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  1. ## Lexer Implementation
  2. import re
  3. from .utils import Str, classify, get_regexp_width, Py36
  4. from .exceptions import UnexpectedCharacters, LexError
  5. class Pattern(object):
  6. def __init__(self, value, flags=()):
  7. self.value = value
  8. self.flags = frozenset(flags)
  9. def __repr__(self):
  10. return repr(self.to_regexp())
  11. # Pattern Hashing assumes all subclasses have a different priority!
  12. def __hash__(self):
  13. return hash((type(self), self.value, self.flags))
  14. def __eq__(self, other):
  15. return type(self) == type(other) and self.value == other.value and self.flags == other.flags
  16. def to_regexp(self):
  17. raise NotImplementedError()
  18. if Py36:
  19. # Python 3.6 changed syntax for flags in regular expression
  20. def _get_flags(self, value):
  21. for f in self.flags:
  22. value = ('(?%s:%s)' % (f, value))
  23. return value
  24. else:
  25. def _get_flags(self, value):
  26. for f in self.flags:
  27. value = ('(?%s)' % f) + value
  28. return value
  29. class PatternStr(Pattern):
  30. def to_regexp(self):
  31. return self._get_flags(re.escape(self.value))
  32. @property
  33. def min_width(self):
  34. return len(self.value)
  35. max_width = min_width
  36. class PatternRE(Pattern):
  37. def to_regexp(self):
  38. return self._get_flags(self.value)
  39. @property
  40. def min_width(self):
  41. return get_regexp_width(self.to_regexp())[0]
  42. @property
  43. def max_width(self):
  44. return get_regexp_width(self.to_regexp())[1]
  45. class TerminalDef(object):
  46. def __init__(self, name, pattern, priority=1):
  47. assert isinstance(pattern, Pattern), pattern
  48. self.name = name
  49. self.pattern = pattern
  50. self.priority = priority
  51. def __repr__(self):
  52. return '%s(%r, %r)' % (type(self).__name__, self.name, self.pattern)
  53. ###{standalone
  54. class Token(Str):
  55. __slots__ = ('type', 'pos_in_stream', 'value', 'line', 'column', 'end_line', 'end_column')
  56. def __new__(cls, type_, value, pos_in_stream=None, line=None, column=None, end_line=None, end_column=None):
  57. try:
  58. self = super(Token, cls).__new__(cls, value)
  59. except UnicodeDecodeError:
  60. value = value.decode('latin1')
  61. self = super(Token, cls).__new__(cls, value)
  62. self.type = type_
  63. self.pos_in_stream = pos_in_stream
  64. self.value = value
  65. self.line = line
  66. self.column = column
  67. self.end_line = end_line
  68. self.end_column = end_column
  69. return self
  70. @classmethod
  71. def new_borrow_pos(cls, type_, value, borrow_t):
  72. return cls(type_, value, borrow_t.pos_in_stream, borrow_t.line, borrow_t.column, borrow_t.end_line, borrow_t.end_column)
  73. def __reduce__(self):
  74. return (self.__class__, (self.type, self.value, self.pos_in_stream, self.line, self.column, ))
  75. def __repr__(self):
  76. return 'Token(%s, %r)' % (self.type, self.value)
  77. def __deepcopy__(self, memo):
  78. return Token(self.type, self.value, self.pos_in_stream, self.line, self.column)
  79. def __eq__(self, other):
  80. if isinstance(other, Token) and self.type != other.type:
  81. return False
  82. return Str.__eq__(self, other)
  83. __hash__ = Str.__hash__
  84. class LineCounter:
  85. def __init__(self):
  86. self.newline_char = '\n'
  87. self.char_pos = 0
  88. self.line = 1
  89. self.column = 1
  90. self.line_start_pos = 0
  91. def feed(self, token, test_newline=True):
  92. """Consume a token and calculate the new line & column.
  93. As an optional optimization, set test_newline=False is token doesn't contain a newline.
  94. """
  95. if test_newline:
  96. newlines = token.count(self.newline_char)
  97. if newlines:
  98. self.line += newlines
  99. self.line_start_pos = self.char_pos + token.rindex(self.newline_char) + 1
  100. self.char_pos += len(token)
  101. self.column = self.char_pos - self.line_start_pos + 1
  102. class _Lex:
  103. "Built to serve both Lexer and ContextualLexer"
  104. def __init__(self, lexer, state=None):
  105. self.lexer = lexer
  106. self.state = state
  107. def lex(self, stream, newline_types, ignore_types):
  108. newline_types = frozenset(newline_types)
  109. ignore_types = frozenset(ignore_types)
  110. line_ctr = LineCounter()
  111. while line_ctr.char_pos < len(stream):
  112. lexer = self.lexer
  113. for mre, type_from_index in lexer.mres:
  114. m = mre.match(stream, line_ctr.char_pos)
  115. if not m:
  116. continue
  117. t = None
  118. value = m.group(0)
  119. type_ = type_from_index[m.lastindex]
  120. if type_ not in ignore_types:
  121. t = Token(type_, value, line_ctr.char_pos, line_ctr.line, line_ctr.column)
  122. if t.type in lexer.callback:
  123. t = lexer.callback[t.type](t)
  124. if not isinstance(t, Token):
  125. raise ValueError("Callbacks must return a token (returned %r)" % t)
  126. yield t
  127. else:
  128. if type_ in lexer.callback:
  129. t = Token(type_, value, line_ctr.char_pos, line_ctr.line, line_ctr.column)
  130. lexer.callback[type_](t)
  131. line_ctr.feed(value, type_ in newline_types)
  132. if t:
  133. t.end_line = line_ctr.line
  134. t.end_column = line_ctr.column
  135. break
  136. else:
  137. raise UnexpectedCharacters(stream, line_ctr.char_pos, line_ctr.line, line_ctr.column, state=self.state)
  138. class UnlessCallback:
  139. def __init__(self, mres):
  140. self.mres = mres
  141. def __call__(self, t):
  142. for mre, type_from_index in self.mres:
  143. m = mre.match(t.value)
  144. if m:
  145. t.type = type_from_index[m.lastindex]
  146. break
  147. return t
  148. class CallChain:
  149. def __init__(self, callback1, callback2, cond):
  150. self.callback1 = callback1
  151. self.callback2 = callback2
  152. self.cond = cond
  153. def __call__(self, t):
  154. t2 = self.callback1(t)
  155. return self.callback2(t) if self.cond(t2) else t2
  156. ###}
  157. def _create_unless(terminals):
  158. tokens_by_type = classify(terminals, lambda t: type(t.pattern))
  159. assert len(tokens_by_type) <= 2, tokens_by_type.keys()
  160. embedded_strs = set()
  161. callback = {}
  162. for retok in tokens_by_type.get(PatternRE, []):
  163. unless = [] # {}
  164. for strtok in tokens_by_type.get(PatternStr, []):
  165. if strtok.priority > retok.priority:
  166. continue
  167. s = strtok.pattern.value
  168. m = re.match(retok.pattern.to_regexp(), s)
  169. if m and m.group(0) == s:
  170. unless.append(strtok)
  171. if strtok.pattern.flags <= retok.pattern.flags:
  172. embedded_strs.add(strtok)
  173. if unless:
  174. callback[retok.name] = UnlessCallback(build_mres(unless, match_whole=True))
  175. terminals = [t for t in terminals if t not in embedded_strs]
  176. return terminals, callback
  177. def _build_mres(terminals, max_size, match_whole):
  178. # Python sets an unreasonable group limit (currently 100) in its re module
  179. # Worse, the only way to know we reached it is by catching an AssertionError!
  180. # This function recursively tries less and less groups until it's successful.
  181. postfix = '$' if match_whole else ''
  182. mres = []
  183. while terminals:
  184. try:
  185. mre = re.compile(u'|'.join(u'(?P<%s>%s)'%(t.name, t.pattern.to_regexp()+postfix) for t in terminals[:max_size]))
  186. except AssertionError: # Yes, this is what Python provides us.. :/
  187. return _build_mres(terminals, max_size//2, match_whole)
  188. # terms_from_name = {t.name: t for t in terminals[:max_size]}
  189. mres.append((mre, {i:n for n,i in mre.groupindex.items()} ))
  190. terminals = terminals[max_size:]
  191. return mres
  192. def build_mres(terminals, match_whole=False):
  193. return _build_mres(terminals, len(terminals), match_whole)
  194. def _regexp_has_newline(r):
  195. """Expressions that may indicate newlines in a regexp:
  196. - newlines (\n)
  197. - escaped newline (\\n)
  198. - anything but ([^...])
  199. - any-char (.) when the flag (?s) exists
  200. """
  201. return '\n' in r or '\\n' in r or '[^' in r or ('(?s' in r and '.' in r)
  202. class Lexer:
  203. """Lexer interface
  204. Method Signatures:
  205. lex(self, stream) -> Iterator[Token]
  206. set_parser_state(self, state) # Optional
  207. """
  208. set_parser_state = NotImplemented
  209. lex = NotImplemented
  210. class TraditionalLexer(Lexer):
  211. def __init__(self, terminals, ignore=(), user_callbacks={}):
  212. assert all(isinstance(t, TerminalDef) for t in terminals), terminals
  213. terminals = list(terminals)
  214. # Sanitization
  215. for t in terminals:
  216. try:
  217. re.compile(t.pattern.to_regexp())
  218. except:
  219. raise LexError("Cannot compile token %s: %s" % (t.name, t.pattern))
  220. if t.pattern.min_width == 0:
  221. raise LexError("Lexer does not allow zero-width terminals. (%s: %s)" % (t.name, t.pattern))
  222. assert set(ignore) <= {t.name for t in terminals}
  223. # Init
  224. self.newline_types = [t.name for t in terminals if _regexp_has_newline(t.pattern.to_regexp())]
  225. self.ignore_types = list(ignore)
  226. terminals.sort(key=lambda x:(-x.priority, -x.pattern.max_width, -len(x.pattern.value), x.name))
  227. terminals, self.callback = _create_unless(terminals)
  228. assert all(self.callback.values())
  229. for type_, f in user_callbacks.items():
  230. if type_ in self.callback:
  231. # Already a callback there, probably UnlessCallback
  232. self.callback[type_] = CallChain(self.callback[type_], f, lambda t: t.type == type_)
  233. else:
  234. self.callback[type_] = f
  235. self.terminals = terminals
  236. self.mres = build_mres(terminals)
  237. def lex(self, stream):
  238. return _Lex(self).lex(stream, self.newline_types, self.ignore_types)
  239. class ContextualLexer(Lexer):
  240. def __init__(self, terminals, states, ignore=(), always_accept=(), user_callbacks={}):
  241. tokens_by_name = {}
  242. for t in terminals:
  243. assert t.name not in tokens_by_name, t
  244. tokens_by_name[t.name] = t
  245. lexer_by_tokens = {}
  246. self.lexers = {}
  247. for state, accepts in states.items():
  248. key = frozenset(accepts)
  249. try:
  250. lexer = lexer_by_tokens[key]
  251. except KeyError:
  252. accepts = set(accepts) | set(ignore) | set(always_accept)
  253. state_tokens = [tokens_by_name[n] for n in accepts if n and n in tokens_by_name]
  254. lexer = TraditionalLexer(state_tokens, ignore=ignore, user_callbacks=user_callbacks)
  255. lexer_by_tokens[key] = lexer
  256. self.lexers[state] = lexer
  257. self.root_lexer = TraditionalLexer(terminals, ignore=ignore, user_callbacks=user_callbacks)
  258. self.set_parser_state(None) # Needs to be set on the outside
  259. def set_parser_state(self, state):
  260. self.parser_state = state
  261. def lex(self, stream):
  262. l = _Lex(self.lexers[self.parser_state], self.parser_state)
  263. for x in l.lex(stream, self.root_lexer.newline_types, self.root_lexer.ignore_types):
  264. yield x
  265. l.lexer = self.lexers[self.parser_state]
  266. l.state = self.parser_state