#include <iostream>
#include <stack>
#include <list>
using namespace std;
typedef struct BiNode
{
int data;
struct BiNode *l,*r;
}*BiTree,*BiNodePtr,BiNode;
class Hoffman
{
public:
explicit Hoffman();
void initFrom(int array[],int n);
void construct();
void pathFor(int data);
BiTree tree();
private:
BiTree min(BiTree *base);
BiTree merge(BiTree t1,BiTree t2);
void append(BiTree t);
BiTree finalTree;
BiTree *base;
int size;
};
Hoffman::Hoffman(){finalTree=0;base=0;size=0;}
BiTree Hoffman::tree(){
return finalTree;
}
void Hoffman::initFrom(int array[],int n)
{
base = new BiTree[n];
for(int i=0;i<n;i++){
base[i]=new BiNode;
base[i]->data=array[i];
base[i]->l=NULL;
base[i]->r=NULL;
}
size=n;
}
void Hoffman::construct()
{
BiTree t1,t2,t;
while(size>1)
{
t1=min(base);
t2=min(base);
t=merge(t1,t2);
append(t);
}
finalTree=base[0];
}
void Hoffman::pathFor(int data)
{
}
BiTree Hoffman::min(BiTree *base)
{
int pos=0,i;BiTree t=NULL;
for(i=0;i<size;i++)
{
if(base[i]->data<base[pos]->data)pos=i;
}
t=base[pos];
for(int j=pos;j<size-1;j++)base[j]=base[j+1];
size--;
return t;
}
BiTree Hoffman::merge(BiTree t1,BiTree t2)
{
BiTree t=new BiNode;
t->l=t1;
t->r=t2;
t->data=t1->data+t2->data;
return t;
}
void Hoffman::append(BiTree t)
{
base[size]=t;
size++;
}
霍夫曼树的建立,C++实现
最新推荐文章于 2023-08-17 16:31:54 发布