stm32
简单程序编译及完成51程序设计与仿真
一.stm32
简单程序编译
1.环境配置
1.1安装MDK5
- 官网网址下载
http://www.keil.com/download/product. - 百度网盘分享(包中含安装教程与支持包)
链接: https://pan.baidu.com/s/1pUtNTA3NQ7fDBf0pl9rlrw
提取码:lzzz
2.编译stm程序—闪烁LED
2.1 建立一个工程
-
打开
Keil uVision5
,点击Project
→New uVision Project
-
选择芯片
-
设置
Run-Time Environment
,点击OK
建立完工程。
-
建立主程序
main.c
, 打开Target 1
→Source Group1
(右键点击)→Add New Item
-
编写代码
#define PERIPH_BASE ((unsigned int)0x40000000)
#define APB2PERIPH_BASE (PERIPH_BASE + 0x10000)
#define GPIOA_BASE (APB2PERIPH_BASE + 0x0800)
#define GPIOB_BASE (APB2PERIPH_BASE + 0x0C00)
#define GPIOC_BASE (APB2PERIPH_BASE + 0x1000)
#define GPIOD_BASE (APB2PERIPH_BASE + 0x1400)
#define GPIOE_BASE (APB2PERIPH_BASE + 0x1800)
#define GPIOF_BASE (APB2PERIPH_BASE + 0x1C00)
#define GPIOG_BASE (APB2PERIPH_BASE + 0x2000)
#define GPIOA_ODR_Addr (GPIOA_BASE+12) //0x4001080C
#define GPIOB_ODR_Addr (GPIOB_BASE+12) //0x40010C0C
#define GPIOC_ODR_Addr (GPIOC_BASE+12) //0x4001100C
#define GPIOD_ODR_Addr (GPIOD_BASE+12) //0x4001140C
#define GPIOE_ODR_Addr (GPIOE_BASE+12) //0x4001180C
#define GPIOF_ODR_Addr (GPIOF_BASE+12) //0x40011A0C
#define GPIOG_ODR_Addr (GPIOG_BASE+12) //0x40011E0C
#define BITBAND(addr, bitnum) ((addr & 0xF0000000)+0x2000000+((addr &0xFFFFF)<<5)+(bitnum<<2))
#define MEM_ADDR(addr) *((volatile unsigned long *)(addr))
#define LED0 MEM_ADDR(BITBAND(GPIOA_ODR_Addr,8))
//#define LED0 *((volatile unsigned long *)(0x422101a0)) //PA8
//定义typedef类型别名
typedef struct
{
volatile unsigned int CR;
volatile unsigned int CFGR;
volatile unsigned int CIR;
volatile unsigned int APB2RSTR;
volatile unsigned int APB1RSTR;
volatile unsigned int AHBENR;
volatile unsigned int APB2ENR;
volatile unsigned int APB1ENR;
volatile unsigned int BDCR;
volatile unsigned int CSR;
} RCC_TypeDef;
#define RCC ((RCC_TypeDef *)0x40021000)
// 定义typedef类型别名
typedef struct
{
volatile unsigned int CRL;
volatile unsigned int CRH;
volatile unsigned int IDR;
volatile unsigned int ODR;
volatile unsigned int BSRR;
volatile unsigned int BRR;
volatile unsigned int LCKR;
} GPIO_TypeDef;
//GPIOA指向地址GPIOA_BASE,GPIOA_BASE地址存放的数据类型为GPIO_TypeDef
#define GPIOA ((GPIO_TypeDef *)GPIOA_BASE)
void LEDInit( void )
{
RCC->APB2ENR|=1<<2; //GPIOA 时钟开启
GPIOA->CRH&=0XFFFFFFF0;
GPIOA->CRH|=0X00000003;
}
//粗略延时
void Delay_ms( volatile unsigned int t)
{
unsigned int i,n;
for (n=0;n<t;n++)
for (i=0;i<800;i++);
}
int main( void )
{
LEDInit();
while (1)
{
LED0=0;//LED熄灭
Delay_ms(500);//延时时间
LED0=1;//LED亮
Delay_ms(500);//延时时间
}
}
- 编译结果
2.2 仿真测试
- 点击工具栏中的红框标志
- 根据序号点击
- 确定后,点击
Start
进行仿真测试
二.51程序设计与仿真
1.建立工程
1.1 打开Keil uVision5
,点击Project
→New uVision Project
,选择AT89C51单片机,选择否
1.2点击file
→New
保存
1.3 右击Source Group 1
→Add file to group
1.4 编写代码
//51单片机编程常用的头文件
#include <reg51.h>
#include <intrins.h>
//延迟函数
void delay_ms(int a)
{
int i,j;
for(i=0;i<a;i++)
{
for(j=0;j<1000;j++) _nop_();
}
}
void main(void)
{
while(1)
{
P0=0xfe;
delay_ms(50);
P0=0xfd;
delay_ms(50);
P0=0xfb;
delay_ms(50);
P0=0xf7;
delay_ms(50);
P0=0xef;
delay_ms(50);
P0=0xdf;
delay_ms(50);
P0=0xbf;
delay_ms(50);
P0=0x7f;
delay_ms(50);
}
}
1.5生成Hex
文件
2.仿真
2.1双击原理图中AT89C51
芯片
2.2 开始仿真及效果
三.总结
熟悉了Proteus
电路仿真软件,初步学习了如何建立stm32
的工程与51程序设计。