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346 lines
7.5 KiB
Ruby
346 lines
7.5 KiB
Ruby
# date2.rb: Written by Tadayoshi Funaba 1998, 1999
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# $Id: date2.rb,v 1.17 1999/09/15 05:34:07 tadf Exp $
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class Date
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include Comparable
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IDENT = 2
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MONTHNAMES = [ nil, 'January', 'February', 'March',
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'April', 'May', 'June', 'July', 'August',
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'September', 'October', 'November', 'December' ]
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DAYNAMES = [ 'Sunday', 'Monday', 'Tuesday',
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'Wednesday', 'Thursday', 'Friday', 'Saturday' ]
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ITALY = 2299161 # 1582-10-15
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ENGLAND = 2361222 # 1752-09-14
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JULIAN = false
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GREGORIAN = true
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class << self
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def os? (jd, sg)
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case sg
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when Numeric; jd < sg
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else; not sg
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end
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end
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def ns? (jd, sg) not os?(jd, sg) end
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def civil_to_jd(y, m, d, sg=GREGORIAN)
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if m <= 2
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y -= 1
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m += 12
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end
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a = (y / 100.0).floor
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b = 2 - a + (a / 4.0).floor
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jd = (365.25 * (y + 4716)).floor +
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(30.6001 * (m + 1)).floor +
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d + b - 1524
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if os?(jd, sg)
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jd -= b
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end
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jd
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end
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def jd_to_civil(jd, sg=GREGORIAN)
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if os?(jd, sg)
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a = jd
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else
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x = ((jd - 1867216.25) / 36524.25).floor
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a = jd + 1 + x - (x / 4.0).floor
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end
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b = a + 1524
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c = ((b - 122.1) / 365.25).floor
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d = (365.25 * c).floor
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e = ((b - d) / 30.6001).floor
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dom = b - d - (30.6001 * e).floor
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if e <= 13
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m = e - 1
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y = c - 4716
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else
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m = e - 13
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y = c - 4715
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end
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return y, m, dom
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end
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def ordinal_to_jd(y, d, sg=GREGORIAN)
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civil_to_jd(y, 1, d, sg)
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end
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def jd_to_ordinal(jd, sg=GREGORIAN)
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y = jd_to_civil(jd, sg)[0]
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doy = jd - civil_to_jd(y - 1, 12, 31, ns?(jd, sg))
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return y, doy
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end
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def jd_to_commercial(jd, sg=GREGORIAN)
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ns = ns?(jd, sg)
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a = jd_to_civil(jd - 3, ns)[0]
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y = if jd >= commercial_to_jd(a + 1, 1, 1, ns) then a + 1 else a end
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w = 1 + (jd - commercial_to_jd(y, 1, 1, ns)) / 7
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d = (jd + 1) % 7
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if d.zero? then d = 7 end
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return y, w, d
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end
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def commercial_to_jd(y, w, d, ns=GREGORIAN)
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jd = civil_to_jd(y, 1, 4, ns)
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(jd - (((jd - 1) + 1) % 7)) +
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7 * (w - 1) +
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(d - 1)
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end
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def clfloor(x, y=1)
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q = (x / y).to_i
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z = (q * y)
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q -= 1 if (y > 0 and x < z) or (y < 0 and x > z)
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r = x - q * y
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return q, r
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end
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def rjd_to_jd(rjd) clfloor(rjd + 0.5) end
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def jd_to_rjd(jd, fr) jd + fr - 0.5 end
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def mjd_to_jd(mjd) mjd + 2400000.5 end
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def jd_to_mjd(jd) jd - 2400000.5 end
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def tjd_to_jd(tjd) tjd + 2440000.5 end
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def jd_to_tjd(jd) jd - 2440000.5 end
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def julian_leap? (y) y % 4 == 0 end
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def gregorian_leap? (y) y % 4 == 0 and y % 100 != 0 or y % 400 == 0 end
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alias_method :leap?, :gregorian_leap?
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def new1(jd=0, sg=ITALY) new(jd, sg) end
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def exist3? (y, m, d, sg=ITALY)
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if m < 0
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m += 13
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end
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if d < 0
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ny, nm = Date.clfloor(y * 12 + m, 12)
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nm, = Date.clfloor(m + 1, 1)
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la = nil
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31.downto 1 do |z|
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break if la = exist3?(y, m, z, sg)
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end
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ns = ns?(la, sg)
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d = jd_to_civil(civil_to_jd(ny, nm, 1, ns) + d, ns)[-1]
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end
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jd = civil_to_jd(y, m, d, sg)
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return unless [y, m, d] == jd_to_civil(jd, sg)
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jd
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end
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alias_method :exist?, :exist3?
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def new3(y=-4712, m=1, d=1, sg=ITALY)
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unless jd = exist3?(y, m, d, sg)
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fail ArgumentError, 'invalid date'
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end
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new(jd, sg)
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end
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def exist2? (y, d, sg=ITALY)
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if d < 0
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ny = y + 1
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la = nil
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366.downto 1 do |z|
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break if la = exist2?(y, z, sg)
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end
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ns = ns?(la, sg)
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d = jd_to_ordinal(ordinal_to_jd(ny, 1, ns) + d, ns)[-1]
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end
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jd = ordinal_to_jd(y, d, sg)
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return unless [y, d] == jd_to_ordinal(jd, sg)
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jd
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end
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def new2(y=-4712, d=1, sg=ITALY)
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unless jd = exist2?(y, d, sg)
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fail ArgumentError, 'invalid date'
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end
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new(jd, sg)
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end
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def existw? (y, w, d, sg=ITALY)
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if d < 0
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d += 8
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end
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if w < 0
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w = jd_to_commercial(commercial_to_jd(y + 1, 1, 1) + w * 7)[1]
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end
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jd = commercial_to_jd(y, w, d)
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return unless ns?(jd, sg)
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return unless [y, w, d] == jd_to_commercial(jd)
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jd
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end
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def neww(y=1582, w=41, d=5, sg=ITALY)
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unless jd = existw?(y, w, d, sg)
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fail ArgumentError, 'invalid date'
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end
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new(jd, sg)
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end
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def today(sg=ITALY)
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new(civil_to_jd(*(Time.now.to_a[3..5].reverse << sg)), sg)
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end
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def once(*ids)
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for id in ids
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module_eval <<-"end;"
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alias_method :__#{id}__, #{id}
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def #{id.id2name}(*args, &block)
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def self.#{id.id2name}(*args, &block); @__#{id}__ end
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@__#{id}__ = __#{id}__(*args, &block)
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end
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end;
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end
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end
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private :once
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end
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def initialize(rjd=0, sg=ITALY) @rjd, @sg = rjd, sg end
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def rjd() @rjd end
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def rmjd() Date.jd_to_mjd(@rjd) end
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def rtjd() Date.jd_to_tjd(@rjd) end
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once :rmjd, :rtjd
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def jd() Date.rjd_to_jd(@rjd)[0] end
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def fr1() Date.rjd_to_jd(@rjd)[1] end
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def mjd() Date.jd_to_mjd(jd) end
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def tjd() Date.jd_to_tjd(jd) end
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once :jd, :fr1, :mjd, :tjd
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def civil() Date.jd_to_civil(jd, @sg) end
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def ordinal() Date.jd_to_ordinal(jd, @sg) end
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def commercial() Date.jd_to_commercial(jd, @sg) end
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once :civil, :ordinal, :commercial
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def year() civil[0] end
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def yday() ordinal[1] end
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def mon() civil[1] end
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alias_method :month, :mon
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once :year, :yday, :mon, :month
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def mday() civil[2] end
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alias_method :day, :mday
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once :mday, :day
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def cwyear() commercial[0] end
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def cweek() commercial[1] end
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def cwday() commercial[2] end
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once :cwyear, :cweek, :cwday
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def wday() (jd + 1) % 7 end
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once :wday
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def os? () Date.os?(jd, @sg) end
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def ns? () Date.ns?(jd, @sg) end
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once :os?, :ns?
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def leap?
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Date.jd_to_civil(Date.civil_to_jd(year, 3, 1, ns?) - 1,
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ns?)[-1] == 29
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end
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once :leap?
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def sg() @sg end
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def newsg(sg=Date::ITALY) Date.new(@rjd, sg) end
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def italy() newsg(Date::ITALY) end
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def england() newsg(Date::ENGLAND) end
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def julian() newsg(Date::JULIAN) end
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def gregorian() newsg(Date::GREGORIAN) end
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def + (n)
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case n
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when Numeric; return Date.new(@rjd + n, @sg)
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end
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fail TypeError, 'expected numeric'
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end
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def - (x)
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case x
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when Numeric; return Date.new(@rjd - x, @sg)
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when Date; return @rjd - x.rjd
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end
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fail TypeError, 'expected numeric or date'
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end
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def <=> (other)
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case other
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when Numeric; return @rjd <=> other
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when Date; return @rjd <=> other.rjd
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end
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fail TypeError, 'expected numeric or date'
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end
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def === (other)
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case other
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when Numeric; return jd == other
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when Date; return jd == other.jd
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end
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fail TypeError, 'expected numeric or date'
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end
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def >> (n)
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y, m = Date.clfloor(year * 12 + (mon - 1) + n, 12)
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m, = Date.clfloor(m + 1, 1)
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d = mday
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d -= 1 until jd2 = Date.exist3?(y, m, d, ns?)
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self + (jd2 - jd)
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end
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def << (n) self >> -n end
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def step(limit, step)
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rjd = @rjd
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if (step > 0)
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while rjd <= limit.rjd
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yield Date.new(rjd, @sg)
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rjd += step
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end
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else
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while rjd >= limit.rjd
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yield Date.new(rjd, @sg)
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rjd += step
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end
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end
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self
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end
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def upto(max, &block) step(max, +1, &block) end
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def downto(min, &block) step(min, -1, &block) end
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def succ() self + 1 end
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alias_method :next, :succ
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def eql? (other) Date === other and self == other end
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def hash() Date.clfloor(@rjd)[0] end
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def inspect() format('#<Date: %s,%s>', @rjd, @sg) end
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def to_s() format('%.4d-%02d-%02d', year, mon, mday) end
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def _dump(limit) Marshal.dump([@rjd, @sg], -1) end
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def Date._load(str) Date.new(*Marshal.load(str)) end
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end
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