second_mid = rtc1_read(ETIMEMREG);
second_high = rtc1_read(ETIMEHREG);
} while (first_low != second_low || first_mid != second_mid ||
- first_high != second_high);
+ first_high != second_high);
return (first_high << 17) | (first_mid << 1) | (first_low >> 15);
}
epoch_sec = mktime(epoch, 1, 1, 0, 0, 0);
current_sec = mktime(time->tm_year + 1900, time->tm_mon + 1, time->tm_mday,
- time->tm_hour, time->tm_min, time->tm_sec);
+ time->tm_hour, time->tm_min, time->tm_sec);
write_elapsed_second(current_sec - epoch_sec);
struct rtc_time *time = &wkalrm->time;
alarm_sec = mktime(time->tm_year + 1900, time->tm_mon + 1, time->tm_mday,
- time->tm_hour, time->tm_min, time->tm_sec);
+ time->tm_hour, time->tm_min, time->tm_sec);
spin_lock_irq(&rtc_lock);
}
retval = request_irq(aie_irq, elapsedtime_interrupt, 0,
- "elapsed_time", pdev);
+ "elapsed_time", pdev);
if (retval < 0)
goto err_device_unregister;
goto err_free_irq;
retval = request_irq(pie_irq, rtclong1_interrupt, 0,
- "rtclong1", pdev);
+ "rtclong1", pdev);
if (retval < 0)
goto err_free_irq;