How to resolve the algorithm Holidays related to Easter step by step in the COBOL programming language

Published on 12 May 2024 09:40 PM

How to resolve the algorithm Holidays related to Easter step by step in the COBOL programming language

Table of Contents

Problem Statement

Calculate the dates of:

As an example, calculate for the first year of each century from; From the year 325 CE on,   Easter Sunday   has been defined as the first Sunday after the first full moon on or after the day of the March equinox. However, the actual astronomical values for the moments of the full moon and equinox are not used. Instead, approximations are used, the first one being that the equinox is assumed to fall on March 21st every year. The tracking of the moon phases is similarly done with relatively straightforward arithmetic (compared to the sort required for astronomical accuracy) which amounts to maintaining a lunisolar calendar in parallel to our standard purely-solar one. When Pope Gregory reformed the Catholic calendar in 1582 CE, the drifting of Easter with respect to the seasons was the driving motivation, and the rules for determining it (called the computus) were altered to correct that drift. Catholic nations adopted both the new calendar and the new computus right away, while Western Protestant nations adopted them more gradually over the next 350 years or so. Eventually, even nations dominated by the Eastern Orthodox church adopted a similar calendar reform (the Revised Julian calendar), so pretty much the whole world agrees on what day it is for civil purposes. But the Eastern churches never adopted the corresponding Easter rule changes; they still use the original Julian calendar and computus to determine the date of what is known in the West as "Orthodox Easter". Therefore, your output should indicate which computus was used to calculate the dates and, at least for historical dates where the calendar can't be assumed or is location-dependent, which calendar those dates are given in. You may find algorithms on the Computus Wikipedia page. Some of the results: In the year 400 CE, Easter Sunday was April 1st (in the contemporary Julian calendar), making Ascension Thursday May 10th and Pentecost May 20th. It is ahistorical to give a date so far back for either Trinity Sunday or Corpus Christi, neither of which were observed until centuries later, but they would have been May 27th and 31st. If you extend the modern civil calendar back that far, those days are instead assigned the subsequent dates: Easter on April 2nd, Ascension on May 11th, Pentecost on May 21st. Skipping forward to the year 2100 CE, assuming the rules don't change between now and then, the Western churches will observe Easter on March 28, Ascension Thursday May 6th, Pentecost May 16th, Trinity Sunday May 23rd and Corpus Christi May 27th. Heading East, the Orthodox rules place Easter on April 18 in the original Julian calendar; the corresponding civil date is May 2nd. That puts the Ascension on June 10th and Pentecost June 20th. Orthodox Trinity Sunday is the same day as Pentecost, but they observe All Saints' Sunday the following week, June 27th. Corpus Christi is a purely Catholic date that has no Orthodox version.

Let's start with the solution:

Step by Step solution about How to resolve the algorithm Holidays related to Easter step by step in the COBOL programming language

Source code in the cobol programming language

       identification division.
       program-id. Easter.
 
       environment division.
       configuration section.
       repository.
           function date-of-integer intrinsic
           function integer-of-date intrinsic
           function mod intrinsic.
 
       data division.
       working-storage section.
       77  days                   pic 9(2).
       77  a                      pic 9(2).  
       77  b                      pic 9(2).  
       77  c                      pic 9(2).  
       77  d                      pic 9(2).  
       77  e                      pic 9(2).  
       77  f                      pic 9(2).  
       77  g                      pic 9(2).  
       77  h                      pic 9(2).  
       77  i                      pic 9(2).  
       77  k                      pic 9(2).  
       77  l                      pic 9(2).  
       77  m                      pic 9(2).  
       77  week-day               pic 9(1).
       77  numerator              pic 9(4).
       77  integer-date           pic 9(18).
       
       01  month-tab              value "JanFebMarAprMayJunJulAugSepOctNovDec".
           05 month-abreviated    pic x(3) occurs 12.
           
       01  week-day-tab           value "SunMonTueWedThuFriSat".
           05 week-day-abreviated pic x(3) occurs 7.
       
       01  easter-date            pic 9(8).
       01  filler redefines easter-date.
           05 easter-year         pic 9(4).
           05 easter-month        pic 9(2).
           05 easter-day          pic 9(2).

       01  holiday-date           pic 9(8).
       01  filler redefines holiday-date.
           05 holiday-year        pic 9(4).
           05 holiday-month       pic 9(2).
           05 holiday-day         pic 9(2).

       01  edt-date.
           05 edt-week-day        pic x(3).
           05 filler              pic x value space.
           05 edt-day             pic z(2).
           05 filler              pic x value space.
           05 edt-month           pic x(3).

       procedure division.
       main.
           display "Christian holidays, related to Easter, for each centennial from 1700 to 2100 CE:"
           perform varying easter-year from 1700 by 100 until easter-year > 2100
              perform output-holydays
           end-perform
           display " "

           display "Christian holidays, related to Easter, for years from 2010 to 2020 CE:"
           perform varying easter-year from 2010 by 1 until easter-year > 2020
              perform output-holydays
           end-perform
           display " "

           stop run
           .
       output-holydays.
           display easter-year " " no advancing
           perform calculate-easter

           move 0 to days
           perform add-days
           display " Easter: " edt-date no advancing

           move 39 to days
           perform add-days
           display " Ascension: " edt-date no advancing

           move 49 to days
           perform add-days
           display " Pentecost: " edt-date no advancing

           move 56 to days
           perform add-days
           display " Trinity: " edt-date no advancing

           move 60 to days
           perform add-days
           display " Corpus: " edt-date 
           .
       calculate-easter.
           compute a = mod(easter-year, 19)
           compute b = easter-year / 100
           compute c = mod(easter-year, 100)
           compute d = b / 4
           compute e = mod(b, 4)
           compute f = (b + 8) / 25
           compute g = (b - f + 1) / 3
           compute h = mod((19 * a + b - d - g + 15), 30)
           compute i = c / 4
           compute k = mod(c, 4)
           compute l = mod((32 + 2 * e + 2 * i - h - k), 7)
           compute m = (a + 11 * h + 22 * l) / 451
           compute numerator = h + l - 7 * m + 114
           compute easter-month = numerator / 31
           compute easter-day = mod(numerator, 31) + 1
           .
       add-days.
           if days = 0
              move easter-date to holiday-date
              move 1 to week-day
           else
              compute holiday-date = date-of-integer(integer-of-date(easter-date) + days)
              compute week-day = mod(integer-of-date(easter-date) + days, 7) + 1
           end-if
           move week-day-abreviated(week-day) to edt-week-day
           move month-abreviated(holiday-month) to edt-month
           move holiday-day to edt-day
           .


  

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