logical_and Struct
结构提供执行逻辑合取操作在指定值类型元素的并测试结果的实现或虚假的预定义的函数对象。
template<class Type>
struct logical_and : public binary_function<Type, Type, bool>
{
bool operator()(
const Type& _Left,
const Type& _Right
) const;
};
参数
_Left
类型 *** 类型 *** 中的左操作数要测试的合取的。_Right
类型 *** 类型 *** 正确的操作数在要测试的合取的。
返回值
true,则,因此,仅当 _Left 是 true 和 _Right 是 true;否则 false。
示例
// functional_logical_and.cpp
// compile with: /EHsc
#define _CRT_RAND_S
#include <stdlib.h>
#include <deque>
#include <algorithm>
#include <functional>
#include <iostream>
int main( )
{
using namespace std;
deque<bool> d1, d2, d3( 7 );
deque<bool>::iterator iter1, iter2, iter3;
unsigned int randomValue;
int i;
for ( i = 0 ; i < 7 ; i++ )
{
if ( rand_s( &randomValue ) == 0 )
{
d1.push_back((bool)(( randomValue % 2 ) != 0));
}
}
int j;
for ( j = 0 ; j < 7 ; j++ )
{
if ( rand_s( &randomValue ) == 0 )
{
d2.push_back((bool)(( randomValue % 2 ) != 0));
}
}
cout << boolalpha; // boolalpha I/O flag on
cout << "Original deque:\n d1 = ( " ;
for ( iter1 = d1.begin( ) ; iter1 != d1.end( ) ; iter1++ )
cout << *iter1 << " ";
cout << ")" << endl;
cout << "Original deque:\n d2 = ( " ;
for ( iter2 = d2.begin( ) ; iter2 != d2.end( ) ; iter2++ )
cout << *iter2 << " ";
cout << ")" << endl;
// To find element-wise conjunction of the truth values
// of d1 & d2, use the logical_and function object
transform( d1.begin( ), d1.end( ), d2.begin( ),
d3.begin( ), logical_and<bool>( ) );
cout << "The deque which is the conjuction of d1 & d2 is:\n d3 = ( " ;
for ( iter3 = d3.begin( ) ; iter3 != d3.end( ) ; iter3++ )
cout << *iter3 << " ";
cout << ")" << endl;
}
要求
标头: <functional>
命名空间: std