Submission #339105

#TimeUsernameProblemLanguageResultExecution timeMemory
339105bigDuckRace (IOI11_race)C++14
9 / 100
1068 ms23916 KiB
#include "race.h" #include<bits/stdc++.h> using namespace std; #define INIT ios_base :: sync_with_stdio(false); cin.tie(NULL); cout.tie(NULL);mt19937 rng(chrono::steady_clock::now().time_since_epoch().count()); #define mp make_pair #define pb push_back #define ft first #define sc second #define ll long long #define pii pair<int, int> #define count_bits __builtin_popcount int n, k; vector<pii> g[200010]; bool v[200010]; int mn[200010][101]; int res=1e9; void subtask_3(int s){ v[s]=true; mn[s][0]=1; for(auto pr:g[s]){ int u=pr.ft, d=pr.sc; if(!v[u]){ subtask_3(u); for(int sum=0; (sum+d)<=( k ); sum++){ if( (mn[s][k-(sum+d) ]>0) && (mn[u][sum]>0) ){ res=min(res, mn[s][k-(sum+d)]+mn[u][sum]); } } for(int sum=0; ( (sum+d)<=k ); sum++){ if( (mn[u][sum]>0) ){ if(mn[s][sum+d]==0){ mn[s][sum+d]=mn[u][sum]+1; } else{ mn[s][sum+d]=min(mn[s][sum+d], mn[u][sum]+1); } } } } } if(mn[s][k]>0){ res=min(res, mn[s][k]); } v[s]=false; return; } int subtask_2(int s, int l, int h){ int res=1e9; if(l>k){ v[s]=false; return res; } if(l==k){ v[s]=false; return h; } v[s]=true; for(pii pr:g[s]){ int u=pr.ft, d=pr.sc; if(!v[u]){ res=min(subtask_2(u, l+d, h+1), res); } } v[s]=false; return res; } map<pii, int> h; int sz[200010]; void build_sz(int s){ v[s]=true; sz[s]=1; for(pii u:g[s]){ if(!v[u.ft]){ build_sz(u.ft); sz[s]+=sz[u.ft]; } } v[s]=false; return; } pii find_centroids(int s, int total){ v[s]=true; int mx=0, u; for(pii node:g[s]){ if(sz[node.ft]>mx){ mx=sz[node.ft]; u=node.ft; } } pii res; if(!v[u]){ res=find_centroids(u, total);} else{ res={s, u}; } v[s]=false; return res; } int path(int s, int l, int h){ int res=1e9; if(l>k){ v[s]=false; return res; } if(l==k){ v[s]=false; return h; } v[s]=true; for(pii pr:g[s]){ int u=pr.ft, d=pr.sc; if(!v[u]){ res=min(path(u, l+d, h+1), res); } } v[s]=false; return res; } void remove_edge(pii e){ int u=e.ft, v=e.sc; int d=h[{u, v}]; g[u].erase(find(g[u].begin(), g[u].end(),mp(v, d) )); g[v].erase(find(g[v].begin(), g[v].end(),mp(u, d) )); } void subtask_4(){ queue<int> forest; forest.push(1); while(!forest.empty()){ int node=forest.front(); forest.pop(); build_sz(node); //cout<<node<<"\n"<<flush; if(sz[node]==1){continue;} pii e=find_centroids(node, sz[node]); //cout<<e.ft<<" "<<e.sc<<"\n"<<flush; res=min(path(e.ft, 0, 1), res); res=min(path(e.sc, 0, 1), res); remove_edge(e); forest.push(e.ft); forest.push(e.sc); } } int best_path(int N, int K, int H[][2], int L[]) { n=N; k=K; for(int i=0; i<(n-1); i++){ int u=H[i][0]+1, v=H[i][1]+1, d=L[i]; g[u].pb({v, d}); g[v].pb({u, d}); h[{u, v} ]=d; h[{v, u} ]=d; } /*if( (k<=100) ){ subtask_3(1);} else{ if(n<=1000){ for(int i=1; i<=n; i++){ res=min(res, subtask_2(i, 0, 1)); } } else{ subtask_4(); } }*/ subtask_4(); if(res==(1e9)){ return -1; } return res-1; }

Compilation message (stderr)

race.cpp: In function 'std::pair<int, int> find_centroids(int, int)':
race.cpp:121:12: warning: 'u' may be used uninitialized in this function [-Wmaybe-uninitialized]
  121 |     if(!v[u]){ res=find_centroids(u, total);}
      |         ~~~^
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