将 make_move_iterator 与 vector::insert 一起应用是否有意义?(C++)
Does it make sense to apply make_move_iterator together with vector::insert ?(C++)
我有一个向量的向量,我想将它们一个接一个地连接起来形成一个长向量。这可以通过在末尾插入来完成。受到this question的启发,我在想使用make_move_iterator会用move代替copy,这样效率会更高。但是下面的测试表明make_move_iterator会造成较大的时间消耗。
#include <iostream>
#include <string>
#include <vector>
#include <chrono>
using namespace std;
int main()
{
string a = "veryveryveryveryveryveryveryveryveryveryveryveryveryveryveryveryveryveryveryveryveryveryveryveryveryveryveryverylongstring";
vector<string> b(10,a);
vector<vector<string> > c(1000,b);
vector<string> d,e;
auto t1 = chrono::system_clock::now();
for(auto& item : c)
{
d.insert(d.end(),item.begin(),item.end());
}
cout << c[0][0].length() << endl;
auto t2 = chrono::system_clock::now();
for(auto& item:c)
{
e.insert(e.end(), std::make_move_iterator(item.begin()),std::make_move_iterator(item.end()));
}
auto t3 = chrono::system_clock::now();
cout << chrono::duration_cast<chrono::nanoseconds>(t2-t1).count() << endl;
cout << chrono::duration_cast<chrono::nanoseconds>(t3-t2).count() << endl;
cout << c[0][0].length() << endl;
cout << "To check that c has been moved from." <<endl;
}
//Output:
//122
//1212000
//1630000
//0
//To check that c has been moved from.
所以我想知道,这种方法真的有助于提高效率吗?
我有一个向量的向量,我想将它们一个接一个地连接起来形成一个长向量。这可以通过在末尾插入来完成。受到this question的启发,我在想使用make_move_iterator会用move代替copy,这样效率会更高。但是下面的测试表明make_move_iterator会造成较大的时间消耗。
#include <iostream>
#include <string>
#include <vector>
#include <chrono>
using namespace std;
int main()
{
string a = "veryveryveryveryveryveryveryveryveryveryveryveryveryveryveryveryveryveryveryveryveryveryveryveryveryveryveryverylongstring";
vector<string> b(10,a);
vector<vector<string> > c(1000,b);
vector<string> d,e;
auto t1 = chrono::system_clock::now();
for(auto& item : c)
{
d.insert(d.end(),item.begin(),item.end());
}
cout << c[0][0].length() << endl;
auto t2 = chrono::system_clock::now();
for(auto& item:c)
{
e.insert(e.end(), std::make_move_iterator(item.begin()),std::make_move_iterator(item.end()));
}
auto t3 = chrono::system_clock::now();
cout << chrono::duration_cast<chrono::nanoseconds>(t2-t1).count() << endl;
cout << chrono::duration_cast<chrono::nanoseconds>(t3-t2).count() << endl;
cout << c[0][0].length() << endl;
cout << "To check that c has been moved from." <<endl;
}
//Output:
//122
//1212000
//1630000
//0
//To check that c has been moved from.
所以我想知道,这种方法真的有助于提高效率吗?