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Java-based LeetCode algorithm problem solutions, regularly updated
package g0801_0900.s0803_bricks_falling_when_hit;
// #Hard #Array #Matrix #Union_Find #2022_03_23_Time_12_ms_(94.92%)_Space_118.5_MB_(65.25%)
public class Solution {
private final int[][] dirs = {{1, 0}, {-1, 0}, {0, 1}, {0, -1}};
public int[] hitBricks(int[][] grid, int[][] hits) {
int cols = grid[0].length;
for (int[] hit : hits) {
int x = hit[0];
int y = hit[1];
grid[x][y]--;
}
int row = 0;
for (int col = 0; col < cols; col++) {
dfs(row, col, grid);
}
int[] res = new int[hits.length];
for (int i = hits.length - 1; i >= 0; i--) {
int x = hits[i][0];
int y = hits[i][1];
grid[x][y]++;
if (grid[x][y] == 1 && isConnectedToRoof(x, y, grid)) {
res[i] = dfs(x, y, grid) - 1;
}
}
return res;
}
private int dfs(int i, int j, int[][] grid) {
if (i < 0 || i >= grid.length || j < 0 || j >= grid[0].length || grid[i][j] != 1) {
return 0;
}
grid[i][j] = 2;
return dfs(i + 1, j, grid)
+ dfs(i - 1, j, grid)
+ dfs(i, j + 1, grid)
+ dfs(i, j - 1, grid)
+ 1;
}
private boolean isConnectedToRoof(int i, int j, int[][] grid) {
if (i == 0) {
return true;
}
for (int[] d : dirs) {
int x = i + d[0];
int y = j + d[1];
if (x >= 0 && x < grid.length && y >= 0 && y < grid[0].length && grid[x][y] == 2) {
return true;
}
}
return false;
}
}