結果
| 問題 |
No.1011 Infinite Stairs
|
| コンテスト | |
| ユーザー |
cotton_fn_
|
| 提出日時 | 2020-03-21 03:16:00 |
| 言語 | Rust (1.83.0 + proconio) |
| 結果 |
AC
|
| 実行時間 | 289 ms / 2,000 ms |
| コード長 | 5,548 bytes |
| コンパイル時間 | 12,720 ms |
| コンパイル使用メモリ | 401,544 KB |
| 実行使用メモリ | 6,948 KB |
| 最終ジャッジ日時 | 2024-07-17 11:57:06 |
| 合計ジャッジ時間 | 16,196 ms |
|
ジャッジサーバーID (参考情報) |
judge4 / judge5 |
(要ログイン)
| ファイルパターン | 結果 |
|---|---|
| sample | AC * 3 |
| other | AC * 24 |
ソースコード
#![allow(unused)]
use kyoproio::*;
use std::{
collections::*,
io::{self, prelude::*},
iter,
mem::{replace, swap},
};
fn main() -> io::Result<()> {
std::thread::Builder::new()
.stack_size(50 * 1024 * 1024)
.spawn(solve)?
.join()
.unwrap();
Ok(())
}
fn solve() {
let stdin = io::stdin();
let mut kin = Input::new(stdin.lock());
let stdout = io::stdout();
let mut out = io::BufWriter::new(stdout.lock());
macro_rules! output {
($($args:expr),+) => { write!(&mut out, $($args),+) };
}
macro_rules! outputln {
($($args:expr),+) => { output!($($args),+); outputln!() };
() => { output!("\n"); if cfg!(debug_assertions) { out.flush(); } }
}
const MOD: i64 = 1e9 as i64 + 7;
let [n, d, k]: [usize; 3] = kin.input();
let mut dp = vec![0; d * n + 2];
dp[0] = 1;
let mut dp_next = Vec::new();
for _ in 0..n {
dp_next.clear();
dp_next.resize(dp.len(), 0);
for i in 0..dp.len() - d - 1 {
dp_next[i + 1] += dp[i];
dp_next[i + 1] %= MOD;
dp_next[i + d + 1] += MOD - dp[i];
dp_next[i + d + 1] %= MOD;
}
for i in 1..dp.len() {
dp_next[i] += dp_next[i - 1];
dp_next[i] %= MOD;
}
swap(&mut dp, &mut dp_next);
}
outputln!("{}", dp[k]);
}
// -----------------------------------------------------------------------------
pub mod kyoproio {
#![warn(unused)]
pub use std::io::prelude::*;
pub struct Input<R> {
src: R,
buf: String,
pos: usize,
}
impl<R: BufRead> Input<R> {
pub fn new(src: R) -> Self {
Self {
src,
buf: String::with_capacity(1024),
pos: 0,
}
}
pub fn str(&mut self) -> &str {
loop {
if self.pos >= self.buf.len() {
self.buf.clear();
let len = self.src.read_line(&mut self.buf).expect("io error");
self.pos = 0;
if len == 0 {
return &self.buf;
}
}
let range = self.pos
..self.buf[self.pos..]
.find(|c: char| c.is_ascii_whitespace())
.map(|i| i + self.pos)
.unwrap_or_else(|| self.buf.len());
self.pos = range.end + 1;
if range.end - range.start > 0 {
return &self.buf[range];
}
}
}
pub fn bytes(&mut self) -> &[u8] {
self.str().as_ref()
}
pub fn input<T: InputParse>(&mut self) -> T {
self.input_fallible().expect("input error")
}
pub fn input_fallible<T: InputParse>(&mut self) -> Result<T> {
T::input(self)
}
pub fn iter<T: InputParse>(&mut self) -> Iter<T, R> {
Iter {
input: self,
_t: std::marker::PhantomData,
}
}
}
pub struct Iter<'a, T, R> {
input: &'a mut Input<R>,
_t: std::marker::PhantomData<T>,
}
impl<'a, T: InputParse, R: BufRead> Iterator for Iter<'a, T, R> {
type Item = T;
fn next(&mut self) -> Option<Self::Item> {
Some(self.input.input())
}
}
type Result<T> = std::result::Result<T, Box<dyn std::error::Error + 'static>>;
pub trait InputParse: Sized {
fn input<R: BufRead>(input: &mut Input<R>) -> Result<Self>;
}
macro_rules! input_from_str_impls {
{ $($T:ty)* } => {
$(impl InputParse for $T {
fn input<R: BufRead>(input: &mut Input<R>) -> Result<Self> {
input.str().parse::<$T>().map_err(|e| e.into())
}
})*
};
}
macro_rules! input_tuple_impls {
{ $(($($T:ident),+))* } => {
$(impl<$($T: InputParse),+> InputParse for ($($T),+) {
fn input<R: BufRead>(input: &mut Input<R>) -> Result<Self> {
Ok(($($T::input(input)?),+))
}
})*
};
}
macro_rules! input_array_impls {
{ $($N:expr)* } => {
$(impl<T: InputParse> InputParse for [T; $N] {
fn input<R: BufRead>(input: &mut Input<R>) -> Result<Self> {
use std::{ mem::MaybeUninit, ptr };
let mut a = MaybeUninit::<[T; $N]>::uninit();
unsafe {
for i in 0..$N {
match T::input(input) {
Ok(v) => ptr::write(&mut (*a.as_mut_ptr())[i], v),
Err(e) => {
ptr::drop_in_place(&mut (*a.as_mut_ptr())[..i]);
return Err(e);
}
}
}
Ok(a.assume_init())
}
}
})*
};
}
input_from_str_impls! {
String char bool f32 f64
isize i8 i16 i32 i64 i128
usize u8 u16 u32 u64 u128
}
input_tuple_impls! {
(A, B)
(A, B, C)
(A, B, C, D)
(A, B, C, D, E)
(A, B, C, D, E, F)
(A, B, C, D, E, F, G)
}
input_array_impls! {
1 2 3 4 5 6 7 8
}
}
cotton_fn_