//===----------------------------------------------------------------------===// // // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. // See https://llvm.org/LICENSE.txt for license information. // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception // //===----------------------------------------------------------------------===// // UNSUPPORTED: sanitizer-new-delete // // template shared_ptr(unique_ptr&&r); #include #include #include #include #include "test_macros.h" #include "count_new.h" struct B { static int count; B() {++count;} B(const B&) {++count;} virtual ~B() {--count;} }; int B::count = 0; struct A : public B { static int count; A() {++count;} A(const A& other) : B(other) {++count;} ~A() {--count;} }; int A::count = 0; void fn ( const std::shared_ptr &) {} void fn ( const std::shared_ptr &) { assert (false); } template void assert_deleter ( T * ) { assert(false); } namespace adl { struct D { void operator()(int *) const {} }; void ref(D); } template struct StatefulDeleter { int state = 0; StatefulDeleter(int val = 0) : state(val) {} StatefulDeleter(StatefulDeleter const&) { assert(false); } void operator()(T* ptr) { assert(state == 42); delete ptr; } }; template struct StatefulArrayDeleter { int state = 0; StatefulArrayDeleter(int val = 0) : state(val) {} StatefulArrayDeleter(StatefulArrayDeleter const&) { assert(false); } void operator()(T* ptr) { assert(state == 42); delete []ptr; } }; struct MovingDeleter { explicit MovingDeleter(int *moves) : moves_(moves) {} MovingDeleter(MovingDeleter&& rhs) : moves_(rhs.moves_) { *moves_ += 1; } void operator()(int*) const {} int *moves_; }; int main(int, char**) { { std::unique_ptr ptr(new A); A* raw_ptr = ptr.get(); std::shared_ptr p(std::move(ptr)); assert(A::count == 1); assert(B::count == 1); assert(p.use_count() == 1); assert(p.get() == raw_ptr); assert(ptr.get() == 0); } { std::unique_ptr ptr(new A); A const* raw_ptr = ptr.get(); std::shared_ptr p(std::move(ptr)); assert(A::count == 1); assert(B::count == 1); assert(p.use_count() == 1); assert(p.get() == raw_ptr); assert(ptr.get() == 0); } #ifndef TEST_HAS_NO_EXCEPTIONS assert(A::count == 0); { std::unique_ptr ptr(new A); A* raw_ptr = ptr.get(); globalMemCounter.throw_after = 0; try { std::shared_ptr p(std::move(ptr)); assert(false); } catch (...) { assert(A::count == 1); assert(B::count == 1); assert(ptr.get() == raw_ptr); } } #endif #if TEST_STD_VER > 14 { std::unique_ptr ptr; std::shared_ptr p(std::move(ptr)); assert(p.get() == 0); assert(p.use_count() == 0); } #endif { StatefulDeleter d; std::unique_ptr&> u(new A, d); std::shared_ptr p(std::move(u)); d.state = 42; assert(A::count == 1); } assert(A::count == 0); { // LWG 2399 fn(std::unique_ptr(new int)); } #if TEST_STD_VER >= 14 { // LWG 2415 std::unique_ptr p(nullptr, assert_deleter); std::shared_ptr p2(std::move(p)); // should not call deleter when going out of scope } #endif { adl::D d; std::unique_ptr u(nullptr, d); std::shared_ptr s = std::move(u); } assert(A::count == 0); #ifdef _LIBCPP_VERSION // https://llvm.org/PR53368 { std::unique_ptr ptr(new A[8]); A* raw_ptr = ptr.get(); std::shared_ptr p(std::move(ptr)); assert(A::count == 8); assert(B::count == 8); assert(p.use_count() == 1); assert(p.get() == raw_ptr); assert(ptr.get() == 0); } assert(A::count == 0); assert(B::count == 0); { std::unique_ptr ptr(new A[8]); A* raw_ptr = ptr.get(); std::shared_ptr p(std::move(ptr)); assert(A::count == 8); assert(p.use_count() == 1); assert(p.get() == raw_ptr); assert(ptr.get() == 0); } assert(A::count == 0); { std::unique_ptr ptr(new int[8]); std::shared_ptr p(std::move(ptr)); } #endif // _LIBCPP_VERSION #if TEST_STD_VER > 14 { StatefulArrayDeleter d; std::unique_ptr&> u(new A[4], d); std::shared_ptr p(std::move(u)); d.state = 42; assert(A::count == 4); } assert(A::count == 0); assert(B::count == 0); #ifdef _LIBCPP_VERSION // https://llvm.org/PR53368 { std::unique_ptr ptr(new A[8]); A* raw_ptr = ptr.get(); std::shared_ptr p(std::move(ptr)); assert(A::count == 8); assert(B::count == 8); assert(p.use_count() == 1); assert(p.get() == raw_ptr); assert(ptr.get() == 0); } assert(A::count == 0); assert(B::count == 0); #endif // _LIBCPP_VERSION { std::unique_ptr ptr(new A[8]); A* raw_ptr = ptr.get(); std::shared_ptr p(std::move(ptr)); assert(A::count == 8); assert(p.use_count() == 1); assert(p.get() == raw_ptr); assert(ptr.get() == 0); } assert(A::count == 0); { int *p = new int[8]; std::unique_ptr u(p); std::shared_ptr s(std::move(u)); assert(u == nullptr); assert(s.get() == p); } #endif // TEST_STD_VER > 14 { // LWG 3548 { int moves = 0; int i = 42; std::unique_ptr u(&i, MovingDeleter(&moves)); assert(moves == 1); std::shared_ptr s(std::move(u)); assert(moves >= 2); assert(u == nullptr); assert(s.get() == &i); } #if TEST_STD_VER > 14 { int moves = 0; int a[8]; std::unique_ptr u(a, MovingDeleter(&moves)); assert(moves == 1); std::shared_ptr s = std::move(u); assert(moves >= 2); assert(u == nullptr); assert(s.get() == a); } #endif // TEST_STD_VER > 14 } return 0; }