java排序

快速排序

package org.rut.util.algorithm.support;

import org.rut.util.algorithm.SortUtil;

/**
 * @author treeroot
 * @since 2006-2-2
 * @version 1.0
 */
public class ImprovedQuickSort implements SortUtil.Sort {

    private static int MAX_STACK_SIZE=4096;
    private static int THRESHOLD=10;
    /* (non- Javadoc)
     * @see org.rut.util.algorithm.SortUtil.Sort#sort(int[])
     */
public void sort(int[] data) {
        int[] stack=new int[MAX_STACK_SIZE];
       
        int top=-1;
        int pivot;
        int pivotIndex,l,r;
       
        stack[++top]=0;
        stack[++top]=data.length-1;
       
        while(top>0){
            int j=stack[top--];
            int i=stack[top--];
           
            pivotIndex=(i+j)/2;
            pivot=data[pivotIndex];
           
            SortUtil.swap(data,pivotIndex,j);
           
            //partition
            l=i-1;
            r=j;
            do{
                while(data[++l]<pivot);
                while((r!=0)&&(data[--r]>pivot));
                SortUtil.swap(data,l,r);
            }
            while(l<r);
            SortUtil.swap(data,l,r);
            SortUtil.swap(data,l,j);
           
            if((l-i)>THRESHOLD){
                stack[++top]=i;
                stack[++top]=l-1;
            }
            if((j-l)>THRESHOLD){
                stack[++top]=l+1;
                stack[++top]=j;
            }
           
        }
        //new InsertSort().sort(data);
        insertSort(data);
    }
    /**
     * @param data
     */
    private void insertSort(int[] data) {
        int temp;
        for(int i=1;i<data.length;i++){
            for(int j=i;(j>0)&&(data[j]<data[j-1]);j--){
                SortUtil.swap(data,j,j-1);
            }
        }      
    }

}
插入排序:

package org.rut.util.algorithm.support;

import org.rut.util.algorithm.SortUtil;
/**
 * @author treeroot
 * @since 2006-2-2
 * @version 1.0
 */
public class InsertSort implements SortUtil.Sort{

    /* (non-Javadoc)
     * @see org.rut.util.algorithm.SortUtil.Sort#sort(int[])
     */
    public void sort(int[] data) {
        int temp;
        for(int i=1;i<data.length;i++){
            for(int j=i;(j>0)&&(data[j]<data[j-1]);j--){
                SortUtil.swap(data,j,j-1);
            }
        }       
    }

}
冒泡排序:

package org.rut.util.algorithm.support;

import org.rut.util.algorithm.SortUtil;

/**
 * @author treeroot
 * @since 2006-2-2
 * @version 1.0
 */
public class BubbleSort implements SortUtil.Sort{

    /* (non-Javadoc)
     * @see org.rut.util.algorithm.SortUtil.Sort#sort(int[])
     */
    public void sort(int[] data) {
        int temp;
        for(int i=0;i<data.length;i++){
            for(int j=data.length-1;j>i;j--){
                if(data[j]<data[j-1]){
                    SortUtil.swap(data,j,j-1);
                }
            }
        }
    }

}
归并排序:

package org.rut.util.algorithm.support;

import org.rut.util.algorithm.SortUtil;

/**
 * @author treeroot
 * @since 2006-2-2
 * @version 1.0
 */
public class ImprovedMergeSort implements SortUtil.Sort {

    private static final int THRESHOLD = 10;

    /*
     * (non-Javadoc)
     *
     * @see org.rut.util.algorithm.SortUtil.Sort#sort(int[])
     */
    public void sort(int[] data) {
        int[] temp=new int[data.length];
        mergeSort(data,temp,0,data.length-1);
    }

    private void mergeSort(int[] data, int[] temp, int l, int r) {
        int i, j, k;
        int mid = (l + r) / 2;
        if (l == r)
            return;
        if ((mid - l) >= THRESHOLD)
            mergeSort(data, temp, l, mid);
        else
            insertSort(data, l, mid - l + 1);
        if ((r - mid) > THRESHOLD)
            mergeSort(data, temp, mid + 1, r);
        else
            insertSort(data, mid + 1, r - mid);

        for (i = l; i <= mid; i++) {
            temp[i] = data[i];
        }
        for (j = 1; j <= r - mid; j++) {
            temp[r - j + 1] = data[j + mid];
        }
        int a = temp[l];
        int b = temp[r];
        for (i = l, j = r, k = l; k <= r; k++) {
            if (a < b) {
                data[k] = temp[i++];
                a = temp[i];
            } else {
                data[k] = temp[j--];
                b = temp[j];
            }
        }
    }

    /**
     * @param data
     * @param l
     * @param i
     */
    private void insertSort(int[] data, int start, int len) {
        for(int i=start+1;i<start+len;i++){
            for(int j=i;(j>start) && data[j]<data[j-1];j--){
                SortUtil.swap(data,j,j-1);
            }
        }
    }
堆排序:

package org.rut.util.algorithm.support;

import org.rut.util.algorithm.SortUtil;

/**
 * @author treeroot
 * @since 2006-2-2
 * @version 1.0
 */
public class HeapSort implements SortUtil.Sort{

    /* (non-Javadoc)
     * @see org.rut.util.algorithm.SortUtil.Sort#sort(int[])
     */
    public void sort(int[] data) {
        MaxHeap h=new MaxHeap();
        h.init(data);
        for(int i=0;i<data.length;i++)
            h.remove();
        System.arraycopy(h.queue,1,data,0,data.length);
    }

     private static class MaxHeap{        
       
        void init(int[] data){
            this.queue=new int[data.length+1];
            for(int i=0;i<data.length;i++){
                queue[++size]=data[i];
                fixUp(size);
            }
        }
        
        private int size=0;

        private int[] queue;
               
        public int get() {
            return queue[1];
        }

        public void remove() {
            SortUtil.swap(queue,1,size--);
            fixDown(1);
        }
        //fixdown
        private void fixDown(int k) {
            int j;
            while ((j = k << 1) <= size) {
                if (j < size && queue[j]<queue[j+1])
                    j++;
                if (queue[k]>queue[j]) //不用交换
                    break;
                SortUtil.swap(queue,j,k);
                k = j;
            }
        }
        private void fixUp(int k) {
            while (k > 1) {
                int j = k >> 1;
                if (queue[j]>queue[k])
                    break;
                SortUtil.swap(queue,j,k);
                k = j;
            }
        }

    } 

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