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* Removes erroneous explanation of the `global` statement restrictions; a name declared as global can be subsequently bound using any kind of name binding operation. * Updates `test_global.py` to also test various name-binding scenarios for global variables to ensure correct behavior
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@ -966,25 +966,14 @@ The :keyword:`!global` statement
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.. productionlist:: python-grammar
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global_stmt: "global" `identifier` ("," `identifier`)*
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The :keyword:`global` statement is a declaration which holds for the entire
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current code block. It means that the listed identifiers are to be interpreted
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as globals. It would be impossible to assign to a global variable without
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The :keyword:`global` causes the listed identifiers to be interpreted
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as globals. It would be impossible to assign to a global variable without
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:keyword:`!global`, although free variables may refer to globals without being
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declared global.
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Names listed in a :keyword:`global` statement must not be used in the same code
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block textually preceding that :keyword:`!global` statement.
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Names listed in a :keyword:`global` statement must not be defined as formal
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parameters, or as targets in :keyword:`with` statements or :keyword:`except` clauses, or in a :keyword:`for` target list, :keyword:`class`
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definition, function definition, :keyword:`import` statement, or
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:term:`variable annotations <variable annotation>`.
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.. impl-detail::
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The current implementation does not enforce some of these restrictions, but
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programs should not abuse this freedom, as future implementations may enforce
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them or silently change the meaning of the program.
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The global statement applies to the entire scope of a function or
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class body. A :exc:`SyntaxError` is raised if a variable is used or
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assigned to prior to its global declaration in the scope.
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.. index::
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pair: built-in function; exec
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@ -1,7 +1,19 @@
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"""Verify that warnings are issued for global statements following use."""
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"""This module includes tests for syntax errors that occur when a name
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declared as `global` is used in ways that violate the language
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specification, such as after assignment, usage, or annotation. The tests
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verify that syntax errors are correctly raised for improper `global`
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statements following variable use or assignment within functions.
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Additionally, it tests various name-binding scenarios for global
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variables to ensure correct behavior.
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See `test_scope.py` for additional related behavioral tests covering
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variable scoping and usage in different contexts.
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"""
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import contextlib
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from test.support import check_syntax_error
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from test.support.warnings_helper import check_warnings
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from types import SimpleNamespace
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import unittest
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import warnings
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@ -12,40 +24,185 @@ class GlobalTests(unittest.TestCase):
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self.enterContext(check_warnings())
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warnings.filterwarnings("error", module="<test string>")
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def test1(self):
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prog_text_1 = """\
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def wrong1():
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a = 1
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b = 2
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global a
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global b
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"""
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check_syntax_error(self, prog_text_1, lineno=4, offset=5)
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######################################################
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### Syntax error cases as covered in Python/symtable.c
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######################################################
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def test2(self):
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prog_text_2 = """\
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def wrong2():
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print(x)
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global x
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def test_name_param(self):
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prog_text = """\
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def fn(name_param):
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global name_param
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"""
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check_syntax_error(self, prog_text_2, lineno=3, offset=5)
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check_syntax_error(self, prog_text, lineno=2, offset=5)
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def test3(self):
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def test_name_after_assign(self):
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prog_text = """\
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def fn():
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name_assign = 1
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global name_assign
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"""
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check_syntax_error(self, prog_text, lineno=3, offset=5)
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def test_name_after_use(self):
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prog_text = """\
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def fn():
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print(name_use)
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global name_use
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"""
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check_syntax_error(self, prog_text, lineno=3, offset=5)
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def test_name_annot(self):
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prog_text_3 = """\
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def wrong3():
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print(x)
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x = 2
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global x
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def fn():
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name_annot: int
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global name_annot
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"""
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check_syntax_error(self, prog_text_3, lineno=4, offset=5)
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check_syntax_error(self, prog_text_3, lineno=3, offset=5)
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def test4(self):
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prog_text_4 = """\
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global x
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x = 2
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"""
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# this should work
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compile(prog_text_4, "<test string>", "exec")
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#############################################################
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### Tests for global variables across all name binding cases,
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### as described in executionmodel.rst
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#############################################################
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def test_assignment_statement(self):
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global name_assignment_statement
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value = object()
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name_assignment_statement = value
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self.assertIs(globals()["name_assignment_statement"], value)
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del name_assignment_statement
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def test_unpacking_assignment(self):
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global name_unpacking_assignment
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value = object()
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_, name_unpacking_assignment = [None, value]
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self.assertIs(globals()["name_unpacking_assignment"], value)
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del name_unpacking_assignment
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def test_assignment_expression(self):
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global name_assignment_expression
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value = object()
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if name_assignment_expression := value:
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pass
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self.assertIs(globals()["name_assignment_expression"], value)
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del name_assignment_expression
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def test_iteration_variable(self):
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global name_iteration_variable
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value = object()
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for name_iteration_variable in [value]:
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pass
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self.assertIs(globals()["name_iteration_variable"], value)
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del name_iteration_variable
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def test_func_def(self):
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global name_func_def
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def name_func_def():
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pass
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value = name_func_def
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self.assertIs(globals()["name_func_def"], value)
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del name_func_def
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def test_class_def(self):
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global name_class_def
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class name_class_def:
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pass
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value = name_class_def
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self.assertIs(globals()["name_class_def"], value)
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del name_class_def
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def test_type_alias(self):
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global name_type_alias
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type name_type_alias = tuple[int, int]
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value = name_type_alias
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self.assertIs(globals()["name_type_alias"], value)
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del name_type_alias
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def test_caught_exception(self):
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global name_caught_exc
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try:
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1 / 0
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except ZeroDivisionError as name_caught_exc:
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value = name_caught_exc
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# `name_caught_exc` is cleared automatically after the except block
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self.assertIs(globals()["name_caught_exc"], value)
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def test_caught_exception_group(self):
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global name_caught_exc_group
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try:
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try:
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1 / 0
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except ZeroDivisionError as exc:
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raise ExceptionGroup("eg", [exc])
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except* ZeroDivisionError as name_caught_exc_group:
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value = name_caught_exc_group
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# `name_caught_exc` is cleared automatically after the except block
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self.assertIs(globals()["name_caught_exc_group"], value)
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def test_enter_result(self):
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global name_enter_result
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value = object()
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with contextlib.nullcontext(value) as name_enter_result:
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pass
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self.assertIs(globals()["name_enter_result"], value)
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del name_enter_result
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def test_import_result(self):
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global name_import_result
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value = contextlib
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import contextlib as name_import_result
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self.assertIs(globals()["name_import_result"], value)
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del name_import_result
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def test_match(self):
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global name_match
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value = object()
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match value:
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case name_match:
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pass
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self.assertIs(globals()["name_match"], value)
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del name_match
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def test_match_as(self):
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global name_match_as
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value = object()
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match value:
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case _ as name_match_as:
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pass
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self.assertIs(globals()["name_match_as"], value)
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del name_match_as
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def test_match_seq(self):
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global name_match_seq
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value = object()
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match (None, value):
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case (_, name_match_seq):
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pass
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self.assertIs(globals()["name_match_seq"], value)
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del name_match_seq
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def test_match_map(self):
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global name_match_map
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value = object()
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match {"key": value}:
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case {"key": name_match_map}:
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pass
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self.assertIs(globals()["name_match_map"], value)
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del name_match_map
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def test_match_attr(self):
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global name_match_attr
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value = object()
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match SimpleNamespace(key=value):
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case SimpleNamespace(key=name_match_attr):
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pass
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self.assertIs(globals()["name_match_attr"], value)
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del name_match_attr
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def setUpModule():
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