結果

問題 No.1905 PURE PHRASE
ユーザー to-omerto-omer
提出日時 2022-04-15 21:45:56
言語 Rust
(1.72.1)
結果
AC  
実行時間 8 ms / 2,000 ms
コード長 32,790 bytes
コンパイル時間 1,767 ms
コンパイル使用メモリ 185,424 KB
実行使用メモリ 5,052 KB
最終ジャッジ日時 2023-08-26 07:44:40
合計ジャッジ時間 3,730 ms
ジャッジサーバーID
(参考情報)
judge13 / judge11
このコードへのチャレンジ(β)

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 7 ms
5,052 KB
testcase_01 AC 7 ms
4,900 KB
testcase_02 AC 8 ms
4,952 KB
testcase_03 AC 8 ms
4,856 KB
testcase_04 AC 8 ms
5,008 KB
testcase_05 AC 7 ms
4,924 KB
testcase_06 AC 8 ms
4,984 KB
testcase_07 AC 8 ms
4,984 KB
testcase_08 AC 8 ms
4,992 KB
testcase_09 AC 8 ms
5,020 KB
testcase_10 AC 8 ms
4,924 KB
testcase_11 AC 7 ms
4,896 KB
testcase_12 AC 8 ms
4,924 KB
testcase_13 AC 8 ms
4,920 KB
testcase_14 AC 8 ms
4,976 KB
testcase_15 AC 7 ms
5,000 KB
testcase_16 AC 7 ms
4,988 KB
testcase_17 AC 7 ms
5,008 KB
testcase_18 AC 8 ms
4,924 KB
testcase_19 AC 7 ms
5,052 KB
testcase_20 AC 8 ms
4,996 KB
testcase_21 AC 7 ms
4,852 KB
testcase_22 AC 8 ms
4,824 KB
testcase_23 AC 7 ms
4,984 KB
testcase_24 AC 8 ms
4,948 KB
testcase_25 AC 7 ms
4,996 KB
testcase_26 AC 7 ms
4,908 KB
testcase_27 AC 7 ms
4,912 KB
testcase_28 AC 8 ms
4,976 KB
testcase_29 AC 7 ms
4,920 KB
testcase_30 AC 8 ms
5,004 KB
testcase_31 AC 7 ms
4,924 KB
testcase_32 AC 8 ms
4,920 KB
testcase_33 AC 8 ms
4,980 KB
testcase_34 AC 8 ms
5,024 KB
testcase_35 AC 8 ms
4,956 KB
testcase_36 AC 8 ms
5,024 KB
testcase_37 AC 8 ms
5,044 KB
testcase_38 AC 8 ms
5,048 KB
testcase_39 AC 7 ms
5,000 KB
testcase_40 AC 8 ms
4,916 KB
権限があれば一括ダウンロードができます

ソースコード

diff #

pub fn main() {
    crate::prepare!();
    sc!(n, a: [i64; n]);
    let mut m = 1usize;
    while m < n {
        m *= 2;
    }
    let mut f: Vec<_> = a.iter().map(|x| Complex::new(*x as f64, 0.)).collect();
    f.resize_with(m, Default::default);
    let g = fast_fourier_transform_impls::fast_fourier_transform(f, false);
    let name = vec!["C4", "D4", "E4", "F4", "G4", "A4", "B4"];
    let b = vec![261.6, 294.3, 327.0, 348.8, 392.4, 436.0, 490.5];
    let ans = b
        .iter()
        .enumerate()
        .max_by_key(|(_, &b)| {
            let k = (b as f64 * m as f64 / n as f64).floor() as usize;
            let c = (k.saturating_sub(1)..(k + 1).min(g.len())).len();
            let p = g[k.saturating_sub(1)..(k + 1).min(g.len())]
                .iter()
                .map(|x| x.abs())
                .sum::<f64>();
            TotalOrd(p / c as f64)
        })
        .map(|(i, _)| name[i])
        .unwrap();
    pp!(ans);
}
#[allow(unused_imports)]use std::{cmp::{Ordering,Reverse},collections::{BTreeMap,BTreeSet,BinaryHeap,HashMap,HashSet,VecDeque}};
mod main_macros{#[doc=" Prepare useful macros."]#[doc=" - `prepare!();`: default (all input scanner (`sc!`, `sv!`) + buf print (`pp!`))"]#[doc=" - `prepare!(?);`: interactive (line scanner (`scln!`) + buf print (`pp!`))"]#[macro_export]macro_rules!prepare{(@normal($dol:tt))=>{#[allow(unused_imports)]use std::io::Write as _;let __out=std::io::stdout();#[allow(unused_mut,unused_variables)]let mut __out=std::io::BufWriter::new(__out.lock());#[allow(unused_macros)]macro_rules!pp{($dol($dol t:tt)*)=>{$dol crate::iter_print!(__out,$dol($dol t)*)}}let __in_buf=read_stdin_all_unchecked();#[allow(unused_mut,unused_variables)]let mut __scanner=Scanner::new(&__in_buf);#[allow(unused_macros)]macro_rules!sc{($dol($dol t:tt)*)=>{$dol crate::scan!(__scanner,$dol($dol t)*)}}#[allow(unused_macros)]macro_rules!sv{($dol($dol t:tt)*)=>{$dol crate::scan_value!(__scanner,$dol($dol t)*)}}};(@interactive($dol:tt))=>{#[allow(unused_imports)]use std::io::Write as _;let __out=std::io::stdout();#[allow(unused_mut,unused_variables)]let mut __out=std::io::BufWriter::new(__out.lock());#[allow(unused_macros)]#[doc=" - to flush: `pp!(@flush);`"]macro_rules!pp{($dol($dol t:tt)*)=>{$dol crate::iter_print!(__out,$dol($dol t)*)}}#[allow(unused_macros)]#[doc=" Scan a line, and previous line will be truncated in the next call."]macro_rules!scln{($dol($dol t:tt)*)=>{let __in_buf=read_stdin_line();#[allow(unused_mut,unused_variables)]let mut __scanner=Scanner::new(&__in_buf);$dol crate::scan!(__scanner,$dol($dol t)*)}}};()=>{$crate::prepare!(@normal($))};(?)=>{$crate::prepare!(@interactive($))};}}
pub use self::iter_print::IterPrint;
mod iter_print{use std::{fmt::Display,io::{Error,Write}};pub trait IterPrint{fn iter_print<W,S>(self,writer:&mut W,sep:S,is_head:bool)->Result<(),Error>where W:Write,S:Display;}macro_rules!iter_print_tuple_impl{(@impl$($A:ident$a:ident)?,$($B:ident$b:ident)*)=>{impl<$($A,)?$($B),*>IterPrint for($($A,)?$($B),*)where$($A:Display,)?$($B:Display),*{#[allow(unused_variables)]fn iter_print<W,S>(self,writer:&mut W,sep:S,is_head:bool)->Result<(),Error>where W:Write,S:Display{let($($a,)?$($b,)*)=self;$(if is_head{::std::write!(writer,"{}",$a)?;}else{::std::write!(writer,"{}{}",sep,$a)?;})?$(::std::write!(writer,"{}{}",sep,$b)?;)*Ok(())}}};(@inc,,$C:ident$c:ident$($D:ident$d:ident)*)=>{iter_print_tuple_impl!(@impl,);iter_print_tuple_impl!(@inc$C$c,,$($D$d)*);};(@inc$A:ident$a:ident,$($B:ident$b:ident)*,$C:ident$c:ident$($D:ident$d:ident)*)=>{iter_print_tuple_impl!(@impl$A$a,$($B$b)*);iter_print_tuple_impl!(@inc$A$a,$($B$b)*$C$c,$($D$d)*);};(@inc$A:ident$a:ident,$($B:ident$b:ident)*,)=>{iter_print_tuple_impl!(@impl$A$a,$($B$b)*);};($($t:tt)*)=>{iter_print_tuple_impl!(@inc,,$($t)*);};}iter_print_tuple_impl!(A a B b C c D d E e F f G g H h I i J j K k);#[doc=" Print expressions with a separator."]#[doc=" - `iter_print!(writer, args...)`"]#[doc=" - `@sep $expr`: set separator (default: `' '`)"]#[doc=" - `@fmt $lit => {$($expr),*}`: print `format!($lit, $($expr),*)`"]#[doc=" - `@flush`: flush writer (auto insert `!`)"]#[doc=" - `@iter $expr`: print iterator"]#[doc=" - `@iterns $expr`: print iterator with no separators"]#[doc=" - `@iterln $expr`: print iterator with separator `'\\n'`"]#[doc=" - `@iter2d $expr`: print 2d-iterator"]#[doc=" - `@tuple $expr`: print tuple (need to import [`IterPrint`], each elements impls `Display`)"]#[doc=" - `$expr`: print expr"]#[doc=" - `;`: print `'\\n'`"]#[doc=" - `!`: not print `'\\n'` at the end"]#[macro_export]macro_rules!iter_print{(@@fmt$writer:expr,$sep:expr,$is_head:expr,$lit:literal,$($e:expr),*)=>{if!$is_head{::std::write!($writer,"{}",$sep).expect("io error");}::std::write!($writer,$lit,$($e),*).expect("io error");};(@@item$writer:expr,$sep:expr,$is_head:expr,$e:expr)=>{$crate::iter_print!(@@fmt$writer,$sep,$is_head,"{}",$e);};(@@line_feed$writer:expr$(,)?)=>{::std::writeln!($writer).expect("io error");};(@@iter$writer:expr,$sep:expr,$is_head:expr,$iter:expr)=>{{let mut iter=$iter.into_iter();if let Some(item)=iter.next(){$crate::iter_print!(@@item$writer,$sep,$is_head,item);}for item in iter{$crate::iter_print!(@@item$writer,$sep,false,item);}}};(@@iterns$writer:expr,$sep:expr,$is_head:expr,$iter:expr)=>{{let mut iter=$iter.into_iter();if let Some(item)=iter.next(){$crate::iter_print!(@@item$writer,$sep,$is_head,item);}for item in iter{$crate::iter_print!(@@item$writer,$sep,true,item);}}};(@@iterln$writer:expr,$sep:expr,$is_head:expr,$iter:expr)=>{{let mut iter=$iter.into_iter();if let Some(item)=iter.next(){$crate::iter_print!(@@item$writer,'\n',$is_head,item);}for item in iter{$crate::iter_print!(@@item$writer,'\n',false,item);}}};(@@iter2d$writer:expr,$sep:expr,$is_head:expr,$iter:expr)=>{let mut iter=$iter.into_iter();if let Some(item)=iter.next(){$crate::iter_print!(@@iter$writer,$sep,$is_head,item);}for item in iter{$crate::iter_print!(@@line_feed$writer);$crate::iter_print!(@@iter$writer,$sep,true,item);}};(@@tuple$writer:expr,$sep:expr,$is_head:expr,$tuple:expr)=>{IterPrint::iter_print($tuple,&mut$writer,$sep,$is_head).expect("io error");};(@@assert_tag item)=>{};(@@assert_tag iter)=>{};(@@assert_tag iterns)=>{};(@@assert_tag iterln)=>{};(@@assert_tag iter2d)=>{};(@@assert_tag tuple)=>{};(@@assert_tag$tag:ident)=>{::std::compile_error!(::std::concat!("invalid tag in `iter_print!`: `",std::stringify!($tag),"`"));};(@@inner$writer:expr,$sep:expr,$is_head:expr,@sep$e:expr,$($t:tt)*)=>{$crate::iter_print!(@@inner$writer,$e,$is_head,$($t)*);};(@@inner$writer:expr,$sep:expr,$is_head:expr,@flush$($t:tt)*)=>{$writer.flush().expect("io error");$crate::iter_print!(@@inner$writer,$sep,$is_head,!$($t)*);};(@@inner$writer:expr,$sep:expr,$is_head:expr,@fmt$lit:literal=>{$($e:expr),*$(,)?}$($t:tt)*)=>{$crate::iter_print!(@@fmt$writer,$sep,$is_head,$lit,$($e),*);$crate::iter_print!(@@inner$writer,$sep,$is_head,$($t)*);};(@@inner$writer:expr,$sep:expr,$is_head:expr,@$tag:ident$e:expr,$($t:tt)*)=>{$crate::iter_print!(@@assert_tag$tag);$crate::iter_print!(@@$tag$writer,$sep,$is_head,$e);$crate::iter_print!(@@inner$writer,$sep,false,$($t)*);};(@@inner$writer:expr,$sep:expr,$is_head:expr,@$tag:ident$e:expr;$($t:tt)*)=>{$crate::iter_print!(@@assert_tag$tag);$crate::iter_print!(@@$tag$writer,$sep,$is_head,$e);$crate::iter_print!(@@line_feed$writer);$crate::iter_print!(@@inner$writer,$sep,true,$($t)*);};(@@inner$writer:expr,$sep:expr,$is_head:expr,@$tag:ident$e:expr)=>{$crate::iter_print!(@@assert_tag$tag);$crate::iter_print!(@@$tag$writer,$sep,$is_head,$e);$crate::iter_print!(@@inner$writer,$sep,false,);};(@@inner$writer:expr,$sep:expr,$is_head:expr,@$tag:ident$($t:tt)*)=>{::std::compile_error!(::std::concat!("invalid expr in `iter_print!`: `",std::stringify!($($t)*),"`"));};(@@inner$writer:expr,$sep:expr,$is_head:expr,,$($t:tt)*)=>{$crate::iter_print!(@@inner$writer,$sep,$is_head,$($t)*);};(@@inner$writer:expr,$sep:expr,$is_head:expr,;$($t:tt)*)=>{$crate::iter_print!(@@line_feed$writer);$crate::iter_print!(@@inner$writer,$sep,$is_head,$($t)*);};(@@inner$writer:expr,$sep:expr,$is_head:expr,!$(,)?)=>{};(@@inner$writer:expr,$sep:expr,$is_head:expr,!$($t:tt)*)=>{$crate::iter_print!(@@inner$writer,$sep,$is_head,$($t)*);};(@@inner$writer:expr,$sep:expr,$is_head:expr,)=>{$crate::iter_print!(@@line_feed$writer);};(@@inner$writer:expr,$sep:expr,$is_head:expr,$($t:tt)*)=>{$crate::iter_print!(@@inner$writer,$sep,$is_head,@item$($t)*);};($writer:expr,$($t:tt)*)=>{{$crate::iter_print!(@@inner$writer,' ',true,$($t)*);}};}}
pub use self::scanner::*;
mod scanner{use std::{iter::{from_fn,repeat_with,FromIterator},marker::PhantomData};pub fn read_stdin_all()->String{use std::io::Read as _;let mut s=String::new();std::io::stdin().read_to_string(&mut s).expect("io error");s}pub fn read_stdin_all_unchecked()->String{use std::io::Read as _;let mut buf=Vec::new();std::io::stdin().read_to_end(&mut buf).expect("io error");unsafe{String::from_utf8_unchecked(buf)}}pub fn read_all(mut reader:impl std::io::Read)->String{let mut s=String::new();reader.read_to_string(&mut s).expect("io error");s}pub fn read_all_unchecked(mut reader:impl std::io::Read)->String{let mut buf=Vec::new();reader.read_to_end(&mut buf).expect("io error");unsafe{String::from_utf8_unchecked(buf)}}pub fn read_stdin_line()->String{let mut s=String::new();std::io::stdin().read_line(&mut s).expect("io error");s}pub trait IterScan:Sized{type Output;fn scan<'a,I:Iterator<Item=&'a str>>(iter:&mut I)->Option<Self::Output>;}pub trait MarkedIterScan:Sized{type Output;fn mscan<'a,I:Iterator<Item=&'a str>>(self,iter:&mut I)->Option<Self::Output>;}#[derive(Clone,Debug)]pub struct Scanner<'a>{iter:std::str::SplitAsciiWhitespace<'a>}impl<'a>Scanner<'a>{#[inline]pub fn new(s:&'a str)->Self{let iter=s.split_ascii_whitespace();Self{iter}}#[inline]pub fn scan<T>(&mut self)-><T as IterScan>::Output where T:IterScan{<T as IterScan>::scan(&mut self.iter).expect("scan error")}#[inline]pub fn mscan<T>(&mut self,marker:T)-><T as MarkedIterScan>::Output where T:MarkedIterScan{marker.mscan(&mut self.iter).expect("scan error")}#[inline]pub fn scan_vec<T>(&mut self,size:usize)->Vec<<T as IterScan>::Output>where T:IterScan{(0..size).map(|_|<T as IterScan>::scan(&mut self.iter).expect("scan error")).collect()}#[inline]pub fn iter<'b,T>(&'b mut self)->ScannerIter<'a,'b,T>where T:IterScan{ScannerIter{inner:self,_marker:std::marker::PhantomData}}}macro_rules!iter_scan_impls{($($t:ty)*)=>{$(impl IterScan for$t{type Output=Self;#[inline]fn scan<'a,I:Iterator<Item=&'a str>>(iter:&mut I)->Option<Self>{iter.next()?.parse::<$t>().ok()}})*};}iter_scan_impls!(char u8 u16 u32 u64 usize i8 i16 i32 i64 isize f32 f64 u128 i128 String);macro_rules!iter_scan_tuple_impl{(@impl$($T:ident)*)=>{impl<$($T:IterScan),*>IterScan for($($T,)*){type Output=($(<$T as IterScan>::Output,)*);#[inline]fn scan<'a,It:Iterator<Item=&'a str>>(_iter:&mut It)->Option<Self::Output>{Some(($(<$T as IterScan>::scan(_iter)?,)*))}}};(@inner$($T:ident)*,)=>{iter_scan_tuple_impl!(@impl$($T)*);};(@inner$($T:ident)*,$U:ident$($Rest:ident)*)=>{iter_scan_tuple_impl!(@impl$($T)*);iter_scan_tuple_impl!(@inner$($T)*$U,$($Rest)*);};($($T:ident)*)=>{iter_scan_tuple_impl!(@inner,$($T)*);};}iter_scan_tuple_impl!(A B C D E F G H I J K);pub struct ScannerIter<'a,'b,T>{inner:&'b mut Scanner<'a>,_marker:std::marker::PhantomData<fn()->T>}impl<'a,'b,T>Iterator for ScannerIter<'a,'b,T>where T:IterScan{type Item=<T as IterScan>::Output;#[inline]fn next(&mut self)->Option<Self::Item>{<T as IterScan>::scan(&mut self.inner.iter)}}#[doc=" - `scan_value!(scanner, ELEMENT)`"]#[doc=""]#[doc=" ELEMENT :="]#[doc=" - `$ty`: IterScan"]#[doc=" - `@$expr`: MarkedIterScan"]#[doc=" - `[ELEMENT; $expr]`: vector"]#[doc=" - `[ELEMENT]`: iterator"]#[doc=" - `($(ELEMENT)*,)`: tuple"]#[macro_export]macro_rules!scan_value{(@repeat$scanner:expr,[$($t:tt)*]$($len:expr)?)=>{::std::iter::repeat_with(||$crate::scan_value!(@inner$scanner,[]$($t)*))$(.take($len).collect::<Vec<_>>())?};(@tuple$scanner:expr,[$([$($args:tt)*])*])=>{($($($args)*,)*)};(@$tag:ident$scanner:expr,[[$($args:tt)*]])=>{$($args)*};(@$tag:ident$scanner:expr,[$($args:tt)*]@$e:expr)=>{$crate::scan_value!(@$tag$scanner,[$($args)*[$scanner.mscan($e)]])};(@$tag:ident$scanner:expr,[$($args:tt)*]@$e:expr,$($t:tt)*)=>{$crate::scan_value!(@$tag$scanner,[$($args)*[$scanner.mscan($e)]]$($t)*)};(@$tag:ident$scanner:expr,[$($args:tt)*]($($tuple:tt)*)$($t:tt)*)=>{$crate::scan_value!(@$tag$scanner,[$($args)*[$crate::scan_value!(@tuple$scanner,[]$($tuple)*)]]$($t)*)};(@$tag:ident$scanner:expr,[$($args:tt)*][@$e:expr;$len:expr]$($t:tt)*)=>{$crate::scan_value!(@$tag$scanner,[$($args)*[$crate::scan_value!(@repeat$scanner,[@$e]$len)]]$($t)*)};(@$tag:ident$scanner:expr,[$($args:tt)*][[$($tt:tt)*];$len:expr]$($t:tt)*)=>{$crate::scan_value!(@$tag$scanner,[$($args)*[$crate::scan_value!(@repeat$scanner,[[$($tt)*]]$len)]]$($t)*)};(@$tag:ident$scanner:expr,[$($args:tt)*][($($tt:tt)*);$len:expr]$($t:tt)*)=>{$crate::scan_value!(@$tag$scanner,[$($args)*[$crate::scan_value!(@repeat$scanner,[($($tt)*)]$len)]]$($t)*)};(@$tag:ident$scanner:expr,[$($args:tt)*][$ty:ty;$len:expr]$($t:tt)*)=>{$crate::scan_value!(@$tag$scanner,[$($args)*[$crate::scan_value!(@repeat$scanner,[$ty]$len)]]$($t)*)};(@$tag:ident$scanner:expr,[$($args:tt)*][$($tt:tt)*]$($t:tt)*)=>{$crate::scan_value!(@$tag$scanner,[$($args)*[$crate::scan_value!(@repeat$scanner,[$($tt)*])]]$($t)*)};(@$tag:ident$scanner:expr,[$($args:tt)*]$ty:ty)=>{$crate::scan_value!(@$tag$scanner,[$($args)*[$scanner.scan::<$ty>()]])};(@$tag:ident$scanner:expr,[$($args:tt)*]$ty:ty,$($t:tt)*)=>{$crate::scan_value!(@$tag$scanner,[$($args)*[$scanner.scan::<$ty>()]]$($t)*)};(@$tag:ident$scanner:expr,[$($args:tt)*],$($t:tt)*)=>{$crate::scan_value!(@$tag$scanner,[$($args)*]$($t)*)};(@$tag:ident$scanner:expr,[$($args:tt)*])=>{::std::compile_error!(::std::stringify!($($args)*))};($scanner:expr,$($t:tt)*)=>{$crate::scan_value!(@inner$scanner,[]$($t)*)}}#[doc=" - `scan!(scanner, $($pat $(: ELEMENT)?),*)`"]#[macro_export]macro_rules!scan{(@assert$p:pat)=>{};(@assert$($p:tt)*)=>{::std::compile_error!(::std::concat!("expected pattern, found `",::std::stringify!($($p)*),"`"));};(@pat$scanner:expr,[][])=>{};(@pat$scanner:expr,[][],$($t:tt)*)=>{$crate::scan!(@pat$scanner,[][]$($t)*)};(@pat$scanner:expr,[$($p:tt)*][]$x:ident$($t:tt)*)=>{$crate::scan!(@pat$scanner,[$($p)*$x][]$($t)*)};(@pat$scanner:expr,[$($p:tt)*][]::$($t:tt)*)=>{$crate::scan!(@pat$scanner,[$($p)*::][]$($t)*)};(@pat$scanner:expr,[$($p:tt)*][]&$($t:tt)*)=>{$crate::scan!(@pat$scanner,[$($p)*&][]$($t)*)};(@pat$scanner:expr,[$($p:tt)*][]($($x:tt)*)$($t:tt)*)=>{$crate::scan!(@pat$scanner,[$($p)*($($x)*)][]$($t)*)};(@pat$scanner:expr,[$($p:tt)*][][$($x:tt)*]$($t:tt)*)=>{$crate::scan!(@pat$scanner,[$($p)*[$($x)*]][]$($t)*)};(@pat$scanner:expr,[$($p:tt)*][]{$($x:tt)*}$($t:tt)*)=>{$crate::scan!(@pat$scanner,[$($p)*{$($x)*}][]$($t)*)};(@pat$scanner:expr,[$($p:tt)*][]:$($t:tt)*)=>{$crate::scan!(@ty$scanner,[$($p)*][]$($t)*)};(@pat$scanner:expr,[$($p:tt)*][]$($t:tt)*)=>{$crate::scan!(@let$scanner,[$($p)*][usize]$($t)*)};(@ty$scanner:expr,[$($p:tt)*][$($tt:tt)*]@$e:expr)=>{$crate::scan!(@let$scanner,[$($p)*][$($tt)*@$e])};(@ty$scanner:expr,[$($p:tt)*][$($tt:tt)*]@$e:expr,$($t:tt)*)=>{$crate::scan!(@let$scanner,[$($p)*][$($tt)*@$e],$($t)*)};(@ty$scanner:expr,[$($p:tt)*][$($tt:tt)*]($($x:tt)*)$($t:tt)*)=>{$crate::scan!(@let$scanner,[$($p)*][$($tt)*($($x)*)]$($t)*)};(@ty$scanner:expr,[$($p:tt)*][$($tt:tt)*][$($x:tt)*]$($t:tt)*)=>{$crate::scan!(@let$scanner,[$($p)*][$($tt)*[$($x)*]]$($t)*)};(@ty$scanner:expr,[$($p:tt)*][$($tt:tt)*]$ty:ty)=>{$crate::scan!(@let$scanner,[$($p)*][$($tt)*$ty])};(@ty$scanner:expr,[$($p:tt)*][$($tt:tt)*]$ty:ty,$($t:tt)*)=>{$crate::scan!(@let$scanner,[$($p)*][$($tt)*$ty],$($t)*)};(@let$scanner:expr,[$($p:tt)*][$($tt:tt)*]$($t:tt)*)=>{$crate::scan!{@assert$($p)*}let$($p)* =$crate::scan_value!($scanner,$($tt)*);$crate::scan!(@pat$scanner,[][]$($t)*)};($scanner:expr,$($t:tt)*)=>{$crate::scan!(@pat$scanner,[][]$($t)*)}}#[derive(Debug,Copy,Clone)]pub struct Usize1;impl IterScan for Usize1{type Output=usize;#[inline]fn scan<'a,I:Iterator<Item=&'a str>>(iter:&mut I)->Option<Self::Output>{<usize as IterScan>::scan(iter)?.checked_sub(1)}}#[derive(Debug,Copy,Clone)]pub struct CharWithBase(pub char);impl MarkedIterScan for CharWithBase{type Output=usize;#[inline]fn mscan<'a,I:Iterator<Item=&'a str>>(self,iter:&mut I)->Option<Self::Output>{Some((<char as IterScan>::scan(iter)?as u8-self.0 as u8)as usize)}}#[derive(Debug,Copy,Clone)]pub struct Chars;impl IterScan for Chars{type Output=Vec<char>;#[inline]fn scan<'a,I:Iterator<Item=&'a str>>(iter:&mut I)->Option<Self::Output>{Some(iter.next()?.chars().collect())}}#[derive(Debug,Copy,Clone)]pub struct CharsWithBase(pub char);impl MarkedIterScan for CharsWithBase{type Output=Vec<usize>;#[inline]fn mscan<'a,I:Iterator<Item=&'a str>>(self,iter:&mut I)->Option<Self::Output>{Some(iter.next()?.chars().map(|c|(c as u8-self.0 as u8)as usize).collect())}}#[derive(Debug,Copy,Clone)]pub struct ByteWithBase(pub u8);impl MarkedIterScan for ByteWithBase{type Output=usize;#[inline]fn mscan<'a,I:Iterator<Item=&'a str>>(self,iter:&mut I)->Option<Self::Output>{Some((<char as IterScan>::scan(iter)?as u8-self.0)as usize)}}#[derive(Debug,Copy,Clone)]pub struct Bytes;impl IterScan for Bytes{type Output=Vec<u8>;#[inline]fn scan<'a,I:Iterator<Item=&'a str>>(iter:&mut I)->Option<Self::Output>{Some(iter.next()?.bytes().collect())}}#[derive(Debug,Copy,Clone)]pub struct BytesWithBase(pub u8);impl MarkedIterScan for BytesWithBase{type Output=Vec<usize>;#[inline]fn mscan<'a,I:Iterator<Item=&'a str>>(self,iter:&mut I)->Option<Self::Output>{Some(iter.next()?.bytes().map(|c|(c-self.0)as usize).collect())}}#[derive(Debug,Copy,Clone)]pub struct Collect<T,B=Vec<<T as IterScan>::Output>>where T:IterScan,B:FromIterator<<T as IterScan>::Output>{size:usize,_marker:PhantomData<fn()->(T,B)>}impl<T,B>Collect<T,B>where T:IterScan,B:FromIterator<<T as IterScan>::Output>{pub fn new(size:usize)->Self{Self{size,_marker:PhantomData}}}impl<T,B>MarkedIterScan for Collect<T,B>where T:IterScan,B:FromIterator<<T as IterScan>::Output>{type Output=B;#[inline]fn mscan<'a,I:Iterator<Item=&'a str>>(self,iter:&mut I)->Option<Self::Output>{repeat_with(||<T as IterScan>::scan(iter)).take(self.size).collect()}}#[derive(Debug,Copy,Clone)]pub struct SizedCollect<T,B=Vec<<T as IterScan>::Output>>where T:IterScan,B:FromIterator<<T as IterScan>::Output>{_marker:PhantomData<fn()->(T,B)>}impl<T,B>IterScan for SizedCollect<T,B>where T:IterScan,B:FromIterator<<T as IterScan>::Output>{type Output=B;#[inline]fn scan<'a,I:Iterator<Item=&'a str>>(iter:&mut I)->Option<Self::Output>{let size=usize::scan(iter)?;repeat_with(||<T as IterScan>::scan(iter)).take(size).collect()}}#[derive(Debug,Copy,Clone)]pub struct Splitted<T,P>where T:IterScan{pat:P,_marker:PhantomData<fn()->T>}impl<T,P>Splitted<T,P>where T:IterScan{pub fn new(pat:P)->Self{Self{pat,_marker:PhantomData}}}impl<T>MarkedIterScan for Splitted<T,char>where T:IterScan{type Output=Vec<<T as IterScan>::Output>;fn mscan<'a,I:Iterator<Item=&'a str>>(self,iter:&mut I)->Option<Self::Output>{let mut iter=iter.next()?.split(self.pat);Some(from_fn(||<T as IterScan>::scan(&mut iter)).collect())}}impl<T>MarkedIterScan for Splitted<T,&str>where T:IterScan{type Output=Vec<<T as IterScan>::Output>;fn mscan<'a,I:Iterator<Item=&'a str>>(self,iter:&mut I)->Option<Self::Output>{let mut iter=iter.next()?.split(self.pat);Some(from_fn(||<T as IterScan>::scan(&mut iter)).collect())}}impl<T,F>MarkedIterScan for F where F:Fn(&str)->Option<T>{type Output=T;fn mscan<'a,I:Iterator<Item=&'a str>>(self,iter:&mut I)->Option<Self::Output>{self(iter.next()?)}}}
pub use fast_fourier_transform_impls::convolve_fft;
pub mod fast_fourier_transform_impls{use super::*;struct RotateCache;impl RotateCache{fn ensure(n:usize){assert_eq!(n.count_ones(),1,"call with power of two but {}",n);Self::modify(|cache|{let mut m=cache.len();assert!(m.count_ones()<=1,"length might be power of two but {}",m);if m>=n{return;}cache.reserve_exact(n-m);if cache.is_empty(){cache.push(Complex::one());m+=1;}while m<n{let p=Complex::polar(1.,-std::f64::consts::PI/(m*2)as f64);for i in 0..m{cache.push(cache[i]*p);}m<<=1;}assert_eq!(cache.len(),n);});}}crate::impl_assoc_value!(RotateCache,Vec<Complex<f64>>,vec![Complex::one()]);pub fn convolve_fft<IA,T,IB,U>(a:IA,b:IB)->Vec<i64>where T:Into<f64>,U:Into<f64>,IA:IntoIterator<Item=T>,IA::IntoIter:ExactSizeIterator,IB:IntoIterator<Item=U>,IB::IntoIter:ExactSizeIterator{let a=a.into_iter();let b=b.into_iter();let alen=a.len();let blen=b.len();assert_ne!(alen,0,"empty sequence on first argument");assert_ne!(blen,0,"empty sequence on second argument");let m=alen+blen-1;let n=(std::cmp::max(m,2)).next_power_of_two();let mut c=vec![Complex::zero();n];for(c,a)in c.iter_mut().zip(a){c.re=a.into();}for(c,b)in c.iter_mut().zip(b){c.im=b.into();}RotateCache::ensure(n/2);RotateCache::with(|cache|{fft(&mut c,cache);c[0]=Complex::new(0.,c[0].re*c[0].im);c[1]=Complex::new(0.,c[1].re*c[1].im);for i in(2..n).step_by(2){let j={let y=1<<(63-i.leading_zeros());(!i&(y-1))^y};c[i]=(c[i]+c[j].conjugate())*(c[i]-c[j].conjugate())/4.;c[j]=-c[i].conjugate();}for i in 0..n/2{let mut wi=cache[i]*Complex::i();wi.re+=1.;c[i]=c[i*2]-(c[i*2]-c[i*2+1])*wi/2.;}ifft(&mut c[..n/2],cache);});(0..m).map(|i|{(if i&1==0{c[i/2].im}else{c[i/2+1].re}/((n/2)as f64)).round()as _}).collect()}#[allow(clippy::needless_range_loop)]fn fft(a:&mut[Complex<f64>],cache:&[Complex<f64>]){let n=a.len();let mut u=1;let mut v=n/2;for i in(1..=n.trailing_zeros()).rev(){for jh in 0..u{let wj=cache[jh];for j in jh<<i..(jh<<i)+v{let ajv=wj*a[j+v];a[j+v]=a[j]-ajv;a[j]+=ajv;}}u<<=1;v>>=1;}}#[allow(clippy::needless_range_loop)]fn ifft(a:&mut[Complex<f64>],cache:&[Complex<f64>]){let n=a.len();let mut u=n/2;let mut v=1;for i in 1..=n.trailing_zeros(){for jh in 0..u{let wj=cache[jh].conjugate();for j in jh<<i..(jh<<i)+v{let ajv=a[j]-a[j+v];a[j]+=a[j+v];a[j+v]=wj*ajv;}}u>>=1;v<<=1;}}pub fn fast_fourier_transform(mut f:Vec<Complex<f64>>,inv:bool)->Vec<Complex<f64>>{let n=f.len();debug_assert!(n.count_ones()==1);let mask=n-1;const TAU:f64=2.*std::f64::consts::PI;let omega=if inv{-TAU/n as f64}else{TAU/n as f64};let mut g=vec![Complex::<f64>::default();n];let mut i=n/2;while i>=1{let t=Complex::polar(1.,omega*i as f64);let mut w=Complex::<f64>::one();for j in(0..n).step_by(i){for k in 0..i{g[j+k]=f[((j*2)&mask)+k]+w*f[((j*2+i)&mask)+k];}w*=t;}i/=2;std::mem::swap(&mut f,&mut g);}if inv{for a in f.iter_mut(){*a/=n as f64;}}f}}
pub use self::associated_value::AssociatedValue;
mod associated_value{#[doc=" Trait for a modifiable value associated with a type."]pub trait AssociatedValue{#[doc=" Type of value."]type T:'static+Clone;fn local_key()->&'static std::thread::LocalKey<std::cell::UnsafeCell<Self::T>>;#[inline]fn get()->Self::T{Self::with(Clone::clone)}#[inline]fn set(x:Self::T){Self::local_key().with(|cell|unsafe{*cell.get()=x})}#[inline]fn with<F,R>(f:F)->R where F:FnOnce(&Self::T)->R{Self::local_key().with(|cell|unsafe{f(&*cell.get())})}#[inline]fn modify<F,R>(f:F)->R where F:FnOnce(&mut Self::T)->R{Self::local_key().with(|cell|unsafe{f(&mut*cell.get())})}}#[doc=" Implement [`AssociatedValue`]."]#[doc=""]#[doc=" [`AssociatedValue`]: super::AssociatedValue"]#[doc=""]#[doc=" # Examples"]#[doc=""]#[doc=" ```"]#[doc=" use competitive::tools::AssociatedValue;"]#[doc=" struct X;"]#[doc=" competitive::impl_assoc_value!(X, usize, 1);"]#[doc=" assert_eq!(X::get(), 1);"]#[doc=" X::set(10);"]#[doc=" assert_eq!(X::get(), 10);"]#[doc=" ```"]#[doc=""]#[doc=" init with `Default::default()`"]#[doc=""]#[doc=" ```"]#[doc=" use competitive::tools::AssociatedValue;"]#[doc=" struct X;"]#[doc=" competitive::impl_assoc_value!(X, usize);"]#[doc=" assert_eq!(X::get(), Default::default());"]#[doc=" ```"]#[macro_export]macro_rules!impl_assoc_value{($name:ident,$t:ty)=>{$crate::impl_assoc_value!($name,$t,Default::default());};($name:ident,$t:ty,$e:expr)=>{impl AssociatedValue for$name{type T=$t;#[inline]fn local_key()->&'static::std::thread::LocalKey<::std::cell::UnsafeCell<Self::T>>{::std::thread_local!(static __LOCAL_KEY: ::std::cell::UnsafeCell<$t> =::std::cell::UnsafeCell::new($e));&__LOCAL_KEY}}};}}
pub use self::complex::Complex;
mod complex{use super::{IterScan,One,Zero};use std::{cmp::Ordering,iter::{Product,Sum},ops::{Add,AddAssign,Div,DivAssign,Mul,MulAssign,Neg,Sub,SubAssign}};#[derive(Clone,Copy,Debug,Default,PartialEq,Eq,PartialOrd,Ord,Hash)]pub struct Complex<T>{pub re:T,pub im:T}impl<T>Complex<T>{pub fn new(re:T,im:T)->Self{Complex{re,im}}pub fn transpose(self)->Self{Complex{re:self.im,im:self.re}}}impl<T>Zero for Complex<T>where T:Zero{fn zero()->Self{Self::new(T::zero(),T::zero())}}impl<T>One for Complex<T>where T:Zero+One{fn one()->Self{Self::new(T::one(),T::zero())}}impl<T>Complex<T>where T:Zero+One{pub fn i()->Self{Self::new(T::zero(),T::one())}}impl<T>Complex<T>where T:Neg<Output=T>{pub fn conjugate(self)->Self{Self::new(self.re,-self.im)}}impl<T>Complex<T>where T:Mul,<T as Mul>::Output:Add{pub fn dot(self,rhs:Self)-><<T as Mul>::Output as Add>::Output{self.re*rhs.re+self.im*rhs.im}}impl<T>Complex<T>where T:Mul,<T as Mul>::Output:Sub{pub fn cross(self,rhs:Self)-><<T as Mul>::Output as Sub>::Output{self.re*rhs.im-self.im*rhs.re}}impl<T>Complex<T>where T:Mul+Clone,<T as Mul>::Output:Add{pub fn norm(self)-><<T as Mul>::Output as Add>::Output{self.re.clone()*self.re+self.im.clone()*self.im}}impl<T>Complex<T>where T:Zero+Ord+Mul,<T as Mul>::Output:Ord{pub fn cmp_by_arg(self,other:Self)->Ordering{fn pos<T>(c:&Complex<T>)->bool where T:Zero+Ord{let zero=T::zero();c.im<zero||c.im<=zero&&c.re<zero}pos(&self).cmp(&pos(&other)).then_with(||(self.re*other.im).cmp(&(self.im*other.re)).reverse())}}impl Complex<f64>{pub fn polar(r:f64,theta:f64)->Self{Self::new(r*theta.cos(),r*theta.sin())}pub fn abs(self)->f64{self.re.hypot(self.im)}pub fn unit(self)->Self{self/self.abs()}pub fn angle(self)->f64{self.im.atan2(self.re)}}impl<T>Add for Complex<T>where T:Add{type Output=Complex<<T as Add>::Output>;fn add(self,rhs:Self)->Self::Output{Complex::new(self.re+rhs.re,self.im+rhs.im)}}impl<T>Add<T>for Complex<T>where T:Add<Output=T>{type Output=Self;fn add(self,rhs:T)->Self::Output{Self::new(self.re+rhs,self.im)}}impl<T>Sub for Complex<T>where T:Sub{type Output=Complex<<T as Sub>::Output>;fn sub(self,rhs:Self)->Self::Output{Complex::new(self.re-rhs.re,self.im-rhs.im)}}impl<T>Sub<T>for Complex<T>where T:Sub<Output=T>{type Output=Self;fn sub(self,rhs:T)->Self::Output{Self::new(self.re-rhs,self.im)}}impl<T,U>Mul for Complex<T>where T:Clone+Mul,<T as Mul>::Output:Add<Output=U>+Sub<Output=U>{type Output=Complex<U>;fn mul(self,rhs:Self)->Self::Output{Complex::new(self.re.clone()*rhs.re.clone()-self.im.clone()*rhs.im.clone(),self.re*rhs.im+self.im*rhs.re)}}impl<T>Mul<T>for Complex<T>where T:Clone+Mul{type Output=Complex<<T as Mul>::Output>;fn mul(self,rhs:T)->Self::Output{Complex::new(self.re*rhs.clone(),self.im*rhs)}}impl<T>Div for Complex<T>where T:Clone+Add<Output=T>+Sub<Output=T>+Mul<Output=T>+Div{type Output=Complex<<T as Div>::Output>;fn div(self,rhs:Self)->Self::Output{let d=rhs.re.clone()*rhs.re.clone()+rhs.im.clone()*rhs.im.clone();Complex::new((self.re.clone()*rhs.re.clone()+self.im.clone()*rhs.im.clone())/d.clone(),(self.im*rhs.re-self.re*rhs.im)/d)}}impl<T>Div<T>for Complex<T>where T:Clone+Div{type Output=Complex<<T as Div>::Output>;fn div(self,rhs:T)->Self::Output{Complex::new(self.re/rhs.clone(),self.im/rhs)}}impl<T>Neg for Complex<T>where T:Neg{type Output=Complex<<T as Neg>::Output>;fn neg(self)->Self::Output{Complex::new(-self.re,-self.im)}}macro_rules!impl_complex_ref_binop{(impl<$T:ident>$imp:ident$method:ident($l:ty,$r:ty)where$($w:ident)*)=>{impl<$T>$imp<$r>for&$l where$T:Clone$(+$w<Output=$T>)*,{type Output=<$l as$imp<$r>>::Output;fn$method(self,rhs:$r)-><$l as$imp<$r>>::Output{$imp::$method(self.clone(),rhs)}}impl<$T>$imp<&$r>for$l where$T:Clone$(+$w<Output=$T>)*,{type Output=<$l as$imp<$r>>::Output;fn$method(self,rhs:&$r)-><$l as$imp<$r>>::Output{$imp::$method(self,rhs.clone())}}impl<$T>$imp<&$r>for&$l where$T:Clone$(+$w<Output=$T>)*,{type Output=<$l as$imp<$r>>::Output;fn$method(self,rhs:&$r)-><$l as$imp<$r>>::Output{$imp::$method(self.clone(),rhs.clone())}}};}impl_complex_ref_binop!(impl<T>Add add(Complex<T>,Complex<T>)where Add);impl_complex_ref_binop!(impl<T>Add add(Complex<T>,T)where Add);impl_complex_ref_binop!(impl<T>Sub sub(Complex<T>,Complex<T>)where Sub);impl_complex_ref_binop!(impl<T>Sub sub(Complex<T>,T)where Sub);impl_complex_ref_binop!(impl<T>Mul mul(Complex<T>,Complex<T>)where Add Sub Mul);impl_complex_ref_binop!(impl<T>Mul mul(Complex<T>,T)where Mul);impl_complex_ref_binop!(impl<T>Div div(Complex<T>,Complex<T>)where Add Sub Mul Div);impl_complex_ref_binop!(impl<T>Div div(Complex<T>,T)where Div);macro_rules!impl_complex_ref_unop{(impl<$T:ident>$imp:ident$method:ident($t:ty)where$($w:ident)*)=>{impl<$T>$imp for&$t where$T:Clone$(+$w<Output=$T>)*,{type Output=<$t as$imp>::Output;fn$method(self)-><$t as$imp>::Output{$imp::$method(self.clone())}}};}impl_complex_ref_unop!(impl<T>Neg neg(Complex<T>)where Neg);macro_rules!impl_complex_op_assign{(impl<$T:ident>$imp:ident$method:ident($l:ty,$r:ty)$fromimp:ident$frommethod:ident where$($w:ident)*)=>{impl<$T>$imp<$r>for$l where$T:Clone$(+$w<Output=$T>)*,{fn$method(&mut self,rhs:$r){*self=$fromimp::$frommethod(self.clone(),rhs);}}impl<$T>$imp<&$r>for$l where$T:Clone$(+$w<Output=$T>)*,{fn$method(&mut self,rhs:&$r){$imp::$method(self,rhs.clone());}}};}impl_complex_op_assign!(impl<T>AddAssign add_assign(Complex<T>,Complex<T>)Add add where Add);impl_complex_op_assign!(impl<T>AddAssign add_assign(Complex<T>,T)Add add where Add);impl_complex_op_assign!(impl<T>SubAssign sub_assign(Complex<T>,Complex<T>)Sub sub where Sub);impl_complex_op_assign!(impl<T>SubAssign sub_assign(Complex<T>,T)Sub sub where Sub);impl_complex_op_assign!(impl<T>MulAssign mul_assign(Complex<T>,Complex<T>)Mul mul where Add Sub Mul);impl_complex_op_assign!(impl<T>MulAssign mul_assign(Complex<T>,T)Mul mul where Mul);impl_complex_op_assign!(impl<T>DivAssign div_assign(Complex<T>,Complex<T>)Div div where Add Sub Mul Div);impl_complex_op_assign!(impl<T>DivAssign div_assign(Complex<T>,T)Div div where Div);macro_rules!impl_complex_fold{(impl<$T:ident>$imp:ident$method:ident($t:ty)$identimp:ident$identmethod:ident$fromimp:ident$frommethod:ident where$($w:ident)*$(+$x:ident)*)=>{impl<$T>$imp for$t where$T:$identimp$(+$w<Output=$T>)*$(+$x)*,{fn$method<I:Iterator<Item=Self>>(iter:I)->Self{iter.fold(<Self as$identimp>::$identmethod(),$fromimp::$frommethod)}}impl<'a,$T:'a>$imp<&'a$t>for$t where$T:Clone+$identimp$(+$w<Output=$T>)*$(+$x)*,{fn$method<I:Iterator<Item=&'a$t>>(iter:I)->Self{iter.fold(<Self as$identimp>::$identmethod(),$fromimp::$frommethod)}}};}impl_complex_fold!(impl<T>Sum sum(Complex<T>)Zero zero Add add where Add);impl_complex_fold!(impl<T>Product product(Complex<T>)One one Mul mul where Add Sub Mul+Zero+Clone);impl<T:IterScan>IterScan for Complex<T>{type Output=Complex<<T as IterScan>::Output>;fn scan<'a,I:Iterator<Item=&'a str>>(iter:&mut I)->Option<Self::Output>{Some(Complex::new(<T as IterScan>::scan(iter)?,<T as IterScan>::scan(iter)?))}}}
pub use self::zero_one::{One,Zero};
mod zero_one{pub trait Zero:Sized{fn zero()->Self;#[inline]fn is_zero(&self)->bool where Self:PartialEq{self==&Self::zero()}#[inline]fn set_zero(&mut self){*self=Self::zero();}}pub trait One:Sized{fn one()->Self;#[inline]fn is_one(&self)->bool where Self:PartialEq{self==&Self::one()}#[inline]fn set_one(&mut self){*self=Self::one();}}macro_rules!zero_one_impls{($({$Trait:ident$method:ident$($t:ty)*,$e:expr})*)=>{$($(impl$Trait for$t{fn$method()->Self{$e}})*)*};}zero_one_impls!({Zero zero u8 u16 u32 u64 usize i8 i16 i32 i64 isize u128 i128,0}{Zero zero f32 f64,0.}{One one u8 u16 u32 u64 usize i8 i16 i32 i64 isize u128 i128,1}{One one f32 f64,1.});}
pub use self::totalord::TotalOrd;
mod totalord{#[doc=" implement Ord by PartialOrd"]#[doc=""]#[doc=" # Example"]#[doc=""]#[doc=" ```"]#[doc=" # use competitive::tools::TotalOrd;"]#[doc=" let mut a = vec![3.1, 4.1, 5.9, 2.6];"]#[doc=" a.sort_by_key(|&x| TotalOrd(x));"]#[doc=" ```"]#[doc=""]#[derive(PartialEq)]pub struct TotalOrd<T>(pub T);impl<T:PartialEq>Eq for TotalOrd<T>{}impl<T:PartialOrd>PartialOrd for TotalOrd<T>{fn partial_cmp(&self,other:&TotalOrd<T>)->Option<std::cmp::Ordering>{self.0.partial_cmp(&other.0)}}impl<T:PartialOrd>Ord for TotalOrd<T>{fn cmp(&self,other:&TotalOrd<T>)->std::cmp::Ordering{self.partial_cmp(other).unwrap()}}pub trait AsTotalOrd{fn as_total_ord(&self)->TotalOrd<&Self>;}impl<T:PartialOrd>AsTotalOrd for T{fn as_total_ord(&self)->TotalOrd<&Self>{TotalOrd(self)}}}
0