/* */
/* Debug related function */
/* */
-static u8 halbtcoutsrc_IsBtCoexistAvailable(struct BTC_COEXIST * pBtCoexist)
+static u8 halbtcoutsrc_IsBtCoexistAvailable(struct BTC_COEXIST *pBtCoexist)
{
if (!pBtCoexist->bBinded || !pBtCoexist->Adapter)
return false;
0;
}
-static void halbtcoutsrc_LeaveLps(struct BTC_COEXIST * pBtCoexist)
+static void halbtcoutsrc_LeaveLps(struct BTC_COEXIST *pBtCoexist)
{
struct adapter *padapter;
rtw_btcoex_LPS_Leave(padapter);
}
-static void halbtcoutsrc_EnterLps(struct BTC_COEXIST * pBtCoexist)
+static void halbtcoutsrc_EnterLps(struct BTC_COEXIST *pBtCoexist)
{
struct adapter *padapter;
rtw_btcoex_LPS_Enter(padapter);
}
-static void halbtcoutsrc_NormalLps(struct BTC_COEXIST * pBtCoexist)
+static void halbtcoutsrc_NormalLps(struct BTC_COEXIST *pBtCoexist)
{
struct adapter *padapter;
* Constraint:
* 1. this function will request pwrctrl->lock
*/
-static void halbtcoutsrc_LeaveLowPower(struct BTC_COEXIST * pBtCoexist)
+static void halbtcoutsrc_LeaveLowPower(struct BTC_COEXIST *pBtCoexist)
{
struct adapter *padapter;
s32 ready;
* Constraint:
* 1. this function will request pwrctrl->lock
*/
-static void halbtcoutsrc_NormalLowPower(struct BTC_COEXIST * pBtCoexist)
+static void halbtcoutsrc_NormalLowPower(struct BTC_COEXIST *pBtCoexist)
{
struct adapter *padapter;
rtw_unregister_task_alive(padapter, BTCOEX_ALIVE);
}
-static void halbtcoutsrc_DisableLowPower(struct BTC_COEXIST * pBtCoexist, u8 bLowPwrDisable)
+static void halbtcoutsrc_DisableLowPower(struct BTC_COEXIST *pBtCoexist, u8 bLowPwrDisable)
{
pBtCoexist->btInfo.bBtDisableLowPwr = bLowPwrDisable;
if (bLowPwrDisable)
halbtcoutsrc_NormalLowPower(pBtCoexist); /* original 32k low power behavior. */
}
-static void halbtcoutsrc_AggregationCheck(struct BTC_COEXIST * pBtCoexist)
+static void halbtcoutsrc_AggregationCheck(struct BTC_COEXIST *pBtCoexist)
{
struct adapter *padapter;
bool bNeedToAct;
return portConnectedStatus;
}
-static u32 halbtcoutsrc_GetWifiLinkStatus(struct BTC_COEXIST * pBtCoexist)
+static u32 halbtcoutsrc_GetWifiLinkStatus(struct BTC_COEXIST *pBtCoexist)
{
/* */
/* return value: */
return retVal;
}
-static u32 halbtcoutsrc_GetBtPatchVer(struct BTC_COEXIST * pBtCoexist)
+static u32 halbtcoutsrc_GetBtPatchVer(struct BTC_COEXIST *pBtCoexist)
{
return pBtCoexist->btInfo.btRealFwVer;
}
static u8 halbtcoutsrc_Get(void *pBtcContext, u8 getType, void *pOutBuf)
{
- struct BTC_COEXIST * pBtCoexist;
+ struct BTC_COEXIST *pBtCoexist;
struct adapter *padapter;
struct hal_com_data *pHalData;
struct mlme_ext_priv *mlmeext;
case BTC_GET_U4_WIFI_TRAFFIC_DIRECTION:
{
- struct RT_LINK_DETECT_T * plinkinfo;
+ struct RT_LINK_DETECT_T *plinkinfo;
plinkinfo = &padapter->mlmepriv.LinkDetectInfo;
if (plinkinfo->NumTxOkInPeriod > plinkinfo->NumRxOkInPeriod)
static u8 halbtcoutsrc_Set(void *pBtcContext, u8 setType, void *pInBuf)
{
- struct BTC_COEXIST * pBtCoexist;
+ struct BTC_COEXIST *pBtCoexist;
struct adapter *padapter;
u8 *pu8;
u32 *pU4Tmp;
return ret;
}
-static void halbtcoutsrc_DisplayFwPwrModeCmd(struct BTC_COEXIST * pBtCoexist)
+static void halbtcoutsrc_DisplayFwPwrModeCmd(struct BTC_COEXIST *pBtCoexist)
{
u8 *cliBuf = pBtCoexist->cliBuf;
/* */
static u8 halbtcoutsrc_Read1Byte(void *pBtcContext, u32 RegAddr)
{
- struct BTC_COEXIST * pBtCoexist;
+ struct BTC_COEXIST *pBtCoexist;
struct adapter *padapter;
static u16 halbtcoutsrc_Read2Byte(void *pBtcContext, u32 RegAddr)
{
- struct BTC_COEXIST * pBtCoexist;
+ struct BTC_COEXIST *pBtCoexist;
struct adapter *padapter;
static u32 halbtcoutsrc_Read4Byte(void *pBtcContext, u32 RegAddr)
{
- struct BTC_COEXIST * pBtCoexist;
+ struct BTC_COEXIST *pBtCoexist;
struct adapter *padapter;
static void halbtcoutsrc_Write1Byte(void *pBtcContext, u32 RegAddr, u8 Data)
{
- struct BTC_COEXIST * pBtCoexist;
+ struct BTC_COEXIST *pBtCoexist;
struct adapter *padapter;
static void halbtcoutsrc_BitMaskWrite1Byte(void *pBtcContext, u32 regAddr, u8 bitMask, u8 data1b)
{
- struct BTC_COEXIST * pBtCoexist;
+ struct BTC_COEXIST *pBtCoexist;
struct adapter *padapter;
u8 originalValue, bitShift;
u8 i;
static void halbtcoutsrc_Write4Byte(void *pBtcContext, u32 RegAddr, u32 Data)
{
- struct BTC_COEXIST * pBtCoexist;
+ struct BTC_COEXIST *pBtCoexist;
struct adapter *padapter;
static void halbtcoutsrc_WriteLocalReg1Byte(void *pBtcContext, u32 RegAddr, u8 Data)
{
- struct BTC_COEXIST * pBtCoexist = (struct BTC_COEXIST *)pBtcContext;
+ struct BTC_COEXIST *pBtCoexist = (struct BTC_COEXIST *)pBtcContext;
struct adapter *Adapter = pBtCoexist->Adapter;
if (BTC_INTF_SDIO == pBtCoexist->chipInterface)
static void halbtcoutsrc_SetBbReg(void *pBtcContext, u32 RegAddr, u32 BitMask, u32 Data)
{
- struct BTC_COEXIST * pBtCoexist;
+ struct BTC_COEXIST *pBtCoexist;
struct adapter *padapter;
static u32 halbtcoutsrc_GetBbReg(void *pBtcContext, u32 RegAddr, u32 BitMask)
{
- struct BTC_COEXIST * pBtCoexist;
+ struct BTC_COEXIST *pBtCoexist;
struct adapter *padapter;
static void halbtcoutsrc_SetRfReg(void *pBtcContext, u8 eRFPath, u32 RegAddr, u32 BitMask, u32 Data)
{
- struct BTC_COEXIST * pBtCoexist;
+ struct BTC_COEXIST *pBtCoexist;
struct adapter *padapter;
static u32 halbtcoutsrc_GetRfReg(void *pBtcContext, u8 eRFPath, u32 RegAddr, u32 BitMask)
{
- struct BTC_COEXIST * pBtCoexist;
+ struct BTC_COEXIST *pBtCoexist;
struct adapter *padapter;
static void halbtcoutsrc_SetBtReg(void *pBtcContext, u8 RegType, u32 RegAddr, u32 Data)
{
- struct BTC_COEXIST * pBtCoexist;
+ struct BTC_COEXIST *pBtCoexist;
struct adapter *padapter;
u8 CmdBuffer1[4] = {0};
u8 CmdBuffer2[4] = {0};
static void halbtcoutsrc_FillH2cCmd(void *pBtcContext, u8 elementId, u32 cmdLen, u8 *pCmdBuffer)
{
- struct BTC_COEXIST * pBtCoexist;
+ struct BTC_COEXIST *pBtCoexist;
struct adapter *padapter;
static void halbtcoutsrc_DisplayDbgMsg(void *pBtcContext, u8 dispType)
{
- struct BTC_COEXIST * pBtCoexist;
+ struct BTC_COEXIST *pBtCoexist;
pBtCoexist = (struct BTC_COEXIST *)pBtcContext;
/* */
static u8 EXhalbtcoutsrc_BindBtCoexWithAdapter(void *padapter)
{
- struct BTC_COEXIST * pBtCoexist = &GLBtCoexist;
+ struct BTC_COEXIST *pBtCoexist = &GLBtCoexist;
if (pBtCoexist->bBinded)
return false;
void hal_btcoex_Initialize(void *padapter)
{
- struct BTC_COEXIST * pBtCoexist;
+ struct BTC_COEXIST *pBtCoexist;
memset(&GLBtCoexist, 0, sizeof(GLBtCoexist));
GLBtcWiFiInIQKState = false;
}
-void EXhalbtcoutsrc_PowerOnSetting(struct BTC_COEXIST * pBtCoexist)
+void EXhalbtcoutsrc_PowerOnSetting(struct BTC_COEXIST *pBtCoexist)
{
if (!halbtcoutsrc_IsBtCoexistAvailable(pBtCoexist))
return;
EXhalbtc8723b1ant_PowerOnSetting(pBtCoexist);
}
-void EXhalbtcoutsrc_InitHwConfig(struct BTC_COEXIST * pBtCoexist, u8 bWifiOnly)
+void EXhalbtcoutsrc_InitHwConfig(struct BTC_COEXIST *pBtCoexist, u8 bWifiOnly)
{
if (!halbtcoutsrc_IsBtCoexistAvailable(pBtCoexist))
return;
EXhalbtc8723b1ant_InitHwConfig(pBtCoexist, bWifiOnly);
}
-void EXhalbtcoutsrc_InitCoexDm(struct BTC_COEXIST * pBtCoexist)
+void EXhalbtcoutsrc_InitCoexDm(struct BTC_COEXIST *pBtCoexist)
{
if (!halbtcoutsrc_IsBtCoexistAvailable(pBtCoexist))
return;
pBtCoexist->bInitilized = true;
}
-void EXhalbtcoutsrc_IpsNotify(struct BTC_COEXIST * pBtCoexist, u8 type)
+void EXhalbtcoutsrc_IpsNotify(struct BTC_COEXIST *pBtCoexist, u8 type)
{
u8 ipsType;
/* halbtcoutsrc_NormalLowPower(pBtCoexist); */
}
-void EXhalbtcoutsrc_LpsNotify(struct BTC_COEXIST * pBtCoexist, u8 type)
+void EXhalbtcoutsrc_LpsNotify(struct BTC_COEXIST *pBtCoexist, u8 type)
{
u8 lpsType;
EXhalbtc8723b1ant_LpsNotify(pBtCoexist, lpsType);
}
-void EXhalbtcoutsrc_ScanNotify(struct BTC_COEXIST * pBtCoexist, u8 type)
+void EXhalbtcoutsrc_ScanNotify(struct BTC_COEXIST *pBtCoexist, u8 type)
{
u8 scanType;
/* halbtcoutsrc_NormalLowPower(pBtCoexist); */
}
-void EXhalbtcoutsrc_ConnectNotify(struct BTC_COEXIST * pBtCoexist, u8 action)
+void EXhalbtcoutsrc_ConnectNotify(struct BTC_COEXIST *pBtCoexist, u8 action)
{
u8 assoType;
/* halbtcoutsrc_NormalLowPower(pBtCoexist); */
}
-void EXhalbtcoutsrc_MediaStatusNotify(struct BTC_COEXIST * pBtCoexist, enum RT_MEDIA_STATUS mediaStatus)
+void EXhalbtcoutsrc_MediaStatusNotify(struct BTC_COEXIST *pBtCoexist, enum
+ RT_MEDIA_STATUS mediaStatus)
{
u8 mStatus;
/* halbtcoutsrc_NormalLowPower(pBtCoexist); */
}
-void EXhalbtcoutsrc_SpecialPacketNotify(struct BTC_COEXIST * pBtCoexist, u8 pktType)
+void EXhalbtcoutsrc_SpecialPacketNotify(struct BTC_COEXIST *pBtCoexist, u8 pktType)
{
u8 packetType;
/* halbtcoutsrc_NormalLowPower(pBtCoexist); */
}
-void EXhalbtcoutsrc_BtInfoNotify(struct BTC_COEXIST * pBtCoexist, u8 *tmpBuf, u8 length)
+void EXhalbtcoutsrc_BtInfoNotify(struct BTC_COEXIST *pBtCoexist, u8 *tmpBuf, u8 length)
{
if (!halbtcoutsrc_IsBtCoexistAvailable(pBtCoexist))
return;
/* halbtcoutsrc_NormalLowPower(pBtCoexist); */
}
-void EXhalbtcoutsrc_HaltNotify(struct BTC_COEXIST * pBtCoexist)
+void EXhalbtcoutsrc_HaltNotify(struct BTC_COEXIST *pBtCoexist)
{
if (!halbtcoutsrc_IsBtCoexistAvailable(pBtCoexist))
return;
pBtCoexist->bBinded = false;
}
-void EXhalbtcoutsrc_PnpNotify(struct BTC_COEXIST * pBtCoexist, u8 pnpState)
+void EXhalbtcoutsrc_PnpNotify(struct BTC_COEXIST *pBtCoexist, u8 pnpState)
{
if (!halbtcoutsrc_IsBtCoexistAvailable(pBtCoexist))
return;
EXhalbtc8723b2ant_PnpNotify(pBtCoexist, pnpState);
}
-void EXhalbtcoutsrc_Periodical(struct BTC_COEXIST * pBtCoexist)
+void EXhalbtcoutsrc_Periodical(struct BTC_COEXIST *pBtCoexist)
{
if (!halbtcoutsrc_IsBtCoexistAvailable(pBtCoexist))
return;
GLBtCoexist.boardInfo.singleAntPath = singleAntPath;
}
-void EXhalbtcoutsrc_DisplayBtCoexInfo(struct BTC_COEXIST * pBtCoexist)
+void EXhalbtcoutsrc_DisplayBtCoexInfo(struct BTC_COEXIST *pBtCoexist)
{
if (!halbtcoutsrc_IsBtCoexistAvailable(pBtCoexist))
return;