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671 lines
21 KiB
671 lines
21 KiB
// Copyright (c) 2012 The Chromium Authors. All rights reserved. |
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// Use of this source code is governed by a BSD-style license that can be |
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// found in the LICENSE file. |
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#include "base/memory/ref_counted.h" |
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#include <type_traits> |
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#include <utility> |
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#include "base/test/gtest_util.h" |
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#include "testing/gtest/include/gtest/gtest.h" |
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namespace { |
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class SelfAssign : public base::RefCounted<SelfAssign> { |
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protected: |
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virtual ~SelfAssign() = default; |
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private: |
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friend class base::RefCounted<SelfAssign>; |
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}; |
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class Derived : public SelfAssign { |
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protected: |
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~Derived() override = default; |
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private: |
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friend class base::RefCounted<Derived>; |
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}; |
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class CheckDerivedMemberAccess : public scoped_refptr<SelfAssign> { |
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public: |
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CheckDerivedMemberAccess() { |
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// This shouldn't compile if we don't have access to the member variable. |
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SelfAssign** pptr = &ptr_; |
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EXPECT_EQ(*pptr, ptr_); |
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} |
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}; |
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class ScopedRefPtrToSelf : public base::RefCounted<ScopedRefPtrToSelf> { |
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public: |
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ScopedRefPtrToSelf() : self_ptr_(this) {} |
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static bool was_destroyed() { return was_destroyed_; } |
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static void reset_was_destroyed() { was_destroyed_ = false; } |
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scoped_refptr<ScopedRefPtrToSelf> self_ptr_; |
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private: |
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friend class base::RefCounted<ScopedRefPtrToSelf>; |
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~ScopedRefPtrToSelf() { was_destroyed_ = true; } |
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static bool was_destroyed_; |
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}; |
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bool ScopedRefPtrToSelf::was_destroyed_ = false; |
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class ScopedRefPtrCountBase : public base::RefCounted<ScopedRefPtrCountBase> { |
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public: |
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ScopedRefPtrCountBase() { ++constructor_count_; } |
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static int constructor_count() { return constructor_count_; } |
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static int destructor_count() { return destructor_count_; } |
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static void reset_count() { |
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constructor_count_ = 0; |
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destructor_count_ = 0; |
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} |
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protected: |
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virtual ~ScopedRefPtrCountBase() { ++destructor_count_; } |
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private: |
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friend class base::RefCounted<ScopedRefPtrCountBase>; |
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static int constructor_count_; |
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static int destructor_count_; |
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}; |
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int ScopedRefPtrCountBase::constructor_count_ = 0; |
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int ScopedRefPtrCountBase::destructor_count_ = 0; |
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class ScopedRefPtrCountDerived : public ScopedRefPtrCountBase { |
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public: |
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ScopedRefPtrCountDerived() { ++constructor_count_; } |
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static int constructor_count() { return constructor_count_; } |
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static int destructor_count() { return destructor_count_; } |
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static void reset_count() { |
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constructor_count_ = 0; |
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destructor_count_ = 0; |
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} |
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protected: |
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~ScopedRefPtrCountDerived() override { ++destructor_count_; } |
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private: |
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friend class base::RefCounted<ScopedRefPtrCountDerived>; |
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static int constructor_count_; |
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static int destructor_count_; |
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}; |
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int ScopedRefPtrCountDerived::constructor_count_ = 0; |
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int ScopedRefPtrCountDerived::destructor_count_ = 0; |
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class Other : public base::RefCounted<Other> { |
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private: |
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friend class base::RefCounted<Other>; |
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~Other() = default; |
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}; |
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class HasPrivateDestructorWithDeleter; |
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struct Deleter { |
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static void Destruct(const HasPrivateDestructorWithDeleter* x); |
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}; |
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class HasPrivateDestructorWithDeleter |
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: public base::RefCounted<HasPrivateDestructorWithDeleter, Deleter> { |
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public: |
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HasPrivateDestructorWithDeleter() = default; |
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private: |
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friend struct Deleter; |
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~HasPrivateDestructorWithDeleter() = default; |
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}; |
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void Deleter::Destruct(const HasPrivateDestructorWithDeleter* x) { |
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delete x; |
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} |
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scoped_refptr<Other> Overloaded(scoped_refptr<Other> other) { |
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return other; |
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} |
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scoped_refptr<SelfAssign> Overloaded(scoped_refptr<SelfAssign> self_assign) { |
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return self_assign; |
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} |
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class InitialRefCountIsOne : public base::RefCounted<InitialRefCountIsOne> { |
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public: |
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REQUIRE_ADOPTION_FOR_REFCOUNTED_TYPE(); |
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InitialRefCountIsOne() = default; |
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private: |
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friend class base::RefCounted<InitialRefCountIsOne>; |
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~InitialRefCountIsOne() = default; |
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}; |
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// Checks that the scoped_refptr is null before the reference counted object is |
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// destroyed. |
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class CheckRefptrNull : public base::RefCounted<CheckRefptrNull> { |
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public: |
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// Set the last scoped_refptr that will have a reference to this object. |
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void set_scoped_refptr(scoped_refptr<CheckRefptrNull>* ptr) { ptr_ = ptr; } |
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protected: |
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virtual ~CheckRefptrNull() { |
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EXPECT_NE(ptr_, nullptr); |
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EXPECT_EQ(ptr_->get(), nullptr); |
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} |
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private: |
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friend class base::RefCounted<CheckRefptrNull>; |
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scoped_refptr<CheckRefptrNull>* ptr_ = nullptr; |
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}; |
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} // end namespace |
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TEST(RefCountedUnitTest, TestSelfAssignment) { |
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SelfAssign* p = new SelfAssign; |
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scoped_refptr<SelfAssign> var(p); |
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var = *&var; // The *& defeats Clang's -Wself-assign warning. |
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EXPECT_EQ(var.get(), p); |
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var = std::move(var); |
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EXPECT_EQ(var.get(), p); |
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var.swap(var); |
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EXPECT_EQ(var.get(), p); |
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swap(var, var); |
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EXPECT_EQ(var.get(), p); |
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} |
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TEST(RefCountedUnitTest, ScopedRefPtrMemberAccess) { |
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CheckDerivedMemberAccess check; |
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} |
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TEST(RefCountedUnitTest, ScopedRefPtrToSelfPointerAssignment) { |
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ScopedRefPtrToSelf::reset_was_destroyed(); |
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ScopedRefPtrToSelf* check = new ScopedRefPtrToSelf(); |
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EXPECT_FALSE(ScopedRefPtrToSelf::was_destroyed()); |
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check->self_ptr_ = nullptr; |
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EXPECT_TRUE(ScopedRefPtrToSelf::was_destroyed()); |
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} |
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TEST(RefCountedUnitTest, ScopedRefPtrToSelfMoveAssignment) { |
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ScopedRefPtrToSelf::reset_was_destroyed(); |
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ScopedRefPtrToSelf* check = new ScopedRefPtrToSelf(); |
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EXPECT_FALSE(ScopedRefPtrToSelf::was_destroyed()); |
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// Releasing |check->self_ptr_| will delete |check|. |
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// The move assignment operator must assign |check->self_ptr_| first then |
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// release |check->self_ptr_|. |
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check->self_ptr_ = scoped_refptr<ScopedRefPtrToSelf>(); |
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EXPECT_TRUE(ScopedRefPtrToSelf::was_destroyed()); |
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} |
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TEST(RefCountedUnitTest, BooleanTesting) { |
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scoped_refptr<SelfAssign> ptr_to_an_instance = new SelfAssign; |
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EXPECT_TRUE(ptr_to_an_instance); |
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EXPECT_FALSE(!ptr_to_an_instance); |
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if (ptr_to_an_instance) { |
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} else { |
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ADD_FAILURE() << "Pointer to an instance should result in true."; |
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} |
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if (!ptr_to_an_instance) { // check for operator!(). |
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ADD_FAILURE() << "Pointer to an instance should result in !x being false."; |
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} |
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scoped_refptr<SelfAssign> null_ptr; |
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EXPECT_FALSE(null_ptr); |
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EXPECT_TRUE(!null_ptr); |
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if (null_ptr) { |
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ADD_FAILURE() << "Null pointer should result in false."; |
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} |
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if (!null_ptr) { // check for operator!(). |
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} else { |
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ADD_FAILURE() << "Null pointer should result in !x being true."; |
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} |
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} |
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TEST(RefCountedUnitTest, Equality) { |
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scoped_refptr<SelfAssign> p1(new SelfAssign); |
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scoped_refptr<SelfAssign> p2(new SelfAssign); |
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EXPECT_EQ(p1, p1); |
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EXPECT_EQ(p2, p2); |
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EXPECT_NE(p1, p2); |
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EXPECT_NE(p2, p1); |
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} |
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TEST(RefCountedUnitTest, NullptrEquality) { |
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scoped_refptr<SelfAssign> ptr_to_an_instance(new SelfAssign); |
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scoped_refptr<SelfAssign> ptr_to_nullptr; |
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EXPECT_NE(nullptr, ptr_to_an_instance); |
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EXPECT_NE(ptr_to_an_instance, nullptr); |
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EXPECT_EQ(nullptr, ptr_to_nullptr); |
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EXPECT_EQ(ptr_to_nullptr, nullptr); |
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} |
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TEST(RefCountedUnitTest, ConvertibleEquality) { |
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scoped_refptr<Derived> p1(new Derived); |
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scoped_refptr<SelfAssign> p2; |
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EXPECT_NE(p1, p2); |
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EXPECT_NE(p2, p1); |
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p2 = p1; |
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EXPECT_EQ(p1, p2); |
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EXPECT_EQ(p2, p1); |
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} |
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TEST(RefCountedUnitTest, MoveAssignment1) { |
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ScopedRefPtrCountBase::reset_count(); |
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{ |
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ScopedRefPtrCountBase *raw = new ScopedRefPtrCountBase(); |
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scoped_refptr<ScopedRefPtrCountBase> p1(raw); |
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EXPECT_EQ(1, ScopedRefPtrCountBase::constructor_count()); |
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EXPECT_EQ(0, ScopedRefPtrCountBase::destructor_count()); |
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{ |
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scoped_refptr<ScopedRefPtrCountBase> p2; |
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p2 = std::move(p1); |
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EXPECT_EQ(1, ScopedRefPtrCountBase::constructor_count()); |
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EXPECT_EQ(0, ScopedRefPtrCountBase::destructor_count()); |
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EXPECT_EQ(nullptr, p1.get()); |
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EXPECT_EQ(raw, p2.get()); |
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// p2 goes out of scope. |
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} |
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EXPECT_EQ(1, ScopedRefPtrCountBase::constructor_count()); |
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EXPECT_EQ(1, ScopedRefPtrCountBase::destructor_count()); |
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// p1 goes out of scope. |
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} |
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EXPECT_EQ(1, ScopedRefPtrCountBase::constructor_count()); |
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EXPECT_EQ(1, ScopedRefPtrCountBase::destructor_count()); |
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} |
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TEST(RefCountedUnitTest, MoveAssignment2) { |
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ScopedRefPtrCountBase::reset_count(); |
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{ |
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ScopedRefPtrCountBase *raw = new ScopedRefPtrCountBase(); |
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scoped_refptr<ScopedRefPtrCountBase> p1; |
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EXPECT_EQ(1, ScopedRefPtrCountBase::constructor_count()); |
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EXPECT_EQ(0, ScopedRefPtrCountBase::destructor_count()); |
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{ |
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scoped_refptr<ScopedRefPtrCountBase> p2(raw); |
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EXPECT_EQ(1, ScopedRefPtrCountBase::constructor_count()); |
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EXPECT_EQ(0, ScopedRefPtrCountBase::destructor_count()); |
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p1 = std::move(p2); |
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EXPECT_EQ(1, ScopedRefPtrCountBase::constructor_count()); |
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EXPECT_EQ(0, ScopedRefPtrCountBase::destructor_count()); |
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EXPECT_EQ(raw, p1.get()); |
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EXPECT_EQ(nullptr, p2.get()); |
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// p2 goes out of scope. |
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} |
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EXPECT_EQ(1, ScopedRefPtrCountBase::constructor_count()); |
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EXPECT_EQ(0, ScopedRefPtrCountBase::destructor_count()); |
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// p1 goes out of scope. |
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} |
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EXPECT_EQ(1, ScopedRefPtrCountBase::constructor_count()); |
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EXPECT_EQ(1, ScopedRefPtrCountBase::destructor_count()); |
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} |
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TEST(RefCountedUnitTest, MoveAssignmentSameInstance1) { |
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ScopedRefPtrCountBase::reset_count(); |
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{ |
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ScopedRefPtrCountBase *raw = new ScopedRefPtrCountBase(); |
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scoped_refptr<ScopedRefPtrCountBase> p1(raw); |
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EXPECT_EQ(1, ScopedRefPtrCountBase::constructor_count()); |
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EXPECT_EQ(0, ScopedRefPtrCountBase::destructor_count()); |
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{ |
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scoped_refptr<ScopedRefPtrCountBase> p2(p1); |
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EXPECT_EQ(1, ScopedRefPtrCountBase::constructor_count()); |
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EXPECT_EQ(0, ScopedRefPtrCountBase::destructor_count()); |
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p1 = std::move(p2); |
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EXPECT_EQ(1, ScopedRefPtrCountBase::constructor_count()); |
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EXPECT_EQ(0, ScopedRefPtrCountBase::destructor_count()); |
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EXPECT_EQ(raw, p1.get()); |
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EXPECT_EQ(nullptr, p2.get()); |
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// p2 goes out of scope. |
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} |
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EXPECT_EQ(1, ScopedRefPtrCountBase::constructor_count()); |
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EXPECT_EQ(0, ScopedRefPtrCountBase::destructor_count()); |
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// p1 goes out of scope. |
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} |
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EXPECT_EQ(1, ScopedRefPtrCountBase::constructor_count()); |
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EXPECT_EQ(1, ScopedRefPtrCountBase::destructor_count()); |
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} |
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TEST(RefCountedUnitTest, MoveAssignmentSameInstance2) { |
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ScopedRefPtrCountBase::reset_count(); |
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{ |
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ScopedRefPtrCountBase *raw = new ScopedRefPtrCountBase(); |
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scoped_refptr<ScopedRefPtrCountBase> p1(raw); |
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EXPECT_EQ(1, ScopedRefPtrCountBase::constructor_count()); |
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EXPECT_EQ(0, ScopedRefPtrCountBase::destructor_count()); |
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{ |
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scoped_refptr<ScopedRefPtrCountBase> p2(p1); |
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EXPECT_EQ(1, ScopedRefPtrCountBase::constructor_count()); |
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EXPECT_EQ(0, ScopedRefPtrCountBase::destructor_count()); |
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p2 = std::move(p1); |
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EXPECT_EQ(1, ScopedRefPtrCountBase::constructor_count()); |
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EXPECT_EQ(0, ScopedRefPtrCountBase::destructor_count()); |
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EXPECT_EQ(nullptr, p1.get()); |
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EXPECT_EQ(raw, p2.get()); |
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// p2 goes out of scope. |
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} |
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EXPECT_EQ(1, ScopedRefPtrCountBase::constructor_count()); |
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EXPECT_EQ(1, ScopedRefPtrCountBase::destructor_count()); |
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// p1 goes out of scope. |
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} |
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EXPECT_EQ(1, ScopedRefPtrCountBase::constructor_count()); |
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EXPECT_EQ(1, ScopedRefPtrCountBase::destructor_count()); |
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} |
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TEST(RefCountedUnitTest, MoveAssignmentDifferentInstances) { |
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ScopedRefPtrCountBase::reset_count(); |
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{ |
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ScopedRefPtrCountBase *raw1 = new ScopedRefPtrCountBase(); |
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scoped_refptr<ScopedRefPtrCountBase> p1(raw1); |
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EXPECT_EQ(1, ScopedRefPtrCountBase::constructor_count()); |
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EXPECT_EQ(0, ScopedRefPtrCountBase::destructor_count()); |
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{ |
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ScopedRefPtrCountBase *raw2 = new ScopedRefPtrCountBase(); |
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scoped_refptr<ScopedRefPtrCountBase> p2(raw2); |
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EXPECT_EQ(2, ScopedRefPtrCountBase::constructor_count()); |
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EXPECT_EQ(0, ScopedRefPtrCountBase::destructor_count()); |
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p1 = std::move(p2); |
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EXPECT_EQ(2, ScopedRefPtrCountBase::constructor_count()); |
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EXPECT_EQ(1, ScopedRefPtrCountBase::destructor_count()); |
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EXPECT_EQ(raw2, p1.get()); |
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EXPECT_EQ(nullptr, p2.get()); |
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// p2 goes out of scope. |
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} |
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EXPECT_EQ(2, ScopedRefPtrCountBase::constructor_count()); |
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EXPECT_EQ(1, ScopedRefPtrCountBase::destructor_count()); |
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// p1 goes out of scope. |
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} |
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EXPECT_EQ(2, ScopedRefPtrCountBase::constructor_count()); |
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EXPECT_EQ(2, ScopedRefPtrCountBase::destructor_count()); |
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} |
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TEST(RefCountedUnitTest, MoveAssignmentSelfMove) { |
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ScopedRefPtrCountBase::reset_count(); |
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{ |
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ScopedRefPtrCountBase* raw = new ScopedRefPtrCountBase; |
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scoped_refptr<ScopedRefPtrCountBase> p1(raw); |
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scoped_refptr<ScopedRefPtrCountBase>& p1_ref = p1; |
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EXPECT_EQ(1, ScopedRefPtrCountBase::constructor_count()); |
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EXPECT_EQ(0, ScopedRefPtrCountBase::destructor_count()); |
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p1 = std::move(p1_ref); |
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// |p1| is "valid but unspecified", so don't bother inspecting its |
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// contents, just ensure that we don't crash. |
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} |
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EXPECT_EQ(1, ScopedRefPtrCountBase::constructor_count()); |
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EXPECT_EQ(1, ScopedRefPtrCountBase::destructor_count()); |
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} |
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TEST(RefCountedUnitTest, MoveAssignmentDerived) { |
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ScopedRefPtrCountBase::reset_count(); |
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ScopedRefPtrCountDerived::reset_count(); |
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{ |
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ScopedRefPtrCountBase *raw1 = new ScopedRefPtrCountBase(); |
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scoped_refptr<ScopedRefPtrCountBase> p1(raw1); |
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EXPECT_EQ(1, ScopedRefPtrCountBase::constructor_count()); |
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EXPECT_EQ(0, ScopedRefPtrCountBase::destructor_count()); |
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EXPECT_EQ(0, ScopedRefPtrCountDerived::constructor_count()); |
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EXPECT_EQ(0, ScopedRefPtrCountDerived::destructor_count()); |
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{ |
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ScopedRefPtrCountDerived *raw2 = new ScopedRefPtrCountDerived(); |
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scoped_refptr<ScopedRefPtrCountDerived> p2(raw2); |
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EXPECT_EQ(2, ScopedRefPtrCountBase::constructor_count()); |
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EXPECT_EQ(0, ScopedRefPtrCountBase::destructor_count()); |
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EXPECT_EQ(1, ScopedRefPtrCountDerived::constructor_count()); |
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EXPECT_EQ(0, ScopedRefPtrCountDerived::destructor_count()); |
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p1 = std::move(p2); |
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EXPECT_EQ(2, ScopedRefPtrCountBase::constructor_count()); |
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EXPECT_EQ(1, ScopedRefPtrCountBase::destructor_count()); |
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EXPECT_EQ(1, ScopedRefPtrCountDerived::constructor_count()); |
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EXPECT_EQ(0, ScopedRefPtrCountDerived::destructor_count()); |
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EXPECT_EQ(raw2, p1.get()); |
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EXPECT_EQ(nullptr, p2.get()); |
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// p2 goes out of scope. |
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} |
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EXPECT_EQ(2, ScopedRefPtrCountBase::constructor_count()); |
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EXPECT_EQ(1, ScopedRefPtrCountBase::destructor_count()); |
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EXPECT_EQ(1, ScopedRefPtrCountDerived::constructor_count()); |
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EXPECT_EQ(0, ScopedRefPtrCountDerived::destructor_count()); |
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// p1 goes out of scope. |
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} |
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EXPECT_EQ(2, ScopedRefPtrCountBase::constructor_count()); |
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EXPECT_EQ(2, ScopedRefPtrCountBase::destructor_count()); |
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EXPECT_EQ(1, ScopedRefPtrCountDerived::constructor_count()); |
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EXPECT_EQ(1, ScopedRefPtrCountDerived::destructor_count()); |
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} |
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TEST(RefCountedUnitTest, MoveConstructor) { |
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ScopedRefPtrCountBase::reset_count(); |
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{ |
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ScopedRefPtrCountBase *raw = new ScopedRefPtrCountBase(); |
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scoped_refptr<ScopedRefPtrCountBase> p1(raw); |
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EXPECT_EQ(1, ScopedRefPtrCountBase::constructor_count()); |
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EXPECT_EQ(0, ScopedRefPtrCountBase::destructor_count()); |
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{ |
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scoped_refptr<ScopedRefPtrCountBase> p2(std::move(p1)); |
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EXPECT_EQ(1, ScopedRefPtrCountBase::constructor_count()); |
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EXPECT_EQ(0, ScopedRefPtrCountBase::destructor_count()); |
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EXPECT_EQ(nullptr, p1.get()); |
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EXPECT_EQ(raw, p2.get()); |
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// p2 goes out of scope. |
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} |
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EXPECT_EQ(1, ScopedRefPtrCountBase::constructor_count()); |
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EXPECT_EQ(1, ScopedRefPtrCountBase::destructor_count()); |
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// p1 goes out of scope. |
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} |
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EXPECT_EQ(1, ScopedRefPtrCountBase::constructor_count()); |
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EXPECT_EQ(1, ScopedRefPtrCountBase::destructor_count()); |
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} |
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TEST(RefCountedUnitTest, MoveConstructorDerived) { |
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ScopedRefPtrCountBase::reset_count(); |
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ScopedRefPtrCountDerived::reset_count(); |
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{ |
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ScopedRefPtrCountDerived *raw1 = new ScopedRefPtrCountDerived(); |
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scoped_refptr<ScopedRefPtrCountDerived> p1(raw1); |
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EXPECT_EQ(1, ScopedRefPtrCountBase::constructor_count()); |
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EXPECT_EQ(0, ScopedRefPtrCountBase::destructor_count()); |
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EXPECT_EQ(1, ScopedRefPtrCountDerived::constructor_count()); |
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EXPECT_EQ(0, ScopedRefPtrCountDerived::destructor_count()); |
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{ |
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scoped_refptr<ScopedRefPtrCountBase> p2(std::move(p1)); |
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EXPECT_EQ(1, ScopedRefPtrCountBase::constructor_count()); |
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EXPECT_EQ(0, ScopedRefPtrCountBase::destructor_count()); |
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EXPECT_EQ(1, ScopedRefPtrCountDerived::constructor_count()); |
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EXPECT_EQ(0, ScopedRefPtrCountDerived::destructor_count()); |
|
EXPECT_EQ(nullptr, p1.get()); |
|
EXPECT_EQ(raw1, p2.get()); |
|
|
|
// p2 goes out of scope. |
|
} |
|
EXPECT_EQ(1, ScopedRefPtrCountBase::constructor_count()); |
|
EXPECT_EQ(1, ScopedRefPtrCountBase::destructor_count()); |
|
EXPECT_EQ(1, ScopedRefPtrCountDerived::constructor_count()); |
|
EXPECT_EQ(1, ScopedRefPtrCountDerived::destructor_count()); |
|
|
|
// p1 goes out of scope. |
|
} |
|
EXPECT_EQ(1, ScopedRefPtrCountBase::constructor_count()); |
|
EXPECT_EQ(1, ScopedRefPtrCountBase::destructor_count()); |
|
EXPECT_EQ(1, ScopedRefPtrCountDerived::constructor_count()); |
|
EXPECT_EQ(1, ScopedRefPtrCountDerived::destructor_count()); |
|
} |
|
|
|
TEST(RefCountedUnitTest, TestOverloadResolutionCopy) { |
|
const scoped_refptr<Derived> derived(new Derived); |
|
const scoped_refptr<SelfAssign> expected(derived); |
|
EXPECT_EQ(expected, Overloaded(derived)); |
|
|
|
const scoped_refptr<Other> other(new Other); |
|
EXPECT_EQ(other, Overloaded(other)); |
|
} |
|
|
|
TEST(RefCountedUnitTest, TestOverloadResolutionMove) { |
|
scoped_refptr<Derived> derived(new Derived); |
|
const scoped_refptr<SelfAssign> expected(derived); |
|
EXPECT_EQ(expected, Overloaded(std::move(derived))); |
|
|
|
scoped_refptr<Other> other(new Other); |
|
const scoped_refptr<Other> other2(other); |
|
EXPECT_EQ(other2, Overloaded(std::move(other))); |
|
} |
|
|
|
TEST(RefCountedUnitTest, TestMakeRefCounted) { |
|
scoped_refptr<Derived> derived = new Derived; |
|
EXPECT_TRUE(derived->HasOneRef()); |
|
derived.reset(); |
|
|
|
scoped_refptr<Derived> derived2 = base::MakeRefCounted<Derived>(); |
|
EXPECT_TRUE(derived2->HasOneRef()); |
|
derived2.reset(); |
|
} |
|
|
|
TEST(RefCountedUnitTest, TestInitialRefCountIsOne) { |
|
scoped_refptr<InitialRefCountIsOne> obj = |
|
base::MakeRefCounted<InitialRefCountIsOne>(); |
|
EXPECT_TRUE(obj->HasOneRef()); |
|
obj.reset(); |
|
|
|
scoped_refptr<InitialRefCountIsOne> obj2 = |
|
base::AdoptRef(new InitialRefCountIsOne); |
|
EXPECT_TRUE(obj2->HasOneRef()); |
|
obj2.reset(); |
|
|
|
scoped_refptr<Other> obj3 = base::MakeRefCounted<Other>(); |
|
EXPECT_TRUE(obj3->HasOneRef()); |
|
obj3.reset(); |
|
} |
|
|
|
TEST(RefCountedUnitTest, TestPrivateDestructorWithDeleter) { |
|
// Ensure that RefCounted doesn't need the access to the pointee dtor when |
|
// a custom deleter is given. |
|
scoped_refptr<HasPrivateDestructorWithDeleter> obj = |
|
base::MakeRefCounted<HasPrivateDestructorWithDeleter>(); |
|
} |
|
|
|
TEST(RefCountedUnitTest, TestReset) { |
|
ScopedRefPtrCountBase::reset_count(); |
|
|
|
// Create ScopedRefPtrCountBase that is referenced by |obj1| and |obj2|. |
|
scoped_refptr<ScopedRefPtrCountBase> obj1 = |
|
base::MakeRefCounted<ScopedRefPtrCountBase>(); |
|
scoped_refptr<ScopedRefPtrCountBase> obj2 = obj1; |
|
EXPECT_NE(obj1.get(), nullptr); |
|
EXPECT_NE(obj2.get(), nullptr); |
|
EXPECT_EQ(ScopedRefPtrCountBase::constructor_count(), 1); |
|
EXPECT_EQ(ScopedRefPtrCountBase::destructor_count(), 0); |
|
|
|
// Check that calling reset() on |obj1| resets it. |obj2| still has a |
|
// reference to the ScopedRefPtrCountBase so it shouldn't be reset. |
|
obj1.reset(); |
|
EXPECT_EQ(obj1.get(), nullptr); |
|
EXPECT_EQ(ScopedRefPtrCountBase::constructor_count(), 1); |
|
EXPECT_EQ(ScopedRefPtrCountBase::destructor_count(), 0); |
|
|
|
// Check that calling reset() on |obj2| resets it and causes the deletion of |
|
// the ScopedRefPtrCountBase. |
|
obj2.reset(); |
|
EXPECT_EQ(obj2.get(), nullptr); |
|
EXPECT_EQ(ScopedRefPtrCountBase::constructor_count(), 1); |
|
EXPECT_EQ(ScopedRefPtrCountBase::destructor_count(), 1); |
|
} |
|
|
|
TEST(RefCountedUnitTest, TestResetAlreadyNull) { |
|
// Check that calling reset() on a null scoped_refptr does nothing. |
|
scoped_refptr<ScopedRefPtrCountBase> obj; |
|
obj.reset(); |
|
// |obj| should still be null after calling reset(). |
|
EXPECT_EQ(obj.get(), nullptr); |
|
} |
|
|
|
TEST(RefCountedUnitTest, CheckScopedRefptrNullBeforeObjectDestruction) { |
|
scoped_refptr<CheckRefptrNull> obj = base::MakeRefCounted<CheckRefptrNull>(); |
|
obj->set_scoped_refptr(&obj); |
|
|
|
// Check that when reset() is called the scoped_refptr internal pointer is set |
|
// to null before the reference counted object is destroyed. This check is |
|
// done by the CheckRefptrNull destructor. |
|
obj.reset(); |
|
EXPECT_EQ(obj.get(), nullptr); |
|
} |
|
|
|
TEST(RefCountedDeathTest, TestAdoptRef) { |
|
// Check that WrapRefCounted() DCHECKs if passed a type that defines |
|
// REQUIRE_ADOPTION_FOR_REFCOUNTED_TYPE. |
|
EXPECT_DCHECK_DEATH(base::WrapRefCounted(new InitialRefCountIsOne)); |
|
|
|
// Check that AdoptRef() DCHECKs if passed a nullptr. |
|
InitialRefCountIsOne* ptr = nullptr; |
|
EXPECT_DCHECK_DEATH(base::AdoptRef(ptr)); |
|
|
|
// Check that AdoptRef() DCHECKs if passed an object that doesn't need to be |
|
// adopted. |
|
scoped_refptr<InitialRefCountIsOne> obj = |
|
base::MakeRefCounted<InitialRefCountIsOne>(); |
|
EXPECT_DCHECK_DEATH(base::AdoptRef(obj.get())); |
|
}
|
|
|