zoukankan      html  css  js  c++  java
  • 09-排序3 Insertion or Heap Sort (25 分)

    According to Wikipedia:

    Insertion sort iterates, consuming one input element each repetition, and growing a sorted output list. Each iteration, insertion sort removes one element from the input data, finds the location it belongs within the sorted list, and inserts it there. It repeats until no input elements remain.

    Heap sort divides its input into a sorted and an unsorted region, and it iteratively shrinks the unsorted region by extracting the largest element and moving that to the sorted region. it involves the use of a heap data structure rather than a linear-time search to find the maximum.

    Now given the initial sequence of integers, together with a sequence which is a result of several iterations of some sorting method, can you tell which sorting method we are using?

    Input Specification:

    Each input file contains one test case. For each case, the first line gives a positive integer N (≤). Then in the next line, N integers are given as the initial sequence. The last line contains the partially sorted sequence of the N numbers. It is assumed that the target sequence is always ascending. All the numbers in a line are separated by a space.

    Output Specification:

    For each test case, print in the first line either "Insertion Sort" or "Heap Sort" to indicate the method used to obtain the partial result. Then run this method for one more iteration and output in the second line the resulting sequence. It is guaranteed that the answer is unique for each test case. All the numbers in a line must be separated by a space, and there must be no extra space at the end of the line.

    Sample Input 1:

    10
    3 1 2 8 7 5 9 4 6 0
    1 2 3 7 8 5 9 4 6 0
    

    Sample Output 1:

    Insertion Sort
    1 2 3 5 7 8 9 4 6 0
    

    Sample Input 2:

    10
    3 1 2 8 7 5 9 4 6 0
    6 4 5 1 0 3 2 7 8 9
    

    Sample Output 2:

    Heap Sort
    5 4 3 1 0 2 6 7 8 9

    未通过版 20190525
    #include<cstdio>
    #include<algorithm>
    using namespace std;
    const int maxn = 110;
    
    int tempOri[maxn],Origin[maxn],changed[maxn];
    int n;
    
    bool isSame(int A[],int B[]);
    bool Insertion();
    void showArray(int A[]);
    void HeapSort();
    void downAdjust(int low,int high);
    
    int main(){
        scanf("%d",&n);
        for(int i = 0; i < n; i++){
            scanf("%d",&Origin[i]);
            tempOri[i] = Origin[i];
        }
        for(int i = 0; i < n; i++){
            scanf("%d",&changed[i]);
        }
        if(Insertion()){
            printf("Insertion Sort
    ");
            showArray(tempOri); 
        }else{
            printf("Heap Sort
    ");
            for(int i = 0; i < n; i++){
                tempOri[i] = Origin[i];
            }
            HeapSort();
        }
        return 0;
    }
    
    bool Insertion(){
        bool flag = false;
        for(int i = 1;  i < n; i++){
            if(i != 1 && isSame(tempOri,changed)){
                flag = true;
            }
            sort(tempOri,tempOri+i+1);
            if(flag == true){
                return true;
            }
        }
        return false;
    }
    
    void HeapSort(){
        bool flag = false;
        for(int i = n/2; i >= 0; i--){
            downAdjust(i,n);
        }
        for(int i = n - 1; i > 0; i--){
            if(i != n - 1 && isSame(tempOri,changed)){
                flag = true;
            }
            swap(tempOri[i],tempOri[1]);
            downAdjust(0,i-1);
            if(flag == true){
                showArray(tempOri);
                return;
            }
        }
    }
    
    bool isSame(int A[],int B[]){
        for(int i = 0; i < n; i++){
            if(A[i] != B[i]) return false;
        }
        return true;
    }
    
    void showArray(int A[]){
        for(int i = 0; i < n; i++){
            printf("%d",A[i]);
            if(i < n - 1) printf(" ");
        }
    }
    
    void downAdjust(int low,int high){
        int i = low,j = i * 2;
        while(j <= high){
            if(j < high && tempOri[j] < tempOri[j+1]){
                j += 1;
            }
            if(tempOri[i] < tempOri[j]){
                i = j;
                j *= 2;
            }else{
                break;
            }
        }
    }
    #include<cstdio>
    #include<algorithm>
    using namespace std;
    const int maxn = 110;
    
    int tempOri[maxn],Origin[maxn],changed[maxn];
    int n;
    
    bool isSame(int A[],int B[]);
    bool Insertion();
    void showArray(int A[]);
    void HeapSort();
    void downAdjust(int low,int high);
    
    int main(){
        scanf("%d",&n);
        for(int i = 1; i <= n; i++){
            scanf("%d",&Origin[i]);
            tempOri[i] = Origin[i];
        }
        for(int i = 1; i <= n; i++){
            scanf("%d",&changed[i]);
        }
        if(Insertion()){
            printf("Insertion Sort
    ");
            showArray(tempOri); 
        }else{
            printf("Heap Sort
    ");
            for(int i = 1; i <= n; i++){
                tempOri[i] = Origin[i];
            }
            HeapSort();
        }
        return 0;
    }
    
    bool Insertion(){
        bool flag = false;
        for(int i = 2;  i <= n; i++){
            if(i != 2 && isSame(tempOri,changed)){
                flag = true;
            }
            sort(tempOri,tempOri+i+1);
            if(flag == true){
                return true;
            }
        }
        return false;
    }
    
    void HeapSort(){
        bool flag = false;
        for(int i = n/2; i >= 1; i--){
            downAdjust(i,n);
        }
        for(int i = n; i > 1; i--){
            if(i != n  && isSame(tempOri,changed)){
                flag = true;
            }
            swap(tempOri[i],tempOri[1]);
            downAdjust(1,i-1);
            if(flag == true){
                showArray(tempOri);
                return;
            }
        }
    }
    
    bool isSame(int A[],int B[]){
        for(int i = 1; i <= n; i++){
            if(A[i] != B[i]) return false;
        }
        return true;
    }
    
    void showArray(int A[]){
        for(int i = 1; i <= n; i++){
            printf("%d",A[i]);
            if(i < n) printf(" ");
        }
    }
    
    void downAdjust(int low,int high){
        int i = low,j = i * 2;
        while(j <= high){
            if(j < high && tempOri[j] < tempOri[j+1]){
                j += 1;
            }
            if(tempOri[i] < tempOri[j]){
                  swap(tempOri[i],tempOri[j]);
                i = j;
                j *= 2;
            }else{
                break;
            }
        }
    }
  • 相关阅读:
    Flink RichSourceFunction应用,读关系型数据(mysql)数据写入关系型数据库(mysql)
    基于Filebeat+Kafka+Flink仿天猫双11实时交易额
    Flink消费Kafka数据并把实时计算的结果导入到Redis
    Flink+kafka实现Wordcount实时计算
    Filebeat+Kafka+Logstash+ElasticSearch+Kibana搭建完整版
    spring boot+mybatis+quartz项目的搭建完整版
    Hadoop生态组件Hive,Sqoop安装及Sqoop从HDFS/hive抽取数据到关系型数据库Mysql
    Swagger+AutoRest 生成web api客户端(.Net)
    NodeJS学习
    Go学习
  • 原文地址:https://www.cnblogs.com/wanghao-boke/p/10923998.html
Copyright © 2011-2022 走看看