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cpplearn
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src
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new_allocator_.cpp
cpplearn
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src
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new_allocator_.cpp
new_allocator_.cpp 2.71 KB
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secondtonone1 authored 2022年01月21日 11:41 +08:00 . allocator
#include "../inc/new_allocator_.h"
#include <algorithm>
#include <numeric>
#include <iostream>
#include <vector>
#include <list>
#include <string>
#include <functional>
#include <memory>
#include <exception>
using namespace std;
int get_size_new()
{
return 42;
}
void new_array_1()
{
int *p_array = new int[get_size_new()]();
for (int i = 0; i < get_size_new(); i++)
{
cout << *(p_array + i) << " ";
}
delete[] p_array;
cout << endl;
}
void new_array_2()
{
//定义数组类型
typedef int array_type[10];
//动态开辟数组空间
int *p_array = new (array_type);
delete[] p_array;
}
void new_array_3()
{
//通过{}初始化动态数组
int *p_array = new int[10]{1, 2, 3, 4};
//释放动态数组
delete[] p_array;
}
void new_array()
{
int n = 0;
//开辟一个大小为0的数组
int *p_array = new int[n];
for (int *p = p_array; p != n + p_array; p++)
{
cout << *p << " ";
}
delete[] p_array;
}
void unique_array()
{
//开辟一个20个整形的动态数组,用unique_ptr管理它。
auto unarray = unique_ptr<int[]>(new int[20]());
//可以通过下标访问数组元素
for (size_t i = 0; i < 10; i++)
{
unarray[i] = 1024;
}
//释放这个动态数组
unarray.release();
}
void use_shared_array_1()
{
// 开辟一个5个整形的动态数组,用shared_ptr管理它
auto sharray = shared_ptr<int[]>(new int[5]{1, 2, 3, 4, 5});
for (int i = 0; i < 5; i++)
{
cout << sharray[i] << " ";
}
sharray.reset();
cout << endl;
}
void use_shared_array()
{
shared_ptr<int> sharray = shared_ptr<int>(new int[5], [](int *p)
{ delete[] p; });
sharray.reset();
}
void use_allocator_1()
{
allocator<string> alloc;
// allocator分配5个string类型对象的空间
// 这些空间未构造
auto p = alloc.allocate(5);
auto q = p;
string str = "c";
for (; q != p + 5; q++)
{
//构造字符串,每次字符串增加c字符
alloc.construct(q, str);
str += "c";
}
// //打印构造的字符串列表
for (q = p; q != p + 5; q++)
{
cout << *q << endl;
}
//销毁开辟的空间
alloc.deallocate(p, 5);
}
void use_allocator()
{
vector<int> ivec = {1, 2, 3, 4, 5};
allocator<int> alloc;
//开辟2倍ivec大小的空间
auto p = alloc.allocate(ivec.size() * 2);
//将ivec的内容copy至alloc开辟的空间里
//返回q指向剩余未构造的内存空间的起始地址
auto q = uninitialized_copy(ivec.begin(), ivec.end(), p);
//将剩余元素初始化为42
uninitialized_fill_n(q, ivec.size(), 42);
}
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