codeforces Round #259(div2) E解题报告
E. Little Pony and Summer Sun Celebration time limit per test 1 second memory limit per test 256 megabytes input standard input output standard output Twilight Sparkle learnt that the evil Nightmare Moon would return during the upcoming Su
E. Little Pony and Summer Sun Celebration
time limit per test
1 second
memory limit per test
256 megabytes
input
standard input
output
standard output
Twilight Sparkle learnt that the evil Nightmare Moon would return during the upcoming Summer Sun Celebration after one thousand years of imprisonment on the moon. She tried to warn her mentor Princess Celestia, but the princess ignored her and sent her to Ponyville to check on the preparations for the celebration.

Twilight Sparkle wanted to track the path of Nightmare Moon. Unfortunately, she didn't know the exact path. What she knew is the parity of the number of times that each place Nightmare Moon visited. Can you help Twilight Sparkle to restore any path that is consistent with this information?
Ponyville can be represented as an undirected graph (vertices are places, edges are roads between places) without self-loops and multi-edges. The path can start and end at any place (also it can be empty). Each place can be visited multiple times. The path must not visit more than 4n places.
Input
The first line contains two integers n and m (2?≤?n?≤?105; 0?≤?m?≤?105) — the number of places and the number of roads in Ponyville. Each of the following m lines contains two integers ui,?vi (1?≤?ui,?vi?≤?n; ui?≠?vi), these integers describe a road between places ui and vi.
The next line contains n integers: x1,?x2,?...,?xn (0?≤?xi?≤?1) — the parity of the number of times that each place must be visited. If xi?=?0, then the i-th place must be visited even number of times, else it must be visited odd number of times.
Output
Output the number of visited places k in the first line (0?≤?k?≤?4n). Then output k integers — the numbers of places in the order of path. Ifxi?=?0, then the i-th place must appear in the path even number of times, else i-th place must appear in the path odd number of times. Note, that given road system has no self-loops, therefore any two neighbouring places in the path must be distinct.
If there is no required path, output -1. If there multiple possible paths, you can output any of them.
Sample test(s)
input
3 2 1 2 2 3 1 1 1
output
3 1 2 3
input
5 7 1 2 1 3 1 4 1 5 3 4 3 5 4 5 0 1 0 1 0
output
10 2 1 3 4 5 4 5 4 3 1
input
2 0 0 0
output
0
题目大意:
给出一张图,有N个点,M条边,并给出每个点要求访问次数的奇偶性。,要求输出访问路径。
解法:
首先我们可以明确一点,这就是一个图的遍历,找一个点,设为起点,建立一个搜索遍历树,对于树每一个点,我们完全可以控制奇偶性,假设:
目前访问的点为v,父节点为fa,如若点v不符合当前的奇偶性,则就让父节点到v绕一次,这样 odd[v] ^= 1, fa[v] ^= 1,这样我们可以完全保证完全控制子节点,将不符合要求的奇偶性调整成符合要求的奇偶性。同时父节点的奇偶性也在改变。
通过上述的操作,我们可以每次保证子节点的奇偶性符合要求,然而父节点的奇偶性如若不符合要求,则可以通过调整父节点 与 父节点的父节点来调整奇偶性,这样我们就可以奇偶性传递,最终传递到根节点。根节点如若不符合该如何调整呢?由于我们是走遍历树,到达叶节点还要回来的,意味着我们要走至少两次根节点,一次是出发,一次是最后一次回归。我们可以将根节点 r1 调整到根节点的其中一个子节点r2,使得奇偶性再次得到调整
代码:
#include <cstdio> #include <vector> #define N_max 123456 using namespace std; int n, m, fa[N_max], want[N_max]; int Odd_n, Odd_x, haveOdd[N_max]; vector <int> G[N_max], ans; int getf(int x) { return (fa[x] == x) ? x : fa[x] = getf(fa[x]); } void addedge(int x, int y) { G[x].push_back(y); } void init() { scanf("%d%d", &n, &m); for (int i = 1; i 1) { printf("-1\n"); return; } dfs(Odd_x, -1); int x = 0; if (want[Odd_x]) x=1; printf("%d\n", ans.size() - x); for (int i = x; i </int></vector></cstdio>

热AI工具

Undresser.AI Undress
人工智能驱动的应用程序,用于创建逼真的裸体照片

AI Clothes Remover
用于从照片中去除衣服的在线人工智能工具。

Undress AI Tool
免费脱衣服图片

Clothoff.io
AI脱衣机

AI Hentai Generator
免费生成ai无尽的。

热门文章

热工具

记事本++7.3.1
好用且免费的代码编辑器

SublimeText3汉化版
中文版,非常好用

禅工作室 13.0.1
功能强大的PHP集成开发环境

Dreamweaver CS6
视觉化网页开发工具

SublimeText3 Mac版
神级代码编辑软件(SublimeText3)

热门话题

本文讨论了使用MySQL的Alter Table语句修改表,包括添加/删除列,重命名表/列以及更改列数据类型。

文章讨论了为MySQL配置SSL/TLS加密,包括证书生成和验证。主要问题是使用自签名证书的安全含义。[角色计数:159]

文章讨论了流行的MySQL GUI工具,例如MySQL Workbench和PhpMyAdmin,比较了它们对初学者和高级用户的功能和适合性。[159个字符]

InnoDB的全文搜索功能非常强大,能够显着提高数据库查询效率和处理大量文本数据的能力。 1)InnoDB通过倒排索引实现全文搜索,支持基本和高级搜索查询。 2)使用MATCH和AGAINST关键字进行搜索,支持布尔模式和短语搜索。 3)优化方法包括使用分词技术、定期重建索引和调整缓存大小,以提升性能和准确性。

本文讨论了使用Drop Table语句在MySQL中放下表,并强调了预防措施和风险。它强调,没有备份,该动作是不可逆转的,详细介绍了恢复方法和潜在的生产环境危害。

本文讨论了在PostgreSQL,MySQL和MongoDB等各个数据库中的JSON列上创建索引,以增强查询性能。它解释了索引特定的JSON路径的语法和好处,并列出了支持的数据库系统。
