Covariant smart pointer result automated cleanup.

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// 3. Covariant smart pointer result (automated cleanup).

#include <memory>
using std::unique_ptr;

template< class Type >
auto up( Type* p ) { return unique_ptr<Type>( p ); }

class Top
{
private:
    virtual Top* virtual_clone() const = 0;

public:
    unique_ptr<Top> clone() const
    { return up( virtual_clone() ); }

    virtual ~Top() = default;       // Necessary for `delete` via Top*.
};

class D : public Top
{
private:
    D* /* ← Covariant return */ virtual_clone() const override
    { return new D( *this ); }

public:
    unique_ptr<D> /* ← Apparent covariant return */ clone() const
    { return up( virtual_clone() ); }
};

class DD : public D
{
private:
    int answer_ = 42;

    DD* /* ← Covariant return */ virtual_clone() const override
    { return new DD( *this ); }

public:
    int answer() const
    { return answer_;}

    unique_ptr<DD> /* ← Apparent covariant return */ clone() const
    { return up( virtual_clone() ); }
};

#include <iostream>
using namespace std;

int main()
{
    auto  p1 = unique_ptr<DD>(new DD());
    auto  p2 = p1->clone();
    // Correct dynamic type DD for *p2 is guaranteed by the static type checking.

    cout << p2->answer() << endl;          // "42"
    // Cleanup is automated via unique_ptr.
 }

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Return type covariance:
* Covariant smart pointer result automated cleanup.

Table Of Contents
8 Arrays
11 Loops
39 Streams
51 Unions
56 Lambdas
60 SFINAE
62 RAII
67 Sorting
84 RTTI
87 Scopes
104 Profiling
105 Return type covariance
107 Recursion
117 Iteration
125 Alignment
134 Semaphore
136 Debugging
139 Mutexes
142 decltype