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Add anyset & frozenset, enable copying (cast) to std::set (#3901)
* Add frozenset, and allow it cast to std::set For the reverse direction, std::set still casts to set. This is in concordance with the behavior for sequence containers, where e.g. tuple casts to std::vector but std::vector casts to list. Extracted from #3886. * Rename set_base to any_set to match Python C API since this will be part of pybind11 public API * PR: static_cast, anyset * Add tests for frozenset and rename anyset methods * Remove frozenset default ctor, add tests Making frozenset non-default constructible means that we need to adjust pyobject_caster to not require that its value is default constructible, by initializing value to a nil handle. This also allows writing C++ functions taking anyset, and is arguably a performance improvement, since there is no need to allocate an object that will just be replaced by load. Add some more tests, including anyset::empty, anyset::size, set::add and set::clear. * [pre-commit.ci] auto fixes from pre-commit.com hooks for more information, see https://pre-commit.ci * Add rationale to `pyobject_caster` default ctor * Remove ineffectual protected: access control Co-authored-by: pre-commit-ci[bot] <66853113+pre-commit-ci[bot]@users.noreply.github.com>
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@ -908,6 +908,14 @@ struct handle_type_name<kwargs> {
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template <typename type>
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struct pyobject_caster {
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template <typename T = type, enable_if_t<std::is_same<T, handle>::value, int> = 0>
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pyobject_caster() : value() {}
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// `type` may not be default constructible (e.g. frozenset, anyset). Initializing `value`
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// to a nil handle is safe since it will only be accessed if `load` succeeds.
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template <typename T = type, enable_if_t<std::is_base_of<object, T>::value, int> = 0>
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pyobject_caster() : value(reinterpret_steal<type>(handle())) {}
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template <typename T = type, enable_if_t<std::is_same<T, handle>::value, int> = 0>
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bool load(handle src, bool /* convert */) {
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value = src;
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@ -1784,25 +1784,35 @@ class kwargs : public dict {
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PYBIND11_OBJECT_DEFAULT(kwargs, dict, PyDict_Check)
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};
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class set : public object {
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class anyset : public object {
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public:
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PYBIND11_OBJECT_CVT(set, object, PySet_Check, PySet_New)
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set() : object(PySet_New(nullptr), stolen_t{}) {
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PYBIND11_OBJECT(anyset, object, PyAnySet_Check)
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size_t size() const { return static_cast<size_t>(PySet_Size(m_ptr)); }
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bool empty() const { return size() == 0; }
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template <typename T>
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bool contains(T &&val) const {
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return PySet_Contains(m_ptr, detail::object_or_cast(std::forward<T>(val)).ptr()) == 1;
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}
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};
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class set : public anyset {
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public:
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PYBIND11_OBJECT_CVT(set, anyset, PySet_Check, PySet_New)
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set() : anyset(PySet_New(nullptr), stolen_t{}) {
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if (!m_ptr) {
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pybind11_fail("Could not allocate set object!");
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}
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}
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size_t size() const { return (size_t) PySet_Size(m_ptr); }
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bool empty() const { return size() == 0; }
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template <typename T>
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bool add(T &&val) /* py-non-const */ {
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return PySet_Add(m_ptr, detail::object_or_cast(std::forward<T>(val)).ptr()) == 0;
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}
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void clear() /* py-non-const */ { PySet_Clear(m_ptr); }
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template <typename T>
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bool contains(T &&val) const {
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return PySet_Contains(m_ptr, detail::object_or_cast(std::forward<T>(val)).ptr()) == 1;
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}
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};
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class frozenset : public anyset {
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public:
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PYBIND11_OBJECT_CVT(frozenset, anyset, PyFrozenSet_Check, PyFrozenSet_New)
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};
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class function : public object {
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@ -55,10 +55,10 @@ struct set_caster {
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using key_conv = make_caster<Key>;
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bool load(handle src, bool convert) {
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if (!isinstance<pybind11::set>(src)) {
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if (!isinstance<anyset>(src)) {
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return false;
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}
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auto s = reinterpret_borrow<pybind11::set>(src);
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auto s = reinterpret_borrow<anyset>(src);
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value.clear();
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for (auto entry : s) {
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key_conv conv;
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@ -75,7 +75,7 @@ TEST_SUBMODULE(pytypes, m) {
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m.def("get_none", [] { return py::none(); });
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m.def("print_none", [](const py::none &none) { py::print("none: {}"_s.format(none)); });
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// test_set
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// test_set, test_frozenset
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m.def("get_set", []() {
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py::set set;
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set.add(py::str("key1"));
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@ -83,14 +83,26 @@ TEST_SUBMODULE(pytypes, m) {
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set.add(std::string("key3"));
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return set;
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});
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m.def("print_set", [](const py::set &set) {
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m.def("get_frozenset", []() {
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py::set set;
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set.add(py::str("key1"));
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set.add("key2");
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set.add(std::string("key3"));
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return py::frozenset(set);
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});
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m.def("print_anyset", [](const py::anyset &set) {
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for (auto item : set) {
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py::print("key:", item);
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}
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});
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m.def("set_contains",
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[](const py::set &set, const py::object &key) { return set.contains(key); });
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m.def("set_contains", [](const py::set &set, const char *key) { return set.contains(key); });
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m.def("anyset_size", [](const py::anyset &set) { return set.size(); });
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m.def("anyset_empty", [](const py::anyset &set) { return set.empty(); });
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m.def("anyset_contains",
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[](const py::anyset &set, const py::object &key) { return set.contains(key); });
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m.def("anyset_contains",
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[](const py::anyset &set, const char *key) { return set.contains(key); });
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m.def("set_add", [](py::set &set, const py::object &key) { set.add(key); });
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m.def("set_clear", [](py::set &set) { set.clear(); });
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// test_dict
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m.def("get_dict", []() { return py::dict("key"_a = "value"); });
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@ -310,6 +322,7 @@ TEST_SUBMODULE(pytypes, m) {
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"list"_a = py::list(d["list"]),
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"dict"_a = py::dict(d["dict"]),
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"set"_a = py::set(d["set"]),
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"frozenset"_a = py::frozenset(d["frozenset"]),
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"memoryview"_a = py::memoryview(d["memoryview"]));
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});
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@ -325,6 +338,7 @@ TEST_SUBMODULE(pytypes, m) {
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"list"_a = d["list"].cast<py::list>(),
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"dict"_a = d["dict"].cast<py::dict>(),
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"set"_a = d["set"].cast<py::set>(),
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"frozenset"_a = d["frozenset"].cast<py::frozenset>(),
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"memoryview"_a = d["memoryview"].cast<py::memoryview>());
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});
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@ -66,11 +66,12 @@ def test_none(capture, doc):
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def test_set(capture, doc):
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s = m.get_set()
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assert isinstance(s, set)
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assert s == {"key1", "key2", "key3"}
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with capture:
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s.add("key4")
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m.print_set(s)
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with capture:
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m.print_anyset(s)
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assert (
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capture.unordered
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== """
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@ -81,12 +82,43 @@ def test_set(capture, doc):
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"""
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)
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assert not m.set_contains(set(), 42)
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assert m.set_contains({42}, 42)
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assert m.set_contains({"foo"}, "foo")
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m.set_add(s, "key5")
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assert m.anyset_size(s) == 5
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assert doc(m.get_list) == "get_list() -> list"
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assert doc(m.print_list) == "print_list(arg0: list) -> None"
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m.set_clear(s)
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assert m.anyset_empty(s)
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assert not m.anyset_contains(set(), 42)
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assert m.anyset_contains({42}, 42)
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assert m.anyset_contains({"foo"}, "foo")
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assert doc(m.get_set) == "get_set() -> set"
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assert doc(m.print_anyset) == "print_anyset(arg0: anyset) -> None"
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def test_frozenset(capture, doc):
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s = m.get_frozenset()
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assert isinstance(s, frozenset)
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assert s == frozenset({"key1", "key2", "key3"})
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with capture:
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m.print_anyset(s)
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assert (
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capture.unordered
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== """
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key: key1
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key: key2
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key: key3
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"""
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)
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assert m.anyset_size(s) == 3
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assert not m.anyset_empty(s)
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assert not m.anyset_contains(frozenset(), 42)
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assert m.anyset_contains(frozenset({42}), 42)
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assert m.anyset_contains(frozenset({"foo"}), "foo")
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assert doc(m.get_frozenset) == "get_frozenset() -> frozenset"
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def test_dict(capture, doc):
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@ -302,6 +334,7 @@ def test_constructors():
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list: range(3),
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dict: [("two", 2), ("one", 1), ("three", 3)],
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set: [4, 4, 5, 6, 6, 6],
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frozenset: [4, 4, 5, 6, 6, 6],
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memoryview: b"abc",
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}
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inputs = {k.__name__: v for k, v in data.items()}
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@ -73,6 +73,7 @@ def test_set(doc):
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assert s == {"key1", "key2"}
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s.add("key3")
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assert m.load_set(s)
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assert m.load_set(frozenset(s))
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assert doc(m.cast_set) == "cast_set() -> Set[str]"
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assert doc(m.load_set) == "load_set(arg0: Set[str]) -> bool"
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