1.完全二叉树的新建
#include<stdio.h>
typedef struct Treenode
{
int data;
struct Treenode * left;
struct Treenode * right;
} tnode;
void create(tnode **tree,int arr[],int n,int index)
{
if(index>n)
return ;
(*tree)=(tnode *)malloc(sizeof(tnode));
(*tree)->data=arr[index];
(*tree)->left=NULL;
(*tree)->right=NULL;
create(&(*tree)->left,arr,n,2*index+1);
create(&(*tree)->right,arr,n,2*index+2);
}
void pre(tnode *tree)
{
if(tree==NULL)
return ;
else
{
pre(tree->left);
printf("%d",tree->data);
pre(tree->right);
}
}
int main()
{
int arr[]={1,2,3,5,4};
tnode *tree;
create(&tree,arr,4,0);
pre(tree);
getch();
return 0;
}
2.单链表的新建
#include<stdio.h>
typedef struct node
{
int data;
struct node * next;
}node;
void create(node **head,int arr[],int n,int index)
{
if(index>n)
return ;
*head=(node *)malloc(sizeof(node));
(*head)->data=arr[index];
(*head)->next=NULL;
create(&(*head)->next,arr,n,index+1);
}
void print(node *head)
{
while(head->next)
{
head=head->next;
printf("%5d",head->data);
}
}
int main()
{
int arr[]={-1,1,2,3,4,5,6};(数组前面的-1是额外添加的,做为头节点)
node *head;
create(&head,arr,6,0);
print(head);
getch();
return 0;
}