#include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include using namespace std; //#define int long long typedef long long ll; typedef unsigned long long ul; typedef unsigned int ui; constexpr ll mod = 1000000009; const ll INF = mod * mod; typedef pairP; #define stop char nyaa;cin>>nyaa; #define rep(i,n) for(int i=0;i=0;i--) #define Rep(i,sta,n) for(int i=sta;i=1;i--) #define Rep1(i,sta,n) for(int i=sta;i<=n;i++) #define all(v) (v).begin(),(v).end() typedef pair LP; typedef double ld; typedef pair LDP; const ld eps = 1e-12; const ld pi = acos(-1.0); ll mod_pow(ll x, ll n, ll m = mod) { ll res = 1; while (n) { if (n & 1)res = res * x % m; x = x * x % m; n >>= 1; } return res; } struct modint { ll n; modint() :n(0) { ; } modint(ll m) :n(m) { if (n >= mod)n %= mod; else if (n < 0)n = (n % mod + mod) % mod; } operator int() { return n; } }; bool operator==(modint a, modint b) { return a.n == b.n; } modint operator+=(modint& a, modint b) { a.n += b.n; if (a.n >= mod)a.n -= mod; return a; } modint operator-=(modint& a, modint b) { a.n -= b.n; if (a.n < 0)a.n += mod; return a; } modint operator*=(modint& a, modint b) { a.n = ((ll)a.n * b.n) % mod; return a; } modint operator+(modint a, modint b) { return a += b; } modint operator-(modint a, modint b) { return a -= b; } modint operator*(modint a, modint b) { return a *= b; } modint operator^(modint a, ll n) { if (n == 0)return modint(1); modint res = (a * a) ^ (n / 2); if (n % 2)res = res * a; return res; } ll inv(ll a, ll p) { return (a == 1 ? 1 : (1 - p * inv(p % a, a)) / a + p); } modint operator/(modint a, modint b) { return a * modint(inv(b, mod)); } ll gcd(ll a, ll b) { if (a < b)swap(a, b); while (b) { ll r = a % b; a = b; b = r; } return a; } int max_n; const int mn = 100000; struct edge { int to, cap; ll cost; int rev; }; vector G[mn]; P par[mn]; ll dist[mn]; void add_edge(int from, int to, int cap, ll cost) { G[from].push_back({ to,cap,cost,(int)G[to].size() }); G[to].push_back({ from,0,-cost,(int)G[from].size() - 1 }); max_n = max({ max_n, from + 1, to + 1 }); } void add_edge2(int from, int to, int cap, ll cost) { G[from].push_back({ to,cap,cost,-1 }); //G[to].push_back({ from,0,-cost,(int)G[from].size() - 1 }); max_n = max({ max_n, from + 1, to + 1 }); } LP minimum_road(int s, int t) { fill(par, par + max_n, P{ -1,-1 }); fill(dist, dist + max_n, INF); dist[s] = 0; priority_queue, greater> q; q.push({ 0,s }); while (!q.empty()) { LP p = q.top(); q.pop(); int id = p.second; if (id == t)continue; if (p.first > dist[id])continue; rep(j, G[id].size()) { if (G[id][j].cap > 0) { int to = G[id][j].to; ll nd = p.first + G[id][j].cost; if (nd < dist[to]) { dist[to] = nd; par[to] = { id,j }; q.push({ dist[to],to }); } } } } int cur = t; int f = mod; while (cur != s) { int p = par[cur].first, j = par[cur].second; if (p < 0)return { -1,-1 }; f = min(f, G[p][j].cap); cur = p; } cur = t; while (cur != s) { int p = par[cur].first, j = par[cur].second; if (p < 0)return { -1,-1 }; G[p][j].cap -= f; if (G[p][j].rev >= 0) { G[cur][G[p][j].rev].cap += f; } cur = p; } return { dist[t],f }; } ll minimum_cost_flow(int s, int t, int k) { ll ret = 0; rep(i, k) { LP z = minimum_road(s, t); if (z.first < 0)return -1; if (k - i <= z.second) { ret += z.first * (k - i); break; } i += z.second - 1; ret += z.first * z.second; } return ret; } void solve() { int n; cin >> n; vector a, b; int d1, d2; int sz; cin >> sz; d1 = (n+sz-1) / sz; rep(i, sz) { int x; cin >> x; a.push_back(x); } cin >> sz; d2 = (n+sz-1) / sz; rep(i, sz) { int x; cin >> x; b.push_back(x); } int s = 200,t = 201; rep(i, d1) { int le = a.size() * i, ri = a.size() * (i + 1); int l = le / b.size(); int r = (ri - 1) / b.size(); rep(j, a.size()) { for (int k = l * b.size(); k < (r + 1) * b.size(); k++) { int cost = 1; if (a[j] > b[k % b.size()])cost = 0; add_edge(j + le, 100 + k, 1, cost); } } } int r = n - (a.size() * (d1 - 1)); int s2 = 202; rep(i, a.size()*(d1-1)) { add_edge(s, i, 1, 0); } add_edge(s, s2, r, 0); rep(i, a.size()) { add_edge(s2, a.size() * (d1 - 1) + i, 1, 0); } r = n - (b.size() * (d2 - 1)); int t2 = 203; rep(i, b.size()*(d2-1)) { add_edge(100 + i, t, 1, 0); } add_edge(t2, t, r, 0); rep(i, b.size()) { add_edge(100 + b.size() * (d2 - 1) + i, t2,1, 0); } int f = minimum_cost_flow(s, t, n); //cout << a.size() * d1 << " " << b.size() * d2 << "\n"; //cout << "? " << f << "\n"; cout << n - f << "\n"; } signed main() { ios::sync_with_stdio(false); cin.tie(0); //cout << fixed << setprecision(10); //init_f(); //init(); //expr(); //int t; cin >> t; rep(i, t) solve(); return 0; }