#include "TQpProbDens.h"
#include "TMatrixD.h"
ClassImp(TQpProbDens)
TQpProbDens::TQpProbDens(Int_t nx,Int_t my,Int_t mz) :
             TQpProbBase(nx,my,mz)
{
   
   R__ASSERT(nx-my-mz > 0);
}
TQpProbDens::TQpProbDens(const TQpProbDens &another) : TQpProbBase(another)
{
   *this = another;
}
TQpDataBase *TQpProbDens::MakeData(Double_t *c,
                                   Double_t *Q,
                                   Double_t *xlo,Bool_t   *ixlo,
                                   Double_t *xup,Bool_t   *ixup,
                                   Double_t *A,  Double_t *bA,
                                   Double_t *C,
                                   Double_t *clo,Bool_t   *iclo,
                                   Double_t *cup,Bool_t   *icup)
{
   TVectorD    vc  ; vc  .Use(fNx,c);
   TMatrixDSym mQ  ; mQ  .Use(fNx,Q);
   TVectorD    vxlo; vxlo.Use(fNx,xlo);
   TVectorD    vxup; vxup.Use(fNx,xup);
   TMatrixD    mA  ;
   TVectorD    vbA ;
   if (fMy > 0) {
      mA  .Use(fMy,fNx,A);
      vbA .Use(fMy,bA);
   }
   TMatrixD    mC  ;
   TVectorD    vclo;
   TVectorD    vcup;
   if (fMz > 0) {
      mC  .Use(fMz,fNx,C);
      vclo.Use(fMz,clo);
      vcup.Use(fMz,cup);
   }
   TVectorD vixlo(fNx);
   TVectorD vixup(fNx);
   for (Int_t ix = 0; ix < fNx; ix++) {
      vixlo[ix] = (ixlo[ix]) ? 1.0 : 0.0;
      vixup[ix] = (ixup[ix]) ? 1.0 : 0.0;
   }
   TVectorD viclo(fMz);
   TVectorD vicup(fMz);
   for (Int_t ic = 0; ic < fMz; ic++) {
      viclo[ic] = (iclo[ic]) ? 1.0 : 0.0;
      vicup[ic] = (icup[ic]) ? 1.0 : 0.0;
   }
   TQpDataDens *data = new TQpDataDens(vc,mQ,vxlo,vixlo,vxup,vixup,mA,vbA,mC,vclo,
      viclo,vcup,vicup);
   return data;
}
TQpDataBase *TQpProbDens::MakeData(TVectorD     &c,
                                   TMatrixDBase &Q_in,
                                   TVectorD     &xlo, TVectorD &ixlo,
                                   TVectorD     &xup, TVectorD &ixup,
                                   TMatrixDBase &A_in,TVectorD &bA,
                                   TMatrixDBase &C_in,
                                   TVectorD     &clo, TVectorD &iclo,
                                   TVectorD     &cup, TVectorD &icup)
{
   TMatrixDSym &mQ = (TMatrixDSym &) Q_in;
   TMatrixD    &mA = (TMatrixD    &) A_in;
   TMatrixD    &mC = (TMatrixD    &) C_in;
   R__ASSERT(mQ.GetNrows() == fNx && mQ.GetNcols() == fNx);
   if (fMy > 0) R__ASSERT(mA.GetNrows() == fMy && mA.GetNcols() == fNx);
   else         R__ASSERT(mA.GetNrows() == fMy);
   if (fMz > 0) R__ASSERT(mC.GetNrows() == fMz && mC.GetNcols() == fNx);
   else         R__ASSERT(mC.GetNrows() == fMz);
   R__ASSERT(c.GetNrows()    == fNx);
   R__ASSERT(xlo.GetNrows()  == fNx);
   R__ASSERT(ixlo.GetNrows() == fNx);
   R__ASSERT(xup.GetNrows()  == fNx);
   R__ASSERT(ixup.GetNrows() == fNx);
   R__ASSERT(bA.GetNrows()   == fMy);
   R__ASSERT(clo.GetNrows()  == fMz);
   R__ASSERT(iclo.GetNrows() == fMz);
   R__ASSERT(cup.GetNrows()  == fMz);
   R__ASSERT(icup.GetNrows() == fMz);
   TQpDataDens *data = new TQpDataDens(c,mQ,xlo,ixlo,xup,ixup,mA,bA,mC,clo,iclo,cup,icup);
   return data;
}
TQpResidual* TQpProbDens::MakeResiduals(const TQpDataBase *data_in)
{
   TQpDataDens *data = (TQpDataDens *) data_in;
   return new TQpResidual(fNx,fMy,fMz,data->fXloIndex,data->fXupIndex,data->fCloIndex,data->fCupIndex);
}
TQpVar* TQpProbDens::MakeVariables(const TQpDataBase *data_in)
{
   TQpDataDens *data = (TQpDataDens *) data_in;
   return new TQpVar(fNx,fMy,fMz,data->fXloIndex,data->fXupIndex,data->fCloIndex,data->fCupIndex);
}
TQpLinSolverBase* TQpProbDens::MakeLinSys(const TQpDataBase *data_in)
{
   TQpDataDens *data = (TQpDataDens *) data_in;
   return new TQpLinSolverDens(this,data);
}
void TQpProbDens::JoinRHS(TVectorD &rhs,TVectorD &rhs1_in,TVectorD &rhs2_in,TVectorD &rhs3_in)
{
   rhs.SetSub(0,rhs1_in);
   if (fMy > 0) rhs.SetSub(fNx,    rhs2_in);
   if (fMz > 0) rhs.SetSub(fNx+fMy,rhs3_in);
}
void TQpProbDens::SeparateVars(TVectorD &x_in,TVectorD &y_in,TVectorD &z_in,TVectorD &vars_in)
{
   x_in = vars_in.GetSub(0,fNx-1);
   if (fMy > 0) y_in = vars_in.GetSub(fNx,    fNx+fMy-1);
   if (fMz > 0) z_in = vars_in.GetSub(fNx+fMy,fNx+fMy+fMz-1);
}
void TQpProbDens::MakeRandomData(TQpDataDens *&data,TQpVar *&soln,Int_t ,Int_t ,Int_t )
{
   data = new TQpDataDens(fNx,fMy,fMz);
   soln = this->MakeVariables(data);
   data->DataRandom(soln->fX,soln->fY,soln->fZ,soln->fS);
}
TQpProbDens &TQpProbDens::operator=(const TQpProbDens &source)
{
   if (this != &source) {
      TQpProbBase::operator=(source);
   }
   return *this;
}
Last update: Thu Jan 17 09:02:20 2008
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