Exemple #1
0
CHAR ConvertToRssi(RTMP_ADAPTER *pAd, CHAR Rssi, UCHAR rssi_idx)
{
	UCHAR	RssiOffset, LNAGain;
	CHAR	BaseVal;

	/* Rssi equals to zero or rssi_idx larger than 3 should be an invalid value*/
	if (Rssi == 0 || rssi_idx >= 3)
		return -99;

	LNAGain = GET_LNA_GAIN(pAd);
	if (pAd->LatchRfRegs.Channel > 14)
		RssiOffset = pAd->ARssiOffset[rssi_idx];
	else
		RssiOffset = pAd->BGRssiOffset[rssi_idx];

	BaseVal = -12;
#ifdef RT6352
	if (IS_RT6352(pAd))
		BaseVal = -2;
#endif /* RT6352 */

#ifdef RT65xx
	/*
		Recommended by CSD team about MT76x0:
		SW/QA owners should read the "external-LNA gain" and "RSSI OFFSET" content in EEPROM as "SIGNED".
		2.4G : RSSI_report = RSSI_bpp + EEPROM_0x46[15:8 or 7:0] - EEPROM_0x44[7:0]
		5G : RSSI_report = RSSI_bbp + EEPROM_0x4A[15:8 or 7:0] - EEPROM_0x44 or 0x48 or 0x4c[15:8]
	*/
	if (IS_MT76x0(pAd))
		return (Rssi + (CHAR)RssiOffset - (CHAR)LNAGain);

	if (IS_MT76x2(pAd)) {
		CHAR extra_gain = 0;
		
		if (LNAGain & 0x80) {
			if (LNAGain == 0xFF)
				LNAGain = 0;
			else
				LNAGain &= 0x7F;

			extra_gain = LNAGain;
		} else
			extra_gain = 0 - (CHAR)LNAGain;

		if (is_external_lna_mode(pAd, pAd->CommonCfg.Channel) == TRUE)
			extra_gain = LNAGain = 0;
		
		if (pAd->LatchRfRegs.Channel > 14)
			return (Rssi + pAd->ARssiOffset[rssi_idx] - extra_gain);
		else
			return (Rssi + pAd->BGRssiOffset[rssi_idx] - extra_gain);
	}

	if (IS_RT8592(pAd))
		return (Rssi - LNAGain - RssiOffset);
#endif /* RT65xx */

		return (BaseVal - RssiOffset - LNAGain - Rssi);
}
Exemple #2
0
/*
========================================================================
Routine Description:
	Initialize specific beacon frame architecture.

Arguments:
	pAd				- WLAN control block pointer

Return Value:
	None

Note:
========================================================================
*/
VOID rlt_bcn_buf_init(RTMP_ADAPTER *pAd)
{
	RTMP_CHIP_CAP *pChipCap = &pAd->chipCap;

	pChipCap->FlgIsSupSpecBcnBuf = FALSE;
#if defined(MT7601) || defined(MT76x2)
	if (IS_MT7601(pAd) || IS_MT76x2(pAd)) 
	{
		pChipCap->BcnMaxHwNum = 8;
		pChipCap->WcidHwRsvNum = 127;
	}
	else
#endif /* MT7601 || MT76x2 */
	{
		pChipCap->BcnMaxHwNum = 16;
		pChipCap->WcidHwRsvNum = 255;
	}

/*
	In 16-MBSS support mode, if AP-Client is enabled, 
	the last 8-MBSS would be occupied for AP-Client using.
*/
#ifdef APCLI_SUPPORT
	pChipCap->BcnMaxNum = (8 - MAX_MESH_NUM);
#else
	pChipCap->BcnMaxNum = (pChipCap->BcnMaxHwNum - MAX_MESH_NUM);
#endif /* APCLI_SUPPORT */

	pChipCap->BcnMaxHwSize = 0x2000;

	pChipCap->BcnBase[0] = 0xc000;
	pChipCap->BcnBase[1] = 0xc200;
	pChipCap->BcnBase[2] = 0xc400;
	pChipCap->BcnBase[3] = 0xc600;
	pChipCap->BcnBase[4] = 0xc800;
	pChipCap->BcnBase[5] = 0xca00;
	pChipCap->BcnBase[6] = 0xcc00;
	pChipCap->BcnBase[7] = 0xce00;
	pChipCap->BcnBase[8] = 0xd000;
	pChipCap->BcnBase[9] = 0xd200;
	pChipCap->BcnBase[10] = 0xd400;
	pChipCap->BcnBase[11] = 0xd600;
	pChipCap->BcnBase[12] = 0xd800;
	pChipCap->BcnBase[13] = 0xda00;
	pChipCap->BcnBase[14] = 0xdc00;
	pChipCap->BcnBase[15] = 0xde00;

#ifdef CONFIG_MULTI_CHANNEL
	/* Record HW Null Frame offset */
	//pAd->NullBufOffset[0] = 0xd000;
	pAd->NullBufOffset[0] = 0xd000;
	pAd->NullBufOffset[1] = 0xd200;
#endif /* CONFIG_MULTI_CHANNEL */

	pAd->chipOps.BeaconUpdate = RtmpChipWriteMemory;
}
Exemple #3
0
/* Before switch channel, driver needs doing channel switch announcement.*/
VOID RadarDetectPeriodic(
	IN PRTMP_ADAPTER	pAd)
{
	INT i, ChIdx = 0;


	/* 
		1. APStart(), CalBufTime = 0;
		2. if bAnyUnavailableChannel, CalBufTime = DEFAULT_CAL_BUF_TIME;
		3. if Calibrated, CalBufTime = DEFAULT_CAL_BUF_TIME_MAX;
	*/
	for (i=0; i<pAd->ChannelListNum; i++)
	{

		if (pAd->CommonCfg.Channel == pAd->ChannelList[i].Channel)
		{
			ChIdx = i;
		}
	}


	if (pAd->Dot11_H.RDMode == RD_SILENCE_MODE)
	{
		/* In Silent  Mode, RDCount is use to check with the CAC Time */
	if (pAd->Dot11_H.RDCount++ > pAd->Dot11_H.ChMovingTime &&
		pAd->ChannelList[ChIdx].RemainingTimeForUse == 0)
	{
			DBGPRINT(RT_DEBUG_TRACE,
					("Not found radar signal, start send beacon and radar detection in service monitor\n\n"));
		    pAd->Dot11_H.RDMode = RD_NORMAL_MODE;
		    AsicEnableBssSync(pAd);
#ifdef MT76x2
	        if (IS_MT76x2(pAd)) {
			    
			    mt76x2_tssi_calibration(pAd, pAd->hw_cfg.cent_ch);
#ifdef TXBF_SUPPORT			    
			    if (pAd->hw_cfg.cent_ch > 14) 
			        rtmp_ate_txbf_fix_tank_code(pAd, pAd->hw_cfg.cent_ch, 0);  // load tank code from efuse, iBF only for A band
#endif /* TXBF_SUPPORT */
				mt76x2_calibration(pAd, pAd->hw_cfg.cent_ch);
			}
#endif /* MT76x2 */
			pAd->Dot11_H.RDCount = 0;
		}
	}
}
Exemple #4
0
void RTMPGetLEDSetting(IN RTMP_ADAPTER *pAd)
{
	USHORT Value;
	PLED_CONTROL pLedCntl = &pAd->LedCntl;
#ifdef RT65xx
	if (IS_MT76x0(pAd) || IS_MT76x2(pAd))
	{
		// TODO: wait TC6008 EEPROM format
		RT28xx_EEPROM_READ16(pAd, EEPROM_FREQ_OFFSET, Value);
		pLedCntl->MCULedCntl.word = (Value >> 8);
		RT28xx_EEPROM_READ16(pAd, EEPROM_LEDAG_CONF_OFFSET, Value);
		pLedCntl->LedAGCfg= Value;
		RT28xx_EEPROM_READ16(pAd, EEPROM_LEDACT_CONF_OFFSET, Value);
		pLedCntl->LedACTCfg = Value;
		RT28xx_EEPROM_READ16(pAd, EEPROM_LED_POLARITY_OFFSET, Value);
		pLedCntl->LedPolarity = Value;
	}
Exemple #5
0
VOID InitBTCoexistence(
	IN PRTMP_ADAPTER pAd)
{	
	if(pAd == NULL)
	{
		return;
	}

	if (IS_MT7650(pAd)  || IS_MT7630(pAd) || IS_MT76x2(pAd))
	{
		pAd->CommonCfg.CoexFDDRSSITreshold = 70;
		pAd->CommonCfg.CoexTDDRSSITreshold = 76;
		pAd ->CommonCfg.CoexRXAGCLMTreshold = 51;
		pAd ->CommonCfg.CoexRXAGCMHTreshold = 66;
		pAd ->CommonCfg.CoexWLANPrivilegeTime = 0x50000044;
		//Coex paramter
		if (IS_MT7662(pAd))
			pAd->CommonCfg.CoexDefaultMode = COEX_MODE_FDD;
		else
			pAd->CommonCfg.CoexDefaultMode = COEX_MODE_TDD;
		if (pAd->CommonCfg.CoexDefaultMode & 0xF0000000)
		{
			pAd->CoexMode.DefaultMode = (pAd->CommonCfg.CoexDefaultMode & 0x0FFFFFFF);
		}
		else
		{
			pAd->CoexMode.DefaultMode = pAd->CommonCfg.CoexDefaultMode;
		}

		DBGPRINT(RT_DEBUG_ERROR, ("==>InitBTCoexistence CoexMode.DefaultMode=%s(%u)\n",
				pAd->CoexMode.DefaultMode==COEX_MODE_TDD?"TDD":(pAd->CoexMode.DefaultMode==COEX_MODE_FDD?"FDD":"Other"),
				pAd->CoexMode.DefaultMode));
		pAd->CoexMode.CurrentMode = pAd->CoexMode.DefaultMode;
		pAd->CoexMode.CoexFDDRSSITreshold = -pAd->CommonCfg.CoexFDDRSSITreshold;
		pAd->CoexMode.CoexTDDRSSITreshold = -pAd->CommonCfg.CoexTDDRSSITreshold;
		pAd->coexRXManualAGCGain.LMthreshold = -pAd ->CommonCfg.CoexRXAGCLMTreshold;
		pAd->coexRXManualAGCGain.MHthreshold = -pAd ->CommonCfg.CoexRXAGCMHTreshold;

	}
}
Exemple #6
0
static INT rtmp_bbp_init(RTMP_ADAPTER *pAd)
{
	INT Index = 0;
	
	/* Read BBP register, make sure BBP is up and running before write new data*/
	if (rtmp_bbp_is_ready(pAd)== FALSE)
		return FALSE;

	Index = 0;

	/* Initialize BBP register to default value*/
	for (Index = 0; Index < NUM_BBP_REG_PARMS; Index++)
	{
#ifdef RTMP_RBUS_SUPPORT
		if (pAd->infType == RTMP_DEV_INF_RBUS)
		{
			if (Index == BBP_R105)
			{
				/*
					kurtis:0x01 ori 0x05 is for rt2860E to turn on FEQ control. 
							It is safe for rt2860D and before, because Bit 7:2 
							are reserved in rt2860D and before.
				*/
				BBPRegTable[Index].Value=0x01;
				DBGPRINT(RT_DEBUG_TRACE, 
					("RBUS:BBP[%d] = %x\n",(INT)Index, 
					BBPRegTable[Index].Value));
			}
		}
#endif /* RTMP_RBUS_SUPPORT */

#ifdef MICROWAVE_OVEN_SUPPORT
#endif /* MICROWAVE_OVEN_SUPPORT */

		RTMP_BBP_IO_WRITE8_BY_REG_ID(pAd,
				BBPRegTable[Index].Register,
				BBPRegTable[Index].Value);
	}

	/* re-config specific BBP registers for individual chip */
	if (pAd->chipCap.pBBPRegTable)
	{
		REG_PAIR *reg_list = pAd->chipCap.pBBPRegTable;
		
		for (Index = 0; Index < pAd->chipCap.bbpRegTbSize; Index++)
		{
			RTMP_BBP_IO_WRITE8_BY_REG_ID(pAd,
					reg_list[Index].Register,
					reg_list[Index].Value);
			DBGPRINT(RT_DEBUG_TRACE, ("BBP_R%d=0x%x\n", 
					reg_list[Index].Register, 
					reg_list[Index].Value));
		}
	}

	if (pAd->chipOps.AsicBbpInit != NULL)
		pAd->chipOps.AsicBbpInit(pAd);

	/*
		For rt2860E and after, init BBP_R84 with 0x19. This is for extension channel overlapping IOT.
		RT3090 should not program BBP R84 to 0x19, otherwise TX will block.
		3070/71/72,3090,3090A( are included in RT30xx),3572,3390
	*/
	if (((pAd->MACVersion & 0xffff) != 0x0101) &&
		!(IS_RT30xx(pAd)|| IS_RT3572(pAd) || IS_RT5390(pAd) || IS_RT5392(pAd) || IS_RT3290(pAd) || IS_MT7601(pAd) || IS_RT6352(pAd) || IS_MT76x2(pAd)))
		RTMP_BBP_IO_WRITE8_BY_REG_ID(pAd, BBP_R84, 0x19);


	if (pAd->MACVersion == 0x28600100)
	{
		RTMP_BBP_IO_WRITE8_BY_REG_ID(pAd, BBP_R69, 0x16);
		RTMP_BBP_IO_WRITE8_BY_REG_ID(pAd, BBP_R73, 0x12);
	}

	return TRUE;
	
}
/*
	Defined in IEEE 802.11AC

	Appeared in Beacon, (Re)AssocResp, ProbResp frames
*/
INT build_vht_op_ie(RTMP_ADAPTER *pAd, UCHAR *buf)
{
	VHT_OP_IE vht_op;
	UCHAR cent_ch;
#ifdef RT_BIG_ENDIAN
	UINT16 tmp;
#endif

	NdisZeroMemory((UCHAR *)&vht_op, sizeof(VHT_OP_IE));
	vht_op.vht_op_info.ch_width = (pAd->CommonCfg.vht_bw == VHT_BW_80 ? 1: 0);

#ifdef CONFIG_AP_SUPPORT
	if (pAd->CommonCfg.Channel > 14 &&
		(pAd->CommonCfg.bIEEE80211H == 1) &&
		(pAd->Dot11_H.RDMode == RD_SWITCHING_MODE))
		cent_ch = vht_cent_ch_freq(pAd, pAd->Dot11_H.org_ch);
	else
#endif /* CONFIG_AP_SUPPORT */
		cent_ch = vht_cent_ch_freq(pAd, pAd->CommonCfg.Channel);

	switch (vht_op.vht_op_info.ch_width) {
	case 0:
		vht_op.vht_op_info.center_freq_1 = 0;
		vht_op.vht_op_info.center_freq_2 = 0;
		break;
	case 1:
	case 2:
		vht_op.vht_op_info.center_freq_1 = cent_ch;
		vht_op.vht_op_info.center_freq_2 = 0;
		break;
	case 3:
		vht_op.vht_op_info.center_freq_1 = cent_ch;
		vht_op.vht_op_info.center_freq_2 = pAd->CommonCfg.vht_cent_ch2;
		break;
	}

	vht_op.basic_mcs_set.mcs_ss1 = VHT_MCS_CAP_NA;
	vht_op.basic_mcs_set.mcs_ss2 = VHT_MCS_CAP_NA;
	vht_op.basic_mcs_set.mcs_ss3 = VHT_MCS_CAP_NA;
	vht_op.basic_mcs_set.mcs_ss4 = VHT_MCS_CAP_NA;
	vht_op.basic_mcs_set.mcs_ss5 = VHT_MCS_CAP_NA;
	vht_op.basic_mcs_set.mcs_ss6 = VHT_MCS_CAP_NA;
	vht_op.basic_mcs_set.mcs_ss7 = VHT_MCS_CAP_NA;
	vht_op.basic_mcs_set.mcs_ss8 = VHT_MCS_CAP_NA;

	switch  (pAd->CommonCfg.RxStream) {
	case 2:
#ifdef MT76x2
		if (IS_MT76x2(pAd)) {
			vht_op.basic_mcs_set.mcs_ss2 = (((pAd->CommonCfg.vht_bw == VHT_BW_2040)
				&& (pAd->CommonCfg.RegTransmitSetting.field.BW == BW_20)) ? VHT_MCS_CAP_8 : VHT_MCS_CAP_9);
		} else
#endif /* MT76x2 */
			vht_op.basic_mcs_set.mcs_ss2 = VHT_MCS_CAP_7;
	case 1:
#if defined(MT76x0) || defined(MT76x2)
		if (IS_MT76x0(pAd) || IS_MT76x2(pAd))
			vht_op.basic_mcs_set.mcs_ss1 = (((pAd->CommonCfg.vht_bw == VHT_BW_2040)
				&& (pAd->CommonCfg.RegTransmitSetting.field.BW == BW_20)) ? VHT_MCS_CAP_8 : VHT_MCS_CAP_9);
		else
#endif
			vht_op.basic_mcs_set.mcs_ss1 = VHT_MCS_CAP_7;
		break;
	}

#ifdef RT_BIG_ENDIAN
	//SWAP16((UINT16)vht_op.basic_mcs_set);
	NdisCopyMemory(&tmp,&vht_op.basic_mcs_set, 2);
	tmp = SWAP16(tmp);
	NdisCopyMemory(&vht_op.basic_mcs_set,&tmp, 2);
#endif /* RT_BIG_ENDIAN */
	NdisMoveMemory((UCHAR *)buf, (UCHAR *)&vht_op, sizeof(VHT_OP_IE));

	return sizeof(VHT_OP_IE);
}
Exemple #8
0
/*
	==========================================================================
	Description:
		Pre-build a BEACON frame in the shared memory
	==========================================================================
*/
VOID APMakeBssBeacon(RTMP_ADAPTER *pAd, INT apidx)
{
	UCHAR DsLen = 1, SsidLen;
	HEADER_802_11 BcnHdr;
	LARGE_INTEGER FakeTimestamp;
	ULONG FrameLen = 0;
	PUCHAR pBeaconFrame = (PUCHAR)pAd->ApCfg.MBSSID[apidx].BeaconBuf;
	UCHAR *ptr;
	UINT i;
	UINT32 longValue, reg_base;
	HTTRANSMIT_SETTING BeaconTransmit = {.word = 0};   /* MGMT frame PHY rate setting when operatin at Ht rate. */
	UCHAR PhyMode, SupRateLen;
	UINT8 TXWISize = pAd->chipCap.TXWISize;
	MULTISSID_STRUCT *pMbss = &pAd->ApCfg.MBSSID[apidx];
#ifdef SPECIFIC_TX_POWER_SUPPORT
	UCHAR TxPwrAdj = 0;
#endif /* SPECIFIC_TX_POWER_SUPPORT */
	
	if(!BeaconTransmitRequired(pAd, apidx, pMbss))
		return;

	PhyMode = pMbss->wdev.PhyMode;

	if (pMbss->bHideSsid)
		SsidLen = 0;
	else
		SsidLen = pMbss->SsidLen;

	MgtMacHeaderInit(pAd, &BcnHdr, SUBTYPE_BEACON, 0, BROADCAST_ADDR, 
						pMbss->wdev.if_addr,
						pMbss->wdev.bssid);
	
	/* for update framelen to TxWI later. */
	SupRateLen = pAd->CommonCfg.SupRateLen;
	if (PhyMode == WMODE_B)
		SupRateLen = 4;

	MakeOutgoingFrame(pBeaconFrame,                  &FrameLen,
					sizeof(HEADER_802_11),           &BcnHdr, 
					TIMESTAMP_LEN,                   &FakeTimestamp,
					2,                               &pAd->CommonCfg.BeaconPeriod,
					2,                               &pMbss->CapabilityInfo,
					1,                               &SsidIe, 
					1,                               &SsidLen, 
					SsidLen,                      pMbss->Ssid,
					1,                               &SupRateIe, 
					1,                               &SupRateLen,
					SupRateLen,                pAd->CommonCfg.SupRate, 
					1,                               &DsIe, 
					1,                               &DsLen, 
					1,                               &pAd->CommonCfg.Channel,
					END_OF_ARGS);

	if ((pAd->CommonCfg.ExtRateLen) && (PhyMode != WMODE_B))
	{
		ULONG TmpLen;
		MakeOutgoingFrame(pBeaconFrame+FrameLen,         &TmpLen,
						1,                               &ExtRateIe, 
						1,                               &pAd->CommonCfg.ExtRateLen,
						pAd->CommonCfg.ExtRateLen,           pAd->CommonCfg.ExtRate, 
						END_OF_ARGS);
		FrameLen += TmpLen;
	}


    /* add country IE, power constraint IE */
	if (pAd->CommonCfg.bCountryFlag)
	{
		ULONG TmpLen, TmpLen2=0;
		UCHAR *TmpFrame = NULL;
		UCHAR CountryIe = IE_COUNTRY;

		os_alloc_mem(NULL, (UCHAR **)&TmpFrame, 256);
		if (TmpFrame != NULL)
		{
			NdisZeroMemory(TmpFrame, 256);

			/* prepare channel information */
#ifdef EXT_BUILD_CHANNEL_LIST
			BuildBeaconChList(pAd, TmpFrame, &TmpLen2);
#else
			{
				UCHAR MaxTxPower = GetCuntryMaxTxPwr(pAd, pAd->CommonCfg.Channel);
				MakeOutgoingFrame(TmpFrame+TmpLen2,     &TmpLen,
									1,                 	&pAd->ChannelList[0].Channel,
									1,                 	&pAd->ChannelListNum,
									1,                 	&MaxTxPower,
									END_OF_ARGS);
				TmpLen2 += TmpLen;
			}
#endif /* EXT_BUILD_CHANNEL_LIST */


			/* need to do the padding bit check, and concatenate it */
			if ((TmpLen2%2) == 0)
			{
				UCHAR	TmpLen3 = TmpLen2+4;
				MakeOutgoingFrame(pBeaconFrame+FrameLen,&TmpLen,
				                  1,                 	&CountryIe,
				                  1,                 	&TmpLen3,
				                  3,                 	pAd->CommonCfg.CountryCode,
				                  TmpLen2+1,				TmpFrame,
				                  END_OF_ARGS);
			}
			else
			{
				UCHAR	TmpLen3 = TmpLen2+3;
				MakeOutgoingFrame(pBeaconFrame+FrameLen,&TmpLen,
				                  1,                 	&CountryIe,
				                  1,                 	&TmpLen3,
				                  3,                 	pAd->CommonCfg.CountryCode,
				                  TmpLen2,				TmpFrame,
				                  END_OF_ARGS);
			}
			FrameLen += TmpLen;

			os_free_mem(NULL, TmpFrame);
		}
		else
			DBGPRINT(RT_DEBUG_ERROR, ("%s: Allocate memory fail!!!\n", __FUNCTION__));
	}


#ifdef DOT11_N_SUPPORT
	/* AP Channel Report */
	{
		UCHAR APChannelReportIe = IE_AP_CHANNEL_REPORT;
		ULONG	TmpLen;

		/*
			802.11n D2.0 Annex J, USA regulatory 
				class 32, channel set 1~7
				class 33, channel set 5-11
		*/
		UCHAR rclass32[]={32, 1, 2, 3, 4, 5, 6, 7};
        UCHAR rclass33[]={33, 5, 6, 7, 8, 9, 10, 11};
		UCHAR rclasslen = 8; /*sizeof(rclass32); */
		if (PhyMode == (WMODE_B | WMODE_G | WMODE_GN))
		{
			MakeOutgoingFrame(pBeaconFrame+FrameLen,&TmpLen,
							  1,                    &APChannelReportIe,
							  1,                    &rclasslen,
							  rclasslen,            rclass32,
   							  1,                    &APChannelReportIe,
							  1,                    &rclasslen,
							  rclasslen,            rclass33,
							  END_OF_ARGS);
			FrameLen += TmpLen;		
		}
	}

#endif /* DOT11_N_SUPPORT */


	BeaconTransmit.word = 0;

#ifdef SPECIFIC_TX_POWER_SUPPORT
        /* Specific Power for Long-Range Beacon */
	if ((pAd->ApCfg.MBSSID[apidx].TxPwrAdj != -1) /* && 
	    (BeaconTransmit.field.MODE == MODE_CCK)*/) 
	{
		TxPwrAdj = pAd->ApCfg.MBSSID[apidx].TxPwrAdj;
	}
#endif /* SPECIFIC_TX_POWER_SUPPORT */

	RTMPWriteTxWI(pAd, &pAd->BeaconTxWI, FALSE, FALSE, TRUE, FALSE, FALSE, TRUE, 0, BSS0Mcast_WCID, 
					FrameLen, PID_MGMT, 0, 0,IFS_HTTXOP, &BeaconTransmit);

#ifdef SPECIFIC_TX_POWER_SUPPORT
#ifdef RTMP_MAC
		if ((IS_RT6352(pAd) || IS_MT76x2(pAd)) && (pAd->chipCap.hif_type == HIF_RTMP))
        	pAd->BeaconTxWI.TXWI_O.TxPwrAdj = TxPwrAdj;
#endif /* RTMP_MAC */
#ifdef RLT_MAC
		if  ((IS_RT6352(pAd) || IS_MT76x2(pAd)) && (pAd->chipCap.hif_type == HIF_RLT))
			pAd->BeaconTxWI.TXWI_N.TxPwrAdj = TxPwrAdj;
#endif /* RLT_MAC */
#endif /* SPECIFIC_TX_POWER_SUPPORT */

	/*
		step 6. move BEACON TXD and frame content to on-chip memory
	*/
	ptr = (PUCHAR)&pAd->BeaconTxWI;
#ifdef RT_BIG_ENDIAN
    RTMPWIEndianChange(pAd, ptr, TYPE_TXWI);
#endif


	reg_base = pAd->BeaconOffset[pMbss->BcnBufIdx];
	for (i=0; i < TXWISize; i+=4)
	{
		longValue = *ptr + (*(ptr+1)<<8) + (*(ptr+2)<<16) + (*(ptr+3)<<24);
		RTMP_CHIP_UPDATE_BEACON(pAd, reg_base + i, longValue, 4);
		ptr += 4;
	}

	/* update BEACON frame content. start right after the TXWI field. */
	ptr = (PUCHAR)pMbss->BeaconBuf;
#ifdef RT_BIG_ENDIAN
	RTMPFrameEndianChange(pAd, ptr, DIR_WRITE, FALSE);
#endif

	reg_base = pAd->BeaconOffset[pMbss->BcnBufIdx] + TXWISize;
	for (i= 0; i< FrameLen; i+=4)
	{
		longValue =  *ptr + (*(ptr+1)<<8) + (*(ptr+2)<<16) + (*(ptr+3)<<24);
		RTMP_CHIP_UPDATE_BEACON(pAd, reg_base + i, longValue, 4);
		ptr += 4;
	}

	pMbss->TimIELocationInBeacon = (UCHAR)FrameLen; 
	pMbss->CapabilityInfoLocationInBeacon = sizeof(HEADER_802_11) + TIMESTAMP_LEN + 2;
}


/*
	==========================================================================
	Description:
		Update the BEACON frame in the shared memory. Because TIM IE is variable
		length. other IEs after TIM has to shift and total frame length may change
		for each BEACON period.
	Output:
		pAd->ApCfg.MBSSID[apidx].CapabilityInfo
		pAd->ApCfg.ErpIeContent
	==========================================================================
*/
VOID APUpdateBeaconFrame(RTMP_ADAPTER *pAd, INT apidx)
{
	UCHAR *pBeaconFrame;
	UCHAR *ptr;
	ULONG FrameLen;
	ULONG UpdatePos;
	UCHAR RSNIe=IE_WPA, RSNIe2=IE_WPA2;
	UCHAR ID_1B, TimFirst, TimLast, *pTim;
	MULTISSID_STRUCT *pMbss;
	COMMON_CONFIG *pComCfg;
	UCHAR PhyMode;
	BOOLEAN bHasWpsIE = FALSE;
	UINT  i;
	HTTRANSMIT_SETTING	BeaconTransmit = {.word = 0};   /* MGMT frame PHY rate setting when operatin at Ht rate. */
	struct wifi_dev *wdev;
#ifdef SPECIFIC_TX_POWER_SUPPORT
	UCHAR TxPwrAdj = 0;
#endif /* SPECIFIC_TX_POWER_SUPPORT */

	pComCfg = &pAd->CommonCfg;
	pMbss = &pAd->ApCfg.MBSSID[apidx];
	wdev = &pMbss->wdev;

	pBeaconFrame = (UCHAR *)&pMbss->BeaconBuf[0];
	FrameLen = UpdatePos = pMbss->TimIELocationInBeacon;
	PhyMode = wdev->PhyMode;
	
	if(!BeaconTransmitRequired(pAd, apidx, pMbss))
		return;

	/*
		step 1 - update BEACON's Capability
	*/
	ptr = pBeaconFrame + pMbss->CapabilityInfoLocationInBeacon;
	*ptr = (UCHAR)(pMbss->CapabilityInfo & 0x00ff);
	*(ptr+1) = (UCHAR)((pMbss->CapabilityInfo & 0xff00) >> 8);

	/*
		step 2 - update TIM IE
		TODO: enlarge TIM bitmap to support up to 64 STAs
		TODO: re-measure if RT2600 TBTT interrupt happens faster than BEACON sent out time
	*/
	ptr = pBeaconFrame + pMbss->TimIELocationInBeacon;
	*ptr = IE_TIM;
	*(ptr + 2) = pAd->ApCfg.DtimCount;
	*(ptr + 3) = pAd->ApCfg.DtimPeriod;

	/* find the smallest AID (PS mode) */
	TimFirst = 0; /* record first TIM byte != 0x00 */
	TimLast = 0;  /* record last  TIM byte != 0x00 */
	pTim = pMbss->TimBitmaps;

	for(ID_1B=0; ID_1B<WLAN_MAX_NUM_OF_TIM; ID_1B++)
	{
		/* get the TIM indicating PS packets for 8 stations */
		UCHAR tim_1B = pTim[ID_1B];

		if (ID_1B == 0)
			tim_1B &= 0xfe; /* skip bit0 bc/mc */

		if (tim_1B == 0)
			continue; /* find next 1B */

		if (TimFirst == 0)
			TimFirst = ID_1B;

		TimLast = ID_1B;
	}

	/* fill TIM content to beacon buffer */
	if (TimFirst & 0x01)
		TimFirst --; /* find the even offset byte */

	*(ptr + 1) = 3+(TimLast-TimFirst+1); /* TIM IE length */
	*(ptr + 4) = TimFirst;

	for(i=TimFirst; i<=TimLast; i++)
		*(ptr + 5 + i - TimFirst) = pTim[i];

	/* bit0 means backlogged mcast/bcast */
    if (pAd->ApCfg.DtimCount == 0)
		*(ptr + 4) |= (pMbss->TimBitmaps[WLAN_CT_TIM_BCMC_OFFSET] & 0x01); 

	/* adjust BEACON length according to the new TIM */
	FrameLen += (2 + *(ptr+1)); 

	/* move RSN IE from below to here for Ralink Win7 v3.0.0.61 version parse beacon issue. */
	/* sync the order with BRCM's AP. */
	if ((wdev->AuthMode == Ndis802_11AuthModeWPA) || 
		(wdev->AuthMode == Ndis802_11AuthModeWPAPSK))
		RSNIe = IE_WPA;
	else if ((wdev->AuthMode == Ndis802_11AuthModeWPA2) || 
		(wdev->AuthMode == Ndis802_11AuthModeWPA2PSK))
		RSNIe = IE_WPA2;
#ifdef WAPI_SUPPORT
	else if ((wdev->AuthMode == Ndis802_11AuthModeWAICERT) || 
		(wdev->AuthMode == Ndis802_11AuthModeWAIPSK))
		RSNIe = IE_WAPI;
#endif /* WAPI_SUPPORT */

	/* Append RSN_IE when  WPA OR WPAPSK, */
	if ((wdev->AuthMode == Ndis802_11AuthModeWPA1WPA2) || 
		(wdev->AuthMode == Ndis802_11AuthModeWPA1PSKWPA2PSK))
	{
		ULONG TmpLen;
		MakeOutgoingFrame(pBeaconFrame+FrameLen,        &TmpLen,
						  1,                            &RSNIe,
						  1,                            &pMbss->RSNIE_Len[0],
						  pMbss->RSNIE_Len[0],      pMbss->RSN_IE[0],
						  1,                            &RSNIe2,
						  1,                            &pMbss->RSNIE_Len[1],
						  pMbss->RSNIE_Len[1],      pMbss->RSN_IE[1],
						  END_OF_ARGS);
		FrameLen += TmpLen;
	}
	else if (wdev->AuthMode >= Ndis802_11AuthModeWPA)
	{
		ULONG TmpLen;
		MakeOutgoingFrame(pBeaconFrame+FrameLen,        &TmpLen,
						  1,                            &RSNIe,
						  1,                            &pMbss->RSNIE_Len[0],
						  pMbss->RSNIE_Len[0],      pMbss->RSN_IE[0],
						  END_OF_ARGS);
		FrameLen += TmpLen;
	}

#ifdef HOSTAPD_SUPPORT
	if (pMbss->HostapdWPS && (pMbss->WscIEBeacon.ValueLen))
		bHasWpsIE = TRUE;
#endif

#ifdef WSC_AP_SUPPORT
    /* add Simple Config Information Element */
    if (((pMbss->WscControl.WscConfMode >= 1) && (pMbss->WscIEBeacon.ValueLen)))
		bHasWpsIE = TRUE;
#endif /* WSC_AP_SUPPORT */

	if (bHasWpsIE)
	{
		ULONG WscTmpLen = 0;
        
		MakeOutgoingFrame(pBeaconFrame+FrameLen, &WscTmpLen,
						pMbss->WscIEBeacon.ValueLen, pMbss->WscIEBeacon.Value,
						END_OF_ARGS);
		FrameLen += WscTmpLen;		  
	}

#ifdef WSC_AP_SUPPORT
    if ((pMbss->WscControl.WscConfMode != WSC_DISABLE) &&
#ifdef DOT1X_SUPPORT
        (pMbss->wdev.IEEE8021X == FALSE) && 
#endif /* DOT1X_SUPPORT */		
        (pMbss->wdev.WepStatus == Ndis802_11WEPEnabled))
    {
        /*
            Non-WPS Windows XP and Vista PCs are unable to determine if a WEP enalbed network is static key based 
            or 802.1X based. If the legacy station gets an EAP-Rquest/Identity from the AP, it assume the WEP
            network is 802.1X enabled & will prompt the user for 802.1X credentials. If the legacy station doesn't
            receive anything after sending an EAPOL-Start, it will assume the WEP network is static key based and
            prompt user for the WEP key. <<from "WPS and Static Key WEP Networks">>
            A WPS enabled AP should include this IE in the beacon when the AP is hosting a static WEP key network.  
            The IE would be 7 bytes long with the Extended Capability field set to 0 (all bits zero)
            http:msdn.microsoft.com/library/default.asp?url=/library/en-us/randz/protocol/securing_public_wi-fi_hotspots.asp
        */
        ULONG TempLen = 0;
        UCHAR PROVISION_SERVICE_IE[7] = {0xDD, 0x05, 0x00, 0x50, 0xF2, 0x05, 0x00};
        MakeOutgoingFrame(pBeaconFrame+FrameLen,        &TempLen,
						  7,                            PROVISION_SERVICE_IE,
                          END_OF_ARGS);
        FrameLen += TempLen;
    }
#endif /* WSC_AP_SUPPORT */
    	

	/* Update ERP */
    if ((pComCfg->ExtRateLen) && (PhyMode != WMODE_B))
    {
        /* fill ERP IE */
        ptr = (UCHAR *)pBeaconFrame + FrameLen; /* pTxD->DataByteCnt; */
        *ptr = IE_ERP;
        *(ptr + 1) = 1;
        *(ptr + 2) = pAd->ApCfg.ErpIeContent;
		FrameLen += 3;
	}

#ifdef A_BAND_SUPPORT
	/* fill up Channel Switch Announcement Element */
	if ((pComCfg->Channel > 14)
		&& (pComCfg->bIEEE80211H == 1)
		&& (pAd->Dot11_H.RDMode == RD_SWITCHING_MODE))
	{
		ptr = pBeaconFrame + FrameLen;
		*ptr = IE_CHANNEL_SWITCH_ANNOUNCEMENT;
		*(ptr + 1) = 3;
		*(ptr + 2) = 1;
		*(ptr + 3) = pComCfg->Channel;
		*(ptr + 4) = (pAd->Dot11_H.CSPeriod - pAd->Dot11_H.CSCount - 1);
		ptr += 5;
		FrameLen += 5;

#ifdef DOT11_N_SUPPORT
		/* Extended Channel Switch Announcement Element */
		if (pComCfg->bExtChannelSwitchAnnouncement)
		{
			HT_EXT_CHANNEL_SWITCH_ANNOUNCEMENT_IE	HtExtChannelSwitchIe;
			build_ext_channel_switch_ie(pAd, &HtExtChannelSwitchIe);
			NdisMoveMemory(ptr, &HtExtChannelSwitchIe, sizeof(HT_EXT_CHANNEL_SWITCH_ANNOUNCEMENT_IE));
			ptr += sizeof(HT_EXT_CHANNEL_SWITCH_ANNOUNCEMENT_IE);
			FrameLen += sizeof(HT_EXT_CHANNEL_SWITCH_ANNOUNCEMENT_IE);
		}

#ifdef DOT11_VHT_AC
		if (WMODE_CAP_AC(PhyMode)) {
			INT tp_len, wb_len = 0;
			UCHAR *ch_sw_wrapper;
			VHT_TXPWR_ENV_IE txpwr_env;


			*ptr = IE_CH_SWITCH_WRAPPER;
			ch_sw_wrapper = (UCHAR *)(ptr + 1); // reserve for length
			ptr += 2; // skip len
			
			if (pComCfg->RegTransmitSetting.field.BW == BW_40) {
				WIDE_BW_CH_SWITCH_ELEMENT wb_info;

				*ptr = IE_WIDE_BW_CH_SWITCH;
				*(ptr + 1) = sizeof(WIDE_BW_CH_SWITCH_ELEMENT);
				ptr += 2;
				NdisZeroMemory(&wb_info, sizeof(WIDE_BW_CH_SWITCH_ELEMENT));
				if (pComCfg->vht_bw == VHT_BW_2040)
					wb_info.new_ch_width = 0;
				else
					wb_info.new_ch_width = 1;

				if (pComCfg->vht_bw == VHT_BW_80) {
					wb_info.center_freq_1 = vht_cent_ch_freq(pAd, pComCfg->Channel);
					wb_info.center_freq_2 = 0;
				}
				NdisMoveMemory(ptr, &wb_info, sizeof(WIDE_BW_CH_SWITCH_ELEMENT));
				wb_len = sizeof(WIDE_BW_CH_SWITCH_ELEMENT);
				ptr += wb_len;
				wb_len += 2;
			}

			*ptr = IE_VHT_TXPWR_ENV;
			NdisZeroMemory(&txpwr_env, sizeof(VHT_TXPWR_ENV_IE));
			tp_len = build_vht_txpwr_envelope(pAd, (UCHAR *)&txpwr_env);
			*(ptr + 1) = tp_len;
			ptr += 2;
			NdisMoveMemory(ptr, &txpwr_env, tp_len);
			ptr += tp_len;
			tp_len += 2;
			*ch_sw_wrapper = wb_len + tp_len;

			FrameLen += (2 + wb_len + tp_len);
		}
#endif /* DOT11_VHT_AC */

#endif /* DOT11_N_SUPPORT */
	}
#endif /* A_BAND_SUPPORT */

#ifdef DOT11_N_SUPPORT
	/* step 5. Update HT. Since some fields might change in the same BSS. */
	if (WMODE_CAP_N(PhyMode) && (wdev->DesiredHtPhyInfo.bHtEnable))
	{
		ULONG TmpLen;
		UCHAR HtLen, HtLen1;
		/*UCHAR i; */

#ifdef RT_BIG_ENDIAN
		HT_CAPABILITY_IE HtCapabilityTmp;
		ADD_HT_INFO_IE	addHTInfoTmp;
/*		USHORT	b2lTmp, b2lTmp2; // no use */
#endif

		/* add HT Capability IE */
		HtLen = sizeof(pComCfg->HtCapability);
		HtLen1 = sizeof(pComCfg->AddHTInfo);
#ifndef RT_BIG_ENDIAN
		MakeOutgoingFrame(pBeaconFrame+FrameLen,         &TmpLen,
								  1,                                &HtCapIe,
								  1,                                &HtLen,
								 HtLen,          &pComCfg->HtCapability, 
								  1,                                &AddHtInfoIe,
								  1,                                &HtLen1,
								 HtLen1,          &pComCfg->AddHTInfo, 
						  END_OF_ARGS);
#else
		NdisMoveMemory(&HtCapabilityTmp, &pComCfg->HtCapability, HtLen);
		*(USHORT *)(&HtCapabilityTmp.HtCapInfo) = SWAP16(*(USHORT *)(&HtCapabilityTmp.HtCapInfo));
#ifdef UNALIGNMENT_SUPPORT
		{
			EXT_HT_CAP_INFO extHtCapInfo;

			NdisMoveMemory((PUCHAR)(&extHtCapInfo), (PUCHAR)(&HtCapabilityTmp.ExtHtCapInfo), sizeof(EXT_HT_CAP_INFO));
			*(USHORT *)(&extHtCapInfo) = cpu2le16(*(USHORT *)(&extHtCapInfo));
			NdisMoveMemory((PUCHAR)(&HtCapabilityTmp.ExtHtCapInfo), (PUCHAR)(&extHtCapInfo), sizeof(EXT_HT_CAP_INFO));		
		}
#else
		*(USHORT *)(&HtCapabilityTmp.ExtHtCapInfo) = SWAP16(*(USHORT *)(&HtCapabilityTmp.ExtHtCapInfo));
#endif /* UNALIGNMENT_SUPPORT */

		NdisMoveMemory(&addHTInfoTmp, &pComCfg->AddHTInfo, HtLen1);
		*(USHORT *)(&addHTInfoTmp.AddHtInfo2) = SWAP16(*(USHORT *)(&addHTInfoTmp.AddHtInfo2));
		*(USHORT *)(&addHTInfoTmp.AddHtInfo3) = SWAP16(*(USHORT *)(&addHTInfoTmp.AddHtInfo3));

		MakeOutgoingFrame(pBeaconFrame+FrameLen,         &TmpLen,
								  1,                                &HtCapIe,
								  1,                                &HtLen,
								 HtLen,                   &HtCapabilityTmp, 
								  1,                                &AddHtInfoIe,
								  1,                                &HtLen1,
								 HtLen1,                   &addHTInfoTmp, 
						  END_OF_ARGS);
#endif
		FrameLen += TmpLen;

#ifdef DOT11N_DRAFT3
	 	/*
			P802.11n_D3.03, 7.3.2.60 Overlapping BSS Scan Parameters IE
		*/
	 	if ((pComCfg->Channel <= 14) &&
			(pComCfg->HtCapability.HtCapInfo.ChannelWidth == 1))
	 	{
			OVERLAP_BSS_SCAN_IE  OverlapScanParam;
			ULONG	TmpLen;
			UCHAR	OverlapScanIE, ScanIELen;

			OverlapScanIE = IE_OVERLAPBSS_SCAN_PARM;
			ScanIELen = 14;
			OverlapScanParam.ScanPassiveDwell = cpu2le16(pComCfg->Dot11OBssScanPassiveDwell);
			OverlapScanParam.ScanActiveDwell = cpu2le16(pComCfg->Dot11OBssScanActiveDwell);
			OverlapScanParam.TriggerScanInt = cpu2le16(pComCfg->Dot11BssWidthTriggerScanInt);
			OverlapScanParam.PassiveTalPerChannel = cpu2le16(pComCfg->Dot11OBssScanPassiveTotalPerChannel);
			OverlapScanParam.ActiveTalPerChannel = cpu2le16(pComCfg->Dot11OBssScanActiveTotalPerChannel);
			OverlapScanParam.DelayFactor = cpu2le16(pComCfg->Dot11BssWidthChanTranDelayFactor);
			OverlapScanParam.ScanActThre = cpu2le16(pComCfg->Dot11OBssScanActivityThre);
			
			MakeOutgoingFrame(pBeaconFrame + FrameLen, &TmpLen,
								1,			&OverlapScanIE,
								1,			&ScanIELen,
								ScanIELen,	&OverlapScanParam,
								END_OF_ARGS);
			
			FrameLen += TmpLen;
	 	}
#endif /* DOT11N_DRAFT3 */

#ifdef CONFIG_HOTSPOT
	if (pMbss->HotSpotCtrl.HotSpotEnable)
 	{
		ULONG	TmpLen;

		/* Indication element */	
		MakeOutgoingFrame(pBeaconFrame + FrameLen, &TmpLen,
						  pMbss->HotSpotCtrl.HSIndicationIELen, 
						  pMbss->HotSpotCtrl.HSIndicationIE, END_OF_ARGS); 

		FrameLen += TmpLen;  

		/* Interworking element */
		MakeOutgoingFrame(pBeaconFrame + FrameLen, &TmpLen,
						  pMbss->HotSpotCtrl.InterWorkingIELen, 
						  pMbss->HotSpotCtrl.InterWorkingIE, END_OF_ARGS); 

		FrameLen += TmpLen; 

		/* Advertisement Protocol element */
		MakeOutgoingFrame(pBeaconFrame + FrameLen, &TmpLen,
						  pMbss->HotSpotCtrl.AdvertisementProtoIELen, 
						  pMbss->HotSpotCtrl.AdvertisementProtoIE, END_OF_ARGS); 

		FrameLen += TmpLen; 

		/* Roaming Consortium element */ 
		MakeOutgoingFrame(pBeaconFrame + FrameLen, &TmpLen,
						  pMbss->HotSpotCtrl.RoamingConsortiumIELen, 
						  pMbss->HotSpotCtrl.RoamingConsortiumIE, END_OF_ARGS); 

		FrameLen += TmpLen;
		
		/* P2P element */
		MakeOutgoingFrame(pBeaconFrame + FrameLen, &TmpLen,
						  pMbss->HotSpotCtrl.P2PIELen, 
						  pMbss->HotSpotCtrl.P2PIE, END_OF_ARGS); 
		
		FrameLen += TmpLen;

 	}
#endif

#ifdef DOT11_VHT_AC
		if (WMODE_CAP_AC(PhyMode) && (pComCfg->Channel > 14))
		{
			int _len = build_vht_ies(pAd, (UCHAR *)(pBeaconFrame+FrameLen), SUBTYPE_BEACON);
			FrameLen += _len;
		}
#endif /* DOT11_VHT_AC */
	}
#endif /* DOT11_N_SUPPORT */

	/* 7.3.2.27 Extended Capabilities IE */
	{
		ULONG TmpLen, infoPos;
		PUCHAR pInfo;
		UCHAR extInfoLen;
		BOOLEAN	bNeedAppendExtIE = FALSE;
		EXT_CAP_INFO_ELEMENT	extCapInfo;


		extInfoLen = sizeof(EXT_CAP_INFO_ELEMENT);
		NdisZeroMemory(&extCapInfo, extInfoLen);

#ifdef DOT11_N_SUPPORT
#ifdef DOT11N_DRAFT3
		/* P802.11n_D1.10, HT Information Exchange Support */
		if (WMODE_CAP_N(PhyMode) && (pComCfg->Channel <= 14) &&
			(pMbss->wdev.DesiredHtPhyInfo.bHtEnable) &&
			(pComCfg->bBssCoexEnable == TRUE)
		)
		{
			extCapInfo.BssCoexistMgmtSupport = 1;
		}
#endif /* DOT11N_DRAFT3 */
#endif /* DOT11_N_SUPPORT */

#ifdef CONFIG_DOT11V_WNM
		if (pMbss->WNMCtrl.ProxyARPEnable)
			extCapInfo.proxy_arp = 1;
#endif

#ifdef CONFIG_HOTSPOT
		if (pMbss->HotSpotCtrl.HotSpotEnable)
			extCapInfo.interworking = 1;
#endif

#ifdef DOT11_VHT_AC
		if (WMODE_CAP_AC(PhyMode) &&
			(pAd->CommonCfg.Channel > 14))
			extCapInfo.operating_mode_notification = 1;
#endif /* DOT11_VHT_AC */

		pInfo = (PUCHAR)(&extCapInfo);
		for (infoPos = 0; infoPos < extInfoLen; infoPos++)
		{
			if (pInfo[infoPos] != 0)
			{
				bNeedAppendExtIE = TRUE;
				break;
			}
		}

		if (bNeedAppendExtIE == TRUE)
		{
			MakeOutgoingFrame(pBeaconFrame+FrameLen, &TmpLen,
							1, &ExtCapIe,
							1, &extInfoLen,
							extInfoLen, &extCapInfo,
							END_OF_ARGS);
			FrameLen += TmpLen;
		}
	}

#ifdef WFA_VHT_PF
	if (pAd->force_vht_op_mode == TRUE)
	{
		ULONG TmpLen;
		UCHAR operating_ie = IE_OPERATING_MODE_NOTIFY, operating_len = 1;
		OPERATING_MODE operating_mode;

		operating_mode.rx_nss_type = 0;
		operating_mode.rx_nss = (pAd->vht_pf_op_ss - 1);
		operating_mode.ch_width = pAd->vht_pf_op_bw;

		MakeOutgoingFrame(pBeaconFrame+FrameLen, &TmpLen,
						  1,	&operating_ie,
						  1,	&operating_len,
						  1,	&operating_mode,
						  END_OF_ARGS);
		FrameLen += TmpLen;		
	}
#endif /* WFA_VHT_PF */

	/* add WMM IE here */
	if (pMbss->wdev.bWmmCapable)
	{
		ULONG TmpLen;
		UCHAR i;
		UCHAR WmeParmIe[26] = {IE_VENDOR_SPECIFIC, 24, 0x00, 0x50, 0xf2, 0x02, 0x01, 0x01, 0, 0}; 
		UINT8 AIFSN[4];

		WmeParmIe[8] = pAd->ApCfg.BssEdcaParm.EdcaUpdateCount & 0x0f;

#ifdef UAPSD_SUPPORT
        UAPSD_MR_IE_FILL(WmeParmIe[8], &pMbss->UapsdInfo);
#endif /* UAPSD_SUPPORT */

		NdisMoveMemory(AIFSN, pAd->ApCfg.BssEdcaParm.Aifsn, sizeof(AIFSN));


		for (i=QID_AC_BE; i<=QID_AC_VO; i++)
		{
			WmeParmIe[10+ (i*4)] = (i << 5)                                         +     /* b5-6 is ACI */
								   ((UCHAR)pAd->ApCfg.BssEdcaParm.bACM[i] << 4)     +     /* b4 is ACM */
								   (AIFSN[i] & 0x0f);              /* b0-3 is AIFSN */
			WmeParmIe[11+ (i*4)] = (pAd->ApCfg.BssEdcaParm.Cwmax[i] << 4)           +     /* b5-8 is CWMAX */
								   (pAd->ApCfg.BssEdcaParm.Cwmin[i] & 0x0f);              /* b0-3 is CWMIN */
			WmeParmIe[12+ (i*4)] = (UCHAR)(pAd->ApCfg.BssEdcaParm.Txop[i] & 0xff);        /* low byte of TXOP */
			WmeParmIe[13+ (i*4)] = (UCHAR)(pAd->ApCfg.BssEdcaParm.Txop[i] >> 8);          /* high byte of TXOP */
		}

		MakeOutgoingFrame(pBeaconFrame+FrameLen,         &TmpLen,
						  26,                            WmeParmIe,
						  END_OF_ARGS);
		FrameLen += TmpLen;
	}

#ifdef AP_QLOAD_SUPPORT
	if (pAd->phy_ctrl.FlgQloadEnable != 0)
		FrameLen += QBSS_LoadElementAppend(pAd, pBeaconFrame+FrameLen);
#endif /* AP_QLOAD_SUPPORT */

#ifdef A_BAND_SUPPORT
	/* 
		Only 802.11a APs that comply with 802.11h are required to include a 
		Power Constrint Element(IE=32) in beacons and probe response frames
	*/
	if (((pComCfg->Channel > 14) && pComCfg->bIEEE80211H == TRUE)
		)
	{
		ULONG TmpLen;
		UINT8 PwrConstraintIE = IE_POWER_CONSTRAINT;
		UINT8 PwrConstraintLen = 1;
		UINT8 PwrConstraint = pComCfg->PwrConstraint;

		/* prepare power constraint IE */
		MakeOutgoingFrame(pBeaconFrame+FrameLen,	&TmpLen,
						1,							&PwrConstraintIE,
						1,							&PwrConstraintLen,
						1,							&PwrConstraint,
						END_OF_ARGS);
		FrameLen += TmpLen;

#ifdef DOT11_VHT_AC
		if (WMODE_CAP_AC(PhyMode)) {
			ULONG TmpLen;
			UINT8 vht_txpwr_env_ie = IE_VHT_TXPWR_ENV;
			UINT8 ie_len;
			VHT_TXPWR_ENV_IE txpwr_env;

			ie_len = build_vht_txpwr_envelope(pAd, (UCHAR *)&txpwr_env);
			MakeOutgoingFrame(pBeaconFrame+FrameLen, &TmpLen,
						1,							&vht_txpwr_env_ie,
						1,							&ie_len,
						ie_len,						&txpwr_env,
						END_OF_ARGS);
			FrameLen += TmpLen;
		}
#endif /* DOT11_VHT_AC */

	}
#endif /* A_BAND_SUPPORT */


#ifdef DOT11_N_SUPPORT
	if (WMODE_CAP_N(PhyMode) && 
		(wdev->DesiredHtPhyInfo.bHtEnable))
	{
		ULONG TmpLen;
		UCHAR HtLen, HtLen1;
#ifdef RT_BIG_ENDIAN
		HT_CAPABILITY_IE HtCapabilityTmp;
		ADD_HT_INFO_IE	addHTInfoTmp;
#endif
		/* add HT Capability IE */
		HtLen = sizeof(pComCfg->HtCapability);
		HtLen1 = sizeof(pComCfg->AddHTInfo);

		if (pAd->bBroadComHT == TRUE)
		{
			UCHAR epigram_ie_len;
			UCHAR BROADCOM_HTC[4] = {0x0, 0x90, 0x4c, 0x33};
			UCHAR BROADCOM_AHTINFO[4] = {0x0, 0x90, 0x4c, 0x34};


			epigram_ie_len = HtLen + 4;
#ifndef RT_BIG_ENDIAN
			MakeOutgoingFrame(pBeaconFrame + FrameLen,      &TmpLen,
						  1,                                &WpaIe,
						  1,                                &epigram_ie_len,
						  4,                                &BROADCOM_HTC[0],
						  HtLen,          					&pComCfg->HtCapability, 
						  END_OF_ARGS);
#else
			NdisMoveMemory(&HtCapabilityTmp, &pComCfg->HtCapability, HtLen);
			*(USHORT *)(&HtCapabilityTmp.HtCapInfo) = SWAP16(*(USHORT *)(&HtCapabilityTmp.HtCapInfo));
#ifdef UNALIGNMENT_SUPPORT
		{
			EXT_HT_CAP_INFO extHtCapInfo;

			NdisMoveMemory((PUCHAR)(&extHtCapInfo), (PUCHAR)(&HtCapabilityTmp.ExtHtCapInfo), sizeof(EXT_HT_CAP_INFO));
			*(USHORT *)(&extHtCapInfo) = cpu2le16(*(USHORT *)(&extHtCapInfo));
			NdisMoveMemory((PUCHAR)(&HtCapabilityTmp.ExtHtCapInfo), (PUCHAR)(&extHtCapInfo), sizeof(EXT_HT_CAP_INFO));		
		}
#else
			*(USHORT *)(&HtCapabilityTmp.ExtHtCapInfo) = SWAP16(*(USHORT *)(&HtCapabilityTmp.ExtHtCapInfo));
#endif /* UNALIGNMENT_SUPPORT */

			MakeOutgoingFrame(pBeaconFrame + FrameLen,       &TmpLen,
						1,                               &WpaIe,
						1,                               &epigram_ie_len,
						4,                               &BROADCOM_HTC[0], 
						HtLen,                           &HtCapabilityTmp,
						END_OF_ARGS);
#endif

			FrameLen += TmpLen;

			epigram_ie_len = HtLen1 + 4;
#ifndef RT_BIG_ENDIAN
			MakeOutgoingFrame(pBeaconFrame + FrameLen,        &TmpLen,
						  1,                                &WpaIe,
						  1,                                &epigram_ie_len,
						  4,                                &BROADCOM_AHTINFO[0],
						  HtLen1, 							&pComCfg->AddHTInfo, 
						  END_OF_ARGS);
#else
			NdisMoveMemory(&addHTInfoTmp, &pComCfg->AddHTInfo, HtLen1);
			*(USHORT *)(&addHTInfoTmp.AddHtInfo2) = SWAP16(*(USHORT *)(&addHTInfoTmp.AddHtInfo2));
			*(USHORT *)(&addHTInfoTmp.AddHtInfo3) = SWAP16(*(USHORT *)(&addHTInfoTmp.AddHtInfo3));

			MakeOutgoingFrame(pBeaconFrame + FrameLen,         &TmpLen,
							1,                             &WpaIe,
							1,                             &epigram_ie_len,
							4,                             &BROADCOM_AHTINFO[0],
							HtLen1,                        &addHTInfoTmp,
							END_OF_ARGS);
#endif
			FrameLen += TmpLen;
		}
	}
#endif /* DOT11_N_SUPPORT */

   	/* add Ralink-specific IE here - Byte0.b0=1 for aggregation, Byte0.b1=1 for piggy-back */
{
	ULONG TmpLen;
	UCHAR RalinkSpecificIe[9] = {IE_VENDOR_SPECIFIC, 7, 0x00, 0x0c, 0x43, 0x00, 0x00, 0x00, 0x00};

	if (pComCfg->bAggregationCapable)
		RalinkSpecificIe[5] |= 0x1;
	if (pComCfg->bPiggyBackCapable)
		RalinkSpecificIe[5] |= 0x2;
#ifdef DOT11_N_SUPPORT
	if (pComCfg->bRdg)
		RalinkSpecificIe[5] |= 0x4;
#endif /* DOT11_N_SUPPORT */

#ifdef DOT11_VHT_AC
	if (pComCfg->b256QAM_2G && WMODE_2G_ONLY(pComCfg->PhyMode))
		RalinkSpecificIe[5] |= 0x8;
#endif /* DOT11_VHT_AC */

	MakeOutgoingFrame(pBeaconFrame+FrameLen, &TmpLen,
						9,                   RalinkSpecificIe,
						END_OF_ARGS);
	FrameLen += TmpLen;

}
	

	/* step 6. Since FrameLen may change, update TXWI. */
#ifdef A_BAND_SUPPORT
	if (pAd->CommonCfg.Channel > 14) {
		BeaconTransmit.field.MODE = MODE_OFDM;
		BeaconTransmit.field.MCS = MCS_RATE_6;
	}
#endif /* A_BAND_SUPPORT */

#ifdef SPECIFIC_TX_POWER_SUPPORT
	/* Specific Power for Long-Range Beacon */	
        if ((pAd->ApCfg.MBSSID[apidx].TxPwrAdj != -1) /* &&
            (BeaconTransmit.field.MODE == MODE_CCK)*/)
        {
                TxPwrAdj = pAd->ApCfg.MBSSID[apidx].TxPwrAdj;
        }
#endif /* SPECIFIC_TX_POWER_SUPPORT */

	RTMPWriteTxWI(pAd, &pAd->BeaconTxWI, FALSE, FALSE, TRUE, FALSE, FALSE, TRUE, 0, RESERVED_WCID, 
					FrameLen, PID_MGMT, 0 /*QID_MGMT*/, 0, IFS_HTTXOP, &BeaconTransmit);

#ifdef SPECIFIC_TX_POWER_SUPPORT
#ifdef RTMP_MAC
		if ((IS_RT6352(pAd) || IS_MT76x2(pAd)) && (pAd->chipCap.hif_type == HIF_RTMP))
        	pAd->BeaconTxWI.TXWI_O.TxPwrAdj = TxPwrAdj;
#endif /* RTMP_MAC */
#ifdef RLT_MAC
		if ((IS_RT6352(pAd) || IS_MT76x2(pAd)) && (pAd->chipCap.hif_type == HIF_RLT))
			pAd->BeaconTxWI.TXWI_N.TxPwrAdj = TxPwrAdj;
#endif /* RLT_MAC */
#endif /* SPECIFIC_TX_POWER_SUPPORT */

	/* step 7. move BEACON TXWI and frame content to on-chip memory */
	RT28xx_UpdateBeaconToAsic(pAd, apidx, FrameLen, UpdatePos);

}
/*
========================================================================
Routine Description:
	Initialize chip related information.

Arguments:
	pCB		- WLAN control block pointer

Return Value:
	None

Note:
========================================================================
*/
int RtmpChipOpsHook(void *pCB)
{
	RTMP_ADAPTER *pAd = (RTMP_ADAPTER *)pCB;
#ifdef DBG
	RTMP_CHIP_CAP *pChipCap = &pAd->chipCap;
#endif
	UINT32 MacValue;
	int ret = 0;
	RTMP_CHIP_OP *pChipOps = &pAd->chipOps;

	/* sanity check */
	if (WaitForAsicReady(pAd) == FALSE)
		return -1;

	RTMP_IO_READ32(pAd, MAC_CSR0, &MacValue);
	pAd->MACVersion = MacValue;

	if (pAd->MACVersion == 0xffffffff)
		return -1;

#ifdef RT65xx
	RTMP_IO_READ32(pAd, ASIC_VERSION, &MacValue);
	pAd->ChipID = MacValue;

	if (pAd->ChipID == 0xffffffff)
		return -1;
#endif /* RT65xx */

	/* default init */
	RTMP_DRS_ALG_INIT(pAd, RATE_ALG_LEGACY);

	/* EDCCA */
	pChipOps->ChipSetEDCCA= NULL;

#ifdef RT8592
	if (IS_RT8592(pAd)) {
		RT85592_Init(pAd);
		goto done;
	}
#endif /* RT8592 */

#ifdef MT76x2
	if (IS_MT76x2(pAd)) {
		mt76x2_init(pAd);
		goto done;
	}
#endif

#ifdef GREENAP_SUPPORT
	pChipOps->EnableAPMIMOPS = EnableAPMIMOPSv1;
	pChipOps->DisableAPMIMOPS = DisableAPMIMOPSv1;
#endif /* GREENAP_SUPPORT */

#ifdef RTMP_MAC
	// TODO: default settings for rest of the chips!! change this to really default chip.
	RTxx_default_Init(pAd);
#endif

	/*
	 * We depends on RfICType and MACVersion to assign the
	 * corresponding operation callbacks.
	 */

done:
	DBGPRINT(RT_DEBUG_TRACE, ("Chip specific bbpRegTbSize=%d!\n",
			pChipCap->bbpRegTbSize));
	DBGPRINT(RT_DEBUG_TRACE, ("Chip VCO calibration mode = %d!\n",
			pChipCap->FlgIsVcoReCalMode));
#ifdef DOT11W_PMF_SUPPORT
	DBGPRINT(RT_DEBUG_TRACE, ("[PMF] Encryption mode = %d\n",
			pChipCap->FlgPMFEncrtptMode));
#endif

	return ret;
}
Exemple #10
0
VOID TDDFDDCoexBACapability( 
 IN PRTMP_ADAPTER pAd,
 UCHAR CoexMode )
{
	//PRTMP_PORT	pPort = RTMPGetActivePort(pAd);
	MAC_TABLE_ENTRY *pEntry;
	pEntry = &pAd->MacTab.Content[BSSID_WCID];

	if (!(IS_MT7650(pAd) || IS_MT7630(pAd) || IS_MT76x2(pAd)))
	{
		return;
	}

	if (!(INFRA_ON(pAd)))
		return;
	
	if (CoexMode == COEX_MODE_TDD)
	{
		if (BT_STATUS_TEST_FLAG(pAd, fBTSTATUS_BT_BWL))
		{
			// Update BAWinLimit
			if (pAd->CommonCfg.BACapability.field.RxBAWinLimit != COEX_BARXSIZE_A2DP)
			{
				pAd->CommonCfg.BACapability.field.RxBAWinLimit = COEX_BARXSIZE_A2DP;
				//pAd->CommonCfg.BACapability.field.TxBAWinLimit = 0x40;
				
				//pAd->CommonCfg.REGBACapability.word = pAd->CommonCfg.BACapability.word;	
	
				//BATableTearRECEntry(pAd, pPort, 0, BSSID_WCID,TRUE);
				//BATableTearORIEntry(pAd, pPort, 0, BSSID_WCID, TRUE, TRUE);
				BAOriSessionTearDown(pAd, BSSID_WCID, 0, FALSE, FALSE);
				BARecSessionTearDown(pAd, BSSID_WCID, 0, FALSE);
				//expect to build BA
				DBGPRINT(RT_DEBUG_TRACE, ("COEX: TDD mode: Set RxBASize to %d\n", pAd->CoexMode.RxBAWinLimit));
				BAOriSessionSetUp(pAd, pEntry, 0, 0, 100, TRUE);
			}
		}
		else if (BT_STATUS_TEST_FLAG(pAd, fBTSTATUS_BT_SYNC))
		{
			// Update BAWinLimit
			if (pAd->CommonCfg.BACapability.field.RxBAWinLimit != COEX_BARXSIZE_SCO_ESCO)
			{
				pAd->CommonCfg.BACapability.field.RxBAWinLimit = COEX_BARXSIZE_SCO_ESCO;
				//pAd->CommonCfg.BACapability.field.TxBAWinLimit = 0x40;
				
				//pAd->CommonCfg.REGBACapability.word = pAd->CommonCfg.BACapability.word;	

				//BATableTearRECEntry(pAd, pPort, 0, BSSID_WCID,TRUE);
				//BATableTearORIEntry(pAd, pPort, 0, BSSID_WCID, TRUE, TRUE);
				BAOriSessionTearDown(pAd, BSSID_WCID, 0, FALSE, FALSE);
				BARecSessionTearDown(pAd, BSSID_WCID, 0, FALSE);
				//expect to build BA
				DBGPRINT(RT_DEBUG_TRACE, ("COEX: TDD mode: Set RxBASize to %d\n", pAd->CoexMode.RxBAWinLimit));
				BAOriSessionSetUp(pAd, pEntry, 0, 0, 100, TRUE);	
			}
		}
		else 
		{
			// Update BAWinLimit
			if (pAd->CommonCfg.BACapability.field.RxBAWinLimit != COEX_BARXSIZE_OPP)
			{
				pAd->CommonCfg.BACapability.field.RxBAWinLimit = COEX_BARXSIZE_OPP;
				//pAd->CommonCfg.BACapability.field.TxBAWinLimit = 0x40;
				
				//pAd->CommonCfg.REGBACapability.word = pAd->CommonCfg.BACapability.word;	

				//BATableTearRECEntry(pAd, pPort, 0, BSSID_WCID,TRUE);
				//BATableTearORIEntry(pAd, pPort, 0, BSSID_WCID, TRUE, TRUE);
				BAOriSessionTearDown(pAd, BSSID_WCID, 0, FALSE, FALSE);
				BARecSessionTearDown(pAd, BSSID_WCID, 0, FALSE);
				//expect to build BA
				DBGPRINT(RT_DEBUG_TRACE, ("COEX: TDD mode: Set RxBASize to %d\n", pAd->CoexMode.RxBAWinLimit));
				BAOriSessionSetUp(pAd, pEntry, 0, 0, 100, TRUE);	
			}
		}
		// Need to consider 5G cases
	}
	else if  (CoexMode == COEX_MODE_FDD || CoexMode == COEX_MODE_RESET)
	{
		// Update BAWinLimit
		if (pAd->CommonCfg.BACapability.field.RxBAWinLimit != pAd->CommonCfg.REGBACapability.field.RxBAWinLimit )
		{		
			pAd->CommonCfg.BACapability.field.RxBAWinLimit = pAd->CommonCfg.REGBACapability.field.RxBAWinLimit;
			pAd->CommonCfg.BACapability.field.TxBAWinLimit = pAd->CommonCfg.REGBACapability.field.TxBAWinLimit;
			
			//pAd->CommonCfg.REGBACapability.word = pAd->CommonCfg.BACapability.word;	

			//BATableTearRECEntry(pAd, pPort, 0, BSSID_WCID,TRUE);
			//BATableTearORIEntry(pAd, pPort, 0, BSSID_WCID, TRUE, TRUE);
			BAOriSessionTearDown(pAd, BSSID_WCID, 0, FALSE, FALSE);
			BARecSessionTearDown(pAd, BSSID_WCID, 0, FALSE);
			DBGPRINT(RT_DEBUG_TRACE, ("COEX: FDD (Reset)mode: Set RxBASize to %d\n", pAd->CoexMode.RxBAWinLimit));
			//expect to build BA
			BAOriSessionSetUp(pAd, pEntry, 0, 0, 100, TRUE);
		}
	}
}
Exemple #11
0
/*
========================================================================
Routine Description:
	Initialize ASIC Channel Busy Calculation mechanism.

Arguments:
	pAd					- WLAN control block pointer

Return Value:
	None

Note:
	Init Condition: WMM must be enabled.
========================================================================
*/
VOID QBSS_LoadInit(
 	IN		RTMP_ADAPTER	*pAd)
{
	UINT32 IdBss;


	/* check whether any BSS enables WMM feature */
	for(IdBss=0; IdBss<pAd->ApCfg.BssidNum; IdBss++)
	{
		if ((pAd->ApCfg.MBSSID[IdBss].wdev.bWmmCapable)
#ifdef DOT11K_RRM_SUPPORT
			|| (IS_RRM_ENABLE(pAd, IdBss))
#endif /* DOT11K_RRM_SUPPORT */
			)
		{
			pAd->phy_ctrl.FlgQloadEnable = TRUE;
			break;
		}
	}

	if (pAd->phy_ctrl.FlgQloadEnable == TRUE)
	{
		/* Count EIFS, NAV, RX busy, TX busy as channel busy and
			enable Channel statistic timer (bit 0) */

		/* Note: if bit 0 == 0, the function will be disabled */
		RTMP_IO_WRITE32(pAd, CH_TIME_CFG, 0x0000001F);
#ifdef MT76x2
		if(IS_MT76x2(pAd))
		{			
			RTMP_IO_WRITE32(pAd, CH_TIME_CFG, 0x0000011F);
			/*ENABLE bit[9:8] = 1 ,to set CH_BUSY reg ReadClear*/
		}
#endif

		/* default value is 50, please reference to IEEE802.11e 2005 Annex D */
		pAd->phy_ctrl.QloadChanUtilBeaconInt = 50;
	}
	else
	{
		/* no any WMM is enabled */
		RTMP_IO_WRITE32(pAd, CH_TIME_CFG, 0x00000000);
	}

	pAd->phy_ctrl.QloadChanUtilTotal = 0;
	pAd->phy_ctrl.QloadUpTimeLast = 0;

#ifdef QLOAD_FUNC_BUSY_TIME_STATS
	/* clear busy time statistics */
	NdisZeroMemory(pAd->phy_ctrl.QloadBusyCountPri, sizeof(pAd->phy_ctrl.QloadBusyCountPri));
	NdisZeroMemory(pAd->phy_ctrl.QloadBusyCountSec, sizeof(pAd->phy_ctrl.QloadBusyCountSec));
#endif /* QLOAD_FUNC_BUSY_TIME_STATS */

#ifdef QLOAD_FUNC_BUSY_TIME_ALARM
	/* init threshold before QBSS_LoadAlarmReset */
	pAd->phy_ctrl.QloadAlarmBusyTimeThreshold = QBSS_LOAD_ALRAM_BUSY_TIME_THRESHOLD;
	pAd->phy_ctrl.QloadAlarmBusyNumThreshold = QBSS_LOAD_ALRAM_BUSY_NUM_THRESHOLD;

	QBSS_LoadAlarmReset(pAd);
#endif /* QLOAD_FUNC_BUSY_TIME_ALARM */
}
Exemple #12
0
/*
	==========================================================================
	Description:
		Update the BEACON frame in the shared memory. Because TIM IE is variable
		length. other IEs after TIM has to shift and total frame length may change
		for each BEACON period.
	Output:
		pAd->ApCfg.MBSSID[apidx].CapabilityInfo
		pAd->ApCfg.ErpIeContent
	==========================================================================
*/
VOID APUpdateBeaconFrame(RTMP_ADAPTER *pAd, INT apidx)
{
	UCHAR *pBeaconFrame;
	UCHAR *ptr;
	ULONG FrameLen;
	ULONG UpdatePos;
	UCHAR RSNIe=IE_WPA, RSNIe2=IE_WPA2;
	UCHAR ID_1B, TimFirst, TimLast, *pTim;
	MULTISSID_STRUCT *pMbss;
	COMMON_CONFIG *pComCfg;
	UCHAR PhyMode;
	BOOLEAN bHasWpsIE = FALSE;
	UINT  i;
	HTTRANSMIT_SETTING	BeaconTransmit = {.word = 0};   /* MGMT frame PHY rate setting when operatin at Ht rate. */
	struct wifi_dev *wdev;
#ifdef SPECIFIC_TX_POWER_SUPPORT
	UCHAR TxPwrAdj = 0;
#endif /* SPECIFIC_TX_POWER_SUPPORT */

	pComCfg = &pAd->CommonCfg;
	pMbss = &pAd->ApCfg.MBSSID[apidx];
	wdev = &pMbss->wdev;

	pBeaconFrame = (UCHAR *)&pMbss->BeaconBuf[0];
	FrameLen = UpdatePos = pMbss->TimIELocationInBeacon;
	PhyMode = wdev->PhyMode;
	
	if(!BeaconTransmitRequired(pAd, apidx, pMbss))
		return;

	/*
		step 1 - update BEACON's Capability
	*/
	ptr = pBeaconFrame + pMbss->CapabilityInfoLocationInBeacon;
	*ptr = (UCHAR)(pMbss->CapabilityInfo & 0x00ff);
	*(ptr+1) = (UCHAR)((pMbss->CapabilityInfo & 0xff00) >> 8);

	/*
		step 2 - update TIM IE
		TODO: enlarge TIM bitmap to support up to 64 STAs
		TODO: re-measure if RT2600 TBTT interrupt happens faster than BEACON sent out time
	*/
	ptr = pBeaconFrame + pMbss->TimIELocationInBeacon;
	*ptr = IE_TIM;
	*(ptr + 2) = pAd->ApCfg.DtimCount;
	*(ptr + 3) = pAd->ApCfg.DtimPeriod;

	/* find the smallest AID (PS mode) */
	TimFirst = 0; /* record first TIM byte != 0x00 */
	TimLast = 0;  /* record last  TIM byte != 0x00 */
	pTim = pMbss->TimBitmaps;

	for(ID_1B=0; ID_1B<WLAN_MAX_NUM_OF_TIM; ID_1B++)
	{
		/* get the TIM indicating PS packets for 8 stations */
		UCHAR tim_1B = pTim[ID_1B];

		if (ID_1B == 0)
			tim_1B &= 0xfe; /* skip bit0 bc/mc */

		if (tim_1B == 0)
			continue; /* find next 1B */

		if (TimFirst == 0)
			TimFirst = ID_1B;

		TimLast = ID_1B;
	}

	/* fill TIM content to beacon buffer */
	if (TimFirst & 0x01)
		TimFirst --; /* find the even offset byte */

	*(ptr + 1) = 3+(TimLast-TimFirst+1); /* TIM IE length */
	*(ptr + 4) = TimFirst;

	for(i=TimFirst; i<=TimLast; i++)
		*(ptr + 5 + i - TimFirst) = pTim[i];

	/* bit0 means backlogged mcast/bcast */
    if (pAd->ApCfg.DtimCount == 0)
		*(ptr + 4) |= (pMbss->TimBitmaps[WLAN_CT_TIM_BCMC_OFFSET] & 0x01); 

	/* adjust BEACON length according to the new TIM */
	FrameLen += (2 + *(ptr+1)); 

	/* move RSN IE from below to here for Ralink Win7 v3.0.0.61 version parse beacon issue. */
	/* sync the order with BRCM's AP. */
	if ((wdev->AuthMode == Ndis802_11AuthModeWPA) || 
		(wdev->AuthMode == Ndis802_11AuthModeWPAPSK))
		RSNIe = IE_WPA;
	else if ((wdev->AuthMode == Ndis802_11AuthModeWPA2) || 
		(wdev->AuthMode == Ndis802_11AuthModeWPA2PSK))
		RSNIe = IE_WPA2;
#ifdef WAPI_SUPPORT
	else if ((wdev->AuthMode == Ndis802_11AuthModeWAICERT) || 
		(wdev->AuthMode == Ndis802_11AuthModeWAIPSK))
		RSNIe = IE_WAPI;
#endif /* WAPI_SUPPORT */

	/* Append RSN_IE when  WPA OR WPAPSK, */
	if ((wdev->AuthMode == Ndis802_11AuthModeWPA1WPA2) || 
		(wdev->AuthMode == Ndis802_11AuthModeWPA1PSKWPA2PSK))
	{
		ULONG TmpLen;
		MakeOutgoingFrame(pBeaconFrame+FrameLen,        &TmpLen,
						  1,                            &RSNIe,
						  1,                            &pMbss->RSNIE_Len[0],
						  pMbss->RSNIE_Len[0],      pMbss->RSN_IE[0],
						  1,                            &RSNIe2,
						  1,                            &pMbss->RSNIE_Len[1],
						  pMbss->RSNIE_Len[1],      pMbss->RSN_IE[1],
						  END_OF_ARGS);
		FrameLen += TmpLen;
	}
	else if (wdev->AuthMode >= Ndis802_11AuthModeWPA)
	{
		ULONG TmpLen;
#ifdef CONFIG_HOTSPOT_R2
		extern UCHAR		OSEN_IE[];
		extern UCHAR		OSEN_IELEN;
		
		if ((pMbss->HotSpotCtrl.HotSpotEnable == 0) && (pMbss->HotSpotCtrl.bASANEnable == 1) && (pMbss->wdev.AuthMode == Ndis802_11AuthModeWPA2))
		{
			RSNIe = IE_WPA;
			MakeOutgoingFrame(pBeaconFrame+FrameLen,		&TmpLen,
						  1,							&RSNIe,
						  1,							&OSEN_IELEN,
						  OSEN_IELEN,					OSEN_IE,
						  END_OF_ARGS);
			FrameLen += TmpLen;
		}
		else
#endif /* CONFIG_HOTSPOT_R2 */
		{
		MakeOutgoingFrame(pBeaconFrame+FrameLen,        &TmpLen,
						  1,                            &RSNIe,
						  1,                            &pMbss->RSNIE_Len[0],
						  pMbss->RSNIE_Len[0],      pMbss->RSN_IE[0],
						  END_OF_ARGS);
		FrameLen += TmpLen;
	}
	}

#ifdef HOSTAPD_SUPPORT
	if (pMbss->HostapdWPS && (pMbss->WscIEBeacon.ValueLen))
		bHasWpsIE = TRUE;
#endif

#ifdef WSC_AP_SUPPORT
    /* add Simple Config Information Element */
    if (((pMbss->WscControl.WscConfMode >= 1) && (pMbss->WscIEBeacon.ValueLen)))
		bHasWpsIE = TRUE;
#endif /* WSC_AP_SUPPORT */

	if (bHasWpsIE)
	{
		ULONG WscTmpLen = 0;
        
		MakeOutgoingFrame(pBeaconFrame+FrameLen, &WscTmpLen,
						pMbss->WscIEBeacon.ValueLen, pMbss->WscIEBeacon.Value,
						END_OF_ARGS);
		FrameLen += WscTmpLen;		  
	}

#ifdef WSC_AP_SUPPORT
    if ((pMbss->WscControl.WscConfMode != WSC_DISABLE) &&
#ifdef DOT1X_SUPPORT
        (pMbss->wdev.IEEE8021X == FALSE) && 
#endif /* DOT1X_SUPPORT */		
        (pMbss->wdev.WepStatus == Ndis802_11WEPEnabled))
    {
        /*
            Non-WPS Windows XP and Vista PCs are unable to determine if a WEP enalbed network is static key based 
            or 802.1X based. If the legacy station gets an EAP-Rquest/Identity from the AP, it assume the WEP
            network is 802.1X enabled & will prompt the user for 802.1X credentials. If the legacy station doesn't
            receive anything after sending an EAPOL-Start, it will assume the WEP network is static key based and
            prompt user for the WEP key. <<from "WPS and Static Key WEP Networks">>
            A WPS enabled AP should include this IE in the beacon when the AP is hosting a static WEP key network.  
            The IE would be 7 bytes long with the Extended Capability field set to 0 (all bits zero)
            http:msdn.microsoft.com/library/default.asp?url=/library/en-us/randz/protocol/securing_public_wi-fi_hotspots.asp
        */
        ULONG TempLen = 0;
        UCHAR PROVISION_SERVICE_IE[7] = {0xDD, 0x05, 0x00, 0x50, 0xF2, 0x05, 0x00};
        MakeOutgoingFrame(pBeaconFrame+FrameLen,        &TempLen,
						  7,                            PROVISION_SERVICE_IE,
                          END_OF_ARGS);
        FrameLen += TempLen;
    }
#endif /* WSC_AP_SUPPORT */
    	

	/* Update ERP */
    if ((pComCfg->ExtRateLen) && (PhyMode != WMODE_B))
    {
        /* fill ERP IE */
        ptr = (UCHAR *)pBeaconFrame + FrameLen; /* pTxD->DataByteCnt; */
        *ptr = IE_ERP;
        *(ptr + 1) = 1;
        *(ptr + 2) = pAd->ApCfg.ErpIeContent;
		FrameLen += 3;
	}

#ifdef A_BAND_SUPPORT
	/* fill up Channel Switch Announcement Element */
	if (((pComCfg->Channel > 14)
		&& (pComCfg->bIEEE80211H == 1)
		&& (pAd->Dot11_H.RDMode == RD_SWITCHING_MODE))
#ifdef CUSTOMER_DCC_FEATURE
		|| (pComCfg->channelSwitch.CHSWMode == CHANNEL_SWITCHING_MODE)
#endif
	)
	{
		ptr = pBeaconFrame + FrameLen;
		*ptr = IE_CHANNEL_SWITCH_ANNOUNCEMENT;
		*(ptr + 1) = 3;
		*(ptr + 2) = 1;
		*(ptr + 3) = pComCfg->Channel;
#ifdef CUSTOMER_DCC_FEATURE
		if(pComCfg->channelSwitch.CHSWMode == CHANNEL_SWITCHING_MODE)
			*(ptr + 4) = (pComCfg->channelSwitch.CHSWPeriod - pComCfg->channelSwitch.CHSWCount);
		else
#endif
		*(ptr + 4) = (pAd->Dot11_H.CSPeriod - pAd->Dot11_H.CSCount - 1);
		ptr += 5;
		FrameLen += 5;

#ifdef DOT11_N_SUPPORT
		/* Extended Channel Switch Announcement Element */
		if (pComCfg->bExtChannelSwitchAnnouncement)
		{
			HT_EXT_CHANNEL_SWITCH_ANNOUNCEMENT_IE	HtExtChannelSwitchIe;
			build_ext_channel_switch_ie(pAd, &HtExtChannelSwitchIe);
			NdisMoveMemory(ptr, &HtExtChannelSwitchIe, sizeof(HT_EXT_CHANNEL_SWITCH_ANNOUNCEMENT_IE));
			ptr += sizeof(HT_EXT_CHANNEL_SWITCH_ANNOUNCEMENT_IE);
			FrameLen += sizeof(HT_EXT_CHANNEL_SWITCH_ANNOUNCEMENT_IE);
		}

#ifdef DOT11_VHT_AC
		if (WMODE_CAP_AC(PhyMode)) {
			INT tp_len, wb_len = 0;
			UCHAR *ch_sw_wrapper;
			VHT_TXPWR_ENV_IE txpwr_env;


			*ptr = IE_CH_SWITCH_WRAPPER;
			ch_sw_wrapper = (UCHAR *)(ptr + 1); // reserve for length
			ptr += 2; // skip len
			
			if (pComCfg->RegTransmitSetting.field.BW == BW_40) {
				WIDE_BW_CH_SWITCH_ELEMENT wb_info;

				*ptr = IE_WIDE_BW_CH_SWITCH;
				//*(ptr + 1) = sizeof(WIDE_BW_CH_SWITCH_ELEMENT);
				*(ptr + 1) = 3;
				ptr += 2;
				NdisZeroMemory(&wb_info, sizeof(WIDE_BW_CH_SWITCH_ELEMENT));
				if (pComCfg->vht_bw == VHT_BW_2040)
					wb_info.new_ch_width = 0;
				else
					wb_info.new_ch_width = 1;

				if (pComCfg->vht_bw == VHT_BW_80) {
					wb_info.center_freq_1 = vht_cent_ch_freq(pAd, pComCfg->Channel);
					wb_info.center_freq_2 = 0;
				}
				NdisMoveMemory(ptr, &wb_info, sizeof(WIDE_BW_CH_SWITCH_ELEMENT));
				//wb_len = sizeof(WIDE_BW_CH_SWITCH_ELEMENT);
				wb_len = 3;
				ptr += wb_len;
				wb_len += 2;
			}

			*ptr = IE_VHT_TXPWR_ENV;
			NdisZeroMemory(&txpwr_env, sizeof(VHT_TXPWR_ENV_IE));
			tp_len = build_vht_txpwr_envelope(pAd, (UCHAR *)&txpwr_env);
			*(ptr + 1) = tp_len;
			ptr += 2;
			NdisMoveMemory(ptr, &txpwr_env, tp_len);
			ptr += tp_len;
			tp_len += 2;
			*ch_sw_wrapper = wb_len + tp_len;

			FrameLen += (2 + wb_len + tp_len);
		}
#endif /* DOT11_VHT_AC */
#endif /* DOT11_N_SUPPORT */
	}
#endif /* A_BAND_SUPPORT */

#ifdef DOT11_N_SUPPORT
	/* step 5. Update HT. Since some fields might change in the same BSS. */
	if (WMODE_CAP_N(PhyMode) && (wdev->DesiredHtPhyInfo.bHtEnable))
	{
		ULONG TmpLen;
		UCHAR HtLen, HtLen1;
		/*UCHAR i; */

#ifdef RT_BIG_ENDIAN
		HT_CAPABILITY_IE HtCapabilityTmp;
		ADD_HT_INFO_IE	addHTInfoTmp;
/*		USHORT	b2lTmp, b2lTmp2; // no use */
#endif

		/* add HT Capability IE */
		HtLen = sizeof(pComCfg->HtCapability);
		HtLen1 = sizeof(pComCfg->AddHTInfo);
#ifndef RT_BIG_ENDIAN
		MakeOutgoingFrame(pBeaconFrame+FrameLen,         &TmpLen,
								  1,                                &HtCapIe,
								  1,                                &HtLen,
								 HtLen,          &pComCfg->HtCapability, 
								  1,                                &AddHtInfoIe,
								  1,                                &HtLen1,
								 HtLen1,          &pComCfg->AddHTInfo, 
						  END_OF_ARGS);
#else
		NdisMoveMemory(&HtCapabilityTmp, &pComCfg->HtCapability, HtLen);
		*(USHORT *)(&HtCapabilityTmp.HtCapInfo) = SWAP16(*(USHORT *)(&HtCapabilityTmp.HtCapInfo));
#ifdef UNALIGNMENT_SUPPORT
		{
			EXT_HT_CAP_INFO extHtCapInfo;

			NdisMoveMemory((PUCHAR)(&extHtCapInfo), (PUCHAR)(&HtCapabilityTmp.ExtHtCapInfo), sizeof(EXT_HT_CAP_INFO));
			*(USHORT *)(&extHtCapInfo) = cpu2le16(*(USHORT *)(&extHtCapInfo));
			NdisMoveMemory((PUCHAR)(&HtCapabilityTmp.ExtHtCapInfo), (PUCHAR)(&extHtCapInfo), sizeof(EXT_HT_CAP_INFO));		
		}
#else
		*(USHORT *)(&HtCapabilityTmp.ExtHtCapInfo) = SWAP16(*(USHORT *)(&HtCapabilityTmp.ExtHtCapInfo));
#endif /* UNALIGNMENT_SUPPORT */

		NdisMoveMemory(&addHTInfoTmp, &pComCfg->AddHTInfo, HtLen1);
		*(USHORT *)(&addHTInfoTmp.AddHtInfo2) = SWAP16(*(USHORT *)(&addHTInfoTmp.AddHtInfo2));
		*(USHORT *)(&addHTInfoTmp.AddHtInfo3) = SWAP16(*(USHORT *)(&addHTInfoTmp.AddHtInfo3));

		MakeOutgoingFrame(pBeaconFrame+FrameLen,         &TmpLen,
								  1,                                &HtCapIe,
								  1,                                &HtLen,
								 HtLen,                   &HtCapabilityTmp, 
								  1,                                &AddHtInfoIe,
								  1,                                &HtLen1,
								 HtLen1,                   &addHTInfoTmp, 
						  END_OF_ARGS);
#endif
		FrameLen += TmpLen;

#ifdef DOT11N_DRAFT3
	 	/*
			P802.11n_D3.03, 7.3.2.60 Overlapping BSS Scan Parameters IE
		*/
	 	if ((pComCfg->Channel <= 14) &&
			(pComCfg->HtCapability.HtCapInfo.ChannelWidth == 1))
	 	{
			OVERLAP_BSS_SCAN_IE  OverlapScanParam;
			ULONG	TmpLen;
			UCHAR	OverlapScanIE, ScanIELen;

			OverlapScanIE = IE_OVERLAPBSS_SCAN_PARM;
			ScanIELen = 14;
			OverlapScanParam.ScanPassiveDwell = cpu2le16(pComCfg->Dot11OBssScanPassiveDwell);
			OverlapScanParam.ScanActiveDwell = cpu2le16(pComCfg->Dot11OBssScanActiveDwell);
			OverlapScanParam.TriggerScanInt = cpu2le16(pComCfg->Dot11BssWidthTriggerScanInt);
			OverlapScanParam.PassiveTalPerChannel = cpu2le16(pComCfg->Dot11OBssScanPassiveTotalPerChannel);
			OverlapScanParam.ActiveTalPerChannel = cpu2le16(pComCfg->Dot11OBssScanActiveTotalPerChannel);
			OverlapScanParam.DelayFactor = cpu2le16(pComCfg->Dot11BssWidthChanTranDelayFactor);
			OverlapScanParam.ScanActThre = cpu2le16(pComCfg->Dot11OBssScanActivityThre);
			
			MakeOutgoingFrame(pBeaconFrame + FrameLen, &TmpLen,
								1,			&OverlapScanIE,
								1,			&ScanIELen,
								ScanIELen,	&OverlapScanParam,
								END_OF_ARGS);
			
			FrameLen += TmpLen;
	 	}
#endif /* DOT11N_DRAFT3 */

#ifdef CONFIG_HOTSPOT
	if (pMbss->HotSpotCtrl.HotSpotEnable)
 	{
		ULONG	TmpLen;

		/* Indication element */	
		MakeOutgoingFrame(pBeaconFrame + FrameLen, &TmpLen,
						  pMbss->HotSpotCtrl.HSIndicationIELen, 
						  pMbss->HotSpotCtrl.HSIndicationIE, END_OF_ARGS); 

		FrameLen += TmpLen;  

		/* Interworking element */
		MakeOutgoingFrame(pBeaconFrame + FrameLen, &TmpLen,
						  pMbss->HotSpotCtrl.InterWorkingIELen, 
						  pMbss->HotSpotCtrl.InterWorkingIE, END_OF_ARGS); 

		FrameLen += TmpLen; 

		/* Advertisement Protocol element */
		MakeOutgoingFrame(pBeaconFrame + FrameLen, &TmpLen,
						  pMbss->HotSpotCtrl.AdvertisementProtoIELen, 
						  pMbss->HotSpotCtrl.AdvertisementProtoIE, END_OF_ARGS); 

		FrameLen += TmpLen; 

		/* Roaming Consortium element */ 
		MakeOutgoingFrame(pBeaconFrame + FrameLen, &TmpLen,
						  pMbss->HotSpotCtrl.RoamingConsortiumIELen, 
						  pMbss->HotSpotCtrl.RoamingConsortiumIE, END_OF_ARGS); 

		FrameLen += TmpLen;
		
		/* P2P element */
		MakeOutgoingFrame(pBeaconFrame + FrameLen, &TmpLen,
						  pMbss->HotSpotCtrl.P2PIELen, 
						  pMbss->HotSpotCtrl.P2PIE, END_OF_ARGS); 
		
		FrameLen += TmpLen;

 	}
#endif

#ifdef DOT11_VHT_AC
		if (WMODE_CAP_AC(PhyMode) && (pComCfg->Channel > 14))
		{
			int _len = build_vht_ies(pAd, (UCHAR *)(pBeaconFrame+FrameLen), SUBTYPE_BEACON);
			FrameLen += _len;
		}
#endif /* DOT11_VHT_AC */
	}
#endif /* DOT11_N_SUPPORT */

	/* 7.3.2.27 Extended Capabilities IE */
	{
		ULONG TmpLen, infoPos;
		PUCHAR pInfo;
		UCHAR extInfoLen;
		BOOLEAN	bNeedAppendExtIE = FALSE;
		EXT_CAP_INFO_ELEMENT	extCapInfo;


		extInfoLen = sizeof(EXT_CAP_INFO_ELEMENT);
		NdisZeroMemory(&extCapInfo, extInfoLen);

#ifdef DOT11_N_SUPPORT
#ifdef DOT11N_DRAFT3
		/* P802.11n_D1.10, HT Information Exchange Support */
		if (WMODE_CAP_N(PhyMode) && (pComCfg->Channel <= 14) &&
			(pMbss->wdev.DesiredHtPhyInfo.bHtEnable) &&
			(pComCfg->bBssCoexEnable == TRUE)
		)
		{
			extCapInfo.BssCoexistMgmtSupport = 1;
		}
#endif /* DOT11N_DRAFT3 */
#endif /* DOT11_N_SUPPORT */

#ifdef CONFIG_DOT11V_WNM
		if (pMbss->WNMCtrl.ProxyARPEnable)
			extCapInfo.proxy_arp = 1;
#ifdef CONFIG_HOTSPOT_R2
		if (pMbss->WNMCtrl.WNMNotifyEnable)
			extCapInfo.wnm_notification = 1;

		if (pMbss->HotSpotCtrl.QosMapEnable)
			extCapInfo.qosmap= 1;
#endif /* CONFIG_HOTSPOT_R2 */
#endif /* CONFIG_DOT11V_WNM */

#ifdef CONFIG_HOTSPOT
		if (pMbss->HotSpotCtrl.HotSpotEnable)
			extCapInfo.interworking = 1;
#endif /* CONFIG_HOTSPOT */

#ifdef DOT11V_WNM_SUPPORT
		if (IS_BSS_TRANSIT_MANMT_SUPPORT(pAd, apidx))
		{
			extCapInfo.BssTransitionManmt = 1;
		}
		if (IS_WNMDMS_SUPPORT(pAd, apidx))
		{
			extCapInfo.DMSSupport = 1;
		}
#endif /* DOT11V_WNM_SUPPORT */

#ifdef DOT11_VHT_AC
		if (WMODE_CAP_AC(PhyMode) &&
			(pAd->CommonCfg.Channel > 14))
			extCapInfo.operating_mode_notification = 1;
#endif /* DOT11_VHT_AC */

		pInfo = (PUCHAR)(&extCapInfo);
		for (infoPos = 0; infoPos < extInfoLen; infoPos++)
		{
			if (pInfo[infoPos] != 0)
			{
				bNeedAppendExtIE = TRUE;
				break;
			}
		}

		if (bNeedAppendExtIE == TRUE)
		{
			MakeOutgoingFrame(pBeaconFrame+FrameLen, &TmpLen,
							1, &ExtCapIe,
							1, &extInfoLen,
							extInfoLen, &extCapInfo,
							END_OF_ARGS);
			FrameLen += TmpLen;
		}
	}

#ifdef WFA_VHT_PF
	if (pAd->force_vht_op_mode == TRUE)
	{
		ULONG TmpLen;
		UCHAR operating_ie = IE_OPERATING_MODE_NOTIFY, operating_len = 1;
		OPERATING_MODE operating_mode;

		operating_mode.rx_nss_type = 0;
		operating_mode.rx_nss = (pAd->vht_pf_op_ss - 1);
		operating_mode.ch_width = pAd->vht_pf_op_bw;

		MakeOutgoingFrame(pBeaconFrame+FrameLen, &TmpLen,
						  1,	&operating_ie,
						  1,	&operating_len,
						  1,	&operating_mode,
						  END_OF_ARGS);
		FrameLen += TmpLen;		
	}
#endif /* WFA_VHT_PF */

	/* add WMM IE here */
	if (pMbss->wdev.bWmmCapable)
	{
		ULONG TmpLen;
		UCHAR i;
		UCHAR WmeParmIe[26] = {IE_VENDOR_SPECIFIC, 24, 0x00, 0x50, 0xf2, 0x02, 0x01, 0x01, 0, 0}; 
		UINT8 AIFSN[4];

		WmeParmIe[8] = pAd->ApCfg.BssEdcaParm.EdcaUpdateCount & 0x0f;

#ifdef UAPSD_SUPPORT
        UAPSD_MR_IE_FILL(WmeParmIe[8], &pMbss->UapsdInfo);
#endif /* UAPSD_SUPPORT */

		NdisMoveMemory(AIFSN, pAd->ApCfg.BssEdcaParm.Aifsn, sizeof(AIFSN));


		for (i=QID_AC_BE; i<=QID_AC_VO; i++)
		{
			WmeParmIe[10+ (i*4)] = (i << 5)                                         +     /* b5-6 is ACI */
								   ((UCHAR)pAd->ApCfg.BssEdcaParm.bACM[i] << 4)     +     /* b4 is ACM */
								   (AIFSN[i] & 0x0f);              /* b0-3 is AIFSN */
			WmeParmIe[11+ (i*4)] = (pAd->ApCfg.BssEdcaParm.Cwmax[i] << 4)           +     /* b5-8 is CWMAX */
								   (pAd->ApCfg.BssEdcaParm.Cwmin[i] & 0x0f);              /* b0-3 is CWMIN */
			WmeParmIe[12+ (i*4)] = (UCHAR)(pAd->ApCfg.BssEdcaParm.Txop[i] & 0xff);        /* low byte of TXOP */
			WmeParmIe[13+ (i*4)] = (UCHAR)(pAd->ApCfg.BssEdcaParm.Txop[i] >> 8);          /* high byte of TXOP */
		}

		MakeOutgoingFrame(pBeaconFrame+FrameLen,         &TmpLen,
						  26,                            WmeParmIe,
						  END_OF_ARGS);
		FrameLen += TmpLen;
	}

#ifdef AP_QLOAD_SUPPORT
	if (pAd->phy_ctrl.FlgQloadEnable != 0)
	{
#ifdef CONFIG_HOTSPOT_R2		
		if (pMbss->HotSpotCtrl.QLoadTestEnable == 1)
			FrameLen += QBSS_LoadElementAppend_HSTEST(pAd, pBeaconFrame+FrameLen, apidx);
		else if (pMbss->HotSpotCtrl.QLoadTestEnable == 0)	
#endif		
		FrameLen += QBSS_LoadElementAppend(pAd, pBeaconFrame+FrameLen);
	}
#endif /* AP_QLOAD_SUPPORT */

#ifdef A_BAND_SUPPORT
	/* 
		Only 802.11a APs that comply with 802.11h are required to include a 
		Power Constrint Element(IE=32) in beacons and probe response frames
	*/
	if (((pComCfg->Channel > 14) && pComCfg->bIEEE80211H == TRUE)
#ifdef DOT11K_RRM_SUPPORT
		|| IS_RRM_ENABLE(pAd, apidx)
#endif /* DOT11K_RRM_SUPPORT */
		)
	{
		ULONG TmpLen;
		UINT8 PwrConstraintIE = IE_POWER_CONSTRAINT;
		UINT8 PwrConstraintLen = 1;
		UINT8 PwrConstraint = pComCfg->PwrConstraint;

		/* prepare power constraint IE */
		MakeOutgoingFrame(pBeaconFrame+FrameLen,	&TmpLen,
						1,							&PwrConstraintIE,
						1,							&PwrConstraintLen,
						1,							&PwrConstraint,
						END_OF_ARGS);
		FrameLen += TmpLen;

#ifdef DOT11_VHT_AC
		if (WMODE_CAP_AC(PhyMode)) {
			ULONG TmpLen;
			UINT8 vht_txpwr_env_ie = IE_VHT_TXPWR_ENV;
			UINT8 ie_len;
			VHT_TXPWR_ENV_IE txpwr_env;

			ie_len = build_vht_txpwr_envelope(pAd, (UCHAR *)&txpwr_env);
			MakeOutgoingFrame(pBeaconFrame+FrameLen, &TmpLen,
						1,							&vht_txpwr_env_ie,
						1,							&ie_len,
						ie_len,						&txpwr_env,
						END_OF_ARGS);
			FrameLen += TmpLen;
		}
#endif /* DOT11_VHT_AC */

	}
#endif /* A_BAND_SUPPORT */

#ifdef DOT11K_RRM_SUPPORT
	if (IS_RRM_ENABLE(pAd, apidx))
	{
		PRRM_QUIET_CB pQuietCB = &pMbss->RrmCfg.QuietCB;
		RRM_InsertQuietIE(pAd, pBeaconFrame+FrameLen, &FrameLen,
				pQuietCB->QuietCnt ,pQuietCB->QuietPeriod,
				pQuietCB->QuietDuration, pQuietCB->QuietOffset);

#ifndef APPLE_11K_IOT
		/* Insert BSS AC Access Delay IE. */
		RRM_InsertBssACDelayIE(pAd, pBeaconFrame+FrameLen, &FrameLen);

		/* Insert BSS Available Access Capacity IE. */
		RRM_InsertBssAvailableACIE(pAd, pBeaconFrame+FrameLen, &FrameLen);
#endif /* !APPLE_11K_IOT */

	}
#endif /* DOT11K_RRM_SUPPORT */

#ifdef DOT11_N_SUPPORT
	if (WMODE_CAP_N(PhyMode) && 
		(wdev->DesiredHtPhyInfo.bHtEnable))
	{
		ULONG TmpLen;
		UCHAR HtLen, HtLen1;
#ifdef RT_BIG_ENDIAN
		HT_CAPABILITY_IE HtCapabilityTmp;
		ADD_HT_INFO_IE	addHTInfoTmp;
#endif
		/* add HT Capability IE */
		HtLen = sizeof(pComCfg->HtCapability);
		HtLen1 = sizeof(pComCfg->AddHTInfo);

		if (pAd->bBroadComHT == TRUE)
		{
			UCHAR epigram_ie_len;
			UCHAR BROADCOM_HTC[4] = {0x0, 0x90, 0x4c, 0x33};
			UCHAR BROADCOM_AHTINFO[4] = {0x0, 0x90, 0x4c, 0x34};


			epigram_ie_len = HtLen + 4;
#ifndef RT_BIG_ENDIAN
			MakeOutgoingFrame(pBeaconFrame + FrameLen,      &TmpLen,
						  1,                                &WpaIe,
						  1,                                &epigram_ie_len,
						  4,                                &BROADCOM_HTC[0],
						  HtLen,          					&pComCfg->HtCapability, 
						  END_OF_ARGS);
#else
			NdisMoveMemory(&HtCapabilityTmp, &pComCfg->HtCapability, HtLen);
			*(USHORT *)(&HtCapabilityTmp.HtCapInfo) = SWAP16(*(USHORT *)(&HtCapabilityTmp.HtCapInfo));
#ifdef UNALIGNMENT_SUPPORT
		{
			EXT_HT_CAP_INFO extHtCapInfo;

			NdisMoveMemory((PUCHAR)(&extHtCapInfo), (PUCHAR)(&HtCapabilityTmp.ExtHtCapInfo), sizeof(EXT_HT_CAP_INFO));
			*(USHORT *)(&extHtCapInfo) = cpu2le16(*(USHORT *)(&extHtCapInfo));
			NdisMoveMemory((PUCHAR)(&HtCapabilityTmp.ExtHtCapInfo), (PUCHAR)(&extHtCapInfo), sizeof(EXT_HT_CAP_INFO));		
		}
#else
			*(USHORT *)(&HtCapabilityTmp.ExtHtCapInfo) = SWAP16(*(USHORT *)(&HtCapabilityTmp.ExtHtCapInfo));
#endif /* UNALIGNMENT_SUPPORT */

			MakeOutgoingFrame(pBeaconFrame + FrameLen,       &TmpLen,
						1,                               &WpaIe,
						1,                               &epigram_ie_len,
						4,                               &BROADCOM_HTC[0], 
						HtLen,                           &HtCapabilityTmp,
						END_OF_ARGS);
#endif

			FrameLen += TmpLen;

			epigram_ie_len = HtLen1 + 4;
#ifndef RT_BIG_ENDIAN
			MakeOutgoingFrame(pBeaconFrame + FrameLen,        &TmpLen,
						  1,                                &WpaIe,
						  1,                                &epigram_ie_len,
						  4,                                &BROADCOM_AHTINFO[0],
						  HtLen1, 							&pComCfg->AddHTInfo, 
						  END_OF_ARGS);
#else
			NdisMoveMemory(&addHTInfoTmp, &pComCfg->AddHTInfo, HtLen1);
			*(USHORT *)(&addHTInfoTmp.AddHtInfo2) = SWAP16(*(USHORT *)(&addHTInfoTmp.AddHtInfo2));
			*(USHORT *)(&addHTInfoTmp.AddHtInfo3) = SWAP16(*(USHORT *)(&addHTInfoTmp.AddHtInfo3));

			MakeOutgoingFrame(pBeaconFrame + FrameLen,         &TmpLen,
							1,                             &WpaIe,
							1,                             &epigram_ie_len,
							4,                             &BROADCOM_AHTINFO[0],
							HtLen1,                        &addHTInfoTmp,
							END_OF_ARGS);
#endif
			FrameLen += TmpLen;
		}
	}
#endif /* DOT11_N_SUPPORT */

   	/* add Ralink-specific IE here - Byte0.b0=1 for aggregation, Byte0.b1=1 for piggy-back */
{
	ULONG TmpLen;
	UCHAR RalinkSpecificIe[9] = {IE_VENDOR_SPECIFIC, 7, 0x00, 0x0c, 0x43, 0x00, 0x00, 0x00, 0x00};

	if (pComCfg->bAggregationCapable)
		RalinkSpecificIe[5] |= 0x1;
	if (pComCfg->bPiggyBackCapable)
		RalinkSpecificIe[5] |= 0x2;
#ifdef DOT11_N_SUPPORT
	if (pComCfg->bRdg)
		RalinkSpecificIe[5] |= 0x4;
#endif /* DOT11_N_SUPPORT */

#ifdef DOT11_VHT_AC
	if (pComCfg->b256QAM_2G && WMODE_2G_ONLY(pComCfg->PhyMode))
		RalinkSpecificIe[5] |= 0x8;
#endif /* DOT11_VHT_AC */

	MakeOutgoingFrame(pBeaconFrame+FrameLen, &TmpLen,
						9,                   RalinkSpecificIe,
						END_OF_ARGS);
	FrameLen += TmpLen;

}
	
	/* add Mediatek-specific IE here */
	{
		ULONG TmpLen = 0;
		UCHAR MediatekSpecificIe[9] = {IE_VENDOR_SPECIFIC, 7, 0x00, 0x0c, 0xe7, 0x00, 0x00, 0x00, 0x00};

#ifdef DOT11_VHT_AC
		if (pComCfg->b256QAM_2G && WMODE_2G_ONLY(pComCfg->PhyMode))
		MediatekSpecificIe[5] |= 0x8;
#endif /* DOT11_VHT_AC */

		MakeOutgoingFrame(pBeaconFrame+FrameLen, &TmpLen,
		9, MediatekSpecificIe,
		END_OF_ARGS);
		FrameLen += TmpLen;
	}	
	

	/* step 6. Since FrameLen may change, update TXWI. */
#ifdef A_BAND_SUPPORT
	if (pAd->CommonCfg.Channel > 14) {
		BeaconTransmit.field.MODE = MODE_OFDM;
		BeaconTransmit.field.MCS = MCS_RATE_6;
	}
#endif /* A_BAND_SUPPORT */

#ifdef SPECIFIC_TX_POWER_SUPPORT
	/* Specific Power for Long-Range Beacon */	
        if ((pAd->ApCfg.MBSSID[apidx].TxPwrAdj != -1) /* &&
            (BeaconTransmit.field.MODE == MODE_CCK)*/)
        {
                TxPwrAdj = pAd->ApCfg.MBSSID[apidx].TxPwrAdj;
        }
#endif /* SPECIFIC_TX_POWER_SUPPORT */

	RTMPWriteTxWI(pAd, &pAd->BeaconTxWI, FALSE, FALSE, TRUE, FALSE, FALSE, TRUE, 0, RESERVED_WCID, 
					FrameLen, PID_MGMT, 0 /*QID_MGMT*/, 0, IFS_HTTXOP, &BeaconTransmit);

#ifdef SPECIFIC_TX_POWER_SUPPORT
#ifdef RTMP_MAC
		if ((IS_RT6352(pAd) || IS_MT76x2(pAd)) && (pAd->chipCap.hif_type == HIF_RTMP))
        	pAd->BeaconTxWI.TXWI_O.TxPwrAdj = TxPwrAdj;
#endif /* RTMP_MAC */
#ifdef RLT_MAC
		if ((IS_RT6352(pAd) || IS_MT76x2(pAd)) && (pAd->chipCap.hif_type == HIF_RLT))
			pAd->BeaconTxWI.TXWI_N.TxPwrAdj = TxPwrAdj;
#endif /* RLT_MAC */
#endif /* SPECIFIC_TX_POWER_SUPPORT */

	/* step 7. move BEACON TXWI and frame content to on-chip memory */
	RT28xx_UpdateBeaconToAsic(pAd, apidx, FrameLen, UpdatePos);

#ifdef CUSTOMER_DCC_FEATURE
	{
		HTTRANSMIT_SETTING HTSetting;
		UINT32 Index;
		MULTISSID_STRUCT *pMbss = NULL;
		NdisZeroMemory(&HTSetting, sizeof(HTTRANSMIT_SETTING));
		HTSetting.field.MODE = BeaconTransmit.field.MODE;
		HTSetting.field.BW = BeaconTransmit.field.BW;
		HTSetting.field.ShortGI = BeaconTransmit.field.ShortGI;
		HTSetting.field.MCS = BeaconTransmit.field.MCS;
		if ((pAd->ApCfg.MBSSID[apidx].wdev.if_dev != NULL) &&
			(RTMP_OS_NETDEV_STATE_RUNNING(pAd->ApCfg.MBSSID[apidx].wdev.if_dev)))
		{
			pMbss = &pAd->ApCfg.MBSSID[apidx];
			GetMultShiftFactorIndex(HTSetting, &Index);
    		RTMPCalculateAPTxRxActivityTime(pAd, Index, FrameLen, pMbss, NULL);
		}
	}
#endif
}
Exemple #13
0
/*
	==========================================================================
	Description:
		Pre-build a BEACON frame in the shared memory
	==========================================================================
*/
VOID APMakeBssBeacon(RTMP_ADAPTER *pAd, INT apidx)
{
	UCHAR DsLen = 1, SsidLen;
	HEADER_802_11 BcnHdr;
	LARGE_INTEGER FakeTimestamp;
	ULONG FrameLen = 0;
	PUCHAR pBeaconFrame = (PUCHAR)pAd->ApCfg.MBSSID[apidx].BeaconBuf;
#if defined(DOT11_N_SUPPORT) && defined(DOT11K_RRM_SUPPORT)
	UINT i;
#endif /* defined(DOT11_N_SUPPORT) && defined(DOT11K_RRM_SUPPORT) */
	HTTRANSMIT_SETTING BeaconTransmit = {.word = 0};   /* MGMT frame PHY rate setting when operatin at Ht rate. */
	UCHAR PhyMode, SupRateLen;
	MULTISSID_STRUCT *pMbss = &pAd->ApCfg.MBSSID[apidx];
#ifdef SPECIFIC_TX_POWER_SUPPORT
	UCHAR TxPwrAdj = 0;
#endif /* SPECIFIC_TX_POWER_SUPPORT */
	
	if(!BeaconTransmitRequired(pAd, apidx, pMbss))
		return;

	PhyMode = pMbss->wdev.PhyMode;

	if (pMbss->bHideSsid)
		SsidLen = 0;
	else
		SsidLen = pMbss->SsidLen;

	MgtMacHeaderInit(pAd, &BcnHdr, SUBTYPE_BEACON, 0, BROADCAST_ADDR, 
						pMbss->wdev.if_addr,
						pMbss->wdev.bssid);
	
	/* for update framelen to TxWI later. */
	SupRateLen = pAd->CommonCfg.SupRateLen;
	if (PhyMode == WMODE_B)
		SupRateLen = 4;

	MakeOutgoingFrame(pBeaconFrame,                  &FrameLen,
					sizeof(HEADER_802_11),           &BcnHdr, 
					TIMESTAMP_LEN,                   &FakeTimestamp,
					2,                               &pAd->CommonCfg.BeaconPeriod,
					2,                               &pMbss->CapabilityInfo,
					1,                               &SsidIe, 
					1,                               &SsidLen, 
					SsidLen,                      pMbss->Ssid,
					1,                               &SupRateIe, 
					1,                               &SupRateLen,
					SupRateLen,                pAd->CommonCfg.SupRate, 
					1,                               &DsIe, 
					1,                               &DsLen, 
					1,                               &pAd->CommonCfg.Channel,
					END_OF_ARGS);

	if ((pAd->CommonCfg.ExtRateLen) && (PhyMode != WMODE_B))
	{
		ULONG TmpLen;
		MakeOutgoingFrame(pBeaconFrame+FrameLen,         &TmpLen,
						1,                               &ExtRateIe, 
						1,                               &pAd->CommonCfg.ExtRateLen,
						pAd->CommonCfg.ExtRateLen,           pAd->CommonCfg.ExtRate, 
						END_OF_ARGS);
		FrameLen += TmpLen;
	}


    /* add country IE, power constraint IE */
	if (pAd->CommonCfg.bCountryFlag)
	{
		ULONG TmpLen, TmpLen2=0;
		UCHAR *TmpFrame = NULL;
		UCHAR CountryIe = IE_COUNTRY;

		os_alloc_mem(NULL, (UCHAR **)&TmpFrame, 256);
		if (TmpFrame != NULL)
		{
			NdisZeroMemory(TmpFrame, 256);

			/* prepare channel information */
#ifdef EXT_BUILD_CHANNEL_LIST
			BuildBeaconChList(pAd, TmpFrame, &TmpLen2);
#else
			{
				UCHAR MaxTxPower = GetCuntryMaxTxPwr(pAd, pAd->CommonCfg.Channel);
				MakeOutgoingFrame(TmpFrame+TmpLen2,     &TmpLen,
									1,                 	&pAd->ChannelList[0].Channel,
									1,                 	&pAd->ChannelListNum,
									1,                 	&MaxTxPower,
									END_OF_ARGS);
				TmpLen2 += TmpLen;
			}
#endif /* EXT_BUILD_CHANNEL_LIST */

#ifdef DOT11K_RRM_SUPPORT
			if (IS_RRM_ENABLE(pAd, apidx)
				&& (pAd->CommonCfg.RegulatoryClass[0] != 0))
			{
				TmpLen2 = 0;
				NdisZeroMemory(TmpFrame, sizeof(TmpFrame));
				RguClass_BuildBcnChList(pAd, TmpFrame, &TmpLen2);
			}		
#endif /* DOT11K_RRM_SUPPORT */

			/* need to do the padding bit check, and concatenate it */
			if ((TmpLen2%2) == 0)
			{
				UCHAR	TmpLen3 = TmpLen2+4;
				MakeOutgoingFrame(pBeaconFrame+FrameLen,&TmpLen,
				                  1,                 	&CountryIe,
				                  1,                 	&TmpLen3,
				                  3,                 	pAd->CommonCfg.CountryCode,
				                  TmpLen2+1,				TmpFrame,
				                  END_OF_ARGS);
			}
			else
			{
				UCHAR	TmpLen3 = TmpLen2+3;
				MakeOutgoingFrame(pBeaconFrame+FrameLen,&TmpLen,
				                  1,                 	&CountryIe,
				                  1,                 	&TmpLen3,
				                  3,                 	pAd->CommonCfg.CountryCode,
				                  TmpLen2,				TmpFrame,
				                  END_OF_ARGS);
			}
			FrameLen += TmpLen;

			os_free_mem(NULL, TmpFrame);
		}
		else
			DBGPRINT(RT_DEBUG_ERROR, ("%s: Allocate memory fail!!!\n", __FUNCTION__));
	}

#ifdef DOT11K_RRM_SUPPORT
	if (IS_RRM_ENABLE(pAd, apidx))
	{
		InsertTpcReportIE(pAd, pBeaconFrame+FrameLen, &FrameLen,
			RTMP_GetTxPwr(pAd, pAd->CommonCfg.MlmeTransmit), 0);
		RRM_InsertRRMEnCapIE(pAd, pBeaconFrame+FrameLen, &FrameLen, apidx);
	}
#endif /* DOT11K_RRM_SUPPORT */

#ifdef DOT11_N_SUPPORT
	/* AP Channel Report */
#ifdef DOT11K_RRM_SUPPORT
	for (i=0; i<MAX_NUM_OF_REGULATORY_CLASS; i++)
	{
		if (pAd->CommonCfg.RegulatoryClass[i] == 0)
			break;

		InsertChannelRepIE(pAd, pBeaconFrame+FrameLen, &FrameLen,
							(PSTRING)pAd->CommonCfg.CountryCode,
							pAd->CommonCfg.RegulatoryClass[i]);

	}
#else
	{
		UCHAR APChannelReportIe = IE_AP_CHANNEL_REPORT;
		ULONG	TmpLen;

		/*
			802.11n D2.0 Annex J, USA regulatory 
				class 32, channel set 1~7
				class 33, channel set 5-11
		*/
		UCHAR rclass32[]={32, 1, 2, 3, 4, 5, 6, 7};
        UCHAR rclass33[]={33, 5, 6, 7, 8, 9, 10, 11};
		UCHAR rclasslen = 8; /*sizeof(rclass32); */
		if (PhyMode == (WMODE_B | WMODE_G | WMODE_GN))
		{
			MakeOutgoingFrame(pBeaconFrame+FrameLen,&TmpLen,
							  1,                    &APChannelReportIe,
							  1,                    &rclasslen,
							  rclasslen,            rclass32,
   							  1,                    &APChannelReportIe,
							  1,                    &rclasslen,
							  rclasslen,            rclass33,
							  END_OF_ARGS);
			FrameLen += TmpLen;		
		}
	}
#endif

#endif /* DOT11_N_SUPPORT */

#ifdef DOT11R_FT_SUPPORT
	/* The Mobility Domain information element (MDIE) is present in Beacon
	** frame when dot11FastBssTransitionEnable is set to true. */
	if (pAd->ApCfg.MBSSID[apidx].FtCfg.FtCapFlag.Dot11rFtEnable)
	{
		PFT_CFG pFtCfg = &pAd->ApCfg.MBSSID[apidx].FtCfg;
		FT_CAP_AND_POLICY FtCap;
		NdisZeroMemory(&FtCap, sizeof(FT_CAP_AND_POLICY));
		FtCap.field.FtOverDs = pFtCfg->FtCapFlag.FtOverDs;
		FtCap.field.RsrReqCap = pFtCfg->FtCapFlag.RsrReqCap;
		FT_InsertMdIE(pAd, pBeaconFrame + FrameLen, &FrameLen,
						pFtCfg->FtMdId, FtCap);
	}
#endif /* DOT11R_FT_SUPPORT */

	BeaconTransmit.word = 0;

#ifdef SPECIFIC_TX_POWER_SUPPORT
        /* Specific Power for Long-Range Beacon */
	if ((pAd->ApCfg.MBSSID[apidx].TxPwrAdj != -1) /* && 
	    (BeaconTransmit.field.MODE == MODE_CCK)*/) 
	{
		TxPwrAdj = pAd->ApCfg.MBSSID[apidx].TxPwrAdj;
	}
#endif /* SPECIFIC_TX_POWER_SUPPORT */

	RTMPWriteTxWI(pAd, &pAd->BeaconTxWI, FALSE, FALSE, TRUE, FALSE, FALSE, TRUE, 0, BSS0Mcast_WCID, 
					FrameLen, PID_MGMT, 0, 0,IFS_HTTXOP, &BeaconTransmit);

#ifdef SPECIFIC_TX_POWER_SUPPORT
#ifdef RTMP_MAC
		if ((IS_RT6352(pAd) || IS_MT76x2(pAd)) && (pAd->chipCap.hif_type == HIF_RTMP))
        	pAd->BeaconTxWI.TXWI_O.TxPwrAdj = TxPwrAdj;
#endif /* RTMP_MAC */
#ifdef RLT_MAC
		if  ((IS_RT6352(pAd) || IS_MT76x2(pAd)) && (pAd->chipCap.hif_type == HIF_RLT))
			pAd->BeaconTxWI.TXWI_N.TxPwrAdj = TxPwrAdj;
#endif /* RLT_MAC */
#endif /* SPECIFIC_TX_POWER_SUPPORT */

	/*
		step 6. move BEACON TXD and frame content to on-chip memory
	*/
	 updateAllBeacon(pAd,  apidx, FrameLen);

	pMbss->TimIELocationInBeacon = (UCHAR)FrameLen; 
	pMbss->CapabilityInfoLocationInBeacon = sizeof(HEADER_802_11) + TIMESTAMP_LEN + 2;
}

void updateAllBeacon(RTMP_ADAPTER *pAd, INT apidx, ULONG FrameLen)
{
		UCHAR *ptr = NULL;
		MULTISSID_STRUCT *pMbss = &pAd->ApCfg.MBSSID[apidx];
		UINT32 longValue, reg_base;
		UINT i = 0;
		UINT8 TXWISize = pAd->chipCap.TXWISize;
		
		ptr = (PUCHAR)&pAd->BeaconTxWI;
#ifdef RT_BIG_ENDIAN
		RTMPWIEndianChange(pAd, ptr, TYPE_TXWI);
#endif
	
	
		reg_base = pAd->BeaconOffset[pMbss->BcnBufIdx];
		for (i=0; i < TXWISize; i+=4)
		{
			longValue = *ptr + (*(ptr+1)<<8) + (*(ptr+2)<<16) + (*(ptr+3)<<24);
			RTMP_CHIP_UPDATE_BEACON(pAd, reg_base + i, longValue, 4);
			ptr += 4;
		}
	
		/* update BEACON frame content. start right after the TXWI field. */
		ptr = (PUCHAR)pMbss->BeaconBuf;
#ifdef RT_BIG_ENDIAN
		RTMPFrameEndianChange(pAd, ptr, DIR_WRITE, FALSE);
#endif
	
		reg_base = pAd->BeaconOffset[pMbss->BcnBufIdx] + TXWISize;
		for (i= 0; i< FrameLen; i+=4)
		{
			longValue =  *ptr + (*(ptr+1)<<8) + (*(ptr+2)<<16) + (*(ptr+3)<<24);
			RTMP_CHIP_UPDATE_BEACON(pAd, reg_base + i, longValue, 4);
			ptr += 4;
		}

}
Exemple #14
0
/*
	========================================================================
	
	Routine Description:
		Set LED Status

	Arguments:
		pAd						Pointer to our adapter
		Status					LED Status

	Return Value:
		None

	IRQL = PASSIVE_LEVEL
	IRQL = DISPATCH_LEVEL
	
	Note:
	
	========================================================================
*/
VOID RTMPSetLEDStatus(
	IN PRTMP_ADAPTER 	pAd, 
	IN UCHAR			Status)
{
	/*ULONG			data; */
	UCHAR			LinkStatus = 0;
	UCHAR			LedMode;
	UCHAR			MCUCmd = 0;
	BOOLEAN 		bIgnored = FALSE;
	INT led_cmd = -1;
#ifdef WSC_INCLUDED
#ifdef WSC_LED_SUPPORT
	PWSC_CTRL		pWscControl = NULL;

#ifdef CONFIG_AP_SUPPORT
	pWscControl = &pAd->ApCfg.MBSSID[MAIN_MBSSID].WscControl;
#endif /* CONFIG_AP_SUPPORT */
#endif /* WSC_LED_SUPPORT */
#endif /* WSC_INCLUDED */

#ifdef RALINK_ATE
	/*
		In ATE mode of RT2860 AP/STA, we have erased 8051 firmware.
		So LED mode is not supported when ATE is running.
	*/
	if (!IS_RT3572(pAd))
	{
		if (ATE_ON(pAd))
			return;
	}
#endif /* RALINK_ATE */



	LedMode = LED_MODE(pAd);

	if (IS_MT76x2(pAd)) {
		if (LedMode < 0 || Status < 0 || LedMode > 15 || Status > 11)
			return;

		led_cmd = LED_Array[LedMode][Status];
	}
	
	switch (Status)
	{
		case LED_LINK_DOWN:
			LinkStatus = LINK_STATUS_LINK_DOWN;
			pAd->LedCntl.LedIndicatorStrength = 0;
			MCUCmd = MCU_SET_LED_MODE;
			break;
		case LED_LINK_UP:
			if (pAd->CommonCfg.Channel > 14)
				LinkStatus = LINK_STATUS_ABAND_LINK_UP;
			else
				LinkStatus = LINK_STATUS_GBAND_LINK_UP;

			MCUCmd = MCU_SET_LED_MODE;
			break;
		case LED_RADIO_ON:
			LinkStatus = LINK_STATUS_RADIO_ON;
			MCUCmd = MCU_SET_LED_MODE;
			break;
		case LED_HALT: 
			LedMode = 0; /* Driver sets MAC register and MAC controls LED */
		case LED_RADIO_OFF:
			LinkStatus = LINK_STATUS_RADIO_OFF;
			MCUCmd = MCU_SET_LED_MODE;
			break;
		case LED_WPS:
			LinkStatus = LINK_STATUS_WPS;
			MCUCmd = MCU_SET_LED_MODE;
			break;
		case LED_ON_SITE_SURVEY:
			LinkStatus = LINK_STATUS_ON_SITE_SURVEY;
			MCUCmd = MCU_SET_LED_MODE;
			break;
		case LED_POWER_UP:
			LinkStatus = LINK_STATUS_POWER_UP;
			MCUCmd = MCU_SET_LED_MODE;
			break;
#ifdef RALINK_ATE
#endif /* RALINK_ATE */
#ifdef WSC_INCLUDED
#ifdef WSC_LED_SUPPORT
		case LED_WPS_IN_PROCESS:
			if (WscSupportWPSLEDMode(pAd))
			{
				LinkStatus = LINK_STATUS_WPS_IN_PROCESS;
				MCUCmd = MCU_SET_WPS_LED_MODE;
				pWscControl->WscLEDMode = LED_WPS_IN_PROCESS;
				DBGPRINT(RT_DEBUG_TRACE, ("%s: LED_WPS_IN_PROCESS\n", __FUNCTION__));				
			}
			else
				bIgnored = TRUE;
			break;
		case LED_WPS_ERROR:
			if (WscSupportWPSLEDMode(pAd))
			{
				/* In the case of LED mode 9, the error LED should be turned on only after WPS walk time expiration. */
				if ((pWscControl->bWPSWalkTimeExpiration == FALSE) && 
					 (LED_MODE(pAd) == WPS_LED_MODE_9))
				{
					/* do nothing. */
				}
				else
				{
					LinkStatus = LINK_STATUS_WPS_ERROR;
					MCUCmd = MCU_SET_WPS_LED_MODE;
				}
		
				pWscControl->WscLEDMode = LED_WPS_ERROR;
				pWscControl->WscLastWarningLEDMode = LED_WPS_ERROR;
				
			}
			else
				bIgnored = TRUE;
			break;
		case LED_WPS_SESSION_OVERLAP_DETECTED:
			if (WscSupportWPSLEDMode(pAd))
			{
				LinkStatus = LINK_STATUS_WPS_SESSION_OVERLAP_DETECTED;
				MCUCmd = MCU_SET_WPS_LED_MODE;
				pWscControl->WscLEDMode = LED_WPS_SESSION_OVERLAP_DETECTED;
				pWscControl->WscLastWarningLEDMode = LED_WPS_SESSION_OVERLAP_DETECTED;
			}
			else
				bIgnored = TRUE;
			break;
		case LED_WPS_SUCCESS:
			if (WscSupportWPSLEDMode(pAd))
			{
				if ((LED_MODE(pAd) == WPS_LED_MODE_7) || 
					(LED_MODE(pAd) == WPS_LED_MODE_11) || 
					(LED_MODE(pAd) == WPS_LED_MODE_12)
					)
				{
					/* In the WPS LED mode 7, 11 and 12, the blue LED would last 300 seconds regardless of the AP's security settings. */
					LinkStatus = LINK_STATUS_WPS_SUCCESS_WITH_SECURITY;
					MCUCmd = MCU_SET_WPS_LED_MODE;
					pWscControl->WscLEDMode = LED_WPS_SUCCESS;
		
					/* Turn off the WPS successful LED pattern after 300 seconds. */
					RTMPSetTimer(&pWscControl->WscLEDTimer, WSC_SUCCESSFUL_LED_PATTERN_TIMEOUT);
				}
				else if (LED_MODE(pAd) == WPS_LED_MODE_8) /* The WPS LED mode 8 */
				{
					if (WscAPHasSecuritySetting(pAd, pWscControl)) /* The WPS AP has the security setting. */
					{
						LinkStatus = LINK_STATUS_WPS_SUCCESS_WITH_SECURITY;
						MCUCmd = MCU_SET_WPS_LED_MODE;
						pWscControl->WscLEDMode = LED_WPS_SUCCESS;
		
						/* Turn off the WPS successful LED pattern after 300 seconds. */
						RTMPSetTimer(&pWscControl->WscLEDTimer, WSC_SUCCESSFUL_LED_PATTERN_TIMEOUT);
					}
					else /* The WPS AP does not have the secuirty setting. */
					{
						LinkStatus = LINK_STATUS_WPS_SUCCESS_WITHOUT_SECURITY;
						MCUCmd = MCU_SET_WPS_LED_MODE;
						pWscControl->WscLEDMode = LED_WPS_SUCCESS;
		
						/* Turn off the WPS successful LED pattern after 300 seconds. */
						RTMPSetTimer(&pWscControl->WscLEDTimer, WSC_SUCCESSFUL_LED_PATTERN_TIMEOUT);
					}
				}
				else if (LED_MODE(pAd) == WPS_LED_MODE_9) /* The WPS LED mode 9. */
				{
					/* Always turn on the WPS blue LED for 300 seconds. */
					LinkStatus = LINK_STATUS_WPS_BLUE_LED;
					MCUCmd = MCU_SET_WPS_LED_MODE;
					pWscControl->WscLEDMode = LED_WPS_SUCCESS;
		
					/* Turn off the WPS successful LED pattern after 300 seconds. */
					RTMPSetTimer(&pWscControl->WscLEDTimer, WSC_SUCCESSFUL_LED_PATTERN_TIMEOUT);
					
				}
				else
				{
					DBGPRINT(RT_DEBUG_TRACE, ("%s: LED_WPS_SUCCESS (Incorrect LED mode = %d)\n", 
						__FUNCTION__, LED_MODE(pAd)));
					ASSERT(FALSE);
				}
			}
			else
				bIgnored = TRUE;
			break;
		case LED_WPS_TURN_LED_OFF:
			if (WscSupportWPSLEDMode(pAd))
			{
				LinkStatus = LINK_STATUS_WPS_TURN_LED_OFF;
				MCUCmd = MCU_SET_WPS_LED_MODE;
				pWscControl->WscLEDMode = LED_WPS_TURN_LED_OFF;
			}
			else
				bIgnored = TRUE;
			break;
		case LED_WPS_TURN_ON_BLUE_LED:
			if (WscSupportWPSLEDMode(pAd))
			{
				LinkStatus = LINK_STATUS_WPS_BLUE_LED;
				MCUCmd = MCU_SET_WPS_LED_MODE;
				pWscControl->WscLEDMode = LED_WPS_SUCCESS;
			}
			else
				bIgnored = TRUE;
			break;
		case LED_NORMAL_CONNECTION_WITHOUT_SECURITY:
			if (WscSupportWPSLEDMode(pAd))
			{
				LinkStatus = LINK_STATUS_NORMAL_CONNECTION_WITHOUT_SECURITY;
				MCUCmd = MCU_SET_WPS_LED_MODE;
				pWscControl->WscLEDMode = LED_WPS_SUCCESS;
			}
			else
				bIgnored = TRUE;
			break;
		case LED_NORMAL_CONNECTION_WITH_SECURITY:
			if (WscSupportWPSLEDMode(pAd))
			{
				LinkStatus = LINK_STATUS_NORMAL_CONNECTION_WITH_SECURITY;
				MCUCmd = MCU_SET_WPS_LED_MODE;
				pWscControl->WscLEDMode = LED_WPS_SUCCESS;
			}
			else
				bIgnored = TRUE;
			break;
		/*WPS LED Mode 10 */
		case LED_WPS_MODE10_TURN_ON:
			if(WscSupportWPSLEDMode10(pAd))
			{
				LinkStatus = LINK_STATUS_WPS_MODE10_TURN_ON;
				MCUCmd = MCU_SET_WPS_LED_MODE;
			}
			else
				bIgnored = TRUE;
			break;
		case LED_WPS_MODE10_FLASH:
			if(WscSupportWPSLEDMode10(pAd))
			{	
				LinkStatus = LINK_STATUS_WPS_MODE10_FLASH;
				MCUCmd = MCU_SET_WPS_LED_MODE;
			}
			else
				bIgnored = TRUE;
			break;
		case LED_WPS_MODE10_TURN_OFF:
			if(WscSupportWPSLEDMode10(pAd))
			{
				LinkStatus = LINK_STATUS_WPS_MODE10_TURN_OFF;
				MCUCmd = MCU_SET_WPS_LED_MODE;
			}
			else
				bIgnored = TRUE;
			break;
#endif /* WSC_LED_SUPPORT */
#endif /* WSC_INCLUDED */
		default:
			DBGPRINT(RT_DEBUG_WARN, ("RTMPSetLED::Unknown Status 0x%x\n", Status));
			break;
	}

	if (IS_MT76x2(pAd)) {
		if (led_cmd != -1) {
			/* 
				LED index is related to the layout of GPIO pins.
				Since we are not sure the pairing between LED index and GPIO pins,
				here it may be necessary to change the input index to meet the requirement of customers. 
			*/
			if (pAd->CommonCfg.Channel > 14)
				andes_led_op(pAd, 2, led_cmd); 
			else
				andes_led_op(pAd, 2, led_cmd);
		}
	} else {
		if (MCUCmd) {
			AsicSendCommandToMcu(pAd, MCUCmd, 0xff, LedMode, LinkStatus, FALSE);
			DBGPRINT(RT_DEBUG_TRACE, ("%s: MCUCmd:0x%x, LED Mode:0x%x, LinkStatus:0x%x\n", __FUNCTION__, MCUCmd, LedMode, LinkStatus)); 
		}
	}
	
    /* */
	/* Keep LED status for LED SiteSurvey mode. */
	/* After SiteSurvey, we will set the LED mode to previous status. */
	/* */
	if ((Status != LED_ON_SITE_SURVEY) && (Status != LED_POWER_UP) && (bIgnored == FALSE))
		pAd->LedCntl.LedStatus = Status;
    
}
Exemple #15
0
INT ATESetUpNDPAFrame(
	IN PRTMP_ADAPTER pAd,
	IN UINT32 TxIdx)
{
	PATE_INFO pATEInfo = &(pAd->ate);
	UINT pos = 0;
	TXINFO_STRUC *pTxInfo;
	TXD_STRUC *pTxD;
#ifdef RT_BIG_ENDIAN
	TXD_STRUC *pDestTxD;
	UCHAR tx_hw_info[TXD_SIZE];
#endif /* RT_BIG_ENDIAN */
	PNDIS_PACKET pPacket=NULL;
	PUCHAR pDest=NULL;
	PVOID AllocVa=NULL;
	NDIS_PHYSICAL_ADDRESS AllocPa;
	HTTRANSMIT_SETTING	TxHTPhyMode;
	UCHAR *buf;
	VHT_NDPA_FRAME *vht_ndpa;
	SNDING_STA_INFO *sta_info;

	RTMP_TX_RING *pTxRing = &pAd->TxRing[QID_AC_BE];
	TXWI_STRUC *pTxWI = (TXWI_STRUC *)pTxRing->Cell[TxIdx].DmaBuf.AllocVa;
	PUCHAR pDMAHeaderBufVA = (PUCHAR) pTxRing->Cell[TxIdx].DmaBuf.AllocVa;
	UINT8 TXWISize = pAd->chipCap.TXWISize;

#ifdef RALINK_QA
	PHEADER_802_11	pHeader80211;
#endif /* RALINK_QA */

	UCHAR bw, sgi, stbc, mcs, phy_mode, frag, cfack, ts, ampdu, ack, nseq, bawinsize, pkt_id, txop;
	USHORT byte_cnt;

	bw = sgi = stbc = mcs = phy_mode = frag = cfack = ts =0;
	ampdu = ack = nseq = bawinsize = pkt_id = txop = 0;
	byte_cnt = 0;
		
#ifdef RLT_MAC
	if (pAd->chipCap.hif_type == HIF_RLT) {
		bw = pATEInfo->TxWI.TXWI_N.BW;
		sgi = pATEInfo->TxWI.TXWI_N.ShortGI;
		stbc = pATEInfo->TxWI.TXWI_N.STBC;
		mcs = pATEInfo->TxWI.TXWI_N.MCS;
		phy_mode = pATEInfo->TxWI.TXWI_N.PHYMODE;
			
		frag = pATEInfo->TxWI.TXWI_N.FRAG;
		cfack = pATEInfo->TxWI.TXWI_N.CFACK,
		ts = pATEInfo->TxWI.TXWI_N.TS;
		ampdu = pATEInfo->TxWI.TXWI_N.AMPDU;
		ack = pATEInfo->TxWI.TXWI_N.ACK;
		nseq = pATEInfo->TxWI.TXWI_N.NSEQ;
		bawinsize =pATEInfo->TxWI.TXWI_N.BAWinSize;
		byte_cnt = pATEInfo->TxWI.TXWI_N.MPDUtotalByteCnt;
		pkt_id = pATEInfo->TxWI.TXWI_N.TxPktId;
		txop = pATEInfo->TxWI.TXWI_N.txop;
		cfack = pATEInfo->TxWI.TXWI_N.CFACK;
	}
#endif /* RLT_MAC */

#ifdef RTMP_MAC
	if (pAd->chipCap.hif_type == HIF_RTMP) {
		bw = pATEInfo->TxWI.TXWI_O.BW;
		sgi = pATEInfo->TxWI.TXWI_O.ShortGI;
		stbc = pATEInfo->TxWI.TXWI_O.STBC;
		mcs = pATEInfo->TxWI.TXWI_O.MCS;
		phy_mode = pATEInfo->TxWI.TXWI_O.PHYMODE;
			
		frag = pATEInfo->TxWI.TXWI_O.FRAG;
		cfack = pATEInfo->TxWI.TXWI_O.CFACK,
		ts = pATEInfo->TxWI.TXWI_O.TS;
		ampdu = pATEInfo->TxWI.TXWI_O.AMPDU;
		ack = pATEInfo->TxWI.TXWI_O.ACK;
		nseq = pATEInfo->TxWI.TXWI_O.NSEQ;
		bawinsize =pATEInfo->TxWI.TXWI_O.BAWinSize;
		byte_cnt = pATEInfo->TxWI.TXWI_O.MPDUtotalByteCnt;
		pkt_id = pATEInfo->TxWI.TXWI_O.PacketId;
		txop = pATEInfo->TxWI.TXWI_O.txop;
		cfack = pATEInfo->TxWI.TXWI_O.CFACK;
	}
#endif /* RTMP_MAC */

	/* fill TxWI */
	TxHTPhyMode.field.BW = bw;
	TxHTPhyMode.field.ShortGI = sgi;
	TxHTPhyMode.field.STBC = stbc;
	TxHTPhyMode.field.MCS = mcs;
	TxHTPhyMode.field.MODE = phy_mode;

	if (pATEInfo->bQATxStart == TRUE) 
	{
		/* always use QID_AC_BE and FIFO_EDCA */
		ATEWriteTxWI(pAd, pTxWI, frag, cfack,
			ts, ampdu, ack,
			nseq, bawinsize, 0,
			byte_cnt, pkt_id, 0, 0,
			txop, cfack,
			&TxHTPhyMode);

#ifdef TXBF_SUPPORT
#ifdef RTMP_MAC
		if (IS_RT2883(pAd) || IS_RT3883(pAd) || IS_RT3593(pAd))
		{
			/* Must copy rsv bits to actual TxWI */
			//pTxWI->TXWI_O.rsv = pATEInfo->TxWI.TXWI_O.rsv;
			pTxWI->TXWI_O.iTxBF = pATEInfo->TxWI.TXWI_O.iTxBF;	
			pTxWI->TXWI_O.Sounding = pATEInfo->TxWI.TXWI_O.Sounding;
			pTxWI->TXWI_O.eTxBF = pATEInfo->TxWI.TXWI_O.eTxBF;
			pTxWI->TXWI_O.Autofallback = pATEInfo->TxWI.TXWI_O.Autofallback;
			pTxWI->TXWI_O.NDPSndBW = pATEInfo->TxWI.TXWI_O.NDPSndBW;
			pTxWI->TXWI_O.NDPSndRate = pATEInfo->TxWI.TXWI_O.NDPSndRate;
		}
#endif
#ifdef RLT_MAC
		if (IS_MT76x2(pAd))
		{
			/* Must copy rsv bits to actual TxWI */
			pTxWI->TXWI_N.Rsv4 = pATEInfo->TxWI.TXWI_N.Rsv4;
			pTxWI->TXWI_N.iTxBF = pATEInfo->TxWI.TXWI_N.iTxBF;	
			pTxWI->TXWI_N.Sounding = pATEInfo->TxWI.TXWI_N.Sounding;
			pTxWI->TXWI_N.eTxBF = pATEInfo->TxWI.TXWI_N.eTxBF;
			//pTxWI->TXWI_N.Autofallback = pATEInfo->TxWI.TXWI_N.Autofallback;
			pTxWI->TXWI_N.NDPSndBW = pATEInfo->TxWI.TXWI_N.NDPSndBW;
			pTxWI->TXWI_N.NDPSndRate = pATEInfo->TxWI.TXWI_N.NDPSndRate;
			pTxWI->TXWI_N.TXBF_PT_SCA = pATEInfo->TxWI.TXWI_N.TXBF_PT_SCA;
		}
#endif
#endif /* TXBF_SUPPORT */
	}
	else
	{
		ATEWriteTxWI(pAd, pTxWI, FALSE, FALSE, FALSE,  FALSE, FALSE, FALSE, 
			4, 0, pATEInfo->TxLength, 0, 0, 0, IFS_HTTXOP, FALSE, &TxHTPhyMode);

#ifdef TXBF_SUPPORT
		if (pATEInfo->bTxBF == 1)
		{
#ifdef RTMP_MAC
			if (IS_RT2883(pAd) || IS_RT3883(pAd) || IS_RT3593(pAd))
			{
				//pTxWI->TXWI_O.rsv = 0;
				pTxWI->TXWI_O.iTxBF = pATEInfo->TxWI.TXWI_O.iTxBF;	
				pTxWI->TXWI_O.Sounding = (pATEInfo->txSoundingMode == 1 ? 1 : 0);
				pTxWI->TXWI_O.eTxBF = pATEInfo->TxWI.TXWI_O.eTxBF;
				pTxWI->TXWI_O.Autofallback = pATEInfo->TxWI.TXWI_O.Autofallback;
				pTxWI->TXWI_O.NDPSndBW = pATEInfo->TxWI.TXWI_O.BW;
				if (pATEInfo->txSoundingMode == 3)
					pTxWI->TXWI_O.NDPSndRate = 2;
				else if (pATEInfo->txSoundingMode == 2)
					pTxWI->TXWI_O.NDPSndRate = 1;
				else
					pTxWI->TXWI_O.NDPSndRate = 0;
			}
#endif

#ifdef RLT_MAC
			if (IS_MT76x2(pAd))
			{
				pTxWI->TXWI_N.Rsv4 = 0;
				pTxWI->TXWI_N.iTxBF = pATEInfo->TxWI.TXWI_N.iTxBF;	
				pTxWI->TXWI_N.Sounding = (pATEInfo->txSoundingMode == 1 ? 1 : 0);
				pTxWI->TXWI_N.eTxBF = pATEInfo->TxWI.TXWI_N.eTxBF;
				//pTxWI->TXWI_N.Autofallback = pATEInfo->TxWI.TXWI_N.Autofallback;
				pTxWI->TXWI_N.NDPSndBW = pATEInfo->TxWI.TXWI_N.BW;
				if (pATEInfo->txSoundingMode == 3)
					pTxWI->TXWI_N.NDPSndRate = 2;
				else if (pATEInfo->txSoundingMode == 2)
					pTxWI->TXWI_N.NDPSndRate = 1;
				else
					pTxWI->TXWI_N.NDPSndRate = 0;

				pTxWI->TXWI_N.TXBF_PT_SCA = pATEInfo->TxWI.TXWI_N.TXBF_PT_SCA;
			}
#endif
		}
#endif /* TXBF_SUPPORT */
	}
	
	/* fill 802.11 header */
#ifdef RALINK_QA
	if (pATEInfo->bQATxStart == TRUE) 
	{
		NdisMoveMemory(pDMAHeaderBufVA + TXWISize, pATEInfo->Header, pATEInfo->HLen);
	}
	else
#endif /* RALINK_QA */
	{
		buf = (pDMAHeaderBufVA + TXWISize);
		vht_ndpa = (VHT_NDPA_FRAME *)buf;
		pATEInfo->HLen = sizeof(VHT_NDPA_FRAME);
		vht_ndpa->fc.Type = FC_TYPE_CNTL;
		vht_ndpa->fc.SubType = SUBTYPE_VHT_NDPA;
		COPY_MAC_ADDR(vht_ndpa->ra, pATEInfo->Addr1);
		COPY_MAC_ADDR(vht_ndpa->ta, pATEInfo->Addr3);
        hex_dump("NDPA Frame",buf,pATEInfo->HLen);
		/* Currnetly we only support 1 STA for a VHT DNPA */
		sta_info = vht_ndpa->sta_info;
		sta_info->aid12 = 1;
		sta_info->fb_type = SNDING_FB_SU;
		sta_info->nc_idx = 0;
		vht_ndpa->token.token_num = 0;
		vht_ndpa->duration = 100;
	}


#ifdef RT_BIG_ENDIAN
	RTMPFrameEndianChange(pAd, (((PUCHAR)pDMAHeaderBufVA) + TXWISize), DIR_READ, FALSE);
#endif /* RT_BIG_ENDIAN */

	/* alloc buffer for payload */
#ifdef RALINK_QA
	if ((pATEInfo->bQATxStart == TRUE) && (pATEInfo->DLen != 0)) 
	{
		pPacket = RTMP_AllocateRxPacketBuffer(pAd, ((POS_COOKIE)(pAd->OS_Cookie))->pci_dev,
			pATEInfo->DLen + 0x100, FALSE, &AllocVa, &AllocPa);
	}
	else
#endif /* RALINK_QA */
	{
		pPacket = RTMP_AllocateRxPacketBuffer(pAd, ((POS_COOKIE)(pAd->OS_Cookie))->pci_dev,
			pATEInfo->TxLength, FALSE, &AllocVa, &AllocPa);
	}

	if (pPacket == NULL)
	{
		pATEInfo->TxCount = 0;
		DBGPRINT_ERR(("%s : fail to alloc packet space.\n", __FUNCTION__));
		return -1;
	}

	pTxRing->Cell[TxIdx].pNextNdisPacket = pPacket;
	pDest = (PUCHAR) AllocVa;

#ifdef RALINK_QA
	if ((pATEInfo->bQATxStart == TRUE) && (pATEInfo->DLen != 0)) 
	{
		GET_OS_PKT_LEN(pPacket) = pATEInfo->DLen;
#ifndef LINUX
		GET_OS_PKT_TOTAL_LEN(pPacket) = pATEInfo->DLen;
#endif /* LIMUX */
	}
	else
#endif /* RALINK_QA */
	{
		GET_OS_PKT_LEN(pPacket) = pATEInfo->TxLength - pATEInfo->HLen;
#ifndef LINUX
		GET_OS_PKT_TOTAL_LEN(pPacket) = pATEInfo->TxLength - pATEInfo->HLen;
#endif /* LINUX */
	}

	/* prepare frame payload */
#ifdef RALINK_QA
	if ((pATEInfo->bQATxStart == TRUE) && (pATEInfo->DLen != 0))
	{
		/* copy pattern to payload */
		if ((pATEInfo->PLen != 0))
		{
			for (pos = 0; pos < pATEInfo->DLen; pos += pATEInfo->PLen)
			{
				memcpy(GET_OS_PKT_DATAPTR(pPacket) + pos, pATEInfo->Pattern, pATEInfo->PLen);
			}
		}
	}
	else
#endif /* RALINK_QA */
	{
		for (pos = 0; pos < GET_OS_PKT_LEN(pPacket); pos++)
		{
			pDest[pos] = 0x00;
		}
	}


	/* build Tx descriptor */
#ifndef RT_BIG_ENDIAN
	pTxD = (PTXD_STRUC) pTxRing->Cell[TxIdx].AllocVa;
	pTxInfo = (TXINFO_STRUC *)(pTxRing->Cell[TxIdx].AllocVa + sizeof(TXD_STRUC));
#else
	pDestTxD  = (PTXD_STRUC)pTxRing->Cell[TxIdx].AllocVa;
	NdisMoveMemory(&tx_hw_info[0], (UCHAR *)pDestTxD, TXD_SIZE);
	pTxD = (TXD_STRUC *)&tx_hw_info[0];
	pTxInfo = (TXINFO_STRUC *)(&tx_hw_info[0] + sizeof(TXD_STRUC));
#endif /* !RT_BIG_ENDIAN */
#ifdef RALINK_QA
	if (pATEInfo->bQATxStart == TRUE)
	{
		/* prepare TxD */
		NdisZeroMemory(pTxD, TXD_SIZE);
		/* build Tx descriptor */
		pTxD->SDPtr0 = RTMP_GetPhysicalAddressLow(pTxRing->Cell[TxIdx].DmaBuf.AllocPa);
		pTxD->SDLen0 = TXWISize + pATEInfo->HLen;
		pTxD->SDPtr1 = AllocPa;
		pTxD->SDLen1 = GET_OS_PKT_LEN(pPacket);
		pTxD->LastSec0 = (pTxD->SDLen1 == 0) ? 1 : 0;
		pTxD->LastSec1 = 1;
		ral_write_txd(pAd, pTxD, pTxInfo, FALSE, FIFO_EDCA);

		pDest = (PUCHAR)pTxWI;
		pDest += TXWISize;
		pHeader80211 = (PHEADER_802_11)pDest;
		
		/* modify sequence number... */
		if (pATEInfo->TxDoneCount == 0)
			pATEInfo->seq = pHeader80211->Sequence;
		else
			pHeader80211->Sequence = ++pATEInfo->seq;
	}
	else
#endif /* RALINK_QA */
	{
		TX_BLK txblk;		
		txblk.SrcBufLen = GET_OS_PKT_LEN(pPacket);		
		txblk.pSrcBufData = AllocVa;
		NdisZeroMemory(pTxD, TXD_SIZE);
		/* build Tx descriptor */
		pTxD->SDPtr0 = RTMP_GetPhysicalAddressLow (pTxRing->Cell[TxIdx].DmaBuf.AllocPa);
		pTxD->SDLen0 = TXWISize + pATEInfo->HLen /* LENGTH_802_11 */;
		pTxD->SDPtr1 = PCI_MAP_SINGLE(pAd, &txblk, 0, 1, RTMP_PCI_DMA_TODEVICE);
		pTxD->SDLen1 = GET_OS_PKT_LEN(pPacket);
		pTxD->LastSec0 = (pTxD->SDLen1 == 0) ? 1 : 0;
		pTxD->LastSec1 = 1;
		ral_write_txd(pAd, pTxD, pTxInfo, FALSE, FIFO_EDCA);
	}

#ifdef RT_BIG_ENDIAN
	RTMPWIEndianChange(pAd, (PUCHAR)pTxWI, TYPE_TXWI);
	RTMPFrameEndianChange(pAd, (((PUCHAR)pDMAHeaderBufVA) + TXWISize), DIR_WRITE, FALSE);
	RTMPDescriptorEndianChange((PUCHAR)pTxD, TYPE_TXD);
	WriteBackToDescriptor((PUCHAR)pDestTxD, (PUCHAR)pTxD, FALSE, TYPE_TXD);
#endif /* RT_BIG_ENDIAN */

	return 0;
}
Exemple #16
0
/* 
==========================================================================
	Description:
		Setup Frame format.
	NOTE:
		This routine should only be used in ATE mode.
==========================================================================
*/
INT ATESetUpFrame(
	IN PRTMP_ADAPTER pAd,
	IN UINT32 TxIdx)
{
	PATE_INFO pATEInfo = &(pAd->ate);
	UINT pos = 0;
	TXINFO_STRUC *pTxInfo;
	TXD_STRUC *pTxD;
#ifdef RT_BIG_ENDIAN
	TXD_STRUC *pDestTxD;
	UCHAR tx_hw_info[TXD_SIZE];
#endif /* RT_BIG_ENDIAN */
	PNDIS_PACKET pPacket=NULL;
	PUCHAR pDest=NULL;
	PVOID AllocVa=NULL;
	NDIS_PHYSICAL_ADDRESS AllocPa;
	HTTRANSMIT_SETTING	TxHTPhyMode;

	RTMP_TX_RING *pTxRing = &pAd->TxRing[QID_AC_BE];
	TXWI_STRUC *pTxWI = (TXWI_STRUC *)pTxRing->Cell[TxIdx].DmaBuf.AllocVa;
	PUCHAR pDMAHeaderBufVA = (PUCHAR) pTxRing->Cell[TxIdx].DmaBuf.AllocVa;
	UINT8 TXWISize = pAd->chipCap.TXWISize;

#ifdef RALINK_QA
	PHEADER_802_11	pHeader80211;
#endif /* RALINK_QA */

	UCHAR bw, sgi, stbc, mcs, phy_mode, frag, cfack, ts, ampdu, ack, nseq, bawinsize, pkt_id, txop;
	USHORT byte_cnt;

	bw = sgi = stbc = mcs = phy_mode = frag = cfack = ts =0;
	ampdu = ack = nseq = bawinsize = pkt_id = txop = 0;
	byte_cnt = 0;
#ifdef RLT_MAC
	if (pAd->chipCap.hif_type == HIF_RLT) {
		bw = pATEInfo->TxWI.TXWI_N.BW;
		sgi = pATEInfo->TxWI.TXWI_N.ShortGI;
		stbc = pATEInfo->TxWI.TXWI_N.STBC;
		mcs = pATEInfo->TxWI.TXWI_N.MCS;
		phy_mode = pATEInfo->TxWI.TXWI_N.PHYMODE;
			
		frag = pATEInfo->TxWI.TXWI_N.FRAG;
		cfack = pATEInfo->TxWI.TXWI_N.CFACK,
		ts = pATEInfo->TxWI.TXWI_N.TS;
		ampdu = pATEInfo->TxWI.TXWI_N.AMPDU;
		ack = pATEInfo->TxWI.TXWI_N.ACK;
		nseq = pATEInfo->TxWI.TXWI_N.NSEQ;
		bawinsize =pATEInfo->TxWI.TXWI_N.BAWinSize;
		byte_cnt = pATEInfo->TxWI.TXWI_N.MPDUtotalByteCnt;
		pkt_id = pATEInfo->TxWI.TXWI_N.TxPktId;
		txop = pATEInfo->TxWI.TXWI_N.txop;
		cfack = pATEInfo->TxWI.TXWI_N.CFACK;
	}
#endif /* RLT_MAC */

#ifdef RTMP_MAC
	if (pAd->chipCap.hif_type == HIF_RTMP) {
		bw = pATEInfo->TxWI.TXWI_O.BW;
		sgi = pATEInfo->TxWI.TXWI_O.ShortGI;
		stbc = pATEInfo->TxWI.TXWI_O.STBC;
		mcs = pATEInfo->TxWI.TXWI_O.MCS;
		phy_mode = pATEInfo->TxWI.TXWI_O.PHYMODE;
			
		frag = pATEInfo->TxWI.TXWI_O.FRAG;
		cfack = pATEInfo->TxWI.TXWI_O.CFACK,
		ts = pATEInfo->TxWI.TXWI_O.TS;
		ampdu = pATEInfo->TxWI.TXWI_O.AMPDU;
		ack = pATEInfo->TxWI.TXWI_O.ACK;
		nseq = pATEInfo->TxWI.TXWI_O.NSEQ;
		bawinsize =pATEInfo->TxWI.TXWI_O.BAWinSize;
		byte_cnt = pATEInfo->TxWI.TXWI_O.MPDUtotalByteCnt;
		pkt_id = pATEInfo->TxWI.TXWI_O.PacketId;
		txop = pATEInfo->TxWI.TXWI_O.txop;
		cfack = pATEInfo->TxWI.TXWI_O.CFACK;
	}
#endif /* RTMP_MAC */

	/* fill TxWI */
	TxHTPhyMode.field.BW = bw;
	TxHTPhyMode.field.ShortGI = sgi;
	TxHTPhyMode.field.STBC = stbc;
	TxHTPhyMode.field.MCS = mcs;
	TxHTPhyMode.field.MODE = phy_mode;

	if (pATEInfo->bQATxStart == TRUE) 
	{
		/* always use QID_AC_BE and FIFO_EDCA */
		ATEWriteTxWI(pAd, pTxWI, frag, cfack,
			ts, ampdu, ack,
			nseq, bawinsize, 0,
			byte_cnt, pkt_id, 0, 0,
			txop, cfack,
			&TxHTPhyMode);

#ifdef TXBF_SUPPORT
#ifdef RTMP_MAC
		if (IS_RT2883(pAd) || IS_RT3883(pAd) || IS_RT3593(pAd))
		{
			/* Must copy rsv bits to actual TxWI */
			//pTxWI->TXWI_O.Reserved = pATEInfo->TxWI.TXWI_O.Reserved;
			pTxWI->TXWI_O.iTxBF = pATEInfo->TxWI.TXWI_O.iTxBF;	
			pTxWI->TXWI_O.Sounding = pATEInfo->TxWI.TXWI_O.Sounding;
			pTxWI->TXWI_O.eTxBF = pATEInfo->TxWI.TXWI_O.eTxBF;
			pTxWI->TXWI_O.Autofallback = pATEInfo->TxWI.TXWI_O.Autofallback;
			pTxWI->TXWI_O.NDPSndBW = pATEInfo->TxWI.TXWI_O.NDPSndBW;
			pTxWI->TXWI_O.NDPSndRate = pATEInfo->TxWI.TXWI_O.NDPSndRate;
		}
#endif
#ifdef RLT_MAC
		if (IS_MT76x2(pAd))
		{
			/* Must copy rsv bits to actual TxWI */
			pTxWI->TXWI_N.Rsv4 = pATEInfo->TxWI.TXWI_N.Rsv4;
			pTxWI->TXWI_N.iTxBF = pATEInfo->TxWI.TXWI_N.iTxBF;	
			pTxWI->TXWI_N.Sounding = pATEInfo->TxWI.TXWI_N.Sounding;
			pTxWI->TXWI_N.eTxBF = pATEInfo->TxWI.TXWI_N.eTxBF;
			//pTxWI->TXWI_N.Autofallback = pATEInfo->TxWI.TXWI_N.Autofallback;
			pTxWI->TXWI_N.NDPSndBW = pATEInfo->TxWI.TXWI_N.NDPSndBW;
			pTxWI->TXWI_N.NDPSndRate = pATEInfo->TxWI.TXWI_N.NDPSndRate;
			pTxWI->TXWI_N.TXBF_PT_SCA = pATEInfo->TxWI.TXWI_N.TXBF_PT_SCA;
		}
#endif
#endif /* TXBF_SUPPORT */
	}
	else
	{
		ATEWriteTxWI(pAd, pTxWI, FALSE, FALSE, FALSE,  FALSE, FALSE, FALSE, 
			4, 0, pATEInfo->TxLength, 0, 0, 0, IFS_HTTXOP, FALSE, &TxHTPhyMode);

#ifdef TXBF_SUPPORT
		if (pATEInfo->bTxBF == 1)
		{
#ifdef RTMP_MAC
			if (IS_RT2883(pAd) || IS_RT3883(pAd) || IS_RT3593(pAd))
			{
				//pTxWI->TXWI_O.Reserved = 0;
				
	                        pTxWI->TXWI_O.Sounding = (pATEInfo->txSoundingMode == 1 ? 1 : 0);
                                if(pATEInfo->txSoundingMode)
                                {
                                   pTxWI->TXWI_O.iTxBF = FALSE;				
                                   pTxWI->TXWI_O.eTxBF = FALSE;     
                                }
                                else
                                {
				pTxWI->TXWI_O.iTxBF = pATEInfo->TxWI.TXWI_O.iTxBF;	
				pTxWI->TXWI_O.eTxBF = pATEInfo->TxWI.TXWI_O.eTxBF;
                                }
				pTxWI->TXWI_O.Autofallback = pATEInfo->TxWI.TXWI_O.Autofallback;
				pTxWI->TXWI_O.NDPSndBW = pATEInfo->TxWI.TXWI_O.BW;
				if (pATEInfo->txSoundingMode == 3)
					pTxWI->TXWI_O.NDPSndRate = 2;
				else if (pATEInfo->txSoundingMode == 2)
					pTxWI->TXWI_O.NDPSndRate = 1;
				else
					pTxWI->TXWI_O.NDPSndRate = 0;
			}
#endif

#ifdef RLT_MAC
			if (IS_MT76x2(pAd))
			{
				pTxWI->TXWI_N.Rsv4 = 0;
				
				pTxWI->TXWI_N.Sounding = (pATEInfo->txSoundingMode == 1 ? 1 : 0);
                                if(pATEInfo->txSoundingMode)
                                {
                                    pTxWI->TXWI_N.iTxBF = FALSE;	
				    pTxWI->TXWI_N.eTxBF = FALSE;    
                                }
                                else
                                {
				pTxWI->TXWI_N.iTxBF = pATEInfo->TxWI.TXWI_N.iTxBF;	
				pTxWI->TXWI_N.eTxBF = pATEInfo->TxWI.TXWI_N.eTxBF;
                                }			
				//pTxWI->TXWI_N.Autofallback = pATEInfo->TxWI.TXWI_N.Autofallback;
				pTxWI->TXWI_N.NDPSndBW = pATEInfo->TxWI.TXWI_N.BW;
				if (pATEInfo->txSoundingMode == 3)
					pTxWI->TXWI_N.NDPSndRate = 2;
				else if (pATEInfo->txSoundingMode == 2)
					pTxWI->TXWI_N.NDPSndRate = 1;
				else
					pTxWI->TXWI_N.NDPSndRate = 0;
				pTxWI->TXWI_N.TXBF_PT_SCA = pATEInfo->TxWI.TXWI_N.TXBF_PT_SCA;
			}
#endif
		}
#endif /* TXBF_SUPPORT */
	}
	
	/* fill 802.11 header */
#ifdef RALINK_QA
	if (pATEInfo->bQATxStart == TRUE) 
	{
		NdisMoveMemory(pDMAHeaderBufVA + TXWISize, pATEInfo->Header, pATEInfo->HLen);
	}
	else
#endif /* RALINK_QA */
	{
		pATEInfo->HLen = LENGTH_802_11;
#ifdef TXBF_SUPPORT
		TemplateFrame[0] = 0x08;	/* Data */
		TemplateFrame[1] = 0x00;
		if (pATEInfo->bTxBF && pATEInfo->txSoundingMode!=0)
		{
			/* QoS Data */
			//pATEInfo->HLen = 32;
			pATEInfo->HLen = 30;
			TemplateFrame[0] = 0x88;
			TemplateFrame[1] = 0x80;
		
			switch (pATEInfo->txSoundingMode)
			{
			case 1:
				/* Data Sounding */
				TemplateFrame[28] = pAd->CommonCfg.ETxBfNoncompress? 0x80: 0xc0;
				TemplateFrame[29] = 0x00;	
				break;
			case 2:
			case 3:
				/* 2 or 3 Stream NDP */
				TemplateFrame[28] = pAd->CommonCfg.ETxBfNoncompress? 0x80: 0xc0;
				TemplateFrame[29] = 0x01;	/* NDP Announce */
				break;
			default:
				TemplateFrame[28] = TemplateFrame[29] = 0x0;
			}
		}
#endif /* TXBF_SUPPORT */
		NdisMoveMemory(pDMAHeaderBufVA + TXWISize, TemplateFrame, pATEInfo->HLen);
		NdisMoveMemory(pDMAHeaderBufVA + TXWISize + 4, pATEInfo->Addr1, MAC_ADDR_LEN);
		NdisMoveMemory(pDMAHeaderBufVA + TXWISize + 10, pATEInfo->Addr2, MAC_ADDR_LEN);
		NdisMoveMemory(pDMAHeaderBufVA + TXWISize + 16, pATEInfo->Addr3, MAC_ADDR_LEN);
	}

#ifdef RT_BIG_ENDIAN
	RTMPFrameEndianChange(pAd, (((PUCHAR)pDMAHeaderBufVA) + TXWISize), DIR_READ, FALSE);
#endif /* RT_BIG_ENDIAN */

	/* alloc buffer for payload */
#ifdef RALINK_QA
	if ((pATEInfo->bQATxStart == TRUE) && (pATEInfo->DLen != 0)) 
	{
		pPacket = RTMP_AllocateRxPacketBuffer(pAd, ((POS_COOKIE)(pAd->OS_Cookie))->pci_dev,
			pATEInfo->DLen + 0x100, FALSE, &AllocVa, &AllocPa);
	}
	else
#endif /* RALINK_QA */
	{
		pPacket = RTMP_AllocateRxPacketBuffer(pAd, ((POS_COOKIE)(pAd->OS_Cookie))->pci_dev,
			pATEInfo->TxLength, FALSE, &AllocVa, &AllocPa);
	}

	if (pPacket == NULL)
	{
		pATEInfo->TxCount = 0;
		DBGPRINT_ERR(("%s : fail to alloc packet space.\n", __FUNCTION__));
		return -1;
	}

	pTxRing->Cell[TxIdx].pNextNdisPacket = pPacket;
	pDest = (PUCHAR) AllocVa;

#ifdef RALINK_QA
	if ((pATEInfo->bQATxStart == TRUE) && (pATEInfo->DLen != 0)) 
	{
		GET_OS_PKT_LEN(pPacket) = pATEInfo->DLen;
#ifndef LINUX
		GET_OS_PKT_TOTAL_LEN(pPacket) = pATEInfo->DLen;
#endif /* LIMUX */
	}
	else
#endif /* RALINK_QA */
	{
		GET_OS_PKT_LEN(pPacket) = pATEInfo->TxLength - pATEInfo->HLen;
#ifndef LINUX
		GET_OS_PKT_TOTAL_LEN(pPacket) = pATEInfo->TxLength - pATEInfo->HLen;
#endif /* LINUX */
	}

	/* prepare frame payload */
#ifdef RALINK_QA
	if ((pATEInfo->bQATxStart == TRUE) && (pATEInfo->DLen != 0))
	{
		/* copy pattern to payload */
		if ((pATEInfo->PLen != 0))
		{
			for (pos = 0; pos < pATEInfo->DLen; pos += pATEInfo->PLen)
			{
				memcpy(GET_OS_PKT_DATAPTR(pPacket) + pos, pATEInfo->Pattern, pATEInfo->PLen);
			}
		}
	}
	else
#endif /* RALINK_QA */
	{
		for (pos = 0; pos < GET_OS_PKT_LEN(pPacket); pos++)
		{
			if ( pATEInfo->bFixedPayload )
			{
				
				pDest[pos] = pATEInfo->Payload;
                //                pDest[pos] = 0xA5;
			} 
			else
			{
				pDest[pos] = RandomByte(pAd);
			}
		}
	}

	/* build Tx descriptor */
#ifndef RT_BIG_ENDIAN
	pTxD = (PTXD_STRUC) pTxRing->Cell[TxIdx].AllocVa;
	pTxInfo = (TXINFO_STRUC *)(pTxRing->Cell[TxIdx].AllocVa + sizeof(TXD_STRUC));
#else
	pDestTxD  = (PTXD_STRUC)pTxRing->Cell[TxIdx].AllocVa;
	NdisMoveMemory(&tx_hw_info[0], (UCHAR *)pDestTxD, TXD_SIZE);
	pTxD = (TXD_STRUC *)&tx_hw_info[0];
	pTxInfo = (TXINFO_STRUC *)(&tx_hw_info[0] + sizeof(TXD_STRUC));
#endif /* !RT_BIG_ENDIAN */

#ifdef RALINK_QA
	if (pATEInfo->bQATxStart == TRUE)
	{
		/* prepare TxD */
		NdisZeroMemory(pTxD, TXD_SIZE);
		/* build Tx descriptor */
		pTxD->SDPtr0 = RTMP_GetPhysicalAddressLow(pTxRing->Cell[TxIdx].DmaBuf.AllocPa);
		pTxD->SDLen0 = TXWISize + pATEInfo->HLen;
		pTxD->SDPtr1 = AllocPa;
		pTxD->SDLen1 = GET_OS_PKT_LEN(pPacket);
		pTxD->LastSec0 = (pTxD->SDLen1 == 0) ? 1 : 0;
		pTxD->LastSec1 = 1;
		ral_write_txd(pAd, pTxD, pTxInfo, FALSE, FIFO_EDCA);

		pDest = (PUCHAR)pTxWI;
		pDest += TXWISize;
		pHeader80211 = (PHEADER_802_11)pDest;
		
		/* modify sequence number... */
		if (pATEInfo->TxDoneCount == 0)
			pATEInfo->seq = pHeader80211->Sequence;
		else
			pHeader80211->Sequence = ++pATEInfo->seq;
	}
	else
#endif /* RALINK_QA */
	{
		TX_BLK txblk;		
		txblk.SrcBufLen = GET_OS_PKT_LEN(pPacket);		
		txblk.pSrcBufData = AllocVa;
		NdisZeroMemory(pTxD, TXD_SIZE);
		/* build Tx descriptor */
		pTxD->SDPtr0 = RTMP_GetPhysicalAddressLow (pTxRing->Cell[TxIdx].DmaBuf.AllocPa);
		pTxD->SDLen0 = TXWISize + pATEInfo->HLen /* LENGTH_802_11 */;
		pTxD->SDPtr1 = PCI_MAP_SINGLE(pAd, &txblk, 0, 1, RTMP_PCI_DMA_TODEVICE);
		pTxD->SDLen1 = GET_OS_PKT_LEN(pPacket);
		pTxD->LastSec0 = (pTxD->SDLen1 == 0) ? 1 : 0;
		pTxD->LastSec1 = 1;
		ral_write_txd(pAd, pTxD, pTxInfo, FALSE, FIFO_EDCA);
	}

#ifdef RT_BIG_ENDIAN
	RTMPWIEndianChange(pAd, (PUCHAR)pTxWI, TYPE_TXWI);
	RTMPFrameEndianChange(pAd, (((PUCHAR)pDMAHeaderBufVA) + TXWISize), DIR_WRITE, FALSE);
	RTMPDescriptorEndianChange((PUCHAR)pTxD, TYPE_TXD);
	WriteBackToDescriptor((PUCHAR)pDestTxD, (PUCHAR)pTxD, FALSE, TYPE_TXD);
#endif /* RT_BIG_ENDIAN */
//#endif
	return 0;
}