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git.madduck.net Git - etc/vim.git/blobdiff - src/blib2to3/pytree.py
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insteadOf = madduck:
There's also a pattern matching implementation here.
"""
There's also a pattern matching implementation here.
"""
-# mypy: allow-untyped-defs
+# mypy: allow-untyped-defs, allow-incomplete-defs
from typing import (
Any,
from typing import (
Any,
"""
return "".join(map(str, self.children))
"""
return "".join(map(str, self.children))
- def _eq(self, other) -> bool:
+ def _eq(self, other: Base ) -> bool:
"""Compare two nodes for equality."""
return (self.type, self.children) == (other.type, other.children)
"""Compare two nodes for equality."""
return (self.type, self.children) == (other.type, other.children)
return self.children[0].prefix
@prefix.setter
return self.children[0].prefix
@prefix.setter
- def prefix(self, prefix) -> None:
+ def prefix(self, prefix: Text ) -> None:
if self.children:
self.children[0].prefix = prefix
if self.children:
self.children[0].prefix = prefix
value: Text
fixers_applied: List[Any]
bracket_depth: int
value: Text
fixers_applied: List[Any]
bracket_depth: int
- opening_bracket: "Leaf"
+ # Changed later in brackets.py
+ opening_bracket: Optional["Leaf"] = None
used_names: Optional[Set[Text]]
_prefix = "" # Whitespace and comments preceding this token in the input
lineno: int = 0 # Line where this token starts in the input
used_names: Optional[Set[Text]]
_prefix = "" # Whitespace and comments preceding this token in the input
lineno: int = 0 # Line where this token starts in the input
context: Optional[Context] = None,
prefix: Optional[Text] = None,
fixers_applied: List[Any] = [],
context: Optional[Context] = None,
prefix: Optional[Text] = None,
fixers_applied: List[Any] = [],
+ opening_bracket: Optional["Leaf"] = None,
) -> None:
"""
Initializer.
) -> None:
"""
Initializer.
self._prefix = prefix
self.fixers_applied: Optional[List[Any]] = fixers_applied[:]
self.children = []
self._prefix = prefix
self.fixers_applied: Optional[List[Any]] = fixers_applied[:]
self.children = []
+ self.opening_bracket = opening_bracket
def __repr__(self) -> str:
"""Return a canonical string representation."""
def __repr__(self) -> str:
"""Return a canonical string representation."""
"""
return self._prefix + str(self.value)
"""
return self._prefix + str(self.value)
- def _eq(self, other) -> bool:
+ def _eq(self, other: "Leaf" ) -> bool:
"""Compare two nodes for equality."""
return (self.type, self.value) == (other.type, other.value)
"""Compare two nodes for equality."""
return (self.type, self.value) == (other.type, other.value)
return self._prefix
@prefix.setter
return self._prefix
@prefix.setter
- def prefix(self, prefix) -> None:
+ def prefix(self, prefix: Text ) -> None:
self.changed()
self._prefix = prefix
self.changed()
self._prefix = prefix
self.content = content
self.name = name
self.content = content
self.name = name
- def match(self, node: NL, results=None):
+ def match(self, node: NL, results=None) -> bool :
"""Override match() to insist on a leaf node."""
if not isinstance(node, Leaf):
return False
"""Override match() to insist on a leaf node."""
if not isinstance(node, Leaf):
return False
if isinstance(item, WildcardPattern): # type: ignore[unreachable]
self.wildcards = True # type: ignore[unreachable]
self.type = type
if isinstance(item, WildcardPattern): # type: ignore[unreachable]
self.wildcards = True # type: ignore[unreachable]
self.type = type
- self.content = newcontent
+ self.content = newcontent # TODO: this is unbound when content is None
self.name = name
def _submatch(self, node, results=None) -> bool:
self.name = name
def _submatch(self, node, results=None) -> bool:
class NegatedPattern(BasePattern):
class NegatedPattern(BasePattern):
- def __init__(self, content: Optional[Any ] = None) -> None:
+ def __init__(self, content: Optional[BasePattern ] = None) -> None:
# We only match an empty sequence of nodes in its entirety
return len(nodes) == 0
# We only match an empty sequence of nodes in its entirety
return len(nodes) == 0
- def generate_matches(self, nodes) -> Iterator[Tuple[int, _Results]]:
+ def generate_matches(self, nodes: List[NL] ) -> Iterator[Tuple[int, _Results]]:
if self.content is None:
# Return a match if there is an empty sequence
if len(nodes) == 0:
if self.content is None:
# Return a match if there is an empty sequence
if len(nodes) == 0: