Closes gh-31 Fix decimal to degree, minute, second conversion by making seconds more precice and supporting negative values
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@ -12,13 +12,11 @@ from elodie import constants
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class Fraction(fractions.Fraction):
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class Fraction(fractions.Fraction):
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"""Only create Fractions from floats.
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"""Only create Fractions from floats.
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>>> Fraction(0.3)
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>>> Fraction(0.3)
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Fraction(3, 10)
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Fraction(3, 10)
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>>> Fraction(1.1)
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>>> Fraction(1.1)
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Fraction(11, 10)
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Fraction(11, 10)
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"""
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"""
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def __new__(cls, value, ignore=None):
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def __new__(cls, value, ignore=None):
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"""Should be compatible with Python 2.6, though untested."""
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"""Should be compatible with Python 2.6, though untested."""
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return fractions.Fraction.from_float(value).limit_denominator(99999)
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return fractions.Fraction.from_float(value).limit_denominator(99999)
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@ -47,28 +45,20 @@ def coordinates_by_name(name):
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return None
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return None
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def decimal_to_dms(decimal):
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def decimal_to_dms(decimal):
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"""Convert decimal degrees into degrees, minutes, seconds.
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# if decimal is negative we need to make the degrees and minutes negative also
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sign = 1
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if(decimal < 0):
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sign = -1
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>>> decimal_to_dms(50.445891)
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[Fraction(50, 1), Fraction(26, 1), Fraction(113019, 2500)]
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>>> decimal_to_dms(-125.976893)
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[Fraction(125, 1), Fraction(58, 1), Fraction(92037, 2500)]
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"""
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# @TODO figure out a better and more proper way to do seconds
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degrees = int(decimal)
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degrees = int(decimal)
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subminutes = abs((decimal - int(decimal)) * 60)
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subminutes = abs((decimal - int(decimal)) * 60)
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minutes = int(subminutes)
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minutes = int(subminutes) * sign
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subseconds = abs((subminutes - int(subminutes)) * 60)
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subseconds = abs((subminutes - int(subminutes)) * 60) * sign
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return (pyexiv2.Rational(degrees, 1), pyexiv2.Rational(minutes, 1), pyexiv2.Rational(subseconds, 1))
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subseconds_fraction = Fraction(subseconds)
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return (pyexiv2.Rational(degrees, 1), pyexiv2.Rational(minutes, 1), pyexiv2.Rational(subseconds_fraction.numerator, subseconds_fraction.denominator))
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def dms_to_decimal(degrees, minutes, seconds, sign=' '):
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def dms_to_decimal(degrees, minutes, seconds, sign=' '):
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"""Convert degrees, minutes, seconds into decimal degrees.
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>>> dms_to_decimal(10, 10, 10)
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10.169444444444444
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>>> dms_to_decimal(8, 9, 10, 'S')
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-8.152777777777779
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"""
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return (-1 if sign[0] in 'SWsw' else 1) * (
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return (-1 if sign[0] in 'SWsw' else 1) * (
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float(degrees) +
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float(degrees) +
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float(minutes) / 60 +
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float(minutes) / 60 +
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@ -1,8 +1,8 @@
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# Project imports
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# Project imports
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import os
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import os
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import sys
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import random
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import re
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import re
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import sys
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sys.path.insert(0, os.path.abspath(os.path.dirname(os.path.dirname(os.path.dirname(os.path.realpath(__file__))))))
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sys.path.insert(0, os.path.abspath(os.path.dirname(os.path.dirname(os.path.dirname(os.path.realpath(__file__))))))
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@ -12,9 +12,16 @@ from elodie import geolocation
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os.environ['TZ'] = 'GMT'
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os.environ['TZ'] = 'GMT'
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def test_decimal_to_dms():
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def test_decimal_to_dms():
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target_decimal_value = 37.383336725
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dms = geolocation.decimal_to_dms(target_decimal_value)
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for x in range(0, 1000):
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check_value = dms[0].to_float() + dms[1].to_float() / 60 + dms[2].to_float() / 3600
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target_decimal_value = random.uniform(0.0, 180.0)
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if(x % 2 == 1):
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target_decimal_value = target_decimal_value * -1
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dms = geolocation.decimal_to_dms(target_decimal_value)
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check_value = dms[0].to_float() + dms[1].to_float() / 60 + dms[2].to_float() / 3600
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assert target_decimal_value == check_value, '%s does not match %s' % (check_value, target_decimal_value)
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target_decimal_value = round(target_decimal_value, 8)
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check_value = round(check_value, 8)
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assert target_decimal_value == check_value, '%s does not match %s' % (check_value, target_decimal_value)
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