FORTRAN Generation
(/./ftp/cats/J/MNRAS/320/387)

Conversion of standardized ReadMe file for file /./ftp/cats/J/MNRAS/320/387 into FORTRAN code for reading data files line by line.

Note that special values are assigned to unknown or unspecified numbers (also called NULL numbers); when necessary, the coordinate components making up the right ascension and declination are converted into floating-point numbers representing these angles in degrees.



      program load_ReadMe
C=============================================================================
C  F77-compliant program generated by readme2f_1.81 (2015-09-23), on 2026-Jun-10
C=============================================================================
*  This code was generated from the ReadMe file documenting a catalogue
*  according to the "Standard for Documentation of Astronomical Catalogues"
*  currently in use by the Astronomical Data Centers (CDS, ADC, A&A)
*  (see full documentation at URL http://vizier.u-strasbg.fr/doc/catstd.htx)
*  Please report problems or questions to   
C=============================================================================

      implicit none
*  Unspecified or NULL values, generally corresponding to blank columns,
*  are assigned one of the following special values:
*     rNULL__    for unknown or NULL floating-point values
*     iNULL__    for unknown or NULL   integer      values
      real*4     rNULL__
      integer*4  iNULL__
      parameter  (rNULL__=--2147483648.)  	! NULL real number
      parameter  (iNULL__=(-2147483647-1))	! NULL int  number
      integer    idig			! testing NULL number

C=============================================================================
Cat. J/MNRAS/320/387        The A3528 complex                     (Bardelli+, 2001)
*================================================================================
*A study of the core of the Shapley Concentration - V.
*The A3528 complex: a young merger event?
*    Bardelli S., Zucca E., Baldi A.
*   <Mon. Not. R. Astron. Soc. 320, 387 (2001)>
*   =2001MNRAS.320..387B
C=============================================================================

C  Internal variables

      integer*4 i__

c - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - 

C  Declarations for 'table1.dat'	! Centers of the observed OPTOPUS fields

      integer*4 nr__
      parameter (nr__=12)	! Number of records
      character*40 ar__   	! Full-size record

C  J2000 position composed of: RAh RAm RAs DE- DEd DEm DEs
      real*8        RAdeg       ! (deg) Right Ascension J2000
      real*8        DEdeg       ! (deg)     Declination J2000
C  ---------------------------------- ! (position vector(s) in degrees)

      integer*4     Field       ! Field number
      integer*4     RAh         ! (h) Right ascension (J2000)
      integer*4     RAm         ! (min) Right ascension (J2000)
      integer*4     RAs         ! (s) Right ascension (J2000)
      character*1   DE_         ! Declination sign (J2000)
      integer*4     DEd         ! (deg) Declination (J2000)
      integer*4     DEm         ! (arcmin) Declination (J2000)
      integer*4     DEs         ! (arcsec) Declination (J2000)
      character*14  Date        ! Observation date

c - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - 

C  Declarations for 'table2.dat'	! Redshift data for the A3528 complex sample

      integer*4 nr__1
      parameter (nr__1=581)	! Number of records
      character*46 ar__1  	! Full-size record

C  J2000 position composed of: RAh RAm RAs DE- DEd DEm DEs
      real*8        RAdeg_1     ! (deg) Right Ascension J2000
      real*8        DEdeg_1     ! (deg)     Declination J2000
C  ---------------------------------- ! (position vector(s) in degrees)

      integer*4     RAh_1       ! (h) Right ascension (J2000)
      integer*4     RAm_1       ! (min) Right ascension (J2000)
      real*4        RAs_1       ! (s) Right ascension (J2000)
      character*1   DE__1       ! Declination sign (J2000)
      integer*4     DEd_1       ! (deg) Declination (J2000)
      integer*4     DEm_1       ! (arcmin) Declination (J2000)
      real*4        DEs_1       ! (arcsec) Declination (J2000)
      real*4        bjmag       ! (mag) b_j_ magnitude
      integer*4     cz          ! (km/s) Heliocentric velocity
      integer*4     e_cz        ! (km/s) rms uncertainty on cz
      character*5   Notes       ! Note (emiss for emission)

c - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - 

C  Declarations for 'table4.dat'	! Groups in the bidimensional sample

      integer*4 nr__2
      parameter (nr__2=13)	! Number of records
      character*36 ar__2  	! Full-size record

C  J2000 position composed of: RAh RAm RAs DE- DEd DEm DEs
      real*8        RAdeg_2     ! (deg) Right Ascension J2000
      real*8        DEdeg_2     ! (deg)     Declination J2000
C  ---------------------------------- ! (position vector(s) in degrees)

      character*6   Name        ! Name of the group (BNNNN)
      integer*4     RAh_2       ! (h) Right ascension of the group center (J2000)
      integer*4     RAm_2       ! (min) Right ascension of the group center (J2000)
      real*4        RAs_2       ! (s) Right ascension of the group center (J2000)
      character*1   DE__2       ! Declination sign of the group center (J2000)
      integer*4     DEd_2       ! (deg) Declination of the group center (J2000)
      integer*4     DEm_2       ! (arcmin) Declination of the group center (J2000)
      integer*4     DEs_2       ! (arcsec) Declination of the group center (J2000)
      integer*4     Nmemb       ! Number of the substructure members
      character*5   Notes_1     ! Main component to which the substructure belongs

C=============================================================================

C  Loading file 'table1.dat'	! Centers of the observed OPTOPUS fields

C  Format for file interpretation

    1 format(I2,3X,I2,1X,I2,1X,I2,1X,A1,I2,1X,I2,1X,I2,3X,A14)

C  Effective file loading

      open(unit=1,status='old',file=
     +'table1.dat')
      write(6,*) '....Loading file: table1.dat'
      do i__=1,12
        read(1,'(A40)')ar__
        read(ar__,1)Field,RAh,RAm,RAs,DE_,DEd,DEm,DEs,Date
        RAdeg = rNULL__
        DEdeg = rNULL__
c  Derive coordinates RAdeg and DEdeg from input data
c  (RAdeg and DEdeg are set to rNULL__ when unknown)
        if(RAh .GT. -180) RAdeg=RAh*15.
        if(RAm .GT. -180) RAdeg=RAdeg+RAm/4.
        if(RAs .GT. -180) RAdeg=RAdeg+RAs/240.
        if(DEd .GE. 0) DEdeg=DEd
        if(DEm .GE. 0) DEdeg=DEdeg+DEm/60.
        if(DEs .GE. 0) DEdeg=DEdeg+DEs/3600.
        if(DE_.EQ.'-'.AND.DEdeg.GE.0) DEdeg=-DEdeg
c    ..............Just test output...........
        write(6,1)Field,RAh,RAm,RAs,DE_,DEd,DEm,DEs,Date
        write(6,'(6H Pos: 2F8.4)') RAdeg,DEdeg
c    .......End.of.Just test output...........
      end do
      close(1)

C=============================================================================

C  Loading file 'table2.dat'	! Redshift data for the A3528 complex sample

C  Format for file interpretation

    2 format(
     +  1X,I2,1X,I2,1X,F5.2,1X,A1,I2,1X,I2,1X,F4.1,1X,F5.2,1X,I5,1X,
     +  I3,1X,A5)

C  Effective file loading

      open(unit=1,status='old',file=
     +'table2.dat')
      write(6,*) '....Loading file: table2.dat'
      do i__=1,581
        read(1,'(A46)')ar__1
        read(ar__1,2)
     +  RAh_1,RAm_1,RAs_1,DE__1,DEd_1,DEm_1,DEs_1,bjmag,cz,e_cz,Notes
        RAdeg_1 = rNULL__
        DEdeg_1 = rNULL__
c  Derive coordinates RAdeg_1 and DEdeg_1 from input data
c  (RAdeg_1 and DEdeg_1 are set to rNULL__ when unknown)
        if(RAh_1 .GT. -180) RAdeg_1=RAh_1*15.
        if(RAm_1 .GT. -180) RAdeg_1=RAdeg_1+RAm_1/4.
        if(RAs_1 .GT. -180) RAdeg_1=RAdeg_1+RAs_1/240.
        if(DEd_1 .GE. 0) DEdeg_1=DEd_1
        if(DEm_1 .GE. 0) DEdeg_1=DEdeg_1+DEm_1/60.
        if(DEs_1 .GE. 0) DEdeg_1=DEdeg_1+DEs_1/3600.
        if(DE__1.EQ.'-'.AND.DEdeg_1.GE.0) DEdeg_1=-DEdeg_1
c    ..............Just test output...........
        write(6,2)
     +  RAh_1,RAm_1,RAs_1,DE__1,DEd_1,DEm_1,DEs_1,bjmag,cz,e_cz,Notes
        write(6,'(6H Pos: 2F8.4)') RAdeg_1,DEdeg_1
c    .......End.of.Just test output...........
      end do
      close(1)

C=============================================================================

C  Loading file 'table4.dat'	! Groups in the bidimensional sample

C  Format for file interpretation

    3 format(1X,A6,I2,1X,I2,1X,F4.1,1X,A1,I2,1X,I2,1X,I2,1X,I2,1X,A5)

C  Effective file loading

      open(unit=1,status='old',file=
     +'table4.dat')
      write(6,*) '....Loading file: table4.dat'
      do i__=1,13
        read(1,'(A36)')ar__2
        read(ar__2,3)
     +  Name,RAh_2,RAm_2,RAs_2,DE__2,DEd_2,DEm_2,DEs_2,Nmemb,Notes_1
        RAdeg_2 = rNULL__
        DEdeg_2 = rNULL__
c  Derive coordinates RAdeg_2 and DEdeg_2 from input data
c  (RAdeg_2 and DEdeg_2 are set to rNULL__ when unknown)
        if(RAh_2 .GT. -180) RAdeg_2=RAh_2*15.
        if(RAm_2 .GT. -180) RAdeg_2=RAdeg_2+RAm_2/4.
        if(RAs_2 .GT. -180) RAdeg_2=RAdeg_2+RAs_2/240.
        if(DEd_2 .GE. 0) DEdeg_2=DEd_2
        if(DEm_2 .GE. 0) DEdeg_2=DEdeg_2+DEm_2/60.
        if(DEs_2 .GE. 0) DEdeg_2=DEdeg_2+DEs_2/3600.
        if(DE__2.EQ.'-'.AND.DEdeg_2.GE.0) DEdeg_2=-DEdeg_2
c    ..............Just test output...........
        write(6,3)
     +  Name,RAh_2,RAm_2,RAs_2,DE__2,DEd_2,DEm_2,DEs_2,Nmemb,Notes_1
        write(6,'(6H Pos: 2F8.4)') RAdeg_2,DEdeg_2
c    .......End.of.Just test output...........
      end do
      close(1)

C=============================================================================
      stop
      end