using System; using System.IO; using System.Linq; using System.Collections.Generic; class Program { static int[] dx = new int[] { 0, 0, 1, -1 }; static int[] dy = new int[] { 1, -1, 0, 0 }; const int INF = 1010101010; static void Solve() { var a = sc.Long(); var b = sc.Long(); pr.WriteLine(a * b % 1000000007); } class Node : IComparable { public int Id; public int Cost; public int CompareTo(object obj) { return ((Node)obj).Cost - Cost; } public override string ToString() { return $"Id: {this.Id} - Cost: {this.Cost}"; } } class Edge { public int To; public int Cost; } static double F(double prev, double next, double t) { return Math.Pow(Math.Exp((next - prev) / t), 2); } static int[,] Mul(int[,] a, int[,] b) { var ret = new int[a.GetLength(0), b.GetLength(1)]; for (int i = 0; i < a.GetLength(0); i++) for (int j = 0; j < b.GetLength(1); j++) for (int k = 0; k < a.GetLength(1); k++) ret[i, j] += a[i, k] * b[k, j]; return ret; } static int[,] Pow(int[,] a, int n) { var b = new int[a.GetLength(1), a.GetLength(0)]; var f = n % 2 == 1; for (int i = 0; i < a.GetLength(0); i++) b[i, i] = 1; while (n > 0) { if (n % 2 == 1) b = Mul(a, b); n >>= 1; } return b; } class Coord { public int x; public int y; } static void Main(string[] args) { // pr.AutoFlush = true; Solve(); pr.Flush(); // Console.ReadKey(); } static Scanner sc = new Scanner(); static Printer pr = new Printer(); } class Heap where T : IComparable { private List _heap; private int _last; private int _cnt; private IComparer _comparer; public Heap() { _heap = new List(); _last = 0; } public Heap(IEnumerable e) { _heap = new List(e); _cnt = _last = _heap.Count(); for (int i = _last / 2; 0 <= i; i--) Heapify(i); } public Heap(IComparer comparer) { _comparer = comparer; } public Heap(IEnumerable e, IComparer comparer) : this(e) { _comparer = comparer; } private int Compare(T a, T b) { if (_comparer == null) return a.CompareTo(b); else return _comparer.Compare(a, b); } public bool Empty() { return _last == 0; } public void Enqueue(T item) { if (_last < _cnt) { _heap[_last++] = item; } else { _heap.Add(item); _cnt++; _last++; } var i = _last - 1; while (0 < i) { if (0 <= Compare(_heap[(i - 1) / 2], _heap[i])) break; swap((i - 1) / 2, i); i = (i - 1) / 2; } } public T Dequeue() { if (_last == 0) throw new Exception("Empty"); var ret = _heap[0]; _heap[0] = _heap[--_last]; Heapify(0); return ret; } public T Peek() { return _heap[0]; } public int Count() { return _last; } private void Heapify(int i) { var max = i; if (i * 2 + 1 < _last && Compare(_heap[max], _heap[i * 2 + 1]) < 0) max = i * 2 + 1; if (i * 2 + 2 < _last && Compare(_heap[max], _heap[i * 2 + 2]) < 0) max = i * 2 + 2; if (max == i) return; swap(i, max); Heapify(max); } private void swap(int a, int b) { var t = _heap[a]; _heap[a] = _heap[b]; _heap[b] = t; } } #region IO class Scanner { private int _i = 0; private string[] line = new string[0]; private T[] Enumerate(int n, Func f) { T[] ret = new T[n]; for (int i = 0; i < n; i++) ret[i] = f(); return ret; } public string Str() { if (line.Length <= _i) { line = Console.ReadLine().Split(' '); _i = 0; } return line[_i++]; } public int Int() => int.Parse(Str()); public long Long() => long.Parse(Str()); public double Double() => double.Parse(Str()); public int[] Int(int n) => Enumerate(n, Int); public long[] Long(int n) => Enumerate(n, Long); public double[] Double(int n) => Enumerate(n, Double); public string[] Str(int n) => Enumerate(n, Str); } class Printer : StreamWriter { public Printer() : base(Console.OpenStandardOutput()) { AutoFlush = false; } } #endregion