CF1582B.Luntik and Subsequences

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题目描述

Luntik came out for a morning stroll and found an array aa of length nn . He calculated the sum ss of the elements of the array ( s=i=1nais= \sum_{i=1}^{n} a_i ). Luntik calls a subsequence of the array aa nearly full if the sum of the numbers in that subsequence is equal to s1s-1 .

Luntik really wants to know the number of nearly full subsequences of the array aa . But he needs to come home so he asks you to solve that problem!

A sequence xx is a subsequence of a sequence yy if xx can be obtained from yy by deletion of several (possibly, zero or all) elements.

输入格式

The first line contains a single integer tt ( 1t10001 \le t \le 1000 ) — the number of test cases. The next 2t2 \cdot t lines contain descriptions of test cases. The description of each test case consists of two lines.

The first line of each test case contains a single integer nn ( 1n601 \le n \le 60 ) — the length of the array.

The second line contains nn integers a1,a2,,ana_1, a_2, \ldots, a_n ( 0ai1090 \le a_i \le 10^9 ) — the elements of the array aa .

输出格式

For each test case print the number of nearly full subsequences of the array.

输入输出样例

  • 输入#1

    5
    5
    1 2 3 4 5
    2
    1000 1000
    2
    1 0
    5
    3 0 2 1 1
    5
    2 1 0 3 0

    输出#1

    1
    0
    2
    4
    4

说明/提示

In the first test case, s=1+2+3+4+5=15s=1+2+3+4+5=15 , only (2,3,4,5)(2,3,4,5) is a nearly full subsequence among all subsequences, the sum in it is equal to 2+3+4+5=14=1512+3+4+5=14=15-1 .

In the second test case, there are no nearly full subsequences.

In the third test case, s=1+0=1s=1+0=1 , the nearly full subsequences are (0)(0) and ()() (the sum of an empty subsequence is 00 ).

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