mirror of
https://github.com/lwfinger/rtl8188eu.git
synced 2024-11-29 07:33:39 +00:00
rtl8188eu: Remove "enum ODM_RF_RADIO_PATH" and ODM_RF_PATH_x
These are already expressed as "enum rf_radio_path" and RF_PATH_x. Having two definitions is ridiculous. Signed-off-by: Larry Finger <Larry.Finger@lwfinger.net>
This commit is contained in:
parent
2936b46458
commit
f8ec1962dd
17 changed files with 80 additions and 95 deletions
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@ -1170,13 +1170,6 @@ typedef struct DM_Out_Source_Dynamic_Mechanism_Structure
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/* ODM relative workitem. */
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} DM_ODM_T, *PDM_ODM_T; /* DM_Dynamic_Mechanism_Structure */
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typedef enum _ODM_RF_RADIO_PATH {
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ODM_RF_PATH_A = 0, /* Radio Path A */
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ODM_RF_PATH_B = 1, /* Radio Path B */
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ODM_RF_PATH_C = 2, /* Radio Path C */
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ODM_RF_PATH_D = 3, /* Radio Path D */
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} ODM_RF_RADIO_PATH_E, *PODM_RF_RADIO_PATH_E;
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typedef enum _ODM_RF_CONTENT{
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odm_radioa_txt = 0x1000,
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odm_radiob_txt = 0x1001,
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@ -257,8 +257,8 @@ odm_RxPhyStatus92CSeries_Parsing(
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isCCKrate = (pPktinfo->Rate <= DESC92C_RATE11M) ? true : false;
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pPhyInfo->RxMIMOSignalQuality[ODM_RF_PATH_A] = -1;
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pPhyInfo->RxMIMOSignalQuality[ODM_RF_PATH_B] = -1;
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pPhyInfo->RxMIMOSignalQuality[RF_PATH_A] = -1;
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pPhyInfo->RxMIMOSignalQuality[RF_PATH_B] = -1;
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if (isCCKrate) {
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@ -433,8 +433,8 @@ odm_RxPhyStatus92CSeries_Parsing(
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/* DbgPrint("cck SQ = %d\n", SQ); */
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pPhyInfo->SignalQuality = SQ;
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pPhyInfo->RxMIMOSignalQuality[ODM_RF_PATH_A] = SQ;
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pPhyInfo->RxMIMOSignalQuality[ODM_RF_PATH_B] = -1;
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pPhyInfo->RxMIMOSignalQuality[RF_PATH_A] = SQ;
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pPhyInfo->RxMIMOSignalQuality[RF_PATH_B] = -1;
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}
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}
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else /* is OFDM rate */
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@ -442,7 +442,7 @@ odm_RxPhyStatus92CSeries_Parsing(
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pDM_Odm->PhyDbgInfo.NumQryPhyStatusOFDM++;
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/* (1)Get RSSI for HT rate */
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for (i = ODM_RF_PATH_A; i < RF_PATH_MAX; i++)
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for (i = RF_PATH_A; i < RF_PATH_MAX; i++)
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{
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/* 2008/01/30 MH we will judge RF RX path now. */
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if (pDM_Odm->RFPathRxEnable & BIT(i))
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@ -481,7 +481,7 @@ odm_RxPhyStatus92CSeries_Parsing(
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{
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if ((pDM_Odm->SupportPlatform == ODM_MP) &&(pDM_Odm->PatchID==19))
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{
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if (i==ODM_RF_PATH_A)
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if (i==RF_PATH_A)
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pPhyInfo->SignalQuality = odm_SQ_process_patch_RT_CID_819x_Lenovo(pDM_Odm,isCCKrate,PWDB_ALL,i,RSSI);
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}
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@ -524,7 +524,7 @@ odm_RxPhyStatus92CSeries_Parsing(
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if (pPktinfo->bPacketMatchBSSID)
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{
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if (i==ODM_RF_PATH_A) /* Fill value in RFD, Get the first spatial stream only */
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if (i==RF_PATH_A) /* Fill value in RFD, Get the first spatial stream only */
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{
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pPhyInfo->SignalQuality = (u8)(EVM & 0xff);
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}
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@ -636,27 +636,27 @@ odm_Process_RSSIForDM(
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if (!isCCKrate)/* ofdm rate */
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{
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if (pPhyInfo->RxMIMOSignalStrength[ODM_RF_PATH_B] == 0) {
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RSSI_Ave = pPhyInfo->RxMIMOSignalStrength[ODM_RF_PATH_A];
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pDM_Odm->RSSI_A = pPhyInfo->RxMIMOSignalStrength[ODM_RF_PATH_A];
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if (pPhyInfo->RxMIMOSignalStrength[RF_PATH_B] == 0) {
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RSSI_Ave = pPhyInfo->RxMIMOSignalStrength[RF_PATH_A];
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pDM_Odm->RSSI_A = pPhyInfo->RxMIMOSignalStrength[RF_PATH_A];
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pDM_Odm->RSSI_B = 0;
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}
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else
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{
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/* DbgPrint("pRfd->Status.RxMIMOSignalStrength[0] = %d, pRfd->Status.RxMIMOSignalStrength[1] = %d\n", */
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/* pRfd->Status.RxMIMOSignalStrength[0], pRfd->Status.RxMIMOSignalStrength[1]); */
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pDM_Odm->RSSI_A = pPhyInfo->RxMIMOSignalStrength[ODM_RF_PATH_A];
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pDM_Odm->RSSI_B = pPhyInfo->RxMIMOSignalStrength[ODM_RF_PATH_B];
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pDM_Odm->RSSI_A = pPhyInfo->RxMIMOSignalStrength[RF_PATH_A];
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pDM_Odm->RSSI_B = pPhyInfo->RxMIMOSignalStrength[RF_PATH_B];
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if (pPhyInfo->RxMIMOSignalStrength[ODM_RF_PATH_A] > pPhyInfo->RxMIMOSignalStrength[ODM_RF_PATH_B])
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if (pPhyInfo->RxMIMOSignalStrength[RF_PATH_A] > pPhyInfo->RxMIMOSignalStrength[RF_PATH_B])
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{
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RSSI_max = pPhyInfo->RxMIMOSignalStrength[ODM_RF_PATH_A];
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RSSI_min = pPhyInfo->RxMIMOSignalStrength[ODM_RF_PATH_B];
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RSSI_max = pPhyInfo->RxMIMOSignalStrength[RF_PATH_A];
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RSSI_min = pPhyInfo->RxMIMOSignalStrength[RF_PATH_B];
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}
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else
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{
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RSSI_max = pPhyInfo->RxMIMOSignalStrength[ODM_RF_PATH_B];
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RSSI_min = pPhyInfo->RxMIMOSignalStrength[ODM_RF_PATH_A];
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RSSI_max = pPhyInfo->RxMIMOSignalStrength[RF_PATH_B];
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RSSI_min = pPhyInfo->RxMIMOSignalStrength[RF_PATH_A];
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}
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if ((RSSI_max -RSSI_min) < 3)
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RSSI_Ave = RSSI_max;
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@ -832,8 +832,8 @@ ODM_MacStatusQuery(
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HAL_STATUS
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ODM_ConfigRFWithHeaderFile(
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PDM_ODM_T pDM_Odm,
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ODM_RF_RADIO_PATH_E Content,
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ODM_RF_RADIO_PATH_E eRFPath
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enum rf_radio_path Content,
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enum rf_radio_path eRFPath
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)
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{
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/* RT_STATUS rtStatus = RT_STATUS_SUCCESS; */
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@ -22,11 +22,10 @@
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#ifndef __HALHWOUTSRC_H__
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#define __HALHWOUTSRC_H__
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/* */
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#include "Hal8188EPhyCfg.h"
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/* Definition */
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/* */
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/* */
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/* */
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/* CCK Rates, TxHT = 0 */
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#define DESC92C_RATE1M 0x00
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#define DESC92C_RATE2M 0x01
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@ -173,9 +172,9 @@ ODM_MacStatusQuery(
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HAL_STATUS
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ODM_ConfigRFWithHeaderFile(
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PDM_ODM_T pDM_Odm,
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ODM_RF_RADIO_PATH_E Content,
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ODM_RF_RADIO_PATH_E eRFPath
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);
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enum rf_radio_path Content,
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enum rf_radio_path eRFPath
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);
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HAL_STATUS
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ODM_ConfigBBWithHeaderFile(
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@ -25,7 +25,7 @@ odm_ConfigRFReg_8188E(
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PDM_ODM_T pDM_Odm,
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u32 Addr,
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u32 Data,
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ODM_RF_RADIO_PATH_E RF_PATH,
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enum rf_radio_path RF_PATH,
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u32 RegAddr
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)
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{
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@ -72,7 +72,7 @@ odm_ConfigRF_RadioA_8188E(
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u32 content = 0x1000; /* RF_Content: radioa_txt */
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u32 maskforPhySet= (u32)(content&0xE000);
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odm_ConfigRFReg_8188E(pDM_Odm, Addr, Data, ODM_RF_PATH_A, Addr|maskforPhySet);
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odm_ConfigRFReg_8188E(pDM_Odm, Addr, Data, RF_PATH_A, Addr|maskforPhySet);
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ODM_RT_TRACE(pDM_Odm,ODM_COMP_INIT, ODM_DBG_TRACE, ("===> ODM_ConfigRFWithHeaderFile: [RadioA] %08X %08X\n", Addr, Data));
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}
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@ -87,7 +87,7 @@ odm_ConfigRF_RadioB_8188E(
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u32 content = 0x1001; /* RF_Content: radiob_txt */
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u32 maskforPhySet= (u32)(content&0xE000);
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odm_ConfigRFReg_8188E(pDM_Odm, Addr, Data, ODM_RF_PATH_B, Addr|maskforPhySet);
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odm_ConfigRFReg_8188E(pDM_Odm, Addr, Data, RF_PATH_B, Addr|maskforPhySet);
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ODM_RT_TRACE(pDM_Odm,ODM_COMP_INIT, ODM_DBG_TRACE, ("===> ODM_ConfigRFWithHeaderFile: [RadioB] %08X %08X\n", Addr, Data));
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@ -25,7 +25,7 @@ odm_ConfigRFReg_8188E(
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PDM_ODM_T pDM_Odm,
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u32 Addr,
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u32 Data,
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ODM_RF_RADIO_PATH_E RF_PATH,
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enum rf_radio_path RF_PATH,
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u32 RegAddr
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);
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@ -23,9 +23,9 @@
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/* */
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#include "odm_precomp.h"
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/* */
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#include "Hal8188EPhyCfg.h"
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/* ODM IO Relative API. */
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/* */
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u8
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ODM_Read1Byte(
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@ -141,27 +141,27 @@ ODM_GetBBReg(
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void
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ODM_SetRFReg(
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PDM_ODM_T pDM_Odm,
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ODM_RF_RADIO_PATH_E eRFPath,
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enum rf_radio_path eRFPath,
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u32 RegAddr,
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u32 BitMask,
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u32 Data
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)
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{
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struct adapter * Adapter = pDM_Odm->Adapter;
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PHY_SetRFReg(Adapter, (RF_RADIO_PATH_E)eRFPath, RegAddr, BitMask, Data);
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PHY_SetRFReg(Adapter, (enum rf_radio_path)eRFPath, RegAddr, BitMask, Data);
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}
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u32
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ODM_GetRFReg(
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PDM_ODM_T pDM_Odm,
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ODM_RF_RADIO_PATH_E eRFPath,
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enum rf_radio_path eRFPath,
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u32 RegAddr,
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u32 BitMask
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)
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{
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struct adapter * Adapter = pDM_Odm->Adapter;
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return PHY_QueryRFReg(Adapter, (RF_RADIO_PATH_E)eRFPath,
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return PHY_QueryRFReg(Adapter, (enum rf_radio_path)eRFPath,
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RegAddr, BitMask);
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}
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@ -163,7 +163,7 @@ ODM_GetBBReg(
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void
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ODM_SetRFReg(
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PDM_ODM_T pDM_Odm,
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ODM_RF_RADIO_PATH_E eRFPath,
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enum rf_radio_path eRFPath,
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u32 RegAddr,
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u32 BitMask,
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u32 Data
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@ -172,7 +172,7 @@ ODM_SetRFReg(
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u32
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ODM_GetRFReg(
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PDM_ODM_T pDM_Odm,
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ODM_RF_RADIO_PATH_E eRFPath,
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enum rf_radio_path eRFPath,
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u32 RegAddr,
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u32 BitMask
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);
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@ -380,7 +380,7 @@ rtl8188e_PHY_SetBBReg(
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*
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* Input:
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* struct adapter * Adapter,
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* RF_RADIO_PATH_E eRFPath, Radio path of A/B/C/D
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* enum rf_radio_path eRFPath, Radio path of A/B/C/D
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* u32 Offset, The target address to be read
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*
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* Output: None
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@ -395,7 +395,7 @@ rtl8188e_PHY_SetBBReg(
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static u32
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phy_RFSerialRead(
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struct adapter * Adapter,
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RF_RADIO_PATH_E eRFPath,
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enum rf_radio_path eRFPath,
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u32 Offset
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)
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{
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@ -473,7 +473,7 @@ phy_RFSerialRead(
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*
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* Input:
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* struct adapter * Adapter,
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* RF_RADIO_PATH_E eRFPath, Radio path of A/B/C/D
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* enum rf_radio_path eRFPath, Radio path of A/B/C/D
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* u32 Offset, The target address to be read
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* u32 Data The new register Data in the target bit position
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* of the target to be read
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@ -512,7 +512,7 @@ phy_RFSerialRead(
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static void
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phy_RFSerialWrite(
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struct adapter * Adapter,
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RF_RADIO_PATH_E eRFPath,
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enum rf_radio_path eRFPath,
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u32 Offset,
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u32 Data
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)
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@ -547,7 +547,7 @@ phy_RFSerialWrite(
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*
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* Input:
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* struct adapter * Adapter,
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* RF_RADIO_PATH_E eRFPath, Radio path of A/B/C/D
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* enum rf_radio_path eRFPath, Radio path of A/B/C/D
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* u32 RegAddr, The target address to be read
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* u32 BitMask The target bit position in the target address
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* to be read
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@ -556,7 +556,7 @@ phy_RFSerialWrite(
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* Return: u32 Readback value
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* Note: This function is equal to "GetRFRegSetting" in PHY programming guide
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*/
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u32 rtl8188e_PHY_QueryRFReg(struct adapter *Adapter, RF_RADIO_PATH_E eRFPath, u32 RegAddr, u32 BitMask)
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u32 rtl8188e_PHY_QueryRFReg(struct adapter *Adapter, enum rf_radio_path eRFPath, u32 RegAddr, u32 BitMask)
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{
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u32 Original_Value, Readback_Value, BitShift;
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@ -579,7 +579,7 @@ u32 rtl8188e_PHY_QueryRFReg(struct adapter *Adapter, RF_RADIO_PATH_E eRFPath, u3
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*
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* Input:
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* struct adapter * Adapter,
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* RF_RADIO_PATH_E eRFPath, Radio path of A/B/C/D
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* enum rf_radio_path eRFPath, Radio path of A/B/C/D
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* u32 RegAddr, The target address to be modified
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* u32 BitMask The target bit position in the target address
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* to be modified
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@ -593,7 +593,7 @@ u32 rtl8188e_PHY_QueryRFReg(struct adapter *Adapter, RF_RADIO_PATH_E eRFPath, u3
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void
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rtl8188e_PHY_SetRFReg(
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struct adapter * Adapter,
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RF_RADIO_PATH_E eRFPath,
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enum rf_radio_path eRFPath,
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u32 RegAddr,
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u32 BitMask,
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u32 Data
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@ -1173,7 +1173,7 @@ PHY_RFConfig8188E(
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*
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* Input: struct adapter * Adapter
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* s8 * pFileName
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* RF_RADIO_PATH_E eRFPath
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* enum rf_radio_path eRFPath
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*
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* Output: NONE
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*
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@ -1185,7 +1185,7 @@ int
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rtl8188e_PHY_ConfigRFWithParaFile(
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struct adapter * Adapter,
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u8* pFileName,
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RF_RADIO_PATH_E eRFPath
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enum rf_radio_path eRFPath
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)
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{
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HAL_DATA_TYPE *pHalData = GET_HAL_DATA(Adapter);
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@ -1219,7 +1219,7 @@ static u32 Rtl8192S_HighPower_RadioA_Array[HighPowerRadioAArrayLen] = {
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static int
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PHY_ConfigRFExternalPA(
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struct adapter * Adapter,
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RF_RADIO_PATH_E eRFPath
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enum rf_radio_path eRFPath
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)
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{
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int rtStatus = _SUCCESS;
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@ -1239,7 +1239,7 @@ PHY_ConfigRFExternalPA(
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*
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* Input: struct adapter * Adapter
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* HW90_BLOCK_E CheckBlock
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* RF_RADIO_PATH_E eRFPath it is used only when CheckBlock is HW90_BLOCK_RF
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* enum rf_radio_path eRFPath it is used only when CheckBlock is HW90_BLOCK_RF
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*
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* Output: NONE
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*
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@ -1251,7 +1251,7 @@ static int
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PHY_CheckBBAndRFOK(
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struct adapter * Adapter,
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HW90_BLOCK_E CheckBlock,
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RF_RADIO_PATH_E eRFPath
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enum rf_radio_path eRFPath
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)
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{
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int rtStatus = _SUCCESS;
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@ -1884,7 +1884,7 @@ static void _PHY_SwChnl8192C(struct adapter *Adapter, u8 channel)
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for (eRFPath = 0; eRFPath <pHalData->NumTotalRFPath; eRFPath++)
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{
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pHalData->RfRegChnlVal[eRFPath] = ((pHalData->RfRegChnlVal[eRFPath] & 0xfffffc00) | param2);
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PHY_SetRFReg(Adapter, (RF_RADIO_PATH_E)eRFPath, param1, bRFRegOffsetMask, pHalData->RfRegChnlVal[eRFPath]);
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PHY_SetRFReg(Adapter, (enum rf_radio_path)eRFPath, param1, bRFRegOffsetMask, pHalData->RfRegChnlVal[eRFPath]);
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}
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@ -648,11 +648,11 @@ phy_RF6052_Config_ParaFile(
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switch (eRFPath)
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{
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case RF_PATH_A:
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if (HAL_STATUS_FAILURE ==ODM_ConfigRFWithHeaderFile(&pHalData->odmpriv,(ODM_RF_RADIO_PATH_E)eRFPath, (ODM_RF_RADIO_PATH_E)eRFPath))
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if (HAL_STATUS_FAILURE ==ODM_ConfigRFWithHeaderFile(&pHalData->odmpriv,(enum rf_radio_path)eRFPath, (enum rf_radio_path)eRFPath))
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rtStatus= _FAIL;
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break;
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case RF_PATH_B:
|
||||
if (HAL_STATUS_FAILURE ==ODM_ConfigRFWithHeaderFile(&pHalData->odmpriv,(ODM_RF_RADIO_PATH_E)eRFPath, (ODM_RF_RADIO_PATH_E)eRFPath))
|
||||
if (HAL_STATUS_FAILURE ==ODM_ConfigRFWithHeaderFile(&pHalData->odmpriv,(enum rf_radio_path)eRFPath, (enum rf_radio_path)eRFPath))
|
||||
rtStatus= _FAIL;
|
||||
break;
|
||||
case RF_PATH_C:
|
||||
|
@ -744,7 +744,7 @@ PHY_RF6052_Config8188E(
|
|||
static u32
|
||||
PHY_RFShadowRead(
|
||||
struct adapter * Adapter,
|
||||
RF_RADIO_PATH_E eRFPath,
|
||||
enum rf_radio_path eRFPath,
|
||||
u32 Offset)
|
||||
{
|
||||
return RF_Shadow[eRFPath][Offset].Value;
|
||||
|
@ -755,7 +755,7 @@ PHY_RFShadowRead(
|
|||
static void
|
||||
PHY_RFShadowWrite(
|
||||
struct adapter * Adapter,
|
||||
RF_RADIO_PATH_E eRFPath,
|
||||
enum rf_radio_path eRFPath,
|
||||
u32 Offset,
|
||||
u32 Data)
|
||||
{
|
||||
|
@ -768,7 +768,7 @@ PHY_RFShadowWrite(
|
|||
static bool
|
||||
PHY_RFShadowCompare(
|
||||
struct adapter * Adapter,
|
||||
RF_RADIO_PATH_E eRFPath,
|
||||
enum rf_radio_path eRFPath,
|
||||
u32 Offset)
|
||||
{
|
||||
u32 reg;
|
||||
|
@ -794,7 +794,7 @@ PHY_RFShadowCompare(
|
|||
static void
|
||||
PHY_RFShadowRecorver(
|
||||
struct adapter * Adapter,
|
||||
RF_RADIO_PATH_E eRFPath,
|
||||
enum rf_radio_path eRFPath,
|
||||
u32 Offset)
|
||||
{
|
||||
/* Check if the address is error */
|
||||
|
@ -825,7 +825,7 @@ PHY_RFShadowCompareAll(
|
|||
{
|
||||
for (Offset = 0; Offset <= RF6052_MAX_REG; Offset++)
|
||||
{
|
||||
PHY_RFShadowCompare(Adapter, (RF_RADIO_PATH_E)eRFPath, Offset);
|
||||
PHY_RFShadowCompare(Adapter, (enum rf_radio_path)eRFPath, Offset);
|
||||
}
|
||||
}
|
||||
|
||||
|
@ -843,7 +843,7 @@ PHY_RFShadowRecorverAll(
|
|||
{
|
||||
for (Offset = 0; Offset <= RF6052_MAX_REG; Offset++)
|
||||
{
|
||||
PHY_RFShadowRecorver(Adapter, (RF_RADIO_PATH_E)eRFPath, Offset);
|
||||
PHY_RFShadowRecorver(Adapter, (enum rf_radio_path)eRFPath, Offset);
|
||||
}
|
||||
}
|
||||
|
||||
|
@ -853,7 +853,7 @@ PHY_RFShadowRecorverAll(
|
|||
static void
|
||||
PHY_RFShadowCompareFlagSet(
|
||||
struct adapter * Adapter,
|
||||
RF_RADIO_PATH_E eRFPath,
|
||||
enum rf_radio_path eRFPath,
|
||||
u32 Offset,
|
||||
u8 Type)
|
||||
{
|
||||
|
@ -866,7 +866,7 @@ PHY_RFShadowCompareFlagSet(
|
|||
static void
|
||||
PHY_RFShadowRecorverFlagSet(
|
||||
struct adapter * Adapter,
|
||||
RF_RADIO_PATH_E eRFPath,
|
||||
enum rf_radio_path eRFPath,
|
||||
u32 Offset,
|
||||
u8 Type)
|
||||
{
|
||||
|
@ -889,9 +889,9 @@ PHY_RFShadowCompareFlagSetAll(
|
|||
{
|
||||
/* 2008/11/20 MH For S3S4 test, we only check reg 26/27 now!!!! */
|
||||
if (Offset != 0x26 && Offset != 0x27)
|
||||
PHY_RFShadowCompareFlagSet(Adapter, (RF_RADIO_PATH_E)eRFPath, Offset, false);
|
||||
PHY_RFShadowCompareFlagSet(Adapter, (enum rf_radio_path)eRFPath, Offset, false);
|
||||
else
|
||||
PHY_RFShadowCompareFlagSet(Adapter, (RF_RADIO_PATH_E)eRFPath, Offset, true);
|
||||
PHY_RFShadowCompareFlagSet(Adapter, (enum rf_radio_path)eRFPath, Offset, true);
|
||||
}
|
||||
}
|
||||
|
||||
|
@ -911,9 +911,9 @@ PHY_RFShadowRecorverFlagSetAll(
|
|||
{
|
||||
/* 2008/11/20 MH For S3S4 test, we only check reg 26/27 now!!!! */
|
||||
if (Offset != 0x26 && Offset != 0x27)
|
||||
PHY_RFShadowRecorverFlagSet(Adapter, (RF_RADIO_PATH_E)eRFPath, Offset, false);
|
||||
PHY_RFShadowRecorverFlagSet(Adapter, (enum rf_radio_path)eRFPath, Offset, false);
|
||||
else
|
||||
PHY_RFShadowRecorverFlagSet(Adapter, (RF_RADIO_PATH_E)eRFPath, Offset, true);
|
||||
PHY_RFShadowRecorverFlagSet(Adapter, (enum rf_radio_path)eRFPath, Offset, true);
|
||||
}
|
||||
}
|
||||
|
||||
|
|
|
@ -1420,8 +1420,8 @@ static u32 rtl8188eu_hal_init(struct adapter *Adapter)
|
|||
rtw_write16(Adapter, REG_PKT_BE_BK_LIFE_TIME, 0x0400); /* unit: 256us. 256ms */
|
||||
|
||||
/* Joseph Note: Keep RfRegChnlVal for later use. */
|
||||
pHalData->RfRegChnlVal[0] = PHY_QueryRFReg(Adapter, (RF_RADIO_PATH_E)0, RF_CHNLBW, bRFRegOffsetMask);
|
||||
pHalData->RfRegChnlVal[1] = PHY_QueryRFReg(Adapter, (RF_RADIO_PATH_E)1, RF_CHNLBW, bRFRegOffsetMask);
|
||||
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);
|
||||
|
||||
HAL_INIT_PROFILE_TAG(HAL_INIT_STAGES_TURN_ON_BLOCK);
|
||||
_BBTurnOnBlock(Adapter);
|
||||
|
|
|
@ -67,12 +67,12 @@ typedef enum _HW90_BLOCK{
|
|||
HW90_BLOCK_MAXIMUM = 4, /* Never use this */
|
||||
}HW90_BLOCK_E, *PHW90_BLOCK_E;
|
||||
|
||||
typedef enum _RF_RADIO_PATH{
|
||||
enum rf_radio_path {
|
||||
RF_PATH_A = 0, /* Radio Path A */
|
||||
RF_PATH_B = 1, /* Radio Path B */
|
||||
RF_PATH_C = 2, /* Radio Path C */
|
||||
RF_PATH_D = 3, /* Radio Path D */
|
||||
}RF_RADIO_PATH_E, *PRF_RADIO_PATH_E;
|
||||
};
|
||||
|
||||
#define MAX_PG_GROUP 13
|
||||
|
||||
|
@ -217,11 +217,11 @@ void rtl8188e_PHY_SetBBReg( struct adapter *Adapter,
|
|||
u32 BitMask,
|
||||
u32 Data );
|
||||
u32 rtl8188e_PHY_QueryRFReg( struct adapter * Adapter,
|
||||
RF_RADIO_PATH_E eRFPath,
|
||||
enum rf_radio_path eRFPath,
|
||||
u32 RegAddr,
|
||||
u32 BitMask );
|
||||
void rtl8188e_PHY_SetRFReg( struct adapter * Adapter,
|
||||
RF_RADIO_PATH_E eRFPath,
|
||||
enum rf_radio_path eRFPath,
|
||||
u32 RegAddr,
|
||||
u32 BitMask,
|
||||
u32 Data );
|
||||
|
@ -235,9 +235,9 @@ int PHY_BBConfig8188E(struct adapter *Adapter );
|
|||
int PHY_RFConfig8188E(struct adapter *Adapter );
|
||||
|
||||
/* RF config */
|
||||
int rtl8188e_PHY_ConfigRFWithParaFile(struct adapter *Adapter, u8 * pFileName, RF_RADIO_PATH_E eRFPath);
|
||||
int rtl8188e_PHY_ConfigRFWithParaFile(struct adapter *Adapter, u8 * pFileName, enum rf_radio_path eRFPath);
|
||||
int rtl8188e_PHY_ConfigRFWithHeaderFile(struct adapter *Adapter,
|
||||
RF_RADIO_PATH_E eRFPath);
|
||||
enum rf_radio_path eRFPath);
|
||||
|
||||
/* Read initi reg value for tx power setting. */
|
||||
void rtl8192c_PHY_GetHWRegOriginalValue(struct adapter * Adapter );
|
||||
|
|
|
@ -946,13 +946,6 @@ struct odm_dm_struct {
|
|||
struct timer_list FastAntTrainingTimer;
|
||||
}; /* DM_Dynamic_Mechanism_Structure */
|
||||
|
||||
enum ODM_RF_RADIO_PATH {
|
||||
ODM_RF_PATH_A = 0, /* Radio Path A */
|
||||
ODM_RF_PATH_B = 1, /* Radio Path B */
|
||||
ODM_RF_PATH_C = 2, /* Radio Path C */
|
||||
ODM_RF_PATH_D = 3, /* Radio Path D */
|
||||
};
|
||||
|
||||
enum ODM_RF_CONTENT {
|
||||
odm_radioa_txt = 0x1000,
|
||||
odm_radiob_txt = 0x1001,
|
||||
|
|
|
@ -122,8 +122,8 @@ void ODM_MacStatusQuery(struct odm_dm_struct *pDM_Odm,
|
|||
bool bPacketBeacon);
|
||||
|
||||
enum HAL_STATUS ODM_ConfigRFWithHeaderFile(struct odm_dm_struct *pDM_Odm,
|
||||
enum ODM_RF_RADIO_PATH Content,
|
||||
enum ODM_RF_RADIO_PATH eRFPath);
|
||||
enum rf_radio_path Content,
|
||||
enum rf_radio_path eRFPath);
|
||||
|
||||
enum HAL_STATUS ODM_ConfigBBWithHeaderFile(struct odm_dm_struct *pDM_Odm,
|
||||
enum odm_bb_config_type ConfigType);
|
||||
|
|
|
@ -21,7 +21,7 @@
|
|||
#define __INC_ODM_REGCONFIG_H_8188E
|
||||
|
||||
void odm_ConfigRFReg_8188E(struct odm_dm_struct *pDM_Odm, u32 Addr, u32 Data,
|
||||
enum ODM_RF_RADIO_PATH RF_PATH, u32 RegAddr);
|
||||
enum rf_radio_path RF_PATH, u32 RegAddr);
|
||||
|
||||
void odm_ConfigRF_RadioA_8188E(struct odm_dm_struct *pDM_Odm,
|
||||
u32 Addr, u32 Data);
|
||||
|
|
|
@ -99,10 +99,10 @@ void ODM_SetBBReg(struct odm_dm_struct *pDM_Odm, u32 RegAddr,
|
|||
|
||||
u32 ODM_GetBBReg(struct odm_dm_struct *pDM_Odm, u32 RegAddr, u32 BitMask);
|
||||
|
||||
void ODM_SetRFReg(struct odm_dm_struct *pDM_Odm, enum ODM_RF_RADIO_PATH eRFPath,
|
||||
void ODM_SetRFReg(struct odm_dm_struct *pDM_Odm, enum rf_radio_path eRFPath,
|
||||
u32 RegAddr, u32 BitMask, u32 Data);
|
||||
|
||||
u32 ODM_GetRFReg(struct odm_dm_struct *pDM_Odm, enum ODM_RF_RADIO_PATH eRFPath,
|
||||
u32 ODM_GetRFReg(struct odm_dm_struct *pDM_Odm, enum rf_radio_path eRFPath,
|
||||
u32 RegAddr, u32 BitMask);
|
||||
|
||||
/* Memory Relative Function. */
|
||||
|
|
|
@ -436,7 +436,7 @@ u32 read_macreg(struct adapter *padapter, u32 addr, u32 sz);
|
|||
void write_macreg(struct adapter *padapter, u32 addr, u32 val, u32 sz);
|
||||
u32 read_bbreg(struct adapter *padapter, u32 addr, u32 bitmask);
|
||||
void write_bbreg(struct adapter *padapter, u32 addr, u32 bitmask, u32 val);
|
||||
u32 read_rfreg(struct adapter *padapter, RF_RADIO_PATH_E rfpath, u32 addr);
|
||||
u32 read_rfreg(struct adapter *padapter, enum rf_radio_path rfpath, u32 addr);
|
||||
void write_rfreg(struct adapter *padapter, u8 rfpath, u32 addr, u32 val);
|
||||
|
||||
void SetChannel(struct adapter *pAdapter);
|
||||
|
|
|
@ -5514,7 +5514,7 @@ static void rf_reg_dump(struct adapter *padapter)
|
|||
printk("\nRF_Path(%x)\n",path);
|
||||
for (i=0;i<0x100;i++)
|
||||
{
|
||||
/* value = PHY_QueryRFReg(padapter, (RF_RADIO_PATH_E)path,i, bMaskDWord); */
|
||||
/* value = PHY_QueryRFReg(padapter, (enum rf_radio_path)path,i, bMaskDWord); */
|
||||
value = rtw_hal_read_rfreg(padapter, path, i, 0xffffffff);
|
||||
if (j%4==1) printk("0x%02x ",i);
|
||||
printk(" 0x%08x ",value);
|
||||
|
|
Loading…
Reference in a new issue