#include #include using namespace std; using namespace atcoder; #define rep2(i, m, n) for (int i = (m); i < (n); ++i) #define rep(i, n) rep2(i, 0, n) #define drep2(i, m, n) for (int i = (m)-1; i >= (n); --i) #define drep(i, n) drep2(i, n, 0) #define all(...) std::begin(__VA_ARGS__), std::end(__VA_ARGS__) #define rall(...) std::rbegin(__VA_ARGS__), std::rend(__VA_ARGS__) #define FOR(i, a, b) for (int i = (a), i##_len = (b); i <= i##_len; ++i) #define REV(i, a, b) for (int i = (a); i >= (b); --i) #define CLR(a, b) memset((a), (b), sizeof(a)) #define DUMP(x) cout << #x << " = " << (x) << endl; #define INF 1001001001001001001ll #define inf (int)1001001000 #define MOD 998244353 #define MOD1 1000000007 #define PI 3.14159265358979 #define Dval 1e-12 #define fcout cout << fixed << setprecision(12) #define Mp make_pair #define pb push_back #define fi first #define se second #define SORT(x) sort(x.begin(),x.end()) #define ERASE(x) x.erase(unique(x.begin(),x.end()),x.end()) #define POSL(x,v) (lower_bound(x.begin(),x.end(),v)-x.begin()) #define POSU(x,v) (upper_bound(x.begin(),x.end(),v)-x.begin()) using ll = long long; using ld = long double; using vi = vector; using vl = vector; using vs = vector; using vd = vector; using vld = vector; using vc = vector; using vb = vector; using vpii = vector>; using vpil = vector>; using vpll = vector>; using vvi = vector>; using vvl = vector>; using vvd = vector>; using vvld = vector>; using vvc = vector>; using vvb = vector>; using vvpii = vector>>; using vvpll = vector>>; using vvvi = vector>>; using vvvl = vector>>; using pii = pair; using pll = pair; using LL = __int128_t; template T dgt(T b, T n){ T cnt=0; while(n){ cnt++; n/=b;} return cnt;} ll gcd(ll x, ll y) { if (x == 0) return y; return gcd(y%x, x);} ll lcm(ll x, ll y) { __int128_t xx,yy; xx=x; yy=y; __int128_t ans=xx * yy / gcd(x, y); ll ans2=ans; return ans; } template T POW(T x, ll n){T ret=1; while(n>0){ if(n&1) ret=ret*x; x=x*x; n>>=1; } return ret;} template T modpow(T a, ll n, T p) { if(n==0) return (T)1; if (n == 1) return a % p; if (n % 2 == 1) return (a * modpow(a, n - 1, p)) % p; T t = modpow(a, n / 2, p); return (t * t) % p;} template T modinv(T a, T m) { if(m==0)return (T)1; T b = m, u = 1, v = 0; while (b) { T t = a / b; a -= t * b; swap(a, b); u -= t * v; swap(u, v); } u %= m; if (u < 0) u += m; return u;} template T REM(T a, T b){ return (a % b + b) % b;} template T QUO(T a, T b){ return (a - REM(a, b)) / b;} const int MAXCOMB=510000; ll MODCOMB = 998244353; ll fac[MAXCOMB], finv[MAXCOMB], inv[MAXCOMB]; void COMinit() { fac[0] = fac[1] = 1; finv[0] = finv[1] = 1; inv[1] = 1; for (int i = 2; i < MAXCOMB; i++) { fac[i] = fac[i - 1] * i % MODCOMB; inv[i] = MODCOMB - inv[MODCOMB%i] * (MODCOMB / i) % MODCOMB; finv[i] = finv[i - 1] * inv[i] % MODCOMB; }} ll COM(ll n, ll k) { if (n < k) return 0; if (n < 0 || k < 0) return 0; return fac[n] * (finv[k] * finv[n - k] % MODCOMB) % MODCOMB;} ll com(ll n,ll m){ if(n inline bool chmax(T &a, T b) { return ((a < b) ? (a = b, true) : (false));} template inline bool chmin(T &a, T b) { return ((a > b) ? (a = b, true) : (false));} template T BS(vector &vec, T key) { auto itr = lower_bound(vec.begin(), vec.end(), key); return distance(vec.begin(), itr); } template pair RangeBS(vector &vec, T lowv, T highv){auto itr_l = lower_bound(vec.begin(), vec.end(), lowv); auto itr_r = upper_bound(vec.begin(), vec.end(), highv); return make_pair(distance(vec.begin(), itr_l), distance(vec.begin(), itr_r)-1);} void fail() { cout << "-1\n"; exit(0); } void no() { cout << "No\n"; exit(0); } void yes() { cout << "Yes\n"; exit(0); } template void er(T a) { cout << a << '\n'; exit(0); } int dx[] = { 1,0,-1,0,1,1,-1,-1,0 }; int dy[] = { 0,1,0,-1,1,-1,1,-1,0 }; bool range_in(int i, int j, int h, int w){ if(i<0 || j<0 || i>=h || j>=w) return false; return true;} int bitcount(int n){n=(n&0x55555555)+(n>>1&0x55555555); n=(n&0x33333333)+(n>>2&0x33333333); n=(n&0x0f0f0f0f)+(n>>4&0x0f0f0f0f); n=(n&0x00ff00ff)+(n>>8&0x00ff00ff); n=(n&0x0000ffff)+(n>>16&0x0000ffff); return n;} void solve(int &FIN){ int h,w; cin>>h>>w; vvl cost(h,vl(w)); rep(i,h){ rep(j,w){ cin>>cost[i][j]; } } vl gh(h); vl gw(w); ll ans=0; rep(i,h){ cin>>gh[i]; ans+=gh[i]; } rep(i,w){ cin>>gw[i]; ans+=gw[i]; } mf_graph G(h+w+2); rep(i,h){ ll val=0; rep(j,w){ val+=cost[i][j]; } G.add_edge(h+w,i,val); G.add_edge(i,h+w+1,gh[i]); } rep(j,w){ G.add_edge(h+j,h+w+1,gw[j]); } rep(i,h){ rep(j,w){ G.add_edge(i,h+j,cost[i][j]); } } ll f=G.flow(h+w,h+w+1); cout<