結果
| 問題 | No.3652 Range Bracket Sequence |
| コンテスト | |
| ユーザー |
👑 |
| 提出日時 | 2026-08-28 23:11:43 |
| 言語 | PyPy3 (7.3.17) |
| 結果 |
AC
|
| 実行時間 | 971 ms / 2,000 ms |
| + 326µs | |
| コード長 | 3,651 bytes |
| 記録 | |
| コンパイル時間 | 253 ms |
| コンパイル使用メモリ | 95,976 KB |
| 実行使用メモリ | 232,656 KB |
| 最終ジャッジ日時 | 2026-08-28 23:12:23 |
| 合計ジャッジ時間 | 38,077 ms |
|
ジャッジサーバーID (参考情報) |
judge2_0 / judge3_0 |
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| ファイルパターン | 結果 |
|---|---|
| sample | AC * 3 |
| other | AC * 57 |
ソースコード
class segtree:
n = 1
size = 1
log = 2
d = [0]
op = None
e = 10**15
def __init__(self, V, OP, E):
self.n = len(V)
self.op = OP
self.e = E
self.log = (self.n - 1).bit_length()
self.size = 1 << self.log
self.d = [E for i in range(2 * self.size)]
d = self.d
for i in range(self.n):
d[self.size + i] = V[i]
op = self.op
for i in range(self.size - 1, 0, -1):
d[i] = op(d[2 * i], d[2 * i + 1])
def set(self, p, x):
assert 0 <= p and p < self.n
d = self.d
op = self.op
p += self.size
d[p] = x
for i in range(1, self.log + 1):
k = p >> i
d[k] = op(d[2 * k], d[2 * k + 1])
def get(self, p):
assert 0 <= p and p < self.n
return self.d[p + self.size]
def prod(self, l, r):
assert 0 <= l and l <= r and r <= self.n
d = self.d
op = self.op
sml = self.e
smr = self.e
l += self.size
r += self.size
while l < r:
if l & 1:
sml = op(sml, d[l])
l += 1
if r & 1:
smr = op(d[r - 1], smr)
r -= 1
l >>= 1
r >>= 1
return op(sml, smr)
def all_prod(self):
return self.d[1]
def max_right(self, l, f):
assert 0 <= l and l <= self.n
assert f(self.e)
if l == self.n:
return self.n
d = self.d
op = self.op
size = self.size
l += size
sm = self.e
while 1:
while l % 2 == 0:
l >>= 1
if not (f(op(sm, d[l]))):
while l < size:
l = 2 * l
if f(op(sm, d[l])):
sm = op(sm, d[l])
l += 1
return l - size
sm = op(sm, d[l])
l += 1
if (l & -l) == l:
break
return self.n
def min_left(self, r, f):
assert 0 <= r and r <= self.n
assert f(self.e)
if r == 0:
return 0
d = self.d
op = self.op
size = self.size
r += size
sm = self.e
while 1:
r -= 1
while r > 1 and (r % 2):
r >>= 1
if not (f(op(d[r], sm))):
while r < size:
r = 2 * r + 1
if f(op(d[r], sm)):
sm = op(d[r], sm)
r -= 1
return r + 1 - size
sm = op(d[r], sm)
if (r & -r) == r:
break
return 0
def update(self, k):
self.d[k] = self.op(self.d[2 * k], self.d[2 * k + 1])
def __str__(self):
return str([self.get(i) for i in range(self.n)])
def op(x, y):
x_l, x_r, x_merge = x
y_l, y_r, y_merge = y
merge = min(x_r, y_l)
res_l = x_l + y_l - merge
res_r = x_r + y_r - merge
res_merge = x_merge + y_merge + merge
return (res_l, res_r, res_merge)
e = (0, 0, 0)
def data(t):
if t == 1:
return (0, 1, 0)
else:
return (1, 0, 0)
N, Q = [int(s) for s in input().split()]
S = [*input()]
seg = segtree([data(1) if s == "(" else data(2) for s in S], op, e)
for _ in range(Q):
cmd, *query = [int(s) for s in input().split()]
if cmd == 1:
x, t = query
x -= 1
seg.set(x, data(t))
else:
l, r = query
l -= 1
_, _, ans = seg.prod(l, r)
print(ans * 2)