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keep_alive call policy (analogous to Boost.Python's with_custodian_and_ward, fixes #62)
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@ -109,6 +109,7 @@ add_library(example SHARED
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example/example10.cpp
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example/example11.cpp
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example/example12.cpp
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example/example13.cpp
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)
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# Don't add a 'lib' prefix to the shared library
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@ -179,7 +180,7 @@ endif()
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enable_testing()
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set(RUN_TEST ${PYTHON_EXECUTABLE} ${CMAKE_CURRENT_SOURCE_DIR}/example/run_test.py)
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foreach(i RANGE 1 12)
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foreach(i RANGE 1 13)
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add_test(NAME example${i} COMMAND ${RUN_TEST} example${i})
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endforeach()
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@ -446,6 +446,33 @@ See below for an example that uses the
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return m.ptr();
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}
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Additional call policies
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========================
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In addition to the above return value policies, further `call policies` can be
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specified to indicate dependencies between parameters. There is currently just
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one policy named ``keep_alive<Nurse, Patient>``, which indicates that the
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argument with index ``Patient`` should be kept alive at least until the
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argument with index ``Nurse`` is freed by the garbage collector; argument
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indices start at one, while zero refers to the return value. Arbitrarily many
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call policies can be specified.
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For instance, binding code for a a list append operation that ties the lifetime
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of the newly added element to the underlying container might be declared as
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follows:
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.. code-block:: cpp
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py::class_<List>(m, "List")
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.def("append", &List::append, py::keep_alive<1, 2>());
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.. note::
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``keep_alive`` is analogous to the ``with_custodian_and_ward`` (if Nurse,
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Patient != 0) and ``with_custodian_and_ward_postcall`` (if Nurse/Patient ==
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0) policies from Boost.Python.
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Implicit type conversions
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=========================
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@ -21,6 +21,7 @@ void init_ex9(py::module &);
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void init_ex10(py::module &);
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void init_ex11(py::module &);
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void init_ex12(py::module &);
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void init_ex13(py::module &);
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PYBIND11_PLUGIN(example) {
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py::module m("example", "pybind example plugin");
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@ -37,6 +38,7 @@ PYBIND11_PLUGIN(example) {
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init_ex10(m);
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init_ex11(m);
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init_ex12(m);
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init_ex13(m);
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return m.ptr();
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}
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37
example/example13.cpp
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37
example/example13.cpp
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@ -0,0 +1,37 @@
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/*
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example/example13.cpp -- keep_alive modifier (pybind11's version
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of Boost.Python's with_custodian_and_ward / with_custodian_and_ward_postcall)
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Copyright (c) 2015 Wenzel Jakob <wenzel@inf.ethz.ch>
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All rights reserved. Use of this source code is governed by a
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BSD-style license that can be found in the LICENSE file.
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*/
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#include "example.h"
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class Child {
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public:
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Child() { std::cout << "Allocating child." << std::endl; }
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~Child() { std::cout << "Releasing child." << std::endl; }
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};
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class Parent {
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public:
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Parent() { std::cout << "Allocating parent." << std::endl; }
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~Parent() { std::cout << "Releasing parent." << std::endl; }
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void addChild(Child *) { }
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Child *returnChild() { return new Child(); }
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};
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void init_ex13(py::module &m) {
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py::class_<Parent>(m, "Parent")
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.def(py::init<>())
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.def("addChild", &Parent::addChild)
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.def("addChildKeepAlive", &Parent::addChild, py::keep_alive<1, 2>())
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.def("returnChild", &Parent::returnChild)
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.def("returnChildKeepAlive", &Parent::returnChild, py::keep_alive<1, 0>());
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py::class_<Child>(m, "Child")
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.def(py::init<>());
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}
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example/example13.py
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46
example/example13.py
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@ -0,0 +1,46 @@
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from __future__ import print_function
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import sys
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import gc
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sys.path.append('.')
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from example import Parent, Child
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if True:
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p = Parent()
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p.addChild(Child())
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gc.collect()
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print(p)
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p = None
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gc.collect()
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print("")
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if True:
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p = Parent()
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p.returnChild()
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gc.collect()
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print(p)
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p = None
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gc.collect()
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print("")
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if True:
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p = Parent()
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p.addChildKeepAlive(Child())
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gc.collect()
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print(p)
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p = None
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gc.collect()
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print("")
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if True:
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p = Parent()
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p.returnChildKeepAlive()
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gc.collect()
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print(p)
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p = None
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gc.collect()
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print("")
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print("Terminating..")
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25
example/example13.ref
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25
example/example13.ref
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@ -0,0 +1,25 @@
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Allocating parent.
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Allocating child.
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Releasing child.
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<example.Parent object at 0x10eb726c0>
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Releasing parent.
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Allocating parent.
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Allocating child.
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Releasing child.
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<example.Parent object at 0x10eb726c0>
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Releasing parent.
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Allocating parent.
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Allocating child.
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<example.Parent object at 0x10eb726c0>
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Releasing parent.
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Releasing child.
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Allocating parent.
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Allocating child.
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<example.Parent object at 0x10eb726c0>
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Releasing parent.
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Releasing child.
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Terminating..
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@ -167,6 +167,7 @@ template <typename type, typename holder_type = std::unique_ptr<type>> struct in
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PyObject_HEAD
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type *value;
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PyObject *parent;
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PyObject *weakrefs;
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bool owned : 1;
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bool constructed : 1;
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holder_type holder;
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@ -58,6 +58,28 @@ struct name { const char *value; name(const char *value) : value(value) { } };
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/// Annotation for function siblings
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struct sibling { PyObject *value; sibling(handle value) : value(value.ptr()) { } };
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/// Keep patient alive while nurse lives
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template <int Nurse, int Patient> struct keep_alive { };
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NAMESPACE_BEGIN(detail)
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template <typename... Args> struct process_dynamic;
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template <typename T> struct process_dynamic<T> {
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static void precall(PyObject *) { }
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static void postcall(PyObject *, PyObject *) { }
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};
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template <> struct process_dynamic<> : public process_dynamic<void> { };
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template <typename T, typename... Args> struct process_dynamic<T, Args...> {
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static void precall(PyObject *arg) {
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process_dynamic<T>::precall(arg);
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process_dynamic<Args...>::precall(arg);
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}
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static void postcall(PyObject *arg, PyObject *ret) {
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process_dynamic<T>::postcall(arg, ret);
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process_dynamic<Args...>::postcall(arg, ret);
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}
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};
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NAMESPACE_END(detail)
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/// Wraps an arbitrary C++ function/method/lambda function/.. into a callable Python object
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class cpp_function : public function {
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private:
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@ -110,6 +132,8 @@ private:
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(void) unused;
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}
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template <int Nurse, int Patient>
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static void process_extra(const keep_alive<Nurse, Patient> &, function_entry *) { }
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static void process_extra(const char *doc, function_entry *entry) { entry->doc = (char *) doc; }
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static void process_extra(const pybind11::doc &d, function_entry *entry) { entry->doc = (char *) d.value; }
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static void process_extra(const pybind11::name &n, function_entry *entry) { entry->name = (char *) n.value; }
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@ -154,7 +178,10 @@ public:
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cast_in args;
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if (!args.load(pyArgs, true))
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return (PyObject *) 1; /* Special return code: try next overload */
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return cast_out::cast(args.template call<Return>((Return (*)(Args...)) entry->data), entry->policy, parent);
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detail::process_dynamic<Extra...>::precall(pyArgs);
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PyObject *result = cast_out::cast(args.template call<Return>((Return (*)(Args...)) entry->data), entry->policy, parent);
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detail::process_dynamic<Extra...>::postcall(pyArgs, result);
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return result;
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};
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process_extras(std::make_tuple(std::forward<Extra>(extra)...), m_entry);
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@ -210,7 +237,10 @@ private:
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cast_in args;
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if (!args.load(pyArgs, true))
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return (PyObject *) 1; /* Special return code: try next overload */
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return cast_out::cast(args.template call<Return>(((capture *) entry->data)->f), entry->policy, parent);
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detail::process_dynamic<Extra...>::precall(pyArgs);
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PyObject *result = cast_out::cast(args.template call<Return>(((capture *) entry->data)->f), entry->policy, parent);
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detail::process_dynamic<Extra...>::postcall(pyArgs, result);
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return result;
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};
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process_extras(std::make_tuple(std::forward<Extra>(extra)...), m_entry);
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@ -568,8 +598,10 @@ public:
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type->ht_type.tp_as_sequence = &type->as_sequence;
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type->ht_type.tp_as_mapping = &type->as_mapping;
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type->ht_type.tp_base = (PyTypeObject *) parent;
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type->ht_type.tp_weaklistoffset = offsetof(instance<void>, weakrefs);
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if (doc) {
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size_t size = strlen(doc)+1;
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size_t size = strlen(doc) + 1;
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type->ht_type.tp_doc = (char *) PyObject_MALLOC(size);
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memcpy((void *) type->ht_type.tp_doc, doc, size);
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}
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@ -654,6 +686,8 @@ protected:
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registered_instances.erase(it);
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}
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Py_XDECREF(self->parent);
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if (self->weakrefs)
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PyObject_ClearWeakRefs((PyObject *) self);
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}
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Py_TYPE(self)->tp_free((PyObject*) self);
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}
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@ -927,6 +961,37 @@ template <typename... Args> struct init {
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class_.def("__init__", [](Base *instance, Args... args) { new (instance) Base(args...); }, std::forward<Extra>(extra)...);
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}
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};
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PYBIND11_NOINLINE inline void keep_alive_impl(int Nurse, int Patient, PyObject *arg, PyObject *ret) {
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/* Clever approach based on weak references taken from Boost.Python */
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PyObject *nurse = Nurse > 0 ? PyTuple_GetItem(arg, Nurse - 1) : ret;
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PyObject *patient = Patient > 0 ? PyTuple_GetItem(arg, Patient - 1) : ret;
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if (nurse == nullptr || patient == nullptr)
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throw std::runtime_error("Could not activate keep_alive");
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cpp_function disable_lifesupport(
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[patient](handle weakref) { Py_DECREF(patient); weakref.dec_ref(); }
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);
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PyObject *weakref = PyWeakref_NewRef(nurse, disable_lifesupport.ptr());
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if (weakref == nullptr)
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throw std::runtime_error("Could not allocate weak reference!");
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Py_INCREF(patient); /* reference patient and leak the weak reference */
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}
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template <int Nurse, int Patient> struct process_dynamic<keep_alive<Nurse, Patient>> : public process_dynamic<void> {
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template <int N = Nurse, int P = Patient, typename std::enable_if<N != 0 && P != 0, int>::type = 0>
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static void precall(PyObject *arg) { keep_alive_impl(Nurse, Patient, arg, nullptr); }
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template <int N = Nurse, int P = Patient, typename std::enable_if<N != 0 && P != 0, int>::type = 0>
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static void postcall(PyObject *, PyObject *) { }
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template <int N = Nurse, int P = Patient, typename std::enable_if<N == 0 || P == 0, int>::type = 0>
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static void precall(PyObject *) { }
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template <int N = Nurse, int P = Patient, typename std::enable_if<N == 0 || P == 0, int>::type = 0>
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static void postcall(PyObject *arg, PyObject *ret) { keep_alive_impl(Nurse, Patient, arg, ret); }
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};
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NAMESPACE_END(detail)
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template <typename... Args> detail::init<Args...> init() { return detail::init<Args...>(); };
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