using System; using System.Collections.Generic; using System.Linq; using System.IO; //using System.Text; //using System.Text.RegularExpressions; //using System.Globalization; //using System.Diagnostics; using static System.Console; using System.Numerics; //using static System.Math; //using pair = Pair; class Program { static void Main() { //SetOut(new StreamWriter(OpenStandardOutput()) { AutoFlush = false }); new Program().solve(); Out.Flush(); } Scanner cin = new Scanner(); readonly int[] dd = { 0, 1, 0, -1, 0 }; //→↓←↑ readonly int mod = 1000000007; void solve() { int N = cin.nextint; int now = 1; int sum = 0; var L = new List(); while (sum <= N) { sum += now; L.Add(sum); now *= 2; } int n2 = L.Count / 2; var H = new long[1 << n2]; for (int i = 0; i < 1 << n2; i++) { for (int j = 0; j < n2; j++) { if ((i >> j & 1) == 1) { H[i] += L[j]; } } } Array.Sort(H); int n3 = L.Count - n2; for (int i = 0; i < 1 << n3; i++) { long ret = 0; for (int j = 0; j < n3; j++) { if ((i >> j & 1) == 1) { ret += L[n2 + j]; } } if (Array.BinarySearch(H, N - ret) >= 0) { WriteLine("YES"); return; } } WriteLine("NO"); } } class Scanner { string[] s; int i; char[] cs = new char[] { ' ' }; public Scanner() { s = new string[0]; i = 0; } public string[] scan { get { return ReadLine().Split(); } } public int[] scanint { get { return Array.ConvertAll(scan, int.Parse); } } public long[] scanlong { get { return Array.ConvertAll(scan, long.Parse); } } public double[] scandouble { get { return Array.ConvertAll(scan, double.Parse); } } public string next { get { if (i < s.Length) return s[i++]; string st = ReadLine(); while (st == "") st = ReadLine(); s = st.Split(cs, StringSplitOptions.RemoveEmptyEntries); i = 0; return next; } } public int nextint { get { return int.Parse(next); } } public long nextlong { get { return long.Parse(next); } } public double nextdouble { get { return double.Parse(next); } } }