Doki Doki Literature Club

本文介绍了一款基于《Doki Doki Literature Club!》游戏背景的诗歌创作算法,玩家需为角色Sayori创作诗歌以提升其好感度。文章详细解析了诗歌创作机制,包括词汇选择及好感度计算公式,并提供了一个示例代码,展示了如何通过算法最大化Sayori的幸福感。

Doki Doki Literature Club! is a visual novel developed by Team Salvato. The protagonist is invited by his childhood friend, Sayori, to join their high school's literature club. The protagonist then meets the other members of the club: Natsuki, Yuri, and the club president Monika. The protagonist starts to participate in the club's activities such as writing and sharing poetry, and grows close to the four girls. What a lovely story!

A very important feature of the game is its poetry writing mechanism. The player is given a list of various words to select from that will make up his poem. Each girl in the Literature Club has different word preferences, and will be very happy if the player's poem is full of her favorite words.

The poem writing mini-game (from wikipedia)

BaoBao is a big fan of the game and likes Sayori the most, so he decides to write a poem to please Sayori. A poem of  words  is nothing more than a sequence of  strings, and the happiness of Sayori after reading the poem is calculated by the formula

where  is the happiness and  is Sayori's preference to the word .

Given a list of  words and Sayori's preference to each word, please help BaoBao select  words from the list and finish the poem with these  words to maximize the happiness of Sayori.

Please note that each word can be used at most once!

Input

There are multiple test cases. The first line of input contains an integer  (about 100), indicating the number of test cases. For each test case:

The first line contains two integers  and  (), indicating the number of words and the length of the poem.

For the following  lines, the -th line contains a string consisting of lowercased English letters  () and an integer  (), indicating the -th word and Sayori's preference to this word. It's guaranteed that  for all .

Output

For each test case output one line containing an integer  and  strings  separated by one space, indicating the maximum possible happiness and the corresponding poem. If there are multiple poems which can achieve the maximum happiness, print the lexicographically smallest one.

Please, DO NOT output extra spaces at the end of each line, or your answer may be considered incorrect!

sequence of  strings  is lexicographically smaller than another sequence of  strings , if there exists a  () such that  for all  and  is lexicographically smaller than .

string  is lexicographically smaller than another string , if there exists a  () such that  for all  and , or  for all  and .

Sample Input

4
10 8
hello 0
world 0
behind 0
far 1
be 2
spring 10
can 15
comes 20
winter 25
if 200
5 5
collegiate 0
programming -5
zhejiang 10
provincial 5
contest -45
3 2
bcda 1
bcd 1
bbbbb 1
3 2
a 1
aa 1
aaa 1

Sample Output

2018 if winter comes can spring be far behind
15 zhejiang provincial collegiate programming contest
3 bbbbb bcd
3 a aa

Author: WENG, Caizhi
Source: The 15th Zhejiang Provincial Collegiate Programming Contest Sponsored by TuSimple

 

#include<string>
#include<iostream>
#include<algorithm>
#include<cstring>
#include<cstdio>
const int maxn = 100+2;
using namespace std;
typedef long long ll;
struct node{
    string S;
    long num;
    ll ans;
};
struct rule{
    bool operator() (const node&a,const node&b){
        if(a.num != b. num)
            return a.num  > b.num;
        else
            return a.S < b.S;
    }
};
int main()
{
    ll result;
    int t,n,m;
    scanf("%d",&t);
    while(t--){
        struct node nodes[maxn];
        result = 0;
        scanf("%d %d",&n,&m);
        for(int i = 1;i <= n;i++){
            cin >> nodes[i].S;
            cin>>nodes[i].num;
        }
        sort(nodes+1,nodes+n+1,rule());
        for(int i = 1;i<= m;i++){
            result += (m-i+1)*nodes[i].num;;
        }
        cout<<result;
        for(int i= 1;i<= m;i++){
            cout<<" "<<nodes[i].S;
        }
        cout<<endl;
    }
    return 0;
}

 

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