AdithyaSK's picture
AdithyaSK HF Staff
Publish 100 swe_next Harbor tasks
d40299b verified
Raw History Blame Contribute Delete
27.2 kB
# This file is dual licensed under the terms of the Apache License, Version
# 2.0, and the BSD License. See the LICENSE file in the root of this repository
# for complete details.
from __future__ import annotations
import pytest
from hypothesis import assume, given
from hypothesis import strategies as st
from packaging.specifiers import InvalidSpecifier, Specifier, SpecifierSet
from packaging.version import Version
from tests.property.strategies import (
SETTINGS,
multi_segment_versions,
nonlocal_versions,
ops,
pep440_versions,
release_versions,
small_ints,
versions_with_local,
)
pytestmark = pytest.mark.property
class TestSpecifierCommaIsAnd:
"""The comma (",") is equivalent to a logical **and** operator: a candidate
version must match all given version clauses in order to match the
specifier as a whole."""
@given(version=release_versions())
@SETTINGS
def test_comma_separated_is_conjunction(self, version: Version) -> None:
"""A version matches a multi-clause specifier iff it matches every clause."""
clauses = [f">={version}", f"<={version}"]
combined = SpecifierSet(",".join(clauses))
individual = [SpecifierSet(c) for c in clauses]
matches_all = all(version in s for s in individual)
assert (version in combined) == matches_all
@given(candidate=pep440_versions(), data=st.data())
@SETTINGS
def test_adding_clause_can_only_narrow(
self, candidate: Version, data: st.DataObject
) -> None:
"""Adding a clause to a specifier set can never cause a previously
excluded version to start matching."""
base_op = data.draw(ops)
base_ver = data.draw(release_versions())
extra_op = data.draw(ops)
extra_ver = data.draw(release_versions())
base_spec = SpecifierSet(f"{base_op}{base_ver}")
combined = SpecifierSet(f"{base_op}{base_ver},{extra_op}{extra_ver}")
if candidate in combined:
assert candidate in base_spec
@given(
first_op=ops,
first_ver=release_versions(),
second_op=ops,
second_ver=release_versions(),
candidate=pep440_versions(),
)
@SETTINGS
def test_intersection_is_idempotent(
self,
first_op: str,
first_ver: Version,
second_op: str,
second_ver: Version,
candidate: Version,
) -> None:
"""(A & B) & B accepts the same versions as A & B."""
combined = SpecifierSet(f"{first_op}{first_ver},{second_op}{second_ver}")
combined_double = SpecifierSet(
f"{first_op}{first_ver},{second_op}{second_ver},{second_op}{second_ver}"
)
assert combined.contains(
candidate, prereleases=True
) == combined_double.contains(candidate, prereleases=True)
@given(
first_op=ops,
first_ver=release_versions(),
second_op=ops,
second_ver=release_versions(),
third_op=ops,
third_ver=release_versions(),
candidate=pep440_versions(),
)
@SETTINGS
def test_intersection_is_associative(
self,
first_op: str,
first_ver: Version,
second_op: str,
second_ver: Version,
third_op: str,
third_ver: Version,
candidate: Version,
) -> None:
"""(A & B) & C accepts the same versions as A & (B & C)."""
combined = SpecifierSet(
f"{first_op}{first_ver},{second_op}{second_ver},{third_op}{third_ver}"
)
# Since comma is AND regardless of grouping, any ordering
# of the same clauses must agree on containment.
assert (candidate in combined) == (
SpecifierSet(f"{first_op}{first_ver}").contains(candidate, prereleases=True)
and SpecifierSet(f"{second_op}{second_ver}").contains(
candidate, prereleases=True
)
and SpecifierSet(f"{third_op}{third_ver}").contains(
candidate, prereleases=True
)
)
class TestSpecifierWhitespace:
"""Whitespace between a conditional operator and the following version
identifier is optional, as is the whitespace around the commas."""
@given(spec_ver=release_versions(), spaces=st.integers(min_value=0, max_value=3))
@SETTINGS
def test_whitespace_between_op_and_version(
self, spec_ver: Version, spaces: int
) -> None:
"""Whitespace between operator and version doesn't change semantics."""
ws = " " * spaces
spec_no_ws = Specifier(f"=={spec_ver}")
spec_ws = Specifier(f"=={ws}{spec_ver}")
assert spec_no_ws == spec_ws
@given(
v1=release_versions(),
v2=release_versions(),
spaces=st.integers(min_value=0, max_value=3),
)
@SETTINGS
def test_whitespace_around_commas(
self, v1: Version, v2: Version, spaces: int
) -> None:
"""Whitespace around commas doesn't change semantics."""
ws = " " * spaces
spec_no_ws = SpecifierSet(f">={v1},<={v2}")
spec_ws = SpecifierSet(f">={v1}{ws},{ws}<={v2}")
assert spec_no_ws == spec_ws
class TestLocalVersionIgnoredInSpecifiers:
"""Except where specifically noted below, local version identifiers MUST NOT be
permitted in version specifiers, and local version labels MUST be ignored
entirely when checking if candidate versions match a given version
specifier."""
@given(version=versions_with_local())
@SETTINGS
def test_local_ignored_for_ordering_specifiers(self, version: Version) -> None:
"""A version with a local label matches >= and <= on its public version."""
public = Version(str(version).split("+")[0])
spec = SpecifierSet(f">={public}")
assert version in spec
@given(version=versions_with_local())
@SETTINGS
def test_local_ignored_for_gt(self, version: Version) -> None:
"""Local labels are stripped before comparison for > specifiers."""
public = Version(str(version).split("+")[0])
# version's local is ignored, so it compares as public; public is not > public
spec = Specifier(f">{public}")
assert version not in spec
@given(version=versions_with_local())
@SETTINGS
def test_local_ignored_for_lt(self, version: Version) -> None:
"""Local labels are stripped before comparison for < specifiers."""
public = Version(str(version).split("+")[0])
spec = Specifier(f"<{public}")
assert version not in spec
@given(spec_ver=release_versions(), local=st.integers(min_value=0, max_value=5))
@SETTINGS
def test_local_not_permitted_in_ordering_specifiers(
self, spec_ver: Version, local: int
) -> None:
"""Local version identifiers must not be permitted in
>=, <=, >, < specifiers."""
local_str = f"+local{local}"
for op in [">=", "<=", ">", "<"]:
with pytest.raises(InvalidSpecifier):
Specifier(f"{op}{spec_ver}{local_str}")
class TestCompatibleReleaseDefinition:
"""A compatible release clause consists of the compatible release operator ``~=``
and a version identifier. It matches any candidate version that is expected
to be compatible with the specified version."""
@given(spec_ver=multi_segment_versions(), candidate=pep440_versions())
@SETTINGS
def test_compatible_release_matches_expected_compatible(
self, spec_ver: Version, candidate: Version
) -> None:
"""~=V matches candidate iff candidate >= V and candidate matches the
prefix wildcard derived from V."""
assume(spec_ver.epoch == candidate.epoch)
spec = Specifier(f"~={spec_ver}")
result = candidate in spec
# Also check via the expanded form
release = spec_ver.release
prefix = ".".join(str(s) for s in release[:-1])
epoch_prefix = f"{spec_ver.epoch}!" if spec_ver.epoch else ""
expanded = SpecifierSet(f">={spec_ver},=={epoch_prefix}{prefix}.*")
expanded_result = candidate in expanded
assert result == expanded_result
class TestCompatibleReleaseNoLocal:
"""The specified version identifier must be in the standard format described in
`Version scheme`_. Local version identifiers are NOT permitted in this
version specifier."""
@given(spec_ver=release_versions(), local=st.integers(min_value=0, max_value=5))
@SETTINGS
def test_local_not_permitted_in_compatible(
self, spec_ver: Version, local: int
) -> None:
"""~= with a local version identifier must raise InvalidSpecifier."""
assume(len(spec_ver.release) >= 2)
with pytest.raises(InvalidSpecifier):
Specifier(f"~={spec_ver}+local{local}")
class TestCompatibleReleaseEquivalence:
r"""For a given release identifier ``V.N``, the compatible release clause is
approximately equivalent to the pair of comparison clauses::
>= V.N, == V.*
This operator MUST NOT be used with a single segment version number such as
``~=1``."""
@given(
major=small_ints,
minor=small_ints,
candidate=pep440_versions(),
)
@SETTINGS
def test_two_segment_equivalence(
self, major: int, minor: int, candidate: Version
) -> None:
"""~= V.N is equivalent to >= V.N, == V.* for two-segment versions."""
v_str = f"{major}.{minor}"
spec_compat = Specifier(f"~={v_str}")
spec_expanded = SpecifierSet(f">={v_str},=={major}.*")
assert (candidate in spec_compat) == (candidate in spec_expanded)
@given(
major=small_ints,
minor=small_ints,
patch=small_ints,
candidate=pep440_versions(),
)
@SETTINGS
def test_three_segment_equivalence(
self, major: int, minor: int, patch: int, candidate: Version
) -> None:
"""~= V.N.P is equivalent to >= V.N.P, == V.N.*"""
v_str = f"{major}.{minor}.{patch}"
spec_compat = Specifier(f"~={v_str}")
spec_expanded = SpecifierSet(f">={v_str},=={major}.{minor}.*")
assert (candidate in spec_compat) == (candidate in spec_expanded)
@given(major=small_ints)
@SETTINGS
def test_single_segment_rejected(self, major: int) -> None:
"""~= with a single segment version number must be rejected."""
with pytest.raises(InvalidSpecifier):
Specifier(f"~={major}")
class TestCompatibleReleaseSuffixIgnored:
r"""If a pre-release, post-release or developmental release is named in a
compatible release clause as ``V.N.suffix``, then the suffix is ignored
when determining the required prefix match::
~= 2.2.post3
>= 2.2.post3, == 2.*
~= 1.4.5a4
>= 1.4.5a4, == 1.4.*"""
@given(candidate=pep440_versions())
@SETTINGS
def test_post_release_suffix_ignored(self, candidate: Version) -> None:
"""~= 2.2.post3 is equivalent to >= 2.2.post3, == 2.*"""
spec = Specifier("~=2.2.post3")
expanded = SpecifierSet(">=2.2.post3,==2.*")
assert (candidate in spec) == (candidate in expanded)
@given(candidate=pep440_versions())
@SETTINGS
def test_pre_release_suffix_ignored(self, candidate: Version) -> None:
"""~= 1.4.5a4 is equivalent to >= 1.4.5a4, == 1.4.*"""
spec = Specifier("~=1.4.5a4")
expanded = SpecifierSet(">=1.4.5a4,==1.4.*")
assert (candidate in spec) == (candidate in expanded)
@given(
base=multi_segment_versions(),
post=small_ints,
candidate=pep440_versions(),
)
@SETTINGS
def test_post_suffix_general(
self, base: Version, post: int, candidate: Version
) -> None:
"""~= V.N.postP uses V.* as the prefix (suffix ignored)."""
assume(base.pre is None and base.post is None and base.dev is None)
assume(len(base.release) >= 2)
v_str = f"{base}.post{post}"
release = base.release
prefix = ".".join(str(s) for s in release[:-1])
epoch_prefix = f"{base.epoch}!" if base.epoch else ""
spec = Specifier(f"~={v_str}")
expanded = SpecifierSet(f">={v_str},=={epoch_prefix}{prefix}.*")
assert (candidate in spec) == (candidate in expanded)
class TestCompatibleReleasePaddingZeros:
r"""The padding rules for release segment comparisons means that the assumed
degree of forward compatibility in a compatible release clause can be
controlled by appending additional zeros to the version specifier::
~= 2.2.0
>= 2.2.0, == 2.2.*
~= 1.4.5.0
>= 1.4.5.0, == 1.4.5.*"""
@given(candidate=pep440_versions())
@SETTINGS
def test_padding_narrows_two_to_three(self, candidate: Version) -> None:
"""~= 2.2.0 is equivalent to >= 2.2.0, == 2.2.*"""
spec = Specifier("~=2.2.0")
expanded = SpecifierSet(">=2.2.0,==2.2.*")
assert (candidate in spec) == (candidate in expanded)
@given(candidate=pep440_versions())
@SETTINGS
def test_padding_narrows_three_to_four(self, candidate: Version) -> None:
"""~= 1.4.5.0 is equivalent to >= 1.4.5.0, == 1.4.5.*"""
spec = Specifier("~=1.4.5.0")
expanded = SpecifierSet(">=1.4.5.0,==1.4.5.*")
assert (candidate in spec) == (candidate in expanded)
@given(
major=small_ints,
minor=small_ints,
candidate=pep440_versions(),
)
@SETTINGS
def test_padding_zero_changes_prefix_depth(
self, major: int, minor: int, candidate: Version
) -> None:
"""~= X.Y.0 matches a narrower set than ~= X.Y because the prefix
is == X.Y.* instead of == X.*"""
broad = Specifier(f"~={major}.{minor}")
narrow = Specifier(f"~={major}.{minor}.0")
if candidate in narrow:
assert candidate in broad
class TestVersionMatchingStrict:
r"""By default, the version matching operator is based on a strict equality
comparison: the specified version must be exactly the same as the requested
version. The *only* substitution performed is the zero padding of the
release segment to ensure the release segments are compared with the same
length."""
@given(version=nonlocal_versions())
@SETTINGS
def test_version_matches_itself(self, version: Version) -> None:
"""== V always matches V."""
spec = Specifier(f"=={version}")
assert version in spec
@given(version=release_versions())
@SETTINGS
def test_zero_padding_matches(self, version: Version) -> None:
"""== V.0 matches V due to zero padding (for final releases)."""
padded_str = f"{version}.0"
spec_from_padded = Specifier(f"=={padded_str}")
assert version in spec_from_padded
@given(version=release_versions())
@SETTINGS
def test_zero_padding_symmetric(self, version: Version) -> None:
"""If V matches == V.0, then V.0 matches == V."""
padded = Version(f"{version}.0")
spec_original = Specifier(f"=={version}")
assert padded in spec_original
class TestVersionPrefixMatching:
r"""Prefix matching may be requested instead of strict comparison, by appending
a trailing ``.*`` to the version identifier in the version matching clause.
This means that additional trailing segments will be ignored when
determining whether or not a version identifier matches the clause. If the
specified version includes only a release segment, then trailing components
(or the lack thereof) in the release segment are also ignored."""
@given(spec_ver=release_versions(), extra=small_ints)
@SETTINGS
def test_prefix_match_ignores_trailing_segments(
self, spec_ver: Version, extra: int
) -> None:
"""== V.* matches V.extra for any extra segment."""
spec = Specifier(f"=={spec_ver}.*")
extended = Version(f"{spec_ver}.{extra}")
assert extended in spec
@given(spec_ver=release_versions())
@SETTINGS
def test_prefix_match_includes_exact(self, spec_ver: Version) -> None:
"""== V.* matches V itself (exact match is a prefix match)."""
spec = Specifier(f"=={spec_ver}.*")
assert spec_ver in spec
@given(
major=small_ints,
minor=small_ints,
patch=small_ints,
)
@SETTINGS
def test_prefix_match_with_pre_release(
self, major: int, minor: int, patch: int
) -> None:
"""== X.Y.* matches X.Y.Z.aN (pre-releases under the prefix)."""
spec = Specifier(f"=={major}.{minor}.*")
candidate = Version(f"{major}.{minor}.{patch}a1")
assert candidate in spec
@given(
major=small_ints,
minor=small_ints,
post=small_ints,
)
@SETTINGS
def test_prefix_match_with_post_release(
self, major: int, minor: int, post: int
) -> None:
"""== X.Y.* matches X.Y.postN."""
spec = Specifier(f"=={major}.{minor}.*")
candidate = Version(f"{major}.{minor}.post{post}")
assert candidate in spec
class TestVersionMatchingPost1Examples:
r"""For example, given the version ``1.1.post1``, the following clauses would
match or not as shown::
== 1.1 # Not equal, so 1.1.post1 does not match clause
== 1.1.post1 # Equal, so 1.1.post1 matches clause
== 1.1.* # Same prefix, so 1.1.post1 matches clause"""
def test_strict_no_match(self) -> None:
"""== 1.1 does not match 1.1.post1."""
assert Version("1.1.post1") not in Specifier("==1.1")
def test_strict_exact_match(self) -> None:
"""== 1.1.post1 matches 1.1.post1."""
assert Version("1.1.post1") in Specifier("==1.1.post1")
def test_prefix_match(self) -> None:
"""== 1.1.* matches 1.1.post1."""
assert Version("1.1.post1") in Specifier("==1.1.*")
class TestVersionMatchingAlphaExamples:
r"""For purposes of prefix matching, the pre-release segment is considered to
have an implied preceding ``.``, so given the version ``1.1a1``, the
following clauses would match or not as shown::
== 1.1 # Not equal, so 1.1a1 does not match clause
== 1.1a1 # Equal, so 1.1a1 matches clause
== 1.1.* # Same prefix, so 1.1a1 matches clause
# if pre-releases are requested"""
def test_strict_no_match(self) -> None:
"""== 1.1 does not match 1.1a1."""
assert Version("1.1a1") not in Specifier("==1.1")
def test_strict_exact_match(self) -> None:
"""== 1.1a1 matches 1.1a1."""
assert Version("1.1a1") in Specifier("==1.1a1")
def test_prefix_match_with_prereleases(self) -> None:
"""== 1.1.* matches 1.1a1 when pre-releases are requested."""
spec = Specifier("==1.1.*")
assert Version("1.1a1") in spec
class TestVersionMatchingExactExamples:
r"""An exact match is also considered a prefix match (this interpretation is
implied by the usual zero padding rules for the release segment of version
identifiers). Given the version ``1.1``, the following clauses would
match or not as shown::
== 1.1 # Equal, so 1.1 matches clause
== 1.1.0 # Zero padding expands 1.1 to 1.1.0, so it matches clause
== 1.1.dev1 # Not equal (dev-release), so 1.1 does not match clause
== 1.1a1 # Not equal (pre-release), so 1.1 does not match clause
== 1.1.post1 # Not equal (post-release), so 1.1 does not match clause
== 1.1.* # Same prefix, so 1.1 matches clause"""
def test_equal(self) -> None:
"""== 1.1 matches 1.1."""
assert Version("1.1") in Specifier("==1.1")
def test_zero_padding(self) -> None:
"""== 1.1.0 matches 1.1 via zero padding."""
assert Version("1.1") in Specifier("==1.1.0")
def test_dev_not_equal(self) -> None:
"""== 1.1.dev1 does not match 1.1."""
assert Version("1.1") not in Specifier("==1.1.dev1")
def test_pre_not_equal(self) -> None:
"""== 1.1a1 does not match 1.1."""
assert Version("1.1") not in Specifier("==1.1a1")
def test_post_not_equal(self) -> None:
"""== 1.1.post1 does not match 1.1."""
assert Version("1.1") not in Specifier("==1.1.post1")
def test_prefix_match(self) -> None:
"""== 1.1.* matches 1.1."""
assert Version("1.1") in Specifier("==1.1.*")
class TestPrefixMatchInvalidForms:
r"""It is invalid to have a prefix match containing a development or local release
such as ``1.0.dev1.*`` or ``1.0+foo1.*``. If present, the development release
segment is always the final segment in the public version, and the local version
is ignored for comparison purposes, so using either in a prefix match wouldn't
make any sense."""
def test_dev_prefix_match_invalid(self) -> None:
"""== 1.0.dev1.* must be rejected."""
with pytest.raises(InvalidSpecifier):
Specifier("==1.0.dev1.*")
def test_local_prefix_match_invalid(self) -> None:
"""== 1.0+foo1.* must be rejected."""
with pytest.raises(InvalidSpecifier):
Specifier("==1.0+foo1.*")
@given(spec_ver=release_versions(), dev=small_ints)
@SETTINGS
def test_dev_prefix_match_invalid_general(
self, spec_ver: Version, dev: int
) -> None:
"""== V.devN.* must always be rejected."""
with pytest.raises(InvalidSpecifier):
Specifier(f"=={spec_ver}.dev{dev}.*")
class TestLocalVersionMatchingPublic:
r"""If the specified version identifier is a public version identifier (no
local version label), then the local version label of any candidate versions
MUST be ignored when matching versions."""
@given(spec_ver=release_versions(), local=st.integers(min_value=0, max_value=5))
@SETTINGS
def test_public_specifier_ignores_local_label(
self, spec_ver: Version, local: int
) -> None:
"""== V (public) matches V+localN because local label is ignored."""
spec = Specifier(f"=={spec_ver}")
candidate = Version(f"{spec_ver}+local{local}")
assert candidate in spec
@given(spec_ver=release_versions(), local=st.integers(min_value=0, max_value=5))
@SETTINGS
def test_public_wildcard_ignores_local_label(
self, spec_ver: Version, local: int
) -> None:
"""== V.* (public) matches V.0+localN because local label is ignored."""
spec = Specifier(f"=={spec_ver}.*")
candidate = Version(f"{spec_ver}.0+local{local}")
assert candidate in spec
@given(
spec_ver=release_versions(),
local1=st.integers(min_value=0, max_value=5),
local2=st.integers(min_value=0, max_value=5),
)
@SETTINGS
def test_public_specifier_matches_any_local(
self, spec_ver: Version, local1: int, local2: int
) -> None:
"""== V (public) matches V+localX for any local label."""
spec = Specifier(f"=={spec_ver}")
c1 = Version(f"{spec_ver}+local{local1}")
c2 = Version(f"{spec_ver}+local{local2}")
assert c1 in spec
assert c2 in spec
class TestLocalVersionMatchingLocal:
r"""If the specified version identifier is a local version identifier, then the
local version labels of candidate versions MUST be considered when matching
versions, with the public version identifier being matched as described
above, and the local version label being checked for equivalence using a
strict string equality comparison."""
@given(spec_ver=release_versions(), local=st.integers(min_value=0, max_value=5))
@SETTINGS
def test_local_specifier_matches_same_local(
self, spec_ver: Version, local: int
) -> None:
"""== V+localN matches V+localN (same local label)."""
local_str = f"local{local}"
spec = Specifier(f"=={spec_ver}+{local_str}")
candidate = Version(f"{spec_ver}+{local_str}")
assert candidate in spec
@given(spec_ver=release_versions())
@SETTINGS
def test_local_specifier_does_not_match_different_local(
self, spec_ver: Version
) -> None:
"""== V+local0 does not match V+local1 (different local label)."""
spec = Specifier(f"=={spec_ver}+local0")
candidate = Version(f"{spec_ver}+local1")
assert candidate not in spec
@given(spec_ver=release_versions(), local=st.integers(min_value=0, max_value=5))
@SETTINGS
def test_local_specifier_does_not_match_no_local(
self, spec_ver: Version, local: int
) -> None:
"""== V+localN does not match V (no local label on candidate)."""
spec = Specifier(f"=={spec_ver}+local{local}")
assert spec_ver not in spec
class TestVersionExclusion:
r"""A version exclusion clause includes the version exclusion operator ``!=``
and a version identifier.
The allowed version identifiers and comparison semantics are the same as
those of the `Version matching`_ operator, except that the sense of any
match is inverted."""
@given(version=nonlocal_versions())
@SETTINGS
def test_exclusion_is_inverse_of_match(self, version: Version) -> None:
"""!= V is the logical inverse of == V for any version."""
eq_spec = Specifier(f"=={version}")
ne_spec = Specifier(f"!={version}")
assert (version in eq_spec) != (version in ne_spec)
@given(spec_ver=nonlocal_versions(), candidate=pep440_versions())
@SETTINGS
def test_exclusion_inverse_general(
self, spec_ver: Version, candidate: Version
) -> None:
"""For any candidate, != V gives the opposite result of == V."""
eq_spec = Specifier(f"=={spec_ver}")
ne_spec = Specifier(f"!={spec_ver}")
assert (candidate in eq_spec) != (candidate in ne_spec)
@given(spec_ver=release_versions(), candidate=pep440_versions())
@SETTINGS
def test_prefix_exclusion_inverse(
self, spec_ver: Version, candidate: Version
) -> None:
"""!= V.* is the inverse of == V.* for prefix matching."""
eq_spec = Specifier(f"=={spec_ver}.*")
ne_spec = Specifier(f"!={spec_ver}.*")
assert (candidate in eq_spec) != (candidate in ne_spec)
class TestVersionExclusionPost1Examples:
r"""For example, given the version ``1.1.post1``, the following clauses would
match or not as shown::
!= 1.1 # Not equal, so 1.1.post1 matches clause
!= 1.1.post1 # Equal, so 1.1.post1 does not match clause
!= 1.1.* # Same prefix, so 1.1.post1 does not match clause"""
def test_not_equal_matches(self) -> None:
"""!= 1.1 matches 1.1.post1 (they are not equal)."""
assert Version("1.1.post1") in Specifier("!=1.1")
def test_equal_excludes(self) -> None:
"""!= 1.1.post1 does not match 1.1.post1 (they are equal)."""
assert Version("1.1.post1") not in Specifier("!=1.1.post1")
def test_prefix_excludes(self) -> None:
"""!= 1.1.* does not match 1.1.post1 (same prefix)."""
assert Version("1.1.post1") not in Specifier("!=1.1.*")