/******************************************************************************
*
* Copyright(c) 2016 - 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 8821C dynamic mechanism
*
*
* ************************************************************ */
#define _RTL8812C_DM_C_
/* ************************************************************
* include files
* ************************************************************
*/
#include <drv_types.h>
#include <rtl8821c_hal.h>
/* ************************************************************
* Global var
* ************************************************************ */
static void dm_CheckProtection(PADAPTER adapter)
{
}
#ifdef CONFIG_SUPPORT_HW_WPS_PBC
static void dm_CheckPbcGPIO(PADAPTER adapter)
{
u8 tmp1byte;
u8 bPbcPressed = _FALSE;
if (!adapter->registrypriv.hw_wps_pbc)
return;
#ifdef CONFIG_USB_HCI
tmp1byte = rtw_read8(adapter, GPIO_IO_SEL);
tmp1byte |= (HAL_8192C_HW_GPIO_WPS_BIT);
rtw_write8(adapter, GPIO_IO_SEL, tmp1byte); /* enable GPIO[2] as output mode */
tmp1byte &= ~(HAL_8192C_HW_GPIO_WPS_BIT);
rtw_write8(adapter, GPIO_IN, tmp1byte); /* reset the floating voltage level */
tmp1byte = rtw_read8(adapter, GPIO_IO_SEL);
tmp1byte &= ~(HAL_8192C_HW_GPIO_WPS_BIT);
rtw_write8(adapter, GPIO_IO_SEL, tmp1byte); /* enable GPIO[2] as input mode */
tmp1byte = rtw_read8(adapter, GPIO_IN);
if (tmp1byte == 0xff)
return;
if (tmp1byte & HAL_8192C_HW_GPIO_WPS_BIT)
bPbcPressed = _TRUE;
#else
tmp1byte = rtw_read8(adapter, GPIO_IN);
if ((tmp1byte == 0xff) || adapter->init_adpt_in_progress)
return;
if ((tmp1byte & HAL_8192C_HW_GPIO_WPS_BIT) == 0)
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(adapter);
}
}
#endif /* 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.
*/
void dm_InterruptMigration(PADAPTER adapter)
{
PHAL_DATA_TYPE hal = 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 = hal->bInterruptMigration;
bCurrentACIntDisable = hal->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, 0xff000fa0); /* 0x306:Rx, 0x307:Tx */
hal->bInterruptMigration = IntMtToSet;
} else {
/* Reset all interrupt migration settings. */
rtw_write32(adapter, REG_INT_MIG, 0);
hal->bInterruptMigration = IntMtToSet;
}
}
}
#endif /* CONFIG_PCI_HCI */
/*
* ============================================================
* functions
* ============================================================
*/
static void init_phydm_cominfo(PADAPTER adapter)
{
PHAL_DATA_TYPE hal = GET_HAL_DATA(adapter);
struct dm_struct *pDM_Odm = &hal->odmpriv;
u8 cut_ver = ODM_CUT_A, fab_ver = ODM_TSMC;
Init_ODM_ComInfo(adapter);
odm_cmn_info_init(pDM_Odm, ODM_CMNINFO_PACKAGE_TYPE, hal->PackageType);
if (IS_CHIP_VENDOR_TSMC(hal->version_id))
fab_ver = ODM_TSMC;
else if (IS_CHIP_VENDOR_UMC(hal->version_id))
fab_ver = ODM_UMC;
else if (IS_CHIP_VENDOR_SMIC(hal->version_id))
fab_ver = ODM_UMC + 1;
else
RTW_INFO("%s: unknown fab_ver=%d !!\n",
__FUNCTION__, GET_CVID_MANUFACTUER(hal->version_id));
if (IS_A_CUT(hal->version_id))
cut_ver = ODM_CUT_A;
else if (IS_B_CUT(hal->version_id))
cut_ver = ODM_CUT_B;
else if (IS_C_CUT(hal->version_id))
cut_ver = ODM_CUT_C;
else if (IS_D_CUT(hal->version_id))
cut_ver = ODM_CUT_D;
else if (IS_E_CUT(hal->version_id))
cut_ver = ODM_CUT_E;
else if (IS_F_CUT(hal->version_id))
cut_ver = ODM_CUT_F;
else if (IS_I_CUT(hal->version_id))
cut_ver = ODM_CUT_I;
else if (IS_J_CUT(hal->version_id))
cut_ver = ODM_CUT_J;
else if (IS_K_CUT(hal->version_id))
cut_ver = ODM_CUT_K;
else
RTW_INFO("%s: unknown cut_ver=%d !!\n",
__FUNCTION__, GET_CVID_CUT_VERSION(hal->version_id));
RTW_INFO("%s: fab_ver=%d cut_ver=%d\n", __FUNCTION__, fab_ver, cut_ver);
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 rtl8821c_phy_init_dm_priv(PADAPTER adapter)
{
struct dm_struct *phydm = adapter_to_phydm(adapter);
init_phydm_cominfo(adapter);
odm_init_all_timers(phydm);
}
void rtl8821c_phy_deinit_dm_priv(PADAPTER adapter)
{
struct dm_struct *phydm = adapter_to_phydm(adapter);
odm_cancel_all_timers(phydm);
}
void rtl8821c_phy_init_haldm(PADAPTER adapter)
{
rtw_phydm_init(adapter);
}
void rtl8821c_phy_haldm_watchdog(PADAPTER Adapter)
{
BOOLEAN bFwCurrentInPSMode = _FALSE;
u8 bFwPSAwake = _TRUE;
if (!rtw_is_hw_init_completed(Adapter))
goto skip_dm;
#ifdef CONFIG_LPS
bFwCurrentInPSMode = adapter_to_pwrctl(Adapter)->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.
modified 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)) {
/* Dynamically switch RTS/CTS protection.*/
/*dm_CheckProtection(Adapter);*/
}
#ifdef CONFIG_DISABLE_ODM
goto skip_dm;
#endif
rtw_phydm_watchdog(Adapter);
skip_dm:
#ifdef CONFIG_BEAMFORMING
#ifdef RTW_BEAMFORMING_VERSION_2
if (check_fwstate(&Adapter->mlmepriv, WIFI_STATION_STATE) &&
check_fwstate(&Adapter->mlmepriv, _FW_LINKED))
rtw_hal_beamforming_config_csirate(Adapter);
#endif
#endif
#ifdef CONFIG_SUPPORT_HW_WPS_PBC
/* Check GPIO to determine current Pbc status.*/
dm_CheckPbcGPIO(Adapter);
#endif
return;
}