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package DateTime::PP; |
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use strict; |
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use warnings; |
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our $VERSION = '1.62'; |
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## no critic (Variables::ProhibitPackageVars) |
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$DateTime::IsPurePerl = 1; |
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## use critic |
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my @MonthLengths = ( 31, 28, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31 ); |
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my @LeapYearMonthLengths = @MonthLengths; |
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$LeapYearMonthLengths[1]++; |
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my @EndOfLastMonthDayOfYear; |
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{ |
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my $x = 0; |
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foreach my $length (@MonthLengths) { |
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push @EndOfLastMonthDayOfYear, $x; |
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$x += $length; |
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} |
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} |
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my @EndOfLastMonthDayOfLeapYear = @EndOfLastMonthDayOfYear; |
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$EndOfLastMonthDayOfLeapYear[$_]++ for 2 .. 11; |
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## no critic (Subroutines::ProhibitUnusedPrivateSubroutines) |
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sub _time_as_seconds { |
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shift; |
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my ( $hour, $min, $sec ) = @_; |
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50
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$hour ||= 0; |
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50
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$min ||= 0; |
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1
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10
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$sec ||= 0; |
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my $secs = $hour * 3600 + $min * 60 + $sec; |
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return $secs; |
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} |
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42
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sub _rd2ymd { |
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my $class = shift; |
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45
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1
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1
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6
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use integer; |
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1
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5
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46
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my $d = shift; |
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1
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my $rd = $d; |
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1
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3
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my $yadj = 0; |
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1
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7
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my ( $c, $y, $m ); |
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52
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# add 306 days to make relative to Mar 1, 0 |
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1
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50
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if ( ( $d += 306 ) <= 0 ) { |
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55
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# avoid ambiguity in C division of negatives |
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0
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0
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$yadj = -( -$d / 146097 + 1 ); |
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0
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0
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$d -= $yadj * 146097; |
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} |
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60
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1
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3
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$c = ( $d * 4 - 1 ) |
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/ 146097; # calc # of centuries $d is after 29 Feb of yr 0 |
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1
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2
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$d -= $c * 146097 / 4; # (4 centuries = 146097 days) |
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1
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3
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$y = ( $d * 4 - 1 ) / 1461; # calc number of years into the century, |
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$d -= $y * 1461 / 4; # again March-based (4 yrs =~ 146[01] days) |
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$m = ( $d * 12 + 1093 ) |
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/ 367; # get the month (3..14 represent March through |
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$d -= ( $m * 367 - 1094 ) / 12; # February of following year) |
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$y += $c * 100 + $yadj * 400; # get the real year, which is off by |
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# one if month is January or February |
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71
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1
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3
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if ( $m > 12 ) { |
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++$y; |
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$m -= 12; |
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} |
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76
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1
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50
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5
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if ( $_[0] ) { |
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2
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my $dow; |
78
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79
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1
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50
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4
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if ( $rd < -6 ) { |
80
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0
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0
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$dow = ( $rd + 6 ) % 7; |
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0
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0
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0
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$dow += $dow ? 8 : 1; |
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} |
83
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else { |
84
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$dow = ( ( $rd + 6 ) % 7 ) + 1; |
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} |
86
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87
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1
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5
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my $doy = $class->_end_of_last_month_day_of_year( $y, $m ); |
88
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89
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1
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1
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$doy += $d; |
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91
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1
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3
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my $quarter; |
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{ |
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1
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1
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233
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no integer; |
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1
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15
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1
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$quarter = int( ( 1 / 3.1 ) * $m ) + 1; |
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} |
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97
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my $qm = ( 3 * $quarter ) - 2; |
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99
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1
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12
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my $doq |
100
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= ( $doy - $class->_end_of_last_month_day_of_year( $y, $qm ) ); |
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102
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1
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11
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return ( $y, $m, $d, $dow, $doy, $quarter, $doq ); |
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} |
104
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105
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0
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0
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return ( $y, $m, $d ); |
106
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} |
107
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108
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sub _ymd2rd { |
109
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shift; # ignore class |
110
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111
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1
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1
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142
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use integer; |
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1
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2
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1
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7
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112
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28
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45
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my ( $y, $m, $d ) = @_; |
113
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28
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31
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my $adj; |
114
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115
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# make month in range 3..14 (treat Jan & Feb as months 13..14 of |
116
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# prev year) |
117
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28
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100
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50
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if ( $m <= 2 ) { |
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50
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118
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17
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29
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$y -= ( $adj = ( 14 - $m ) / 12 ); |
119
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17
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20
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$m += 12 * $adj; |
120
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} |
121
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elsif ( $m > 14 ) { |
122
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0
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0
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$y += ( $adj = ( $m - 3 ) / 12 ); |
123
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0
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0
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$m -= 12 * $adj; |
124
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} |
125
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126
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# make year positive (oh, for a use integer 'sane_div'!) |
127
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28
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50
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51
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if ( $y < 0 ) { |
128
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0
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0
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$d -= 146097 * ( $adj = ( 399 - $y ) / 400 ); |
129
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0
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0
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$y += 400 * $adj; |
130
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} |
131
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132
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# add: day of month, days of previous 0-11 month period that began |
133
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# w/March, days of previous 0-399 year period that began w/March |
134
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# of a 400-multiple year), days of any 400-year periods before |
135
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# that, and finally subtract 306 days to adjust from Mar 1, year |
136
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# 0-relative to Jan 1, year 1-relative (whew) |
137
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138
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$d |
139
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76
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+= ( $m * 367 - 1094 ) / 12 |
140
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+ $y % 100 * 1461 / 4 |
141
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+ ( $y / 100 * 36524 + $y / 400 ) |
142
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- 306; |
143
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} |
144
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145
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sub _seconds_as_components { |
146
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1
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1
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2
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shift; |
147
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1
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2
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my $secs = shift; |
148
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1
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1
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my $utc_secs = shift; |
149
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1
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50
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13
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my $modifier = shift || 0; |
150
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151
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1
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1
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212
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use integer; |
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1
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1
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1
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5
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152
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153
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1
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3
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$secs -= $modifier; |
154
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155
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1
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2
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my $hour = $secs / 3600; |
156
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1
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2
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$secs -= $hour * 3600; |
157
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158
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1
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1
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my $minute = $secs / 60; |
159
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160
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1
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2
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my $second = $secs - ( $minute * 60 ); |
161
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162
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1
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50
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33
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5
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if ( $utc_secs && $utc_secs >= 86400 ) { |
163
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164
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# there is no such thing as +3 or more leap seconds! |
165
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0
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0
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0
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die "Invalid UTC RD seconds value: $utc_secs" |
166
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if $utc_secs > 86401; |
167
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168
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0
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0
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$second += $utc_secs - 86400 + 60; |
169
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170
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0
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0
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$minute = 59; |
171
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172
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0
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0
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$hour--; |
173
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0
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0
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0
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$hour = 23 if $hour < 0; |
174
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} |
175
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176
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1
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4
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return ( $hour, $minute, $second ); |
177
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} |
178
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179
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sub _end_of_last_month_day_of_year { |
180
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2
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2
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5
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my $class = shift; |
181
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182
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2
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4
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my ( $y, $m ) = @_; |
183
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2
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4
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$m--; |
184
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return ( |
185
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2
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50
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12
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$class->_is_leap_year($y) |
186
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? $EndOfLastMonthDayOfLeapYear[$m] |
187
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: $EndOfLastMonthDayOfYear[$m] |
188
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); |
189
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} |
190
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191
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sub _is_leap_year { |
192
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2
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2
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4
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shift; |
193
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2
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3
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my $year = shift; |
194
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195
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# According to Bjorn Tackmann, this line prevents an infinite loop |
196
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# when running the tests under Qemu. I cannot reproduce this on |
197
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# Ubuntu or with Strawberry Perl on Win2K. |
198
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2
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50
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33
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23
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return 0 |
199
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if $year == DateTime::INFINITY() || $year == DateTime::NEG_INFINITY(); |
200
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2
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50
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12
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return 0 if $year % 4; |
201
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0
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0
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return 1 if $year % 100; |
202
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0
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0
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return 0 if $year % 400; |
203
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204
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0
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return 1; |
205
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} |
206
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207
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0
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0
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sub _day_length { DateTime::LeapSecond::day_length( $_[1] ) } |
208
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209
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0
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0
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sub _accumulated_leap_seconds { DateTime::LeapSecond::leap_seconds( $_[1] ) } |
210
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|
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211
|
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|
|
my @subs = qw( |
212
|
|
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|
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|
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_time_as_seconds |
213
|
|
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|
|
|
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_rd2ymd |
214
|
|
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|
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|
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_ymd2rd |
215
|
|
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|
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_seconds_as_components |
216
|
|
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|
|
|
|
_end_of_last_month_day_of_year |
217
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|
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|
_is_leap_year |
218
|
|
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|
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_day_length |
219
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|
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|
|
_accumulated_leap_seconds |
220
|
|
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|
); |
221
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222
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|
for my $sub (@subs) { |
223
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|
## no critic (TestingAndDebugging::ProhibitNoStrict) |
224
|
1
|
|
|
1
|
|
432
|
no strict 'refs'; |
|
1
|
|
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|
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2
|
|
|
1
|
|
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|
|
96
|
|
225
|
|
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|
|
*{ 'DateTime::' . $sub } = __PACKAGE__->can($sub); |
226
|
|
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|
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|
|
} |
227
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228
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|
# This is down here so that _ymd2rd is available when it loads, |
229
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|
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|
|
# because it will load DateTime::LeapSecond, which needs |
230
|
|
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|
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|
|
# DateTime->_ymd2rd to be available when it is loading |
231
|
|
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|
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|
|
require DateTime::PPExtra; |
232
|
|
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233
|
|
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|
1; |