栈
- 像桶一样,后进先出LIFO(Last In First Out)
- 可以实现顺序变更;
- 作用:回溯
定义(使用顺序表,最好使用双向链表)
typedef struct Stack{
int array[100];
int top;
} Stack;
初始化
void stackInit(Stack*stack)
{
stack->top = 0;
}
压栈(尾插)
void StackPush(Stack*stack,int value)
{
stack->array[stack->top] = value;
stack->top++;
}
出栈(尾删)
void StackPop(Stack*stack){
stack->top--;
}
返回栈顶元素
int StackTop(const Stack*stack){
return stack->array[stack->top-1];
}
判断是否为空
int StackEmpty(const Stack*stack){
return stack->top==0?1:0;
}
获取栈长
int StackSize(const Stack*stack){
return stack->top;
}
队列
定义(使用单链表)
typedef struct Node{
int value;
struct Node*next;
}Node;
typedef struct Queue{
Node*front;
Node*end;
int size;
}Queue;
初始化
void QueueInit(Queue*queue){
queue->front = NULL;
queue->end = NULL;
queue->size = 0;
}
销毁
void QueueDestory(Queue*queue){
Node*node,*next;
for(node = queue->front;node!=NULL;node = next){
next = node->next;
free(node);
}
queue->front = queue->end=NULL;
queue->size = 0;
}
队插入-链表尾插
void QueuePush(Queue*queue,int val){
Node*node = (Node*)malloc(sizeof(Node));
node->value = val;
node->next =NULL;
queue->size++;
if(queue->end!=NULL)
{
queue->end->next = node;
queue->end = node;
}
else
{
queue->front = queue->end = node;
}
}
队删除-链表头删
void QueuePop(Queue*queue){
assert(queue->size>0);
queue->size--;
Node*get = queue->front;
queue->front = get->next;
free(get);
if(queue->front==NULL){
queue->end =NULL;
}
}
返回队尾元素
int QueueEnd(const Queue*queue){
return queue->end->value;
}
判空
int QueueEmpty(const Queue*queue){
return queue->size!=0?0:1;
}