mirror of
https://github.com/LmeSzinc/StarRailCopilot.git
synced 2024-11-30 03:16:08 +00:00
279 lines
8.5 KiB
Python
279 lines
8.5 KiB
Python
import re
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import sys
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from numbers import Number
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import six
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"""
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SLPP is a simple lua-python data structures parser.
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This is my fork of SLPP, https://github.com/LmeSzinc/slpp
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Origin repository here, https://github.com/SirAnthony/slpp
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I found some error in it
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lua example: '{点={2={0={叫={醒={我={this=true}}}}}}}'
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wrong result: {'点': {2: [{'叫': {'醒': {'我': {'this': True}}}}]}}
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fixed result: {'点': {2: {0: {'叫': {'醒': {'我': {'this': True}}}}}}}
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They seems to treat this as a feature not a bug, https://github.com/SirAnthony/slpp/issues/21
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So I made my own fork for Alas.
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"""
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ERRORS = {
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'unexp_end_string': u'Unexpected end of string while parsing Lua string.',
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'unexp_end_table': u'Unexpected end of table while parsing Lua string.',
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'mfnumber_minus': u'Malformed number (no digits after initial minus).',
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'mfnumber_dec_point': u'Malformed number (no digits after decimal point).',
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'mfnumber_sci': u'Malformed number (bad scientific format).',
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}
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def sequential(lst):
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length = len(lst)
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if length == 0 or lst[0] != 0:
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return False
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for i in range(length):
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if i + 1 < length:
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if lst[i] + 1 != lst[i + 1]:
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return False
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return True
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class ParseError(Exception):
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pass
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class SLPP(object):
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def __init__(self):
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self.text = ''
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self.ch = ''
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self.at = 0
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self.len = 0
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self.depth = 0
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self.space = re.compile('\s', re.M)
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self.alnum = re.compile('\w', re.M)
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self.newline = '\n'
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self.tab = '\t'
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def decode(self, text):
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if not text or not isinstance(text, six.string_types):
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return
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reg = re.compile('--.*$', re.M)
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text = reg.sub('', text, 0)
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self.text = text
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self.at, self.ch, self.depth = 0, '', 0
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self.len = len(text)
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self.next_chr()
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result = self.value()
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return result
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def encode(self, obj):
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self.depth = 0
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return self.__encode(obj)
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def __encode(self, obj):
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s = ''
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tab = self.tab
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newline = self.newline
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if isinstance(obj, str):
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s += '"%s"' % obj.replace(r'"', r'\"')
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elif six.PY2 and isinstance(obj, unicode):
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s += '"%s"' % obj.encode('utf-8').replace(r'"', r'\"')
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elif six.PY3 and isinstance(obj, bytes):
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s += '"{}"'.format(''.join(r'\x{:02x}'.format(c) for c in obj))
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elif isinstance(obj, bool):
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s += str(obj).lower()
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elif obj is None:
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s += 'nil'
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elif isinstance(obj, Number):
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s += str(obj)
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elif isinstance(obj, (list, tuple, dict)):
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self.depth += 1
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if len(obj) == 0 or (not isinstance(obj, dict) and len([
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x for x in obj
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if isinstance(x, Number) or (isinstance(x, six.string_types) and len(x) < 10)
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]) == len(obj)):
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newline = tab = ''
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dp = tab * self.depth
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s += "%s{%s" % (tab * (self.depth - 2), newline)
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if isinstance(obj, dict):
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key = '[%s]' if all(isinstance(k, int) for k in obj.keys()) else '%s'
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contents = [dp + (key + ' = %s') % (k, self.__encode(v)) for k, v in obj.items()]
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s += (',%s' % newline).join(contents)
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else:
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s += (',%s' % newline).join(
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[dp + self.__encode(el) for el in obj])
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self.depth -= 1
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s += "%s%s}" % (newline, tab * self.depth)
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return s
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def white(self):
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while self.ch:
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if self.space.match(self.ch):
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self.next_chr()
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else:
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break
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def next_chr(self):
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if self.at >= self.len:
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self.ch = None
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return None
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self.ch = self.text[self.at]
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self.at += 1
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return True
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def value(self):
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self.white()
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if not self.ch:
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return
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if self.ch == '{':
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return self.object()
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if self.ch == "[":
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self.next_chr()
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if self.ch in ['"', "'", '[']:
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return self.string(self.ch)
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if self.ch.isdigit() or self.ch == '-':
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return self.number()
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return self.word()
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def string(self, end=None):
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s = ''
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start = self.ch
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if end == '[':
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end = ']'
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if start in ['"', "'", '[']:
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while self.next_chr():
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if self.ch == end:
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self.next_chr()
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if start != "[" or self.ch == ']':
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return s
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if self.ch == '\\' and start == end:
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self.next_chr()
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if self.ch != end:
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s += '\\'
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s += self.ch
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raise ParseError(ERRORS['unexp_end_string'])
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def object(self):
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o = {}
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k = None
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idx = 0
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self.depth += 1
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self.next_chr()
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self.white()
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if self.ch and self.ch == '}':
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self.depth -= 1
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self.next_chr()
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return o # Exit here
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else:
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while self.ch:
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self.white()
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if self.ch == '{':
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o[idx] = self.object()
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idx += 1
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continue
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elif self.ch == '}':
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self.depth -= 1
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self.next_chr()
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if k is not None:
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o[idx] = k
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if len([key for key in o if isinstance(key, six.string_types + (int, float, bool, tuple))]) == 0:
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so = sorted([key for key in o])
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if sequential(so):
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ar = []
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for key in o:
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ar.insert(key, o[key])
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o = ar
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return o # or here
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else:
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if self.ch == ',':
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self.next_chr()
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continue
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else:
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k = self.value()
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if self.ch == ']':
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self.next_chr()
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self.white()
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ch = self.ch
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if ch in ('=', ','):
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self.next_chr()
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self.white()
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if ch == '=':
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o[k] = self.value()
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else:
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o[idx] = k
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idx += 1
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k = None
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raise ParseError(ERRORS['unexp_end_table']) # Bad exit here
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words = {'true': True, 'false': False, 'nil': None}
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def word(self):
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s = ''
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if self.ch != '\n':
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s = self.ch
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self.next_chr()
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while self.ch is not None and self.alnum.match(self.ch) and s not in self.words:
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s += self.ch
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self.next_chr()
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return self.words.get(s, s)
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def number(self):
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def next_digit(err):
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n = self.ch
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self.next_chr()
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if not self.ch or not self.ch.isdigit():
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raise ParseError(err)
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return n
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n = ''
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try:
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if self.ch == '-':
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n += next_digit(ERRORS['mfnumber_minus'])
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n += self.digit()
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if n == '0' and self.ch in ['x', 'X']:
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n += self.ch
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self.next_chr()
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n += self.hex()
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else:
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if self.ch and self.ch == '.':
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n += next_digit(ERRORS['mfnumber_dec_point'])
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n += self.digit()
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if self.ch and self.ch in ['e', 'E']:
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n += self.ch
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self.next_chr()
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if not self.ch or self.ch not in ('+', '-'):
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raise ParseError(ERRORS['mfnumber_sci'])
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n += next_digit(ERRORS['mfnumber_sci'])
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n += self.digit()
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except ParseError:
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t, e = sys.exc_info()[:2]
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print(e)
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return 0
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try:
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return int(n, 0)
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except:
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pass
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return float(n)
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def digit(self):
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n = ''
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while self.ch and self.ch.isdigit():
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n += self.ch
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self.next_chr()
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return n
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def hex(self):
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n = ''
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while self.ch and (self.ch in 'ABCDEFabcdef' or self.ch.isdigit()):
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n += self.ch
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self.next_chr()
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return n
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slpp = SLPP()
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