結果
問題 |
No.2328 Build Walls
|
ユーザー |
![]() |
提出日時 | 2025-06-12 20:21:54 |
言語 | PyPy3 (7.3.15) |
結果 |
MLE
|
実行時間 | - |
コード長 | 3,158 bytes |
コンパイル時間 | 168 ms |
コンパイル使用メモリ | 82,752 KB |
実行使用メモリ | 566,720 KB |
最終ジャッジ日時 | 2025-06-12 20:22:20 |
合計ジャッジ時間 | 6,051 ms |
ジャッジサーバーID (参考情報) |
judge5 / judge3 |
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ファイルパターン | 結果 |
---|---|
sample | AC * 3 |
other | AC * 10 MLE * 1 -- * 23 |
ソースコード
import sys from collections import deque class Edge: def __init__(self, to, rev, capacity): self.to = to self.rev = rev self.capacity = capacity class Dinic: def __init__(self, n): self.size = n self.graph = [[] for _ in range(n)] def add_edge(self, fr, to, cap): forward = Edge(to, len(self.graph[to]), cap) backward = Edge(fr, len(self.graph[fr]), 0) self.graph[fr].append(forward) self.graph[to].append(backward) def bfs_level(self, s, t, level): q = deque() level[:] = [-1] * self.size level[s] = 0 q.append(s) while q: v = q.popleft() for edge in self.graph[v]: if edge.capacity > 0 and level[edge.to] == -1: level[edge.to] = level[v] + 1 q.append(edge.to) if edge.to == t: return def dfs_flow(self, v, t, upTo, iter_, level): if v == t: return upTo for i in range(iter_[v], len(self.graph[v])): edge = self.graph[v][i] if edge.capacity > 0 and level[v] < level[edge.to]: d = self.dfs_flow(edge.to, t, min(upTo, edge.capacity), iter_, level) if d > 0: edge.capacity -= d self.graph[edge.to][edge.rev].capacity += d return d iter_[v] += 1 return 0 def max_flow(self, s, t): flow = 0 level = [-1] * self.size while True: self.bfs_level(s, t, level) if level[t] == -1: return flow iter_ = [0] * self.size while True: f = self.dfs_flow(s, t, 1 << 60, iter_, level) if f == 0: break flow += f return flow def main(): H, W = map(int, sys.stdin.readline().split()) A = [] for _ in range(H-2): row = list(map(int, sys.stdin.readline().split())) A.append(row) INF = 1 << 60 total_nodes = 2 + 2 * H * W dinic = Dinic(total_nodes) for i in range(1, H + 1): for j in range(1, W + 1): in_node = 2 + 2 * (i - 1) * W + 2 * (j - 1) out_node = in_node + 1 if 2 <= i <= H - 1: a = A[i - 2][j - 1] cap = a if a != -1 else INF else: cap = INF dinic.add_edge(in_node, out_node, cap) if i == 1: dinic.add_edge(0, in_node, INF) if i == H: dinic.add_edge(out_node, 1, INF) directions = [(-1, 0), (1, 0), (0, -1), (0, 1)] for di, dj in directions: ni = i + di nj = j + dj if 1 <= ni <= H and 1 <= nj <= W: adj_in = 2 + 2 * (ni - 1) * W + 2 * (nj - 1) dinic.add_edge(out_node, adj_in, INF) max_flow = dinic.max_flow(0, 1) if max_flow >= INF: print(-1) else: print(max_flow) if __name__ == "__main__": main()