#![allow(non_snake_case,dead_code,unused_imports)] use proconio::{*,marker::*}; fn main(){ input!{ n:usize, k:usize, s:(Usize1,Usize1), t:(Usize1,Usize1), } let s=P::new(s.0,s.1); let t=P::new(t.0,t.1); let min=s.manh(t); let max=min*2; if !(min<=k && k<=max && k%2==min%2){ println!("-1"); return; } let mut col=vec![0;n*2+5]; for i in 0..col.len(){ col[i]=i%2; } let mut rem=max-k; let dist=s.manh(t); if col[dist]==1{ col[dist]=0; rem-=1; } assert!(rem%2==0); for i in 0..col.len(){ if rem==0{ break; } if col[i]==1{ col[i]=0; rem-=2; } } let mut ans=vec![vec![0;n];n]; for p in iterp(n,n){ ans[p]=col[p.manh(s)]; } for i in 0..n{ println!("{}",ans[i].iter().map(|&t|['.','#'][t]).join("")); } } use itertools::*; trait ChangeMinMax:Copy+PartialOrd{ fn chmin(&mut self,a:Self)->bool{ *self>a && { *self=a; true } } fn chmax(&mut self,a:Self)->bool{ *self ChangeMinMax for T{} // library: https://github.com/rhoo19937/cp-lib // LURD const DD:[P;4]=[P{i:0,j:!0},P{i:!0,j:0},P{i:0,j:1},P{i:1,j:0}]; const DX:[P;8]=[P{i:0,j:!0},P{i:!0,j:!0},P{i:!0,j:0},P{i:!0,j:1},P{i:0,j:1},P{i:1,j:1},P{i:1,j:0},P{i:1,j:!0}]; #[derive(Clone,Copy,PartialEq,Eq,PartialOrd,Ord,Hash,Default)] struct P{ i:usize, j:usize, } impl P{ fn new(i:usize,j:usize)->P{ P{i,j} } fn in_range(self,h:usize,w:usize)->bool{ self.iusize{ self.i*w+self.j } fn from(id:usize,w:usize)->P{ P::new(id/w,id%w) } fn manh(self,p:P)->usize{ let abs_diff=|a,b|(a as i64-b as i64).abs() as usize; abs_diff(self.i,p.i)+abs_diff(self.j,p.j) } fn dir(self,p:P)->usize{ if self.i==p.i{ if self.j-1==p.j{ 0 } else{ assert!(self.j+1==p.j); 2 } } else{ if self.i-1==p.i{ 1 } else{ assert!(self.i+1==p.i); 3 } } } } impl std::fmt::Debug for P{ fn fmt(&self,f:&mut std::fmt::Formatter)->std::fmt::Result{ write!(f,"({}, {})",self.i,self.j) } } impl std::ops::Add for P{ type Output=P; fn add(self,a:P)->P{ P{ i:self.i+a.i, j:self.j+a.j, } } } impl std::ops::Sub for P{ type Output=P; fn sub(self,a:P)->P{ P{ i:self.i-a.i, j:self.j-a.j, } } } impl std::ops::Mul for P{ type Output=P; fn mul(self,a:usize)->P{ P{ i:self.i*a, j:self.j*a, } } } impl std::ops::Div for P{ type Output=P; fn div(self,a:usize)->P{ P{ i:self.i/a, j:self.j/a, } } } impl std::ops::Neg for P{ type Output=P; fn neg(self)->P{ P{ i:self.i.wrapping_neg(), j:self.j.wrapping_neg(), } } } macro_rules! impl_p_ops{ ($t:ty,$assign_trait:ident,$assign_func:ident,$op:tt)=>{ impl std::ops::$assign_trait<$t> for P{ fn $assign_func(&mut self,a:$t){ *self=*self $ op a; } } } } impl_p_ops!(P,AddAssign,add_assign,+); impl_p_ops!(P,SubAssign,sub_assign,-); impl_p_ops!(usize,MulAssign,mul_assign,*); impl_p_ops!(usize,DivAssign,div_assign,/); macro_rules! impl_p_index{ ($t:ty)=>{ impl> std::ops::Index

for $t{ type Output=T::Output; fn index(&self,idx:P)->&T::Output{ &self[idx.i][idx.j] } } impl> std::ops::IndexMut

for $t{ fn index_mut(&mut self,idx:P)->&mut T::Output{ &mut self[idx.i][idx.j] } } } } impl_p_index!([T]); impl_p_index!(Vec); fn iterp(h:usize,w:usize)->impl Iterator{ (0..h).map(move|i|(0..w).map(move|j|P::new(i,j))).flatten() }