結果
問題 | No.643 Two Operations No.2 |
ユーザー | cotton_fn_ |
提出日時 | 2020-04-08 02:28:18 |
言語 | Rust (1.77.0 + proconio) |
結果 |
AC
|
実行時間 | 2 ms / 2,000 ms |
コード長 | 5,103 bytes |
コンパイル時間 | 10,963 ms |
コンパイル使用メモリ | 402,448 KB |
実行使用メモリ | 5,376 KB |
最終ジャッジ日時 | 2024-07-08 13:46:24 |
合計ジャッジ時間 | 11,963 ms |
ジャッジサーバーID (参考情報) |
judge5 / judge2 |
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テストケース
テストケース表示入力 | 結果 | 実行時間 実行使用メモリ |
---|---|---|
testcase_00 | AC | 2 ms
5,248 KB |
testcase_01 | AC | 2 ms
5,376 KB |
testcase_02 | AC | 2 ms
5,376 KB |
testcase_03 | AC | 2 ms
5,376 KB |
testcase_04 | AC | 2 ms
5,376 KB |
testcase_05 | AC | 2 ms
5,376 KB |
testcase_06 | AC | 1 ms
5,376 KB |
testcase_07 | AC | 2 ms
5,376 KB |
testcase_08 | AC | 1 ms
5,376 KB |
testcase_09 | AC | 1 ms
5,376 KB |
testcase_10 | AC | 2 ms
5,376 KB |
testcase_11 | AC | 2 ms
5,376 KB |
testcase_12 | AC | 2 ms
5,376 KB |
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(10 * 1024 * 1024) .spawn(solve)? .join() .unwrap(); Ok(()) } fn solve() { let stdin = io::stdin(); let mut kin = KInput::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(); } } } let (x, y): (i32, i32) = kin.input(); let mut rand = Pcg::new(1); let mut ans = !0u32; for _ in 0..100000 { let (mut x, mut y) = (x, y); for i in 0..=3 { if x == y { ans = ans.min(i); } if rand.next_bool() { swap(&mut x, &mut y); } else { x += y; y = x - 2 * y; } } } outputln!("{}", ans as i32); } pub struct Pcg(u64); const MUL: u64 = 5129263795064623965; const INC: u64 = 4280768313201238837; impl Pcg { pub fn new(seed: u64) -> Self { Self(seed.wrapping_add(INC)) } pub fn next_u32(&mut self) -> u32 { // PCG-XSH-RR let mut x = self.0; self.0 = x.wrapping_mul(MUL).wrapping_add(INC); x ^= x >> 18; ((x >> 27) as u32).rotate_right((x >> 59) as u32) } pub fn next_bool(&mut self) -> bool { self.next_u32() & 1 == 1 } } // ----------------------------------------------------------------------------- pub mod kyoproio { #![warn(unused)] use std::io::prelude::*; pub trait Input: Sized { fn str(&mut self) -> &str; fn bytes(&mut self) -> &[u8] { self.str().as_ref() } fn input<T: InputParse>(&mut self) -> T { self.input_fallible().expect("input error") } fn input_fallible<T: InputParse>(&mut self) -> Result<T, T::Err> { T::input(self) } fn iter<T: InputParse>(&mut self) -> Iter<T, Self> { Iter { input: self, _t: std::marker::PhantomData, } } fn seq<T: InputParse, B: std::iter::FromIterator<T>>(&mut self, n: usize) -> B { self.iter().take(n).collect() } } pub struct KInput<R> { src: R, buf: String, pos: usize, } impl<R: BufRead> KInput<R> { pub fn new(src: R) -> Self { Self { src, buf: String::with_capacity(1024), pos: 0, } } } impl<R: BufRead> Input for KInput<R> { fn str(&mut self) -> &str { loop { if self.pos >= self.buf.len() { self.pos = 0; self.buf.clear(); if self.src.read_line(&mut self.buf).expect("io error") == 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 { return &self.buf[range]; } } } } pub struct Iter<'a, T, I> { input: &'a mut I, _t: std::marker::PhantomData<*const T>, } impl<'a, T: InputParse, I: Input> Iterator for Iter<'a, T, I> { type Item = T; fn next(&mut self) -> Option<Self::Item> { Some(self.input.input()) } } pub trait InputParse: Sized { type Err: std::fmt::Debug; fn input<I: Input>(input: &mut I) -> Result<Self, Self::Err>; } macro_rules! from_str_impls { { $($T:ty)* } => { $(impl InputParse for $T { type Err = <$T as std::str::FromStr>::Err; fn input<I: Input>(input: &mut I) -> Result<Self, Self::Err> { input.str().parse::<$T>() } })* }; } from_str_impls! { String char bool f32 f64 isize i8 i16 i32 i64 i128 usize u8 u16 u32 u64 u128 } macro_rules! tuple_impls { ($H:ident $($T:ident)*) => { impl<$H: InputParse, $($T: InputParse),*> InputParse for ($H, $($T),*) { type Err = (); fn input<I: Input>(input: &mut I) -> Result<Self, Self::Err> { // ? Ok(($H::input(input).unwrap(), $($T::input(input).unwrap()),*)) } } tuple_impls!($($T)*); }; () => {}; } tuple_impls!(A B C D E F G); }