結果
問題 | No.241 出席番号(1) |
ユーザー |
|
提出日時 | 2022-02-24 12:12:52 |
言語 | PyPy3 (7.3.15) |
結果 |
WA
|
実行時間 | - |
コード長 | 2,859 bytes |
コンパイル時間 | 129 ms |
コンパイル使用メモリ | 82,116 KB |
実行使用メモリ | 74,624 KB |
最終ジャッジ日時 | 2024-07-02 11:22:08 |
合計ジャッジ時間 | 3,219 ms |
ジャッジサーバーID (参考情報) |
judge3 / judge5 |
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ファイルパターン | 結果 |
---|---|
sample | AC * 3 |
other | AC * 26 WA * 3 |
ソースコード
#Dinic法で最大流を求める#deque のimport が必要#逆辺追加しなきゃいけないから、#グラフの構成はadd_edgeで行う#最大流は flow メソッドでfrom collections import dequeclass Dinic:def __init__(self,N):self.N = Nself.G = [[] for _ in range(N)]self.level = Noneself.progress = Nonedef add_edge(self,fr,to,cap):forward = [to,cap,None]forward[2] = backward = [fr,0,forward]self.G[fr].append(forward)self.G[to].append(backward)def add_multi_edge(self,v1,v2,cap1,cap2):edge1 = [v2,cap1,None]edge1[2] = edge2 = [v1,cap2,edge1]self.G[v1].append(edge1)self.G[v2].append(edge2)def bfs(self,s,t):self.level = level = [None] * self.Nq = deque([s])level[s] = 0G = self.Gwhile q:v = q.popleft()lv = level[v] + 1for w,cap,_ in G[v]:if cap and level[w] is None:level[w] = lvq.append(w)return level[t] is not Nonedef dfs(self,v,t,f):if v == t:return flevel = self.levelGv = self.G[v]for i in range(self.progress[v],len(Gv)):self.progress[v] = iw,cap,rev = e = Gv[i]if cap and level[v] < level[w]:d = self.dfs(w,t,min(f,cap))if d:e[1] -= drev[1] += dreturn dreturn 0def flow(self,s,t,):flow = 0inf = 1 << 30G = self.Gwhile self.bfs(s,t):self.progress = [0] * self.Nf = infwhile f:f = self.dfs(s,t,inf)flow += freturn flowdef min_cut(self,s):#最小カットを実現する頂点の分割を与える#True なら source側#False なら sink側visited = [False for i in range(self.N)]q = deque([s])while q:now = q.popleft()visited[now] = Truefor to,cap,_ in self.G[now]:if cap and not visited[to]:visited[to] = Trueq.append(to)return visitedN = int(input())import sysif N == 1:print(-1)exit()dinic = Dinic(N + N + 2)T = N + N + 1for i in range(N):a = int(input())for j in range(N):if j == a:continuedinic.add_edge(i+1,j+1+N,1)for i in range(N):dinic.add_edge(0,i+1,1)for j in range(N):dinic.add_edge(j+1+N,T,1)a = dinic.flow(0,T)if a < N:print(-1)exit()for i in range(N):for to,cap,rev in dinic.G[i+1]:if N < to < T and cap == 0:print(to - N - 1)break