p-adic-numbers/padic.py

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from fractions import Fraction
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from sys import maxsize
from modp import ModP
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class PAdic:
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def __init__(self, p):
self.p = p
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self.val = '' # current known value
self.prec = 0 # current known precision, not containing trailing zeros
self.order = 0 # order/valuation of number
pass # initialize object as subclass perhaps
def get(self, prec, decimal=True):
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'Return value of number with given precision.'
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while self.prec < prec:
# update val based on value
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self.val = str(int(self._nextdigit())) + self.val
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self.prec += 1
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if self.order < 0:
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return (
self.val[:self.order] + ('.' if decimal else '') +
self.val[self.order:])[-prec-1:]
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return (self.val + self.order * '0')[-prec:]
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def _nextdigit(self):
'Calculate next digit of p-adic number.'
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raise NotImplementedError
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def getdigit(self, index):
'Return digit at given index.'
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return int(self.get(index + 1, False)[0])
# int(
# self.get(index+1+int(index < -self.order)
# )[-int(index < -self.order)])
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# return value with precision up to 32 bits
def __int__(self):
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return int(self.get(32), self.p)
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def __str__(self):
return self.get(32)
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# arithmetic operations
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def __neg__(self):
return PAdicNeg(self.p, self)
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def __add__(self, other):
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return PAdicAdd(self.p, self, other)
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def __radd__(self, other):
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return PAdicAdd(self.p, other, self)
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def __sub__(self, other):
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return PAdicAdd(self.p, self, PAdicNeg(self.p, other))
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def __rsub__(self, other):
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return PAdicAdd(self.p, other, PAdicNeg(self.p, self))
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def __mul__(self, other):
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return PAdicMul(self.p, self, other)
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def __rmul__(self, other):
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return PAdicMul(self.p, other, self)
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# p-adic norm
def __abs__(self):
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if self.order == maxsize:
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return 0
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numer = denom = 1
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if self.order > 0:
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numer = self.p ** self.order
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if self.order < 0:
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denom = self.p ** self.order
return Fraction(numer, denom)
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class PAdicConst(PAdic):
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def __init__(self, p, value):
PAdic.__init__(self, p)
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value = Fraction(value)
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# calculate valuation
if value == 0:
self.value = value
self.val = '0'
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self.order = maxsize
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return
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self.order = 0
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while not value.numerator % self.p:
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self.order += 1
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value /= self.p
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while not value.denominator % self.p:
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self.order -= 1
value *= self.p
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self.value = value
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self.zero = not value
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def get(self, prec, decimal=True):
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if self.zero:
return '0' * prec
return PAdic.get(self, prec, decimal)
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def _nextdigit(self):
'Calculate next digit of p-adic number.'
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rem = ModP(self.p, self.value.numerator) /\
ModP(self.p, self.value.denominator)
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self.value -= int(rem)
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self.value /= self.p
return rem
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class PAdicAdd(PAdic):
'Sum of two p-adic numbers.'
def __init__(self, p, arg1, arg2):
PAdic.__init__(self, p)
self.carry = 0
self.arg1 = arg1
self.arg2 = arg2
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# might be larger than this
self.order = self.prec = min(arg1.order, arg2.order)
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arg1.order -= self.order
arg2.order -= self.order
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# loop until first nonzero digit is found
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self.index = 0
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digit = self._nextdigit()
while digit == 0:
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self.index += 1
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self.order += 1
digit = self._nextdigit()
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self.val += str(int(digit))
self.prec = 1
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def _nextdigit(self):
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s = self.arg1.getdigit(self.index) + \
self.arg2.getdigit(self.index) + self.carry
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self.carry = s // self.p
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self.index += 1
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return s % self.p
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class PAdicNeg(PAdic):
'Negation of a p-adic number.'
def __init__(self, p, arg):
PAdic.__init__(self, p)
self.arg = arg
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self.order = arg.order
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def _nextdigit(self):
if self.prec == 0:
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# cannot be p, 0th digit of arg must be nonzero
return self.p - self.arg.getdigit(0)
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return self.p - 1 - self.arg.getdigit(self.prec)
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class PAdicMul(PAdic):
'Product of two p-adic numbers.'
def __init__(self, p, arg1, arg2):
PAdic.__init__(self, p)
self.carry = 0
self.arg1 = arg1
self.arg2 = arg2
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self.order = arg1.order + arg2.order
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self.arg1.order = self.arg2.order = 0 # TODO requires copy
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self.index = 0
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def _nextdigit(self):
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s = sum(
self.arg1.getdigit(i) * self.arg2.getdigit(self.index - i)
for i in xrange(self.index + 1)
) + self.carry
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self.carry = s // self.p
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self.index += 1
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return s % self.p