This documentation is automatically generated by competitive-verifier/competitive-verifier
#include "src/tree/hld.hpp"#pragma once
#include "../template.hpp"
struct HLD {
vector<vector<int>> G;
int N,T;
vector<int> par,sub,order,head,dep;
HLD(vector<vector<int>> G_,int root=0):G(G_),N(si(G)),T(0),par(N),sub(N),order(N),head(N),dep(N){
dep[root]=0;
dfs_hld(root,root);
head[root]=root;
dfs2(root);
}
void dfs_hld(int v,int p){
par[v]=p;
sub[v]=1;
if(auto it=find(all(G[v]),p);it!=G[v].end()) G[v].erase(it);
for(auto &e: G[v]){
dep[e]=dep[v]+1;
dfs_hld(e,v);
sub[v]+=sub[e];
if(sub[e]>sub[G[v][0]]) swap(e,G[v][0]);
}
}
void dfs2(int v){
order[v]=T++;
for(auto& e: G[v]){
head[e]=(G[v][0]==e?head[v]:e);
dfs2(e);
}
}
int lca(int u,int v){
while(head[u]!=head[v]){
if(order[u]<order[v]) swap(u,v);
u=par[head[u]];
}
return (order[u]<order[v]?u:v);
}
vector<pair<int,int>> path_decompose(int u,int v,bool edge=1){
vector<pair<int,int>> ret;
while(head[u]!=head[v]){
if(order[u]<order[v]) swap(u,v);
ret.push_back({order[head[u]],order[u]+1});
u=par[head[u]];
}
if(order[u]>order[v]) swap(u,v);
ret.push_back({order[u],order[v]+(!edge)});
return ret;
}
vector<pair<int,int>> up_decompose(int u,int l){
vector<pair<int,int>> ret;
while(head[u]!=head[l]){
ret.emplace_back(order[head[u]],order[u]+1);
u=par[head[u]];
}
if(u!=l) ret.emplace_back(order[l]+1,order[u]+1);
return ret;
}
};
#line 2 "src/template.hpp"
#include <bits/stdc++.h>
using namespace std;
#define si(a) (long)a.size()
#define fi first
#define se second
#define all(x) x.begin(),x.end()
#define rep(i,n) for(int i=0;i<(int)(n);++i)
template<typename S,typename F> bool chmin(S&a,F b){return b<a?(a=b,1):0;}
template<typename S,typename F> bool chmax(S&a,F b){return b>a?(a=b,1):0;}
bool _=(ios::sync_with_stdio(0),cin.tie(0),cout<<fixed<<setprecision(16),0);
#line 3 "src/tree/hld.hpp"
struct HLD {
vector<vector<int>> G;
int N,T;
vector<int> par,sub,order,head,dep;
HLD(vector<vector<int>> G_,int root=0):G(G_),N(si(G)),T(0),par(N),sub(N),order(N),head(N),dep(N){
dep[root]=0;
dfs_hld(root,root);
head[root]=root;
dfs2(root);
}
void dfs_hld(int v,int p){
par[v]=p;
sub[v]=1;
if(auto it=find(all(G[v]),p);it!=G[v].end()) G[v].erase(it);
for(auto &e: G[v]){
dep[e]=dep[v]+1;
dfs_hld(e,v);
sub[v]+=sub[e];
if(sub[e]>sub[G[v][0]]) swap(e,G[v][0]);
}
}
void dfs2(int v){
order[v]=T++;
for(auto& e: G[v]){
head[e]=(G[v][0]==e?head[v]:e);
dfs2(e);
}
}
int lca(int u,int v){
while(head[u]!=head[v]){
if(order[u]<order[v]) swap(u,v);
u=par[head[u]];
}
return (order[u]<order[v]?u:v);
}
vector<pair<int,int>> path_decompose(int u,int v,bool edge=1){
vector<pair<int,int>> ret;
while(head[u]!=head[v]){
if(order[u]<order[v]) swap(u,v);
ret.push_back({order[head[u]],order[u]+1});
u=par[head[u]];
}
if(order[u]>order[v]) swap(u,v);
ret.push_back({order[u],order[v]+(!edge)});
return ret;
}
vector<pair<int,int>> up_decompose(int u,int l){
vector<pair<int,int>> ret;
while(head[u]!=head[l]){
ret.emplace_back(order[head[u]],order[u]+1);
u=par[head[u]];
}
if(u!=l) ret.emplace_back(order[l]+1,order[u]+1);
return ret;
}
};