結果
| 問題 |
No.1790 Subtree Deletion
|
| コンテスト | |
| ユーザー |
Nachia
|
| 提出日時 | 2021-12-11 15:25:14 |
| 言語 | PyPy3 (7.3.15) |
| 結果 |
WA
|
| 実行時間 | - |
| コード長 | 5,214 bytes |
| コンパイル時間 | 446 ms |
| コンパイル使用メモリ | 82,048 KB |
| 実行使用メモリ | 104,576 KB |
| 最終ジャッジ日時 | 2024-09-15 14:10:08 |
| 合計ジャッジ時間 | 11,122 ms |
|
ジャッジサーバーID (参考情報) |
judge5 / judge1 |
(要ログイン)
| ファイルパターン | 結果 |
|---|---|
| sample | AC * 3 |
| other | AC * 2 WA * 10 |
ソースコード
# begin
# ACL for python by shakayami
# repository : https://github.com/shakayami/ACL-for-python
# code : https://github.com/shakayami/ACL-for-python/blob/master/lazysegtree.py
class lazy_segtree():
def update(self,k):self.d[k]=self.op(self.d[2*k],self.d[2*k+1])
def all_apply(self,k,f):
self.d[k]=self.mapping(f,self.d[k])
if (k<self.size):self.lz[k]=self.composition(f,self.lz[k])
def push(self,k):
self.all_apply(2*k,self.lz[k])
self.all_apply(2*k+1,self.lz[k])
self.lz[k]=self.identity
def __init__(self,V,OP,E,MAPPING,COMPOSITION,ID):
self.n=len(V)
self.log=(self.n-1).bit_length()
self.size=1<<self.log
self.d=[E for i in range(2*self.size)]
self.lz=[ID for i in range(self.size)]
self.e=E
self.op=OP
self.mapping=MAPPING
self.composition=COMPOSITION
self.identity=ID
for i in range(self.n):self.d[self.size+i]=V[i]
for i in range(self.size-1,0,-1):self.update(i)
def set(self,p,x):
assert 0<=p and p<self.n
p+=self.size
for i in range(self.log,0,-1):self.push(p>>i)
self.d[p]=x
for i in range(1,self.log+1):self.update(p>>i)
def get(self,p):
assert 0<=p and p<self.n
p+=self.size
for i in range(self.log,0,-1):self.push(p>>i)
return self.d[p]
def prod(self,l,r):
assert 0<=l and l<=r and r<=self.n
if l==r:return self.e
l+=self.size
r+=self.size
for i in range(self.log,0,-1):
if (((l>>i)<<i)!=l):self.push(l>>i)
if (((r>>i)<<i)!=r):self.push(r>>i)
sml,smr=self.e,self.e
while(l<r):
if l&1:
sml=self.op(sml,self.d[l])
l+=1
if r&1:
r-=1
smr=self.op(self.d[r],smr)
l>>=1
r>>=1
return self.op(sml,smr)
def all_prod(self):return self.d[1]
def apply_point(self,p,f):
assert 0<=p and p<self.n
p+=self.size
for i in range(self.log,0,-1):self.push(p>>i)
self.d[p]=self.mapping(f,self.d[p])
for i in range(1,self.log+1):self.update(p>>i)
def apply(self,l,r,f):
assert 0<=l and l<=r and r<=self.n
if l==r:return
l+=self.size
r+=self.size
for i in range(self.log,0,-1):
if (((l>>i)<<i)!=l):self.push(l>>i)
if (((r>>i)<<i)!=r):self.push((r-1)>>i)
l2,r2=l,r
while(l<r):
if (l&1):
self.all_apply(l,f)
l+=1
if (r&1):
r-=1
self.all_apply(r,f)
l>>=1
r>>=1
l,r=l2,r2
for i in range(1,self.log+1):
if (((l>>i)<<i)!=l):self.update(l>>i)
if (((r>>i)<<i)!=r):self.update((r-1)>>i)
def max_right(self,l,g):
assert 0<=l and l<=self.n
assert g(self.e)
if l==self.n:return self.n
l+=self.size
for i in range(self.log,0,-1):self.push(l>>i)
sm=self.e
while(1):
while(i%2==0):l>>=1
if not(g(self.op(sm,self.d[l]))):
while(l<self.size):
self.push(l)
l=(2*l)
if (g(self.op(sm,self.d[l]))):
sm=self.op(sm,self.d[l])
l+=1
return l-self.size
sm=self.op(sm,self.d[l])
l+=1
if (l&-l)==l:break
return self.n
def min_left(self,r,g):
assert (0<=r and r<=self.n)
assert g(self.e)
if r==0:return 0
r+=self.size
for i in range(self.log,0,-1):self.push((r-1)>>i)
sm=self.e
while(1):
r-=1
while(r>1 and (r%2)):r>>=1
if not(g(self.op(self.d[r],sm))):
while(r<self.size):
self.push(r)
r=(2*r+1)
if g(self.op(self.d[r],sm)):
sm=self.op(self.d[r],sm)
r-=1
return r+1-self.size
sm=self.op(self.d[r],sm)
if (r&-r)==r:break
return 0
# end
rq_e = 0
rq_id = -11
def rq_op(a,b) :
return a ^ b
def rq_mapping(f,x) :
return x if f == rq_id else f
def rq_conposition(f,x) :
return x if f == rq_id else f
n = int(input())
e = [[] for i in range(n)]
for i in range(n-1) :
u,v,a = map(int,input().split())
u -= 1
v -= 1
e[u].append((v,a))
e[v].append((u,a))
alist = [0] * n
in_time = [0] * n
out_time = [0] * n
dfs_time = 0
def dfs(p, pre) :
global dfs_time
in_time[p] = dfs_time
dfs_time += 1
for nx,a in e[p] :
if nx != pre :
alist[nx] = a
dfs(nx,p)
out_time[p] = dfs_time
dfs(0, -1)
a_buf = [alist[in_time[i]] for i in range(n)]
rq = lazy_segtree(a_buf, rq_op, rq_e, rq_mapping, rq_conposition, rq_id)
q = int(input())
for i in range(q) :
t,x = map(int,input().split())
x -= 1
if t == 1 :
l = in_time[x]
r = out_time[x]
rq.apply(l,r,0)
elif t == 2 :
l = in_time[x] + 1
r = out_time[x]
res = rq.prod(l,r)
print(res)
Nachia