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#!/usr/bin/env python3
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from __future__ import print_function
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import string
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import datetime
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class Time:
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def __init__(self, secs, mins=0, hours=0, days=0):
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self.secs = secs
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self.mins = secs // 60 + mins
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self.secs %= 60
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self.hours = self.mins // 60 + hours
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self.mins %= 60
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self.days = self.hours // 24 + days
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self.hours %= 24
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def epoch(self):
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return self.secs + (self.mins + (self.hours + self.days * 24) * 60) * 60
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def __str__(self):
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s = "%02i:%02i" % (self.mins, self.secs)
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if self.hours > 0:
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s = "%02i:%s" % (self.hours, s)
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if self.days > 0:
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s = "%id %s" % (self.days, s)
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return s
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def __isub__(self, n):
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if isinstance(n, Time):
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self.secs -= n.secs
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self.mins -= n.mins
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self.hours -= n.hours
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self.days -= n.days
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else:
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self.secs -= n
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while self.secs < 0:
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self.secs += 60
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self.mins -= 1
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while self.mins < 0:
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self.mins += 60
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self.hours -= 1
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while self.hours < 0:
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self.hours += 24
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self.days -= 1
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def dec(self):
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if self.secs > 0:
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self.secs -= 1
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else:
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self.secs += 59
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if self.mins > 0:
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self.mins -= 1
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else:
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self.mins += 59
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if self.hours > 0:
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self.hours -= 1
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else:
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self.hours += 23
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self.days -= 1
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def positive(self):
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return self.secs > 0 or self.mins > 0 or self.hours > 0 or self.days > 0
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@staticmethod
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def parse(s):
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secs = 0
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this = ""
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for c in s:
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if c in string.digits:
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this += c
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elif c in string.whitespace:
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continue
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else:
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it = int(this)
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if c == "d":
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it *= 24
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if c in "dh":
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it *= 60
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if c in "dhm":
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it *= 60
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if c in "dhms":
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secs += it
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else:
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raise ValueError("Unknown time unit: %s, Valid: _d_ays, _h_ours, _m_inutes, _s_econds. s at the end can be omitted." % c)
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this = ""
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if this:
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secs += int(this)
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return secs
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@classmethod
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def until(cls, time):
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error = ValueError("--until format: <hour>:<minute>[:<second>][+<days>]")
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parts = time.rsplit("+", 1)
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if len(parts) > 2:
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raise error
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elif len(parts) < 2:
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time, dayoffset = parts[0], 0
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else:
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time, dayoffset = parts[0], int(parts[1])
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parts = time.split(":")
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if len(parts) < 2 or len(parts) > 3:
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raise error
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else:
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date = datetime.date.today() + datetime.timedelta(days=dayoffset)
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time = datetime.time(*map(int, parts))
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comp = datetime.datetime.combine(date, time)
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diff = comp - datetime.datetime.now()
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return diff.total_seconds()
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import argparse
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import os
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import time
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import shlex
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def main(argv):
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parser = argparse.ArgumentParser(prog=argv[0], usage="Sleep with visual feedback, Time arguments will get summed")
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parser.add_argument("time", help="Time to sleep in seconds, or with units (d,h,m,s)", nargs="?", default=0)
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parser.add_argument("--mins", "--minutes", help="Time to sleep in minutes", default=0, type=int)
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parser.add_argument("--hours", help="Time to sleep in hours", default=0, type=int)
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parser.add_argument("--days", help="Time to sleep in days", default=0, type=int)
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parser.add_argument("--until", help="Sleep until: '<hour>:<minute>[:<second>][+<dayoffset>]'.")
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parser.add_argument("--exec", help="Execute command", dest="exec_")
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args = parser.parse_args(argv[1:])
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if (args.time == args.mins == args.hours == args.days == 0 and args.until is None):
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raise SystemExit("You need to specify at least one time argument! (Try --help)")
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if args.until is not None:
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secs = Time.until(args.until)
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else:
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secs = 0
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if args.time != 0:
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secs += Time.parse(args.time)
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visualsleep(Time(secs, args.mins, args.hours, args.days))
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if args.exec_:
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argv = shlex.split(args.exec_)
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print("Executing: %s" % args.exec_)
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os.execvp(argv[0], argv)
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def visualsleep(t):
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copyoft = Time(t.epoch())
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while t.positive():
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print("Sleep %10s" % t, end="\r")
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time.sleep(1)
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t.dec()
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print("Slept %10s" % copyoft)
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if __name__ == "__main__":
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import sys
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main(sys.argv)
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