You have a long flowerbed in which some of the plots are planted, and some are not. However, flowers cannot be planted in adjacent plots.
Given an integer array flowerbed
containing 0
's and 1
's, where 0
means empty and 1
means not empty, and an integer n
, return if n
new flowers can be planted in the flowerbed
without violating the no-adjacent-flowers rule.
Example 1:
Input: flowerbed = [1,0,0,0,1], n = 1 Output: true
Example 2:
Input: flowerbed = [1,0,0,0,1], n = 2 Output: false
Constraints:
1 <= flowerbed.length <= 2 * 104
flowerbed[i]
is0
or1
.- There are no two adjacent flowers in
flowerbed
. 0 <= n <= flowerbed.length
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Similar Questions:
A placeable plot should be empty, as well as its direct neighbors, if any. So, go through the flowerbed, whenever you find a placeable plot, place the flower into it, decrement n
. Finally, return n == 0
.
// OJ: https://leetcode.com/problems/can-place-flowers
// Author: github.com/lzl124631x
// Time: O(N)
// Space: O(N)
class Solution {
public:
bool canPlaceFlowers(vector<int>& A, int n) {
for (int i = 0; i < A.size() && n > 0; ++i) {
if (A[i] == 1) continue;
if ((i == 0 || A[i - 1] == 0) && (i == A.size() - 1 || A[i + 1] == 0)) {
A[i] = 1;
--n;
}
}
return n == 0;
}
};
// OJ: https://leetcode.com/problems/can-place-flowers/
// Author: github.com/lzl124631x
// Time: O(N)
// Space: O(1)
class Solution {
public:
bool canPlaceFlowers(vector<int>& A, int n) {
for (int i = 0, N = A.size(), cnt = 0; i < N && n; ++i) {
if (A[i] == 1) cnt = 0;
else {
++cnt;
if ((cnt == 1 && N == 1) || (cnt == 2 && (i == 1 || i == N - 1)) || cnt == 3) {
cnt = 1;
--n;
}
}
}
return n == 0;
}
};