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https://github.com/fschmnn/duodecimal.git
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2019.03.09 - more magicmethods
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parent
e56c275376
commit
4957c34e45
148
duodecimal.py
148
duodecimal.py
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@ -13,29 +13,42 @@ class BaseConverter:
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http://www.dozenal.org/drupal/sites_bck/default/files/DSA-ConversionRules_0.pdf
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'''
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bases = {
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2 : '01',
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8 : '01234567',
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10 : '0123456789',
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12 : '0123456789XE',
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16 : '0123456789ABCDEF'
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}
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def __init__(self,number,digits):
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''' determine type of input and convert to decimal/duodecimal '''
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BaseConverter.digits = digits
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BaseConverter.base = len(digits)
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BaseConverter.to_digits = {k: v for k,v in enumerate(digits)}
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BaseConverter.from_digits = {v: k for k,v in enumerate(digits)}
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self.digits = digits
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self.base = len(digits)
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if type(number) == int or type(number) == float:
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self.value = number
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self.string = BaseConverter.from_dec(number,BaseConverter.base)
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self.string = BaseConverter.from_dec(number,digits)
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elif type(number) == str:
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self.value = BaseConverter.to_dec(number,BaseConverter.base)
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self.value = BaseConverter.to_dec(number,digits)
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self.string = number
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elif isinstance(number,BaseConverter):
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self.value = number.value
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self.string = BaseConverter.from_dec(number,digits)
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else:
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raise TypeError('input type must be str or float/int')
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@staticmethod
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def from_dec(number,base):
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def from_dec(number,digits=None,base=None):
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''' convert decimal float/int to duodecimal string '''
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if digits:
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base = len(digits)
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to_digits = {k: v for k,v in enumerate(digits)}
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elif base:
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to_digits = {k: v for k,v in enumerate(BaseConverter.bases[base])}
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# handle negative numbers
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if number <0:
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number = abs(number)
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@ -49,7 +62,7 @@ class BaseConverter:
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while quotient != 0:
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quotient, remainder = divmod(quotient,base)
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out.insert(0,remainder)
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integer = ''.join([BaseConverter.to_digits[dig] for dig in out])
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integer = ''.join([to_digits[dig] for dig in out])
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if fractional:
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out = []
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@ -59,16 +72,22 @@ class BaseConverter:
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out.append(quotient)
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if remainder > 0.5:
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out.append(1)
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decimal = '.' + ''.join([BaseConverter.to_digits[dig] for dig in out])
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decimal = '.' + ''.join([to_digits[dig] for dig in out])
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else:
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decimal = ''
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return sign + integer + decimal.rstrip('0')
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@staticmethod
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def to_dec(string,base):
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def to_dec(string,digits=None,base=None):
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''' convert string to decimal float/int '''
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if digits:
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base = len(digits)
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from_digits = {v: k for k,v in enumerate(digits)}
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elif base:
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from_digits = {v: k for k,v in enumerate(BaseConverter.bases[base])}
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# handle negative numbers
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if string.startswith('-'):
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string = string[1:]
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@ -76,8 +95,8 @@ class BaseConverter:
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else:
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sign = 1
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if set(string) > set(BaseConverter.digits):
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invalid = set(string) - set(BaseConverter.digits)
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if set(string) > set(digits):
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invalid = set(string) - set(digits)
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raise ValueError('invalid character'.format(invalid))
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if '.' in string:
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@ -87,85 +106,122 @@ class BaseConverter:
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out = 0
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for power, digit in enumerate(integer[::-1]):
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out += BaseConverter.form_digits[digit] * base**power
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out += from_digits[digit] * base**power
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for power, digit in enumerate(str(fractional),1):
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out += BaseConverter.from_digits[digit] * base**(-power)
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out += from_digits[digit] * base**(-power)
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return out
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def __add__(self,other):
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if not isinstance(other, BaseConverter):
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other = BaseConverter(other,BaseConverter.digits)
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return BaseConverter(self.value + other.value,BaseConverter.digits)
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other = BaseConverter(other,self.digits)
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return BaseConverter(self.value + other.value,digits=self.digits)
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def __iadd__(self,other):
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if not isinstance(other, BaseConverter):
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other = BaseConverter(other,BaseConverter.digits)
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other = BaseConverter(other,self.digits)
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self.value = self.value + other.value
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self.string = BaseConverter.from_dec(self.value,BaseConverter.base)
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self.string = BaseConverter.from_dec(self.value,digits=self.digits)
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return self
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def __radd__(self,other):
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return BaseConverter(other,BaseConverter.digits) + self
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return BaseConverter(other,self.digits) + self
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def __sub__(self,other):
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if not isinstance(other, BaseConverter):
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other = BaseConverter(other,BaseConverter.digits)
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return BaseConverter(self.value - other.value,BaseConverter.digits)
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other = BaseConverter(other,self.digits)
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return BaseConverter(self.value - other.value,digits=self.digits)
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def __isub__(self,other):
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if not isinstance(other, BaseConverter):
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other = BaseConverter(other,BaseConverter.digits)
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other = BaseConverter(other,self.digits)
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self.value = self.value - other.value
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self.string = BaseConverter.from_dec(self.value,BaseConverter.base)
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self.string = BaseConverter.from_dec(self.value,digits=self.digits)
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return self
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def __rsub__(self,other):
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return BaseConverter(other,BaseConverter.digits) - self
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return BaseConverter(other,self.digits) - self
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def __mul__(self,other):
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if not isinstance(other, BaseConverter):
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other = BaseConverter(other,BaseConverter.digits)
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return BaseConverter(self.value * other.value,BaseConverter.digits)
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other = BaseConverter(other,self.digits)
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return BaseConverter(self.value * other.value,digits=self.digits)
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def __imul__(self,other):
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if not isinstance(other, BaseConverter):
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other = BaseConverter(other,BaseConverter.digits)
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other = BaseConverter(other,self.digits)
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self.value = self.value * other.value
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self.string = BaseConverter.from_dec(self.value,BaseConverter.base)
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self.string = BaseConverter.from_dec(self.value,digits=self.digits)
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return self
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def __rmul__(self,other):
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return BaseConverter(other,BaseConverter.digits) * self
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return BaseConverter(other,self.digits) * self
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def __truediv__(self,other):
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if not isinstance(other, BaseConverter):
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other = BaseConverter(other,BaseConverter.digits)
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return BaseConverter(self.value / other.value,BaseConverter.digits)
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other = BaseConverter(other,self.digits)
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return BaseConverter(self.value / other.value,self.digits)
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def __itruediv__(self,other):
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if not isinstance(other, BaseConverter):
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other = BaseConverter(other,BaseConverter.digits)
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other = BaseConverter(other,self.digits)
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self.value = self.value / other.value
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self.string = BaseConverter.from_dec(self.value,BaseConverter.base)
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self.string = BaseConverter.from_dec(self.value,digits=self.digits)
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return self
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def __rtruediv__(self,other):
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return BaseConverter(other,BaseConverter.digits) / self
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return BaseConverter(other,self.digits) / self
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def __pow__(self,other):
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if not isinstance(other, BaseConverter):
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other = BaseConverter(other,self.digits)
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return BaseConverter(self.value ** other.value,self.digits)
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def __ipow__(self,other):
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if not isinstance(other, BaseConverter):
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other = BaseConverter(other,self.digits)
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self.value = self.value ** other.value
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self.string = BaseConverter.from_dec(self.value,digits=self.digits)
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return self
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def __rpow__(self,other):
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return BaseConverter(other,self.digits) ** self
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def __repr__(self):
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if '.' in self.string:
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return self.string[:7].rstrip('0') + f'(base{BaseConverter.base})'
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return self.string[:7].rstrip('0') + f'(base{self.base})'
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else:
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return self.string + f'(base{BaseConverter.base})'
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return self.string + f'(base{self.base})'
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def __lt__(self, other):
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if not isinstance(other, BaseConverter):
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other = BaseConverter(other,self.digits)
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return self.value < other.value
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def __le__(self, other):
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if not isinstance(other, BaseConverter):
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other = BaseConverter(other,self.digits)
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return self.value <= other.value
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def __eq__(self, other):
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if not isinstance(other, BaseConverter):
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other = BaseConverter(other,self.digits)
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return self.value == other.value
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def __ne__(self, other):
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if not isinstance(other, BaseConverter):
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other = BaseConverter(other,self.digits)
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return self.value != other.value
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def __ge__(self, other):
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if not isinstance(other, BaseConverter):
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other = BaseConverter(other,self.digits)
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return self.value >= other.value
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def __gt__(self, other):
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if not isinstance(other, BaseConverter):
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other = BaseConverter(other,self.digits)
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return self.value > other.value
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def __str__(self):
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return self.string
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@ -179,7 +235,7 @@ class BaseConverter:
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def to_base(self,base):
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''' give out in different base '''
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return BaseConverter.from_dec(self.value,base)
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return BaseConverter.from_dec(self.value,base=base)
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class duo(BaseConverter):
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''' class to represent duodecimal numbers
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@ -11,7 +11,7 @@
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},
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{
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"cell_type": "code",
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"execution_count": 12,
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"execution_count": 1,
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"metadata": {},
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"outputs": [],
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"source": [
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@ -150,7 +150,7 @@
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},
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{
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"cell_type": "code",
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"execution_count": 10,
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"execution_count": 8,
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"metadata": {},
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"outputs": [
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{
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@ -188,36 +188,36 @@
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},
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{
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"cell_type": "code",
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"execution_count": 13,
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"execution_count": 8,
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"metadata": {},
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"outputs": [
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{
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"data": {
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"text/plain": [
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"16(base12)"
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"1000(base2)"
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]
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},
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"execution_count": 13,
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"execution_count": 8,
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"metadata": {},
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"output_type": "execute_result"
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}
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],
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"source": [
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"binary(8) + duo('X')"
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"binary(8)"
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]
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},
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{
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"cell_type": "code",
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"execution_count": 18,
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"execution_count": 9,
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"metadata": {},
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"outputs": [
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{
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"data": {
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"text/plain": [
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"X(base12)"
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"1010(base2)"
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]
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},
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"execution_count": 18,
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"execution_count": 9,
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"metadata": {},
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"output_type": "execute_result"
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}
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@ -228,22 +228,43 @@
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},
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{
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"cell_type": "code",
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"execution_count": 19,
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"execution_count": 26,
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"metadata": {},
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"outputs": [
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{
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"data": {
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"text/plain": [
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"'0123456789XE'"
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"False"
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]
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},
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"execution_count": 19,
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"execution_count": 26,
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"metadata": {},
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"output_type": "execute_result"
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}
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],
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"source": [
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"binary.digits"
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"binary('10000') < duo('X')"
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]
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},
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{
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"cell_type": "code",
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"execution_count": 31,
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"metadata": {},
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"outputs": [
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{
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"data": {
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"text/plain": [
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"'42'"
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]
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},
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"execution_count": 31,
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"metadata": {},
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"output_type": "execute_result"
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}
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],
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"source": [
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"x = duo('2X')\n",
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"x.to_base(8)"
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]
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}
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],
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