int rtl8723au_hal_init(struct rtw_adapter *Adapter)
{
- u8 val8 = 0;
- u32 boundary;
- int status = _SUCCESS;
struct hal_data_8723a *pHalData = GET_HAL_DATA(Adapter);
struct pwrctrl_priv *pwrctrlpriv = &Adapter->pwrctrlpriv;
struct registry_priv *pregistrypriv = &Adapter->registrypriv;
+ u8 val8 = 0;
+ u32 boundary;
+ int status = _SUCCESS;
+ bool mac_on;
unsigned long init_start_time = jiffies;
/* 0x100 value of first mac is 0xEA while 0x100 value of secondary
is 0x00 */
if (val8 == 0xEA) {
- pHalData->bMACFuncEnable = false;
+ mac_on = false;
} else {
- pHalData->bMACFuncEnable = true;
+ mac_on = true;
RT_TRACE(_module_hci_hal_init_c_, _drv_info_,
("%s: MAC has already power on\n", __func__));
}
boundary = WMM_NORMAL_TX_PAGE_BOUNDARY;
}
- if (!pHalData->bMACFuncEnable) {
+ if (!mac_on) {
status = InitLLTTable23a(Adapter, boundary);
if (status == _FAIL) {
RT_TRACE(_module_hci_hal_init_c_, _drv_err_,
pHalData->RfRegChnlVal[0] = PHY_QueryRFReg(Adapter, (enum RF_RADIO_PATH)0, RF_CHNLBW, bRFRegOffsetMask);
pHalData->RfRegChnlVal[1] = PHY_QueryRFReg(Adapter, (enum RF_RADIO_PATH)1, RF_CHNLBW, bRFRegOffsetMask);
- if (!pHalData->bMACFuncEnable) {
+ if (!mac_on) {
_InitQueueReservedPage(Adapter);
_InitTxBufferBoundary(Adapter);
}