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Ignore deprecation warnings about old-style __init__/__setstate__ constructors in the tests (originally done in #2746) (#2759)
* Ignore old-style __init__ warnings * Simplify ignoreOldStyleInitWarnings with py::exec * Only wrap single class_::defs to ignore DeprecationWarnings about old-style __init__
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@ -1,5 +1,6 @@
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#pragma once
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#include <pybind11/pybind11.h>
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#include <pybind11/eval.h>
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#if defined(_MSC_VER) && _MSC_VER < 1910
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// We get some really long type names here which causes MSVC 2015 to emit warnings
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@ -69,3 +70,15 @@ public:
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};
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PYBIND11_NAMESPACE_END(detail)
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PYBIND11_NAMESPACE_END(pybind11)
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template <typename F>
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void ignoreOldStyleInitWarnings(F &&body) {
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py::exec(R"(
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message = "pybind11-bound class '.+' is using an old-style placement-new '(?:__init__|__setstate__)' which has been deprecated"
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import warnings
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with warnings.catch_warnings():
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warnings.filterwarnings("ignore", message=message, category=FutureWarning)
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body()
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)", py::dict(py::arg("body") = py::cpp_function(body)));
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}
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@ -183,11 +183,14 @@ TEST_SUBMODULE(factory_constructors, m) {
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auto c4a = [c](pointer_tag, TF4_tag, int a) { (void) c; return new TestFactory4(a);};
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// test_init_factory_basic, test_init_factory_casting
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py::class_<TestFactory3, std::shared_ptr<TestFactory3>>(m, "TestFactory3")
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py::class_<TestFactory3, std::shared_ptr<TestFactory3>> pyTestFactory3(m, "TestFactory3");
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pyTestFactory3
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.def(py::init([](pointer_tag, int v) { return TestFactoryHelper::construct3(v); }))
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.def(py::init([](shared_ptr_tag) { return TestFactoryHelper::construct3(); }))
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.def("__init__", [](TestFactory3 &self, std::string v) { new (&self) TestFactory3(v); }) // placement-new ctor
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.def(py::init([](shared_ptr_tag) { return TestFactoryHelper::construct3(); }));
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ignoreOldStyleInitWarnings([&pyTestFactory3]() {
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pyTestFactory3.def("__init__", [](TestFactory3 &self, std::string v) { new (&self) TestFactory3(v); }); // placement-new ctor
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});
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pyTestFactory3
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// factories returning a derived type:
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.def(py::init(c4a)) // derived ptr
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.def(py::init([](pointer_tag, TF5_tag, int a) { return new TestFactory5(a); }))
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@ -304,24 +307,32 @@ TEST_SUBMODULE(factory_constructors, m) {
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static void operator delete(void *p) { py::print("noisy delete"); ::operator delete(p); }
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#endif
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};
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py::class_<NoisyAlloc>(m, "NoisyAlloc")
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py::class_<NoisyAlloc> pyNoisyAlloc(m, "NoisyAlloc");
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// Since these overloads have the same number of arguments, the dispatcher will try each of
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// them until the arguments convert. Thus we can get a pre-allocation here when passing a
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// single non-integer:
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.def("__init__", [](NoisyAlloc *a, int i) { new (a) NoisyAlloc(i); }) // Regular constructor, runs first, requires preallocation
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.def(py::init([](double d) { return new NoisyAlloc(d); }))
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ignoreOldStyleInitWarnings([&pyNoisyAlloc]() {
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pyNoisyAlloc.def("__init__", [](NoisyAlloc *a, int i) { new (a) NoisyAlloc(i); }); // Regular constructor, runs first, requires preallocation
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});
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pyNoisyAlloc.def(py::init([](double d) { return new NoisyAlloc(d); }));
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// The two-argument version: first the factory pointer overload.
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.def(py::init([](int i, int) { return new NoisyAlloc(i); }))
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pyNoisyAlloc.def(py::init([](int i, int) { return new NoisyAlloc(i); }));
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// Return-by-value:
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.def(py::init([](double d, int) { return NoisyAlloc(d); }))
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pyNoisyAlloc.def(py::init([](double d, int) { return NoisyAlloc(d); }));
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// Old-style placement new init; requires preallocation
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.def("__init__", [](NoisyAlloc &a, double d, double) { new (&a) NoisyAlloc(d); })
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ignoreOldStyleInitWarnings([&pyNoisyAlloc]() {
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pyNoisyAlloc.def("__init__", [](NoisyAlloc &a, double d, double) { new (&a) NoisyAlloc(d); });
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});
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// Requires deallocation of previous overload preallocated value:
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.def(py::init([](int i, double) { return new NoisyAlloc(i); }))
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pyNoisyAlloc.def(py::init([](int i, double) { return new NoisyAlloc(i); }));
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// Regular again: requires yet another preallocation
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.def("__init__", [](NoisyAlloc &a, int i, std::string) { new (&a) NoisyAlloc(i); })
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;
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ignoreOldStyleInitWarnings([&pyNoisyAlloc]() {
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pyNoisyAlloc.def("__init__", [](NoisyAlloc &a, int i, std::string) { new (&a) NoisyAlloc(i); });
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});
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@ -31,7 +31,8 @@ TEST_SUBMODULE(pickling, m) {
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using Pickleable::Pickleable;
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};
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py::class_<Pickleable>(m, "Pickleable")
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py::class_<Pickleable> pyPickleable(m, "Pickleable");
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pyPickleable
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.def(py::init<std::string>())
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.def("value", &Pickleable::value)
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.def("extra1", &Pickleable::extra1)
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@ -43,7 +44,9 @@ TEST_SUBMODULE(pickling, m) {
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.def("__getstate__", [](const Pickleable &p) {
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/* Return a tuple that fully encodes the state of the object */
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return py::make_tuple(p.value(), p.extra1(), p.extra2());
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})
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});
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ignoreOldStyleInitWarnings([&pyPickleable]() {
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pyPickleable
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.def("__setstate__", [](Pickleable &p, py::tuple t) {
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if (t.size() != 3)
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throw std::runtime_error("Invalid state!");
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@ -54,6 +57,7 @@ TEST_SUBMODULE(pickling, m) {
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p.setExtra1(t[1].cast<int>());
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p.setExtra2(t[2].cast<int>());
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});
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});
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py::class_<PickleableNew, Pickleable>(m, "PickleableNew")
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.def(py::init<std::string>())
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@ -87,14 +91,17 @@ TEST_SUBMODULE(pickling, m) {
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using PickleableWithDict::PickleableWithDict;
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};
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py::class_<PickleableWithDict>(m, "PickleableWithDict", py::dynamic_attr())
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py::class_<PickleableWithDict> pyPickleableWithDict(m, "PickleableWithDict", py::dynamic_attr());
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pyPickleableWithDict
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.def(py::init<std::string>())
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.def_readwrite("value", &PickleableWithDict::value)
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.def_readwrite("extra", &PickleableWithDict::extra)
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.def("__getstate__", [](py::object self) {
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/* Also include __dict__ in state */
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return py::make_tuple(self.attr("value"), self.attr("extra"), self.attr("__dict__"));
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})
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});
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ignoreOldStyleInitWarnings([&pyPickleableWithDict]() {
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pyPickleableWithDict
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.def("__setstate__", [](py::object self, py::tuple t) {
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if (t.size() != 3)
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throw std::runtime_error("Invalid state!");
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@ -108,6 +115,7 @@ TEST_SUBMODULE(pickling, m) {
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/* Assign Python state */
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self.attr("__dict__") = t[2];
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});
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});
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py::class_<PickleableWithDictNew, PickleableWithDict>(m, "PickleableWithDictNew")
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.def(py::init<std::string>())
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