Keil安装及STM32简单程序编写与调试指南

一、keil的安装
1.下载地址:
压缩包网址:https://pan.baidu.com/s/1f0nHjn7sSG8SK3waV_G1Pg
提取码:94xf
参考博客:https://blog.csdn.net/ssj925319/article/details/108919862
2.开始安装

勾选I agree to …后,点击Next>>

点击Browse…选择安装路径后,点击Next>>继续

输入Name和E-mail后,点击Next>>

等待安装完成然后点击finish完成keil软件的安装。
二、安装stm 32
在解压压缩包中找到ARM.CMSIS.3.20.4包,点击Next>>

点击finish

点击安装

安装完毕之后

在解压压缩包找到keil.STM32F1xx_DFP.1.0.4包,并打开,点击Next>>

点击finish

安装完毕。
三、设置keil
打开keil,点击Edit,然后点击Configuration

将Encoding设置为:Chinese GB2312(Simplified) ,Tab size设置为4

点击Color & Fonts,选中C/C++ Editor files,点击OK

四、stm32程序的编写
新建文件

文件命名

选择STM32F103RB


创建main.c文件

#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
     }
}


点击保存按钮,将文件名命名为main.c后保存

单击选中Source Group 1,然后点击 Add Existing Files to Group

选中main.c后,点击Add

五、编译程序
编译程序

编译结束
六、stm32程序仿真调试

点击 Debug,勾选 Use Simulator ,再选择 ULINK2/ME Cortex Debugger ,并点击 Settings

保证Port为JTAG,Reset为Autodetect,点击OK


参考博客
https://blog.csdn.net/ssj925319/article/details/108919862

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