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274 lines
7.1 KiB
274 lines
7.1 KiB
# SPDX-License-Identifier: Apache-2.0 |
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# Copyright © 2022-2023 Intel Corporation |
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"""Rust CFG parser. |
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Rust uses its `cfg()` format in cargo. |
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This may have the following functions: |
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- all() |
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- any() |
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- not() |
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And additionally is made up of `identifier [ = str]`. Where the str is optional, |
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so you could have examples like: |
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``` |
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[target.`cfg(unix)`.dependencies] |
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[target.'cfg(target_arch = "x86_64")'.dependencies] |
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[target.'cfg(all(target_arch = "x86_64", target_arch = "x86"))'.dependencies] |
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``` |
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""" |
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from __future__ import annotations |
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import dataclasses |
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import enum |
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import functools |
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import typing as T |
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from . import builder |
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from .. import mparser |
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from ..mesonlib import MesonBugException |
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if T.TYPE_CHECKING: |
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_T = T.TypeVar('_T') |
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_LEX_TOKEN = T.Tuple['TokenType', T.Optional[str]] |
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_LEX_STREAM = T.Iterable[_LEX_TOKEN] |
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_LEX_STREAM_AH = T.Iterator[T.Tuple[_LEX_TOKEN, T.Optional[_LEX_TOKEN]]] |
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class TokenType(enum.Enum): |
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LPAREN = enum.auto() |
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RPAREN = enum.auto() |
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STRING = enum.auto() |
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IDENTIFIER = enum.auto() |
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ALL = enum.auto() |
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ANY = enum.auto() |
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NOT = enum.auto() |
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COMMA = enum.auto() |
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EQUAL = enum.auto() |
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def lexer(raw: str) -> _LEX_STREAM: |
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"""Lex a cfg() expression. |
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:param raw: The raw cfg() expression |
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:return: An iterable of tokens |
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""" |
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buffer: T.List[str] = [] |
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is_string: bool = False |
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for s in raw: |
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if s.isspace() or s in {')', '(', ',', '='} or (s == '"' and buffer): |
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val = ''.join(buffer) |
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buffer.clear() |
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if is_string: |
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yield (TokenType.STRING, val) |
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elif val == 'any': |
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yield (TokenType.ANY, None) |
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elif val == 'all': |
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yield (TokenType.ALL, None) |
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elif val == 'not': |
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yield (TokenType.NOT, None) |
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elif val: |
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yield (TokenType.IDENTIFIER, val) |
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if s == '(': |
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yield (TokenType.LPAREN, None) |
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continue |
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elif s == ')': |
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yield (TokenType.RPAREN, None) |
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continue |
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elif s == ',': |
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yield (TokenType.COMMA, None) |
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continue |
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elif s == '=': |
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yield (TokenType.EQUAL, None) |
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continue |
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elif s.isspace(): |
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continue |
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if s == '"': |
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is_string = not is_string |
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else: |
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buffer.append(s) |
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if buffer: |
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# This should always be an identifier |
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yield (TokenType.IDENTIFIER, ''.join(buffer)) |
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def lookahead(iter: T.Iterator[_T]) -> T.Iterator[T.Tuple[_T, T.Optional[_T]]]: |
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"""Get the current value of the iterable, and the next if possible. |
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:param iter: The iterable to look into |
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:yield: A tuple of the current value, and, if possible, the next |
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:return: nothing |
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""" |
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current: _T |
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next_: T.Optional[_T] |
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try: |
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next_ = next(iter) |
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except StopIteration: |
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# This is an empty iterator, there's nothing to look ahead to |
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return |
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while True: |
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current = next_ |
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try: |
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next_ = next(iter) |
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except StopIteration: |
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next_ = None |
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yield current, next_ |
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if next_ is None: |
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break |
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@dataclasses.dataclass |
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class IR: |
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"""Base IR node for Cargo CFG.""" |
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@dataclasses.dataclass |
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class String(IR): |
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value: str |
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@dataclasses.dataclass |
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class Identifier(IR): |
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value: str |
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@dataclasses.dataclass |
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class Equal(IR): |
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lhs: IR |
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rhs: IR |
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@dataclasses.dataclass |
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class Any(IR): |
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args: T.List[IR] |
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@dataclasses.dataclass |
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class All(IR): |
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args: T.List[IR] |
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@dataclasses.dataclass |
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class Not(IR): |
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value: IR |
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def _parse(ast: _LEX_STREAM_AH) -> IR: |
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(token, value), n_stream = next(ast) |
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if n_stream is not None: |
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ntoken, _ = n_stream |
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else: |
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ntoken, _ = (None, None) |
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stream: T.List[_LEX_TOKEN] |
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if token is TokenType.IDENTIFIER: |
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if ntoken is TokenType.EQUAL: |
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return Equal(Identifier(value), _parse(ast)) |
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if token is TokenType.STRING: |
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return String(value) |
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if token is TokenType.EQUAL: |
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# In this case the previous caller already has handled the equal |
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return _parse(ast) |
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if token in {TokenType.ANY, TokenType.ALL}: |
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type_ = All if token is TokenType.ALL else Any |
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assert ntoken is TokenType.LPAREN |
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next(ast) # advance the iterator to get rid of the LPAREN |
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stream = [] |
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args: T.List[IR] = [] |
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while token is not TokenType.RPAREN: |
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(token, value), _ = next(ast) |
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if token is TokenType.COMMA: |
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args.append(_parse(lookahead(iter(stream)))) |
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stream.clear() |
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else: |
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stream.append((token, value)) |
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if stream: |
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args.append(_parse(lookahead(iter(stream)))) |
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return type_(args) |
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if token is TokenType.NOT: |
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next(ast) # advance the iterator to get rid of the LPAREN |
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stream = [] |
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# Mypy can't figure out that token is overridden inside the while loop |
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while token is not TokenType.RPAREN: # type: ignore |
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(token, value), _ = next(ast) |
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stream.append((token, value)) |
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return Not(_parse(lookahead(iter(stream)))) |
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raise MesonBugException(f'Unhandled Cargo token: {token}') |
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def parse(ast: _LEX_STREAM) -> IR: |
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"""Parse the tokenized list into Meson AST. |
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:param ast: An iterable of Tokens |
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:return: An mparser Node to be used as a conditional |
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""" |
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ast_i: _LEX_STREAM_AH = lookahead(iter(ast)) |
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return _parse(ast_i) |
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@functools.singledispatch |
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def ir_to_meson(ir: T.Any, build: builder.Builder) -> mparser.BaseNode: |
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raise NotImplementedError |
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@ir_to_meson.register |
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def _(ir: String, build: builder.Builder) -> mparser.BaseNode: |
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return build.string(ir.value) |
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@ir_to_meson.register |
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def _(ir: Identifier, build: builder.Builder) -> mparser.BaseNode: |
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host_machine = build.identifier('host_machine') |
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if ir.value == "target_arch": |
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return build.method('cpu_family', host_machine) |
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elif ir.value in {"target_os", "target_family"}: |
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return build.method('system', host_machine) |
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elif ir.value == "target_endian": |
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return build.method('endian', host_machine) |
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raise MesonBugException(f"Unhandled Cargo identifier: {ir.value}") |
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@ir_to_meson.register |
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def _(ir: Equal, build: builder.Builder) -> mparser.BaseNode: |
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return build.equal(ir_to_meson(ir.lhs, build), ir_to_meson(ir.rhs, build)) |
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@ir_to_meson.register |
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def _(ir: Not, build: builder.Builder) -> mparser.BaseNode: |
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return build.not_(ir_to_meson(ir.value, build)) |
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@ir_to_meson.register |
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def _(ir: Any, build: builder.Builder) -> mparser.BaseNode: |
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args = iter(reversed(ir.args)) |
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last = next(args) |
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cur = build.or_(ir_to_meson(next(args), build), ir_to_meson(last, build)) |
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for a in args: |
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cur = build.or_(ir_to_meson(a, build), cur) |
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return cur |
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@ir_to_meson.register |
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def _(ir: All, build: builder.Builder) -> mparser.BaseNode: |
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args = iter(reversed(ir.args)) |
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last = next(args) |
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cur = build.and_(ir_to_meson(next(args), build), ir_to_meson(last, build)) |
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for a in args: |
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cur = build.and_(ir_to_meson(a, build), cur) |
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return cur
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