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pam-fi |
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* Program analysis.f |
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* |
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* - reads cluster information (LEVEL1, reduction.f output ntuple) |
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* - perform track identification and fit |
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* - create LEVEL2 ntuple |
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* |
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************************************************************************* |
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program momanhough |
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include '../common/commontracker.f' |
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include '../common/common_momanhough.f' |
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include '../common/momanhough_init.f' |
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include '../common/common_level2debug.f' |
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include '../common/common_mech.f' |
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include '../common/common_xyzPAM.f' |
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include '../common/common_mini_2.f' |
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include '../common/calib.f' |
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include '../common/level1.f' |
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include '../common/level2.f' |
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* flag to set debug mode |
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logical DEBUG |
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common/dbg/DEBUG |
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* flag to chose PFA |
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character*10 PFA |
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common/FINALPFA/PFA |
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c parameter (inf=1.e8) !just a huge number... |
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* external functions |
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external npl |
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external acoordsi,coordsi,nld,coord,dcoord |
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c------------------------------------------------------------------------ |
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c |
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c local variables |
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c |
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c------------------------------------------------------------------------ |
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character*24 processing_date |
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parameter (lun_data_level1=71) !data file id number |
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parameter (lun_data_level2=72) !data file id number |
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parameter (lun_data_calib=74) !data file id number |
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character*74 data_file !data file name |
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character*74 data_dir !data file name |
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character*74 data_file_calib |
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character*74 data_file_level1 |
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character*74 data_file_level2 |
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# ifndef TEST2003 |
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parameter(ncalibmax=50) |
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character*40 file_calib(ncalibmax) |
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parameter(lun_calib_list=66) !calibration list file id |
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integer which_calib_last |
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# endif |
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integer minevent !first event to be analysed |
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logical FIMAGE ! |
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* ****************************************** |
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* PLANE TO EXCLUDE (for efficiency studies) |
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* --> provided as input parameter |
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* (set according to "tracking" notation): |
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* 1-6 from TOP to BOTTOM |
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* ****************************************** |
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integer ipexclude |
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common/plane_exclude/ipexclude |
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COMMON/QUEST/IQUEST(100) |
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c !permette di ottenere ntuple funzionanti nonostante |
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c ! il messaggio dei 64K di RZOUT...!??? |
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c------------------------------------------------------------------------ |
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c |
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c HBOOK initialization |
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c |
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c------------------------------------------------------------------------ |
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call HLIMIT(NWPAWC) |
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c------------------------------------------------------------------------ |
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c |
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c reads input informations |
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c |
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c------------------------------------------------------------------------ |
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call fdate(processing_date) |
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write(*,101) |
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$ processing_date |
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101 format(/ |
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$ ,'*** *** *** *** *** *** *** *** *** *** *** *** ***',/ |
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$ ,'* *',/ |
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$ ,'* ANALYSIS *',/ |
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$ ,'* *',/ |
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$ ,'*** *** *** *** *** *** *** *** *** *** *** *** ***',/ |
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$ ,a24,/ |
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$ ) |
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111 format(a) |
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print*,'Data directory:' |
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read(*,111)data_dir |
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print*,data_dir |
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print*,'File identifier: (DATE_NUM)' |
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read(*,*)data_file |
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print*,data_file |
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minevent=1 |
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print*,'Maximum number of events to be analized:' !20000 |
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read(*,*) ntotev |
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print*,ntotev |
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print*,'Position-finding algorythm: (GOG2,ETA2)' |
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read(*,*)PFA |
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PFA=PFA(1:lnblnk(PFA)) |
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print*,PFA |
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print*,'DEBUG mode: (T, F)' |
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11 format(l1) |
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read(*,11)DEBUG |
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print*,DEBUG |
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print*,'Plane to exclude from fitting (1-6 from TOP to BOTTOM):' |
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read(*,*) ipexclude |
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print*, ipexclude |
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print*,'---------------------------------------------------' |
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****** INITIALIZATIONS ************************************* |
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* 1) read charge-correlation parameters |
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print*,' ' |
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print*,'- read charge-correlation parameters' |
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print*,' ' |
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call readchargeparam |
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* 2) read z coordinates of the planes |
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print*,' ' |
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print*,'- read z coordinates of the planes' |
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print*,' ' |
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call mech_sensor !reads sensors centres coordinates |
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do ip=1,nplanes |
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fitz(ip)=z_mech_sensor(ip,1,1)*0.1 !cm |
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* gets planes mechanical z positions |
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* (in mm) and sets them in micrometers |
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enddo |
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* 3) read eta PFA parameters |
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print*,' ' |
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print*,'- read PFA parameters' |
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print*,' ' |
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call readetaparam |
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* 4) read magnetic field map |
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print*,' ' |
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print*,'- read magnetic field map' |
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print*,' ' |
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c call read_B(5) !legge il nome da STI!!.. temporaneo |
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c call read_B_2maps(5) !legge il nome da STI!!.. temporaneo |
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call read_B |
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* 5) read allignment parameters |
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print*,' ' |
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print*,'- read aligment parameters' |
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print*,' ' |
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call readalignparam |
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************************************************************ |
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c------------------------------------------------------------------------ |
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c |
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c LEVEL 2 ntuple booking |
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c |
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c------------------------------------------------------------------------ |
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503 format(a,'DW_',a,'_level2_no-p',i1,'.rz') |
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write(data_file_level2,503) |
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$ data_dir(1:LNBLNK(data_dir)) |
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$ ,data_file(1:LNBLNK(data_file)) |
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$ ,ipexclude |
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print*,'' |
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print*,'------------------------------------' |
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print*,' Creating LEVEL2 rz file' |
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print*,' ',data_file_level2 |
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print*,'------------------------------------' |
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C - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - |
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C largest RZ file: IQUEST(10) records x LREC words x 4 byte |
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C with the following settings: 65000 x 4096 x 4 = 1G |
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C- - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - |
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IQUEST(10)=65000 |
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c !permette di ottenere ntuple funzionanti nonostante |
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c ! il messaggio dei 64K di RZOUT...!??? |
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call HROPEN(lun_data_level2, |
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$ 'LEVEL2',data_file_level2,'QNP',4096,istat) !opens rz |
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if(istat.ne.0) goto 19 |
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call book_level2 |
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if(DEBUG)then |
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print*,'(creating DEBUG nt-uple and histos)' |
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call book_debug |
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endif |
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c------------------------------------------------------------------------ |
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c |
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c fills bad variables with online DSP bad strips from calib histograms |
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c for bad strip exclusion |
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c |
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c------------------------------------------------------------------------ |
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# ifdef TEST2003 |
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c------------------------------------------------------------------------ |
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c |
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c opens calib file |
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c |
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c------------------------------------------------------------------------ |
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505 format(a,'output_',a,'_calib.rz') |
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write(data_file_calib,505) |
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$ data_dir(1:LNBLNK(data_dir)) |
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$ ,data_file(1:LNBLNK(data_file)) |
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print*,' ' |
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print*,'OPENING CALIB FILE...', data_file_calib |
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IQUEST(10)=65000 |
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call HROPEN(lun_data_calib,'IN',data_file_calib,'QP',4096,istat) |
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if(istat.ne.0) goto 17 |
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call HCDIR('//IN',' ') |
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call HRIN(0,9999,0) !puts histograms in memory |
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print*,' ' |
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print*,' ' |
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print*,'READING PEDESTAL, SIGMA AND BADSTRIP HISTOGRAMS...' |
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print*,' ' |
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call fillpedsig |
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call HREND('IN') |
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close (lun_data_calib) |
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# else |
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print*,' ' |
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print*,'OPENING CALIBRATION-LIST FILE:' |
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501 format(a,'DW_',a,'_calib.txt') |
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write(data_file_calib,501) |
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$ data_dir(1:LNBLNK(data_dir)) |
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$ ,data_file(1:LNBLNK(data_file)) |
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print*,data_file_calib |
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open(lun_calib_list, |
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$ FILE=data_file_calib(1:LNBLNK(data_file_calib)) |
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$ ,STATUS='UNKNOWN' |
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$ ,IOSTAT=iostat |
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$ ) |
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113 format(i5,' ',a25) |
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do i=1,ncalibmax |
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read(lun_calib_list,113,IOSTAT=iostat) n_cal_list |
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$ ,file_calib(i)(1:LNBLNK(file_calib(i))) |
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if(iostat.ne.0)then |
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ncal=i-1 |
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goto 2000 |
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endif |
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print*,n_cal_list,' - ' |
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$ ,file_calib(i)(1:LNBLNK(file_calib(i))) |
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enddo |
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2000 close(lun_calib_list) |
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which_calib_last=0 |
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# endif |
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c------------------------------------------------------------------------ |
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c |
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c opens level1 file |
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c |
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c------------------------------------------------------------------------ |
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# ifdef TEST2003 |
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504 format(a,'output_',a,'_level1.rz') |
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# else |
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504 format(a,'DW_',a,'_level1.rz') |
298 |
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# endif |
299 |
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write(data_file_level1,504) |
300 |
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$ data_dir(1:LNBLNK(data_dir)) |
301 |
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$ ,data_file(1:LNBLNK(data_file)) |
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print*,'' |
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print*,'OPENING LEVEL1 FILE:' |
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print*,data_file_level1 |
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IQUEST(10)=65000 |
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c !permette di ottenere ntuple funzionanti nonostante |
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c ! il messaggio dei 64K di RZOUT...!??? |
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call HROPEN(lun_data_level1, |
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$ 'LEVEL1',data_file_level1,'QP',4096,istat) !opens rz |
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if(istat.ne.0) goto 19 |
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call HRIN(ntp_level1,9999,20) |
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call access_level1 |
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c call HPRNTU(ntp_level1+20) |
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call HNOENT(ntp_level1+20,iemax0) |
315 |
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print*,' events',iemax0 |
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318 |
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************************************************************ |
319 |
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************************************************************ |
320 |
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************************************************************ |
321 |
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* |
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* start track analysis |
323 |
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* |
324 |
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************************************************************ |
325 |
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************************************************************ |
326 |
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************************************************************ |
327 |
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maxevent=minevent+ntotev-1 |
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do iev = minevent,MIN(iemax0,maxevent) !loop on events |
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330 |
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call HCDIR('//LEVEL1',' ') |
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call HGNT(ntp_level1+20,iev,ierr) !reads an event |
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if(ierr.ne.0) goto 21 |
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*------------------------------------------------------ |
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* LEVEL2 N-TUPLE INITIALIZATIONS |
335 |
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call init_level2 |
336 |
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if(.not.good1)then |
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goto 8800 !fill nt-uple and go to next event |
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endif |
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*------------------------------------------------------ |
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# ifndef TEST2003 |
343 |
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344 |
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if(which_calib.ne.which_calib_last.and. |
345 |
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$ which_calib.ne.0)then |
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347 |
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data_file_calib= |
348 |
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$ data_dir(1:LNBLNK(data_dir))// |
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$ file_calib(which_calib) |
350 |
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$ (1:LNBLNK(file_calib(which_calib))) |
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c print*,data_file_calib |
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print*,'' |
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print*, |
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$ '@ event ',nev2 |
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$ ,' (CPU pkt N.',pkt_num1,')' |
356 |
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print*,'--> ',data_file_calib |
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IQUEST(10)=65000 |
358 |
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call HROPEN(lun_data_calib, |
359 |
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$ 'CALIB',data_file_calib,'QP',4096,istat) !opens |
360 |
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if(istat.ne.0) goto 19 |
361 |
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call HRIN(0,9999,0) |
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call fillpedsig |
363 |
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do iview=1,nviews |
364 |
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call HDELET(id_hi_bad+iview) |
365 |
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call HDELET(id_hi_ped+iview) |
366 |
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call HDELET(id_hi_sig+iview) |
367 |
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enddo |
368 |
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call HREND('CALIB') |
369 |
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close(lun_data_calib) |
370 |
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which_calib_last=which_calib |
371 |
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372 |
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elseif(which_calib.eq.0)then |
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374 |
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nocalib=nocalib+1 |
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good2=.false. |
376 |
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goto 8800 !fill nt-uple and go to next event |
377 |
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endif |
379 |
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# endif |
381 |
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382 |
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383 |
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*------------------------------------------------------ |
384 |
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* cut on maximum number of clusters |
385 |
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*------------------------------------------------------ |
386 |
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if(nclstr1.gt.nclstrmax_level2)then |
387 |
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goto 8800 !fill nt-uple and go to next event |
388 |
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endif |
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do i=1,nclstr1 |
391 |
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cl_used(i)=0 !init mask of clusters associated to a track |
392 |
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enddo |
393 |
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394 |
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if(DEBUG)then |
395 |
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print*,'----------------------------------' |
396 |
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print*,iev,' ** ',nev2 |
397 |
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endif |
398 |
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399 |
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*------------------------------------------------------------------------------- |
400 |
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* STEP 1 |
401 |
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*------------------------------------------------------------------------------- |
402 |
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* X-Y cluster association |
403 |
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* |
404 |
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* Clusters are associated to form COUPLES |
405 |
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* Clusters not associated in any couple are called SINGLETS |
406 |
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* |
407 |
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* Track identification (Hough transform) and fitting is first done on couples. |
408 |
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* Hence singlets are possibly added to the track. |
409 |
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* |
410 |
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* Variables assigned by the routine "cl_to_couples" are those in the |
411 |
|
|
* common blocks: |
412 |
|
|
* - common/clusters/cl_good |
413 |
|
|
* - common/couples/clx,cly,ncp_plane,ncp_tot,cp_useds1,cp_useds2 |
414 |
|
|
* - common/singlets/ncls,cls,cl_single |
415 |
|
|
*------------------------------------------------------------------------------- |
416 |
|
|
*------------------------------------------------------------------------------- |
417 |
|
|
|
418 |
|
|
iflag=0 |
419 |
|
|
call cl_to_couples(iflag) |
420 |
|
|
if(iflag.eq.1)then !bad event |
421 |
|
|
goto 880 !fill ntp and go to next event |
422 |
|
|
endif |
423 |
|
|
|
424 |
|
|
*~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ |
425 |
|
|
* selezione di tracce pulite per diagnostica |
426 |
|
|
*~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ |
427 |
|
|
c$$$ if(DEBUG)then |
428 |
|
|
c$$$ do ip=1,nplanes |
429 |
|
|
c$$$ if(ncp_plane(ip).ne.1)good2=.false. |
430 |
|
|
c$$$ enddo |
431 |
|
|
c$$$c if(good2.eq.0)goto 100!next event |
432 |
|
|
c$$$c if(good2.eq.0)goto 880!fill ntp and go to next event |
433 |
|
|
c$$$ endif |
434 |
|
|
|
435 |
|
|
|
436 |
|
|
|
437 |
|
|
*----------------------------------------------------- |
438 |
|
|
*----------------------------------------------------- |
439 |
|
|
* HOUGH TRASFORM |
440 |
|
|
*----------------------------------------------------- |
441 |
|
|
*----------------------------------------------------- |
442 |
|
|
|
443 |
|
|
|
444 |
|
|
*------------------------------------------------------------------------------- |
445 |
|
|
* STEP 2 |
446 |
|
|
*------------------------------------------------------------------------------- |
447 |
|
|
* |
448 |
|
|
* Association of couples to form |
449 |
|
|
* - DOUBLETS in YZ view |
450 |
|
|
* - TRIPLETS in XZ view |
451 |
|
|
* |
452 |
|
|
* Variables assigned by the routine "cp_to_doubtrip" are those in the |
453 |
|
|
* common blocks: |
454 |
|
|
* - common/hough_param/ |
455 |
|
|
* $ alfayz1, !Y0 |
456 |
|
|
* $ alfayz2, !tg theta-yz |
457 |
|
|
* $ alfaxz1, !X0 |
458 |
|
|
* $ alfaxz2, !tg theta-xz |
459 |
|
|
* $ alfaxz3 !1/r |
460 |
|
|
* - common/doublets/ndblt,cpyz1,cpyz2 |
461 |
|
|
* - common/triplets/ntrpt,cpxz1,cpxz2,cpxz3 |
462 |
|
|
*------------------------------------------------------------------------------- |
463 |
|
|
*------------------------------------------------------------------------------- |
464 |
|
|
|
465 |
|
|
iflag=0 |
466 |
|
|
call cp_to_doubtrip(iflag) |
467 |
|
|
if(iflag.eq.1)then !bad event |
468 |
|
|
goto 880 !fill ntp and go to next event |
469 |
|
|
endif |
470 |
|
|
|
471 |
|
|
|
472 |
|
|
*------------------------------------------------------------------------------- |
473 |
|
|
* STEP 3 |
474 |
|
|
*------------------------------------------------------------------------------- |
475 |
|
|
* |
476 |
|
|
* Classification of doublets and triplets to form CLOUDS, |
477 |
|
|
* according to distance in parameter space. |
478 |
|
|
* |
479 |
|
|
* cloud = cluster of points (doublets/triplets) in parameter space |
480 |
|
|
* |
481 |
|
|
* |
482 |
|
|
* |
483 |
|
|
* Variables assigned by the routine "doub_to_YZcloud" are those in the |
484 |
|
|
* common blocks: |
485 |
|
|
* - common/clouds_yz/ |
486 |
|
|
* $ nclouds_yz |
487 |
|
|
* $ ,alfayz1_av,alfayz2_av |
488 |
|
|
* $ ,ptcloud_yz,db_cloud,cpcloud_yz |
489 |
|
|
* |
490 |
|
|
* Variables assigned by the routine "trip_to_XZcloud" are those in the |
491 |
|
|
* common blocks: |
492 |
|
|
* common/clouds_xz/ |
493 |
|
|
* $ nclouds_xz |
494 |
|
|
* $ ,alfaxz1_av,alfaxz2_av,alfaxz3_av |
495 |
|
|
* $ ,ptcloud_xz,tr_cloud,cpcloud_xz |
496 |
|
|
*------------------------------------------------------------------------------- |
497 |
|
|
*------------------------------------------------------------------------------- |
498 |
|
|
|
499 |
|
|
iflag=0 |
500 |
|
|
call doub_to_YZcloud(iflag) |
501 |
|
|
if(iflag.eq.1)then !bad event |
502 |
|
|
goto 880 !fill ntp and go to next event |
503 |
|
|
endif |
504 |
|
|
iflag=0 |
505 |
|
|
call trip_to_XZcloud(iflag) |
506 |
|
|
if(iflag.eq.1)then !bad event |
507 |
|
|
goto 880 !fill ntp and go to next event |
508 |
|
|
endif |
509 |
|
|
|
510 |
|
|
|
511 |
|
|
*------------------------------------------------------------------------------- |
512 |
|
|
* STEP 4 (ITERATED until any other physical track isn't found) |
513 |
|
|
*------------------------------------------------------------------------------- |
514 |
|
|
* |
515 |
|
|
* YZ and XZ clouds are combined in order to obtain the initial guess |
516 |
|
|
* of the candidate-track parameters. |
517 |
|
|
* A minimum number of matching couples between YZ and XZ clouds is required. |
518 |
|
|
* |
519 |
|
|
* A TRACK CANDIDATE is defined by |
520 |
|
|
* - the couples resulting from the INTERSECTION of the two clouds, and |
521 |
|
|
* - the associated track parameters (evaluated by performing a zero-order |
522 |
|
|
* track fitting) |
523 |
|
|
* |
524 |
|
|
* The NTRACKS candidate-track parameters are stored in common block: |
525 |
|
|
* |
526 |
|
|
* - common/track_candidates/NTRACKS,AL_STORE |
527 |
|
|
* $ ,XV_STORE,YV_STORE,ZV_STORE |
528 |
|
|
* $ ,XM_STORE,YM_STORE,ZM_STORE |
529 |
|
|
* $ ,RESX_STORE,RESY_STORE |
530 |
|
|
* $ ,AXV_STORE,AYV_STORE |
531 |
|
|
* $ ,XGOOD_STORE,YGOOD_STORE |
532 |
|
|
* $ ,CP_STORE,RCHI2_STORE |
533 |
|
|
* |
534 |
|
|
*------------------------------------------------------------------------------- |
535 |
|
|
*------------------------------------------------------------------------------- |
536 |
|
|
ntrk=0 !counter of identified physical tracks |
537 |
|
|
|
538 |
|
|
11111 continue !<<<<<<< come here when performing a new search |
539 |
|
|
|
540 |
|
|
iflag=0 |
541 |
|
|
call clouds_to_ctrack(iflag) |
542 |
|
|
if(iflag.eq.1)then !no candidate tracks found |
543 |
|
|
goto 880 !fill ntp and go to next event |
544 |
|
|
endif |
545 |
|
|
|
546 |
|
|
FIMAGE=.false. !processing best track (not track image) |
547 |
|
|
ibest=0 !best track among candidates |
548 |
|
|
iimage=0 !track image |
549 |
|
|
* ------------- select the best track ------------- |
550 |
|
|
rchi2best=100000. |
551 |
|
|
do i=1,ntracks |
552 |
|
|
if(RCHI2_STORE(i).lt.rchi2best.and. |
553 |
|
|
$ RCHI2_STORE(i).gt.0)then |
554 |
|
|
ibest=i |
555 |
|
|
rchi2best=RCHI2_STORE(i) |
556 |
|
|
endif |
557 |
|
|
enddo |
558 |
|
|
if(ibest.eq.0)goto 880 !>> no good candidates |
559 |
|
|
*------------------------------------------------------------------------------- |
560 |
|
|
* The best track candidate (ibest) is selected and a new fitting is performed. |
561 |
|
|
* Previous to this, the track is refined by: |
562 |
|
|
* - possibly adding new COUPLES or SINGLETS from the missing planes |
563 |
|
|
* - evaluating the coordinates with improved PFAs |
564 |
|
|
* ( angle-dependent ETA algorithms ) |
565 |
|
|
*------------------------------------------------------------------------------- |
566 |
|
|
|
567 |
|
|
1212 continue !<<<<< come here to fit track-image |
568 |
|
|
|
569 |
|
|
if(.not.FIMAGE)then !processing best track |
570 |
|
|
icand=ibest |
571 |
|
|
else !processing image |
572 |
|
|
icand=iimage |
573 |
|
|
iimage=0 |
574 |
|
|
endif |
575 |
|
|
if(icand.eq.0)then |
576 |
|
|
print*,'HAI FATTO UN CASINO!!!!!! icand = ',icand |
577 |
|
|
$ ,ibest,iimage |
578 |
|
|
return |
579 |
|
|
endif |
580 |
|
|
call refine_track(icand) |
581 |
|
|
|
582 |
|
|
|
583 |
|
|
* *************************************** |
584 |
|
|
* Checks if a plane should be excluded |
585 |
|
|
* (for efficiency study) |
586 |
|
|
* *************************************** |
587 |
|
|
xgood(ipexclude) = 0 !<<< |
588 |
|
|
ygood(ipexclude) = 0 !<<< |
589 |
|
|
* *************************************** |
590 |
|
|
|
591 |
|
|
|
592 |
|
|
|
593 |
|
|
* ********************************************************** |
594 |
|
|
* ************************** FIT *** FIT *** FIT *** FIT *** |
595 |
|
|
* ********************************************************** |
596 |
|
|
do i=1,5 |
597 |
|
|
AL(i)=dble(AL_STORE(i,icand)) |
598 |
|
|
enddo |
599 |
|
|
ifail=0 !error flag in chi2 computation |
600 |
|
|
jstep=0 !# minimization steps |
601 |
|
|
|
602 |
|
|
call mini_2(jstep,ifail) |
603 |
|
|
if(ifail.ne.0) then |
604 |
|
|
if(DEBUG)then |
605 |
|
|
print *, |
606 |
|
|
$ '*** MINIMIZATION FAILURE *** (mini_2) ' |
607 |
|
|
$ ,iev |
608 |
|
|
endif |
609 |
|
|
chi2=-chi2 |
610 |
|
|
endif |
611 |
|
|
|
612 |
|
|
if(DEBUG)then |
613 |
|
|
print*,'----------------------------- improved track coord' |
614 |
|
|
22222 format(i2,' * ',3f9.4,' --- ',4f9.4,' --- ',2f4.0,2f8.5) |
615 |
|
|
do ip=1,6 |
616 |
|
|
write(*,22222)ip,zm(ip),xm(ip),ym(ip) |
617 |
|
|
$ ,xm_A(ip),ym_A(ip),xm_B(ip),ym_B(ip) |
618 |
|
|
$ ,xgood(ip),ygood(ip),resx(ip),resy(ip) |
619 |
|
|
enddo |
620 |
|
|
endif |
621 |
|
|
|
622 |
|
|
c rchi2=chi2/dble(ndof) |
623 |
|
|
if(DEBUG)then |
624 |
|
|
print*,' ' |
625 |
|
|
print*,'****** SELECTED TRACK *************' |
626 |
|
|
print*,'# R. chi2 RIG' |
627 |
|
|
print*,' --- ',chi2,' --- ' |
628 |
|
|
$ ,1./abs(AL(5)) |
629 |
|
|
print*,'***********************************' |
630 |
|
|
endif |
631 |
|
|
* ********************************************************** |
632 |
|
|
* ************************** FIT *** FIT *** FIT *** FIT *** |
633 |
|
|
* ********************************************************** |
634 |
|
|
|
635 |
|
|
|
636 |
|
|
* ------------- search if the track has an IMAGE ------------- |
637 |
|
|
* ------------- (also this is stored ) ------------- |
638 |
|
|
if(FIMAGE)goto 122 !>>> jump! (this is already an image) |
639 |
|
|
* now search for track-image, by comparing couples IDs |
640 |
|
|
do i=1,ntracks |
641 |
|
|
iimage=i |
642 |
|
|
do ip=1,nplanes |
643 |
|
|
if( CP_STORE(nplanes-ip+1,icand).ne. |
644 |
|
|
$ -1*CP_STORE(nplanes-ip+1,i) )iimage=0 |
645 |
|
|
enddo |
646 |
|
|
if( iimage.ne.0.and. |
647 |
|
|
c $ RCHI2_STORE(i).le.CHI2MAX.and. |
648 |
|
|
c $ RCHI2_STORE(i).gt.0.and. |
649 |
|
|
$ .true.)then |
650 |
|
|
if(DEBUG)print*,'Track candidate ',iimage |
651 |
|
|
$ ,' >>> TRACK IMAGE >>> of' |
652 |
|
|
$ ,ibest |
653 |
|
|
goto 122 !image track found |
654 |
|
|
endif |
655 |
|
|
enddo |
656 |
|
|
122 continue |
657 |
|
|
|
658 |
|
|
* --- and store the results -------------------------------- |
659 |
|
|
ntrk = ntrk + 1 !counter of found tracks |
660 |
|
|
if(.not.FIMAGE |
661 |
|
|
$ .and.iimage.eq.0) image(ntrk)= 0 |
662 |
|
|
if(.not.FIMAGE |
663 |
|
|
$ .and.iimage.ne.0)image(ntrk)=ntrk+1 !this is the image of the next |
664 |
|
|
if(FIMAGE) image(ntrk)=ntrk-1 !this is the image of the previous |
665 |
|
|
call fill_level2_tracks(ntrk) !==> good2=.true. |
666 |
|
|
|
667 |
|
|
c print*,'++++++++++ iimage,fimage,ntrk,image ' |
668 |
|
|
c $ ,iimage,fimage,ntrk,image(ntrk) |
669 |
|
|
|
670 |
|
|
if(ntrk.eq.NTRKMAX)then |
671 |
|
|
if(DEBUG) |
672 |
|
|
$ print*, |
673 |
|
|
$ '** warning ** number of identified '// |
674 |
|
|
$ 'tracks exceeds vector dimension ' |
675 |
|
|
$ ,'( ',NTRKMAX,' )' |
676 |
|
|
cc good2=.false. |
677 |
|
|
goto 880 !fill ntp and go to next event |
678 |
|
|
endif |
679 |
|
|
if(iimage.ne.0)then |
680 |
|
|
FIMAGE=.true. ! |
681 |
|
|
goto 1212 !>>> fit image-track |
682 |
|
|
endif |
683 |
|
|
|
684 |
|
|
* --- then remove selected clusters (ibest+iimage) from clouds ---- |
685 |
|
|
call clean_XYclouds(ibest) |
686 |
|
|
if(iflag.eq.1)then !bad event |
687 |
|
|
goto 880 !fill ntp and go to next event |
688 |
|
|
endif |
689 |
|
|
|
690 |
|
|
* ********************************************************** |
691 |
|
|
* condition to start a new search |
692 |
|
|
* ********************************************************** |
693 |
|
|
ixznew=0 |
694 |
|
|
do ixz=1,nclouds_xz |
695 |
|
|
if(ptcloud_xz(ixz).ge.nptxz_min)ixznew=1 |
696 |
|
|
enddo |
697 |
|
|
iyznew=0 |
698 |
|
|
do iyz=1,nclouds_yz |
699 |
|
|
if(ptcloud_yz(iyz).ge.nptyz_min)iyznew=1 |
700 |
|
|
enddo |
701 |
|
|
|
702 |
|
|
if(ixznew.ne.0.and. |
703 |
|
|
$ iyznew.ne.0.and. |
704 |
|
|
$ rchi2best.le.CHI2MAX.and. |
705 |
|
|
c $ rchi2best.lt.15..and. |
706 |
|
|
$ .true.)then |
707 |
|
|
if(DEBUG)then |
708 |
|
|
print*,'***** NEW SEARCH ****' |
709 |
|
|
endif |
710 |
|
|
goto 11111 !try new search |
711 |
|
|
|
712 |
|
|
endif |
713 |
|
|
* ********************************************** |
714 |
|
|
|
715 |
|
|
* >>>>>>>>>>>>>>>>>>> NT-UPLE filling <<<<<<<<<<<<<<<<<<<< |
716 |
|
|
* + + + + + + + + + + + + + + + + + |
717 |
|
|
* / \ / \ / \ / \ / \ / \ / \ / \ / \ / \ / \ / \ / \ / \ / \ / \ / |
718 |
|
|
* + + + + + + + + + + + + + + + + + |
719 |
|
|
|
720 |
|
|
880 continue |
721 |
|
|
|
722 |
|
|
* count #cluster per plane not associated to any track |
723 |
|
|
do icl=1,nclstr1 |
724 |
|
|
if(cl_used(icl).eq.0)then !cluster not included in any track |
725 |
|
|
ip=nplanes-npl(VIEW(icl))+1 |
726 |
|
|
if(mod(VIEW(icl),2).eq.0)nclsx(ip)=nclsx(ip)+1 |
727 |
|
|
if(mod(VIEW(icl),2).eq.1)nclsy(ip)=nclsy(ip)+1 |
728 |
|
|
endif |
729 |
|
|
c print*,icl,cl_used(icl),cl_good(icl),ip,VIEW(icl)!nclsx(ip),nclsy(ip) |
730 |
|
|
enddo |
731 |
|
|
if(DEBUG)then |
732 |
|
|
|
733 |
|
|
print*,'' |
734 |
|
|
print*,'DONE!' |
735 |
|
|
print*,'' |
736 |
|
|
print*,'* summary *' |
737 |
|
|
print*,'tracks ',ntrk |
738 |
|
|
print*,'cl used ',(cl_used(i),i=1,nclstr1) |
739 |
|
|
print*,'cl unused (x-y)' |
740 |
|
|
do ip=1,nplanes |
741 |
|
|
print*,ip,' << ',nclsx(ip),nclsy(ip) |
742 |
|
|
enddo |
743 |
|
|
print*,'' |
744 |
|
|
print*,'' |
745 |
|
|
endif |
746 |
|
|
|
747 |
|
|
|
748 |
|
|
8800 continue |
749 |
|
|
|
750 |
|
|
call HCDIR('//LEVEL2',' ') |
751 |
|
|
|
752 |
|
|
call HFNT(ntp_level2) !fill LEVEL2 nt-uple |
753 |
|
|
|
754 |
|
|
if(DEBUG)then |
755 |
|
|
good2_nt=good2 |
756 |
|
|
nev2_nt=nev2 |
757 |
|
|
|
758 |
|
|
if(ntrpt.gt.ntrpt_max_nt.or.ndblt.gt.ndblt_max_nt)then |
759 |
|
|
good2_nt=.false. |
760 |
|
|
ntrpt_nt=0 |
761 |
|
|
ndblt_nt=0 |
762 |
|
|
NCLOUDS_XZ=0 |
763 |
|
|
NCLOUDS_YZ=0 |
764 |
|
|
else |
765 |
|
|
ndblt_nt=ndblt |
766 |
|
|
ntrpt_nt=ntrpt |
767 |
|
|
do id=1,ndblt |
768 |
|
|
alfayz1_nt(id)=alfayz1(id) !Y0 |
769 |
|
|
alfayz2_nt(id)=alfayz2(id) !tg theta-yz |
770 |
|
|
db_cloud_nt(id)=db_cloud(id) |
771 |
|
|
enddo |
772 |
|
|
do it=1,ntrpt |
773 |
|
|
alfaxz1_nt(it)=alfaxz1(it) !X0 |
774 |
|
|
alfaxz2_nt(it)=alfaxz2(it) !tg theta-xz |
775 |
|
|
alfaxz3_nt(it)=alfaxz3(it) !1/r |
776 |
|
|
tr_cloud_nt(it)=tr_cloud(it) |
777 |
|
|
enddo |
778 |
|
|
nclouds_yz_nt=nclouds_yz |
779 |
|
|
nclouds_xz_nt=nclouds_xz |
780 |
|
|
do iyz=1,nclouds_yz |
781 |
|
|
ptcloud_yz_nt(iyz)=ptcloud_yz(iyz) |
782 |
|
|
alfayz1_av_nt(iyz)=alfayz1_av(iyz) |
783 |
|
|
alfayz2_av_nt(iyz)=alfayz2_av(iyz) |
784 |
|
|
enddo |
785 |
|
|
do ixz=1,nclouds_xz |
786 |
|
|
ptcloud_xz_nt(ixz)=ptcloud_xz(ixz) |
787 |
|
|
alfaxz1_av_nt(ixz)=alfaxz1_av(ixz) |
788 |
|
|
alfaxz2_av_nt(ixz)=alfaxz2_av(ixz) |
789 |
|
|
alfaxz3_av_nt(ixz)=alfaxz3_av(ixz) |
790 |
|
|
enddo |
791 |
|
|
endif |
792 |
|
|
c print*,ntrpt,ntrpt_max_nt,ndblt,ndblt_max_nt |
793 |
|
|
c do iii=1,ndblt |
794 |
|
|
c print*,iii,alfayz1(iii),alfayz2(iii) |
795 |
|
|
c enddo |
796 |
|
|
c print*,good2_nt,good2 |
797 |
|
|
call HFNT(ntp_level2+1) !fill DEBUG nt-uple |
798 |
|
|
endif |
799 |
|
|
|
800 |
|
|
|
801 |
|
|
|
802 |
|
|
100 continue |
803 |
|
|
enddo !end loop on events |
804 |
|
|
|
805 |
|
|
c------------------------------------------------------------------------ |
806 |
|
|
c |
807 |
|
|
c no error exit |
808 |
|
|
c |
809 |
|
|
c------------------------------------------------------------------------ |
810 |
|
|
|
811 |
|
|
c$$$ print*,' ' |
812 |
|
|
c$$$ print*,'REDUCTION SUCCESSFULLY COMPLETED' |
813 |
|
|
c$$$ print*,' ' |
814 |
|
|
c$$$ print*,' ' |
815 |
|
|
|
816 |
|
|
goto 9000 !happy ending |
817 |
|
|
|
818 |
|
|
|
819 |
|
|
c------------------------------------------------------------------------ |
820 |
|
|
c |
821 |
|
|
c data file opening error |
822 |
|
|
c |
823 |
|
|
c------------------------------------------------------------------------ |
824 |
|
|
19 continue |
825 |
|
|
|
826 |
|
|
print*,' ' |
827 |
|
|
print*,'ERROR OPENING DATA FILE: ',data_file |
828 |
|
|
print*,' ' |
829 |
|
|
print*,' ' |
830 |
|
|
|
831 |
|
|
goto 9000 !the end |
832 |
|
|
|
833 |
|
|
c------------------------------------------------------------------------ |
834 |
|
|
c |
835 |
|
|
c level1 ntuple event reading error |
836 |
|
|
c |
837 |
|
|
c------------------------------------------------------------------------ |
838 |
|
|
|
839 |
|
|
21 continue |
840 |
|
|
|
841 |
|
|
print*,' ' |
842 |
|
|
print*,'ERROR WHILE READING LEVEL1 NTUPLE, AT EVENT |
843 |
|
|
$ : ',iev |
844 |
|
|
print*,' ' |
845 |
|
|
print*,' ' |
846 |
|
|
|
847 |
|
|
goto 9000 !the end |
848 |
|
|
|
849 |
|
|
c------------------------------------------------------------------------ |
850 |
|
|
c |
851 |
|
|
c calib file opening error |
852 |
|
|
c |
853 |
|
|
c------------------------------------------------------------------------ |
854 |
|
|
|
855 |
|
|
17 continue |
856 |
|
|
|
857 |
|
|
print*,' ' |
858 |
|
|
print*,'preanalysis: ERROR OPENING INPUT FILE: ',data_file_calib |
859 |
|
|
print*,' ' |
860 |
|
|
print*,' ' |
861 |
|
|
|
862 |
|
|
goto 9000 !the end |
863 |
|
|
|
864 |
|
|
c------------------------------------------------------------------------ |
865 |
|
|
c |
866 |
|
|
c closes files and exits |
867 |
|
|
c |
868 |
|
|
c------------------------------------------------------------------------ |
869 |
|
|
|
870 |
|
|
9000 continue |
871 |
|
|
|
872 |
|
|
if(DEBUG)call HPRNTU(ntp_level2+1) |
873 |
|
|
call HPRNTU(ntp_level2) |
874 |
|
|
print*,'' |
875 |
|
|
call HCDIR('//LEVEL2',' ') |
876 |
|
|
call HROUT(ntp_level2,ICYCLE,'T') |
877 |
|
|
print *,'- Stored LEVEL2 nt-uple (',nev2,' entries )' |
878 |
|
|
if(DEBUG)call HROUT(ntp_level2+1,ICYCLE,'T') |
879 |
|
|
if(DEBUG)print *,'- Stored DEBUG nt-uple ' |
880 |
|
|
call HREND('level2') |
881 |
|
|
close(lun_data_level2) |
882 |
|
|
|
883 |
|
|
call HCDIR('//LEVEL1',' ') |
884 |
|
|
call HREND('level1') |
885 |
|
|
close(lun_data_level1) |
886 |
|
|
|
887 |
|
|
stop |
888 |
|
|
end |
889 |
|
|
|
890 |
|
|
|
891 |
|
|
# include "momanhough-subroutines.F" |
892 |
|
|
|
893 |
|
|
|
894 |
|
|
c$$$ |
895 |
|
|
c$$$ |
896 |
|
|
c$$$ |
897 |
|
|
c$$$************************************************************ |
898 |
|
|
c$$$ |
899 |
|
|
c$$$ subroutine readchargeparam |
900 |
|
|
c$$$ |
901 |
|
|
c$$$ |
902 |
|
|
c$$$ include '../common/commontracker.f' |
903 |
|
|
c$$$ include '../common/calib.f' |
904 |
|
|
c$$$ |
905 |
|
|
c$$$c character*40 fname_binning |
906 |
|
|
c$$$ character*60 fname_param |
907 |
|
|
c$$$c character*120 cmd1 |
908 |
|
|
c$$$c character*120 cmd2 |
909 |
|
|
c$$$ |
910 |
|
|
c$$$c 201 format('../common/charge_param/charge-l',i1,'.dat') |
911 |
|
|
c$$$c 201 format('$TRK_GRND/source/common/charge_param/charge-l',i1,'.dat') |
912 |
|
|
c$$$ 201 format('charge-l',i1,'.dat') |
913 |
|
|
c$$$ do ilad=1,nladders_view |
914 |
|
|
c$$$ write(fname_param,201)ilad |
915 |
|
|
c$$$c$$$ cmd1='cp $TRK_GRND/source/common/charge_param/' |
916 |
|
|
c$$$c$$$ $ //fname_param(1:LNBLNK(fname_param))//' .' |
917 |
|
|
c$$$c$$$ call system(cmd1) |
918 |
|
|
c$$$ print *,'Opening file: ',fname_param |
919 |
|
|
c$$$ open(10, |
920 |
|
|
c$$$ $ FILE='./bin-aux/'//fname_param(1:LNBLNK(fname_param)) |
921 |
|
|
c$$$ $ ,STATUS='UNKNOWN' |
922 |
|
|
c$$$ $ ,IOSTAT=iostat |
923 |
|
|
c$$$ $ ) |
924 |
|
|
c$$$ if(iostat.ne.0)then |
925 |
|
|
c$$$ print*,'READCHARGEPARAM: *** Error in opening file ***' |
926 |
|
|
c$$$ return |
927 |
|
|
c$$$ endif |
928 |
|
|
c$$$ do ip=1,nplanes |
929 |
|
|
c$$$ read(10,* |
930 |
|
|
c$$$ $ ,IOSTAT=iostat |
931 |
|
|
c$$$ $ )pip, |
932 |
|
|
c$$$ $ kch(ip,ilad),cch(ip,ilad),sch(ip,ilad) |
933 |
|
|
c$$$c print*,ilad,ip,pip,kch(ip,ilad), |
934 |
|
|
c$$$c $ cch(ip,ilad),sch(ip,ilad) |
935 |
|
|
c$$$ enddo |
936 |
|
|
c$$$ close(10) |
937 |
|
|
c$$$c$$$ cmd2='rm -f ' |
938 |
|
|
c$$$c$$$ $ //fname_param(1:LNBLNK(fname_param)) |
939 |
|
|
c$$$c$$$ call system(cmd2) |
940 |
|
|
c$$$ enddo |
941 |
|
|
c$$$ |
942 |
|
|
c$$$ return |
943 |
|
|
c$$$ end |
944 |
|
|
c$$$ |
945 |
|
|
c$$$************************************************************ |
946 |
|
|
c$$$************************************************************ |
947 |
|
|
c$$$************************************************************ |
948 |
|
|
c$$$************************************************************ |
949 |
|
|
c$$$* |
950 |
|
|
c$$$* This routine provides the coordinates (in cm) in the PAMELA reference system: |
951 |
|
|
c$$$* - of the point associated with a COUPLE ---> (xPAM,yPAM,zPAM) |
952 |
|
|
c$$$* - of the extremes of the segment |
953 |
|
|
c$$$* associated with a SINGLET ---------------> (xPAM_A,yPAM_A,zPAM_A) |
954 |
|
|
c$$$* ---> (xPAM_B,yPAM_B,zPAM_B) |
955 |
|
|
c$$$* |
956 |
|
|
c$$$* It also assigns the spatial resolution to the evaluated coordinates, |
957 |
|
|
c$$$* as a function (in principle) of the multiplicity, the angle, the PFA etc... |
958 |
|
|
c$$$* |
959 |
|
|
c$$$* |
960 |
|
|
c$$$* To call the routine you must pass the arguments: |
961 |
|
|
c$$$* icx - ID of cluster x |
962 |
|
|
c$$$* icy - ID of cluster y |
963 |
|
|
c$$$* sensor - sensor (1,2) |
964 |
|
|
c$$$* PFAx - Position Finding Algorithm in x (COG2,ETA2,...) |
965 |
|
|
c$$$* PFAy - Position Finding Algorithm in y (COG2,ETA2,...) |
966 |
|
|
c$$$* angx - Projected angle in x |
967 |
|
|
c$$$* angy - Projected angle in y |
968 |
|
|
c$$$* |
969 |
|
|
c$$$* --------- COUPLES ------------------------------------------------------- |
970 |
|
|
c$$$* The couple defines a point in the space. |
971 |
|
|
c$$$* The coordinates of the point are evaluated as follows: |
972 |
|
|
c$$$* 1 - the corrected coordinates relative to the sensor are evaluated |
973 |
|
|
c$$$* according to the chosen PFA --> (xi,yi,0) |
974 |
|
|
c$$$* 2 - coordinates are rotated and traslated, according to the aligmnet |
975 |
|
|
c$$$* parameters, and expressed in the reference system of the mechanical |
976 |
|
|
c$$$* sensor --> (xrt,yrt,zrt) |
977 |
|
|
c$$$* 3 - coordinates are finally converted to the PAMELA reference system |
978 |
|
|
c$$$* --> (xPAM,yPAM,zPAM) |
979 |
|
|
c$$$* |
980 |
|
|
c$$$* --------- SINGLETS ------------------------------------------------------- |
981 |
|
|
c$$$* Since a coordinate is missing, the singlet defines not a point |
982 |
|
|
c$$$* in the space but a segment AB (parallel to the strips). |
983 |
|
|
c$$$* In this case the routine returns the coordinates in the PAMELA reference |
984 |
|
|
c$$$* system of the two extremes A and B of the segment: |
985 |
|
|
c$$$* --> (xPAM_A,yPAM_A,zPAM_A) |
986 |
|
|
c$$$* --> (xPAM_B,yPAM_B,zPAM_B) |
987 |
|
|
c$$$* |
988 |
|
|
c$$$* ========================================================== |
989 |
|
|
c$$$* |
990 |
|
|
c$$$* The output of the routine is stored in the commons: |
991 |
|
|
c$$$* |
992 |
|
|
c$$$* double precision xPAM,yPAM,zPAM |
993 |
|
|
c$$$* common/coord_xyz_PAM/xPAM,yPAM,zPAM |
994 |
|
|
c$$$* |
995 |
|
|
c$$$* double precision xPAM_A,yPAM_A,zPAM_A |
996 |
|
|
c$$$* double precision xPAM_B,yPAM_B,zPAM_B |
997 |
|
|
c$$$* common/coord_AB_PAM/xPAM_A,yPAM_A,zPAM_A,xPAM_B,yPAM_B,zPAM_B |
998 |
|
|
c$$$* |
999 |
|
|
c$$$* double precision resxPAM,resyPAM |
1000 |
|
|
c$$$* common/resolution_PAM/resxPAM,resyPAM |
1001 |
|
|
c$$$* |
1002 |
|
|
c$$$* (in file ../common/common_xyzPAM.f) |
1003 |
|
|
c$$$* |
1004 |
|
|
c$$$* |
1005 |
|
|
c$$$ |
1006 |
|
|
c$$$ subroutine xyz_PAM(icx,icy,sensor,PFAx,PFAy,angx,angy) |
1007 |
|
|
c$$$ |
1008 |
|
|
c$$$ include '../common/commontracker.f' |
1009 |
|
|
c$$$ include '../common/calib.f' |
1010 |
|
|
c$$$ include '../common/level1.f' |
1011 |
|
|
c$$$ include '../common/common_align.f' |
1012 |
|
|
c$$$ include '../common/common_mech.f' |
1013 |
|
|
c$$$ include '../common/common_xyzPAM.f' |
1014 |
|
|
c$$$ include '../common/common_resxy.f' |
1015 |
|
|
c$$$ |
1016 |
|
|
c$$$ logical DEBUG |
1017 |
|
|
c$$$ common/dbg/DEBUG |
1018 |
|
|
c$$$ |
1019 |
|
|
c$$$ integer icx,icy !X-Y cluster ID |
1020 |
|
|
c$$$ integer sensor |
1021 |
|
|
c$$$ integer viewx,viewy |
1022 |
|
|
c$$$ character*4 PFAx,PFAy !PFA to be used |
1023 |
|
|
c$$$ real angx,angy !X-Y angle |
1024 |
|
|
c$$$ |
1025 |
|
|
c$$$ real stripx,stripy |
1026 |
|
|
c$$$ |
1027 |
|
|
c$$$ double precision xrt,yrt,zrt |
1028 |
|
|
c$$$ double precision xrt_A,yrt_A,zrt_A |
1029 |
|
|
c$$$ double precision xrt_B,yrt_B,zrt_B |
1030 |
|
|
c$$$c double precision xi,yi,zi |
1031 |
|
|
c$$$c double precision xi_A,yi_A,zi_A |
1032 |
|
|
c$$$c double precision xi_B,yi_B,zi_B |
1033 |
|
|
c$$$ |
1034 |
|
|
c$$$ |
1035 |
|
|
c$$$ parameter (ndivx=30) |
1036 |
|
|
c$$$ |
1037 |
|
|
c$$$ |
1038 |
|
|
c$$$ resxPAM = 0 |
1039 |
|
|
c$$$ resyPAM = 0 |
1040 |
|
|
c$$$ |
1041 |
|
|
c$$$ xPAM = 0. |
1042 |
|
|
c$$$ yPAM = 0. |
1043 |
|
|
c$$$ zPAM = 0. |
1044 |
|
|
c$$$ xPAM_A = 0. |
1045 |
|
|
c$$$ yPAM_A = 0. |
1046 |
|
|
c$$$ zPAM_A = 0. |
1047 |
|
|
c$$$ xPAM_B = 0. |
1048 |
|
|
c$$$ yPAM_B = 0. |
1049 |
|
|
c$$$ zPAM_B = 0. |
1050 |
|
|
c$$$ |
1051 |
|
|
c$$$* ----------------- |
1052 |
|
|
c$$$* CLUSTER X |
1053 |
|
|
c$$$* ----------------- |
1054 |
|
|
c$$$ |
1055 |
|
|
c$$$ if(icx.ne.0)then |
1056 |
|
|
c$$$ viewx = VIEW(icx) |
1057 |
|
|
c$$$ nldx = nld(MAXS(icx),VIEW(icx)) |
1058 |
|
|
c$$$ nplx = npl(VIEW(icx)) |
1059 |
|
|
c$$$ resxPAM = RESXAV !!!!!!!TEMPORANEO!!!!!!!!!!!!!!!! |
1060 |
|
|
c$$$ |
1061 |
|
|
c$$$ stripx = float(MAXS(icx)) |
1062 |
|
|
c$$$ if(PFAx.eq.'COG2')then |
1063 |
|
|
c$$$ stripx = stripx + cog(2,icx) |
1064 |
|
|
c$$$ resxPAM = resxPAM*fbad_cog(2,icx) |
1065 |
|
|
c$$$ elseif(PFAx.eq.'ETA2')then |
1066 |
|
|
c$$$ cog2 = cog(2,icx) |
1067 |
|
|
c$$$ etacorr = pfa_eta2(cog2,viewx,nldx,angx) |
1068 |
|
|
c$$$c print*,'---- ',viewx,cog2,etacorr |
1069 |
|
|
c$$$ stripx = stripx + etacorr |
1070 |
|
|
c$$$c print*,'COG2 ',cog2,' >>> ETA2 ',etacorr |
1071 |
|
|
c$$$ if(DEBUG.and.fbad_cog(2,icx).ne.1) |
1072 |
|
|
c$$$ $ print*,'BAD icx >>> ',viewx,fbad_cog(2,icx) |
1073 |
|
|
c$$$ resxPAM = resxPAM*fbad_cog(2,icx) |
1074 |
|
|
c$$$ else |
1075 |
|
|
c$$$ print*,'Accontentati di MAXS !!!!' |
1076 |
|
|
c$$$ endif |
1077 |
|
|
c$$$ |
1078 |
|
|
c$$$ |
1079 |
|
|
c$$$ endif |
1080 |
|
|
c$$$ |
1081 |
|
|
c$$$* ----------------- |
1082 |
|
|
c$$$* CLUSTER Y |
1083 |
|
|
c$$$* ----------------- |
1084 |
|
|
c$$$ |
1085 |
|
|
c$$$ if(icy.ne.0)then |
1086 |
|
|
c$$$ viewy = VIEW(icy) |
1087 |
|
|
c$$$ nldy = nld(MAXS(icy),VIEW(icy)) |
1088 |
|
|
c$$$ nply = npl(VIEW(icy)) |
1089 |
|
|
c$$$ resyPAM = RESYAV !!!!!!!TEMPORANEO!!!!!!!!!!!!!!!! |
1090 |
|
|
c$$$ |
1091 |
|
|
c$$$ |
1092 |
|
|
c$$$ if(icx.ne.0.and.(nply.ne.nplx.or.nldy.ne.nldx))then |
1093 |
|
|
c$$$ print*,'xyz_PAM ***ERROR*** invalid cluster couple!!! ' |
1094 |
|
|
c$$$ $ ,icx,icy |
1095 |
|
|
c$$$ goto 100 |
1096 |
|
|
c$$$ endif |
1097 |
|
|
c$$$ |
1098 |
|
|
c$$$ stripy = float(MAXS(icy)) |
1099 |
|
|
c$$$ if(PFAy.eq.'COG2')then |
1100 |
|
|
c$$$ stripy = stripy + cog(2,icy) |
1101 |
|
|
c$$$ resyPAM = resyPAM*fbad_cog(2,icy) |
1102 |
|
|
c$$$ elseif(PFAy.eq.'ETA2')then |
1103 |
|
|
c$$$ cog2 = cog(2,icy) |
1104 |
|
|
c$$$ etacorr = pfa_eta2(cog2,viewy,nldy,angy) |
1105 |
|
|
c$$$ stripy = stripy + etacorr |
1106 |
|
|
c$$$c print*,'COG2 ',cog2,' >>> ETA2 ',etacorr |
1107 |
|
|
c$$$ resyPAM = resyPAM*fbad_cog(2,icy) |
1108 |
|
|
c$$$ if(DEBUG.and.fbad_cog(2,icy).ne.1) |
1109 |
|
|
c$$$ $ print*,'BAD icy >>> ',viewy,fbad_cog(2,icy) |
1110 |
|
|
c$$$ else |
1111 |
|
|
c$$$ print*,'Accontentati di MAXS !!!!' |
1112 |
|
|
c$$$ endif |
1113 |
|
|
c$$$ |
1114 |
|
|
c$$$ endif |
1115 |
|
|
c$$$ |
1116 |
|
|
c$$$ |
1117 |
|
|
c$$$c=========================================================== |
1118 |
|
|
c$$$C COUPLE |
1119 |
|
|
c$$$C=========================================================== |
1120 |
|
|
c$$$ if(icx.ne.0.and.icy.ne.0)then |
1121 |
|
|
c$$$ |
1122 |
|
|
c$$$c------------------------------------------------------------------------ |
1123 |
|
|
c$$$c (xi,yi,zi) = mechanical coordinates in the silicon sensor frame |
1124 |
|
|
c$$$c------------------------------------------------------------------------ |
1125 |
|
|
c$$$ xi = acoordsi(stripx,viewx) |
1126 |
|
|
c$$$ yi = acoordsi(stripy,viewy) |
1127 |
|
|
c$$$ zi = 0. |
1128 |
|
|
c$$$ |
1129 |
|
|
c$$$ |
1130 |
|
|
c$$$c------------------------------------------------------------------------ |
1131 |
|
|
c$$$c (xrt,yrt,zrt) = rototranslated coordinates in the silicon sensor frame |
1132 |
|
|
c$$$c------------------------------------------------------------------------ |
1133 |
|
|
c$$$c N.B. I convert angles from microradiants to radiants |
1134 |
|
|
c$$$ |
1135 |
|
|
c$$$ xrt = xi |
1136 |
|
|
c$$$ $ - omega(nplx,nldx,sensor)*yi |
1137 |
|
|
c$$$ $ + gamma(nplx,nldx,sensor)*zi |
1138 |
|
|
c$$$ $ + dx(nplx,nldx,sensor) |
1139 |
|
|
c$$$ |
1140 |
|
|
c$$$ yrt = omega(nplx,nldx,sensor)*xi |
1141 |
|
|
c$$$ $ + yi |
1142 |
|
|
c$$$ $ - beta(nplx,nldx,sensor)*zi |
1143 |
|
|
c$$$ $ + dy(nplx,nldx,sensor) |
1144 |
|
|
c$$$ |
1145 |
|
|
c$$$ zrt = -gamma(nplx,nldx,sensor)*xi |
1146 |
|
|
c$$$ $ + beta(nplx,nldx,sensor)*yi |
1147 |
|
|
c$$$ $ + zi |
1148 |
|
|
c$$$ $ + dz(nplx,nldx,sensor) |
1149 |
|
|
c$$$ |
1150 |
|
|
c$$$c xrt = xi |
1151 |
|
|
c$$$c yrt = yi |
1152 |
|
|
c$$$c zrt = zi |
1153 |
|
|
c$$$ |
1154 |
|
|
c$$$c------------------------------------------------------------------------ |
1155 |
|
|
c$$$c (xPAM,yPAM,zPAM) = measured coordinates (in cm) |
1156 |
|
|
c$$$c in PAMELA reference system |
1157 |
|
|
c$$$c------------------------------------------------------------------------ |
1158 |
|
|
c$$$ |
1159 |
|
|
c$$$ xPAM = dcoord(xrt,viewx,nldx,sensor) / 1.d4 |
1160 |
|
|
c$$$ yPAM = dcoord(yrt,viewy,nldy,sensor) / 1.d4 |
1161 |
|
|
c$$$ zPAM = ( zrt + z_mech_sensor(nplx,nldx,sensor)*1000. ) / 1.d4 |
1162 |
|
|
c$$$ |
1163 |
|
|
c$$$ xPAM_A = 0. |
1164 |
|
|
c$$$ yPAM_A = 0. |
1165 |
|
|
c$$$ zPAM_A = 0. |
1166 |
|
|
c$$$ |
1167 |
|
|
c$$$ xPAM_B = 0. |
1168 |
|
|
c$$$ yPAM_B = 0. |
1169 |
|
|
c$$$ zPAM_B = 0. |
1170 |
|
|
c$$$ |
1171 |
|
|
c$$$ elseif( |
1172 |
|
|
c$$$ $ (icx.ne.0.and.icy.eq.0).or. |
1173 |
|
|
c$$$ $ (icx.eq.0.and.icy.ne.0).or. |
1174 |
|
|
c$$$ $ .false. |
1175 |
|
|
c$$$ $ )then |
1176 |
|
|
c$$$ |
1177 |
|
|
c$$$c------------------------------------------------------------------------ |
1178 |
|
|
c$$$c (xi,yi,zi) = mechanical coordinates in the silicon sensor frame |
1179 |
|
|
c$$$c------------------------------------------------------------------------ |
1180 |
|
|
c$$$ |
1181 |
|
|
c$$$ if(icy.ne.0)then |
1182 |
|
|
c$$$c=========================================================== |
1183 |
|
|
c$$$C Y-SINGLET |
1184 |
|
|
c$$$C=========================================================== |
1185 |
|
|
c$$$ nplx = nply |
1186 |
|
|
c$$$ nldx = nldy |
1187 |
|
|
c$$$ viewx = viewy + 1 |
1188 |
|
|
c$$$ |
1189 |
|
|
c$$$ yi = acoordsi(stripy,viewy) |
1190 |
|
|
c$$$ |
1191 |
|
|
c$$$ xi_A = edgeY_d - SiDimX/2 |
1192 |
|
|
c$$$ yi_A = yi |
1193 |
|
|
c$$$ zi_A = 0. |
1194 |
|
|
c$$$ |
1195 |
|
|
c$$$ xi_B = SiDimX/2 - edgeY_u |
1196 |
|
|
c$$$ yi_B = yi |
1197 |
|
|
c$$$ zi_B = 0. |
1198 |
|
|
c$$$ |
1199 |
|
|
c$$$c print*,'Y-cl ',icy,stripy,' --> ',yi |
1200 |
|
|
c$$$c print*,xi_A,' <--> ',xi_B |
1201 |
|
|
c$$$ |
1202 |
|
|
c$$$ elseif(icx.ne.0)then |
1203 |
|
|
c$$$c=========================================================== |
1204 |
|
|
c$$$C X-SINGLET |
1205 |
|
|
c$$$C=========================================================== |
1206 |
|
|
c$$$ |
1207 |
|
|
c$$$ nply = nplx |
1208 |
|
|
c$$$ nldy = nldx |
1209 |
|
|
c$$$ viewy = viewx - 1 |
1210 |
|
|
c$$$ |
1211 |
|
|
c$$$ xi = acoordsi(stripx,viewx) |
1212 |
|
|
c$$$ |
1213 |
|
|
c$$$ xi_A = xi |
1214 |
|
|
c$$$ yi_A = edgeX_d - SiDimY/2 |
1215 |
|
|
c$$$ zi_A = 0. |
1216 |
|
|
c$$$ |
1217 |
|
|
c$$$ xi_B = xi |
1218 |
|
|
c$$$ yi_B = SiDimY/2 - edgeX_u |
1219 |
|
|
c$$$ zi_B = 0. |
1220 |
|
|
c$$$ |
1221 |
|
|
c$$$ if(viewy.eq.11)then |
1222 |
|
|
c$$$ yi = yi_A |
1223 |
|
|
c$$$ yi_A = yi_B |
1224 |
|
|
c$$$ yi_B = yi |
1225 |
|
|
c$$$ endif |
1226 |
|
|
c$$$ |
1227 |
|
|
c$$$c print*,'X-cl ',icx,stripx,' --> ',xi |
1228 |
|
|
c$$$c print*,yi_A,' <--> ',yi_B |
1229 |
|
|
c$$$ |
1230 |
|
|
c$$$ else |
1231 |
|
|
c$$$ |
1232 |
|
|
c$$$ print *,'routine xyz_PAM ---> not properly used !!!' |
1233 |
|
|
c$$$ print *,'icx = ',icx |
1234 |
|
|
c$$$ print *,'icy = ',icy |
1235 |
|
|
c$$$ goto 100 |
1236 |
|
|
c$$$ |
1237 |
|
|
c$$$ endif |
1238 |
|
|
c$$$c------------------------------------------------------------------------ |
1239 |
|
|
c$$$c (xrt,yrt,zrt) = rototranslated coordinates in the silicon sensor frame |
1240 |
|
|
c$$$c------------------------------------------------------------------------ |
1241 |
|
|
c$$$c N.B. I convert angles from microradiants to radiants |
1242 |
|
|
c$$$ |
1243 |
|
|
c$$$ xrt_A = xi_A |
1244 |
|
|
c$$$ $ - omega(nplx,nldx,sensor)*yi_A |
1245 |
|
|
c$$$ $ + gamma(nplx,nldx,sensor)*zi_A |
1246 |
|
|
c$$$ $ + dx(nplx,nldx,sensor) |
1247 |
|
|
c$$$ |
1248 |
|
|
c$$$ yrt_A = omega(nplx,nldx,sensor)*xi_A |
1249 |
|
|
c$$$ $ + yi_A |
1250 |
|
|
c$$$ $ - beta(nplx,nldx,sensor)*zi_A |
1251 |
|
|
c$$$ $ + dy(nplx,nldx,sensor) |
1252 |
|
|
c$$$ |
1253 |
|
|
c$$$ zrt_A = -gamma(nplx,nldx,sensor)*xi_A |
1254 |
|
|
c$$$ $ + beta(nplx,nldx,sensor)*yi_A |
1255 |
|
|
c$$$ $ + zi_A |
1256 |
|
|
c$$$ $ + dz(nplx,nldx,sensor) |
1257 |
|
|
c$$$ |
1258 |
|
|
c$$$ xrt_B = xi_B |
1259 |
|
|
c$$$ $ - omega(nplx,nldx,sensor)*yi_B |
1260 |
|
|
c$$$ $ + gamma(nplx,nldx,sensor)*zi_B |
1261 |
|
|
c$$$ $ + dx(nplx,nldx,sensor) |
1262 |
|
|
c$$$ |
1263 |
|
|
c$$$ yrt_B = omega(nplx,nldx,sensor)*xi_B |
1264 |
|
|
c$$$ $ + yi_B |
1265 |
|
|
c$$$ $ - beta(nplx,nldx,sensor)*zi_B |
1266 |
|
|
c$$$ $ + dy(nplx,nldx,sensor) |
1267 |
|
|
c$$$ |
1268 |
|
|
c$$$ zrt_B = -gamma(nplx,nldx,sensor)*xi_B |
1269 |
|
|
c$$$ $ + beta(nplx,nldx,sensor)*yi_B |
1270 |
|
|
c$$$ $ + zi_B |
1271 |
|
|
c$$$ $ + dz(nplx,nldx,sensor) |
1272 |
|
|
c$$$ |
1273 |
|
|
c$$$ |
1274 |
|
|
c$$$c xrt = xi |
1275 |
|
|
c$$$c yrt = yi |
1276 |
|
|
c$$$c zrt = zi |
1277 |
|
|
c$$$ |
1278 |
|
|
c$$$c------------------------------------------------------------------------ |
1279 |
|
|
c$$$c (xPAM,yPAM,zPAM) = measured coordinates (in cm) |
1280 |
|
|
c$$$c in PAMELA reference system |
1281 |
|
|
c$$$c------------------------------------------------------------------------ |
1282 |
|
|
c$$$ |
1283 |
|
|
c$$$ xPAM = 0. |
1284 |
|
|
c$$$ yPAM = 0. |
1285 |
|
|
c$$$ zPAM = 0. |
1286 |
|
|
c$$$ |
1287 |
|
|
c$$$ xPAM_A = dcoord(xrt_A,viewx,nldx,sensor) / 1.d4 |
1288 |
|
|
c$$$ yPAM_A = dcoord(yrt_A,viewy,nldy,sensor) / 1.d4 |
1289 |
|
|
c$$$ zPAM_A = ( zrt_A + z_mech_sensor(nplx,nldx,sensor)*1000.)/ 1.d4 |
1290 |
|
|
c$$$ |
1291 |
|
|
c$$$ xPAM_B = dcoord(xrt_B,viewx,nldx,sensor) / 1.d4 |
1292 |
|
|
c$$$ yPAM_B = dcoord(yrt_B,viewy,nldy,sensor) / 1.d4 |
1293 |
|
|
c$$$ zPAM_B = ( zrt_B + z_mech_sensor(nplx,nldx,sensor)*1000.)/ 1.d4 |
1294 |
|
|
c$$$ |
1295 |
|
|
c$$$ |
1296 |
|
|
c$$$c print*,'A-(',xPAM_A,yPAM_A,') B-(',xPAM_B,yPAM_B,')' |
1297 |
|
|
c$$$ |
1298 |
|
|
c$$$ else |
1299 |
|
|
c$$$ |
1300 |
|
|
c$$$ print *,'routine xyz_PAM ---> not properly used !!!' |
1301 |
|
|
c$$$ print *,'icx = ',icx |
1302 |
|
|
c$$$ print *,'icy = ',icy |
1303 |
|
|
c$$$ |
1304 |
|
|
c$$$ endif |
1305 |
|
|
c$$$ |
1306 |
|
|
c$$$ 100 continue |
1307 |
|
|
c$$$ end |
1308 |
|
|
c$$$ |
1309 |
|
|
c$$$ |
1310 |
|
|
c$$$******************************************************************************** |
1311 |
|
|
c$$$******************************************************************************** |
1312 |
|
|
c$$$******************************************************************************** |
1313 |
|
|
c$$$* |
1314 |
|
|
c$$$* The function distance_to(XP,YP) should be used after |
1315 |
|
|
c$$$* a call to the xyz_PAM routine and it evaluate the |
1316 |
|
|
c$$$* NORMALIZED distance (PROJECTED on the XY plane) between |
1317 |
|
|
c$$$* the point (XP,YP), argument of the function, |
1318 |
|
|
c$$$* and: |
1319 |
|
|
c$$$* |
1320 |
|
|
c$$$* - the point (xPAM,yPAM,zPAM), in the case of a COUPLE |
1321 |
|
|
c$$$* or |
1322 |
|
|
c$$$* - the segment (xPAM_A,yPAM_A,zPAM_A)-(xPAM_B,yPAM_B,zPAM_B), |
1323 |
|
|
c$$$* in the case of a SINGLET. |
1324 |
|
|
c$$$* |
1325 |
|
|
c$$$* ( The routine xyz_PAM fills the common defined in "common_xyzPAM.f", |
1326 |
|
|
c$$$* which stores the coordinates of the couple/singlet ) |
1327 |
|
|
c$$$* |
1328 |
|
|
c$$$******************************************************************************** |
1329 |
|
|
c$$$ |
1330 |
|
|
c$$$ real function distance_to(XPP,YPP) |
1331 |
|
|
c$$$ |
1332 |
|
|
c$$$ include '../common/common_xyzPAM.f' |
1333 |
|
|
c$$$ |
1334 |
|
|
c$$$* ----------------------------------- |
1335 |
|
|
c$$$* it computes the normalized distance |
1336 |
|
|
c$$$* ( i.e. distance/resolution ) |
1337 |
|
|
c$$$* ----------------------------------- |
1338 |
|
|
c$$$ |
1339 |
|
|
c$$$ double precision distance,RE |
1340 |
|
|
c$$$ double precision BETA,ALFA,xmi,ymi |
1341 |
|
|
c$$$ |
1342 |
|
|
c$$$* ---------------------- |
1343 |
|
|
c$$$ if ( |
1344 |
|
|
c$$$ + xPAM.eq.0.and. |
1345 |
|
|
c$$$ + yPAM.eq.0.and. |
1346 |
|
|
c$$$ + zPAM.eq.0.and. |
1347 |
|
|
c$$$ + xPAM_A.ne.0.and. |
1348 |
|
|
c$$$ + yPAM_A.ne.0.and. |
1349 |
|
|
c$$$ + zPAM_A.ne.0.and. |
1350 |
|
|
c$$$ + xPAM_B.ne.0.and. |
1351 |
|
|
c$$$ + yPAM_B.ne.0.and. |
1352 |
|
|
c$$$ + zPAM_B.ne.0.and. |
1353 |
|
|
c$$$ + .true.)then |
1354 |
|
|
c$$$* ----------------------- |
1355 |
|
|
c$$$* DISTANCE TO --- SINGLET |
1356 |
|
|
c$$$* ----------------------- |
1357 |
|
|
c$$$ if(abs(sngl(xPAM_B-xPAM_A)).lt.abs(sngl(yPAM_B-yPAM_A)))then |
1358 |
|
|
c$$$* |||---------- X CLUSTER |
1359 |
|
|
c$$$ |
1360 |
|
|
c$$$ BETA = (xPAM_B-xPAM_A)/(yPAM_B-yPAM_A) |
1361 |
|
|
c$$$ ALFA = xPAM_A - BETA * yPAM_A |
1362 |
|
|
c$$$ |
1363 |
|
|
c$$$ ymi = ( YPP + BETA*XPP - BETA*ALFA )/(1+BETA**2) |
1364 |
|
|
c$$$ if(ymi.lt.dmin1(yPAM_A,yPAM_B))ymi=dmin1(yPAM_A,yPAM_B) |
1365 |
|
|
c$$$ if(ymi.gt.dmax1(yPAM_A,yPAM_B))ymi=dmax1(yPAM_A,yPAM_B) |
1366 |
|
|
c$$$ xmi = ALFA + BETA * ymi |
1367 |
|
|
c$$$ RE = resxPAM |
1368 |
|
|
c$$$ |
1369 |
|
|
c$$$ else |
1370 |
|
|
c$$$* |||---------- Y CLUSTER |
1371 |
|
|
c$$$ |
1372 |
|
|
c$$$ BETA = (yPAM_B-yPAM_A)/(xPAM_B-xPAM_A) |
1373 |
|
|
c$$$ ALFA = yPAM_A - BETA * xPAM_A |
1374 |
|
|
c$$$ |
1375 |
|
|
c$$$ xmi = ( XPP + BETA*YPP - BETA*ALFA )/(1+BETA**2) |
1376 |
|
|
c$$$ if(xmi.lt.dmin1(xPAM_A,xPAM_B))xmi=dmin1(xPAM_A,xPAM_B) |
1377 |
|
|
c$$$ if(xmi.gt.dmax1(xPAM_A,xPAM_B))xmi=dmax1(xPAM_A,xPAM_B) |
1378 |
|
|
c$$$ ymi = ALFA + BETA * xmi |
1379 |
|
|
c$$$ RE = resyPAM |
1380 |
|
|
c$$$ |
1381 |
|
|
c$$$ endif |
1382 |
|
|
c$$$ |
1383 |
|
|
c$$$ distance= |
1384 |
|
|
c$$$ $ ((xmi-XPP)**2+(ymi-YPP)**2)/RE**2 |
1385 |
|
|
c$$$ distance=dsqrt(distance) |
1386 |
|
|
c$$$ |
1387 |
|
|
c$$$c$$$ print*,xPAM_A,yPAM_A,zPAM_A,xPAM_b,yPAM_b,zPAM_b |
1388 |
|
|
c$$$c$$$ $ ,' --- distance_to --- ',xpp,ypp |
1389 |
|
|
c$$$c$$$ print*,' resolution ',re |
1390 |
|
|
c$$$ |
1391 |
|
|
c$$$ |
1392 |
|
|
c$$$* ---------------------- |
1393 |
|
|
c$$$ elseif( |
1394 |
|
|
c$$$ + xPAM.ne.0.and. |
1395 |
|
|
c$$$ + yPAM.ne.0.and. |
1396 |
|
|
c$$$ + zPAM.ne.0.and. |
1397 |
|
|
c$$$ + xPAM_A.eq.0.and. |
1398 |
|
|
c$$$ + yPAM_A.eq.0.and. |
1399 |
|
|
c$$$ + zPAM_A.eq.0.and. |
1400 |
|
|
c$$$ + xPAM_B.eq.0.and. |
1401 |
|
|
c$$$ + yPAM_B.eq.0.and. |
1402 |
|
|
c$$$ + zPAM_B.eq.0.and. |
1403 |
|
|
c$$$ + .true.)then |
1404 |
|
|
c$$$* ---------------------- |
1405 |
|
|
c$$$* DISTANCE TO --- COUPLE |
1406 |
|
|
c$$$* ---------------------- |
1407 |
|
|
c$$$ |
1408 |
|
|
c$$$ distance= |
1409 |
|
|
c$$$ $ ((xPAM-XPP)/resxPAM)**2 |
1410 |
|
|
c$$$ $ + |
1411 |
|
|
c$$$ $ ((yPAM-YPP)/resyPAM)**2 |
1412 |
|
|
c$$$ distance=dsqrt(distance) |
1413 |
|
|
c$$$ |
1414 |
|
|
c$$$c$$$ print*,xPAM,yPAM,zPAM |
1415 |
|
|
c$$$c$$$ $ ,' --- distance_to --- ',xpp,ypp |
1416 |
|
|
c$$$c$$$ print*,' resolution ',resxPAM,resyPAM |
1417 |
|
|
c$$$ |
1418 |
|
|
c$$$ else |
1419 |
|
|
c$$$ |
1420 |
|
|
c$$$ print* |
1421 |
|
|
c$$$ $ ,' function distance_to ---> wrong usage!!!' |
1422 |
|
|
c$$$ print*,' xPAM,yPAM,zPAM ',xPAM,yPAM,zPAM |
1423 |
|
|
c$$$ print*,' xPAM_A,yPAM_A,zPAM_A,xPAM_b,yPAM_b,zPAM_b ' |
1424 |
|
|
c$$$ $ ,xPAM_A,yPAM_A,zPAM_A,xPAM_b,yPAM_b,zPAM_b |
1425 |
|
|
c$$$ endif |
1426 |
|
|
c$$$ |
1427 |
|
|
c$$$ distance_to = sngl(distance) |
1428 |
|
|
c$$$ |
1429 |
|
|
c$$$ return |
1430 |
|
|
c$$$ end |
1431 |
|
|
c$$$ |
1432 |
|
|
c$$$******************************************************************************** |
1433 |
|
|
c$$$******************************************************************************** |
1434 |
|
|
c$$$******************************************************************************** |
1435 |
|
|
c$$$******************************************************************************** |
1436 |
|
|
c$$$ |
1437 |
|
|
c$$$ subroutine whichsensor(nplPAM,xPAM,yPAM,ladder,sensor) |
1438 |
|
|
c$$$* * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * |
1439 |
|
|
c$$$* Given the view and the (xPAM,yPAM) coordinates (in the PAMELA |
1440 |
|
|
c$$$* reference system), it returns the ladder and the sensor |
1441 |
|
|
c$$$* which the point belongs to. |
1442 |
|
|
c$$$* |
1443 |
|
|
c$$$* The method to assign a point to a sensor consists in |
1444 |
|
|
c$$$* - calculating the sum of the distances between the point |
1445 |
|
|
c$$$* and the sensor edges |
1446 |
|
|
c$$$* - requiring that it is less-equal than (SiDimX+SiDimY) |
1447 |
|
|
c$$$* (should be strictly equal actually...) |
1448 |
|
|
c$$$* |
1449 |
|
|
c$$$* NB -- SiDimX and SiDimY are not the dimentions of the SENSITIVE volume |
1450 |
|
|
c$$$* but of the whole silicon sensor |
1451 |
|
|
c$$$* * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * |
1452 |
|
|
c$$$ include '../common/commontracker.f' |
1453 |
|
|
c$$$ include '../common/common_align.f' |
1454 |
|
|
c$$$ |
1455 |
|
|
c$$$ integer ladder,sensor,viewx,viewy |
1456 |
|
|
c$$$ real c1(4),c2(4),c3(4) |
1457 |
|
|
c$$$ data c1/1.,0.,0.,1./ |
1458 |
|
|
c$$$ data c2/1.,-1.,-1.,1./ |
1459 |
|
|
c$$$ data c3/1.,1.,0.,0./ |
1460 |
|
|
c$$$ real*8 yvvv,xvvv |
1461 |
|
|
c$$$ double precision xi,yi,zi |
1462 |
|
|
c$$$ double precision xrt,yrt,zrt |
1463 |
|
|
c$$$ real AA,BB |
1464 |
|
|
c$$$ real yvv(4),xvv(4) |
1465 |
|
|
c$$$ |
1466 |
|
|
c$$$* tollerance to consider the track inside the sensitive area |
1467 |
|
|
c$$$ real ptoll |
1468 |
|
|
c$$$ data ptoll/150./ !um |
1469 |
|
|
c$$$ |
1470 |
|
|
c$$$ external nviewx,nviewy,acoordsi,dcoord |
1471 |
|
|
c$$$ |
1472 |
|
|
c$$$ |
1473 |
|
|
c$$$ |
1474 |
|
|
c$$$ nplpt = nplPAM !plane |
1475 |
|
|
c$$$ viewx = nviewx(nplpt) |
1476 |
|
|
c$$$ viewy = nviewy(nplpt) |
1477 |
|
|
c$$$ |
1478 |
|
|
c$$$ do il=1,nladders_view |
1479 |
|
|
c$$$ do is=1,2 |
1480 |
|
|
c$$$ |
1481 |
|
|
c$$$ do iv=1,4 !loop on sensor vertexes |
1482 |
|
|
c$$$ stripx = (il-c1(iv))*1024 + c1(iv) + c2(iv)*3 |
1483 |
|
|
c$$$ stripy = (il-c3(iv))*1024 + c3(iv) |
1484 |
|
|
c$$$c------------------------------------------------------------------------ |
1485 |
|
|
c$$$c (xi,yi,zi) = mechanical coordinates in the silicon sensor frame |
1486 |
|
|
c$$$c------------------------------------------------------------------------ |
1487 |
|
|
c$$$ xi = acoordsi(stripx,viewx) |
1488 |
|
|
c$$$ yi = acoordsi(stripy,viewy) |
1489 |
|
|
c$$$ zi = 0. |
1490 |
|
|
c$$$c------------------------------------------------------------------------ |
1491 |
|
|
c$$$c (xrt,yrt,zrt) = rototranslated coordinates in the silicon sensor frame |
1492 |
|
|
c$$$c------------------------------------------------------------------------ |
1493 |
|
|
c$$$c N.B. I convert angles from microradiants to radiants |
1494 |
|
|
c$$$ xrt = xi |
1495 |
|
|
c$$$ $ - omega(nplpt,il,is)*yi |
1496 |
|
|
c$$$ $ + gamma(nplpt,il,is)*zi |
1497 |
|
|
c$$$ $ + dx(nplpt,il,is) |
1498 |
|
|
c$$$ yrt = omega(nplpt,il,is)*xi |
1499 |
|
|
c$$$ $ + yi |
1500 |
|
|
c$$$ $ - beta(nplpt,il,is)*zi |
1501 |
|
|
c$$$ $ + dy(nplpt,il,is) |
1502 |
|
|
c$$$ zrt = -gamma(nplpt,il,is)*xi |
1503 |
|
|
c$$$ $ + beta(nplpt,il,is)*yi |
1504 |
|
|
c$$$ $ + zi |
1505 |
|
|
c$$$ $ + dz(nplpt,il,is) |
1506 |
|
|
c$$$c------------------------------------------------------------------------ |
1507 |
|
|
c$$$c measured coordinates (in cm) in PAMELA reference system |
1508 |
|
|
c$$$c------------------------------------------------------------------------ |
1509 |
|
|
c$$$ yvvv = dcoord(yrt,viewy,il,is) / 1.d4 |
1510 |
|
|
c$$$ xvvv = dcoord(xrt,viewx,il,is) / 1.d4 |
1511 |
|
|
c$$$ |
1512 |
|
|
c$$$ yvv(iv)=sngl(yvvv) |
1513 |
|
|
c$$$ xvv(iv)=sngl(xvvv) |
1514 |
|
|
c$$$c print*,'LADDER ',il,' SENSOR ',is,' vertexes >> ' |
1515 |
|
|
c$$$c $ ,iv,xvv(iv),yvv(iv) |
1516 |
|
|
c$$$ enddo !end loop on sensor vertexes |
1517 |
|
|
c$$$ |
1518 |
|
|
c$$$ dtot=0. |
1519 |
|
|
c$$$ do iside=1,4,2 !loop on sensor edges X |
1520 |
|
|
c$$$ iv1=iside |
1521 |
|
|
c$$$ iv2=mod(iside,4)+1 |
1522 |
|
|
c$$$* straight line passing trhough two consecutive vertexes |
1523 |
|
|
c$$$ AA = (yvv(iv1)-yvv(iv2))/(xvv(iv1)-xvv(iv2)) |
1524 |
|
|
c$$$ BB = yvv(iv1) - AA*xvv(iv1) |
1525 |
|
|
c$$$* point along the straight line closer to the track |
1526 |
|
|
c$$$ xoo = (xPAM+AA*yPAM-AA*BB)/(1+AA**2) |
1527 |
|
|
c$$$ yoo = AA*xoo + BB |
1528 |
|
|
c$$$* sum of the distances |
1529 |
|
|
c$$$ dtot = dtot + |
1530 |
|
|
c$$$ $ sqrt((xPAM-xoo)**2+(yPAM-yoo)**2) |
1531 |
|
|
c$$$ enddo !end loop on sensor edges |
1532 |
|
|
c$$$ do iside=2,4,2 !loop on sensor edges Y |
1533 |
|
|
c$$$ iv1=iside |
1534 |
|
|
c$$$ iv2=mod(iside,4)+1 |
1535 |
|
|
c$$$* straight line passing trhough two consecutive vertexes |
1536 |
|
|
c$$$ AA = (xvv(iv1)-xvv(iv2))/(yvv(iv1)-yvv(iv2)) |
1537 |
|
|
c$$$ BB = xvv(iv1) - AA*yvv(iv1) |
1538 |
|
|
c$$$* point along the straight line closer to the track |
1539 |
|
|
c$$$ yoo = (yPAM+AA*xPAM-AA*BB)/(1+AA**2) |
1540 |
|
|
c$$$ xoo = AA*yoo + BB |
1541 |
|
|
c$$$* sum of the distances |
1542 |
|
|
c$$$ dtot = dtot + |
1543 |
|
|
c$$$ $ sqrt((xPAM-xoo)**2+(yPAM-yoo)**2) |
1544 |
|
|
c$$$ enddo !end loop on sensor edges |
1545 |
|
|
c$$$ |
1546 |
|
|
c$$$ |
1547 |
|
|
c$$$* half-perimeter of sensitive area |
1548 |
|
|
c$$$ Perim = |
1549 |
|
|
c$$$ $ SiDimX - edgeX_l - edgeX_r |
1550 |
|
|
c$$$ $ +SiDimY - edgeY_l - edgeY_r |
1551 |
|
|
c$$$ Perim = (Perim + ptoll)/1.e4 |
1552 |
|
|
c$$$ if(dtot.le.Perim)goto 100 |
1553 |
|
|
c$$$ |
1554 |
|
|
c$$$ |
1555 |
|
|
c$$$ enddo |
1556 |
|
|
c$$$ enddo |
1557 |
|
|
c$$$ |
1558 |
|
|
c$$$ ladder = 0 |
1559 |
|
|
c$$$ sensor = 0 |
1560 |
|
|
c$$$ goto 200 |
1561 |
|
|
c$$$ |
1562 |
|
|
c$$$ 100 continue |
1563 |
|
|
c$$$ ladder = il |
1564 |
|
|
c$$$ sensor = is |
1565 |
|
|
c$$$ |
1566 |
|
|
c$$$ |
1567 |
|
|
c$$$ 200 return |
1568 |
|
|
c$$$ end |
1569 |
|
|
c$$$ |
1570 |
|
|
c$$$ |
1571 |
|
|
c$$$ |
1572 |
|
|
c$$$************************************************************************* |
1573 |
|
|
c$$$ |
1574 |
|
|
c$$$ subroutine reverse(v,n,temp) !invert the order of the components of v(n) vector |
1575 |
|
|
c$$$ |
1576 |
|
|
c$$$ implicit double precision (A-H,O-Z) |
1577 |
|
|
c$$$ |
1578 |
|
|
c$$$ dimension v(*) |
1579 |
|
|
c$$$ dimension temp(*) |
1580 |
|
|
c$$$ integer i,n |
1581 |
|
|
c$$$ |
1582 |
|
|
c$$$ do i=1,n |
1583 |
|
|
c$$$ temp(i)=v(n+1-i) |
1584 |
|
|
c$$$ enddo |
1585 |
|
|
c$$$ |
1586 |
|
|
c$$$ do i=1,n |
1587 |
|
|
c$$$ v(i)=temp(i) |
1588 |
|
|
c$$$ enddo |
1589 |
|
|
c$$$ |
1590 |
|
|
c$$$ return |
1591 |
|
|
c$$$ end |
1592 |
|
|
c$$$ |
1593 |
|
|
c$$$************************************************************************* |
1594 |
|
|
c$$$************************************************************************* |
1595 |
|
|
c$$$************************************************************************* |
1596 |
|
|
c$$$************************************************************************* |
1597 |
|
|
c$$$************************************************************************* |
1598 |
|
|
c$$$************************************************************************* |
1599 |
|
|
c$$$************************************************************************* |
1600 |
|
|
c$$$************************************************************************* |
1601 |
|
|
c$$$************************************************************************* |
1602 |
|
|
c$$$************************************************************************* |
1603 |
|
|
c$$$************************************************************************* |
1604 |
|
|
c$$$************************************************************************* |
1605 |
|
|
c$$$************************************************************************* |
1606 |
|
|
c$$$************************************************************************* |
1607 |
|
|
c$$$************************************************************************* |
1608 |
|
|
c$$$ integer function ip_cp(id) |
1609 |
|
|
c$$$* |
1610 |
|
|
c$$$* given the couple id, |
1611 |
|
|
c$$$* it returns the plane number |
1612 |
|
|
c$$$* |
1613 |
|
|
c$$$ include '../common/commontracker.f' |
1614 |
|
|
c$$$c include '../common/common_analysis.f' |
1615 |
|
|
c$$$ include '../common/common_momanhough.f' |
1616 |
|
|
c$$$ |
1617 |
|
|
c$$$ ip_cp=0 |
1618 |
|
|
c$$$ ncpp=0 |
1619 |
|
|
c$$$ do ip=1,nplanes |
1620 |
|
|
c$$$ ncpp=ncpp+ncp_plane(ip) |
1621 |
|
|
c$$$ if(ncpp.ge.abs(id))then |
1622 |
|
|
c$$$ ip_cp=ip |
1623 |
|
|
c$$$ goto 100 |
1624 |
|
|
c$$$ endif |
1625 |
|
|
c$$$ enddo |
1626 |
|
|
c$$$ 100 continue |
1627 |
|
|
c$$$ return |
1628 |
|
|
c$$$ end |
1629 |
|
|
c$$$ |
1630 |
|
|
c$$$ |
1631 |
|
|
c$$$ integer function is_cp(id) |
1632 |
|
|
c$$$* |
1633 |
|
|
c$$$* given the couple id, |
1634 |
|
|
c$$$* it returns the sensor number |
1635 |
|
|
c$$$* |
1636 |
|
|
c$$$ is_cp=0 |
1637 |
|
|
c$$$ if(id.lt.0)is_cp=1 |
1638 |
|
|
c$$$ if(id.gt.0)is_cp=2 |
1639 |
|
|
c$$$ if(id.eq.0)print*,'IS_CP ===> wrong couple id !!!' |
1640 |
|
|
c$$$ |
1641 |
|
|
c$$$ return |
1642 |
|
|
c$$$ end |
1643 |
|
|
c$$$ |
1644 |
|
|
c$$$ |
1645 |
|
|
c$$$ integer function icp_cp(id) |
1646 |
|
|
c$$$* |
1647 |
|
|
c$$$* given the couple id, |
1648 |
|
|
c$$$* it returns the id number ON THE PLANE |
1649 |
|
|
c$$$* |
1650 |
|
|
c$$$ include '../common/commontracker.f' |
1651 |
|
|
c$$$c include '../common/common_analysis.f' |
1652 |
|
|
c$$$ include '../common/common_momanhough.f' |
1653 |
|
|
c$$$ |
1654 |
|
|
c$$$ icp_cp=0 |
1655 |
|
|
c$$$ |
1656 |
|
|
c$$$ ncpp=0 |
1657 |
|
|
c$$$ do ip=1,nplanes |
1658 |
|
|
c$$$ ncppold=ncpp |
1659 |
|
|
c$$$ ncpp=ncpp+ncp_plane(ip) |
1660 |
|
|
c$$$ if(ncpp.ge.abs(id))then |
1661 |
|
|
c$$$ icp_cp=abs(id)-ncppold |
1662 |
|
|
c$$$ goto 100 |
1663 |
|
|
c$$$ endif |
1664 |
|
|
c$$$ enddo |
1665 |
|
|
c$$$ 100 continue |
1666 |
|
|
c$$$ return |
1667 |
|
|
c$$$ end |
1668 |
|
|
c$$$ |
1669 |
|
|
c$$$ |
1670 |
|
|
c$$$ |
1671 |
|
|
c$$$ integer function id_cp(ip,icp,is) |
1672 |
|
|
c$$$* |
1673 |
|
|
c$$$* given a plane, a couple and the sensor |
1674 |
|
|
c$$$* it returns the absolute couple id |
1675 |
|
|
c$$$* negative if sensor =1 |
1676 |
|
|
c$$$* positive if sensor =2 |
1677 |
|
|
c$$$* |
1678 |
|
|
c$$$ include '../common/commontracker.f' |
1679 |
|
|
c$$$c include '../common/calib.f' |
1680 |
|
|
c$$$c include '../common/level1.f' |
1681 |
|
|
c$$$c include '../common/common_analysis.f' |
1682 |
|
|
c$$$ include '../common/common_momanhough.f' |
1683 |
|
|
c$$$ |
1684 |
|
|
c$$$ id_cp=0 |
1685 |
|
|
c$$$ |
1686 |
|
|
c$$$ if(ip.gt.1)then |
1687 |
|
|
c$$$ do i=1,ip-1 |
1688 |
|
|
c$$$ id_cp = id_cp + ncp_plane(i) |
1689 |
|
|
c$$$ enddo |
1690 |
|
|
c$$$ endif |
1691 |
|
|
c$$$ |
1692 |
|
|
c$$$ id_cp = id_cp + icp |
1693 |
|
|
c$$$ |
1694 |
|
|
c$$$ if(is.eq.1) id_cp = -id_cp |
1695 |
|
|
c$$$ |
1696 |
|
|
c$$$ return |
1697 |
|
|
c$$$ end |
1698 |
|
|
c$$$ |
1699 |
|
|
c$$$ |
1700 |
|
|
c$$$ |
1701 |
|
|
c$$$ |
1702 |
|
|
c$$$************************************************************************* |
1703 |
|
|
c$$$************************************************************************* |
1704 |
|
|
c$$$************************************************************************* |
1705 |
|
|
c$$$************************************************************************* |
1706 |
|
|
c$$$************************************************************************* |
1707 |
|
|
c$$$************************************************************************* |
1708 |
|
|
c$$$ subroutine book_debug |
1709 |
|
|
c$$$ |
1710 |
|
|
c$$$ include '../common/commontracker.f' |
1711 |
|
|
c$$$c include '../common/calib.f' |
1712 |
|
|
c$$$c include '../common/level1.f' |
1713 |
|
|
c$$$c include '../common/common_analysis.f' |
1714 |
|
|
c$$$ include '../common/common_momanhough.f' |
1715 |
|
|
c$$$ include '../common/common_level2debug.f' |
1716 |
|
|
c$$$ |
1717 |
|
|
c$$$c include '../common/common_mini.f' |
1718 |
|
|
c$$$ |
1719 |
|
|
c$$$ character*35 block1,block2,block3,block4 |
1720 |
|
|
c$$$ $ ,block5,block6 |
1721 |
|
|
c$$$ |
1722 |
|
|
c$$$ |
1723 |
|
|
c$$$* * * * * * * * * * * * * * * * * * * * * * * * |
1724 |
|
|
c$$$* HOUGH TRANSFORM PARAMETERS |
1725 |
|
|
c$$$c call HBOOK1(1001 |
1726 |
|
|
c$$$c $ ,'y' |
1727 |
|
|
c$$$c $ ,3000,-70.,70.,0.) |
1728 |
|
|
c$$$c call HBOOK1(1002 |
1729 |
|
|
c$$$c $ ,'tg thyz' |
1730 |
|
|
c$$$c $ ,300,-1.,1.,0.) |
1731 |
|
|
c$$$ |
1732 |
|
|
c$$$ call HBOOK2(1003 |
1733 |
|
|
c$$$ $ ,'y vs tg thyz' |
1734 |
|
|
c$$$ $ ,300,-1.,1. !x |
1735 |
|
|
c$$$ $ ,3000,-70.,70.,0.) !y |
1736 |
|
|
c$$$ |
1737 |
|
|
c$$$ call HBOOK1(1004 |
1738 |
|
|
c$$$ $ ,'Dy' |
1739 |
|
|
c$$$ $ ,100,0.,2.,0.) |
1740 |
|
|
c$$$ |
1741 |
|
|
c$$$ call HBOOK1(1005 |
1742 |
|
|
c$$$ $ ,'D thyz' |
1743 |
|
|
c$$$ $ ,100,0.,.05,0.) |
1744 |
|
|
c$$$ |
1745 |
|
|
c$$$ |
1746 |
|
|
c$$$ |
1747 |
|
|
c$$$* DEBUG ntuple: |
1748 |
|
|
c$$$ call HBNT(ntp_level2+1,'LEVEL2',' ') |
1749 |
|
|
c$$$ |
1750 |
|
|
c$$$ call HBNAME(ntp_level2+1,'EVENT',good2_nt, |
1751 |
|
|
c$$$ $ 'GOOD2:L,NEV2:I') |
1752 |
|
|
c$$$ |
1753 |
|
|
c$$$ 411 format('NDBLT:I::[0,',I5,']') |
1754 |
|
|
c$$$ write(block1,411) ndblt_max_nt |
1755 |
|
|
c$$$ call HBNAME(ntp_level2+1,'HOUGH YZ',ndblt_nt, |
1756 |
|
|
c$$$ $ block1//' |
1757 |
|
|
c$$$ $ ,ALFAYZ1(NDBLT):R |
1758 |
|
|
c$$$ $ ,ALFAYZ2(NDBLT):R |
1759 |
|
|
c$$$ $ ') |
1760 |
|
|
c$$$ |
1761 |
|
|
c$$$ 412 format('NTRPT:I::[0,',I5,']') |
1762 |
|
|
c$$$ write(block2,412) ntrpt_max_nt |
1763 |
|
|
c$$$ call HBNAME(ntp_level2+1,'HOUGH XZ',NTRPT_nt, |
1764 |
|
|
c$$$ $ block2//' |
1765 |
|
|
c$$$ $ ,ALFAXZ1(NTRPT):R |
1766 |
|
|
c$$$ $ ,ALFAXZ2(NTRPT):R |
1767 |
|
|
c$$$ $ ,ALFAXZ3(NTRPT):R |
1768 |
|
|
c$$$ $ ') |
1769 |
|
|
c$$$ |
1770 |
|
|
c$$$ |
1771 |
|
|
c$$$ 413 format('NCLOUDS_YZ:I::[0,',I4,']') |
1772 |
|
|
c$$$ 414 format('DB_CLOUD(',I4,'):I') |
1773 |
|
|
c$$$ write(block3,413) ncloyz_max |
1774 |
|
|
c$$$ write(block4,414) ndblt_max_nt |
1775 |
|
|
c$$$ call HBNAME(ntp_level2+1,'CLOUD YZ',NCLOUDS_YZ, |
1776 |
|
|
c$$$ $ block3//' |
1777 |
|
|
c$$$ $ ,ALFAYZ1_AV(NCLOUDS_YZ):R |
1778 |
|
|
c$$$ $ ,ALFAYZ2_AV(NCLOUDS_YZ):R |
1779 |
|
|
c$$$ $ ,PTCLOUD_YZ(NCLOUDS_YZ):I |
1780 |
|
|
c$$$ $ ,'//block4 |
1781 |
|
|
c$$$ $ ) |
1782 |
|
|
c$$$ |
1783 |
|
|
c$$$ 415 format('NCLOUDS_XZ:I::[0,',I4,']') |
1784 |
|
|
c$$$ 416 format('TR_CLOUD(',I5,'):I') |
1785 |
|
|
c$$$ write(block5,415) ncloxz_max |
1786 |
|
|
c$$$ write(block6,416) ntrpt_max_nt |
1787 |
|
|
c$$$ call HBNAME(ntp_level2+1,'CLOUD XZ',NCLOUDS_XZ, |
1788 |
|
|
c$$$ $ block5//' |
1789 |
|
|
c$$$ $ ,ALFAXZ1_AV(NCLOUDS_XZ):R |
1790 |
|
|
c$$$ $ ,ALFAXZ2_AV(NCLOUDS_XZ):R |
1791 |
|
|
c$$$ $ ,ALFAXZ3_AV(NCLOUDS_XZ):R |
1792 |
|
|
c$$$ $ ,PTCLOUD_XZ(NCLOUDS_XZ):I |
1793 |
|
|
c$$$ $ ,'//block6 |
1794 |
|
|
c$$$ $ ) |
1795 |
|
|
c$$$ |
1796 |
|
|
c$$$ |
1797 |
|
|
c$$$ return |
1798 |
|
|
c$$$ end |
1799 |
|
|
c$$$***...***...***...***...***...***...***...***...***...***...***...***...***...***...***...*** |
1800 |
|
|
c$$$* |
1801 |
|
|
c$$$* |
1802 |
|
|
c$$$* |
1803 |
|
|
c$$$* |
1804 |
|
|
c$$$* |
1805 |
|
|
c$$$* |
1806 |
|
|
c$$$* |
1807 |
|
|
c$$$* |
1808 |
|
|
c$$$* |
1809 |
|
|
c$$$***...***...***...***...***...***...***...***...***...***...***...***...***...***...***...*** |
1810 |
|
|
c$$$ subroutine book_level2 |
1811 |
|
|
c$$$ |
1812 |
|
|
c$$$ include '../common/commontracker.f' |
1813 |
|
|
c$$$ include '../common/common_momanhough.f' |
1814 |
|
|
c$$$ include '../common/level2.f' |
1815 |
|
|
c$$$ |
1816 |
|
|
c$$$ character*35 block1,block2 |
1817 |
|
|
c$$$ |
1818 |
|
|
c$$$c print*,'__________ booking LEVEL2 n-tuple __________' |
1819 |
|
|
c$$$ |
1820 |
|
|
c$$$* LEVEL1 ntuple: |
1821 |
|
|
c$$$ call HBNT(ntp_level2,'LEVEL2',' ') |
1822 |
|
|
c$$$ |
1823 |
|
|
c$$$ call HBNAME(ntp_level2,'EVENT',good2, |
1824 |
|
|
c$$$ $ 'GOOD2:L,NEV2:I') |
1825 |
|
|
c$$$ |
1826 |
|
|
c$$$# ifndef TEST2003 |
1827 |
|
|
c$$$ |
1828 |
|
|
c$$$ call HBNAME(ntp_level2,'CPU',pkt_type |
1829 |
|
|
c$$$ $ ,'PKT_TYPE:I::[0,50] |
1830 |
|
|
c$$$ $ ,PKT_NUM:I |
1831 |
|
|
c$$$ $ ,OBT:I |
1832 |
|
|
c$$$ $ ,WHICH_CALIB:I::[0,50]') |
1833 |
|
|
c$$$ |
1834 |
|
|
c$$$# endif |
1835 |
|
|
c$$$ |
1836 |
|
|
c$$$ 417 format('NTRK:I::[0,',I4,']') |
1837 |
|
|
c$$$ 418 format(',IMAGE(NTRK):I::[0,',I4,']') |
1838 |
|
|
c$$$ write(block1,417)NTRKMAX |
1839 |
|
|
c$$$ write(block2,418)NTRKMAX |
1840 |
|
|
c$$$ call HBNAME(ntp_level2,'TRACKS',NTRK, |
1841 |
|
|
c$$$ $ block1// |
1842 |
|
|
c$$$ $ block2//' |
1843 |
|
|
c$$$ $ ,XM(6,NTRK):R |
1844 |
|
|
c$$$ $ ,YM(6,NTRK):R |
1845 |
|
|
c$$$ $ ,ZM(6,NTRK):R |
1846 |
|
|
c$$$ $ ,RESX(6,NTRK):R |
1847 |
|
|
c$$$ $ ,RESY(6,NTRK):R |
1848 |
|
|
c$$$ $ ,AL(5,NTRK):R |
1849 |
|
|
c$$$ $ ,COVAL(5,5,NTRK):R |
1850 |
|
|
c$$$ $ ,CHI2(NTRK):R |
1851 |
|
|
c$$$ $ ,XGOOD(6,NTRK):I::[0,1] |
1852 |
|
|
c$$$ $ ,YGOOD(6,NTRK):I::[0,1] |
1853 |
|
|
c$$$ $ ,XV(6,NTRK):R |
1854 |
|
|
c$$$ $ ,YV(6,NTRK):R |
1855 |
|
|
c$$$ $ ,ZV(6,NTRK):R |
1856 |
|
|
c$$$ $ ,AXV(6,NTRK):R |
1857 |
|
|
c$$$ $ ,AYV(6,NTRK):R |
1858 |
|
|
c$$$ $ ,DEDXP(6,NTRK):R |
1859 |
|
|
c$$$ $ ') |
1860 |
|
|
c$$$ |
1861 |
|
|
c$$$ |
1862 |
|
|
c$$$ call HBNAME(ntp_level2,'SINGLETS',nclsx, |
1863 |
|
|
c$$$ $ 'NCLSX(6):I,NCLSY(6):I') |
1864 |
|
|
c$$$ |
1865 |
|
|
c$$$ return |
1866 |
|
|
c$$$ end |
1867 |
|
|
c$$$ |
1868 |
|
|
c$$$* **************************************************** |
1869 |
|
|
c$$$ |
1870 |
|
|
c$$$ subroutine init_level2 |
1871 |
|
|
c$$$ |
1872 |
|
|
c$$$ include '../common/commontracker.f' |
1873 |
|
|
c$$$ include '../common/level2.f' |
1874 |
|
|
c$$$ include '../common/level1.f' |
1875 |
|
|
c$$$ |
1876 |
|
|
c$$$ |
1877 |
|
|
c$$$ good2 = .false. |
1878 |
|
|
c$$$ nev2 = nev1 |
1879 |
|
|
c$$$ |
1880 |
|
|
c$$$# ifndef TEST2003 |
1881 |
|
|
c$$$ |
1882 |
|
|
c$$$ pkt_type = pkt_type1 |
1883 |
|
|
c$$$ pkt_num = pkt_num1 |
1884 |
|
|
c$$$ obt = obt1 |
1885 |
|
|
c$$$ which_calib = which_calib1 |
1886 |
|
|
c$$$ |
1887 |
|
|
c$$$# endif |
1888 |
|
|
c$$$ |
1889 |
|
|
c$$$ NTRK = 0 |
1890 |
|
|
c$$$ do it=1,NTRACKSMAX |
1891 |
|
|
c$$$ IMAGE(IT)=0 |
1892 |
|
|
c$$$ CHI2_NT(IT) = -100000. |
1893 |
|
|
c$$$ do ip=1,nplanes |
1894 |
|
|
c$$$ XM_nt(IP,IT) = 0 |
1895 |
|
|
c$$$ YM_nt(IP,IT) = 0 |
1896 |
|
|
c$$$ ZM_nt(IP,IT) = 0 |
1897 |
|
|
c$$$ RESX_nt(IP,IT) = 0 |
1898 |
|
|
c$$$ RESY_nt(IP,IT) = 0 |
1899 |
|
|
c$$$ XGOOD_nt(IP,IT) = 0 |
1900 |
|
|
c$$$ YGOOD_nt(IP,IT) = 0 |
1901 |
|
|
c$$$ enddo |
1902 |
|
|
c$$$ do ipa=1,5 |
1903 |
|
|
c$$$ AL_nt(IPA,IT) = 0 |
1904 |
|
|
c$$$ do ipaa=1,5 |
1905 |
|
|
c$$$ coval(ipa,ipaa,IT)=0 |
1906 |
|
|
c$$$ enddo |
1907 |
|
|
c$$$ enddo |
1908 |
|
|
c$$$ enddo |
1909 |
|
|
c$$$ |
1910 |
|
|
c$$$ do ip=1,nplanes |
1911 |
|
|
c$$$ nclsx(ip)=0 |
1912 |
|
|
c$$$ nclsy(ip)=0 |
1913 |
|
|
c$$$ enddo |
1914 |
|
|
c$$$ |
1915 |
|
|
c$$$ |
1916 |
|
|
c$$$ end |
1917 |
|
|
c$$$ |
1918 |
|
|
c$$$* ------------------------------------------------------- |
1919 |
|
|
c$$$* This routine fills the ntr-th element of the variables |
1920 |
|
|
c$$$* inside the level2_tracks common, which correspond |
1921 |
|
|
c$$$* to the ntr-th track info. |
1922 |
|
|
c$$$* ------------------------------------------------------- |
1923 |
|
|
c$$$ |
1924 |
|
|
c$$$ subroutine fill_level2_tracks(ntr) |
1925 |
|
|
c$$$ |
1926 |
|
|
c$$$ include '../common/commontracker.f' |
1927 |
|
|
c$$$ include '../common/level2.f' |
1928 |
|
|
c$$$ include '../common/common_mini_2.f' |
1929 |
|
|
c$$$ |
1930 |
|
|
c$$$c print*,'TRACK ',ntr |
1931 |
|
|
c$$$ |
1932 |
|
|
c$$$ good2=.true. |
1933 |
|
|
c$$$ chi2_nt(ntr) = sngl(chi2) |
1934 |
|
|
c$$$c print*,chi2_nt(ntr) |
1935 |
|
|
c$$$ do i=1,5 |
1936 |
|
|
c$$$ al_nt(i,ntr) = sngl(al(i)) |
1937 |
|
|
c$$$ do j=1,5 |
1938 |
|
|
c$$$ coval(i,j,ntr) = sngl(cov(i,j)) |
1939 |
|
|
c$$$ enddo |
1940 |
|
|
c$$$c print*,al_nt(i,ntr) |
1941 |
|
|
c$$$ enddo |
1942 |
|
|
c$$$ do ip=1,nplanes ! loop on planes |
1943 |
|
|
c$$$ xgood_nt(ip,ntr) = int(xgood(ip)) |
1944 |
|
|
c$$$ ygood_nt(ip,ntr) = int(ygood(ip)) |
1945 |
|
|
c$$$ xm_nt(ip,ntr) = sngl(xm(ip)) |
1946 |
|
|
c$$$ ym_nt(ip,ntr) = sngl(ym(ip)) |
1947 |
|
|
c$$$ zm_nt(ip,ntr) = sngl(zm(ip)) |
1948 |
|
|
c$$$ RESX_nt(IP,ntr) = sngl(resx(ip)) |
1949 |
|
|
c$$$ RESY_nt(IP,ntr) = sngl(resy(ip)) |
1950 |
|
|
c$$$ xv_nt(ip,ntr) = sngl(xv(ip)) |
1951 |
|
|
c$$$ yv_nt(ip,ntr) = sngl(yv(ip)) |
1952 |
|
|
c$$$ zv_nt(ip,ntr) = sngl(zv(ip)) |
1953 |
|
|
c$$$ axv_nt(ip,ntr) = sngl(axv(ip)) |
1954 |
|
|
c$$$ ayv_nt(ip,ntr) = sngl(ayv(ip)) |
1955 |
|
|
c$$$ dedxp(ip,ntr) = sngl(dedxtrk(ip)) |
1956 |
|
|
c$$$c print*,ip,'|',xm_nt(ip,ntr),ym_nt(ip,ntr),zm_nt(ip,ntr) |
1957 |
|
|
c$$$ enddo |
1958 |
|
|
c$$$ |
1959 |
|
|
c$$$ end |
1960 |
|
|
c$$$ |
1961 |
|
|
c$$$*************************************************** |
1962 |
|
|
c$$$* * |
1963 |
|
|
c$$$* * |
1964 |
|
|
c$$$* * |
1965 |
|
|
c$$$* * |
1966 |
|
|
c$$$* * |
1967 |
|
|
c$$$* * |
1968 |
|
|
c$$$************************************************** |
1969 |
|
|
c$$$ |
1970 |
|
|
c$$$ subroutine cl_to_couples(iflag) |
1971 |
|
|
c$$$ |
1972 |
|
|
c$$$ include '../common/commontracker.f' |
1973 |
|
|
c$$$ include '../common/common_momanhough.f' |
1974 |
|
|
c$$$ include '../common/momanhough_init.f' |
1975 |
|
|
c$$$ include '../common/calib.f' |
1976 |
|
|
c$$$ include '../common/level1.f' |
1977 |
|
|
c$$$ |
1978 |
|
|
c$$$ logical DEBUG |
1979 |
|
|
c$$$ common/dbg/DEBUG |
1980 |
|
|
c$$$ |
1981 |
|
|
c$$$* output flag |
1982 |
|
|
c$$$* -------------- |
1983 |
|
|
c$$$* 0 = good event |
1984 |
|
|
c$$$* 1 = bad event |
1985 |
|
|
c$$$* -------------- |
1986 |
|
|
c$$$ integer iflag |
1987 |
|
|
c$$$ |
1988 |
|
|
c$$$ integer badseed,badcl |
1989 |
|
|
c$$$ |
1990 |
|
|
c$$$* init variables |
1991 |
|
|
c$$$ ncp_tot=0 |
1992 |
|
|
c$$$ do ip=1,nplanes |
1993 |
|
|
c$$$ do ico=1,ncouplemax |
1994 |
|
|
c$$$ clx(ip,ico)=0 |
1995 |
|
|
c$$$ cly(ip,ico)=0 |
1996 |
|
|
c$$$ enddo |
1997 |
|
|
c$$$ ncp_plane(ip)=0 |
1998 |
|
|
c$$$ do icl=1,nclstrmax_level2 |
1999 |
|
|
c$$$ cls(ip,icl)=1 |
2000 |
|
|
c$$$ enddo |
2001 |
|
|
c$$$ ncls(ip)=0 |
2002 |
|
|
c$$$ enddo |
2003 |
|
|
c$$$ do icl=1,nclstrmax_level2 |
2004 |
|
|
c$$$ cl_single(icl)=1 |
2005 |
|
|
c$$$ cl_good(icl)=0 |
2006 |
|
|
c$$$ enddo |
2007 |
|
|
c$$$ |
2008 |
|
|
c$$$* start association |
2009 |
|
|
c$$$ ncouples=0 |
2010 |
|
|
c$$$ do icx=1,nclstr1 !loop on cluster (X) |
2011 |
|
|
c$$$ if(mod(VIEW(icx),2).eq.1)goto 10 |
2012 |
|
|
c$$$ |
2013 |
|
|
c$$$* ---------------------------------------------------- |
2014 |
|
|
c$$$* cut on charge (X VIEW) |
2015 |
|
|
c$$$ if(dedx(icx).lt.dedx_x_min)then |
2016 |
|
|
c$$$ cl_single(icx)=0 |
2017 |
|
|
c$$$ goto 10 |
2018 |
|
|
c$$$ endif |
2019 |
|
|
c$$$* cut BAD (X VIEW) |
2020 |
|
|
c$$$ badseed=BAD(VIEW(icx),nvk(MAXS(icx)),nst(MAXS(icx))) |
2021 |
|
|
c$$$ ifirst=INDSTART(icx) |
2022 |
|
|
c$$$ if(icx.ne.nclstr1) then |
2023 |
|
|
c$$$ ilast=INDSTART(icx+1)-1 |
2024 |
|
|
c$$$ else |
2025 |
|
|
c$$$ ilast=TOTCLLENGTH |
2026 |
|
|
c$$$ endif |
2027 |
|
|
c$$$ badcl=badseed |
2028 |
|
|
c$$$ do igood=-ngoodstr,ngoodstr |
2029 |
|
|
c$$$ ibad=1 |
2030 |
|
|
c$$$ if((INDMAX(icx)+igood).gt.ifirst.and. |
2031 |
|
|
c$$$ $ (INDMAX(icx)+igood).lt.ilast.and. |
2032 |
|
|
c$$$ $ .true.)then |
2033 |
|
|
c$$$ ibad=BAD(VIEW(icx), |
2034 |
|
|
c$$$ $ nvk(MAXS(icx)+igood), |
2035 |
|
|
c$$$ $ nst(MAXS(icx)+igood)) |
2036 |
|
|
c$$$ endif |
2037 |
|
|
c$$$ badcl=badcl*ibad |
2038 |
|
|
c$$$ enddo |
2039 |
|
|
c$$$c if(badcl.eq.0)then |
2040 |
|
|
c$$$c cl_single(icx)=0 |
2041 |
|
|
c$$$c goto 10 |
2042 |
|
|
c$$$c endif |
2043 |
|
|
c$$$* ---------------------------------------------------- |
2044 |
|
|
c$$$ |
2045 |
|
|
c$$$ cl_good(icx)=1 |
2046 |
|
|
c$$$ nplx=npl(VIEW(icx)) |
2047 |
|
|
c$$$ nldx=nld(MAXS(icx),VIEW(icx)) |
2048 |
|
|
c$$$ |
2049 |
|
|
c$$$ do icy=1,nclstr1 !loop on cluster (Y) |
2050 |
|
|
c$$$ if(mod(VIEW(icy),2).eq.0)goto 20 |
2051 |
|
|
c$$$ |
2052 |
|
|
c$$$* ---------------------------------------------------- |
2053 |
|
|
c$$$* cut on charge (Y VIEW) |
2054 |
|
|
c$$$ if(dedx(icy).lt.dedx_y_min)then |
2055 |
|
|
c$$$ cl_single(icy)=0 |
2056 |
|
|
c$$$ goto 20 |
2057 |
|
|
c$$$ endif |
2058 |
|
|
c$$$* cut BAD (Y VIEW) |
2059 |
|
|
c$$$ badseed=BAD(VIEW(icy),nvk(MAXS(icy)),nst(MAXS(icy))) |
2060 |
|
|
c$$$ ifirst=INDSTART(icy) |
2061 |
|
|
c$$$ if(icy.ne.nclstr1) then |
2062 |
|
|
c$$$ ilast=INDSTART(icy+1)-1 |
2063 |
|
|
c$$$ else |
2064 |
|
|
c$$$ ilast=TOTCLLENGTH |
2065 |
|
|
c$$$ endif |
2066 |
|
|
c$$$ badcl=badseed |
2067 |
|
|
c$$$ do igood=-ngoodstr,ngoodstr |
2068 |
|
|
c$$$ ibad=1 |
2069 |
|
|
c$$$ if((INDMAX(icy)+igood).gt.ifirst.and. |
2070 |
|
|
c$$$ $ (INDMAX(icy)+igood).lt.ilast.and. |
2071 |
|
|
c$$$ $ .true.) |
2072 |
|
|
c$$$ $ ibad=BAD(VIEW(icy), |
2073 |
|
|
c$$$ $ nvk(MAXS(icy)+igood), |
2074 |
|
|
c$$$ $ nst(MAXS(icy)+igood)) |
2075 |
|
|
c$$$ badcl=badcl*ibad |
2076 |
|
|
c$$$ enddo |
2077 |
|
|
c$$$c if(badcl.eq.0)then |
2078 |
|
|
c$$$c cl_single(icy)=0 |
2079 |
|
|
c$$$c goto 20 |
2080 |
|
|
c$$$c endif |
2081 |
|
|
c$$$* ---------------------------------------------------- |
2082 |
|
|
c$$$ |
2083 |
|
|
c$$$ |
2084 |
|
|
c$$$ cl_good(icy)=1 |
2085 |
|
|
c$$$ nply=npl(VIEW(icy)) |
2086 |
|
|
c$$$ nldy=nld(MAXS(icy),VIEW(icy)) |
2087 |
|
|
c$$$ |
2088 |
|
|
c$$$* ---------------------------------------------- |
2089 |
|
|
c$$$* CONDITION TO FORM A COUPLE |
2090 |
|
|
c$$$* ---------------------------------------------- |
2091 |
|
|
c$$$* geometrical consistency (same plane and ladder) |
2092 |
|
|
c$$$ if(nply.eq.nplx.and.nldy.eq.nldx)then |
2093 |
|
|
c$$$* charge correlation |
2094 |
|
|
c$$$ ddd=(dedx(icy) |
2095 |
|
|
c$$$ $ -kch(nplx,nldx)*dedx(icx)-cch(nplx,nldx)) |
2096 |
|
|
c$$$ ddd=ddd/sqrt(kch(nplx,nldx)**2+1) |
2097 |
|
|
c$$$ cut=chcut*sch(nplx,nldx) |
2098 |
|
|
c$$$ if(abs(ddd).gt.cut)goto 20 !charge not consistent |
2099 |
|
|
c$$$ |
2100 |
|
|
c$$$ |
2101 |
|
|
c$$$* ------------------> COUPLE <------------------ |
2102 |
|
|
c$$$* check to do not overflow vector dimentions |
2103 |
|
|
c$$$ if(ncp_plane(nplx).gt.ncouplemax)then |
2104 |
|
|
c$$$ if(DEBUG)print*, |
2105 |
|
|
c$$$ $ ' ** warning ** number of identified'// |
2106 |
|
|
c$$$ $ ' couples on plane ',nplx, |
2107 |
|
|
c$$$ $ ' exceeds vector dimention'// |
2108 |
|
|
c$$$ $ ' ( ',ncouplemax,' )' |
2109 |
|
|
c$$$c good2=.false. |
2110 |
|
|
c$$$c goto 880 !fill ntp and go to next event |
2111 |
|
|
c$$$ iflag=1 |
2112 |
|
|
c$$$ return |
2113 |
|
|
c$$$ endif |
2114 |
|
|
c$$$ |
2115 |
|
|
c$$$ if(ncp_plane(nplx).eq.ncouplemax)then |
2116 |
|
|
c$$$ if(DEBUG)print*, |
2117 |
|
|
c$$$ $ '** warning ** number of identified '// |
2118 |
|
|
c$$$ $ 'couples on plane ',nplx, |
2119 |
|
|
c$$$ $ 'exceeds vector dimention ' |
2120 |
|
|
c$$$ $ ,'( ',ncouplemax,' )' |
2121 |
|
|
c$$$c good2=.false. |
2122 |
|
|
c$$$c goto 880 !fill ntp and go to next event |
2123 |
|
|
c$$$ iflag=1 |
2124 |
|
|
c$$$ return |
2125 |
|
|
c$$$ endif |
2126 |
|
|
c$$$ |
2127 |
|
|
c$$$ ncp_plane(nplx) = ncp_plane(nplx) + 1 |
2128 |
|
|
c$$$ clx(nplx,ncp_plane(nplx))=icx |
2129 |
|
|
c$$$ cly(nply,ncp_plane(nplx))=icy |
2130 |
|
|
c$$$ cl_single(icx)=0 |
2131 |
|
|
c$$$ cl_single(icy)=0 |
2132 |
|
|
c$$$ endif |
2133 |
|
|
c$$$* ---------------------------------------------- |
2134 |
|
|
c$$$ |
2135 |
|
|
c$$$ 20 continue |
2136 |
|
|
c$$$ enddo !end loop on clusters(Y) |
2137 |
|
|
c$$$ |
2138 |
|
|
c$$$ 10 continue |
2139 |
|
|
c$$$ enddo !end loop on clusters(X) |
2140 |
|
|
c$$$ |
2141 |
|
|
c$$$ |
2142 |
|
|
c$$$ do icl=1,nclstr1 |
2143 |
|
|
c$$$ if(cl_single(icl).eq.1)then |
2144 |
|
|
c$$$ ip=npl(VIEW(icl)) |
2145 |
|
|
c$$$ ncls(ip)=ncls(ip)+1 |
2146 |
|
|
c$$$ cls(ip,ncls(ip))=icl |
2147 |
|
|
c$$$ endif |
2148 |
|
|
c$$$ enddo |
2149 |
|
|
c$$$ |
2150 |
|
|
c$$$ |
2151 |
|
|
c$$$ if(DEBUG)then |
2152 |
|
|
c$$$ print*,'clusters ',nclstr1 |
2153 |
|
|
c$$$ print*,'good ',(cl_good(i),i=1,nclstr1) |
2154 |
|
|
c$$$ print*,'singles ',(cl_single(i),i=1,nclstr1) |
2155 |
|
|
c$$$ print*,'couples per plane: ',(ncp_plane(ip),ip=1,nplanes) |
2156 |
|
|
c$$$ endif |
2157 |
|
|
c$$$ |
2158 |
|
|
c$$$ do ip=1,6 |
2159 |
|
|
c$$$ ncp_tot=ncp_tot+ncp_plane(ip) |
2160 |
|
|
c$$$ enddo |
2161 |
|
|
c$$$c if(ncp_tot.gt.ncp_max)goto 100!next event (TEMPORANEO!!!) |
2162 |
|
|
c$$$ |
2163 |
|
|
c$$$ if(ncp_tot.gt.ncp_max)then |
2164 |
|
|
c$$$ if(DEBUG)print*, |
2165 |
|
|
c$$$ $ '** warning ** number of identified '// |
2166 |
|
|
c$$$ $ 'couples exceeds upper limit for Hough tr. ' |
2167 |
|
|
c$$$ $ ,'( ',ncp_max,' )' |
2168 |
|
|
c$$$c good2=.false. |
2169 |
|
|
c$$$c goto 880 !fill ntp and go to next event |
2170 |
|
|
c$$$ iflag=1 |
2171 |
|
|
c$$$ return |
2172 |
|
|
c$$$ endif |
2173 |
|
|
c$$$ |
2174 |
|
|
c$$$ return |
2175 |
|
|
c$$$ end |
2176 |
|
|
c$$$ |
2177 |
|
|
c$$$ |
2178 |
|
|
c$$$*************************************************** |
2179 |
|
|
c$$$* * |
2180 |
|
|
c$$$* * |
2181 |
|
|
c$$$* * |
2182 |
|
|
c$$$* * |
2183 |
|
|
c$$$* * |
2184 |
|
|
c$$$* * |
2185 |
|
|
c$$$************************************************** |
2186 |
|
|
c$$$ |
2187 |
|
|
c$$$ subroutine cp_to_doubtrip(iflag) |
2188 |
|
|
c$$$ |
2189 |
|
|
c$$$ include '../common/commontracker.f' |
2190 |
|
|
c$$$ include '../common/common_momanhough.f' |
2191 |
|
|
c$$$ include '../common/momanhough_init.f' |
2192 |
|
|
c$$$ include '../common/common_xyzPAM.f' |
2193 |
|
|
c$$$ include '../common/calib.f' |
2194 |
|
|
c$$$ include '../common/level1.f' |
2195 |
|
|
c$$$ |
2196 |
|
|
c$$$ logical DEBUG |
2197 |
|
|
c$$$ common/dbg/DEBUG |
2198 |
|
|
c$$$ |
2199 |
|
|
c$$$* output flag |
2200 |
|
|
c$$$* -------------- |
2201 |
|
|
c$$$* 0 = good event |
2202 |
|
|
c$$$* 1 = bad event |
2203 |
|
|
c$$$* -------------- |
2204 |
|
|
c$$$ integer iflag |
2205 |
|
|
c$$$ |
2206 |
|
|
c$$$ |
2207 |
|
|
c$$$* ----------------------------- |
2208 |
|
|
c$$$* DOUBLETS/TRIPLETS coordinates |
2209 |
|
|
c$$$c double precision xm1,ym1,zm1 |
2210 |
|
|
c$$$c double precision xm2,ym2,zm2 |
2211 |
|
|
c$$$c double precision xm3,ym3,zm3 |
2212 |
|
|
c$$$ |
2213 |
|
|
c$$$ real xm1,ym1,zm1 |
2214 |
|
|
c$$$ real xm2,ym2,zm2 |
2215 |
|
|
c$$$ real xm3,ym3,zm3 |
2216 |
|
|
c$$$* ----------------------------- |
2217 |
|
|
c$$$* variable needed for tricircle: |
2218 |
|
|
c$$$ real xp(3),zp(3)!TRIPLETS coordinates, to find a circle |
2219 |
|
|
c$$$ EQUIVALENCE (xm1,xp(1)) |
2220 |
|
|
c$$$ EQUIVALENCE (xm2,xp(2)) |
2221 |
|
|
c$$$ EQUIVALENCE (xm3,xp(3)) |
2222 |
|
|
c$$$ EQUIVALENCE (zm1,zp(1)) |
2223 |
|
|
c$$$ EQUIVALENCE (zm2,zp(2)) |
2224 |
|
|
c$$$ EQUIVALENCE (zm3,zp(3)) |
2225 |
|
|
c$$$ real angp(3),resp(3),chi |
2226 |
|
|
c$$$ real xc,zc,radius |
2227 |
|
|
c$$$* ----------------------------- |
2228 |
|
|
c$$$ |
2229 |
|
|
c$$$ |
2230 |
|
|
c$$$ |
2231 |
|
|
c$$$ ndblt=0 !number of doublets |
2232 |
|
|
c$$$ ntrpt=0 !number of triplets |
2233 |
|
|
c$$$ |
2234 |
|
|
c$$$ do ip1=1,(nplanes-1) !loop on planes - COPPIA 1 |
2235 |
|
|
c$$$ do is1=1,2 !loop on sensors - COPPIA 1 |
2236 |
|
|
c$$$ |
2237 |
|
|
c$$$ do icp1=1,ncp_plane(ip1) !loop on COPPIA 1 |
2238 |
|
|
c$$$ icx1=clx(ip1,icp1) |
2239 |
|
|
c$$$ icy1=cly(ip1,icp1) |
2240 |
|
|
c$$$ call xyz_PAM(icx1,icy1,is1,'COG2','COG2',0.,0.) |
2241 |
|
|
c$$$ xm1=xPAM |
2242 |
|
|
c$$$ ym1=yPAM |
2243 |
|
|
c$$$ zm1=zPAM |
2244 |
|
|
c$$$c print*,'***',is1,xm1,ym1,zm1 |
2245 |
|
|
c$$$ do ip2=(ip1+1),nplanes !loop on planes - COPPIA 2 |
2246 |
|
|
c$$$ do is2=1,2 !loop on sensors -ndblt COPPIA 2 |
2247 |
|
|
c$$$ |
2248 |
|
|
c$$$ do icp2=1,ncp_plane(ip2) !loop on COPPIA 2 |
2249 |
|
|
c$$$ icx2=clx(ip2,icp2) |
2250 |
|
|
c$$$ icy2=cly(ip2,icp2) |
2251 |
|
|
c$$$ call xyz_PAM |
2252 |
|
|
c$$$ $ (icx2,icy2,is2,'COG2','COG2',0.,0.) |
2253 |
|
|
c$$$ xm2=xPAM |
2254 |
|
|
c$$$ ym2=yPAM |
2255 |
|
|
c$$$ zm2=zPAM |
2256 |
|
|
c$$$ |
2257 |
|
|
c$$$* - - - - - - - - - - - - - - - - - - - - - - - - - - - - |
2258 |
|
|
c$$$* track parameters on Y VIEW |
2259 |
|
|
c$$$* (2 couples needed) |
2260 |
|
|
c$$$* - - - - - - - - - - - - - - - - - - - - - - - - - - - - |
2261 |
|
|
c$$$ if(ndblt.eq.ndblt_max)then |
2262 |
|
|
c$$$ if(DEBUG)print*, |
2263 |
|
|
c$$$ $ '** warning ** number of identified '// |
2264 |
|
|
c$$$ $ 'doublets exceeds vector dimention ' |
2265 |
|
|
c$$$ $ ,'( ',ndblt_max,' )' |
2266 |
|
|
c$$$c good2=.false. |
2267 |
|
|
c$$$c goto 880 !fill ntp and go to next event |
2268 |
|
|
c$$$ iflag=1 |
2269 |
|
|
c$$$ return |
2270 |
|
|
c$$$ endif |
2271 |
|
|
c$$$ ndblt = ndblt + 1 |
2272 |
|
|
c$$$* store doublet info |
2273 |
|
|
c$$$ cpyz1(ndblt)=id_cp(ip1,icp1,is1) |
2274 |
|
|
c$$$ cpyz2(ndblt)=id_cp(ip2,icp2,is2) |
2275 |
|
|
c$$$* tg(th_yz) |
2276 |
|
|
c$$$ alfayz2(ndblt)=(ym1-ym2)/(zm1-zm2) |
2277 |
|
|
c$$$* y0 (cm) |
2278 |
|
|
c$$$ alfayz1(ndblt)=alfayz2(ndblt)*(zini-zm1)+ym1 |
2279 |
|
|
c$$$ |
2280 |
|
|
c$$$**** -----------------------------------------------**** |
2281 |
|
|
c$$$**** reject non phisical couples **** |
2282 |
|
|
c$$$**** -----------------------------------------------**** |
2283 |
|
|
c$$$ if( |
2284 |
|
|
c$$$ $ abs(alfayz2(ndblt)).gt.alfyz2_max |
2285 |
|
|
c$$$ $ .or. |
2286 |
|
|
c$$$ $ abs(alfayz1(ndblt)).gt.alfyz1_max |
2287 |
|
|
c$$$ $ )ndblt = ndblt-1 |
2288 |
|
|
c$$$ |
2289 |
|
|
c$$$c$$$ if(iev.eq.33)then |
2290 |
|
|
c$$$c$$$ print*,'********* ',ndblt,' -- ',icp1,icp2,is1,is2 |
2291 |
|
|
c$$$c$$$ $ ,' || ',icx1,icy1,icx2,icy2 |
2292 |
|
|
c$$$c$$$ $ ,' || ',xm1,ym1,xm2,ym2 |
2293 |
|
|
c$$$c$$$ $ ,' || ',alfayz2(ndblt),alfayz1(ndblt) |
2294 |
|
|
c$$$c$$$ endif |
2295 |
|
|
c$$$c$$$ |
2296 |
|
|
c$$$* - - - - - - - - - - - - - - - - - - - - - - - - - - - - |
2297 |
|
|
c$$$* track parameters on Y VIEW - end |
2298 |
|
|
c$$$* - - - - - - - - - - - - - - - - - - - - - - - - - - - - |
2299 |
|
|
c$$$ |
2300 |
|
|
c$$$ |
2301 |
|
|
c$$$ if(ip2.eq.nplanes)goto 30 !no possible combination with 3 couples |
2302 |
|
|
c$$$ do ip3=(ip2+1),nplanes !loop on planes - COPPIA 3 |
2303 |
|
|
c$$$ do is3=1,2 !loop on sensors - COPPIA 3 |
2304 |
|
|
c$$$ |
2305 |
|
|
c$$$ do icp3=1,ncp_plane(ip3) !loop on COPPIA 3 |
2306 |
|
|
c$$$ icx3=clx(ip3,icp3) |
2307 |
|
|
c$$$ icy3=cly(ip3,icp3) |
2308 |
|
|
c$$$ call xyz_PAM |
2309 |
|
|
c$$$ $ (icx3,icy3,is3,'COG2','COG2',0.,0.) |
2310 |
|
|
c$$$ xm3=xPAM |
2311 |
|
|
c$$$ ym3=yPAM |
2312 |
|
|
c$$$ zm3=zPAM |
2313 |
|
|
c$$$* find the circle passing through the three points |
2314 |
|
|
c$$$ call tricircle(3,xp,zp,angp,resp,chi |
2315 |
|
|
c$$$ $ ,xc,zc,radius,iflag) |
2316 |
|
|
c$$$c print*,xc,zc,radius |
2317 |
|
|
c$$$* the circle must intersect the reference plane |
2318 |
|
|
c$$$ if( |
2319 |
|
|
c$$$c $ (xc.le.-1.*xclimit.or. |
2320 |
|
|
c$$$c $ xc.ge.xclimit).and. |
2321 |
|
|
c$$$ $ radius**2.ge.(ZINI-zc)**2.and. |
2322 |
|
|
c$$$ $ iflag.eq.0.and. |
2323 |
|
|
c$$$ $ .true.)then |
2324 |
|
|
c$$$ |
2325 |
|
|
c$$$* - - - - - - - - - - - - - - - - - - - - - - - - - - - - |
2326 |
|
|
c$$$* track parameters on X VIEW |
2327 |
|
|
c$$$* (3 couples needed) |
2328 |
|
|
c$$$* - - - - - - - - - - - - - - - - - - - - - - - - - - - - |
2329 |
|
|
c$$$ if(ntrpt.eq.ntrpt_max)then |
2330 |
|
|
c$$$ if(DEBUG)print*, |
2331 |
|
|
c$$$ $ '** warning ** number of identified '// |
2332 |
|
|
c$$$ $ 'triplets exceeds vector dimention ' |
2333 |
|
|
c$$$ $ ,'( ',ntrpt_max,' )' |
2334 |
|
|
c$$$c good2=.false. |
2335 |
|
|
c$$$c goto 880 !fill ntp and go to next event |
2336 |
|
|
c$$$ iflag=1 |
2337 |
|
|
c$$$ return |
2338 |
|
|
c$$$ endif |
2339 |
|
|
c$$$ ntrpt = ntrpt +1 |
2340 |
|
|
c$$$* store triplet info |
2341 |
|
|
c$$$ cpxz1(ntrpt)=id_cp(ip1,icp1,is1) |
2342 |
|
|
c$$$ cpxz2(ntrpt)=id_cp(ip2,icp2,is2) |
2343 |
|
|
c$$$ cpxz3(ntrpt)=id_cp(ip3,icp3,is3) |
2344 |
|
|
c$$$ |
2345 |
|
|
c$$$ if(xc.lt.0)then |
2346 |
|
|
c$$$*************POSITIVE DEFLECTION |
2347 |
|
|
c$$$ alfaxz1(ntrpt) = xc+sqrt(radius**2-(ZINI-zc)**2) |
2348 |
|
|
c$$$ alfaxz2(ntrpt) = (ZINI-zc)/sqrt(radius**2-(ZINI-zc)**2) |
2349 |
|
|
c$$$ alfaxz3(ntrpt) = 1/radius |
2350 |
|
|
c$$$ else |
2351 |
|
|
c$$$*************NEGATIVE DEFLECTION |
2352 |
|
|
c$$$ alfaxz1(ntrpt) = xc-sqrt(radius**2-(ZINI-zc)**2) |
2353 |
|
|
c$$$ alfaxz2(ntrpt) = -(ZINI-zc)/sqrt(radius**2-(ZINI-zc)**2) |
2354 |
|
|
c$$$ alfaxz3(ntrpt) = -1/radius |
2355 |
|
|
c$$$ endif |
2356 |
|
|
c$$$ |
2357 |
|
|
c$$$**** -----------------------------------------------**** |
2358 |
|
|
c$$$**** reject non phisical triplets **** |
2359 |
|
|
c$$$**** -----------------------------------------------**** |
2360 |
|
|
c$$$ if( |
2361 |
|
|
c$$$ $ abs(alfaxz2(ntrpt)).gt.alfxz2_max |
2362 |
|
|
c$$$ $ .or. |
2363 |
|
|
c$$$ $ abs(alfaxz1(ntrpt)).gt.alfxz1_max |
2364 |
|
|
c$$$ $ )ntrpt = ntrpt-1 |
2365 |
|
|
c$$$ |
2366 |
|
|
c$$$ |
2367 |
|
|
c$$$c print*,alfaxz1(ntrpt),alfaxz2(ntrpt),alfaxz3(ntrpt) |
2368 |
|
|
c$$$* - - - - - - - - - - - - - - - - - - - - - - - - - - - - |
2369 |
|
|
c$$$* track parameters on X VIEW - end |
2370 |
|
|
c$$$* - - - - - - - - - - - - - - - - - - - - - - - - - - - - |
2371 |
|
|
c$$$ endif |
2372 |
|
|
c$$$ enddo !end loop on COPPIA 3 |
2373 |
|
|
c$$$ enddo !end loop on sensors - COPPIA 3 |
2374 |
|
|
c$$$ enddo !end loop on planes - COPPIA 3 |
2375 |
|
|
c$$$ 30 continue |
2376 |
|
|
c$$$ |
2377 |
|
|
c$$$ 1 enddo !end loop on COPPIA 2 |
2378 |
|
|
c$$$ enddo !end loop on sensors - COPPIA 2 |
2379 |
|
|
c$$$ enddo !end loop on planes - COPPIA 2 |
2380 |
|
|
c$$$ |
2381 |
|
|
c$$$ enddo !end loop on COPPIA1 |
2382 |
|
|
c$$$ enddo !end loop on sensors - COPPIA 1 |
2383 |
|
|
c$$$ enddo !end loop on planes - COPPIA 1 |
2384 |
|
|
c$$$ |
2385 |
|
|
c$$$ if(DEBUG)then |
2386 |
|
|
c$$$ print*,'--- doublets ',ndblt |
2387 |
|
|
c$$$ print*,'--- triplets ',ntrpt |
2388 |
|
|
c$$$ endif |
2389 |
|
|
c$$$ |
2390 |
|
|
c$$$c goto 880 !ntp fill |
2391 |
|
|
c$$$ |
2392 |
|
|
c$$$ |
2393 |
|
|
c$$$ return |
2394 |
|
|
c$$$ end |
2395 |
|
|
c$$$ |
2396 |
|
|
c$$$ |
2397 |
|
|
c$$$ |
2398 |
|
|
c$$$*************************************************** |
2399 |
|
|
c$$$* * |
2400 |
|
|
c$$$* * |
2401 |
|
|
c$$$* * |
2402 |
|
|
c$$$* * |
2403 |
|
|
c$$$* * |
2404 |
|
|
c$$$* * |
2405 |
|
|
c$$$************************************************** |
2406 |
|
|
c$$$ |
2407 |
|
|
c$$$ subroutine doub_to_YZcloud(iflag) |
2408 |
|
|
c$$$ |
2409 |
|
|
c$$$ include '../common/commontracker.f' |
2410 |
|
|
c$$$ include '../common/common_momanhough.f' |
2411 |
|
|
c$$$ include '../common/momanhough_init.f' |
2412 |
|
|
c$$$ |
2413 |
|
|
c$$$ logical DEBUG |
2414 |
|
|
c$$$ common/dbg/DEBUG |
2415 |
|
|
c$$$ |
2416 |
|
|
c$$$* output flag |
2417 |
|
|
c$$$* -------------- |
2418 |
|
|
c$$$* 0 = good event |
2419 |
|
|
c$$$* 1 = bad event |
2420 |
|
|
c$$$* -------------- |
2421 |
|
|
c$$$ integer iflag |
2422 |
|
|
c$$$ |
2423 |
|
|
c$$$ integer db_used(ndblt_max) |
2424 |
|
|
c$$$ integer db_temp(ndblt_max) |
2425 |
|
|
c$$$ integer db_all(ndblt_max) !stores db ID in each cloud |
2426 |
|
|
c$$$ |
2427 |
|
|
c$$$ integer hit_plane(nplanes) |
2428 |
|
|
c$$$ |
2429 |
|
|
c$$$* mask for used couples |
2430 |
|
|
c$$$ integer cp_useds1(ncouplemaxtot) ! sensor 1 |
2431 |
|
|
c$$$ integer cp_useds2(ncouplemaxtot) ! sensor 2 |
2432 |
|
|
c$$$ |
2433 |
|
|
c$$$* ****************************************** |
2434 |
|
|
c$$$* PLANE TO EXCLUDE (for efficiency studies) |
2435 |
|
|
c$$$* --> provided as input parameter |
2436 |
|
|
c$$$* (set according to "tracking" notation): |
2437 |
|
|
c$$$* 1-6 from TOP to BOTTOM |
2438 |
|
|
c$$$* ****************************************** |
2439 |
|
|
c$$$ integer ipexclude |
2440 |
|
|
c$$$ common/plane_exclude/ipexclude |
2441 |
|
|
c$$$ |
2442 |
|
|
c$$$ |
2443 |
|
|
c$$$*~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ |
2444 |
|
|
c$$$* classification of DOUBLETS |
2445 |
|
|
c$$$* according to distance in parameter space |
2446 |
|
|
c$$$* (cloud = group of points (doublets) in parameter space) |
2447 |
|
|
c$$$*~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ |
2448 |
|
|
c$$$ do idb=1,ndblt |
2449 |
|
|
c$$$ db_used(idb)=0 |
2450 |
|
|
c$$$ enddo |
2451 |
|
|
c$$$ |
2452 |
|
|
c$$$ distance=0 |
2453 |
|
|
c$$$ nclouds_yz=0 !number of clouds |
2454 |
|
|
c$$$ npt_tot=0 |
2455 |
|
|
c$$$ do idb1=1,ndblt !loop (1) on DOUBLETS |
2456 |
|
|
c$$$ if(db_used(idb1).eq.1)goto 2228 !db already included in a cloud |
2457 |
|
|
c$$$* *************************************** |
2458 |
|
|
c$$$* Checks if a plane should be excluded |
2459 |
|
|
c$$$* (for efficiency study) |
2460 |
|
|
c$$$* *************************************** |
2461 |
|
|
c$$$ ip1=ip_cp(cpyz1(idb1)) |
2462 |
|
|
c$$$ ip2=ip_cp(cpyz2(idb1)) |
2463 |
|
|
c$$$ if( |
2464 |
|
|
c$$$ $ ip1.eq.(nplanes-ipexclude+1).or. |
2465 |
|
|
c$$$ $ ip2.eq.(nplanes-ipexclude+1).or. |
2466 |
|
|
c$$$ $ .false.)goto 2228 !exclude DOUBLET from cloud |
2467 |
|
|
c$$$* *************************************** |
2468 |
|
|
c$$$ |
2469 |
|
|
c$$$c print*,'--------------' |
2470 |
|
|
c$$$c print*,'** ',idb1,' **' |
2471 |
|
|
c$$$ |
2472 |
|
|
c$$$ do icp=1,ncp_tot |
2473 |
|
|
c$$$ cp_useds1(icp)=0 !init |
2474 |
|
|
c$$$ cp_useds2(icp)=0 !init |
2475 |
|
|
c$$$ enddo |
2476 |
|
|
c$$$ do idb=1,ndblt |
2477 |
|
|
c$$$ db_all(idb)=0 |
2478 |
|
|
c$$$ enddo |
2479 |
|
|
c$$$ if(cpyz1(idb1).gt.0)cp_useds2(cpyz1(idb1))=1 |
2480 |
|
|
c$$$ if(cpyz1(idb1).lt.0)cp_useds1(-cpyz1(idb1))=1 |
2481 |
|
|
c$$$ if(cpyz2(idb1).gt.0)cp_useds2(cpyz2(idb1))=1 |
2482 |
|
|
c$$$ if(cpyz2(idb1).lt.0)cp_useds1(-cpyz2(idb1))=1 |
2483 |
|
|
c$$$ temp1 = alfayz1(idb1) |
2484 |
|
|
c$$$ temp2 = alfayz2(idb1) |
2485 |
|
|
c$$$ npt=1 !counter of points in the cloud |
2486 |
|
|
c$$$ |
2487 |
|
|
c$$$ db_all(npt) = idb1 |
2488 |
|
|
c$$$ |
2489 |
|
|
c$$$ nptloop=1 |
2490 |
|
|
c$$$ db_temp(1)=idb1 |
2491 |
|
|
c$$$ |
2492 |
|
|
c$$$ 88 continue |
2493 |
|
|
c$$$ |
2494 |
|
|
c$$$ npv=0 !# new points inlcuded |
2495 |
|
|
c$$$ do iloop=1,nptloop |
2496 |
|
|
c$$$ idbref=db_temp(iloop) !local point of reference |
2497 |
|
|
c$$$ccccc if(db_used(idbref).eq.1)goto 1188 !next |
2498 |
|
|
c$$$ |
2499 |
|
|
c$$$ do idb2=1,ndblt !loop (2) on DOUBLETS |
2500 |
|
|
c$$$ if(idb2.eq.idbref)goto 1118 !next doublet |
2501 |
|
|
c$$$ if(db_used(idb2).eq.1)goto 1118 |
2502 |
|
|
c$$$* *************************************** |
2503 |
|
|
c$$$* Checks if a plane should be excluded |
2504 |
|
|
c$$$* (for efficiency study) |
2505 |
|
|
c$$$* *************************************** |
2506 |
|
|
c$$$ ip1=ip_cp(cpyz1(idb2)) |
2507 |
|
|
c$$$ ip2=ip_cp(cpyz2(idb2)) |
2508 |
|
|
c$$$ if( |
2509 |
|
|
c$$$ $ ip1.eq.(nplanes-ipexclude+1).or. |
2510 |
|
|
c$$$ $ ip2.eq.(nplanes-ipexclude+1).or. |
2511 |
|
|
c$$$ $ .false.)goto 1118 !exclude DOUBLET from cloud |
2512 |
|
|
c$$$* *************************************** |
2513 |
|
|
c$$$ |
2514 |
|
|
c$$$ |
2515 |
|
|
c$$$* doublet distance in parameter space |
2516 |
|
|
c$$$ distance= |
2517 |
|
|
c$$$ $ ((alfayz1(idbref)-alfayz1(idb2))/Dalfayz1)**2 |
2518 |
|
|
c$$$ $ +((alfayz2(idbref)-alfayz2(idb2))/Dalfayz2)**2 |
2519 |
|
|
c$$$ distance = sqrt(distance) |
2520 |
|
|
c$$$ |
2521 |
|
|
c$$$c$$$ if(iev.eq.33)then |
2522 |
|
|
c$$$c$$$ if(distance.lt.100) |
2523 |
|
|
c$$$c$$$ $ print*,'********* ',idb1,idbref,idb2,distance |
2524 |
|
|
c$$$c$$$ if(distance.lt.100) |
2525 |
|
|
c$$$c$$$ $ print*,'********* ',alfayz1(idbref),alfayz1(idb2) |
2526 |
|
|
c$$$c$$$ $ ,alfayz2(idbref),alfayz2(idb2) |
2527 |
|
|
c$$$c$$$ endif |
2528 |
|
|
c$$$ if(distance.lt.cutdistyz)then |
2529 |
|
|
c$$$ |
2530 |
|
|
c$$$c print*,idb1,idb2,distance,' cloud ',nclouds_yz |
2531 |
|
|
c$$$ if(cpyz1(idb2).gt.0)cp_useds2(cpyz1(idb2))=1 |
2532 |
|
|
c$$$ if(cpyz1(idb2).lt.0)cp_useds1(-cpyz1(idb2))=1 |
2533 |
|
|
c$$$ if(cpyz2(idb2).gt.0)cp_useds2(cpyz2(idb2))=1 |
2534 |
|
|
c$$$ if(cpyz2(idb2).lt.0)cp_useds1(-cpyz2(idb2))=1 |
2535 |
|
|
c$$$ npt = npt + 1 !counter of points in the cloud |
2536 |
|
|
c$$$ |
2537 |
|
|
c$$$ npv = npv +1 |
2538 |
|
|
c$$$ db_temp(npv) = idb2 |
2539 |
|
|
c$$$ db_used(idbref) = 1 |
2540 |
|
|
c$$$ db_used(idb2) = 1 |
2541 |
|
|
c$$$ |
2542 |
|
|
c$$$ db_all(npt) = idb2 |
2543 |
|
|
c$$$ |
2544 |
|
|
c$$$ temp1 = temp1 + alfayz1(idb2) |
2545 |
|
|
c$$$ temp2 = temp2 + alfayz2(idb2) |
2546 |
|
|
c$$$c print*,'* idbref,idb2 ',idbref,idb2 |
2547 |
|
|
c$$$ endif |
2548 |
|
|
c$$$ |
2549 |
|
|
c$$$ 1118 continue |
2550 |
|
|
c$$$ enddo !end loop (2) on DOUBLETS |
2551 |
|
|
c$$$ |
2552 |
|
|
c$$$ 1188 continue |
2553 |
|
|
c$$$ enddo !end loop on... bo? |
2554 |
|
|
c$$$ |
2555 |
|
|
c$$$ nptloop=npv |
2556 |
|
|
c$$$ if(nptloop.ne.0)goto 88 |
2557 |
|
|
c$$$ |
2558 |
|
|
c$$$* ------------------------------------------ |
2559 |
|
|
c$$$* stores the cloud only if |
2560 |
|
|
c$$$* 1) it includes a minimum number of REAL couples |
2561 |
|
|
c$$$* 1bis) it inlcudes a minimum number of doublets |
2562 |
|
|
c$$$* 2) it is not already stored |
2563 |
|
|
c$$$* ------------------------------------------ |
2564 |
|
|
c$$$ do ip=1,nplanes |
2565 |
|
|
c$$$ hit_plane(ip)=0 |
2566 |
|
|
c$$$ enddo |
2567 |
|
|
c$$$ ncpused=0 |
2568 |
|
|
c$$$ do icp=1,ncp_tot |
2569 |
|
|
c$$$ if(cp_useds1(icp).ne.0.or.cp_useds2(icp).ne.0)then |
2570 |
|
|
c$$$ ncpused=ncpused+1 |
2571 |
|
|
c$$$ ip=ip_cp(icp) |
2572 |
|
|
c$$$ hit_plane(ip)=1 |
2573 |
|
|
c$$$ endif |
2574 |
|
|
c$$$ enddo |
2575 |
|
|
c$$$ nplused=0 |
2576 |
|
|
c$$$ do ip=1,nplanes |
2577 |
|
|
c$$$ nplused=nplused+ hit_plane(ip) |
2578 |
|
|
c$$$ enddo |
2579 |
|
|
c$$$c print*,'>>>> ',ncpused,npt,nplused |
2580 |
|
|
c$$$ if(ncpused.lt.ncpyz_min)goto 2228 !next doublet |
2581 |
|
|
c$$$ if(npt.lt.nptyz_min)goto 2228 !next doublet |
2582 |
|
|
c$$$ if(nplused.lt.nplyz_min)goto 2228 !next doublet |
2583 |
|
|
c$$$ |
2584 |
|
|
c$$$* ~~~~~~~~~~~~~~~~~ |
2585 |
|
|
c$$$* >>> NEW CLOUD <<< |
2586 |
|
|
c$$$ |
2587 |
|
|
c$$$ if(nclouds_yz.ge.ncloyz_max)then |
2588 |
|
|
c$$$ if(DEBUG)print*, |
2589 |
|
|
c$$$ $ '** warning ** number of identified '// |
2590 |
|
|
c$$$ $ 'YZ clouds exceeds vector dimention ' |
2591 |
|
|
c$$$ $ ,'( ',ncloyz_max,' )' |
2592 |
|
|
c$$$c good2=.false. |
2593 |
|
|
c$$$c goto 880 !fill ntp and go to next event |
2594 |
|
|
c$$$ iflag=1 |
2595 |
|
|
c$$$ return |
2596 |
|
|
c$$$ endif |
2597 |
|
|
c$$$ |
2598 |
|
|
c$$$ nclouds_yz = nclouds_yz + 1 !increase counter |
2599 |
|
|
c$$$ alfayz1_av(nclouds_yz) = temp1/npt !store average parameter |
2600 |
|
|
c$$$ alfayz2_av(nclouds_yz) = temp2/npt ! " |
2601 |
|
|
c$$$ do icp=1,ncp_tot |
2602 |
|
|
c$$$ cpcloud_yz(nclouds_yz,icp)= |
2603 |
|
|
c$$$ $ cp_useds1(icp)+2*cp_useds2(icp) !store cp info |
2604 |
|
|
c$$$ enddo |
2605 |
|
|
c$$$ ptcloud_yz(nclouds_yz)=npt |
2606 |
|
|
c$$$c ptcloud_yz_nt(nclouds_yz)=npt |
2607 |
|
|
c$$$ do ipt=1,npt |
2608 |
|
|
c$$$ db_cloud(npt_tot+ipt) = db_all(ipt) |
2609 |
|
|
c$$$c print*,'>> ',ipt,db_all(ipt) |
2610 |
|
|
c$$$ enddo |
2611 |
|
|
c$$$ npt_tot=npt_tot+npt |
2612 |
|
|
c$$$ if(DEBUG)then |
2613 |
|
|
c$$$ print*,'-~-~-~-~-~-~-~-~-~-~-~-~-~-~-~-~-~-~-~-~-~-~' |
2614 |
|
|
c$$$ print*,'>>>> cloud ',nclouds_yz,' --- ',npt,' points' |
2615 |
|
|
c$$$ print*,'- alfayz1 ',alfayz1_av(nclouds_yz) |
2616 |
|
|
c$$$ print*,'- alfayz2 ',alfayz2_av(nclouds_yz) |
2617 |
|
|
c$$$ print*,'cp_useds1 ',(cp_useds1(icp),icp=1,ncp_tot) |
2618 |
|
|
c$$$ print*,'cp_useds2 ',(cp_useds2(icp),icp=1,ncp_tot) |
2619 |
|
|
c$$$ print*,'hit_plane ',(hit_plane(ip),ip=1,nplanes) |
2620 |
|
|
c$$$ endif |
2621 |
|
|
c$$$* >>> NEW CLOUD <<< |
2622 |
|
|
c$$$* ~~~~~~~~~~~~~~~~~ |
2623 |
|
|
c$$$ 2228 continue |
2624 |
|
|
c$$$ enddo !end loop (1) on DOUBLETS |
2625 |
|
|
c$$$ |
2626 |
|
|
c$$$ |
2627 |
|
|
c$$$ if(DEBUG)then |
2628 |
|
|
c$$$ print*,'---------------------- ' |
2629 |
|
|
c$$$ print*,'Y-Z total clouds ',nclouds_yz |
2630 |
|
|
c$$$ print*,' ' |
2631 |
|
|
c$$$ endif |
2632 |
|
|
c$$$ |
2633 |
|
|
c$$$ |
2634 |
|
|
c$$$ return |
2635 |
|
|
c$$$ end |
2636 |
|
|
c$$$ |
2637 |
|
|
c$$$ |
2638 |
|
|
c$$$ |
2639 |
|
|
c$$$ |
2640 |
|
|
c$$$ |
2641 |
|
|
c$$$*************************************************** |
2642 |
|
|
c$$$* * |
2643 |
|
|
c$$$* * |
2644 |
|
|
c$$$* * |
2645 |
|
|
c$$$* * |
2646 |
|
|
c$$$* * |
2647 |
|
|
c$$$* * |
2648 |
|
|
c$$$************************************************** |
2649 |
|
|
c$$$ |
2650 |
|
|
c$$$ subroutine trip_to_XZcloud(iflag) |
2651 |
|
|
c$$$ |
2652 |
|
|
c$$$ include '../common/commontracker.f' |
2653 |
|
|
c$$$ include '../common/common_momanhough.f' |
2654 |
|
|
c$$$ include '../common/momanhough_init.f' |
2655 |
|
|
c$$$ |
2656 |
|
|
c$$$ logical DEBUG |
2657 |
|
|
c$$$ common/dbg/DEBUG |
2658 |
|
|
c$$$ |
2659 |
|
|
c$$$* output flag |
2660 |
|
|
c$$$* -------------- |
2661 |
|
|
c$$$* 0 = good event |
2662 |
|
|
c$$$* 1 = bad event |
2663 |
|
|
c$$$* -------------- |
2664 |
|
|
c$$$ integer iflag |
2665 |
|
|
c$$$ |
2666 |
|
|
c$$$ integer tr_used(ntrpt_max) |
2667 |
|
|
c$$$ integer tr_temp(ntrpt_max) |
2668 |
|
|
c$$$ integer tr_incl(ntrpt_max) |
2669 |
|
|
c$$$ integer tr_all(ntrpt_max) !stores tr ID in each cloud |
2670 |
|
|
c$$$ |
2671 |
|
|
c$$$ integer hit_plane(nplanes) |
2672 |
|
|
c$$$ |
2673 |
|
|
c$$$* mask for used couples |
2674 |
|
|
c$$$ integer cp_useds1(ncouplemaxtot) ! sensor 1 |
2675 |
|
|
c$$$ integer cp_useds2(ncouplemaxtot) ! sensor 2 |
2676 |
|
|
c$$$ |
2677 |
|
|
c$$$* ****************************************** |
2678 |
|
|
c$$$* PLANE TO EXCLUDE (for efficiency studies) |
2679 |
|
|
c$$$* --> provided as input parameter |
2680 |
|
|
c$$$* (set according to "tracking" notation): |
2681 |
|
|
c$$$* 1-6 from TOP to BOTTOM |
2682 |
|
|
c$$$* ****************************************** |
2683 |
|
|
c$$$ integer ipexclude |
2684 |
|
|
c$$$ common/plane_exclude/ipexclude |
2685 |
|
|
c$$$ |
2686 |
|
|
c$$$ |
2687 |
|
|
c$$$*~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ |
2688 |
|
|
c$$$* classification of TRIPLETS |
2689 |
|
|
c$$$* according to distance in parameter space |
2690 |
|
|
c$$$*~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ |
2691 |
|
|
c$$$ do itr=1,ntrpt |
2692 |
|
|
c$$$ tr_used(itr)=0 |
2693 |
|
|
c$$$ enddo |
2694 |
|
|
c$$$ |
2695 |
|
|
c$$$ distance=0 |
2696 |
|
|
c$$$ nclouds_xz=0 !number of clouds |
2697 |
|
|
c$$$ npt_tot=0 !total number of selected triplets |
2698 |
|
|
c$$$ do itr1=1,ntrpt !loop (1) on TRIPLETS |
2699 |
|
|
c$$$ if(tr_used(itr1).eq.1)goto 22288 !already included in a cloud |
2700 |
|
|
c$$$* *************************************** |
2701 |
|
|
c$$$* Checks if a plane should be excluded |
2702 |
|
|
c$$$* (for efficiency study) |
2703 |
|
|
c$$$* *************************************** |
2704 |
|
|
c$$$ ip1=ip_cp(cpxz1(itr1)) |
2705 |
|
|
c$$$ ip2=ip_cp(cpxz2(itr1)) |
2706 |
|
|
c$$$ ip3=ip_cp(cpxz3(itr1)) |
2707 |
|
|
c$$$ if( |
2708 |
|
|
c$$$ $ ip1.eq.(nplanes-ipexclude+1).or. |
2709 |
|
|
c$$$ $ ip2.eq.(nplanes-ipexclude+1).or. |
2710 |
|
|
c$$$ $ ip3.eq.(nplanes-ipexclude+1).or. |
2711 |
|
|
c$$$ $ .false.)goto 22288 !exclude TRIPLET from cloud |
2712 |
|
|
c$$$* *************************************** |
2713 |
|
|
c$$$c print*,'--------------' |
2714 |
|
|
c$$$c print*,'** ',itr1,' **' |
2715 |
|
|
c$$$ |
2716 |
|
|
c$$$ do icp=1,ncp_tot |
2717 |
|
|
c$$$ cp_useds1(icp)=0 |
2718 |
|
|
c$$$ cp_useds2(icp)=0 |
2719 |
|
|
c$$$ enddo |
2720 |
|
|
c$$$ do itr=1,ntrpt |
2721 |
|
|
c$$$ tr_all(itr)=0 !list of included triplets |
2722 |
|
|
c$$$ enddo |
2723 |
|
|
c$$$ if(cpxz1(itr1).gt.0)cp_useds2(cpxz1(itr1))=1 |
2724 |
|
|
c$$$ if(cpxz1(itr1).lt.0)cp_useds1(-cpxz1(itr1))=1 |
2725 |
|
|
c$$$ if(cpxz2(itr1).gt.0)cp_useds2(cpxz2(itr1))=1 |
2726 |
|
|
c$$$ if(cpxz2(itr1).lt.0)cp_useds1(-cpxz2(itr1))=1 |
2727 |
|
|
c$$$ if(cpxz3(itr1).gt.0)cp_useds2(cpxz3(itr1))=1 |
2728 |
|
|
c$$$ if(cpxz3(itr1).lt.0)cp_useds1(-cpxz3(itr1))=1 |
2729 |
|
|
c$$$ temp1 = alfaxz1(itr1) |
2730 |
|
|
c$$$ temp2 = alfaxz2(itr1) |
2731 |
|
|
c$$$ temp3 = alfaxz3(itr1) |
2732 |
|
|
c$$$ npt=1 !counter of points in the cloud |
2733 |
|
|
c$$$ |
2734 |
|
|
c$$$ tr_all(npt) = itr1 |
2735 |
|
|
c$$$ |
2736 |
|
|
c$$$ nptloop=1 |
2737 |
|
|
c$$$c tr_temp(1)=itr1 |
2738 |
|
|
c$$$ tr_incl(1)=itr1 |
2739 |
|
|
c$$$ |
2740 |
|
|
c$$$ 8881 continue |
2741 |
|
|
c$$$ |
2742 |
|
|
c$$$c print*,'start search pv ',nptloop |
2743 |
|
|
c$$$ npv=0 !# new points inlcuded |
2744 |
|
|
c$$$ do iloop=1,nptloop |
2745 |
|
|
c$$$c itrref=tr_temp(iloop) !local point of reference |
2746 |
|
|
c$$$ itrref=tr_incl(iloop) !local point of reference |
2747 |
|
|
c$$$c print*,'ref ',itrref |
2748 |
|
|
c$$$ccccc if(tr_used(itrref).eq.1)goto 11888 !next |
2749 |
|
|
c$$$ do itr2=1,ntrpt !loop (2) on TRIPLETS |
2750 |
|
|
c$$$ if(itr2.eq.itr1)goto 11188 !next triplet |
2751 |
|
|
c$$$ if(tr_used(itr2).eq.1)goto 11188 !next triplet |
2752 |
|
|
c$$$* *************************************** |
2753 |
|
|
c$$$* Checks if a plane should be excluded |
2754 |
|
|
c$$$* (for efficiency study) |
2755 |
|
|
c$$$* *************************************** |
2756 |
|
|
c$$$ ip1=ip_cp(cpxz1(itr2)) |
2757 |
|
|
c$$$ ip2=ip_cp(cpxz2(itr2)) |
2758 |
|
|
c$$$ ip3=ip_cp(cpxz3(itr2)) |
2759 |
|
|
c$$$ if( |
2760 |
|
|
c$$$ $ ip1.eq.(nplanes-ipexclude+1).or. |
2761 |
|
|
c$$$ $ ip2.eq.(nplanes-ipexclude+1).or. |
2762 |
|
|
c$$$ $ ip3.eq.(nplanes-ipexclude+1).or. |
2763 |
|
|
c$$$ $ .false.)goto 11188 !exclude TRIPLET from cloud |
2764 |
|
|
c$$$* *************************************** |
2765 |
|
|
c$$$ |
2766 |
|
|
c$$$* triplet distance in parameter space |
2767 |
|
|
c$$$* solo i due parametri spaziali per il momemnto |
2768 |
|
|
c$$$ distance= |
2769 |
|
|
c$$$ $ ((alfaxz1(itrref)-alfaxz1(itr2))/Dalfaxz1)**2 |
2770 |
|
|
c$$$ $ +((alfaxz2(itrref)-alfaxz2(itr2))/Dalfaxz2)**2 |
2771 |
|
|
c$$$ distance = sqrt(distance) |
2772 |
|
|
c$$$ |
2773 |
|
|
c$$$ if(distance.lt.cutdistxz)then |
2774 |
|
|
c$$$c print*,idb1,idb2,distance,' cloud ',nclouds_yz |
2775 |
|
|
c$$$ if(cpxz1(itr2).gt.0)cp_useds2(cpxz1(itr2))=1 |
2776 |
|
|
c$$$ if(cpxz1(itr2).lt.0)cp_useds1(-cpxz1(itr2))=1 |
2777 |
|
|
c$$$ if(cpxz2(itr2).gt.0)cp_useds2(cpxz2(itr2))=1 |
2778 |
|
|
c$$$ if(cpxz2(itr2).lt.0)cp_useds1(-cpxz2(itr2))=1 |
2779 |
|
|
c$$$ if(cpxz3(itr2).gt.0)cp_useds2(cpxz3(itr2))=1 |
2780 |
|
|
c$$$ if(cpxz3(itr2).lt.0)cp_useds1(-cpxz3(itr2))=1 |
2781 |
|
|
c$$$ npt = npt + 1 !counter of points in the cloud |
2782 |
|
|
c$$$ |
2783 |
|
|
c$$$ npv = npv +1 |
2784 |
|
|
c$$$ tr_temp(npv) = itr2 |
2785 |
|
|
c$$$ tr_used(itrref) = 1 |
2786 |
|
|
c$$$ tr_used(itr2) = 1 |
2787 |
|
|
c$$$ |
2788 |
|
|
c$$$ tr_all(npt) = itr2 |
2789 |
|
|
c$$$ |
2790 |
|
|
c$$$ temp1 = temp1 + alfaxz1(itr2) |
2791 |
|
|
c$$$ temp2 = temp2 + alfaxz2(itr2) |
2792 |
|
|
c$$$ temp3 = temp3 + alfaxz3(itr2) |
2793 |
|
|
c$$$c print*,'* itrref,itr2 ',itrref,itr2,distance |
2794 |
|
|
c$$$ endif |
2795 |
|
|
c$$$ |
2796 |
|
|
c$$$11188 continue |
2797 |
|
|
c$$$ enddo !end loop (2) on TRIPLETS |
2798 |
|
|
c$$$ |
2799 |
|
|
c$$$11888 continue |
2800 |
|
|
c$$$ enddo !end loop on... bo? |
2801 |
|
|
c$$$ |
2802 |
|
|
c$$$ nptloop=npv |
2803 |
|
|
c$$$ do i=1,npv |
2804 |
|
|
c$$$ tr_incl(i)=tr_temp(i) |
2805 |
|
|
c$$$ enddo |
2806 |
|
|
c$$$ if(nptloop.ne.0)goto 8881 |
2807 |
|
|
c$$$ |
2808 |
|
|
c$$$* ------------------------------------------ |
2809 |
|
|
c$$$* stores the cloud only if |
2810 |
|
|
c$$$* 1) it includes a minimum number of REAL couples |
2811 |
|
|
c$$$* 1bis) |
2812 |
|
|
c$$$* 2) it is not already stored |
2813 |
|
|
c$$$* ------------------------------------------ |
2814 |
|
|
c$$$c print*,'check cp_used' |
2815 |
|
|
c$$$ do ip=1,nplanes |
2816 |
|
|
c$$$ hit_plane(ip)=0 |
2817 |
|
|
c$$$ enddo |
2818 |
|
|
c$$$ ncpused=0 |
2819 |
|
|
c$$$ do icp=1,ncp_tot |
2820 |
|
|
c$$$ if(cp_useds1(icp).ne.0.or.cp_useds2(icp).ne.0)then |
2821 |
|
|
c$$$ ncpused=ncpused+1 |
2822 |
|
|
c$$$ ip=ip_cp(icp) |
2823 |
|
|
c$$$ hit_plane(ip)=1 |
2824 |
|
|
c$$$ endif |
2825 |
|
|
c$$$ enddo |
2826 |
|
|
c$$$ nplused=0 |
2827 |
|
|
c$$$ do ip=1,nplanes |
2828 |
|
|
c$$$ nplused=nplused+ hit_plane(ip) |
2829 |
|
|
c$$$ enddo |
2830 |
|
|
c$$$ if(ncpused.lt.ncpxz_min)goto 22288 !next triplet |
2831 |
|
|
c$$$ if(npt.lt.nptxz_min)goto 22288 !next triplet |
2832 |
|
|
c$$$ if(nplused.lt.nplxz_min)goto 22288 !next doublet |
2833 |
|
|
c$$$ |
2834 |
|
|
c$$$* ~~~~~~~~~~~~~~~~~ |
2835 |
|
|
c$$$* >>> NEW CLOUD <<< |
2836 |
|
|
c$$$ if(nclouds_xz.ge.ncloxz_max)then |
2837 |
|
|
c$$$ if(DEBUG)print*, |
2838 |
|
|
c$$$ $ '** warning ** number of identified '// |
2839 |
|
|
c$$$ $ 'XZ clouds exceeds vector dimention ' |
2840 |
|
|
c$$$ $ ,'( ',ncloxz_max,' )' |
2841 |
|
|
c$$$c good2=.false. |
2842 |
|
|
c$$$c goto 880 !fill ntp and go to next event |
2843 |
|
|
c$$$ iflag=1 |
2844 |
|
|
c$$$ return |
2845 |
|
|
c$$$ endif |
2846 |
|
|
c$$$ nclouds_xz = nclouds_xz + 1 !increase counter |
2847 |
|
|
c$$$ alfaxz1_av(nclouds_xz) = temp1/npt !store average parameter |
2848 |
|
|
c$$$ alfaxz2_av(nclouds_xz) = temp2/npt ! " |
2849 |
|
|
c$$$ alfaxz3_av(nclouds_xz) = temp3/npt ! " |
2850 |
|
|
c$$$ do icp=1,ncp_tot |
2851 |
|
|
c$$$ cpcloud_xz(nclouds_xz,icp)= |
2852 |
|
|
c$$$ $ cp_useds1(icp)+2*cp_useds2(icp) !store cp info |
2853 |
|
|
c$$$ enddo |
2854 |
|
|
c$$$ ptcloud_xz(nclouds_xz)=npt |
2855 |
|
|
c$$$c ptcloud_xz_nt(nclouds_xz)=npt |
2856 |
|
|
c$$$ do ipt=1,npt |
2857 |
|
|
c$$$ tr_cloud(npt_tot+ipt) = tr_all(ipt) |
2858 |
|
|
c$$$c print *,nclouds_xz,ipt,tr_all(ipt),npt_tot+ipt, |
2859 |
|
|
c$$$c $ tr_cloud(npt_tot+ipt) |
2860 |
|
|
c$$$ enddo |
2861 |
|
|
c$$$ npt_tot=npt_tot+npt |
2862 |
|
|
c$$$ |
2863 |
|
|
c$$$ if(DEBUG)then |
2864 |
|
|
c$$$ print*,'-~-~-~-~-~-~-~-~-~-~-~-~-~-~-~-~-~-~-~-~-~-~' |
2865 |
|
|
c$$$ print*,'>>>> cloud ',nclouds_xz,' --- ',npt,' points' |
2866 |
|
|
c$$$ print*,'- alfaxz1 ',alfaxz1_av(nclouds_xz) |
2867 |
|
|
c$$$ print*,'- alfaxz2 ',alfaxz2_av(nclouds_xz) |
2868 |
|
|
c$$$ print*,'- alfaxz3 ',alfaxz3_av(nclouds_xz) |
2869 |
|
|
c$$$ print*,'cp_useds1 ',(cp_useds1(icp),icp=1,ncp_tot) |
2870 |
|
|
c$$$ print*,'cp_useds2 ',(cp_useds2(icp),icp=1,ncp_tot) |
2871 |
|
|
c$$$ print*,'hit_plane ',(hit_plane(ip),ip=1,nplanes) |
2872 |
|
|
c$$$ endif |
2873 |
|
|
c$$$* >>> NEW CLOUD <<< |
2874 |
|
|
c$$$* ~~~~~~~~~~~~~~~~~ |
2875 |
|
|
c$$$22288 continue |
2876 |
|
|
c$$$ enddo !end loop (1) on DOUBLETS |
2877 |
|
|
c$$$ |
2878 |
|
|
c$$$ if(DEBUG)then |
2879 |
|
|
c$$$ print*,'---------------------- ' |
2880 |
|
|
c$$$ print*,'X-Z total clouds ',nclouds_xz |
2881 |
|
|
c$$$ print*,' ' |
2882 |
|
|
c$$$ endif |
2883 |
|
|
c$$$ |
2884 |
|
|
c$$$ |
2885 |
|
|
c$$$ return |
2886 |
|
|
c$$$ end |
2887 |
|
|
c$$$ |
2888 |
|
|
c$$$ |
2889 |
|
|
c$$$*************************************************** |
2890 |
|
|
c$$$* * |
2891 |
|
|
c$$$* * |
2892 |
|
|
c$$$* * |
2893 |
|
|
c$$$* * |
2894 |
|
|
c$$$* * |
2895 |
|
|
c$$$* * |
2896 |
|
|
c$$$************************************************** |
2897 |
|
|
c$$$ |
2898 |
|
|
c$$$ subroutine clouds_to_ctrack(iflag) |
2899 |
|
|
c$$$ |
2900 |
|
|
c$$$ include '../common/commontracker.f' |
2901 |
|
|
c$$$ include '../common/common_momanhough.f' |
2902 |
|
|
c$$$ include '../common/common_xyzPAM.f' |
2903 |
|
|
c$$$ include '../common/common_mini_2.f' |
2904 |
|
|
c$$$ include '../common/common_mech.f' |
2905 |
|
|
c$$$ include '../common/momanhough_init.f' |
2906 |
|
|
c$$$ |
2907 |
|
|
c$$$ logical DEBUG |
2908 |
|
|
c$$$ common/dbg/DEBUG |
2909 |
|
|
c$$$ |
2910 |
|
|
c$$$* output flag |
2911 |
|
|
c$$$* -------------- |
2912 |
|
|
c$$$* 0 = good event |
2913 |
|
|
c$$$* 1 = bad event |
2914 |
|
|
c$$$* -------------- |
2915 |
|
|
c$$$ integer iflag |
2916 |
|
|
c$$$ |
2917 |
|
|
c$$$* ----------------------------------------------------------- |
2918 |
|
|
c$$$* mask to store (locally) the couples included |
2919 |
|
|
c$$$* in the intersection bewteen a XZ and YZ cloud |
2920 |
|
|
c$$$ integer cpintersec(ncouplemaxtot) |
2921 |
|
|
c$$$* ----------------------------------------------------------- |
2922 |
|
|
c$$$* list of matching couples in the combination |
2923 |
|
|
c$$$* between a XZ and YZ cloud |
2924 |
|
|
c$$$ integer cp_match(nplanes,ncouplemax) |
2925 |
|
|
c$$$ integer ncp_match(nplanes) |
2926 |
|
|
c$$$* ----------------------------------------------------------- |
2927 |
|
|
c$$$ integer hit_plane(nplanes) |
2928 |
|
|
c$$$* ----------------------------------------------------------- |
2929 |
|
|
c$$$* variables for track fitting |
2930 |
|
|
c$$$ double precision AL_INI(5) |
2931 |
|
|
c$$$ double precision tath |
2932 |
|
|
c$$$* ----------------------------------------------------------- |
2933 |
|
|
c$$$c real fitz(nplanes) !z coordinates of the planes in cm |
2934 |
|
|
c$$$ |
2935 |
|
|
c$$$ |
2936 |
|
|
c$$$ ntracks=0 !counter of track candidates |
2937 |
|
|
c$$$ |
2938 |
|
|
c$$$ do iyz=1,nclouds_yz !loop on YZ couds |
2939 |
|
|
c$$$ do ixz=1,nclouds_xz !loop on XZ couds |
2940 |
|
|
c$$$ |
2941 |
|
|
c$$$* -------------------------------------------------- |
2942 |
|
|
c$$$* check of consistency of the clouds |
2943 |
|
|
c$$$* ---> required a minimum number of matching couples |
2944 |
|
|
c$$$* the track fit will be performed on the INTERSECTION |
2945 |
|
|
c$$$* of the two clouds |
2946 |
|
|
c$$$* -------------------------------------------------- |
2947 |
|
|
c$$$ do ip=1,nplanes |
2948 |
|
|
c$$$ hit_plane(ip)=0 |
2949 |
|
|
c$$$ ncp_match(ip)=0 |
2950 |
|
|
c$$$ do icpp=1,ncouplemax |
2951 |
|
|
c$$$ cp_match(ip,icpp)=0 !init couple list |
2952 |
|
|
c$$$ enddo |
2953 |
|
|
c$$$ enddo |
2954 |
|
|
c$$$ ncp_ok=0 |
2955 |
|
|
c$$$ do icp=1,ncp_tot !loop on couples |
2956 |
|
|
c$$$* get info on |
2957 |
|
|
c$$$ cpintersec(icp)=min( |
2958 |
|
|
c$$$ $ cpcloud_yz(iyz,icp), |
2959 |
|
|
c$$$ $ cpcloud_xz(ixz,icp)) |
2960 |
|
|
c$$$ if( |
2961 |
|
|
c$$$ $ (cpcloud_yz(iyz,icp).eq.1.and.cpcloud_xz(ixz,icp).eq.2).or. |
2962 |
|
|
c$$$ $ (cpcloud_yz(iyz,icp).eq.2.and.cpcloud_xz(ixz,icp).eq.1).or. |
2963 |
|
|
c$$$ $ .false.)cpintersec(icp)=0 |
2964 |
|
|
c$$$ if(cpintersec(icp).ne.0)then |
2965 |
|
|
c$$$ ncp_ok=ncp_ok+1 |
2966 |
|
|
c$$$ |
2967 |
|
|
c$$$ ip=ip_cp(icp) |
2968 |
|
|
c$$$ hit_plane(ip)=1 |
2969 |
|
|
c$$$ if(cpintersec(icp).eq.1)then |
2970 |
|
|
c$$$* 1) only the couple image in sensor 1 matches |
2971 |
|
|
c$$$ id=-icp |
2972 |
|
|
c$$$ ncp_match(ip)=ncp_match(ip)+1 |
2973 |
|
|
c$$$ cp_match(ip,ncp_match(ip))=id |
2974 |
|
|
c$$$ elseif(cpintersec(icp).eq.2)then |
2975 |
|
|
c$$$* 2) only the couple image in sensor 2 matches |
2976 |
|
|
c$$$ id=icp |
2977 |
|
|
c$$$ ncp_match(ip)=ncp_match(ip)+1 |
2978 |
|
|
c$$$ cp_match(ip,ncp_match(ip))=id |
2979 |
|
|
c$$$ else |
2980 |
|
|
c$$$* 3) both couple images match |
2981 |
|
|
c$$$ id=icp |
2982 |
|
|
c$$$ do is=1,2 |
2983 |
|
|
c$$$ id=-id |
2984 |
|
|
c$$$ ncp_match(ip)=ncp_match(ip)+1 |
2985 |
|
|
c$$$ cp_match(ip,ncp_match(ip))=id |
2986 |
|
|
c$$$ enddo |
2987 |
|
|
c$$$ endif |
2988 |
|
|
c$$$ endif !end matching condition |
2989 |
|
|
c$$$ enddo !end loop on couples |
2990 |
|
|
c$$$ |
2991 |
|
|
c$$$ nplused=0 |
2992 |
|
|
c$$$ do ip=1,nplanes |
2993 |
|
|
c$$$ nplused=nplused+ hit_plane(ip) |
2994 |
|
|
c$$$ enddo |
2995 |
|
|
c$$$ |
2996 |
|
|
c$$$ if(nplused.lt.nplxz_min)goto 888 !next doublet |
2997 |
|
|
c$$$ if(ncp_ok.lt.ncpok)goto 888 !next cloud |
2998 |
|
|
c$$$ |
2999 |
|
|
c$$$ if(DEBUG)then |
3000 |
|
|
c$$$ print*,'Combination ',iyz,ixz |
3001 |
|
|
c$$$ $ ,' db ',ptcloud_yz(iyz) |
3002 |
|
|
c$$$ $ ,' tr ',ptcloud_xz(ixz) |
3003 |
|
|
c$$$ $ ,' -----> # matching couples ',ncp_ok |
3004 |
|
|
c$$$ endif |
3005 |
|
|
c$$$c$$$ print*,'~~~~~~~~~~~~~~~~~~~~~~~~~' |
3006 |
|
|
c$$$c$$$ print*,'Configurazione cluster XZ' |
3007 |
|
|
c$$$c$$$ print*,'1 -- ',(clx(1,i),i=1,ncp_plane(1)) |
3008 |
|
|
c$$$c$$$ print*,'2 -- ',(clx(2,i),i=1,ncp_plane(1)) |
3009 |
|
|
c$$$c$$$ print*,'3 -- ',(clx(3,i),i=1,ncp_plane(1)) |
3010 |
|
|
c$$$c$$$ print*,'4 -- ',(clx(4,i),i=1,ncp_plane(1)) |
3011 |
|
|
c$$$c$$$ print*,'5 -- ',(clx(5,i),i=1,ncp_plane(1)) |
3012 |
|
|
c$$$c$$$ print*,'6 -- ',(clx(6,i),i=1,ncp_plane(1)) |
3013 |
|
|
c$$$c$$$ print*,'Configurazione cluster YZ' |
3014 |
|
|
c$$$c$$$ print*,'1 -- ',(cly(1,i),i=1,ncp_plane(1)) |
3015 |
|
|
c$$$c$$$ print*,'2 -- ',(cly(2,i),i=1,ncp_plane(1)) |
3016 |
|
|
c$$$c$$$ print*,'3 -- ',(cly(3,i),i=1,ncp_plane(1)) |
3017 |
|
|
c$$$c$$$ print*,'4 -- ',(cly(4,i),i=1,ncp_plane(1)) |
3018 |
|
|
c$$$c$$$ print*,'5 -- ',(cly(5,i),i=1,ncp_plane(1)) |
3019 |
|
|
c$$$c$$$ print*,'6 -- ',(cly(6,i),i=1,ncp_plane(1)) |
3020 |
|
|
c$$$c$$$ print*,'~~~~~~~~~~~~~~~~~~~~~~~~~' |
3021 |
|
|
c$$$ |
3022 |
|
|
c$$$* -------> INITIAL GUESS <------- |
3023 |
|
|
c$$$ AL_INI(1)=dreal(alfaxz1_av(ixz)) |
3024 |
|
|
c$$$ AL_INI(2)=dreal(alfayz1_av(iyz)) |
3025 |
|
|
c$$$ AL_INI(4)=datan(dreal(alfayz2_av(iyz)) |
3026 |
|
|
c$$$ $ /dreal(alfaxz2_av(ixz))) |
3027 |
|
|
c$$$ tath=-dreal(alfaxz2_av(ixz))/dcos(AL_INI(4)) |
3028 |
|
|
c$$$ AL_INI(3)=tath/sqrt(1+tath**2) |
3029 |
|
|
c$$$ AL_INI(5)=(1.e2*alfaxz3_av(ixz))/(0.3*0.43) !0. |
3030 |
|
|
c$$$ |
3031 |
|
|
c$$$c print*,'*******',AL_INI(5) |
3032 |
|
|
c$$$ if(AL_INI(5).gt.defmax)goto 888 !next cloud |
3033 |
|
|
c$$$ |
3034 |
|
|
c$$$c print*,'alfaxz2, alfayz2 ' |
3035 |
|
|
c$$$c $ ,alfaxz2_av(ixz),alfayz2_av(iyz) |
3036 |
|
|
c$$$ |
3037 |
|
|
c$$$* -------> INITIAL GUESS <------- |
3038 |
|
|
c$$$c print*,'AL_INI ',(al_ini(i),i=1,5) |
3039 |
|
|
c$$$ |
3040 |
|
|
c$$$ if(DEBUG)then |
3041 |
|
|
c$$$ print*,'1 >>> ',(cp_match(1,i),i=1,ncp_match(1)) |
3042 |
|
|
c$$$ print*,'2 >>> ',(cp_match(2,i),i=1,ncp_match(2)) |
3043 |
|
|
c$$$ print*,'3 >>> ',(cp_match(3,i),i=1,ncp_match(3)) |
3044 |
|
|
c$$$ print*,'4 >>> ',(cp_match(4,i),i=1,ncp_match(4)) |
3045 |
|
|
c$$$ print*,'5 >>> ',(cp_match(5,i),i=1,ncp_match(5)) |
3046 |
|
|
c$$$ print*,'6 >>> ',(cp_match(6,i),i=1,ncp_match(6)) |
3047 |
|
|
c$$$ endif |
3048 |
|
|
c$$$ |
3049 |
|
|
c$$$ do icp1=1,max(1,ncp_match(1)) |
3050 |
|
|
c$$$ hit_plane(1)=icp1 |
3051 |
|
|
c$$$ if(ncp_match(1).eq.0)hit_plane(1)=0 !-icp1 |
3052 |
|
|
c$$$ |
3053 |
|
|
c$$$ do icp2=1,max(1,ncp_match(2)) |
3054 |
|
|
c$$$ hit_plane(2)=icp2 |
3055 |
|
|
c$$$ if(ncp_match(2).eq.0)hit_plane(2)=0 !-icp2 |
3056 |
|
|
c$$$ |
3057 |
|
|
c$$$ do icp3=1,max(1,ncp_match(3)) |
3058 |
|
|
c$$$ hit_plane(3)=icp3 |
3059 |
|
|
c$$$ if(ncp_match(3).eq.0)hit_plane(3)=0 !-icp3 |
3060 |
|
|
c$$$ |
3061 |
|
|
c$$$ do icp4=1,max(1,ncp_match(4)) |
3062 |
|
|
c$$$ hit_plane(4)=icp4 |
3063 |
|
|
c$$$ if(ncp_match(4).eq.0)hit_plane(4)=0 !-icp4 |
3064 |
|
|
c$$$ |
3065 |
|
|
c$$$ do icp5=1,max(1,ncp_match(5)) |
3066 |
|
|
c$$$ hit_plane(5)=icp5 |
3067 |
|
|
c$$$ if(ncp_match(5).eq.0)hit_plane(5)=0 !-icp5 |
3068 |
|
|
c$$$ |
3069 |
|
|
c$$$ do icp6=1,max(1,ncp_match(6)) |
3070 |
|
|
c$$$ hit_plane(6)=icp6 |
3071 |
|
|
c$$$ if(ncp_match(6).eq.0)hit_plane(6)=0 !-icp6 |
3072 |
|
|
c$$$ |
3073 |
|
|
c$$$ |
3074 |
|
|
c$$$ call track_init !init TRACK common |
3075 |
|
|
c$$$ |
3076 |
|
|
c$$$ do ip=1,nplanes !loop on planes |
3077 |
|
|
c$$$ if(hit_plane(ip).ne.0)then |
3078 |
|
|
c$$$ id=cp_match(ip,hit_plane(ip)) |
3079 |
|
|
c$$$ is=is_cp(id) |
3080 |
|
|
c$$$ icp=icp_cp(id) |
3081 |
|
|
c$$$ if(ip_cp(id).ne.ip) |
3082 |
|
|
c$$$ $ print*,'OKKIO!!' |
3083 |
|
|
c$$$ $ ,'id ',id,is,icp |
3084 |
|
|
c$$$ $ ,ip_cp(id),ip |
3085 |
|
|
c$$$ icx=clx(ip,icp) |
3086 |
|
|
c$$$ icy=cly(ip,icp) |
3087 |
|
|
c$$$* ************************* |
3088 |
|
|
c$$$ call xyz_PAM(icx,icy,is, |
3089 |
|
|
c$$$ $ 'COG2','COG2',0.,0.) |
3090 |
|
|
c$$$* ************************* |
3091 |
|
|
c$$$* ----------------------------- |
3092 |
|
|
c$$$ xgood(nplanes-ip+1)=1. |
3093 |
|
|
c$$$ ygood(nplanes-ip+1)=1. |
3094 |
|
|
c$$$ xm(nplanes-ip+1)=xPAM |
3095 |
|
|
c$$$ ym(nplanes-ip+1)=yPAM |
3096 |
|
|
c$$$ zm(nplanes-ip+1)=zPAM |
3097 |
|
|
c$$$ resx(nplanes-ip+1)=resxPAM |
3098 |
|
|
c$$$ resy(nplanes-ip+1)=resyPAM |
3099 |
|
|
c$$$* ----------------------------- |
3100 |
|
|
c$$$ endif |
3101 |
|
|
c$$$ enddo !end loop on planes |
3102 |
|
|
c$$$* ********************************************************** |
3103 |
|
|
c$$$* ************************** FIT *** FIT *** FIT *** FIT *** |
3104 |
|
|
c$$$* ********************************************************** |
3105 |
|
|
c$$$ do i=1,5 |
3106 |
|
|
c$$$ AL(i)=AL_INI(i) |
3107 |
|
|
c$$$ enddo |
3108 |
|
|
c$$$ ifail=0 !error flag in chi^2 computation |
3109 |
|
|
c$$$ jstep=0 !number of minimization steps |
3110 |
|
|
c$$$ call mini_2(jstep,ifail) |
3111 |
|
|
c$$$ if(ifail.ne.0) then |
3112 |
|
|
c$$$ if(DEBUG)then |
3113 |
|
|
c$$$ print *, |
3114 |
|
|
c$$$ $ '*** MINIMIZATION FAILURE *** ' |
3115 |
|
|
c$$$ $ //'(mini_2 in clouds_to_ctrack)' |
3116 |
|
|
c$$$ endif |
3117 |
|
|
c$$$ chi2=-chi2 |
3118 |
|
|
c$$$ endif |
3119 |
|
|
c$$$* ********************************************************** |
3120 |
|
|
c$$$* ************************** FIT *** FIT *** FIT *** FIT *** |
3121 |
|
|
c$$$* ********************************************************** |
3122 |
|
|
c$$$ |
3123 |
|
|
c$$$ if(chi2.le.0.)goto 666 |
3124 |
|
|
c$$$ |
3125 |
|
|
c$$$* -------------------------- |
3126 |
|
|
c$$$* STORE candidate TRACK INFO |
3127 |
|
|
c$$$* -------------------------- |
3128 |
|
|
c$$$ if(ntracks.eq.NTRACKSMAX)then |
3129 |
|
|
c$$$ |
3130 |
|
|
c$$$ if(DEBUG)print*, |
3131 |
|
|
c$$$ $ '** warning ** number of candidate tracks '// |
3132 |
|
|
c$$$ $ ' exceeds vector dimention ' |
3133 |
|
|
c$$$ $ ,'( ',NTRACKSMAX,' )' |
3134 |
|
|
c$$$c good2=.false. |
3135 |
|
|
c$$$c goto 880 !fill ntp and go to next event |
3136 |
|
|
c$$$ iflag=1 |
3137 |
|
|
c$$$ return |
3138 |
|
|
c$$$ endif |
3139 |
|
|
c$$$ |
3140 |
|
|
c$$$ ntracks = ntracks + 1 |
3141 |
|
|
c$$$ |
3142 |
|
|
c$$$c$$$ ndof=0 |
3143 |
|
|
c$$$ do ip=1,nplanes |
3144 |
|
|
c$$$c$$$ ndof=ndof |
3145 |
|
|
c$$$c$$$ $ +int(xgood(ip)) |
3146 |
|
|
c$$$c$$$ $ +int(ygood(ip)) |
3147 |
|
|
c$$$ XV_STORE(ip,ntracks)=sngl(xv(ip)) |
3148 |
|
|
c$$$ YV_STORE(ip,ntracks)=sngl(yv(ip)) |
3149 |
|
|
c$$$ ZV_STORE(ip,ntracks)=sngl(zv(ip)) |
3150 |
|
|
c$$$ XM_STORE(ip,ntracks)=sngl(xm(ip)) |
3151 |
|
|
c$$$ YM_STORE(ip,ntracks)=sngl(ym(ip)) |
3152 |
|
|
c$$$ ZM_STORE(ip,ntracks)=sngl(zm(ip)) |
3153 |
|
|
c$$$ RESX_STORE(ip,ntracks)=sngl(resx(ip)) |
3154 |
|
|
c$$$ RESY_STORE(ip,ntracks)=sngl(resy(ip)) |
3155 |
|
|
c$$$ XV_STORE(ip,ntracks)=sngl(xv(ip)) |
3156 |
|
|
c$$$ YV_STORE(ip,ntracks)=sngl(yv(ip)) |
3157 |
|
|
c$$$ ZV_STORE(ip,ntracks)=sngl(zv(ip)) |
3158 |
|
|
c$$$ AXV_STORE(ip,ntracks)=sngl(axv(ip)) |
3159 |
|
|
c$$$ AYV_STORE(ip,ntracks)=sngl(ayv(ip)) |
3160 |
|
|
c$$$ XGOOD_STORE(ip,ntracks)=sngl(xgood(ip)) |
3161 |
|
|
c$$$ YGOOD_STORE(ip,ntracks)=sngl(ygood(ip)) |
3162 |
|
|
c$$$ if(hit_plane(ip).ne.0)then |
3163 |
|
|
c$$$ CP_STORE(nplanes-ip+1,ntracks)= |
3164 |
|
|
c$$$ $ cp_match(ip,hit_plane(ip)) |
3165 |
|
|
c$$$ else |
3166 |
|
|
c$$$ CP_STORE(nplanes-ip+1,ntracks)=0 |
3167 |
|
|
c$$$ endif |
3168 |
|
|
c$$$ CLS_STORE(nplanes-ip+1,ntracks)=0 |
3169 |
|
|
c$$$ do i=1,5 |
3170 |
|
|
c$$$ AL_STORE(i,ntracks)=sngl(AL(i)) |
3171 |
|
|
c$$$ enddo |
3172 |
|
|
c$$$ enddo |
3173 |
|
|
c$$$ |
3174 |
|
|
c$$$c$$$ * Number of Degree Of Freedom |
3175 |
|
|
c$$$c$$$ ndof=ndof-5 |
3176 |
|
|
c$$$c$$$ * reduced chi^2 |
3177 |
|
|
c$$$c$$$ rchi2=chi2/dble(ndof) |
3178 |
|
|
c$$$ RCHI2_STORE(ntracks)=chi2 |
3179 |
|
|
c$$$ |
3180 |
|
|
c$$$* -------------------------------- |
3181 |
|
|
c$$$* STORE candidate TRACK INFO - end |
3182 |
|
|
c$$$* -------------------------------- |
3183 |
|
|
c$$$ |
3184 |
|
|
c$$$ 666 continue |
3185 |
|
|
c$$$ enddo !end loop on cp in plane 6 |
3186 |
|
|
c$$$ enddo !end loop on cp in plane 5 |
3187 |
|
|
c$$$ enddo !end loop on cp in plane 4 |
3188 |
|
|
c$$$ enddo !end loop on cp in plane 3 |
3189 |
|
|
c$$$ enddo !end loop on cp in plane 2 |
3190 |
|
|
c$$$ enddo !end loop on cp in plane 1 |
3191 |
|
|
c$$$ |
3192 |
|
|
c$$$ 888 continue |
3193 |
|
|
c$$$ enddo !end loop on XZ couds |
3194 |
|
|
c$$$ enddo !end loop on YZ couds |
3195 |
|
|
c$$$ |
3196 |
|
|
c$$$ if(ntracks.eq.0)then |
3197 |
|
|
c$$$ iflag=1 |
3198 |
|
|
c$$$ return |
3199 |
|
|
c$$$ endif |
3200 |
|
|
c$$$ |
3201 |
|
|
c$$$ if(DEBUG)then |
3202 |
|
|
c$$$ print*,'****** TRACK CANDIDATES ***********' |
3203 |
|
|
c$$$ print*,'# R. chi2 RIG' |
3204 |
|
|
c$$$ do i=1,ntracks |
3205 |
|
|
c$$$ print*,i,' --- ',rchi2_store(i),' --- ' |
3206 |
|
|
c$$$ $ ,1./abs(AL_STORE(5,i)) |
3207 |
|
|
c$$$ enddo |
3208 |
|
|
c$$$ print*,'***********************************' |
3209 |
|
|
c$$$ endif |
3210 |
|
|
c$$$ |
3211 |
|
|
c$$$ |
3212 |
|
|
c$$$ return |
3213 |
|
|
c$$$ end |
3214 |
|
|
c$$$ |
3215 |
|
|
c$$$ |
3216 |
|
|
c$$$*************************************************** |
3217 |
|
|
c$$$* * |
3218 |
|
|
c$$$* * |
3219 |
|
|
c$$$* * |
3220 |
|
|
c$$$* * |
3221 |
|
|
c$$$* * |
3222 |
|
|
c$$$* * |
3223 |
|
|
c$$$************************************************** |
3224 |
|
|
c$$$ |
3225 |
|
|
c$$$ subroutine refine_track(ibest) |
3226 |
|
|
c$$$ |
3227 |
|
|
c$$$ include '../common/commontracker.f' |
3228 |
|
|
c$$$ include '../common/common_momanhough.f' |
3229 |
|
|
c$$$ include '../common/common_xyzPAM.f' |
3230 |
|
|
c$$$ include '../common/common_mini_2.f' |
3231 |
|
|
c$$$ include '../common/common_mech.f' |
3232 |
|
|
c$$$ include '../common/momanhough_init.f' |
3233 |
|
|
c$$$ include '../common/level1.f' |
3234 |
|
|
c$$$ |
3235 |
|
|
c$$$ logical DEBUG |
3236 |
|
|
c$$$ common/dbg/DEBUG |
3237 |
|
|
c$$$ |
3238 |
|
|
c$$$* flag to chose PFA |
3239 |
|
|
c$$$ character*10 PFA |
3240 |
|
|
c$$$ common/FINALPFA/PFA |
3241 |
|
|
c$$$ |
3242 |
|
|
c$$$* ================================================= |
3243 |
|
|
c$$$* new estimate of positions using ETA algorithm |
3244 |
|
|
c$$$* and |
3245 |
|
|
c$$$* search for new couples and single clusters to add |
3246 |
|
|
c$$$* ================================================= |
3247 |
|
|
c$$$ call track_init |
3248 |
|
|
c$$$ do ip=1,nplanes !loop on planes |
3249 |
|
|
c$$$ |
3250 |
|
|
c$$$* ------------------------------------------------- |
3251 |
|
|
c$$$* If the plane has been already included, it just |
3252 |
|
|
c$$$* computes again the coordinates of the x-y couple |
3253 |
|
|
c$$$* using improved PFAs |
3254 |
|
|
c$$$* ------------------------------------------------- |
3255 |
|
|
c$$$ if(XGOOD_STORE(nplanes-ip+1,ibest).eq.1..and. |
3256 |
|
|
c$$$ $ YGOOD_STORE(nplanes-ip+1,ibest).eq.1. )then |
3257 |
|
|
c$$$ |
3258 |
|
|
c$$$ id=CP_STORE(nplanes-ip+1,ibest) |
3259 |
|
|
c$$$ |
3260 |
|
|
c$$$ is=is_cp(id) |
3261 |
|
|
c$$$ icp=icp_cp(id) |
3262 |
|
|
c$$$ if(ip_cp(id).ne.ip) |
3263 |
|
|
c$$$ $ print*,'OKKIO!!' |
3264 |
|
|
c$$$ $ ,'id ',id,is,icp |
3265 |
|
|
c$$$ $ ,ip_cp(id),ip |
3266 |
|
|
c$$$ icx=clx(ip,icp) |
3267 |
|
|
c$$$ icy=cly(ip,icp) |
3268 |
|
|
c$$$ call xyz_PAM(icx,icy,is, |
3269 |
|
|
c$$$c $ 'ETA2','ETA2', |
3270 |
|
|
c$$$ $ PFA,PFA, |
3271 |
|
|
c$$$ $ AXV_STORE(nplanes-ip+1,ibest), |
3272 |
|
|
c$$$ $ AYV_STORE(nplanes-ip+1,ibest)) |
3273 |
|
|
c$$$c$$$ call xyz_PAM(icx,icy,is, |
3274 |
|
|
c$$$c$$$ $ 'COG2','COG2', |
3275 |
|
|
c$$$c$$$ $ 0., |
3276 |
|
|
c$$$c$$$ $ 0.) |
3277 |
|
|
c$$$ xm(nplanes-ip+1) = xPAM |
3278 |
|
|
c$$$ ym(nplanes-ip+1) = yPAM |
3279 |
|
|
c$$$ zm(nplanes-ip+1) = zPAM |
3280 |
|
|
c$$$ xgood(nplanes-ip+1) = 1 |
3281 |
|
|
c$$$ ygood(nplanes-ip+1) = 1 |
3282 |
|
|
c$$$ resx(nplanes-ip+1) = resxPAM |
3283 |
|
|
c$$$ resy(nplanes-ip+1) = resyPAM |
3284 |
|
|
c$$$ |
3285 |
|
|
c$$$ dedxtrk(nplanes-ip+1) = (dedx(icx)+dedx(icy))/2. |
3286 |
|
|
c$$$ |
3287 |
|
|
c$$$* ------------------------------------------------- |
3288 |
|
|
c$$$* If the plane has NOT been already included, |
3289 |
|
|
c$$$* it tries to include a COUPLE or a single cluster |
3290 |
|
|
c$$$* ------------------------------------------------- |
3291 |
|
|
c$$$ else |
3292 |
|
|
c$$$ |
3293 |
|
|
c$$$ xgood(nplanes-ip+1)=0 |
3294 |
|
|
c$$$ ygood(nplanes-ip+1)=0 |
3295 |
|
|
c$$$ |
3296 |
|
|
c$$$* -------------------------------------------------------------- |
3297 |
|
|
c$$$* determine which ladder and sensor are intersected by the track |
3298 |
|
|
c$$$ xP=XV_STORE(nplanes-ip+1,ibest) |
3299 |
|
|
c$$$ yP=YV_STORE(nplanes-ip+1,ibest) |
3300 |
|
|
c$$$ zP=ZV_STORE(nplanes-ip+1,ibest) |
3301 |
|
|
c$$$ call whichsensor(ip,xP,yP,nldt,ist) |
3302 |
|
|
c$$$* if the track hit the plane in a dead area, go to the next plane |
3303 |
|
|
c$$$ if(nldt.eq.0.or.ist.eq.0)goto 133 |
3304 |
|
|
c$$$* -------------------------------------------------------------- |
3305 |
|
|
c$$$ |
3306 |
|
|
c$$$ if(DEBUG)then |
3307 |
|
|
c$$$ print*, |
3308 |
|
|
c$$$ $ '------ Plane ',ip,' intersected on LADDER ',nldt |
3309 |
|
|
c$$$ $ ,' SENSOR ',ist |
3310 |
|
|
c$$$ print*, |
3311 |
|
|
c$$$ $ '------ coord: ',XP,YP |
3312 |
|
|
c$$$ endif |
3313 |
|
|
c$$$ |
3314 |
|
|
c$$$* =========================================== |
3315 |
|
|
c$$$* STEP 1 >>>>>>> try to include a new couple |
3316 |
|
|
c$$$* =========================================== |
3317 |
|
|
c$$$c if(DEBUG)print*,'>>>> try to include a new couple' |
3318 |
|
|
c$$$ distmin=1000000. |
3319 |
|
|
c$$$ xmm = 0. |
3320 |
|
|
c$$$ ymm = 0. |
3321 |
|
|
c$$$ zmm = 0. |
3322 |
|
|
c$$$ rxmm = 0. |
3323 |
|
|
c$$$ rymm = 0. |
3324 |
|
|
c$$$ idm = 0 !ID of the closer couple |
3325 |
|
|
c$$$ distance=0. |
3326 |
|
|
c$$$ do icp=1,ncp_plane(ip) !loop on couples on plane icp |
3327 |
|
|
c$$$ icx=clx(ip,icp) |
3328 |
|
|
c$$$ icy=cly(ip,icp) |
3329 |
|
|
c$$$ if(LADDER(icx).ne.nldt.or. !If the ladder number does not match |
3330 |
|
|
c$$$ $ cl_used(icx).eq.1.or. !or the X cluster is already used |
3331 |
|
|
c$$$ $ cl_used(icy).eq.1.or. !or the Y cluster is already used |
3332 |
|
|
c$$$ $ .false.)goto 1188 !then jump to next couple. |
3333 |
|
|
c$$$* !Else compute the coordinates |
3334 |
|
|
c$$$ call xyz_PAM(icx,icy,ist, |
3335 |
|
|
c$$$ $ PFA,PFA, |
3336 |
|
|
c$$$c $ 'ETA2','ETA2', |
3337 |
|
|
c$$$ $ AXV_STORE(nplanes-ip+1,ibest), |
3338 |
|
|
c$$$ $ AYV_STORE(nplanes-ip+1,ibest)) |
3339 |
|
|
c$$$ |
3340 |
|
|
c$$$ distance = distance_to(XP,YP) |
3341 |
|
|
c$$$ id=id_cp(ip,icp,ist) |
3342 |
|
|
c$$$ if(DEBUG)print*,'( couple ',id |
3343 |
|
|
c$$$ $ ,' ) normalized distance ',distance |
3344 |
|
|
c$$$ if(distance.lt.distmin)then |
3345 |
|
|
c$$$ xmm = xPAM |
3346 |
|
|
c$$$ ymm = yPAM |
3347 |
|
|
c$$$ zmm = zPAM |
3348 |
|
|
c$$$ rxmm = resxPAM |
3349 |
|
|
c$$$ rymm = resyPAM |
3350 |
|
|
c$$$ distmin = distance |
3351 |
|
|
c$$$ idm = id |
3352 |
|
|
c$$$ dedxmm = (dedx(icx)+dedx(icy))/2. |
3353 |
|
|
c$$$ endif |
3354 |
|
|
c$$$ 1188 continue |
3355 |
|
|
c$$$ enddo !end loop on couples on plane icp |
3356 |
|
|
c$$$ if(distmin.le.clinc)then |
3357 |
|
|
c$$$* ----------------------------------- |
3358 |
|
|
c$$$ xm(nplanes-ip+1) = xmm !<<< |
3359 |
|
|
c$$$ ym(nplanes-ip+1) = ymm !<<< |
3360 |
|
|
c$$$ zm(nplanes-ip+1) = zmm !<<< |
3361 |
|
|
c$$$ xgood(nplanes-ip+1) = 1 !<<< |
3362 |
|
|
c$$$ ygood(nplanes-ip+1) = 1 !<<< |
3363 |
|
|
c$$$ resx(nplanes-ip+1)=rxmm !<<< |
3364 |
|
|
c$$$ resy(nplanes-ip+1)=rymm !<<< |
3365 |
|
|
c$$$ dedxtrk(nplanes-ip+1) = dedxmm !<<< |
3366 |
|
|
c$$$* ----------------------------------- |
3367 |
|
|
c$$$ CP_STORE(nplanes-ip+1,ibest)=idm |
3368 |
|
|
c$$$ if(DEBUG)print*,'%%%% included couple ',idm |
3369 |
|
|
c$$$ $ ,' (norm.dist.= ',distmin,', cut ',clinc,' )' |
3370 |
|
|
c$$$ goto 133 !next plane |
3371 |
|
|
c$$$ endif |
3372 |
|
|
c$$$* ================================================ |
3373 |
|
|
c$$$* STEP 2 >>>>>>> try to include a single cluster |
3374 |
|
|
c$$$* either from a couple or single |
3375 |
|
|
c$$$* ================================================ |
3376 |
|
|
c$$$c if(DEBUG)print*,'>>>> try to include a new cluster' |
3377 |
|
|
c$$$ distmin=1000000. |
3378 |
|
|
c$$$ xmm_A = 0. !--------------------------- |
3379 |
|
|
c$$$ ymm_A = 0. ! init variables that |
3380 |
|
|
c$$$ zmm_A = 0. ! define the SINGLET |
3381 |
|
|
c$$$ xmm_B = 0. ! |
3382 |
|
|
c$$$ ymm_B = 0. ! |
3383 |
|
|
c$$$ zmm_B = 0. ! |
3384 |
|
|
c$$$ rxmm = 0. ! |
3385 |
|
|
c$$$ rymm = 0. ! |
3386 |
|
|
c$$$ iclm=0 !--------------------------- |
3387 |
|
|
c$$$ distance=0. |
3388 |
|
|
c$$$ |
3389 |
|
|
c$$$*----- clusters inside couples ------------------------------------- |
3390 |
|
|
c$$$ do icp=1,ncp_plane(ip) !loop on cluster inside couples |
3391 |
|
|
c$$$ icx=clx(ip,icp) |
3392 |
|
|
c$$$ icy=cly(ip,icp) |
3393 |
|
|
c$$$ id=id_cp(ip,icp,ist) |
3394 |
|
|
c$$$ if(LADDER(icx).ne.nldt)goto 11882 !if the ladder number does not match |
3395 |
|
|
c$$$* !jump to the next couple |
3396 |
|
|
c$$$*----- try cluster x ----------------------------------------------- |
3397 |
|
|
c$$$ if(cl_used(icx).eq.1)goto 11881 !if the X cluster is already used |
3398 |
|
|
c$$$* !jump to the Y cluster |
3399 |
|
|
c$$$ call xyz_PAM(icx,0,ist, |
3400 |
|
|
c$$$c $ 'ETA2','ETA2', |
3401 |
|
|
c$$$ $ PFA,PFA, |
3402 |
|
|
c$$$ $ AXV_STORE(nplanes-ip+1,ibest),0.) |
3403 |
|
|
c$$$ distance = distance_to(XP,YP) |
3404 |
|
|
c$$$c if(DEBUG)print*,'normalized distance ',distance |
3405 |
|
|
c$$$ if(DEBUG)print*,'( cl-X ',icx |
3406 |
|
|
c$$$ $ ,' in cp ',id,' ) normalized distance ',distance |
3407 |
|
|
c$$$ if(distance.lt.distmin)then |
3408 |
|
|
c$$$ xmm_A = xPAM_A |
3409 |
|
|
c$$$ ymm_A = yPAM_A |
3410 |
|
|
c$$$ zmm_A = zPAM_A |
3411 |
|
|
c$$$ xmm_B = xPAM_B |
3412 |
|
|
c$$$ ymm_B = yPAM_B |
3413 |
|
|
c$$$ zmm_B = zPAM_B |
3414 |
|
|
c$$$ rxmm = resxPAM |
3415 |
|
|
c$$$ rymm = resyPAM |
3416 |
|
|
c$$$ distmin = distance |
3417 |
|
|
c$$$ iclm = icx |
3418 |
|
|
c$$$ dedxmm = dedx(icx) |
3419 |
|
|
c$$$ endif |
3420 |
|
|
c$$$11881 continue |
3421 |
|
|
c$$$*----- try cluster y ----------------------------------------------- |
3422 |
|
|
c$$$ if(cl_used(icy).eq.1)goto 11882 !if the Y cluster is already used |
3423 |
|
|
c$$$* !jump to the next couple |
3424 |
|
|
c$$$ call xyz_PAM(0,icy,ist, |
3425 |
|
|
c$$$c $ 'ETA2','ETA2', |
3426 |
|
|
c$$$ $ PFA,PFA, |
3427 |
|
|
c$$$ $ 0.,AYV_STORE(nplanes-ip+1,ibest)) |
3428 |
|
|
c$$$ distance = distance_to(XP,YP) |
3429 |
|
|
c$$$ if(DEBUG)print*,'( cl-Y ',icy |
3430 |
|
|
c$$$ $ ,' in cp ',id,' ) normalized distance ',distance |
3431 |
|
|
c$$$ if(distance.lt.distmin)then |
3432 |
|
|
c$$$ xmm_A = xPAM_A |
3433 |
|
|
c$$$ ymm_A = yPAM_A |
3434 |
|
|
c$$$ zmm_A = zPAM_A |
3435 |
|
|
c$$$ xmm_B = xPAM_B |
3436 |
|
|
c$$$ ymm_B = yPAM_B |
3437 |
|
|
c$$$ zmm_B = zPAM_B |
3438 |
|
|
c$$$ rxmm = resxPAM |
3439 |
|
|
c$$$ rymm = resyPAM |
3440 |
|
|
c$$$ distmin = distance |
3441 |
|
|
c$$$ iclm = icy |
3442 |
|
|
c$$$ dedxmm = dedx(icy) |
3443 |
|
|
c$$$ endif |
3444 |
|
|
c$$$11882 continue |
3445 |
|
|
c$$$ enddo !end loop on cluster inside couples |
3446 |
|
|
c$$$*----- single clusters ----------------------------------------------- |
3447 |
|
|
c$$$ do ic=1,ncls(ip) !loop on single clusters |
3448 |
|
|
c$$$ icl=cls(ip,ic) |
3449 |
|
|
c$$$ if(cl_used(icl).eq.1.or. !if the cluster is already used |
3450 |
|
|
c$$$ $ LADDER(icl).ne.nldt.or. !or the ladder number does not match |
3451 |
|
|
c$$$ $ .false.)goto 18882 !jump to the next singlet |
3452 |
|
|
c$$$ if(mod(VIEW(icl),2).eq.0)then!<---- X view |
3453 |
|
|
c$$$ call xyz_PAM(icl,0,ist, |
3454 |
|
|
c$$$c $ 'ETA2','ETA2', |
3455 |
|
|
c$$$ $ PFA,PFA, |
3456 |
|
|
c$$$ $ AXV_STORE(nplanes-ip+1,ibest),0.) |
3457 |
|
|
c$$$ else !<---- Y view |
3458 |
|
|
c$$$ call xyz_PAM(0,icl,ist, |
3459 |
|
|
c$$$c $ 'ETA2','ETA2', |
3460 |
|
|
c$$$ $ PFA,PFA, |
3461 |
|
|
c$$$ $ 0.,AYV_STORE(nplanes-ip+1,ibest)) |
3462 |
|
|
c$$$ endif |
3463 |
|
|
c$$$ |
3464 |
|
|
c$$$ distance = distance_to(XP,YP) |
3465 |
|
|
c$$$ if(DEBUG)print*,'( cl-s ',icl |
3466 |
|
|
c$$$ $ ,' ) normalized distance ',distance |
3467 |
|
|
c$$$ if(distance.lt.distmin)then |
3468 |
|
|
c$$$ xmm_A = xPAM_A |
3469 |
|
|
c$$$ ymm_A = yPAM_A |
3470 |
|
|
c$$$ zmm_A = zPAM_A |
3471 |
|
|
c$$$ xmm_B = xPAM_B |
3472 |
|
|
c$$$ ymm_B = yPAM_B |
3473 |
|
|
c$$$ zmm_B = zPAM_B |
3474 |
|
|
c$$$ rxmm = resxPAM |
3475 |
|
|
c$$$ rymm = resyPAM |
3476 |
|
|
c$$$ distmin = distance |
3477 |
|
|
c$$$ iclm = icl |
3478 |
|
|
c$$$ dedxmm = dedx(icl) |
3479 |
|
|
c$$$ endif |
3480 |
|
|
c$$$18882 continue |
3481 |
|
|
c$$$ enddo !end loop on single clusters |
3482 |
|
|
c$$$ |
3483 |
|
|
c$$$ if(distmin.le.clinc)then |
3484 |
|
|
c$$$ |
3485 |
|
|
c$$$ CLS_STORE(nplanes-ip+1,ibest)=iclm !<<<< |
3486 |
|
|
c$$$* ---------------------------- |
3487 |
|
|
c$$$ if(mod(VIEW(iclm),2).eq.0)then |
3488 |
|
|
c$$$ XGOOD(nplanes-ip+1)=1. |
3489 |
|
|
c$$$ resx(nplanes-ip+1)=rxmm |
3490 |
|
|
c$$$ if(DEBUG)print*,'%%%% included X-cl ',iclm |
3491 |
|
|
c$$$ $ ,' ( norm.dist.= ',distmin,', cut ',clinc,' )' |
3492 |
|
|
c$$$ else |
3493 |
|
|
c$$$ YGOOD(nplanes-ip+1)=1. |
3494 |
|
|
c$$$ resy(nplanes-ip+1)=rymm |
3495 |
|
|
c$$$ if(DEBUG)print*,'%%%% included Y-cl ',iclm |
3496 |
|
|
c$$$ $ ,' ( norm.dist.= ',distmin,', cut ',clinc,' )' |
3497 |
|
|
c$$$ endif |
3498 |
|
|
c$$$* ---------------------------- |
3499 |
|
|
c$$$ xm_A(nplanes-ip+1) = xmm_A |
3500 |
|
|
c$$$ ym_A(nplanes-ip+1) = ymm_A |
3501 |
|
|
c$$$ xm_B(nplanes-ip+1) = xmm_B |
3502 |
|
|
c$$$ ym_B(nplanes-ip+1) = ymm_B |
3503 |
|
|
c$$$ zm(nplanes-ip+1) = (zmm_A+zmm_B)/2. |
3504 |
|
|
c$$$ dedxtrk(nplanes-ip+1) = dedxmm !<<< |
3505 |
|
|
c$$$* ---------------------------- |
3506 |
|
|
c$$$ endif |
3507 |
|
|
c$$$ endif |
3508 |
|
|
c$$$ 133 continue |
3509 |
|
|
c$$$ enddo !end loop on planes |
3510 |
|
|
c$$$ |
3511 |
|
|
c$$$ |
3512 |
|
|
c$$$ |
3513 |
|
|
c$$$ return |
3514 |
|
|
c$$$ end |
3515 |
|
|
c$$$ |
3516 |
|
|
c$$$*************************************************** |
3517 |
|
|
c$$$* * |
3518 |
|
|
c$$$* * |
3519 |
|
|
c$$$* * |
3520 |
|
|
c$$$* * |
3521 |
|
|
c$$$* * |
3522 |
|
|
c$$$* * |
3523 |
|
|
c$$$************************************************** |
3524 |
|
|
c$$$ |
3525 |
|
|
c$$$ subroutine clean_XYclouds(ibest,iflag) |
3526 |
|
|
c$$$ |
3527 |
|
|
c$$$ include '../common/commontracker.f' |
3528 |
|
|
c$$$ include '../common/common_momanhough.f' |
3529 |
|
|
c$$$ include '../common/momanhough_init.f' |
3530 |
|
|
c$$$c include '../common/calib.f' |
3531 |
|
|
c$$$c include '../common/level1.f' |
3532 |
|
|
c$$$ |
3533 |
|
|
c$$$ logical DEBUG |
3534 |
|
|
c$$$ common/dbg/DEBUG |
3535 |
|
|
c$$$ |
3536 |
|
|
c$$$ |
3537 |
|
|
c$$$ do ip=1,nplanes !loop on planes |
3538 |
|
|
c$$$ |
3539 |
|
|
c$$$ id=CP_STORE(nplanes-ip+1,ibest) |
3540 |
|
|
c$$$ icl=CLS_STORE(nplanes-ip+1,ibest) |
3541 |
|
|
c$$$ if(id.ne.0.or.icl.ne.0)then |
3542 |
|
|
c$$$ if(id.ne.0)then |
3543 |
|
|
c$$$ iclx=clx(ip,icp_cp(id)) |
3544 |
|
|
c$$$ icly=cly(ip,icp_cp(id)) |
3545 |
|
|
c$$$ cl_used(iclx)=1 !tag used clusters |
3546 |
|
|
c$$$ cl_used(icly)=1 !tag used clusters |
3547 |
|
|
c$$$ elseif(icl.ne.0)then |
3548 |
|
|
c$$$ cl_used(icl)=1 !tag used clusters |
3549 |
|
|
c$$$ endif |
3550 |
|
|
c$$$ |
3551 |
|
|
c$$$c if(DEBUG)then |
3552 |
|
|
c$$$c print*,ip,' <<< ',id |
3553 |
|
|
c$$$c endif |
3554 |
|
|
c$$$* ----------------------------- |
3555 |
|
|
c$$$* remove the couple from clouds |
3556 |
|
|
c$$$* remove also vitual couples containing the |
3557 |
|
|
c$$$* selected clusters |
3558 |
|
|
c$$$* ----------------------------- |
3559 |
|
|
c$$$ do icp=1,ncp_plane(ip) |
3560 |
|
|
c$$$ if( |
3561 |
|
|
c$$$ $ clx(ip,icp).eq.iclx |
3562 |
|
|
c$$$ $ .or. |
3563 |
|
|
c$$$ $ clx(ip,icp).eq.icl |
3564 |
|
|
c$$$ $ .or. |
3565 |
|
|
c$$$ $ cly(ip,icp).eq.icly |
3566 |
|
|
c$$$ $ .or. |
3567 |
|
|
c$$$ $ cly(ip,icp).eq.icl |
3568 |
|
|
c$$$ $ )then |
3569 |
|
|
c$$$ id=id_cp(ip,icp,1) |
3570 |
|
|
c$$$ if(DEBUG)then |
3571 |
|
|
c$$$ print*,ip,' <<< cp ',id |
3572 |
|
|
c$$$ $ ,' ( cl-x ' |
3573 |
|
|
c$$$ $ ,clx(ip,icp) |
3574 |
|
|
c$$$ $ ,' cl-y ' |
3575 |
|
|
c$$$ $ ,cly(ip,icp),' ) --> removed' |
3576 |
|
|
c$$$ endif |
3577 |
|
|
c$$$* ----------------------------- |
3578 |
|
|
c$$$* remove the couple from clouds |
3579 |
|
|
c$$$ do iyz=1,nclouds_yz |
3580 |
|
|
c$$$ if(cpcloud_yz(iyz,abs(id)).ne.0)then |
3581 |
|
|
c$$$ ptcloud_yz(iyz)=ptcloud_yz(iyz)-1 |
3582 |
|
|
c$$$ cpcloud_yz(iyz,abs(id))=0 |
3583 |
|
|
c$$$ endif |
3584 |
|
|
c$$$ enddo |
3585 |
|
|
c$$$ do ixz=1,nclouds_xz |
3586 |
|
|
c$$$ if(cpcloud_xz(ixz,abs(id)).ne.0)then |
3587 |
|
|
c$$$ ptcloud_xz(ixz)=ptcloud_xz(ixz)-1 |
3588 |
|
|
c$$$ cpcloud_xz(ixz,abs(id))=0 |
3589 |
|
|
c$$$ endif |
3590 |
|
|
c$$$ enddo |
3591 |
|
|
c$$$* ----------------------------- |
3592 |
|
|
c$$$ endif |
3593 |
|
|
c$$$ enddo |
3594 |
|
|
c$$$ |
3595 |
|
|
c$$$ endif |
3596 |
|
|
c$$$ enddo !end loop on planes |
3597 |
|
|
c$$$ |
3598 |
|
|
c$$$ return |
3599 |
|
|
c$$$ end |
3600 |
|
|
c$$$ |
3601 |
|
|
c$$$ |
3602 |
|
|
c$$$ |
3603 |
|
|
c$$$ |
3604 |
|
|
c$$$*** * * * *** * * * *** * * * *** * * * *** * * * *** * * * *** |
3605 |
|
|
c$$$ real function fbad_cog(ncog,ic) |
3606 |
|
|
c$$$ |
3607 |
|
|
c$$$ |
3608 |
|
|
c$$$ include '../common/commontracker.f' |
3609 |
|
|
c$$$ include '../common/level1.f' |
3610 |
|
|
c$$$ include '../common/calib.f' |
3611 |
|
|
c$$$ |
3612 |
|
|
c$$$* --> signal of the central strip |
3613 |
|
|
c$$$ sc = CLSIGNAL(INDMAX(ic)) !center |
3614 |
|
|
c$$$ |
3615 |
|
|
c$$$* signal of adjacent strips |
3616 |
|
|
c$$$* --> left |
3617 |
|
|
c$$$ sl1 = 0 !left 1 |
3618 |
|
|
c$$$ if( |
3619 |
|
|
c$$$ $ (INDMAX(ic)-1).ge.INDSTART(ic) |
3620 |
|
|
c$$$ $ ) |
3621 |
|
|
c$$$ $ sl1 = max(0.,CLSIGNAL(INDMAX(ic)-1)) |
3622 |
|
|
c$$$ |
3623 |
|
|
c$$$ sl2 = 0 !left 2 |
3624 |
|
|
c$$$ if( |
3625 |
|
|
c$$$ $ (INDMAX(ic)-2).ge.INDSTART(ic) |
3626 |
|
|
c$$$ $ ) |
3627 |
|
|
c$$$ $ sl2 = max(0.,CLSIGNAL(INDMAX(ic)-2)) |
3628 |
|
|
c$$$ |
3629 |
|
|
c$$$* --> right |
3630 |
|
|
c$$$ sr1 = 0 !right 1 |
3631 |
|
|
c$$$ if( |
3632 |
|
|
c$$$ $ (ic.ne.NCLSTR1.and.(INDMAX(ic)+1).lt.INDSTART(ic+1)) |
3633 |
|
|
c$$$ $ .or. |
3634 |
|
|
c$$$ $ (ic.eq.NCLSTR1.and.(INDMAX(ic)+1).le.TOTCLLENGTH) |
3635 |
|
|
c$$$ $ ) |
3636 |
|
|
c$$$ $ sr1 = max(0.,CLSIGNAL(INDMAX(ic)+1)) |
3637 |
|
|
c$$$ |
3638 |
|
|
c$$$ sr2 = 0 !right 2 |
3639 |
|
|
c$$$ if( |
3640 |
|
|
c$$$ $ (ic.ne.NCLSTR1.and.(INDMAX(ic)+2).lt.INDSTART(ic+1)) |
3641 |
|
|
c$$$ $ .or. |
3642 |
|
|
c$$$ $ (ic.eq.NCLSTR1.and.(INDMAX(ic)+2).le.TOTCLLENGTH) |
3643 |
|
|
c$$$ $ ) |
3644 |
|
|
c$$$ $ sr2 = max(0.,CLSIGNAL(INDMAX(ic)+2)) |
3645 |
|
|
c$$$ |
3646 |
|
|
c$$$ |
3647 |
|
|
c$$$ if(mod(int(VIEW(ic)),2).eq.1)then !Y-view |
3648 |
|
|
c$$$ f = 4. |
3649 |
|
|
c$$$ si = 8.4 |
3650 |
|
|
c$$$ else !X-view |
3651 |
|
|
c$$$ f = 6. |
3652 |
|
|
c$$$ si = 3.9 |
3653 |
|
|
c$$$ endif |
3654 |
|
|
c$$$ |
3655 |
|
|
c$$$ fbad_cog = 1. |
3656 |
|
|
c$$$ f0 = 1 |
3657 |
|
|
c$$$ f1 = 1 |
3658 |
|
|
c$$$ f2 = 1 |
3659 |
|
|
c$$$ f3 = 1 |
3660 |
|
|
c$$$ if(sl1.gt.sr1.and.sl1.gt.0.)then |
3661 |
|
|
c$$$ |
3662 |
|
|
c$$$ if(BAD(VIEW(ic),nvk(MAXS(ic)),nst(MAXS(ic)) ).eq.0)f0=f |
3663 |
|
|
c$$$ if(BAD(VIEW(ic),nvk(MAXS(ic)),nst(MAXS(ic)-1)).eq.0)f1=f |
3664 |
|
|
c$$$c if(BAD(VIEW(ic),nvk(MAXS(ic)),nst(MAXS(ic)+1)).eq.0)f3=f |
3665 |
|
|
c$$$ |
3666 |
|
|
c$$$ if(ncog.eq.2.and.sl1.ne.0)then |
3667 |
|
|
c$$$ fbad_cog = (f1**2*sc**2/sl1**2+f0**2)/(sc**2/sl1**2+1.) |
3668 |
|
|
c$$$ elseif(ncog.eq.3.and.sl1.ne.0.and.sr1.ne.0)then |
3669 |
|
|
c$$$ fbad_cog = 1. |
3670 |
|
|
c$$$ elseif(ncog.eq.4.and.sl1.ne.0.and.sr1.ne.0.and.sl2.ne.0)then |
3671 |
|
|
c$$$ fbad_cog = 1. |
3672 |
|
|
c$$$ else |
3673 |
|
|
c$$$ fbad_cog = 1. |
3674 |
|
|
c$$$ endif |
3675 |
|
|
c$$$ |
3676 |
|
|
c$$$ elseif(sl1.le.sr1.and.sr1.gt.0.)then |
3677 |
|
|
c$$$ |
3678 |
|
|
c$$$ |
3679 |
|
|
c$$$ if(BAD(VIEW(ic),nvk(MAXS(ic)),nst(MAXS(ic)) ).eq.0)f0=f |
3680 |
|
|
c$$$ if(BAD(VIEW(ic),nvk(MAXS(ic)),nst(MAXS(ic)+1)).eq.0)f1=f |
3681 |
|
|
c$$$c if(BAD(VIEW(ic),nvk(MAXS(ic)),nst(MAXS(ic)-1)).eq.0)f3=f |
3682 |
|
|
c$$$ |
3683 |
|
|
c$$$ if(ncog.eq.2.and.sr1.ne.0)then |
3684 |
|
|
c$$$ fbad_cog = (f1**2*sc**2/sr1**2+f0**2)/(sc**2/sr1**2+1.) |
3685 |
|
|
c$$$ elseif(ncog.eq.3.and.sr1.ne.0.and.sl1.ne.0)then |
3686 |
|
|
c$$$ fbad_cog = 1. |
3687 |
|
|
c$$$ elseif(ncog.eq.4.and.sr1.ne.0.and.sl1.ne.0.and.sr2.ne.0)then |
3688 |
|
|
c$$$ fbad_cog = 1. |
3689 |
|
|
c$$$ else |
3690 |
|
|
c$$$ fbad_cog = 1. |
3691 |
|
|
c$$$ endif |
3692 |
|
|
c$$$ |
3693 |
|
|
c$$$ endif |
3694 |
|
|
c$$$ |
3695 |
|
|
c$$$ fbad_cog = sqrt(fbad_cog) |
3696 |
|
|
c$$$ |
3697 |
|
|
c$$$ return |
3698 |
|
|
c$$$ end |