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#include <pybind11/functional.h> |
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#include "constructor_stats.h" |
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#include "pybind11_tests.h" |
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#include <thread> |
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int dummy_function(int i) { return i + 1; } |
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TEST_SUBMODULE(callbacks, m) { |
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m.def("test_callback1", [](const py::object &func) { return func(); }); |
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m.def("test_callback2", [](const py::object &func) { return func("Hello", 'x', true, 5); }); |
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m.def("test_callback3", [](const std::function<int(int)> &func) { |
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return "func(43) = " + std::to_string(func(43)); |
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}); |
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m.def("test_callback4", |
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[]() -> std::function<int(int)> { return [](int i) { return i + 1; }; }); |
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m.def("test_callback5", |
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[]() { return py::cpp_function([](int i) { return i + 1; }, py::arg("number")); }); |
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m.def("test_tuple_unpacking", [](const py::function &f) { |
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auto t1 = py::make_tuple(2, 3); |
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auto t2 = py::make_tuple(5, 6); |
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return f("positional", 1, *t1, 4, *t2); |
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}); |
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m.def("test_dict_unpacking", [](const py::function &f) { |
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auto d1 = py::dict("key"_a = "value", "a"_a = 1); |
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auto d2 = py::dict(); |
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auto d3 = py::dict("b"_a = 2); |
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return f("positional", 1, **d1, **d2, **d3); |
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}); |
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m.def("test_keyword_args", [](const py::function &f) { return f("x"_a = 10, "y"_a = 20); }); |
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m.def("test_unpacking_and_keywords1", [](const py::function &f) { |
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auto args = py::make_tuple(2); |
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auto kwargs = py::dict("d"_a = 4); |
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return f(1, *args, "c"_a = 3, **kwargs); |
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}); |
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m.def("test_unpacking_and_keywords2", [](const py::function &f) { |
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auto kwargs1 = py::dict("a"_a = 1); |
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auto kwargs2 = py::dict("c"_a = 3, "d"_a = 4); |
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return f("positional", |
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*py::make_tuple(1), |
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2, |
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*py::make_tuple(3, 4), |
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5, |
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"key"_a = "value", |
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**kwargs1, |
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"b"_a = 2, |
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**kwargs2, |
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"e"_a = 5); |
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}); |
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m.def("test_unpacking_error1", [](const py::function &f) { |
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auto kwargs = py::dict("x"_a = 3); |
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return f("x"_a = 1, "y"_a = 2, **kwargs); |
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}); |
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m.def("test_unpacking_error2", [](const py::function &f) { |
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auto kwargs = py::dict("x"_a = 3); |
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return f(**kwargs, "x"_a = 1); |
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}); |
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m.def("test_arg_conversion_error1", |
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[](const py::function &f) { f(234, UnregisteredType(), "kw"_a = 567); }); |
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m.def("test_arg_conversion_error2", [](const py::function &f) { |
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f(234, "expected_name"_a = UnregisteredType(), "kw"_a = 567); |
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}); |
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struct Payload { |
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Payload() { print_default_created(this); } |
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~Payload() { print_destroyed(this); } |
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Payload(const Payload &) { print_copy_created(this); } |
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Payload(Payload &&) noexcept { print_move_created(this); } |
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}; |
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m.def("payload_cstats", &ConstructorStats::get<Payload>); |
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m.def("test_lambda_closure_cleanup", []() -> std::function<void()> { |
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Payload p; |
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return [p]() { |
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(void) p; |
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}; |
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}); |
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class CppCallable { |
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public: |
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CppCallable() { track_default_created(this); } |
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~CppCallable() { track_destroyed(this); } |
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CppCallable(const CppCallable &) { track_copy_created(this); } |
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CppCallable(CppCallable &&) noexcept { track_move_created(this); } |
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void operator()() {} |
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}; |
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m.def("test_cpp_callable_cleanup", []() { |
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py::list alive_counts; |
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ConstructorStats &stat = ConstructorStats::get<CppCallable>(); |
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alive_counts.append(stat.alive()); |
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{ |
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CppCallable cpp_callable; |
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alive_counts.append(stat.alive()); |
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{ |
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py::cpp_function py_func(cpp_callable); |
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py::detail::silence_unused_warnings(py_func); |
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alive_counts.append(stat.alive()); |
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} |
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alive_counts.append(stat.alive()); |
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{ |
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py::cpp_function py_func(std::move(cpp_callable)); |
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py::detail::silence_unused_warnings(py_func); |
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alive_counts.append(stat.alive()); |
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} |
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alive_counts.append(stat.alive()); |
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} |
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alive_counts.append(stat.alive()); |
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return alive_counts; |
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}); |
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m.def("dummy_function", &dummy_function); |
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m.def("dummy_function_overloaded", [](int i, int j) { return i + j; }); |
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m.def("dummy_function_overloaded", &dummy_function); |
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m.def("dummy_function2", [](int i, int j) { return i + j; }); |
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m.def( |
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"roundtrip", |
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[](std::function<int(int)> f, bool expect_none = false) { |
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if (expect_none && f) { |
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throw std::runtime_error("Expected None to be converted to empty std::function"); |
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} |
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return f; |
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}, |
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py::arg("f"), |
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py::arg("expect_none") = false); |
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m.def("test_dummy_function", [](const std::function<int(int)> &f) -> std::string { |
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using fn_type = int (*)(int); |
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const auto *result = f.target<fn_type>(); |
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if (!result) { |
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auto r = f(1); |
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return "can't convert to function pointer: eval(1) = " + std::to_string(r); |
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} |
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if (*result == dummy_function) { |
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auto r = (*result)(1); |
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return "matches dummy_function: eval(1) = " + std::to_string(r); |
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} |
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return "argument does NOT match dummy_function. This should never happen!"; |
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}); |
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class AbstractBase { |
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public: |
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virtual ~AbstractBase() {} |
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virtual unsigned int func() = 0; |
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}; |
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m.def("func_accepting_func_accepting_base", |
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[](const std::function<double(AbstractBase &)> &) {}); |
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struct MovableObject { |
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bool valid = true; |
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MovableObject() = default; |
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MovableObject(const MovableObject &) = default; |
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MovableObject &operator=(const MovableObject &) = default; |
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MovableObject(MovableObject &&o) noexcept : valid(o.valid) { o.valid = false; } |
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MovableObject &operator=(MovableObject &&o) noexcept { |
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valid = o.valid; |
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o.valid = false; |
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return *this; |
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} |
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}; |
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py::class_<MovableObject>(m, "MovableObject"); |
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m.def("callback_with_movable", [](const std::function<void(MovableObject &)> &f) { |
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auto x = MovableObject(); |
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f(x); |
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return x.valid; |
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}); |
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struct CppBoundMethodTest {}; |
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py::class_<CppBoundMethodTest>(m, "CppBoundMethodTest") |
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.def(py::init<>()) |
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.def("triple", [](CppBoundMethodTest &, int val) { return 3 * val; }); |
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m.def("test_sum_builtin", |
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[](const std::function<double(py::iterable)> &sum_builtin, const py::iterable &i) { |
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return sum_builtin(i); |
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}); |
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using callback_f = std::function<void(int)>; |
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m.def("test_async_callback", [](const callback_f &f, const py::list &work) { |
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auto start_f = [f](int j) { |
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auto invoke_f = [f, j] { |
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std::this_thread::sleep_for(std::chrono::milliseconds(50)); |
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f(j); |
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}; |
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auto t = std::thread(std::move(invoke_f)); |
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t.detach(); |
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}; |
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for (auto i : work) { |
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start_f(py::cast<int>(i)); |
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} |
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}); |
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m.def("callback_num_times", [](const py::function &f, std::size_t num) { |
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for (std::size_t i = 0; i < num; i++) { |
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f(); |
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} |
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}); |
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auto *custom_def = []() { |
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static PyMethodDef def; |
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def.ml_name = "example_name"; |
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def.ml_doc = "Example doc"; |
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def.ml_meth = [](PyObject *, PyObject *args) -> PyObject * { |
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if (PyTuple_Size(args) != 1) { |
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throw std::runtime_error("Invalid number of arguments for example_name"); |
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} |
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PyObject *first = PyTuple_GetItem(args, 0); |
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if (!PyLong_Check(first)) { |
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throw std::runtime_error("Invalid argument to example_name"); |
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} |
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auto result = py::cast(PyLong_AsLong(first) * 9); |
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return result.release().ptr(); |
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}; |
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def.ml_flags = METH_VARARGS; |
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return &def; |
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}(); |
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constexpr const char *rec_capsule_name |
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= pybind11::detail::internals_function_record_capsule_name; |
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py::capsule rec_capsule(std::malloc(1), [](void *data) { std::free(data); }); |
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rec_capsule.set_name(rec_capsule_name); |
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m.add_object("custom_function", PyCFunction_New(custom_def, rec_capsule.ptr())); |
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#if PYBIND11_INTERNALS_VERSION > 4 |
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py::capsule rec_capsule2(std::malloc(1), [](void *data) { std::free(data); }); |
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m.add_object("custom_function2", PyCFunction_New(custom_def, rec_capsule2.ptr())); |
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#else |
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m.add_object("custom_function2", py::none()); |
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#endif |
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} |
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