Submission #25038183
Source Code Expand
// Macro by MasuqaT (occar421)
// https://github.com/occar421/ProgrammingContest/tree/master/templates/src/standard_io.rs
use std::cmp::*;
use std::collections::*;
use std::fmt::{Debug, Display};
use std::hash::Hash;
#[allow(unused_imports)]
use std::iter::FromIterator;
use std::ops::*;
use std::str::FromStr;
// From https://github.com/tanakh/competitive-rs/blob/d5f51f01a6f85ddbebec4cfcb601746bee727181/src/lib.rs#L1-L92
// and modified by this file author
#[doc(hidden)]
struct Handler<F: FnMut() -> String> {
handle: F,
}
#[doc(hidden)]
macro_rules! prepare_input {
(source = $s:expr) => {{
let mut iter = $s.split_whitespace();
Handler {
handle: || iter.next().unwrap(),
}
}};
(stdin = $s:expr) => {{
let mut bytes = std::io::Read::bytes(std::io::BufReader::new($s));
Handler {
handle: move || {
bytes
.by_ref()
.map(|r| r.unwrap() as char)
.skip_while(|c| c.is_whitespace())
.take_while(|c| !c.is_whitespace())
.collect::<String>()
},
}
}};
}
macro_rules! input_original {
(source = $s:expr; $($r:tt)*) => {
let mut _handler = prepare_input!{source = $s};
let mut _next = || (_handler.handle)();
input_inner!{_next, $($r)*}
};
(stdin = $s:expr; $($r:tt)*) => {
let mut _handler = prepare_input!{stdin = $s};
let mut _next = || (_handler.handle)();
input_inner!{_next, $($r)*}
};
(handler = $h: ident; $($r:tt)*) => {
let mut _next = || ($h.handle)();
input_inner!{_next, $($r)*}
};
}
#[doc(hidden)]
macro_rules! input_inner {
($next:expr) => {};
($next:expr, ) => {};
($next:expr, $var:ident : $t:tt $($r:tt)*) => {
let $var = read_value!($next, $t);
input_inner!{$next $($r)*}
};
($next:expr, mut $var:ident : $t:tt $($r:tt)*) => {
let mut $var = read_value!($next, $t);
input_inner!{$next $($r)*}
};
}
#[doc(hidden)]
macro_rules! read_value {
($next:expr, ( $($t:tt),* )) => {
( $(read_value!($next, $t)),* )
};
($next:expr, [ $t:tt ; $len1:expr ; $len2:expr ]) => {
(0..$len1).map(|_| (0..$len2).map(|_| read_value!($next, $t)).collect::<Vec<_>>()).collect::<Vec<_>>()
};
($next:expr, [ $t:tt ; $len:expr ]) => {
(0..$len).map(|_| read_value!($next, $t)).collect::<Vec<_>>()
};
($next:expr, chars) => {
(read_value!($next, String).chars().collect::<Vec<char>>()) as Vec<char>
};
($next:expr, bytes) => {
(read_value!($next, String).into_bytes()) as Vec<u8>
};
($next:expr, usize0) => {
(read_value!($next, usize)) as usize
};
($next:expr, usize1) => {
(read_value!($next, usize) - 1) as usize
};
($next:expr, $t:ty) => {
($next().parse::<$t>().expect("Parse error")) as $t
};
}
#[allow(unused_macros)]
macro_rules! assert_judge {
($method:ident, $input:expr, $expected:expr) => {{
let output = assert_judge_with_output!($method, $input);
assert_eq!(output, $expected.trim());
}};
}
#[allow(unused_macros)]
macro_rules! assert_judge_with_output {
($method:ident, $input:expr) => {{
let input = $input.as_bytes();
let mut output = Vec::new();
$method(&input[..], &mut output).expect("Should not emit error");
String::from_utf8(output)
.expect("Not UTF-8")
.trim()
.to_string()
}};
}
#[allow(unused_macros)]
macro_rules! assert_eq_with_error {
($left:expr, $right:expr, $precision:expr) => {{
match (&$left, &$right, &$precision) {
(left_val, right_val, precision_val) => {
if !(*left_val - *precision_val < *right_val
&& *right_val < *left_val + *precision_val)
{
// The re-borrows below are intentional. Without them, the stack slot for the
// borrow is initialized even before the values are compared, leading to a
// noticeable slow down.
panic!(
r#"assertion failed: `(left == right) +- precision`
left: `{:?}`,
right: `{:?}`,
precision: `{:?}`"#,
&*left_val, &*right_val, &*precision_val
)
}
}
}
}};
}
#[allow(unused_macros)]
macro_rules! assert_judge_with_error {
($method:ident, $input:expr, $expected:expr, $t:ty | $precision:expr ) => {{
let output = assert_judge_with_output!($method, $input);
let actual: $t = output.parse().unwrap();
let expected: $t = $expected.parse().unwrap();
assert_eq_with_error!(actual, expected, $precision);
}};
}
pub trait Min: PartialMin {
fn min(&self) -> Self::Result;
}
pub trait PartialMin {
type Result;
fn partial_min(&self) -> Option<Self::Result>;
}
impl<T, PT> PartialMin for Option<PT>
where
T: Ord + Copy,
PT: PartialMin<Result = T>,
{
type Result = T;
#[inline]
fn partial_min(&self) -> Option<Self::Result> {
self.as_ref().map(|x| x.partial_min()).flatten()
}
}
fn iter_partial_min<'a, T, PT, I>(iter: I) -> Option<T>
where
T: Ord + Copy,
PT: 'a + PartialMin<Result = T>,
I: 'a + Iterator<Item = &'a PT>,
{
iter.filter_map(|x| x.partial_min()).min()
}
impl<T, PT> PartialMin for [PT]
where
T: Ord + Copy,
PT: PartialMin<Result = T>,
{
type Result = T;
#[inline]
fn partial_min(&self) -> Option<Self::Result> {
iter_partial_min(self.iter())
}
}
impl<T, PT> PartialMin for Vec<PT>
where
T: Ord + Copy,
PT: PartialMin<Result = T>,
{
type Result = T;
#[inline]
fn partial_min(&self) -> Option<Self::Result> {
iter_partial_min(self.iter())
}
}
impl<T, PT> PartialMin for HashSet<PT>
where
T: Ord + Copy,
PT: PartialMin<Result = T>,
{
type Result = T;
#[inline]
fn partial_min(&self) -> Option<Self::Result> {
iter_partial_min(self.iter())
}
}
pub fn min_with_partial<T>(o1: Option<T>, o2: Option<T>) -> Option<T>
where
T: Ord,
{
match (o1, o2) {
(Some(v1), Some(v2)) => min(v1, v2).into(),
(o1, None) => o1,
(None, o2) => o2,
}
}
#[allow(unused_macros)]
#[macro_export]
macro_rules! min {
($x: expr) => (Min::min(&$x));
($x: expr, $($z: expr),+) => (::std::cmp::min(Min::min(&$x), min!($($z),*)));
}
#[allow(unused_macros)]
#[macro_export]
macro_rules! partial_min {
($x: expr) => (PartialMin::partial_min(&$x));
($x: expr, $($z: expr),+) => (min_with_partial(PartialMin::partial_min(&$x), partial_min!($($z),*)));
}
pub trait Max: PartialMax {
fn max(&self) -> Self::Result;
}
pub trait PartialMax {
type Result;
fn partial_max(&self) -> Option<Self::Result>;
}
impl<T, PT> PartialMax for Option<PT>
where
T: Ord + Copy,
PT: PartialMax<Result = T>,
{
type Result = T;
#[inline]
fn partial_max(&self) -> Option<Self::Result> {
self.as_ref().map(|x| x.partial_max()).flatten()
}
}
fn iter_partial_max<'a, T, PT, I>(iter: I) -> Option<T>
where
T: Ord + Copy,
PT: 'a + PartialMax<Result = T>,
I: 'a + Iterator<Item = &'a PT>,
{
iter.filter_map(|x| x.partial_max()).max()
}
impl<T, PT> PartialMax for [PT]
where
T: Ord + Copy,
PT: PartialMax<Result = T>,
{
type Result = T;
#[inline]
fn partial_max(&self) -> Option<Self::Result> {
iter_partial_max(self.iter())
}
}
impl<T, PT> PartialMax for Vec<PT>
where
T: Ord + Copy,
PT: PartialMax<Result = T>,
{
type Result = T;
#[inline]
fn partial_max(&self) -> Option<Self::Result> {
iter_partial_max(self.iter())
}
}
impl<T, PT> PartialMax for HashSet<PT>
where
T: Ord + Copy,
PT: PartialMax<Result = T>,
{
type Result = T;
#[inline]
fn partial_max(&self) -> Option<Self::Result> {
iter_partial_max(self.iter())
}
}
pub fn max_with_partial<T>(o1: Option<T>, o2: Option<T>) -> Option<T>
where
T: Ord,
{
match (o1, o2) {
(Some(v1), Some(v2)) => max(v1, v2).into(),
(o1, None) => o1,
(None, o2) => o2,
}
}
#[allow(unused_macros)]
#[macro_export]
macro_rules! max {
($x: expr) => (Max::max(&$x));
($x: expr, $($z: expr),+) => (::std::cmp::max(Max::max(&$x), max!($($z),*)));
}
#[allow(unused_macros)]
#[macro_export]
macro_rules! partial_max {
($x: expr) => (PartialMax::partial_max(&$x));
($x: expr, $($z: expr),+) => (max_with_partial(PartialMax::partial_max(&$x), partial_max!($($z),*)));
}
pub trait GenericInteger:
Copy
+ Clone
+ Eq
+ PartialEq
+ Ord
+ PartialOrd
+ Hash
+ FromStr
+ Display
+ Debug
+ Add<Output = Self>
+ AddAssign
+ Sub<Output = Self>
+ SubAssign
+ Mul<Output = Self>
+ MulAssign
+ Div<Output = Self>
+ DivAssign
+ Rem<Output = Self>
+ RemAssign
{
fn zero() -> Self;
fn one() -> Self;
}
#[doc(hidden)]
macro_rules! implement_generic_integer {
() => {};
($t:ty $(, $r:ty)*) => {
impl GenericInteger for $t {
#[inline]
fn zero() -> Self { 0 }
#[inline]
fn one() -> Self { 1 }
}
impl PartialMin for $t {
type Result = $t;
#[inline]
fn partial_min(&self) -> Option<Self::Result> {
self.clone().into()
}
}
impl Min for $t {
#[inline]
fn min(&self) -> Self::Result {
self.clone()
}
}
impl PartialMax for $t {
type Result = $t;
#[inline]
fn partial_max(&self) -> Option<Self::Result> {
self.clone().into()
}
}
impl Max for $t {
#[inline]
fn max(&self) -> Self::Result {
self.clone()
}
}
implement_generic_integer![ $( $r ),* ];
};
}
implement_generic_integer![u8, u16, u32, u64, u128, usize, i8, i16, i32, i64, i128, isize];
#[allow(dead_code)]
pub fn gcd<T>(a: T, b: T) -> T
where
T: GenericInteger,
{
if b == T::zero() {
a
} else {
gcd(b, a % b.clone())
}
}
#[allow(dead_code)]
#[inline]
pub fn lcm<T>(a: T, b: T) -> T
where
T: GenericInteger,
{
a / gcd(a.clone(), b) * b.clone()
}
/// O(√N)
#[allow(dead_code)]
pub fn prime_factorize(n: usize) -> HashMap<usize, usize> {
let mut map = HashMap::new();
let sqrt_n = (n as f64).sqrt().ceil() as usize;
let mut n = n;
for p in 2..=sqrt_n {
if n % p != 0 {
continue;
}
let mut exp_number = 0;
while n % p == 0 {
exp_number += 1;
n /= p;
}
map.insert(p, exp_number);
}
if n != 1 {
map.insert(n, 1);
}
map
}
const INC: [usize; 8] = [4, 2, 4, 2, 4, 6, 2, 6];
// https://memo.sugyan.com/entry/2021/02/06/021949
/// O(N log(logN) )
#[allow(dead_code)]
pub fn eratosthenes_sieve(n: usize) -> Vec<usize> {
if n < 7 {
return [2, 3, 5]
.iter()
.filter_map(|&x| (x <= n).then_some_(x))
.collect();
}
let nf = n as f64;
let mut primes = Vec::with_capacity((nf / nf.ln() * 1.2).floor() as usize);
primes.push(2);
primes.push(3);
primes.push(5);
let mut unmarked_numbers = vec![true; n + 1];
// Wheel factorization
let mut p = 7 - INC.last().unwrap();
for i in INC.len() - 1.. {
p += INC[i % INC.len()];
if p > n {
break;
}
if !unmarked_numbers[p] {
continue;
}
primes.push(p);
for px in (p * p..=n).step_by(p) {
unmarked_numbers[px] = false;
}
}
primes
}
pub trait IterExt<T>
where
T: Display,
{
fn easy_join(&mut self, separator: &str) -> String;
}
impl<TItem, TTrait> IterExt<TItem> for TTrait
where
TItem: Display,
TTrait: Iterator<Item = TItem>,
{
#[inline]
fn easy_join(&mut self, separator: &str) -> String {
self.map(|i| format!("{}", i))
.collect::<Vec<_>>()
.join(separator)
}
}
pub trait VecExt<T> {
fn add_like_string(&mut self) -> T;
}
impl<T> VecExt<T> for Vec<T>
where
T: GenericInteger,
{
#[inline]
fn add_like_string(&mut self) -> T {
if let Ok(value) = self.iter().easy_join("").parse::<T>() {
value
} else {
panic!("Invalid value")
}
}
}
#[allow(unused_macros)]
#[macro_export]
macro_rules! swap {
($v1:expr, $v2:expr) => {
let buf = $v1;
$v1 = $v2;
$v2 = buf;
};
}
#[macro_export]
macro_rules! invert_index {
($v:expr) => {{
let mut goal = vec![0usize; $v.len()];
for (i, v) in $v.iter().enumerate() {
goal[*v] = i;
}
goal
}};
}
pub trait ThenSome: Into<bool> {
fn then_some_<T>(self, t: T) -> Option<T> {
if self.into() {
Some(t)
} else {
None
}
}
}
impl ThenSome for bool {}
// From https://kuretchi.hateblo.jp/entry/rust_nested_vec
#[allow(unused_macros)]
macro_rules! nested_vec {
($e:expr; $n:expr) => {
vec![$e; $n]
};
($e:expr; $n:expr $(; $m:expr)+) => {
vec![nested_vec!($e $(; $m)+); $n]
};
}
// From https://maguro.dev/debug-macro/ with some modification
#[allow(unused_macros)]
macro_rules! dbg {
() => {
#[cfg(debug_assertions)]
eprintln!();
};
($($a:expr),* $(,)*) => {
#[cfg(debug_assertions)]
eprintln!(concat!($("| ", stringify!($a), "={:?} "),*, "|"), $(&$a),*);
};
}
// From https://qiita.com/hatoo@github/items/fa14ad36a1b568d14f3e
#[derive(PartialEq, PartialOrd)]
struct Total<T>(T);
impl<T: PartialEq> Eq for Total<T> {}
impl<T: PartialOrd> Ord for Total<T> {
fn cmp(&self, other: &Total<T>) -> Ordering {
self.0.partial_cmp(&other.0).unwrap()
}
}
// -- end of helpers
fn main() {
use std::io::*;
let stdio = stdin();
let input = stdio.lock();
let mut stdout = stdout();
let output = BufWriter::new(stdout.lock());
process(input, output).expect("Should not emit error");
stdout.flush().unwrap();
}
#[allow(non_snake_case, unused_mut, unused_variables)]
fn process<R, W>(reader: R, mut writer: W) -> std::io::Result<()>
where
R: std::io::BufRead,
W: std::io::Write,
{
let mut _handler = prepare_input! { stdin = reader };
#[allow(unused_macros)]
macro_rules! input {
($($r:tt)*) => {
input_original! { handler = _handler; $($r)* }
};
}
#[allow(unused_macros)]
macro_rules! print {
($($arg:tt)*) => {
write!(writer, $($arg)*)?;
}
}
#[allow(unused_macros)]
macro_rules! println {
() => {
writeln!(writer)?;
};
($($arg:tt)*) => {
writeln!(writer, $($arg)*)?;
}
}
{
input! {
n: usize,
s: [usize; n],
t: [usize; n],
}
let mut arrived = vec![None; n];
let mut count = 0;
let mut cursor = 1;
let mut heap = BinaryHeap::new();
for it in t.iter().enumerate() {
heap.push((Reverse(*it.1), it.0));
}
while let Some((time, node)) = heap.pop() {
if arrived[node].is_some() {
continue;
}
let time = time.0;
arrived[node] = time.into();
dbg!(arrived);
count += 1;
if count >= n {
break;
}
heap.push((Reverse(time + s[node]), (node + 1) % n));
}
for &t in arrived.iter() {
println!("{}", t.unwrap());
}
}
Ok(())
}
#[cfg(test)]
mod tests {
use super::*;
#[test]
fn sample1() {
assert_judge!(
process,
"
3
4 1 5
3 10 100
",
"
3
7
8
"
);
}
#[test]
fn sample2() {
assert_judge!(
process,
"
4
100 100 100 100
1 1 1 1
",
"
1
1
1
1
"
);
}
#[test]
fn sample3() {
assert_judge!(
process,
"
4
1 2 3 4
1 2 4 7
",
"
1
2
4
7
"
);
}
#[test]
fn sample4() {
assert_judge!(
process,
"
8
84 87 78 16 94 36 87 93
50 22 63 28 91 60 64 27
",
"
50
22
63
28
44
60
64
27
"
);
}
}
Submission Info
| Submission Time |
|
| Task |
C - Distribution |
| User |
occar421 |
| Language |
Rust (1.42.0) |
| Score |
300 |
| Code Size |
17600 Byte |
| Status |
AC |
| Exec Time |
162 ms |
| Memory |
12020 KiB |
Judge Result
| Set Name |
Sample |
All |
| Score / Max Score |
0 / 0 |
300 / 300 |
| Status |
|
|
| Set Name |
Test Cases |
| Sample |
sample_00.txt, sample_01.txt, sample_02.txt, sample_03.txt |
| All |
case_00.txt, case_01.txt, case_02.txt, case_03.txt, case_04.txt, case_05.txt, case_06.txt, case_07.txt, case_08.txt, case_09.txt, case_10.txt, case_11.txt, case_12.txt, case_13.txt, case_14.txt, case_15.txt, case_16.txt, case_17.txt, case_18.txt, case_19.txt, case_20.txt, case_21.txt, case_22.txt, case_23.txt, case_24.txt, case_25.txt, case_26.txt, case_27.txt, sample_00.txt, sample_01.txt, sample_02.txt, sample_03.txt |
| Case Name |
Status |
Exec Time |
Memory |
| case_00.txt |
AC |
162 ms |
11756 KiB |
| case_01.txt |
AC |
131 ms |
12020 KiB |
| case_02.txt |
AC |
30 ms |
2920 KiB |
| case_03.txt |
AC |
5 ms |
2096 KiB |
| case_04.txt |
AC |
90 ms |
6316 KiB |
| case_05.txt |
AC |
34 ms |
3420 KiB |
| case_06.txt |
AC |
115 ms |
8676 KiB |
| case_07.txt |
AC |
61 ms |
5280 KiB |
| case_08.txt |
AC |
103 ms |
7884 KiB |
| case_09.txt |
AC |
154 ms |
11416 KiB |
| case_10.txt |
AC |
18 ms |
2476 KiB |
| case_11.txt |
AC |
55 ms |
4676 KiB |
| case_12.txt |
AC |
50 ms |
3980 KiB |
| case_13.txt |
AC |
139 ms |
10172 KiB |
| case_14.txt |
AC |
13 ms |
2264 KiB |
| case_15.txt |
AC |
73 ms |
5996 KiB |
| case_16.txt |
AC |
88 ms |
6912 KiB |
| case_17.txt |
AC |
96 ms |
7660 KiB |
| case_18.txt |
AC |
113 ms |
8624 KiB |
| case_19.txt |
AC |
124 ms |
9292 KiB |
| case_20.txt |
AC |
128 ms |
9484 KiB |
| case_21.txt |
AC |
123 ms |
9300 KiB |
| case_22.txt |
AC |
97 ms |
11396 KiB |
| case_23.txt |
AC |
98 ms |
11472 KiB |
| case_24.txt |
AC |
99 ms |
11432 KiB |
| case_25.txt |
AC |
99 ms |
11548 KiB |
| case_26.txt |
AC |
101 ms |
11528 KiB |
| case_27.txt |
AC |
101 ms |
11516 KiB |
| sample_00.txt |
AC |
2 ms |
1996 KiB |
| sample_01.txt |
AC |
2 ms |
2064 KiB |
| sample_02.txt |
AC |
1 ms |
2048 KiB |
| sample_03.txt |
AC |
1 ms |
2120 KiB |