結果
| 問題 |
No.1207 グラフX
|
| コンテスト | |
| ユーザー |
ntuda
|
| 提出日時 | 2025-08-01 23:21:23 |
| 言語 | PyPy3 (7.3.15) |
| 結果 |
RE
|
| 実行時間 | - |
| コード長 | 2,350 bytes |
| コンパイル時間 | 215 ms |
| コンパイル使用メモリ | 82,324 KB |
| 実行使用メモリ | 121,284 KB |
| 最終ジャッジ日時 | 2025-08-01 23:22:00 |
| 合計ジャッジ時間 | 30,924 ms |
|
ジャッジサーバーID (参考情報) |
judge4 / judge3 |
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| ファイルパターン | 結果 |
|---|---|
| sample | AC * 3 |
| other | AC * 41 RE * 5 |
ソースコード
import typing
class DSU:
'''
Implement (union by size) + (path halving)
Reference:
Zvi Galil and Giuseppe F. Italiano,
Data structures and algorithms for disjoint set union problems
'''
def __init__(self, n: int = 0) -> None:
self._n = n
self.parent_or_size = [-1] * n
def merge(self, a: int, b: int) -> int:
assert 0 <= a < self._n
assert 0 <= b < self._n
x = self.leader(a)
y = self.leader(b)
if x == y:
return x
if -self.parent_or_size[x] < -self.parent_or_size[y]:
x, y = y, x
self.parent_or_size[x] += self.parent_or_size[y]
self.parent_or_size[y] = x
return x
def same(self, a: int, b: int) -> bool:
assert 0 <= a < self._n
assert 0 <= b < self._n
return self.leader(a) == self.leader(b)
def leader(self, a: int) -> int:
assert 0 <= a < self._n
parent = self.parent_or_size[a]
while parent >= 0:
if self.parent_or_size[parent] < 0:
return parent
self.parent_or_size[a], a, parent = (
self.parent_or_size[parent],
self.parent_or_size[parent],
self.parent_or_size[self.parent_or_size[parent]]
)
return a
def size(self, a: int) -> int:
assert 0 <= a < self._n
return -self.parent_or_size[self.leader(a)]
def groups(self) -> typing.List[typing.List[int]]:
leader_buf = [self.leader(i) for i in range(self._n)]
result: typing.List[typing.List[int]] = [[] for _ in range(self._n)]
for i in range(self._n):
result[leader_buf[i]].append(i)
return list(filter(lambda r: r, result))
MOD = 10 ** 9 + 7
N,M,X = map(int,input().split())
E = [[] for _ in range(N)]
dsu = DSU(N)
ans = 0
for i in range(M):
x,y,z = map(int,input().split())
x -= 1
y -= 1
z = pow(X,z,MOD)
if dsu.same(x,y):
continue
else:
dsu.merge(x,y)
E[x].append((y,z))
E[y].append((x,z))
S = [0] * N
ans = 0
def dfs(x,p=-1):
global ans
tmp = 0
for y,z in E[x]:
if y != p:
dfs(y,x)
tmp += S[y]
ans += (S[y]) * (N- S[y]) * z
ans %= MOD
S[x] = tmp + 1
dfs(0)
print(ans)
ntuda