Conversion of standardized ReadMe file for
file /./ftp/cats/J/MNRAS/240/785 into FORTRAN code for loading all data files into arrays.
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-Aug-11
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/240/785 Multicolour photometry of Sersic 129-01 (Millington+ 1989)
*================================================================================
*Multicolour photometry of the cluster of galaxies Sersic 129-01
* Millington S.J.C., Peach J.V.
* <Mon. Not. R. Astron. Soc. 240, 785 (1989)>
* =1989MNRAS.240..785M
C=============================================================================
C Internal variables
integer*4 i__
c - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
C Declarations for 'appendix.dat' ! ubri photometry
integer*4 nr__
parameter (nr__=811) ! Number of records
character*79 ar__ ! Full-size record
C 1950 position composed of: RAh RAm RAs DE- DEd DEm DEs
real*8 RAdeg (nr__) ! (deg) Right Ascension 1950
real*8 DEdeg (nr__) ! (deg) Declination 1950
C ---------------------------------- ! (position vector(s) in degrees)
integer*4 v_MP89_ (nr__) ! [1/907]+ Identification number
character*1 Type (nr__) ! '?' for probable galaxies,
* ';' when magnitudes could not be measured
* due to contamination by stars
integer*4 RAh (nr__) ! (h) Right ascension 1950
integer*4 RAm (nr__) ! (min) Right ascension 1950
integer*4 RAs (nr__) ! (s) [0,60] Right ascension 1950
character*1 DE_ (nr__) ! Declination 1950 (sign)
integer*4 DEd (nr__) ! (deg) Declination 1950
integer*4 DEm (nr__) ! (arcmin) Declination 1950
integer*4 DEs (nr__) ! (arcsec) [0,60] Declination 1950
character*1 Remark (nr__) ! 'D' for double, 'E' for est.mag.
character*1 Overlap (nr__) ! '*' for overlapped image
real*4 b26_25 (nr__) ! (mag) ? b26.25 isophotal magnitude
real*4 R_b26_25 (nr__) ! (arcsec) ? Effective radius at
* 26.25 mag/arcsec^2^ limiting isophote
real*4 b_r (nr__) ! (mag) ? (b-r) equal area colour
real*4 R_b_r (nr__) ! (arcsec) ? Radius of equal area colour
real*4 u_b (nr__) ! (mag) ? (u-b) equal area colour
real*4 R_u_b (nr__) ! (arcsec) ? Radius of equal area colour
real*4 b_i (nr__) ! (mag) ? (b-i) equal area colour
real*4 R_b_i (nr__) ! (arcsec) ? Radius of equal area colour
C=============================================================================
C Loading file 'appendix.dat' ! ubri photometry
C Format for file interpretation
1 format(
+ I3,A1,1X,I2,1X,I2,1X,I2,2X,A1,I2,1X,I2,1X,I2,5X,A1,A1,F5.2,1X,
+ F4.1,3X,F4.2,1X,F4.1,3X,F5.2,1X,F4.1,2X,F5.2,2X,F4.1)
C Effective file loading
open(unit=1,status='old',file=
+'appendix.dat')
write(6,*) '....Loading file: appendix.dat'
do i__=1,811
read(1,'(A79)')ar__
read(ar__,1)
+ v_MP89_(i__),Type(i__),RAh(i__),RAm(i__),RAs(i__),DE_(i__),
+ DEd(i__),DEm(i__),DEs(i__),Remark(i__),Overlap(i__),
+ b26_25(i__),R_b26_25(i__),b_r(i__),R_b_r(i__),u_b(i__),
+ R_u_b(i__),b_i(i__),R_b_i(i__)
if(ar__(32:36) .EQ. '') b26_25(i__) = rNULL__
if(ar__(38:41) .EQ. '') R_b26_25(i__) = rNULL__
if(ar__(45:48) .EQ. '') b_r(i__) = rNULL__
if(ar__(50:53) .EQ. '') R_b_r(i__) = rNULL__
if(ar__(57:61) .EQ. '') u_b(i__) = rNULL__
if(ar__(63:66) .EQ. '') R_u_b(i__) = rNULL__
if(ar__(69:73) .EQ. '') b_i(i__) = rNULL__
if(ar__(76:79) .EQ. '') R_b_i(i__) = rNULL__
RAdeg(i__) = rNULL__
DEdeg(i__) = rNULL__
c Derive coordinates RAdeg and DEdeg from input data
c (RAdeg and DEdeg are set to rNULL__ when unknown)
if(RAh(i__) .GT. -180) RAdeg(i__)=RAh(i__)*15.
if(RAm(i__) .GT. -180) RAdeg(i__)=RAdeg(i__)+RAm(i__)/4.
if(RAs(i__) .GT. -180) RAdeg(i__)=RAdeg(i__)+RAs(i__)/240.
if(DEd(i__) .GE. 0) DEdeg(i__)=DEd(i__)
if(DEm(i__) .GE. 0) DEdeg(i__)=DEdeg(i__)+DEm(i__)/60.
if(DEs(i__) .GE. 0) DEdeg(i__)=DEdeg(i__)+DEs(i__)/3600.
if(DE_(i__).EQ.'-'.AND.DEdeg(i__).GE.0) DEdeg(i__)=-DEdeg(i__)
c ..............Just test output...........
write(6,1)
+ v_MP89_(i__),Type(i__),RAh(i__),RAm(i__),RAs(i__),DE_(i__),
+ DEd(i__),DEm(i__),DEs(i__),Remark(i__),Overlap(i__),
+ b26_25(i__),R_b26_25(i__),b_r(i__),R_b_r(i__),u_b(i__),
+ R_u_b(i__),b_i(i__),R_b_i(i__)
write(6,'(6H Pos: 2F8.4)') RAdeg(i__),DEdeg(i__)
c .......End.of.Just test output...........
end do
close(1)
C=============================================================================
stop
end