贪心算法 由局部最优递推成全局最优 饼干问题: 按照分发来进行
class Solution {
public:
int findContentChildren(vector<int>& g, vector<int>& s) {
sort(g.begin(), g.end());
sort(s.begin(), s.end());
int index = s.size() - 1; // 饼干数组的下标
int result = 0;
for (int i = g.size() - 1; i >= 0; i--) { // 遍历胃口
if (index >= 0 && s[index] >= g[i]) { // 遍历饼干
result++;
index--;
}
}
return result;
}
};
摆动序列
class Solution {
public:
int dp[1005][2];
int wiggleMaxLength(vector<int>& nums) {
memset(dp, 0, sizeof dp);
dp[0][0] = dp[0][1] = 1;
for (int i = 1; i < nums.size(); ++i) {
dp[i][0] = dp[i][1] = 1;
for (int j = 0; j < i; ++j) {
if (nums[j] > nums[i]) dp[i][1] = max(dp[i][1], dp[j][0] + 1);
}
for (int j = 0; j < i; ++j) {
if (nums[j] < nums[i]) dp[i][0] = max(dp[i][0], dp[j][1] + 1);
}
}
return max(dp[nums.size() - 1][0], dp[nums.size() - 1][1]);
}
};
最大子序列之和
class Solution {
public:
int maxSubArray(vector<int>& nums) {
int result = INT32_MIN;
int count = 0;
for (int i = 0; i < nums.size(); i++) {
count += nums[i];
if (count > result) { // 取区间累计的最大值(相当于不断确定最大子序终止位置)
result = count;
}
if (count <= 0) count = 0; // 相当于重置最大子序起始位置,因为遇到负数一定是拉低总和
}
return result;
}
};
股票购买时间
class Solution {
public:
int maxProfit(vector<int>& prices) {
int result = 0;
for (int i = 1; i < prices.size(); i++) {
result += max(prices[i] - prices[i - 1], 0);
}
return result;
}
};
跳跃游戏 思考如何得出局部最优
class Solution {
public:
bool canJump(vector<int>& nums) {
int cover = 0;
if (nums.size() == 1) return true; // 只有一个元素,就是能达到
for (int i = 0; i <= cover; i++) { // 注意这里是小于等于cover
cover = max(i + nums[i], cover);
if (cover >= nums.size() - 1) return true; // 说明可以覆盖到终点了
}
return false;
}
};
k次取反之后最大和 重点是思考对绝对值进行排序
class Solution {
static bool cmp(int a, int b) {
return abs(a) > abs(b);
}
public:
int largestSumAfterKNegations(vector<int>& A, int K) {
sort(A.begin(), A.end(), cmp); // 第一步
for (int i = 0; i < A.size(); i++) { // 第二步
if (A[i] < 0 && K > 0) {
A[i] *= -1;
K--;
}
}
if (K % 2 == 1) A[A.size() - 1] *= -1; // 第三步
int result = 0;
for (int a : A) result += a; // 第四步
return result;
}
};
身高差排序
class Solution {
public:
static bool cmp(const vector<int>& a, const vector<int>& b) {
if (a[0] == b[0]) return a[1] < b[1];
return a[0] > b[0];
}
vector<vector<int>> reconstructQueue(vector<vector<int>>& people) {
sort (people.begin(), people.end(), cmp);
vector<vector<int>> que;
for (int i = 0; i < people.size(); i++) {
int position = people[i][1];
que.insert(que.begin() + position, people[i]);
}
return que;
}
};