Codeforces652C

本文介绍了一种通过将点对映射为区间并采用特定策略选择区间来解决区间覆盖问题的方法。通过选择左端点相同的区间中右端点更靠左的区间,可以有效地减少冗余,最终遍历所有区间得出最优解。

把点对映射成相应的区间,如果有相同左端点的区间就选择右端点靠左的,因为右端点靠右的区间实际上对于答案已经没有贡献了,然后再把区间从头到尾扫一遍即可
代码:

#include<iostream>
#include<cstdio>
using namespace std;
const int maxn=300005;
int a[maxn],t[maxn],tag[maxn];
int r[maxn];
int n,m;
int main()
{
    //freopen("in.txt","r",stdin);
    scanf("%d%d",&n,&m);
    for(int i=1;i<=n;i++)
    {
        scanf("%d",&a[i]);
        t[a[i]]=i;
        r[i]=n+1;
    }
    for(int i=1;i<=m;i++)
    {
        int x,y;
        scanf("%d%d",&x,&y);
        x=t[x],y=t[y];
        int minn=min(x,y);
        r[minn]=min(r[minn],max(x,y));
    }
    int e=1;
    long long ans=0;
    for(int i=1;i<=n;i++)
    {
        while(e<=n&&tag[e]==0) tag[r[e++]]++;
        ans+=e-i;
        tag[r[i]]--;
    }
    printf("%lld",ans);
    return 0;
}
### Codeforces Problem 1332C Explanation The provided references pertain specifically to problem 742B on Codeforces rather than problem 1332C. For an accurate understanding and solution approach for problem 1332C, it&#39;s essential to refer directly to its description and constraints. However, based on general knowledge regarding competitive programming problems found on platforms like Codeforces: Problem 1332C typically involves algorithmic challenges that require efficient data structures or algorithms such as dynamic programming, graph theory, greedy algorithms, etc., depending upon the specific nature of the task described within this particular question[^6]. To provide a detailed explanation or demonstration concerning **Codeforces problem 1332C**, one would need direct access to the exact statement associated with this challenge since different tasks demand tailored strategies addressing their unique requirements. For obtaining precise details about problem 1332C including any sample inputs/outputs along with explanations or solutions, visiting the official Codeforces website and navigating to contest number 1332 followed by examining section C is recommended. ```python # Example pseudo-code structure often seen in solving competitive coding questions. def solve_problem_1332C(input_data): # Placeholder function body; actual logic depends heavily on the specifics of problem 1332C. processed_result = process_input(input_data) final_answer = compute_solution(processed_result) return final_answer input_example = "Example Input" print(solve_problem_1332C(input_example)) ```
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