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Removing rtti_held from smart_holder. See updated comment.
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@ -353,10 +353,10 @@ struct classh_type_caster : smart_holder_type_caster_load<T> {
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// clang-format off
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operator T() { return this->loaded_smhldr_ptr->template lvalue_ref<T>(); }
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operator T&&() && { return this->loaded_smhldr_ptr->template rvalue_ref<T>(); }
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operator T const&() { return this->loaded_smhldr_ptr->template lvalue_ref<T>(); }
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operator T&() { return this->loaded_smhldr_ptr->template lvalue_ref<T>(); }
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operator T() { return this->loaded_smhldr_ptr->template as_lvalue_ref<T>(); }
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operator T&&() && { return this->loaded_smhldr_ptr->template as_rvalue_ref<T>(); }
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operator T const&() { return this->loaded_smhldr_ptr->template as_lvalue_ref<T>(); }
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operator T&() { return this->loaded_smhldr_ptr->template as_lvalue_ref<T>(); }
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operator T const*() { return this->loaded_as_raw_ptr_unowned(); }
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operator T*() { return this->loaded_as_raw_ptr_unowned(); }
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@ -12,7 +12,13 @@ High-level aspects:
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C++ Undefined Behavior, especially from Python.
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* Support a system design with clean runtime inheritance casting. From this
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it follows that the `smart_holder` needs to be type-erased (`void*`, RTTI).
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it follows that the `smart_holder` needs to be type-erased (`void*`).
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* Handling of RTTI for the type-erased held pointer is NOT implemented here.
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It is the responsibility of the caller to ensure that `static_cast<T *>`
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is well-formed when calling `as_*` member functions. Inheritance casting
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needs to be handled in a different layer (similar to the code organization
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in boost/python/object/inheritance.hpp).
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Details:
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@ -28,10 +34,6 @@ Details:
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* If created from an external `shared_ptr`, or a `unique_ptr` with a custom
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deleter, including life-time management for external objects is infeasible.
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* The `typename T` between `from` and `as` calls must match exactly.
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Inheritance casting needs to be handled in a different layer (similar
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to the code organization in boost/python/object/inheritance.hpp).
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* The smart_holder is movable but not copyable, as a consequence of using
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unique_ptr for the vptr_deleter_armed_flag_ptr. Note that the bool for
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the flag has to live on the heap, for the smart_holder to be movable.
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@ -72,35 +74,30 @@ struct guarded_custom_deleter {
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};
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struct smart_holder {
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const std::type_info *rtti_held;
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const std::type_info *rtti_uqp_del;
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std::unique_ptr<bool> vptr_deleter_armed_flag_ptr;
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std::shared_ptr<void> vptr;
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bool vptr_is_using_noop_deleter : 1;
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bool vptr_is_using_builtin_delete : 1;
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bool vptr_is_external_shared_ptr : 1;
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bool is_populated : 1;
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smart_holder()
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: rtti_held{nullptr}, rtti_uqp_del{nullptr}, vptr_is_using_noop_deleter{false},
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vptr_is_using_builtin_delete{false}, vptr_is_external_shared_ptr{false} {}
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: rtti_uqp_del{nullptr}, vptr_is_using_noop_deleter{false},
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vptr_is_using_builtin_delete{false}, vptr_is_external_shared_ptr{false}, is_populated{
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false} {}
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explicit smart_holder(bool vptr_deleter_armed_flag)
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: rtti_held{nullptr}, rtti_uqp_del{nullptr}, vptr_deleter_armed_flag_ptr{new bool{
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vptr_deleter_armed_flag}},
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: rtti_uqp_del{nullptr}, vptr_deleter_armed_flag_ptr{new bool{vptr_deleter_armed_flag}},
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vptr_is_using_noop_deleter{false}, vptr_is_using_builtin_delete{false},
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vptr_is_external_shared_ptr{false} {}
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vptr_is_external_shared_ptr{false}, is_populated{false} {}
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bool has_pointee() const { return vptr.get() != nullptr; }
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template <typename T>
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void ensure_compatible_rtti_held(const char *context) const {
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if (!rtti_held) {
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void ensure_is_populated(const char *context) const {
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if (!is_populated) {
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throw std::runtime_error(std::string("Unpopulated holder (") + context + ").");
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}
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const std::type_info *rtti_requested = &typeid(T);
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if (!(*rtti_requested == *rtti_held)) {
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throw std::runtime_error(std::string("Incompatible type (") + context + ").");
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}
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}
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template <typename D>
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@ -153,50 +150,47 @@ struct smart_holder {
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template <typename T>
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static smart_holder from_raw_ptr_unowned(T *raw_ptr) {
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smart_holder hld(false);
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hld.rtti_held = &typeid(T);
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hld.vptr.reset(raw_ptr, guarded_builtin_delete<T>(hld.vptr_deleter_armed_flag_ptr.get()));
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hld.vptr_is_using_noop_deleter = true;
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hld.is_populated = true;
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return hld;
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}
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template <typename T>
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T *as_raw_ptr_unowned() const {
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static const char *context = "as_raw_ptr_unowned";
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ensure_compatible_rtti_held<T>(context);
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return static_cast<T *>(vptr.get());
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}
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template <typename T>
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T &lvalue_ref() const {
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static const char *context = "lvalue_ref";
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ensure_compatible_rtti_held<T>(context);
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T &as_lvalue_ref() const {
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static const char *context = "as_lvalue_ref";
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ensure_is_populated(context);
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ensure_has_pointee(context);
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return *static_cast<T *>(vptr.get());
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return *as_raw_ptr_unowned<T>();
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}
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template <typename T>
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T &&rvalue_ref() const {
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static const char *context = "rvalue_ref";
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ensure_compatible_rtti_held<T>(context);
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T &&as_rvalue_ref() const {
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static const char *context = "as_rvalue_ref";
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ensure_is_populated(context);
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ensure_has_pointee(context);
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return std::move(*static_cast<T *>(vptr.get()));
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return std::move(*as_raw_ptr_unowned<T>());
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}
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template <typename T>
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static smart_holder from_raw_ptr_take_ownership(T *raw_ptr) {
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smart_holder hld(true);
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hld.rtti_held = &typeid(T);
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hld.vptr.reset(raw_ptr, guarded_builtin_delete<T>(hld.vptr_deleter_armed_flag_ptr.get()));
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hld.vptr_is_using_builtin_delete = true;
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hld.is_populated = true;
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return hld;
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}
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template <typename T>
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T *as_raw_ptr_release_ownership(const char *context = "as_raw_ptr_release_ownership") {
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ensure_compatible_rtti_held<T>(context);
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ensure_vptr_is_using_builtin_delete(context);
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ensure_use_count_1(context);
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T *raw_ptr = static_cast<T *>(vptr.get());
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T *raw_ptr = as_raw_ptr_unowned<T>();
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*vptr_deleter_armed_flag_ptr = false;
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vptr.reset();
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return raw_ptr;
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@ -205,11 +199,11 @@ struct smart_holder {
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template <typename T>
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static smart_holder from_unique_ptr(std::unique_ptr<T> &&unq_ptr) {
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smart_holder hld(true);
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hld.rtti_held = &typeid(T);
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hld.vptr.reset(unq_ptr.get(),
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guarded_builtin_delete<T>(hld.vptr_deleter_armed_flag_ptr.get()));
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unq_ptr.release();
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hld.vptr_is_using_builtin_delete = true;
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hld.is_populated = true;
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return hld;
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}
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@ -221,21 +215,20 @@ struct smart_holder {
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template <typename T, typename D>
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static smart_holder from_unique_ptr_with_deleter(std::unique_ptr<T, D> &&unq_ptr) {
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smart_holder hld(true);
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hld.rtti_held = &typeid(T);
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hld.rtti_uqp_del = &typeid(D);
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hld.vptr.reset(unq_ptr.get(),
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guarded_custom_deleter<T, D>(hld.vptr_deleter_armed_flag_ptr.get()));
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unq_ptr.release();
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hld.is_populated = true;
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return hld;
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}
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template <typename T, typename D>
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std::unique_ptr<T, D> as_unique_ptr_with_deleter() {
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static const char *context = "as_unique_ptr_with_deleter";
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ensure_compatible_rtti_held<T>(context);
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ensure_compatible_rtti_uqp_del<D>(context);
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ensure_use_count_1(context);
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T *raw_ptr = static_cast<T *>(vptr.get());
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T *raw_ptr = as_raw_ptr_unowned<T>();
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*vptr_deleter_armed_flag_ptr = false;
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vptr.reset();
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return std::unique_ptr<T, D>(raw_ptr);
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@ -244,16 +237,14 @@ struct smart_holder {
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template <typename T>
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static smart_holder from_shared_ptr(std::shared_ptr<T> shd_ptr) {
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smart_holder hld;
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hld.rtti_held = &typeid(T);
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hld.vptr = std::static_pointer_cast<void>(shd_ptr);
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hld.vptr_is_external_shared_ptr = true;
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hld.is_populated = true;
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return hld;
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}
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template <typename T>
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std::shared_ptr<T> as_shared_ptr() const {
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static const char *context = "as_shared_ptr";
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ensure_compatible_rtti_held<T>(context);
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return std::static_pointer_cast<T>(vptr);
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}
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};
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@ -32,17 +32,17 @@ TEST_CASE("from_raw_ptr_unowned+as_raw_ptr_unowned", "[S]") {
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REQUIRE(*hld.as_raw_ptr_unowned<int>() == 19);
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}
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TEST_CASE("from_raw_ptr_unowned+lvalue_ref", "[S]") {
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TEST_CASE("from_raw_ptr_unowned+as_lvalue_ref", "[S]") {
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static int value = 19;
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auto hld = smart_holder::from_raw_ptr_unowned(&value);
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REQUIRE(hld.lvalue_ref<int>() == 19);
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REQUIRE(hld.as_lvalue_ref<int>() == 19);
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}
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TEST_CASE("from_raw_ptr_unowned+rvalue_ref", "[S]") {
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TEST_CASE("from_raw_ptr_unowned+as_rvalue_ref", "[S]") {
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helpers::movable_int orig(19);
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{
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auto hld = smart_holder::from_raw_ptr_unowned(&orig);
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helpers::movable_int othr(hld.rvalue_ref<helpers::movable_int>());
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helpers::movable_int othr(hld.as_rvalue_ref<helpers::movable_int>());
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REQUIRE(othr.valu == 19);
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REQUIRE(orig.valu == 91);
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}
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@ -78,10 +78,10 @@ TEST_CASE("from_raw_ptr_unowned+as_shared_ptr", "[S]") {
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REQUIRE(*hld.as_shared_ptr<int>() == 19);
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}
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TEST_CASE("from_raw_ptr_take_ownership+lvalue_ref", "[S]") {
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TEST_CASE("from_raw_ptr_take_ownership+as_lvalue_ref", "[S]") {
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auto hld = smart_holder::from_raw_ptr_take_ownership(new int(19));
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REQUIRE(hld.has_pointee());
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REQUIRE(hld.lvalue_ref<int>() == 19);
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REQUIRE(hld.as_lvalue_ref<int>() == 19);
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}
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TEST_CASE("from_raw_ptr_take_ownership+as_raw_ptr_release_ownership1", "[S]") {
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@ -127,11 +127,11 @@ TEST_CASE("from_raw_ptr_take_ownership+as_shared_ptr", "[S]") {
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REQUIRE(*new_owner == 19);
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}
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TEST_CASE("from_unique_ptr+lvalue_ref", "[S]") {
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TEST_CASE("from_unique_ptr+as_lvalue_ref", "[S]") {
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std::unique_ptr<int> orig_owner(new int(19));
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auto hld = smart_holder::from_unique_ptr(std::move(orig_owner));
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REQUIRE(orig_owner.get() == nullptr);
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REQUIRE(hld.lvalue_ref<int>() == 19);
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REQUIRE(hld.as_lvalue_ref<int>() == 19);
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}
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TEST_CASE("from_unique_ptr+as_raw_ptr_release_ownership1", "[S]") {
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@ -189,11 +189,11 @@ TEST_CASE("from_unique_ptr+as_shared_ptr", "[S]") {
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REQUIRE(*new_owner == 19);
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}
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TEST_CASE("from_unique_ptr_with_deleter+lvalue_ref", "[S]") {
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TEST_CASE("from_unique_ptr_with_deleter+as_lvalue_ref", "[S]") {
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std::unique_ptr<int, helpers::functor_builtin_delete<int>> orig_owner(new int(19));
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auto hld = smart_holder::from_unique_ptr_with_deleter(std::move(orig_owner));
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REQUIRE(orig_owner.get() == nullptr);
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REQUIRE(hld.lvalue_ref<int>() == 19);
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REQUIRE(hld.as_lvalue_ref<int>() == 19);
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}
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TEST_CASE("from_unique_ptr_with_deleter+as_raw_ptr_release_ownership", "[E]") {
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@ -241,10 +241,10 @@ TEST_CASE("from_unique_ptr_with_deleter+as_shared_ptr", "[S]") {
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REQUIRE(*new_owner == 19);
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}
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TEST_CASE("from_shared_ptr+lvalue_ref", "[S]") {
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TEST_CASE("from_shared_ptr+as_lvalue_ref", "[S]") {
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std::shared_ptr<int> orig_owner(new int(19));
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auto hld = smart_holder::from_shared_ptr(orig_owner);
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REQUIRE(hld.lvalue_ref<int>() == 19);
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REQUIRE(hld.as_lvalue_ref<int>() == 19);
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}
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TEST_CASE("from_shared_ptr+as_raw_ptr_release_ownership", "[E]") {
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@ -279,19 +279,13 @@ TEST_CASE("from_shared_ptr+as_shared_ptr", "[S]") {
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TEST_CASE("error_unpopulated_holder", "[E]") {
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smart_holder hld;
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REQUIRE_THROWS_WITH(hld.as_raw_ptr_unowned<int>(), "Unpopulated holder (as_raw_ptr_unowned).");
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}
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TEST_CASE("error_incompatible_type", "[E]") {
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static int value = 19;
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auto hld = smart_holder::from_raw_ptr_unowned(&value);
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REQUIRE_THROWS_WITH(hld.as_unique_ptr<std::string>(), "Incompatible type (as_unique_ptr).");
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REQUIRE_THROWS_WITH(hld.as_lvalue_ref<int>(), "Unpopulated holder (as_lvalue_ref).");
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}
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TEST_CASE("error_disowned_holder", "[E]") {
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auto hld = smart_holder::from_raw_ptr_take_ownership(new int(19));
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hld.as_unique_ptr<int>();
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REQUIRE_THROWS_WITH(hld.lvalue_ref<int>(), "Disowned holder (lvalue_ref).");
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REQUIRE_THROWS_WITH(hld.as_lvalue_ref<int>(), "Disowned holder (as_lvalue_ref).");
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}
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TEST_CASE("error_cannot_disown_nullptr", "[E]") {
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