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#include <CaloNuclei.h> |
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|
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//-------------------------------------- |
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/** |
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* Default constructor |
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*/ |
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CaloNuclei::CaloNuclei(){ |
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Clear(); |
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}; |
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|
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CaloNuclei::CaloNuclei(PamLevel2 *l2p){ |
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// |
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Clear(); |
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// |
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L2 = l2p; |
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// |
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if ( !L2->IsORB() ) printf(" WARNING: OrbitalInfo Tree is needed, the plugin could not work properly without it \n"); |
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// |
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OBT = 0; |
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PKT = 0; |
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atime = 0; |
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N = 5; |
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// |
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}; |
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|
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void CaloNuclei::Clear(){ |
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// |
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interplane = 0; |
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preq = 0.; |
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postq = 0.; |
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dedx1 = 0.; |
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dedx3 = 0.; |
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qpremean = 0.; |
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qpremeanN = 0.; |
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// |
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multhit = false; |
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gap = false; |
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// |
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}; |
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|
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void CaloNuclei::Print(){ |
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// |
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printf("==============================\n"); |
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printf(" OBT: %u PKT: %u ATIME: %u \n",OBT,PKT,atime); |
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printf(" interplane: %i\n",interplane); |
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printf(" ethr: %f \n",ethr); |
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printf(" dedx1: %f \n",dedx1); |
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printf(" dedx3: %f \n",dedx3); |
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printf(" multhit: %i \n",multhit); |
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printf(" gap: %i \n",gap); |
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printf(" preq: %f \n",preq); |
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printf(" postq: %f \n",postq); |
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printf(" qpremean: %f \n",qpremean); |
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printf(" N: %i \n",N); |
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printf(" qpremeanN: %f \n",qpremeanN); |
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printf("==============================\n"); |
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// |
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}; |
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|
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void CaloNuclei::Delete(){ |
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Clear(); |
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//delete this; |
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}; |
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|
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|
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void CaloNuclei::Process(){ |
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// |
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if ( !L2 ){ |
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printf(" ERROR: cannot find PamLevel2 object, use the correct constructor or check your program!\n"); |
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printf(" ERROR: CaloNuclei variables not filled \n"); |
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return; |
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}; |
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// |
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Bool_t newentry = false; |
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// |
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if ( L2->IsORB() ){ |
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if ( L2->GetOrbitalInfo()->pkt_num != PKT || L2->GetOrbitalInfo()->OBT != OBT || L2->GetOrbitalInfo()->absTime != atime ){ |
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newentry = true; |
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OBT = L2->GetOrbitalInfo()->OBT; |
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PKT = L2->GetOrbitalInfo()->pkt_num; |
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atime = L2->GetOrbitalInfo()->absTime; |
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}; |
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} else { |
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newentry = true; |
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}; |
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// |
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if ( !newentry ) return; |
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// |
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// printf(" Processing event at OBT %u PKT %u time %u \n",OBT,PKT,atime); |
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// |
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Clear(); |
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// |
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PamTrack *track = 0; |
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track = L2->GetTrack(0); |
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// |
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Int_t view = 0; |
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Int_t plane = 0; |
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Int_t strip = 0; |
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Float_t mip = 0.; |
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// Float_t defethr = 6. * 0.90; |
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Float_t defethr = 6.25; // = (sqrt(9) - 0.5) ** 2.; |
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// |
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// Calculate dedx1 and dedx3 |
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// |
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for ( Int_t i=0; i<L2->GetCaloLevel1()->istrip; i++ ){ |
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// |
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mip = L2->GetCaloLevel1()->DecodeEstrip(i,view,plane,strip); |
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// |
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if ( strip != -1 && |
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view == 1 && |
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plane == 0 && |
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( strip == (track->GetCaloTrack()->tibar[0][1]-1) || strip == (track->GetCaloTrack()->tibar[0][1]-2) || strip == (track->GetCaloTrack()->tibar[0][1]) ) |
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&& true ){ |
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dedx1 += mip; |
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}; |
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if ( strip != -1 && |
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(( view == 1 && ( plane == 0 || plane == 1 ) ) || |
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( view == 0 && plane == 0 )) && |
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(( view == 0 && ( strip == track->GetCaloTrack()->tibar[0][0] || strip == (track->GetCaloTrack()->tibar[0][0]-1) || strip == (track->GetCaloTrack()->tibar[0][0]-2) )) || |
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( view == 1 && ( strip == track->GetCaloTrack()->tibar[0][1] || strip == (track->GetCaloTrack()->tibar[0][1]-1) || strip == (track->GetCaloTrack()->tibar[0][1]-2) )) || |
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( view == 1 && ( strip == track->GetCaloTrack()->tibar[1][1] || strip == (track->GetCaloTrack()->tibar[1][1]-1) || strip == (track->GetCaloTrack()->tibar[1][1]-2) ))) && |
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true ){ |
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dedx3 += mip; |
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}; |
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// |
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}; |
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// |
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dedx3 /= 3.; |
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// Float_t mesethr = dedx1 * 0.90; |
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Float_t mesethr = 0.; |
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if ( dedx1 > 0. ) mesethr = (sqrt(dedx1) - 0.50)*(sqrt(dedx1) - 0.50); |
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Bool_t aldone = false; |
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// |
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retry: |
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// |
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// printf("retry\n"); |
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// |
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interplane = 0; |
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// |
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ethr = TMath::Max(defethr,mesethr); |
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// |
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// Find the interaction plane "interplane" |
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// |
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Int_t gapth = 3; |
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Int_t nhit[2] = {0,0}; |
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Int_t splane[2] = {-1,-1}; |
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Int_t sview[2] = {-1,-1}; |
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Int_t interpl[2] = {-1,-1}; |
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Int_t interv[2] = {-1,-1}; |
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Bool_t wmulthit[2] = {false,false}; |
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Bool_t wgap[2] = {false,false}; |
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Int_t ii = 0; |
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while ( ii<L2->GetCaloLevel1()->istrip ){ |
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// |
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mip = L2->GetCaloLevel1()->DecodeEstrip(ii,view,plane,strip); |
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// |
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if ( strip != -1 && mip > ethr && !wmulthit[view] && !wgap[view] && |
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( strip == (track->GetCaloTrack()->tibar[plane][view]-1) || strip == (track->GetCaloTrack()->tibar[plane][view]-2) || strip == (track->GetCaloTrack()->tibar[plane][view]) ) |
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&& true ){ |
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// printf(" inside loop: ii %i mip %f view %i plane %i strip %i tibar %i nhit %i splane %i sview %i \n",ii,mip,view,plane,strip,track->GetCaloTrack()->tibar[plane][view]-1,nhit[view],splane[view],sview[view]); |
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interpl[view] = plane; |
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interv[view] = view; |
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if ( splane[view] != plane || sview[view] != view ){ |
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if ( nhit[view] > 1 ){ |
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wmulthit[view] = true; |
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interpl[view] = splane[view]; |
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interv[view] = sview[view]; |
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// ii = L2->GetCaloLevel1()->istrip; |
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}; |
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if ( plane > splane[view]+gapth ){ |
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wgap[view] = true; |
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interpl[view] = splane[view]; |
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interv[view] = sview[view]; |
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// ii = L2->GetCaloLevel1()->istrip; |
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}; |
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splane[view] = plane; |
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sview[view] = view; |
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nhit[view] = 1; |
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} else { |
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nhit[view]++; |
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}; |
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}; |
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// |
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ii++; |
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// |
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}; |
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// |
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// printf("conversion interpl %i interv %i multhit %i interplane %i \n",interpl[0],interv[0],multhit,interplane); |
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Int_t winterplane[2] = {-1,-1}; |
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// |
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for ( Int_t view = 0; view < 2; view++){ |
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// |
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if ( nhit[view] > 1 && !wmulthit[view] && !wgap[view] ){ |
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wmulthit[view] = true; |
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interpl[view] = splane[view]; |
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interv[view] = sview[view]; |
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}; |
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// |
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if ( wmulthit[view] ) multhit = true; |
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if ( wgap[view] ) gap = true; |
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// |
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// convert view and plane number of interaction plane into number of available dE/dx measurements before the interaction plane |
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// |
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if ( interpl[view] >= 0 ) { |
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if ( interv[view] == 0 ){ |
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winterplane[view] = (1 + interpl[view]) * 2; |
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} else { |
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winterplane[view] = (1 + interpl[view]) + (1 + interpl[view] - 1); |
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}; |
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if ( wmulthit[view] ) winterplane[view]--; |
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}; |
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}; |
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if ( winterplane[0] > 0 && winterplane[1] > 0 ){ |
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if ( multhit ){ |
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interplane = TMath::Min(winterplane[0],winterplane[1]); |
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} else { |
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interplane = TMath::Max(winterplane[0],winterplane[1]); |
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}; |
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} else { |
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if ( !winterplane[0] || !winterplane[1] ){ |
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interplane = 0; |
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} else { |
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interplane = TMath::Max(winterplane[0],winterplane[1]); |
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}; |
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}; |
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// |
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// printf("2conversion interpl %i interv %i multhit %i interplane %i \n",interpl[1],interv[1],multhit,interplane); |
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// printf("3conversion winterpl0 %i winterpl1 %i \n",winterplane[0],winterplane[1]); |
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// |
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Int_t ipl = 0; |
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if ( interplane > 0 ){ |
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// |
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// Calculate preq, postq, qpremean |
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// |
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ii = 0; |
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Int_t ind = -1; |
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Int_t qsplane = -1; |
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Int_t qsview = -1; |
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Float_t qme[200]; |
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memset(qme,0,200*sizeof(Float_t)); |
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// |
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while ( ii<L2->GetCaloLevel1()->istrip ){ |
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// |
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mip = L2->GetCaloLevel1()->DecodeEstrip(ii,view,plane,strip); |
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// |
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if ( strip != -1 ){ |
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if ( view == 0 ){ |
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ipl = (1 + plane) * 2; |
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} else { |
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ipl = (1 + plane) + (1 + plane - 1 ); |
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}; |
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if ( ipl > interplane ){ |
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postq += mip; |
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} else { |
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preq += mip; |
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if ( strip == (track->GetCaloTrack()->tibar[plane][view]-1) || strip == (track->GetCaloTrack()->tibar[plane][view]-2) || strip == (track->GetCaloTrack()->tibar[plane][view]) ){ |
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if ( qsplane != plane || qsview != view ){ |
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qsplane = plane; |
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qsview = view; |
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ind++; |
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if ( ind > 199 ) printf(" AAAGH!! \n"); |
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qme[ind] = 0.; |
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}; |
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qme[ind] += mip; |
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}; |
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}; |
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// |
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}; |
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// |
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ii++; |
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// |
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}; |
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// |
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// here we must calculate qpremean, order vector qme, select 3 lowest measurements and caculate the mean... |
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// |
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// for (Int_t l=0; l < interplane; l++){ |
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// printf(" qme[%i] = %f \n",l,qme[l]); |
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// // if ( qme[ind] < 6.25 ) qme[ind] = 10000.; |
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// }; |
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Long64_t work[200]; |
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ind = 0; |
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Int_t l = 0; |
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Float_t qm = 0.; |
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Int_t uplim = TMath::Max(3,N); |
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while ( l < uplim && ind < interplane ){ |
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qm = TMath::KOrdStat(interplane,qme,ind,work); |
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if ( qm >= mesethr*0.9 ){ |
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if ( l < 3 ) qpremean += qm; |
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if ( l < N ) qpremeanN += qm; |
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l++; |
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// printf(" value no %i qm %f \n",l,qm); |
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}; |
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ind++; |
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}; |
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// |
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qpremean /= l; |
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qpremeanN /= N; |
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// |
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// printf(" charge is %f \n",sqrt(qpremean)); |
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// |
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// printf("preq postq\n"); |
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// |
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if ( mesethr != ethr && interplane >= 3 && !aldone ){ |
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Float_t mesethr2 = (sqrt(qpremean) - 0.50)*(sqrt(qpremean) - 0.50); |
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if ( mesethr2 < mesethr*0.90 ){ |
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mesethr = (sqrt(dedx1) - 0.25)*(sqrt(dedx1) - 0.25); |
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} else { |
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mesethr = mesethr2; |
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}; |
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aldone = true; |
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if ( mesethr > defethr ) goto retry; |
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}; |
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}; |
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// |
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// printf(" esci \n"); |
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// |
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}; |