#[allow(unused_imports)] use std::cmp::*; use std::collections::*; // https://qiita.com/tanakh/items/0ba42c7ca36cd29d0ac8 macro_rules! input { ($($r:tt)*) => { let stdin = std::io::stdin(); let mut bytes = std::io::Read::bytes(std::io::BufReader::new(stdin.lock())); let mut next = move || -> String{ bytes.by_ref().map(|r|r.unwrap() as char) .skip_while(|c|c.is_whitespace()) .take_while(|c|!c.is_whitespace()) .collect() }; input_inner!{next, $($r)*} }; } 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)*} }; } macro_rules! read_value { ($next:expr, [ $t:tt ; $len:expr ]) => { (0..$len).map(|_| read_value!($next, $t)).collect::>() }; ($next:expr, $t:ty) => ($next().parse::<$t>().expect("Parse error")); } trait Change { fn chmax(&mut self, x: Self); fn chmin(&mut self, x: Self); } impl Change for T { fn chmax(&mut self, x: T) { if *self < x { *self = x; } } fn chmin(&mut self, x: T) { if *self > x { *self = x; } } } fn dfs2(x: [i64; 9], a: i64, k: i64, ans: &mut HashMap) { if x.iter().all(|&x| x == 0) { *ans.entry(a).or_insert(0) += 1; return; } for i in 0..9 { if x[i] > 0 { let mut y = x; y[i] -= 1; dfs2(y, (10 * a + i as i64 + 1) % k, k, ans); } } } fn all_perm(x: [i64; 9], k: i64) -> HashMap { let mut ans = HashMap::new(); dfs2(x, 0, k, &mut ans); ans } fn calc(hi: [i64; 9], lo: [i64; 9], bias: i64, k: i64) -> i64 { let fst = all_perm(hi, k); let snd = all_perm(lo, k); let mut ans = 0; for (k1, v) in fst { let k2 = (k - k1) * bias % k; ans += *snd.get(&k2).unwrap_or(&0) * v; } ans } fn dfs(v: usize, x: i64, c: &[i64], k: i64, picked: [i64; 9]) -> i64 { if v >= 9 { let mut rest = [0; 9]; for i in 0..9 { rest[i] = c[i] - picked[i]; } let mut bias = 1; for _ in 0..x { bias *= 10; } return calc(rest, picked, bias, k); } let mut ans = 0; for i in 0..min(x, c[v]) + 1 { let mut q = picked; q[v] = i; ans += dfs(v + 1, x - i, c, k, q); } ans } fn main() { // In order to avoid potential stack overflow, spawn a new thread. let stack_size = 104_857_600; // 100 MB let thd = std::thread::Builder::new().stack_size(stack_size); thd.spawn(|| solve()).unwrap().join().unwrap(); } fn solve() { input! { n: i64, k: i64, c: [i64; 9], } println!("{}", dfs(0, n / 2, &c, k, [0; 9])); }