This commit is contained in:
2026-09-13 13:30:21 +08:00
commit a6bbd520cf
2744 changed files with 1598795 additions and 0 deletions
+942
View File
@@ -0,0 +1,942 @@
/******************************************************************************
*
* Copyright(c) 2007 - 2017 Realtek Corporation.
*
* This program is free software; you can redistribute it and/or modify it
* under the terms of version 2 of the GNU General Public License as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful, but WITHOUT
* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
* more details.
*
*****************************************************************************/
#define _RTL8814A_CMD_C_
/* #include <drv_types.h> */
#include <rtl8814a_hal.h>
#define CONFIG_H2C_EF
#define RTL8814_MAX_H2C_BOX_NUMS 4
#define RTL8814_MAX_CMD_LEN 7
#define RTL8814_MESSAGE_BOX_SIZE 4
#define RTL8814_EX_MESSAGE_BOX_SIZE 4
static u8 _is_fw_read_cmd_down(_adapter *padapter, u8 msgbox_num)
{
u8 read_down = _FALSE;
int retry_cnts = 100;
u8 valid;
/* RTW_INFO(" _is_fw_read_cmd_down ,reg_1cc(%x),msg_box(%d)...\n",rtw_read8(padapter,REG_HMETFR),msgbox_num); */
do {
valid = rtw_read8(padapter, REG_HMETFR) & BIT(msgbox_num);
if (0 == valid)
read_down = _TRUE;
else
rtw_msleep_os(1);
} while ((!read_down) && (retry_cnts--));
return read_down;
}
/*****************************************
* H2C Msg format :
* 0x1DF - 0x1D0
*| 31 - 8 | 7-5 4 - 0 |
*| h2c_msg |Class_ID CMD_ID |
*
* Extend 0x1FF - 0x1F0
*|31 - 0 |
*|ext_msg|
******************************************/
s32 FillH2CCmd_8814(PADAPTER padapter, u8 ElementID, u32 CmdLen, u8 *pCmdBuffer)
{
u8 h2c_box_num;
u32 msgbox_addr;
u32 msgbox_ex_addr = 0;
HAL_DATA_TYPE *pHalData = GET_HAL_DATA(padapter);
u8 cmd_idx ;
u32 h2c_cmd = 0;
u32 h2c_cmd_ex = 0;
s32 ret = _FAIL;
padapter = GET_PRIMARY_ADAPTER(padapter);
pHalData = GET_HAL_DATA(padapter);
if (pHalData->bFWReady == _FALSE) {
/* RTW_INFO("FillH2CCmd_8814(): return H2C cmd because fw is not ready\n"); */
return ret;
}
_enter_critical_mutex(&(adapter_to_dvobj(padapter)->h2c_fwcmd_mutex), NULL);
if (!pCmdBuffer)
goto exit;
if (CmdLen > RTL8814_MAX_CMD_LEN) {
RTW_WARN("%s, CmdLen: %d > %d, return!\n", __func__, CmdLen, RTL8814_MAX_CMD_LEN);
goto exit;
}
if (rtw_is_surprise_removed(padapter))
goto exit;
/* pay attention to if race condition happened in H2C cmd setting. */
do {
h2c_box_num = pHalData->LastHMEBoxNum;
if (!_is_fw_read_cmd_down(padapter, h2c_box_num)) {
RTW_INFO(" fw read cmd failed...\n");
goto exit;
}
*(u8 *)(&h2c_cmd) = ElementID;
if (CmdLen <= 3) {
_rtw_memcpy((u8 *)(&h2c_cmd) + 1, pCmdBuffer, CmdLen);
h2c_cmd_ex = 0;
} else {
_rtw_memcpy((u8 *)(&h2c_cmd) + 1, pCmdBuffer, 3);
_rtw_memcpy((u8 *)(&h2c_cmd_ex), pCmdBuffer + 3, CmdLen - 3);
}
/* Write Ext command */
msgbox_ex_addr = REG_HMEBOX_EXT0_8814A + (h2c_box_num * RTL8814_EX_MESSAGE_BOX_SIZE);
#ifdef CONFIG_H2C_EF
for (cmd_idx = 0; cmd_idx < RTL8814_MESSAGE_BOX_SIZE; cmd_idx++)
rtw_write8(padapter, msgbox_ex_addr + cmd_idx, *((u8 *)(&h2c_cmd_ex) + cmd_idx));
#else
h2c_cmd_ex = le32_to_cpu(h2c_cmd_ex);
rtw_write32(padapter, msgbox_ex_addr, h2c_cmd_ex);
#endif
/* Write command */
msgbox_addr = REG_HMEBOX_0 + (h2c_box_num * RTL8814_MESSAGE_BOX_SIZE);
#ifdef CONFIG_H2C_EF
for (cmd_idx = 0; cmd_idx < RTL8814_MESSAGE_BOX_SIZE; cmd_idx++)
rtw_write8(padapter, msgbox_addr + cmd_idx, *((u8 *)(&h2c_cmd) + cmd_idx));
#else
h2c_cmd = le32_to_cpu(h2c_cmd);
rtw_write32(padapter, msgbox_addr, h2c_cmd);
#endif
/* RTW_INFO("MSG_BOX:%d,CmdLen(%d), reg:0x%x =>h2c_cmd:0x%x, reg:0x%x =>h2c_cmd_ex:0x%x ..\n" */
/* ,pHalData->LastHMEBoxNum ,CmdLen,msgbox_addr,h2c_cmd,msgbox_ex_addr,h2c_cmd_ex); */
pHalData->LastHMEBoxNum = (h2c_box_num + 1) % RTL8814_MAX_H2C_BOX_NUMS;
} while (0);
ret = _SUCCESS;
exit:
_exit_critical_mutex(&(adapter_to_dvobj(padapter)->h2c_fwcmd_mutex), NULL);
return ret;
}
#ifdef CONFIG_FW_CORRECT_BCN
void rtl8814_fw_update_beacon_cmd(_adapter *padapter)
{
u8 param[2] = {0};
u16 txpktbuf_bndy;
SET_8814A_H2CCMD_BCNHWSEQ_EN(param, 1);
SET_8814A_H2CCMD_BCNHWSEQ_BCN_NUMBER(param, 0);
SET_8814A_H2CCMD_BCNHWSEQ_HWSEQ(param, 1);
SET_8814A_H2CCMD_BCNHWSEQ_EXHWSEQ(param, 0);
SET_8814A_H2CCMD_BCNHWSEQ_PAGE(param, 0);
if (GET_HAL_DATA(padapter)->firmware_version < 23)
/* FW v21, v22 use H2C_BCNHWSEQ = 0xC2 */
FillH2CCmd_8814(padapter, 0xC2, 2, param);
else
FillH2CCmd_8814(padapter, H2C_BCNHWSEQ, 2, param);
/*RTW_INFO("%s, %d, correct beacon HW sequence, FirmwareVersion=%d, H2C_BCNHWSEQ=%d\n", __func__, __LINE__, GET_HAL_DATA(padapter)->firmware_version, H2C_BCNHWSEQ);*/
}
#endif
u8 Get_VHT_ENI(
u32 IOTAction,
u32 WirelessMode,
u32 ratr_bitmap
)
{
u8 Ret = 0;
if (WirelessMode == WIRELESS_11_24AC) {
if (ratr_bitmap & 0xfff00000) /* Mix , 2SS */
Ret = 3;
else /* Mix, 1SS */
Ret = 2;
} else if (WirelessMode == WIRELESS_11_5AC) {
Ret = 1; /* VHT */
}
return Ret << 4;
}
BOOLEAN
Get_RA_ShortGI_8814(
PADAPTER Adapter,
struct sta_info *psta,
u8 shortGIrate,
u32 ratr_bitmap
)
{
BOOLEAN bShortGI;
struct mlme_ext_priv *pmlmeext = &Adapter->mlmeextpriv;
struct mlme_ext_info *pmlmeinfo = &(pmlmeext->mlmext_info);
bShortGI = shortGIrate;
#ifdef CONFIG_80211AC_VHT
if (bShortGI &&
is_supported_vht(psta->wireless_mode) &&
(pmlmeinfo->assoc_AP_vendor == HT_IOT_PEER_REALTEK_JAGUAR_CCUTAP) &&
TEST_FLAG(psta->vhtpriv.ldpc_cap, LDPC_VHT_ENABLE_TX)
) {
if (ratr_bitmap & 0xC0000000)
bShortGI = _FALSE;
}
#endif /* CONFIG_80211AC_VHT */
return bShortGI;
}
void
Set_RA_LDPC_8814(
struct sta_info *psta,
BOOLEAN bLDPC
)
{
if (psta == NULL)
return;
#ifdef CONFIG_80211AC_VHT
if (psta->wireless_mode == WIRELESS_11_5AC) {
if (bLDPC && TEST_FLAG(psta->vhtpriv.ldpc_cap, LDPC_VHT_CAP_TX))
SET_FLAG(psta->vhtpriv.ldpc_cap, LDPC_VHT_ENABLE_TX);
else
CLEAR_FLAG(psta->vhtpriv.ldpc_cap, LDPC_VHT_ENABLE_TX);
} else if (is_supported_ht(psta->wireless_mode) || is_supported_vht(psta->wireless_mode)) {
if (bLDPC && TEST_FLAG(psta->htpriv.ldpc_cap, LDPC_HT_CAP_TX))
SET_FLAG(psta->htpriv.ldpc_cap, LDPC_HT_ENABLE_TX);
else
CLEAR_FLAG(psta->htpriv.ldpc_cap, LDPC_HT_ENABLE_TX);
}
update_ldpc_stbc_cap(psta);
#endif /* CONFIG_80211AC_VHT */
/* RTW_INFO("MacId %d bLDPC %d\n", psta->cmn.mac_id, bLDPC); */
}
void rtl8814_req_txrpt_cmd(PADAPTER padapter, u8 macid)
{
u8 u1H2CApReqRptParm[H2C_AP_REQ_TXRPT_LEN] = {0};
SET_8814A_H2CCMD_TXREP_PARM_STA1(u1H2CApReqRptParm, macid);
SET_8814A_H2CCMD_TXREP_PARM_STA2(u1H2CApReqRptParm, 0xff);
SET_8814A_H2CCMD_TXREP_PARM_RTY(u1H2CApReqRptParm, 0x00);
FillH2CCmd_8814(padapter, H2C_AP_REQ_TXRPT, H2C_AP_REQ_TXRPT_LEN, u1H2CApReqRptParm);
SET_8814A_H2CCMD_TXREP_PARM_RTY(u1H2CApReqRptParm, 0x02);
FillH2CCmd_8814(padapter, H2C_AP_REQ_TXRPT, H2C_AP_REQ_TXRPT_LEN, u1H2CApReqRptParm);
}
void rtl8814_set_FwPwrMode_cmd(PADAPTER padapter, u8 PSMode)
{
u8 u1H2CSetPwrMode[H2C_PWRMODE_LEN] = {0};
struct pwrctrl_priv *pwrpriv = adapter_to_pwrctl(padapter);
u8 Mode = 0, RLBM = 0, PowerState = 0, LPSAwakeIntvl = 2;
HAL_DATA_TYPE *pHalData = GET_HAL_DATA(padapter);
u8 allQueueUAPSD = 0;
RTW_INFO("%s: Mode=%d SmartPS=%d\n", __FUNCTION__, PSMode, pwrpriv->smart_ps);
switch (PSMode) {
case PS_MODE_ACTIVE:
Mode = 0;
break;
case PS_MODE_MIN:
Mode = 1;
break;
case PS_MODE_MAX:
RLBM = 1;
Mode = 1;
break;
case PS_MODE_DTIM:
RLBM = 2;
Mode = 1;
break;
case PS_MODE_UAPSD_WMM:
Mode = 2;
break;
default:
Mode = 0;
break;
}
if (Mode > PS_MODE_ACTIVE) {
#ifdef CONFIG_BT_COEXIST
if ((rtw_btcoex_IsBtControlLps(padapter) == _TRUE) && (_TRUE == pHalData->EEPROMBluetoothCoexist))
PowerState = rtw_btcoex_RpwmVal(padapter);
else
#endif /* CONFIG_BT_COEXIST */
PowerState = 0x00;/* AllON(0x0C), RFON(0x04), RFOFF(0x00) */
#ifdef CONFIG_EXT_CLK
Mode |= BIT(7);/* supporting 26M XTAL CLK_Request feature. */
#endif /* CONFIG_EXT_CLK */
} else
PowerState = 0x0C;/* AllON(0x0C), RFON(0x04), RFOFF(0x00) */
/* 0: Active, 1: LPS, 2: WMMPS */
SET_8814A_H2CCMD_PWRMODE_PARM_MODE(u1H2CSetPwrMode, Mode);
/* 0:Min, 1:Max , 2:User define */
SET_8814A_H2CCMD_PWRMODE_PARM_RLBM(u1H2CSetPwrMode, RLBM);
/* (LPS) smart_ps: 0: PS_Poll, 1: PS_Poll , 2: NullData */
/* (WMM)smart_ps: 0:PS_Poll, 1:NullData */
SET_8814A_H2CCMD_PWRMODE_PARM_SMART_PS(u1H2CSetPwrMode, pwrpriv->smart_ps);
/* AwakeInterval: Unit is beacon interval, this field is only valid in PS_DTIM mode */
SET_8814A_H2CCMD_PWRMODE_PARM_BCN_PASS_TIME(u1H2CSetPwrMode, LPSAwakeIntvl);
/* (WMM only)bAllQueueUAPSD */
SET_8814A_H2CCMD_PWRMODE_PARM_ALL_QUEUE_UAPSD(u1H2CSetPwrMode, allQueueUAPSD);
/* AllON(0x0C), RFON(0x04), RFOFF(0x00) */
SET_8814A_H2CCMD_PWRMODE_PARM_PWR_STATE(u1H2CSetPwrMode, PowerState);
#ifdef CONFIG_BT_COEXIST
if (_TRUE == pHalData->EEPROMBluetoothCoexist)
rtw_btcoex_RecordPwrMode(padapter, u1H2CSetPwrMode, sizeof(u1H2CSetPwrMode));
#endif /* CONFIG_BT_COEXIST */
/* RTW_INFO("u1H2CSetPwrMode="MAC_FMT"\n", MAC_ARG(u1H2CSetPwrMode)); */
FillH2CCmd_8814(padapter, H2C_SET_PWR_MODE, sizeof(u1H2CSetPwrMode), u1H2CSetPwrMode);
}
#ifdef CONFIG_TDLS
#ifdef CONFIG_TDLS_CH_SW
void rtl8814_set_BcnEarly_C2H_Rpt_cmd(PADAPTER padapter, u8 enable)
{
u8 u1H2CSetPwrMode[H2C_PWRMODE_LEN] = {0};
SET_8814A_H2CCMD_PWRMODE_PARM_MODE(u1H2CSetPwrMode, 1);
SET_8814A_H2CCMD_PWRMODE_PARM_RLBM(u1H2CSetPwrMode, 1);
SET_8814A_H2CCMD_PWRMODE_PARM_SMART_PS(u1H2CSetPwrMode, 0);
SET_8814A_H2CCMD_PWRMODE_PARM_BCN_PASS_TIME(u1H2CSetPwrMode, 0);
SET_8814A_H2CCMD_PWRMODE_PARM_ALL_QUEUE_UAPSD(u1H2CSetPwrMode, 0);
SET_8814A_H2CCMD_PWRMODE_PARM_BCN_EARLY_C2H_RPT(u1H2CSetPwrMode, enable);
SET_8814A_H2CCMD_PWRMODE_PARM_PWR_STATE(u1H2CSetPwrMode, 0x0C);
FillH2CCmd_8814(padapter, H2C_SET_PWR_MODE, sizeof(u1H2CSetPwrMode), u1H2CSetPwrMode);
}
#endif
#endif
void rtl8814a_set_FwPwrModeInIPS_cmd(PADAPTER padapter, u8 cmd_param)
{
struct pwrctrl_priv *pwrpriv = adapter_to_pwrctl(padapter);
u8 parm[H2C_INACTIVE_PS_LEN] = {0};
/* u8 cmd_param; */ /* BIT0:enable, BIT1:NoConnect32k */
if (cmd_param) {
#ifdef CONFIG_BT_COEXIST
rtw_btcoex_IpsNotify(padapter, pwrpriv->ips_mode_req);
#endif
/* Enter IPS */
RTW_INFO("%s: issue H2C to FW when entering IPS\n", __func__);
parm[0] = 0x1;/* suggest by Isaac.Hsu*/
rtw_hal_fill_h2c_cmd(padapter, /* H2C_FWLPS_IN_IPS_, */
H2C_INACTIVE_PS_,
H2C_INACTIVE_PS_LEN, parm);
} else {
/* Leave IPS */
RTW_INFO("%s: Leaving IPS in FWLPS state\n", __func__);
parm[0] = 0x0;
parm[1] = 0x0;
parm[2] = 0x0;
rtw_hal_fill_h2c_cmd(padapter, H2C_INACTIVE_PS_,
H2C_INACTIVE_PS_LEN, parm);
#ifdef CONFIG_BT_COEXIST
rtw_btcoex_IpsNotify(padapter, IPS_NONE);
#endif
}
}
/*
* Description: Get the reserved page number in Tx packet buffer.
* Retrun value: the page number.
* 2012.08.09, by tynli.
* */
u8
GetTxBufferRsvdPageNum8814(_adapter *Adapter, bool bWoWLANBoundary)
{
HAL_DATA_TYPE *pHalData = GET_HAL_DATA(Adapter);
u8 RsvdPageNum = 0;
u16 TxPageBndy = LAST_ENTRY_OF_TX_PKT_BUFFER_8814A; /* default reseved 1 page for the IC type which is undefined. */
if (bWoWLANBoundary)
rtw_hal_get_def_var(Adapter, HAL_DEF_TX_PAGE_BOUNDARY_WOWLAN, (u8 *)&TxPageBndy);
else
rtw_hal_get_def_var(Adapter, HAL_DEF_TX_PAGE_BOUNDARY, (u8 *)&TxPageBndy);
RsvdPageNum = LAST_ENTRY_OF_TX_PKT_BUFFER_8814A - TxPageBndy + 1;
return RsvdPageNum;
}
void rtl8814_download_rsvd_page(PADAPTER padapter, u8 mstatus)
{
HAL_DATA_TYPE *pHalData = GET_HAL_DATA(padapter);
struct mlme_ext_priv *pmlmeext = &(padapter->mlmeextpriv);
struct mlme_ext_info *pmlmeinfo = &(pmlmeext->mlmext_info);
BOOLEAN bSendBeacon = _FALSE;
BOOLEAN bcn_valid = _FALSE;
u8 DLBcnCount = 0;
u32 poll = 0;
u8 RegFwHwTxQCtrl;
RTW_INFO("%s mstatus(%x)\n", __FUNCTION__, mstatus);
if (mstatus == 1) {
u8 bcn_ctrl = rtw_read8(padapter, REG_BCN_CTRL);
/* We should set AID, correct TSF, HW seq enable before set JoinBssReport to Fw in 88/92C. */
/* Suggested by filen. Added by tynli. */
rtw_write16(padapter, REG_BCN_PSR_RPT, (0xC000 | pmlmeinfo->aid));
/* Hw sequende enable by dedault. 2010.06.23. by tynli. */
/* rtw_write16(padapter, REG_NQOS_SEQ, ((pmlmeext->mgnt_seq+100)&0xFFF)); */
/* rtw_write8(padapter, REG_HWSEQ_CTRL, 0xFF); */
/* Set REG_CR bit 8. DMA beacon by SW. */
rtw_write8(padapter, REG_CR + 1,
rtw_read8(padapter, REG_CR + 1) | BIT0);
/*RTW_INFO("%s-%d: enable SW BCN, REG_CR=0x%x\n", __func__, __LINE__, rtw_read32(padapter, REG_CR));*/
/* Disable Hw protection for a time which revserd for Hw sending beacon. */
/* Fix download reserved page packet fail that access collision with the protection time. */
/* 2010.05.11. Added by tynli. */
rtw_write8(padapter, REG_BCN_CTRL, (bcn_ctrl & (~EN_BCN_FUNCTION)) | DIS_TSF_UDT);
RegFwHwTxQCtrl = rtw_read8(padapter, REG_FWHW_TXQ_CTRL + 2);
if (RegFwHwTxQCtrl & BIT6) {
RTW_INFO("HalDownloadRSVDPage(): There is an Adapter is sending beacon.\n");
bSendBeacon = _TRUE;
}
/* Set FWHW_TXQ_CTRL 0x422[6]=0 to tell Hw the packet is not a real beacon frame. */
RegFwHwTxQCtrl &= (~BIT6);
rtw_write8(padapter, REG_FWHW_TXQ_CTRL + 2, RegFwHwTxQCtrl);
/* Clear beacon valid check bit. */
rtw_hal_set_hwreg(padapter, HW_VAR_BCN_VALID, NULL);
DLBcnCount = 0;
poll = 0;
do {
/* download rsvd page. */
rtw_hal_set_fw_rsvd_page(padapter, _FALSE);
DLBcnCount++;
do {
rtw_yield_os();
/* rtw_mdelay_os(10); */
/* check rsvd page download OK. */
rtw_hal_get_hwreg(padapter, HW_VAR_BCN_VALID, (u8 *)(&bcn_valid));
poll++;
} while (!bcn_valid && (poll % 10) != 0 && !RTW_CANNOT_RUN(padapter));
} while (!bcn_valid && DLBcnCount <= 100 && !RTW_CANNOT_RUN(padapter));
/* RT_ASSERT(bcn_valid, ("HalDownloadRSVDPage88ES(): 1 Download RSVD page failed!\n")); */
if (RTW_CANNOT_RUN(padapter))
;
else if (!bcn_valid)
RTW_ERR(ADPT_FMT": 1 DL RSVD page failed! DLBcnCount:%u, poll:%u\n",
ADPT_ARG(padapter) , DLBcnCount, poll);
else {
struct pwrctrl_priv *pwrctl = adapter_to_pwrctl(padapter);
pwrctl->fw_psmode_iface_id = padapter->iface_id;
rtw_hal_set_fw_rsvd_page(padapter, _TRUE);
RTW_INFO(ADPT_FMT": 1 DL RSVD page success! DLBcnCount:%u, poll:%u\n",
ADPT_ARG(padapter), DLBcnCount, poll);
}
/* restore bcn_ctrl */
rtw_write8(padapter, REG_BCN_CTRL, bcn_ctrl);
/* To make sure that if there exists an adapter which would like to send beacon. */
/* If exists, the origianl value of 0x422[6] will be 1, we should check this to */
/* prevent from setting 0x422[6] to 0 after download reserved page, or it will cause */
/* the beacon cannot be sent by HW. */
/* 2010.06.23. Added by tynli. */
if (bSendBeacon) {
RegFwHwTxQCtrl |= BIT6;
rtw_write8(padapter, REG_FWHW_TXQ_CTRL + 2, RegFwHwTxQCtrl);
}
/* */
/* Update RSVD page location H2C to Fw. */
/* */
if (bcn_valid) {
rtw_hal_set_hwreg(padapter, HW_VAR_BCN_VALID, NULL);
RTW_INFO("Set RSVD page location to Fw.\n");
/* FillH2CCmd88E(Adapter, H2C_88E_RSVDPAGE, H2C_RSVDPAGE_LOC_LENGTH, pMgntInfo->u1RsvdPageLoc); */
}
/* Do not enable HW DMA BCN or it will cause Pcie interface hang by timing issue. 2011.11.24. by tynli. */
/* if(!padapter->bEnterPnpSleep) */
#ifndef CONFIG_PCI_HCI
{
#ifndef RTL8814AE_SW_BCN
/* Clear CR[8] or beacon packet will not be send to TxBuf anymore. */
rtw_write8(padapter, REG_CR + 1,
rtw_read8(padapter, REG_CR + 1) & (~BIT0));
/*RTW_INFO("%s-%d: disable SW BCN, REG_CR=0x%x\n", __func__, __LINE__, rtw_read32(padapter, REG_CR));*/
#endif
}
#endif /* !CONFIG_PCI_HCI */
}
}
void rtl8814_set_FwJoinBssReport_cmd(PADAPTER padapter, u8 mstatus)
{
if (mstatus == 1)
rtl8814_download_rsvd_page(padapter, RT_MEDIA_CONNECT);
}
#ifdef CONFIG_P2P_PS
void rtl8814_set_p2p_ps_offload_cmd(_adapter *padapter, u8 p2p_ps_state)
{
HAL_DATA_TYPE *pHalData = GET_HAL_DATA(padapter);
struct pwrctrl_priv *pwrpriv = adapter_to_pwrctl(padapter);
struct wifidirect_info *pwdinfo = &(padapter->wdinfo);
u8 *p2p_ps_offload = (u8 *)&pHalData->p2p_ps_offload;
u8 i;
#if 1
switch (p2p_ps_state) {
case P2P_PS_DISABLE:
RTW_INFO("P2P_PS_DISABLE\n");
_rtw_memset(p2p_ps_offload, 0, 1);
break;
case P2P_PS_ENABLE:
RTW_INFO("P2P_PS_ENABLE\n");
/* update CTWindow value. */
if (pwdinfo->ctwindow > 0) {
SET_8814A_H2CCMD_P2P_PS_OFFLOAD_CTWINDOW_EN(p2p_ps_offload, 1);
rtw_write8(padapter, REG_P2P_CTWIN, pwdinfo->ctwindow);
}
/* hw only support 2 set of NoA */
for (i = 0 ; i < pwdinfo->noa_num ; i++) {
/* To control the register setting for which NOA */
rtw_write8(padapter, REG_NOA_DESC_SEL, (i << 4));
if (i == 0)
SET_8814A_H2CCMD_P2P_PS_OFFLOAD_NOA0_EN(p2p_ps_offload, 1);
else
SET_8814A_H2CCMD_P2P_PS_OFFLOAD_NOA1_EN(p2p_ps_offload, 1);
/* config P2P NoA Descriptor Register */
/* RTW_INFO("%s(): noa_duration = %x\n",__FUNCTION__,pwdinfo->noa_duration[i]); */
rtw_write32(padapter, REG_NOA_DESC_DURATION, pwdinfo->noa_duration[i]);
/* RTW_INFO("%s(): noa_interval = %x\n",__FUNCTION__,pwdinfo->noa_interval[i]); */
rtw_write32(padapter, REG_NOA_DESC_INTERVAL, pwdinfo->noa_interval[i]);
/* RTW_INFO("%s(): start_time = %x\n",__FUNCTION__,pwdinfo->noa_start_time[i]); */
rtw_write32(padapter, REG_NOA_DESC_START, pwdinfo->noa_start_time[i]);
/* RTW_INFO("%s(): noa_count = %x\n",__FUNCTION__,pwdinfo->noa_count[i]); */
rtw_write8(padapter, REG_NOA_DESC_COUNT, pwdinfo->noa_count[i]);
}
if ((pwdinfo->opp_ps == 1) || (pwdinfo->noa_num > 0)) {
/* rst p2p circuit: reg 0x5F0 */
rtw_write8(padapter, REG_P2P_RST_8814A, BIT(0)); /* rst p2p 0 circuit NOA 0 */
SET_8814A_H2CCMD_P2P_PS_OFFLOAD_ENABLE(p2p_ps_offload, 1);
if (pwdinfo->role == P2P_ROLE_GO) {
/* 1: Owner, 0: Client */
SET_8814A_H2CCMD_P2P_PS_OFFLOAD_ROLE(p2p_ps_offload, 1);
SET_8814A_H2CCMD_P2P_PS_OFFLOAD_ALLSTASLEEP(p2p_ps_offload, 0);
} else {
/* 1: Owner, 0: Client */
SET_8814A_H2CCMD_P2P_PS_OFFLOAD_ROLE(p2p_ps_offload, 0);
}
SET_8814A_H2CCMD_P2P_PS_OFFLOAD_DISCOVERY(p2p_ps_offload, 0);
}
break;
case P2P_PS_SCAN:
RTW_INFO("P2P_PS_SCAN\n");
SET_8814A_H2CCMD_P2P_PS_OFFLOAD_DISCOVERY(p2p_ps_offload, 1);
break;
case P2P_PS_SCAN_DONE:
RTW_INFO("P2P_PS_SCAN_DONE\n");
SET_8814A_H2CCMD_P2P_PS_OFFLOAD_DISCOVERY(p2p_ps_offload, 0);
pwdinfo->p2p_ps_state = P2P_PS_ENABLE;
break;
default:
break;
}
RTW_INFO("P2P_PS_OFFLOAD : %x\n", p2p_ps_offload[0]);
FillH2CCmd_8814(padapter, H2C_P2P_PS_OFFLOAD, 1, p2p_ps_offload);
#endif
}
#endif /* CONFIG_P2P */
static void
C2HTxBeamformingHandler_8814(
PADAPTER Adapter,
u8 *CmdBuf,
u8 CmdLen
)
{
#ifdef CONFIG_BEAMFORMING /*PHYDM_BF - (BEAMFORMING_SUPPORT == 1)*/
u8 status = CmdBuf[0] & BIT0;
HAL_DATA_TYPE *pHalData = GET_HAL_DATA(Adapter);
struct dm_struct *pDM_Odm = &pHalData->odmpriv;
/*beamforming_check_sounding_success(Adapter, status);*/
phydm_beamforming_end_sw(pDM_Odm, status);
#endif /*CONFIG_BEAMFORMING*/
}
static void
C2HTxFeedbackHandler_8814(
PADAPTER Adapter,
u8 *CmdBuf,
u8 CmdLen
)
{
#ifdef CONFIG_XMIT_ACK
if (GET_8814A_C2H_TX_RPT_RETRY_OVER(CmdBuf) | GET_8814A_C2H_TX_RPT_LIFE_TIME_OVER(CmdBuf))
rtw_ack_tx_done(&Adapter->xmitpriv, RTW_SCTX_DONE_CCX_PKT_FAIL);
else
rtw_ack_tx_done(&Adapter->xmitpriv, RTW_SCTX_DONE_SUCCESS);
#endif
}
static void
C2HTxRPTHandler_8814(
PADAPTER Adapter,
u8 *CmdBuf,
u8 CmdLen
)
{
_irqL irqL;
u8 macid = 0, IniRate = 0;
u16 TxOK = 0, TxFail = 0;
struct sta_priv *pstapriv = &(GET_PRIMARY_ADAPTER(Adapter))->stapriv, *pstapriv_original = NULL;
struct sta_info *psta = NULL;
struct sta_info *pbcmc_stainfo = rtw_get_bcmc_stainfo(Adapter);
_list *plist, *phead;
PADAPTER adapter_ognl = NULL;
if(!pstapriv->gotc2h) {
RTW_WARN("%s,%d: No gotc2h!\n", __FUNCTION__, __LINE__);
return;
}
adapter_ognl = rtw_get_iface_by_id(GET_PRIMARY_ADAPTER(Adapter), pstapriv->c2h_adapter_id);
if(!adapter_ognl) {
RTW_WARN("%s: No adapter!\n", __FUNCTION__);
return;
}
psta = rtw_get_stainfo(&adapter_ognl->stapriv, pstapriv->c2h_sta_mac);
if (!psta) {
RTW_WARN("%s: No corresponding sta_info!\n", __FUNCTION__);
return;
}
macid = GET_8814A_C2H_TC2H_APREQ_TXRPT_MACID1(CmdBuf);
TxOK = GET_8814A_C2H_TC2H_APREQ_TXRPT_TXOK1(CmdBuf);
TxFail = GET_8814A_C2H_TC2H_APREQ_TXRPT_TXFAIL1(CmdBuf);
IniRate = GET_8814A_C2H_TC2H_APREQ_TXRPT_INIRATE1(CmdBuf);
psta->sta_stats.tx_ok_cnt = TxOK;
psta->sta_stats.tx_fail_cnt = TxFail;
}
static void
C2HSPC_STAT_8814(
PADAPTER Adapter,
u8 *CmdBuf,
u8 CmdLen
)
{
_irqL irqL;
struct sta_priv *pstapriv = &(GET_PRIMARY_ADAPTER(Adapter))->stapriv;
struct sta_info *psta = NULL;
_list *plist, *phead;
PADAPTER adapter_ognl = NULL;
if(!pstapriv->gotc2h) {
RTW_WARN("%s, %d: No gotc2h!\n", __FUNCTION__, __LINE__);
return;
}
adapter_ognl = rtw_get_iface_by_id(GET_PRIMARY_ADAPTER(Adapter), pstapriv->c2h_adapter_id);
if(!adapter_ognl) {
RTW_WARN("%s: No adapter!\n", __FUNCTION__);
return;
}
psta = rtw_get_stainfo(&adapter_ognl->stapriv, pstapriv->c2h_sta_mac);
if (!psta) {
RTW_WARN("%s: No corresponding sta_info!\n", __FUNCTION__);
return;
}
psta->sta_stats.tx_retry_cnt = GET_8814A_C2H_SPC_STAT_TYPEB_RETRY1(CmdBuf);
rtw_sctx_done(&pstapriv->gotc2h);
}
s32 c2h_handler_8814a(_adapter *adapter, u8 id, u8 seq, u8 plen, u8 *payload)
{
s32 ret = _SUCCESS;
switch (id) {
case C2H_TXBF:
RTW_INFO("[C2H], C2H_TXBF!!\n");
C2HTxBeamformingHandler_8814(adapter, payload, plen);
break;
case C2H_CCX_TX_RPT:
C2HTxFeedbackHandler_8814(adapter, payload, plen);
break;
case C2H_AP_REQ_TXRPT:
C2HTxRPTHandler_8814(adapter, payload, plen);
break;
case C2H_SPC_STAT:
C2HSPC_STAT_8814(adapter, payload, plen);
break;
default:
ret = _FAIL;
break;
}
return ret;
}
#ifdef CONFIG_BT_COEXIST
#if 0
static void rtl8814_set_FwRsvdPage_cmd(PADAPTER padapter, PRSVDPAGE_LOC rsvdpageloc)
{
u8 u1H2CRsvdPageParm[H2C_RSVDPAGE_LOC_LEN] = {0};
RTW_INFO("8812au/8821/8811 RsvdPageLoc: ProbeRsp=%d PsPoll=%d Null=%d QoSNull=%d BTNull=%d\n",
rsvdpageloc->LocProbeRsp, rsvdpageloc->LocPsPoll,
rsvdpageloc->LocNullData, rsvdpageloc->LocQosNull,
rsvdpageloc->LocBTQosNull);
SET_H2CCMD_RSVDPAGE_LOC_PROBE_RSP(u1H2CRsvdPageParm, rsvdpageloc->LocProbeRsp);
SET_H2CCMD_RSVDPAGE_LOC_PSPOLL(u1H2CRsvdPageParm, rsvdpageloc->LocPsPoll);
SET_H2CCMD_RSVDPAGE_LOC_NULL_DATA(u1H2CRsvdPageParm, rsvdpageloc->LocNullData);
SET_H2CCMD_RSVDPAGE_LOC_QOS_NULL_DATA(u1H2CRsvdPageParm, rsvdpageloc->LocQosNull);
SET_H2CCMD_RSVDPAGE_LOC_BT_QOS_NULL_DATA(u1H2CRsvdPageParm, rsvdpageloc->LocBTQosNull);
RTW_DBG_DUMP("u1H2CRsvdPageParm:", u1H2CRsvdPageParm, H2C_RSVDPAGE_LOC_LEN);
FillH2CCmd_8814(padapter, H2C_RSVD_PAGE, H2C_RSVDPAGE_LOC_LEN, u1H2CRsvdPageParm);
}
#ifdef CONFIG_WOWLAN
static void rtl8814_set_FwAoacRsvdPage_cmd(PADAPTER padapter, PRSVDPAGE_LOC rsvdpageloc)
{
struct pwrctrl_priv *pwrpriv = adapter_to_pwrctl(padapter);
struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
u8 res = 0, count = 0;
#ifdef CONFIG_WOWLAN
u8 u1H2CAoacRsvdPageParm[H2C_AOAC_RSVDPAGE_LOC_LEN] = {0};
RTW_INFO("rtl8814_set_FwAoacRsvdPage_cmd: RWC=%d ArpRsp=%d NbrAdv=%d GtkRsp=%d GtkInfo=%d ProbeReq=%d NetworkList=%d\n",
rsvdpageloc->LocRemoteCtrlInfo, rsvdpageloc->LocArpRsp,
rsvdpageloc->LocNbrAdv, rsvdpageloc->LocGTKRsp,
rsvdpageloc->LocGTKInfo, rsvdpageloc->LocProbeReq,
rsvdpageloc->LocNetList);
#ifdef CONFIG_PNO_SUPPORT
RTW_INFO("NLO_INFO=%d\n", rsvdpageloc->LocPNOInfo);
#endif
if (check_fwstate(pmlmepriv, _FW_LINKED)) {
SET_H2CCMD_AOAC_RSVDPAGE_LOC_REMOTE_WAKE_CTRL_INFO(u1H2CAoacRsvdPageParm, rsvdpageloc->LocRemoteCtrlInfo);
SET_H2CCMD_AOAC_RSVDPAGE_LOC_ARP_RSP(u1H2CAoacRsvdPageParm, rsvdpageloc->LocArpRsp);
/* SET_H2CCMD_AOAC_RSVDPAGE_LOC_NEIGHBOR_ADV(u1H2CAoacRsvdPageParm, rsvdpageloc->LocNbrAdv); */
SET_H2CCMD_AOAC_RSVDPAGE_LOC_GTK_RSP(u1H2CAoacRsvdPageParm, rsvdpageloc->LocGTKRsp);
SET_H2CCMD_AOAC_RSVDPAGE_LOC_GTK_INFO(u1H2CAoacRsvdPageParm, rsvdpageloc->LocGTKInfo);
#ifdef CONFIG_GTK_OL
SET_H2CCMD_AOAC_RSVDPAGE_LOC_GTK_EXT_MEM(u1H2CAoacRsvdPageParm, rsvdpageloc->LocGTKEXTMEM);
#endif /* CONFIG_GTK_OL */
} else {
#ifdef CONFIG_PNO_SUPPORT
if (!pwrpriv->wowlan_in_resume)
SET_H2CCMD_AOAC_RSVDPAGE_LOC_NLO_INFO(u1H2CAoacRsvdPageParm, rsvdpageloc->LocPNOInfo);
#endif
}
RTW_DBG_DUMP("u1H2CAoacRsvdPageParm:", u1H2CAoacRsvdPageParm, H2C_AOAC_RSVDPAGE_LOC_LEN);
FillH2CCmd_8814(padapter, H2C_AOAC_RSVD_PAGE, H2C_AOAC_RSVDPAGE_LOC_LEN, u1H2CAoacRsvdPageParm);
#ifdef CONFIG_PNO_SUPPORT
if (!MLME_IS_AP(padapter) && !MLME_IS_MESH(padapter) &&
!check_fwstate(pmlmepriv, _FW_LINKED) &&
pwrpriv->wowlan_in_resume == _FALSE) {
res = rtw_read8(padapter, 0x1b8);
while (res == 0 && count < 25) {
RTW_INFO("[%d] FW loc_NLOInfo: %d\n", count, res);
res = rtw_read8(padapter, 0x1b8);
count++;
rtw_msleep_os(2);
}
}
#endif /* CONFIG_PNO_SUPPORT */
#endif /* CONFIG_WOWLAN */
}
#endif
static void SetFwRsvdPagePkt_BTCoex(PADAPTER padapter)
{
PHAL_DATA_TYPE pHalData;
struct xmit_frame *pcmdframe;
struct pkt_attrib *pattrib;
struct xmit_priv *pxmitpriv;
struct pwrctrl_priv *pwrctl;
struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
u32 BeaconLength = 0;
u32 NullDataLength = 0, QosNullLength = 0, BTQosNullLength = 0;
u32 ProbeReqLength = 0;
u8 *ReservedPagePacket;
u8 TxDescLen = TXDESC_SIZE, TxDescOffset = TXDESC_OFFSET;
u8 TotalPageNum = 0, CurtPktPageNum = 0, RsvdPageNum = 0;
u16 BufIndex, PageSize = PAGE_SIZE_TX_8814;
u32 TotalPacketLen, MaxRsvdPageBufSize = 0;
RSVDPAGE_LOC RsvdPageLoc;
pHalData = GET_HAL_DATA(padapter);
pxmitpriv = &padapter->xmitpriv;
pwrctl = adapter_to_pwrctl(padapter);
/* RsvdPageNum = BCNQ_PAGE_NUM_8723B + WOWLAN_PAGE_NUM_8723B; */
RsvdPageNum = BCNQ_PAGE_NUM_8814;
MaxRsvdPageBufSize = RsvdPageNum * PageSize;
pcmdframe = rtw_alloc_cmdxmitframe(pxmitpriv);
if (pcmdframe == NULL) {
RTW_INFO("%s: alloc ReservedPagePacket fail!\n", __FUNCTION__);
return;
}
ReservedPagePacket = pcmdframe->buf_addr;
_rtw_memset(&RsvdPageLoc, 0, sizeof(RSVDPAGE_LOC));
/* 3 (1) beacon */
BufIndex = TxDescOffset;
rtw_hal_construct_beacon(padapter,
&ReservedPagePacket[BufIndex], &BeaconLength);
/* When we count the first page size, we need to reserve description size for the RSVD */
/* packet, it will be filled in front of the packet in TXPKTBUF. */
CurtPktPageNum = (u8)PageNum(TxDescLen + BeaconLength, PageSize);
/* If we don't add 1 more page, the WOWLAN function has a problem. Baron thinks it's a bug of firmware */
if (CurtPktPageNum == 1)
CurtPktPageNum += 1;
TotalPageNum += CurtPktPageNum;
BufIndex += (CurtPktPageNum * PageSize);
/* Jump to lastest page */
if (BufIndex < (MaxRsvdPageBufSize - PageSize)) {
BufIndex = TxDescOffset + (MaxRsvdPageBufSize - PageSize);
TotalPageNum = BCNQ_PAGE_NUM_8814 - 1;
}
/* 3 (6) BT Qos null data */
RsvdPageLoc.LocBTQosNull = TotalPageNum;
rtw_hal_construct_NullFunctionData(
padapter,
&ReservedPagePacket[BufIndex],
&BTQosNullLength,
_TRUE, 0, 0, _FALSE);
rtl8814a_fill_fake_txdesc(padapter, &ReservedPagePacket[BufIndex - TxDescLen], BTQosNullLength, _FALSE, _TRUE, _FALSE);
/* RTW_INFO("%s(): HW_VAR_SET_TX_CMD: BT QOS NULL DATA %p %d\n", */
/* __FUNCTION__, &ReservedPagePacket[BufIndex-TxDescLen], (BTQosNullLength+TxDescLen)); */
CurtPktPageNum = (u8)PageNum(TxDescLen + BTQosNullLength, PageSize);
TotalPageNum += CurtPktPageNum;
TotalPacketLen = BufIndex + BTQosNullLength;
if (TotalPacketLen > MaxRsvdPageBufSize) {
RTW_INFO("%s(): ERROR: The rsvd page size is not enough!!TotalPacketLen %d, MaxRsvdPageBufSize %d\n", __FUNCTION__,
TotalPacketLen, MaxRsvdPageBufSize);
goto error;
} else {
/* update attribute */
pattrib = &pcmdframe->attrib;
update_mgntframe_attrib(padapter, pattrib);
pattrib->qsel = QSLT_BEACON;
pattrib->pktlen = pattrib->last_txcmdsz = TotalPacketLen - TxDescOffset;
#ifdef CONFIG_PCI_HCI
dump_mgntframe(padapter, pcmdframe);
#else
dump_mgntframe_and_wait(padapter, pcmdframe, 100);
#endif
}
RTW_INFO("%s: Set RSVD page location to Fw ,TotalPacketLen(%d), TotalPageNum(%d)\n", __FUNCTION__, TotalPacketLen, TotalPageNum);
if (check_fwstate(pmlmepriv, _FW_LINKED)) {
rtl8814_set_FwRsvdPage_cmd(padapter, &RsvdPageLoc);
#ifdef CONFIG_WOWLAN
rtl8814_set_FwAoacRsvdPage_cmd(padapter, &RsvdPageLoc);
#endif
}
return;
error:
rtw_free_xmitframe(pxmitpriv, pcmdframe);
}
#endif
void rtl8814a_download_BTCoex_AP_mode_rsvd_page(PADAPTER padapter)
{
rtl8814_download_rsvd_page(padapter, RT_MEDIA_CONNECT);
}
#endif /* CONFIG_BT_COEXIST */
+300
View File
@@ -0,0 +1,300 @@
/******************************************************************************
*
* Copyright(c) 2007 - 2017 Realtek Corporation.
*
* This program is free software; you can redistribute it and/or modify it
* under the terms of version 2 of the GNU General Public License as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful, but WITHOUT
* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
* more details.
*
*****************************************************************************/
/* ************************************************************
* Description:
*
* This file is for 92CE/92CU dynamic mechanism only
*
*
* ************************************************************ */
#define _RTL8814A_DM_C_
/* ************************************************************
* include files
* ************************************************************
* #include <drv_types.h> */
#include <rtl8814a_hal.h>
/* ************************************************************
* Global var
* ************************************************************ */
#ifdef CONFIG_SUPPORT_HW_WPS_PBC
static void dm_CheckPbcGPIO(_adapter *padapter)
{
u8 tmp1byte;
u8 bPbcPressed = _FALSE;
if (!padapter->registrypriv.hw_wps_pbc)
return;
#ifdef CONFIG_BT_COEXIST
if (hal_btcoex_IsBtExist(padapter))
return;
#endif /* CONFIG_BT_COEXIST */
#if defined(CONFIG_USB_HCI) || defined(CONFIG_SDIO_HCI)
tmp1byte = rtw_read8(padapter, REG_GPIO_EXT_CTRL_8814A);
/* RTW_INFO("CheckPbcGPIO - %x\n", tmp1byte); */
if (tmp1byte == 0xff)
return ;
else if (tmp1byte & BIT3) {
/* Here we only set bPbcPressed to TRUE. After trigger PBC, the variable will be set to FALSE */
RTW_INFO("CheckPbcGPIO - PBC is pressed\n");
bPbcPressed = _TRUE;
}
#endif
if (_TRUE == bPbcPressed) {
/* Here we only set bPbcPressed to true */
/* After trigger PBC, the variable will be set to false */
RTW_INFO("CheckPbcGPIO - PBC is pressed\n");
rtw_request_wps_pbc_event(padapter);
}
}
#endif /* #ifdef CONFIG_SUPPORT_HW_WPS_PBC */
#ifdef CONFIG_PCI_HCI
/*
* Description:
* Perform interrupt migration dynamically to reduce CPU utilization.
*
* Assumption:
* 1. Do not enable migration under WIFI test.
*
* Created by Roger, 2010.03.05.
* */
void
dm_InterruptMigration(
PADAPTER Adapter
)
{
HAL_DATA_TYPE *pHalData = GET_HAL_DATA(Adapter);
struct mlme_priv *pmlmepriv = &(Adapter->mlmepriv);
BOOLEAN bCurrentIntMt, bCurrentACIntDisable;
BOOLEAN IntMtToSet = _FALSE;
BOOLEAN ACIntToSet = _FALSE;
/* Retrieve current interrupt migration and Tx four ACs IMR settings first. */
bCurrentIntMt = pHalData->bInterruptMigration;
bCurrentACIntDisable = pHalData->bDisableTxInt;
/* */
/* <Roger_Notes> Currently we use busy traffic for reference instead of RxIntOK counts to prevent non-linear Rx statistics */
/* when interrupt migration is set before. 2010.03.05. */
/* */
if (!Adapter->registrypriv.wifi_spec &&
(check_fwstate(pmlmepriv, _FW_LINKED) == _TRUE) &&
pmlmepriv->LinkDetectInfo.bHigherBusyTraffic) {
IntMtToSet = _TRUE;
/* To check whether we should disable Tx interrupt or not. */
if (pmlmepriv->LinkDetectInfo.bHigherBusyRxTraffic)
ACIntToSet = _TRUE;
}
/* Update current settings. */
if (bCurrentIntMt != IntMtToSet) {
RTW_INFO("%s(): Update interrrupt migration(%d)\n", __FUNCTION__, IntMtToSet);
if (IntMtToSet) {
/* */
/* <Roger_Notes> Set interrrupt migration timer and corresponging Tx/Rx counter. */
/* timer 25ns*0xfa0=100us for 0xf packets. */
/* 2010.03.05. */
/* */
rtw_write32(Adapter, REG_INT_MIG_8814A, 0xff000fa0);/* 0x306:Rx, 0x307:Tx */
pHalData->bInterruptMigration = IntMtToSet;
} else {
/* Reset all interrupt migration settings. */
rtw_write32(Adapter, REG_INT_MIG_8814A, 0);
pHalData->bInterruptMigration = IntMtToSet;
}
}
#if 0
if (bCurrentACIntDisable != ACIntToSet) {
RTW_INFO("%s(): Update AC interrrupt(%d)\n", __FUNCTION__, ACIntToSet);
if (ACIntToSet) { /* Disable four ACs interrupts. */
/* */
/* <Roger_Notes> Disable VO, VI, BE and BK four AC interrupts to gain more efficient CPU utilization. */
/* When extremely highly Rx OK occurs, we will disable Tx interrupts. */
/* 2010.03.05. */
/* */
UpdateInterruptMask8192CE(Adapter, 0, RT_AC_INT_MASKS);
pHalData->bDisableTxInt = ACIntToSet;
} else { /* Enable four ACs interrupts. */
UpdateInterruptMask8192CE(Adapter, RT_AC_INT_MASKS, 0);
pHalData->bDisableTxInt = ACIntToSet;
}
}
#endif
}
#endif /* CONFIG_PCI_HCI */
/*
* Initialize GPIO setting registers
* */
#ifdef CONFIG_USB_HCI
static void
dm_InitGPIOSetting(
PADAPTER Adapter
)
{
PHAL_DATA_TYPE pHalData = GET_HAL_DATA(Adapter);
u8 tmp1byte;
tmp1byte = rtw_read8(Adapter, REG_GPIO_MUXCFG);
tmp1byte &= (GPIOSEL_GPIO | ~GPIOSEL_ENBT);
rtw_write8(Adapter, REG_GPIO_MUXCFG, tmp1byte);
}
#endif
/* ************************************************************
* functions
* ************************************************************ */
static void Init_ODM_ComInfo_8814(PADAPTER Adapter)
{
PHAL_DATA_TYPE pHalData = GET_HAL_DATA(Adapter);
struct dm_struct *pDM_Odm = &(pHalData->odmpriv);
u32 SupportAbility = 0;
u8 cut_ver, fab_ver;
Init_ODM_ComInfo(Adapter);
fab_ver = ODM_TSMC;
if (IS_A_CUT(pHalData->version_id))
cut_ver = ODM_CUT_A;
else if (IS_B_CUT(pHalData->version_id))
cut_ver = ODM_CUT_B;
else if (IS_C_CUT(pHalData->version_id))
cut_ver = ODM_CUT_C;
else if (IS_D_CUT(pHalData->version_id))
cut_ver = ODM_CUT_D;
else if (IS_E_CUT(pHalData->version_id))
cut_ver = ODM_CUT_E;
else
cut_ver = ODM_CUT_A;
odm_cmn_info_init(pDM_Odm, ODM_CMNINFO_FAB_VER, fab_ver);
odm_cmn_info_init(pDM_Odm, ODM_CMNINFO_CUT_VER, cut_ver);
}
void
rtl8814_InitHalDm(
PADAPTER Adapter
)
{
PHAL_DATA_TYPE pHalData = GET_HAL_DATA(Adapter);
struct dm_struct *pDM_Odm = &(pHalData->odmpriv);
#ifdef CONFIG_USB_HCI
dm_InitGPIOSetting(Adapter);
#endif /* CONFIG_USB_HCI */
rtw_phydm_init(Adapter);
/* Adapter->fix_rate = 0xFF; */
}
void
rtl8814_HalDmWatchDog(
PADAPTER Adapter
)
{
BOOLEAN bFwCurrentInPSMode = _FALSE;
u8 bFwPSAwake = _TRUE;
PHAL_DATA_TYPE pHalData = GET_HAL_DATA(Adapter);
struct dm_struct *pDM_Odm = &(pHalData->odmpriv);
struct pwrctrl_priv *pwrpriv = adapter_to_pwrctl(Adapter);
u8 in_lps = _FALSE;
if (!rtw_is_hw_init_completed(Adapter))
goto skip_dm;
#ifdef CONFIG_LPS
bFwCurrentInPSMode = pwrpriv->bFwCurrentInPSMode;
rtw_hal_get_hwreg(Adapter, HW_VAR_FWLPS_RF_ON, &bFwPSAwake);
#endif
#ifdef CONFIG_P2P_PS
/* Fw is under p2p powersaving mode, driver should stop dynamic mechanism. */
/* modifed by thomas. 2011.06.11. */
if (Adapter->wdinfo.p2p_ps_mode)
bFwPSAwake = _FALSE;
#endif /* CONFIG_P2P_PS */
if ((rtw_is_hw_init_completed(Adapter))
&& ((!bFwCurrentInPSMode) && bFwPSAwake)) {
rtw_hal_check_rxfifo_full(Adapter);
/* */
/* Dynamically switch RTS/CTS protection. */
/* */
#ifdef CONFIG_PCI_HCI
/* 20100630 Joseph: Disable Interrupt Migration mechanism temporarily because it degrades Rx throughput. */
/* Tx Migration settings. */
/* dm_InterruptMigration(Adapter); */
/* if(Adapter->HalFunc.TxCheckStuckHandler(Adapter)) */
/* PlatformScheduleWorkItem(&(GET_HAL_DATA(Adapter)->HalResetWorkItem)); */
#endif
}
#ifdef CONFIG_DISABLE_ODM
goto skip_dm;
#endif
#ifdef CONFIG_LPS
if (pwrpriv->bLeisurePs && bFwCurrentInPSMode && pwrpriv->pwr_mode != PS_MODE_ACTIVE)
in_lps = _TRUE;
#endif
rtw_phydm_watchdog(Adapter, in_lps);
skip_dm:
#ifdef CONFIG_SUPPORT_HW_WPS_PBC
/* Check GPIO to determine current Pbc status. */
dm_CheckPbcGPIO(Adapter);
#endif
return;
}
void rtl8814_init_dm_priv(PADAPTER Adapter)
{
PHAL_DATA_TYPE pHalData = GET_HAL_DATA(Adapter);
struct dm_struct *podmpriv = &pHalData->odmpriv;
Init_ODM_ComInfo_8814(Adapter);
odm_init_all_timers(podmpriv);
pHalData->CurrentTxPwrIdx = 20;
}
void rtl8814_deinit_dm_priv(PADAPTER Adapter)
{
PHAL_DATA_TYPE pHalData = GET_HAL_DATA(Adapter);
struct dm_struct *podmpriv = &pHalData->odmpriv;
/* _rtw_spinlock_free(&pHalData->odm_stainfo_lock); */
odm_cancel_all_timers(podmpriv);
}
File diff suppressed because it is too large Load Diff
File diff suppressed because it is too large Load Diff
+182
View File
@@ -0,0 +1,182 @@
/******************************************************************************
*
* Copyright(c) 2007 - 2017 Realtek Corporation.
*
* This program is free software; you can redistribute it and/or modify it
* under the terms of version 2 of the GNU General Public License as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful, but WITHOUT
* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
* more details.
*
*****************************************************************************/
#define _RTL8814A_RF6052_C_
/* #include <drv_types.h> */
#include <rtl8814a_hal.h>
/*-----------------------------------------------------------------------------
* Function: PHY_RF6052SetBandwidth()
*
* Overview: This function is called by SetBWModeCallback8190Pci() only
*
* Input: PADAPTER Adapter
* WIRELESS_BANDWIDTH_E Bandwidth //20M or 40M
*
* Output: NONE
*
* Return: NONE
*
* Note: For RF type 0222D
*---------------------------------------------------------------------------*/
void
PHY_RF6052SetBandwidth8814A(
PADAPTER Adapter,
enum channel_width Bandwidth) /* 20M or 40M */
{
switch (Bandwidth) {
case CHANNEL_WIDTH_20:
/*RTW_INFO("PHY_RF6052SetBandwidth8814A(), set 20MHz\n");*/
phy_set_rf_reg(Adapter, RF_PATH_A, RF_CHNLBW_Jaguar, BIT11 | BIT10, 3);
phy_set_rf_reg(Adapter, RF_PATH_B, RF_CHNLBW_Jaguar, BIT11 | BIT10, 3);
phy_set_rf_reg(Adapter, RF_PATH_C, RF_CHNLBW_Jaguar, BIT11 | BIT10, 3);
phy_set_rf_reg(Adapter, RF_PATH_D, RF_CHNLBW_Jaguar, BIT11 | BIT10, 3);
break;
case CHANNEL_WIDTH_40:
/*RTW_INFO("PHY_RF6052SetBandwidth8814A(), set 40MHz\n");*/
phy_set_rf_reg(Adapter, RF_PATH_A, RF_CHNLBW_Jaguar, BIT11 | BIT10, 1);
phy_set_rf_reg(Adapter, RF_PATH_B, RF_CHNLBW_Jaguar, BIT11 | BIT10, 1);
phy_set_rf_reg(Adapter, RF_PATH_C, RF_CHNLBW_Jaguar, BIT11 | BIT10, 1);
phy_set_rf_reg(Adapter, RF_PATH_D, RF_CHNLBW_Jaguar, BIT11 | BIT10, 1);
break;
case CHANNEL_WIDTH_80:
/*RTW_INFO("PHY_RF6052SetBandwidth8814A(), set 80MHz\n");*/
phy_set_rf_reg(Adapter, RF_PATH_A, RF_CHNLBW_Jaguar, BIT11 | BIT10, 0);
phy_set_rf_reg(Adapter, RF_PATH_B, RF_CHNLBW_Jaguar, BIT11 | BIT10, 0);
phy_set_rf_reg(Adapter, RF_PATH_C, RF_CHNLBW_Jaguar, BIT11 | BIT10, 0);
phy_set_rf_reg(Adapter, RF_PATH_D, RF_CHNLBW_Jaguar, BIT11 | BIT10, 0);
break;
default:
RTW_INFO("PHY_RF6052SetBandwidth8814A(): unknown Bandwidth: %#X\n", Bandwidth);
break;
}
}
static int
phy_RF6052_Config_ParaFile_8814A(
PADAPTER Adapter
)
{
u32 u4RegValue = 0;
enum rf_path eRFPath;
int rtStatus = _SUCCESS;
HAL_DATA_TYPE *pHalData = GET_HAL_DATA(Adapter);
/* 3 */ /* ----------------------------------------------------------------- */
/* 3 */ /* <2> Initialize RF */
/* 3 */ /* ----------------------------------------------------------------- */
/* for(eRFPath = RF_PATH_A; eRFPath <pHalData->NumTotalRFPath; eRFPath++) */
for (eRFPath = 0; eRFPath < pHalData->NumTotalRFPath; eRFPath++) {
/*----Initialize RF fom connfiguration file----*/
switch (eRFPath) {
case RF_PATH_A:
#ifdef CONFIG_LOAD_PHY_PARA_FROM_FILE
if (PHY_ConfigRFWithParaFile(Adapter, PHY_FILE_RADIO_A, eRFPath) == _FAIL)
#endif /* CONFIG_LOAD_PHY_PARA_FROM_FILE */
{
#ifdef CONFIG_EMBEDDED_FWIMG
if (odm_config_rf_with_header_file(&pHalData->odmpriv, CONFIG_RF_RADIO, eRFPath) == HAL_STATUS_FAILURE)
rtStatus = _FAIL;
#endif /* CONFIG_EMBEDDED_FWIMG */
}
break;
case RF_PATH_B:
#ifdef CONFIG_LOAD_PHY_PARA_FROM_FILE
if (PHY_ConfigRFWithParaFile(Adapter, PHY_FILE_RADIO_B, eRFPath) == _FAIL)
#endif /* CONFIG_LOAD_PHY_PARA_FROM_FILE */
{
#ifdef CONFIG_EMBEDDED_FWIMG
if (odm_config_rf_with_header_file(&pHalData->odmpriv, CONFIG_RF_RADIO, eRFPath) == HAL_STATUS_FAILURE)
rtStatus = _FAIL;
#endif /* CONFIG_EMBEDDED_FWIMG */
}
break;
case RF_PATH_C:
#ifdef CONFIG_LOAD_PHY_PARA_FROM_FILE
if (PHY_ConfigRFWithParaFile(Adapter, PHY_FILE_RADIO_C, eRFPath) == _FAIL)
#endif /* CONFIG_LOAD_PHY_PARA_FROM_FILE */
{
#ifdef CONFIG_EMBEDDED_FWIMG
if (odm_config_rf_with_header_file(&pHalData->odmpriv, CONFIG_RF_RADIO, eRFPath) == HAL_STATUS_FAILURE)
rtStatus = _FAIL;
#endif /* CONFIG_EMBEDDED_FWIMG */
}
break;
case RF_PATH_D:
#ifdef CONFIG_LOAD_PHY_PARA_FROM_FILE
if (PHY_ConfigRFWithParaFile(Adapter, PHY_FILE_RADIO_D, eRFPath) == _FAIL)
#endif /* CONFIG_LOAD_PHY_PARA_FROM_FILE */
{
#ifdef CONFIG_EMBEDDED_FWIMG
if (odm_config_rf_with_header_file(&pHalData->odmpriv, CONFIG_RF_RADIO, eRFPath) == HAL_STATUS_FAILURE)
rtStatus = _FAIL;
#endif /* CONFIG_EMBEDDED_FWIMG */
}
break;
default:
break;
}
if (rtStatus != _SUCCESS) {
RTW_INFO("%s():Radio[%d] Fail!!", __FUNCTION__, eRFPath);
goto phy_RF6052_Config_ParaFile_Fail;
}
}
u4RegValue = phy_query_rf_reg(Adapter, RF_PATH_A, RF_RCK1_Jaguar, bRFRegOffsetMask);
phy_set_rf_reg(Adapter, RF_PATH_B, RF_RCK1_Jaguar, bRFRegOffsetMask, u4RegValue);
phy_set_rf_reg(Adapter, RF_PATH_C, RF_RCK1_Jaguar, bRFRegOffsetMask, u4RegValue);
phy_set_rf_reg(Adapter, RF_PATH_D, RF_RCK1_Jaguar, bRFRegOffsetMask, u4RegValue);
/* 3 ----------------------------------------------------------------- */
/* 3 Configuration of Tx Power Tracking */
/* 3 ----------------------------------------------------------------- */
#ifdef CONFIG_LOAD_PHY_PARA_FROM_FILE
if (PHY_ConfigRFWithTxPwrTrackParaFile(Adapter, PHY_FILE_TXPWR_TRACK) == _FAIL)
#endif /* CONFIG_LOAD_PHY_PARA_FROM_FILE */
{
#ifdef CONFIG_EMBEDDED_FWIMG
odm_config_rf_with_tx_pwr_track_header_file(&pHalData->odmpriv);
#endif
}
phy_RF6052_Config_ParaFile_Fail:
return rtStatus;
}
int
PHY_RF6052_Config_8814A(
PADAPTER Adapter)
{
int rtStatus = _SUCCESS;
/* */
/* Config BB and RF */
/* */
rtStatus = phy_RF6052_Config_ParaFile_8814A(Adapter);
return rtStatus;
}
/* End of HalRf6052.c */
@@ -0,0 +1,60 @@
/******************************************************************************
*
* Copyright(c) 2007 - 2017 Realtek Corporation.
*
* This program is free software; you can redistribute it and/or modify it
* under the terms of version 2 of the GNU General Public License as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful, but WITHOUT
* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
* more details.
*
*****************************************************************************/
#define _RTL8814A_RXDESC_C_
/* #include <drv_types.h> */
#include <rtl8814a_hal.h>
void rtl8814_query_rx_desc_status(union recv_frame *precvframe, u8 *pdesc)
{
struct rx_pkt_attrib *pattrib = &precvframe->u.hdr.attrib;
_rtw_memset(pattrib, 0, sizeof(struct rx_pkt_attrib));
pattrib->bw = CHANNEL_WIDTH_MAX;
/* Offset 0 */
pattrib->pkt_len = (u16)GET_RX_STATUS_DESC_PKT_LEN_8814A(pdesc);/* (le32_to_cpu(pdesc->rxdw0)&0x00003fff) */
pattrib->crc_err = (u8)GET_RX_STATUS_DESC_CRC32_8814A(pdesc);/* ((le32_to_cpu(pdesc->rxdw0) >> 14) & 0x1); */
pattrib->icv_err = (u8)GET_RX_STATUS_DESC_ICV_8814A(pdesc);/* ((le32_to_cpu(pdesc->rxdw0) >> 15) & 0x1); */
pattrib->drvinfo_sz = (u8)GET_RX_STATUS_DESC_DRVINFO_SIZE_8814A(pdesc) * 8;/* ((le32_to_cpu(pdesc->rxdw0) >> 16) & 0xf) * 8; */ /* uint 2^3 = 8 bytes */
pattrib->encrypt = (u8)GET_RX_STATUS_DESC_SECURITY_8814A(pdesc);/* ((le32_to_cpu(pdesc->rxdw0) >> 20) & 0x7); */
pattrib->qos = (u8)GET_RX_STATUS_DESC_QOS_8814A(pdesc);/* (( le32_to_cpu( pdesc->rxdw0 ) >> 23) & 0x1); */ /* Qos data, wireless lan header length is 26 */
pattrib->shift_sz = (u8)GET_RX_STATUS_DESC_SHIFT_8814A(pdesc);/* ((le32_to_cpu(pdesc->rxdw0) >> 24) & 0x3); */
pattrib->physt = (u8)GET_RX_STATUS_DESC_PHY_STATUS_8814A(pdesc);/* ((le32_to_cpu(pdesc->rxdw0) >> 26) & 0x1); */
pattrib->bdecrypted = !GET_RX_STATUS_DESC_SWDEC_8814A(pdesc);/* (le32_to_cpu(pdesc->rxdw0) & BIT(27))? 0:1; */
/* Offset 4 */
pattrib->priority = (u8)GET_RX_STATUS_DESC_TID_8814A(pdesc);/* ((le32_to_cpu(pdesc->rxdw1) >> 8) & 0xf); */
pattrib->mdata = (u8)GET_RX_STATUS_DESC_MORE_DATA_8814A(pdesc);/* ((le32_to_cpu(pdesc->rxdw1) >> 26) & 0x1); */
pattrib->mfrag = (u8)GET_RX_STATUS_DESC_MORE_FRAG_8814A(pdesc);/* ((le32_to_cpu(pdesc->rxdw1) >> 27) & 0x1); */ /* more fragment bit */
/* Offset 8 */
pattrib->seq_num = (u16)GET_RX_STATUS_DESC_SEQ_8814A(pdesc);/* (le32_to_cpu(pdesc->rxdw2) & 0x00000fff); */
pattrib->frag_num = (u8)GET_RX_STATUS_DESC_FRAG_8814A(pdesc);/* ((le32_to_cpu(pdesc->rxdw2) >> 12) & 0xf); */ /* fragmentation number */
if (GET_RX_STATUS_DESC_RPT_SEL_8814A(pdesc))
pattrib->pkt_rpt_type = C2H_PACKET;
else
pattrib->pkt_rpt_type = NORMAL_RX;
/* Offset 12 */
pattrib->data_rate = (u8)GET_RX_STATUS_DESC_RX_RATE_8814A(pdesc); /* ((le32_to_cpu(pdesc->rxdw3))&0x7f); */
/* Offset 16 */
/* Offset 20 */
}
+106
View File
@@ -0,0 +1,106 @@
/******************************************************************************
*
* Copyright(c) 2007 - 2017 Realtek Corporation.
*
* This program is free software; you can redistribute it and/or modify it
* under the terms of version 2 of the GNU General Public License as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful, but WITHOUT
* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
* more details.
*
*****************************************************************************/
#define _RTL8814A_SRESET_C_
/* #include <drv_types.h> */
#include <rtl8814a_hal.h>
#ifdef DBG_CONFIG_ERROR_DETECT
void rtl8814_sreset_xmit_status_check(_adapter *padapter)
{
HAL_DATA_TYPE *pHalData = GET_HAL_DATA(padapter);
struct sreset_priv *psrtpriv = &pHalData->srestpriv;
systime current_time;
struct xmit_priv *pxmitpriv = &padapter->xmitpriv;
unsigned int diff_time;
u32 txdma_status;
txdma_status = rtw_read32(padapter, REG_TXDMA_STATUS);
if (txdma_status != 0x00) {
RTW_INFO("%s REG_TXDMA_STATUS:0x%08x\n", __FUNCTION__, txdma_status);
rtw_hal_sreset_reset(padapter);
}
#ifdef CONFIG_USB_HCI
/* total xmit irp = 4 */
/* RTW_INFO("==>%s free_xmitbuf_cnt(%d),txirp_cnt(%d)\n",__FUNCTION__,pxmitpriv->free_xmitbuf_cnt,pxmitpriv->txirp_cnt); */
/* if(pxmitpriv->txirp_cnt == NR_XMITBUFF+1) */
current_time = rtw_get_current_time();
if (0 == pxmitpriv->free_xmitbuf_cnt || 0 == pxmitpriv->free_xmit_extbuf_cnt) {
diff_time = rtw_get_passing_time_ms(psrtpriv->last_tx_time);
if (diff_time > 2000) {
if (psrtpriv->last_tx_complete_time == 0)
psrtpriv->last_tx_complete_time = current_time;
else {
diff_time = rtw_get_passing_time_ms(psrtpriv->last_tx_complete_time);
if (diff_time > 4000) {
u32 ability = 0;
/* padapter->Wifi_Error_Status = WIFI_TX_HANG; */
ability = rtw_phydm_ability_get(padapter);
RTW_INFO("%s tx hang %s\n", __FUNCTION__,
(ability & ODM_BB_ADAPTIVITY) ? "ODM_BB_ADAPTIVITY" : "");
if (!(ability & ODM_BB_ADAPTIVITY))
rtw_hal_sreset_reset(padapter);
}
}
}
}
#endif /* CONFIG_USB_HCI */
if (psrtpriv->dbg_trigger_point == SRESET_TGP_XMIT_STATUS) {
psrtpriv->dbg_trigger_point = SRESET_TGP_NULL;
rtw_hal_sreset_reset(padapter);
return;
}
}
void rtl8814_sreset_linked_status_check(_adapter *padapter)
{
HAL_DATA_TYPE *pHalData = GET_HAL_DATA(padapter);
struct sreset_priv *psrtpriv = &pHalData->srestpriv;
u32 rx_dma_status = 0;
rx_dma_status = rtw_read32(padapter, REG_RXDMA_STATUS);
if (rx_dma_status != 0x00)
RTW_INFO("%s REG_RXDMA_STATUS:0x%08x\n", __FUNCTION__, rx_dma_status);
#if 0
u32 regc50, regc58, reg824, reg800;
regc50 = rtw_read32(padapter, 0xc50);
regc58 = rtw_read32(padapter, 0xc58);
reg824 = rtw_read32(padapter, 0x824);
reg800 = rtw_read32(padapter, 0x800);
if (((regc50 & 0xFFFFFF00) != 0x69543400) ||
((regc58 & 0xFFFFFF00) != 0x69543400) ||
(((reg824 & 0xFFFFFF00) != 0x00390000) && (((reg824 & 0xFFFFFF00) != 0x80390000))) ||
(((reg800 & 0xFFFFFF00) != 0x03040000) && ((reg800 & 0xFFFFFF00) != 0x83040000))) {
RTW_INFO("%s regc50:0x%08x, regc58:0x%08x, reg824:0x%08x, reg800:0x%08x,\n", __FUNCTION__,
regc50, regc58, reg824, reg800);
rtw_hal_sreset_reset(padapter);
}
#endif
if (psrtpriv->dbg_trigger_point == SRESET_TGP_LINK_STATUS) {
psrtpriv->dbg_trigger_point = SRESET_TGP_NULL;
rtw_hal_sreset_reset(padapter);
return;
}
}
#endif
+524
View File
@@ -0,0 +1,524 @@
/******************************************************************************
*
* Copyright(c) 2007 - 2017 Realtek Corporation.
*
* This program is free software; you can redistribute it and/or modify it
* under the terms of version 2 of the GNU General Public License as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful, but WITHOUT
* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
* more details.
*
*****************************************************************************/
#define _RTL8814A_XMIT_C_
/* #include <drv_types.h> */
#include <rtl8814a_hal.h>
void _dbg_dump_tx_info(_adapter *padapter, int frame_tag, u8 *ptxdesc)
{
u8 bDumpTxPkt;
u8 bDumpTxDesc = _FALSE;
rtw_hal_get_def_var(padapter, HAL_DEF_DBG_DUMP_TXPKT, &(bDumpTxPkt));
if (bDumpTxPkt == 1) { /* dump txdesc for data frame */
RTW_INFO("dump tx_desc for data frame\n");
if ((frame_tag & 0x0f) == DATA_FRAMETAG)
bDumpTxDesc = _TRUE;
} else if (bDumpTxPkt == 2) { /* dump txdesc for mgnt frame */
RTW_INFO("dump tx_desc for mgnt frame\n");
if ((frame_tag & 0x0f) == MGNT_FRAMETAG)
bDumpTxDesc = _TRUE;
} else if (bDumpTxPkt == 3) { /* dump early info */
}
if (bDumpTxDesc) {
/* ptxdesc->txdw4 = cpu_to_le32(0x00001006); */ /* RTS Rate=24M */
/* ptxdesc->txdw6 = 0x6666f800; */
RTW_INFO("=====================================\n");
RTW_INFO("Offset00(0x%08x)\n", *((u32 *)(ptxdesc)));
RTW_INFO("Offset04(0x%08x)\n", *((u32 *)(ptxdesc + 4)));
RTW_INFO("Offset08(0x%08x)\n", *((u32 *)(ptxdesc + 8)));
RTW_INFO("Offset12(0x%08x)\n", *((u32 *)(ptxdesc + 12)));
RTW_INFO("Offset16(0x%08x)\n", *((u32 *)(ptxdesc + 16)));
RTW_INFO("Offset20(0x%08x)\n", *((u32 *)(ptxdesc + 20)));
RTW_INFO("Offset24(0x%08x)\n", *((u32 *)(ptxdesc + 24)));
RTW_INFO("Offset28(0x%08x)\n", *((u32 *)(ptxdesc + 28)));
RTW_INFO("Offset32(0x%08x)\n", *((u32 *)(ptxdesc + 32)));
RTW_INFO("Offset36(0x%08x)\n", *((u32 *)(ptxdesc + 36)));
RTW_INFO("=====================================\n");
}
}
/*
* Description:
* Aggregation packets and send to hardware
*
* Return:
* 0 Success
* -1 Hardware resource(TX FIFO) not ready
* -2 Software resource(xmitbuf) not ready
*/
#ifdef CONFIG_TX_EARLY_MODE
/* #define DBG_EMINFO */
#if RTL8188E_EARLY_MODE_PKT_NUM_10 == 1
#define EARLY_MODE_MAX_PKT_NUM 10
#else
#define EARLY_MODE_MAX_PKT_NUM 5
#endif
struct EMInfo {
u8 EMPktNum;
u16 EMPktLen[EARLY_MODE_MAX_PKT_NUM];
};
void
InsertEMContent_8814(
struct EMInfo *pEMInfo,
u8 *VirtualAddress)
{
#if RTL8188E_EARLY_MODE_PKT_NUM_10 == 1
u8 index = 0;
u32 dwtmp = 0;
#endif
_rtw_memset(VirtualAddress, 0, EARLY_MODE_INFO_SIZE);
if (pEMInfo->EMPktNum == 0)
return;
#ifdef DBG_EMINFO
{
int i;
RTW_INFO("\n%s ==> pEMInfo->EMPktNum =%d\n", __FUNCTION__, pEMInfo->EMPktNum);
for (i = 0; i < EARLY_MODE_MAX_PKT_NUM; i++)
RTW_INFO("%s ==> pEMInfo->EMPktLen[%d] =%d\n", __FUNCTION__, i, pEMInfo->EMPktLen[i]);
}
#endif
#if RTL8188E_EARLY_MODE_PKT_NUM_10 == 1
SET_EARLYMODE_PKTNUM(VirtualAddress, pEMInfo->EMPktNum);
if (pEMInfo->EMPktNum == 1)
dwtmp = pEMInfo->EMPktLen[0];
else {
dwtmp = pEMInfo->EMPktLen[0];
dwtmp += ((dwtmp % 4) ? (4 - dwtmp % 4) : 0) + 4;
dwtmp += pEMInfo->EMPktLen[1];
}
SET_EARLYMODE_LEN0(VirtualAddress, dwtmp);
if (pEMInfo->EMPktNum <= 3)
dwtmp = pEMInfo->EMPktLen[2];
else {
dwtmp = pEMInfo->EMPktLen[2];
dwtmp += ((dwtmp % 4) ? (4 - dwtmp % 4) : 0) + 4;
dwtmp += pEMInfo->EMPktLen[3];
}
SET_EARLYMODE_LEN1(VirtualAddress, dwtmp);
if (pEMInfo->EMPktNum <= 5)
dwtmp = pEMInfo->EMPktLen[4];
else {
dwtmp = pEMInfo->EMPktLen[4];
dwtmp += ((dwtmp % 4) ? (4 - dwtmp % 4) : 0) + 4;
dwtmp += pEMInfo->EMPktLen[5];
}
SET_EARLYMODE_LEN2_1(VirtualAddress, dwtmp & 0xF);
SET_EARLYMODE_LEN2_2(VirtualAddress, dwtmp >> 4);
if (pEMInfo->EMPktNum <= 7)
dwtmp = pEMInfo->EMPktLen[6];
else {
dwtmp = pEMInfo->EMPktLen[6];
dwtmp += ((dwtmp % 4) ? (4 - dwtmp % 4) : 0) + 4;
dwtmp += pEMInfo->EMPktLen[7];
}
SET_EARLYMODE_LEN3(VirtualAddress, dwtmp);
if (pEMInfo->EMPktNum <= 9)
dwtmp = pEMInfo->EMPktLen[8];
else {
dwtmp = pEMInfo->EMPktLen[8];
dwtmp += ((dwtmp % 4) ? (4 - dwtmp % 4) : 0) + 4;
dwtmp += pEMInfo->EMPktLen[9];
}
SET_EARLYMODE_LEN4(VirtualAddress, dwtmp);
#else
SET_EARLYMODE_PKTNUM(VirtualAddress, pEMInfo->EMPktNum);
SET_EARLYMODE_LEN0(VirtualAddress, pEMInfo->EMPktLen[0]);
SET_EARLYMODE_LEN1(VirtualAddress, pEMInfo->EMPktLen[1]);
SET_EARLYMODE_LEN2_1(VirtualAddress, pEMInfo->EMPktLen[2] & 0xF);
SET_EARLYMODE_LEN2_2(VirtualAddress, pEMInfo->EMPktLen[2] >> 4);
SET_EARLYMODE_LEN3(VirtualAddress, pEMInfo->EMPktLen[3]);
SET_EARLYMODE_LEN4(VirtualAddress, pEMInfo->EMPktLen[4]);
#endif
}
void UpdateEarlyModeInfo8814(struct xmit_priv *pxmitpriv, struct xmit_buf *pxmitbuf)
{
/* _adapter *padapter, struct xmit_frame *pxmitframe,struct tx_servq *ptxservq */
int index, j;
u16 offset, pktlen;
PTXDESC_8814 ptxdesc;
u8 *pmem, *pEMInfo_mem;
s8 node_num_0 = 0, node_num_1 = 0;
struct EMInfo eminfo;
struct agg_pkt_info *paggpkt;
struct xmit_frame *pframe = (struct xmit_frame *)pxmitbuf->priv_data;
pmem = pframe->buf_addr;
#ifdef DBG_EMINFO
RTW_INFO("\n%s ==> agg_num:%d\n", __FUNCTION__, pframe->agg_num);
for (index = 0; index < pframe->agg_num; index++) {
offset = pxmitpriv->agg_pkt[index].offset;
pktlen = pxmitpriv->agg_pkt[index].pkt_len;
RTW_INFO("%s ==> agg_pkt[%d].offset=%d\n", __FUNCTION__, index, offset);
RTW_INFO("%s ==> agg_pkt[%d].pkt_len=%d\n", __FUNCTION__, index, pktlen);
}
#endif
if (pframe->agg_num > EARLY_MODE_MAX_PKT_NUM) {
node_num_0 = pframe->agg_num;
node_num_1 = EARLY_MODE_MAX_PKT_NUM - 1;
}
for (index = 0; index < pframe->agg_num; index++) {
offset = pxmitpriv->agg_pkt[index].offset;
pktlen = pxmitpriv->agg_pkt[index].pkt_len;
_rtw_memset(&eminfo, 0, sizeof(struct EMInfo));
if (pframe->agg_num > EARLY_MODE_MAX_PKT_NUM) {
if (node_num_0 > EARLY_MODE_MAX_PKT_NUM) {
eminfo.EMPktNum = EARLY_MODE_MAX_PKT_NUM;
node_num_0--;
} else {
eminfo.EMPktNum = node_num_1;
node_num_1--;
}
} else
eminfo.EMPktNum = pframe->agg_num - (index + 1);
for (j = 0; j < eminfo.EMPktNum ; j++) {
eminfo.EMPktLen[j] = pxmitpriv->agg_pkt[index + 1 + j].pkt_len + 4; /* 4 bytes CRC */
}
if (pmem) {
if (index == 0) {
ptxdesc = (PTXDESC_8814)(pmem);
pEMInfo_mem = ((u8 *)ptxdesc) + TXDESC_SIZE;
} else {
pmem = pmem + pxmitpriv->agg_pkt[index - 1].offset;
ptxdesc = (PTXDESC_8814)(pmem);
pEMInfo_mem = ((u8 *)ptxdesc) + TXDESC_SIZE;
}
#ifdef DBG_EMINFO
RTW_INFO("%s ==> desc.pkt_len=%d\n", __FUNCTION__, ptxdesc->pktlen);
#endif
InsertEMContent_8814(&eminfo, pEMInfo_mem);
}
}
_rtw_memset(pxmitpriv->agg_pkt, 0, sizeof(struct agg_pkt_info) * MAX_AGG_PKT_NUM);
}
#endif
#if defined(CONFIG_USB_HCI) || defined(CONFIG_SDIO_HCI)
void rtl8814a_cal_txdesc_chksum(u8 *ptxdesc)
{
u16 *usPtr;
u32 count;
u32 index;
u16 checksum = 0;
usPtr = (u16 *)ptxdesc;
/* checksume is always calculated by first 32 bytes, */
/* and it doesn't depend on TX DESC length. */
/* Thomas,Lucas@SD4,20130515 */
count = 16;
/* Clear first */
SET_TX_DESC_TX_DESC_CHECKSUM_8814A(ptxdesc, 0);
for (index = 0 ; index < count ; index++)
checksum = checksum ^ le16_to_cpu(*(usPtr + index));
SET_TX_DESC_TX_DESC_CHECKSUM_8814A(ptxdesc, checksum);
}
#endif
/*
* Description: In normal chip, we should send some packet to Hw which will be used by Fw
* in FW LPS mode. The function is to fill the Tx descriptor of this packets, then
* Fw can tell Hw to send these packet derectly.
* */
void rtl8814a_fill_fake_txdesc(
PADAPTER padapter,
u8 *pDesc,
u32 BufferLen,
u8 IsPsPoll,
u8 IsBTQosNull,
u8 bDataFrame)
{
struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
/* Clear all status */
_rtw_memset(pDesc, 0, TXDESC_SIZE);
SET_TX_DESC_LAST_SEG_8814A(pDesc, 1);
SET_TX_DESC_OFFSET_8814A(pDesc, TXDESC_SIZE);
SET_TX_DESC_PKT_SIZE_8814A(pDesc, BufferLen);
SET_TX_DESC_QUEUE_SEL_8814A(pDesc, QSLT_MGNT);
if (pmlmeext->cur_wireless_mode & WIRELESS_11B)
SET_TX_DESC_RATE_ID_8814A(pDesc, RATEID_IDX_B);
else
SET_TX_DESC_RATE_ID_8814A(pDesc, RATEID_IDX_G);
/* Set NAVUSEHDR to prevent Ps-poll AId filed to be changed to error vlaue by Hw. */
if (IsPsPoll)
SET_TX_DESC_NAV_USE_HDR_8814A(pDesc, 1);
else {
SET_TX_DESC_HWSEQ_EN_8814A(pDesc, 1); /* Hw set sequence number */
}
#if 0 /* todo */
if (IsBTQosNull)
SET_TX_DESC_BT_INT_8812(pDesc, 1);
#endif /* 0 */
SET_TX_DESC_USE_RATE_8814A(pDesc, 1);
/* 8814 no OWN bit? */
/* SET_TX_DESC_OWN_8812(pDesc, 1); */
/* */
/* Encrypt the data frame if under security mode excepct null data. Suggested by CCW. */
/* */
if (_TRUE == bDataFrame) {
u32 EncAlg;
EncAlg = padapter->securitypriv.dot11PrivacyAlgrthm;
switch (EncAlg) {
case _NO_PRIVACY_:
SET_TX_DESC_SEC_TYPE_8814A(pDesc, 0x0);
break;
case _WEP40_:
case _WEP104_:
case _TKIP_:
SET_TX_DESC_SEC_TYPE_8814A(pDesc, 0x1);
break;
case _SMS4_:
SET_TX_DESC_SEC_TYPE_8814A(pDesc, 0x2);
break;
case _AES_:
SET_TX_DESC_SEC_TYPE_8814A(pDesc, 0x3);
break;
default:
SET_TX_DESC_SEC_TYPE_8814A(pDesc, 0x0);
break;
}
}
SET_TX_DESC_TX_RATE_8814A(pDesc, MRateToHwRate(pmlmeext->tx_rate));
#if defined(CONFIG_USB_HCI) || defined(CONFIG_SDIO_HCI)
/* USB interface drop packet if the checksum of descriptor isn't correct. */
/* Using this checksum can let hardware recovery from packet bulk out error (e.g. Cancel URC, Bulk out error.). */
rtl8814a_cal_txdesc_chksum(pDesc);
#endif
}
#if defined(CONFIG_CONCURRENT_MODE)
void fill_txdesc_force_bmc_camid(struct pkt_attrib *pattrib, u8 *ptxdesc)
{
if ((pattrib->encrypt > 0) && (!pattrib->bswenc)
&& (pattrib->bmc_camid != INVALID_SEC_MAC_CAM_ID)) {
SET_TX_DESC_EN_DESC_ID_8814A(ptxdesc, 1);
SET_TX_DESC_MACID_8814A(ptxdesc, pattrib->bmc_camid);
}
}
#endif
void fill_txdesc_bmc_tx_rate(struct pkt_attrib *pattrib, u8 *ptxdesc)
{
SET_TX_DESC_USE_RATE_8814A(ptxdesc, 1);
SET_TX_DESC_TX_RATE_8814A(ptxdesc, MRateToHwRate(pattrib->rate));
SET_TX_DESC_DISABLE_FB_8814A(ptxdesc, 1);
}
void rtl8814a_fill_txdesc_sectype(struct pkt_attrib *pattrib, u8 *ptxdesc)
{
if ((pattrib->encrypt > 0) && !pattrib->bswenc) {
switch (pattrib->encrypt) {
/* SEC_TYPE : 0:NO_ENC,1:WEP40/TKIP,2:WAPI,3:AES */
case _WEP40_:
case _WEP104_:
case _TKIP_:
case _TKIP_WTMIC_:
SET_TX_DESC_SEC_TYPE_8814A(ptxdesc, 0x1);
break;
#ifdef CONFIG_WAPI_SUPPORT
case _SMS4_:
SET_TX_DESC_SEC_TYPE_8814A(ptxdesc, 0x2);
break;
#endif
case _AES_:
SET_TX_DESC_SEC_TYPE_8814A(ptxdesc, 0x3);
break;
case _NO_PRIVACY_:
default:
SET_TX_DESC_SEC_TYPE_8814A(ptxdesc, 0x0);
break;
}
}
}
void rtl8814a_fill_txdesc_vcs(PADAPTER padapter, struct pkt_attrib *pattrib, u8 *ptxdesc)
{
struct mlme_ext_priv *pmlmeext = &padapter->mlmeextpriv;
struct mlme_ext_info *pmlmeinfo = &(pmlmeext->mlmext_info);
/* RTW_INFO("vcs_mode=%d\n", pattrib->vcs_mode); */
if (pattrib->vcs_mode) {
switch (pattrib->vcs_mode) {
case RTS_CTS:
SET_TX_DESC_RTS_ENABLE_8814A(ptxdesc, 1);
break;
case CTS_TO_SELF:
SET_TX_DESC_CTS2SELF_8814A(ptxdesc, 1);
break;
case NONE_VCS:
default:
break;
}
if (pmlmeinfo->preamble_mode == PREAMBLE_SHORT)
SET_TX_DESC_RTS_SHORT_8814A(ptxdesc, 1);
/* RTS Rate=24M */
SET_TX_DESC_RTS_RATE_8814A(ptxdesc, 0x8);
/* compatibility for MCC consideration, use pmlmeext->cur_channel */
if (pmlmeext->cur_channel > 14)
/* RTS retry to rate OFDM 6M for 5G */
SET_TX_DESC_RTS_RATE_FB_LIMIT_8814A(ptxdesc, 4);
else
/* RTS retry to rate CCK 1M for 2.4G */
SET_TX_DESC_RTS_RATE_FB_LIMIT_8814A(ptxdesc, 0);
}
}
u8
BWMapping_8814(
PADAPTER Adapter,
struct pkt_attrib *pattrib
)
{
u8 BWSettingOfDesc = 0;
PHAL_DATA_TYPE pHalData = GET_HAL_DATA(Adapter);
/* RTW_INFO("BWMapping pHalData->current_channel_bw %d, pattrib->bwmode %d\n",pHalData->current_channel_bw,pattrib->bwmode); */
if (pHalData->current_channel_bw == CHANNEL_WIDTH_80) {
if (pattrib->bwmode == CHANNEL_WIDTH_80)
BWSettingOfDesc = 2;
else if (pattrib->bwmode == CHANNEL_WIDTH_40)
BWSettingOfDesc = 1;
else
BWSettingOfDesc = 0;
} else if (pHalData->current_channel_bw == CHANNEL_WIDTH_40) {
if ((pattrib->bwmode == CHANNEL_WIDTH_40) || (pattrib->bwmode == CHANNEL_WIDTH_80))
BWSettingOfDesc = 1;
else
BWSettingOfDesc = 0;
} else
BWSettingOfDesc = 0;
return BWSettingOfDesc;
}
u8
SCMapping_8814(
PADAPTER Adapter,
struct pkt_attrib *pattrib
)
{
u8 SCSettingOfDesc = 0;
PHAL_DATA_TYPE pHalData = GET_HAL_DATA(Adapter);
/* RTW_INFO("SCMapping: pHalData->current_channel_bw %d, pHalData->nCur80MhzPrimeSC %d, pHalData->nCur40MhzPrimeSC %d\n",pHalData->current_channel_bw,pHalData->nCur80MhzPrimeSC,pHalData->nCur40MhzPrimeSC); */
if (pHalData->current_channel_bw == CHANNEL_WIDTH_80) {
if (pattrib->bwmode == CHANNEL_WIDTH_80)
SCSettingOfDesc = VHT_DATA_SC_DONOT_CARE;
else if (pattrib->bwmode == CHANNEL_WIDTH_40) {
if (pHalData->nCur80MhzPrimeSC == HAL_PRIME_CHNL_OFFSET_LOWER)
SCSettingOfDesc = VHT_DATA_SC_40_LOWER_OF_80MHZ;
else if (pHalData->nCur80MhzPrimeSC == HAL_PRIME_CHNL_OFFSET_UPPER)
SCSettingOfDesc = VHT_DATA_SC_40_UPPER_OF_80MHZ;
else
RTW_INFO("SCMapping: DONOT CARE Mode Setting\n");
} else {
if ((pHalData->nCur40MhzPrimeSC == HAL_PRIME_CHNL_OFFSET_LOWER) && (pHalData->nCur80MhzPrimeSC == HAL_PRIME_CHNL_OFFSET_LOWER))
SCSettingOfDesc = VHT_DATA_SC_20_LOWEST_OF_80MHZ;
else if ((pHalData->nCur40MhzPrimeSC == HAL_PRIME_CHNL_OFFSET_UPPER) && (pHalData->nCur80MhzPrimeSC == HAL_PRIME_CHNL_OFFSET_LOWER))
SCSettingOfDesc = VHT_DATA_SC_20_LOWER_OF_80MHZ;
else if ((pHalData->nCur40MhzPrimeSC == HAL_PRIME_CHNL_OFFSET_LOWER) && (pHalData->nCur80MhzPrimeSC == HAL_PRIME_CHNL_OFFSET_UPPER))
SCSettingOfDesc = VHT_DATA_SC_20_UPPER_OF_80MHZ;
else if ((pHalData->nCur40MhzPrimeSC == HAL_PRIME_CHNL_OFFSET_UPPER) && (pHalData->nCur80MhzPrimeSC == HAL_PRIME_CHNL_OFFSET_UPPER))
SCSettingOfDesc = VHT_DATA_SC_20_UPPERST_OF_80MHZ;
else
RTW_INFO("SCMapping: DONOT CARE Mode Setting\n");
}
} else if (pHalData->current_channel_bw == CHANNEL_WIDTH_40) {
/* RTW_INFO("SCMapping: HT Case: pHalData->current_channel_bw %d, pHalData->nCur40MhzPrimeSC %d\n",pHalData->current_channel_bw,pHalData->nCur40MhzPrimeSC); */
if (pattrib->bwmode == CHANNEL_WIDTH_40)
SCSettingOfDesc = VHT_DATA_SC_DONOT_CARE;
else if (pattrib->bwmode == CHANNEL_WIDTH_20) {
if (pHalData->nCur40MhzPrimeSC == HAL_PRIME_CHNL_OFFSET_UPPER)
SCSettingOfDesc = VHT_DATA_SC_20_UPPER_OF_80MHZ;
else if (pHalData->nCur40MhzPrimeSC == HAL_PRIME_CHNL_OFFSET_LOWER)
SCSettingOfDesc = VHT_DATA_SC_20_LOWER_OF_80MHZ;
else
SCSettingOfDesc = VHT_DATA_SC_DONOT_CARE;
}
} else
SCSettingOfDesc = VHT_DATA_SC_DONOT_CARE;
return SCSettingOfDesc;
}
void rtl8814a_fill_txdesc_phy(PADAPTER padapter, struct pkt_attrib *pattrib, u8 *ptxdesc)
{
/* RTW_INFO("bwmode=%d, ch_off=%d\n", pattrib->bwmode, pattrib->ch_offset); */
if (pattrib->ht_en) {
/* Set Bandwidth and sub-channel settings. */
SET_TX_DESC_DATA_BW_8814A(ptxdesc, BWMapping_8814(padapter, pattrib));
SET_TX_DESC_DATA_SC_8814A(ptxdesc, SCMapping_8814(padapter, pattrib));
}
}
@@ -0,0 +1,143 @@
/******************************************************************************
*
* Copyright(c) 2007 - 2017 Realtek Corporation.
*
* This program is free software; you can redistribute it and/or modify it
* under the terms of version 2 of the GNU General Public License as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful, but WITHOUT
* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
* more details.
*
*****************************************************************************/
#define _RTL8814AU_LED_C_
/* #include <drv_types.h> */
#include <rtl8814a_hal.h>
#ifdef CONFIG_RTW_SW_LED
/* ********************************************************************************
* LED object.
* ******************************************************************************** */
/* ********************************************************************************
* Prototype of protected function.
* ******************************************************************************** */
/* ********************************************************************************
* LED_819xUsb routines.
* ******************************************************************************** */
/*
* Description:
* Turn on LED according to LedPin specified.
* */
static void
SwLedOn_8814AU(
PADAPTER padapter,
PLED_USB pLed
)
{
u32 LedGpioCfg;
HAL_DATA_TYPE *pHalData = GET_HAL_DATA(padapter);
if (RTW_CANNOT_RUN(padapter))
return;
LedGpioCfg = rtw_read32(padapter , REG_GPIO_PIN_CTRL_2); /* 0x60. In 8814AU, the name should be REG_GPIO_EXT_CTRL */
switch (pLed->LedPin) {
case LED_PIN_LED0:
LedGpioCfg |= (BIT16 | BIT17 | BIT21 | BIT22); /* config as gpo */
LedGpioCfg &= ~(BIT8 | BIT9 | BIT13 | BIT14); /* set gpo value */
LedGpioCfg &= ~(BIT0 | BIT1 | BIT5 | BIT6); /* set gpi value. TBD: may not need this */
rtw_write32(padapter , REG_GPIO_PIN_CTRL_2 , LedGpioCfg);
break;
default:
break;
}
pLed->bLedOn = _TRUE;
}
/*
* Description:
* Turn off LED according to LedPin specified.
* */
static void
SwLedOff_8814AU(
PADAPTER padapter,
PLED_USB pLed
)
{
u32 LedGpioCfg;
HAL_DATA_TYPE *pHalData = GET_HAL_DATA(padapter);
if (RTW_CANNOT_RUN(padapter))
return;
LedGpioCfg = rtw_read32(padapter , REG_GPIO_PIN_CTRL_2); /* 0x60. In 8814AU, the name should be REG_GPIO_EXT_CTRL */
switch (pLed->LedPin) {
case LED_PIN_LED0:
LedGpioCfg |= (BIT16 | BIT17 | BIT21 | BIT22); /* config as gpo */
LedGpioCfg |= (BIT8 | BIT9 | BIT13 | BIT14); /* set gpo output value */
rtw_write32(padapter , REG_GPIO_PIN_CTRL_2 , LedGpioCfg);
break;
default:
break;
}
pLed->bLedOn = _FALSE;
}
/* ********************************************************************************
* Interface to manipulate LED objects.
* ******************************************************************************** */
/* ********************************************************************************
* Default LED behavior.
* ******************************************************************************** */
/*
* Description:
* Initialize all LED_871x objects.
* */
void
rtl8814au_InitSwLeds(
_adapter *padapter
)
{
struct led_priv *pledpriv = adapter_to_led(padapter);
pledpriv->LedControlHandler = LedControlUSB;
pledpriv->SwLedOn = SwLedOn_8814AU;
pledpriv->SwLedOff = SwLedOff_8814AU;
InitLed(padapter, &(pledpriv->SwLed0), LED_PIN_LED0);
InitLed(padapter, &(pledpriv->SwLed1), LED_PIN_LED1);
InitLed(padapter, &(pledpriv->SwLed2), LED_PIN_LED2);
}
/*
* Description:
* DeInitialize all LED_819xUsb objects.
* */
void
rtl8814au_DeInitSwLeds(
_adapter *padapter
)
{
struct led_priv *ledpriv = adapter_to_led(padapter);
DeInitLed(&(ledpriv->SwLed0));
DeInitLed(&(ledpriv->SwLed1));
DeInitLed(&(ledpriv->SwLed2));
}
#endif
@@ -0,0 +1,28 @@
/******************************************************************************
*
* Copyright(c) 2007 - 2017 Realtek Corporation.
*
* This program is free software; you can redistribute it and/or modify it
* under the terms of version 2 of the GNU General Public License as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful, but WITHOUT
* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
* more details.
*
*****************************************************************************/
#define _RTL8814AU_RECV_C_
/* #include <drv_types.h> */
#include <rtl8814a_hal.h>
int rtl8814au_init_recv_priv(_adapter *padapter)
{
return usb_init_recv_priv(padapter, INTERRUPT_MSG_FORMAT_LEN);
}
void rtl8814au_free_recv_priv(_adapter *padapter)
{
usb_free_recv_priv(padapter, INTERRUPT_MSG_FORMAT_LEN);
}
File diff suppressed because it is too large Load Diff
File diff suppressed because it is too large Load Diff
@@ -0,0 +1,233 @@
/******************************************************************************
*
* Copyright(c) 2007 - 2017 Realtek Corporation.
*
* This program is free software; you can redistribute it and/or modify it
* under the terms of version 2 of the GNU General Public License as
* published by the Free Software Foundation.
*
* This program is distributed in the hope that it will be useful, but WITHOUT
* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
* more details.
*
*****************************************************************************/
#define _HCI_OPS_OS_C_
/* #include <drv_types.h> */
#include <rtl8814a_hal.h>
#ifdef CONFIG_SUPPORT_USB_INT
void interrupt_handler_8814au(_adapter *padapter, u16 pkt_len, u8 *pbuf)
{
HAL_DATA_TYPE *pHalData = GET_HAL_DATA(padapter);
struct reportpwrstate_parm pwr_rpt;
if (pkt_len != INTERRUPT_MSG_FORMAT_LEN) {
RTW_INFO("%s Invalid interrupt content length (%d)!\n", __FUNCTION__, pkt_len);
return ;
}
/* HISR */
_rtw_memcpy(&(pHalData->IntArray[0]), &(pbuf[USB_INTR_CONTENT_HISR_OFFSET]), 4);
_rtw_memcpy(&(pHalData->IntArray[1]), &(pbuf[USB_INTR_CONTENT_HISRE_OFFSET]), 4);
#if 0 /* DBG */
{
u32 hisr = 0 , hisr_ex = 0;
_rtw_memcpy(&hisr, &(pHalData->IntArray[0]), 4);
hisr = le32_to_cpu(hisr);
_rtw_memcpy(&hisr_ex, &(pHalData->IntArray[1]), 4);
hisr_ex = le32_to_cpu(hisr_ex);
if ((hisr != 0) || (hisr_ex != 0))
RTW_INFO("===> %s hisr:0x%08x ,hisr_ex:0x%08x\n", __FUNCTION__, hisr, hisr_ex);
}
#endif
#ifdef CONFIG_LPS_LCLK
if (pHalData->IntArray[0] & IMR_CPWM_88E) {
_rtw_memcpy(&pwr_rpt.state, &(pbuf[USB_INTR_CONTENT_CPWM1_OFFSET]), 1);
/* _rtw_memcpy(&pwr_rpt.state2, &(pbuf[USB_INTR_CONTENT_CPWM2_OFFSET]), 1); */
/* 88e's cpwm value only change BIT0, so driver need to add PS_STATE_S2 for LPS flow. */
pwr_rpt.state |= PS_STATE_S2;
_set_workitem(&(adapter_to_pwrctl(padapter)->cpwm_event));
}
#endif/* CONFIG_LPS_LCLK */
#ifdef CONFIG_INTERRUPT_BASED_TXBCN
#ifdef CONFIG_INTERRUPT_BASED_TXBCN_EARLY_INT
if (pHalData->IntArray[0] & IMR_BCNDMAINT0_8814A)/*only for BCN_0*/
#endif
#ifdef CONFIG_INTERRUPT_BASED_TXBCN_BCN_OK_ERR
if (pHalData->IntArray[0] & (IMR_TBDER_88E | IMR_TBDOK_88E))
#endif
{
#if 0
if (pHalData->IntArray[0] & IMR_BCNDMAINT0_88E)
RTW_INFO("%s: HISR_BCNERLY_INT\n", __func__);
if (pHalData->IntArray[0] & IMR_TBDOK_88E)
RTW_INFO("%s: HISR_TXBCNOK\n", __func__);
if (pHalData->IntArray[0] & IMR_TBDER_88E)
RTW_INFO("%s: HISR_TXBCNERR\n", __func__);
#endif
rtw_mi_set_tx_beacon_cmd(padapter);
}
#endif /* CONFIG_INTERRUPT_BASED_TXBCN */
#ifdef DBG_CONFIG_ERROR_DETECT_INT
if (pHalData->IntArray[1] & IMR_TXERR_88E)
RTW_INFO("===> %s Tx Error Flag Interrupt Status\n", __FUNCTION__);
if (pHalData->IntArray[1] & IMR_RXERR_88E)
RTW_INFO("===> %s Rx Error Flag INT Status\n", __FUNCTION__);
if (pHalData->IntArray[1] & IMR_TXFOVW_88E)
RTW_INFO("===> %s Transmit FIFO Overflow\n", __FUNCTION__);
if (pHalData->IntArray[1] & IMR_RXFOVW_88E)
RTW_INFO("===> %s Receive FIFO Overflow\n", __FUNCTION__);
#endif/* DBG_CONFIG_ERROR_DETECT_INT */
#ifdef CONFIG_FW_C2H_REG
/* C2H Event */
if (pbuf[0] != 0)
usb_c2h_hisr_hdl(padapter, pbuf);
#endif
}
#endif /* CONFIG_SUPPORT_USB_INT */
int recvbuf2recvframe(PADAPTER padapter, void *ptr)
{
u8 *pbuf;
u8 pkt_cnt = 0;
u32 pkt_offset;
s32 transfer_len;
union recv_frame *precvframe = NULL;
struct rx_pkt_attrib *pattrib = NULL;
HAL_DATA_TYPE *pHalData = GET_HAL_DATA(padapter);
struct recv_priv *precvpriv = &padapter->recvpriv;
_queue *pfree_recv_queue = &precvpriv->free_recv_queue;
_pkt *pskb;
#ifdef CONFIG_USE_USB_BUFFER_ALLOC_RX
pskb = NULL;
transfer_len = (s32)((struct recv_buf *)ptr)->transfer_len;
pbuf = ((struct recv_buf *)ptr)->pbuf;
#else
pskb = (_pkt *)ptr;
transfer_len = (s32)pskb->len;
pbuf = pskb->data;
#endif/* CONFIG_USE_USB_BUFFER_ALLOC_RX */
#ifdef CONFIG_USB_RX_AGGREGATION
pkt_cnt = GET_RX_STATUS_DESC_DMA_AGG_NUM_8814A(pbuf);
#endif
do {
precvframe = rtw_alloc_recvframe(pfree_recv_queue);
if (precvframe == NULL) {
RTW_INFO("%s()-%d: rtw_alloc_recvframe() failed! RX Drop!\n", __FUNCTION__, __LINE__);
goto _exit_recvbuf2recvframe;
}
_rtw_init_listhead(&precvframe->u.hdr.list);
precvframe->u.hdr.precvbuf = NULL; /* can't access the precvbuf for new arch. */
precvframe->u.hdr.len = 0;
rtl8814_query_rx_desc_status(precvframe, pbuf);
pattrib = &precvframe->u.hdr.attrib;
if ((padapter->registrypriv.mp_mode == 0) && ((pattrib->crc_err) || (pattrib->icv_err))) {
RTW_INFO("%s: RX Warning! crc_err=%d icv_err=%d, skip!\n", __FUNCTION__, pattrib->crc_err, pattrib->icv_err);
rtw_free_recvframe(precvframe, pfree_recv_queue);
goto _exit_recvbuf2recvframe;
}
pkt_offset = RXDESC_SIZE + pattrib->drvinfo_sz + pattrib->shift_sz + pattrib->pkt_len;
if ((pattrib->pkt_len <= 0) || (pkt_offset > transfer_len)) {
RTW_INFO("%s()-%d: RX Warning!,pkt_len<=0 or pkt_offset> transfer_len\n", __FUNCTION__, __LINE__);
rtw_free_recvframe(precvframe, pfree_recv_queue);
goto _exit_recvbuf2recvframe;
}
#ifdef CONFIG_RX_PACKET_APPEND_FCS
if (check_fwstate(&padapter->mlmepriv, WIFI_MONITOR_STATE) == _FALSE)
if ((pattrib->pkt_rpt_type == NORMAL_RX) && rtw_hal_rcr_check(padapter, RCR_APPFCS))
pattrib->pkt_len -= IEEE80211_FCS_LEN;
#endif
if (rtw_os_alloc_recvframe(padapter, precvframe,
(pbuf + pattrib->shift_sz + pattrib->drvinfo_sz + RXDESC_SIZE), pskb) == _FAIL) {
rtw_free_recvframe(precvframe, pfree_recv_queue);
goto _exit_recvbuf2recvframe;
}
recvframe_put(precvframe, pattrib->pkt_len);
/* recvframe_pull(precvframe, drvinfo_sz + RXDESC_SIZE); */
if (pattrib->pkt_rpt_type == NORMAL_RX) /* Normal rx packet */
pre_recv_entry(precvframe, pattrib->physt ? (pbuf + RXDESC_OFFSET) : NULL);
else { /* pkt_rpt_type == TX_REPORT1-CCX, TX_REPORT2-TX RTP,HIS_REPORT-USB HISR RTP */
if (pattrib->pkt_rpt_type == C2H_PACKET) {
/* RTW_INFO("rx C2H_PACKET\n"); */
rtw_hal_c2h_pkt_pre_hdl(padapter, precvframe->u.hdr.rx_data, pattrib->pkt_len);
}
rtw_free_recvframe(precvframe, pfree_recv_queue);
}
#ifdef CONFIG_USB_RX_AGGREGATION
/* jaguar 8-byte alignment */
pkt_offset = (u16)_RND8(pkt_offset);
pkt_cnt--;
pbuf += pkt_offset;
#endif
transfer_len -= pkt_offset;
precvframe = NULL;
} while (transfer_len > 0);
_exit_recvbuf2recvframe:
return _SUCCESS;
}
void rtl8814au_xmit_tasklet(void *priv)
{
int ret = _FALSE;
_adapter *padapter = (_adapter *)priv;
struct xmit_priv *pxmitpriv = &padapter->xmitpriv;
while (1) {
if (RTW_CANNOT_TX(padapter)) {
RTW_INFO("xmit_tasklet => bDriverStopped or bSurpriseRemoved or bWritePortCancel\n");
break;
}
if (rtw_xmit_ac_blocked(padapter) == _TRUE)
break;
ret = rtl8814au_xmitframe_complete(padapter, pxmitpriv, NULL);
if (ret == _FALSE)
break;
}
}
void rtl8814au_set_hw_type(struct dvobj_priv *pdvobj)
{
pdvobj->HardwareType = HARDWARE_TYPE_RTL8814AU;
RTW_INFO("CHIP TYPE: RTL8814\n");
}