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* lib/date.rb, lib/date/format.rb: introduced some constants
(for internal use) and aliases (minute and second). * sample/cal.rb: trivial adjustments. git-svn-id: svn+ssh://ci.ruby-lang.org/ruby/branches/ruby_1_8@14904 b2dd03c8-39d4-4d8f-98ff-823fe69b080e
This commit is contained in:
parent
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4 changed files with 91 additions and 57 deletions
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@ -1,3 +1,10 @@
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Sun Jan 6 09:39:02 2008 Tadayoshi Funaba <tadf@dotrb.org>
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* lib/date.rb, lib/date/format.rb: introduced some constants
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(for internal use) and aliases (minute and second).
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* sample/cal.rb: trivial adjustments.
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Fri Jan 4 23:08:48 2008 Nobuyoshi Nakada <nobu@ruby-lang.org>
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* time.c (time_arg): use converted object. [ruby-core:14759]
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81
lib/date.rb
81
lib/date.rb
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@ -1,12 +1,12 @@
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#
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# date.rb - date and time library
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#
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# Author: Tadayoshi Funaba 1998-2007
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# Author: Tadayoshi Funaba 1998-2008
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#
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# Documentation: William Webber <william@williamwebber.com>
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#
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#--
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# $Id: date.rb,v 2.34 2007-12-30 21:45:27+09 tadf Exp $
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# $Id: date.rb,v 2.35 2008-01-06 08:42:17+09 tadf Exp $
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#++
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#
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# == Overview
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@ -313,7 +313,20 @@ class Date
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# Gregorian calendar.
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GREGORIAN = -Infinity.new
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UNIXEPOCH = 2440588 # 1970-01-01 :nodoc:
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HALF_DAYS_IN_DAY = Rational(1, 2) # :nodoc:
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HOURS_IN_DAY = Rational(1, 24) # :nodoc:
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MINUTES_IN_DAY = Rational(1, 1440) # :nodoc:
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SECONDS_IN_DAY = Rational(1, 86400) # :nodoc:
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MILLISECONDS_IN_DAY = Rational(1, 86400*10**3) # :nodoc:
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NANOSECONDS_IN_DAY = Rational(1, 86400*10**9) # :nodoc:
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MILLISECONDS_IN_SECOND = Rational(1, 10**3) # :nodoc:
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NANOSECONDS_IN_SECOND = Rational(1, 10**9) # :nodoc:
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MJD_EPOCH_IN_AJD = Rational(4800001, 2) # 1858-11-17 # :nodoc:
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UNIX_EPOCH_IN_AJD = Rational(4881175, 2) # 1970-01-01 # :nodoc:
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MJD_EPOCH_IN_CJD = 2400001 # :nodoc:
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UNIX_EPOCH_IN_CJD = 2440588 # :nodoc:
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LD_EPOCH_IN_CJD = 2299160 # :nodoc:
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# Does a given Julian Day Number fall inside the old-style (Julian)
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# calendar?
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@ -476,7 +489,7 @@ class Date
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#
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# Returns the (civil) Julian Day Number as [day_number,
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# fraction] where +fraction+ is always 1/2.
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def self.ajd_to_jd(ajd, of=0) (ajd + of + 1.to_r/2).divmod(1) end
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def self.ajd_to_jd(ajd, of=0) (ajd + of + HALF_DAYS_IN_DAY).divmod(1) end
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# Convert a (civil) Julian Day Number to an Astronomical Julian
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# Day Number.
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@ -487,46 +500,54 @@ class Date
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#
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# Returns the Astronomical Julian Day Number as a single
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# numeric value.
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def self.jd_to_ajd(jd, fr, of=0) jd + fr - of - 1.to_r/2 end
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def self.jd_to_ajd(jd, fr, of=0) jd + fr - of - HALF_DAYS_IN_DAY end
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# Convert a fractional day +fr+ to [hours, minutes, seconds,
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# fraction_of_a_second]
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def self.day_fraction_to_time(fr)
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h, fr = fr.divmod(1.to_r/24)
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min, fr = fr.divmod(1.to_r/1440)
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s, fr = fr.divmod(1.to_r/86400)
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h, fr = fr.divmod(HOURS_IN_DAY)
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min, fr = fr.divmod(MINUTES_IN_DAY)
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s, fr = fr.divmod(SECONDS_IN_DAY)
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return h, min, s, fr
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end
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# Convert an +h+ hour, +min+ minutes, +s+ seconds period
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# to a fractional day.
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begin
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Rational(Rational(1, 2), 2) # a challenge
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def self.time_to_day_fraction(h, min, s)
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Rational(h, 24) + Rational(min, 1440) + Rational(s, 86400)
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end
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rescue
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def self.time_to_day_fraction(h, min, s)
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h.to_r/24 + min.to_r/1440 + s.to_r/86400
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end
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end
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# Convert an Astronomical Modified Julian Day Number to an
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# Astronomical Julian Day Number.
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def self.amjd_to_ajd(amjd) amjd + 4800001.to_r/2 end
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def self.amjd_to_ajd(amjd) amjd + MJD_EPOCH_IN_AJD end
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# Convert an Astronomical Julian Day Number to an
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# Astronomical Modified Julian Day Number.
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def self.ajd_to_amjd(ajd) ajd - 4800001.to_r/2 end
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def self.ajd_to_amjd(ajd) ajd - MJD_EPOCH_IN_AJD end
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# Convert a Modified Julian Day Number to a Julian
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# Day Number.
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def self.mjd_to_jd(mjd) mjd + 2400001 end
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def self.mjd_to_jd(mjd) mjd + MJD_EPOCH_IN_CJD end
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# Convert a Julian Day Number to a Modified Julian Day
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# Number.
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def self.jd_to_mjd(jd) jd - 2400001 end
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def self.jd_to_mjd(jd) jd - MJD_EPOCH_IN_CJD end
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# Convert a count of the number of days since the adoption
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# of the Gregorian Calendar (in Italy) to a Julian Day Number.
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def self.ld_to_jd(ld) ld + 2299160 end
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def self.ld_to_jd(ld) ld + LD_EPOCH_IN_CJD end
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# Convert a Julian Day Number to the number of days since
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# the adoption of the Gregorian Calendar (in Italy).
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def self.jd_to_ld(jd) jd - 2299160 end
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def self.jd_to_ld(jd) jd - LD_EPOCH_IN_CJD end
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# Convert a Julian Day Number to the day of the week.
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#
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@ -768,7 +789,7 @@ class Date
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h, fr = fr.divmod(3600)
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min, fr = fr.divmod(60)
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s, fr = fr.divmod(1)
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elem[:jd] = UNIXEPOCH + d
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elem[:jd] = UNIX_EPOCH_IN_CJD + d
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elem[:hour] = h
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elem[:min] = min
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elem[:sec] = s
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@ -1096,7 +1117,14 @@ class Date
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# I do NOT recommend you to use this method.
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def sec_fraction() time[3] end
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=begin
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alias_method :minute, :min
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alias_method :second, :sec
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alias_method :second_fraction, :sec_fraction
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=end
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private :hour, :min, :sec, :sec_fraction
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# :minute, :second, :second_fraction
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def zone() strftime('%:z') end
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@ -1181,7 +1209,7 @@ class Date
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def new_offset(of=0)
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if String === of
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of = (self.class.zone_to_diff(of) || 0).to_r/86400
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of = Rational(zone_to_diff(of) || 0, 86400)
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end
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self.class.new!(@ajd, of, @sg)
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end
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raise ArgumentError, 'invalid date'
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end
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if String === of
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of = (zone_to_diff(of) || 0).to_r/86400
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of = Rational(zone_to_diff(of) || 0, 86400)
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end
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new!(jd_to_ajd(jd, fr, of), of, sg)
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end
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@ -1462,7 +1490,7 @@ class DateTime < Date
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raise ArgumentError, 'invalid date'
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end
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if String === of
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of = (zone_to_diff(of) || 0).to_r/86400
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of = Rational(zone_to_diff(of) || 0, 86400)
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end
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new!(jd_to_ajd(jd, fr, of), of, sg)
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end
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@ -1487,7 +1515,7 @@ class DateTime < Date
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raise ArgumentError, 'invalid date'
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end
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if String === of
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of = (zone_to_diff(of) || 0).to_r/86400
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of = Rational(zone_to_diff(of) || 0, 86400)
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end
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new!(jd_to_ajd(jd, fr, of), of, sg)
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end
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@ -1515,7 +1543,7 @@ class DateTime < Date
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raise ArgumentError, 'invalid date'
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end
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if String === of
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of = (zone_to_diff(of) || 0).to_r/86400
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of = Rational(zone_to_diff(of) || 0, 86400)
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end
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new!(jd_to_ajd(jd, fr, of), of, sg)
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end
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@ -1526,7 +1554,7 @@ class DateTime < Date
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raise ArgumentError, 'invalid date'
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end
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if String === of
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of = (zone_to_diff(of) || 0).to_r/86400
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of = Rational(zone_to_diff(of) || 0, 86400)
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end
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new!(jd_to_ajd(jd, fr, of), of, sg)
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end
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@ -1540,10 +1568,8 @@ class DateTime < Date
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(fr = valid_time_frags?(elem))
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raise ArgumentError, 'invalid date'
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end
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sf = (elem[:sec_fraction] || 0)
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fr += sf/86400
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of = (elem[:offset] || 0)
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of = of.to_r/86400
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fr += (elem[:sec_fraction] || 0) / 86400
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of = Rational(elem[:offset] || 0, 86400)
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new!(jd_to_ajd(jd, fr, of), of, sg)
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end
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@ -1589,6 +1615,7 @@ class DateTime < Date
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end
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public :hour, :min, :sec, :sec_fraction, :zone, :offset, :new_offset
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# :minute, :second, :second_fraction
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end
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@ -1604,8 +1631,8 @@ class Time
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def to_datetime
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jd = DateTime.civil_to_jd(year, mon, mday, DateTime::ITALY)
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fr = DateTime.time_to_day_fraction(hour, min, [sec, 59].min) +
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usec.to_r/86400000000
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of = utc_offset.to_r/86400
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Rational(usec, 86400_000_000)
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of = Rational(utc_offset, 86400)
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DateTime.new!(DateTime.jd_to_ajd(jd, fr, of), of, DateTime::ITALY)
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end
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@ -1,5 +1,5 @@
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# format.rb: Written by Tadayoshi Funaba 1999-2007
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# $Id: format.rb,v 2.40 2007-09-09 08:28:03+09 tadf Exp $
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# format.rb: Written by Tadayoshi Funaba 1999-2008
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# $Id: format.rb,v 2.41 2008-01-06 08:42:17+09 tadf Exp $
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require 'rational'
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when 'j'; emit_n(yday, 3, f)
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when 'k'; emit_a(hour, 2, f)
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when 'L'
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emit_n((sec_fraction / (1.to_r/86400/(10**3))).round, 3, f)
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emit_n((sec_fraction / MILLISECONDS_IN_DAY).round, 3, f)
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when 'l'; emit_a((hour % 12).nonzero? || 12, 2, f)
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when 'M', 'OM'; emit_n(min, 2, f)
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when 'm', 'Om'; emit_n(mon, 2, f)
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when 'N'
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emit_n((sec_fraction / (1.to_r/86400/(10**9))).round, 9, f)
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emit_n((sec_fraction / NANOSECONDS_IN_DAY).round, 9, f)
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when 'n'; "\n"
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when 'P'; emit_ad(strftime('%p').downcase, 0, f)
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when 'p'; emit_au(if hour < 12 then 'AM' else 'PM' end, 0, f)
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when 'Q'
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d = ajd - self.class.jd_to_ajd(self.class::UNIXEPOCH, 0)
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s = (d * 86400*10**3).to_i
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s = ((ajd - UNIX_EPOCH_IN_AJD) / MILLISECONDS_IN_DAY).round
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emit_sn(s, 1, f)
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when 'R'; emit_a(strftime('%H:%M'), 0, f)
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when 'r'; emit_a(strftime('%I:%M:%S %p'), 0, f)
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when 'S', 'OS'; emit_n(sec, 2, f)
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when 's'
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d = ajd - self.class.jd_to_ajd(self.class::UNIXEPOCH, 0)
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s = (d * 86400).to_i
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s = ((ajd - UNIX_EPOCH_IN_AJD) / SECONDS_IN_DAY).round
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emit_sn(s, 1, f)
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when 'T'
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if m == '%T'
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t = $1.size
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sign = if offset < 0 then -1 else +1 end
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fr = offset.abs
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hh, fr = fr.divmod(1.to_r/24)
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mm, fr = fr.divmod(1.to_r/1440)
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ss, fr = fr.divmod(1.to_r/86400)
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hh, fr = fr.divmod(HOURS_IN_DAY)
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mm, fr = fr.divmod(MINUTES_IN_DAY)
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ss, fr = fr.divmod(SECONDS_IN_DAY)
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if t == 3
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if ss.nonzero? then t = 2
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elsif mm.nonzero? then t = 1
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end
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def beat(n=0)
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i, f = (new_offset(1.to_r/24).day_fraction * 1000).divmod(1)
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i, f = (new_offset(HOURS_IN_DAY).day_fraction * 1000).divmod(1)
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('@%03d' % i) +
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if n < 1
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''
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else
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'.%0*d' % [n, (f / (1.to_r/(10**n))).round]
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'.%0*d' % [n, (f / Rational(1, 10**n)).round]
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end
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end
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=end
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then /\A([-+]?\d{1,3})/
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else /\A([-+]?\d{1,})/
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end, '')
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# val = $1.to_i.to_r / (10**3)
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val = $1.to_i.to_r / (10**$1.size)
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# val = Rational($1.to_i, 10**3)
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val = Rational($1.to_i, 10**$1.size)
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e.sec_fraction = val
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when 'M', 'OM'
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return unless str.sub!(/\A(\d{1,2})/, '')
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then /\A([-+]?\d{1,9})/
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else /\A([-+]?\d{1,})/
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end, '')
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# val = $1.to_i.to_r / (10**9)
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val = $1.to_i.to_r / (10**$1.size)
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# val = Rational($1.to_i, 10**9)
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val = Rational($1.to_i, 10**$1.size)
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e.sec_fraction = val
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when 'n', 't'
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return unless _strptime_i(str, "\s", e)
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@ -495,7 +493,7 @@ class Date
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e._merid = if $1.downcase == 'a' then 0 else 12 end
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when 'Q'
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return unless str.sub!(/\A(-?\d{1,})/, '')
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val = $1.to_i.to_r / 10**3
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val = Rational($1.to_i, 10**3)
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e.seconds = val
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when 'R'
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return unless _strptime_i(str, '%H:%M', e)
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@ -751,7 +749,7 @@ class Date
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e.hour = $1.to_i
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e.min = $2.to_i if $2
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e.sec = $3.to_i if $3
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e.sec_fraction = $4.to_i.to_r / (10**$4.size) if $4
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e.sec_fraction = Rational($4.to_i, 10**$4.size) if $4
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if $5
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e.hour %= 12
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@ -766,9 +764,9 @@ class Date
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=begin
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def self._parse_beat(str, e) # :nodoc:
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if str.sub!(/@\s*(\d+)(?:[,.](\d*))?/, ' ')
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beat = $1.to_i.to_r
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beat += $2.to_i.to_r / (10**$2.size) if $2
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secs = beat.to_r / 1000
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beat = Rational($1.to_i)
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beat += Rational($2.to_i, 10**$2.size) if $2
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secs = Rational(beat, 1000)
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h, min, s, fr = self.day_fraction_to_time(secs)
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e.hour = h
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e.min = min
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@ -1031,7 +1029,7 @@ class Date
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end
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end
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if $4
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e.sec_fraction = $4.to_i.to_r / (10**$4.size)
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e.sec_fraction = Rational($4.to_i, 10**$4.size)
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end
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if $5
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e.zone = $5
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@ -1135,7 +1133,7 @@ class Date
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hour, min, sec, = zone.split(':')
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elsif zone.include?(',') || zone.include?('.')
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hour, fr, = zone.split(/[,.]/)
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min = fr.to_i.to_r / (10**fr.size) * 60
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min = Rational(fr.to_i, 10**fr.size) * 60
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else
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case zone.size
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when 3
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@ -1171,7 +1169,7 @@ class DateTime < Date
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if n < 1
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''
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else
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'.%0*d' % [n, (sec_fraction / (1.to_r/86400/(10**n))).round]
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'.%0*d' % [n, (sec_fraction / SECONDS_IN_DAY / (10**n)).round]
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end +
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'%:z')
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end
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@ -1,7 +1,7 @@
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#! /usr/bin/env ruby
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# cal.rb: Written by Tadayoshi Funaba 1998-2004,2006
|
||||
# $Id: cal.rb,v 2.10 2006-12-30 21:44:44+09 tadf Exp $
|
||||
# cal.rb: Written by Tadayoshi Funaba 1998-2004,2006,2008
|
||||
# $Id: cal.rb,v 2.11 2008-01-06 08:42:17+09 tadf Exp $
|
||||
|
||||
require 'date'
|
||||
|
||||
|
@ -53,7 +53,7 @@ class Cal
|
|||
end
|
||||
|
||||
def pict(y, m)
|
||||
d = (1..31).detect{|d| Date.valid_date?(y, m, d, @start)}
|
||||
d = (1..31).detect{|x| Date.valid_date?(y, m, x, @start)}
|
||||
fi = Date.new(y, m, d, @start)
|
||||
fi -= (fi.jd - @k + 1) % 7
|
||||
|
||||
|
@ -162,3 +162,5 @@ if __FILE__ == $0
|
|||
print cal.print(y, m)
|
||||
|
||||
end
|
||||
|
||||
# See Bird & Wadler's Introduction to functional programming 4.5.
|
||||
|
|
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