This repo contains code to mirror other repos. It also contains the code that is getting mirrored.
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  1. from .exceptions import GrammarError
  2. from .lexer import Token
  3. from .tree import Tree
  4. from .visitors import InlineTransformer # XXX Deprecated
  5. from .visitors import Transformer_InPlace
  6. from .visitors import _vargs_meta, _vargs_meta_inline
  7. ###{standalone
  8. from functools import partial, wraps
  9. from itertools import repeat, product
  10. class ExpandSingleChild:
  11. def __init__(self, node_builder):
  12. self.node_builder = node_builder
  13. def __call__(self, children):
  14. if len(children) == 1:
  15. return children[0]
  16. else:
  17. return self.node_builder(children)
  18. def _pp_get_meta(children):
  19. for c in children:
  20. if isinstance(c, Tree):
  21. if not c.meta.empty:
  22. return c.meta
  23. elif isinstance(c, Token):
  24. return c
  25. class PropagatePositions:
  26. def __init__(self, node_builder):
  27. self.node_builder = node_builder
  28. def __call__(self, children):
  29. res = self.node_builder(children)
  30. # local reference to Tree.meta reduces number of presence checks
  31. if isinstance(res, Tree):
  32. res_meta = res.meta
  33. src_meta = _pp_get_meta(children)
  34. if src_meta:
  35. res_meta.line = src_meta.line
  36. res_meta.column = src_meta.column
  37. res_meta.start_pos = src_meta.start_pos
  38. res_meta.empty = False
  39. src_meta = _pp_get_meta(reversed(children))
  40. if src_meta:
  41. res_meta.end_line = src_meta.end_line
  42. res_meta.end_column = src_meta.end_column
  43. res_meta.end_pos = src_meta.end_pos
  44. res_meta.empty = False
  45. return res
  46. class ChildFilter:
  47. def __init__(self, to_include, append_none, node_builder):
  48. self.node_builder = node_builder
  49. self.to_include = to_include
  50. self.append_none = append_none
  51. def __call__(self, children):
  52. filtered = []
  53. for i, to_expand, add_none in self.to_include:
  54. if add_none:
  55. filtered += [None] * add_none
  56. if to_expand:
  57. filtered += children[i].children
  58. else:
  59. filtered.append(children[i])
  60. if self.append_none:
  61. filtered += [None] * self.append_none
  62. return self.node_builder(filtered)
  63. class ChildFilterLALR(ChildFilter):
  64. """Optimized childfilter for LALR (assumes no duplication in parse tree, so it's safe to change it)"""
  65. def __call__(self, children):
  66. filtered = []
  67. for i, to_expand, add_none in self.to_include:
  68. if add_none:
  69. filtered += [None] * add_none
  70. if to_expand:
  71. if filtered:
  72. filtered += children[i].children
  73. else: # Optimize for left-recursion
  74. filtered = children[i].children
  75. else:
  76. filtered.append(children[i])
  77. if self.append_none:
  78. filtered += [None] * self.append_none
  79. return self.node_builder(filtered)
  80. class ChildFilterLALR_NoPlaceholders(ChildFilter):
  81. "Optimized childfilter for LALR (assumes no duplication in parse tree, so it's safe to change it)"
  82. def __init__(self, to_include, node_builder):
  83. self.node_builder = node_builder
  84. self.to_include = to_include
  85. def __call__(self, children):
  86. filtered = []
  87. for i, to_expand in self.to_include:
  88. if to_expand:
  89. if filtered:
  90. filtered += children[i].children
  91. else: # Optimize for left-recursion
  92. filtered = children[i].children
  93. else:
  94. filtered.append(children[i])
  95. return self.node_builder(filtered)
  96. def _should_expand(sym):
  97. return not sym.is_term and sym.name.startswith('_')
  98. def maybe_create_child_filter(expansion, keep_all_tokens, ambiguous, _empty_indices):
  99. # Prepare empty_indices as: How many Nones to insert at each index?
  100. if _empty_indices:
  101. assert _empty_indices.count(False) == len(expansion)
  102. s = ''.join(str(int(b)) for b in _empty_indices)
  103. empty_indices = [len(ones) for ones in s.split('0')]
  104. assert len(empty_indices) == len(expansion)+1, (empty_indices, len(expansion))
  105. else:
  106. empty_indices = [0] * (len(expansion)+1)
  107. to_include = []
  108. nones_to_add = 0
  109. for i, sym in enumerate(expansion):
  110. nones_to_add += empty_indices[i]
  111. if keep_all_tokens or not (sym.is_term and sym.filter_out):
  112. to_include.append((i, _should_expand(sym), nones_to_add))
  113. nones_to_add = 0
  114. nones_to_add += empty_indices[len(expansion)]
  115. if _empty_indices or len(to_include) < len(expansion) or any(to_expand for i, to_expand,_ in to_include):
  116. if _empty_indices or ambiguous:
  117. return partial(ChildFilter if ambiguous else ChildFilterLALR, to_include, nones_to_add)
  118. else:
  119. # LALR without placeholders
  120. return partial(ChildFilterLALR_NoPlaceholders, [(i, x) for i,x,_ in to_include])
  121. class AmbiguousExpander:
  122. """Deal with the case where we're expanding children ('_rule') into a parent but the children
  123. are ambiguous. i.e. (parent->_ambig->_expand_this_rule). In this case, make the parent itself
  124. ambiguous with as many copies as their are ambiguous children, and then copy the ambiguous children
  125. into the right parents in the right places, essentially shifting the ambiguity up the tree."""
  126. def __init__(self, to_expand, tree_class, node_builder):
  127. self.node_builder = node_builder
  128. self.tree_class = tree_class
  129. self.to_expand = to_expand
  130. def __call__(self, children):
  131. def _is_ambig_tree(t):
  132. return hasattr(t, 'data') and t.data == '_ambig'
  133. # -- When we're repeatedly expanding ambiguities we can end up with nested ambiguities.
  134. # All children of an _ambig node should be a derivation of that ambig node, hence
  135. # it is safe to assume that if we see an _ambig node nested within an ambig node
  136. # it is safe to simply expand it into the parent _ambig node as an alternative derivation.
  137. ambiguous = []
  138. for i, child in enumerate(children):
  139. if _is_ambig_tree(child):
  140. if i in self.to_expand:
  141. ambiguous.append(i)
  142. to_expand = [j for j, grandchild in enumerate(child.children) if _is_ambig_tree(grandchild)]
  143. child.expand_kids_by_index(*to_expand)
  144. if not ambiguous:
  145. return self.node_builder(children)
  146. expand = [iter(child.children) if i in ambiguous else repeat(child) for i, child in enumerate(children)]
  147. return self.tree_class('_ambig', [self.node_builder(list(f[0])) for f in product(zip(*expand))])
  148. def maybe_create_ambiguous_expander(tree_class, expansion, keep_all_tokens):
  149. to_expand = [i for i, sym in enumerate(expansion)
  150. if keep_all_tokens or ((not (sym.is_term and sym.filter_out)) and _should_expand(sym))]
  151. if to_expand:
  152. return partial(AmbiguousExpander, to_expand, tree_class)
  153. class AmbiguousIntermediateExpander:
  154. """
  155. Propagate ambiguous intermediate nodes and their derivations up to the
  156. current rule.
  157. In general, converts
  158. rule
  159. _iambig
  160. _inter
  161. someChildren1
  162. ...
  163. _inter
  164. someChildren2
  165. ...
  166. someChildren3
  167. ...
  168. to
  169. _ambig
  170. rule
  171. someChildren1
  172. ...
  173. someChildren3
  174. ...
  175. rule
  176. someChildren2
  177. ...
  178. someChildren3
  179. ...
  180. rule
  181. childrenFromNestedIambigs
  182. ...
  183. someChildren3
  184. ...
  185. ...
  186. propagating up any nested '_iambig' nodes along the way.
  187. """
  188. def __init__(self, tree_class, node_builder):
  189. self.node_builder = node_builder
  190. self.tree_class = tree_class
  191. def __call__(self, children):
  192. def _is_iambig_tree(child):
  193. return hasattr(child, 'data') and child.data == '_iambig'
  194. def _collapse_iambig(children):
  195. """
  196. Recursively flatten the derivations of the parent of an '_iambig'
  197. node. Returns a list of '_inter' nodes guaranteed not
  198. to contain any nested '_iambig' nodes, or None if children does
  199. not contain an '_iambig' node.
  200. """
  201. # Due to the structure of the SPPF,
  202. # an '_iambig' node can only appear as the first child
  203. if children and _is_iambig_tree(children[0]):
  204. iambig_node = children[0]
  205. result = []
  206. for grandchild in iambig_node.children:
  207. collapsed = _collapse_iambig(grandchild.children)
  208. if collapsed:
  209. for child in collapsed:
  210. child.children += children[1:]
  211. result += collapsed
  212. else:
  213. new_tree = self.tree_class('_inter', grandchild.children + children[1:])
  214. result.append(new_tree)
  215. return result
  216. collapsed = _collapse_iambig(children)
  217. if collapsed:
  218. processed_nodes = [self.node_builder(c.children) for c in collapsed]
  219. return self.tree_class('_ambig', processed_nodes)
  220. return self.node_builder(children)
  221. def ptb_inline_args(func):
  222. @wraps(func)
  223. def f(children):
  224. return func(*children)
  225. return f
  226. def inplace_transformer(func):
  227. @wraps(func)
  228. def f(children):
  229. # function name in a Transformer is a rule name.
  230. tree = Tree(func.__name__, children)
  231. return func(tree)
  232. return f
  233. def apply_visit_wrapper(func, name, wrapper):
  234. if wrapper is _vargs_meta or wrapper is _vargs_meta_inline:
  235. raise NotImplementedError("Meta args not supported for internal transformer")
  236. @wraps(func)
  237. def f(children):
  238. return wrapper(func, name, children, None)
  239. return f
  240. class ParseTreeBuilder:
  241. def __init__(self, rules, tree_class, propagate_positions=False, ambiguous=False, maybe_placeholders=False):
  242. self.tree_class = tree_class
  243. self.propagate_positions = propagate_positions
  244. self.ambiguous = ambiguous
  245. self.maybe_placeholders = maybe_placeholders
  246. self.rule_builders = list(self._init_builders(rules))
  247. def _init_builders(self, rules):
  248. for rule in rules:
  249. options = rule.options
  250. keep_all_tokens = options.keep_all_tokens
  251. expand_single_child = options.expand1
  252. wrapper_chain = list(filter(None, [
  253. (expand_single_child and not rule.alias) and ExpandSingleChild,
  254. maybe_create_child_filter(rule.expansion, keep_all_tokens, self.ambiguous, options.empty_indices if self.maybe_placeholders else None),
  255. self.propagate_positions and PropagatePositions,
  256. self.ambiguous and maybe_create_ambiguous_expander(self.tree_class, rule.expansion, keep_all_tokens),
  257. self.ambiguous and partial(AmbiguousIntermediateExpander, self.tree_class)
  258. ]))
  259. yield rule, wrapper_chain
  260. def create_callback(self, transformer=None):
  261. callbacks = {}
  262. for rule, wrapper_chain in self.rule_builders:
  263. user_callback_name = rule.alias or rule.options.template_source or rule.origin.name
  264. try:
  265. f = getattr(transformer, user_callback_name)
  266. # XXX InlineTransformer is deprecated!
  267. wrapper = getattr(f, 'visit_wrapper', None)
  268. if wrapper is not None:
  269. f = apply_visit_wrapper(f, user_callback_name, wrapper)
  270. else:
  271. if isinstance(transformer, InlineTransformer):
  272. f = ptb_inline_args(f)
  273. elif isinstance(transformer, Transformer_InPlace):
  274. f = inplace_transformer(f)
  275. except AttributeError:
  276. f = partial(self.tree_class, user_callback_name)
  277. for w in wrapper_chain:
  278. f = w(f)
  279. if rule in callbacks:
  280. raise GrammarError("Rule '%s' already exists" % (rule,))
  281. callbacks[rule] = f
  282. return callbacks
  283. ###}