2024-10-17 00:08:24 +00:00
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"""
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* LogarithmPlotter - 2D plotter software to make BODE plots, sequences and distribution functions.
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* Copyright (C) 2021-2024 Ad5001
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*
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* This program is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation, either version 3 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program. If not, see <https://www.gnu.org/licenses/>.
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"""
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from typing import Callable, Self
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from .base import Assertion, repr_, AssertionInterface
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from .int import NumberComparisonAssertionInterface
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2024-10-17 01:38:36 +00:00
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PRINT_PREFIX = (" " * 3)
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2024-10-17 00:08:24 +00:00
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class SpyAssertion(Assertion):
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def __init__(self, assertion: bool, message: str, calls: list, invert: bool):
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super().__init__(assertion, message + "\n", invert)
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if len(calls) > 0:
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self.message += self.render_calls(calls)
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else:
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self.message += f"{PRINT_PREFIX}0 registered calls."
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def render_calls(self, calls):
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lines = [f"{PRINT_PREFIX}{len(calls)} registered call(s):"]
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for call in calls:
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repr_args = [repr_(arg) for arg in call[0]]
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repr_kwargs = [f"{key}={repr_(arg)}" for key, arg in call[1].items()]
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lines.append(f" - {', '.join([*repr_args, *repr_kwargs])}")
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return ("\n" + PRINT_PREFIX).join(lines)
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class Methods:
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AT_LEAST_ONCE = "AT_LEAST_ONCE"
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EXACTLY = "EXACTLY"
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AT_LEAST = "AT_LEAST"
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AT_MOST = "AT_MOST"
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MORE_THAN = "MORE_THAN"
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LESS_THAN = "LESS_THAN"
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class CalledInterface(NumberComparisonAssertionInterface):
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"""
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Internal class generated by Spy.called.
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"""
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def __init__(self, calls: list[tuple[list, dict]], parent: AssertionInterface):
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super().__init__(len(calls), parent)
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self.__calls = calls
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self.__method = Methods.AT_LEAST_ONCE
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def __apply_method(self, calls):
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required = None if self._compare_stack == [] else self._generate_compare_to()
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calls_count = len(calls)
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match self.__method:
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case Methods.AT_LEAST_ONCE:
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compare = len(calls) >= 1
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error = f"Method was not called"
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case Methods.EXACTLY:
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compare = len(calls) == required
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error = f"Method was not called {required} times ({required} != {calls_count})"
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case Methods.AT_LEAST:
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compare = len(calls) >= required
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error = f"Method was not called at least {required} times ({required} >= {calls_count})"
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case Methods.AT_MOST:
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compare = len(calls) <= required
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error = f"Method was not called at most {required} times ({required} <= {calls_count})"
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case Methods.MORE_THAN:
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compare = len(calls) > required
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error = f"Method was not called more than {required} times ({required} > {calls_count})"
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case Methods.LESS_THAN:
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compare = len(calls) < required
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error = f"Method was not called less than {required} times ({required} < {calls_count})"
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case _:
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raise RuntimeError(f"Unknown method {self.__method}.")
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return compare, error
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def __bool__(self) -> bool:
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"""
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Converts to boolean on assertion.
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"""
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compare, error = self.__apply_method(self.__calls)
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return bool(SpyAssertion(compare, error + ".", self.__calls, self._not))
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"""
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Chaining methods
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"""
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def __call__(self, compare_to: int) -> Self:
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super().__call__(compare_to)
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if self.__method == Methods.AT_LEAST_ONCE:
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self.__method = Methods.EXACTLY
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return self
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@property
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def at_least(self) -> Self:
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if self.__method == Methods.AT_LEAST_ONCE:
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self.__method = Methods.AT_LEAST
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else:
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raise RuntimeError(f"Cannot redefine method from {self.__method} to {Methods.AT_MOST}")
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return self
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@property
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def at_most(self) -> Self:
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if self.__method == Methods.AT_LEAST_ONCE:
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self.__method = Methods.AT_MOST
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else:
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raise RuntimeError(f"Cannot redefine method from {self.__method} to {Methods.AT_MOST}")
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return self
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@property
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def more_than(self) -> Self:
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if self.__method == Methods.AT_LEAST_ONCE:
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self.__method = Methods.MORE_THAN
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else:
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raise RuntimeError(f"Cannot redefine method from {self.__method} to {Methods.MORE_THAN}")
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return self
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@property
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def less_than(self) -> Self:
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if self.__method == Methods.AT_LEAST_ONCE:
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self.__method = Methods.LESS_THAN
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else:
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raise RuntimeError(f"Cannot redefine method from {self.__method} to {Methods.LESS_THAN}")
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return self
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@property
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def time(self) -> Self:
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return self
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@property
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def times(self) -> Self:
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return self
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"""
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Class properties.
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"""
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def __match_calls_for_condition(self, condition: Callable[[list, dict], bool]) -> tuple[bool, str]:
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calls = []
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for call in self.__calls:
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if condition(call[0], call[1]):
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calls.append(call)
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compare, error = self.__apply_method(calls)
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return compare, error
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def with_arguments(self, *args, **kwargs) -> SpyAssertion:
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"""
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Checks if the Spy has been called the given number of times
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with at least the given arguments.
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"""
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def some_args_matched(a, kw):
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args_matched = all((
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arg in a
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for arg in args
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))
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kwargs_matched = all((
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key in kw and kw[key] == arg
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for key, arg in kwargs.items()
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))
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return args_matched and kwargs_matched
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compare, error = self.__match_calls_for_condition(some_args_matched)
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repr_args = ', '.join([repr(arg) for arg in args])
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repr_kwargs = ', '.join([f"{key}={repr(arg)}" for key, arg in kwargs.items()])
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msg = f"{error} with arguments ({repr_args}) and keyword arguments ({repr_kwargs})."
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return SpyAssertion(compare, msg, self.__calls, self._not)
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def with_arguments_matching(self, test_condition: Callable[[list, dict], bool]) -> SpyAssertion:
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"""
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Checks if the Spy has been called the given number of times
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with arguments matching the given conditions.
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"""
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compare, error = self.__match_calls_for_condition(test_condition)
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msg = f"{error} with arguments matching given conditions."
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return SpyAssertion(compare, msg, self.__calls, self._not)
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def with_exact_arguments(self, *args, **kwargs) -> SpyAssertion:
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"""
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Checks if the Spy has been called the given number of times
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with all the given arguments.
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"""
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compare, error = self.__match_calls_for_condition(lambda a, kw: a == args and kw == kwargs)
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repr_args = ', '.join([repr(arg) for arg in args])
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repr_kwargs = ', '.join([f"{key}={repr(arg)}" for key, arg in kwargs.items()])
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msg = f"{error} with exact arguments ({repr_args}) and keyword arguments ({repr_kwargs})."
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return SpyAssertion(compare, msg, self.__calls, self._not)
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def with_no_argument(self) -> SpyAssertion:
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"""
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Checks if the Spy has been called the given number of times
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with all the given arguments.
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"""
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compare, error = self.__match_calls_for_condition(lambda a, kw: len(a) == 0 and len(kw) == 0)
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return SpyAssertion(compare, f"{error} with no arguments.", self.__calls, self._not)
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class SpyAssertionInterface(AssertionInterface):
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@property
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def called(self) -> CalledInterface:
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"""
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Returns a boolean-able interface to check conditions for a given number of
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time the spy was called.
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"""
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return CalledInterface(self._value.calls, self)
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