sta_info.h 18.7 KB
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/*
 * Copyright 2002-2005, Devicescape Software, Inc.
 *
 * This program is free software; you can redistribute it and/or modify
 * it under the terms of the GNU General Public License version 2 as
 * published by the Free Software Foundation.
 */

#ifndef STA_INFO_H
#define STA_INFO_H

#include <linux/list.h>
#include <linux/types.h>
#include <linux/if_ether.h>
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#include <linux/workqueue.h>
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#include <linux/average.h>
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#include "key.h"
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/**
 * enum ieee80211_sta_info_flags - Stations flags
 *
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 * These flags are used with &struct sta_info's @flags member, but
 * only indirectly with set_sta_flag() and friends.
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 *
 * @WLAN_STA_AUTH: Station is authenticated.
 * @WLAN_STA_ASSOC: Station is associated.
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 * @WLAN_STA_PS_STA: Station is in power-save mode
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 * @WLAN_STA_AUTHORIZED: Station is authorized to send/receive traffic.
 *	This bit is always checked so needs to be enabled for all stations
 *	when virtual port control is not in use.
 * @WLAN_STA_SHORT_PREAMBLE: Station is capable of receiving short-preamble
 *	frames.
 * @WLAN_STA_WME: Station is a QoS-STA.
 * @WLAN_STA_WDS: Station is one of our WDS peers.
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 * @WLAN_STA_CLEAR_PS_FILT: Clear PS filter in hardware (using the
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 *	IEEE80211_TX_CTL_CLEAR_PS_FILT control flag) when the next
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 *	frame to this station is transmitted.
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 * @WLAN_STA_MFP: Management frame protection is used with this STA.
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 * @WLAN_STA_BLOCK_BA: Used to deny ADDBA requests (both TX and RX)
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 *	during suspend/resume and station removal.
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 * @WLAN_STA_PS_DRIVER: driver requires keeping this station in
 *	power-save mode logically to flush frames that might still
 *	be in the queues
 * @WLAN_STA_PSPOLL: Station sent PS-poll while driver was keeping
 *	station in power-save mode, reply when the driver unblocks.
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 * @WLAN_STA_TDLS_PEER: Station is a TDLS peer.
 * @WLAN_STA_TDLS_PEER_AUTH: This TDLS peer is authorized to send direct
 *	packets. This means the link is enabled.
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 * @WLAN_STA_UAPSD: Station requested unscheduled SP while driver was
 *	keeping station in power-save mode, reply when the driver
 *	unblocks the station.
 * @WLAN_STA_SP: Station is in a service period, so don't try to
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 *	reply to other uAPSD trigger frames or PS-Poll.
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 * @WLAN_STA_4ADDR_EVENT: 4-addr event was already sent for this frame.
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 * @WLAN_STA_RATE_CONTROL: rate control was initialized for this station.
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 */
enum ieee80211_sta_info_flags {
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	WLAN_STA_AUTH,
	WLAN_STA_ASSOC,
	WLAN_STA_PS_STA,
	WLAN_STA_AUTHORIZED,
	WLAN_STA_SHORT_PREAMBLE,
	WLAN_STA_WME,
	WLAN_STA_WDS,
	WLAN_STA_CLEAR_PS_FILT,
	WLAN_STA_MFP,
	WLAN_STA_BLOCK_BA,
	WLAN_STA_PS_DRIVER,
	WLAN_STA_PSPOLL,
	WLAN_STA_TDLS_PEER,
	WLAN_STA_TDLS_PEER_AUTH,
	WLAN_STA_UAPSD,
	WLAN_STA_SP,
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	WLAN_STA_4ADDR_EVENT,
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	WLAN_STA_RATE_CONTROL,
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};
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enum ieee80211_sta_state {
	/* NOTE: These need to be ordered correctly! */
	IEEE80211_STA_NONE,
	IEEE80211_STA_AUTH,
	IEEE80211_STA_ASSOC,
	IEEE80211_STA_AUTHORIZED,
};

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#define STA_TID_NUM 16
#define ADDBA_RESP_INTERVAL HZ
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#define HT_AGG_MAX_RETRIES		15
#define HT_AGG_BURST_RETRIES		3
#define HT_AGG_RETRIES_PERIOD		(15 * HZ)
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#define HT_AGG_STATE_DRV_READY		0
#define HT_AGG_STATE_RESPONSE_RECEIVED	1
#define HT_AGG_STATE_OPERATIONAL	2
#define HT_AGG_STATE_STOPPING		3
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#define HT_AGG_STATE_WANT_START		4
#define HT_AGG_STATE_WANT_STOP		5
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/**
 * struct tid_ampdu_tx - TID aggregation information (Tx).
 *
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 * @rcu_head: rcu head for freeing structure
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 * @session_timer: check if we keep Tx-ing on the TID (by timeout value)
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 * @addba_resp_timer: timer for peer's response to addba request
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 * @pending: pending frames queue -- use sta's spinlock to protect
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 * @dialog_token: dialog token for aggregation session
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 * @timeout: session timeout value to be filled in ADDBA requests
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 * @state: session state (see above)
 * @stop_initiator: initiator of a session stop
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 * @tx_stop: TX DelBA frame when stopping
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 * @buf_size: reorder buffer size at receiver
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 * @failed_bar_ssn: ssn of the last failed BAR tx attempt
 * @bar_pending: BAR needs to be re-sent
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 *
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 * This structure's lifetime is managed by RCU, assignments to
 * the array holding it must hold the aggregation mutex.
 *
 * The TX path can access it under RCU lock-free if, and
 * only if, the state has the flag %HT_AGG_STATE_OPERATIONAL
 * set. Otherwise, the TX path must also acquire the spinlock
 * and re-check the state, see comments in the tx code
 * touching it.
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 */
struct tid_ampdu_tx {
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	struct rcu_head rcu_head;
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	struct timer_list session_timer;
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	struct timer_list addba_resp_timer;
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	struct sk_buff_head pending;
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	unsigned long state;
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	u16 timeout;
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	u8 dialog_token;
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	u8 stop_initiator;
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	bool tx_stop;
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	u8 buf_size;
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	u16 failed_bar_ssn;
	bool bar_pending;
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};
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/**
 * struct tid_ampdu_rx - TID aggregation information (Rx).
 *
 * @reorder_buf: buffer to reorder incoming aggregated MPDUs
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 * @reorder_time: jiffies when skb was added
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 * @session_timer: check if peer keeps Tx-ing on the TID (by timeout value)
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 * @reorder_timer: releases expired frames from the reorder buffer.
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 * @head_seq_num: head sequence number in reordering buffer.
 * @stored_mpdu_num: number of MPDUs in reordering buffer
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 * @ssn: Starting Sequence Number expected to be aggregated.
 * @buf_size: buffer size for incoming A-MPDUs
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 * @timeout: reset timer value (in TUs).
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 * @dialog_token: dialog token for aggregation session
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 * @rcu_head: RCU head used for freeing this struct
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 * @reorder_lock: serializes access to reorder buffer, see below.
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 *
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 * This structure's lifetime is managed by RCU, assignments to
 * the array holding it must hold the aggregation mutex.
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 *
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 * The @reorder_lock is used to protect the members of this
 * struct, except for @timeout, @buf_size and @dialog_token,
 * which are constant across the lifetime of the struct (the
 * dialog token being used only for debugging).
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 */
struct tid_ampdu_rx {
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	struct rcu_head rcu_head;
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	spinlock_t reorder_lock;
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	struct sk_buff **reorder_buf;
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	unsigned long *reorder_time;
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	struct timer_list session_timer;
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	struct timer_list reorder_timer;
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	u16 head_seq_num;
	u16 stored_mpdu_num;
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	u16 ssn;
	u16 buf_size;
	u16 timeout;
	u8 dialog_token;
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};

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/**
 * struct sta_ampdu_mlme - STA aggregation information.
 *
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 * @tid_rx: aggregation info for Rx per TID -- RCU protected
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 * @tid_tx: aggregation info for Tx per TID
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 * @tid_start_tx: sessions where start was requested
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 * @addba_req_num: number of times addBA request has been sent.
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 * @last_addba_req_time: timestamp of the last addBA request.
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 * @dialog_token_allocator: dialog token enumerator for each new session;
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 * @work: work struct for starting/stopping aggregation
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 * @tid_rx_timer_expired: bitmap indicating on which TIDs the
 *	RX timer expired until the work for it runs
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 * @tid_rx_stop_requested:  bitmap indicating which BA sessions per TID the
 *	driver requested to close until the work for it runs
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 * @mtx: mutex to protect all TX data (except non-NULL assignments
 *	to tid_tx[idx], which are protected by the sta spinlock)
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 */
struct sta_ampdu_mlme {
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	struct mutex mtx;
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	/* rx */
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	struct tid_ampdu_rx __rcu *tid_rx[STA_TID_NUM];
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	unsigned long tid_rx_timer_expired[BITS_TO_LONGS(STA_TID_NUM)];
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	unsigned long tid_rx_stop_requested[BITS_TO_LONGS(STA_TID_NUM)];
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	/* tx */
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	struct work_struct work;
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	struct tid_ampdu_tx __rcu *tid_tx[STA_TID_NUM];
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	struct tid_ampdu_tx *tid_start_tx[STA_TID_NUM];
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	unsigned long last_addba_req_time[STA_TID_NUM];
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	u8 addba_req_num[STA_TID_NUM];
	u8 dialog_token_allocator;
};


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/**
 * struct sta_info - STA information
 *
 * This structure collects information about a station that
 * mac80211 is communicating with.
 *
 * @list: global linked list entry
 * @hnext: hash table linked list pointer
 * @local: pointer to the global information
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 * @sdata: virtual interface this station belongs to
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 * @ptk: peer key negotiated with this station, if any
 * @gtk: group keys negotiated with this station, if any
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 * @rate_ctrl: rate control algorithm reference
 * @rate_ctrl_priv: rate control private per-STA pointer
 * @last_tx_rate: rate used for last transmit, to report to userspace as
 *	"the" transmit rate
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 * @last_rx_rate_idx: rx status rate index of the last data packet
 * @last_rx_rate_flag: rx status flag of the last data packet
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 * @lock: used for locking all fields that require locking, see comments
 *	in the header file.
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 * @drv_unblock_wk: used for driver PS unblocking
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 * @listen_interval: listen interval of this station, when we're acting as AP
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 * @_flags: STA flags, see &enum ieee80211_sta_info_flags, do not use directly
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 * @ps_tx_buf: buffers (per AC) of frames to transmit to this station
 *	when it leaves power saving state or polls
 * @tx_filtered: buffers (per AC) of frames we already tried to
 *	transmit but were filtered by hardware due to STA having
 *	entered power saving state, these are also delivered to
 *	the station when it leaves powersave or polls for frames
 * @driver_buffered_tids: bitmap of TIDs the driver has data buffered on
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 * @rx_packets: Number of MSDUs received from this STA
 * @rx_bytes: Number of bytes received from this STA
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 * @wep_weak_iv_count: number of weak WEP IVs received from this station
 * @last_rx: time (in jiffies) when last frame was received from this STA
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 * @last_connected: time (in seconds) when a station got connected
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 * @num_duplicates: number of duplicate frames received from this STA
 * @rx_fragments: number of received MPDUs
 * @rx_dropped: number of dropped MPDUs from this STA
 * @last_signal: signal of last received frame from this STA
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 * @avg_signal: moving average of signal of received frames from this STA
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 * @last_seq_ctrl: last received seq/frag number from this STA (per RX queue)
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 * @tx_filtered_count: number of frames the hardware filtered for this STA
 * @tx_retry_failed: number of frames that failed retry
 * @tx_retry_count: total number of retries for frames to this STA
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 * @fail_avg: moving percentage of failed MSDUs
 * @tx_packets: number of RX/TX MSDUs
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 * @tx_bytes: number of bytes transmitted to this STA
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 * @tx_fragments: number of transmitted MPDUs
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 * @tid_seq: per-TID sequence numbers for sending to this STA
 * @ampdu_mlme: A-MPDU state machine state
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 * @timer_to_tid: identity mapping to ID timers
 * @llid: Local link ID
 * @plid: Peer link ID
 * @reason: Cancel reason on PLINK_HOLDING state
 * @plink_retries: Retries in establishment
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 * @ignore_plink_timer: ignore the peer-link timer (used internally)
 * @plink_state: peer link state
 * @plink_timeout: timeout of peer link
 * @plink_timer: peer link watch timer
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 * @plink_timer_was_running: used by suspend/resume to restore timers
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 * @debugfs: debug filesystem info
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 * @dead: set to true when sta is unlinked
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 * @uploaded: set to true when sta is uploaded to the driver
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 * @lost_packets: number of consecutive lost packets
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 * @dummy: indicate a dummy station created for receiving
 *	EAP frames before association
 * @sta: station information we share with the driver
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 * @sta_state: duplicates information about station state (for debug)
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 * @beacon_loss_count: number of times beacon loss has triggered
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 */
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struct sta_info {
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	/* General information, mostly static */
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	struct list_head list;
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	struct sta_info __rcu *hnext;
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	struct ieee80211_local *local;
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	struct ieee80211_sub_if_data *sdata;
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	struct ieee80211_key __rcu *gtk[NUM_DEFAULT_KEYS + NUM_DEFAULT_MGMT_KEYS];
	struct ieee80211_key __rcu *ptk;
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	struct rate_control_ref *rate_ctrl;
	void *rate_ctrl_priv;
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	spinlock_t lock;
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	struct work_struct drv_unblock_wk;

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	u16 listen_interval;
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	bool dead;

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	bool uploaded;
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	enum ieee80211_sta_state sta_state;

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	/* use the accessors defined below */
	unsigned long _flags;
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	/*
	 * STA powersave frame queues, no more than the internal
	 * locking required.
	 */
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	struct sk_buff_head ps_tx_buf[IEEE80211_NUM_ACS];
	struct sk_buff_head tx_filtered[IEEE80211_NUM_ACS];
	unsigned long driver_buffered_tids;
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	/* Updated from RX path only, no locking requirements */
	unsigned long rx_packets, rx_bytes;
	unsigned long wep_weak_iv_count;
	unsigned long last_rx;
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	long last_connected;
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	unsigned long num_duplicates;
	unsigned long rx_fragments;
	unsigned long rx_dropped;
	int last_signal;
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	struct ewma avg_signal;
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	/* Plus 1 for non-QoS frames */
	__le16 last_seq_ctrl[NUM_RX_DATA_QUEUES + 1];
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	/* Updated from TX status path only, no locking requirements */
	unsigned long tx_filtered_count;
	unsigned long tx_retry_failed, tx_retry_count;
	/* moving percentage of failed MSDUs */
	unsigned int fail_avg;

	/* Updated from TX path only, no locking requirements */
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	unsigned long tx_packets;
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	unsigned long tx_bytes;
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	unsigned long tx_fragments;
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	struct ieee80211_tx_rate last_tx_rate;
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	int last_rx_rate_idx;
	int last_rx_rate_flag;
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	u16 tid_seq[IEEE80211_QOS_CTL_TID_MASK + 1];
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	/*
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	 * Aggregation information, locked with lock.
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	 */
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	struct sta_ampdu_mlme ampdu_mlme;
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	u8 timer_to_tid[STA_TID_NUM];
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#ifdef CONFIG_MAC80211_MESH
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	/*
	 * Mesh peer link attributes
	 * TODO: move to a sub-structure that is referenced with pointer?
	 */
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	__le16 llid;
	__le16 plid;
	__le16 reason;
	u8 plink_retries;
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	bool ignore_plink_timer;
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	bool plink_timer_was_running;
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	enum nl80211_plink_state plink_state;
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	u32 plink_timeout;
	struct timer_list plink_timer;
#endif
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#ifdef CONFIG_MAC80211_DEBUGFS
	struct sta_info_debugfsdentries {
		struct dentry *dir;
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		bool add_has_run;
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	} debugfs;
#endif
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	unsigned int lost_packets;
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	unsigned int beacon_loss_count;
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	/* should be right in front of sta to be in the same cache line */
	bool dummy;

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	/* keep last! */
	struct ieee80211_sta sta;
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};

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static inline enum nl80211_plink_state sta_plink_state(struct sta_info *sta)
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{
#ifdef CONFIG_MAC80211_MESH
	return sta->plink_state;
#endif
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	return NL80211_PLINK_LISTEN;
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}

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static inline void set_sta_flag(struct sta_info *sta,
				enum ieee80211_sta_info_flags flag)
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{
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	WARN_ON(flag == WLAN_STA_AUTH ||
		flag == WLAN_STA_ASSOC ||
		flag == WLAN_STA_AUTHORIZED);
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	set_bit(flag, &sta->_flags);
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}

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static inline void clear_sta_flag(struct sta_info *sta,
				  enum ieee80211_sta_info_flags flag)
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{
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	WARN_ON(flag == WLAN_STA_AUTH ||
		flag == WLAN_STA_ASSOC ||
		flag == WLAN_STA_AUTHORIZED);
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	clear_bit(flag, &sta->_flags);
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}

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static inline int test_sta_flag(struct sta_info *sta,
				enum ieee80211_sta_info_flags flag)
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{
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	return test_bit(flag, &sta->_flags);
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}

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static inline int test_and_clear_sta_flag(struct sta_info *sta,
					  enum ieee80211_sta_info_flags flag)
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{
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	WARN_ON(flag == WLAN_STA_AUTH ||
		flag == WLAN_STA_ASSOC ||
		flag == WLAN_STA_AUTHORIZED);
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	return test_and_clear_bit(flag, &sta->_flags);
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}

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static inline int test_and_set_sta_flag(struct sta_info *sta,
					enum ieee80211_sta_info_flags flag)
{
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	WARN_ON(flag == WLAN_STA_AUTH ||
		flag == WLAN_STA_ASSOC ||
		flag == WLAN_STA_AUTHORIZED);
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	return test_and_set_bit(flag, &sta->_flags);
}

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int sta_info_move_state_checked(struct sta_info *sta,
				enum ieee80211_sta_state new_state);

static inline void sta_info_move_state(struct sta_info *sta,
				       enum ieee80211_sta_state new_state)
{
	int ret = sta_info_move_state_checked(sta, new_state);
	WARN_ON_ONCE(ret);
}


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void ieee80211_assign_tid_tx(struct sta_info *sta, int tid,
			     struct tid_ampdu_tx *tid_tx);
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static inline struct tid_ampdu_tx *
rcu_dereference_protected_tid_tx(struct sta_info *sta, int tid)
{
	return rcu_dereference_protected(sta->ampdu_mlme.tid_tx[tid],
					 lockdep_is_held(&sta->lock) ||
					 lockdep_is_held(&sta->ampdu_mlme.mtx));
}
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#define STA_HASH_SIZE 256
#define STA_HASH(sta) (sta[5])


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/* Maximum number of frames to buffer per power saving station per AC */
#define STA_MAX_TX_BUFFER	64
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/* Minimum buffered frame expiry time. If STA uses listen interval that is
 * smaller than this value, the minimum value here is used instead. */
#define STA_TX_BUFFER_EXPIRE (10 * HZ)

/* How often station data is cleaned up (e.g., expiration of buffered frames)
 */
#define STA_INFO_CLEANUP_INTERVAL (10 * HZ)

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/*
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 * Get a STA info, must be under RCU read lock.
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 */
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struct sta_info *sta_info_get(struct ieee80211_sub_if_data *sdata,
			      const u8 *addr);

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struct sta_info *sta_info_get_rx(struct ieee80211_sub_if_data *sdata,
			      const u8 *addr);

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struct sta_info *sta_info_get_bss(struct ieee80211_sub_if_data *sdata,
				  const u8 *addr);

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struct sta_info *sta_info_get_bss_rx(struct ieee80211_sub_if_data *sdata,
				  const u8 *addr);

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static inline
void for_each_sta_info_type_check(struct ieee80211_local *local,
				  const u8 *addr,
				  struct sta_info *sta,
				  struct sta_info *nxt)
{
}

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#define for_each_sta_info(local, _addr, _sta, nxt) 			\
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	for (	/* initialise loop */					\
		_sta = rcu_dereference(local->sta_hash[STA_HASH(_addr)]),\
		nxt = _sta ? rcu_dereference(_sta->hnext) : NULL;	\
		/* typecheck */						\
		for_each_sta_info_type_check(local, (_addr), _sta, nxt),\
		/* continue condition */				\
		_sta;							\
		/* advance loop */					\
		_sta = nxt,						\
		nxt = _sta ? rcu_dereference(_sta->hnext) : NULL	\
	     )								\
	/* run code only if address matches and it's not a dummy sta */	\
	if (memcmp(_sta->sta.addr, (_addr), ETH_ALEN) == 0 &&		\
		!_sta->dummy)

#define for_each_sta_info_rx(local, _addr, _sta, nxt)			\
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	for (	/* initialise loop */					\
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		_sta = rcu_dereference(local->sta_hash[STA_HASH(_addr)]),\
		nxt = _sta ? rcu_dereference(_sta->hnext) : NULL;	\
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		/* typecheck */						\
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		for_each_sta_info_type_check(local, (_addr), _sta, nxt),\
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		/* continue condition */				\
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		_sta;							\
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		/* advance loop */					\
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		_sta = nxt,						\
		nxt = _sta ? rcu_dereference(_sta->hnext) : NULL	\
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	     )								\
	/* compare address and run code only if it matches */		\
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	if (memcmp(_sta->sta.addr, (_addr), ETH_ALEN) == 0)
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/*
 * Get STA info by index, BROKEN!
 */
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struct sta_info *sta_info_get_by_idx(struct ieee80211_sub_if_data *sdata,
				     int idx);
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/*
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 * Create a new STA info, caller owns returned structure
 * until sta_info_insert().
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 */
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struct sta_info *sta_info_alloc(struct ieee80211_sub_if_data *sdata,
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				const u8 *addr, gfp_t gfp);
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void sta_info_free(struct ieee80211_local *local, struct sta_info *sta);

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/*
 * Insert STA info into hash table/list, returns zero or a
 * -EEXIST if (if the same MAC address is already present).
 *
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 * Calling the non-rcu version makes the caller relinquish,
 * the _rcu version calls read_lock_rcu() and must be called
 * without it held.
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 */
int sta_info_insert(struct sta_info *sta);
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int sta_info_insert_rcu(struct sta_info *sta) __acquires(RCU);
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int sta_info_reinsert(struct sta_info *sta);
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int sta_info_destroy_addr(struct ieee80211_sub_if_data *sdata,
			  const u8 *addr);
int sta_info_destroy_addr_bss(struct ieee80211_sub_if_data *sdata,
			      const u8 *addr);
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void sta_info_recalc_tim(struct sta_info *sta);
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void sta_info_init(struct ieee80211_local *local);
void sta_info_stop(struct ieee80211_local *local);
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int sta_info_flush(struct ieee80211_local *local,
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		   struct ieee80211_sub_if_data *sdata);
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void ieee80211_sta_expire(struct ieee80211_sub_if_data *sdata,
			  unsigned long exp_time);
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void ieee80211_sta_ps_deliver_wakeup(struct sta_info *sta);
void ieee80211_sta_ps_deliver_poll_response(struct sta_info *sta);
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void ieee80211_sta_ps_deliver_uapsd(struct sta_info *sta);
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#endif /* STA_INFO_H */