95#define BXOPE std::cout<<\
96"FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF"<<std::endl<<\
98#define BXTXT(text) std::cout<<\
99"F "<<std::setw(40)<< text <<" F"<<std::endl
100#define BX1I(name,numb,text) std::cout<<\
101"F "<<std::setw(10)<<name<<" = "<<std::setw(10)<<numb<<" = " <<std::setw(50)<<text<<" F"<<std::endl
102#define BX1F(name,numb,text) std::cout<<"F "<<std::setw(10)<<name<<\
103 " = "<<std::setw(15)<<std::setprecision(8)<<numb<<" = "<<std::setw(40)<<text<<" F"<<std::endl
104#define BX2F(name,numb,err,text) std::cout<<"F "<<std::setw(10)<<name<<\
105" = "<<std::setw(15)<<std::setprecision(8)<<numb<<" +- "<<std::setw(15)<<std::setprecision(8)<<err<< \
106 " = "<<std::setw(25)<<text<<" F"<<std::endl
107#define BXCLO std::cout<<\
109"FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF"<<std::endl
115#define SW2 setprecision(7) << std::setw(12)
124 FoamIntegrandFunction(FunctionPtr func) : fFunc(func) {}
126 virtual ~FoamIntegrandFunction() {}
130 return fFunc(nDim,
x);
144 fDim(0), fNCells(0), fRNmax(0),
145 fOptDrive(0), fChat(0), fOptRej(0),
146 fNBin(0), fNSampl(0), fEvPerBin(0),
147 fMaskDiv(0), fInhiDiv(0), fOptPRD(0), fXdivPRD(0),
148 fNoAct(0), fLastCe(0), fCells(0),
149 fMCMonit(0), fMaxWtRej(0), fPrimAcu(0),
150 fHistEdg(0), fHistDbg(0), fHistWt(0),
151 fMCvect(0), fMCwt(0), fRvec(0),
152 fRho(0), fMethodCall(0), fPseRan(0),
153 fNCalls(0), fNEffev(0),
154 fSumWt(0), fSumWt2(0),
155 fSumOve(0), fNevGen(0),
156 fWtMax(0), fWtMin(0),
157 fPrime(0), fMCresult(0), fMCerror(0),
165 fDim(0), fNCells(0), fRNmax(0),
166 fOptDrive(0), fChat(0), fOptRej(0),
167 fNBin(0), fNSampl(0), fEvPerBin(0),
168 fMaskDiv(0), fInhiDiv(0), fOptPRD(0), fXdivPRD(0),
169 fNoAct(0), fLastCe(0), fCells(0),
170 fMCMonit(0), fMaxWtRej(0), fPrimAcu(0),
171 fHistEdg(0), fHistDbg(0), fHistWt(0),
172 fMCvect(0), fMCwt(0), fRvec(0),
173 fRho(0), fMethodCall(0), fPseRan(0),
174 fNCalls(0), fNEffev(0),
175 fSumWt(0), fSumWt2(0),
176 fSumOve(0), fNevGen(0),
177 fWtMax(0), fWtMin(0),
178 fPrime(0), fMCresult(0), fMCerror(0),
181 if(strlen(
Name) >129) {
182 Error(
"TFoam",
"Name too long %s \n",
Name);
185 fDate=
" Release date: 2005.04.10";
259 if (
fRho &&
dynamic_cast<FoamIntegrandFunction*
>(
fRho) )
delete fRho;
268 Error(
"TFoam",
"COPY CONSTRUCTOR NOT IMPLEMENTED \n");
328 BXTXT(
"****************************************");
329 BXTXT(
"****** TFoam::Initialize ******");
330 BXTXT(
"****************************************");
333 BX1I(
" kDim",
fDim,
" Dimension of the hyper-cubical space ");
334 BX1I(
" nCells",
fNCells,
" Requested number of Cells (half of them active) ");
335 BX1I(
" nSampl",
fNSampl,
" No of MC events in exploration of a cell ");
336 BX1I(
" nBin",
fNBin,
" No of bins in histograms, MC exploration of cell ");
337 BX1I(
" EvPerBin",
fEvPerBin,
" Maximum No effective_events/bin, MC exploration ");
338 BX1I(
" OptDrive",
fOptDrive,
" Type of Driver =1,2 for Sigma,WtMax ");
339 BX1I(
" OptRej",
fOptRej,
" MC rejection on/off for OptRej=0,1 ");
340 BX1F(
" MaxWtRej",
fMaxWtRej,
" Maximum wt in rejection for wt=1 evts");
344 if(
fPseRan==0)
Error(
"Initialize",
"Random number generator not set \n");
346 if(
fDim==0)
Error(
"Initialize",
"Zero dimension not allowed \n");
354 if(
fRvec==0)
Error(
"Initialize",
"Cannot initialize buffer fRvec \n");
358 if(
fAlpha==0)
Error(
"Initialize",
"Cannot initialize buffer fAlpha \n" );
361 if(
fMCvect==0)
Error(
"Initialize",
"Cannot initialize buffer fMCvect \n" );
386 htitle=
TString(
"Edge Histogram No. ");
397 htitle=
TString(
"Debug Histogram ");
429 BXTXT(
"*** TFoam::Initialize FINISHED!!! ***");
430 BX1I(
" nCalls",
fNCalls,
"Total number of function calls ");
431 BX1F(
" XPrime",
fPrime,
"Primary total integral ");
432 BX1F(
" XDiver",driver,
"Driver total integral ");
433 BX1F(
" mcResult",
fMCresult,
"Estimate of the true MC Integral ");
459 if(
fCells==0)
Error(
"InitCells",
"Cannot initialize CELLS \n" );
480 Error(
"CellFill",
"Too many cells\n");
487 cell->
Fill(Status, parent, 0, 0);
533 cell->
GetHcub(cellPosi,cellSize);
565 for(j=0; j<
fDim; j++)
566 xRand[j]= cellPosi[j] +
fAlpha[j]*(cellSize[j]);
573 for(k=0; k<
fDim; k++) {
584 if (ceSum[3]>wt) ceSum[3]=wt;
585 if (ceSum[4]<wt) ceSum[4]=wt;
587 nevEff = ceSum[1] == 0. ? 0. : ceSum[0]*ceSum[0]/ceSum[1];
592 for(k=0; k<
fDim;k++){
600 for(k=0; k<
fDim; k++) {
602 rmax= cellPosi[k] +cellSize[k];
608 if( (rmin +1
e-99 <rdiv) && (rdiv< rmax -1
e-99)) {
610 xBest= (rdiv-cellPosi[k])/cellSize[k] ;
622 Double_t intTrue = ceSum[0]/(nevMC+0.000001);
628 if(kBest == -1)
Varedu(ceSum,kBest,xBest,yBest);
630 intDriv =
sqrt(ceSum[1]/nevMC) -intTrue;
631 intPrim =
sqrt(ceSum[1]/nevMC);
634 if(kBest == -1)
Carver(kBest,xBest,yBest);
635 intDriv =ceSum[4] -intTrue;
639 Error(
"Explore",
"Wrong fOptDrive = \n" );
653 for(parent = cell->
GetPare(); parent!=0; parent = parent->
GetPare()){
656 parent->
SetIntg( parIntg +intTrue -intOld );
657 parent->
SetDriv( parDriv +intDriv -driOld );
678 Double_t swIn,swOut,sswIn,sswOut,xLo,xUp;
684 for(
Int_t kProj=0; kProj<
fDim; kProj++) {
695 aswIn += ((
TH1D *)(*
fHistEdg)[kProj])->GetBinContent(jUp);
700 swOut = (swAll-aswIn)/nent;
701 sswIn =
sqrt(asswIn) /
sqrt(nent*(xUp-xLo)) *(xUp-xLo);
702 sswOut=
sqrt(sswAll-asswIn)/
sqrt(nent*(1.0-xUp+xLo)) *(1.0-xUp+xLo);
703 if( (sswIn+sswOut) < sswtBest) {
704 sswtBest = sswIn+sswOut;
706 sigmIn = sswIn -swIn;
707 sigmOut = sswOut-swOut;
720 if( ((iBin-0.5)/
fNBin > xMin) && ((iBin-0.5)/
fNBin < xMax) ){
721 ((
TH1D *)(*
fHistDbg)[kProj])->SetBinContent(iBin,sigmIn/(xMax-xMin));
723 ((
TH1D *)(*
fHistDbg)[kProj])->SetBinContent(iBin,sigmOut/(1-xMax+xMin));
731 if(iLo == 0) xBest=yBest;
732 if(iUp ==
fNBin) yBest=xBest;
738 if( (kBest >=
fDim) || (kBest<0) )
Error(
"Varedu",
"Something wrong with kBest - kBest = %d dim = %d\n",kBest,
fDim);
751 Double_t carve,carvTot,carvMax,carvOne,binMax,binTot;
752 Int_t jLow,jUp,iLow,iUp;
758 if(bins==0)
Error(
"Carver",
"Cannot initialize buffer Bins \n" );
765 for(kProj=0; kProj<
fDim; kProj++)
771 for(iBin=0; iBin<
fNBin;iBin++){
772 bins[iBin]= ((
TH1D *)(*
fHistEdg)[kProj])->GetBinContent(iBin+1);
781 for(iBin=0;iBin<
fNBin;iBin++){
782 carvTot = carvTot + (binMax-bins[iBin]);
791 for(iBin=0; iBin<
fNBin;iBin++) {
795 for(j=iBin; j>-1; j-- ) {
796 if(theBin< bins[j])
break;
803 for(j=iBin; j<
fNBin; j++) {
804 if(theBin< bins[j])
break;
810 carve = (iUp-iLow+1)*(binMax-theBin);
811 if( carve > carvOne) {
818 if( carvTot > carvMax) {
825 if(jLow == 0 ) xBest = yBest;
826 if(jUp ==
fNBin-1) yBest = xBest;
833 for(iBin=0; iBin<
fNBin; iBin++)
834 ((
TH1D *)(*fHistDbg)[kProj])->SetBinContent(iBin+1,binMax);
835 for(iBin=jLow; iBin<jUp+1; iBin++)
836 ((
TH1D *)(*fHistDbg)[kProj])->SetBinContent(iBin+1,yLevel);
838 if( (kBest >=
fDim) || (kBest<0) )
Error(
"Carver",
"Something wrong with kBest - kBest = %d dim = %d\n",kBest,
fDim);
868 if( (iCell<0) || (iCell>
fLastCe) ) {
869 Error(
"Grow",
"Wrong iCell \n");
880 std::cout<<
fDim<<std::flush;
882 std::cout<<
"."<<std::flush;
883 if( (
fLastCe%(100*kEcho))==0) std::cout<<
"|"<<
fLastCe<<std::endl<<std::flush;
887 if(
Divide( newCell )==0)
break;
890 std::cout<<std::endl<<std::flush;
907 if(
fCells[i]->GetStat() == 1 ) {
918 std::cout <<
"STOP in TFoam::PeekMax: not found iCell=" << iCell << std::endl;
943 if( kBest<0 || kBest>=
fDim )
Error(
"Divide",
"Wrong kBest \n");
979 for(iCell=0; iCell<=
fLastCe; iCell++) {
980 if (
fCells[iCell]->GetStat()==1) {
987 if(
fPrime == 0.)
Error(
"MakeActiveList",
"Integrand function is zero \n" );
990 if(
fPrimAcu==0 )
Error(
"MakeActiveList",
"Cant allocate fCellsAct or fPrimAcu \n");
993 for(iCell=0; iCell<
fNoAct; iCell++) {
1010 Info(
"ResetPseRan",
"Resetting random number generator \n");
1024 Error(
"SetRho",
"Bad function \n" );
1035 if (
fRho &&
dynamic_cast<FoamIntegrandFunction*
>(
fRho) )
delete fRho;
1036 fRho=
new FoamIntegrandFunction(fun);
1038 Error(
"SetRho",
"Bad function \n" );
1053 Info(
"ResetRho",
"!!! Resetting distribution function !!!\n");
1070 paramArr[1]=(
Long_t)xRand;
1095 hit = lo + (
Int_t)( (
hi-lo)*(random-flo)/(fhi-flo)+0.5);
1136 rCell->
GetHcub(cellPosi,cellSize);
1137 for(j=0; j<
fDim; j++)
1217 mcError = mcResult *mCerelat;
1262 Double_t mCerelat= mcError/mcResult;
1269 if(wtMax>0.0) mCeff=aveWt/wtMax;
1270 mcEf2 =
sigma/aveWt;
1274 BXTXT(
"****************************************");
1275 BXTXT(
"****** TFoam::Finalize ******");
1276 BXTXT(
"****************************************");
1277 BX1I(
" NevGen",
fNevGen,
"Number of generated events in the MC generation ");
1278 BX1I(
" nCalls",
fNCalls,
"Total number of function calls ");
1279 BXTXT(
"----------------------------------------");
1280 BX1F(
" AveWt",aveWt,
"Average MC weight ");
1281 BX1F(
" WtMin",
fWtMin,
"Minimum MC weight (absolute) ");
1282 BX1F(
" WtMax",
fWtMax,
"Maximum MC weight (absolute) ");
1283 BXTXT(
"----------------------------------------");
1284 BX1F(
" XPrime",
fPrime,
"Primary total integral, R_prime ");
1285 BX1F(
" XDiver",driver,
"Driver total integral, R_loss ");
1286 BXTXT(
"----------------------------------------");
1287 BX2F(
" IntMC", mcResult, mcError,
"Result of the MC Integral");
1288 BX1F(
" mCerelat", mCerelat,
"Relative error of the MC integral ");
1289 BX1F(
" <w>/WtMax",mCeff,
"MC efficiency, acceptance rate");
1290 BX1F(
" Sigma/<w>",mcEf2,
"MC efficiency, variance/ave_wt");
1291 BX1F(
" WtMax",wtMax,
"WtMax(esp= 0.0005) ");
1292 BX1F(
" Sigma",
sigma,
"variance of MC weight ");
1295 BX1F(
"<OveW>/<W>",avOve,
"Contrib. of events wt>MaxWtRej");
1313 if(
fDim==0)
Error(
"TFoam",
"SetInhiDiv: fDim=0 \n");
1319 if( ( 0<=iDim) && (iDim<
fDim)) {
1322 Error(
"SetInhiDiv:",
"Wrong iDim \n");
1343 if(
fDim<=0)
Error(
"SetXdivPRD",
"fDim=0 \n");
1344 if( len<1 )
Error(
"SetXdivPRD",
"len<1 \n");
1351 if( ( 0<=iDim) && (iDim<
fDim)) {
1354 Error(
"SetXdivPRD",
"Second allocation of XdivPRD not allowed \n");
1356 for(i=0; i<len; i++) {
1360 Error(
"SetXdivPRD",
"Wrong iDim \n");
1363 std::cout<<
" SetXdivPRD, idim= "<<iDim<<
" len= "<<len<<
" "<<std::endl;
1364 for(i=0; i<len; i++) {
1365 if (iDim <
fDim) std::cout<< (*
fXdivPRD[iDim])[i] <<
" ";
1367 std::cout<<std::endl;
1368 for(i=0; i<len; i++) std::cout<< xDiv[i] <<
" ";
1369 std::cout<<std::endl;
1381 Int_t errors, warnings;
1385 errors = 0; warnings = 0;
1386 if (level==1) std::cout <<
"///////////////////////////// FOAM_Checks /////////////////////////////////" << std::endl;
1387 for(iCell=1; iCell<=
fLastCe; iCell++) {
1393 if (level==1)
Error(
"CheckAll",
"ERROR: Cell's no %ld has only one daughter \n",iCell);
1397 if (level==1)
Error(
"CheckAll",
"ERROR: Cell's no %ld has no daughter and is inactive \n",iCell);
1401 if (level==1)
Error(
"CheckAll",
"ERROR: Cell's no %ld has two daughters and is active \n",iCell);
1408 if (level==1)
Error(
"CheckAll",
"ERROR: Cell's no %ld parent not pointing to this cell\n ",iCell);
1416 if (level==1)
Error(
"CheckAll",
"ERROR: Cell's no %ld daughter 0 not pointing to this cell \n",iCell);
1422 if (level==1)
Error(
"CheckAll",
"ERROR: Cell's no %ld daughter 1 not pointing to this cell \n",iCell);
1428 for(iCell=0; iCell<=
fLastCe; iCell++) {
1432 if(level==1)
Warning(
"CheckAll",
"Warning: Cell no. %ld is active but empty \n", iCell);
1437 Info(
"CheckAll",
"Check has found %d errors and %d warnings \n",errors, warnings);
1440 Info(
"CheckAll",
"Check - found total %d errors \n",errors);
1451 for(iCell=0; iCell<=
fLastCe; iCell++) {
1452 std::cout<<
"Cell["<<iCell<<
"]={ ";
1454 std::cout<<std::endl;
1456 std::cout<<
"}"<<std::endl;
1466 std::ofstream outfile(filename, std::ios::out);
1471 outfile<<
"{" << std::endl;
1472 outfile<<
"cMap = new TCanvas(\"Map1\",\" Cell Map \",600,600);"<<std::endl;
1474 outfile<<
"TBox*a=new TBox();"<<std::endl;
1475 outfile<<
"a->SetFillStyle(0);"<<std::endl;
1476 outfile<<
"a->SetLineWidth(4);"<<std::endl;
1477 outfile<<
"a->SetLineColor(2);"<<std::endl;
1478 outfile<<
"a->DrawBox("<<offs<<
","<<offs<<
","<<(offs+lpag)<<
","<<(offs+lpag)<<
");"<<std::endl;
1480 outfile<<
"TText*t=new TText();"<<std::endl;
1481 outfile<<
"t->SetTextColor(4);"<<std::endl;
1483 outfile<<
"t->SetTextSize(0.025);"<<std::endl;
1485 outfile<<
"t->SetTextSize(0.015);"<<std::endl;
1487 outfile<<
"t->SetTextSize(0.008);"<<std::endl;
1489 outfile<<
"TBox*b=new TBox();"<<std::endl;
1490 outfile <<
"b->SetFillStyle(0);"<<std::endl;
1494 outfile <<
"// =========== Rectangular cells ==========="<< std::endl;
1495 for(iCell=1; iCell<=
fLastCe; iCell++) {
1496 if(
fCells[iCell]->GetStat() == 1) {
1498 x1 = offs+lpag*( cellPosi[0]); y1 = offs+lpag*( cellPosi[1]);
1499 x2 = offs+lpag*(cellPosi[0]+cellSize[0]); y2 = offs+lpag*(cellPosi[1]+cellSize[1]);
1502 outfile<<
"b->DrawBox("<<
x1<<
","<<y1<<
","<<
x2<<
","<<y2<<
");"<<std::endl;
1505 x = offs+lpag*(cellPosi[0]+0.5*cellSize[0]);
y = offs+lpag*(cellPosi[1]+0.5*cellSize[1]);
1506 outfile<<
"t->DrawText("<<
x<<
","<<
y<<
","<<
"\""<<iCell<<
"\""<<
");"<<std::endl;
1510 outfile<<
"// ============== End Rectangles ==========="<< std::endl;
1514 outfile <<
"}" << std::endl;
1522 Info(
"LinkCells",
"VOID function for backward compatibility \n");
static const double x2[5]
static const double x1[5]
#define BX1F(name, numb, text)
#define BX1I(name, numb, text)
#define BX2F(name, numb, err, text)
static const Double_t gVlow
static const Double_t gHigh
float type_of_call hi(const int &, const int &)
void SetXdiv(Double_t Xdiv)
TFoamCell * GetDau1() const
void CalcVolume()
Calculates volume of the cell using size params which are calculated.
void Print(Option_t *option) const
Printout of the cell geometry parameters for the debug purpose.
Double_t GetVolume() const
TFoamCell * GetDau0() const
void GetHcub(TFoamVect &, TFoamVect &) const
Provides size and position of the cell These parameter are calculated by analyzing information in all...
TFoamCell * GetPare() const
void SetSerial(Int_t Serial)
void Fill(Int_t, TFoamCell *, TFoamCell *, TFoamCell *)
Fills in certain data into newly allocated cell.
void SetDau1(TFoamCell *Daug)
void SetPrim(Double_t Prim)
void SetDriv(Double_t Driv)
void SetIntg(Double_t Intg)
void SetDau0(TFoamCell *Daug)
Abstract class representing n-dimensional real positive integrand function.
virtual Double_t Density(Int_t ndim, Double_t *)=0
Small auxiliary class for controlling MC weight.
void Fill(Double_t)
Filling analyzed weight.
void GetMCeff(Double_t, Double_t &, Double_t &)
Calculates Efficiency= aveWt/wtLim for a given tolerance level epsilon<<1 using information stored in...
Auxiliary class TFoamVect of n-dimensional vector, with dynamic allocation used for the cartesian geo...
TFoam is the main class of the multi-dimensional general purpose Monte Carlo event generator (integra...
virtual void MakeActiveList()
Internal method used by Initialize.
virtual void CheckAll(Int_t)
User utility, miscellaneous and debug.
TString fName
Name of a given instance of the FOAM class.
virtual Int_t Divide(TFoamCell *)
Internal method used by Initialize.
virtual void PrintCells()
Prints geometry of ALL cells of the FOAM.
TH1D * fHistWt
Histogram of the MC wt.
virtual void GetMCvect(Double_t *)
User may get generated MC point/vector with help of this method.
TFoamIntegrand * fRho
! Pointer to the user-defined integrand function/distribution
TRandom * fPseRan
Pointer to user-defined generator of pseudorandom numbers.
Double_t fMCerror
and its error
Double_t fPrime
Primary integral R' (R=R'<wt>)
Int_t fChat
Chat=0,1,2 chat level in output, Chat=1 normal level.
virtual void InitCells()
Internal method used by Initialize.
Double_t fNevGen
Total number of the generated MC events.
virtual void MakeEvent()
User method.
Double_t fSumWt2
Total sum of wt and wt^2.
TFoamVect ** fXdivPRD
! Lists of division values encoded in one vector per direction
virtual Long_t PeekMax()
Internal method used by Initialize.
virtual void GenerCel2(TFoamCell *&)
Internal method.
virtual void Initialize()
Basic initialization of FOAM invoked by the user.
virtual void GetIntNorm(Double_t &, Double_t &)
User method.
TFoamMaxwt * fMCMonit
Monitor of the MC weight for measuring MC efficiency.
Int_t fRNmax
Maximum No. of the rand. numb. requested at once.
Int_t * fInhiDiv
! [fDim] Flags for inhibiting cell division
Long_t fNCalls
Total number of the function calls.
virtual Double_t GetMCwt()
User may get weight MC weight using this method.
Double_t fWtMin
Maximum/Minimum MC weight.
virtual void ResetRho(TFoamIntegrand *Rho)
User may optionally reset the distribution using this method.
Int_t fEvPerBin
Maximum number of effective (wt=1) events per bin.
virtual void GetIntegMC(Double_t &, Double_t &)
User method.
Double_t fMaxWtRej
Maximum weight in rejection for getting wt=1 events.
Int_t fNCells
Maximum number of cells.
Double_t * fRvec
[fRNmax] random number vector from r.n. generator fDim+1 maximum elements
virtual void RootPlot2dim(Char_t *)
Debugging tool which plots 2-dimensional cells as rectangles in C++ format readable for root.
Double_t * fAlpha
[fDim] Internal parameters of the hyper-rectangle
Int_t fOptDrive
Optimization switch =1,2 for variance or maximum weight optimization.
virtual void Explore(TFoamCell *Cell)
Internal method used by Initialize.
virtual Double_t Eval(Double_t *)
Internal method.
virtual void MakeAlpha()
Internal method used by Initialize.
virtual void ResetPseRan(TRandom *PseRan)
User may optionally reset random number generator using this method.
TMethodCall * fMethodCall
! ROOT's pointer to user-defined global distribution function
Double_t Sqr(Double_t x) const
Int_t fLastCe
Index of the last cell.
Int_t fOptPRD
Option switch for predefined division, for quick check.
TObjArray * fHistDbg
Histograms of wt, for debug.
virtual void SetXdivPRD(Int_t, Int_t, Double_t[])
This should be called before Initialize, after setting kDim It predefines values of the cell division...
Double_t fSumOve
Total Sum of overweighted events.
virtual void SetInhiDiv(Int_t, Int_t)
This can be called before Initialize, after setting kDim It defines which variables are excluded in t...
std::vector< Long_t > fCellsAct
Index of active cells, constructed at the end of foam build-up.
virtual ~TFoam()
Default destructor.
Int_t * fMaskDiv
! [fDim] Dynamic Mask for cell division
virtual void LinkCells(void)
virtual void SetRho(TFoamIntegrand *Rho)
User may use this method to set the distribution object.
virtual void SetRhoInt(Double_t(*fun)(Int_t, Double_t *))
User may use this method to set the distribution object as a global function pointer (and not as an i...
Int_t fNoAct
Number of active cells.
virtual void Finalize(Double_t &, Double_t &)
May be called optionally by the user after the MC run.
Long_t fNEffev
Total number of effective events (wt=1) in the foam buildup.
Int_t fOptRej
Switch =0 for weighted events; =1 for unweighted events in MC.
Double_t * fPrimAcu
[fNoAct] Array of cumulative probability of all active cells
virtual Double_t MCgenerate(Double_t *MCvect)
User method which generates MC event and returns MC weight.
Double_t * fMCvect
[fDim] Generated MC vector for the outside user
TString fVersion
Actual version of the FOAM like (1.01m)
virtual Int_t CellFill(Int_t, TFoamCell *)
Internal method used by Initialize.
Int_t fDim
Dimension of the integration/simulation space.
Int_t fNSampl
No. of MC events, when dividing (exploring) cell.
TString fDate
Release date of FOAM.
TFoamCell ** fCells
[fNCells] Array of ALL cells
virtual void SetPseRan(TRandom *PseRan)
TObjArray * fHistEdg
Histograms of wt, one for each cell edge.
Double_t fMCresult
True Integral R from MC series.
virtual void GetWtParams(Double_t, Double_t &, Double_t &, Double_t &)
May be called optionally after the MC run.
Int_t fNBin
No. of bins in the edge histogram for cell MC exploration.
virtual void Grow()
Internal method used by Initialize.
TFoam()
Default constructor for streamer, user should not use it.
virtual void Varedu(Double_t[], Int_t &, Double_t &, Double_t &)
Internal method used by Initialize.
virtual void Carver(Int_t &, Double_t &, Double_t &)
Internal method used by Initialize.
1-D histogram with a double per channel (see TH1 documentation)}
virtual void Reset(Option_t *option="")
Reset.
static void AddDirectory(Bool_t add=kTRUE)
Sets the flag controlling the automatic add of histograms in memory.
virtual Int_t Fill(Double_t x)
Increment bin with abscissa X by 1.
static Bool_t AddDirectoryStatus()
Static function: cannot be inlined on Windows/NT.
void Execute(const char *, const char *, int *=0)
Execute method on this object with the given parameter string, e.g.
void SetParamPtrs(void *paramArr, Int_t nparam=-1)
ParamArr is an array containing the function argument values.
virtual void Delete(Option_t *option="")
Remove all objects from the array AND delete all heap based objects.
Mother of all ROOT objects.
virtual void Warning(const char *method, const char *msgfmt,...) const
Issue warning message.
virtual void Error(const char *method, const char *msgfmt,...) const
Issue error message.
virtual void Info(const char *method, const char *msgfmt,...) const
Issue info message.
This is the base class for the ROOT Random number generators.
virtual void RndmArray(Int_t n, Float_t *array)
Return an array of n random numbers uniformly distributed in ]0,1].
virtual Double_t Rndm()
Machine independent random number generator.
const char * Data() const
Short_t Max(Short_t a, Short_t b)
Short_t Min(Short_t a, Short_t b)
static long int sum(long int i)