67 lines
2.3 KiB
Python
67 lines
2.3 KiB
Python
from datetime import date
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from django.conf import settings
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from django.utils.http import int_to_base36, base36_to_int
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class PasswordResetTokenGenerator(object):
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"""
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Strategy object used to generate and check tokens for the password
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reset mechanism.
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"""
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def make_token(self, user):
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"""
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Returns a token that can be used once to do a password reset
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for the given user.
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"""
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return self._make_token_with_timestamp(user, self._num_days(self._today()))
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def check_token(self, user, token):
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"""
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Check that a password reset token is correct for a given user.
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"""
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# Parse the token
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try:
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ts_b36, hash = token.split("-")
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except ValueError:
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return False
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try:
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ts = base36_to_int(ts_b36)
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except ValueError:
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return False
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# Check that the timestamp/uid has not been tampered with
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if self._make_token_with_timestamp(user, ts) != token:
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return False
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# Check the timestamp is within limit
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if (self._num_days(self._today()) - ts) > settings.PASSWORD_RESET_TIMEOUT_DAYS:
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return False
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return True
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def _make_token_with_timestamp(self, user, timestamp):
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# timestamp is number of days since 2001-1-1. Converted to
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# base 36, this gives us a 3 digit string until about 2121
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ts_b36 = int_to_base36(timestamp)
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# By hashing on the internal state of the user and using state
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# that is sure to change (the password salt will change as soon as
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# the password is set, at least for current Django auth, and
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# last_login will also change), we produce a hash that will be
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# invalid as soon as it is used.
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# We limit the hash to 20 chars to keep URL short
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from django.utils.hashcompat import sha_constructor
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hash = sha_constructor(settings.SECRET_KEY + unicode(user.id) +
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user.password + user.last_login.strftime('%Y-%m-%d %H:%M:%S') +
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unicode(timestamp)).hexdigest()[::2]
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return "%s-%s" % (ts_b36, hash)
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def _num_days(self, dt):
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return (dt - date(2001,1,1)).days
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def _today(self):
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# Used for mocking in tests
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return date.today()
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default_token_generator = PasswordResetTokenGenerator()
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