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hal_intf.c
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/******************************************************************************
*
* 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 _HAL_INTF_C_
#include <drv_types.h>
#include <hal_data.h>
const u32 _chip_type_to_odm_ic_type[] = {
0,
ODM_RTL8188E,
ODM_RTL8192E,
ODM_RTL8812,
ODM_RTL8821,
ODM_RTL8723B,
ODM_RTL8814A,
ODM_RTL8703B,
ODM_RTL8188F,
ODM_RTL8188F,
ODM_RTL8822B,
ODM_RTL8723D,
ODM_RTL8821C,
ODM_RTL8710B,
ODM_RTL8192F,
ODM_RTL8822C,
ODM_RTL8814B,
ODM_RTL8723F,
0,
};
void rtw_hal_chip_configure(_adapter *padapter)
{
padapter->hal_func.intf_chip_configure(padapter);
}
/*
* Description:
* Read chip internal ROM data
*
* Return:
* _SUCCESS success
* _FAIL fail
*/
u8 rtw_hal_read_chip_info(_adapter *padapter)
{
u8 rtn = _SUCCESS;
u8 hci_type = rtw_get_intf_type(padapter);
systime start = rtw_get_current_time();
/* before access eFuse, make sure card enable has been called */
if ((hci_type == RTW_SDIO || hci_type == RTW_GSPI)
&& !rtw_is_hw_init_completed(padapter))
rtw_hal_power_on(padapter);
rtn = padapter->hal_func.read_adapter_info(padapter);
if ((hci_type == RTW_SDIO || hci_type == RTW_GSPI)
&& !rtw_is_hw_init_completed(padapter))
rtw_hal_power_off(padapter);
RTW_INFO("%s in %d ms\n", __func__, rtw_get_passing_time_ms(start));
return rtn;
}
void rtw_hal_read_chip_version(_adapter *padapter)
{
padapter->hal_func.read_chip_version(padapter);
rtw_odm_init_ic_type(padapter);
}
static void rtw_init_wireless_mode(_adapter *padapter)
{
u8 proto_wireless_mode = 0;
struct hal_spec_t *hal_spec = GET_HAL_SPEC(padapter);
if(hal_spec->proto_cap & PROTO_CAP_11B)
proto_wireless_mode |= WIRELESS_11B;
if(hal_spec->proto_cap & PROTO_CAP_11G)
proto_wireless_mode |= WIRELESS_11G;
if(hal_spec->band_cap & BAND_CAP_5G)
proto_wireless_mode |= WIRELESS_11A;
#ifdef CONFIG_80211N_HT
if(hal_spec->proto_cap & PROTO_CAP_11N) {
if(hal_spec->band_cap & BAND_CAP_2G)
proto_wireless_mode |= WIRELESS_11_24N;
if(hal_spec->band_cap & BAND_CAP_5G)
proto_wireless_mode |= WIRELESS_11_5N;
}
#endif
#ifdef CONFIG_80211AC_VHT
if(hal_spec->proto_cap & PROTO_CAP_11AC)
proto_wireless_mode |= WIRELESS_11AC;
#endif
padapter->registrypriv.wireless_mode &= proto_wireless_mode;
}
void rtw_hal_def_value_init(_adapter *padapter)
{
if (is_primary_adapter(padapter)) {
/*init fw_psmode_iface_id*/
adapter_to_pwrctl(padapter)->fw_psmode_iface_id = 0xff;
/*wireless_mode*/
rtw_init_wireless_mode(padapter);
padapter->hal_func.init_default_value(padapter);
rtw_init_hal_com_default_value(padapter);
#ifdef CONFIG_FW_MULTI_PORT_SUPPORT
adapter_to_dvobj(padapter)->dft.port_id = 0xFF;
adapter_to_dvobj(padapter)->dft.mac_id = 0xFF;
#endif
#ifdef CONFIG_HW_P0_TSF_SYNC
adapter_to_dvobj(padapter)->p0_tsf.sync_port = MAX_HW_PORT;
adapter_to_dvobj(padapter)->p0_tsf.offset = 0;
#endif
GET_HAL_DATA(padapter)->rx_tsf_addr_filter_config = 0;
}
}
u8 rtw_hal_data_init(_adapter *padapter)
{
if (is_primary_adapter(padapter)) {
padapter->hal_data_sz = sizeof(HAL_DATA_TYPE);
padapter->HalData = rtw_zvmalloc(padapter->hal_data_sz);
if (padapter->HalData == NULL) {
RTW_INFO("cant not alloc memory for HAL DATA\n");
return _FAIL;
}
rtw_phydm_priv_init(padapter);
}
return _SUCCESS;
}
void rtw_hal_data_deinit(_adapter *padapter)
{
if (is_primary_adapter(padapter)) {
if (padapter->HalData) {
#ifdef CONFIG_LOAD_PHY_PARA_FROM_FILE
phy_free_filebuf(padapter);
#endif
rtw_vmfree(padapter->HalData, padapter->hal_data_sz);
padapter->HalData = NULL;
padapter->hal_data_sz = 0;
}
}
}
void rtw_hal_free_data(_adapter *padapter)
{
/* free HAL Data */
rtw_hal_data_deinit(padapter);
}
void rtw_hal_dm_init(_adapter *padapter)
{
if (is_primary_adapter(padapter)) {
PHAL_DATA_TYPE pHalData = GET_HAL_DATA(padapter);
padapter->hal_func.dm_init(padapter);
_rtw_spinlock_init(&pHalData->IQKSpinLock);
#ifdef CONFIG_TXPWR_PG_WITH_PWR_IDX
if (pHalData->txpwr_pg_mode == TXPWR_PG_WITH_PWR_IDX)
hal_load_txpwr_info(padapter);
#endif
phy_load_tx_power_ext_info(padapter, 1);
}
}
void rtw_hal_dm_deinit(_adapter *padapter)
{
if (is_primary_adapter(padapter)) {
PHAL_DATA_TYPE pHalData = GET_HAL_DATA(padapter);
padapter->hal_func.dm_deinit(padapter);
_rtw_spinlock_free(&pHalData->IQKSpinLock);
}
}
enum rf_type rtw_chip_rftype_to_hal_rftype(_adapter *adapter, u8 limit)
{
PHAL_DATA_TYPE hal_data = GET_HAL_DATA(adapter);
u8 tx_num = 0, rx_num = 0;
/*get RF PATH from version_id.RF_TYPE */
if (IS_1T1R(hal_data->version_id)) {
tx_num = 1;
rx_num = 1;
} else if (IS_1T2R(hal_data->version_id)) {
tx_num = 1;
rx_num = 2;
} else if (IS_2T2R(hal_data->version_id)) {
tx_num = 2;
rx_num = 2;
} else if (IS_2T3R(hal_data->version_id)) {
tx_num = 2;
rx_num = 3;
} else if (IS_2T4R(hal_data->version_id)) {
tx_num = 2;
rx_num = 4;
} else if (IS_3T3R(hal_data->version_id)) {
tx_num = 3;
rx_num = 3;
} else if (IS_3T4R(hal_data->version_id)) {
tx_num = 3;
rx_num = 4;
} else if (IS_4T4R(hal_data->version_id)) {
tx_num = 4;
rx_num = 4;
}
if (limit) {
tx_num = rtw_min(tx_num, limit);
rx_num = rtw_min(rx_num, limit);
}
return trx_num_to_rf_type(tx_num, rx_num);
}
void dump_hal_runtime_trx_mode(void *sel, _adapter *adapter)
{
struct registry_priv *regpriv = &adapter->registrypriv;
PHAL_DATA_TYPE hal_data = GET_HAL_DATA(adapter);
int i;
RTW_PRINT_SEL(sel, "txpath=0x%x, rxpath=0x%x\n", hal_data->txpath, hal_data->rxpath);
for (i = 0; i < hal_data->tx_nss; i++)
RTW_PRINT_SEL(sel, "txpath_%uss:0x%x, num:%u\n"
, i + 1, hal_data->txpath_nss[i]
, hal_data->txpath_num_nss[i]);
}
void dump_hal_trx_mode(void *sel, _adapter *adapter)
{
struct registry_priv *regpriv = &adapter->registrypriv;
PHAL_DATA_TYPE hal_data = GET_HAL_DATA(adapter);
int i;
RTW_PRINT_SEL(sel, "trx_path_bmp:0x%02x(%s), NumTotalRFPath:%u, max_tx_cnt:%u\n"
, hal_data->trx_path_bmp
, rf_type_to_rfpath_str(hal_data->rf_type)
, hal_data->NumTotalRFPath
, hal_data->max_tx_cnt
);
RTW_PRINT_SEL(sel, "tx_nss:%u, rx_nss:%u\n"
, hal_data->tx_nss, hal_data->rx_nss);
for (i = 0; i < hal_data->tx_nss; i++)
RTW_PRINT_SEL(sel, "txpath_cap_num_%uss:%u\n"
, i + 1, hal_data->txpath_cap_num_nss[i]);
RTW_PRINT_SEL(sel, "\n");
dump_hal_runtime_trx_mode(sel, adapter);
}
void _dump_rf_path(void *sel, _adapter *adapter)
{
PHAL_DATA_TYPE hal_data = GET_HAL_DATA(adapter);
struct hal_spec_t *hal_spec = GET_HAL_SPEC(adapter);
struct registry_priv *regsty = adapter_to_regsty(adapter);
RTW_PRINT_SEL(sel, "[RF_PATH] ver_id.RF_TYPE:%s\n"
, rf_type_to_rfpath_str(rtw_chip_rftype_to_hal_rftype(adapter, 0)));
RTW_PRINT_SEL(sel, "[RF_PATH] HALSPEC's rf_reg_trx_path_bmp:0x%02x, rf_reg_path_avail_num:%u, max_tx_cnt:%u\n"
, hal_spec->rf_reg_trx_path_bmp, hal_spec->rf_reg_path_avail_num, hal_spec->max_tx_cnt);
RTW_PRINT_SEL(sel, "[RF_PATH] PG's trx_path_bmp:0x%02x, max_tx_cnt:%u\n"
, hal_data->eeprom_trx_path_bmp, hal_data->eeprom_max_tx_cnt);
RTW_PRINT_SEL(sel, "[RF_PATH] Registry's trx_path_bmp:0x%02x, tx_path_lmt:%u, rx_path_lmt:%u\n"
, regsty->trx_path_bmp, regsty->tx_path_lmt, regsty->rx_path_lmt);
RTW_PRINT_SEL(sel, "[RF_PATH] HALDATA's trx_path_bmp:0x%02x, max_tx_cnt:%u\n"
, hal_data->trx_path_bmp, hal_data->max_tx_cnt);
RTW_PRINT_SEL(sel, "[RF_PATH] HALDATA's rf_type:%s, NumTotalRFPath:%d\n"
, rf_type_to_rfpath_str(hal_data->rf_type), hal_data->NumTotalRFPath);
}
#ifdef CONFIG_RTL8814A
extern enum rf_type rtl8814a_rfpath_decision(_adapter *adapter);
#endif
u8 rtw_hal_rfpath_init(_adapter *adapter)
{
HAL_DATA_TYPE *hal_data = GET_HAL_DATA(adapter);
struct hal_spec_t *hal_spec = GET_HAL_SPEC(adapter);
#ifdef CONFIG_RTL8814A
if (IS_HARDWARE_TYPE_8814A(adapter)) {
enum bb_path tx_bmp, rx_bmp;
hal_data->rf_type = rtl8814a_rfpath_decision(adapter);
rf_type_to_default_trx_bmp(hal_data->rf_type, &tx_bmp, &rx_bmp);
hal_data->trx_path_bmp = (tx_bmp << 4) | rx_bmp;
hal_data->NumTotalRFPath = 4;
hal_data->max_tx_cnt = hal_spec->max_tx_cnt;
hal_data->max_tx_cnt = rtw_min(hal_data->max_tx_cnt, rf_type_to_rf_tx_cnt(hal_data->rf_type));
} else
#endif
{
struct registry_priv *regsty = adapter_to_regsty(adapter);
u8 trx_path_bmp;
u8 tx_path_num;
u8 rx_path_num;
int i;
trx_path_bmp = hal_spec->rf_reg_trx_path_bmp;
if (regsty->trx_path_bmp != 0x00) {
/* restrict trx_path_bmp with regsty.trx_path_bmp */
trx_path_bmp &= regsty->trx_path_bmp;
if (!trx_path_bmp) {
RTW_ERR("%s hal_spec.rf_reg_trx_path_bmp:0x%02x, regsty->trx_path_bmp:0x%02x no intersection\n"
, __func__, hal_spec->rf_reg_trx_path_bmp, regsty->trx_path_bmp);
return _FAIL;
}
} else if (hal_data->eeprom_trx_path_bmp != 0x00) {
/* restrict trx_path_bmp with eeprom_trx_path_bmp */
trx_path_bmp &= hal_data->eeprom_trx_path_bmp;
if (!trx_path_bmp) {
RTW_ERR("%s hal_spec.rf_reg_trx_path_bmp:0x%02x, hal_data->eeprom_trx_path_bmp:0x%02x no intersection\n"
, __func__, hal_spec->rf_reg_trx_path_bmp, hal_data->eeprom_trx_path_bmp);
return _FAIL;
}
}
/* restrict trx_path_bmp with TX and RX num limit */
trx_path_bmp = rtw_restrict_trx_path_bmp_by_trx_num_lmt(trx_path_bmp
, regsty->tx_path_lmt, regsty->rx_path_lmt, &tx_path_num, &rx_path_num);
if (!trx_path_bmp) {
RTW_ERR("%s rtw_restrict_trx_path_bmp_by_trx_num_lmt(0x%02x, %u, %u) failed\n"
, __func__, trx_path_bmp, regsty->tx_path_lmt, regsty->rx_path_lmt);
return _FAIL;
}
hal_data->trx_path_bmp = trx_path_bmp;
hal_data->rf_type = trx_bmp_to_rf_type((trx_path_bmp & 0xF0) >> 4, trx_path_bmp & 0x0F);
hal_data->NumTotalRFPath = rtw_max(tx_path_num, rx_path_num);
hal_data->max_tx_cnt = hal_spec->max_tx_cnt;
hal_data->max_tx_cnt = rtw_min(hal_data->max_tx_cnt, tx_path_num);
if (hal_data->eeprom_max_tx_cnt)
hal_data->max_tx_cnt = rtw_min(hal_data->max_tx_cnt, hal_data->eeprom_max_tx_cnt);
if (1)
_dump_rf_path(RTW_DBGDUMP, adapter);
}
RTW_INFO("%s trx_path_bmp:0x%02x(%s), NumTotalRFPath:%u, max_tx_cnt:%u\n"
, __func__
, hal_data->trx_path_bmp
, rf_type_to_rfpath_str(hal_data->rf_type)
, hal_data->NumTotalRFPath
, hal_data->max_tx_cnt);
return _SUCCESS;
}
void _dump_trx_nss(void *sel, _adapter *adapter)
{
struct registry_priv *regpriv = &adapter->registrypriv;
struct hal_spec_t *hal_spec = GET_HAL_SPEC(adapter);
RTW_PRINT_SEL(sel, "[TRX_Nss] HALSPEC - tx_nss:%d, rx_nss:%d\n", hal_spec->tx_nss_num, hal_spec->rx_nss_num);
RTW_PRINT_SEL(sel, "[TRX_Nss] Registry - tx_nss:%d, rx_nss:%d\n", regpriv->tx_nss, regpriv->rx_nss);
RTW_PRINT_SEL(sel, "[TRX_Nss] HALDATA - tx_nss:%d, rx_nss:%d\n", GET_HAL_TX_NSS(adapter), GET_HAL_RX_NSS(adapter));
}
#define NSS_VALID(nss) (nss > 0)
u8 rtw_hal_trxnss_init(_adapter *adapter)
{
struct registry_priv *regpriv = &adapter->registrypriv;
struct hal_spec_t *hal_spec = GET_HAL_SPEC(adapter);
PHAL_DATA_TYPE hal_data = GET_HAL_DATA(adapter);
enum rf_type rf_path = GET_HAL_RFPATH(adapter);
int i;
hal_data->tx_nss = hal_spec->tx_nss_num;
hal_data->rx_nss = hal_spec->rx_nss_num;
if (NSS_VALID(regpriv->tx_nss))
hal_data->tx_nss = rtw_min(hal_data->tx_nss, regpriv->tx_nss);
hal_data->tx_nss = rtw_min(hal_data->tx_nss, hal_data->max_tx_cnt);
if (NSS_VALID(regpriv->rx_nss))
hal_data->rx_nss = rtw_min(hal_data->rx_nss, regpriv->rx_nss);
hal_data->rx_nss = rtw_min(hal_data->rx_nss, rf_type_to_rf_rx_cnt(rf_path));
for (i = 0; i < 4; i++) {
if (hal_data->tx_nss < i + 1)
break;
if (IS_HARDWARE_TYPE_8814B(adapter) /* 8814B is always full-TX */
#ifdef CONFIG_RTW_TX_NPATH_EN
/* these IC is capable of full-TX when macro defined */
|| IS_HARDWARE_TYPE_8192E(adapter) || IS_HARDWARE_TYPE_8192F(adapter)
|| IS_HARDWARE_TYPE_8812(adapter) || IS_HARDWARE_TYPE_8822B(adapter)
|| IS_HARDWARE_TYPE_8822C(adapter)
#endif
)
hal_data->txpath_cap_num_nss[i] = hal_data->max_tx_cnt;
else
hal_data->txpath_cap_num_nss[i] = i + 1;
}
if (1)
_dump_trx_nss(RTW_DBGDUMP, adapter);
RTW_INFO("%s tx_nss:%u, rx_nss:%u\n", __func__
, hal_data->tx_nss, hal_data->rx_nss);
return _SUCCESS;
}
#ifdef CONFIG_RTW_SW_LED
void rtw_hal_sw_led_init(_adapter *padapter)
{
struct led_priv *ledpriv = adapter_to_led(padapter);
if (ledpriv->bRegUseLed == _FALSE)
return;
if (!is_primary_adapter(padapter))
return;
if (padapter->hal_func.InitSwLeds) {
padapter->hal_func.InitSwLeds(padapter);
rtw_led_set_ctl_en_mask_primary(padapter);
rtw_led_set_iface_en(padapter, 1);
}
}
void rtw_hal_sw_led_deinit(_adapter *padapter)
{
struct led_priv *ledpriv = adapter_to_led(padapter);
if (ledpriv->bRegUseLed == _FALSE)
return;
if (!is_primary_adapter(padapter))
return;
if (padapter->hal_func.DeInitSwLeds)
padapter->hal_func.DeInitSwLeds(padapter);
}
#endif
u32 rtw_hal_power_on(_adapter *padapter)
{
u32 ret = 0;
PHAL_DATA_TYPE pHalData = GET_HAL_DATA(padapter);
ret = padapter->hal_func.hal_power_on(padapter);
#ifdef CONFIG_BT_COEXIST
if ((ret == _SUCCESS) && (pHalData->EEPROMBluetoothCoexist == _TRUE))
rtw_btcoex_PowerOnSetting(padapter);
#endif
return ret;
}
void rtw_hal_power_off(_adapter *padapter)
{
struct macid_ctl_t *macid_ctl = &padapter->dvobj->macid_ctl;
_rtw_memset(macid_ctl->h2c_msr, 0, MACID_NUM_SW_LIMIT);
_rtw_memset(macid_ctl->op_num, 0, H2C_MSR_ROLE_MAX);
#ifdef CONFIG_LPS_1T1R
GET_HAL_DATA(padapter)->lps_1t1r = 0;
#endif
#ifdef CONFIG_BT_COEXIST
rtw_btcoex_PowerOffSetting(padapter);
#endif
padapter->hal_func.hal_power_off(padapter);
}
void rtw_hal_init_opmode(_adapter *padapter)
{
NDIS_802_11_NETWORK_INFRASTRUCTURE networkType = Ndis802_11InfrastructureMax;
struct mlme_priv *pmlmepriv = &(padapter->mlmepriv);
sint fw_state;
fw_state = get_fwstate(pmlmepriv);
if (fw_state & WIFI_ADHOC_STATE)
networkType = Ndis802_11IBSS;
else if (fw_state & WIFI_STATION_STATE)
networkType = Ndis802_11Infrastructure;
#ifdef CONFIG_AP_MODE
else if (fw_state & WIFI_AP_STATE)
networkType = Ndis802_11APMode;
#endif
#ifdef CONFIG_RTW_MESH
else if (fw_state & WIFI_MESH_STATE)
networkType = Ndis802_11_mesh;
#endif
else
return;
rtw_setopmode_cmd(padapter, networkType, RTW_CMDF_DIRECTLY);
}
#ifdef CONFIG_NEW_NETDEV_HDL
uint rtw_hal_iface_init(_adapter *adapter)
{
uint status = _SUCCESS;
rtw_hal_set_hwreg(adapter, HW_VAR_MAC_ADDR, adapter_mac_addr(adapter));
#ifdef RTW_HALMAC
rtw_hal_hw_port_enable(adapter);
#endif
rtw_sec_restore_wep_key(adapter);
rtw_hal_init_opmode(adapter);
rtw_hal_start_thread(adapter);
return status;
}
uint rtw_hal_init(_adapter *padapter)
{
uint status = _SUCCESS;
PHAL_DATA_TYPE pHalData = GET_HAL_DATA(padapter);
halrf_set_rfsupportability(adapter_to_phydm(padapter));
status = padapter->hal_func.hal_init(padapter);
if(pHalData ->phydm_init_result) {
status = _FAIL;
RTW_ERR("%s phydm init fail reason=%u \n",
__func__,
pHalData ->phydm_init_result);
}
if (status == _SUCCESS) {
rtw_set_hw_init_completed(padapter, _TRUE);
if (padapter->registrypriv.notch_filter == 1)
rtw_hal_notch_filter(padapter, 1);
rtw_led_control(padapter, LED_CTL_POWER_ON);
init_hw_mlme_ext(padapter);
#ifdef CONFIG_RF_POWER_TRIM
rtw_bb_rf_gain_offset(padapter);
#endif /*CONFIG_RF_POWER_TRIM*/
GET_PRIMARY_ADAPTER(padapter)->bup = _TRUE; /*temporary*/
#ifdef CONFIG_MI_WITH_MBSSID_CAM
rtw_mi_set_mbid_cam(padapter);
#endif
#ifdef CONFIG_SUPPORT_MULTI_BCN
rtw_ap_multi_bcn_cfg(padapter);
#endif
#if (RTL8822B_SUPPORT == 1) || (RTL8192F_SUPPORT == 1)
#ifdef CONFIG_DYNAMIC_SOML
rtw_dyn_soml_config(padapter);
#endif
#endif
#ifdef CONFIG_TDMADIG
rtw_phydm_tdmadig(padapter, TDMADIG_INIT);
#endif/*CONFIG_TDMADIG*/
rtw_phydm_dyn_rrsr_en(padapter,padapter->registrypriv.en_dyn_rrsr);
#ifdef RTW_HALMAC
RTW_INFO("%s: padapter->registrypriv.set_rrsr_value=0x%x\n", __func__,padapter->registrypriv.set_rrsr_value);
if(padapter->registrypriv.set_rrsr_value != 0xFFFFFFFF)
rtw_phydm_set_rrsr(padapter, padapter->registrypriv.set_rrsr_value, TRUE);
#endif
} else {
rtw_set_hw_init_completed(padapter, _FALSE);
RTW_ERR("%s: hal_init fail\n", __func__);
}
return status;
}
#else
uint rtw_hal_init(_adapter *padapter)
{
uint status = _SUCCESS;
struct dvobj_priv *dvobj = adapter_to_dvobj(padapter);
PHAL_DATA_TYPE pHalData = GET_HAL_DATA(padapter);
int i;
halrf_set_rfsupportability(adapter_to_phydm(padapter));
status = padapter->hal_func.hal_init(padapter);
if(pHalData ->phydm_init_result) {
status = _FAIL;
RTW_ERR("%s phydm init fail reason=%u \n",
__func__,
pHalData->phydm_init_result);
}
if (status == _SUCCESS) {
rtw_set_hw_init_completed(padapter, _TRUE);
rtw_mi_set_mac_addr(padapter);/*set mac addr of all ifaces*/
#ifdef RTW_HALMAC
rtw_restore_hw_port_cfg(padapter);
#endif
if (padapter->registrypriv.notch_filter == 1)
rtw_hal_notch_filter(padapter, 1);
for (i = 0; i < dvobj->iface_nums; i++)
rtw_sec_restore_wep_key(dvobj->padapters[i]);
rtw_led_control(padapter, LED_CTL_POWER_ON);
init_hw_mlme_ext(padapter);
rtw_hal_init_opmode(padapter);
#ifdef CONFIG_RF_POWER_TRIM
rtw_bb_rf_gain_offset(padapter);
#endif /*CONFIG_RF_POWER_TRIM*/
#ifdef CONFIG_SUPPORT_MULTI_BCN
rtw_ap_multi_bcn_cfg(padapter);
#endif
#if (RTL8822B_SUPPORT == 1) || (RTL8192F_SUPPORT == 1)
#ifdef CONFIG_DYNAMIC_SOML
rtw_dyn_soml_config(padapter);
#endif
#endif
#ifdef CONFIG_TDMADIG
rtw_phydm_tdmadig(padapter, TDMADIG_INIT);
#endif/*CONFIG_TDMADIG*/
rtw_phydm_dyn_rrsr_en(padapter,padapter->registrypriv.en_dyn_rrsr);
#ifdef RTW_HALMAC
RTW_INFO("%s: padapter->registrypriv.set_rrsr_value=0x%x\n", __func__,padapter->registrypriv.set_rrsr_value);
if(padapter->registrypriv.set_rrsr_value != 0xFFFFFFFF)
rtw_phydm_set_rrsr(padapter, padapter->registrypriv.set_rrsr_value, TRUE);
#endif
} else {
rtw_set_hw_init_completed(padapter, _FALSE);
RTW_ERR("%s: fail\n", __func__);
}
return status;
}
#endif
uint rtw_hal_deinit(_adapter *padapter)
{
uint status = _SUCCESS;
status = padapter->hal_func.hal_deinit(padapter);
if (status == _SUCCESS) {
rtw_led_control(padapter, LED_CTL_POWER_OFF);
rtw_set_hw_init_completed(padapter, _FALSE);
} else
RTW_INFO("\n rtw_hal_deinit: hal_init fail\n");
return status;
}
u8 rtw_hal_set_hwreg(_adapter *padapter, u8 variable, u8 *val)
{
return padapter->hal_func.set_hw_reg_handler(padapter, variable, val);
}
void rtw_hal_get_hwreg(_adapter *padapter, u8 variable, u8 *val)
{
padapter->hal_func.GetHwRegHandler(padapter, variable, val);
}
u8 rtw_hal_set_def_var(_adapter *padapter, HAL_DEF_VARIABLE eVariable, void *pValue)
{
return padapter->hal_func.SetHalDefVarHandler(padapter, eVariable, pValue);
}
u8 rtw_hal_get_def_var(_adapter *padapter, HAL_DEF_VARIABLE eVariable, void *pValue)
{
return padapter->hal_func.get_hal_def_var_handler(padapter, eVariable, pValue);
}
void rtw_hal_set_odm_var(_adapter *padapter, HAL_ODM_VARIABLE eVariable, void *pValue1, BOOLEAN bSet)
{
padapter->hal_func.SetHalODMVarHandler(padapter, eVariable, pValue1, bSet);
}
void rtw_hal_get_odm_var(_adapter *padapter, HAL_ODM_VARIABLE eVariable, void *pValue1, void *pValue2)
{
padapter->hal_func.GetHalODMVarHandler(padapter, eVariable, pValue1, pValue2);
}
/* FOR SDIO & PCIE */
void rtw_hal_enable_interrupt(_adapter *padapter)
{
#if defined(CONFIG_PCI_HCI) || defined(CONFIG_SDIO_HCI) || defined (CONFIG_GSPI_HCI)
padapter->hal_func.enable_interrupt(padapter);
#endif /* #if defined(CONFIG_PCI_HCI) || defined (CONFIG_SDIO_HCI) || defined (CONFIG_GSPI_HCI) */
}
/* FOR SDIO & PCIE */
void rtw_hal_disable_interrupt(_adapter *padapter)
{
#if defined(CONFIG_PCI_HCI) || defined(CONFIG_SDIO_HCI) || defined (CONFIG_GSPI_HCI)
padapter->hal_func.disable_interrupt(padapter);
#endif /* #if defined(CONFIG_PCI_HCI) || defined (CONFIG_SDIO_HCI) || defined (CONFIG_GSPI_HCI) */
}
u8 rtw_hal_check_ips_status(_adapter *padapter)
{
u8 val = _FALSE;
if (padapter->hal_func.check_ips_status)
val = padapter->hal_func.check_ips_status(padapter);
else
RTW_INFO("%s: hal_func.check_ips_status is NULL!\n", __FUNCTION__);
return val;
}
s32 rtw_hal_fw_dl(_adapter *padapter, u8 wowlan)
{
s32 ret;
ret = padapter->hal_func.fw_dl(padapter, wowlan);
#ifdef CONFIG_LPS_1T1R
GET_HAL_DATA(padapter)->lps_1t1r = 0;
#endif
return ret;
}
#ifdef RTW_HALMAC
s32 rtw_hal_fw_mem_dl(_adapter *padapter, enum fw_mem mem)
{
systime dlfw_start_time = rtw_get_current_time();
struct dvobj_priv *dvobj = adapter_to_dvobj(padapter);
struct debug_priv *pdbgpriv = &dvobj->drv_dbg;
s32 rst = _FALSE;
rst = padapter->hal_func.fw_mem_dl(padapter, mem);
RTW_INFO("%s in %dms\n", __func__, rtw_get_passing_time_ms(dlfw_start_time));
if (rst == _FALSE)
pdbgpriv->dbg_fw_mem_dl_error_cnt++;
if (1)
RTW_INFO("%s dbg_fw_mem_dl_error_cnt:%d\n", __func__, pdbgpriv->dbg_fw_mem_dl_error_cnt);
return rst;
}
#endif
#if defined(CONFIG_WOWLAN) || defined(CONFIG_AP_WOWLAN)
void rtw_hal_clear_interrupt(_adapter *padapter)
{
#if defined(CONFIG_SDIO_HCI) || defined(CONFIG_GSPI_HCI)
padapter->hal_func.clear_interrupt(padapter);
#endif
}
#endif
#if defined(CONFIG_USB_HCI) || defined(CONFIG_PCI_HCI)
u32 rtw_hal_inirp_init(_adapter *padapter)
{
if (is_primary_adapter(padapter))
return padapter->hal_func.inirp_init(padapter);
return _SUCCESS;
}
u32 rtw_hal_inirp_deinit(_adapter *padapter)
{
if (is_primary_adapter(padapter))
return padapter->hal_func.inirp_deinit(padapter);
return _SUCCESS;
}
#endif /* #if defined(CONFIG_USB_HCI) || defined (CONFIG_PCI_HCI) */
#if defined(CONFIG_PCI_HCI)
void rtw_hal_irp_reset(_adapter *padapter)
{
padapter->hal_func.irp_reset(GET_PRIMARY_ADAPTER(padapter));
}
void rtw_hal_pci_dbi_write(_adapter *padapter, u16 addr, u8 data)
{
u16 cmd[2];
cmd[0] = addr;
cmd[1] = data;
padapter->hal_func.set_hw_reg_handler(padapter, HW_VAR_DBI, (u8 *) cmd);
}
u8 rtw_hal_pci_dbi_read(_adapter *padapter, u16 addr)
{
padapter->hal_func.GetHwRegHandler(padapter, HW_VAR_DBI, (u8 *)(&addr));
return (u8)addr;
}
void rtw_hal_pci_mdio_write(_adapter *padapter, u8 addr, u16 data)
{
u16 cmd[2];
cmd[0] = (u16)addr;
cmd[1] = data;
padapter->hal_func.set_hw_reg_handler(padapter, HW_VAR_MDIO, (u8 *) cmd);
}
u16 rtw_hal_pci_mdio_read(_adapter *padapter, u8 addr)
{
padapter->hal_func.GetHwRegHandler(padapter, HW_VAR_MDIO, &addr);
return (u8)addr;
}
u8 rtw_hal_pci_l1off_nic_support(_adapter *padapter)
{
u8 l1off;
padapter->hal_func.GetHwRegHandler(padapter, HW_VAR_L1OFF_NIC_SUPPORT, &l1off);
return l1off;
}
u8 rtw_hal_pci_l1off_capability(_adapter *padapter)
{
u8 l1off;
padapter->hal_func.GetHwRegHandler(padapter, HW_VAR_L1OFF_CAPABILITY, &l1off);
return l1off;
}
#endif /* #if defined(CONFIG_PCI_HCI) */
/* for USB Auto-suspend */
u8 rtw_hal_intf_ps_func(_adapter *padapter, HAL_INTF_PS_FUNC efunc_id, u8 *val)
{
if (padapter->hal_func.interface_ps_func)
return padapter->hal_func.interface_ps_func(padapter, efunc_id, val);
return _FAIL;
}
#ifdef CONFIG_RTW_MGMT_QUEUE
s32 rtw_hal_mgmt_xmitframe_enqueue(_adapter *padapter, struct xmit_frame *pxmitframe)
{
return padapter->hal_func.hal_mgmt_xmitframe_enqueue(padapter, pxmitframe);
}
#endif
s32 rtw_hal_xmitframe_enqueue(_adapter *padapter, struct xmit_frame *pxmitframe)
{
return padapter->hal_func.hal_xmitframe_enqueue(padapter, pxmitframe);
}
s32 rtw_hal_xmit(_adapter *padapter, struct xmit_frame *pxmitframe)
{
return padapter->hal_func.hal_xmit(padapter, pxmitframe);
}
/*
* [IMPORTANT] This function would be run in interrupt context.
*/
s32 rtw_hal_mgnt_xmit(_adapter *padapter, struct xmit_frame *pmgntframe)
{
#ifdef CONFIG_RTW_MGMT_QUEUE
_irqL irqL;
struct xmit_priv *pxmitpriv = &(padapter->xmitpriv);
#endif
s32 ret = _FAIL;
update_mgntframe_attrib_addr(padapter, pmgntframe);
#ifdef CONFIG_RTW_MGMT_QUEUE
update_mgntframe_subtype(padapter, pmgntframe);
#endif
#if defined(CONFIG_IEEE80211W) || defined(CONFIG_RTW_MESH)
if ((!MLME_IS_MESH(padapter) && SEC_IS_BIP_KEY_INSTALLED(&padapter->securitypriv) == _TRUE)
#ifdef CONFIG_RTW_MESH
|| (MLME_IS_MESH(padapter) && padapter->mesh_info.mesh_auth_id)
#endif
)
rtw_mgmt_xmitframe_coalesce(padapter, pmgntframe->pkt, pmgntframe);
#endif
#ifdef CONFIG_RTW_MGMT_QUEUE
if (MLME_IS_AP(padapter) || MLME_IS_MESH(padapter)) {
_enter_critical_bh(&pxmitpriv->lock, &irqL);
ret = mgmt_xmitframe_enqueue_for_sleeping_sta(padapter, pmgntframe);
_exit_critical_bh(&pxmitpriv->lock, &irqL);
#ifdef DBG_MGMT_QUEUE
if (ret == _TRUE)
RTW_INFO("%s doesn't be queued, dattrib->ra:"MAC_FMT" seq_num = %u, subtype = 0x%x\n",
__func__, MAC_ARG(pmgntframe->attrib.ra), pmgntframe->attrib.seqnum, pmgntframe->attrib.subtype);
#endif
if (ret == RTW_QUEUE_MGMT)
return ret;
}
#endif
ret = padapter->hal_func.mgnt_xmit(padapter, pmgntframe);
return ret;
}
s32 rtw_hal_init_xmit_priv(_adapter *padapter)
{
return padapter->hal_func.init_xmit_priv(padapter);
}
void rtw_hal_free_xmit_priv(_adapter *padapter)
{
padapter->hal_func.free_xmit_priv(padapter);
}
s32 rtw_hal_init_recv_priv(_adapter *padapter)
{
return padapter->hal_func.init_recv_priv(padapter);
}
void rtw_hal_free_recv_priv(_adapter *padapter)
{
padapter->hal_func.free_recv_priv(padapter);
}
void rtw_sta_ra_registed(_adapter *padapter, struct sta_info *psta)
{
HAL_DATA_TYPE *hal_data = GET_HAL_DATA(padapter);
if (psta == NULL) {
RTW_ERR(FUNC_ADPT_FMT" sta is NULL\n", FUNC_ADPT_ARG(padapter));
rtw_warn_on(1);
return;
}
#ifdef CONFIG_AP_MODE
if (MLME_IS_AP(padapter) || MLME_IS_MESH(padapter)) {
if (psta->cmn.aid > padapter->stapriv.max_aid) {
RTW_ERR("station aid %d exceed the max number\n", psta->cmn.aid);
rtw_warn_on(1);
return;
}
rtw_ap_update_sta_ra_info(padapter, psta);
}
#endif
psta->cmn.ra_info.ra_bw_mode = rtw_get_tx_bw_mode(padapter, psta);
/*set correct initial date rate for each mac_id */
hal_data->INIDATA_RATE[psta->cmn.mac_id] = psta->init_rate;
rtw_phydm_ra_registed(padapter, psta);
}
void rtw_hal_update_ra_mask(struct sta_info *psta)
{
_adapter *padapter;
if (!psta)
return;
padapter = psta->padapter;
rtw_sta_ra_registed(padapter, psta);
}
/* Start specifical interface thread */
void rtw_hal_start_thread(_adapter *padapter)
{
#if defined(CONFIG_SDIO_HCI) || defined(CONFIG_GSPI_HCI)
#ifndef CONFIG_SDIO_TX_TASKLET
padapter->hal_func.run_thread(padapter);
#endif
#endif
}
/* Start specifical interface thread */
void rtw_hal_stop_thread(_adapter *padapter)
{
#if defined(CONFIG_SDIO_HCI) || defined(CONFIG_GSPI_HCI)
#ifndef CONFIG_SDIO_TX_TASKLET
padapter->hal_func.cancel_thread(padapter);
#endif
#endif
}
u32 rtw_hal_read_bbreg(_adapter *padapter, u32 RegAddr, u32 BitMask)
{
u32 data = 0;
if (padapter->hal_func.read_bbreg)