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moocast.cpp
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#include <iostream>
#include <string>
#include <utility>
#include <sstream>
#include <algorithm>
#include <stack>
#include <vector>
#include <queue>
#include <map>
#include <set>
#include <bitset>
#include <cmath>
#include <cstring>
#include <iomanip>
#include <fstream>
#include <cassert>
#include <unordered_set>
using namespace std;
#define FOR(i, a, b) for (int i=a; i<(b); i++)
#define F0R(i, a) for (int i=0; i<(a); i++)
#define FORd(i,a,b) for (int i = (b)-1; i >= a; i--)
#define F0Rd(i,a) for (int i = (a)-1; i >= 0; i--)
#define SORT(vec) sort(vec.begin(), vec.end())
#define INF 1000000010
#define LL_INF 4500000000000000000
#define LSOne(S) (S & (-S))
#define EPS 1e-9
#define A first
#define B second
#define mp make_pair
#define pb push_back
#define PI acos(-1.0)
#define ll long long
typedef pair<int, int> ii;
typedef vector<int> vi;
typedef vector<ii> vii;
class UnionFind { // OOP style
private:
vi p, rank, setSize; // remember: vi is vector<int>
int numSets;
public:
UnionFind(int N) {
setSize.assign(N, 1); numSets = N; rank.assign(N, 0);
p.assign(N, 0); for (int i = 0; i < N; i++) p[i] = i; }
int findSet(int i) { return (p[i] == i) ? i : (p[i] = findSet(p[i])); }
bool isSameSet(int i, int j) { return findSet(i) == findSet(j); }
void unionSet(int i, int j) {
if (!isSameSet(i, j)) { numSets--;
int x = findSet(i), y = findSet(j);
// rank is used to keep the tree short
if (rank[x] > rank[y]) { p[y] = x; setSize[x] += setSize[y]; }
else { p[x] = y; setSize[y] += setSize[x];
if (rank[x] == rank[y]) rank[y]++; } } }
int numDisjointSets() { return numSets; }
int sizeOfSet(int i) { return setSize[findSet(i)]; }
};
int main() {
freopen("moocast.in", "r", stdin);
freopen("moocast.out", "w", stdout);
int n; cin >> n;
vector<pair<int, ii>> edges;
ii cows[n];
F0R(i, n) {
cin >> cows[i].A >> cows[i].B;
}
F0R(i, n) {
FOR(j, i+1, n) {
edges.push_back(mp((cows[i].A-cows[j].A)*(cows[i].A-cows[j].A)+(cows[i].B-cows[j].B)*(cows[i].B-cows[j].B), mp(i, j)));
}
}
SORT(edges);
UnionFind UF(n);
for (pair<int, ii> edge : edges) {
UF.unionSet(edge.B.A, edge.B.B);
if (UF.numDisjointSets() == 1) {
cout << edge.A << endl;
break;
}
}
return 0;
}