快速排序

快速排序的基本思想:通过一趟排序将待排记录分隔成独立的两部分,其中一部分记录的关键字均比另一部分的关键字小,则可分别对这两部分记录继续进行排序,以达到整个序列有序。

 

1. 快速排序的算法描述

快速排序使用分治法来把一个串(list)分为两个子串(sub-lists)。具体算法描述如下:

  • 从数列中挑出一个元素,称为 “基准”(pivot);
  • 重新排序数列,所有元素比基准值小的摆放在基准前面,所有元素比基准值大的摆在基准的后面(相同的数可以到任一边)。在这个分区退出之后,该基准就处于数列的中间位置。这个称为分区(partition)操作;
  • 递归地(recursive)把小于基准值元素的子数列和大于基准值元素的子数列排序。

 

2. 快速排序的动图演示

快速排序的动图演示

 

3. 快速排序的代码实现

1)JavaScript 代码实现

function quickSort(arr, left, right) {
    var len = arr.length,
        partitionIndex,
        left = typeof left != 'number' ? 0 : left,
        right = typeof right != 'number' ? len - 1 : right;

    if (left < right) {
        partitionIndex = partition(arr, left, right);
        quickSort(arr, left, partitionIndex-1);
        quickSort(arr, partitionIndex+1, right);
    }
    return arr;
}

function partition(arr, left ,right) {     // 分区操作
    var pivot = left,                      // 设定基准值(pivot)
        index = pivot + 1;
    for (var i = index; i <= right; i++) {
        if (arr[i] < arr[pivot]) {
            swap(arr, i, index);
            index++;
        }        
    }
    swap(arr, pivot, index - 1);
    return index-1;
}

function swap(arr, i, j) {
    var temp = arr[i];
    arr[i] = arr[j];
    arr[j] = temp;
}
function partition2(arr, low, high) {
  let pivot = arr[low];
  while (low < high) {
    while (low < high && arr[high] > pivot) {
      --high;
    }
    arr[low] = arr[high];
    while (low < high && arr[low] <= pivot) {
      ++low;
    }
    arr[high] = arr[low];
  }
  arr[low] = pivot;
  return low;
}

function quickSort2(arr, low, high) {
  if (low < high) {
    let pivot = partition2(arr, low, high);
    quickSort2(arr, low, pivot - 1);
    quickSort2(arr, pivot + 1, high);
  }
  return arr;
}

2)Python 代码实现

def quickSort(arr, left=None, right=None):
    left = 0 if not isinstance(left,(int, float)) else left
    right = len(arr)-1 if not isinstance(right,(int, float)) else right
    if left < right:
        partitionIndex = partition(arr, left, right)
        quickSort(arr, left, partitionIndex-1)
        quickSort(arr, partitionIndex+1, right)
    return arr

def partition(arr, left, right):
    pivot = left
    index = pivot+1
    i = index
    while  i <= right:
        if arr[i] < arr[pivot]:
            swap(arr, i, index)
            index+=1
        i+=1
    swap(arr,pivot,index-1)
    return index-1

def swap(arr, i, j):
    arr[i], arr[j] = arr[j], arr[i]

3)Go 代码实现

func quickSort(arr []int) []int {
	return _quickSort(arr, 0, len(arr)-1)
}

func _quickSort(arr []int, left, right int) []int {
    if left < right {
        partitionIndex := partition(arr, left, right)
        _quickSort(arr, left, partitionIndex-1)
        _quickSort(arr, partitionIndex+1, right)
    }
    return arr
}

func partition(arr []int, left, right int) int {
    pivot := left
    index := pivot + 1

    for i := index; i <= right; i++ {
        if arr[i] < arr[pivot] {
                swap(arr, i, index)
                index += 1
        }
    }
    swap(arr, pivot, index-1)
    return index - 1
}

func swap(arr []int, i, j int) {
    arr[i], arr[j] = arr[j], arr[i]
}

4)Java 代码实现

public class QuickSort implements IArraySort {

    @Override
    public int[] sort(int[] sourceArray) throws Exception {
        // 对 arr 进行拷贝,不改变参数内容
        int[] arr = Arrays.copyOf(sourceArray, sourceArray.length);

        return quickSort(arr, 0, arr.length - 1);
    }

    private int[] quickSort(int[] arr, int left, int right) {
        if (left < right) {
            int partitionIndex = partition(arr, left, right);
            quickSort(arr, left, partitionIndex - 1);
            quickSort(arr, partitionIndex + 1, right);
        }
        return arr;
    }

    private int partition(int[] arr, int left, int right) {
        // 设定基准值(pivot)
        int pivot = left;
        int index = pivot + 1;
        for (int i = index; i <= right; i++) {
            if (arr[i] < arr[pivot]) {
                swap(arr, i, index);
                index++;
            }
        }
        swap(arr, pivot, index - 1);
        return index - 1;
    }

    private void swap(int[] arr, int i, int j) {
        int temp = arr[i];
        arr[i] = arr[j];
        arr[j] = temp;
    }

}

5)Php 代码实现

function quickSort($arr)
{
    if (count($arr) <= 1)
        return $arr;
    $middle = $arr[0];
    $leftArray = array();
    $rightArray = array();

    for ($i = 1; $i < count($arr); $i++) {
        if ($arr[$i] > $middle)
            $rightArray[] = $arr[$i];
        else
            $leftArray[] = $arr[$i];
    }
    $leftArray = quickSort($leftArray);
    $leftArray[] = $middle;

    $rightArray = quickSort($rightArray);
    return array_merge($leftArray, $rightArray);
}

6)C 代码实现

typedef struct _Range {
    int start, end;
} Range;

Range new_Range(int s, int e) {
    Range r;
    r.start = s;
    r.end = e;
    return r;
}

void swap(int *x, int *y) {
    int t = *x;
    *x = *y;
    *y = t;
}

void quick_sort(int arr[], const int len) {
    if (len <= 0)
        return; // 避免len等於負值時引發段錯誤(Segment Fault)
    // r[]模擬列表,p為數量,r[p++]為push,r[--p]為pop且取得元素
    Range r[len];
    int p = 0;
    r[p++] = new_Range(0, len - 1);
    while (p) {
        Range range = r[--p];
        if (range.start >= range.end)
            continue;
        int mid = arr[(range.start + range.end) / 2]; // 選取中間點為基準點
        int left = range.start, right = range.end;
        do {
            while (arr[left] < mid) ++left;   // 檢測基準點左側是否符合要求
            while (arr[right] > mid) --right; //檢測基準點右側是否符合要求
            if (left <= right) {
                swap(&arr[left], &arr[right]);
                left++;
                right--;               // 移動指針以繼續
            }
        } while (left <= right);
        if (range.start < right) r[p++] = new_Range(range.start, right);
        if (range.end > left) r[p++] = new_Range(left, range.end);
    }
}

7)C++ 代码实现

Paritition(int A[], int low, int high) {
   int pivot = A[low];
   while (low < high) {
     while (low < high && A[high] >= pivot) {
       --high;
     }
     A[low] = A[high];
     while (low < high && A[low] <= pivot) {
       ++low;
     }
     A[high] = A[low];
   }
   A[low] = pivot;
   return low;
}

 void QuickSort(int A[], int low, int high) //快排母函数
 {
   if (low < high) {
     int pivot = Paritition(A, low, high);
     QuickSort(A, low, pivot - 1);
     QuickSort(A, pivot + 1, high);
   }
 }

8)C# 代码实现

static void BubbleSort(int[] intArray) {
    int temp = 0;
    bool swapped;
    for (int i = 0; i < intArray.Length; i++)
    {
        swapped = false;
        for (int j = 0; j < intArray.Length - 1 - i; j++)
            if (intArray[j] > intArray[j + 1])
            {
                temp = intArray[j];
                intArray[j] = intArray[j + 1];
                intArray[j + 1] = temp;
                if (!swapped)
                    swapped = true;
            }
        if (!swapped)
            return;
    }
}