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BT frames are passed through coex and hal modules to BUS. After firmware is loaded, based on the operating mode CARD READY frame comes for each protocol. When BT card ready is received, BT attach is called. Protocol operations are exchanged between the modules at initialization time. Build flag CONFIG_RSI_COEX is introduced to enable coex support if CONFIG_BT_RSIHCI is enabled. Coex operations are valid if coex mode is greater than 1 only. Signed-off-by: Siva Rebbagondla <siva.rebbagondla@redpinesignals.com> Signed-off-by: Prameela Rani Garnepudi <prameela.j04cs@gmail.com> Signed-off-by: Amitkumar Karwar <amit.karwar@redpinesignals.com> Signed-off-by: Kalle Valo <kvalo@codeaurora.org>
372 lines
8.7 KiB
C
372 lines
8.7 KiB
C
/**
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* Copyright (c) 2014 Redpine Signals Inc.
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*
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* Permission to use, copy, modify, and/or distribute this software for any
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* purpose with or without fee is hereby granted, provided that the above
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* copyright notice and this permission notice appear in all copies.
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*
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* THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
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* WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
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* MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
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* ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
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* WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
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* ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
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* OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
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*/
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#ifndef __RSI_MAIN_H__
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#define __RSI_MAIN_H__
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#include <linux/string.h>
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#include <linux/skbuff.h>
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#include <net/mac80211.h>
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#include <net/rsi_91x.h>
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struct rsi_sta {
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struct ieee80211_sta *sta;
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s16 sta_id;
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u16 seq_start[IEEE80211_NUM_TIDS];
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bool start_tx_aggr[IEEE80211_NUM_TIDS];
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};
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struct rsi_hw;
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#include "rsi_ps.h"
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#define ERR_ZONE BIT(0) /* For Error Msgs */
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#define INFO_ZONE BIT(1) /* For General Status Msgs */
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#define INIT_ZONE BIT(2) /* For Driver Init Seq Msgs */
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#define MGMT_TX_ZONE BIT(3) /* For TX Mgmt Path Msgs */
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#define MGMT_RX_ZONE BIT(4) /* For RX Mgmt Path Msgs */
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#define DATA_TX_ZONE BIT(5) /* For TX Data Path Msgs */
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#define DATA_RX_ZONE BIT(6) /* For RX Data Path Msgs */
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#define FSM_ZONE BIT(7) /* For State Machine Msgs */
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#define ISR_ZONE BIT(8) /* For Interrupt Msgs */
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enum RSI_FSM_STATES {
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FSM_FW_NOT_LOADED,
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FSM_CARD_NOT_READY,
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FSM_COMMON_DEV_PARAMS_SENT,
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FSM_BOOT_PARAMS_SENT,
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FSM_EEPROM_READ_MAC_ADDR,
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FSM_EEPROM_READ_RF_TYPE,
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FSM_RESET_MAC_SENT,
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FSM_RADIO_CAPS_SENT,
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FSM_BB_RF_PROG_SENT,
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FSM_MAC_INIT_DONE,
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NUM_FSM_STATES
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};
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extern u32 rsi_zone_enabled;
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extern __printf(2, 3) void rsi_dbg(u32 zone, const char *fmt, ...);
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#define RSI_MAX_VIFS 3
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#define NUM_EDCA_QUEUES 4
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#define IEEE80211_ADDR_LEN 6
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#define FRAME_DESC_SZ 16
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#define MIN_802_11_HDR_LEN 24
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#define RSI_DEF_KEEPALIVE 90
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#define RSI_WOW_KEEPALIVE 5
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#define RSI_BCN_MISS_THRESHOLD 24
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#define DATA_QUEUE_WATER_MARK 400
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#define MIN_DATA_QUEUE_WATER_MARK 300
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#define MULTICAST_WATER_MARK 200
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#define MAC_80211_HDR_FRAME_CONTROL 0
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#define WME_NUM_AC 4
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#define NUM_SOFT_QUEUES 6
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#define MAX_HW_QUEUES 12
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#define INVALID_QUEUE 0xff
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#define MAX_CONTINUOUS_VO_PKTS 8
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#define MAX_CONTINUOUS_VI_PKTS 4
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/* Hardware queue info */
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#define BROADCAST_HW_Q 9
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#define MGMT_HW_Q 10
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#define BEACON_HW_Q 11
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#define IEEE80211_MGMT_FRAME 0x00
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#define IEEE80211_CTL_FRAME 0x04
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#define RSI_MAX_ASSOC_STAS 32
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#define IEEE80211_QOS_TID 0x0f
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#define IEEE80211_NONQOS_TID 16
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#define MAX_DEBUGFS_ENTRIES 4
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#define TID_TO_WME_AC(_tid) ( \
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((_tid) == 0 || (_tid) == 3) ? BE_Q : \
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((_tid) < 3) ? BK_Q : \
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((_tid) < 6) ? VI_Q : \
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VO_Q)
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#define WME_AC(_q) ( \
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((_q) == BK_Q) ? IEEE80211_AC_BK : \
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((_q) == BE_Q) ? IEEE80211_AC_BE : \
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((_q) == VI_Q) ? IEEE80211_AC_VI : \
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IEEE80211_AC_VO)
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/* WoWLAN flags */
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#define RSI_WOW_ENABLED BIT(0)
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#define RSI_WOW_NO_CONNECTION BIT(1)
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#define RSI_DEV_9113 1
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struct version_info {
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u16 major;
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u16 minor;
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u8 release_num;
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u8 patch_num;
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union {
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struct {
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u8 fw_ver[8];
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} info;
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} ver;
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} __packed;
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struct skb_info {
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s8 rssi;
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u32 flags;
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u16 channel;
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s8 tid;
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s8 sta_id;
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u8 internal_hdr_size;
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struct ieee80211_vif *vif;
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u8 vap_id;
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};
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enum edca_queue {
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BK_Q,
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BE_Q,
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VI_Q,
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VO_Q,
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MGMT_SOFT_Q,
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MGMT_BEACON_Q
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};
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struct security_info {
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bool security_enable;
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u32 ptk_cipher;
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u32 gtk_cipher;
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};
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struct wmm_qinfo {
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s32 weight;
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s32 wme_params;
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s32 pkt_contended;
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s32 txop;
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};
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struct transmit_q_stats {
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u32 total_tx_pkt_send[NUM_EDCA_QUEUES + 2];
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u32 total_tx_pkt_freed[NUM_EDCA_QUEUES + 2];
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};
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struct vif_priv {
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bool is_ht;
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bool sgi;
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u16 seq_start;
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int vap_id;
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};
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struct rsi_event {
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atomic_t event_condition;
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wait_queue_head_t event_queue;
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};
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struct rsi_thread {
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void (*thread_function)(void *);
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struct completion completion;
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struct task_struct *task;
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struct rsi_event event;
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atomic_t thread_done;
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};
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struct cqm_info {
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s8 last_cqm_event_rssi;
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int rssi_thold;
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u32 rssi_hyst;
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};
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struct xtended_desc {
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u8 confirm_frame_type;
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u8 retry_cnt;
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u16 reserved;
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};
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enum rsi_dfs_regions {
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RSI_REGION_FCC = 0,
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RSI_REGION_ETSI,
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RSI_REGION_TELEC,
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RSI_REGION_WORLD
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};
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struct rsi_common {
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struct rsi_hw *priv;
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struct vif_priv vif_info[RSI_MAX_VIFS];
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void *coex_cb;
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bool mgmt_q_block;
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struct version_info lmac_ver;
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struct rsi_thread tx_thread;
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struct sk_buff_head tx_queue[NUM_EDCA_QUEUES + 2];
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struct completion wlan_init_completion;
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/* Mutex declaration */
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struct mutex mutex;
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/* Mutex used for tx thread */
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struct mutex tx_lock;
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/* Mutex used for rx thread */
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struct mutex rx_lock;
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u8 endpoint;
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/* Channel/band related */
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u8 band;
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u8 num_supp_bands;
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u8 channel_width;
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u16 rts_threshold;
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u16 bitrate_mask[2];
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u32 fixedrate_mask[2];
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u8 rf_reset;
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struct transmit_q_stats tx_stats;
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struct security_info secinfo;
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struct wmm_qinfo tx_qinfo[NUM_EDCA_QUEUES];
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struct ieee80211_tx_queue_params edca_params[NUM_EDCA_QUEUES];
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u8 mac_addr[IEEE80211_ADDR_LEN];
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/* state related */
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u32 fsm_state;
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bool init_done;
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u8 bb_rf_prog_count;
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bool iface_down;
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/* Generic */
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u8 channel;
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u8 *rx_data_pkt;
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u8 mac_id;
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u8 radio_id;
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u16 rate_pwr[20];
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u16 min_rate;
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/* WMM algo related */
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u8 selected_qnum;
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u32 pkt_cnt;
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u8 min_weight;
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/* bgscan related */
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struct cqm_info cqm_info;
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bool hw_data_qs_blocked;
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u8 driver_mode;
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u8 coex_mode;
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u16 oper_mode;
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u8 lp_ps_handshake_mode;
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u8 ulp_ps_handshake_mode;
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u8 uapsd_bitmap;
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u8 rf_power_val;
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u8 wlan_rf_power_mode;
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u8 obm_ant_sel_val;
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int tx_power;
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u8 ant_in_use;
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/* Mutex used for writing packet to bus */
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struct mutex tx_bus_mutex;
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bool hibernate_resume;
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bool reinit_hw;
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u8 wow_flags;
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u16 beacon_interval;
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u8 dtim_cnt;
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/* AP mode parameters */
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u8 beacon_enabled;
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u16 beacon_cnt;
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struct rsi_sta stations[RSI_MAX_ASSOC_STAS + 1];
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int num_stations;
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int max_stations;
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struct ieee80211_key_conf *key;
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/* Wi-Fi direct mode related */
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bool p2p_enabled;
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struct timer_list roc_timer;
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struct ieee80211_vif *roc_vif;
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void *bt_adapter;
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};
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struct eepromrw_info {
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u32 offset;
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u32 length;
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u8 write;
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u16 eeprom_erase;
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u8 data[480];
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};
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struct eeprom_read {
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u16 length;
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u16 off_set;
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};
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struct rsi_hw {
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struct rsi_common *priv;
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u8 device_model;
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struct ieee80211_hw *hw;
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struct ieee80211_vif *vifs[RSI_MAX_VIFS];
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struct ieee80211_tx_queue_params edca_params[NUM_EDCA_QUEUES];
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struct ieee80211_supported_band sbands[NUM_NL80211_BANDS];
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struct device *device;
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u8 sc_nvifs;
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enum rsi_host_intf rsi_host_intf;
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u16 block_size;
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enum ps_state ps_state;
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struct rsi_ps_info ps_info;
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spinlock_t ps_lock; /*To protect power save config*/
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u32 usb_buffer_status_reg;
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#ifdef CONFIG_RSI_DEBUGFS
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struct rsi_debugfs *dfsentry;
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u8 num_debugfs_entries;
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#endif
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char *fw_file_name;
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struct timer_list bl_cmd_timer;
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bool blcmd_timer_expired;
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u32 flash_capacity;
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struct eepromrw_info eeprom;
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u32 interrupt_status;
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u8 dfs_region;
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char country[2];
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void *rsi_dev;
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struct rsi_host_intf_ops *host_intf_ops;
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int (*check_hw_queue_status)(struct rsi_hw *adapter, u8 q_num);
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int (*rx_urb_submit)(struct rsi_hw *adapter, u8 ep_num);
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int (*determine_event_timeout)(struct rsi_hw *adapter);
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};
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void rsi_print_version(struct rsi_common *common);
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struct rsi_host_intf_ops {
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int (*read_pkt)(struct rsi_hw *adapter, u8 *pkt, u32 len);
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int (*write_pkt)(struct rsi_hw *adapter, u8 *pkt, u32 len);
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int (*master_access_msword)(struct rsi_hw *adapter, u16 ms_word);
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int (*read_reg_multiple)(struct rsi_hw *adapter, u32 addr,
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u8 *data, u16 count);
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int (*write_reg_multiple)(struct rsi_hw *adapter, u32 addr,
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u8 *data, u16 count);
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int (*master_reg_read)(struct rsi_hw *adapter, u32 addr,
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u32 *read_buf, u16 size);
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int (*master_reg_write)(struct rsi_hw *adapter,
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unsigned long addr, unsigned long data,
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u16 size);
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int (*load_data_master_write)(struct rsi_hw *adapter, u32 addr,
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u32 instructions_size, u16 block_size,
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u8 *fw);
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int (*reinit_device)(struct rsi_hw *adapter);
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};
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enum rsi_host_intf rsi_get_host_intf(void *priv);
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void rsi_set_bt_context(void *priv, void *bt_context);
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#endif
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