mirror of
https://github.com/SickGear/SickGear.git
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207 lines
4.3 KiB
Python
207 lines
4.3 KiB
Python
# NOTE: t must be INT!!!
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import time
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import datetime
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import warnings
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try:
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from tzlocal import get_localzone
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LOCAL_ZONE = get_localzone()
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except: # except all problems...
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warnings.warn(
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'Please install or fix tzlocal library (pip install tzlocal) in order to make Date object work better. Otherwise I will assume DST is in effect all the time'
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)
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class LOCAL_ZONE:
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@staticmethod
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def dst(*args):
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return 1
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from js2py.base import MakeError
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CUM = (0, 31, 59, 90, 120, 151, 181, 212, 243, 273, 304, 334, 365)
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msPerDay = 86400000
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msPerYear = int(86400000 * 365.242)
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msPerSecond = 1000
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msPerMinute = 60000
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msPerHour = 3600000
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HoursPerDay = 24
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MinutesPerHour = 60
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SecondsPerMinute = 60
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NaN = float('nan')
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LocalTZA = -time.timezone * msPerSecond
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def DaylightSavingTA(t):
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if t is NaN:
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return t
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try:
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return int(
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LOCAL_ZONE.dst(datetime.datetime(1970, 1, 1) + datetime.timedelta(
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seconds=t // 1000)).seconds) * 1000
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except:
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warnings.warn(
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'Invalid datetime date, assumed DST time, may be inaccurate...',
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Warning)
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return 1
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#raise MakeError('TypeError', 'date not supported by python.datetime. I will solve it in future versions')
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def GetTimeZoneName(t):
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return time.tzname[DaylightSavingTA(t) > 0]
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def LocalToUTC(t):
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return t - LocalTZA - DaylightSavingTA(t - LocalTZA)
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def UTCToLocal(t):
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return t + LocalTZA + DaylightSavingTA(t)
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def Day(t):
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return t // 86400000
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def TimeWithinDay(t):
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return t % 86400000
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def DaysInYear(y):
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if y % 4:
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return 365
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elif y % 100:
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return 366
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elif y % 400:
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return 365
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else:
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return 366
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def DayFromYear(y):
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return 365 * (y - 1970) + (y - 1969) // 4 - (y - 1901) // 100 + (
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y - 1601) // 400
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def TimeFromYear(y):
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return 86400000 * DayFromYear(y)
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def YearFromTime(t):
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guess = 1970 - t // 31556908800 # msPerYear
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gt = TimeFromYear(guess)
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if gt <= t:
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while gt <= t:
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guess += 1
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gt = TimeFromYear(guess)
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return guess - 1
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else:
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while gt > t:
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guess -= 1
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gt = TimeFromYear(guess)
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return guess
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def DayWithinYear(t):
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return Day(t) - DayFromYear(YearFromTime(t))
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def InLeapYear(t):
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y = YearFromTime(t)
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if y % 4:
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return 0
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elif y % 100:
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return 1
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elif y % 400:
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return 0
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else:
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return 1
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def MonthFromTime(t):
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day = DayWithinYear(t)
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leap = InLeapYear(t)
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if day < 31:
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return 0
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day -= leap
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if day < 59:
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return 1
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elif day < 90:
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return 2
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elif day < 120:
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return 3
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elif day < 151:
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return 4
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elif day < 181:
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return 5
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elif day < 212:
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return 6
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elif day < 243:
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return 7
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elif day < 273:
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return 8
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elif day < 304:
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return 9
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elif day < 334:
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return 10
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else:
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return 11
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def DateFromTime(t):
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mon = MonthFromTime(t)
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day = DayWithinYear(t)
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return day - CUM[mon] - (1 if InLeapYear(t) and mon >= 2 else 0) + 1
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def WeekDay(t):
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# 0 == sunday
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return (Day(t) + 4) % 7
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def msFromTime(t):
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return t % 1000
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def SecFromTime(t):
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return (t // 1000) % 60
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def MinFromTime(t):
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return (t // 60000) % 60
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def HourFromTime(t):
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return (t // 3600000) % 24
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def MakeTime(hour, Min, sec, ms):
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# takes PyJs objects and returns t
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if not (hour.is_finite() and Min.is_finite() and sec.is_finite()
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and ms.is_finite()):
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return NaN
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h, m, s, milli = hour.to_int(), Min.to_int(), sec.to_int(), ms.to_int()
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return h * 3600000 + m * 60000 + s * 1000 + milli
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def MakeDay(year, month, date):
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# takes PyJs objects and returns t
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if not (year.is_finite() and month.is_finite() and date.is_finite()):
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return NaN
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y, m, dt = year.to_int(), month.to_int(), date.to_int()
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y += m // 12
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mn = m % 12
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d = DayFromYear(y) + CUM[mn] + dt - 1 + (1 if DaysInYear(y) == 366
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and mn >= 2 else 0)
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return d # ms per day
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def MakeDate(day, time):
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return 86400000 * day + time
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def TimeClip(t):
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if t != t or abs(t) == float('inf'):
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return NaN
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if abs(t) > 8.64 * 10**15:
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return NaN
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return int(t)
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