source: Sophya/trunk/SophyaLib/HiStats/ntuple.cc@ 2663

Last change on this file since 2663 was 2663, checked in by ansari, 20 years ago

modification classe NTuple : possibilites d'avoir des NTuples en float et double (defaut=double) - Reza 7 Avril 2005

File size: 17.4 KB
Line 
1#include <stdio.h>
2#include <string.h>
3
4#include "sopnamsp.h"
5#include "strutil.h"
6#include "perrors.h"
7#include "ntuple.h"
8
9
10#define LENNAME 8
11#define LENNAME1 (LENNAME+1)
12#define BADVAL -1.e19
13
14/*!
15 \class SOPHYA::NTuple
16 \ingroup HiStats
17 Simple NTuple class (a Table or 2-D data set) with floating value
18 columns.
19 \sa SOPHYA::ObjFileIO<NTuple>
20
21 \code
22 #include "ntuple.h"
23 // ...
24 char * names[3] = {"XPos", "YPos", "Val"};
25 // NTuple (Table) creation with 3 columns
26 NTuple nt(3, names);
27 // Filling the NTuple
28 r_4 x[3];
29 for(int i=0; i<63; i++) {
30 x[0] = (i%9)-4.; x[1] = (i/9)-3.; x[2] = x[0]*x[0]+x[1]*x[1];
31 nt.Fill(x);
32 }
33 // Printing table info
34 cout << nt ;
35 // Saving object into a PPF file
36 POutPersist po("nt.ppf");
37 po << nt ;
38 \endcode
39*/
40
41//++
42// Class NTuple
43// Lib Outils++
44// include ntuple.h
45//
46// Classe de ntuples
47//--
48//++
49// Links Parents
50// PPersist
51// NTupleInterface
52//--
53
54/* --Methode-- */
55//! Default constructor
56//++
57NTuple::NTuple()
58//
59// Createur par defaut
60//--
61{
62mNVar = mNEnt = mBlk = mNBlk = 0;
63mVar = NULL;
64mVarD = NULL;
65mFgDouble = true;
66mInfo = NULL;
67}
68
69
70//! Constructor with specification of number of columns and column name
71/*!
72 \param nvar : Number of columns in the table
73 \param noms : Array of column names (length(name) < 8 characters)
74 \param blk : Optional argument specifying number of table lines
75 in a given data block
76 \param fgdouble : if \b true: internal data kept as double precision values (r_8),
77 simple precision (r_4) otherwise
78 */
79//++
80NTuple::NTuple(int nvar, char** noms, int blk, bool fgdouble)
81//
82// Createur d'un ntuple de `nvar' variables dont les
83// noms sont dans le tableau de cahines de caracteres `noms'
84// avec `blk' d'evenements par blocks.
85//--
86{
87mNVar = mNEnt = mBlk = mNBlk = 0;
88mVar = NULL;
89mVarD = NULL;
90mInfo = NULL;
91if (nvar <= 0) throw ParmError("NTuple::NTuple(nvar<=0) ");
92mNVar = nvar;
93mVar = new r_4[nvar];
94mVarD = new r_8[nvar];
95if (blk < 10) blk = 10;
96mBlk = blk;
97
98if (fgdouble) {
99 r_8* pt = new r_8[nvar*blk];
100 mNBlk = 1;
101 mPtrD.push_back(pt);
102 mFgDouble = true;
103}
104else {
105 r_4* pt = new r_4[nvar*blk];
106 mNBlk = 1;
107 mPtr.push_back(pt);
108 mFgDouble = false;
109}
110for(int i=0; i<nvar; i++) mNames.push_back(noms[i]);
111return;
112}
113
114//! Copy constructor - Copies the table definition and associated data
115// cmv 8/10/99
116//++
117NTuple::NTuple(const NTuple& NT)
118//
119// Createur par copie (clone).
120//--
121: mNVar(0), mNEnt(0), mBlk(0), mNBlk(0)
122, mVar(NULL), mVarD(NULL), mInfo(NULL)
123{
124if(NT.mNVar<=0) return; // cas ou NT est cree par defaut
125mNVar = NT.mNVar;
126mBlk = NT.mBlk;
127mVar = new r_4[NT.mNVar];
128mVarD = new r_8[NT.mNVar];
129
130mNames = NT.mNames;
131
132int i;
133mFgDouble = NT.mFgDouble;
134if (mFgDouble) {
135 r_8* pt = new r_8[mNVar*mBlk];
136 mNBlk = 1; mPtrD.push_back(pt);
137 if(NT.mNEnt > 0)
138 for(i=0;i<NT.mNEnt;i++) {pt=NT.GetVecD(i,NULL); Fill(pt);}
139}
140else {
141 r_4* pt = new r_4[mNVar*mBlk];
142 mNBlk = 1; mPtr.push_back(pt);
143 for(i=0;i<NT.mNEnt;i++) {pt=NT.GetVec(i,NULL); Fill(pt);}
144}
145
146mNames = NT.mNames;
147
148if(NT.mInfo!=NULL) {mInfo = new DVList; *mInfo = *(NT.mInfo);}
149
150return;
151}
152
153/* --Methode--
154//! Constructor with table initialized from a PPF file
155//++
156NTuple::NTuple(char *flnm)
157//
158// Createur lecture fichier ppersist.
159//--
160{
161mNVar = mNEnt = mBlk = mNBlk = 0;
162mVar = NULL;
163mVarD = NULL;
164mNames = NULL;
165mInfo = NULL;
166PInPersist s(flnm);
167ObjFileIO<NTuple> fiont(this);
168fiont.Read(s);
169}
170*/
171
172/* --Methode-- */
173NTuple::~NTuple()
174{
175Clean();
176}
177
178/* --Methode-- */
179//! Clear the data table definition and deletes the associated data
180void NTuple::Clean()
181{
182if (mVar) delete[] mVar;
183if (mVarD) delete[] mVarD;
184if (mInfo) delete mInfo;
185int i;
186if(mNBlk>0) {
187 if (mFgDouble) for(i=0; i<mNBlk; i++) delete[] mPtrD[i];
188 else for(i=0; i<mNBlk; i++) delete[] mPtr[i];
189}
190if (mFgDouble) mPtrD.erase(mPtrD.begin(), mPtrD.end());
191else mPtr.erase(mPtr.begin(), mPtr.end());
192mNVar = mNEnt = mBlk = mNBlk = 0;
193mVar = NULL;
194mVarD = NULL;
195mInfo = NULL;
196return;
197}
198
199/* --Methode-- cmv 08/10/99 */
200//! = operator, copies the data table definition and its contents
201//++
202NTuple& NTuple::operator = (const NTuple& NT)
203//
204// Operateur egal (clone).
205//--
206{
207if(this == &NT) return *this;
208Clean();
209if(NT.mNVar<=0) return *this; // cas ou NT est cree par defaut
210mNVar = NT.mNVar;
211mBlk = NT.mBlk;
212mVar = new r_4[NT.mNVar];
213mVarD = new r_8[NT.mNVar];
214
215mNames = NT.mNames;
216
217int i;
218mFgDouble = NT.mFgDouble;
219if (mFgDouble) {
220 r_8* pt = new r_8[mNVar*mBlk];
221 mNBlk = 1; mPtrD.push_back(pt);
222 if(NT.mNEnt > 0)
223 for(i=0;i<NT.mNEnt;i++) {pt=NT.GetVecD(i,NULL); Fill(pt);}
224}
225else {
226 r_4* pt = new r_4[mNVar*mBlk];
227 mNBlk = 1; mPtr.push_back(pt);
228 for(i=0;i<NT.mNEnt;i++) {pt=NT.GetVec(i,NULL); Fill(pt);}
229}
230
231if(NT.mInfo!=NULL) {mInfo = new DVList; *mInfo = *(NT.mInfo);}
232
233return *this;
234}
235
236/* --Methode-- */
237//! Adds an entry (a line) to the table
238/*!
239 \param x : content of the line to be appended to the table
240 */
241//++
242void NTuple::Fill(r_4* x)
243//
244// Remplit le ntuple avec le tableau cd reels `x'.
245//--
246{
247int numb = mNEnt/mBlk;
248if (numb >= mNBlk) {
249 if (mFgDouble) {
250 r_8* pt = new r_8[mNVar*mBlk];
251 mNBlk++;
252 mPtrD.push_back(pt);
253 }
254 else {
255 r_4* pt = new r_4[mNVar*mBlk];
256 mNBlk++;
257 mPtr.push_back(pt);
258 }
259}
260
261int offb = mNEnt-numb*mBlk;
262if (mFgDouble)
263 for(int i=0; i<mNVar; i++) (mPtrD[numb]+offb*mNVar)[i] = x[i];
264else memcpy((mPtr[numb]+offb*mNVar), x, mNVar*sizeof(r_4));
265mNEnt++;
266return;
267}
268
269/* --Methode-- */
270//! Adds an entry (a line) to the table (double precision)
271/*!
272 \param x : content of the line to be appended to the table
273 */
274//++
275void NTuple::Fill(r_8* x)
276//
277// Remplit le ntuple avec le tableau double precision `x'.
278//--
279{
280int numb = mNEnt/mBlk;
281if (numb >= mNBlk) {
282 if (mFgDouble) {
283 r_8* pt = new r_8[mNVar*mBlk];
284 mNBlk++;
285 mPtrD.push_back(pt);
286 }
287 else {
288 r_4* pt = new r_4[mNVar*mBlk];
289 mNBlk++;
290 mPtr.push_back(pt);
291 }
292}
293
294int offb = mNEnt-numb*mBlk;
295if (mFgDouble)
296 memcpy((mPtrD[numb]+offb*mNVar), x, mNVar*sizeof(r_8));
297else
298 for(int i=0; i<mNVar; i++) (mPtr[numb]+offb*mNVar)[i] = x[i];
299
300mNEnt++;
301return;
302}
303
304
305/* --Methode-- */
306//++
307float NTuple::GetVal(int n, int k) const
308//
309// Retourne la valeur de la variable `k' de l'evenement `n'.
310//--
311{
312if (n >= mNEnt) return(BADVAL);
313if ( (k < 0) || (k >= mNVar) ) return(BADVAL);
314int numb = n/mBlk;
315int offb = n-numb*mBlk;
316if ( mFgDouble) return(*(mPtrD[numb]+offb*mNVar+k));
317else return(*(mPtr[numb]+offb*mNVar+k));
318}
319
320
321/* --Methode-- */
322//++
323int NTuple::IndexNom(const char* nom) const
324//
325// Retourne le numero de la variable de nom `nom'.
326//--
327{
328int i;
329string snom = nom;
330for(i=0; i<mNVar; i++)
331 if ( mNames[i] == snom) return(i);
332return(-1);
333}
334
335
336static char nomretour[256];
337/* --Methode-- */
338//++
339char* NTuple::NomIndex(int k) const
340//
341// Retourne le nom de la variable numero 'k'
342//--
343{
344nomretour[0] = '\0';
345if ((k >= 0) && (k < mNVar)) strncpy(nomretour, mNames[k].c_str(), 255);
346return(nomretour);
347}
348
349
350/* --Methode-- */
351//++
352r_4* NTuple::GetVec(int n, r_4* ret) const
353//
354// Retourne l'evenement `n' dans le vecteur `ret'.
355//--
356{
357int i;
358if (ret == NULL) ret = mVar;
359if (n >= mNEnt) {
360 for(i=0; i<mNVar; i++) ret[i] = BADVAL;
361 return(ret);
362}
363
364int numb = n/mBlk;
365int offb = n-numb*mBlk;
366if (mFgDouble) for(i=0; i<mNVar; i++) ret[i] = (mPtrD[numb]+offb*mNVar)[i];
367else memcpy(ret, (mPtr[numb]+offb*mNVar), mNVar*sizeof(r_4));
368return(ret);
369}
370
371/* --Methode-- */
372//++
373r_8* NTuple::GetVecD(int n, r_8* ret) const
374//
375// Retourne l'evenement `n' dans le vecteur `ret'.
376//--
377{
378int i;
379if (ret == NULL) ret = mVarD;
380if (n >= mNEnt) {
381 for(i=0; i<mNVar; i++) ret[i] = BADVAL;
382 return(ret);
383}
384
385int numb = n/mBlk;
386int offb = n-numb*mBlk;
387if (mFgDouble)
388 memcpy(ret, (mPtrD[numb]+offb*mNVar), mNVar*sizeof(r_8));
389for(i=0; i<mNVar; i++) ret[i] = (mPtr[numb]+offb*mNVar)[i];
390return(ret);
391}
392
393
394
395/* --Methode-- */
396//++
397DVList& NTuple::Info()
398//
399// Renvoie une référence sur l'objet DVList Associé
400//--
401{
402if (mInfo == NULL) mInfo = new DVList;
403return(*mInfo);
404}
405
406/* --Methode-- */
407//++
408void NTuple::Print(int num, int nmax) const
409//
410// Imprime `nmax' evenements a partir du numero `num'.
411//--
412{
413int i,j;
414
415printf("Num ");
416for(i=0; i<mNVar; i++) printf("%8s ", mNames[i].c_str());
417putchar('\n');
418
419if (nmax <= 0) nmax = 1;
420if (num < 0) num = 0;
421nmax += num;
422if (nmax > mNEnt) nmax = mNEnt;
423for(i=num; i<nmax; i++) {
424 GetVec(i, NULL);
425 printf("%6d ", i);
426 for(j=0; j<mNVar; j++) printf("%8g ", (float)mVar[j]);
427 putchar('\n');
428}
429return;
430}
431
432/* --Methode-- */
433//! Prints table definition and number of entries
434//++
435void NTuple::Show(ostream& os) const
436//
437// Imprime l'information generale sur le ntuple.
438//--
439{
440char * tt = "float";
441if (mFgDouble) tt = "double";
442os << "NTuple T=" << tt << " : NVar= " << mNVar << " NEnt=" << mNEnt
443 << " (Blk Sz,Nb= " << mBlk << " ," << mNBlk << ")\n";
444os << " Variables Min Max \n";
445int i;
446double min, max;
447char buff[128];
448for(i=0; i<mNVar; i++) {
449 GetMinMax(i, min, max);
450 sprintf(buff, "%3d %16s %10g %10g \n", i, mNames[i].c_str(), min, max);
451 os << (string)buff ;
452 }
453os << endl;
454}
455
456
457/* --Methode-- */
458//! Fills the table, reading lines from an ascii file
459/*!
460 \param fn : file name
461 \param defval : default value for empty cells in the ascii file
462 */
463//++
464int NTuple::FillFromASCIIFile(string const& fn, float defval)
465//
466// Remplit le ntuple a partir d'un fichier ASCII.
467// Renvoie le nombre de lignes ajoutees.
468//--
469{
470if (NbColumns() < 1) {
471 cout << "NTuple::FillFromASCIIFile() Ntuple has " << NbColumns() << " columns" << endl;
472 return(-1);
473 }
474FILE * fip = fopen(fn.c_str(), "r");
475if (fip == NULL) {
476 cout << "NTuple::FillFromASCIIFile() Error opening file " << fn << endl;
477 return(-2);
478 }
479
480char lineb[4096];
481char *line;
482char* ccp;
483int j,kk;
484int postab, posb;
485double* xv = new double[NbColumns()];
486
487int nlread = 0;
488int nvar = NbColumns();
489// On boucle sur toutes les lignes
490while (fgets(lineb,4096,fip) != NULL) {
491 lineb[4095] = '\0';
492 j = 0; line = lineb;
493// On enleve les espaces et tab de debut
494 while ( (line[j] != '\0') && ((line[j] == ' ') || (line[j] == '\t')) ) j++;
495 line = lineb+j;
496// Il faut que le premier caractere non-espace soit un digit, ou + ou - ou .
497 if (!( isdigit(line[0]) || (line[0] == '+') || (line[0] == '-') || (line[0] == '.') )) continue;
498 ccp = line;
499 for(kk=0; kk<nvar; kk++) xv[kk] = defval;
500 for(kk=0; kk<nvar; kk++) {
501// Les mots sont separes par des espaces ou des tab
502 postab = posc(ccp, '\t' );
503 posb = posc(ccp, ' ' );
504 if (postab >= 0) {
505 if (posb < 0) posb = postab;
506 else if (postab < posb) posb = postab;
507 }
508 if (posb >= 0) ccp[posb] = '\0';
509 if ( isdigit(line[0]) || (line[0] == '+') || (line[0] == '-') || (line[0] == '.') )
510 xv[kk] = atof(ccp);
511 if (posb < 0) break;
512 ccp += posb+1; j = 0;
513 while ( (ccp[j] != '\0') && ((ccp[j] == ' ') || (ccp[j] == '\t')) ) j++;
514 ccp += j;
515 }
516 Fill(xv);
517 nlread++;
518 }
519
520delete[] xv;
521cout << "NTuple::FillFromASCIIFile( " << fn << ") " << nlread << " fill from file " << endl;
522return(nlread);
523}
524
525
526// ------- Implementation de l interface NTuple ---------
527
528/* --Methode-- */
529uint_4 NTuple::NbLines() const
530{
531return(NEntry());
532}
533/* --Methode-- */
534uint_4 NTuple::NbColumns() const
535{
536return(NVar());
537}
538
539/* --Methode-- */
540r_8 * NTuple::GetLineD(int n) const
541{
542return(GetVecD(n));
543}
544
545/* --Methode-- */
546r_8 NTuple::GetCell(int n, int k) const
547{
548return(GetVal(n, k));
549}
550
551/* --Methode-- */
552r_8 NTuple::GetCell(int n, string const & nom) const
553{
554return(GetVal(n, nom.c_str()));
555}
556
557/* --Methode-- */
558//++
559void NTuple::GetMinMax(int k, double& min, double& max) const
560//
561// Retourne le minimum et le maximum de la variable `k'.
562//--
563{
564min = 9.e19; max = -9.e19;
565if ( (k < 0) || (k >= mNVar) ) return;
566int jb,ib,i;
567double x;
568i=0;
569for(jb=0; jb< mNBlk; jb++)
570 for(ib=0; ib< mBlk; ib++) {
571 if (i >= mNEnt) break;
572 i++;
573 x = (mFgDouble) ? *(mPtrD[jb]+ib*mNVar+k) : *(mPtr[jb]+ib*mNVar+k);
574 if(i==1) {min = x; max = x;}
575 if (x < min) min = x;
576 if (x > max) max = x;
577 }
578return;
579}
580
581/* --Methode-- */
582void NTuple::GetMinMax(string const & nom, double& min, double& max) const
583{
584GetMinMax(IndexNom(nom.c_str()), min, max);
585}
586
587/* --Methode-- */
588int NTuple::ColumnIndex(string const & nom) const
589{
590return(IndexNom(nom.c_str()));
591}
592
593/* --Methode-- */
594string NTuple::ColumnName(int k) const
595{
596return(NomIndex(k));
597}
598
599/* --Methode-- */
600//++
601string NTuple::VarList_C(const char* nomx) const
602//
603// Retourne une chaine de caracteres avec la declaration des noms de
604// variables. si "nomx!=NULL" , des instructions d'affectation
605// a partir d'un tableau "nomx[i]" sont ajoutees.
606//--
607{
608string rets="";
609int i;
610for(i=0; i<mNVar; i++) {
611 if ( (i%5 == 0) && (i > 0) ) rets += ";";
612 if (i%5 == 0) rets += "\ndouble ";
613 else rets += ",";
614 rets += mNames[i];
615 }
616rets += "; \n";
617if (nomx) {
618 char buff[256];
619 for(i=0; i<mNVar; i++) {
620 sprintf(buff,"%s=%s[%d]; ", mNames[i].c_str(), nomx, i);
621 rets += buff;
622 if ( (i%3 == 0) && (i > 0) ) rets += "\n";
623 }
624 }
625
626return(rets);
627}
628
629
630/* --Methode-- */
631//++
632string NTuple::LineHeaderToString() const
633// Retourne une chaine de caracteres avec la liste des noms de
634// variables, utilisables pour une impression
635//--
636{
637char buff[32];
638string rets=" Num ";
639for(int i=0; i<mNVar; i++) {
640 sprintf(buff, "%8s ", mNames[i].c_str());
641 rets += buff;
642 }
643rets += '\n';
644return(rets);
645}
646
647/* --Methode-- */
648//++
649string NTuple::LineToString(int n) const
650// Retourne une chaine de caracteres avec le contenu de la ligne "n"
651// utilisable pour une impression
652//--
653{
654char buff[32];
655double* val;
656val = GetLineD(n);
657sprintf(buff,"%6d: ",n);
658string rets=buff;
659int i;
660for(i=0; i<mNVar; i++) {
661 sprintf(buff, "%8.3g ", val[i]);
662 rets += buff;
663 }
664rets += '\n';
665return(rets);
666}
667
668/*!
669 \class SOPHYA::ObjFileIO<NTuple>
670 \ingroup HiStats
671 Persistence (serialisation) handler for class NTuple
672*/
673
674/* --Methode-- */
675//++
676DECL_TEMP_SPEC /* equivalent a template <> , pour SGI-CC en particulier */
677void ObjFileIO<NTuple>::WriteSelf(POutPersist& s) const
678//
679// Ecriture ppersist du ntuple.
680//--
681{
682if (dobj == NULL) return;
683
684// On ecrit cette chaine pour compatibilite avec les anciennes version (1,2)
685string strg = "NTuple";
686s.Put(strg);
687
688// On ecrit 3 uint_4 ....
689// [0]: Numero de version ;
690// [1] : bit1 non nul -> has info, bit 2 non nul mFgDouble=true
691// [2] : reserve
692uint_4 itab[3];
693itab[0] = 3; // Numero de version a 3
694itab[1] = itab[2] = 0;
695if (dobj->mInfo) itab[1] = 1;
696if (dobj->mFgDouble) itab[1] += 2;
697s.Put(itab, 3);
698
699s.Put(dobj->mNVar);
700for(int k=0; k<dobj->mNVar; k++) s.Put(dobj->mNames[k]);
701s.Put(dobj->mNEnt);
702s.Put(dobj->mBlk);
703s.Put(dobj->mNBlk);
704
705if (dobj->mInfo) s << (*(dobj->mInfo));
706int jb;
707if (dobj->mFgDouble)
708 for(jb=0; jb<dobj->mNBlk; jb++)
709 s.Put(dobj->mPtrD[jb], dobj->mNVar*dobj->mBlk);
710else
711 for(jb=0; jb<dobj->mNBlk; jb++)
712 s.Put(dobj->mPtr[jb], dobj->mNVar*dobj->mBlk);
713return;
714}
715
716/* --Methode-- */
717//++
718DECL_TEMP_SPEC /* equivalent a template <> , pour SGI-CC en particulier */
719void ObjFileIO<NTuple>::ReadSelf(PInPersist& s)
720//
721// Lecture ppersist du ntuple.
722//--
723{
724
725if (dobj == NULL) dobj = new NTuple;
726else dobj->Clean();
727
728bool hadinfo = false;
729string strg;
730s.Get(strg);
731uint_4 itab[3] = {0,0,0};
732if (strg == "NTuple") {
733 s.Get(itab, 3);
734 if ( ((itab[0] < 3) && (itab[1] != 0)) ||
735 ((itab[0] >= 3) && ((itab[1]&1) == 1)) ) hadinfo = true;
736}
737else {
738// Ancienne version de PPF NTuple - Pour savoir s'il y avait un DVList Info associe
739 char buff[256];
740 strcpy(buff, strg.c_str());
741 if (strncmp(buff+strlen(buff)-7, "HasInfo", 7) == 0) hadinfo = true;
742}
743if (itab[0] < 3) { // Lecture version anterieures V= 1 , 2
744 s.Get(dobj->mNVar);
745 dobj->mVar = new r_4[dobj->mNVar];
746 dobj->mVarD = new r_8[dobj->mNVar];
747
748 char * names = new char[dobj->mNVar*LENNAME1];
749 s.GetBytes(names, dobj->mNVar*LENNAME1);
750 for(int k=0; k<dobj->mNVar; k++) dobj->mNames.push_back(names+k*LENNAME1);
751 s.Get(dobj->mNEnt);
752 s.Get(dobj->mBlk);
753 s.Get(dobj->mNBlk);
754 if (hadinfo) { // Lecture eventuelle du DVList Info
755 if (dobj->mInfo == NULL) dobj->mInfo = new DVList;
756 s >> (*(dobj->mInfo));
757 }
758 // Il n'y avait que des NTuple avec data float pour V < 3
759 dobj->mFgDouble = false;
760 int jb;
761 for(jb=0; jb<dobj->mNBlk; jb++) {
762 r_4* pt = new r_4[dobj->mNVar*dobj->mBlk];
763 dobj->mPtr.push_back(pt);
764 s.Get(dobj->mPtr[jb], dobj->mNVar*dobj->mBlk);
765 }
766}
767else { // Lecture version V 3
768 s.Get(dobj->mNVar);
769 dobj->mVar = new r_4[dobj->mNVar];
770 dobj->mVarD = new r_8[dobj->mNVar];
771 string nom;
772 for(int k=0; k<dobj->mNVar; k++) {
773 s.Get(nom);
774 dobj->mNames.push_back(nom);
775 }
776 s.Get(dobj->mNEnt);
777 s.Get(dobj->mBlk);
778 s.Get(dobj->mNBlk);
779 if (hadinfo) { // Lecture eventuelle du DVList Info
780 if (dobj->mInfo == NULL) dobj->mInfo = new DVList;
781 s >> (*(dobj->mInfo));
782 }
783 // Il n'y avait que des NTuple avec data float pour V < 3
784 dobj->mFgDouble = ((itab[1]&2) == 2) ? true : false;
785 int jb;
786 if (dobj->mFgDouble) {
787 for(jb=0; jb<dobj->mNBlk; jb++) {
788 r_8* pt = new r_8[dobj->mNVar*dobj->mBlk];
789 dobj->mPtrD.push_back(pt);
790 s.Get(dobj->mPtrD[jb], dobj->mNVar*dobj->mBlk);
791 }
792 }
793 else {
794 for(jb=0; jb<dobj->mNBlk; jb++) {
795 r_4* pt = new r_4[dobj->mNVar*dobj->mBlk];
796 dobj->mPtr.push_back(pt);
797 s.Get(dobj->mPtr[jb], dobj->mNVar*dobj->mBlk);
798 }
799 }
800} // Fin lecture V3
801
802}
803
804
805#ifdef __CXX_PRAGMA_TEMPLATES__
806#pragma define_template ObjFileIO<NTuple>
807#endif
808
809#if defined(ANSI_TEMPLATES) || defined(GNU_TEMPLATES)
810template class ObjFileIO<NTuple>;
811#endif
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