CF1689B.Mystic Permutation
普及/提高-
通过率:0%
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题目描述
Monocarp is a little boy who lives in Byteland and he loves programming.
Recently, he found a permutation of length n . He has to come up with a mystic permutation. It has to be a new permutation such that it differs from the old one in each position.
More formally, if the old permutation is p1,p2,…,pn and the new one is q1,q2,…,qn it must hold that $$$$p_1\neq q_1, p_2\neq q_2, \ldots ,p_n\neq q_n. $$$$
Monocarp is afraid of lexicographically large permutations. Can you please help him to find the lexicographically minimal mystic permutation?
输入格式
There are several test cases in the input data. The first line contains a single integer t ( 1≤t≤200 ) — the number of test cases. This is followed by the test cases description.
The first line of each test case contains a positive integer n ( 1≤n≤1000 ) — the length of the permutation.
The second line of each test case contains n distinct positive integers p1,p2,…,pn ( 1≤pi≤n ). It's guaranteed that p is a permutation, i. e. pi=pj for all i=j .
It is guaranteed that the sum of n does not exceed 1000 over all test cases.
输出格式
For each test case, output n positive integers — the lexicographically minimal mystic permutations. If such a permutation does not exist, output −1 instead.
输入输出样例
输入#1
4 3 1 2 3 5 2 3 4 5 1 4 2 3 1 4 1 1
输出#1
2 3 1 1 2 3 4 5 1 2 4 3 -1
说明/提示
In the first test case possible permutations that are mystic are [2,3,1] and [3,1,2] . Lexicographically smaller of the two is [2,3,1] .
In the second test case, [1,2,3,4,5] is the lexicographically minimal permutation and it is also mystic.
In third test case possible mystic permutations are [1,2,4,3] , [1,4,2,3] , [1,4,3,2] , [3,1,4,2] , [3,2,4,1] , [3,4,2,1] , [4,1,2,3] , [4,1,3,2] and [4,3,2,1] . The smallest one is [1,2,4,3] .