{
struct r8192_priv *priv = rtllib_priv(dev);
u8 msr;
- LED_CTL_MODE LedAction = LED_CTL_NO_LINK;
+ enum led_ctl_mode LedAction = LED_CTL_NO_LINK;
msr = read_nic_byte(dev, MSR);
msr &= ~ MSR_LINK_MASK;
case HW_VAR_MEDIA_STATUS:
{
enum rt_op_mode OpMode = *((enum rt_op_mode *)(val));
- LED_CTL_MODE LedAction = LED_CTL_NO_LINK;
+ enum led_ctl_mode LedAction = LED_CTL_NO_LINK;
u8 btMsr = read_nic_byte(dev, MSR);
btMsr &= 0xfc;
IG_Max
};
-typedef enum _LED_CTL_MODE{
+enum led_ctl_mode {
LED_CTL_POWER_ON = 1,
LED_CTL_LINK = 2,
LED_CTL_NO_LINK = 3,
LED_CTL_START_WPS_BOTTON = 11,
LED_CTL_STOP_WPS_FAIL = 12,
LED_CTL_STOP_WPS_FAIL_OVERLAP = 13,
-} LED_CTL_MODE;
+};
typedef enum _RT_RF_TYPE_DEF
{
void (*UpdateInterruptMaskHandler)(struct net_device* dev, u32 AddMSR, u32 RemoveMSR);
u16 (*rtl_11n_user_show_rates)(struct net_device *dev);
void (*ScanOperationBackupHandler)(struct net_device *dev, u8 Operation);
- void (*LedControlHandler)(struct net_device * dev, LED_CTL_MODE LedAction);
+ void (*LedControlHandler)(struct net_device * dev, enum led_ctl_mode LedAction);
void (*SetHwRegHandler)(struct net_device *dev,u8 variable,u8* val);
void (*GetHwRegHandler)(struct net_device *dev,u8 variable,u8* val);