#include<bits/stdc++.h>
using namespace std;
#define ll long long
#define oo 1e18
#define endl '\n'
#define all(v) v.begin(),v.end()
#ifdef LOCAL
#include "debug.h"
#else
#define dd(x...)
#define ExeTime
#endif
int dx[] = {0, 1, 0, -1, 1, 1, -1, -1};
int dy[] = {1, 0, -1, 0, 1, -1, 1, -1};
const int N = 2e5 + 10, M = 1e2 + 10, mod = 998244353;
const double EPS = 1e-12, Pi = acos(-1);
void testCase();
int main() {
ios_base::sync_with_stdio(0), cin.tie(0), cout.tie(0);
int T = 1;
// cin >> T;
while (T--) testCase();
ExeTime;
return 0;
}
struct SuffixArray {
string s;
vector<int> sa; // suffix array
vector<int> lcp; // longest common prefix
SuffixArray() {};
SuffixArray(string str) {
this->s = str;
sa = suffix_array(str);
lcp = lcp_array(str, sa);
}
vector<int> sa_naive(const vector<int> &s) {
int n = (int) s.size();
vector<int> v(n);
iota(v.begin(), v.end(), 0);
sort(v.begin(), v.end(), [&](int l, int r) {
if (l == r) return false;
while (l < n && r < n) {
if (s[l] != s[r]) return s[l] < s[r];
l++;
r++;
}
return l == n;
});
return v;
}
vector<int> sa_doubling(const vector<int> &str) {
int n = (int) str.size();
vector<int> v(n), rnk = str, tmp(n);
iota(v.begin(), v.end(), 0);
for (int k = 1; k < n; k *= 2) {
auto cmp = [&](int x, int y) {
if (rnk[x] != rnk[y]) return rnk[x] < rnk[y];
int rx = x + k < n ? rnk[x + k] : -1;
int ry = y + k < n ? rnk[y + k] : -1;
return rx < ry;
};
sort(v.begin(), v.end(), cmp);
tmp[v[0]] = 0;
for (int i = 1; i < n; i++) {
tmp[v[i]] = tmp[v[i - 1]] + (cmp(v[i - 1], v[i]) ? 1 : 0);
}
swap(tmp, rnk);
}
return v;
}
template<int THRESHOLD_NAIVE = 10, int THRESHOLD_DOUBLING = 40>
vector<int> sa_is(const vector<int> &str, int upper) {
int n = (int) str.size();
if (n == 0) return {};
if (n == 1) return {0};
if (n == 2) {
if (str[0] < str[1]) {
return {0, 1};
} else {
return {1, 0};
}
}
if (n < THRESHOLD_NAIVE) {
return sa_naive(str);
}
if (n < THRESHOLD_DOUBLING) {
return sa_doubling(str);
}
vector<int> t_sa(n);
vector<bool> ls(n);
for (int i = n - 2; i >= 0; i--) {
ls[i] = (str[i] == str[i + 1]) ? ls[i + 1] : (str[i] < str[i + 1]);
}
vector<int> sum_l(upper + 1), sum_s(upper + 1);
for (int i = 0; i < n; i++) {
if (!ls[i]) {
sum_s[str[i]]++;
} else {
sum_l[str[i] + 1]++;
}
}
for (int i = 0; i <= upper; i++) {
sum_s[i] += sum_l[i];
if (i < upper) sum_l[i + 1] += sum_s[i];
}
auto induce = [&](const vector<int> &lms) {
fill(t_sa.begin(), t_sa.end(), -1);
vector<int> buf(upper + 1);
copy(sum_s.begin(), sum_s.end(), buf.begin());
for (auto d: lms) {
if (d == n) continue;
t_sa[buf[str[d]]++] = d;
}
copy(sum_l.begin(), sum_l.end(), buf.begin());
t_sa[buf[str[n - 1]]++] = n - 1;
for (int i = 0; i < n; i++) {
int v = t_sa[i];
if (v >= 1 && !ls[v - 1]) {
t_sa[buf[str[v - 1]]++] = v - 1;
}
}
copy(sum_l.begin(), sum_l.end(), buf.begin());
for (int i = n - 1; i >= 0; i--) {
int v = t_sa[i];
if (v >= 1 && ls[v - 1]) {
t_sa[--buf[str[v - 1] + 1]] = v - 1;
}
}
};
vector<int> lms_map(n + 1, -1);
int m = 0;
for (int i = 1; i < n; i++) {
if (!ls[i - 1] && ls[i]) {
lms_map[i] = m++;
}
}
vector<int> lms;
lms.reserve(m);
for (int i = 1; i < n; i++) {
if (!ls[i - 1] && ls[i]) {
lms.push_back(i);
}
}
induce(lms);
if (m) {
vector<int> sorted_lms;
sorted_lms.reserve(m);
for (int v: t_sa) {
if (lms_map[v] != -1) sorted_lms.push_back(v);
}
vector<int> rec_s(m);
int rec_upper = 0;
rec_s[lms_map[sorted_lms[0]]] = 0;
for (int i = 1; i < m; i++) {
int l = sorted_lms[i - 1], r = sorted_lms[i];
int end_l = (lms_map[l] + 1 < m) ? lms[lms_map[l] + 1] : n;
int end_r = (lms_map[r] + 1 < m) ? lms[lms_map[r] + 1] : n;
bool same = true;
if (end_l - l != end_r - r) {
same = false;
} else {
while (l < end_l) {
if (str[l] != str[r]) {
break;
}
l++;
r++;
}
if (l == n || str[l] != str[r]) same = false;
}
if (!same) rec_upper++;
rec_s[lms_map[sorted_lms[i]]] = rec_upper;
}
auto rec_sa =
sa_is<THRESHOLD_NAIVE, THRESHOLD_DOUBLING>(rec_s, rec_upper);
for (int i = 0; i < m; i++) {
sorted_lms[i] = lms[rec_sa[i]];
}
induce(sorted_lms);
}
return t_sa;
}
vector<int> suffix_array(const vector<int> &str, int upper) {
assert(0 <= upper);
for (int d: str) {
assert(0 <= d && d <= upper);
}
return sa_is(str, upper);
}
template<class T>
vector<int> suffix_array(const vector<T> &str) {
int n = int(str.size());
vector<int> idx(n);
iota(idx.begin(), idx.end(), 0);
sort(idx.begin(), idx.end(), [&](int l, int r) { return str[l] < str[r]; });
vector<int> s2(n);
int now = 0;
for (int i = 0; i < n; i++) {
if (i && str[idx[i - 1]] != str[idx[i]]) now++;
s2[idx[i]] = now;
}
return sa_is(s2, now);
}
vector<int> suffix_array(const string &str) {
int n = int(str.size());
vector<int> s2(n);
for (int i = 0; i < n; i++) {
s2[i] = str[i];
}
return sa_is(s2, 255);
}
template<class T>
vector<int> lcp_array(const vector<T> &str, const vector<int> &s_a) {
int n = int(str.size());
assert(n >= 1);
vector<int> rnk(n);
for (int i = 0; i < n; i++) {
rnk[s_a[i]] = i;
}
vector<int> v(n - 1);
int h = 0;
for (int i = 0; i < n; i++) {
if (h > 0) h--;
if (rnk[i] == 0) continue;
int j = s_a[rnk[i] - 1];
for (; j + h < n && i + h < n; h++) {
if (str[j + h] != str[i + h]) break;
}
v[rnk[i] - 1] = h;
}
return v;
}
vector<int> lcp_array(const string &str, const vector<int> &s_a) {
int n = int(str.size());
vector<int> s2(n);
for (int i = 0; i < n; i++) {
s2[i] = str[i];
}
return lcp_array(s2, s_a);
}
bool check(int mid, const string &t, bool greater = true) {
int i = 0, j = sa[mid], m = (int) t.size();
while (i < m && j < s.size()) {
if (t[i] > s[j]) return false;
if (t[i++] < s[j++]) return true;
}
return greater;
}
int lower_bound(const string &t) { // O(min(n,m)*log(n))
int l = 0, r = s.size() - 1, ans = s.size(), mid;
while (l <= r) {
mid = (l + r) >> 1;
if (check(mid, t)) r = mid - 1, ans = mid;
else l = mid + 1;
}
return ans;
}
int upper_bound(const string &t) { // O(min(n,t,size())*log(n))
int l = 0, r = s.size() - 1, ans = s.size(), mid;
while (l <= r) {
mid = (l + r) >> 1;
if (check(mid, t, 0)) r = mid - 1, ans = mid;
else l = mid + 1;
}
return ans;
}
bool exists_as_substr(const string t) {
return occurrence_as_substr(t);
}
int occurrence_as_substr(const string &t) {
return upper_bound(t) - lower_bound(t);
}
};
template<typename T>
struct sliding_window {
deque<pair<T, int>> d;
int l, r;
sliding_window() : l(0), r(0) {}
void push_back(T x) {
while (!d.empty() && d.back().first >= x) d.pop_back();
d.emplace_back(x, r++);
}
void pop_front() {
if (d.front().second == l++) d.pop_front();
}
T get_min() {
return d.front().first;
}
};
int lcs(vector<string> s, int k = -1) { // longest common substring
if (k == -1) k = s.size();
if (k == 1) {
int ind = max_element(all(s), [](string &a, string &b) {
return a.size() < b.size();
}) - s.begin();
int mx = s[ind].size();
return mx;
}
string concat = s[0];
char ch = char(0); // note !! number of string should not be more than 35
for (int i = 1; i < s.size(); i++) concat += (ch++) + s[i];
SuffixArray sa(concat);
int n = concat.size();
vector<int> group(n, 1);
for (int i = 1, j = 0, sum = s[0].size() + 1; i < n; i++) {
group[i] = group[i - 1];
if (i == sum) {
group[i]++;
sum += s[++j].size() + 1;
}
}
int cnt = 0;
vector<int> mp(n + 1);
sliding_window<pair<int, int>> sw;
pair<int, int> mx = {0, 0};
for (int i = 0, j = 0; j < n; i++) {
while (cnt < k && j < n) {
cnt += (mp[group[sa.sa[j]]]++ == 0);
if (j) sw.push_back({sa.lcp[j - 1], sa.sa[j]});
j++;
}
auto mn = sw.get_min();
if (cnt == k && mn.first >= mx.first) {
mx = max(mx, mn);
}
sw.pop_front();
cnt -= (--mp[group[sa.sa[i]]] == 0);
}
return mx.first;
}
void testCase() {
string s;
vector<string> a;
while (cin >> s) a.push_back(s);
cout << lcs(a) << endl;
}