• vc2010中的c++11特性探索


    #include <algorithm>
    #include <iostream>
    using namespace std;
    struct W
    {
        W(int&, int&) {}
    };
    
    struct X
    {
        X(const int&, int&) {}
    };
    
    struct Y
    {
        Y(int&, const int&) {}
    };
    
    struct Z
    {
        Z(const int&, const int&) {}
    };
    
    template <typename T, typename A1, typename A2>
    T* factory(A1&& a1, A2&& a2)
    {
        return new T(std::forward<A1>(a1), std::forward<A2>(a2));
    }
    
    int&& haha(int&& a)
    {
        cout<< "before haha, a is " << a <<endl;
        a++;
        cout<< "after haha, a is " <<a <<endl;
        return std::forward<int>(a);
    }
    int _tmain(int argc, _TCHAR* argv[])
    {
        char s[]="Hello World!";
        int Uppercase = 0;
        for_each(s,s+sizeof(s),[&](char c)
        {
            if(isupper(c))    
                Uppercase++;
        });
        cout<<Uppercase << " uppercase letters in: " << s << endl;
        /*
        int my_array[]={1,2,3,4,5,6};
        for (int& x : my_array)
        {
            cout << x <<endl;
        }*/
        auto myLambdaFunc = [](){cout<<"haha"<<endl;};
        //myLambdaFunc();
        int a = 4, b = 5;
        W* pw = factory<W>(a, b);
        X* px = factory<X>(2, b);
        Y* py = factory<Y>(a, 2);
        Z* pz = factory<Z>(2, 2);
    
        delete pw;
        delete px;
        delete py;
        delete pz;
        cout << "first a is :" << a <<endl;
        haha(std::forward<int>(a));
        cout<< "really a is :" << a <<endl;
        int c = haha(int(100));
        cout << "c now is " << c <<endl;
        return 0;
    }

    明天再看看。

    http://msdn.microsoft.com/en-us/library/dd293668.aspx

    早上来仔细研究了下右值的作用,先定义一个类来捕获各种拷贝

    class A
    {
    public:
        A(const string& s = ""):itsFather(s){ cout << itsFather << ": A Constructor\n";}
        A(A&& A){ cout << itsFather << ": move constructor" <<endl;}
        A& operator=(const A& a){ cout << itsFather << ": = operator" << endl;return *this;}
        ~A() { cout << itsFather << ": A Destructor\n";}
        string itsFather;
    
        A(const A& a){ cout << itsFather << ": copy constructor" <<endl;}
    };

    再定义2个函数对比下效果:

    A getA()
    {
        A temp("GetA");
        return temp;// forward<A>(temp);
    }
    
    A GetMoveA()
    {
        A temp("GetMoveA");
        return std::move<A>(std::forward<A>(temp));
    }
    cout<<"\n\n\n\n";
        A B = getA();
        cout<<"\n\n\n\n";
        A C = GetMoveA();

    看看输出结果,好奇怪:

    GetA: A Constructor
    : move constructor
    GetA: A Destructor
    
    
    
    
    GetMoveA: A Constructor
    : move constructor
    GetMoveA: A Destructor
    : A Destructor
    : A Destructor

    原本的方法反而更有效了。第二种方法多了2个临时对象的析构,但这2个都没有copy。

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  • 原文地址:https://www.cnblogs.com/zhangyonghugo/p/2578664.html
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