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| # 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 packaging._ranges import BoundaryKind, BoundaryVersion | |
| from packaging.ranges import _MAX_EXCLUSION_RUN, VersionRange | |
| from packaging.specifiers import Specifier, SpecifierSet | |
| from packaging.version import InvalidVersion, Version | |
| def vr(spec: str, prereleases: bool | None = None) -> VersionRange: | |
| return SpecifierSet(spec, prereleases=prereleases).to_range() | |
| class TestConstruction: | |
| def test_cannot_construct_directly(self) -> None: | |
| with pytest.raises(TypeError, match="cannot create"): | |
| VersionRange() | |
| def test_full(self) -> None: | |
| r = VersionRange.full() | |
| assert Version("1.0") in r | |
| assert "wat" in r | |
| assert not r.is_empty | |
| def test_full_no_arbitrary(self) -> None: | |
| r = VersionRange.full(admit_arbitrary=False) | |
| assert Version("1.0") in r | |
| assert "wat" not in r | |
| def test_empty(self) -> None: | |
| r = VersionRange.empty() | |
| assert r.is_empty | |
| assert Version("1.0") not in r | |
| assert "wat" not in r | |
| def test_empty_with_prereleases(self) -> None: | |
| r = VersionRange.empty(prereleases=True) | |
| assert r.is_empty | |
| assert r._prereleases_configured is True | |
| def test_full_with_prereleases(self) -> None: | |
| r = VersionRange.full(prereleases=False) | |
| assert r._prereleases_configured is False | |
| def test_singleton(self) -> None: | |
| r = VersionRange.singleton("1.2.3") | |
| assert Version("1.2.3") in r | |
| assert Version("1.2.4") not in r | |
| def test_singleton_is_strict(self) -> None: | |
| # ``==1.0`` matches 1.0+local; the strict singleton does not. | |
| assert Version("1.0+local") not in VersionRange.singleton("1.0") | |
| assert Version("1.0+local") in vr("==1.0") | |
| def test_singleton_accepts_version(self) -> None: | |
| assert Version("1.0") in VersionRange.singleton(Version("1.0")) | |
| def test_singleton_with_prereleases(self) -> None: | |
| r = VersionRange.singleton("1.0", prereleases=True) | |
| assert r._prereleases_configured is True | |
| def test_singleton_invalid(self) -> None: | |
| with pytest.raises(InvalidVersion): | |
| VersionRange.singleton("not a version") | |
| def test_singleton_floor_is_canonical_and_strict(self) -> None: | |
| # ``0.dev0`` is the minimum version, so the strict singleton collapses | |
| # its floor to the one canonical form ``(-inf, 0.dev0]`` while keeping | |
| # strict-equality semantics (locals and higher versions excluded). | |
| r = VersionRange.singleton("0.dev0") | |
| assert Version("0.dev0") in r | |
| assert Version("0.dev0+local") not in r | |
| assert Version("0") not in r | |
| # Floor collapsed: the lower bound is unbounded (-inf), not [0.dev0. | |
| assert r._bounds[0][0].version is None | |
| def test_singleton_above_floor_stays_strict(self) -> None: | |
| # ``0`` sorts above ``0.dev0`` (the floor), so its singleton must not | |
| # collapse: ``(-inf, 0]`` would wrongly admit ``0.dev0``. | |
| r = VersionRange.singleton("0") | |
| assert Version("0.dev0") not in r | |
| assert Version("0") in r | |
| class TestToRange: | |
| def test_any(self) -> None: | |
| r = SpecifierSet().to_range() | |
| assert Version("1.0") in r | |
| assert Version("999.0") in r | |
| def test_unsatisfiable(self) -> None: | |
| assert SpecifierSet(">=2.0,<1.0").to_range().is_empty | |
| def test_operators(self, spec: str, inside: str, outside: str) -> None: | |
| r = vr(spec) | |
| assert Version(inside) in r | |
| assert Version(outside) not in r | |
| def test_lte_includes_local_excludes_post(self) -> None: | |
| r = vr("<=1.0") | |
| assert Version("1.0") in r | |
| assert Version("1.0+local") in r | |
| assert Version("1.0.post1") not in r | |
| def test_gt_excludes_post(self) -> None: | |
| r = vr(">1.0") | |
| assert Version("1.0") not in r | |
| assert Version("1.0.post1") not in r | |
| assert Version("1.0.1") in r | |
| def test_arbitrary_equality_literal_range(self) -> None: | |
| # The nab carve-out contract: the literal string matches, no Version. | |
| r = vr("===1.0.special") | |
| assert "1.0.special" in r | |
| assert Version("1.0") not in r | |
| def test_arbitrary_equality_valid_version_literal(self) -> None: | |
| r = vr("===1.0") | |
| assert Version("1.0") in r | |
| assert Version("1.0.0") not in r # arbitrary string, not version, match | |
| def test_arbitrary_combined_with_bounds(self) -> None: | |
| # ``===1.0,>=2.0``: only candidate "1.0" cannot satisfy >=2.0. | |
| assert vr("===1.0,>=2.0").is_empty | |
| def test_prerelease_autodetect(self) -> None: | |
| # Autodetected admission is stored as a region (the spec's own bounds); | |
| # a non-pre-release spec leaves the region empty. | |
| assert vr(">=1.0a1")._pre_region == vr(">=1.0a1")._bounds | |
| assert vr(">=1.0a1")._pre_region | |
| assert vr(">=1.0")._pre_region == () | |
| def test_explicit_prereleases(self) -> None: | |
| r = vr(">=1.0", prereleases=False) | |
| assert r._prereleases_configured is False | |
| class TestSetAlgebra: | |
| def test_intersection(self) -> None: | |
| assert vr(">=1.0") & vr("<2.0") == vr(">=1.0,<2.0") | |
| assert vr(">=1.0").intersection(vr("<2.0")) == vr(">=1.0,<2.0") | |
| def test_union(self) -> None: | |
| u = VersionRange.singleton("1.0") | VersionRange.singleton("2.0") | |
| assert Version("1.0") in u | |
| assert Version("2.0") in u | |
| assert Version("1.5") not in u | |
| assert VersionRange.singleton("1.0").union(VersionRange.singleton("2.0")) == u | |
| def test_complement(self) -> None: | |
| r = vr(">=1.0") | |
| assert Version("0.5") in r.complement() | |
| assert Version("1.5") not in r.complement() | |
| assert r.complement().complement() == r | |
| assert (~r) == r.complement() | |
| def test_complement_full_is_empty(self) -> None: | |
| assert (~VersionRange.full(admit_arbitrary=False)).is_empty | |
| def test_floor_singleton_obeys_structural_laws(self) -> None: | |
| # The ``0.dev0`` floor singleton used to keep a non-canonical | |
| # ``[0.dev0, ...)`` lower through set algebra, breaking these laws | |
| # structurally (the version set was always correct). | |
| s = VersionRange.singleton("0.dev0") | |
| assert s.complement().complement() == s | |
| assert s.union(s.complement()) == VersionRange.full(admit_arbitrary=False) | |
| assert s.union(s) == s | |
| def test_union_with_empty_preserves(self) -> None: | |
| r = vr(">=1.0") | |
| assert (r | VersionRange.empty()) == r | |
| def test_intersection_with_full_preserves_arbitrary(self) -> None: | |
| r = vr(">=1.0") | |
| assert (r & VersionRange.full()) == r | |
| def test_union_full_collapses(self) -> None: | |
| # ``r | full()`` collapses to the canonical universal range. | |
| r = VersionRange.singleton("1.0") | |
| collapsed = r | VersionRange.full() | |
| assert collapsed == VersionRange.full() | |
| def test_union_full_keeps_explicit_policy(self) -> None: | |
| r = VersionRange.singleton("1.0", prereleases=True) | |
| collapsed = r | VersionRange.full(prereleases=True) | |
| assert collapsed._prereleases_configured is True | |
| def test_union_full_preserves_autodetected_prerelease_policy(self) -> None: | |
| r = vr(">=1.0a1") | |
| assert list(r.filter(["1.3", "1.5a1"])) == ["1.3", "1.5a1"] | |
| # Both orders keep the autodetected opt-in as a region (here r's own | |
| # bounds), so only the pre-releases r named are admitted, not every | |
| # pre-release. | |
| assert (r | VersionRange.full())._pre_region == r._bounds | |
| assert (VersionRange.full() | r)._pre_region == r._bounds | |
| assert list((r | VersionRange.full()).filter(["1.3", "1.5a1"])) == [ | |
| "1.3", | |
| "1.5a1", | |
| ] | |
| assert list((VersionRange.full() | r).filter(["1.3", "1.5a1"])) == [ | |
| "1.3", | |
| "1.5a1", | |
| ] | |
| # The opt-in region is [1.0a1, +inf): a pre-release that sorts below it | |
| # is not force-admitted by the union. | |
| assert list((r | VersionRange.full()).filter(["0.5a1", "1.0"])) == ["1.0"] | |
| def test_arbitrary_flag_distinguishes_full(self) -> None: | |
| # nab contract: SpecifierSet("")-full differs from algebra-built full. | |
| flagged_full = SpecifierSet("").to_range() | |
| exact = VersionRange.singleton(Version("1.0")) | |
| plain_full = exact | ~exact | |
| assert plain_full != flagged_full | |
| assert (flagged_full & ~plain_full).is_empty | |
| def test_intersection_two_arbitrary(self) -> None: | |
| assert (vr("===a") & vr("===b")).is_empty | |
| assert "a" in (vr("===a") & vr("===a")) | |
| def test_union_two_arbitrary(self) -> None: | |
| u = vr("===a") | vr("===b") | |
| assert "a" in u | |
| assert "b" in u | |
| def test_full_intersect_arbitrary_keeps_literal(self) -> None: | |
| r = VersionRange.full() & vr("===wat") | |
| assert "wat" in r | |
| assert Version("1.0") not in r | |
| def test_complement_of_arbitrary_range(self) -> None: | |
| # nab complements root ranges built from ``===`` requirements. | |
| r = vr("===custom") | |
| assert not (~r).is_empty | |
| def test_empty_does_not_revive_arbitrary_admission(self) -> None: | |
| # ``~full()`` is empty yet keeps an inert arbitrary flag so that | |
| # ``~~full() == full()``. That flag must not revive and admit arbitrary | |
| # strings once a later operation widens the bounds back to full. | |
| full = VersionRange.full() | |
| plain = VersionRange.full(admit_arbitrary=False) | |
| assert ~~full == full # the inert flag round-trips through complement | |
| assert (full & ~full) == VersionRange.empty() | |
| # The empty operand must not revive the flag from either side of a union, | |
| # nor through a difference that later complements back to full bounds. | |
| assert not (~full | plain).contains("wat") | |
| assert not (plain | ~full).contains("wat") | |
| assert (full & ~full) - full == VersionRange.empty() | |
| assert not (full - plain).complement().contains("wat") | |
| def test_difference_by_empty_keeps_arbitrary_admission(self) -> None: | |
| # ``~full()`` admits nothing (empty bounds, no literal, no region), so the | |
| # difference short-circuit returns self untouched, keeping full's | |
| # arbitrary admission (``full() - ~full() == full()``). | |
| full = VersionRange.full() | |
| assert (full - ~full) == full | |
| assert (full - ~full).contains("wat") | |
| def test_union_of_empty_ranges_keeps_arbitrary_flag(self) -> None: | |
| # A union whose result stays empty-bounds has no widening to revive | |
| # admission through, so ``~full()`` keeps its inert flag and union is | |
| # idempotent. Intersection always drops the flag at empty bounds, so | |
| # neither ``r & r`` nor ``r & full()`` is ``r``. | |
| r = ~VersionRange.full() | |
| assert r | r == r | |
| assert r | VersionRange.empty() == r | |
| assert (~(r | r)).contains("wat") | |
| assert r & r == VersionRange.empty() | |
| assert r & VersionRange.full() == VersionRange.empty() | |
| def test_difference_shrink_forgets_arbitrary_admission(self) -> None: | |
| # A difference that shrinks the bounds forgets the arbitrary flag, so | |
| # a later widening union cannot revive an admission neither operand | |
| # had, and ``full() - r`` agrees with ``full() & ~r``. A difference | |
| # that removes no versions keeps it, so ``a - b == a`` whenever ``b`` | |
| # is disjoint from ``a``, empty-bounds minuends included. | |
| full = VersionRange.full() | |
| shrunk = full - vr(">=1.0") | |
| assert not shrunk.contains("wat") | |
| assert not (shrunk | vr(">=0.5")).contains("wat") | |
| assert (shrunk | vr(">=0.5")) == VersionRange.full(admit_arbitrary=False) | |
| assert shrunk == full & ~vr(">=1.0") | |
| assert (~full - vr(">=1.0")) == ~full | |
| def test_policy_mismatch_raises(self) -> None: | |
| with pytest.raises(ValueError, match="different"): | |
| vr(">=1.0", prereleases=True) & vr("<2.0", prereleases=False) | |
| def test_operator_wrong_type(self) -> None: | |
| assert vr(">=1.0").__and__("x") is NotImplemented | |
| assert vr(">=1.0").__or__("x") is NotImplemented | |
| assert vr(">=1.0").__sub__("x") is NotImplemented | |
| def test_intersection_wrong_type_raises(self) -> None: | |
| with pytest.raises(TypeError, match="expected VersionRange"): | |
| vr(">=1.0").intersection("x") # type: ignore[arg-type] | |
| def test_difference_wrong_type_raises(self) -> None: | |
| with pytest.raises(TypeError, match="expected VersionRange"): | |
| vr(">=1.0").difference("x") # type: ignore[arg-type] | |
| def test_difference(self) -> None: | |
| d = vr(">=1.0") - vr(">=2.0") | |
| assert Version("1.5") in d | |
| assert Version("1.0") in d | |
| assert Version("2.0") not in d | |
| assert d == vr(">=1.0") & ~vr(">=2.0") | |
| def test_difference_method_matches_operator(self) -> None: | |
| assert vr(">=1.0").difference(vr(">=2.0")) == vr(">=1.0") - vr(">=2.0") | |
| def test_difference_with_empty_is_self(self) -> None: | |
| r = vr(">=1.0,<2.0") | |
| assert (r - VersionRange.empty()) == r | |
| def test_difference_with_full_is_empty(self) -> None: | |
| assert (vr(">=1.0") - VersionRange.full()).is_empty | |
| def test_difference_keeps_minuend_prerelease_policy(self) -> None: | |
| # ``>=1.0`` admits no pre-releases; subtracting a pre-release-naming | |
| # range must not grant pre-release admission. | |
| no_pre = vr(">=1.0") - vr(">=2.0b1") | |
| assert list(no_pre.filter(["2.0b1", "1.5a1", "1.0"])) == ["1.0"] | |
| # A pre-release-admitting minuend keeps admitting its pre-releases. | |
| keep = vr(">=2.0b1") - vr(">=3.0") | |
| assert list(keep.filter(["2.5", "2.0b1"])) == ["2.5", "2.0b1"] | |
| def test_difference_requires_matching_policy(self) -> None: | |
| # difference matches ``self & ~other``, which requires a shared | |
| # configured policy, so a mismatch raises like intersection and union. | |
| with pytest.raises(ValueError, match="different"): | |
| vr(">=1.0") - vr(">=2.0", prereleases=True) | |
| def test_difference_punches_hole(self) -> None: | |
| # Subtracting an interior range leaves two intervals. | |
| d = vr(">=1.0") - vr(">=2.0,<3.0") | |
| assert Version("1.5") in d | |
| assert Version("2.5") not in d | |
| assert Version("3.5") in d | |
| def test_difference_with_literals(self) -> None: | |
| # ``===`` literal ranges route through the literal-combining branch. | |
| assert Version("1.0") in (vr("===1.0") - vr("===2.0")) | |
| assert Version("2.0") not in (vr("===1.0") - vr("===2.0")) | |
| assert Version("1.0") in (vr("===1.0") - vr(">=2.0")) | |
| def test_difference_with_empty_preserves_arbitrary(self) -> None: | |
| # Regression: difference once routed through ``other.complement()``, | |
| # which dropped the minuend's arbitrary-string admission even when | |
| # nothing was subtracted. ``a - empty`` must round-trip the full range. | |
| full = VersionRange.full() | |
| assert (full - VersionRange.empty()) == full | |
| assert "wat" in (full - VersionRange.empty()) | |
| def test_difference_with_empty_preserves_literals(self) -> None: | |
| # The same regression for ``===`` admission: a literal range minus the | |
| # empty range keeps its literal. | |
| wat = vr("===wat") | |
| assert (wat - VersionRange.empty()) == wat | |
| assert "wat" in (wat - VersionRange.empty()) | |
| def test_difference_excludes_only_named_literal(self) -> None: | |
| # full() minus a ``===`` literal keeps every version and every other | |
| # arbitrary string, dropping only the excluded literal. | |
| d = VersionRange.full() - vr("===wat") | |
| assert "wat" not in d | |
| assert "custom" in d | |
| assert Version("1.0") in d | |
| def test_difference_with_self_is_empty(self) -> None: | |
| # ``a - a`` is empty for arbitrary-admitting and ``===`` ranges too. | |
| assert (vr("===wat") - vr("===wat")).is_empty | |
| assert (VersionRange.full() - VersionRange.full()).is_empty | |
| def test_difference_minuend_with_reject_literal(self) -> None: | |
| # Complementing a ``===`` range leaves a reject literal on the minuend; | |
| # difference keeps honoring it through the literal-combining branch. | |
| minuend = ~vr("===1.0") | |
| d = minuend - vr("===2.0") | |
| assert Version("3.0") in d | |
| assert Version("1.0") not in d | |
| assert Version("2.0") not in d | |
| class TestPrereleaseRegion: | |
| """The autodetected pre-release opt-in is stored as a range (``_pre_region``), | |
| clipped to the bounds, so it stays attached to the versions it came from | |
| across set algebra and never reaches past them.""" | |
| def test_union_keeps_opt_in_scoped_to_originating_range(self) -> None: | |
| # ``>=1.0 | >=2.0b1``: the opt-in came only from the ``>=2.0b1`` side, so | |
| # a pre-release below 2.0b1 is not force-admitted, while pre-releases at | |
| # or above it are. | |
| u = vr(">=1.0") | vr(">=2.0b1") | |
| assert list(u.filter(["1.0", "1.5b1", "2.0b1", "2.5", "2.5b1"])) == [ | |
| "1.0", | |
| "2.0b1", | |
| "2.5", | |
| "2.5b1", | |
| ] | |
| assert u._pre_region == vr(">=2.0b1")._bounds | |
| def test_narrowing_permanently_sheds_out_of_bounds_opt_in(self) -> None: | |
| # The region is clipped to the bounds, so a narrowing intersection drops | |
| # the opt-in that fell outside; a later widening cannot bring it back. | |
| inter = vr(">=1.0a1") & vr("<1.5") | |
| assert inter._pre_region == inter._bounds # clipped to [1.0a1, 1.5) | |
| assert list(inter.filter(["1.2a1", "2.0a1", "2.5"])) == ["1.2a1"] | |
| # 2.0a1 is back in bounds but no longer in the region, so it is buffered | |
| # and then suppressed by the in-bounds final 2.5. | |
| wide = inter | vr("<3.0") | |
| assert list(wide.filter(["1.2a1", "2.0a1", "2.5"])) == ["1.2a1", "2.5"] | |
| def test_difference_of_two_region_bearing_ranges(self) -> None: | |
| # Both operands carry an opt-in region; a - b still equals a & ~b. | |
| a, b = vr(">=1.0a1,<5.0"), vr(">=2.0b1") | |
| cand = ["1.0a1", "1.5b1", "2.0b1", "2.5b1", "4.0"] | |
| assert (a - b) == (a & ~b) | |
| assert list((a - b).filter(cand)) == list((a & ~b).filter(cand)) | |
| def test_intersection_with_complement_equals_difference(self) -> None: | |
| # ``a & ~b`` grants none of b's opt-in (complement drops it) just as | |
| # ``a - b`` does, so the two agree even when b names a pre-release. | |
| a, b = vr(">=1.0"), vr(">=2.0b1") | |
| cand = ["1.0", "1.5b1", "2.0b1", "2.5", "2.5b1"] | |
| assert (a & ~b) == (a - b) | |
| assert list((a & ~b).filter(cand)) == list((a - b).filter(cand)) | |
| assert list((a & ~b).filter(cand)) == ["1.0"] | |
| def test_full_intersection_keeps_operand_opt_in(self) -> None: | |
| # ``full() & req`` must preserve req's own opt-in region. | |
| req = vr(">=2.0b1") | |
| assert (VersionRange.full() & req)._pre_region == req._bounds | |
| assert list((VersionRange.full() & req).filter(["2.0b1", "2.5"])) == [ | |
| "2.0b1", | |
| "2.5", | |
| ] | |
| def test_union_filter_buffers_as_one_set(self) -> None: | |
| # The union is a single range: an in-range final makes PEP 440 buffer | |
| # away a non-opted pre-release, even though one operand alone (with no | |
| # final) would have emitted it. The opted-in pre-release still shows. | |
| u = vr(">=1.0,<1.8") | vr(">=1.5b1,<2.0") | |
| assert list(u.filter(["1.2a1", "1.7b1", "1.9"])) == ["1.7b1", "1.9"] | |
| def test_union_filter_emits_buffered_prerelease_when_no_final(self) -> None: | |
| # Region narrower than bounds: a pre-release in bounds but outside the | |
| # opt-in region is buffered, then emitted because no in-bounds final | |
| # appears (the PEP 440 "only available" fallback). An in-bounds final | |
| # then suppresses the buffer. | |
| u = vr(">=1.0") | vr(">=2.0b1") # bounds [1.0, inf), region [2.0b1, inf) | |
| assert list(u.filter(["1.5b1", "1.2a1"])) == ["1.5b1", "1.2a1"] | |
| assert list(u.filter(["1.5b1", "1.2a1", "1.3"])) == ["1.3"] | |
| def test_double_complement_drops_region_keeps_versions(self) -> None: | |
| # A complement is an exclusion and carries no opt-in, so a double | |
| # complement covers the same versions as the original yet force-admits | |
| # none of its pre-releases. | |
| r = vr(">=2.0b1") | |
| assert (~~r)._bounds == r._bounds | |
| assert (~~r)._pre_region == () | |
| cand = ["1.5b1", "2.0b1", "2.5", "2.5b1"] | |
| assert list(r.filter(cand)) == ["2.0b1", "2.5", "2.5b1"] | |
| assert list((~~r).filter(cand)) == ["2.5"] | |
| def test_difference_minuend_with_literal_and_region(self) -> None: | |
| # A minuend carrying both a ``===`` literal and an autodetected opt-in | |
| # region keeps the literal (self-admits-and-not-other) and the region. | |
| minuend = vr("===wat") | vr(">=2.0b1") | |
| d = minuend - vr(">=3.0") | |
| assert "wat" in d | |
| assert list(d.filter(["2.0b1", "2.5b1", "2.9", "3.0"])) == [ | |
| "2.0b1", | |
| "2.5b1", | |
| "2.9", | |
| ] | |
| def test_difference_minuend_with_configured_policy(self) -> None: | |
| # A configured policy governs globally and carries no opt-in region, so a | |
| # difference between two configured operands keeps no region. Both must | |
| # share the policy, as intersection and union require. | |
| d = vr(">=1.0", prereleases=False) - vr(">=2.0b1", prereleases=False) | |
| assert d._pre_region == () | |
| assert list(d.filter(["1.5b1", "1.0"])) == ["1.0"] | |
| def test_difference_equals_intersect_complement_when_b_complement_derived( | |
| self, | |
| ) -> None: | |
| # ``a - b == a & ~b`` even when ``b`` is complement-derived: a complement | |
| # carries no opt-in region, so both spellings admit none of ~b's in-bounds | |
| # pre-releases. (Two region-bearing operands are covered above.) | |
| a = vr("<5.0") | |
| b = vr(">=2.0b1").complement() | |
| left, right = a & ~b, a - b | |
| assert left._pre_region == right._pre_region | |
| assert left == right | |
| cand = ["2.5b1", "3.0", "2.0b1", "4.0"] | |
| assert list(left.filter(cand)) == list(right.filter(cand)) | |
| def test_construction_region_matches_algebra(self) -> None: | |
| # A multi-specifier set built directly carries the same opt-in region as | |
| # one built by combining its specifiers: clipping refolds under | |
| # intersection, so the two stay equal under a later widening. | |
| direct = vr(">=1.0a1,<3.0") | |
| composed = vr(">=1.0a1") & vr("<3.0") | |
| assert direct._pre_region == composed._pre_region | |
| assert direct == composed | |
| pool = ["1.0a1", "2.0b1", "2.9", "3.0b1", "4.5"] | |
| wide = vr(">=2.0,<5.0") | |
| assert list((direct | wide).filter(pool)) == list( | |
| (composed | wide).filter(pool) | |
| ) | |
| # Same congruence on the ``===`` (arbitrary) build path. | |
| direct_arb = vr("===2.0,>=1.0a1") | |
| composed_arb = vr("===2.0") & vr(">=1.0a1") | |
| assert direct_arb._pre_region == composed_arb._pre_region | |
| assert direct_arb == composed_arb | |
| def test_named_literal_prerelease_is_force_admitted(self) -> None: | |
| # A ``===`` literal naming a pre-release force-admits it under the default | |
| # policy even when a final release in the union would otherwise buffer it | |
| # away. contains agrees, and an explicit prereleases=False still drops it. | |
| u = vr("===1.0a1") | vr(">=3.0") | |
| assert list(u.filter(["1.0a1", "3.0"])) == ["1.0a1", "3.0"] | |
| assert u.contains("1.0a1") | |
| assert list(u.filter(["1.0a1", "3.0"], prereleases=False)) == ["3.0"] | |
| def test_difference_by_empty_preserves_empty_self(self) -> None: | |
| # ``a - empty()`` returns a unchanged even when a is itself empty but | |
| # carries provenance: ``~full()`` keeps its arbitrary flag for involution, | |
| # so subtracting a nothing-admitting set must not drop it. | |
| nf = ~VersionRange.full() | |
| assert (nf - VersionRange.empty()) == nf | |
| assert (nf - nf) == nf # ~full() admits nothing, so this is a no-op too | |
| def test_difference_excludes_other_by_bounds(self) -> None: | |
| # difference treats other as a bounds-only exclusion: with a shared | |
| # configured policy it excises the versions in other's bounds and agrees | |
| # with a & ~b there. | |
| a = SpecifierSet(">=1.0", prereleases=False).to_range() | |
| b = SpecifierSet(">=1.5,<2.0", prereleases=False).to_range() | |
| assert (a - b) == (a & ~b) | |
| assert "1.2" in (a - b) | |
| assert "1.6" not in (a - b) | |
| def test_empty_bounds_intersection_equals_empty(self) -> None: | |
| # A region is clipped to the bounds, so an intersection with empty bounds | |
| # can carry none: it equals empty() and cannot re-admit anything after a | |
| # re-widening union. | |
| empty_region = vr(">=2.0a1") & vr("<1.0") | |
| assert empty_region.is_empty | |
| assert empty_region._pre_region == () | |
| assert empty_region == VersionRange.empty() | |
| assert hash(empty_region) == hash(VersionRange.empty()) | |
| assert list((empty_region | vr(">=0")).filter(["2.0a1", "3.0"])) == ["3.0"] | |
| def test_multi_interval_region_force_admits(self) -> None: | |
| # Disjoint multi-interval bounds with a two-interval opt-in region | |
| # exercise the multi-range path of filter_by_ranges: a pre-release inside | |
| # the region is force-admitted in either interval. | |
| r = vr(">=1.0a1,<2.0") | vr(">=3.0a1,<4.0") | |
| assert len(r._bounds) == 2 | |
| assert list(r.filter(["1.5a1", "3.5a1", "3.5"])) == ["1.5a1", "3.5a1", "3.5"] | |
| def test_region_upper_bound_clips_force_admit(self) -> None: | |
| # The region has a finite upper bound (~=1.0a1 gives [1.0a1, 2.dev0)), so a | |
| # pre-release in bounds but ABOVE the region is not force-admitted. After | |
| # widening with >=2.5, 2.6a1 is in bounds yet above the region, so it is | |
| # buffered and then suppressed by the in-bounds final 2.7. | |
| r = vr("~=1.0a1") | vr(">=2.5") | |
| assert list(r.filter(["1.5a1", "2.6a1", "2.7"])) == ["1.5a1", "2.7"] | |
| def test_disjoint_region_does_not_force_admit_gap(self) -> None: | |
| # A disjoint two-interval region whose bounds span the gap: a pre-release | |
| # in the region gap (but in bounds) is buffered, not force-admitted, and | |
| # an in-bounds final then suppresses it. The filler ``>=2.0,<5.0`` widens | |
| # the bounds over the gap without adding to the region. | |
| r = (vr("<2.0a5") | vr(">=5.0a1")) | vr(">=2.0,<5.0") | |
| assert len(r._pre_region) == 2 | |
| assert list(r.filter(["1.0a1", "3.0a1", "6.0a1", "3.0"])) == [ | |
| "1.0a1", | |
| "6.0a1", | |
| "3.0", | |
| ] | |
| def test_force_admit_does_not_suppress_buffer(self) -> None: | |
| # A region-admitted pre-release is not a final, so it does not suppress a | |
| # separate buffered (out-of-region) pre-release when no final appears. | |
| u = vr(">=1.0") | vr(">=2.0b1") # region [2.0b1, inf) | |
| assert list(u.filter(["2.5b1", "1.5b1"])) == ["2.5b1", "1.5b1"] | |
| def test_region_force_admit_through_key(self) -> None: | |
| # The region force-admit fires when filtering with a key callable too. | |
| u = vr(">=1.0") | vr(">=2.0b1") | |
| items = [{"v": "2.0b1"}, {"v": "1.5b1"}, {"v": "2.5"}] | |
| assert list(u.filter(items, key=lambda d: d["v"])) == [ | |
| {"v": "2.0b1"}, | |
| {"v": "2.5"}, | |
| ] | |
| def test_difference_keeps_minuend_region_clipped(self) -> None: | |
| # difference keeps the minuend's opt-in region (not the subtrahend's) and | |
| # clips it to the result bounds. | |
| a = vr(">=2.0b1") # region [2.0b1, +inf) | |
| b = vr(">=5.0") # no region | |
| d = a - b | |
| assert d._pre_region == d._bounds # clipped to [2.0b1, 5.0) | |
| assert list(d.filter(["2.0b1", "2.5b1", "4.9", "5.0"])) == [ | |
| "2.0b1", | |
| "2.5b1", | |
| "4.9", | |
| ] | |
| def test_difference_by_empty_bounds_range(self) -> None: | |
| # An empty-bounds range carries no region under clipping, so subtracting | |
| # it is a no-op that still equals a & ~b (~empty == full). | |
| a = vr(">=0,<10.0") | |
| b = vr(">=2.0a1") & vr("<1.0") # empty bounds, no region | |
| assert b.is_empty | |
| assert not b._bounds | |
| assert b._pre_region == () | |
| cand = ["2.0a1", "2.5a1", "5.0"] | |
| assert (a - b) == (a & ~b) == a | |
| assert list((a - b).filter(cand)) == list((a & ~b).filter(cand)) | |
| def test_configured_policy_with_prerelease_spec_mirrors_specifier_set(self) -> None: | |
| # A configured policy on a pre-release-naming set drops the opt-in region | |
| # (the policy governs); filter and contains still mirror the set. | |
| pool = ["1.0a1", "1.5", "2.0b1", "2.5"] | |
| cases = [ | |
| (">=1.0a1", False), | |
| (">=1.0a1", True), | |
| ("~=2.0b1", True), | |
| ("<=2.0b1", False), | |
| ("===1.0a1", False), | |
| ("===1.0a1", True), | |
| ] | |
| for spec, pre in cases: | |
| ss = SpecifierSet(spec, prereleases=pre) | |
| r = ss.to_range() | |
| assert r._pre_region == () | |
| assert list(r.filter(pool)) == list(ss.filter(pool)), (spec, pre) | |
| for v in pool: | |
| assert r.contains(v) == ss.contains(v), (spec, pre, v) | |
| class TestUnionOverflowRegression: | |
| """Clipping the region to the bounds keeps a union or difference from | |
| force-admitting a pre-release no operand opted in (the leak that closed the | |
| PR #1304 attempt).""" | |
| def test_pr1304_union_example(self) -> None: | |
| # PR #1304's motivating example: the opt-in came only from ``>=2.0b1``, | |
| # so 1.5b1 is not force-admitted by the union. | |
| u = vr(">=1.0") | vr(">=2.0b1") | |
| assert list(u.filter(["1.0", "1.5b1", "2.0b1", "2.5"])) == [ | |
| "1.0", | |
| "2.0b1", | |
| "2.5", | |
| ] | |
| def test_union_does_not_admit_out_of_bounds_prerelease(self) -> None: | |
| # Neither operand admits 3.6b1: ``>=3.5,<4`` has no opt-in and | |
| # ``>=2.0b1,<3`` opts in only below 3. Before clipping, the raw | |
| # [2.0b1, +inf) region rode the union past its own <3 cap onto 3.6b1. | |
| a, b = vr(">=3.5,<4"), vr(">=2.0b1,<3") | |
| assert list(a.filter(["3.6b1", "3.7"])) == ["3.7"] | |
| assert list(b.filter(["3.6b1", "3.7"])) == [] | |
| assert list((a | b).filter(["3.6b1", "3.7"])) == ["3.7"] | |
| def test_difference_does_not_admit_out_of_bounds_prerelease(self) -> None: | |
| # The same overflow rides difference when the minuend carries it: the | |
| # [2.0b1, <3) opt-in must not reach 3.95a1 up in the [3.9, 4.0) interval. | |
| m = vr(">=2.0b1,<3") | vr(">=3.9,<4.0") | |
| assert list((m - vr(">=2,<3.9")).filter(["3.95a1", "3.97"])) == ["3.97"] | |
| class TestDeliberateNonIdentities: | |
| """Laws that clip trades away, each with the canonical witness. These are | |
| negative locks: a future change that restores double complement (and, by | |
| T2, the union leak) flips them and fails here.""" | |
| def test_absorption_keeps_inner_opt_in(self) -> None: | |
| # L7/L8: a & (a | b) and a | (a & b) keep b's opt-in inside a's bounds, | |
| # so they do not collapse back to a. | |
| a, b = vr(">=1.0"), vr(">=2.0b1") | |
| cand = ["2.5b1", "3.0"] | |
| assert a & (a | b) != a | |
| assert list((a & (a | b)).filter(cand)) == ["2.5b1", "3.0"] | |
| assert a | (a & b) != a | |
| assert list((a | (a & b)).filter(cand)) == ["2.5b1", "3.0"] | |
| assert list(a.filter(cand)) == ["3.0"] | |
| def test_union_does_not_distribute_over_intersection(self) -> None: | |
| # L10: a | (b & c) carries less opt-in than (a | b) & (a | c). | |
| a, b, c = vr(">=1.0"), vr(">=2.0b1,<3"), vr(">=3.5") | |
| lhs = a | (b & c) | |
| rhs = (a | b) & (a | c) | |
| assert lhs != rhs | |
| assert list(lhs.filter(["2.5b1", "2.6"])) == ["2.6"] | |
| assert list(rhs.filter(["2.5b1", "2.6"])) == ["2.5b1", "2.6"] | |
| def test_double_complement_is_erasure_not_identity(self) -> None: | |
| # L11: ~~b keeps b's versions but drops its opt-in, so it is not b. | |
| b = vr(">=2.0b1") | |
| assert ~~b != b | |
| assert (~~b)._pre_region == () | |
| assert b._pre_region | |
| def test_excluded_middle_and_union_with_full_overshoot(self) -> None: | |
| # L16/L28: a | ~a and a | full() carry a's opt-in, which full() (with no | |
| # eager admission) does not, so neither equals full(). | |
| b = vr(">=2.0b1") | |
| assert b | ~b != VersionRange.full() | |
| assert b | VersionRange.full() != VersionRange.full() | |
| def test_double_difference_sheds_opt_in(self) -> None: | |
| # L24: a - (a - b) drops b's opt-in (each difference is an exclusion), | |
| # while a & b keeps it. | |
| a, b = vr(">=1.0"), vr(">=2.0b1") | |
| assert a - (a - b) != a & b | |
| assert (a - (a - b))._pre_region == () | |
| assert (a & b)._pre_region | |
| class TestSetRelations: | |
| def test_disjoint_false(self) -> None: | |
| assert not vr(">=1.0,<2.0").is_disjoint(vr(">=1.5,<2.5")) | |
| def test_disjoint_higher_range_on_left(self) -> None: | |
| # The receiver sits entirely above the argument, including when the | |
| # argument spans several intervals. | |
| assert vr(">=2.0,<3.0").is_disjoint(vr(">=1.0,<1.5")) | |
| assert vr(">=5.0,<6.0").is_disjoint(vr(">=1.0,<2.0") | vr(">=3.0,<4.0")) | |
| def test_disjoint_shared_inclusive_endpoint(self) -> None: | |
| # ``[1, 2)`` and ``[2, 3)`` touch but share no version. | |
| assert vr(">=1.0,<2.0").is_disjoint(vr(">=2.0,<3.0")) | |
| # ``[1, 2]`` and ``[2, 3)`` both admit 2.0. | |
| assert not vr(">=1.0,<=2.0").is_disjoint(vr(">=2.0,<3.0")) | |
| def test_subset_true(self) -> None: | |
| assert vr(">=1.5,<1.8").is_subset(vr(">=1.0,<2.0")) | |
| def test_subset_false(self) -> None: | |
| assert not vr(">=1.0,<2.0").is_subset(vr(">=1.5,<1.8")) | |
| def test_subset_partial_overlap_false(self) -> None: | |
| assert not vr(">=1.0,<2.0").is_subset(vr(">=1.5,<2.5")) | |
| def test_subset_reflexive(self) -> None: | |
| r = vr(">=1.0,<2.0") | |
| assert r.is_subset(r) | |
| def test_empty_is_subset_of_everything(self) -> None: | |
| assert VersionRange.empty().is_subset(vr(">=1.0")) | |
| assert VersionRange.empty().is_subset(VersionRange.empty()) | |
| assert VersionRange.empty().is_disjoint(vr(">=1.0")) | |
| def test_nonempty_not_subset_of_empty(self) -> None: | |
| assert not vr(">=1.0").is_subset(VersionRange.empty()) | |
| def test_everything_is_subset_of_full(self) -> None: | |
| assert vr(">=1.0,<2.0").is_subset(VersionRange.full()) | |
| def test_mutual_subset_despite_unequal_region(self) -> None: | |
| # Same bounds, different opt-in region: unequal but mutually subset. | |
| plain = vr(">=1.0") | |
| opted = vr(">=1.0") & vr(">0.5a1") | |
| assert plain != opted | |
| assert plain.is_subset(opted) | |
| assert opted.is_subset(plain) | |
| assert not plain.is_disjoint(opted) | |
| def test_subset_arbitrary_admission(self) -> None: | |
| # ``full()`` admits non-version strings, which no bounds cover, so it | |
| # is not a subset of the version-only full range. | |
| full = VersionRange.full() | |
| plain = VersionRange.full(admit_arbitrary=False) | |
| assert not full.is_subset(plain) | |
| assert plain.is_subset(full) | |
| assert full.is_subset(full) | |
| assert full.is_superset(plain) | |
| assert not plain.is_superset(full) | |
| def test_superset_mirrors_subset(self) -> None: | |
| outer, inner = vr(">=1.0,<2.0"), vr(">=1.5,<1.8") | |
| assert outer.is_superset(inner) | |
| assert not inner.is_superset(outer) | |
| assert outer.is_superset(inner) == inner.is_subset(outer) | |
| def test_multi_interval_subset(self) -> None: | |
| # ``!=1.5`` splits ``[1, 2)`` into two pieces, still inside ``[1, 2)``. | |
| gapped = vr(">=1.0,<2.0,!=1.5") | |
| whole = vr(">=1.0,<2.0") | |
| assert gapped.is_subset(whole) | |
| assert not whole.is_subset(gapped) | |
| assert not gapped.is_disjoint(whole) | |
| def test_disjoint_nonempty_excludes_subset(self) -> None: | |
| a, b = vr(">=1.0,<2.0"), vr(">=3.0,<4.0") | |
| assert a.is_disjoint(b) | |
| assert not a.is_subset(b) | |
| def test_literal_ranges_disjoint(self) -> None: | |
| assert vr("===a").is_disjoint(vr("===b")) | |
| assert not vr("===a").is_disjoint(vr("===a")) | |
| def test_literal_range_subset(self) -> None: | |
| # is_subset is ``self - other``, so a literal only ``self`` admits keeps | |
| # it from being a subset. ``self & ~other`` would miss this, since | |
| # complement is one-way for ``===`` literals. | |
| a = vr("===a") | |
| ab = vr("===a") | vr("===b") | |
| assert a.is_subset(ab) | |
| assert not ab.is_subset(a) | |
| assert ab.is_superset(a) | |
| assert not a.is_superset(ab) | |
| def test_full_arbitrary_matches_algebra(self) -> None: | |
| # ``full()`` carries the arbitrary-string flag, so it is not plain and | |
| # both relations take the non-plain path. | |
| f, b = VersionRange.full(), vr(">=1.0") | |
| assert not f.is_subset(b) | |
| assert b.is_subset(f) | |
| # Disjointness still mirrors the intersection algebra directly. | |
| assert f.is_disjoint(b) == (f & b).is_empty | |
| def test_prerelease_excluding_policy_matches_algebra(self) -> None: | |
| # ``prereleases=False`` ranges are not plain, so both relations take | |
| # the algebra fallback; pin concrete non-trivial answers there. | |
| inner = vr(">=1.2,<1.8", prereleases=False) | |
| outer = vr(">=1.0,<2.0", prereleases=False) | |
| far = vr(">=5.0,<6.0", prereleases=False) | |
| assert inner.is_subset(outer) | |
| assert not outer.is_subset(inner) | |
| assert inner.is_disjoint(far) | |
| assert not inner.is_disjoint(outer) | |
| for a, b in [(inner, outer), (outer, inner), (inner, far)]: | |
| assert a.is_subset(b) == (a & ~b).is_empty | |
| assert a.is_disjoint(b) == (a & b).is_empty | |
| def test_policy_mismatch_raises(self) -> None: | |
| with pytest.raises(ValueError, match="different"): | |
| vr(">=1.0", prereleases=True).is_subset(vr("<2.0", prereleases=False)) | |
| with pytest.raises(ValueError, match="different"): | |
| vr(">=1.0", prereleases=True).is_disjoint(vr("<2.0", prereleases=False)) | |
| with pytest.raises(ValueError, match="different"): | |
| vr(">=1.0", prereleases=True).is_superset(vr("<2.0", prereleases=False)) | |
| def test_wrong_type_raises(self) -> None: | |
| with pytest.raises(TypeError, match="expected VersionRange"): | |
| vr(">=1.0").is_subset("x") # type: ignore[arg-type] | |
| with pytest.raises(TypeError, match="expected VersionRange"): | |
| vr(">=1.0").is_disjoint("x") # type: ignore[arg-type] | |
| with pytest.raises(TypeError, match="expected VersionRange"): | |
| vr(">=1.0").is_superset("x") # type: ignore[arg-type] | |
| class TestFilter: | |
| def test_filter_bounds(self) -> None: | |
| assert list(vr(">=1.0,<2.0").filter(["0.9", "1.5", "2.0"])) == ["1.5"] | |
| def test_intersected_requirement_keeps_opt_in( | |
| self, dep: str, constraint: str, versions: list[str], expected: list[str] | |
| ) -> None: | |
| # The opt-in survives intersection with a plain range; ``!=`` holes | |
| # clip it. | |
| assert list((vr(dep) & vr(constraint)).filter(versions)) == expected | |
| def test_narrowing_excludes_every_final_flushes_buffer(self) -> None: | |
| # The fallback is per filter call: narrowed past the last final, the | |
| # buffer flushes. | |
| wide = vr(">=1.0.0") | |
| pool = ["1.0.0", "1.5.0a1", "2.0.0b1"] | |
| assert list(wide.filter(pool)) == ["1.0.0"] | |
| narrowed = ( | |
| wide & ~VersionRange.singleton("1.0.0") & ~VersionRange.singleton("2.0.0b1") | |
| ) | |
| assert list(narrowed.filter(pool)) == ["1.5.0a1"] | |
| def test_flush_follows_in_place_yields(self) -> None: | |
| # Flushed pre-releases come after in-place yields: output is not | |
| # version-sorted. | |
| u = vr("~=1.0a1") | vr(">=2.5") | |
| assert list(u.filter(["2.6a1", "1.5a1"])) == ["1.5a1", "2.6a1"] | |
| def test_filter_prereleases_default_buffers(self) -> None: | |
| assert list(vr(">=1.0").filter(["1.3", "1.5a1"])) == ["1.3"] | |
| assert list(vr(">=1.0").filter(["1.5a1"])) == ["1.5a1"] | |
| def test_filter_prereleases_true(self) -> None: | |
| assert list(vr(">=1.0").filter(["1.3", "1.5a1"], prereleases=True)) == [ | |
| "1.3", | |
| "1.5a1", | |
| ] | |
| def test_filter_prereleases_false(self) -> None: | |
| assert list(vr(">=1.0").filter(["1.3", "1.5a1"], prereleases=False)) == ["1.3"] | |
| def test_filter_autodetect_true(self) -> None: | |
| assert list(vr(">=1.0a1").filter(["1.0a1", "1.5"])) == ["1.0a1", "1.5"] | |
| def test_filter_key(self) -> None: | |
| items = [{"v": "1.0"}, {"v": "2.0"}] | |
| out = list(vr("<2.0").filter(items, key=lambda x: x["v"])) | |
| assert out == [{"v": "1.0"}] | |
| def test_filter_universal(self) -> None: | |
| assert list(VersionRange.full().filter(["1.3", "1.5a1"])) == ["1.3"] | |
| assert list(VersionRange.full().filter(["1.5a1"])) == ["1.5a1"] | |
| assert list(VersionRange.full().filter(["1.3"], prereleases=True)) == ["1.3"] | |
| assert list(VersionRange.full().filter(["1.5a1"], prereleases=False)) == [] | |
| assert list(VersionRange.full().filter(["junk", "1.0"])) == ["junk", "1.0"] | |
| assert list(VersionRange.full().filter(["junk"])) == ["junk"] | |
| def test_filter_admission_modes(self) -> None: | |
| r = vr("===1.5a1") | |
| assert list(r.filter(["1.5a1"], prereleases=True)) == ["1.5a1"] | |
| assert list(r.filter(["1.5a1"], prereleases=False)) == [] | |
| assert list(r.filter(["1.5a1"])) == ["1.5a1"] | |
| def test_filter_admission_with_final(self) -> None: | |
| r = VersionRange.full() & vr("===wat") | |
| # admit literal then a non-matching final | |
| assert list(r.filter(["wat", "1.0"])) == ["wat"] | |
| def test_filter_admission_reject(self) -> None: | |
| r = ~vr("===1.0") | |
| assert list(r.filter(["1.0", "2.0"])) == ["2.0"] | |
| class TestContains: | |
| def test_contains_version_and_str(self) -> None: | |
| r = vr(">=1.0,<2.0") | |
| assert r.contains("1.5") | |
| assert r.contains(Version("1.5")) | |
| assert not r.contains("2.0") | |
| def test_contains_prereleases_false(self) -> None: | |
| assert not vr(">=1.0").contains("1.5a1", prereleases=False) | |
| assert vr(">=1.0").contains("1.5a1", prereleases=True) | |
| def test_contains_installed(self) -> None: | |
| r = vr(">=1.0", prereleases=False) | |
| assert r.contains("1.5a1", installed=True) | |
| assert r.contains(Version("1.5a1"), installed=True) | |
| assert r.contains("1.5", installed=True) | |
| def test_contains_arbitrary_literal(self) -> None: | |
| r = vr("===wat") | |
| assert r.contains("wat") | |
| assert r.contains("WAT") # case-insensitive | |
| assert not r.contains("other") | |
| def test_contains_literal_prerelease_excluded(self) -> None: | |
| r = vr("===1.0a1", prereleases=False) | |
| assert not r.contains("1.0a1") | |
| def test_contains_literal_prerelease_autodetect(self) -> None: | |
| r = vr("===1.0a1") | |
| assert r.contains("1.0a1") | |
| def test_contains_unparsable_non_full(self) -> None: | |
| assert not vr(">=1.0").contains("wat") | |
| def test_contains_unparsable_full(self) -> None: | |
| assert VersionRange.full().contains("wat") | |
| def test_contains_reject(self) -> None: | |
| r = ~vr("===1.0") | |
| assert not r.contains("1.0") | |
| assert r.contains("2.0") | |
| def test_contains_typeerror(self) -> None: | |
| with pytest.raises(TypeError, match="expected str or Version"): | |
| vr(">=1.0").contains(123) # type: ignore[arg-type] | |
| class TestEquality: | |
| def test_eq_and_hash(self) -> None: | |
| a = vr(">=1.0,<2.0") | |
| b = vr(">=1.0,<2.0") | |
| assert a == b | |
| assert hash(a) == hash(b) | |
| assert len({a, b}) == 1 | |
| def test_eq_wrong_type(self) -> None: | |
| assert vr(">=1.0").__eq__("x") is NotImplemented | |
| assert vr(">=1.0") != "x" | |
| def test_neq_bounds(self) -> None: | |
| assert vr(">=1.0") != vr(">=2.0") | |
| def test_repr(self, spec: str, expected: str) -> None: | |
| assert repr(SpecifierSet(spec).to_range()) == expected | |
| def test_repr_arbitrary_literal(self) -> None: | |
| assert repr(vr("===wat")) == "<VersionRange '{wat}'>" | |
| def test_repr_reject(self) -> None: | |
| assert "\\" in repr(~vr("===1.0")) | |
| def test_repr_pre(self) -> None: | |
| assert "pre=False" in repr(vr(">=1.0", prereleases=False)) | |
| def test_repr_boundary_kinds(self) -> None: | |
| assert "AFTER_LOCALS" in repr(vr("==1.0")) | |
| assert "AFTER_POSTS" in repr(vr(">1.0")) | |
| class TestToSpecifierSet: | |
| def test_roundtrip(self, spec: str) -> None: | |
| r = vr(spec) | |
| recovered = r.to_specifier_set() | |
| assert recovered is not None | |
| assert recovered.to_range() == r | |
| def test_empty(self) -> None: | |
| assert str(vr(">=2.0,<1.0").to_specifier_set()) == "<0" | |
| def test_empty_range_recovers_as_canonical_empty(self) -> None: | |
| # An empty range carries no opt-in region under clipping, so an empty | |
| # range that named a pre-release (``>=1.0,<=1.0a1``) recovers as the | |
| # canonical ``<0`` (the same members: none). | |
| r = vr(">=1.0,<=1.0a1") | |
| assert r.is_empty | |
| assert r._pre_region == () | |
| recovered = r.to_specifier_set() | |
| assert recovered is not None | |
| assert str(recovered) == "<0" | |
| assert recovered.to_range().is_empty | |
| def test_full_arbitrary(self) -> None: | |
| assert str(SpecifierSet("").to_range().to_specifier_set()) == "" | |
| def test_full_no_arbitrary_none(self) -> None: | |
| # The only full-bounds spelling ``>=0.dev0`` opts pre-releases in | |
| # (whole-bounds region), but this range has an empty opt-in region, so | |
| # no candidate round-trips. | |
| assert VersionRange.full(admit_arbitrary=False).to_specifier_set() is None | |
| def test_full_bounds_partial_region_none(self) -> None: | |
| # ``>=1.0a1 | ~>=1.0a1`` widens to full bounds but keeps the opt-in | |
| # region ``[1.0a1, +inf)``. No single SpecifierSet pairs full bounds with | |
| # a partial region (a pre-release specifier also bounds the range), so it | |
| # has no single-set form. | |
| r = vr(">=1.0a1") | ~vr(">=1.0a1") | |
| assert r._bounds == VersionRange.full()._bounds | |
| assert r._pre_region | |
| assert r._pre_region != r._bounds | |
| assert r.to_specifier_set() is None | |
| def test_full_configured_false(self) -> None: | |
| # ">=0.dev0" (not ">=0"): the floor must stay so the recovered set still | |
| # admits 0.dev0 under a prereleases=True override, matching the range. | |
| r = VersionRange.full(admit_arbitrary=False, prereleases=False) | |
| assert str(r.to_specifier_set()) == ">=0.dev0" | |
| def test_arbitrary_literal(self) -> None: | |
| assert str(vr("===wat").to_specifier_set()) == "===wat" | |
| def test_multiple_arbitrary_none(self) -> None: | |
| assert (vr("===a") | vr("===b")).to_specifier_set() is None | |
| def test_arbitrary_literal_with_comma_none(self) -> None: | |
| # A ``===`` literal may hold a comma (its arbitrary version excludes only | |
| # whitespace, ``;`` and ``)``), which the set string splits on, so it has | |
| # no single specifier-set spelling. It must return ``None``, not raise. | |
| r = SpecifierSet([Specifier("===a,b")]).to_range() | |
| assert r.to_specifier_set() is None | |
| def test_bounds_plus_literal_none(self) -> None: | |
| r = VersionRange.singleton("1.0") | vr("===garbage") | |
| assert r.to_specifier_set() is None | |
| def test_singleton_none(self) -> None: | |
| assert VersionRange.singleton("1.5").to_specifier_set() is None | |
| def test_equals_singleton_recovers_as_equals(self) -> None: | |
| # ``[V, AFTER_LOCALS(V)]`` is the natural ``==V``, not ``>=V,<=V``. | |
| assert str(vr("==1.0").to_specifier_set()) == "==1.0" | |
| assert str(vr("==1!2.3").to_specifier_set()) == "==1!2.3" | |
| assert str(vr("==1.0.post1").to_specifier_set()) == "==1.0.post1" | |
| # A pre-release singleton keeps its opt-in and still compacts. | |
| assert str(vr("==1.0a1").to_specifier_set()) == "==1.0a1" | |
| # A local segment keeps the existing ``==V+local`` compaction. | |
| assert str(vr("==1.0+local").to_specifier_set()) == "==1.0+local" | |
| def test_false_policy_recovers_release_equivalent(self) -> None: | |
| # ``~(>=3.14)`` is ``(-inf, 3.14)``, whose exclusive final upper admits | |
| # 3.14's pre-releases at the bounds level. Under ``prereleases=False`` | |
| # those are excluded, so it recovers as the terser release-equivalent | |
| # ``<3.14``; the recovered set accepts the same releases. | |
| r = ~vr(">=3.14", prereleases=False) | |
| recovered = r.to_specifier_set() | |
| assert recovered is not None | |
| assert str(recovered) == "<3.14" | |
| assert r._same_releases(recovered.to_range()) | |
| # None / True keep pre-releases, so the tightening is not equivalent and | |
| # the exact ``!=3.14,<=3.14`` form stands. | |
| assert str((~vr(">=3.14")).to_specifier_set()) == "!=3.14,<=3.14" | |
| true_recovered = (~vr(">=3.14", prereleases=True)).to_specifier_set() | |
| assert str(true_recovered) == "!=3.14,<=3.14" | |
| def test_false_policy_no_tightening_when_unbounded_above(self) -> None: | |
| # ``~(==3.14+local)`` extends to +inf, so its last upper is not a final | |
| # exclusive bound; nothing is tightened and the exact ``!=`` form stands. | |
| r = ~vr("==3.14+local", prereleases=False) | |
| recovered = r.to_specifier_set() | |
| assert recovered is not None | |
| assert str(recovered) == "!=3.14+local" | |
| assert recovered.to_range() == r | |
| def test_false_policy_disjoint_union_stays_none(self) -> None: | |
| # A disjoint union under ``prereleases=False`` has no single-set form, the | |
| # same as under None/True. Tightening only the last (here pre-release dev0) | |
| # upper avoids snapping the inner ``5)`` into a ``.dev0`` gap, which would | |
| # otherwise fabricate a long ``!=5.*,...,!=999.*`` chain. | |
| r = vr("<=5,!=5", prereleases=False) | vr("==1000.*", prereleases=False) | |
| assert len(r._bounds) == 2 | |
| assert r.to_specifier_set() is None | |
| def test_disjoint_none(self) -> None: | |
| # Two intervals split by a whole-interval gap (not a ``!=`` exclusion) | |
| # are a disjoint union, which has no single-set form. | |
| assert (vr(">=1,<2") | vr(">=4,<5")).to_specifier_set() is None | |
| def test_disjoint_wildcards_roundtrip(self) -> None: | |
| # ``==1.* | ==3.*`` is one span with an ``!=2.*`` hole: !=0.*,!=2.*,<4. | |
| r = vr("==1.*") | vr("==3.*") | |
| recovered = r.to_specifier_set() | |
| assert recovered is not None | |
| assert recovered.to_range() == r | |
| assert str(recovered) == "!=0.*,!=2.*,<4" | |
| def test_wide_wildcard_gap_none(self) -> None: | |
| # A far-apart wildcard union would decompose into one ``!=N.*`` per family | |
| # in the gap. Past ``_MAX_EXCLUSION_RUN`` that has no practical single-set | |
| # form, so it returns None instead of an unbounded chain. | |
| r = vr("==5.*") | vr("==1000000.*") | |
| assert len(r._bounds) == 2 | |
| assert r.to_specifier_set() is None | |
| # The budget is the total across the recursion, so a chain that stays | |
| # narrow at the top level but widens (or deepens) below is bounded too. | |
| assert (vr("==5.*") | vr("==7.200.*")).to_specifier_set() is None | |
| wide = vr("==0.*") | vr("==" + ".".join(["99"] * 100) + ".*") | |
| assert wide.to_specifier_set() is None | |
| # Each level also costs at least one, so a deep run of zero-span levels | |
| # (a valid version with hundreds of trailing components) is bounded and | |
| # returns None rather than recursing past the interpreter's stack limit. | |
| deep = vr("==0.*") | vr("==1." + ".".join(["0"] * 400) + ".1.*") | |
| assert deep.to_specifier_set() is None | |
| def test_specifier_set_exclusion_cap_returns_none(self) -> None: | |
| # A plain specifier set that spells out a long exclusion run reaches the | |
| # same cap: past ``_MAX_EXCLUSION_RUN`` families the recovery gives up. So | |
| # a specifier-derived range can return None without any set algebra. | |
| def excl(n: int) -> str: | |
| return ",".join(f"!={k}.*" for k in range(1, n + 1)) | |
| at_cap = SpecifierSet(excl(_MAX_EXCLUSION_RUN)).to_range() | |
| assert at_cap.to_specifier_set() is not None | |
| over_cap = SpecifierSet(excl(_MAX_EXCLUSION_RUN + 1)).to_range() | |
| assert over_cap.to_specifier_set() is None | |
| def test_wildcards_then_dev_run_share_cap(self) -> None: | |
| # A gap spelled by a ``!=P.*`` chain plus a trailing dev run charges | |
| # both against one budget, so the pair caps at ``_MAX_EXCLUSION_RUN`` | |
| # total rather than getting a full cap each. | |
| run = _MAX_EXCLUSION_RUN // 2 | |
| def spec(families: int) -> SpecifierSet: | |
| prefixes = [f"!={k}.*" for k in range(1, families + 1)] | |
| devs = [f"!={families + 1}.dev{d}" for d in range(run)] | |
| return SpecifierSet(",".join(prefixes + devs)) | |
| at_cap = spec(_MAX_EXCLUSION_RUN - run).to_range() | |
| assert at_cap.to_specifier_set() is not None | |
| over_cap = spec(_MAX_EXCLUSION_RUN - run + 1).to_range() | |
| assert over_cap.to_specifier_set() is None | |
| def test_cross_epoch_dev_gap_none(self) -> None: | |
| # A dev-run gap whose family sits in another epoch is not a | |
| # wildcard-plus-run shape; the gap has no exclusion spelling and the | |
| # disjoint union has no single-set form. | |
| assert (vr("<1") | vr(">=1!0.dev1,!=1!0.dev1")).to_specifier_set() is None | |
| def test_recovery_caps_long_dev_runs(self) -> None: | |
| # A ``.dev`` run longer than ``_MAX_EXCLUSION_RUN`` also has no practical | |
| # single-set form. The bound encoders keep the terse ``>=V,!=V`` spelling | |
| # or return None rather than spell out a huge ``!=`` chain from a short | |
| # input. The four run sites, driven by an attacker-controlled dev number: | |
| dev = _MAX_EXCLUSION_RUN | |
| anchor = vr(f">=1.dev{dev},!=1.dev{dev}").to_specifier_set() | |
| assert str(anchor) == f"!=1.dev{dev},>=1.dev{dev}" | |
| assert ( | |
| str(vr(f">=1!0.dev{dev},!=1!0.dev{dev},<1!1").to_specifier_set()) | |
| == f"!=1!0.dev{dev},<1!1.dev0,>=1!0.dev{dev}" | |
| ) | |
| assert (~vr(f">=1.0,<=1.0.post0.dev{dev}")).to_specifier_set() is None | |
| assert (~vr(f">=1.dev0,<=2.dev{dev}")).to_specifier_set() is None | |
| def test_reject_none(self) -> None: | |
| assert (~vr("===1.0")).to_specifier_set() is None | |
| def test_arbitrary_admitting_empty_none(self) -> None: | |
| # ``~vr("")`` is the empty set still tagged arbitrary-admitting. No | |
| # SpecifierSet reproduces that shape (the empty ``<0`` admits no | |
| # strings), so it returns None rather than the usual empty ``<0``. | |
| r = ~vr("") | |
| assert r.is_empty | |
| assert r.to_specifier_set() is None | |
| def test_complement_gt_none(self) -> None: | |
| # (-inf, AFTER_POSTS] inclusive upper has no specifier form. | |
| assert (~vr(">1.0")).to_specifier_set() is None | |
| def test_complement_closed_interval_none(self) -> None: | |
| # ~(>=2.3,<=2.7) is two disjoint intervals, NOT a single ``!=2.3``; | |
| # the gap spans the whole [2.3, 2.7] interval so there is no form. | |
| r = ~vr(">=2.3,<=2.7") | |
| assert r.to_specifier_set() is None | |
| assert Version("2.5") not in r | |
| assert Version("2.3") not in r | |
| assert Version("2.8") in r | |
| assert Version("2.0") in r | |
| def test_whole_region_recovers_with_floor(self) -> None: | |
| # Bounds ``[2.0, +inf)`` with the whole range opted in (inherited from the | |
| # ``>=1.0a1`` operand). Clean ``>=2.0`` alone carries no opt-in, so the | |
| # no-op ``>=0.dev0`` floor is added to force-admit the in-bounds pre-releases. | |
| r = vr(">=1.0a1") & vr(">=2.0") | |
| assert r._pre_region == r._bounds | |
| recovered = r.to_specifier_set() | |
| assert recovered is not None | |
| assert recovered.to_range() == r | |
| assert str(recovered) == ">=0.dev0,>=2.0" | |
| def test_wildcard_with_exclusion(self) -> None: | |
| r = vr("==1.*") & ~vr("==1.5.*") | |
| recovered = r.to_specifier_set() | |
| assert recovered is not None | |
| assert recovered.to_range() == r | |
| def test_explicit_policy_recovers(self) -> None: | |
| # An explicit configured policy carries onto the recovered set, so a | |
| # pre-release-naming range under ``prereleases=True`` still re-encodes. | |
| r = vr(">=1.0a1,>=2.0", prereleases=True) | |
| recovered = r.to_specifier_set() | |
| assert recovered is not None | |
| def test_dev0_span_roundtrips_every_policy(self, prereleases: bool | None) -> None: | |
| # The reported regression: a ``.dev0`` lower with a wider-than-one-family | |
| # span (``>=3.8.dev0,<3.14``) re-encodes under every pre-release policy. | |
| r = vr(">=3.8.dev0,<3.14", prereleases=prereleases) | |
| recovered = r.to_specifier_set() | |
| assert recovered is not None | |
| assert recovered.to_range() == r | |
| assert str(recovered) == "<3.14.dev0,>=3.8.dev0" | |
| def test_prerelease_free_recovery_spelling(self, spec: str, expected: str) -> None: | |
| # With an empty opt-in region the encoder must avoid a synthetic | |
| # ``.dev0`` so the recovered set opts no pre-release in either. | |
| recovered = vr(spec).to_specifier_set() | |
| assert recovered is not None | |
| assert str(recovered) == expected | |
| assert recovered.to_range() == vr(spec) | |
| def test_after_locals_final_lower_roundtrips(self) -> None: | |
| # ``~(<=1.0)`` is ``(AFTER_LOCALS(1.0), +inf)``; a final-version | |
| # AFTER_LOCALS lower has no clean family form, so it stays ``>=1.0,!=1.0``. | |
| r = ~vr("<=1.0") | |
| recovered = r.to_specifier_set() | |
| assert recovered is not None | |
| assert str(recovered) == "!=1.0,>=1.0" | |
| assert recovered.to_range() == r | |
| def test_literal_sibling_dev_recovers_bare(self) -> None: | |
| # ``>=3.8.dev0,===3.8`` intersects to the bare literal ``{3.8}`` (empty | |
| # bounds), which carries no opt-in region under clipping, so it recovers | |
| # as the plain ``===3.8`` with no restoring floor. | |
| r = vr(">=3.8.dev0,===3.8") | |
| assert r._admit == {"3.8"} | |
| assert r._pre_region == () | |
| recovered = r.to_specifier_set() | |
| assert recovered is not None | |
| assert str(recovered) == "===3.8" | |
| assert recovered.to_range() == r | |
| def test_epoch_base_dev0_lower_none(self) -> None: | |
| # ``[1!0.dev0, +inf)`` has no prerelease-free family form (``1!0`` cannot | |
| # decrement), and ``>=1!0.dev0`` would opt pre-releases in (a whole-bounds | |
| # region) that this range does not, so it returns None. | |
| r = ~vr("<1!0") | |
| assert not r.is_empty | |
| assert r.to_specifier_set() is None | |
| def test_after_locals_final_lower_recovers(self) -> None: | |
| # Canonicalization folds ``[3.8.post0.dev0, +inf)`` to | |
| # ``(AFTER_LOCALS(3.8), +inf)``. A final-release AFTER_LOCALS lower has | |
| # no clean ``>`` form, so it recovers as ``>=3.8,!=3.8``. | |
| r = ~vr("<3.8.post0") | |
| recovered = r.to_specifier_set() | |
| assert recovered is not None | |
| assert str(recovered) == "!=3.8,>=3.8" | |
| assert recovered.to_range() == r | |
| def test_undecomposable_chain_before_dev0_point_none(self) -> None: | |
| # The gap before ``AFTER_LOCALS(1.3.dev0)`` starts at ``1.2.3.dev0``, | |
| # whose wildcard chain to ``1.3.dev0`` is undecomposable, so the | |
| # combined chain + ``!=1.3.dev0`` gap has no form. | |
| r = ~vr(">=1.2.3.dev0,<=1.3.dev0") | |
| assert not r.is_empty | |
| assert r.to_specifier_set() is None | |
| def test_epoch_zero_family_floor_roundtrips(self, spec: str, expected: str) -> None: | |
| recovered = vr(spec).to_specifier_set() | |
| assert recovered is not None | |
| assert str(recovered) == expected | |
| assert recovered.to_range() == vr(spec) | |
| def test_arbitrary_literal_recovers_bare(self) -> None: | |
| # ``{abc}`` (an arbitrary ``===`` string) carries no opt-in region under | |
| # clipping, so it recovers as the plain ``===abc``, with no restoring | |
| # floor to reject the non-version string. | |
| r = (vr("===abc") & vr(">=1.0a1")) | vr("===abc") | |
| assert "abc" in r | |
| assert r._pre_region == () | |
| recovered = r.to_specifier_set() | |
| assert recovered is not None | |
| assert str(recovered) == "===abc" | |
| assert recovered.to_range() == r | |
| def test_epoch_dev0_with_post_is_not_a_family_floor(self) -> None: | |
| # 1!0.post1.dev0 is an epoch-zero release with a post, not the family | |
| # floor, so it recovers through the post-release path, not ==1!0.*. | |
| r = ~vr("<1!0.post1") | |
| recovered = r.to_specifier_set() | |
| assert recovered is not None | |
| assert str(recovered) == ">1!0.post0" | |
| assert recovered.to_range() == r | |
| def test_epoch_floor_unencodable_upper_none(self) -> None: | |
| # An epoch-floor lower inside its family, but the upper is an inclusive | |
| # AFTER_POSTS boundary with no specifier form. | |
| r = vr("==1!0.*") & ~vr(">1!0.5") | |
| assert not r.is_empty | |
| assert r.to_specifier_set() is None | |
| def test_adjacent_not_equal_chain_roundtrips(self) -> None: | |
| # Two adjacent exclusions (V and its immediate successor) share one gap | |
| # that recovers as the ``!=`` chain. | |
| r = vr("!=1.0,!=1.0.post0.dev0") | |
| recovered = r.to_specifier_set() | |
| assert recovered is not None | |
| assert str(recovered) == "!=1.0,!=1.0.post0.dev0" | |
| assert recovered.to_range() == r | |
| def test_long_not_equal_chain_roundtrips(self) -> None: | |
| # Three adjacent exclusions collapse to one gap spanning a dev run. | |
| r = vr(">=0.dev0,!=1.0,!=1.0.post0.dev0,!=1.0.post0.dev1") | |
| recovered = r.to_specifier_set() | |
| assert recovered is not None | |
| assert recovered.to_range() == r | |
| def test_floor_dev_run_roundtrips(self) -> None: | |
| # ``!=0.dev0,!=0.dev1`` excludes the two least versions, leaving the lone | |
| # ``(AFTER_LOCALS(0.dev1), +inf)`` interval, which recovers the floor run. | |
| r = vr("!=0.dev0,!=0.dev1") | |
| recovered = r.to_specifier_set() | |
| assert recovered is not None | |
| assert str(recovered) == "!=0.dev0,!=0.dev1" | |
| assert recovered.to_range() == r | |
| def test_after_posts_inclusive_upper_roundtrips(self) -> None: | |
| # ``<1.0a1.dev0`` folds to an inclusive ``AFTER_POSTS(1.0a0)]`` upper, | |
| # which recovers as ``<`` its least successor. | |
| r = vr("<1.0a1.dev0") | |
| recovered = r.to_specifier_set() | |
| assert recovered is not None | |
| assert str(recovered) == "<1.0a1.dev0" | |
| assert recovered.to_range() == r | |
| def test_final_after_posts_left_upper_none(self) -> None: | |
| # A two-interval range whose left interval ends at an inclusive final | |
| # ``AFTER_POSTS(1.0)]`` upper names no single point, so the gap is not a | |
| # ``!=`` chain and the disjoint union has no specifier form. | |
| r = ~vr(">1.0") | ~vr("<2.0") | |
| assert len(r._bounds) == 2 | |
| assert r.to_specifier_set() is None | |
| def test_epoch_prerelease_singleton_no_opt_in_none(self) -> None: | |
| # ``~(!=1!0a0.dev0)`` holds just ``1!0a0.dev0`` and its locals, which | |
| # ``==1!0a0.dev0`` also spells, but that spelling opts the pre-release in | |
| # (whole-bounds region) while this range carries no opt-in, so None. | |
| r = ~vr("!=1!0a0.dev0") | |
| assert not r.is_empty | |
| assert r._pre_region == () | |
| assert r.to_specifier_set() is None | |
| def test_leading_interval_post_dev_collapse_recovers(self) -> None: | |
| # Adjacent exclusions collapse into the leading interval's lower | |
| # (``(AFTER_LOCALS(1.0.post0.dev0), +inf)``). Anchoring at the | |
| # prerelease-free base 1.0 recovers ``>=1.0,!=1.0,!=1.0.post0.dev0``. | |
| r = vr(">=1.0,!=1.0,!=1.0.post0.dev0") | |
| recovered = r.to_specifier_set() | |
| assert recovered is not None | |
| assert str(recovered) == "!=1.0,!=1.0.post0.dev0,>=1.0" | |
| assert recovered.to_range() == r | |
| def test_release_base_dev_floor_recovers(self) -> None: | |
| # ``==1.0.*`` minus its two least dev releases leaves an | |
| # ``AFTER_LOCALS(1.0.dev1)`` lower, recovered via the ``!=0.*`` family | |
| # floor plus the dev run. | |
| r = vr("==1.0.*,!=1.0.dev0,!=1.0.dev1") | |
| recovered = r.to_specifier_set() | |
| assert recovered is not None | |
| assert str(recovered) == "!=0.*,!=1.0.dev0,!=1.0.dev1,<1.1" | |
| assert recovered.to_range() == r | |
| def test_epoch_floor_dev_run_recovers(self) -> None: | |
| # An epoch>0 zero-family floor with a leading dev run recovers as | |
| # ``==1!0.*`` plus the excluded dev releases. | |
| r = vr("==1!0.*,!=1!0.dev0,!=1!0.dev1") | |
| recovered = r.to_specifier_set() | |
| assert recovered is not None | |
| assert str(recovered) == "!=1!0.dev0,!=1!0.dev1,==1!0.*" | |
| assert recovered.to_range() == r | |
| def test_wildcard_then_adjacent_dev_run_roundtrips(self) -> None: | |
| # A wildcard exclusion abutting a dev run of length 2+ shares one gap: | |
| # the ``!=2.*`` family and then ``3.dev0,3.dev1`` in 3's own family. | |
| r = vr("!=2.*,!=3.dev0,!=3.dev1") | |
| recovered = r.to_specifier_set() | |
| assert recovered is not None | |
| assert str(recovered) == "!=2.*,!=3.dev0,!=3.dev1" | |
| assert recovered.to_range() == r | |
| def test_prerelease_dev_singleton_no_opt_in_none(self) -> None: | |
| # ``~(!=1.0a1.dev1)`` is the singleton ``{1.0a1.dev1}`` with no opt-in | |
| # region; every spelling of a pre-release singleton opts it in, so None. | |
| r = ~vr("!=1.0a1.dev1") | |
| assert not r.is_empty | |
| assert r._pre_region == () | |
| assert r.to_specifier_set() is None | |
| def test_epoch_prerelease_floor_lower_declines_family_form(self) -> None: | |
| # An epoch>0 floor lower that names a pre-release (``1!0a0.dev0``) has no | |
| # ``==1!0.*`` family form, so the encoder falls back to the generic | |
| # ``>=,<`` spelling. | |
| r = vr(">=1!0a0.dev0,<1!5") | |
| recovered = r.to_specifier_set() | |
| assert recovered is not None | |
| assert str(recovered) == "<1!5,>=1!0a0.dev0" | |
| assert recovered.to_range() == r | |
| # Boundary-sensitive specs and versions exercising the union / complement / | |
| # empty-check / encoder edge branches deterministically. | |
| _GRID_SPECS = [ | |
| "", | |
| ">=1.0,<2.0", | |
| "!=1.5", | |
| "~=1.4.2", | |
| "==1.*", | |
| "==2.*", | |
| "==2.0.*", | |
| "==1.2.*", | |
| "==1.2.3.*", | |
| "!=1.0", | |
| "!=1.5.*", | |
| ">1.0.post1", | |
| "<=1.0.post2", | |
| "==1.0+local", | |
| "!=1.0+local", | |
| ">=1.0a1", | |
| "<1.0rc1", | |
| "==2!1.0", | |
| ">=2!1.0", | |
| "<2!1.0", | |
| ">=1.0.dev0", | |
| "!=1.0.dev0", | |
| "==1.0.dev0", | |
| "!=1.0a1", | |
| "<1.0", | |
| ">1.0", | |
| "===wat", | |
| "===1.0", | |
| ] | |
| _GRID_VERSIONS = [ | |
| "0.dev0", | |
| "0", | |
| "1.0.dev0", | |
| "1.0a1", | |
| "1.0rc1", | |
| "1.0", | |
| "1.0+local", | |
| "1.0.post0", | |
| "1.0.post1", | |
| "1.0.post2", | |
| "1.0.1", | |
| "1.2", | |
| "1.2.3", | |
| "1.4.2", | |
| "1.4.9", | |
| "1.5", | |
| "1.5.1", | |
| "1.6", | |
| "2.0.dev0", | |
| "2.0", | |
| "2!1.0", | |
| "3.0", | |
| ] | |
| _GRID_RANGES = [SpecifierSet(s).to_range() for s in _GRID_SPECS] | |
| _GRID_VERSION_OBJS = [Version(v) for v in _GRID_VERSIONS] | |
| class TestAlgebraInvariants: | |
| """Membership invariants over an exhaustive small grid. | |
| Every range here is autodetect (configured policy None), so ``contains`` | |
| on a :class:`Version` reduces to pure bounds membership and the set-algebra | |
| identities hold exactly. | |
| """ | |
| def _same_versions(self, a: VersionRange, b: VersionRange) -> bool: | |
| return all((v in a) == (v in b) for v in _GRID_VERSION_OBJS) | |
| def test_complement_is_negation(self) -> None: | |
| for r in _GRID_RANGES: | |
| comp = ~r | |
| for v in _GRID_VERSION_OBJS: | |
| assert (v in comp) == (v not in r), (r, v) | |
| def test_double_complement_matches(self) -> None: | |
| # ``~~r`` matches the same versions as ``r``. It is structurally equal | |
| # for canonical ranges; the degenerate ``>=0.dev0`` canonicalizes to | |
| # the full range, which is version-equivalent. | |
| for r in _GRID_RANGES: | |
| assert self._same_versions(~~r, r), r | |
| def test_intersection_is_and(self) -> None: | |
| for a in _GRID_RANGES: | |
| for b in _GRID_RANGES: | |
| ab = a & b | |
| for v in _GRID_VERSION_OBJS: | |
| assert (v in ab) == ((v in a) and (v in b)), (a, b, v) | |
| def test_union_is_or(self) -> None: | |
| for a in _GRID_RANGES: | |
| for b in _GRID_RANGES: | |
| ab = a | b | |
| for v in _GRID_VERSION_OBJS: | |
| assert (v in ab) == ((v in a) or (v in b)), (a, b, v) | |
| def test_to_specifier_set_roundtrips(self) -> None: | |
| for r in _GRID_RANGES: | |
| recovered = r.to_specifier_set() | |
| if recovered is not None: | |
| assert self._same_versions(recovered.to_range(), r), r | |
| def test_complement_to_specifier_set_roundtrips(self) -> None: | |
| for r in _GRID_RANGES: | |
| comp = ~r | |
| recovered = comp.to_specifier_set() | |
| if recovered is not None: | |
| assert self._same_versions(recovered.to_range(), comp), comp | |
| def test_union_to_specifier_set_roundtrips(self) -> None: | |
| for a in _GRID_RANGES: | |
| for b in _GRID_RANGES: | |
| ab = a | b | |
| recovered = ab.to_specifier_set() | |
| if recovered is not None: | |
| assert self._same_versions(recovered.to_range(), ab), ab | |
| class TestSyntheticEmptyGaps: | |
| """Intervals that are ordered yet hold no real version. | |
| ``>V`` excludes V's post-releases (AFTER_POSTS) and ``<=V`` includes V's | |
| locals (AFTER_LOCALS), so a bound can sit just below the next real version. | |
| When the opposite bound lands on that successor, the interval is ordered but | |
| empty: ``>1.0a1`` admits nothing below ``1.0a2.dev0`` because every | |
| ``1.0a1.postN`` is excluded. The empty interval must be detected so that | |
| ``is_empty``, equality, and the set algebra stay correct. | |
| """ | |
| def test_is_empty(self, spec: str) -> None: | |
| assert SpecifierSet(spec).to_range().is_empty | |
| def test_not_empty(self, spec: str) -> None: | |
| assert not SpecifierSet(spec).to_range().is_empty | |
| def test_equal_substitutability(self) -> None: | |
| # Equality is substitutability: two synthetic-empty ranges match no | |
| # version, so they compare equal (both reduce to empty bounds). | |
| a = vr(">1.0a1,<1.0a2.dev0") | |
| b = vr(">1.0b0,<1.0b1.dev0") | |
| assert a == b | |
| assert hash(a) == hash(b) | |
| assert a._bounds == () | |
| def test_subset_of_anything(self) -> None: | |
| # The PubGrub subset test ``(a & ~b).is_empty``: the empty set is a | |
| # subset of every range. | |
| empty = vr(">1.0a1,<1.0a2.dev0") | |
| assert (empty & ~vr(">=5.0")).is_empty | |
| def test_intersection_drops_embedded_empty(self, spec: str, excluded: str) -> None: | |
| # The empty AFTER_LOCALS interval must not survive in the bounds. | |
| r = SpecifierSet(spec).to_range() | |
| assert len(r._bounds) == 1 | |
| assert not r.is_empty | |
| assert Version(excluded) not in r | |
| def test_complement_of_covering_union_is_empty(self) -> None: | |
| # ``~(>1.0a1)`` (everything up to and including 1.0a1's posts) and | |
| # ``>=1.0a2.dev0`` leave only the empty gap uncovered, so the union is | |
| # everything and its complement is empty. | |
| covering = ~vr(">1.0a1") | vr(">=1.0a2.dev0") | |
| assert covering._bounds == VersionRange.full()._bounds | |
| assert covering.complement().is_empty | |
| def test_double_complement_of_empty(self) -> None: | |
| r = vr(">1.0a1,<1.0a2.dev0") | |
| assert (~~r).is_empty | |
| class TestBoundaryCanonicalization: | |
| """Different specifiers for the same set canonicalize to one form. | |
| ``>1.0a1`` excludes ``1.0a1``'s post-releases, so its smallest member is | |
| ``1.0a2.dev0``, exactly what ``>=1.0a2.dev0`` starts at. The two are the | |
| same set, so they fold to one boundary form and compare equal. The boundary | |
| (non-``.dev0``) form is canonical, so ``>=1.0a2.dev0`` adopts ``>1.0a1``'s. | |
| """ | |
| def test_equal_and_hash(self, dev_form: str, boundary_form: str) -> None: | |
| a, b = vr(dev_form), vr(boundary_form) | |
| assert a == b | |
| assert hash(a) == hash(b) | |
| assert a._bounds == b._bounds | |
| assert len({a, b}) == 1 | |
| def test_upper_bound_folds_to_boundary(self) -> None: | |
| # The exclusive-upper mirror: ``<1.0a2.dev0`` ends at AFTER_POSTS(1.0a1). | |
| assert "1.0a1[AFTER_POSTS]" in repr(vr("<1.0a2.dev0")) | |
| def test_keeps_non_dev_anchor(self) -> None: | |
| # The boundary form is canonical, so the repr keeps the non-dev anchor. | |
| assert "1.0a1[AFTER_POSTS]" in repr(vr(">=1.0a2.dev0")) | |
| def test_prerelease_policy_keeps_them_distinct(self) -> None: | |
| # Same set, but ``<1.0.post0.dev0`` admits pre-releases by default and | |
| # ``<=1.0`` does not, so they are not substitutable and stay unequal. | |
| assert vr("<1.0.post0.dev0") != vr("<=1.0") | |
| def test_plain_version_is_not_folded(self) -> None: | |
| # ``1.0a2`` is not a boundary successor, so ``>=1.0a2`` stays plain. | |
| assert "1.0a2" in repr(vr(">=1.0a2")) | |
| assert "AFTER" not in repr(vr(">=1.0a2")) | |
| class TestEmptyMatchesUnsatisfiable: | |
| """``is_empty`` agrees with ``SpecifierSet.is_unsatisfiable``. | |
| Both fold in the pre-release policy: a range whose only members are | |
| pre-releases is empty when the policy excludes them. | |
| """ | |
| def test_prerelease_only_empty_when_policy_excludes(self, spec: str) -> None: | |
| assert vr(spec, prereleases=False).is_empty | |
| assert not vr(spec, prereleases=True).is_empty | |
| assert SpecifierSet(spec, prereleases=False).is_unsatisfiable() | |
| def test_non_prerelease_literal_survives(self) -> None: | |
| # ``===1.0`` admits a final release, so the policy does not empty it. | |
| assert not vr("===1.0", prereleases=False).is_empty | |
| def test_non_prerelease_bounds_survive(self, spec: str) -> None: | |
| # A pre-release-with-post lower still admits the final/post release. | |
| assert not vr(spec, prereleases=False).is_empty | |
| def test_arbitrary_admission_is_not_empty(self) -> None: | |
| # The universal range admits any string regardless of policy. | |
| assert not vr("", prereleases=False).is_empty | |
| class TestCoverageEdges: | |
| """Targeted cases for branches the grid does not reach.""" | |
| def test_build_admit_and_reject(self) -> None: | |
| r = (vr("===a") | vr("===b")) & vr("===a") | |
| assert "a" in r | |
| assert "b" not in r | |
| def test_combine_literal_reject(self) -> None: | |
| # Version literals so the reject set survives _build against full bounds. | |
| r = (~vr("===1.0")) | vr("===2.0") | |
| assert Version("2.0") in r | |
| assert Version("1.5") in r | |
| assert Version("1.0") not in r | |
| def test_filter_literal_nonmatching_string(self) -> None: | |
| assert list(vr("===wat").filter(["other"])) == [] | |
| def test_filter_admission_false_mixed(self) -> None: | |
| r = ~vr("===1.0") | |
| assert list(r.filter(["1.0", "2.0"], prereleases=False)) == ["2.0"] | |
| def test_filter_admission_arbitrary_after_final(self) -> None: | |
| r = vr(">=1.0") | vr("===wat") | |
| assert list(r.filter(["1.5", "wat"])) == ["1.5", "wat"] | |
| def test_filter_admission_prerelease_buffer(self) -> None: | |
| r = vr(">=1.0") | vr("===wat") | |
| assert list(r.filter(["1.5a1", "wat"])) == ["1.5a1", "wat"] | |
| def test_contains_literal_nonprerelease_false_policy(self) -> None: | |
| assert vr("===1.0", prereleases=False).contains("1.0") | |
| def test_multi_wildcard_adjacent_roundtrips(self) -> None: | |
| # ==2.0.* adjoins ==1.* (both touch 2.dev0), so the union is the single | |
| # contiguous span [1.dev0, 2.1.dev0), recovered as !=0.*,<2.1. | |
| r = vr("==1.*") | vr("==2.0.*") | |
| recovered = r.to_specifier_set() | |
| assert recovered is not None | |
| assert recovered.to_range() == r | |
| assert str(recovered) == "!=0.*,<2.1" | |
| def test_multi_wildcard_with_exclusion_roundtrips(self) -> None: | |
| # The span [1.dev0, 3.dev0) minus the 1.5 family is one set: !=0.*,!=1.5,<3. | |
| r = (vr("==1.*") | vr("==2.*")) & ~vr("==1.5") | |
| assert Version("1.5") not in r | |
| assert Version("1.4") in r | |
| assert Version("2.5") in r | |
| recovered = r.to_specifier_set() | |
| assert recovered is not None | |
| assert recovered.to_range() == r | |
| assert str(recovered) == "!=0.*,!=1.5,<3" | |
| def test_multi_wildcard_wildcard_exclusion_roundtrips(self) -> None: | |
| # A ``==V.*`` outer with several ``!=P.*`` holes (including nested | |
| # ``1.0.1.*`` / ``1.3.1.*``) re-encodes to a single set. | |
| r = vr("==1.*,!=1.0.1.*,!=1.3.1.*,!=1.2.*") | |
| assert Version("1.0.0") in r | |
| assert Version("1.0.1") not in r | |
| assert Version("1.2.5") not in r | |
| assert Version("1.3.1") not in r | |
| assert Version("1.4") in r | |
| recovered = r.to_specifier_set() | |
| assert recovered is not None | |
| assert recovered.to_range() == r | |
| def test_not_equal_local_gap(self) -> None: | |
| r = vr("!=1.0+local") | |
| assert Version("1.0+local") not in r | |
| assert Version("1.0") in r | |
| recovered = r.to_specifier_set() | |
| assert recovered is not None | |
| assert recovered.to_range() == r | |
| def test_after_posts_boundary_total_order_consistent(self) -> None: | |
| # ``AFTER_POSTS(1.0)`` and ``AFTER_POSTS(1.0.post1)`` mark the same point | |
| # on the version line, so equality must agree with the ordering: | |
| # exactly one of ``<``, ``==``, ``>`` holds for any two boundaries. | |
| a = BoundaryVersion(Version("1.0"), BoundaryKind.AFTER_POSTS) | |
| b = BoundaryVersion(Version("1.0.post1"), BoundaryKind.AFTER_POSTS) | |
| assert a == b | |
| assert hash(a) == hash(b) | |
| assert (a < b) + (a == b) + (a > b) == 1 | |
| # Distinct points stay unequal and strictly ordered, and the two kinds | |
| # at one version are different points. | |
| c = BoundaryVersion(Version("1.1"), BoundaryKind.AFTER_POSTS) | |
| assert a != c | |
| assert (a < c) ^ (a > c) | |
| assert a != BoundaryVersion(Version("1.0"), BoundaryKind.AFTER_LOCALS) | |
| def test_arbitrary_after_locals_dev(self) -> None: | |
| # !=1.0.dev0 produces an AFTER_LOCALS(1.0.dev0) boundary with a dev | |
| # inner version, exercising the dev successor path under complement. | |
| r = ~vr("!=1.0.dev0") | |
| assert Version("1.0.dev0") in r | |
| assert Version("1.1") not in r | |
| def test_encode_interval_undecomposable_dev0(self) -> None: | |
| # [1.2.dev0, 3.dev0): not a clean wildcard family, falls through to the | |
| # plain bounds encoding. | |
| r = vr(">=1.2.dev0,<3") | |
| recovered = r.to_specifier_set() | |
| assert recovered is not None | |
| assert recovered.to_range() == r | |
| def test_wildcard_chain_cross_epoch_gap(self) -> None: | |
| # !=V.* gap between two different-epoch wildcard families. | |
| r = vr("==1!1.*") | vr("==2!1.*") | |
| assert Version("1!1.5") in r | |
| assert Version("2!1.5") in r | |
| assert r.to_specifier_set() is None | |
| def test_equal_wildcard_cross_epoch_interval(self) -> None: | |
| # A single interval spanning two epochs is not a wildcard family. | |
| r = vr(">=1!1.dev0,<2!1") | |
| recovered = r.to_specifier_set() | |
| assert recovered is not None | |
| assert recovered.to_range() == r | |
| def test_double_complement_min_boundary(self) -> None: | |
| # >=0.dev0 is already canonicalized to the full range at construction, | |
| # so ~~ round-trips it (full -> empty -> full). | |
| r = vr(">=0.dev0") | |
| comp2 = ~~r | |
| for v in ["0.dev0", "0", "1.0", "2!1.0"]: | |
| assert (Version(v) in comp2) == (Version(v) in r) | |
| def test_configured_false_lower_keeps_dev0(self) -> None: | |
| # Under configured False the recovered set keeps the synthetic .dev0 so | |
| # it matches the range under a prereleases=True override (no stripping). | |
| r = ~vr("<1.5", prereleases=False) | |
| recovered = r.to_specifier_set() | |
| assert recovered is not None | |
| assert recovered.to_range() == r | |
| assert r.contains("1.5a1", prereleases=True) == recovered.contains( | |
| "1.5a1", prereleases=True | |
| ) | |
| def test_configured_false_upper_keeps_dev0(self) -> None: | |
| r = ~vr(">1.0.post1", prereleases=False) | |
| recovered = r.to_specifier_set() | |
| assert recovered is not None | |
| assert recovered.to_range() == r | |
| def test_sub_minimum_union(self) -> None: | |
| # Union touching the 0.dev0 floor exercises the sub-minimum empty check. | |
| r = vr("==0.dev0") | vr(">=1.0") | |
| assert Version("0.dev0") in r | |
| assert Version("1.0") in r | |
| assert Version("0.5") not in r | |
| def test_floor_exclusive_upper_is_empty(self) -> None: | |
| # ``<0.dev0`` excludes the smallest version: the canonical empty. | |
| r = vr("<0.dev0") | |
| assert r.is_empty | |
| assert r == VersionRange.empty() | |
| assert r._pre_region == () | |
| def test_exact_equals_successor_interval_bounds(self) -> None: | |
| # ``==1.0`` and ``>=1.0,<1.0.post0.dev0`` share bounds; the dev | |
| # spelling carries an opt-in region, so they stay unequal. | |
| a, b = vr("==1.0"), vr(">=1.0,<1.0.post0.dev0") | |
| assert a._bounds == b._bounds | |
| assert a != b | |
| assert a._pre_region == () | |
| assert b._pre_region != () | |
| def test_lte_and_post_dev_upper_same_bounds(self) -> None: | |
| # ``<=1.0`` and ``<1.0.post0.dev0`` share bounds; only the opt-in | |
| # region tells them apart. | |
| a, b = vr("<=1.0"), vr("<1.0.post0.dev0") | |
| assert a._bounds == b._bounds | |
| assert list(a.filter(["1.0.dev1", "0.9"])) == ["0.9"] | |
| assert list(b.filter(["1.0.dev1", "0.9"])) == ["1.0.dev1", "0.9"] | |
| def test_strict_singleton_complement_no_form(self) -> None: | |
| # ~singleton has an exclusive plain-version lower with no specifier form. | |
| comp = ~VersionRange.singleton("1.0") | |
| assert Version("1.0") not in comp | |
| assert Version("2.0") in comp | |
| assert comp.to_specifier_set() is None | |
| def test_two_singletons_complement_no_form(self) -> None: | |
| # The strict-point gaps have no ``!=`` spelling (``!=1.0`` would also | |
| # drop 1.0's locals), so the three intervals cannot fuse. | |
| r = ~(VersionRange.singleton("1.0") | VersionRange.singleton("2.0")) | |
| assert Version("1.5") in r | |
| assert Version("1.0") not in r | |
| assert r.to_specifier_set() is None | |
| def test_configured_false_multi_bound_roundtrip(self) -> None: | |
| r = vr(">=1.5,<3", prereleases=False) | |
| recovered = r.to_specifier_set() | |
| assert recovered is not None | |
| assert recovered.to_range() == r | |
| def test_ge_floor_is_canonical_full(self) -> None: | |
| # >=0.dev0 admits every version, so its bounds canonicalize to the full | |
| # range (its complement is empty). It still carries an opt-in region from | |
| # its .dev0 bound, so it is not equal to the region-free full(). | |
| r = vr(">=0.dev0") | |
| assert r._bounds == VersionRange.full()._bounds | |
| assert (~r).is_empty | |
| def test_ne_floor_drops_empty_leading_interval(self) -> None: | |
| # !=0.dev0's lower (-inf, 0.dev0) interval is empty (sub-floor) and is | |
| # dropped, leaving only the upper half. | |
| r = vr("!=0.dev0") | |
| assert Version("0.dev0") not in r | |
| assert Version("1.0") in r | |
| assert Version("0") in r | |
| def test_complement_singleton_floor(self) -> None: | |
| # ~singleton(0.dev0): the empty (-inf, 0.dev0) leading gap is dropped. | |
| r = ~VersionRange.singleton("0.dev0") | |
| assert not r.is_empty | |
| assert Version("0.dev0") not in r | |
| assert Version("1.0") in r | |
| assert r.to_specifier_set() is None | |
| def test_eq_ranges_filter_identically(self) -> None: | |
| # Two ranges with identical bounds but a different opt-in region must NOT | |
| # compare equal, so equal ranges always filter the same. | |
| autodetect_true = vr(">=1.0a1") & vr(">=2.0") # opt-in region [1.0a1, inf) | |
| autodetect_none = vr(">=2.0") # empty opt-in region | |
| assert autodetect_true._bounds == autodetect_none._bounds | |
| assert autodetect_true != autodetect_none | |
| assert hash(autodetect_true) != hash(autodetect_none) | |
| assert list(autodetect_true.filter(["2.0", "2.5a1"])) != list( | |
| autodetect_none.filter(["2.0", "2.5a1"]) | |
| ) | |
| def test_eq_full_region_mismatch(self) -> None: | |
| # Same bounds and arbitrary flag but a different opt-in region must stay | |
| # unequal, so the two never substitute for each other. ``>=0.dev0`` names | |
| # a pre-release across the whole line, so it carries a full opt-in region; | |
| # ``full(admit_arbitrary=False)`` carries none. | |
| b = vr(">=0.dev0") | |
| c = VersionRange.full(admit_arbitrary=False) | |
| assert b._bounds == c._bounds | |
| assert b._admit_arbitrary == c._admit_arbitrary | |
| assert b != c | |
| assert list(b.filter(["0.dev0", "1.0"])) != list(c.filter(["0.dev0", "1.0"])) | |
| def test_filter_universal_false_yields_final(self) -> None: | |
| assert list( | |
| VersionRange.full().filter(["1.0", "1.5a1"], prereleases=False) | |
| ) == ["1.0"] | |
| def test_filter_universal_unparsable_after_final(self) -> None: | |
| assert list(VersionRange.full().filter(["1.0", "junk"])) == ["1.0", "junk"] | |
| def test_complement_zero_singleton(self) -> None: | |
| r = ~vr("==0") | |
| assert Version("0") not in r | |
| assert Version("1.0") in r | |
| def test_complement_post_boundary(self) -> None: | |
| # AFTER_LOCALS boundary adjacent to its post successor. | |
| r = ~vr("==1.0") | vr("==1.0.post0") | |
| assert Version("1.0") not in r | |
| assert Version("1.0.post0") in r | |
| assert Version("2.0") in r | |
| def test_union_after_locals_successor_merge(self) -> None: | |
| # ==1.0 upper (AFTER_LOCALS) meets 1.0.post0.dev0: the empty gap merges. | |
| r = vr("==1.0") | vr(">=1.0.post0.dev0") | |
| assert Version("1.0") in r | |
| assert Version("1.0.post0") in r | |
| assert Version("0.9") not in r | |
| def test_filter_universal_two_finals(self) -> None: | |
| assert list(VersionRange.full().filter(["1.0", "2.0"])) == ["1.0", "2.0"] | |
| def test_filter_admission_true_skips_rejected(self) -> None: | |
| r = ~vr("===1.0") | |
| assert list(r.filter(["1.0", "2.0"], prereleases=True)) == ["2.0"] | |
| def test_filter_admission_two_finals(self) -> None: | |
| r = vr(">=1.0") | vr("===wat") | |
| assert list(r.filter(["1.5", "2.5"])) == ["1.5", "2.5"] | |
| def test_filter_admission_prerelease_after_final(self) -> None: | |
| r = vr(">=1.0") | vr("===wat") | |
| assert list(r.filter(["1.5", "2.5a1"])) == ["1.5"] | |
| def test_configured_false_le_roundtrip(self) -> None: | |
| r = vr("<=1.0", prereleases=False) | |
| recovered = r.to_specifier_set() | |
| assert recovered is not None | |
| assert recovered.to_range() == r | |