package com.heu.wsq.leetcode.graph;
import java.util.Arrays;
import java.util.Comparator;
import java.util.PriorityQueue;
import java.util.Queue;
public class SwimInWater {
int[][] dirs = {{1, 0}, {-1, 0}, {0, 1}, {0, -1}};
public int swimInWater(int[][] grid) {
int n = grid.length;
int m = grid[0].length;
Queue<int[]> pq = new PriorityQueue<>(new Comparator<int[]>() {
@Override
public int compare(int[] edge1, int[] edge2) {
return grid[edge1[0]][edge1[1]] - grid[edge2[0]][edge2[1]];
}
});
pq.offer(new int[]{0, 0});
int[] distTo = new int[n * m];
Arrays.fill(distTo, Integer.MAX_VALUE);
distTo[0] = grid[0][0];
boolean[] seen = new boolean[n * m];
while (!pq.isEmpty()){
int[] edge = pq.poll();
int x = edge[0];
int y = edge[1];
int d = edge[2];
if (seen[x * m + y]){
continue;
}
seen[x * m + y] = true;
if (x == n - 1 && y == m - 1){
return distTo[x * m + y];
}
for (int[] dir : dirs) {
int nx = dir[0] + x;
int ny = dir[1] + y;
if (nx >= 0 && nx < n && ny >= 0 && ny < m && !seen[nx * m + ny]){
distTo[nx * m + ny] = Math.max(distTo[x * m + y], grid[nx][ny]);
pq.offer(new int[]{nx, ny});
}
}
}
return -1;
}
}