import static java.lang.Double.parseDouble;
import static java.lang.Integer.parseInt;
import static java.lang.Long.parseLong;
import static java.lang.Math.*;
import static java.lang.System.exit;

import java.io.*;
import java.util.*;

 class Ideone {

    static BufferedReader in;
    static PrintWriter out;
    static StringTokenizer tok;


    class Pair implements Comparable<Pair> {
        int r, l;

        Pair(int l, int r) {
            this.l = l;
            this.r = r;
        }

        @Override
        public int compareTo(Pair o) {
            return l == o.l ? r - o.r : l - o.l;
        }
    }

    int n, q, dp[][][];
    Pair segs[];
    int fun(int i,int last, int missed) {
        if(i == q) return missed == 2 ? 0 : -n;
        if(dp[missed][i][last] != -1) return dp[missed][i][last];
        int ans = 0;
        if(missed < 2) ans = max(ans, fun(i+1, last, missed + 1));
        if(last >= segs[i].l) {
            ans = max(ans , max(segs[i].r - last, 0) + fun(i+1, max(last, segs[i].r), missed));
        } else {
            ans = max(ans , segs[i].r - segs[i].l + 1 + fun(i+1, max(last, segs[i].r), missed));
        }
        return dp[missed][i][last]=ans;
    }

    void solve() throws Exception {
        n = nextInt(); q = nextInt();
        segs = new Pair[q];
        for(int i = 0; i < q; i++) segs[i] = new Pair(nextInt(), nextInt());
        Arrays.sort(segs);
        dp = new int[3][5010][5010];
        for(int i = 0; i < 3; i++) for(int j= 0; j < 5010;j++) Arrays.fill(dp[i][j], -1);
        out.println(fun(0,0,0));
    }


    // call it like this: lower_bound(a, x + 1) ( /!\ + 1 )
    public static int lower_bound(int[] a, int v) {
        int low = -1, high = a.length;
        while (high - low > 1) {
            int h = high + low >>> 1;
            if (a[h] >= v) {
                high = h;
            } else {
                low = h;
            }
        }
        return high;
    }

    private int gcd(int a, int b) {
        while (b > 0) {
            int temp = b;
            b = a % b;
            a = temp;
        }
        return a;
    }

    private int lcm(int a, int b) {
        return a * (b / gcd(a, b));
    }

    public static int[] radixSort(int[] f) {
        int[] to = new int[f.length];
        {
            int[] b = new int[65537];
            for (int i = 0; i < f.length; i++) b[1 + (f[i] & 0xffff)]++;
            for (int i = 1; i <= 65536; i++) b[i] += b[i - 1];
            for (int i = 0; i < f.length; i++) to[b[f[i] & 0xffff]++] = f[i];
            int[] d = f;
            f = to;
            to = d;
        }
        {
            int[] b = new int[65537];
            for (int i = 0; i < f.length; i++) b[1 + (f[i] >>> 16)]++;
            for (int i = 1; i <= 65536; i++) b[i] += b[i - 1];
            for (int i = 0; i < f.length; i++) to[b[f[i] >>> 16]++] = f[i];
            int[] d = f;
            f = to;
            to = d;
        }
        return f;
    }

    private int[] na(int n) throws IOException {
        int[] a = new int[n];
        for (int i = 0; i < n; i++) a[i] = nextInt();
        return a;
    }

    private long[] nal(int n) throws IOException {
        long[] a = new long[n];
        for (int i = 0; i < n; i++) a[i] = nextLong();
        return a;
    }

    int nextInt() throws IOException {
        return parseInt(next());
    }

    long nextLong() throws IOException {
        return parseLong(next());
    }

    double nextDouble() throws IOException {
        return parseDouble(next());
    }

    String next() throws IOException {
        while (tok == null || !tok.hasMoreTokens()) {
            tok = new StringTokenizer(in.readLine());
        }
        return tok.nextToken();
    }

    public static void main(String[] args) throws Exception {
        try {
            in = new BufferedReader(new InputStreamReader(System.in));
            out = new PrintWriter(new OutputStreamWriter(System.out));
            //long lStartTime = System.currentTimeMillis();
            new Ideone().solve();
            //long lEndTime = System.currentTimeMillis();
            //out.println("Elapsed time in seconds: " + (double)(lEndTime - lStartTime) / 1000.0);
            in.close();
            out.close();
        } catch (Throwable e) {
            e.printStackTrace();
            exit(1);
        }
    }
}