#include<malloc.h>
#include<string.h>
#include<stdio.h>
#define OVERFLOW -1
#define STACK_INIT_SIZE 10
#define STACKINCREMENT 2
#define OK 1
#define ERROR 0
#define TRUE 1
#define FALSE 0
typedef int SElemType;
typedef int Status;
struct SqStack
{
SElemType *base;
SElemType *top;
int stacksize;
};
Status InitStack(SqStack &S);
Status DestoryStack(SqStack &S);
Status ClearStack(SqStack &S);
Status StackEmpty(SqStack S);
int StackLength(SqStack S);
Status GetTop(SqStack S, SElemType &e);
Status Push(SqStack &S, SElemType e);
Status Pop(SqStack &S, SElemType &e);
Status StackTraverse(SqStack S, Status(*visit)());
Status InitStack(SqStack &S)
{
S.base = (SElemType *)malloc(STACK_INIT_SIZE*sizeof(SElemType));
if(!S.base) return OVERFLOW;
S.top = S.base;
S.stacksize = STACK_INIT_SIZE;
return OK;
}
Status DestoryStack(SqStack &S)
{
free(S.base);
S.base = NULL;
S.top = NULL;
S.stacksize = 0;
return OK;
}
Status ClearStack(SqStack &S)
{
S.top = S.base;
return OK;
}
Status StackEmpty(SqStack S)
{
if(S.top == S.base)
return TRUE;
else
return FALSE;
}
int StackLength(SqStack S)
{
return S.top - S.base;
}
Status GetTop(SqStack S,SElemType &e)
{
if(S.top == S.base) return ERROR;
e = *(S.top -1);
return OK;
}
Status Push(SqStack &S, SElemType e)
{
if(S.top - S.base >= S.stacksize)
{
S.base = (SElemType *)realloc(S.base,(S.stacksize + STACKINCREMENT)*sizeof(SElemType));
if(!S.base) return OVERFLOW;
S.top = S.base + S.stacksize;
S.stacksize += STACKINCREMENT;
}
*S.top++ = e;
return OK;
}
Status Pop(SqStack &S, SElemType &e)
{
if(S.top == S.base) return ERROR;
e = * --S.top;
return OK;
}
Status StackTraverse(SqStack S, Status(* visit)(SElemType))
{
while(S.top > S.base)
visit(*S.base++);
printf("\n");
return OK;
}
Status visit(SElemType e)
{
printf("%d ", e);
return OK;
}
int main()
{
SElemType j;
SqStack s;
SElemType e;
if(InitStack(s) == OK)
for(j = 1; j <= 12; j++)
{
Push(s,j);
}
printf("栈中的元素依次为:");
StackTraverse(s,visit);
Pop(s, e);
printf("弹出的栈顶元素 e=%d\n", e);
printf("栈空否:%d(1:是 0:否)\n", StackEmpty(s));
GetTop(s, e);
printf("栈顶元素 e=%d 栈的长度为%d\n", e, StackLength(s));
ClearStack(s);
printf("清栈后,栈空否:%d(1:空 0:否)\n",StackEmpty(s));
DestoryStack(s);
printf("销毁栈后,s.top = %u s.base= %u s.stacksize=%d\n",s.top,s.base,s.stacksize);
return 0;
}
运行结果如下:

本文通过C语言实现了一个基于数组的栈结构,并提供了初始化、销毁、清空等基本操作及遍历栈的功能。通过主函数展示了栈的各种操作,如压栈、弹栈、获取栈顶元素等。
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