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#include <cstring> #include <cstdlib> #include <algorithm> #include <functional> #include <utility> #include <vector> #include <queue> const int maxn = 100005; using ll = long long; using R = double; std::vector<int> G[maxn]; void init_graph() { for(int i = 0; i < maxn; i ++) G[i].clear(); } void add_edge(int u, int v) { G[u].push_back(v); } void ins_edge(int u, int v) { add_edge(u, v); add_edge(v, u); }
const int maxno = maxn << 2; ll sumv[maxno], addv[maxno]; void maintain(int o) { sumv[o] = sumv[o << 1] + sumv[o << 1 | 1]; } void paint(int o, int L, int R, ll v) { sumv[o] += (ll(R - L + 1)) * v; addv[o] += v; } void pushdown(int o, int L, int R) { if(addv[o] != 0LL) { int M = (L + R) / 2; paint(o << 1, L, M, addv[o]); paint(o << 1 | 1, M + 1, R, addv[o]); addv[o] = 0; } } void ref_tree(int o, int L, int R) { addv[o] = sumv[o] = 0; if(L < R) { int M = (L + R) / 2; ref_tree(o << 1, L, M); ref_tree(o << 1 | 1, M + 1, R); } } ll query(int o, int L, int R, int ql, int qr) { if(ql <= L && R <= qr) { return sumv[o]; } else { int M = (L + R) / 2; ll ans = 0; pushdown(o, L, R); if(ql <= M) ans += query(o << 1, L, M, ql, qr); if(qr > M) ans += query(o << 1 | 1, M + 1, R, ql, qr); return ans; } } void update(int o, int L, int R, int ql, int qr, ll v) { if(ql <= L && R <= qr) { paint(o, L, R, v); } else { int M = (L + R) / 2; pushdown(o, L, R); if(ql <= M) update(o << 1, L, M, ql, qr, v); if(qr > M) update(o << 1 | 1, M + 1, R, ql, qr, v); maintain(o); } }
int dfn[maxn], siz[maxn]; struct { Node *fa, *ch[2]; int id, l; int d() { return (this == fa -> ch[1]); } void sc(Node *c, int dir) { ch[dir] = c; c -> fa = this; } void maintain() { if(ch[0] -> id) { l = ch[0] -> l; } else { l = id; } } }; Node pool[maxn]; Node *nil; void init_pool() { nil = pool; nil -> fa = nil -> ch[0] = nil -> ch[1] = nil; nil -> id = nil -> l = 0; } #define T(x) (pool + (x)) void refresh(Node *x, int id = 0) { x -> id = x -> l = id; x -> fa = x -> ch[0] = x -> ch[1] = nil; }
bool is_root(Node *x) { return (x -> fa == nil || (x -> fa -> ch[0] != x && x -> fa -> ch[1] != x)); } void zig(Node *x) { int d = x -> d(); Node *y = x -> fa; y -> sc(x -> ch[d ^ 1], d); y -> maintain(); if(is_root(y)) { x -> fa = y -> fa; } else { y -> fa -> sc(x, y -> d()); } x -> sc(y, 1 ^ d); x -> maintain(); } void splay(Node *x) { while(!is_root(x)) { Node *y = x -> fa; if(!is_root(y)) { if((x -> d()) ^ (y -> d())) { zig(x); } else { zig(y); } } zig(x); } }
int n; void add_tree(int x, ll v) { if(x == 0) return; int l = dfn[x], r = dfn[x] + siz[x] - 1; update(1, 1, n, l, r, v); } Node *get_root(Node *x) { while(x -> ch[0] != nil) { x = x -> ch[0]; } splay(x); return x; } Node *access(Node *x) { Node *v = x, *y = nil; while(x != nil) { splay(x); add_tree(x -> ch[1] -> l, 1); add_tree(y -> l, -1); x -> sc(y, 1); y = x; x = x -> fa; } splay(v); return v; } R query(int x) { int l = dfn[x], r = dfn[x] + siz[x] - 1; return (R)query(1, 1, n, l, r) / (R(siz[x])); }
int cnt; void dfs(int x, int fa = -1) { dfn[x] = ++ cnt; siz[x] = 1; refresh(T(x), x); for(int v : G[x]) { if(v != fa) { dfs(v, x); siz[x] += siz[v]; T(v) -> fa = T(x); add_tree(v, 1); } } }
int main() { init_pool(); int T; scanf("%d", &T); while(T --) { init_graph(); scanf("%d", &n); ref_tree(1, 1, n); for(int i = 1; i <= n - 1; i ++) { int u, v; scanf("%d%d", &u, &v); u ++; v ++; ins_edge(u, v); } cnt = 0; dfs(1); int Q; scanf("%d", &Q); while(Q --) { char op[5]; int u; scanf("%s%d", op, &u); u ++; if(op[0] == 'O') { access(T(u)); } else { printf("%.10lfn", query(u)); fflush(stdout); } } } return 0; }
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