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maximum-length-of-repeated-subarray.cpp
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maximum-length-of-repeated-subarray.cpp
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// Time: O(m * n)
// Space: O(min(m, n))
// dp solution (99 ms)
class Solution {
public:
int findLength(vector<int>& A, vector<int>& B) {
if (A.size() < B.size()) {
return findLength(B, A);
}
int result = 0;
vector<vector<int>> dp(2, vector<int>(B.size() + 1));
for (int i = 0; i < A.size(); ++i) {
for (int j = 0; j < B.size(); ++j) {
if (A[i] == B[j]) {
dp[(i + 1) % 2][j + 1] = dp[i % 2][j] + 1;
result = max(result, dp[(i + 1) % 2][j + 1]);
} else {
dp[(i + 1) % 2][j + 1] = 0;
}
}
}
return result;
}
};
// Time: O(m * n * log(min(m, n)))
// Space: O(min(m, n))
// Binary search + rolling hash solution (36 ms)
class Solution2 {
public:
int findLength(vector<int>& A, vector<int>& B) {
if (A.size() > B.size()) {
return findLength(B, A);
}
int left = 0, right = min(A.size(), B.size()) + 1;
while (left < right) {
const auto mid = left + (right-left) / 2;
if (!check(mid, A, B)) { // find the min idx such that check(idx) == false
right = mid;
} else {
left = mid + 1;
}
}
return left - 1;
}
private:
bool check(const int guess, const vector<int>& A, const vector<int>& B) {
unordered_map<uint64_t, vector<int>> hashes;
int i = 0;
for (const auto& hash_a : rolling_hashes(A, guess)) {
hashes[hash_a].emplace_back(i++);
}
int j = 0;
for (const auto& hash_b : rolling_hashes(B, guess)) {
for (const auto& i : hashes[hash_b]) {
if (equal(A.begin() + i, A.begin() + i + guess, B.begin() + j)) {
return true;
}
}
++j;
}
return false;
}
vector<uint64_t> rolling_hashes(const vector<int>& source, const int length) {
static const uint64_t M = 1000000007;
static const uint64_t p = 113;
static const uint64_t p_inv = pow(p, M - 2, M);
vector<uint64_t> result(source.size() - length + 1);
uint64_t hash = 0, power = 1;
if (length == 0) {
return result;
}
for (int i = 0; i < source.size(); ++i) {
hash = (hash + source[i] * power) % M;
if (i < length - 1) {
power = (power * p) % M;
} else {
result[i - (length - 1)] = hash;
hash = (hash - source[i - (length - 1)]) * p_inv % M;
}
}
return result;
}
uint64_t pow(uint64_t a,uint64_t b, uint64_t m) {
a %= m;
uint64_t result = 1;
while (b) {
if (b & 1) {
result = (result * a) % m;
}
a = (a * a) % m;
b >>= 1;
}
return result;
}
};