Submission #839175

#TimeUsernameProblemLanguageResultExecution timeMemory
839175asdfgraceTropical Garden (IOI11_garden)C++17
0 / 100
1 ms596 KiB
#include <bits/stdc++.h> #include "garden.h" #include "gardenlib.h" using namespace std; void count_routes(int N, int M, int P, int R[][2], int Q, int G[]) { const int INF = (int) 1e9; vector<vector<int>> edges(N); for (int i = 0; i < M; ++i) { edges[R[i][0]].push_back(R[i][1]); edges[R[i][1]].push_back(R[i][0]); } vector<int> next(2 * N, -1); for (int i = 0; i < N; ++i) { int x = edges[i][0]; next[2 * i] = (i == edges[x][0] ? 2 * x + 1 : 2 * x); x = ((int) edges[i].size() == 1 ? edges[i][0] : edges[i][1]); next[2 * i + 1] = (i == edges[x][0] ? 2 * x + 1 : 2 * x); } vector<vector<int>> pred(2 * N); for (int i = 0; i < 2 * N; ++i) { pred[next[i]].push_back(i); } vector<bool> visited(2 * N, false), active(2 * N, false); vector<int> st, cyc_sz(2 * N, 0), cyc_dist(2 * N, INF), elem(2 * N, -1), cyc_root(2 * N, -1), cyc_id(2 * N, -1); int cycles = -1; function<void(int)> dfs = [&](int node) { if (active[node]) { ++cycles; int sz = (int) st.size(); for (int i = 0; i < sz; ++i) { cyc_id[st[i]] = sz - 1 - i; cyc_sz[st[i]] = sz; cyc_dist[st[i]] = 0; cyc_root[st[i]] = st[i]; elem[st[i]] = cycles; } return; } visited[node] = true; active[node] = true; st.push_back(node); for (auto x : pred[node]) { dfs(x); } active[node] = false; st.pop_back(); }; function<void(int, int)> tree_dfs = [&](int node, int root) -> void { for (auto x : pred[node]) { cyc_dist[x] = cyc_dist[node] + 1; cyc_root[x] = root; elem[x] = elem[root]; tree_dfs(x, root); } }; for (int i = 0; i < N; ++i) { if (!visited[2 * i]) { dfs(2 * i); } } for (int i = 0; i < 2 * N; ++i) { if (cyc_dist[i] == INF && cyc_dist[next[i]] == 0) { cyc_dist[i] = 1; cyc_root[i] = i; elem[i] = elem[next[i]]; tree_dfs(i, i); } } for (int j = 0; j < Q; ++j) { int k = G[j], cnt = 0; for (int i = 0; i < N; ++i) { for (int p = 2 * P; p <= 2 * P + 1; ++p) { int node = 2 * i, dist = 0; if (elem[node] != elem[p]) continue; if (cyc_dist[node] != 0 && cyc_dist[p] <= cyc_dist[node] && cyc_root[p] == cyc_root[node]) { dist = cyc_dist[node] - cyc_dist[p]; if (dist == k) { ++cnt; } continue; } else if (cyc_dist[node] != 0 && (cyc_dist[p] > cyc_dist[node] || cyc_root[p] != cyc_root[node])) { continue; } else if (cyc_dist[node] != 0) { dist += cyc_dist[node]; node = next[cyc_root[node]]; } dist += (cyc_id[p] > cyc_id[node] ? cyc_id[p] - cyc_id[node] : cyc_sz[node] - cyc_id[node] + cyc_id[p]); if (dist >= k && dist % cyc_sz[node] == k % cyc_sz[node]) { ++cnt; } } } answer(cnt); } }
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