Use MDK to compile a simple stm32 program
Environment configuration
This experiment uses mdk5 to complete, and the download can be found at https://www.keil.com/download/product/.
After downloading, download the support package ARM.CMSIS.3.20 at http://www.keil.com/dd2/pack .4 and Keil.STM32F1xx_DFP.1.0.4, double-click the program after the download is complete.
Click next and wait for completion and then click finish to complete the installation of the support package.
Create project file
Enter the software, click project, click the first item named LED, click save
, and select the chip in the next interface. In this experiment, STM32F103R8 was selected. Click OK to complete the chip selection and
then check the settings as shown in the figure. Now
the creation of the project file and the basic settings are completed
Definition of main function
Click file and select new to create the file test1
and fill in the following code in test1
//宏定义,用于存放stm32寄存器映射
#define PERIPH_BASE ((unsigned int)0x40000000)//AHB
#define APB2PERIPH_BASE (PERIPH_BASE + 0x10000)
#define GPIOA_BASE (APB2PERIPH_BASE + 0x0800)
//GPIOA_BASE=0x40000000+0x10000+0x0800=0x40010800,该地址为GPIOA的基地址
#define GPIOB_BASE (APB2PERIPH_BASE + 0x0C00)
//GPIOB_BASE=0x40000000+0x10000+0x0C00=0x40010C00,该地址为GPIOB的基地址
#define GPIOC_BASE (APB2PERIPH_BASE + 0x1000)
//GPIOC_BASE=0x40000000+0x10000+0x1000=0x40011000,该地址为GPIOC的基地址
#define GPIOD_BASE (APB2PERIPH_BASE + 0x1400)
//GPIOD_BASE=0x40000000+0x10000+0x1400=0x40011400,该地址为GPIOD的基地址
#define GPIOE_BASE (APB2PERIPH_BASE + 0x1800)
//GPIOE_BASE=0x40000000+0x10000+0x0800=0x40011800,该地址为GPIOE的基地址
#define GPIOF_BASE (APB2PERIPH_BASE + 0x1C00)
//GPIOF_BASE=0x40000000+0x10000+0x0800=0x40011C00,该地址为GPIOF的基地址
#define GPIOG_BASE (APB2PERIPH_BASE + 0x2000)
//GPIOG_BASE=0x40000000+0x10000+0x0800=0x40012000,该地址为GPIOG的基地址
#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
}
}
Click Save and name it as main.c and
finally add it to the project file, right-click on Course Group 1 and select the third item to
complete the definition of main.c, the running result is