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Basic CTL shared_ptr implementation (#1267)
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4 changed files with 708 additions and 0 deletions
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@ -17,6 +17,9 @@ struct conditional<false, T, F>
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typedef F type;
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};
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template<bool B, typename T, typename F>
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using conditional_t = typename conditional<B, T, F>::type;
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} // namespace ctl
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#endif // CTL_CONDITIONAL_H_
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@ -19,6 +19,9 @@ template<typename _Tp>
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struct is_void : public is_void_<typename ctl::remove_cv<_Tp>::type>::type
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{};
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template<typename T>
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inline constexpr bool is_void_v = is_void<T>::value;
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} // namespace ctl
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#endif // CTL_IS_VOID_H_
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454
ctl/shared_ptr.h
Normal file
454
ctl/shared_ptr.h
Normal file
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@ -0,0 +1,454 @@
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// -*-mode:c++;indent-tabs-mode:nil;c-basic-offset:4;tab-width:8;coding:utf-8-*-
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// vi: set et ft=cpp ts=4 sts=4 sw=4 fenc=utf-8 :vi
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#ifndef CTL_SHARED_PTR_H_
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#define CTL_SHARED_PTR_H_
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#include "exception.h"
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#include "is_convertible.h"
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#include "remove_extent.h"
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#include "unique_ptr.h"
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// XXX currently needed to use placement-new syntax (move to cxx.inc?)
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void*
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operator new(size_t, void*) noexcept;
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namespace ctl {
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class bad_weak_ptr : public exception
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{
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public:
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const char* what() const noexcept override
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{
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return "ctl::bad_weak_ptr";
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}
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};
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namespace __ {
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template<typename T>
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struct ptr_ref
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{
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using type = T&;
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};
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template<>
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struct ptr_ref<void>
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{
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using type = void;
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};
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static inline __attribute__((always_inline)) void
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incref(size_t* r) noexcept
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{
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#ifdef NDEBUG
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__atomic_fetch_add(r, 1, __ATOMIC_RELAXED);
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#else
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size_t refs = __atomic_fetch_add(r, 1, __ATOMIC_RELAXED);
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if (refs > ((size_t)-1) >> 1)
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__builtin_trap();
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#endif
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}
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static inline __attribute__((always_inline)) bool
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decref(size_t* r) noexcept
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{
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if (!__atomic_fetch_sub(r, 1, __ATOMIC_RELEASE)) {
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__atomic_thread_fence(__ATOMIC_ACQUIRE);
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return true;
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}
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return false;
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}
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class shared_ref
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{
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public:
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constexpr shared_ref() noexcept = default;
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shared_ref(const shared_ref&) = delete;
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shared_ref& operator=(const shared_ref&) = delete;
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virtual ~shared_ref() = default;
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void keep_shared() noexcept
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{
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incref(&shared);
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}
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void drop_shared() noexcept
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{
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if (decref(&shared)) {
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dispose();
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drop_weak();
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}
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}
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void keep_weak() noexcept
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{
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incref(&weak);
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}
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void drop_weak() noexcept
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{
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if (decref(&weak)) {
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delete this;
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}
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}
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size_t use_count() const noexcept
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{
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return shared + 1;
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}
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size_t weak_count() const noexcept
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{
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return weak;
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}
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private:
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virtual void dispose() noexcept = 0;
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size_t shared = 0;
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size_t weak = 0;
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};
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template<typename T, typename D>
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class shared_pointer : public shared_ref
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{
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public:
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static shared_pointer* make(T* const p, D d)
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{
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return make(unique_ptr<T, D>(p, move(d)));
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}
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static shared_pointer* make(unique_ptr<T, D> p)
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{
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return new shared_pointer(p.release(), move(p.get_deleter()));
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}
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private:
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shared_pointer(T* const p, D d) noexcept : p(p), d(move(d))
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{
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}
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void dispose() noexcept override
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{
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move(d)(p);
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}
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T* const p;
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[[no_unique_address]] D d;
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};
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template<typename T>
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class shared_emplace : public shared_ref
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{
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public:
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union
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{
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T t;
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};
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template<typename... Args>
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void construct(Args&&... args)
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{
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::new (&t) T(forward<Args>(args)...);
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}
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static unique_ptr<shared_emplace> make()
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{
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return unique_ptr(new shared_emplace());
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}
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private:
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explicit constexpr shared_emplace() noexcept = default;
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void dispose() noexcept override
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{
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t.~T();
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}
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};
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template<typename T, typename U>
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concept shared_ptr_compatible = is_convertible_v<U*, T*>;
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} // namespace __
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template<typename T>
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class weak_ptr;
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template<typename T>
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class shared_ptr
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{
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public:
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using element_type = remove_extent_t<T>;
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using weak_type = weak_ptr<T>;
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constexpr shared_ptr() noexcept = default;
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constexpr shared_ptr(nullptr_t) noexcept
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{
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}
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template<typename U>
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requires __::shared_ptr_compatible<T, U>
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explicit shared_ptr(U* const p) : shared_ptr(p, default_delete<U>())
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{
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}
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template<typename U, typename D>
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requires __::shared_ptr_compatible<T, U>
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shared_ptr(U* const p, D d)
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: p(p), rc(__::shared_pointer<U, D>::make(p, move(d)))
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{
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}
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template<typename U>
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shared_ptr(const shared_ptr<U>& r, element_type* p) noexcept
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: p(p), rc(r.rc)
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{
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if (rc)
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rc->keep_shared();
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}
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template<typename U>
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shared_ptr(shared_ptr<U>&& r, element_type* p) noexcept : p(p), rc(r.rc)
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{
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r.p = nullptr;
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r.rc = nullptr;
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}
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template<typename U>
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requires __::shared_ptr_compatible<T, U>
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shared_ptr(const shared_ptr<U>& r) noexcept : p(r.p), rc(r.rc)
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{
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if (rc)
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rc->keep_shared();
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}
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template<typename U>
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requires __::shared_ptr_compatible<T, U>
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shared_ptr(shared_ptr<U>&& r) noexcept : p(r.p), rc(r.rc)
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{
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r.p = nullptr;
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r.rc = nullptr;
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}
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shared_ptr(const shared_ptr& r) noexcept : p(r.p), rc(r.rc)
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{
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if (rc)
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rc->keep_shared();
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}
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shared_ptr(shared_ptr&& r) noexcept : p(r.p), rc(r.rc)
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{
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r.p = nullptr;
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r.rc = nullptr;
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}
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template<typename U>
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requires __::shared_ptr_compatible<T, U>
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explicit shared_ptr(const weak_ptr<U>& r) : p(r.p), rc(r.rc)
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{
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if (r.expired()) {
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throw bad_weak_ptr();
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}
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rc->keep_shared();
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}
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template<typename U, typename D>
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requires __::shared_ptr_compatible<T, U>
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shared_ptr(unique_ptr<U, D>&& r)
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: p(r.p), rc(__::shared_pointer<U, D>::make(move(r)))
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{
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}
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~shared_ptr()
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{
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if (rc)
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rc->drop_shared();
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}
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shared_ptr& operator=(shared_ptr r) noexcept
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{
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swap(r);
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return *this;
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}
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template<typename U>
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requires __::shared_ptr_compatible<T, U>
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shared_ptr& operator=(shared_ptr<U> r) noexcept
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{
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shared_ptr<T>(move(r)).swap(*this);
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return *this;
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}
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void reset() noexcept
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{
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shared_ptr().swap(*this);
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}
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template<typename U>
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requires __::shared_ptr_compatible<T, U>
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void reset(U* const p2)
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{
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shared_ptr<T>(p2).swap(*this);
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}
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template<typename U, typename D>
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requires __::shared_ptr_compatible<T, U>
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void reset(U* const p2, D d)
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{
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shared_ptr<T>(p2, d).swap(*this);
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}
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void swap(shared_ptr& r) noexcept
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{
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using ctl::swap;
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swap(p, r.p);
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swap(rc, r.rc);
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}
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element_type* get() const noexcept
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{
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return p;
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}
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typename __::ptr_ref<T>::type operator*() const noexcept
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{
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if (!p)
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__builtin_trap();
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return *p;
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}
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T* operator->() const noexcept
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{
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if (!p)
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__builtin_trap();
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return p;
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}
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long use_count() const noexcept
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{
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return rc ? rc->use_count() : 0;
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}
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explicit operator bool() const noexcept
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{
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return p;
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}
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template<typename U>
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bool owner_before(const shared_ptr<U>& r) const noexcept
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{
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return p < r.p;
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}
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template<typename U>
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bool owner_before(const weak_ptr<U>& r) const noexcept
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{
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return !r.owner_before(*this);
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}
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private:
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template<typename U>
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friend class weak_ptr;
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template<typename U>
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friend class shared_ptr;
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template<typename U, typename... Args>
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friend shared_ptr<U> make_shared(Args&&... args);
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element_type* p = nullptr;
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__::shared_ref* rc = nullptr;
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};
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template<typename T>
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class weak_ptr
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{
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public:
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using element_type = remove_extent_t<T>;
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constexpr weak_ptr() noexcept = default;
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template<typename U>
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requires __::shared_ptr_compatible<T, U>
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weak_ptr(const shared_ptr<U>& r) noexcept : p(r.p), rc(r.rc)
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{
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if (rc)
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rc->keep_weak();
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}
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~weak_ptr()
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{
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if (rc)
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rc->drop_weak();
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}
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long use_count() const noexcept
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{
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return rc ? rc->use_count() : 0;
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}
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bool expired() const noexcept
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{
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return !use_count();
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}
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void reset() noexcept
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{
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weak_ptr().swap(*this);
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}
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void swap(weak_ptr& r) noexcept
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{
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using ctl::swap;
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swap(p, r.p);
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swap(rc, r.rc);
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}
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shared_ptr<T> lock() const noexcept
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{
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if (expired())
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return nullptr;
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shared_ptr<T> r;
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r.p = p;
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r.rc = rc;
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if (rc)
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rc->keep_shared();
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return r;
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}
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template<typename U>
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bool owner_before(const weak_ptr<U>& r) const noexcept
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{
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return p < r.p;
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}
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template<typename U>
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bool owner_before(const shared_ptr<U>& r) const noexcept
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{
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return p < r.p;
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}
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private:
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template<typename U>
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friend class shared_ptr;
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element_type* p = nullptr;
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__::shared_ref* rc = nullptr;
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};
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template<typename T, typename... Args>
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shared_ptr<T>
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make_shared(Args&&... args)
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{
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auto rc = __::shared_emplace<T>::make();
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rc->construct(forward<Args>(args)...);
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shared_ptr<T> r;
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r.p = &rc->t;
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r.rc = rc.release();
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return r;
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}
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} // namespace ctl
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#endif // CTL_SHARED_PTR_H_
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248
test/ctl/shared_ptr_test.cc
Normal file
248
test/ctl/shared_ptr_test.cc
Normal file
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// -*- mode:c++; indent-tabs-mode:nil; c-basic-offset:4; coding:utf-8 -*-
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// vi: set et ft=cpp ts=4 sts=4 sw=4 fenc=utf-8 :vi
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//
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// Copyright 2024 Justine Alexandra Roberts Tunney
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//
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// Permission to use, copy, modify, and/or distribute this software for
|
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// any purpose with or without fee is hereby granted, provided that the
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// above copyright notice and this permission notice appear in all copies.
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//
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// THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL
|
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// WARRANTIES WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED
|
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// WARRANTIES OF MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE
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// AUTHOR BE LIABLE FOR ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL
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// DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR
|
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// PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER
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// TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR
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// PERFORMANCE OF THIS SOFTWARE.
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#include "ctl/shared_ptr.h"
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#include "ctl/vector.h"
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#include "libc/mem/leaks.h"
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// #include <memory>
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// #include <vector>
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// #define ctl std
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using ctl::bad_weak_ptr;
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using ctl::make_shared;
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using ctl::move;
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using ctl::shared_ptr;
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using ctl::unique_ptr;
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using ctl::vector;
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using ctl::weak_ptr;
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#undef ctl
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static int g = 0;
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struct ConstructG
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{
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ConstructG()
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{
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++g;
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}
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};
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struct DestructG
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{
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~DestructG()
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{
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++g;
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}
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};
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struct CallG
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{
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void operator()(auto*) const noexcept
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{
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++g;
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}
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};
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struct Base
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{};
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struct Derived : Base
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{};
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int
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main()
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{
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int a, b;
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{
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// Shouldn't cause memory leaks.
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shared_ptr<int> x(new int(5));
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}
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{
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// Objects get destroyed when the last shared_ptr is reset.
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shared_ptr<int> x(&a, CallG());
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shared_ptr<int> y(x);
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x.reset();
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if (g)
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return 1;
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y.reset();
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if (g != 1)
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return 2;
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}
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{
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g = 0;
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// Weak pointers don't prevent object destruction.
|
||||
shared_ptr<int> x(&a, CallG());
|
||||
weak_ptr<int> y(x);
|
||||
x.reset();
|
||||
if (g != 1)
|
||||
return 3;
|
||||
}
|
||||
|
||||
{
|
||||
g = 0;
|
||||
// Weak pointers can be promoted to shared pointers.
|
||||
shared_ptr<int> x(&a, CallG());
|
||||
weak_ptr<int> y(x);
|
||||
auto z = y.lock();
|
||||
x.reset();
|
||||
if (g)
|
||||
return 4;
|
||||
y.reset();
|
||||
if (g)
|
||||
return 5;
|
||||
z.reset();
|
||||
if (g != 1)
|
||||
return 6;
|
||||
}
|
||||
|
||||
{
|
||||
// Shared null pointers are falsey.
|
||||
shared_ptr<int> x;
|
||||
if (x)
|
||||
return 7;
|
||||
x.reset(new int);
|
||||
if (!x)
|
||||
return 8;
|
||||
}
|
||||
|
||||
{
|
||||
// You can cast a shared pointer validly.
|
||||
shared_ptr<Derived> x(new Derived);
|
||||
shared_ptr<Base> y(x);
|
||||
// But not invalidly:
|
||||
// shared_ptr<Base> x(new Derived);
|
||||
// shared_ptr<Derived> y(x);
|
||||
}
|
||||
|
||||
{
|
||||
// You can cast a shared pointer to void to retain a reference.
|
||||
shared_ptr<int> x(new int);
|
||||
shared_ptr<void> y(x);
|
||||
}
|
||||
|
||||
{
|
||||
// You can also create a shared pointer to void in the first place.
|
||||
shared_ptr<void> x(new int);
|
||||
}
|
||||
|
||||
{
|
||||
// You can take a shared pointer to a subobject, and it will free the
|
||||
// base object.
|
||||
shared_ptr<vector<int>> x(new vector<int>);
|
||||
x->push_back(5);
|
||||
shared_ptr<int> y(x, &x->at(0));
|
||||
x.reset();
|
||||
if (*y != 5)
|
||||
return 9;
|
||||
}
|
||||
|
||||
{
|
||||
g = 0;
|
||||
// You can create a shared_ptr from a unique_ptr.
|
||||
unique_ptr<int, CallG> x(&a, CallG());
|
||||
shared_ptr<int> y(move(x));
|
||||
if (x)
|
||||
return 10;
|
||||
y.reset();
|
||||
if (g != 1)
|
||||
return 11;
|
||||
}
|
||||
|
||||
{
|
||||
g = 0;
|
||||
// You can reassign shared_ptrs.
|
||||
shared_ptr<int> x(&a, CallG());
|
||||
shared_ptr<int> y;
|
||||
y = x;
|
||||
x.reset();
|
||||
if (g)
|
||||
return 12;
|
||||
y.reset();
|
||||
if (g != 1)
|
||||
return 13;
|
||||
}
|
||||
|
||||
{
|
||||
// owner_before works across shared and weak pointers.
|
||||
shared_ptr<int> x(&a, CallG());
|
||||
shared_ptr<int> y(&b, CallG());
|
||||
if (!x.owner_before(y))
|
||||
return 14;
|
||||
if (!x.owner_before(weak_ptr<int>(y)))
|
||||
return 15;
|
||||
}
|
||||
|
||||
{
|
||||
// Use counts work like you'd expect
|
||||
shared_ptr<int> x(new int);
|
||||
if (x.use_count() != 1)
|
||||
return 16;
|
||||
shared_ptr<int> y(x);
|
||||
if (x.use_count() != 2 || y.use_count() != 2)
|
||||
return 17;
|
||||
x.reset();
|
||||
if (x.use_count() != 0 || y.use_count() != 1)
|
||||
return 18;
|
||||
}
|
||||
|
||||
{
|
||||
// There is a make_shared that will allocate an object for you safely.
|
||||
auto x = make_shared<int>(5);
|
||||
if (!x)
|
||||
return 19;
|
||||
if (*x != 5)
|
||||
return 20;
|
||||
}
|
||||
|
||||
{
|
||||
// Expired weak pointers lock to nullptr, and throw when promoted to
|
||||
// shared pointer by constructor.
|
||||
auto x = make_shared<int>();
|
||||
weak_ptr<int> y(x);
|
||||
x.reset();
|
||||
if (y.lock())
|
||||
return 21;
|
||||
int caught = 0;
|
||||
try {
|
||||
shared_ptr<int> z(y);
|
||||
} catch (bad_weak_ptr& e) {
|
||||
caught = 1;
|
||||
}
|
||||
if (!caught)
|
||||
return 22;
|
||||
}
|
||||
|
||||
{
|
||||
// nullptr is always expired.
|
||||
shared_ptr<int> x(nullptr);
|
||||
weak_ptr<int> y(x);
|
||||
if (!y.expired())
|
||||
return 23;
|
||||
}
|
||||
|
||||
// TODO(mrdomino): exercise threads / races. The reference count should be
|
||||
// atomically maintained.
|
||||
|
||||
CheckForMemoryLeaks();
|
||||
return 0;
|
||||
}
|
Loading…
Reference in a new issue