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Java-based LeetCode algorithm problem solutions, regularly updated
package g0501_0600.s0529_minesweeper;
// #Medium #Array #Depth_First_Search #Breadth_First_Search #Matrix
// #2022_07_28_Time_0_ms_(100.00%)_Space_42.6_MB_(85.88%)
public class Solution {
private static final int[][] DIRECTION = {
{1, 0}, {-1, 0}, {0, 1}, {0, -1}, {-1, -1}, {-1, 1}, {1, -1}, {1, 1}
};
private int row;
private int col;
private void dfs(char[][] board, int row, int col) {
if (row < 0 || row >= this.row || col < 0 || col >= this.col) {
return;
}
if (board[row][col] == 'E') {
int numOfMine = bfs(board, row, col);
if (numOfMine != 0) {
board[row][col] = (char) (numOfMine + '0');
return;
} else {
board[row][col] = 'B';
}
for (int[] i : DIRECTION) {
dfs(board, row + i[0], col + i[1]);
}
}
}
private int bfs(char[][] board, int row, int col) {
int numOfMine = 0;
for (int[] i : DIRECTION) {
int newRow = row + i[0];
int newCol = col + i[1];
if (newRow >= 0
&& newRow < this.row
&& newCol >= 0
&& newCol < this.col
&& board[newRow][newCol] == 'M') {
numOfMine++;
}
}
return numOfMine;
}
public char[][] updateBoard(char[][] board, int[] c) {
if (board[c[0]][c[1]] == 'M') {
board[c[0]][c[1]] = 'X';
return board;
} else {
row = board.length;
col = board[0].length;
dfs(board, c[0], c[1]);
}
return board;
}
}