Files
wifi-rtl8852bs/phl/phl_api_drv.c
2024-03-01 19:54:35 +08:00

285 lines
8.2 KiB
C

/******************************************************************************
*
* Copyright(c) 2019 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 _PHL_API_DRV_C_
#include "phl_headers.h"
void *rtw_phl_get_txbd_buf(struct rtw_phl_com_t *phl_com)
{
struct phl_info_t *phl_info = (struct phl_info_t *)phl_com->phl_priv;
return phl_info->hci_trx_ops->get_txbd_buf(phl_info);
}
void *rtw_phl_get_rxbd_buf(struct rtw_phl_com_t *phl_com)
{
struct phl_info_t *phl_info = (struct phl_info_t *)phl_com->phl_priv;
return phl_info->hci_trx_ops->get_rxbd_buf(phl_info);
}
struct rtw_h2c_pkt *rtw_phl_query_h2c_pkt(struct rtw_phl_com_t *phl_com,
enum rtw_h2c_pkt_type type)
{
struct rtw_h2c_pkt *h2c_pkt = NULL;
struct phl_info_t *phl_info = (struct phl_info_t *)phl_com->phl_priv;
h2c_pkt = (struct rtw_h2c_pkt *)phl_query_idle_h2c_pkt(phl_info, type);
if (!h2c_pkt)
phl_dump_h2c_pool_stats(phl_info->h2c_pool);
return h2c_pkt;
}
enum rtw_phl_status rtw_phl_pltfm_tx(struct rtw_phl_com_t *phl_com,
struct rtw_h2c_pkt *pkt)
{
enum rtw_phl_status pstatus = RTW_PHL_STATUS_FAILURE;
struct phl_info_t *phl_info = (struct phl_info_t *)phl_com->phl_priv;
#ifdef CONFIG_PCI_HCI
struct phl_hci_trx_ops *hci_trx_ops = phl_info->hci_trx_ops;
hci_trx_ops->recycle_busy_h2c(phl_info);
#endif
#ifdef CONFIG_RTW_MIRROR_DUMP
phl_mirror_dump_h2c(phl_com->phl_priv, pkt);
#endif
pstatus = phl_info->hci_trx_ops->pltfm_tx(phl_info, pkt);
return pstatus;
}
void rtw_phl_proc_cmd(void *phl, char proc_cmd,
struct rtw_proc_cmd *incmd,
char *output, u32 out_len)
{
struct phl_info_t *phl_info = (struct phl_info_t *)phl;
struct hal_info_t *hal_info = (struct hal_info_t *)phl_info->hal;
/* Avoid string comparison mismatch since extra char '\n' was appended to buf */
if (incmd->in_type == RTW_ARG_TYPE_BUF
&& incmd->in_cnt_len
&& incmd->in.buf[incmd->in_cnt_len -1] == '\n'
) {
incmd->in_cnt_len--;
incmd->in.buf[incmd->in_cnt_len] = '\0';
}
if (RTW_PROC_CMD_PHL == proc_cmd)
rtw_phl_dbg_proc_cmd(phl_info, incmd, output, out_len);
else if (RTW_PROC_CMD_CORE == proc_cmd)
rtw_phl_dbg_core_cmd(phl_info, incmd, output, out_len);
else
rtw_hal_proc_cmd(hal_info, proc_cmd, incmd, output, out_len);
}
void rtw_phl_get_fw_ver(void *phl, char *ver_str, u16 len)
{
struct phl_info_t *phl_info = (struct phl_info_t *)phl;
rtw_hal_get_fw_ver(phl_info->hal, ver_str, len);
}
enum rtw_fw_status rtw_phl_get_fw_status(void *phl)
{
struct phl_info_t *phl_info = (struct phl_info_t *)phl;
return rtw_hal_get_fw_status(phl_info->hal);
}
enum rtw_phl_status rtw_phl_msg_hub_hal_send(struct rtw_phl_com_t *phl_com,
struct phl_msg_attribute* attr, struct phl_msg* msg)
{
return phl_msg_hub_send((struct phl_info_t*)phl_com->phl_priv, attr, msg);
}
void rtw_phl_test_txtb_cfg(struct rtw_phl_com_t* phl_com,
void *buf, u32 buf_len, u8 *cfg_bssid, u16 cfg_aid, u8 cfg_bsscolor)
{
/* Get parameters from MP UL */
u8 ui_bssid[6]={0x00, 0x09, 0x08, 0x07, 0x06, 0x05};
u16 ui_aid = 2;
u8 ui_bsscolor = 1;
u8 cfg;
struct phl_info_t *phl_info = (struct phl_info_t *)phl_com->phl_priv;
struct rtw_wifi_role_t *role = &phl_com->wifi_roles[0];
struct rtw_wifi_role_link_t *rlink = get_rlink(role,
RTW_RLINK_PRIMARY);
struct rtw_phl_stainfo_t *sta = rtw_phl_get_stainfo_self(
phl_com->phl_priv, rlink);
cfg = (u8)*((u8 *)buf);
switch (cfg) {
case 0:
/* disable */
role->mstate = MLME_NO_LINK;
rlink->mstate = MLME_NO_LINK;
_os_mem_cpy(phlcom_to_drvpriv(phl_com), sta->mac_addr,
role->mac_addr, MAC_ALEN);
rtw_hal_update_sta_entry(phl_com, phl_info->hal, sta, false);
rtw_hal_role_cfg(phl_info->hal, role, rlink);
break;
case 1:
role->mstate = MLME_LINKED;
rlink->mstate = MLME_LINKED;
_os_mem_cpy(phlcom_to_drvpriv(phl_com), sta->mac_addr,
cfg_bssid, MAC_ALEN);
sta->wmode = WLAN_MD_MAX;
sta->aid = cfg_aid;
sta->asoc_cap.bsscolor = cfg_bsscolor;
sta->asoc_cap.pkt_padding = 2;
rtw_hal_update_sta_entry(phl_com, phl_info->hal, sta, false);
rtw_hal_role_cfg(phl_info->hal, role, rlink);
break;
case 2:
role->mstate = MLME_LINKED;
rlink->mstate = MLME_LINKED;
_os_mem_cpy(phlcom_to_drvpriv(phl_com), sta->mac_addr,
ui_bssid, MAC_ALEN);
sta->wmode = WLAN_MD_MAX;
sta->aid = ui_aid;
sta->asoc_cap.bsscolor = ui_bsscolor;
sta->asoc_cap.pkt_padding = 2;
rtw_hal_update_sta_entry(phl_com, phl_info->hal, sta, false);
rtw_hal_role_cfg(phl_info->hal, role, rlink);
break;
default:
break;
}
}
void rtw_phl_pkt_ofld_del_all_entry_req(struct rtw_phl_com_t* phl_com)
{
struct phl_info_t *phl_info = (struct phl_info_t *)phl_com->phl_priv;
phl_pkt_ofld_del_all_entry_req(phl_info);
}
void rtw_phl_dbg_dump_rx(void *phl, struct rtw_wifi_role_t *wrole)
{
struct phl_info_t *phl_info = (struct phl_info_t *)phl;
struct rtw_wifi_role_link_t *rlink = NULL;
u8 idx = 0;
for (idx = 0; idx < wrole->rlink_num; idx++) {
rlink = get_rlink(wrole, idx);
phl_rx_dbg_dump(phl_info, rlink->hw_band);
}
}
u32 rtw_phl_get_phy_stat_info(void *phl, enum phl_band_idx hw_band,
enum phl_stat_info_query phy_stat)
{
struct phl_info_t *phl_info = (struct phl_info_t *)phl;
return rtw_hal_get_phy_stat_info(phl_info->hal, hw_band, phy_stat);
}
#ifdef CONFIG_PHL_DRV_HAS_NVM
enum rtw_phl_status
rtw_phl_extract_efuse_info(void *phl, u8 *efuse_map,
u32 info_type,
void *value,
u8 size, u8 map_valid)
{
struct phl_info_t *phl_info = (struct phl_info_t *)phl;
return rtw_hal_extract_efuse_info(phl_info->hal, efuse_map,
(enum rtw_efuse_info)info_type,
value,
size, map_valid);
}
enum rtw_phl_status
rtw_phl_get_efuse_size(void *phl, u32 *log_efuse_size, u32 *limit_efuse_size,
u32 *mask_size, u32 *limit_mask_size)
{
struct phl_info_t *phl_info = (struct phl_info_t *)phl;
return rtw_hal_get_efuse_size(phl_info->hal, log_efuse_size,
limit_efuse_size, mask_size,
limit_mask_size);
}
enum rtw_phl_status
rtw_phl_nvm_apply_dev_cap(void *phl)
{
struct phl_info_t *phl_info = (struct phl_info_t *)phl;
return rtw_hal_nvm_apply_dev_cap(phl_info->hal, phl_info->phl_com);
}
void rtw_phl_dump_tpu(void * phl)
{
struct phl_info_t *phl_info = (struct phl_info_t *)phl;
struct hal_info_t *hal_info = (struct hal_info_t *)(phl_info->hal);
rtw_hal_bb_dump_tpu_info(hal_info);
}
#endif /* CONFIG_PHL_DRV_HAS_NVM */
void rtw_phl_enable_interrupt_sync(struct rtw_phl_com_t* phl_com)
{
#ifdef CONFIG_SYNC_INTERRUPT
struct rtw_phl_evt_ops *evt_ops = &phl_com->evt_ops;
evt_ops->set_interrupt_caps(phl_com->drv_priv, true);
#else
struct phl_info_t *phl_info = (struct phl_info_t *)phl_com->phl_priv;
rtw_hal_enable_interrupt(phl_com, phl_info->hal);
#endif /* CONFIG_SYNC_INTERRUPT */
}
void rtw_phl_disable_interrupt_sync(struct rtw_phl_com_t* phl_com)
{
#ifdef CONFIG_SYNC_INTERRUPT
struct rtw_phl_evt_ops *evt_ops = &phl_com->evt_ops;
evt_ops->set_interrupt_caps(phl_com->drv_priv, false);
#else
struct phl_info_t *phl_info = (struct phl_info_t *)phl_com->phl_priv;
rtw_hal_disable_interrupt(phl_com, phl_info->hal);
#endif /* CONFIG_SYNC_INTERRUPT */
}
#ifdef CONFIG_PHL_FW_DUMP_EFUSE
void rtw_phl_fw_dump_efuse_precfg(struct rtw_phl_com_t* phl_com)
{
struct phl_info_t *phl_info = (struct phl_info_t *)phl_com->phl_priv;
phl_datapath_start_hw(phl_info);
rtw_phl_enable_interrupt_sync(phl_com);
}
void rtw_phl_fw_dump_efuse_postcfg(struct rtw_phl_com_t* phl_com)
{
struct phl_info_t *phl_info = (struct phl_info_t *)phl_com->phl_priv;
rtw_phl_disable_interrupt_sync(phl_com);
phl_datapath_stop_hw(phl_info);
}
#endif