mirror of
https://gitlab.gnome.org/jwestman/blueprint-compiler.git
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284 lines
8.5 KiB
Python
284 lines
8.5 KiB
Python
# ast_utils.py
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#
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# Copyright 2021 James Westman <james@jwestman.net>
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#
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# This file is free software; you can redistribute it and/or modify it
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# under the terms of the GNU Lesser General Public License as
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# published by the Free Software Foundation; either version 3 of the
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# License, or (at your option) any later version.
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#
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# This file is distributed in the hope that it will be useful, but
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# WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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# Lesser General Public License for more details.
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#
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# You should have received a copy of the GNU Lesser General Public
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# License along with this program. If not, see <http://www.gnu.org/licenses/>.
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#
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# SPDX-License-Identifier: LGPL-3.0-or-later
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import typing as T
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from collections import ChainMap, defaultdict
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from functools import cached_property
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from .errors import *
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from .lsp_utils import SemanticToken
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TType = T.TypeVar("TType")
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class Children:
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"""Allows accessing children by type using array syntax."""
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def __init__(self, children):
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self._children = children
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def __iter__(self) -> T.Iterator["AstNode"]:
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return iter(self._children)
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@T.overload
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def __getitem__(self, key: T.Type[TType]) -> T.List[TType]:
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...
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@T.overload
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def __getitem__(self, key: int) -> "AstNode":
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...
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def __getitem__(self, key):
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if isinstance(key, int):
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if key >= len(self._children):
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return None
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else:
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return self._children[key]
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else:
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return [child for child in self._children if isinstance(child, key)]
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TCtx = T.TypeVar("TCtx")
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TAttr = T.TypeVar("TAttr")
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class Ctx:
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"""Allows accessing values from higher in the syntax tree."""
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def __init__(self, node: "AstNode") -> None:
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self.node = node
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def __getitem__(self, key: T.Type[TCtx]) -> T.Optional[TCtx]:
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attrs = self.node._attrs_by_type(Context)
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for name, attr in attrs:
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if attr.type == key:
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return getattr(self.node, name)
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if self.node.parent is not None:
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return self.node.parent.context[key]
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else:
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return None
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class AstNode:
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"""Base class for nodes in the abstract syntax tree."""
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completers: T.List = []
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attrs_by_type: T.Dict[T.Type, T.List] = {}
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def __init__(self, group, children, tokens, incomplete=False):
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self.group = group
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self.children = Children(children)
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self.tokens = ChainMap(tokens, defaultdict(lambda: None))
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self.incomplete = incomplete
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self.parent = None
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for child in self.children:
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child.parent = self
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def __init_subclass__(cls):
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cls.completers = []
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cls.validators = [
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getattr(cls, f) for f in dir(cls) if hasattr(getattr(cls, f), "_validator")
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]
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cls.attrs_by_type = {}
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@cached_property
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def context(self):
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return Ctx(self)
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@cached_property
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def root(self):
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if self.parent is None:
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return self
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else:
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return self.parent.root
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def parent_by_type(self, type: T.Type[TType]) -> TType:
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if self.parent is None:
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raise CompilerBugError()
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elif isinstance(self.parent, type):
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return self.parent
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else:
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return self.parent.parent_by_type(type)
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@cached_property
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def errors(self):
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return list(
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error
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for error in self._get_errors()
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if not isinstance(error, CompileWarning)
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)
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@cached_property
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def warnings(self):
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return list(
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warning
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for warning in self._get_errors()
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if isinstance(warning, CompileWarning)
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)
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def _get_errors(self):
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for validator in self.validators:
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try:
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validator(self)
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except CompileError as e:
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yield e
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if e.fatal:
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return
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for child in self.children:
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yield from child._get_errors()
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def _attrs_by_type(self, attr_type: T.Type[TAttr]) -> T.List[T.Tuple[str, TAttr]]:
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if attr_type not in self.attrs_by_type:
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self.attrs_by_type[attr_type] = []
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for name in dir(type(self)):
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item = getattr(type(self), name)
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if isinstance(item, attr_type):
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self.attrs_by_type[attr_type].append((name, item))
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return self.attrs_by_type[attr_type]
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def get_docs(self, idx: int) -> T.Optional[str]:
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for name, attr in self._attrs_by_type(Docs):
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if attr.token_name:
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token = self.group.tokens.get(attr.token_name)
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if token and token.start <= idx < token.end:
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return getattr(self, name)
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else:
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return getattr(self, name)
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for child in self.children:
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if child.group.start <= idx < child.group.end:
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docs = child.get_docs(idx)
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if docs is not None:
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return docs
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return None
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def get_semantic_tokens(self) -> T.Iterator[SemanticToken]:
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for child in self.children:
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yield from child.get_semantic_tokens()
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def validate_unique_in_parent(
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self, error: str, check: T.Optional[T.Callable[["AstNode"], bool]] = None
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):
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for child in self.parent.children:
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if child is self:
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break
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if type(child) is type(self):
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if check is None or check(child):
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raise CompileError(
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error,
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references=[
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ErrorReference(
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child.group.start,
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child.group.end,
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"previous declaration was here",
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)
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],
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)
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def validate(token_name=None, end_token_name=None, skip_incomplete=False):
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"""Decorator for functions that validate an AST node. Exceptions raised
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during validation are marked with range information from the tokens."""
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def decorator(func):
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def inner(self):
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if skip_incomplete and self.incomplete:
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return
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try:
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func(self)
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except CompileError as e:
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# If the node is only partially complete, then an error must
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# have already been reported at the parsing stage
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if self.incomplete:
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return
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# This mess of code sets the error's start and end positions
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# from the tokens passed to the decorator, if they have not
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# already been set
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if e.start is None:
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if token := self.group.tokens.get(token_name):
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e.start = token.start
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else:
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e.start = self.group.start
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if e.end is None:
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if token := self.group.tokens.get(end_token_name):
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e.end = token.end
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elif token := self.group.tokens.get(token_name):
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e.end = token.end
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else:
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e.end = self.group.end
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# Re-raise the exception
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raise e
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inner._validator = True
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return inner
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return decorator
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class Docs:
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def __init__(self, func, token_name=None):
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self.func = func
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self.token_name = token_name
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def __get__(self, instance, owner):
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if instance is None:
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return self
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return self.func(instance)
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def docs(*args, **kwargs):
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"""Decorator for functions that return documentation for tokens."""
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def decorator(func):
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return Docs(func, *args, **kwargs)
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return decorator
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class Context:
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def __init__(self, type: T.Type[TCtx], func: T.Callable[[AstNode], TCtx]) -> None:
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self.type = type
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self.func = func
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def __get__(self, instance, owner):
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if instance is None:
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return self
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if ctx := getattr(instance, "_context_" + self.type.__name__, None):
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return ctx
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else:
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ctx = self.func(instance)
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setattr(instance, "_context_" + self.type.__name__, ctx)
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return ctx
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def context(type: T.Type[TCtx]):
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"""Decorator for functions that return a context object, which is passed down to ."""
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def decorator(func: T.Callable[[AstNode], TCtx]) -> Context:
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return Context(type, func)
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return decorator
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