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            EEPW首頁 > 嵌入式系統(tǒng) > 設計應用 > 按鍵驅(qū)動--定時器消抖

            按鍵驅(qū)動--定時器消抖

            作者: 時間:2016-11-21 來源:網(wǎng)絡 收藏
            驅(qū)動源碼:
            #include "linux/module.h"
            #include "linux/kernel.h"
            #include "linux/fs.h"
            #include "linux/init.h"
            #include "linux/delay.h"
            #include "linux/irq.h"
            #include "asm/uaccess.h"
            #include "asm/irq.h"
            #include "asm/io.h"
            #include "asm/arch/regs-gpio.h"
            #include "asm/hardware.h"
            #include "linux/poll.h"
            int major = 0;
            static struct class *keydrv_class;
            static struct class_device *keydrv_class_dev;
            volatile unsigned long *gpfcon;
            volatile unsigned long *gpfdat;
            volatile unsigned long *gpgcon;
            volatile unsigned long *gpgdat;
            struct pin_desc{
            unsigned int pin;
            unsigned int key_val;
            };
            struct pin_desc pins_desc[4] = {
            {S3C2410_GPF0, 0x01},
            {S3C2410_GPF2, 0x02},
            {S3C2410_GPG3, 0x03},
            {S3C2410_GPG11, 0x04},
            };
            // 鍵值: 按下時, 0x01, 0x02, 0x03, 0x04
            // 鍵值: 松開時, 0x81, 0x82, 0x83, 0x84
            static unsigned char key_val;
            static struct timer_list buttons_timer;
            static struct pin_desc *irq_pd;
            static DECLARE_MUTEX(button_lock); //定義互斥鎖
            static DECLARE_WAIT_QUEUE_HEAD(button_waitq);
            // 中斷事件標志, 中斷服務程序?qū)⑺?,third_drv_read將它清0
            static volatile int ev_press = 0;
            static struct fasync_struct *button_async;
            static irqreturn_t buttons_irq(int irq, void *dev_id)
            {
            irq_pd = (struct pin_desc *)dev_id;
            mod_timer(&buttons_timer,jiffies+HZ/100); //10ms以后啟動定時器
            return IRQ_RETVAL(IRQ_HANDLED);
            }
            static int key_drv_open(struct inode *inode, struct file *file)
            {
            if(file->f_flags & O_NONBLOCK)
            {
            if(down_trylock(&button_lock))
            return -EBUSY;
            }
            else
            {
            // 獲取信號量
            down(&button_lock);
            }
            request_irq(IRQ_EINT0, buttons_irq,IRQT_BOTHEDGE,"S2",&pins_desc[0]);
            request_irq(IRQ_EINT2, buttons_irq,IRQT_BOTHEDGE,"S3",&pins_desc[1]);
            request_irq(IRQ_EINT11,buttons_irq,IRQT_BOTHEDGE,"S4",&pins_desc[2]);
            request_irq(IRQ_EINT19,buttons_irq,IRQT_BOTHEDGE,"S5",&pins_desc[3]);
            return 0;
            }
            ssize_t key_drv_read(struct file *file, char __user *buf, size_t size, loff_t *ppos)
            {
            if(size != sizeof(key_val))
            return -EINVAL;
            if(file->f_flags & O_NONBLOCK)
            {
            if(!ev_press)
            return -EAGAIN;
            }
            else
            {
            // 如果沒有按鍵動作, 休眠
            wait_event_interruptible(button_waitq, ev_press);
            }
            //如果有按鍵動作, 返回鍵值
            copy_to_user(buf, &key_val, 1);
            ev_press = 0;
            return 1;
            }
            int key_drv_close(struct inode *inode, struct file *file)
            {
            free_irq(IRQ_EINT0, &pins_desc[0]);
            free_irq(IRQ_EINT2, &pins_desc[1]);
            free_irq(IRQ_EINT11, &pins_desc[2]);
            free_irq(IRQ_EINT19, &pins_desc[3]);
            up(&button_lock);
            return 0;
            }
            static unsigned key_drv_poll(struct file *file, poll_table *wait)
            {
            unsigned int mask = 0;
            poll_wait(file, &button_waitq, wait); // 不會立即休眠
            if (ev_press)
            mask |= POLLIN | POLLRDNORM;
            return mask;
            }
            static int key_drv_fasync (int fd, struct file *filp, int on)
            {
            printk("driver: fifth_drv_fasyncn");
            return fasync_helper(fd, filp, on, &button_async);
            }
            static struct file_operations key_drv_fops = {
            .owner = THIS_MODULE, // 這是一個宏,推向編譯模塊時自動創(chuàng)建的__this_module變量
            .open = key_drv_open,
            .read = key_drv_read,
            .release = key_drv_close,
            .poll = key_drv_poll,
            .fasync = key_drv_fasync,
            };
            static void buttons_timer_function(unsigned long data)
            {
            struct pin_desc * pindesc = irq_pd;
            unsigned int pinval;
            if(!pindesc)
            return ;
            pinval = s3c2410_gpio_getpin(pindesc->pin);
            if(pinval)
            {
            // 松開
            key_val = 0x80 | pindesc->key_val;
            }
            else
            {
            // 按下
            key_val = pindesc->key_val;
            }
            ev_press = 1; // 表示中斷發(fā)生了
            wake_up_interruptible(&button_waitq); // 喚醒休眠的進程
            kill_fasync (&button_async, SIGIO, POLL_IN);
            }
            static int key_drv_init(void)
            {
            init_timer(&buttons_timer);
            buttons_timer.function = buttons_timer_function;
            //buttons_timer.expires = 0;
            add_timer(&buttons_timer);
            major = register_chrdev(0, "key_drv", &key_drv_fops);
            keydrv_class = class_create(THIS_MODULE, "key_drv");
            keydrv_class_dev = class_device_create(keydrv_class, NULL, MKDEV(major, 0), NULL, "buttons");
            // /dev/buttons
            gpfcon = (volatile unsigned long *)ioremap(0x56000050, 16);
            gpfdat = gpfcon + 1;
            gpgcon = (volatile unsigned long *)ioremap(0x56000060, 16);
            gpgdat = gpgcon + 1;
            return 0;
            }
            static void key_drv_exit(void)
            {
            unregister_chrdev(major, "key_drv");
            class_device_unregister(keydrv_class_dev);
            class_destroy(keydrv_class);
            iounmap(gpfcon);
            iounmap(gpgcon);
            return 0;
            }
            module_init(key_drv_init);
            module_exit(key_drv_exit);
            MODULE_LICENSE("GPL");
            =================================================================
            測試程序:
            #include "sys/types.h"
            #include "sys/stat.h"
            #include "fcntl.h"
            #include "stdio.h"
            #include "poll.h"
            #include "signal.h"
            #include "sys/types.h"
            #include "unistd.h"
            #include "fcntl.h"
            int fd;
            void my_signal_fun(int signum)
            {
            unsigned char key_val;
            read(fd, &key_val, 1);
            printf("key_val: 0x%xn", key_val);
            }
            int main(int argc, char **argv)
            {
            int ret;
            fd = open("/dev/buttons", O_RDWR);
            if(fd < 0)
            {
            printf("cant open!n");
            return -1;
            }
            while(1)
            {
            ret = read(fd, &key_val, 1);
            printf("key_val:0x%x,ret = %d",key_val,ret);
            //sleep(5);
            }
            return 0;
            }
            ===============================================================
            解析:
            1、先定義一個定時器:static struct timer_list buttons_timer;
            2、再在key_drv_init函數(shù)中初始化定時器:
            init_timer(&buttons_timer);
            buttons_timer.function = buttons_timer_function;
            //buttons_timer.expires = 0;
            add_timer(&buttons_timer);
            3、在按鍵中斷中設置定時器時間:
            mod_timer(&buttons_timer,jiffies+HZ/100); //10ms以后啟動定時器
            4、如果沒有二次中斷修改中斷時間則10ms以后就會進入定時器中斷函數(shù),處理定時器中斷。



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