s5 = init_s5()
def could_be_base32_encoded(s, s8=s8, tr=string.translate, identitytranstable=identitytranstable, chars=chars):
- precondition(isinstance(s, (str, unicode)), s)
- if isinstance(s, unicode):
- s = s.encode('utf-8')
+ precondition(isinstance(s, str), s)
if s == '':
return True
return s8[len(s)%8][ord(s[-1])] and not tr(s, identitytranstable, chars)
def could_be_base32_encoded_l(s, lengthinbits, s5=s5, tr=string.translate, identitytranstable=identitytranstable, chars=chars):
- precondition(isinstance(s, (str, unicode)), s)
- if isinstance(s, unicode):
- s = s.encode('utf-8')
+ precondition(isinstance(s, str), s)
if s == '':
return True
assert lengthinbits%5 < len(s5), lengthinbits
@param cs the base-32 encoded data (a string)
"""
precondition(could_be_base32_encoded(cs), "cs is required to be possibly base32 encoded data.", cs=cs)
- precondition(isinstance(cs, (str, unicode)), cs)
- if isinstance(cs, unicode):
- cs = cs.encode('utf-8')
+ precondition(isinstance(cs, str), cs)
return a2b_l(cs, num_octets_that_encode_to_this_many_quintets(len(cs))*8)
@return the data encoded in cs
"""
precondition(could_be_base32_encoded_l(cs, lengthinbits), "cs is required to be possibly base32 encoded data.", cs=cs, lengthinbits=lengthinbits)
- precondition(isinstance(cs, (str, unicode)), cs)
- if isinstance(cs, unicode):
- cs = cs.encode('utf-8')
+ precondition(isinstance(cs, str), cs)
if cs == '':
return ''