parametres
1282f /= (double) nb; h -= f; v -= f*nc;
1283sx = (xmax-xmin)/2.; if(Y) sy = (ymax-ymin)/2.;
1284
1285delete [] X; if(Y) delete [] Y;
1286return(0);
1287}
1288
1289
1290////////////////////////////////////////////////////////////////////
1291////---------- Classe de fenetre de fit interactive ------------////
1292////////////////////////////////////////////////////////////////////
1293
1294/* --Methode-- */
1295PIAFitterWind::PIAFitterWind(PIStdImgApp* par, PIAFitter* fiter)
1296: PIWindow((PIMsgHandler*)par, "PIAFitter", PIWK_normal, 240, 240, 150, 150)
1297, mDap(par), mFitter(fiter), ReFillGData(false)
1298, saveI1(0), saveI2(0), saveJ1(0), saveJ2(0), ErrValue(1.)
1299{
1300#ifdef SANS_EVOLPLANCK
1301COMPATIBLE_ASSERT(mFitter);
1302#else
1303ASSERT(mFitter);
1304#endif
1305
1306int npar = mFitter->mNPar;
1307
1308// Alloc de la taille
1309nlab = 13+npar; lab = new PILabel*[nlab]; {for(int i=0;i<nlab;i++) lab[i]=NULL;}
1310ntxt = 10+4*npar; txt = new PIText*[ntxt]; {for(int i=0;i<ntxt;i++) txt[i]=NULL;}
1311nbut = 6; but = new PIButton*[nbut]; {for(int i=0;i<nbut;i++) but[i]=NULL;}
1312nckb = 2+npar; ckb = new PICheckBox*[nckb]; {for(int i=0;i<nckb;i++) ckb[i]=NULL;}
1313npom = 3; pom = new PIOptMenu*[npom]; {for(int i=0;i<npom;i++) pom[i]=NULL;}
1314
1315// On definit la taille a partir de la taille par defaut des composantes
1316// bsx,bsy = environ 6 lettres
1317int bsx,bsy;
1318par->PrefCompSz(bsx, bsy);
1319int spx = (bsx>=10) ? bsx/10 : 1; // intervalle entre lettres X
1320int spy = (bsy>=6) ? bsy/6 : 1; // intervalle entre lettres Y
1321
1322int wszx = (5*bsx+5*spx)+spx;
1323int wszy = 8*(bsy+spy)+npar*(bsy+spy)+2*spy;
1324SetSize(wszx, wszy);
1325int cpx,cpy;
1326
1327// new ligne
1328cpx = spx; cpy = spy;
1329string dum = "Object: "+mFitter->mNObj+" , Fun: ";
1330if(mFitter->mFunc) dum+=mFitter->mNameFitFunc; else dum+=mFitter->mFName;
1331lab[0] = new PILabel(this,dum.c_str(),4*bsx,bsy,cpx,cpy);
1332lab[0]->SetBinding(PIBK_elastic,PIBK_elastic, PIBK_elastic,PIBK_elastic);
1333
1334// new ligne
1335cpx = spx; cpy += bsy+spy;
1336but[0] = new PIButton(this,"Fr.Last",111,bsx,bsy,cpx,cpy);
1337but[0]->SetBinding(PIBK_elastic,PIBK_elastic, PIBK_elastic,PIBK_elastic);
1338cpx += bsx+spx;
1339but[1] = new PIButton(this,"Default",222,bsx,bsy,cpx,cpy);
1340but[1]->SetBinding(PIBK_elastic,PIBK_elastic, PIBK_elastic,PIBK_elastic);
1341cpx += bsx+spx;
1342ckb[0] = new PICheckBox(this,"Gen Fun",1001,bsx,bsy,cpx,cpy);
1343ckb[0]->SetBinding(PIBK_elastic,PIBK_elastic, PIBK_elastic,PIBK_elastic);
1344cpx += bsx+2*spx;
1345ckb[1] = new PICheckBox(this,"Res",1002,bsx,bsy,cpx,cpy);
1346ckb[1]->SetBinding(PIBK_elastic,PIBK_elastic, PIBK_elastic,PIBK_elastic);
1347
1348// new ligne
1349cpx = spx; cpy += bsy+spy;
1350pom[0] = new PIOptMenu(this,"Err def",1.5*bsx,bsy,cpx,cpy);
1351 pom[0]->AppendItem("Err def",2101);
1352 pom[0]->AppendItem("Err cste",2102);
1353 pom[0]->AppendItem("Err sqrt",2103);
1354 pom[0]->SetValue(2101);
1355pom[0]->SetBinding(PIBK_elastic,PIBK_elastic, PIBK_elastic,PIBK_elastic);
1356cpx += int(1.5*bsx+spx);
1357txt[0] = new PIText(this,"",bsx,bsy,cpx,cpy);
1358txt[0]->SetBinding(PIBK_elastic,PIBK_elastic, PIBK_elastic,PIBK_elastic);
1359cpx += bsx+spx;
1360lab[1] = new PILabel(this,"Prt,dbg",bsx,bsy,cpx,cpy);
1361lab[1]->SetBinding(PIBK_elastic,PIBK_elastic, PIBK_elastic,PIBK_elastic);
1362cpx += bsx+spx;
1363txt[1] = new PIText(this,"",bsx,bsy,cpx,cpy);
1364txt[1]->SetBinding(PIBK_elastic,PIBK_elastic, PIBK_elastic,PIBK_elastic);
1365
1366// new ligne
1367cpx = spx; cpy += bsy+spy;
1368lab[2] = new PILabel(this,"Stop Xi2",1.25*bsx,bsy,cpx,cpy);
1369lab[2]->SetBinding(PIBK_elastic,PIBK_elastic, PIBK_elastic,PIBK_elastic);
1370cpx += int(1.25*bsx+spx);
1371txt[2] = new PIText(this,"",bsx,bsy,cpx,cpy);
1372txt[2]->SetBinding(PIBK_elastic,PIBK_elastic, PIBK_elastic,PIBK_elastic);
1373cpx += bsx+spx;
1374lab[3] = new PILabel(this,"Iter",bsx, bsy, cpx, cpy);
1375lab[3]->SetBinding(PIBK_elastic,PIBK_elastic, PIBK_elastic,PIBK_elastic);
1376cpx += bsx+spx;
1377txt[3] = new PIText(this,"",bsx,bsy,cpx,cpy);
1378txt[3]->SetBinding(PIBK_elastic,PIBK_elastic, PIBK_elastic,PIBK_elastic);
1379
1380// new ligne
1381cpx = spx; cpy += bsy+spy;
1382lab[4] = new PILabel(this,"Range X",bsx,bsy,cpx,cpy);
1383lab[4]->SetBinding(PIBK_elastic,PIBK_elastic, PIBK_elastic,PIBK_elastic);
1384cpx += bsx+spx;
1385txt[4] = new PIText(this,"",0.75*bsx,bsy,cpx,cpy);
1386txt[4]->SetBinding(PIBK_elastic,PIBK_elastic, PIBK_elastic,PIBK_elastic);
1387cpx += int(0.75*bsx+spx);
1388txt[5] = new PIText(this,"",0.75*bsx,bsy,cpx,cpy);
1389txt[5]->SetBinding(PIBK_elastic,PIBK_elastic, PIBK_elastic,PIBK_elastic);
1390cpx += int(0.75*bsx+spx);
1391lab[5] = new PILabel(this,"Y",bsx/2,bsy,cpx,cpy);
1392lab[5]->SetBinding(PIBK_elastic,PIBK_elastic, PIBK_elastic,PIBK_elastic);
1393cpx += int(bsx/2.+spx);
1394txt[6] = new PIText(this,"",0.75*bsx,bsy,cpx,cpy);
1395txt[6]->SetBinding(PIBK_elastic,PIBK_elastic, PIBK_elastic,PIBK_elastic);
1396cpx += int(0.75*bsx+spx);
1397txt[7] = new PIText(this,"",0.75*bsx,bsy,cpx,cpy);
1398txt[7]->SetBinding(PIBK_elastic,PIBK_elastic, PIBK_elastic,PIBK_elastic);
1399
1400// new ligne
1401cpx = spx; cpy += bsy+spy;
1402lab[6] = new PILabel(this,"Cent",bsx/2,bsy,cpx,cpy);
1403lab[6]->SetBinding(PIBK_elastic,PIBK_elastic, PIBK_elastic,PIBK_elastic);
1404cpx += int(bsx/2.+spx);
1405pom[1] = new PIOptMenu(this,"X.No",1.25*bsx,bsy,cpx,cpy);
1406 pom[1]->AppendItem("X.No",2001);
1407 pom[1]->AppendItem("X.Value",2002);
1408 pom[1]->AppendItem("X.Auto",2003);
1409 pom[1]->SetValue(2001);
1410pom[1]->SetBinding(PIBK_elastic,PIBK_elastic, PIBK_elastic,PIBK_elastic);
1411cpx += int(1.25*bsx+spx);
1412txt[8] = new PIText(this,"",bsx,bsy,cpx,cpy);
1413txt[8]->SetBinding(PIBK_elastic,PIBK_elastic, PIBK_elastic,PIBK_elastic);
1414cpx += bsx+spx;
1415pom[2] = new PIOptMenu(this,"Y.No",1.25*bsx,bsy,cpx,cpy);
1416 pom[2]->AppendItem("Y.No",2011);
1417 pom[2]->AppendItem("Y.Value",2012);
1418 pom[2]->AppendItem("Y.Auto",2013);
1419 pom[2]->SetValue(2011);
1420pom[2]->SetBinding(PIBK_elastic,PIBK_elastic, PIBK_elastic,PIBK_elastic);
1421cpx += int(1.25*bsx+spx);
1422txt[9] = new PIText(this,"",bsx,bsy,cpx,cpy);
1423txt[9]->SetBinding(PIBK_elastic,PIBK_elastic, PIBK_elastic,PIBK_elastic);
1424
1425// new ligne
1426cpx = spx; cpy += bsy+spy;
1427but[2] = new PIButton(this, "Dismiss",777,bsx,bsy,cpx,cpy);
1428but[2]->SetBinding(PIBK_elastic,PIBK_elastic, PIBK_elastic,PIBK_elastic);
1429cpx += bsx+spx;
1430but[3] = new PIButton(this, "Check",666,bsx,bsy,cpx,cpy);
1431but[3]->SetBinding(PIBK_elastic,PIBK_elastic, PIBK_elastic,PIBK_elastic);
1432cpx += bsx+spx;
1433but[4] = new PIButton(this, "Fit",333,bsx,bsy,cpx,cpy);
1434but[4]->SetBinding(PIBK_elastic,PIBK_elastic, PIBK_elastic,PIBK_elastic);
1435cpx += bsx+spx;
1436but[5] = new PIButton(this, "Ini Auto",444,bsx,bsy,cpx,cpy);
1437but[5]->SetBinding(PIBK_elastic,PIBK_elastic, PIBK_elastic,PIBK_elastic);
1438
1439// new ligne
1440cpx = spx; cpy += bsy+spy;
1441lab[7] = new PILabel(this,"Par",bsx/2,bsy,cpx,cpy);
1442lab[7]->SetBinding(PIBK_elastic,PIBK_elastic, PIBK_elastic,PIBK_elastic);
1443cpx += int(bsx/2.+spx);
1444lab[8] = new PILabel(this,"Fx",bsx/3,bsy,cpx,cpy);
1445lab[8]->SetBinding(PIBK_elastic,PIBK_elastic, PIBK_elastic,PIBK_elastic);
1446cpx += int(bsx/3.+spx);
1447lab[9] = new PILabel(this,"Init",bsx,bsy,cpx,cpy);
1448lab[9]->SetBinding(PIBK_elastic,PIBK_elastic, PIBK_elastic,PIBK_elastic);
1449cpx += bsx+spx;
1450lab[10] = new PILabel(this,"Step",bsx,bsy,cpx,cpy);
1451lab[10]->SetBinding(PIBK_elastic,PIBK_elastic, PIBK_elastic,PIBK_elastic);
1452cpx += bsx+spx;
1453lab[11] = new PILabel(this,"Min",bsx,bsy,cpx,cpy);
1454lab[11]->SetBinding(PIBK_elastic,PIBK_elastic, PIBK_elastic,PIBK_elastic);
1455cpx += bsx+spx;
1456lab[12] = new PILabel(this,"Max",bsx,bsy,cpx,cpy);
1457lab[12]->SetBinding(PIBK_elastic,PIBK_elastic, PIBK_elastic,PIBK_elastic);
1458
1459// new lines: Parametres (npar lignes)
1460if(npar>0) {
1461 for(int i=0;i<npar;i++) {
1462 cpx = spx; cpy += bsy+spy;
1463 char str[8]; sprintf(str,"P%d",i);
1464 lab[13+i] = new PILabel(this,str,bsx/2,bsy,cpx,cpy);
1465 lab[13+i]->SetBinding(PIBK_elastic,PIBK_elastic, PIBK_elastic,PIBK_elastic);
1466 cpx += int(bsx/2.+spx);
1467 // Attention pas de message entre 1500 et 2000 (permet 500 parametres!)
1468 ckb[2+i] = new PICheckBox(this,"",1500+i,bsx/3,bsy,cpx,cpy+spy);
1469 ckb[2+i]->SetBinding(PIBK_elastic,PIBK_elastic, PIBK_elastic,PIBK_elastic);
1470 cpx+=int(bsx/3.+spx);
1471 for(int j=0;j<4;j++) {
1472 txt[10+4*i+j] = new PIText(this,"",bsx,bsy,cpx,cpy);
1473 txt[10+4*i+j]->SetBinding(PIBK_elastic,PIBK_elastic, PIBK_elastic,PIBK_elastic);
1474 cpx += bsx+spx;
1475 }
1476 }
1477}
1478
1479return;
1480}
1481
1482/* --Methode-- */
1483PIAFitterWind::~PIAFitterWind()
1484{
1485int i;
1486for(i=0;i<nlab;i++) if(lab[i]) {delete lab[i]; lab[i]=NULL;}
1487for(i=0;i<ntxt;i++) if(txt[i]) {delete txt[i]; txt[i]=NULL;}
1488for(i=0;i<nbut;i++) if(but[i]) {delete but[i]; but[i]=NULL;}
1489for(i=0;i<nckb;i++) if(ckb[i]) {delete ckb[i]; ckb[i]=NULL;}
1490for(i=0;i<npom;i++) if(pom[i]) {delete pom[i]; pom[i]=NULL;}
1491if(lab) {delete lab; lab=NULL; nlab=0;}
1492if(txt) {delete txt; txt=NULL; ntxt=0;}
1493if(but) {delete but; but=NULL; nbut=0;}
1494if(ckb) {delete ckb; ckb=NULL; nckb=0;}
1495if(pom) {delete pom; pom=NULL; npom=0;}
1496}
1497
1498/* --Methode-- */
1499void PIAFitterWind::Show()
1500{
1501//mDap->SetBlocked();
1502SetState();
1503PIWindow::Show();
1504return;
1505}
1506
1507/* --Methode-- */
1508void PIAFitterWind::SetState(void)
1509// Ecriture et positionnement des ckb et txt
1510{
1511int npar = mFitter->mNPar;
1512
1513// Les check-boxes
1514ckb[0]->SetState(mFitter->mOpt.okfun);
1515ckb[1]->SetState(mFitter->mOpt.okres);
1516if(npar>0)
1517 for(int i=0;i<npar;i++) ckb[2+i]->SetState((mFitter->mFix(i)>=1.)?true:false);
1518
1519// Les champs textes
1520char str[128]; string dum;
1521sprintf(str,"%f",ErrValue); dum=str; txt[0]->SetText(dum);
1522sprintf(str,"%d,%d",mFitter->mOpt.lp,mFitter->mOpt.lpg); dum=str; txt[1]->SetText(dum);
1523sprintf(str,"%f",mFitter->mOpt.stc2); dum=str; txt[2]->SetText(dum);
1524sprintf(str,"%d",mFitter->mOpt.nstep); dum=str; txt[3]->SetText(dum);
1525sprintf(str,"%d",mFitter->mOpt.i1); dum=str; txt[4]->SetText(dum);
1526sprintf(str,"%d",mFitter->mOpt.i2); dum=str; txt[5]->SetText(dum);
1527sprintf(str,"%d",mFitter->mOpt.j1); dum=str; txt[6]->SetText(dum);
1528sprintf(str,"%d",mFitter->mOpt.j2); dum=str; txt[7]->SetText(dum);
1529sprintf(str,"%f",mFitter->mOpt.xc); dum=str; txt[8]->SetText(dum);
1530sprintf(str,"%f",mFitter->mOpt.yc); dum=str; txt[9]->SetText(dum);
1531if(npar>0) {
1532 for(int i=0;i<npar;i++) {
1533 sprintf(str,"%f",mFitter->mPar(i)); dum=str; txt[10+4*i+0]->SetText(dum);
1534 sprintf(str,"%f",mFitter->mStep(i)); dum=str; txt[10+4*i+1]->SetText(dum);
1535 sprintf(str,"%f",mFitter->mMin(i)); dum=str; txt[10+4*i+2]->SetText(dum);
1536 sprintf(str,"%f",mFitter->mMax(i)); dum=str; txt[10+4*i+3]->SetText(dum);
1537 }
1538}
1539
1540return;
1541}
1542
1543/* --Methode-- */
1544void PIAFitterWind::Process(PIMessage msg, PIMsgHandler* sender, void* data)
1545{
1546int lp = (mFitter->mOpt.lp>2)?1:0;
1547int npar = mFitter->mNPar;
1548
1549// Decodage des messages, init et dismiss
1550msg = UserMsg(msg);
1551if(msg ==777) {
1552 if(lp) cout<<"Dismiss"<<endl;
1553 //mDap->SetReady();
1554 Hide();
1555 return;
1556}
1557
1558// L'objet existe t-il encore?
1559NamedObjMgr omg;
1560if(omg.GetObj(mFitter->mNObj) == NULL) {
1561 cout<<"PIAFitterWind::Process Error , Pas d'objet de nom "
1562 <<mFitter->mNObj<<endl;
1563 mFitter->ResetDPointer(); return;
1564}
1565
1566// On recupere les champs textes
1567string dum; char str[128];
1568// Attention gestion du type d'erreur
1569dum=txt[0]->GetText(); strcpy(str,dum.c_str()); strip(str,'B',' ');
1570 sscanf(str,"%lf",&ErrValue); if(ErrValue<=0.) ErrValue=1.;
1571 if(mFitter->mOpt.err_e>0. ) mFitter->mOpt.err_e = ErrValue;
1572 if(mFitter->mOpt.err_E>0. ) mFitter->mOpt.err_E = ErrValue;
1573dum=txt[1]->GetText(); strcpy(str,dum.c_str()); strip(str,'B',' ');
1574 sscanf(str,"%d,%d",&(mFitter->mOpt.lp),&(mFitter->mOpt.lpg));
1575dum=txt[2]->GetText(); strcpy(str,dum.c_str()); strip(str,'B',' ');
1576 sscanf(str,"%lf",&(mFitter->mOpt.stc2));
1577dum=txt[3]->GetText(); strcpy(str,dum.c_str()); strip(str,'B',' ');
1578 sscanf(str,"%d",&(mFitter->mOpt.nstep));
1579// Attention si les valeurs de mOpt.i1/.i2/.j1/.j2 ont ete changees
1580dum=txt[4]->GetText(); strcpy(str,dum.c_str()); strip(str,'B',' ');
1581 sscanf(str,"%d",&(mFitter->mOpt.i1));
1582dum=txt[5]->GetText(); strcpy(str,dum.c_str()); strip(str,'B',' ');
1583 sscanf(str,"%d",&(mFitter->mOpt.i2));
1584dum=txt[6]->GetText(); strcpy(str,dum.c_str()); strip(str,'B',' ');
1585 sscanf(str,"%d",&(mFitter->mOpt.j1));
1586dum=txt[7]->GetText(); strcpy(str,dum.c_str()); strip(str,'B',' ');
1587 sscanf(str,"%d",&(mFitter->mOpt.j2));
1588 if(saveI1!=mFitter->mOpt.i1 || saveI2!=mFitter->mOpt.i2 ||
1589 saveJ1!=mFitter->mOpt.j1 || saveJ2!=mFitter->mOpt.j2 ) {
1590 if(lp)
1591 cout<<"Range changed: I("<<saveI1<<","<<saveI2
1592 <<") -> I("<<mFitter->mOpt.i1<<","<<mFitter->mOpt.i2
1593 <<") ou J("<<saveJ1<<","<<saveJ2
1594 <<") -> J("<<mFitter->mOpt.j1<<","<<mFitter->mOpt.j2
1595 <<")"<<endl;
1596 ReFillGData = true;
1597 saveI1=mFitter->mOpt.i1; saveI2=mFitter->mOpt.i2;
1598 saveJ1=mFitter->mOpt.j1; saveJ2=mFitter->mOpt.j2;
1599 }
1600dum=txt[8]->GetText(); strcpy(str,dum.c_str()); strip(str,'B',' ');
1601 sscanf(str,"%lf",&(mFitter->mOpt.xc));
1602dum=txt[9]->GetText(); strcpy(str,dum.c_str()); strip(str,'B',' ');
1603 sscanf(str,"%lf",&(mFitter->mOpt.yc));
1604
1605if(npar>0) {
1606 for(int i=0;i<npar;i++) {
1607 dum=txt[10+4*i+0]->GetText(); strcpy(str,dum.c_str()); strip(str,'B',' ');
1608 sscanf(str,"%lf",&(mFitter->mPar(i)));
1609 dum=txt[10+4*i+1]->GetText(); strcpy(str,dum.c_str()); strip(str,'B',' ');
1610 sscanf(str,"%lf",&(mFitter->mStep(i)));
1611 dum=txt[10+4*i+2]->GetText(); strcpy(str,dum.c_str()); strip(str,'B',' ');
1612 sscanf(str,"%lf",&(mFitter->mMin(i)));
1613 dum=txt[10+4*i+3]->GetText(); strcpy(str,dum.c_str()); strip(str,'B',' ');
1614 sscanf(str,"%lf",&(mFitter->mMax(i)));
1615 }
1616}
1617
1618// Decodage des messages, suite
1619if(msg ==666) {
1620 if(lp) cout<<"Check"<<endl;
1621 mFitter->CheckOptions();
1622 if(ReFillGData) mFitter->FillGData();
1623 ReFillGData = false;
1624}
1625else if(msg ==111) {
1626 if(lp) cout<<"Update from last"<<endl;
1627 mFitter->ResetOptions();
1628 mFitter->mOpt = mFitter->mOptSave;
1629 mFitter->ReSetParam();
1630 mFitter->InitParFromLastFit();
1631 ReFillGData = true;
1632}
1633else if(msg ==222) {
1634 if(lp) cout<<"Default options/par"<<endl;
1635 mFitter->ResetOptions();
1636 mFitter->ReSetParam();
1637 ReFillGData = true;
1638}
1639else if(msg ==333) {
1640 if(lp) cout<<"Do the fit"<<endl;
1641 mFitter->CheckOptions();
1642 if(ReFillGData) mFitter->FillGData();
1643 ReFillGData = false;
1644 int rc = mFitter->DoFit();
1645 if(rc>=0) mFitter->FitFunRes();
1646}
1647else if(msg ==444) {
1648 if(lp) cout<<"Automatic initialisation"<<endl;
1649 mFitter->AutoIniFit();
1650}
1651else if(msg==1001) {
1652 if(ckb[0]->GetState()) {
1653 if(lp) cout<<"Gen fitted function"<<endl;
1654 mFitter->mOpt.okfun = true;
1655 } else if(!ckb[0]->GetState()) {
1656 if(lp) cout<<"No Gen fitted function"<<endl;
1657 mFitter->mOpt.okfun = false;
1658 }
1659}
1660else if(msg==1002) {
1661 if(ckb[1]->GetState()) {
1662 if(lp) cout<<"Gen fitted residus"<<endl;
1663 mFitter->mOpt.okres = true;
1664 } else if(!ckb[1]->GetState()) {
1665 if(lp) cout<<"No Gen fitted residus"<<endl;
1666 mFitter->mOpt.okres = false;
1667 }
1668}
1669else if(2101<=msg && msg<=2103) {
1670 mFitter->mOpt.err_e = mFitter->mOpt.err_E = -1.;
1671 if(msg==2102) mFitter->mOpt.err_e = ErrValue;
1672 else if(msg==2103) mFitter->mOpt.err_E = ErrValue;
1673 if(lp) cout<<"Err_cste="<<mFitter->mOpt.err_e
1674 <<" Err_sqrt="<<mFitter->mOpt.err_E
1675 <<" ErrValue="<<ErrValue<<endl;
1676 ReFillGData = true;
1677}
1678else if(2001<=msg && msg<=2003) {
1679 mFitter->mOpt.polcx = msg-2001;
1680 if(lp) cout<<"Centrage X polcx="<<mFitter->mOpt.polcx
1681 <<" xc="<<mFitter->mOpt.xc<<endl;
1682 ReFillGData = true;
1683}
1684else if(2011<=msg && msg<=2013) {
1685 mFitter->mOpt.polcy = msg-2011;
1686 if(lp) cout<<"Centrage Y polcy="<<mFitter->mOpt.polcy
1687 <<" yc="<<mFitter->mOpt.yc<<endl;
1688 ReFillGData = true;
1689}
1690else if(msg>=1500 && msg<2000) {
1691 int ip = msg-1500;
1692 if(ckb[2+ip]->GetState()) {
1693 if(lp) cout<<"Fix Param "<<ip<<endl;
1694 mFitter->mFix(ip) = 1.001;
1695 } else if(!ckb[2+ip]->GetState()) {
1696 if(lp) cout<<"Not Fix Param "<<ip<<endl;
1697 mFitter->mFix(ip) = 0.;
1698 }
1699}
1700
1701mFitter->CheckOptions();
1702SetState();
1703if(mFitter->mOpt.lp>1) mFitter->PrintOptions();
1704
1705return;
1706}
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