#include using namespace std; const long long MOD=1000000007; // const long long MOD=998244353; #define LOCAL #pragma region Macros typedef long long ll; typedef __int128_t i128; typedef unsigned int uint; typedef unsigned long long ull; #define ALL(x) (x).begin(),(x).end() const int INF=1e9; const long long IINF=1e18; const int dx[4]={1,0,-1,0},dy[4]={0,1,0,-1}; const char dir[4]={'D','R','U','L'}; template istream &operator>>(istream &is,vector &v){ for (T &x:v) is >> x; return is; } template ostream &operator<<(ostream &os,const vector &v){ for (int i=0;i ostream &operator<<(ostream &os,const pair &p){ os << '(' << p.first << ',' << p.second << ')'; return os; } template ostream&operator<<(ostream &os,const tuple &t){ os << '(' << get<0>(t) << ',' << get<1>(t) << ',' << get<2>(t) << ')'; return os; } template ostream&operator<<(ostream &os,const tuple &t){ os << '(' << get<0>(t) << ',' << get<1>(t) << ',' << get<2>(t) << ',' << get<3>(t) << ')'; return os; } template ostream &operator<<(ostream &os,const map &m){ os << '{'; for (auto itr=m.begin();itr!=m.end();){ os << '(' << itr->first << ',' << itr->second << ')'; if (++itr!=m.end()) os << ','; } os << '}'; return os; } template ostream &operator<<(ostream &os,const unordered_map &m){ os << '{'; for (auto itr=m.begin();itr!=m.end();){ os << '(' << itr->first << ',' << itr->second << ')'; if (++itr!=m.end()) os << ','; } os << '}'; return os; } template ostream &operator<<(ostream &os,const set &s){ os << '{'; for (auto itr=s.begin();itr!=s.end();){ os << *itr; if (++itr!=s.end()) os << ','; } os << '}'; return os; } template ostream &operator<<(ostream &os,const multiset &s){ os << '{'; for (auto itr=s.begin();itr!=s.end();){ os << *itr; if (++itr!=s.end()) os << ','; } os << '}'; return os; } template ostream &operator<<(ostream &os,const unordered_set &s){ os << '{'; for (auto itr=s.begin();itr!=s.end();){ os << *itr; if (++itr!=s.end()) os << ','; } os << '}'; return os; } template ostream &operator<<(ostream &os,const deque &v){ for (int i=0;i void debug_out(Head&& head,Tail&&... tail){ cerr << head; if (sizeof...(Tail)>0) cerr << ", "; debug_out(move(tail)...); } #ifdef LOCAL #define debug(...) cerr << " ";\ cerr << #__VA_ARGS__ << " :[" << __LINE__ << ":" << __FUNCTION__ << "]" << '\n';\ cerr << " ";\ debug_out(__VA_ARGS__) #else #define debug(...) 42 #endif template T gcd(T x,T y){return y!=0?gcd(y,x%y):x;} template T lcm(T x,T y){return x/gcd(x,y)*y;} template inline bool chmin(T1 &a,T2 b){ if (a>b){a=b; return true;} return false; } template inline bool chmax(T1 &a,T2 b){ if (a struct PrimalDual{ const E inf=numeric_limits::max(); struct edge{ int to,rev; T cap; E cost; edge(int to,T cap,E cost,int rev):to(to),cap(cap),cost(cost),rev(rev){} }; vector> G; vector> pos; vector h,dist; vector prevv,preve; PrimalDual(int n):G(n),h(n),dist(n),prevv(n),preve(n){} int add_edge(int from,int to,T cap,E cost){ pos.emplace_back(from,G[from].size()); G[from].emplace_back(to,cap,cost,G[to].size()); G[to].emplace_back(from,0,-cost,G[from].size()-1); return pos.size()-1; } tuple get_edge(int i){ auto e=G[pos[i].first][pos[i].second]; auto re=G[e.to][e.rev]; return {pos[i].first,e.to,e.cap+re.cap,re.cap,e.cost}; } vector> edges(){ vector> res; for (int i=0;irhs.c;} }; priority_queue

pq; fill(dist.begin(),dist.end(),inf); dist[s]=0; pq.emplace(dist[s],s); while(!pq.empty()){ auto p=pq.top(); pq.pop(); int v=p.v; if (dist[v]0&&dist[e.to]>dist[v]+e.cost+h[v]-h[e.to]){ dist[e.to]=dist[v]+e.cost+h[v]-h[e.to]; prevv[e.to]=v; preve[e.to]=i; pq.emplace(dist[e.to],e.to); } } } } vector> slope(int s,int t,T lim){ T f=0; E c=0,pre=-1; vector> res; res.emplace_back(f,c); while(f min_cost_max_flow(int s,int t){ return slope(s,t,numeric_limits::max()).back(); } vector> min_cost_slope(int s,int t){ return slope(s,t,numeric_limits::max()); } }; int main(){ cin.tie(0); ios::sync_with_stdio(false); int N,M; cin >> N >> M; PrimalDual PD(N); for (int i=0;i> u >> v >> c >> d; --u,--v; PD.add_edge(u,v,1,c); PD.add_edge(v,u,1,c); PD.add_edge(u,v,1,d); PD.add_edge(v,u,1,d); } cout << PD.min_cost_flow(0,N-1,2) << '\n'; }