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# SPDX-License-Identifier: Apache-2.0
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# Copyright © 2022-2023 Intel Corporation
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"""Provides helpers for building AST
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This is meant to make building Meson AST from foreign (largely declarative)
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build descriptions easier.
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"""
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from __future__ import annotations
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import dataclasses
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import typing as T
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from .. import mparser
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if T.TYPE_CHECKING:
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import builtins
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@dataclasses.dataclass
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class Builder:
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filename: str
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def _token(self, tid: str, value: mparser.TV_TokenTypes) -> mparser.Token[mparser.TV_TokenTypes]:
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"""Create a Token object, but with the line numbers stubbed out.
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:param tid: the token id (such as string, number, etc)
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:param filename: the filename that the token was generated from
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:param value: the value of the token
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:return: A Token object
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"""
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return mparser.Token(tid, self.filename, -1, -1, -1, (-1, -1), value)
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def _symbol(self, val: str) -> mparser.SymbolNode:
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return mparser.SymbolNode(self._token('', val))
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def assign(self, value: mparser.BaseNode, varname: str) -> mparser.AssignmentNode:
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return mparser.AssignmentNode(self.identifier(varname), self._symbol('='), value)
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def string(self, value: str) -> mparser.StringNode:
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"""Build A StringNode
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:param value: the value of the string
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:return: A StringNode
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"""
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return mparser.StringNode(self._token('string', value))
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def number(self, value: int) -> mparser.NumberNode:
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"""Build A NumberNode
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:param value: the value of the number
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:return: A NumberNode
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"""
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return mparser.NumberNode(self._token('number', str(value)))
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def bool(self, value: builtins.bool) -> mparser.BooleanNode:
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"""Build A BooleanNode
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:param value: the value of the boolean
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:return: A BooleanNode
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"""
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return mparser.BooleanNode(self._token('bool', value))
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def array(self, value: T.List[mparser.BaseNode]) -> mparser.ArrayNode:
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"""Build an Array Node
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:param value: A list of nodes to insert into the array
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:return: An ArrayNode built from the arguments
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"""
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args = mparser.ArgumentNode(self._token('array', 'unused'))
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args.arguments = value
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return mparser.ArrayNode(self._symbol('['), args, self._symbol(']'))
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def dict(self, value: T.Dict[mparser.BaseNode, mparser.BaseNode]) -> mparser.DictNode:
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"""Build an Dictionary Node
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:param value: A dict of nodes to insert into the dictionary
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:return: An DictNode built from the arguments
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"""
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args = mparser.ArgumentNode(self._token('dict', 'unused'))
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for key, val in value.items():
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args.set_kwarg_no_check(key, val)
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return mparser.DictNode(self._symbol('{'), args, self._symbol('}'))
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def identifier(self, value: str) -> mparser.IdNode:
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"""Build A IdNode
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:param value: the value of the boolean
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:return: A BooleanNode
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"""
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return mparser.IdNode(self._token('id', value))
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def method(self, name: str, id_: mparser.IdNode,
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pos: T.Optional[T.List[mparser.BaseNode]] = None,
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kw: T.Optional[T.Mapping[str, mparser.BaseNode]] = None,
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) -> mparser.MethodNode:
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"""Create a method call.
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:param name: the name of the method
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:param id_: the object to call the method of
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:param pos: a list of positional arguments, defaults to None
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:param kw: a dictionary of keyword arguments, defaults to None
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:return: a method call object
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"""
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args = mparser.ArgumentNode(self._token('array', 'unused'))
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if pos is not None:
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args.arguments = pos
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if kw is not None:
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args.kwargs = {self.identifier(k): v for k, v in kw.items()}
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return mparser.MethodNode(id_, self._symbol('.'), self.identifier(name), self._symbol('('), args, self._symbol(')'))
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def function(self, name: str,
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pos: T.Optional[T.List[mparser.BaseNode]] = None,
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kw: T.Optional[T.Mapping[str, mparser.BaseNode]] = None,
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) -> mparser.FunctionNode:
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"""Create a function call.
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:param name: the name of the function
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:param pos: a list of positional arguments, defaults to None
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:param kw: a dictionary of keyword arguments, defaults to None
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:return: a method call object
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"""
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args = mparser.ArgumentNode(self._token('array', 'unused'))
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if pos is not None:
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args.arguments = pos
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if kw is not None:
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args.kwargs = {self.identifier(k): v for k, v in kw.items()}
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return mparser.FunctionNode(self.identifier(name), self._symbol('('), args, self._symbol(')'))
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def equal(self, lhs: mparser.BaseNode, rhs: mparser.BaseNode) -> mparser.ComparisonNode:
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"""Create an equality operation
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:param lhs: The left hand side of the equal
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:param rhs: the right hand side of the equal
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:return: A compraison node
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"""
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return mparser.ComparisonNode('==', lhs, self._symbol('=='), rhs)
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def or_(self, lhs: mparser.BaseNode, rhs: mparser.BaseNode) -> mparser.OrNode:
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"""Create and OrNode
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:param lhs: The Left of the Node
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:param rhs: The Right of the Node
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:return: The OrNode
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"""
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return mparser.OrNode(lhs, self._symbol('or'), rhs)
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def and_(self, lhs: mparser.BaseNode, rhs: mparser.BaseNode) -> mparser.AndNode:
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"""Create an AndNode
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:param lhs: The left of the And
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:param rhs: The right of the And
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:return: The AndNode
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"""
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return mparser.AndNode(lhs, self._symbol('and'), rhs)
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def not_(self, value: mparser.BaseNode) -> mparser.NotNode:
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"""Create a not node
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:param value: The value to negate
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:return: The NotNode
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"""
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return mparser.NotNode(self._token('not', ''), self._symbol('not'), value)
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def block(self, lines: T.List[mparser.BaseNode]) -> mparser.CodeBlockNode:
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block = mparser.CodeBlockNode(self._token('node', ''))
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block.lines = lines
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return block
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