169 lines
5.5 KiB
Python
169 lines
5.5 KiB
Python
## {{{ http://code.activestate.com/recipes/498104/ (r1)
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## also http://stackoverflow.com/questions/4047511/checking-if-an-isbn-number-is-correct
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import re
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def check_digit_10(isbn):
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assert len(isbn) == 9
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sum = 0
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for i in range(len(isbn)):
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c = int(isbn[i])
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w = i + 1
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sum += w * c
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r = sum % 11
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if r == 10: return 'X'
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else: return str(r)
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def check_digit_13(isbn):
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assert len(isbn) == 12
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sum = 0
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for i in range(len(isbn)):
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c = int(isbn[i])
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if i % 2: w = 3
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else: w = 1
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sum += w * c
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r = 10 - (sum % 10)
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if r == 10: return '0'
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else: return str(r)
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def convert_10_to_13(isbn):
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assert len(isbn) == 10
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prefix = '978' + isbn[:-1]
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check = check_digit_13(prefix)
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return prefix + check
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def strip(s):
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"""Strips away any - or spaces. If the remaining string is of length 10 or 13 with digits only in anything but the last
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check digit (which may be X), then return '' -- otherwise return the remaining string"""
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try:
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s = s.replace("-", "").replace(" ", "").upper()
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match = re.search(r'^(\d{9}|\d{12})(\d|X)$', s)
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except:
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return None
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if not match:
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return None
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else:
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return s
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def convert_13_to_10(isbn):
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assert len(isbn) == 13
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# only ISBN-13 starting with 978 can have a valid ISBN 10 partner
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assert isbn[0:3] == '978'
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return isbn [3:12] + check_digit_10(isbn[3:12])
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class ISBNException(Exception):
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pass
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class ISBN(object):
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def __init__(self, input_isbn):
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self.input_isbn = input_isbn
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self.error = None
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stripped_isbn = strip(input_isbn)
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if stripped_isbn is None or len(stripped_isbn) not in (10,13):
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self.error = "input_isbn does not seem to be a valid ISBN"
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self.__type = None
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self.__valid = False
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self.__isbn10 = None
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self.__valid_10 = None
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self.__isbn13 = None
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self.__valid_13 = None
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elif len(stripped_isbn) == 10:
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self.__type = '10'
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self.__isbn10 = stripped_isbn
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self.__valid_10 = stripped_isbn[0:9] + check_digit_10(stripped_isbn[0:9])
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self.__valid = (self.__isbn10 == self.__valid_10)
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# this is the corresponding ISBN 13 based on the assumption of a valid ISBN 10
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self.__isbn13 = convert_10_to_13(stripped_isbn)
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self.__valid_13 = self.__isbn13
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elif len(stripped_isbn) == 13:
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# Assume ISBN 13 all have to begin with 978 or 979 and only 978 ISBNs can possibly have ISBN-10 counterpart
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self.__type = '13'
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self.__isbn13 = stripped_isbn
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if stripped_isbn[0:3] not in ['978','979']:
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self.error = "ISBN 13 must begin with 978 or 979 not %s " % (stripped_isbn[0:3])
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self.__valid = False
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self.__valid_13 = None
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else:
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self.__valid_13 = stripped_isbn[0:12] + check_digit_13(stripped_isbn[0:12])
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self.__valid = (self.__isbn13 == self.__valid_13)
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# now check to see whether the isbn starts with 978 -- only then convert to ISBN -10
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if self.__isbn13[0:3] == '978':
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self.__isbn10 = convert_13_to_10(stripped_isbn)
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self.__valid_10 = self.__isbn10
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else:
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self.__isbn10 = None
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self.__valid_10 = None
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@property
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def type(self):
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return self.__type
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@property
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def valid (self):
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return self.__valid
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def validate (self):
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""" replace the ISBN value with the checksumed version """
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if self.type == '10':
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self.__isbn10 = self.__valid_10
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self.__valid = True
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return self
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else:
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self.__isbn13 = self.__valid_13
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self.__valid = True
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return self
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def to_string(self, type='13', hyphenate=False):
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if not self.__valid:
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return None
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if type == '10' or type == 10:
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if self.__isbn10 is None:
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return None
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if hyphenate:
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s = self.__isbn10
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return "%s-%s-%s-%s" % (s[0], s[1:4], s[4:9], s[9])
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else:
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return self.__isbn10
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else:
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if hyphenate:
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s = self.__isbn13
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return "%s-%s-%s-%s-%s" % (s[0:3], s[3], s[4:7], s[7:12], s[12])
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else:
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return self.__isbn13
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def __unicode__(self):
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return unicode(self.to_string(type=self.type,hyphenate=False))
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def __str__(self):
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s = self.to_string(type=self.type,hyphenate=False)
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if s is not None:
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return s
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else:
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return ''
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def __eq__(self, other):
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""" both equal if both valid checksums and ISBN 13 equal """
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if isinstance(other, ISBN):
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if (self.valid and other.valid) and (self.to_string('13') == other.to_string('13')):
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return True
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else:
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return False
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else:
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try:
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other_isbn = ISBN(other)
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if (self.valid and other_isbn.valid) and (self.to_string('13') == other_isbn.to_string('13')):
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return True
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else:
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return False
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except:
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return False
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def __ne__(self, other):
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return not (self.__eq__(other))
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