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# Copyright 2021 The Meson development team
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# SPDX-license-identifier: Apache-2.0
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from __future__ import annotations
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import re
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import os
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import typing as T
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from ...mesonlib import version_compare
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from ...interpreterbase import (
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ObjectHolder,
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MesonOperator,
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FeatureNew,
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typed_operator,
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noArgsFlattening,
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noKwargs,
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noPosargs,
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typed_pos_args,
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InvalidArguments,
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)
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if T.TYPE_CHECKING:
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# Object holders need the actual interpreter
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from ...interpreter import Interpreter
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from ...interpreterbase import TYPE_var, TYPE_kwargs
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class StringHolder(ObjectHolder[str]):
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def __init__(self, obj: str, interpreter: 'Interpreter') -> None:
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super().__init__(obj, interpreter)
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self.methods.update({
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'contains': self.contains_method,
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'startswith': self.startswith_method,
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'endswith': self.endswith_method,
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'format': self.format_method,
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'join': self.join_method,
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'replace': self.replace_method,
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'split': self.split_method,
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'strip': self.strip_method,
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'substring': self.substring_method,
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'to_int': self.to_int_method,
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'to_lower': self.to_lower_method,
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'to_upper': self.to_upper_method,
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'underscorify': self.underscorify_method,
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'version_compare': self.version_compare_method,
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})
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self.trivial_operators.update({
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# Arithmetic
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MesonOperator.PLUS: (str, lambda x: self.held_object + x),
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# Comparison
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MesonOperator.EQUALS: (str, lambda x: self.held_object == x),
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MesonOperator.NOT_EQUALS: (str, lambda x: self.held_object != x),
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MesonOperator.GREATER: (str, lambda x: self.held_object > x),
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MesonOperator.LESS: (str, lambda x: self.held_object < x),
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MesonOperator.GREATER_EQUALS: (str, lambda x: self.held_object >= x),
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MesonOperator.LESS_EQUALS: (str, lambda x: self.held_object <= x),
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})
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# Use actual methods for functions that require additional checks
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self.operators.update({
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MesonOperator.DIV: self.op_div,
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MesonOperator.INDEX: self.op_index,
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MesonOperator.IN: self.op_in,
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MesonOperator.NOT_IN: self.op_notin,
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})
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def display_name(self) -> str:
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return 'str'
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@noKwargs
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@typed_pos_args('str.contains', str)
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def contains_method(self, args: T.Tuple[str], kwargs: TYPE_kwargs) -> bool:
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return self.held_object.find(args[0]) >= 0
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@noKwargs
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@typed_pos_args('str.startswith', str)
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def startswith_method(self, args: T.Tuple[str], kwargs: TYPE_kwargs) -> bool:
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return self.held_object.startswith(args[0])
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@noKwargs
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@typed_pos_args('str.endswith', str)
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def endswith_method(self, args: T.Tuple[str], kwargs: TYPE_kwargs) -> bool:
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return self.held_object.endswith(args[0])
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@noArgsFlattening
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@noKwargs
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@typed_pos_args('str.format', varargs=object)
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def format_method(self, args: T.Tuple[T.List[object]], kwargs: TYPE_kwargs) -> str:
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arg_strings: T.List[str] = []
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for arg in args[0]:
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if isinstance(arg, bool): # Python boolean is upper case.
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arg = str(arg).lower()
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arg_strings.append(str(arg))
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def arg_replace(match: T.Match[str]) -> str:
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idx = int(match.group(1))
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if idx >= len(arg_strings):
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raise InvalidArguments(f'Format placeholder @{idx}@ out of range.')
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return arg_strings[idx]
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return re.sub(r'@(\d+)@', arg_replace, self.held_object)
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@noKwargs
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@typed_pos_args('str.join', varargs=str)
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def join_method(self, args: T.Tuple[T.List[str]], kwargs: TYPE_kwargs) -> str:
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return self.held_object.join(args[0])
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@noKwargs
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@typed_pos_args('str.replace', str, str)
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def replace_method(self, args: T.Tuple[str, str], kwargs: TYPE_kwargs) -> str:
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return self.held_object.replace(args[0], args[1])
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@noKwargs
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@typed_pos_args('str.split', optargs=[str])
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def split_method(self, args: T.Tuple[T.Optional[str]], kwargs: TYPE_kwargs) -> T.List[str]:
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return self.held_object.split(args[0])
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@noKwargs
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@typed_pos_args('str.strip', optargs=[str])
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def strip_method(self, args: T.Tuple[T.Optional[str]], kwargs: TYPE_kwargs) -> str:
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return self.held_object.strip(args[0])
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@noKwargs
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@typed_pos_args('str.substring', optargs=[int, int])
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def substring_method(self, args: T.Tuple[T.Optional[int], T.Optional[int]], kwargs: TYPE_kwargs) -> str:
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start = args[0] if args[0] is not None else 0
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end = args[1] if args[1] is not None else len(self.held_object)
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return self.held_object[start:end]
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@noKwargs
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@noPosargs
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def to_int_method(self, args: T.List[TYPE_var], kwargs: TYPE_kwargs) -> int:
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try:
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return int(self.held_object)
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except ValueError:
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raise InvalidArguments(f'String {self.held_object!r} cannot be converted to int')
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@noKwargs
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@noPosargs
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def to_lower_method(self, args: T.List[TYPE_var], kwargs: TYPE_kwargs) -> str:
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return self.held_object.lower()
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@noKwargs
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@noPosargs
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def to_upper_method(self, args: T.List[TYPE_var], kwargs: TYPE_kwargs) -> str:
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return self.held_object.upper()
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@noKwargs
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@noPosargs
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def underscorify_method(self, args: T.List[TYPE_var], kwargs: TYPE_kwargs) -> str:
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return re.sub(r'[^a-zA-Z0-9]', '_', self.held_object)
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@noKwargs
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@typed_pos_args('str.version_compare', str)
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def version_compare_method(self, args: T.Tuple[str], kwargs: TYPE_kwargs) -> bool:
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return version_compare(self.held_object, args[0])
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@staticmethod
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def _op_div(this: str, other: str) -> str:
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return os.path.join(this, other).replace('\\', '/')
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@FeatureNew('/ with string arguments', '0.49.0')
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@typed_operator(MesonOperator.DIV, str)
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def op_div(self, other: str) -> str:
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return self._op_div(self.held_object, other)
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@typed_operator(MesonOperator.INDEX, int)
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def op_index(self, other: int) -> str:
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try:
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return self.held_object[other]
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except IndexError:
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raise InvalidArguments(f'Index {other} out of bounds of string of size {len(self.held_object)}.')
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@FeatureNew('"in" string operator', '1.0.0')
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@typed_operator(MesonOperator.IN, str)
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def op_in(self, other: str) -> bool:
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return other in self.held_object
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@FeatureNew('"not in" string operator', '1.0.0')
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@typed_operator(MesonOperator.NOT_IN, str)
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def op_notin(self, other: str) -> bool:
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return other not in self.held_object
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class MesonVersionString(str):
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pass
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class MesonVersionStringHolder(StringHolder):
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@noKwargs
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@typed_pos_args('str.version_compare', str)
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def version_compare_method(self, args: T.Tuple[str], kwargs: TYPE_kwargs) -> bool:
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self.interpreter.tmp_meson_version = args[0]
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return version_compare(self.held_object, args[0])
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# These special subclasses of string exist to cover the case where a dependency
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# exports a string variable interchangeable with a system dependency. This
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# matters because a dependency can only have string-type get_variable() return
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# values. If at any time dependencies start supporting additional variable
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# types, this class could be deprecated.
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class DependencyVariableString(str):
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pass
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class DependencyVariableStringHolder(StringHolder):
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def op_div(self, other: str) -> T.Union[str, DependencyVariableString]:
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ret = super().op_div(other)
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if '..' in other:
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return ret
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return DependencyVariableString(ret)
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class OptionString(str):
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optname: str
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def __new__(cls, value: str, name: str) -> 'OptionString':
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obj = str.__new__(cls, value)
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obj.optname = name
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return obj
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def __getnewargs__(self) -> T.Tuple[str, str]: # type: ignore # because the entire point of this is to diverge
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return (str(self), self.optname)
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class OptionStringHolder(StringHolder):
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held_object: OptionString
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def op_div(self, other: str) -> T.Union[str, OptionString]:
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ret = super().op_div(other)
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name = self._op_div(self.held_object.optname, other)
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return OptionString(ret, name)
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