LeetCode 207. Course Schedule(课程安排)

原题网址:https://leetcode.com/problems/course-schedule/

There are a total of n courses you have to take, labeled from 0 to n - 1.

Some courses may have prerequisites, for example to take course 0 you have to first take course 1, which is expressed as a pair: [0,1]

Given the total number of courses and a list of prerequisite pairs, is it possible for you to finish all courses?

For example:

2, [[1,0]]

There are a total of 2 courses to take. To take course 1 you should have finished course 0. So it is possible.

2, [[1,0],[0,1]]

There are a total of 2 courses to take. To take course 1 you should have finished course 0, and to take course 0 you should also have finished course 1. So it is impossible.

Note:
The input prerequisites is a graph represented by a list of edges, not adjacency matrices. Read more about how a graph is represented.

click to show more hints.

Hints:
  1. This problem is equivalent to finding if a cycle exists in a directed graph. If a cycle exists, no topological ordering exists and therefore it will be impossible to take all courses.
  2. Topological Sort via DFS - A great video tutorial (21 minutes) on Coursera explaining the basic concepts of Topological Sort.
  3. Topological sort could also be done via BFS.

方法一:广度优先搜索。

public class Solution {
    public boolean canFinish(int numCourses, int[][] prerequisites) {
        int[] pre = new int[numCourses];
        List<Integer>[] satisfies = new List[numCourses];
        for(int i=0; i<numCourses; i++) satisfies[i] = new ArrayList<>();
        for(int i=0; i<prerequisites.length; i++) {
            satisfies[prerequisites[i][1]].add(prerequisites[i][0]);
            pre[prerequisites[i][0]] ++;
        }
        int finish = 0;
        LinkedList<Integer> queue = new LinkedList<>();
        for(int i=0; i<numCourses; i++) {
            if (pre[i] == 0) queue.add(i);
        }
        while (!queue.isEmpty()) {
            int course = queue.remove();
            finish ++;
            if (satisfies[course] == null) continue;
            for(int c: satisfies[course]) {
                pre[c] --;
                if (pre[c] == 0) queue.add(c);
            }
        }
        return finish == numCourses;
    }
}
方法二:深度优先搜索。

public class Solution {
    private boolean[] canFinish;
    private boolean[] visited;
    private List<Integer>[] depends;
    private boolean canFinish(int course) {
        if (visited[course]) return canFinish[course];
        visited[course] = true;
        for(int c: depends[course]) {
            if (!canFinish(c)) return false;
        }
        canFinish[course] = true;
        return canFinish[course];
    }
    public boolean canFinish(int numCourses, int[][] prerequisites) {
        canFinish = new boolean[numCourses];
        visited = new boolean[numCourses];
        depends = new List[numCourses];
        for(int i=0; i<numCourses; i++) depends[i] = new ArrayList<Integer>(); 
        for(int i=0; i<prerequisites.length; i++) {
            depends[prerequisites[i][0]].add(prerequisites[i][1]);
        }
        for(int i=0; i<numCourses; i++) {
            if (!canFinish(i)) return false;
        }
        return true;
    }
}


### LeetCode Hot 100 Problems 列表 LeetCode 的热门题目列表通常由社区投票选出,涵盖了各种难度级别的经典编程挑战。这些题目对于准备技术面试非常有帮助。以下是部分 LeetCode 热门 100 题目列表: #### 数组与字符串 1. **两数之和 (Two Sum)** 2. **三数之和 (3Sum)** 3. **无重复字符的最长子串 (Longest Substring Without Repeating Characters)** 4. **寻找两个正序数组的中位数 (Median of Two Sorted Arrays)** #### 动态规划 5. **爬楼梯 (Climbing Stairs)** 6. **不同的二叉搜索树 (Unique Binary Search Trees)** 7. **最大子序列和 (Maximum Subarray)** #### 字符串处理 8. **有效的括号 (Valid Parentheses)** 9. **最小覆盖子串 (Minimum Window Substring)** 10. **字母异位词分组 (Group Anagrams)** #### 图论 11. **岛屿数量 (Number of Islands)** 12. **课程表 II (Course Schedule II)** #### 排序与查找 13. **最接近原点的 K 个点 (K Closest Points to Origin)** 14. **接雨水 (Trapping Rain Water)** 15. **最长连续序列 (Longest Consecutive Sequence)[^2]** #### 堆栈与队列 16. **每日温度 (Daily Temperatures)** 17. **滑动窗口最大值 (Sliding Window Maximum)** #### 树结构 18. **验证二叉搜索树 (Validate Binary Search Tree)** 19. **二叉树的最大路径和 (Binary Tree Maximum Path Sum)** 20. **从前序与中序遍历序列构造二叉树 (Construct Binary Tree from Preorder and Inorder Traversal)** #### 并查集 21. **冗余连接 II (Redundant Connection II)** #### 贪心算法 22. **跳跃游戏 (Jump Game)** 23. **分割等和子集 (Partition Equal Subset Sum)** #### 双指针技巧 24. **环形链表 II (Linked List Cycle II)[^1]** 25. **相交链表 (Intersection of Two Linked Lists)** #### 其他重要题目 26. **LRU缓存机制 (LRU Cache)** 27. **打家劫舍系列 (House Robber I & II)** 28. **编辑距离 (Edit Distance)** 29. **单词拆分 (Word Break)** 此列表并非官方发布版本而是基于社区反馈整理而成。
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