結果
| 問題 | No.3595 A Queen |
| コンテスト | |
| ユーザー |
Moss_Local
|
| 提出日時 | 2026-07-24 21:02:33 |
| 言語 | Rust (1.94.0 + proconio + num + itertools) |
| 結果 |
AC
|
| 実行時間 | 0 ms / 2,000 ms |
| + 815µs | |
| コード長 | 19,355 bytes |
| 記録 | |
| コンパイル時間 | 9,145 ms |
| コンパイル使用メモリ | 182,576 KB |
| 実行使用メモリ | 5,888 KB |
| 最終ジャッジ日時 | 2026-07-24 21:02:44 |
| 合計ジャッジ時間 | 10,058 ms |
|
ジャッジサーバーID (参考情報) |
judge1_0 / judge2_0 |
(要ログイン)
| ファイルパターン | 結果 |
|---|---|
| sample | AC * 3 |
| other | AC * 12 |
コンパイルメッセージ
warning: variable does not need to be mutable
--> src/main.rs:51:17
|
51 | let mut $x = iter
| ----^^
| |
| help: remove this `mut`
...
811 | ru!(h, w);
| --------- in this macro invocation
|
= note: `#[warn(unused_mut)]` (part of `#[warn(unused)]`) on by default
= note: this warning originates in the macro `ru` (in Nightly builds, run with -Z macro-backtrace for more info)
ソースコード
// -*- coding: utf-8-unix -*-
#![allow(dead_code, unused_imports, unused_macros, unused_variables)]
use std::cmp::{max, min, Ordering, Reverse};
use std::collections::{BTreeMap, BTreeSet, BinaryHeap, HashMap, HashSet, VecDeque};
use std::fmt::Debug;
use std::io::{self, Read};
use std::str::FromStr;
const INF_I32: i32 = 1_i32 << 30;
const INF_I64: i64 = 1_i64 << 60;
const INF_I128: i128 = 1_i128 << 120;
const INF_USIZE: usize = usize::MAX / 4;
const INF: i64 = INF_I64;
const UINF: usize = INF_USIZE;
const INF128: i128 = INF_I128;
const MOD1: i64 = 1_000_000_007;
const MOD9: i64 = 998_244_353;
const MOD: i64 = MOD9;
const UMOD: usize = MOD as usize;
// =============================================================================
// Input
// =========================================================================
#[allow(dead_code)]
fn read<T: std::str::FromStr>() -> T {
let mut s = String::new();
std::io::stdin().read_line(&mut s).ok();
s.trim().parse().ok().unwrap()
}
#[allow(dead_code)]
fn read_vec<T: std::str::FromStr>() -> Vec<T> {
read::<String>()
.split_whitespace()
.map(|e| e.parse().ok().unwrap())
.collect()
}
#[allow(dead_code)]
fn read_mat<T: std::str::FromStr>(n: usize) -> Vec<Vec<T>> {
(0..n).map(|_| read_vec()).collect()
}
macro_rules! ru {
($($x:ident),+ $(,)?) => {
let values = read_vec::<usize>();
let mut iter = values.into_iter();
$(
let mut $x = iter
.next()
.expect("入力の要素数が不足しています");
)+
};
}
macro_rules! ri {
($($x:ident),+ $(,)?) => {
let values = read_vec::<i64>();
let mut iter = values.into_iter();
$(
let mut $x = iter
.next()
.expect("入力の要素数が不足しています");
)+
};
}
macro_rules! rc {
($x:ident $(,)?) => {
let mut $x: Vec<char> = read::<String>().chars().collect();
};
}
macro_rules! rs {
($($x:ident),+ $(,)?) => {
let values = read_vec::<String>();
let mut iter = values.into_iter();
$(
let mut $x = iter
.next()
.expect("入力の要素数が不足しています");
)+
};
}
macro_rules! rvu {
($x:ident $(,)?) => {
let mut $x = read_vec::<usize>();
};
}
macro_rules! rvi {
($x:ident $(,)?) => {
let mut $x = read_vec::<i64>();
};
}
macro_rules! graph_read {
// 重みなし・無向グラフ
($n:expr, $m:expr, unweighted, undirected) => {{
let mut graph = vec![Vec::<usize>::new(); $n];
for _ in 0..$m {
ru!(a, b);
a -= 1;
b -= 1;
graph[a].push(b);
graph[b].push(a);
}
graph
}};
// 重みなし・有向グラフ
($n:expr, $m:expr, unweighted, directed) => {{
let mut graph = vec![Vec::<usize>::new(); $n];
for _ in 0..$m {
ru!(a, b);
a -= 1;
b -= 1;
graph[a].push(b);
}
graph
}};
// 重みつき・無向グラフ
($n:expr, $m:expr, weighted, undirected, $weight_type:ty) => {{
let mut graph = vec![Vec::<(usize, $weight_type)>::new(); $n];
for _ in 0..$m {
ru!(a, b, c);
a -= 1;
b -= 1;
graph[a].push((b, c));
graph[b].push((a, c));
}
graph
}};
// 重みつき・有向グラフ
($n:expr, $m:expr, weighted, directed, $weight_type:ty) => {{
let mut graph = vec![Vec::<(usize, $weight_type)>::new(); $n];
for _ in 0..$m {
ru!(mut a, mut b, c);
a -= 1;
b -= 1;
graph[a].push((b, c));
}
graph
}};
// 既定値: 重みなし・無向グラフ
($n:expr, $m:expr) => {
graph_read!($n, $m, unweighted, undirected)
};
}
// =============================================================================
// Output / Debug
// =============================================================================
macro_rules! p {
() => {
println!();
};
($value:expr $(,)?) => {
println!("{}", $value);
};
($fmt:literal, $($arg:tt)*) => {
println!($fmt, $($arg)*);
};
}
macro_rules! join {
($iter:expr, $separator:expr $(,)?) => {
($iter)
.into_iter()
.map(|x| x.to_string())
.collect::<Vec<_>>()
.join($separator)
};
}
macro_rules! pv {
($iter:expr $(,)?) => {
println!("{}", join!($iter, " "));
};
($iter:expr, $separator:expr $(,)?) => {
println!("{}", join!($iter, $separator));
};
}
macro_rules! yesno {
($condition:expr $(,)?) => {
println!("{}", if $condition { "Yes" } else { "No" });
};
($condition:expr, $yes:expr, $no:expr $(,)?) => {
println!("{}", if $condition { $yes } else { $no });
};
}
macro_rules! d {
($($value:expr),+ $(,)?) => {
#[cfg(debug_assertions)]
{
eprint!("[{}:{}]", file!(), line!());
$(
eprint!(" {} = {:?}", stringify!($value), &$value);
)+
eprintln!();
}
};
}
// =============================================================================
// Scalar / Vec utilities
// =============================================================================
macro_rules! chmin {
($base:expr, $($value:expr),+ $(,)?) => {{
let mut updated = false;
$(
let value = $value;
if $base > value {
$base = value;
updated = true;
}
)+
updated
}};
}
macro_rules! chmax {
($base:expr, $($value:expr),+ $(,)?) => {{
let mut updated = false;
$(
let value = $value;
if $base < value {
$base = value;
updated = true;
}
)+
updated
}};
}
macro_rules! min {
// collection: Vec、配列、スライスなど
($iter:expr $(,)?) => {{
($iter)
.iter()
.min()
.cloned()
.expect("min! called on an empty iterator")
}};
// 複数の値
($first:expr, $($rest:expr),+ $(,)?) => {{
let mut answer = ($first).clone();
$(
chmin!(answer, ($rest).clone());
)+
answer
}};
}
macro_rules! max {
// collection: Vec、配列、スライスなど
($iter:expr $(,)?) => {{
($iter)
.iter()
.max()
.cloned()
.expect("max! called on an empty iterator")
}};
// 複数の値
($first:expr, $($rest:expr),+ $(,)?) => {{
let mut answer = ($first).clone();
$(
chmax!(answer, ($rest).clone());
)+
answer
}};
}
macro_rules! ndvec {
($value:expr; $len:expr) => {
vec![$value; $len]
};
($value:expr; $len:expr, $($rest:expr),+ $(,)?) => {
vec![ndvec![$value; $($rest),+]; $len]
};
}
macro_rules! for_nd {
// 再帰の終端
($body:block $(,)?) => {
$body
};
// ループを1段生成し、残りを再帰的に展開
(
$variable:ident in $range:expr,
$($rest:tt)+
) => {
for $variable in $range {
for_nd!($($rest)+);
}
};
}
macro_rules! for_set {
($value:pat in $set:expr => $body:block) => {
for $value in &$set {
$body
}
};
}
macro_rules! for_map {
($key:pat, $value:pat in $map:expr => $body:block) => {
for ($key, $value) in &$map {
$body
}
};
}
macro_rules! sorted {
($iter:expr $(,)?) => {{
let mut values = ($iter).into_iter().collect::<Vec<_>>();
values.sort_unstable();
values
}};
}
macro_rules! sorted_unique {
($iter:expr $(,)?) => {{
let mut values = sorted!($iter);
values.dedup();
values
}};
}
macro_rules! sort_desc {
($values:expr $(,)?) => {{
($values).sort_unstable_by(|a, b| b.cmp(a));
}};
}
macro_rules! prefix_sum {
($values:expr $(,)?) => {{
let values = &$values;
let mut prefix = Vec::with_capacity(values.len() + 1);
prefix.push(Default::default());
for &value in values.iter() {
let next = prefix.last().copied().unwrap() + value;
prefix.push(next);
}
prefix
}};
}
macro_rules! prefix_xor {
($values:expr $(,)?) => {{
let values = &$values;
let mut prefix = Vec::with_capacity(values.len() + 1);
prefix.push(Default::default());
for &value in values.iter() {
let next = prefix.last().copied().unwrap() ^ value;
prefix.push(next);
}
prefix
}};
}
// 数学的な floor(a / b)。b != 0。
macro_rules! div_floor {
($a:expr, $b:expr $(,)?) => {{
let a = $a;
let b = $b;
let q = a / b;
let r = a % b;
if r != 0 && ((r > 0) != (b > 0)) {
q - 1
} else {
q
}
}};
}
// 数学的な ceil(a / b)。b != 0。
macro_rules! div_ceil {
($a:expr, $b:expr $(,)?) => {{
let a = $a;
let b = $b;
let q = a / b;
let r = a % b;
if r != 0 && ((r > 0) == (b > 0)) {
q + 1
} else {
q
}
}};
}
macro_rules! has_bit {
($mask:expr, $bit:expr $(,)?) => {
(($mask >> $bit) & 1) != 0
};
}
macro_rules! set_bit {
($mask:expr, $bit:expr $(,)?) => {
$mask |= 1 << $bit
};
}
macro_rules! clear_bit {
($mask:expr, $bit:expr $(,)?) => {
$mask &= !(1 << $bit)
};
}
macro_rules! toggle_bit {
($mask:expr, $bit:expr $(,)?) => {
$mask ^= 1 << $bit
};
}
// =============================================================================
// Integer / floating-point binary search
// =============================================================================
// pred(ok) == true, pred(ng) == false を保ち、最後に true 側の境界を返す。
// ok < ng と ok > ng の双方に対応する。
macro_rules! binsearch {
(ok = $ok:expr, ng = $ng:expr, $pred:expr $(,)?) => {{
let mut ok = $ok;
let mut ng = $ng;
let mut pred = $pred;
while ok.abs_diff(ng) > 1 {
let mid = if ok < ng {
ok + (ng - ok) / 2
} else {
ng + (ok - ng) / 2
};
if pred(mid) {
ok = mid;
} else {
ng = mid;
}
}
ok
}};
}
// false ... true の単調列に対し、最初の true を返す。
// ng は false 側の番兵、ok は true 側の番兵。
macro_rules! first_true {
($ng:expr, $ok:expr, $pred:expr $(,)?) => {
binsearch!(ok = $ok, ng = $ng, $pred)
};
}
// true ... false の単調列に対し、最後の true を返す。
// ok は true 側の番兵、ng は false 側の番兵。
macro_rules! last_true {
($ok:expr, $ng:expr, $pred:expr $(,)?) => {
binsearch!(ok = $ok, ng = $ng, $pred)
};
}
// 浮動小数点版。回数を明示することで停止条件の曖昧さを避ける。
macro_rules! binsearch_f64 {
(ok = $ok:expr, ng = $ng:expr, iter = $iter:expr, $pred:expr $(,)?) => {{
let mut ok = $ok;
let mut ng = $ng;
let mut pred = $pred;
for _ in 0..$iter {
let mid = (ok + ng) * 0.5;
if pred(mid) {
ok = mid;
} else {
ng = mid;
}
}
ok
}};
}
// =============================================================================
// Sorted slice bounds
// =============================================================================
macro_rules! lower_bound {
($slice:expr, $value:expr $(,)?) => {{
let value = $value;
($slice).partition_point(|x| x < &value)
}};
}
macro_rules! upper_bound {
($slice:expr, $value:expr $(,)?) => {{
let value = $value;
($slice).partition_point(|x| x <= &value)
}};
}
macro_rules! equal_range {
($slice:expr, $value:expr $(,)?) => {{
let slice = &$slice;
let value = $value;
let left = slice.partition_point(|x| x < &value);
let right = slice.partition_point(|x| x <= &value);
(left, right)
}};
}
macro_rules! count_sorted {
($slice:expr, $value:expr $(,)?) => {{
let (left, right) = equal_range!($slice, $value);
right - left
}};
}
macro_rules! lower_bound_by_key {
($slice:expr, $key:expr, $key_of:expr $(,)?) => {{
let key = $key;
let mut key_of = $key_of;
($slice).partition_point(|x| key_of(x) < key)
}};
}
macro_rules! upper_bound_by_key {
($slice:expr, $key:expr, $key_of:expr $(,)?) => {{
let key = $key;
let mut key_of = $key_of;
($slice).partition_point(|x| key_of(x) <= key)
}};
}
// UTIL
macro_rules! neighbors4 {
($y:expr, $x:expr, $h:expr, $w:expr $(,)?) => {{
const DY: [isize; 4] = [-1, 0, 1, 0];
const DX: [isize; 4] = [0, 1, 0, -1];
(0..4).filter_map(move |dir| {
let ny = $y as isize + DY[dir];
let nx = $x as isize + DX[dir];
if 0 <= ny && ny < $h as isize && 0 <= nx && nx < $w as isize {
Some((ny as usize, nx as usize))
} else {
None
}
})
}};
}
macro_rules! run_length {
($iter:expr $(,)?) => {{
let mut result = Vec::new();
for value in $iter {
match result.last_mut() {
Some((last, count)) if *last == value => {
*count += 1usize;
}
_ => {
result.push((value, 1usize));
}
}
}
result
}};
}
macro_rules! coordinate_compress {
($iter:expr $(,)?) => {{
let values: Vec<_> = ($iter).into_iter().collect();
let mut coordinates = values.clone();
coordinates.sort();
coordinates.dedup();
let compressed = values
.iter()
.map(|value| coordinates.binary_search(value).unwrap())
.collect::<Vec<_>>();
(compressed, coordinates)
}};
}
// =============================================================================
// Map / Set literals and counters
// =============================================================================
macro_rules! map {
($($key:expr => $value:expr),* $(,)?) => {{
let mut map = ::std::collections::BTreeMap::new();
$(map.insert($key, $value);)*
map
}};
}
macro_rules! set {
($($value:expr),* $(,)?) => {{
let mut set = ::std::collections::BTreeSet::new();
$(set.insert($value);)*
set
}};
}
macro_rules! count_map {
($iter:expr $(,)?) => {{
let mut count = BTreeMap::new();
for value in $iter {
*count.entry(value).or_insert(0usize) += 1;
}
count
}};
}
macro_rules! map_count {
($map:expr, $key:expr $(,)?) => {
($map).get(&$key).copied().unwrap_or_default()
};
}
macro_rules! map_add {
($map:expr, $key:expr, $delta:expr $(,)?) => {{
let key = $key;
let delta = $delta;
let map = &mut $map;
*map.entry(key).or_insert(0) += delta;
}};
}
macro_rules! map_inc {
($map:expr, $key:expr $(,)?) => {
map_add!($map, $key, 1)
};
}
// delta を引いた後も正なら減算し、0 以下になるならキーごと削除する。
// キーを削除した場合のみ true。
macro_rules! map_sub {
($map:expr, $key:expr, $delta:expr $(,)?) => {{
let key = $key;
let delta = $delta;
let map = &mut $map;
let remove = match map.get_mut(&key) {
Some(value) => {
if *value <= delta {
true
} else {
*value -= delta;
false
}
}
None => false,
};
if remove {
map.remove(&key);
true
} else {
false
}
}};
}
macro_rules! map_dec {
($map:expr, $key:expr $(,)?) => {
map_sub!($map, $key, 1)
};
}
// 未登録なら挿入するため、その場合も true。
macro_rules! map_chmin {
($map:expr, $key:expr, $value:expr $(,)?) => {{
let key = $key;
let value = $value;
let map = &mut $map;
match map.get_mut(&key) {
Some(current) if value < *current => {
*current = value;
true
}
Some(_) => false,
None => {
map.insert(key, value);
true
}
}
}};
}
// 未登録なら挿入するため、その場合も true。
macro_rules! map_chmax {
($map:expr, $key:expr, $value:expr $(,)?) => {{
let key = $key;
let value = $value;
let map = &mut $map;
match map.get_mut(&key) {
Some(current) if value > *current => {
*current = value;
true
}
Some(_) => false,
None => {
map.insert(key, value);
true
}
}
}};
}
macro_rules! set_toggle {
($set:expr, $value:expr $(,)?) => {{
let value = $value;
let set = &mut $set;
if set.remove(&value) {
false
} else {
set.insert(value);
true
}
}};
}
// =============================================================================
// Ordered map / set neighbor queries
// =============================================================================
macro_rules! first_ge {
($ordered:expr, $value:expr $(,)?) => {
($ordered).range($value..).next()
};
}
macro_rules! first_gt {
($ordered:expr, $value:expr $(,)?) => {
($ordered)
.range((
std::ops::Bound::Excluded($value),
std::ops::Bound::Unbounded,
))
.next()
};
}
macro_rules! last_le {
($ordered:expr, $value:expr $(,)?) => {
($ordered).range(..=$value).next_back()
};
}
macro_rules! last_lt {
($ordered:expr, $value:expr $(,)?) => {
($ordered).range(..$value).next_back()
};
}
macro_rules! u {
($($x:ident),+ $(,)?) => {
$(
let mut $x = 0usize;
)+
};
}
macro_rules! i {
($($x:ident),+ $(,)?) => {
$(
let mut $x = 0i64;
)+
};
}
macro_rules! idx1 {
($x:expr) => {
($x as usize) - 1
};
}
macro_rules! sum {
($iter:expr $(,)?) => {{
let mut sum = 0;
for &value in ($iter).iter() {
sum += value;
}
sum
}};
}
fn main() {
let n: usize = read();
ru!(h, w);
if h == w || h == 1 || w == 1 {
p!("Yes");
} else {
p!("No");
}
}
Moss_Local