priv->ChannelPlan = COUNTRY_CODE_WORLD_WIDE_13;
#endif
-#ifdef TO_DO_LIST
- switch (priv->CustomerID)
- {
- case RT_CID_DEFAULT:
- priv->LedStrategy = SW_LED_MODE1;
- break;
-
- case RT_CID_819x_CAMEO:
- priv->LedStrategy = SW_LED_MODE2;
- break;
-
- case RT_CID_819x_RUNTOP:
- priv->LedStrategy = SW_LED_MODE3;
- break;
-
- case RT_CID_819x_Netcore:
- priv->LedStrategy = SW_LED_MODE4;
- break;
-
- case RT_CID_Nettronix:
- priv->LedStrategy = SW_LED_MODE5;
- break;
-
- case RT_CID_PRONET:
- priv->LedStrategy = SW_LED_MODE6;
- break;
-
- case RT_CID_TOSHIBA:
-
- default:
- priv->LedStrategy = SW_LED_MODE1;
- break;
- }
- RT_TRACE(COMP_INIT, "LedStrategy = %d \n", priv->LedStrategy);
-#endif
-
if ( priv->eeprom_vid == 0x1186 && priv->eeprom_did == 0x3304)
priv->rtllib->bSupportRemoteWakeUp = true;
else
write_nic_word(dev, MAC4, ((u16*)(dev->dev_addr + 4))[0]);
write_nic_dword(dev, RCR, priv->ReceiveConfig);
-#ifdef TO_DO_LIST
- if (priv->bInHctTest)
- {
- write_nic_dword(dev, RQPN1, NUM_OF_PAGE_IN_FW_QUEUE_BK_DTM << RSVD_FW_QUEUE_PAGE_BK_SHIFT |\
- NUM_OF_PAGE_IN_FW_QUEUE_BE_DTM << RSVD_FW_QUEUE_PAGE_BE_SHIFT | \
- NUM_OF_PAGE_IN_FW_QUEUE_VI_DTM << RSVD_FW_QUEUE_PAGE_VI_SHIFT | \
- NUM_OF_PAGE_IN_FW_QUEUE_VO_DTM <<RSVD_FW_QUEUE_PAGE_VO_SHIFT);
- write_nic_dword(dev, RQPN2, NUM_OF_PAGE_IN_FW_QUEUE_MGNT << RSVD_FW_QUEUE_PAGE_MGNT_SHIFT);
- write_nic_dword(dev, RQPN3, APPLIED_RESERVED_QUEUE_IN_FW| \
- NUM_OF_PAGE_IN_FW_QUEUE_BCN<<RSVD_FW_QUEUE_PAGE_BCN_SHIFT|\
- NUM_OF_PAGE_IN_FW_QUEUE_PUB_DTM<<RSVD_FW_QUEUE_PAGE_PUB_SHIFT);
- }
- else
-#endif
{
write_nic_dword(dev, RQPN1, NUM_OF_PAGE_IN_FW_QUEUE_BK << RSVD_FW_QUEUE_PAGE_BK_SHIFT |\
NUM_OF_PAGE_IN_FW_QUEUE_BE << RSVD_FW_QUEUE_PAGE_BE_SHIFT | \
u32 dwArrayLen = 0, i = 0;
u32* pdwArray = NULL;
struct r8192_priv *priv = rtllib_priv(dev);
-#ifdef TO_DO_LIST
-if (dev->bInHctTest)
- {
- RT_TRACE(COMP_PHY, "Rtl819XMACPHY_ArrayDTM\n");
- dwArrayLen = MACPHY_ArrayLengthDTM;
- pdwArray = Rtl819XMACPHY_ArrayDTM;
- }
- else if (priv->bTXPowerDataReadFromEEPORM)
-#endif
if (priv->bTXPowerDataReadFromEEPORM)
{
RT_TRACE(COMP_PHY, "Rtl819XMACPHY_Array_PG\n");
u32* Rtl819XAGCTAB_Array_Table = NULL;
u16 AGCTAB_ArrayLen, PHY_REGArrayLen = 0;
struct r8192_priv *priv = rtllib_priv(dev);
-#ifdef TO_DO_LIST
- u32 *rtl8192PhyRegArrayTable = NULL, *rtl8192AgcTabArrayTable = NULL;
- if (dev->bInHctTest)
- {
- AGCTAB_ArrayLen = AGCTAB_ArrayLengthDTM;
- Rtl819XAGCTAB_Array_Table = Rtl819XAGCTAB_ArrayDTM;
-
- if (priv->RF_Type == RF_2T4R)
- {
- PHY_REGArrayLen = PHY_REGArrayLengthDTM;
- Rtl819XPHY_REGArray_Table = Rtl819XPHY_REGArrayDTM;
- }
- else if (priv->RF_Type == RF_1T2R)
- {
- PHY_REGArrayLen = PHY_REG_1T2RArrayLengthDTM;
- Rtl819XPHY_REGArray_Table = Rtl819XPHY_REG_1T2RArrayDTM;
- }
- }
- else
-#endif
{
AGCTAB_ArrayLen = AGCTAB_ArrayLength;
Rtl819XAGCTAB_Array_Table = Rtl819XAGCTAB_Array;
switch (priv->rf_chip)
{
case RF_8225:
-#ifdef TO_DO_LIST
- PHY_SetRF8225CckTxPower(dev, powerlevel);
- PHY_SetRF8225OfdmTxPower(dev, powerlevelOFDM24G);
-#endif
break;
case RF_8256:
switch ( priv->rf_chip )
{
case RF_8225:
-#ifdef TO_DO_LIST
- PHY_SetRF8225Bandwidth(dev, pHalData->CurrentChannelBW);
-#endif
break;
case RF_8256:
QueueID++;
continue;
}
-#ifdef TO_DO_LIST
- else if (IsLowPowerState(Adapter))
- {
- RT_TRACE((COMP_POWER|COMP_RF), "eRf Off/Sleep: %d times TcbBusyQueue[%d] !=0 but lower power state!\n", (i+1), QueueID);
- break;
- }
-#endif
else
{
RT_TRACE((COMP_POWER|COMP_RF), "eRf Off/Sleep: %d times TcbBusyQueue[%d] !=0 before doze!\n", (i+1), QueueID);
QueueID++;
continue;
}
-#ifdef TO_DO_LIST
- else if (IsLowPowerState(Adapter))
- {
- RT_TRACE(COMP_POWER,
- "eRf Off/Sleep: %d times TcbBusyQueue[%d] !=0 but lower power state!\n", (i+1), QueueID);
- break;
- }
-#endif
else
{
RT_TRACE(COMP_POWER,
{
PHY_SetRtl8192eRfOff(dev);
}
-#ifdef TO_DO_LIST
- if (pMgntInfo->RfOffReason == RF_CHANGE_BY_IPS )
- {
- Adapter->HalFunc.LedControlHandler(dev,LED_CTL_NO_LINK);
- }
- else
- {
- Adapter->HalFunc.LedControlHandler(dev, LED_CTL_POWER_OFF);
- }
-#endif
}
break;
if (bSetFunc) {
if (Buffer) {
-#ifdef TO_DO_LIST
- RT_DISABLE_FUNC(Adapter, DF_IO_D3_BIT);
-#endif
} else {
-#ifdef TO_DO_LIST
- RT_ENABLE_FUNC(Adapter, DF_IO_D3_BIT);
-#endif
}
}
}
if ( rtllib->iw_mode == IW_MODE_INFRA )
{
-#ifdef TO_DO_LIST
- SecClearAllKeys(Adapter);
-#endif
rtllib_MgntDisconnectAP(rtllib, asRsn);
}
return;
if (is_multicast_ether_addr(hdr->addr1) || is_broadcast_ether_addr(hdr->addr1))
return;
-#ifdef TO_DO_LIST
- if (pTcb->PacketLength >= 4096)
- return;
- if (!Adapter->HalFunc.GetNmodeSupportBySecCfgHandler(Adapter))
- return;
-#endif
if (tcb_desc->bdhcp || ieee->CntAfterLink<2)
return;
void rtllib_txrate_selectmode(struct rtllib_device* ieee, cb_desc* tcb_desc)
{
-#ifdef TO_DO_LIST
- if (!IsDataFrame(pFrame))
- {
- pTcb->bTxDisableRateFallBack = true;
- pTcb->bTxUseDriverAssingedRate = true;
- pTcb->RATRIndex = 7;
- return;
- }
-
- if (pMgntInfo->ForcedDataRate!= 0)
- {
- pTcb->bTxDisableRateFallBack = true;
- pTcb->bTxUseDriverAssingedRate = true;
- return;
- }
-#endif
if (ieee->bTxDisableRateFallBack)
tcb_desc->bTxDisableRateFallBack = true;