A15361 | Build Permutation
时间限制1s
内存限制256MB
通过 / 提交0/0
题目描述
A $\mathbf{0}$ -indexed array $a$ of size $n$ is called good if for all valid indices $i$ ( $0 \le i \le n-1$ ), $a_i + i$ is a perfect square $^\dagger$ .
Given an integer $n$ . Find a permutation $^\ddagger$ $p$ of $[0,1,2,\ldots,n-1]$ that is good or determine that no such permutation exists.
$^\dagger$ An integer $x$ is said to be a perfect square if there exists an integer $y$ such that $x = y^2$ .
$^\ddagger$ An array $b$ is a permutation of an array $a$ if $b$ consists of the elements of $a$ in arbitrary order. For example, $[4,2,3,4]$ is a permutation of $[3,2,4,4]$ while $[1,2,2]$ is not a permutation of $[1,2,3]$ .
Given an integer $n$ . Find a permutation $^\ddagger$ $p$ of $[0,1,2,\ldots,n-1]$ that is good or determine that no such permutation exists.
$^\dagger$ An integer $x$ is said to be a perfect square if there exists an integer $y$ such that $x = y^2$ .
$^\ddagger$ An array $b$ is a permutation of an array $a$ if $b$ consists of the elements of $a$ in arbitrary order. For example, $[4,2,3,4]$ is a permutation of $[3,2,4,4]$ while $[1,2,2]$ is not a permutation of $[1,2,3]$ .
输入格式
The first line contains a single integer $t$ ( $1 \le t \le 10^4$ ) — the number of test cases.
The only line of each test case contains a single integer $n$ ( $1 \le n \le 10^5$ ) — the length of the permutation $p$ .
It is guaranteed that the sum of $n$ over all test cases does not exceed $10^5$ .
The only line of each test case contains a single integer $n$ ( $1 \le n \le 10^5$ ) — the length of the permutation $p$ .
It is guaranteed that the sum of $n$ over all test cases does not exceed $10^5$ .
输出格式
For each test case, output $n$ distinct integers $p_0, p_1, \dots, p_{n-1}$ ( $0 \le p_i \le n-1$ ) — the permutation $p$ — if the answer exists, and $-1$ otherwise.
输入输出样例
输入 #1
3 3 4 7
输出 #1
1 0 2 0 3 2 1 1 0 2 6 5 4 3
In the first test case, we have $n=3$ . The array $p = [1, 0, 2]$ is good since $1 + 0 = 1^2$ , $0 + 1 = 1^2$ , and $2 + 2 = 2^2$
In the second test case, we have $n=4$ . The array $p = [0, 3, 2, 1]$ is good since $0 + 0 = 0^2$ , $3 + 1 = 2^2$ , $2+2 = 2^2$ , and $1+3 = 2^2$ .
In the second test case, we have $n=4$ . The array $p = [0, 3, 2, 1]$ is good since $0 + 0 = 0^2$ , $3 + 1 = 2^2$ , $2+2 = 2^2$ , and $1+3 = 2^2$ .
C++ 编辑器
输入
输出
可保存默认模板;新题优先使用已保存模板。
当前快捷键仅展示,暂不支持修改。
- 撤销
Ctrl / ⌘ + Z - 重做
Ctrl / ⌘ + Y - 查找
Ctrl / ⌘ + F - 全选
Ctrl / ⌘ + A - 复制
Ctrl / ⌘ + C - 剪切
Ctrl / ⌘ + X - 粘贴
Ctrl / ⌘ + V - 自动排版
工具栏排版按钮 - 草稿保存
编辑时自动保存到本机
历史
提交记录
状态说明时间源码
AI
作答助手
你好,我是作答助手。可以问思路、复杂度、样例含义或代码报错原因;不会直接给出完整 AC 代码。
确定要清空代码吗?
提交通过
评测结果:Accepted