source: Sophya/trunk/SophyaPI/PIext/pawexecut.cc@ 3558

Last change on this file since 3558 was 3551, checked in by ansari, 17 years ago

Petites ameliorations aide en ligne, Reza 13/12/2008

File size: 83.8 KB
Line 
1#include <stdio.h>
2#include <stdlib.h>
3#include <ctype.h>
4#include <iostream>
5#include <typeinfo>
6
7#include "sopnamsp.h"
8#include "strutil.h"
9#include "strutilxx.h"
10#include "histos.h"
11#include "histos2.h"
12#include "hisprof.h"
13#include "histerr.h"
14#include "hist2err.h"
15#include "ntuple.h"
16#include "datatable.h"
17
18#include "pawexecut.h"
19#include "nobjmgr.h"
20#include "servnobjm.h"
21#include "nomgadapter.h"
22#include "pistdimgapp.h"
23#include "pihisto.h"
24
25#ifdef SANS_EVOLPLANCK
26#include "cvector.h"
27#include "matrix.h"
28#else
29#include "tmatrix.h"
30#include "tvector.h"
31#endif
32
33/* Reza + cmv 13/10/99 */
34
35inline bool __vector_sort_up_r8(r_8 x1,r_8 x2) {return x1<x2;}
36inline bool __vector_sort_down_r8(r_8 x1,r_8 x2) {return x1>x2;}
37inline bool __vector_sort_up_r4(r_4 x1,r_4 x2) {return x1<x2;}
38inline bool __vector_sort_down_r4(r_4 x1,r_4 x2) {return x1>x2;}
39inline bool __vector_sort_up_i4(int_4 x1,int_4 x2) {return x1<x2;}
40inline bool __vector_sort_down_i4(int_4 x1,int_4 x2) {return x1>x2;}
41inline bool __vector_sort_up_u8(uint_8 x1,uint_8 x2) {return x1<x2;}
42inline bool __vector_sort_down_u8(uint_8 x1,uint_8 x2) {return x1>x2;}
43
44uint_4 PAWExecutor::autoc_counter_ = 0;
45
46/* methode */
47PAWExecutor::PAWExecutor(PIACmd *piac, PIStdImgApp* app)
48: mApp(app)
49{
50string kw, usage;
51string hgrp = "pawCmd";
52string gdesc = "CERN PAW like expression plotting commands ";
53piac->AddHelpGroup(hgrp, gdesc);
54
55kw = "reset";
56usage = "Reset histograms vectors or matrix";
57usage += "\n reset nameobj";
58piac->RegisterCommand(kw,usage,this,hgrp);
59
60kw = "n/plot";
61usage = "Plot NTuple variables \"a la paw\" (alias n/pl)";
62usage += "\n n/plot nameobj.x_exp [cut] [w_exp] [loop] [gratt]";
63usage += "\n n/plot nameobj.y_exp%x_exp [cut] [loop] [gratt]";
64usage += "\n n/plot nameobj.z_exp%y_exp%x_exp [cut] [loop] [gratt]";
65usage += "\n for default use ! , loop=i1[:i2[:di]]";
66usage += "\n for 1 dimensional (1D) projection:";
67usage += "\n use graphic option \"keepbin\" to keep previous";
68usage += "\n plot binning for 1D distribution";
69usage += "\n Related commands: plot2dw plot3d";
70piac->RegisterCommand(kw,usage,this,hgrp);
71
72kw = "n/pl";
73usage = "alias to n/plot (see n/plot)";
74piac->RegisterCommand(kw,usage,this,hgrp);
75
76kw = "n/proj";
77usage = "Project NTuple in histogram (1D or 2D) a la paw";
78usage += "\n n/proj nameproj nameobj.x_exp [cut] [w_exp] [loop] [gratt]";
79usage += "\n n/proj nameproj nameobj.y_exp%x_exp [cut] [w_exp] [loop] [gratt]";
80usage += "\n for default use ! , loop=i1[:i2[:di]]";
81usage += "\n for 1 dimensional (1D) projection:";
82usage += "\n no display is performed if \"nameproj\" is an existing histogram";
83usage += "\n unless a graphic option \"gratt\" is given";
84usage += "\n Related commands: projh1d projh2d projprof exptovec";
85piac->RegisterCommand(kw,usage,this,hgrp);
86
87kw = "n/scan";
88usage = "Scan NTuple a la paw";
89usage += "\n n/scan nameobj[.exp1%exp2%exp3] cut loop";
90usage += "\n [-f:filename] [list_of_variables]";
91usage += "\n loop : iev1[:iev2[:diev]] or !";
92usage += "\n cut : cut expression or 1. or !";
93usage += "\n list_of_variables : default is all variables";
94usage += "\n : var1 var2 var3 ... varn";
95usage += "\n : var1 : var2 (from var1 to var2)";
96usage += "\n : : var2 (from first variable to var2)";
97usage += "\n : var1 : (from var1 to last variable)";
98usage += "\n ex: \"v1 : v3 v7 v4 : v6 v2 v9 :\"";
99usage += "\n exp1%exp2%exp3 :";
100usage += "\n if given add exp1,exp2,exp3 to the variable list";
101usage += "\n -f:filename : write into \"filename\", Default is to stdout";
102piac->RegisterCommand(kw,usage,this,hgrp);
103
104kw = "n/read";
105usage = "Read columns in an ASCII file and fill a NTuple or a DataTable";
106usage += "\n n/read nt fascii [options] var_1,c_1 var_2,c_2 ... var_n,c_n ";
107usage += "\n nt : NTuple or DataTable (see options) name";
108usage += "\n var_i,c_i : variable name, associated column in ASCII file [0,n[";
109usage += "\n where [options] are:";
110usage += "\n \"-dt\": create a DataTable of double instead of a NTuple";
111usage += "\n \"=s\": separator character is \'s\' (could be \"\t\")";
112usage += "\n \"-^abcd\": do not read lines beginning with string \"abcd\" ";
113usage += "\n \"+^abcd\": read only lines beginning with string \"abcd\" ";
114usage += "\n \"-abcd\": do not read lines which contain string \"abcd\" ";
115usage += "\n \"+abcd\": read only lines which contain string \"abcd\" ";
116usage += "\n these options may be repeated (ex: \"-^abcd\" \"-^xyz\") ";
117usage += "\n - in case of \"do not read\" options are added with logical AND ";
118usage += "\n - in case of \"read only\" options are added with logical OR ";
119piac->RegisterCommand(kw,usage,this,hgrp);
120
121kw = "n/merge";
122usage = "Merge ntuples (by adding lines)";
123usage += "\n n/merge nt nt_1 nt_2 ... nt_n";
124usage += "\n Merge ntuples nt_i lines into ntuple nt";
125piac->RegisterCommand(kw,usage,this,hgrp);
126
127kw = "n/merge/col";
128usage = "Merge ntuples (by adding columns for each line)";
129usage += "\n n/merge/col nt nt_1[,ext] nt_2[,ext] ... nt_n[,ext]";
130usage += "\n Merge ntuples nt_i columns into ntuple nt";
131usage += "\n ext : character string to add at the end of the ntuple variable names";
132usage += "\n if \"ext\"=\"!\" no extension is added";
133usage += "\n if no \"ext\" is given, automatic extension \"_0\" \"_1\" \"_2\" ...";
134piac->RegisterCommand(kw,usage,this,hgrp);
135
136kw = "n/assoc/col";
137usage = "Merge ntuples columns with an association index";
138usage += "\n n/assoc/col ntass[,u/i] nt_1[,ext] nt_2[,ext] nt_assoc[,icass]";
139usage += "\n Merge ntuples nt_1 and nt_2 columns into ntuple ntass";
140usage += "\n with line association number given by ntuple nt_assoc";
141usage += "\n ---";
142usage += "\n icass: association number given by column \"icass\" of nt_assoc (def=0)";
143usage += "\n ---";
144usage += "\n ext : character string to add at the end of the ntuple variable names";
145usage += "\n if \"ext\"=\"!\" no extension is added";
146usage += "\n if no \"ext\" is given, automatic extension \"_0\" \"_1\" \"_2\" ...";
147usage += "\n ---";
148usage += "\n u : do the union of all the lines of nt_1 and nt_2";
149usage += "\n (all ssociated and un-associated lines of nt_1 and nt_2)";
150usage += "\n i : do the intersection of all the lines of nt_1 and nt_2";
151usage += "\n (only associated lines of nt_1 and nt_2)";
152usage += "\n def : write all lines of nt_1 with possible associated line of nt_2";
153usage += "\n (number of entries of ntass = number of entries of nt_1)";
154piac->RegisterCommand(kw,usage,this,hgrp);
155
156kw = "n/copy";
157usage = "Copy all or some variables of a ntuple into another new ntuple";
158usage += "\n n/merge ntnew nt [vname1 vname2 vname3 ...]";
159piac->RegisterCommand(kw,usage,this,hgrp);
160
161kw = "h/integ";
162usage = "Integrate a 1D histogram";
163usage += "\n h/integ nameh1d [norm]";
164usage += "\n norm<=0 means no normalisation (def norm=1)";
165usage += "\n Related commands: h/deriv v/integ v/deriv";
166piac->RegisterCommand(kw,usage,this,hgrp);
167
168kw = "v/integ";
169usage = "Integrate a TVector / vector";
170usage += "\n v/integ namevec [norm]";
171usage += "\n norm<=0 means no normalisation (def norm=0)";
172usage += "\n Related commands: h/integ h/deriv v/deriv";
173piac->RegisterCommand(kw,usage,this,hgrp);
174
175kw = "v/sort";
176usage = "Sort a vector into itself";
177usage += "\n v/sort namevec [+1/-1]";
178usage += "\n \"+1\" means increasing order, \"-1\" decreasing order";
179piac->RegisterCommand(kw,usage,this,hgrp);
180
181kw = "h/deriv";
182usage = "Derivate a 1D histogram";
183usage += "\n h/deriv nameh1d";
184usage += "\n Related commands: h/integ v/integ v/deriv";
185piac->RegisterCommand(kw,usage,this,hgrp);
186
187kw = "v/deriv";
188usage = "Derivate a TVector / vector";
189usage += "\n v/deriv namevec [deriv_option]";
190usage += "\n deriv_option -1 replace v[i] with v[i]-v[i-1]";
191usage += "\n 0 replace v[i] with (v[i+1]-v[i-1])/2 (default)";
192usage += "\n +1 replace v[i] with v[i+1]-v[i]";
193usage += "\n Related commands: h/integ h/deriv v/integ";
194piac->RegisterCommand(kw,usage,this,hgrp);
195
196kw = "h/rebin";
197usage = "Rebin a 1D histogram or profile";
198usage += "\n h/rebin nameh1d nbin";
199piac->RegisterCommand(kw,usage,this,hgrp);
200
201kw = "h/cadd";
202usage = "Add a constant to an histogram, a vector or a matrix";
203usage += "\n h/cadd namehisto val";
204usage += "\n Related commands: h/cmult h/oper";
205piac->RegisterCommand(kw,usage,this,hgrp);
206
207kw = "h/cmult";
208usage = "Multiply an histogram, a vector or a matrix by a constant";
209usage += "\n h/cmult namehisto val";
210usage += "\n Related commands: h/cadd h/oper";
211piac->RegisterCommand(kw,usage,this,hgrp);
212
213kw = "h/oper";
214usage = "Operation on histograms vectors or matrices";
215usage += "\n h/oper @ h1 h2 hres";
216usage += "\n hres = h1 @ h2 with @ = (+,-,*,/)";
217usage += "\n For vectors and matrices, operations are elements by elements";
218usage += "\n Related commands: h/cadd h/cmult";
219piac->RegisterCommand(kw,usage,this,hgrp);
220
221kw = "h/plot/2d";
222usage = "Specific plot for 2D histogrammes";
223usage += "\n h/plot/2d nameh2d show : infos on 2D histogramme projections";
224usage += "\n h/plot/2d nameh2d h [dopt] : plot 2D histogramme";
225usage += "\n h/plot/2d nameh2d px [dopt] : plot X projection";
226usage += "\n h/plot/2d nameh2d py [dopt] : plot Y projection";
227usage += "\n h/plot/2d nameh2d bx n [dopt] : plot X band number n";
228usage += "\n h/plot/2d nameh2d by n [dopt] : plot Y band number n";
229usage += "\n h/plot/2d nameh2d sx n [dopt] : plot X slice number n";
230usage += "\n h/plot/2d nameh2d sy n [dopt] : plot Y slice number n";
231usage += "\n n < 0 means Show Info";
232piac->RegisterCommand(kw,usage,this,hgrp);
233
234kw = "h/2d/geth";
235usage = "Get histo projections, bandes and slices";
236usage += "\n h/2d/geth nameh2d : infos on 2D histogramme projections";
237usage += "\n h/2d/geth h nameh2d px : copy X projection into histo h";
238usage += "\n h/2d/geth h nameh2d py : copy Y projection into histo h";
239usage += "\n h/2d/geth h nameh2d bx n : copy X band number n into histo h";
240usage += "\n h/2d/geth h nameh2d by n : copy Y band number n into histo h";
241usage += "\n h/2d/geth h nameh2d sx n : copy X slice number n into histo h";
242usage += "\n h/2d/geth h nameh2d sy n : copy Y slice number n into histo h";
243usage += "\n Related commands: h/plot/2d";
244piac->RegisterCommand(kw,usage,this,hgrp);
245
246kw = "h/put_vec";
247usage = "Put content of vector (matrix) into content of histogram 1D or 2D";
248usage += "\n h/put_vec nameh1d namevector [cont,err2]";
249usage += "\n h/put_vec nameh2d namematrix [cont,err2]";
250usage += "\n cont : put into histogramme content";
251usage += "\n err2 : put into histogramme error^2";
252usage += "\n Related commands: h/get_vec";
253piac->RegisterCommand(kw,usage,this,hgrp);
254
255kw = "h/get_vec";
256usage = "Get content of histogram 1D profile or 2D into vector (matrix)";
257usage += "\n h/get_vec nameh1d namevector [cont,err2,absc] [proj]";
258usage += "\n h/get_vec nameh2d namematrix [cont,err2,absc]";
259usage += "\n cont : get histogramme content";
260usage += "\n err2 : get histogramme error^2";
261usage += "\n absc : get histogramme low bin abscissa (1D only)";
262usage += "\n proj :";
263usage += "\n show : show available projections for Histo2D";
264usage += "\n px : get X projection";
265usage += "\n py : get Y projection";
266usage += "\n bx n : get X band number n";
267usage += "\n by n : get Y band number n";
268usage += "\n sx n : get X slice number n";
269usage += "\n sy n : get Y slice number n";
270usage += "\n Related commands: h/put_vec";
271piac->RegisterCommand(kw,usage,this,hgrp);
272
273kw = "h/copy";
274usage = "Copy content of object1 into object2";
275usage += "\n objects are Vector,Matrix,Histo,Histo2D";
276usage += "\n h/copy namefrom nametocopy [i1[:i2]] [j1[:j2]] [ic1[:jc1]]";
277usage += "\n copy obj1Dfrom(i1->i2) into obj1Dto(ic1->)";
278usage += "\n copy obj2Dfrom(i1,j1->i2,j2) into obj2Dto(ic1,jc1->)";
279usage += "\n Warning: elements from i1 to i2 included are copied";
280usage += "\n If obj1Dto does not exist, is is created with size i2-i1+1";
281usage += "\n or obj2Dto with size i2-i1+1,j2-j1+1";
282usage += "\n The adressed content of obj?Dfrom is overwritten";
283usage += "\n The non-adressed content of obj?Dfrom is left unchanged";
284usage += "\n Related commands: copy";
285piac->RegisterCommand(kw,usage,this,hgrp);
286
287kw = "h/set/err";
288usage = "Set Histo,Histo2D errors for range of bins or range of values";
289usage += "\n h/set/err namehisto setvalue i1[:i2] [j1[:j2]]";
290usage += "\n set error to setvalue for bin range i1:i2 j1:j2";
291usage += "\n h/set/err namehisto setvalue v v1:v2";
292usage += "\n set error to setvalue for content values range v1:v2";
293usage += "\n h/set/err namehisto setvalue e e1:e2";
294usage += "\n set error to setvalue for error values range v1:v2";
295usage += "\n Related commands: h/set/cont";
296piac->RegisterCommand(kw,usage,this,hgrp);
297
298kw = "h/set/cont";
299usage = "Set Histo,Histo2D content for range of bins or range of values";
300usage += "\n h/set/cont namehisto setvalue i1[:i2] [j1[:j2]]";
301usage += "\n set content to setvalue for bin range i1:i2 j1:j2";
302usage += "\n h/set/cont namehisto setvalue v v1:v2";
303usage += "\n set content to setvalue for content values range v1:v2";
304usage += "\n h/set/cont namehisto setvalue e e1:e2";
305usage += "\n set content to setvalue for error values range v1:v2";
306usage += "\n Related commands: h/set/err";
307piac->RegisterCommand(kw,usage,this,hgrp);
308
309kw = "h/err";
310usage = "Set Histo,Histo2D error to function of bin content value";
311usage += "\n h/err namehisto expr_func";
312usage += "\n Related commands: h/set/err";
313piac->RegisterCommand(kw,usage,this,hgrp);
314
315kw = "herr/mean";
316usage = "Perform bin mean computation for HistoErr and Histo2DErr";
317usage += "\n herr/mean nameherr todo";
318usage += "\n todo = +1 : compute mean";
319usage += "\n = -1 : cancel computation";
320piac->RegisterCommand(kw,usage,this,hgrp);
321
322kw = "herr/variance";
323usage = "Perform bin mean and variance computation for HistoErr and Histo2DErr";
324usage += "\n herr/variance nameherr todo";
325usage += "\n todo = +1 : compute mean and variance";
326usage += "\n = -1 : cancel computation";
327piac->RegisterCommand(kw,usage,this,hgrp);
328
329}
330
331/* methode */
332PAWExecutor::~PAWExecutor()
333{
334}
335
336/* methode */
337int PAWExecutor::Execute(string& kw, vector<string>& tokens, string& toks)
338{
339if(kw == "reset") {
340 reset(tokens); return(0);
341} else if(kw == "n/plot" || kw == "n/pl") {
342 n_plot(tokens); return(0);
343} else if(kw == "n/proj") {
344 n_proj(tokens); return(0);
345} else if(kw == "n/scan") {
346 n_scan(tokens); return(0);
347} else if(kw == "n/read") {
348 n_read(tokens); return(0);
349} else if(kw == "n/merge") {
350 n_merge(tokens); return(0);
351} else if(kw == "n/merge/col") {
352 n_merge_col(tokens); return(0);
353} else if(kw == "n/assoc/col") {
354 n_assoc_col(tokens); return(0);
355} else if(kw == "n/copy") {
356 n_copy(tokens); return(0);
357} else if(kw == "h/integ") {
358 h_integ(tokens); return(0);
359} else if(kw == "v/integ") {
360 v_integ(tokens); return(0);
361} else if(kw == "v/sort") {
362 v_sort(tokens); return(0);
363} else if(kw == "h/deriv") {
364 h_deriv(tokens); return(0);
365} else if(kw == "v/deriv") {
366 v_deriv(tokens); return(0);
367} else if(kw == "h/rebin") {
368 h_rebin(tokens); return(0);
369} else if(kw == "h/cadd") {
370 h_cadd(tokens); return(0);
371} else if(kw == "h/cmult") {
372 h_cmult(tokens); return(0);
373} else if(kw == "h/oper") {
374 h_oper(tokens); return(0);
375} else if(kw == "h/plot/2d") {
376 h_plot_2d(tokens); return(0);
377} else if(kw == "h/2d/geth") {
378 h_2d_geth(tokens); return(0);
379} else if(kw == "h/put_vec") {
380 h_put_vec(tokens); return(0);
381} else if(kw == "h/get_vec") {
382 h_get_vec(tokens); return(0);
383} else if(kw == "h/copy") {
384 h_copy(tokens); return(0);
385} else if(kw == "h/set/err") {
386 string dum = "err";
387 h_set(dum,tokens); return(0);
388} else if(kw == "h/set/cont") {
389 string dum = "cont";
390 h_set(dum,tokens); return(0);
391} else if(kw == "h/err") {
392 h_err(tokens); return(0);
393} else if(kw == "herr/mean") {
394 herr_mean_variance(tokens,0); return(0);
395} else if(kw == "herr/variance") {
396 herr_mean_variance(tokens,1); return(0);
397} else return(1);
398}
399
400
401/* methode */
402bool PAWExecutor::IsThreadable(string const & keyw)
403{
404 if ( (keyw == "n/plot") || (keyw == "n/pl") ||
405 (keyw == "n/proj") ) return true;
406 else return false;
407}
408
409
410/* methode */
411void PAWExecutor::reset(vector<string>& tokens)
412// Reset d'histogrammes, vecteurs et matrices
413{
414if(tokens.size() < 1)
415 {cout<<"Usage: reset nameobj"<<endl; return;}
416NamedObjMgr omg;
417AnyDataObj* mobj = omg.GetObj(tokens[0]);
418if(mobj == NULL)
419 {cout<<"PAWExecutor::reset Error , Pas d'objet de nom "<<tokens[0]<<endl;
420 return;}
421string ctyp = typeid(*mobj).name();
422
423#ifdef SANS_EVOLPLANCK
424if(typeid(*mobj)==typeid(Vector)) {Vector* ob=(Vector*) mobj; ob->Zero();}
425else if(typeid(*mobj)==typeid(Matrix)) {Matrix* ob=(Matrix*) mobj; ob->Zero();}
426#else
427 if(typeid(*mobj)==typeid(Vector)) {Vector* ob=(Vector*) mobj; (*ob) = 0.; }
428// ob->DataBlock().Reset(0.);}
429 else if(typeid(*mobj)==typeid(Matrix)) {Matrix* ob=(Matrix*) mobj; (*ob) = 0.; }
430//ob->DataBlock().Reset(0.);}
431#endif
432else if(typeid(*mobj)==typeid(Histo)) {Histo* ob=(Histo*) mobj; ob->Zero();}
433else if(typeid(*mobj)==typeid(HProf)) {HProf* ob=(HProf*) mobj; ob->Zero();}
434else if(typeid(*mobj)==typeid(Histo2D)) {Histo2D* ob=(Histo2D*)mobj; ob->Zero();}
435else if(typeid(*mobj)==typeid(HistoErr)) {HistoErr* ob=(HistoErr*) mobj; ob->Zero();}
436else if(typeid(*mobj)==typeid(Histo2DErr)) {Histo2DErr* ob=(Histo2DErr*) mobj; ob->Zero();}
437else {
438 cout<<"PAWExecutor::reset Error , No reset possible on "<<ctyp<<endl;
439 return;
440}
441
442return;
443}
444
445/* methode */
446void PAWExecutor::n_plot(vector<string>& tokens)
447// Equivalent n/plot de paw
448// Plot 1D
449// n/plot nameobj.x_exp [cut] [w_exp] [gratt]
450// Plot 2D (plot2dw)
451// n/plot nameobj.y_exp%x_exp [cut] [w_exp] [gratt]
452// Plot 3D (plot3d)
453// n/plot nameobj.z_exp%y_exp%x_exp [cut] [gratt]
454{
455if(tokens.size() < 1) {
456 cout
457 <<"Usage: n/plot nameobj.x_exp [cut] [w_exp] [loop] [gratt] [nomh1]"<<endl
458 <<" n/plot nameobj.y_exp%x_exp [cut] [loop] [gratt]"<<endl
459 <<" n/plot nameobj.z_exp%y_exp%x_exp [cut] [loop] [gratt]"<<endl
460 <<" for default use ! , loop=i1[:i2[:di]]"<<endl;
461 return;
462}
463string nameobj,expx,expy,expz;
464int_4 nvar = decodepawstring(tokens[0],nameobj,expx,expy,expz);
465string expcut = "1"; string expwt = "1."; string loop = "";
466string dopt = ""; string nameproj="";
467if(tokens.size()>=2) expcut = tokens[1]; if(expcut=="!") expcut="1";
468
469NamedObjMgr omg;
470Services2NObjMgr* srvo = omg.GetServiceObj();
471
472if(nvar<=0) {
473 cout<<"PAWExecutor::n_plot Error: bad coding "<<tokens[0]<<endl;
474} else if(nvar==1) { // c'est un plot 1D
475 if(tokens.size()>=3) expwt = tokens[2]; if(expwt=="!") expwt="1.";
476 if(tokens.size()>=4) loop = tokens[3]; if(loop=="!") loop="";
477 if(tokens.size()>=5) dopt = tokens[4]; if(dopt=="!") dopt="";
478 if(tokens.size()>=6) nameproj = tokens[5];
479 if(nameproj.length()<=0 || nameproj=="!") {
480 nameproj = "/autoc/paw_n_plot1D_";
481 AnyDataObj* mobj = omg.GetObj(nameproj);
482 if(mobj!=NULL) {
483 char buff[16]; autoc_counter_++; sprintf(buff,"%d",autoc_counter_);
484 nameproj += buff;
485 }
486 // --- Si option "keepbin" on projete avec le meme binning que l'histo 1D precedent
487 if(dopt.find("keepbin")<dopt.size()) {
488 PIStdImgApp* piimapp = omg.GetImgApp();
489 if(piimapp) {
490 PIBaseWdg* pibwdg = piimapp->CurrentBaseWdg();
491 if(pibwdg) {
492 int nbdrw = pibwdg->NbDrawers();
493 if(nbdrw>0) {
494 for(int i=nbdrw-1;i>=0;i--) {
495 PIDrawer* pidwr = pibwdg->GetDrawer(i);
496 PIHisto* pih = NULL;
497 if( (pih = dynamic_cast<PIHisto *>(pidwr))==NULL ) continue;
498 P1DHistoWrapper* h = pih->HistoWrapper();
499 if(h==NULL) continue;
500 if(h->NBins()<1) continue;
501 Histo* hsame = new Histo(h->XMin(),h->XMax(),h->NBins());
502 omg.AddObj(hsame,nameproj);
503 break;
504 }
505 }
506 }
507 }
508 }
509 // ---
510 }
511 srvo->ProjectH1(nameobj,expx,expwt,expcut,nameproj,dopt,loop);
512} else if(nvar==2) { // c'est un plot 2D
513 if(tokens.size()>=3) loop = tokens[2]; if(loop=="!") loop="";
514 if(tokens.size()>=4) dopt = tokens[3];
515 string err = "";
516 srvo->DisplayPoints2D(nameobj,expx,expy,err,err,expcut,dopt,loop);
517} else { // c'est un plot 3D
518 if(tokens.size()>=3) loop = tokens[2]; if(loop=="!") loop="";
519 if(tokens.size()>=4) dopt = tokens[3];
520 srvo->DisplayPoints3D(nameobj,expx,expy,expz,expcut,dopt,loop);
521}
522
523return;
524}
525
526
527/* methode */
528void PAWExecutor::n_proj(vector<string>& tokens)
529// Equivalent n/proj de paw
530// Project NTuple in histogram a la paw
531// Dans un Histo 1D
532// n/proj nameproj nameobj.x_exp [cut] [w_exp] [gratt]
533// Dans un Histo 2D ou un HProf (dans ce cas nameproj doit etre cree).
534// n/proj nameproj nameobj.y_exp%x_exp [cut] [w_exp] [gratt]
535{
536if(tokens.size()<2)
537 {cout<<"Usage: n/proj nameproj nameobj.[y_exp%]x_exp [cut] [w_exp] [loop] [gratt]"<<endl
538 <<" for default use ! , loop=i1[:i2[:di]]"<<endl; return;}
539string nameproj = tokens[0];
540string nameobj,expx,expy,expz;
541int_4 nvar = decodepawstring(tokens[1],nameobj,expx,expy,expz);
542string expcut = "1"; string expwt = "1."; string loop = ""; string dopt = "";
543if(tokens.size()>=3) expcut = tokens[2]; if(expcut=="!") expcut="1";
544if(tokens.size()>=4) expwt = tokens[3]; if(expwt=="!") expwt="1.";
545if(tokens.size()>=5) loop = tokens[4]; if(loop=="!") loop="";
546if(tokens.size()>=6) dopt = tokens[5];
547
548NamedObjMgr omg;
549Services2NObjMgr* srvo = omg.GetServiceObj();
550
551if(nvar==1) {
552 // c'est une projection dans un histo 1D
553 srvo->ProjectH1(nameobj,expx,expwt,expcut,nameproj,dopt,loop);
554} else if(nvar==2) {
555 // c'est une projection dans un histo2D
556 // OU un HProf si nameproj est un HProf un deja defini
557 AnyDataObj* mobj = omg.GetObj(nameproj);
558 if(mobj==NULL)
559 srvo->ProjectH2(nameobj,expx,expy,expwt,expcut,nameproj,dopt,loop);
560 else if(dynamic_cast<HProf*>(mobj))
561 srvo->ProjectHProf(nameobj,expx,expy,expwt,expcut,nameproj,dopt,loop);
562 else
563 srvo->ProjectH2(nameobj,expx,expy,expwt,expcut,nameproj,dopt,loop);
564} else {
565 cout<<"PAWExecutor::n_proj Error: bad coding "<<tokens[1]<<" nvar="<<nvar<<endl;
566}
567
568return;
569}
570
571/* methode */
572void PAWExecutor::n_scan(vector<string>& tokens)
573{
574if(tokens.size()<3)
575 {cerr<<"Usage: n/scan nameobj[.exp1%exp2%exp3] cut loop\n"
576 <<" [-f:filename] [list_of_variables]"<<endl; return;}
577
578// decodage des premiers arguments
579string nameobj,expr[4];
580int_4 nexpr = decodepawstring(tokens[0],nameobj,expr[0],expr[1],expr[2]);
581if(nexpr<4) {for(int_4 i=nexpr;i<4;i++) expr[i]="1.";}
582string expcut = tokens[1]; if(expcut=="!") expcut="1";
583string loop = tokens[2]; if(loop=="!") loop="";
584FILE* fout = NULL;
585uint_4 ldebvar = 3;
586if(tokens.size()>3) {
587 if(tokens[3].find("-f:") == 0) {
588 string filename = tokens[3].substr(3);
589 if(filename.size()>0) {
590 fout = fopen(filename.c_str(),"w");
591 if(fout==NULL)
592 {cerr<<"PAWExecutor::n_scan Error, file "<<filename
593 <<" not opened"<<endl; return;}
594 }
595 ldebvar++;
596 }
597}
598
599// ntuple adaptateur
600NamedObjMgr omg;
601Services2NObjMgr& srvo = *omg.GetServiceObj();
602NObjMgrAdapter* obja = omg.GetObjAdapter(nameobj); // Ne pas deleter
603if(obja == NULL)
604 {cerr<<"PAWExecutor::n_scan Error, ObjAdapter==NULL for "
605 <<nameobj<<endl; return;}
606bool adel = true;
607NTupleInterface* objnt = obja->GetNTupleInterface(adel);
608if(objnt == NULL)
609 {cerr<<"PAWExecutor::n_scan Error, NTupleInterface==NULL for "
610 <<nameobj<<endl; return;}
611
612// function pour le choix
613string vardec = objnt->VarList_C("_zz6qi_");
614PlotExprFunc f = srvo.LinkExprFunc(vardec,expr[0],expr[1],expr[2],expr[3],expcut);
615if(!f)
616 {cerr<<"PAWExecutor::n_scan Error, Creation PlotExprFunc"<<endl;
617 if(adel) delete objnt; if(fout) fclose(fout); return;}
618
619// variables a imprimer
620// "rien" --> de 0 a ncol-1 (toutes les variables)
621// : v1 --> de 0 a v1
622// v1 : --> de v1 a ncol-1
623// v1 : v2 --> de v1 a v2 (si v2 apres v1)
624// v1 et v2 (si v2 avant v1)
625// v1 v2 v3 v4 --> v1 v2 v3 v4 (ordre indifferent)
626// et toute combinaison : "v1 : v3 v7 v4 : v6 v2 v9 :"
627// --> v1 v2 v3 v7 v4 v5 v6 v2 v9 v10...v(ncol-1)
628int_4 ncol = objnt->NbColumns();
629if(ncol<=0)
630 {cerr<<"PAWExecutor::n_scan Error, no columns for NTuple"<<endl;
631 return;}
632vector<int_4> varnum;
633if(ldebvar>=tokens.size()) { // Toutes les variables
634 for(int_4 i=0;i<ncol;i++) varnum.push_back(i);
635} else { // Choix de certaines variables
636 int_4 k,klast,kk; bool frlast=false;
637 if(tokens[ldebvar]==":") {varnum.push_back(0); frlast=true;}
638 else {k = objnt->ColumnIndex(tokens[ldebvar]); varnum.push_back(k);}
639 ldebvar++;
640 if(ldebvar<tokens.size()) for(uint_4 i=ldebvar;i<tokens.size();i++) {
641 if(tokens[i]!=":") { // pas un separateur
642 k = klast = objnt->ColumnIndex(tokens[i]);
643 if(frlast) klast = varnum[varnum.size()-1] + 1;
644 if(klast>k) klast=k;
645 for(kk=klast;kk<=k;kk++) varnum.push_back(kk);
646 frlast=false;
647 } else if(i==tokens.size()-1) { // separateur a la fin
648 k = ncol-1;
649 klast = varnum[varnum.size()-1] + 1;
650 if(klast>k) klast=k;
651 for(kk=klast;kk<=k;kk++) varnum.push_back(kk);
652 } else frlast=true; // separateur pas a la fin
653 }
654}
655
656vector<string> varname;
657if(varnum.size()>0) for(int_4 i=0;i<(int)varnum.size();i++) {
658 if(varnum[i]<0 || varnum[i]>=ncol)
659 {cerr<<"PAWExecutor::n_scan Error, bad variable name at pos "
660 <<i<<endl; if(adel) delete objnt; if(fout) fclose(fout); return;}
661 string dum = objnt->ColumnName(varnum[i]);
662 varname.push_back(dum);
663}
664
665// evenements a utiliser
666int_8 k1=0, k2=objnt->NbLines(), dk=1;
667srvo.DecodeLoopParameters(loop,k1,k2,dk);
668if (k1<0) k1=0;
669if (k2<0) k2=objnt->NbLines();
670if (k2>(int_8)objnt->NbLines()) k2=objnt->NbLines();
671if (dk<=0) dk=1;
672
673// boucle sur les evenements et print
674try {
675 int_4 i;
676 if(fout) fprintf(fout,"#ev "); else printf("#ev ");
677 for(i=0;i<(int)varname.size();i++)
678 if(fout) fprintf(fout,"%s ",varname[i].c_str());
679 else printf( "%s ",varname[i].c_str());
680 if(nexpr>0) for(i=0;i<nexpr;i++)
681 if(fout) fprintf(fout,"%s ",expr[i].c_str());
682 else printf( "%s ",expr[i].c_str());
683 if(fout) fprintf(fout,"\n"); else printf("\n");
684
685 double xnt[5]={0,0,0,0,0};
686 double* xn;
687 for(int_8 k=k1; k<k2; k += dk) {
688 xn = objnt->GetLineD(k);
689 if(f((int_8_exprf)k,xn,xnt,xnt+1,xnt+2,xnt+3) != 0) {
690 if(fout) fprintf(fout,"%ld ",(long)k); else printf("%ld ",(long)k);
691 for(i=0;i<(int)varnum.size();i++) {
692 if(fout) fprintf(fout,"%g ",*(xn+varnum[i]));
693 else printf( "%g ",*(xn+varnum[i]));
694 }
695 if(nexpr>0) for(i=0;i<nexpr;i++) {
696 if(fout) fprintf(fout,"%g ",*(xnt+i));
697 else printf( "%g ",*(xnt+i));
698 }
699 if(fout) fprintf(fout,"\n"); else printf("\n");
700 }
701 }
702} // fin du try
703#ifdef SANS_EVOLPLANCK
704CATCH(merr) {
705 fflush(stdout); cout<<endl; cerr<<endl;
706 string es = PeidaExc(merr);
707 cerr<<"Services2NObjMgr::ComputeExpressions() Exception :"<<merr<<es;
708} ENDTRY;
709#else
710catch ( PException exc ) {
711 fflush(stdout); cout<<endl; cerr<<endl;
712 cerr<<"Services2NObjMgr::ComputeExpressions() Exception :"<<exc.Msg()<<endl;
713}
714#endif
715
716if(adel) delete objnt;
717if(fout) fclose(fout);
718srvo.CloseDLL(); // Fermeture du fichier .so
719return;
720}
721
722
723/* methode */
724#define __LENLINE_N_READ__ 8192
725void PAWExecutor::n_read(vector<string>& tokens)
726{
727 int lp=1;
728
729 if(tokens.size()<3) {
730 cerr<<"Usage: n/read nt fascii [options] var_1,c_1 ... var_n,c_n"<<endl;
731 return;
732 }
733
734 // decodage des arguments
735 string nament = tokens[0];
736 string nameascii = tokens[1];
737 bool create_datatable = false;
738 vector<string> donotreadbeg;
739 vector<string> donotreadin;
740 vector<string> onlyreadbeg;
741 vector<string> onlyreadin;
742 vector<string> varname;
743 vector<int> colnum;
744 char separator = ' ';
745 int numcolmaxi=-1;
746
747 for(int i=2;i<(int_4)tokens.size();i++) {
748 int lc = tokens[i].size();
749 if(lc<2) continue;
750 if(tokens[i].find("-dt")==0) { // create DataTable instead of NTuple
751 create_datatable = true;
752 continue;
753 }
754 const char *c = tokens[i].c_str();
755 if(c[0]=='=') { // Separator
756 separator = c[1];
757 if(lc==3) if(c[1]=='\\' && c[2]=='t') separator = '\t';
758 continue;
759 }
760 if(c[0]=='+') { // Selection des lignes a lire
761 if(c[1]!='^') onlyreadin.push_back(&c[1]);
762 else if(lc>2) onlyreadbeg.push_back(&c[2]);
763 continue;
764 }
765 if(c[0]=='-') { // Selection des lignes commentaire
766 if(c[1]!='^') donotreadin.push_back(&c[1]);
767 else if(lc>2) donotreadbeg.push_back(&c[2]);
768 continue;
769 }
770 // decodage des noms de variables et des colonnes associees
771 int p = tokens[i].find(',');
772 if(p<1 || p>=lc-1) continue;
773 string vn = tokens[i].substr(0,p);
774 string cn = tokens[i].substr(p+1,lc-p-1);
775 int ic = atoi(cn.c_str());
776 if(ic<0) continue;
777 if( !isalpha(vn[0]) ) continue;
778 if(ic>numcolmaxi) numcolmaxi = ic;
779 varname.push_back(vn);
780 colnum.push_back(ic);
781 }
782
783 int nvar = varname.size();
784 if(nvar<=0) {
785 cerr<<"n_read: no variables to be read"<<endl;
786 return;
787 }
788
789 // Print what has to be done
790 if(lp) {
791 if(onlyreadin.size()>0) {
792 cout<<"n_read Only read line containing ["<<onlyreadin.size()<<"]:";
793 for(int i=0;i<(int_4)onlyreadin.size();i++) cout<<" \'"<<onlyreadin[i]<<"\'";
794 cout<<endl;
795 }
796 if(onlyreadbeg.size()>0) {
797 cout<<"n_read Only read line begining with ["<<onlyreadbeg.size()<<"]:";
798 for(int i=0;i<(int_4)onlyreadbeg.size();i++) cout<<" \'"<<onlyreadbeg[i]<<"\'";
799 cout<<endl;
800 }
801 if(donotreadin.size()>0) {
802 cout<<"n_read Do not read line containing ["<<donotreadin.size()<<"]:";
803 for(int i=0;i<(int_4)donotreadin.size();i++) cout<<" \'"<<donotreadin[i]<<"\'";
804 cout<<endl;
805 }
806 if(donotreadbeg.size()>0) {
807 cout<<"n_read Do not read line begining with ["<<donotreadbeg.size()<<"]:";
808 for(int i=0;i<(int_4)donotreadbeg.size();i++) cout<<" \'"<<donotreadbeg[i]<<"\'";
809 cout<<endl;
810 }
811 if(nvar>0) {
812 cout<<"n_read Number of variables to be read: "<<nvar<<endl;
813 for(int i=0;i<nvar;i++) cout<<" \'"<<varname[i].c_str()<<","<<colnum[i]<<"\'";
814 cout<<endl;
815 }
816 if(separator!=' ') cout<<"n_read Separator is: \'"<<separator<<"\'"<<endl;
817 }
818
819 // Open ASCII file
820 FILE * fascii = fopen(nameascii.c_str(),"r");
821 if(fascii==NULL) {
822 cerr<<"n_read: cannot open file "<<nameascii<<endl;
823 return;
824 }
825
826 // Creation du NTuple ou de la DataTable
827 NTuple *nt = NULL;
828 DataTable *dt = NULL;
829 if(!create_datatable) { //create NTuple
830 char** ntvn = new char*[nvar];
831 for(int i=0;i<nvar;i++) ntvn[i] = const_cast<char *>(varname[i].c_str());
832 nt = new NTuple(nvar,ntvn);
833 delete [] ntvn;
834 } else { //create DataTable
835 dt = new DataTable();
836 for(int i=0;i<nvar;i++) dt->AddDoubleColumn(varname[i]);
837 }
838 r_8 *xnt = new r_8[nvar];
839
840 // Read file
841 char *line = new char[__LENLINE_N_READ__];
842 int nline=0, nlinecom=0;
843 while(fgets(line,__LENLINE_N_READ__,fascii) != NULL ) {
844 nline++;
845 uint_4 lc = strlen(line); if(lc<1) continue;
846 // Pour enlever le \n final
847 if(line[lc-1]=='\n' || line[lc-1]=='\r')
848 {line[lc-1]='\0'; lc = strlen(line); if(lc<1) continue;}
849
850 string const sline(line);
851 //cout<<"\'"<<sline<<"\' lc="<<lc<<endl;
852
853 // Faut t'il lire cette ligne ?
854 bool read_line_1 = true;
855 if(onlyreadin.size()>0 || onlyreadbeg.size()>0) read_line_1 = false;
856 if(onlyreadin.size()>0) {
857 for(int i=0;i<(int_4)onlyreadin.size();i++) {
858 uint_4 p = sline.find(onlyreadin[i].c_str());
859 if(p>=lc) continue;
860 read_line_1 = true;
861 break;
862 }
863 }
864 if(onlyreadbeg.size()>0) {
865 for(int i=0;i<(int_4)onlyreadbeg.size();i++) {
866 uint_4 p = sline.find(onlyreadbeg[i].c_str());
867 if(p!=0) continue;
868 read_line_1 = true;
869 break;
870 }
871 }
872
873 // Faut t'il ne pas lire cette ligne ?
874 bool read_line_2 = true;
875 if(donotreadin.size()>0) {
876 for(int i=0;i<(int_4)donotreadin.size();i++) {
877 uint_4 p = sline.find(donotreadin[i].c_str());
878 if(p>=lc) continue;
879 read_line_2 = false;
880 break;
881 }
882 }
883 if(donotreadbeg.size()>0) {
884 for(int i=0;i<(int_4)donotreadbeg.size();i++) {
885 uint_4 p = sline.find(donotreadbeg[i].c_str());
886 if(p!=0) continue;
887 read_line_2 = false;
888 break;
889 }
890 }
891 if(!read_line_2) nlinecom++;
892
893 if(!read_line_1 || !read_line_2) continue;
894
895 // Decodage de la ligne
896 vector<string> vs;
897 //FillVStringFrString(sline,vs,separator);
898 SplitStringToVString(sline,vs,separator);
899 int lvs = vs.size();
900 //for(int i=0;i<lvs;i++) cout<<"|"<<vs[i]<<"| "; cout<<endl;
901 if(lvs<numcolmaxi) continue; // Pas assez de champs decodes, mauvaise ligne
902
903 // Remplissage du NTuple ou de la DataTable
904 for(int i=0;i<nvar;i++) {
905 xnt[i] = 0.;
906 int ic = colnum[i];
907 if(ic>=lvs) continue;
908 xnt[i] = atof(vs[ic].c_str());
909 }
910 if(nt) nt->Fill(xnt);
911 else if(dt) dt->Fill(xnt);
912 //cout<<"...xnt"; for(int i=0;i<nvar;i++) cout<<" "<<xnt[i]; cout<<endl;
913
914 }
915 int_4 nentries = (nt)? nt->NEntry(): dt->NEntry();
916 cout<<"n_read: "<<nline<<" lines in file, "
917 <<nlinecom<<" commentary, "
918 <<nentries<<" object entries"<<endl;
919
920 // On sauve le NTuple/DataTable si besoin, on ferme et detruit ce qu'il faut
921 NamedObjMgr omg;
922 if(nentries>0) {
923 if(nt) omg.AddObj(nt,nament);
924 if(dt) omg.AddObj(dt,nament);
925 } else {
926 if(nt) delete nt;
927 if(dt) delete dt;
928 }
929 delete [] xnt;
930 delete [] line;
931 fclose(fascii);
932
933 return;
934}
935#undef __LENLINE_N_READ__
936
937/* methode */
938void PAWExecutor::n_merge(vector<string>& tokens)
939{
940 if(tokens.size()<2) {
941 cerr<<"Usage: n/merge nt nt_1 nt_2 ... nt_n"<<endl;
942 return;
943 }
944
945 NamedObjMgr omg;
946
947 // decodage des arguments
948 string nament = tokens[0];
949
950 // boucle sur les ntuples
951 NTuple * nt = NULL;
952 int nvar=0, nfill=0;
953 r_8 *xnt=NULL;
954
955 for(int i=1;i<(int_4)tokens.size();i++) {
956
957 AnyDataObj* mobj = omg.GetObj(tokens[i]);
958 if(mobj==NULL) {
959 cout<<"n_merge Error: unknow object"<<tokens[i]<<endl;
960 continue;
961 }
962 NTuple* nt1 = dynamic_cast<NTuple*>(mobj);
963 if(nt1==NULL) {
964 cout<<"n_merge Error: "<<tokens[i]<<" not a NTuple"<<endl;
965 continue;
966 }
967 if(nt1->NEntry()==0) {
968 cout<<"n_merge Error: "<<tokens[i]<<" is empty"<<endl;
969 continue;
970 }
971 if(nt1->NVar()==0) {
972 cout<<"n_merge Error: "<<tokens[i]<<" has no variable"<<endl;
973 continue;
974 }
975
976 // create receiving ntuple if first pass
977 if(nt==NULL) {
978 nvar = nt1->NVar();
979 vector<string> sntvn;
980 for(int iv=0;iv<nvar;iv++) sntvn.push_back(nt1->ColumnName(iv));
981 char **ntvn = new char*[nvar];
982 for(int iv=0;iv<nvar;iv++) ntvn[iv] = const_cast<char *>(sntvn[iv].c_str());
983 nt = new NTuple(nvar,ntvn);
984 delete [] ntvn;
985 }
986
987 // filling with current ntuple
988 int nvar1 = nt1->NVar();
989 int n = (nvar1>nvar)? nvar1: nvar;
990 r_8 *xnt1 = new r_8[n];
991 for(int iev=0;iev<n;iev++) xnt1[iev]=0.;
992 for(uint_4 iev=0;iev<(uint_4)nt1->NEntry();iev++) {
993 nt1->GetVecD(iev,xnt1);
994 nt->Fill(xnt1);
995 }
996 nfill++;
997 delete [] xnt1;
998
999 }
1000
1001 if(xnt!=NULL) delete [] xnt;
1002 if(nt!=NULL) {
1003 cout<<"n_merge: ntuple filled with "<<nfill
1004 <<" ntuples, "<<nt->NEntry()<<" entries"<<endl;
1005 if(nt->NEntry()>0) omg.AddObj(nt,nament); else delete nt;
1006 }
1007 return;
1008}
1009
1010/* methode */
1011void PAWExecutor::n_merge_col(vector<string>& tokens)
1012{
1013 if(tokens.size()<2) {
1014 cerr<<"Usage: n/merge/col nt nt_1[,ext] nt_2[,ext] ... nt_n[,ext]"<<endl;
1015 return;
1016 }
1017
1018 NamedObjMgr omg;
1019
1020 // decodage des arguments
1021 string nament = tokens[0];
1022
1023 // boucle sur les ntuples
1024 uint_4 numnt=0, nentmax=0, ipos=0;
1025 vector<string> varname;
1026 vector<string> ntname;
1027 vector<int> posfirst;
1028 for(int i=1;i<(int_4)tokens.size();i++) {
1029
1030 // Decode NTuple name and extension
1031 int_4 lc = tokens[i].size();
1032 string ntn = tokens[i];
1033 string ext = "";
1034 int p = ntn.find(',');
1035 if(p>=0 && p<lc) {
1036 if(p<lc-1) ext = ntn.substr(p+1,lc-p-1);
1037 if(p>0) ntn = ntn.substr(0,p); else ntn = "";
1038 }
1039 // choose the extentsion: given,automatic,none
1040 if(ext.size()<1) {
1041 char str[8]; sprintf(str,"_%d",numnt);
1042 ext = str;
1043 } else if(ext[0] == '!') {
1044 ext = "";
1045 }
1046
1047 AnyDataObj* mobj = omg.GetObj(ntn);
1048 if(mobj==NULL) {
1049 cout<<"n_merge_col Error: unknow object "<<ntn<<" ("<<tokens[i]<<")"<<endl;
1050 continue;
1051 }
1052 NTuple* nt1 = dynamic_cast<NTuple*>(mobj);
1053 if(nt1==NULL) {
1054 cout<<"n_merge_col Error: "<<ntn<<" not a NTuple"<<endl;
1055 continue;
1056 }
1057 if(nt1->NEntry()==0) {
1058 cout<<"n_merge_col Error: "<<ntn<<" is empty"<<endl;
1059 continue;
1060 }
1061 if(nt1->NVar()==0) {
1062 cout<<"n_merge_col Error: "<<ntn<<" has no variable"<<endl;
1063 continue;
1064 }
1065
1066 ntname.push_back(ntn);
1067 posfirst.push_back(ipos);
1068 if(nt1->NEntry()>(int_4)nentmax) nentmax = nt1->NEntry();
1069 for(int iv=0;iv<nt1->NVar();iv++) {
1070 string str = nt1->ColumnName(iv) + ext;
1071 varname.push_back(str);
1072 }
1073 numnt++;
1074 ipos += nt1->NVar();
1075 }
1076
1077 if(ntname.size()==0) {
1078 cout<<"n_merge_col Error: no ntuple found in argument list"<<endl;
1079 return;
1080 } else cout<<"Number of NTuple found "<<ntname.size()
1081 <<", Number of variables "<<varname.size()
1082 <<", Max_entries "<<nentmax<<endl;
1083
1084 // create receiving ntuple
1085 int nvar = varname.size();
1086 char **ntvn = new char*[nvar];
1087 for(int iv=0;iv<nvar;iv++) ntvn[iv] = const_cast<char *>(varname[iv].c_str());
1088 NTuple * nt = new NTuple(nvar,ntvn);
1089 //for(int i=0;i<(int_4)ntname.size();i++) cout<<ntname[i]<<" , p="<<posfirst[i]<<endl;
1090 delete [] ntvn;
1091
1092 // filling with current ntuple
1093 r_8 *xnt = new r_8[nvar];
1094 for(int iev=0;iev<(int_4)nentmax;iev++) {
1095 for(int i=0;i<nvar;i++) xnt[i]=0.;
1096 for(int i=0;i<(int_4)ntname.size();i++) {
1097 AnyDataObj* mobj = omg.GetObj(ntname[i]);
1098 NTuple* nt1 = dynamic_cast<NTuple*>(mobj);
1099 if(iev < nt1->NEntry()) nt1->GetVecD(iev,&xnt[posfirst[i]]);
1100 }
1101 nt->Fill(xnt);
1102 }
1103
1104 // Ending and saving merging ntuple columns
1105 delete [] xnt;
1106 cout<<"n_merge_col: ntuple filled with "<<ntname.size()
1107 <<" ntuples, "<<nt->NEntry()<<" entries"<<endl;
1108 if(nt->NEntry()>0) omg.AddObj(nt,nament); else delete nt;
1109
1110 return;
1111}
1112
1113/* methode */
1114void PAWExecutor::n_assoc_col(vector<string>& tokens)
1115{
1116 if(tokens.size()<4) {
1117 cerr<<"Usage: n/assoc/col ntass[,u] nt_1[,ext] nt_2[,ext] nt_assoc[,icass]"<<endl;
1118 return;
1119 }
1120
1121 NamedObjMgr omg;
1122
1123 // decodage du nom du ntuple final associe
1124 // do_merge = 0 : on remplit toutes les lignes de nt_1 associees ou non
1125 // lignes associees + non-associees de nt_1
1126 // -> ntass.NEntry == nt_1.NEntry
1127 // = 1 : on remplit uniquement les lignes associees
1128 // lignes associees uniquement
1129 // -> ntass.NEntry <= min(nt_1.NEntry,nt_2.NEntry)
1130 // = 2 : on remplit l'union des lignes
1131 // lignes associees + non-associees de nt_1 + non-associees de nt_2
1132 // -> ntass.NEntry >= max(nt_1.NEntry,nt_2.NEntry)
1133 uint_2 do_merge=0;
1134 string ntmerge = tokens[0];
1135 int lc = tokens[0].size();
1136 int p = tokens[0].find(',');
1137 if(p>=0 && p<lc) {
1138 ntmerge = ntmerge.substr(0,p);
1139 p = tokens[0].find(",u");
1140 if(p>=0 && p<lc) do_merge = 2;
1141 p = tokens[0].find(",i");
1142 if(p>=0 && p<lc) do_merge = 1;
1143 }
1144 cout<<"n_assoc_col: final ntuple "<<ntmerge<<", do_merge="<<do_merge<<endl;
1145
1146 // boucle pour decoder et valider les 3 ntuples
1147 NTuple *nt[3];
1148 string ntname;
1149 vector<string> varname;
1150 int icass = 0;
1151
1152 for(int i=0;i<3;i++) {
1153
1154 // Decode NTuple name and extension
1155 ntname = tokens[i+1];
1156 int_4 lc = ntname.size();
1157 string ext = "";
1158 int p = ntname.find(',');
1159 if(p>=0 && p<lc) {
1160 if(p<lc-1) ext = ntname.substr(p+1,lc-p-1);
1161 if(p>0) ntname = ntname.substr(0,p); else ntname = "";
1162 }
1163 // choose the extension: given,automatic,none
1164 if(i==2) { // numero de colonne avec l'index d'association
1165 if(ext[0] == '!') ext = "";
1166 if(ext.size()>0) icass = atoi(ext.c_str());
1167 } else {
1168 if(ext.size()<1) {
1169 char str[8]; sprintf(str,"_%d",i);
1170 ext = str;
1171 } else if(ext[0] == '!') {
1172 ext = "";
1173 }
1174 }
1175
1176 AnyDataObj* mobj = omg.GetObj(ntname);
1177 if(mobj==NULL) {
1178 cout<<"n_assoc_col Error: unknow object "<<ntname<<" ("<<tokens[i]<<")"<<endl;
1179 return;
1180 }
1181 nt[i] = dynamic_cast<NTuple*>(mobj);
1182 if(nt[i]==NULL) {
1183 cout<<"n_assoc_col Error: "<<ntname<<" not a NTuple"<<endl;
1184 return;
1185 }
1186 if(nt[i]->NEntry()==0) {
1187 cout<<"n_assoc_col Error: "<<ntname<<" is empty"<<endl;
1188 return;
1189 }
1190 if(nt[i]->NVar()==0) {
1191 cout<<"n_assoc_col Error: "<<ntname<<" has no variable"<<endl;
1192 return;
1193 }
1194
1195 if(i<2)
1196 for(int iv=0;iv<nt[i]->NVar();iv++) {
1197 string str = nt[i]->ColumnName(iv) + ext;
1198 varname.push_back(str);
1199 }
1200
1201 }
1202
1203 // Checking size of associated ntuple
1204 if(nt[0]->NEntry() != nt[2]->NEntry()) {
1205 cout<<"n_assoc_col Error: nentries mismatch "
1206 <<" first ntuple"<<"="<<nt[0]->NEntry()
1207 <<", assoc ntuple"<<"="<<nt[2]->NEntry()<<endl;
1208 return;
1209 }
1210 if(icass<0 || icass>=nt[2]->NVar()) {
1211 cout<<"n_assoc_col Error: bad association column number "
1212 <<icass<<" / "<<nt[2]->NVar()<<endl;
1213 return;
1214 }
1215
1216 // create receiving ntuple
1217 int nvar = varname.size();
1218 char **ntvn = new char*[nvar];
1219 for(int iv=0;iv<nvar;iv++) ntvn[iv] = const_cast<char *>(varname[iv].c_str());
1220 NTuple * ntass = new NTuple(nvar,ntvn);
1221 delete [] ntvn;
1222
1223 // Filling with current ntuple
1224 // the first column gives the associated line in nt[1]
1225 int_4 nfill[2]={0,0};
1226 r_8 *xass = new r_8[nt[2]->NVar()];
1227 r_8 *xnt = new r_8[nvar];
1228 uint_2 *use2 = NULL;
1229 if(do_merge==2) {
1230 use2 = new uint_2[nt[1]->NEntry()];
1231 for(int i=0;i<nt[1]->NEntry();i++) use2[i] = 0;
1232 }
1233 for(int iev=0;iev<nt[0]->NEntry();iev++) {
1234 nt[2]->GetVecD(iev,xass);
1235 int iass = (xass[icass]<0.) ? -1: int(xass[icass]+0.5);
1236 bool okass = (iass>=0 && iass<nt[1]->NEntry());
1237 if(do_merge==1 && !okass) continue; // pas d'assoc et intersection demandee
1238 for(int iv=0;iv<nvar;iv++) xnt[iv]=0.;
1239 nt[0]->GetVecD(iev,xnt);
1240 if(okass) {
1241 nt[1]->GetVecD(iass,&xnt[nt[0]->NVar()]);
1242 if(do_merge==2) use2[iass] = 1;
1243 } else nfill[0]++;
1244 ntass->Fill(xnt);
1245 }
1246 // Filling with remaining unassociated in nt[1] if requested
1247 if(do_merge==2) {
1248 for(int iev=0;iev<nt[1]->NEntry();iev++) {
1249 if(use2[iev]!=0) continue; // deja rempli
1250 for(int iv=0;iv<nvar;iv++) xnt[iv]=0.;
1251 nt[1]->GetVecD(iev,&xnt[nt[0]->NVar()]);
1252 ntass->Fill(xnt);
1253 nfill[1]++;
1254 }
1255 }
1256
1257 // Ending and saving merged ntuple
1258 delete [] xnt; delete [] xass;
1259 if(use2) delete [] use2;
1260 cout<<"n_assoc_col: ntuple "<<ntmerge
1261 <<" filled with "<<ntass->NEntry()<<" entries"
1262 <<", unassoc in nt_1="<<nfill[0]
1263 <<", unassoc in nt_2="<<nfill[1]<<endl;
1264 omg.AddObj(ntass,ntmerge);
1265
1266 return;
1267}
1268
1269/* methode */
1270void PAWExecutor::n_copy(vector<string>& tokens)
1271{
1272 if(tokens.size()<2) {
1273 cerr<<"Usage: n/copy ntnew nt [vname1 vname2 vname3 ...]"<<endl;
1274 return;
1275 }
1276
1277 NamedObjMgr omg;
1278
1279 // Le NTuple de depart
1280 AnyDataObj* mobj = omg.GetObj(tokens[1]);
1281 if(mobj==NULL) {
1282 cout<<"n_copy Error: unknow object"<<tokens[1]<<endl;
1283 return;
1284 }
1285 NTuple* nt = dynamic_cast<NTuple*>(mobj);
1286 if(nt==NULL) {
1287 cout<<"n_copy Error: "<<tokens[1]<<" not a NTuple"<<endl;
1288 return;
1289 }
1290 if(nt->NEntry()==0) {
1291 cout<<"n_copy Error: "<<tokens[1]<<" is empty"<<endl;
1292 return;
1293 }
1294 if(nt->NVar()==0) {
1295 cout<<"n_copy Error: "<<tokens[1]<<" has no variable"<<endl;
1296 return;
1297 }
1298
1299 // Les variables a copier
1300 int nvar; vector<string> varname; vector<int> ivar;
1301 if(tokens.size()==2) {
1302 nvar = nt->NVar();
1303 for(int i=0;i<nvar;i++) {
1304 ivar.push_back(i);
1305 varname.push_back(nt->NomIndex(i));
1306 }
1307 } else {
1308 nvar = tokens.size()-2;
1309 for(int i=0;i<nvar;i++) {
1310 int iv = nt->IndexNom(tokens[i+2].c_str());
1311 if(iv<0) {
1312 cout<<"n_copy Error: unkown variable "<<tokens[i+2].c_str()<<endl;
1313 return;
1314 }
1315 ivar.push_back(iv);
1316 varname.push_back(tokens[i+2]);
1317 }
1318 }
1319 cout<<"coping variables: ";
1320 for(int i=0;i<nvar;i++) cout<<" "<<varname[i];
1321 cout<<endl;
1322
1323 // Creation du nouveau NTuple
1324 char **ntvn = new char*[nvar];
1325 for(int i=0;i<nvar;i++) ntvn[i] = const_cast<char *>(varname[i].c_str());
1326 NTuple ntnew(nvar,ntvn);
1327 delete [] ntvn;
1328
1329 // Copie du NTuple
1330 r_8 *xnt = new r_8[nt->NVar()];
1331 r_8 *xntnew = new r_8[nvar];
1332 for(int iev=0;iev<nt->NEntry();iev++) {
1333 nt->GetVecD(iev,xnt);
1334 for(int i=0;i<nvar;i++) xntnew[i] = xnt[ivar[i]];
1335 ntnew.Fill(xntnew);
1336 }
1337 delete [] xnt; delete [] xntnew;
1338
1339 // Adding new NTuple
1340 omg.AddObj(ntnew,tokens[0]);
1341
1342 return;
1343}
1344
1345/* methode */
1346void PAWExecutor::h_integ(vector<string>& tokens)
1347// Pour remplacer le contenu d'un histo 1D par son integrale
1348{
1349if(tokens.size()<1)
1350 {cout<<"Usage: h/integ nameh1d [norm]"<<endl; return;}
1351NamedObjMgr omg;
1352AnyDataObj* mobj = omg.GetObj(tokens[0]);
1353if(mobj==NULL)
1354 {cout<<"PAWExecutor::h_integ Error: unknow object"<<tokens[0]<<endl;
1355 return;}
1356r_8 norm = 1.;
1357if(tokens.size()>=2) norm = atof(tokens[1].c_str());
1358// attention: dynamic_cast<Histo*>(HProf)=Vrai!
1359Histo* h1 = dynamic_cast<Histo*>(mobj);
1360HProf* hp = dynamic_cast<HProf*>(mobj);
1361if(hp || !h1)
1362 {cout<<"PAWExecutor::h_integ Error: "<<tokens[0]<<" not an Histo"<<endl;
1363 return;}
1364h1->HInteg(norm);
1365}
1366
1367/* methode */
1368void PAWExecutor::v_integ(vector<string>& tokens)
1369// Pour remplacer le contenu d'un TVector<r_8> par son integrale
1370// normalisee a norm:
1371// Si norm <= 0 : pas de normalisation, integration seule
1372{
1373if(tokens.size()<1)
1374 {cout<<"Usage: v/integ namevec [norm]"<<endl; return;}
1375NamedObjMgr omg;
1376AnyDataObj* mobj = omg.GetObj(tokens[0]);
1377if(mobj==NULL)
1378 {cout<<"PAWExecutor::v_integ Error: unknow object"<<tokens[0]<<endl;
1379 return;}
1380r_8 norm=-1.;
1381if(tokens.size()>=2) norm = atof(tokens[1].c_str());
1382#ifdef SANS_EVOLPLANCK
1383Vector* v = dynamic_cast<Vector*>(mobj);
1384#else
1385TVector<r_8>* v = dynamic_cast<TVector<r_8>*>(mobj);
1386#endif
1387
1388if(!v)
1389 {cout<<"PAWExecutor::v_integ Error: "<<tokens[0]<<" not a TVector/Vector"<<endl;
1390 return;}
1391
1392#ifdef SANS_EVOLPLANCK
1393uint_4 n = v->NElts();
1394#else
1395uint_4 n = v->Size();
1396#endif
1397
1398if(n==0)
1399 {cout<<"PAWExecutor::v_integ Error: "<<tokens[0]<<" is an empty vector"<<endl;
1400 return;}
1401if(n>1) for(uint_4 i=1;i<n;i++) (*v)(i)+=(*v)(i-1);
1402if(norm<=0. || (*v)(n-1)==0.) return;
1403norm /= (*v)(n-1);
1404for(uint_4 i=0;i<n;i++) (*v)(i) *= norm;
1405}
1406
1407/* methode */
1408void PAWExecutor::v_sort(vector<string>& tokens)
1409// Pour sort in-place d'un vecteur ascendant ou descendant
1410{
1411 if(tokens.size()<1)
1412 {cout<<"Usage: v/sort namevec [+1/-1]"<<endl; return;}
1413 NamedObjMgr omg;
1414 AnyDataObj* mobj = omg.GetObj(tokens[0]);
1415 if(mobj==NULL)
1416 {cout<<"PAWExecutor::v_sort Error: unknow object"<<tokens[0]<<endl;
1417 return;}
1418
1419 bool up = true;
1420 if(tokens.size()>=2) if(atoi(tokens[1].c_str())<0) up=false;
1421
1422 {
1423 TVector<r_8>* v = dynamic_cast<TVector<r_8>*>(mobj);
1424 if(v) {
1425 if(v->Size()==0) return;
1426 if(up) stable_sort(v->Data(), v->Data()+v->Size(), __vector_sort_up_r8);
1427 else stable_sort(v->Data(), v->Data()+v->Size(), __vector_sort_down_r8);
1428 cout<<"median is: "<<0.5*((*v)(v->Size()/2)+(*v)((v->Size()-1)/2))<<endl;
1429 return;
1430 }
1431 }
1432
1433 {
1434 TVector<r_4>* v = dynamic_cast<TVector<r_4>*>(mobj);
1435 if(v) {
1436 if(v->Size()==0) return;
1437 if(up) stable_sort(v->Data(), v->Data()+v->Size(), __vector_sort_up_r4);
1438 else stable_sort(v->Data(), v->Data()+v->Size(), __vector_sort_down_r4);
1439 cout<<"median is: "<<0.5*((*v)(v->Size()/2)+(*v)((v->Size()-1)/2))<<endl;
1440 return;
1441 }
1442 }
1443
1444 {
1445 TVector<int_4>* v = dynamic_cast<TVector<int_4>*>(mobj);
1446 if(v) {
1447 if(v->Size()==0) return;
1448 if(up) stable_sort(v->Data(), v->Data()+v->Size(), __vector_sort_up_i4);
1449 else stable_sort(v->Data(), v->Data()+v->Size(), __vector_sort_down_i4);
1450 cout<<"median is: "<<0.5*((*v)(v->Size()/2)+(*v)((v->Size()-1)/2))<<endl;
1451 return;
1452 }
1453 }
1454
1455 {
1456 TVector<uint_8>* v = dynamic_cast<TVector<uint_8>*>(mobj);
1457 if(v) {
1458 if(v->Size()==0) return;
1459 if(up) stable_sort(v->Data(), v->Data()+v->Size(), __vector_sort_up_u8);
1460 else stable_sort(v->Data(), v->Data()+v->Size(), __vector_sort_down_u8);
1461 cout<<"median is: "<<0.5*((*v)(v->Size()/2)+(*v)((v->Size()-1)/2))<<endl;
1462 return;
1463 }
1464 }
1465
1466 cout<<"PAWExecutor::v_sort Error: "<<tokens[0]
1467 <<" not a TVector or not a supported TVector<TYPE>"<<endl;
1468 return;
1469
1470}
1471
1472/* methode */
1473void PAWExecutor::h_deriv(vector<string>& tokens)
1474// Pour remplacer le contenu d'un histo 1D par sa derivee
1475{
1476if(tokens.size()<1)
1477 {cout<<"Usage: h/deriv nameh1d"<<endl; return;}
1478NamedObjMgr omg;
1479AnyDataObj* mobj = omg.GetObj(tokens[0]);
1480if(mobj==NULL)
1481 {cout<<"PAWExecutor::h_deriv Error: unknow object"<<tokens[0]<<endl;
1482 return;}
1483// attention: dynamic_cast<Histo*>(HProf)=Vrai!
1484Histo* h1 = dynamic_cast<Histo*>(mobj);
1485HProf* hp = dynamic_cast<HProf*>(mobj);
1486if(hp || !h1)
1487 {cout<<"PAWExecutor::h_deriv Error: "<<tokens[0]<<" not an Histo"<<endl;
1488 return;}
1489h1->HDeriv();
1490}
1491
1492/* methode */
1493void PAWExecutor::v_deriv(vector<string>& tokens)
1494// Pour remplacer le contenu d'un TVector<r_8> par sa derivee
1495// deriv_option = -1 replace v[i] with v[i]-v[i-1]
1496// = 0 replace v[i] with (v[i+1]-v[i-1])/2 (default)
1497// = +1 replace v[i] with v[i+1]-v[i]
1498{
1499if(tokens.size()<1)
1500 {cout<<"Usage: v/deriv namevec [deriv_option(-1,0,+1)]"<<endl; return;}
1501NamedObjMgr omg;
1502AnyDataObj* mobj = omg.GetObj(tokens[0]);
1503if(mobj==NULL)
1504 {cout<<"PAWExecutor::v_deriv Error: unknow object"<<tokens[0]<<endl;
1505 return;}
1506int_4 deriv_option = 0;
1507if(tokens.size()>=2) deriv_option = atoi(tokens[1].c_str());
1508
1509#ifdef SANS_EVOLPLANCK
1510Vector* v = dynamic_cast<Vector*>(mobj);
1511#else
1512TVector<r_8>* v = dynamic_cast<TVector<r_8>*>(mobj);
1513#endif
1514
1515if(!v)
1516 {cout<<"PAWExecutor::v_deriv Error: "<<tokens[0]<<" not a TVector/Vector"<<endl;
1517 return;}
1518
1519
1520#ifdef SANS_EVOLPLANCK
1521uint_4 n = v->NElts();
1522#else
1523uint_4 n = v->Size();
1524#endif
1525
1526if(n==0)
1527 {cout<<"PAWExecutor::v_deriv Error: "<<tokens[0]<<" is an empty vector"<<endl;
1528 return;}
1529if(n<=1) return;
1530
1531#ifdef SANS_EVOLPLANCK
1532Vector vsave(*v);
1533#else
1534TVector<r_8> vsave(*v,false);
1535#endif
1536
1537if(deriv_option<0) {
1538 for(uint_4 i=1;i<n;i++) (*v)(i) = vsave(i)-vsave(i-1);
1539 (*v)(0) = (*v)(1);
1540} else if(deriv_option>0) {
1541 for(uint_4 i=0;i<n-1;i++) (*v)(i) = vsave(i+1)-vsave(i);
1542 (*v)(n-1) = (*v)(n-2);
1543} else {
1544 for(uint_4 i=1;i<n-1;i++) (*v)(i) = (vsave(i+1)-vsave(i-1))/2.;
1545 (*v)(0) = vsave(1)-vsave(0);
1546 (*v)(n-1) = vsave(n-1)-vsave(n-2);
1547}
1548}
1549
1550
1551/* methode */
1552void PAWExecutor::h_rebin(vector<string>& tokens)
1553// Pour re-binner un histogramme 1D
1554{
1555if(tokens.size()<2)
1556 {cout<<"Usage: h/rebin nameh1d nbin"<<endl; return;}
1557NamedObjMgr omg;
1558AnyDataObj* mobj = omg.GetObj(tokens[0]);
1559if(mobj==NULL)
1560 {cout<<"PAWExecutor::h_rebin Error: unknow object"<<tokens[0]<<endl;
1561 return;}
1562int_4 nbin = atoi(tokens[1].c_str());
1563Histo* h1 = dynamic_cast<Histo*>(mobj);
1564// Ca marche aussi pour les HProf, HRebin a ete passe virtuel
1565//HProf* hp = dynamic_cast<HProf*>(mobj); if(hp || !h1)
1566if(!h1)
1567 {cout<<"PAWExecutor::h_rebin Error: "<<tokens[0]<<" not an Histo/HProf"<<endl;
1568 return;}
1569h1->HRebin(nbin);
1570}
1571
1572/* methode */
1573void PAWExecutor::h_cadd(vector<string>& tokens)
1574// Additionne une constante a un histogramme
1575{
1576if(tokens.size()<2)
1577 {cout<<"Usage: h/cadd nameh1d val"<<endl; return;}
1578NamedObjMgr omg;
1579AnyDataObj* mobj = omg.GetObj(tokens[0]);
1580if(mobj==NULL)
1581 {cout<<"PAWExecutor::h_cadd Error: unknow object"<<tokens[0]<<endl;
1582 return;}
1583r_8 val = atof(tokens[1].c_str());
1584Histo* h1 = dynamic_cast<Histo*>(mobj);
1585HProf* hp = dynamic_cast<HProf*>(mobj);
1586Histo2D* h2 = dynamic_cast<Histo2D*>(mobj);
1587Vector* v = dynamic_cast<Vector*>(mobj);
1588Matrix* m = dynamic_cast<Matrix*>(mobj);
1589if(h1 && !hp) *h1 += val;
1590else if(h2) *h2 += val;
1591else if(v) *v += val;
1592else if(m) *m += val;
1593else cout<<"PAWExecutor::h_cadd Error: not implemented for "<<typeid(*mobj).name()<<endl;
1594}
1595
1596/* methode */
1597void PAWExecutor::h_cmult(vector<string>& tokens)
1598// Multiplie un histogramme par une constante
1599{
1600if(tokens.size()<2)
1601 {cout<<"Usage: h/cmult nameh1d val"<<endl; return;}
1602NamedObjMgr omg;
1603AnyDataObj* mobj = omg.GetObj(tokens[0]);
1604if(mobj==NULL)
1605 {cout<<"PAWExecutor::h_cmult Error: unknow object"<<tokens[0]<<endl;
1606 return;}
1607r_8 val = atof(tokens[1].c_str());
1608Histo* h1 = dynamic_cast<Histo*>(mobj);
1609HProf* hp = dynamic_cast<HProf*>(mobj);
1610Histo2D* h2 = dynamic_cast<Histo2D*>(mobj);
1611Vector* v = dynamic_cast<Vector*>(mobj);
1612Matrix* m = dynamic_cast<Matrix*>(mobj);
1613if(h1 && !hp) *h1 *= val;
1614else if(h2) *h2 *= val;
1615else if(v) *v *= val;
1616else if(m) *m *= val;
1617else cout<<"PAWExecutor::h_mult Error: not implemented for "<<typeid(*mobj).name()<<endl;
1618}
1619
1620/* methode */
1621void PAWExecutor::h_oper(vector<string>& tokens)
1622// Equivalent h/oper/add sub,mul,div de paw
1623// Operation entre 2 histogrammes ou 2 vecteurs ou 2 matrices
1624// h/oper @ h1 h2 hres
1625// hres = h1 @ h2 with @ = (+,-,*,/)
1626// Pour les vecteurs et les matrices, il sagit d'operations elements a elements
1627{
1628if(tokens.size()<4)
1629 {cout<<"Usage: n/oper @ h1 h2 hres with @=(+,-,*,/,@)"<<endl;
1630 return;}
1631
1632// Decode arguments
1633const char * oper = tokens[0].c_str();
1634if( oper[0]!='+' && oper[0]!='-' && oper[0]!='*' && oper[0]!='/' )
1635 {cout<<"PAWExecutor::h_oper Error: unknow operation "<<oper<<endl;
1636 return;}
1637string h1name = tokens[1];
1638string h2name = tokens[2];
1639string h3name = tokens[3];
1640
1641// Get objects
1642NamedObjMgr omg;
1643AnyDataObj* mobjh1 = omg.GetObj(h1name);
1644AnyDataObj* mobjh2 = omg.GetObj(h2name);
1645if( mobjh1==NULL || mobjh2==NULL )
1646 {cout<<"PAWExecutor::h_oper Error: unknow object(s) "<<h1name<<" or "<<h2name<<endl;
1647 return;}
1648AnyDataObj* mobjh3 = omg.GetObj(h3name);
1649
1650// Operations on HProf, only + is working
1651if( dynamic_cast<HProf*>(mobjh1) != NULL ) {
1652 if( oper[0]!='+' )
1653 { cout<<"PAWExecutor::h_oper Error: operation "<<oper
1654 <<" not implemented for HProf"<<endl; return;}
1655 if( dynamic_cast<HProf*>(mobjh2) == NULL )
1656 {cout<<"PAWExecutor::h_oper Error: type mismatch between h1 and h2\n"
1657 <<typeid(*mobjh1).name()<<" , "<<typeid(*mobjh2).name()<<endl;
1658 return;}
1659 HProf* h1 =(HProf*) mobjh1;
1660 HProf* h2 =(HProf*) mobjh2;
1661 if( h1->NBins() != h2->NBins() )
1662 {cout<<"PAWExecutor::h_oper Error: size mismatch between h1, h2 "
1663 <<h1->NBins()<<" "<<h2->NBins()<<endl; return;}
1664 HProf* h3 = NULL;
1665 if( mobjh3 == NULL ) // l'objet n'existe pas, on le cree
1666 {h3 = new HProf(*h1); h3->Zero(); omg.AddObj(h3,h3name); mobjh3 = omg.GetObj(h3name);}
1667 h3 = dynamic_cast<HProf*>(mobjh3);
1668 if(h3 == NULL) // ce n'est pas un HProf
1669 {cout<<"PAWExecutor::h_oper Error: type mismatch between h1 and h3\n"
1670 <<typeid(*mobjh1).name()<<" , "<<typeid(*mobjh3).name()<<endl; return;}
1671 if(h1->NBins() != h3->NBins())
1672 {cout<<"PAWExecutor::h_oper Error: size mismatch between h1, h3 "
1673 <<h1->NBins()<<" "<<h3->NBins()<<endl; return;}
1674 *h3 = *h1 + *h2;
1675 h3->UpdateHisto();
1676
1677// Operations on Histo
1678} else if( dynamic_cast<Histo*>(mobjh1) != NULL ) {
1679 if( dynamic_cast<Histo*>(mobjh2) == NULL )
1680 {cout<<"PAWExecutor::h_oper Error: type mismatch between h1 and h2\n"
1681 <<typeid(*mobjh1).name()<<" , "<<typeid(*mobjh2).name()<<endl;
1682 return;}
1683 Histo* h1 =(Histo*) mobjh1;
1684 Histo* h2 =(Histo*) mobjh2;
1685 if( h1->NBins() != h2->NBins() )
1686 {cout<<"PAWExecutor::h_oper Error: size mismatch between h1, h2 "
1687 <<h1->NBins()<<" "<<h2->NBins()<<endl; return;}
1688 Histo* h3 = NULL;
1689 if( mobjh3 == NULL ) // l'objet n'existe pas, on le cree
1690 {h3 = new Histo(*h1); h3->Zero(); omg.AddObj(h3,h3name); mobjh3 = omg.GetObj(h3name);}
1691 h3 = dynamic_cast<Histo*>(mobjh3);
1692 if(h3 == NULL) // ce n'est pas un Histo
1693 {cout<<"PAWExecutor::h_oper Error: type mismatch between h1 and h3\n"
1694 <<typeid(*mobjh1).name()<<" , "<<typeid(*mobjh3).name()<<endl; return;}
1695 if(h1->NBins() != h3->NBins())
1696 {cout<<"PAWExecutor::h_oper Error: size mismatch between h1, h3 "
1697 <<h1->NBins()<<" "<<h3->NBins()<<endl; return;}
1698 if( oper[0]=='+') *h3 = *h1 + *h2;
1699 else if( oper[0]=='-') *h3 = *h1 - *h2;
1700 else if( oper[0]=='*') *h3 = *h1 * *h2;
1701 else if( oper[0]=='/') *h3 = *h1 / *h2;
1702
1703// Operations on Histo2D
1704} else if( dynamic_cast<Histo2D*>(mobjh1) != NULL ) {
1705 if( dynamic_cast<Histo2D*>(mobjh2) == NULL )
1706 {cout<<"PAWExecutor::h_oper Error: type mismatch between h1 and h2\n"
1707 <<typeid(*mobjh1).name()<<" , "<<typeid(*mobjh2).name()<<endl;
1708 return;}
1709 Histo2D* h1 =(Histo2D*) mobjh1;
1710 Histo2D* h2 =(Histo2D*) mobjh2;
1711 if( h1->NBinX() != h2->NBinX() || h1->NBinY() != h2->NBinY() )
1712 {cout<<"PAWExecutor::h_oper Error: size mismatch between h1, h2 "
1713 <<h1->NBinX()<<","<<h1->NBinY()<<" "
1714 <<h2->NBinX()<<","<<h2->NBinY()<<endl; return;}
1715 Histo2D* h3 = NULL;
1716 if( mobjh3 == NULL ) // l'objet n'existe pas, on le cree
1717 {h3 = new Histo2D(*h1); h3->Zero(); omg.AddObj(h3,h3name); mobjh3 = omg.GetObj(h3name);}
1718 h3 = dynamic_cast<Histo2D*>(mobjh3);
1719 if(h3 == NULL) // ce n'est pas un Histo2D
1720 {cout<<"PAWExecutor::h_oper Error: type mismatch between h1 and h3\n"
1721 <<typeid(*mobjh1).name()<<" , "<<typeid(*mobjh3).name()<<endl; return;}
1722 if( h1->NBinX() != h3->NBinX() || h1->NBinY() != h3->NBinY() )
1723 {cout<<"PAWExecutor::h_oper Error: size mismatch between h1, h3 "
1724 <<h1->NBinX()<<","<<h1->NBinY()<<" "
1725 <<h3->NBinX()<<","<<h3->NBinY()<<endl; return;}
1726 if( oper[0]=='+') *h3 = *h1 + *h2;
1727 else if( oper[0]=='-') *h3 = *h1 - *h2;
1728 else if( oper[0]=='*') *h3 = *h1 * *h2;
1729 else if( oper[0]=='/') *h3 = *h1 / *h2;
1730
1731// Operations on Vector
1732} else if( dynamic_cast<Vector*>(mobjh1) != NULL ) {
1733 if( dynamic_cast<Vector*>(mobjh2) == NULL )
1734 {cout<<"PAWExecutor::h_oper Error: type mismatch between h1 and h2\n"
1735 <<typeid(*mobjh1).name()<<" , "<<typeid(*mobjh2).name()<<endl;
1736 return;}
1737 Vector* h1 =(Vector*) mobjh1;
1738 Vector* h2 =(Vector*) mobjh2;
1739 if( h1->NElts() != h2->NElts() )
1740 {cout<<"PAWExecutor::h_oper Error: size mismatch between h1, h2 "
1741 <<h1->NElts()<<" "<<h2->NElts()<<endl; return;}
1742 Vector* h3 = NULL;
1743 if( mobjh3 == NULL ) { // l'objet n'existe pas, on le cree
1744#ifdef SANS_EVOLPLANCK
1745 h3 = new Vector(*h1);
1746#else
1747 h3 = new Vector(*h1,false);
1748#endif
1749 *h3 = 0.; omg.AddObj(h3,h3name); mobjh3 = omg.GetObj(h3name);
1750 }
1751 h3 = dynamic_cast<Vector*>(mobjh3);
1752 if(h3 == NULL) // ce n'est pas un Vector
1753 {cout<<"PAWExecutor::h_oper Error: type mismatch between h1 and h3\n"
1754 <<typeid(*mobjh1).name()<<" , "<<typeid(*mobjh3).name()<<endl; return;}
1755 if(h1->NElts() != h3->NElts())
1756 {cout<<"PAWExecutor::h_oper Error: size mismatch between h1, h3 "
1757 <<h1->NElts()<<" "<<h3->NElts()<<endl; return;}
1758 if( oper[0]=='+') *h3 = *h1 + *h2;
1759 else if( oper[0]=='-') *h3 = *h1 - *h2;
1760#ifdef SANS_EVOLPLANCK
1761 else if(oper[0]=='*' || oper[0]=='/')
1762 cout<<"PAWExecutor::h_oper Error: operation "<<oper[0]
1763 <<" not implemented for Vector in Peida"<<endl;
1764#else
1765 else if( oper[0]=='*') {h3->Clone(*h1); h3->MulElt(*h2,*h3);}
1766 else if( oper[0]=='/') {h3->Clone(*h1); h3->DivElt(*h2,*h3,false,true);}
1767#endif
1768
1769// Operations on Matrix
1770} else if( dynamic_cast<Matrix*>(mobjh1) != NULL ) {
1771 if( dynamic_cast<Matrix*>(mobjh2) == NULL )
1772 {cout<<"PAWExecutor::h_oper Error: type mismatch between h1 and h2\n"
1773 <<typeid(*mobjh1).name()<<" , "<<typeid(*mobjh2).name()<<endl;
1774 return;}
1775 Matrix* h1 =(Matrix*) mobjh1;
1776 Matrix* h2 =(Matrix*) mobjh2;
1777 if( h1->NRows() != h2->NRows() || h1->NCol() != h2->NCol() )
1778 {cout<<"PAWExecutor::h_oper Error: size mismatch between h1, h2 "
1779 <<h1->NRows()<<","<<h1->NCol()<<" "
1780 <<h2->NRows()<<","<<h2->NCol()<<endl; return;}
1781 Matrix* h3 = NULL;
1782 if( mobjh3 == NULL ) { // l'objet n'existe pas, on le cree
1783#ifdef SANS_EVOLPLANCK
1784 h3 = new Matrix(*h1);
1785#else
1786 h3 = new Matrix(*h1,false);
1787#endif
1788 *h3 = 0.; omg.AddObj(h3,h3name); mobjh3 = omg.GetObj(h3name);
1789 }
1790 h3 = dynamic_cast<Matrix*>(mobjh3);
1791 if(h3 == NULL) // ce n'est pas un Matrix
1792 {cout<<"PAWExecutor::h_oper Error: type mismatch between h1 and h3\n"
1793 <<typeid(*mobjh1).name()<<" , "<<typeid(*mobjh3).name()<<endl; return;}
1794 if( h1->NRows() != h3->NRows() || h1->NCol() != h3->NCol() )
1795 {cout<<"PAWExecutor::h_oper Error: size mismatch between h1, h3 "
1796 <<h1->NRows()<<","<<h1->NCol()<<" "
1797 <<h3->NRows()<<","<<h3->NCol()<<endl; return;}
1798 if( oper[0]=='+') *h3 = *h1 + *h2;
1799 else if( oper[0]=='-') *h3 = *h1 - *h2;
1800#ifdef SANS_EVOLPLANCK
1801 else if(oper[0]=='*' || oper[0]=='/')
1802 cout<<"PAWExecutor::h_oper Error: operation "<<oper[0]
1803 <<" not implemented for Vector in Peida"<<endl;
1804#else
1805 else if( oper[0]=='*') {h3->Clone(*h1); h3->MulElt(*h2,*h3);}
1806 else if( oper[0]=='/') {h3->Clone(*h1); h3->DivElt(*h2,*h3,false,true);}
1807#endif
1808
1809// Doesn't work for other objects
1810} else {
1811 cout<<"PAWExecutor::h_oper Error: not implemented for "
1812 <<typeid(*mobjh1).name()<<endl;
1813 return;
1814}
1815
1816return;
1817}
1818
1819/* methode */
1820void PAWExecutor::h_plot_2d(vector<string>& tokens)
1821// plot for 2D histogramme: plot histo, bandx/y, slicex/y or projx/y
1822{
1823if(tokens.size()<1)
1824 {cout<<"Usage: h/plot/2d nameh2d to_plot [n/s] [dopt]"<<endl; return;}
1825string proj = "h"; if(tokens.size()>1) proj = tokens[1];
1826NamedObjMgr omg;
1827AnyDataObj* mobj = omg.GetObj(tokens[0]);
1828if(mobj==NULL)
1829 {cout<<"PAWExecutor::h_plot_2d Error: unknow object"<<tokens[0]<<endl;
1830 return;}
1831Histo2D* h2 = dynamic_cast<Histo2D*>(mobj);
1832if(!h2)
1833 {cout<<"PAWExecutor::h_plot_2d Error: "<<tokens[0]<<" not an Histo2D"<<endl;
1834 return;}
1835
1836Histo* h1p = NULL; string nametoplot = "/autoc/h_plot_2d_h1";
1837
1838string dopt = ""; if(tokens.size()>=3) dopt = tokens[2];
1839if(proj == "show") {
1840 h2->ShowProj();
1841 h2->ShowBand(2);
1842 h2->ShowSli(2);
1843 return;
1844} else if(proj == "h") {
1845 nametoplot = tokens[0];
1846} else if(proj == "px") {
1847 if((h1p=h2->HProjX())) {Histo* h1=new Histo(*h1p); omg.AddObj(h1,nametoplot);}
1848 else {h2->ShowProj(); return;}
1849} else if(proj == "py") {
1850 if((h1p=h2->HProjY())) {Histo* h1=new Histo(*h1p); omg.AddObj(h1,nametoplot);}
1851 else {h2->ShowProj(); return;}
1852} else {
1853 if(tokens.size()<3)
1854 {cout<<"Usage: h/plot/2d nameh2d bx/by/sx/sy n [dopt]"<<endl; return;}
1855 int_4 n = atoi(tokens[2].c_str());
1856 dopt = ""; if(tokens.size()>=4) dopt = tokens[3];
1857 if(proj == "bx") {
1858 if((h1p=h2->HBandX(n))) {Histo* h1=new Histo(*h1p); omg.AddObj(h1,nametoplot);}
1859 else {h2->ShowBand(); return;}
1860 } else if(proj == "by") {
1861 if((h1p=h2->HBandY(n))) {Histo* h1=new Histo(*h1p); omg.AddObj(h1,nametoplot);}
1862 else {h2->ShowBand(); return;}
1863 } else if(proj == "sx") {
1864 if((h1p=h2->HSliX(n))) {Histo* h1=new Histo(*h1p); omg.AddObj(h1,nametoplot);}
1865 else {h2->ShowSli(); return;}
1866 } else if(proj == "sy") {
1867 if((h1p=h2->HSliY(n))) {Histo* h1=new Histo(*h1p); omg.AddObj(h1,nametoplot);}
1868 else {h2->ShowSli(); return;}
1869 }
1870}
1871
1872omg.DisplayObj(nametoplot,dopt);
1873}
1874
1875/* methode */
1876void PAWExecutor::h_2d_geth(vector<string>& tokens)
1877// copy bandx/y, slicex/y or projx/y from an 2D histo into a 1D histo
1878{
1879 NamedObjMgr omg;
1880
1881 if(tokens.size()==1) {
1882 AnyDataObj* mobj = omg.GetObj(tokens[0]);
1883 Histo2D* h2 = dynamic_cast<Histo2D*>(mobj);
1884 if(!h2) return;
1885 h2->ShowProj();
1886 h2->ShowBand(2);
1887 h2->ShowSli(2);
1888 return;
1889 }
1890
1891 if(tokens.size()<3)
1892 {cout<<"Usage: h/2d/geth h nameh2d [px,py,bx n,by n,sx n,sy n]"<<endl; return;}
1893
1894 string nameh1 = tokens[0];
1895 string nameh2 = tokens[1];
1896 string proj = tokens[2];
1897 int_4 nump = (tokens.size()>3)? atoi(tokens[3].c_str()): -1;
1898
1899 // Decodage Histo2D
1900 AnyDataObj* mobj = omg.GetObj(tokens[1]);
1901 if(mobj==NULL)
1902 {cout<<"PAWExecutor::h_2d_geth Error: unknow object"<<tokens[1]<<endl;
1903 return;}
1904 Histo2D* h2 = dynamic_cast<Histo2D*>(mobj);
1905 if(!h2)
1906 {cout<<"PAWExecutor::h_plot_2d Error: "<<tokens[1]<<" not an Histo2D"<<endl;
1907 return;}
1908
1909 // Remplissage histo 1D avec la projection demandee
1910 Histo *h1p;
1911 if(proj == "px") {
1912 if((h1p=h2->HProjX())) {Histo* h=new Histo(*h1p); omg.AddObj(h,nameh1);}
1913 else h2->ShowProj();
1914 } else if(proj == "py") {
1915 if((h1p=h2->HProjY())) {Histo* h=new Histo(*h1p); omg.AddObj(h,nameh1);}
1916 else h2->ShowProj();
1917 } else if(proj == "bx" && nump>=0) {
1918 if((h1p=h2->HBandX(nump))) {Histo* h=new Histo(*h1p); omg.AddObj(h,nameh1);}
1919 else h2->ShowBand();
1920 } else if(proj == "by" && nump>=0) {
1921 if((h1p=h2->HBandY(nump))) {Histo* h=new Histo(*h1p); omg.AddObj(h,nameh1);}
1922 else h2->ShowBand();
1923 } else if(proj == "sx" && nump>=0) {
1924 if((h1p=h2->HSliX(nump))) {Histo* h=new Histo(*h1p); omg.AddObj(h,nameh1);}
1925 else h2->ShowSli();
1926 } else if(proj == "sy" && nump>=0) {
1927 if((h1p=h2->HSliY(nump))) {Histo* h=new Histo(*h1p); omg.AddObj(h,nameh1);}
1928 else h2->ShowSli();
1929 } else {
1930 cout<<"PAWExecutor::h_2d_geth Error: Unknown proj name "<<proj
1931 <<" or bad projection number "<<nump<<endl;
1932 }
1933
1934 return;
1935}
1936
1937/* methode */
1938int_4 PAWExecutor::decodepawstring(string tokens,string& nameobj
1939 ,string& xexp,string& yexp,string& zexp)
1940// Decodage general de "nameobj.xexp"
1941// "nameobj.yexp%xexp"
1942// "nameobj.zexp%yexp%xexp"
1943// Return: nombre de variables trouvees, -1 si probleme
1944{
1945nameobj = ""; xexp= ""; yexp= ""; zexp= "";
1946
1947int_4 lt = (int) tokens.length();
1948if(lt<=0) return -1;
1949
1950// decodage de la chaine de type PAW.
1951char *str = new char[lt+2];
1952strcpy(str,tokens.c_str()); strip(str,'B',' '); lt = strlen(str);
1953//cout<<"chaine1["<<lt<<"] :"<<str<<":"<<endl;
1954char *c[3] = {NULL,NULL,NULL};
1955int_4 i, np=0; bool namefound = false;
1956for(i=0;i<lt;i++) {
1957 if(!namefound && str[i]=='.') {
1958 str[i]='\0';
1959 namefound=true;
1960 c[np] = str+i+1; np++;
1961 }
1962 if( namefound && str[i]=='%') {
1963 str[i]='\0';
1964 if(np<3) {c[np] = str+i+1; np++;}
1965 }
1966}
1967//cout<<"chaine2 :"; for(i=0;i<lt;i++) cout<<str[i]; cout<<":"<<endl;
1968
1969// Remplissage du nom et des variables
1970nameobj = str;
1971if(np==1) xexp=c[0];
1972if(np==2) {yexp=c[0]; xexp=c[1];}
1973if(np==3) {zexp=c[0]; yexp=c[1]; xexp=c[2];}
1974//cout<<"pawstring str,c[0-2] "<<str<<" "<<c[0]<<" "<<c[1]<<" "<<c[2]<<endl;
1975delete [] str;
1976
1977// Comptage des variables
1978np = -1;
1979if(nameobj.length()>0)
1980 {np = 0; if(xexp.length()>0)
1981 {np++; if(yexp.length()>0)
1982 {np++; if(zexp.length()>0) np++;}}}
1983//cout<<"pawstring["<<np<<"] name="<<nameobj
1984// <<" xexp="<<xexp<<" yexp="<<yexp<<" zexp="<<zexp<<endl;
1985return np;
1986}
1987
1988/* methode */
1989void PAWExecutor::h_put_vec(vector<string>& tokens)
1990// Pour remplir un histo avec le contenu d'un vecteur ou d'une matrice
1991// L'histogramme doit deja exister. Le nombre de bins remplit
1992// depend des tailles respectives des 2 objets.
1993// tokens[2] = "cont" : on remplit les valeurs de l'histogramme (ou "!")
1994// = "err2" : on remplit les erreurs de l'histogramme
1995{
1996if(tokens.size()<2)
1997 {cout<<"Usage: h/put_vec namehisto namevector"<<endl;
1998 return;}
1999string toput = "cont"; if(tokens.size()>2) toput = tokens[2];
2000if(toput=="!") toput = "cont";
2001if(toput!="cont" && toput!="err2")
2002 {cout<<"PAWExecutor::h_put_vec Error: unknow filling "<<toput<<endl;
2003 return;}
2004string hname = tokens[0];
2005string vname = tokens[1];
2006
2007// Get objects
2008NamedObjMgr omg;
2009AnyDataObj* mobjh = omg.GetObj(hname);
2010AnyDataObj* mobjv = omg.GetObj(vname);
2011if( mobjh==NULL || mobjv==NULL )
2012 {cout<<"PAWExecutor::h_put_vec Error: unknow object(s) "<<hname<<" or "<<vname<<endl;
2013 return;}
2014
2015// Fill Histo from Vector
2016if(typeid(*mobjh) == typeid(Histo) && typeid(*mobjv) == typeid(Vector)) {
2017 Histo* h = dynamic_cast<Histo*>(mobjh);
2018 Vector* v = dynamic_cast<Vector*>(mobjv);
2019 if(toput=="cont") h->PutValue(*v);
2020 else if(toput=="err2") h->PutError2(*v);
2021
2022// Fill Histo2D from Matrix
2023} else if(typeid(*mobjh) == typeid(Histo2D) && typeid(*mobjv) == typeid(Matrix)) {
2024 Histo2D* h = dynamic_cast<Histo2D*>(mobjh);
2025 Matrix* v = dynamic_cast<Matrix*>(mobjv);
2026 if(toput=="cont") h->PutValue(*v);
2027 else if(toput=="err2") h->PutError2(*v);
2028
2029} else {
2030 cout<<"PAWExecutor::h_put_vec Error: type mismatch between histogram and vector/matrix\n"
2031 <<typeid(*mobjh).name()<<" , "<<typeid(*mobjv).name()<<endl;
2032 return;
2033}
2034
2035}
2036
2037/* methode */
2038void PAWExecutor::h_get_vec(vector<string>& tokens)
2039// Pour copier un histo dans un vecteur ou une matrice
2040// Si le vecteur (matrice) n'existe pas, il est cree.
2041// Le vecteur ou la matrice est re-dimensionne correctement.
2042// tokens[2] = "cont" : on copie les valeurs de l'histogramme (ou "!")
2043// = "err2" : on copie les erreurs de l'histogramme
2044// = "absc" : on copie les erreurs de l'histogramme (1D only)
2045// tokens[3[,4]] = show : show available projections for Histo2D
2046// px : get X projection
2047// py : get Y projection
2048// bx n : get X band number n
2049// by n : get Y band number n
2050// sx n : get X slice number n
2051// sy n : get Y slice number n
2052{
2053if(tokens.size()<2)
2054 {cout<<"Usage: h/get_vec namehisto namevector"<<endl;
2055 return;}
2056string toget = "cont"; if(tokens.size()>2) toget = tokens[2];
2057if(toget=="!") toget = "cont";
2058if(toget!="cont" && toget!="err2" && toget!="absc")
2059 {cout<<"PAWExecutor::h_get_vec Error: unknow filling "<<toget<<endl;
2060 return;}
2061string proj = "h"; if(tokens.size()>3) proj = tokens[3];
2062int_4 nproj = -1; if(tokens.size()>4) nproj = atoi(tokens[4].c_str());
2063string hname = tokens[0];
2064string vname = tokens[1];
2065
2066// Get objects
2067NamedObjMgr omg;
2068AnyDataObj* mobjh = omg.GetObj(hname);
2069AnyDataObj* mobjv = omg.GetObj(vname);
2070if( mobjh==NULL)
2071 {cout<<"PAWExecutor::h_put_vec Error: unknow object(s) "<<hname<<endl;
2072 return;}
2073
2074// Copy Histo/Histo2D/Projection to Vector/Matrix
2075Histo* h = dynamic_cast<Histo*>(mobjh);
2076Histo2D* h2 = dynamic_cast<Histo2D*>(mobjh);
2077if( h != NULL ) { // Histo ou HProf
2078 h->UpdateHisto(); // pour le cas ou c'est un HProf
2079 Vector* v = NULL;
2080 if(mobjv==NULL) // le vecteur n'existe pas
2081 {v = new Vector(1); omg.AddObj(v,vname); mobjv = omg.GetObj(vname);}
2082 if(typeid(*mobjv) != typeid(Vector))
2083 {cout<<"PAWExecutor::h_get_vec Error: type mismatch between Histo/HProf and vector\n"
2084 <<typeid(*mobjv).name()<<endl; return;}
2085 v = dynamic_cast<Vector*>(mobjv);
2086 if(toget=="cont") h->GetValue(*v);
2087 else if(toget=="err2") h->GetError2(*v);
2088 else if(toget=="absc") h->GetAbsc(*v);
2089
2090} else if( h2 != NULL) { // Histo2D
2091
2092 if(proj == "h") { // On veut les valeurs de l'histogramme 2D
2093 Matrix* v = NULL;
2094 if(mobjv==NULL) // la matrice n'existe pas
2095 {v = new Matrix(1,1); omg.AddObj(v,vname); mobjv = omg.GetObj(vname);}
2096 if(typeid(*mobjv) != typeid(Matrix))
2097 {cout<<"PAWExecutor::h_get_vec Error: type mismatch between Histo2D and matrix\n"
2098 <<typeid(*mobjv).name()<<endl; return;}
2099 v = dynamic_cast<Matrix*>(mobjv);
2100 if(toget=="cont") h2->GetValue(*v);
2101 else if(toget=="err2") h2->GetError2(*v);
2102 else
2103 {cout<<"PAWExecutor::h_get_vec Error: option "<<toget<<" not valid for Histo2D"<<endl;
2104 return;}
2105
2106 } else { // On veut les valeurs d'une projection de l'histo 2D
2107 h = NULL;
2108 if(proj == "show") {h2->ShowProj(); h2->ShowBand(2); h2->ShowSli(2);}
2109 else if(proj == "px") h = h2->HProjX();
2110 else if(proj == "py") h = h2->HProjY();
2111 else if(proj == "bx") h = h2->HBandX(nproj);
2112 else if(proj == "by") h = h2->HBandY(nproj);
2113 else if(proj == "sx") h = h2->HSliX(nproj);
2114 else if(proj == "sy") h = h2->HSliY(nproj);
2115 if(h==NULL)
2116 {cout<<"PAWExecutor::h_get_vec Error: unknown projection "<<proj
2117 <<" number "<<nproj<<endl; return;}
2118 Vector* v = NULL;
2119 if(mobjv==NULL) // le vecteur n'existe pas
2120 {v = new Vector(1); omg.AddObj(v,vname); mobjv = omg.GetObj(vname);}
2121 if(typeid(*mobjv) != typeid(Vector))
2122 {cout<<"PAWExecutor::h_get_vec Error: type mismatch between Histo2D "<<proj
2123 <<" and vector\n"<<typeid(*mobjv).name()<<endl; return;}
2124 v = dynamic_cast<Vector*>(mobjv);
2125 if(toget=="cont") h->GetValue(*v);
2126 else if(toget=="err2") h->GetError2(*v);
2127 else if(toget=="absc") h->GetAbsc(*v);
2128 }
2129
2130} else {
2131 cout<<"PAWExecutor::h_get_vec Error: type mismatch for histogram\n"
2132 <<typeid(*mobjh).name()<<endl;
2133 return;
2134}
2135
2136}
2137
2138/* methode */
2139void PAWExecutor::h_copy(vector<string>& tokens)
2140// Pour copier un object dans un object
2141// objects are Vector,Matrix,Histo,Histo2D
2142// h/copy namefrom nametocopy [i1[:i2]] [j1[:j2]] [ic1[:jc1]]
2143// copy obj1Dfrom(i1->i2) into obj1Dto(ic1->)
2144// copy obj2Dfrom(i1,j1->i2,j2) into obj2Dto(ic1,jc1->)
2145// Attention: elements depuis i1 jusqu'a i2 COMPRIS
2146// Si obj1Dto n'existe pas, il est cree avec une taille i2-i1+1
2147// ou obj2Dto avec une taille i2-i1+1,j2-j1+1
2148// Le contenu de obj?Dfrom adresse est surecrit
2149// Le contenu de obj?Dfrom non adresse reste le meme
2150{
2151int_4 tks = tokens.size();
2152if(tks<2)
2153 {cout<<"Usage: h_copy namefrom nametocopy [i1[:i2]] [j1[:j2]] [ic1[:jc1]]"<<endl;
2154 return;}
2155
2156NamedObjMgr omg;
2157AnyDataObj* mobjv1 = omg.GetObj(tokens[0]);
2158if( mobjv1==NULL)
2159 {cout<<"PAWExecutor::h_copy Error: unknow object "<<tokens[0]<<endl;
2160 return;}
2161AnyDataObj* mobjv2 = omg.GetObj(tokens[1]);
2162
2163int_4 i1=0,i2=0, j1=0,j2=0, ic1=0,jc1=0, i,ii, j,jj, nx1,ny1, nx2,ny2;
2164
2165// Cas d'un Vector
2166if(typeid(*mobjv1) == typeid(Vector)) {
2167 Vector* v1 = dynamic_cast<Vector*>(mobjv1); nx1 = (int_4)v1->NElts();
2168 i2=nx1-1;
2169 if(tks>2) if(tokens[2]!="!") sscanf(tokens[2].c_str(),"%d:%d",&i1,&i2);
2170 if(i1<0) i1=0; if(i2>=nx1) i2=nx1-1;
2171 if(i2<i1)
2172 {cout<<"PAWExecutor::h_copy Error: wrong range ["<<i1<<":"<<i2<<"] for NElts="
2173 <<nx1<<endl; return;}
2174 Vector* v2 = NULL;
2175 if(mobjv2==NULL)
2176 {v2 = new Vector(i2-i1+1); omg.AddObj(v2,tokens[1]); mobjv2 = omg.GetObj(tokens[1]);}
2177 if(typeid(*mobjv2) != typeid(Vector))
2178 {cout<<"PAWExecutor::h_copy Error: type mismatch for Vector "
2179 <<typeid(*mobjv2).name()<<endl; return;}
2180 v2 = dynamic_cast<Vector*>(mobjv2); nx2 = (int_4)v2->NElts();
2181 if(tks>4) if(tokens[4]!="!") sscanf(tokens[4].c_str(),"%d",&ic1);
2182 if(ic1<0) ic1=0;
2183 if(ic1>=nx2)
2184 {cout<<"PAWExecutor::h_copy Error: wrong pointer to copy ["<<ic1<<"] for NElts="
2185 <<nx2<<endl; return;}
2186 cout<<"copy "<<tokens[0]<<"("<<i1<<":"<<i2<<") to "<<tokens[1]<<"("<<ic1<<"->...)"<<endl;
2187 for(i=i1,ii=ic1; i<=i2 && i<nx1 && ii<nx2; i++,ii++) (*v2)(ii) = (*v1)(i);
2188 return;
2189}
2190
2191// Cas d'un Histo
2192if(typeid(*mobjv1) == typeid(Histo)) {
2193 Histo* v1 = dynamic_cast<Histo*>(mobjv1); nx1 = (int_4)v1->NBins();
2194 i2=nx1-1;
2195 if(tks>2) if(tokens[2]!="!") sscanf(tokens[2].c_str(),"%d:%d",&i1,&i2);
2196 if(i1<0) i1=0; if(i2>=nx1) i2=nx1-1;
2197 if(i2<i1)
2198 {cout<<"PAWExecutor::h_copy Error: wrong range ["<<i1<<":"<<i2<<"] for NBins="
2199 <<nx1<<endl; return;}
2200 Histo* v2 = NULL;
2201 if(mobjv2==NULL)
2202 {v2 = new Histo(0.,(r_8)(i2-i1+1),i2-i1+1);
2203 omg.AddObj(v2,tokens[1]); mobjv2 = omg.GetObj(tokens[1]);}
2204 if(typeid(*mobjv2) != typeid(Histo))
2205 {cout<<"PAWExecutor::h_copy Error: type mismatch for Histo "
2206 <<typeid(*mobjv2).name()<<endl; return;}
2207 v2 = dynamic_cast<Histo*>(mobjv2); nx2 = (int_4)v2->NBins();
2208 if(v1->HasErrors() && !(v2->HasErrors())) v2->Errors();
2209 if(tks>4) if(tokens[4]!="!") sscanf(tokens[4].c_str(),"%d",&ic1);
2210 if(ic1<0) ic1=0;
2211 if(ic1>=nx2)
2212 {cout<<"PAWExecutor::h_copy Error: wrong pointer to copy ["<<ic1<<"] for NBins="
2213 <<nx2<<endl; return;}
2214 cout<<"copy "<<tokens[0]<<"("<<i1<<":"<<i2<<") to "<<tokens[1]<<"("<<ic1<<"->...)"<<endl;
2215 for(i=i1,ii=ic1; i<=i2 && i<nx1 && ii<nx2; i++,ii++)
2216 {(*v2)(ii) = (*v1)(i); if(v1->HasErrors()) v2->Error2(ii) = v1->Error2(i);}
2217 return;
2218}
2219
2220// Cas d'une Matrix
2221if(typeid(*mobjv1) == typeid(Matrix)) {
2222 Matrix* v1 = dynamic_cast<Matrix*>(mobjv1); nx1=v1->NRows(); ny1=v1->NCol();
2223 i2=nx1-1; j2=ny1-1;
2224 if(tks>2) if(tokens[2]!="!") sscanf(tokens[2].c_str(),"%d:%d",&i1,&i2);
2225 if(tks>3) if(tokens[3]!="!") sscanf(tokens[3].c_str(),"%d:%d",&j1,&j2);
2226 if(i1<0) i1=0; if(i2>=nx1) i2=nx1-1; if(j1<0) j1=0; if(j2>=ny1) j2=ny1-1;
2227 if(i2<i1 || j2<j1)
2228 {cout<<"PAWExecutor::h_copy Error: wrong range ["<<i1<<":"<<i2
2229 <<"] , ["<<j1<<":"<<j2<<"] for NRows,NCol="
2230 <<nx1<<" , "<<ny1<<endl; return;}
2231 Matrix* v2 = NULL;
2232 if(mobjv2==NULL)
2233 {v2 = new Matrix(i2-i1+1,j2-j1+1);
2234 omg.AddObj(v2,tokens[1]); mobjv2 = omg.GetObj(tokens[1]);}
2235 if(typeid(*mobjv2) != typeid(Matrix))
2236 {cout<<"PAWExecutor::h_copy Error: type mismatch for Matrix "
2237 <<typeid(*mobjv2).name()<<endl; return;}
2238 v2 = dynamic_cast<Matrix*>(mobjv2); nx2=v2->NRows(); ny2=v2->NCol();
2239 if(tks>4) if(tokens[4]!="!") sscanf(tokens[4].c_str(),"%d:%d",&ic1,&jc1);
2240 if(ic1<0) ic1=0; if(jc1<0) jc1=0;
2241 if(ic1>=nx2 || jc1>=ny2)
2242 {cout<<"PAWExecutor::h_copy Error: wrong pointer to copy ["<<ic1<<","<<jc1
2243 <<"] for NRows,NCol="<<nx2<<","<<ny2<<endl; return;}
2244 cout<<"copy "<<tokens[0]<<"("<<i1<<":"<<i2<<","<<j1<<":"<<j2
2245 <<") to "<<tokens[1]<<"("<<ic1<<","<<jc1<<"->...)"<<endl;
2246 for(i=i1,ii=ic1; i<=i2 && i<nx1 && ii<nx2; i++,ii++)
2247 for(j=j1,jj=jc1; j<=j2 && j<ny1 && jj<ny2; j++,jj++) (*v2)(ii,jj) = (*v1)(i,j);
2248 return;
2249}
2250
2251// Cas d'un Histo2D
2252if(typeid(*mobjv1) == typeid(Histo2D)) {
2253 Histo2D* v1 = dynamic_cast<Histo2D*>(mobjv1); nx1=v1->NBinX(); ny1=v1->NBinY();
2254 i2=nx1-1; j2=ny1-1;
2255 if(tks>2) if(tokens[2]!="!") sscanf(tokens[2].c_str(),"%d:%d",&i1,&i2);
2256 if(tks>3) if(tokens[3]!="!") sscanf(tokens[3].c_str(),"%d:%d",&j1,&j2);
2257 if(i1<0) i1=0; if(i2>=nx1) i2=nx1-1; if(j1<0) j1=0; if(j2>=ny1) j2=ny1-1;
2258 if(i2<i1 || j2<j1)
2259 {cout<<"PAWExecutor::h_copy Error: wrong range ["<<i1<<":"<<i2
2260 <<"] , ["<<j1<<":"<<j2<<"] for NBinX,NBinY="
2261 <<nx1<<" , "<<ny1<<endl; return;}
2262 Histo2D* v2 = NULL;
2263 if(mobjv2==NULL)
2264 {v2 = new Histo2D(0.,(r_8)(i2-i1+1),i2-i1+1,0.,(r_8)(j2-j1+1),j2-j1+1);
2265 omg.AddObj(v2,tokens[1]); mobjv2 = omg.GetObj(tokens[1]);}
2266 if(typeid(*mobjv2) != typeid(Histo2D))
2267 {cout<<"PAWExecutor::h_copy Error: type mismatch for Histo2D"
2268 <<typeid(*mobjv2).name()<<endl; return;}
2269 v2 = dynamic_cast<Histo2D*>(mobjv2); nx2=v2->NBinX(); ny2=v2->NBinY();
2270 if(v1->HasErrors() && !(v2->HasErrors())) v2->Errors();
2271 if(tks>4) sscanf(tokens[4].c_str(),"%d:%d",&ic1,&jc1);
2272 if(ic1<0) ic1=0; if(jc1<0) jc1=0;
2273 if(ic1>=nx2 || jc1>=ny2)
2274 {cout<<"PAWExecutor::h_copy Error: wrong pointer to copy ["<<ic1<<","<<jc1
2275 <<"] for NBinX,NBinY="<<nx2<<","<<ny2<<endl; return;}
2276 cout<<"copy "<<tokens[0]<<"("<<i1<<":"<<i2<<","<<j1<<":"<<j2
2277 <<") to "<<tokens[1]<<"("<<ic1<<","<<jc1<<"->...)"<<endl;
2278 for(i=i1,ii=ic1; i<=i2 && i<nx1 && ii<nx2; i++,ii++)
2279 for(j=j1,jj=jc1; j<=j2 && j<ny1 && jj<ny2; j++,jj++)
2280 {(*v2)(ii,jj) = (*v1)(i,j); if(v1->HasErrors()) v2->Error2(ii,jj) = v1->Error2(i,j);}
2281 return;
2282}
2283
2284// Cas non prevu
2285cout<<"PAWExecutor::h_copy Error: type mismatch for Vector/Matrix/Histo/Histo2D\n"
2286 <<typeid(*mobjv1).name()<<endl;
2287return;
2288}
2289
2290/* methode */
2291void PAWExecutor::h_set(string dum,vector<string>& tokens)
2292// Mise de valeurs/erreurs d'un histo 1D ou 2D a une valeur donnee
2293// dum = err : on change les valeurs des erreurs
2294// cont : on change les valeurs du contenu des bins
2295// tokens[0] : nom de l'histogramme
2296// tokens[1] : valeur de remplacement
2297// tokens[2-3] : i1:i2 j1:j2 intervalle des bins qui doivent etre remplace
2298// : v v1:v2 remplacement des bins ayant une valeur dans cet intervalle
2299// : e e1:e2 remplacement des bins ayant une erreur dans cet intervalle
2300{
2301int_4 tks = tokens.size();
2302if(tks<3)
2303 {cout<<"Usage: h/set/[err,cont] namehisto setvalue i1[:i2] [j1[:j2]]\n"
2304 <<" v v1:v2\n"
2305 <<" e e1:e2"
2306 <<endl; return;}
2307
2308// Decodage arguments
2309bool replerr = false; if(dum=="err") replerr = true;
2310r_8 setval = atof(tokens[1].c_str());
2311int_4 testcont=0; if(tokens[2]=="v") testcont=1; if(tokens[2]=="e") testcont=2;
2312int_4 i1=-1, i2=-1, j1=-1, j2=-1;
2313r_8 v1=0., v2=0.;
2314if(testcont==0) {
2315 sscanf(tokens[2].c_str(),"%d:%d",&i1,&i2);
2316 if(tks>3) sscanf(tokens[3].c_str(),"%d:%d",&j1,&j2);
2317} else {
2318 if(tks<=3)
2319 {cout<<"PAWExecutor::h_set Error: h/set/... v v1:v2, please give v1:v2"<<endl;
2320 return;}
2321 sscanf(tokens[3].c_str(),"%lf:%lf",&v1,&v2);
2322}
2323
2324if(replerr) {if(setval<0.) setval = 0.; else setval *= setval;}
2325if(testcont!=0 && v2<v1)
2326 {cout<<"PAWExecutor::h_set Error: bad value range="<<v1<<","<<v2<<endl; return;}
2327
2328// identification objet
2329NamedObjMgr omg;
2330AnyDataObj* mobj = omg.GetObj(tokens[0]);
2331if( mobj==NULL)
2332 {cout<<"PAWExecutor::h_set Error: unknow object "<<tokens[0]<<endl;
2333 return;}
2334
2335// Traitement
2336if(typeid(*mobj) == typeid(Histo)) { // Histo 1D
2337 Histo* h = dynamic_cast<Histo*>(mobj);
2338 if( (replerr || testcont==2) && !(h->HasErrors()) )
2339 {cout<<"PAWExecutor::h_set Error: histogram has no errors"<<endl; return;}
2340 if(testcont!=0) {i1=0; i2=h->NBins()-1;}
2341 if(i1<0 || i1>=h->NBins())
2342 {cout<<"PAWExecutor::h_set Error: bad bin range i1="<<i1<<endl; return;}
2343 if(i2<i1) i2=i1; if(i2>=h->NBins()) i2=h->NBins()-1;
2344 for(int_4 i=i1;i<=i2;i++) {
2345 bool change = true;
2346 if(testcont==1) {if((*h)(i)<v1 || (*h)(i)>v2) change = false;}
2347 else if(testcont==2) {if(h->Error(i)<v1 || h->Error(i)>v2) change = false;}
2348 if(!change) continue;
2349 if(replerr) h->Error2(i) = setval; else (*h)(i) = setval;
2350 }
2351
2352} else if(typeid(*mobj) == typeid(Histo2D)) { // Histo 2D
2353 Histo2D* h2 = dynamic_cast<Histo2D*>(mobj);
2354 if( (replerr || testcont==2) && !(h2->HasErrors()) )
2355 {cout<<"PAWExecutor::h_set Error: histogram has no errors"<<endl; return;}
2356 if(testcont!=0) {i1=0; i2=h2->NBinX()-1;j1=0; j2=h2->NBinY()-1;}
2357 if(i1<0 || i1>=h2->NBinX() || j1<0 || j1>=h2->NBinY())
2358 {cout<<"PAWExecutor::h_set Error: bad bin range i1,j1="<<i1<<","<<j1<<endl; return;}
2359 if(i2<i1) i2=i1; if(i2>=h2->NBinX()) i2=h2->NBinX()-1;
2360 if(j2<j1) j2=j1; if(j2>=h2->NBinY()) j2=h2->NBinY()-1;
2361 for(int_4 i=i1;i<=i2;i++) for(int_4 j=j1;j<=j2;j++) {
2362 bool change = true;
2363 if(testcont==1) {if((*h2)(i,j)<v1 || (*h2)(i,j)>v2) change = false;}
2364 else if(testcont==2) {if(h2->Error(i,j)<v1 || h2->Error(i,j)>v2) change = false;}
2365 if(!change) continue;
2366 if(replerr) h2->Error2(i,j) = setval; else (*h2)(i,j) = setval;
2367 }
2368
2369} else {
2370 cout<<"PAWExecutor::h_set Error: type mismatch for Histo/Histo2D\n"
2371 <<typeid(*mobj).name()<<endl;
2372 return;
2373}
2374
2375}
2376
2377/* methode */
2378void PAWExecutor::h_err(vector<string>& tokens)
2379// Mise des erreurs d'un histo 1D ou 2D a une valeur
2380// donnee par une fonction de la valeur du bin
2381// tokens[0] : nom de l'histogramme
2382// tokens[1] : expression de la fonction
2383{
2384if(tokens.size()<2)
2385 {cout<<"Usage: h/err namehisto expr_func"<<endl; return;}
2386
2387// identification objet
2388NamedObjMgr omg;
2389AnyDataObj* mobj = omg.GetObj(tokens[0]);
2390if( mobj==NULL)
2391 {cout<<"PAWExecutor::h_err Error: unknow object "<<tokens[0]<<endl;
2392 return;}
2393
2394// Fonction
2395FILE *fip = NULL;
2396string expfunc = ""; {for(int_4 i=1;i<(int)tokens.size();i++) expfunc += tokens[i];}
2397string fname = "func1or2_pia_dl.c";
2398string func = "func1or2_pia_dl_func";
2399if((fip = fopen(fname.c_str(), "w")) == NULL)
2400 {cout<<"PAWExecutor::h_err Error: open function file "<<fname<<endl;
2401 return;}
2402fprintf(fip,"#include <math.h>\n");
2403fprintf(fip,"double %s(double x) \n{\n",func.c_str());
2404fprintf(fip,"return(%s); \n}\n", expfunc.c_str());
2405fclose(fip);
2406DlFunctionOfX f = (DlFunctionOfX) omg.GetServiceObj()->LinkFunctionFromFile(fname,func);
2407if(!f)
2408 {cout<<"PAWExecutor::h_err Error: bad function "<<func<<","<<fname<<endl;
2409 return;}
2410
2411// Traitement
2412if(typeid(*mobj) == typeid(Histo)) { // Histo 1D
2413 Histo* h = dynamic_cast<Histo*>(mobj);
2414 if(!(h->HasErrors())) h->Errors();
2415 for(int_4 i=0;i<h->NBins();i++) {
2416 r_8 x = (*h)(i);
2417 r_8 e = f(x);
2418 h->SetErr2(i,e*e);
2419 }
2420
2421} else if(typeid(*mobj) == typeid(Histo2D)) { // Histo 2D
2422 Histo2D* h2 = dynamic_cast<Histo2D*>(mobj);
2423 if(!(h2->HasErrors())) h2->Errors();
2424 for(int_4 i=0;i<h2->NBinX();i++) for(int_4 j=0;j<h2->NBinY();j++) {
2425 r_8 x = (*h2)(i,j);
2426 r_8 e = f(x);
2427 h2->Error2(i,j) = e*e;
2428 }
2429
2430} else {
2431 cout<<"PAWExecutor::h_err Error: type mismatch for Histo/Histo2D\n"
2432 <<typeid(*mobj).name()<<endl;
2433 return;
2434}
2435
2436}
2437
2438/* methode */
2439void PAWExecutor::herr_mean_variance(vector<string>& tokens,int var)
2440// Pour appliquer ToMean ou FromMean a un HistoErr ou Histo2DErr
2441// Pour appliquer ToVariance ou FromVariance a un HistoErr ou Histo2DErr
2442{
2443 int_4 tks = tokens.size();
2444 if(tks<1) {
2445 cout<<"Usage: herr_mean_variance namehisterr [+1,-1]"<<endl;
2446 return;
2447 }
2448
2449 NamedObjMgr omg;
2450 AnyDataObj* mobj = omg.GetObj(tokens[0]);
2451 if( mobj==NULL)
2452 {cout<<"PAWExecutor::h_copy Error: unknow object "<<tokens[0]<<endl;
2453 return;}
2454
2455 int sens = 1;
2456 if(tks>1) sens = atoi(tokens[1].c_str());
2457
2458 HistoErr *herr = dynamic_cast<HistoErr*>(mobj);
2459 Histo2DErr *herr2 = dynamic_cast<Histo2DErr*>(mobj);
2460
2461 if(sens>=0) {
2462 if(herr) {if(var==1) herr->ToVariance(); else herr->ToMean();}
2463 else if(herr2) {if(var==1) herr2->ToVariance(); else herr2->ToMean();}
2464 } else {
2465 if(herr) {if(var==1) herr->FromVariance(); else herr->FromMean();}
2466 else if(herr2) {if(var==1) herr2->FromVariance(); else herr2->FromMean();}
2467 }
2468
2469 int nmean = 0;
2470 if(herr) nmean = herr->NMean();
2471 else if(herr2) nmean = herr2->NMean();
2472 cout<<tokens[0]<<" : nmean = "<<nmean<<endl;
2473
2474}
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