89e1f20975
Fixed #130 : ArithmeticOperatorParser Fixed #129 : python_wrapper : create_namespace Fixed #128 : ExpressionParser: Cannot parse func(x) infixed concept 'xxx'
265 lines
12 KiB
Python
265 lines
12 KiB
Python
import pytest
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from core.builtin_concepts import BuiltinConcepts
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from core.sheerka.services.SheerkaExecute import ParserInput
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from core.tokenizer import TokenKind
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from parsers.BaseExpressionParser import AndNode, IsAQuestionVisitor, LeftPartNotFoundError, NotNode, OrNode, \
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ParenthesisMismatchError, TrueifyVisitor, compile_disjunctions
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from parsers.BaseParser import UnexpectedEofParsingError, UnexpectedTokenParsingError
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from parsers.LogicalOperatorParser import LogicalOperatorParser
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from tests.TestUsingMemoryBasedSheerka import TestUsingMemoryBasedSheerka
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from tests.parsers.parsers_utils import AND, EXPR, NOT, OR, get_expr_node_from_test_node
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class DoNotCompareStartStopContextManager:
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def __init__(self):
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self.original_not_eq = None
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self.original_and_eq = None
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self.original_or_eq = None
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@staticmethod
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def not_eq(self, other):
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if not isinstance(other, NotNode):
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return False
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return self.node == other.node
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@staticmethod
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def and_eq(self, other):
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if not isinstance(other, AndNode):
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return False
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return self.parts == other.parts
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@staticmethod
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def or_eq(self, other):
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if not isinstance(other, OrNode):
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return False
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return self.parts == other.parts
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def __enter__(self):
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self.original_not_eq = NotNode.__eq__
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self.original_and_eq = AndNode.__eq__
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self.original_or_eq = OrNode.__eq__
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NotNode.__eq__ = self.not_eq
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AndNode.__eq__ = self.and_eq
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OrNode.__eq__ = self.or_eq
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def __exit__(self, *args):
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NotNode.__eq__ = self.original_not_eq
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AndNode.__eq__ = self.original_and_eq
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OrNode.__eq__ = self.original_or_eq
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class TestLogicalOperatorParser(TestUsingMemoryBasedSheerka):
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def init_parser(self):
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sheerka, context = self.init_concepts()
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parser = LogicalOperatorParser()
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return sheerka, context, parser
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@pytest.mark.parametrize("expression, expected", [
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("one complicated expression", EXPR("one complicated expression")),
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("function_call(a,b,c)", EXPR("function_call(a,b,c)")),
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("one expression or another expression", OR(EXPR("one expression"), EXPR("another expression"))),
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("one expression and another expression", AND(EXPR("one expression"), EXPR("another expression"))),
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("not one", NOT(EXPR("one"))),
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("one and not two", AND(EXPR("one"), NOT(EXPR("two")))),
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("not one and two", AND(NOT(EXPR("one")), EXPR("two"))),
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("one or not two", OR(EXPR("one"), NOT(EXPR("two")))),
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("not one or two", OR(NOT(EXPR("one")), EXPR("two"))),
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("one or two or three", OR(EXPR("one"), EXPR("two"), EXPR("three"))),
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("one and two and three", AND(EXPR("one"), EXPR("two"), EXPR("three"))),
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("one or two and three", OR(EXPR("one"), AND(EXPR("two"), EXPR("three")))),
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("one and two or three", OR(AND(EXPR("one"), EXPR("two")), EXPR("three"))),
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("one and (two or three)", AND(EXPR("one"), OR(EXPR("two"), EXPR("three")), source="one and (two or three)")),
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("not not one", NOT(NOT(EXPR("one")))),
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("not (one and two)", NOT(AND(EXPR("one"), EXPR("two")), source="not (one and two)")),
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("one 'and' two or three", OR(EXPR("one 'and' two"), EXPR("three"))),
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("not ((a or b) and (c or d))", NOT(AND(OR(EXPR("a"), EXPR("b")), OR(EXPR("c"), EXPR("d")),
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source="(a or b) and (c or d)"),
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source="not ((a or b) and (c or d))")),
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("not ((a and b) or (c and d))", NOT(OR(AND(EXPR("a"), EXPR("b")), AND(EXPR("c"), EXPR("d")),
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source="(a and b) or (c and d)"),
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source="not ((a and b) or (c and d))")),
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("(one and two)", AND(EXPR("one"), EXPR("two"))),
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("(one or two)", OR(EXPR("one"), EXPR("two"))),
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("(not one)", NOT(EXPR("one"))),
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])
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def test_i_can_parse_expression(self, expression, expected):
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sheerka, context, parser = self.init_parser()
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expected = get_expr_node_from_test_node(expression, expected)
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res = parser.parse(context, ParserInput(expression))
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wrapper = res.body
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expressions = res.body.body
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assert res.status
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assert sheerka.isinstance(wrapper, BuiltinConcepts.PARSER_RESULT)
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assert expressions == expected
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@pytest.mark.parametrize("expression, expected_errors", [
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("one or", [UnexpectedEofParsingError("while parsing 'or'")]),
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("one and", [UnexpectedEofParsingError("while parsing 'and'")]),
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("and one", [LeftPartNotFoundError("and", 0)]),
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("or one", [LeftPartNotFoundError("or", 0)]),
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("or", [LeftPartNotFoundError("or", 0), UnexpectedEofParsingError("while parsing 'or'")]),
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("and", [LeftPartNotFoundError("and", 0), UnexpectedEofParsingError("while parsing 'and'")]),
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])
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def test_i_can_detect_error(self, expression, expected_errors):
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sheerka, context, parser = self.init_parser()
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res = parser.parse(context, ParserInput(expression))
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assert not res.status
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assert sheerka.isinstance(res.body, BuiltinConcepts.ERROR)
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assert res.body.body == expected_errors
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def test_i_can_detect_unexpected_not_error(self):
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sheerka, context, parser = self.init_parser()
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expression = "a cat is not a human"
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res = parser.parse(context, ParserInput(expression))
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assert not res.status
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assert sheerka.isinstance(res.body, BuiltinConcepts.ERROR)
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assert isinstance(res.body.body[0], UnexpectedTokenParsingError)
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@pytest.mark.parametrize("expression, expected_error, parenthesis_type, index", [
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("(", BuiltinConcepts.NOT_FOR_ME, TokenKind.LPAR, 0),
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(")", BuiltinConcepts.NOT_FOR_ME, TokenKind.RPAR, 0),
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("one and two(", BuiltinConcepts.ERROR, TokenKind.LPAR, 11),
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("one (", BuiltinConcepts.NOT_FOR_ME, TokenKind.LPAR, 4),
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("one (and", BuiltinConcepts.NOT_FOR_ME, TokenKind.LPAR, 4),
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("one and two)", BuiltinConcepts.ERROR, TokenKind.RPAR, 11),
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("one )", BuiltinConcepts.ERROR, TokenKind.RPAR, 4),
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("one ) and", BuiltinConcepts.ERROR, TokenKind.RPAR, 4),
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])
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def test_i_can_detect_unbalanced_parenthesis(self, expression, expected_error, parenthesis_type, index):
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sheerka, context, parser = self.init_parser()
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res = parser.parse(context, ParserInput(expression))
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assert not res.status
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if expected_error == BuiltinConcepts.NOT_FOR_ME:
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assert sheerka.isinstance(res.body, BuiltinConcepts.NOT_FOR_ME)
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assert isinstance(res.body.reason[0], ParenthesisMismatchError)
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assert res.body.reason[0].token.type == parenthesis_type
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assert res.body.reason[0].token.index == index
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else:
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assert sheerka.isinstance(res.body, BuiltinConcepts.ERROR)
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assert isinstance(res.body.body[0], ParenthesisMismatchError)
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assert res.body.body[0].token.type == parenthesis_type
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assert res.body.body[0].token.index == index
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def test_i_can_detect_empty_expression(self):
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sheerka, context, parser = self.init_parser()
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res = parser.parse(context, ParserInput(""))
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assert not res.status
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assert sheerka.isinstance(res.body, BuiltinConcepts.IS_EMPTY)
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@pytest.mark.parametrize("expression, to_trueify, to_skip, expected", [
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("a", ["b"], ["a"], "a"),
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("b", ["b"], ["a"], "True"),
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("a and b", ["b"], ["a"], "a and True"),
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("b or a", ["b"], ["a"], "True or a"),
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("isinstance(b, str)", ["b"], ["a"], "True"),
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("isinstance(b, str) or instance(a, str)", ["b"], ["a"], "True or instance(a, str)"),
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("a and b or c", ["b", "c"], ["a"], "a and True or True"),
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("a + b or a + c", ["b", "c"], ["a"], "a + b or a + c"),
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])
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def test_i_can_trueify(self, expression, to_trueify, to_skip, expected):
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sheerka, context, parser = self.init_parser()
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expr_node = parser.parse(context, ParserInput(expression)).body.body
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translated_node = TrueifyVisitor(to_trueify, to_skip).visit(expr_node)
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assert str(translated_node) == expected
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@pytest.mark.parametrize("expression, expected", [
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("foo", None),
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("", None),
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("is_question()", True),
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(" is_question() ", True),
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("is_question ( ) ", True),
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("is _question()", None),
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("is_ question()", None),
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("is _ question()", None),
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("context.in_context(BuiltinConcepts.EVAL_QUESTION_REQUESTED)", True),
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("not is_question()", False),
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("not context.in_context(BuiltinConcepts.EVAL_QUESTION_REQUESTED)", False),
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("not foo", None),
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("not is_question() and not is_question()", False),
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("not is_question() and is_question()", False),
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("not is_question() and foo", False),
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("is_question() and not is_question()", False),
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("is_question() and is_question()", True),
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("is_question() and foo", True),
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("foo and not is_question()", False),
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("foo and is_question()", True),
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("foo and bar", None),
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("not is_question() or not is_question()", False),
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("not is_question() or is_question()", True),
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("not is_question() or foo", False),
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("is_question() or not is_question()", True),
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("is_question() or is_question()", True),
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("is_question() or foo", True),
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("foo or not is_question()", False),
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("foo or is_question()", True),
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("foo or bar", None),
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])
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def test_is_a_question(self, expression, expected):
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sheerka, context, parser = self.init_parser()
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expr_node = parser.parse(context, ParserInput(expression)).body.body
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assert IsAQuestionVisitor().visit(expr_node) == expected
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@pytest.mark.parametrize("expression, expected", [
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("a", [EXPR("a")]),
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("a and b and c", [AND(EXPR("a"), EXPR("b"), EXPR("c"))]),
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("a or b or c", [EXPR("a"),
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EXPR("b"),
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EXPR("c")]),
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("a and b or c", [AND(EXPR("a"), EXPR("b")), EXPR("c")]),
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("a or b and c", [EXPR("a"),
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AND(EXPR("b"), EXPR("c"))]),
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("(a or b) and c", [AND(EXPR("a"), EXPR("c")),
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AND(EXPR("b"), EXPR("c"))]),
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("a or (b or c) and d", [EXPR("a"),
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AND(EXPR("b"), EXPR("d")),
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AND(EXPR("c"), EXPR("d"))]),
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("not a", [NOT(EXPR("a"))]),
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("not (a and b)", [NOT(AND(EXPR("a"), EXPR("b")))]),
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("not (a or b)", [AND(NOT(EXPR("a")), NOT(EXPR("b")))]),
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("(a or b) and not (c or d)", [AND(EXPR("a"), NOT(EXPR("c")), NOT(EXPR("d"))),
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AND(EXPR("b"), NOT(EXPR("c")), NOT(EXPR("d")))]),
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("(a or b) or not (c or d)", [EXPR("a"),
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EXPR("b"),
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AND(NOT(EXPR("c")), NOT(EXPR("d")))]),
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("(a and b) and not (c or d)", [AND(EXPR("a"), EXPR("b"), NOT(EXPR("c")), NOT(EXPR("d")))]),
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("(a and b) or not (c or d)", [AND(EXPR("a"), EXPR("b")),
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AND(NOT(EXPR("c")), NOT(EXPR("d")))]),
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("a and (b and c)", [AND(EXPR("a"), EXPR("b"), EXPR("c"))]),
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("a or (b or c)", [EXPR("a"),
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EXPR("b"),
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EXPR("c")]),
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("a and b and not c", [AND(EXPR("a"), EXPR("b"), NOT(EXPR("c")))]),
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("not a and b", [AND(NOT(EXPR("a")), EXPR("b"))]),
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("not a and not b", [AND(NOT(EXPR("a")), NOT(EXPR("b")))]),
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("not a or not b", [NOT(EXPR("a")),
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NOT(EXPR("b"))]),
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])
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def test_i_can_compile_disjunction(self, expression, expected):
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sheerka, context, parser = self.init_parser()
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resolved_expected = [get_expr_node_from_test_node(expression, e) for e in expected]
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expr_node = parser.parse(context, ParserInput(expression)).body.body
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with DoNotCompareStartStopContextManager():
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res = compile_disjunctions(expr_node)
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assert res == resolved_expected
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