2 * Marvell Wireless LAN device driver: 802.11n RX Re-ordering
4 * Copyright (C) 2011-2014, Marvell International Ltd.
6 * This software file (the "File") is distributed by Marvell International
7 * Ltd. under the terms of the GNU General Public License Version 2, June 1991
8 * (the "License"). You may use, redistribute and/or modify this File in
9 * accordance with the terms and conditions of the License, a copy of which
10 * is available by writing to the Free Software Foundation, Inc.,
11 * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA or on the
12 * worldwide web at http://www.gnu.org/licenses/old-licenses/gpl-2.0.txt.
14 * THE FILE IS DISTRIBUTED AS-IS, WITHOUT WARRANTY OF ANY KIND, AND THE
15 * IMPLIED WARRANTIES OF MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE
16 * ARE EXPRESSLY DISCLAIMED. The License provides additional details about
17 * this warranty disclaimer.
27 #include "11n_rxreorder.h"
29 /* This function will dispatch amsdu packet and forward it to kernel/upper
32 static int mwifiex_11n_dispatch_amsdu_pkt(struct mwifiex_private
*priv
,
35 struct rxpd
*local_rx_pd
= (struct rxpd
*)(skb
->data
);
38 if (le16_to_cpu(local_rx_pd
->rx_pkt_type
) == PKT_TYPE_AMSDU
) {
39 struct sk_buff_head list
;
40 struct sk_buff
*rx_skb
;
42 __skb_queue_head_init(&list
);
44 skb_pull(skb
, le16_to_cpu(local_rx_pd
->rx_pkt_offset
));
45 skb_trim(skb
, le16_to_cpu(local_rx_pd
->rx_pkt_length
));
47 ieee80211_amsdu_to_8023s(skb
, &list
, priv
->curr_addr
,
48 priv
->wdev
->iftype
, 0, false);
50 while (!skb_queue_empty(&list
)) {
51 rx_skb
= __skb_dequeue(&list
);
52 ret
= mwifiex_recv_packet(priv
, rx_skb
);
54 dev_err(priv
->adapter
->dev
,
55 "Rx of A-MSDU failed");
63 /* This function will process the rx packet and forward it to kernel/upper
66 static int mwifiex_11n_dispatch_pkt(struct mwifiex_private
*priv
, void *payload
)
68 int ret
= mwifiex_11n_dispatch_amsdu_pkt(priv
, payload
);
73 if (priv
->bss_role
== MWIFIEX_BSS_ROLE_UAP
)
74 return mwifiex_handle_uap_rx_forward(priv
, payload
);
76 return mwifiex_process_rx_packet(priv
, payload
);
80 * This function dispatches all packets in the Rx reorder table until the
83 * There could be holes in the buffer, which are skipped by the function.
84 * Since the buffer is linear, the function uses rotation to simulate
88 mwifiex_11n_dispatch_pkt_until_start_win(struct mwifiex_private
*priv
,
89 struct mwifiex_rx_reorder_tbl
*tbl
,
96 pkt_to_send
= (start_win
> tbl
->start_win
) ?
97 min((start_win
- tbl
->start_win
), tbl
->win_size
) :
100 for (i
= 0; i
< pkt_to_send
; ++i
) {
101 spin_lock_irqsave(&priv
->rx_pkt_lock
, flags
);
103 if (tbl
->rx_reorder_ptr
[i
]) {
104 rx_tmp_ptr
= tbl
->rx_reorder_ptr
[i
];
105 tbl
->rx_reorder_ptr
[i
] = NULL
;
107 spin_unlock_irqrestore(&priv
->rx_pkt_lock
, flags
);
109 mwifiex_11n_dispatch_pkt(priv
, rx_tmp_ptr
);
112 spin_lock_irqsave(&priv
->rx_pkt_lock
, flags
);
114 * We don't have a circular buffer, hence use rotation to simulate
117 for (i
= 0; i
< tbl
->win_size
- pkt_to_send
; ++i
) {
118 tbl
->rx_reorder_ptr
[i
] = tbl
->rx_reorder_ptr
[pkt_to_send
+ i
];
119 tbl
->rx_reorder_ptr
[pkt_to_send
+ i
] = NULL
;
122 tbl
->start_win
= start_win
;
123 spin_unlock_irqrestore(&priv
->rx_pkt_lock
, flags
);
127 * This function dispatches all packets in the Rx reorder table until
130 * The start window is adjusted automatically when a hole is located.
131 * Since the buffer is linear, the function uses rotation to simulate
135 mwifiex_11n_scan_and_dispatch(struct mwifiex_private
*priv
,
136 struct mwifiex_rx_reorder_tbl
*tbl
)
142 for (i
= 0; i
< tbl
->win_size
; ++i
) {
143 spin_lock_irqsave(&priv
->rx_pkt_lock
, flags
);
144 if (!tbl
->rx_reorder_ptr
[i
]) {
145 spin_unlock_irqrestore(&priv
->rx_pkt_lock
, flags
);
148 rx_tmp_ptr
= tbl
->rx_reorder_ptr
[i
];
149 tbl
->rx_reorder_ptr
[i
] = NULL
;
150 spin_unlock_irqrestore(&priv
->rx_pkt_lock
, flags
);
151 mwifiex_11n_dispatch_pkt(priv
, rx_tmp_ptr
);
154 spin_lock_irqsave(&priv
->rx_pkt_lock
, flags
);
156 * We don't have a circular buffer, hence use rotation to simulate
160 xchg
= tbl
->win_size
- i
;
161 for (j
= 0; j
< xchg
; ++j
) {
162 tbl
->rx_reorder_ptr
[j
] = tbl
->rx_reorder_ptr
[i
+ j
];
163 tbl
->rx_reorder_ptr
[i
+ j
] = NULL
;
166 tbl
->start_win
= (tbl
->start_win
+ i
) & (MAX_TID_VALUE
- 1);
167 spin_unlock_irqrestore(&priv
->rx_pkt_lock
, flags
);
171 * This function deletes the Rx reorder table and frees the memory.
173 * The function stops the associated timer and dispatches all the
174 * pending packets in the Rx reorder table before deletion.
177 mwifiex_del_rx_reorder_entry(struct mwifiex_private
*priv
,
178 struct mwifiex_rx_reorder_tbl
*tbl
)
186 spin_lock_irqsave(&priv
->adapter
->rx_proc_lock
, flags
);
187 priv
->adapter
->rx_locked
= true;
188 if (priv
->adapter
->rx_processing
) {
189 spin_unlock_irqrestore(&priv
->adapter
->rx_proc_lock
, flags
);
190 flush_workqueue(priv
->adapter
->rx_workqueue
);
192 spin_unlock_irqrestore(&priv
->adapter
->rx_proc_lock
, flags
);
195 start_win
= (tbl
->start_win
+ tbl
->win_size
) & (MAX_TID_VALUE
- 1);
196 mwifiex_11n_dispatch_pkt_until_start_win(priv
, tbl
, start_win
);
198 del_timer_sync(&tbl
->timer_context
.timer
);
199 tbl
->timer_context
.timer_is_set
= false;
201 spin_lock_irqsave(&priv
->rx_reorder_tbl_lock
, flags
);
202 list_del(&tbl
->list
);
203 spin_unlock_irqrestore(&priv
->rx_reorder_tbl_lock
, flags
);
205 kfree(tbl
->rx_reorder_ptr
);
208 spin_lock_irqsave(&priv
->adapter
->rx_proc_lock
, flags
);
209 priv
->adapter
->rx_locked
= false;
210 spin_unlock_irqrestore(&priv
->adapter
->rx_proc_lock
, flags
);
215 * This function returns the pointer to an entry in Rx reordering
216 * table which matches the given TA/TID pair.
218 struct mwifiex_rx_reorder_tbl
*
219 mwifiex_11n_get_rx_reorder_tbl(struct mwifiex_private
*priv
, int tid
, u8
*ta
)
221 struct mwifiex_rx_reorder_tbl
*tbl
;
224 spin_lock_irqsave(&priv
->rx_reorder_tbl_lock
, flags
);
225 list_for_each_entry(tbl
, &priv
->rx_reorder_tbl_ptr
, list
) {
226 if (!memcmp(tbl
->ta
, ta
, ETH_ALEN
) && tbl
->tid
== tid
) {
227 spin_unlock_irqrestore(&priv
->rx_reorder_tbl_lock
,
232 spin_unlock_irqrestore(&priv
->rx_reorder_tbl_lock
, flags
);
237 /* This function retrieves the pointer to an entry in Rx reordering
238 * table which matches the given TA and deletes it.
240 void mwifiex_11n_del_rx_reorder_tbl_by_ta(struct mwifiex_private
*priv
, u8
*ta
)
242 struct mwifiex_rx_reorder_tbl
*tbl
, *tmp
;
248 spin_lock_irqsave(&priv
->rx_reorder_tbl_lock
, flags
);
249 list_for_each_entry_safe(tbl
, tmp
, &priv
->rx_reorder_tbl_ptr
, list
) {
250 if (!memcmp(tbl
->ta
, ta
, ETH_ALEN
)) {
251 spin_unlock_irqrestore(&priv
->rx_reorder_tbl_lock
,
253 mwifiex_del_rx_reorder_entry(priv
, tbl
);
254 spin_lock_irqsave(&priv
->rx_reorder_tbl_lock
, flags
);
257 spin_unlock_irqrestore(&priv
->rx_reorder_tbl_lock
, flags
);
263 * This function finds the last sequence number used in the packets
264 * buffered in Rx reordering table.
267 mwifiex_11n_find_last_seq_num(struct reorder_tmr_cnxt
*ctx
)
269 struct mwifiex_rx_reorder_tbl
*rx_reorder_tbl_ptr
= ctx
->ptr
;
270 struct mwifiex_private
*priv
= ctx
->priv
;
274 spin_lock_irqsave(&priv
->rx_reorder_tbl_lock
, flags
);
275 for (i
= rx_reorder_tbl_ptr
->win_size
- 1; i
>= 0; --i
) {
276 if (rx_reorder_tbl_ptr
->rx_reorder_ptr
[i
]) {
277 spin_unlock_irqrestore(&priv
->rx_reorder_tbl_lock
,
282 spin_unlock_irqrestore(&priv
->rx_reorder_tbl_lock
, flags
);
288 * This function flushes all the packets in Rx reordering table.
290 * The function checks if any packets are currently buffered in the
291 * table or not. In case there are packets available, it dispatches
292 * them and then dumps the Rx reordering table.
295 mwifiex_flush_data(unsigned long context
)
297 struct reorder_tmr_cnxt
*ctx
=
298 (struct reorder_tmr_cnxt
*) context
;
299 int start_win
, seq_num
;
301 ctx
->timer_is_set
= false;
302 seq_num
= mwifiex_11n_find_last_seq_num(ctx
);
307 dev_dbg(ctx
->priv
->adapter
->dev
, "info: flush data %d\n", seq_num
);
308 start_win
= (ctx
->ptr
->start_win
+ seq_num
+ 1) & (MAX_TID_VALUE
- 1);
309 mwifiex_11n_dispatch_pkt_until_start_win(ctx
->priv
, ctx
->ptr
,
314 * This function creates an entry in Rx reordering table for the
317 * The function also initializes the entry with sequence number, window
318 * size as well as initializes the timer.
320 * If the received TA/TID pair is already present, all the packets are
321 * dispatched and the window size is moved until the SSN.
324 mwifiex_11n_create_rx_reorder_tbl(struct mwifiex_private
*priv
, u8
*ta
,
325 int tid
, int win_size
, int seq_num
)
328 struct mwifiex_rx_reorder_tbl
*tbl
, *new_node
;
331 struct mwifiex_sta_node
*node
;
334 * If we get a TID, ta pair which is already present dispatch all the
335 * the packets and move the window size until the ssn
337 tbl
= mwifiex_11n_get_rx_reorder_tbl(priv
, tid
, ta
);
339 mwifiex_11n_dispatch_pkt_until_start_win(priv
, tbl
, seq_num
);
342 /* if !tbl then create one */
343 new_node
= kzalloc(sizeof(struct mwifiex_rx_reorder_tbl
), GFP_KERNEL
);
347 INIT_LIST_HEAD(&new_node
->list
);
349 memcpy(new_node
->ta
, ta
, ETH_ALEN
);
350 new_node
->start_win
= seq_num
;
351 new_node
->init_win
= seq_num
;
354 if (mwifiex_queuing_ra_based(priv
)) {
355 dev_dbg(priv
->adapter
->dev
,
356 "info: AP/ADHOC:last_seq=%d start_win=%d\n",
357 last_seq
, new_node
->start_win
);
358 if (priv
->bss_role
== MWIFIEX_BSS_ROLE_UAP
) {
359 node
= mwifiex_get_sta_entry(priv
, ta
);
361 last_seq
= node
->rx_seq
[tid
];
364 node
= mwifiex_get_sta_entry(priv
, ta
);
366 last_seq
= node
->rx_seq
[tid
];
368 last_seq
= priv
->rx_seq
[tid
];
371 if (last_seq
!= MWIFIEX_DEF_11N_RX_SEQ_NUM
&&
372 last_seq
>= new_node
->start_win
) {
373 new_node
->start_win
= last_seq
+ 1;
374 new_node
->flags
|= RXREOR_INIT_WINDOW_SHIFT
;
377 new_node
->win_size
= win_size
;
379 new_node
->rx_reorder_ptr
= kzalloc(sizeof(void *) * win_size
,
381 if (!new_node
->rx_reorder_ptr
) {
382 kfree((u8
*) new_node
);
383 dev_err(priv
->adapter
->dev
,
384 "%s: failed to alloc reorder_ptr\n", __func__
);
388 new_node
->timer_context
.ptr
= new_node
;
389 new_node
->timer_context
.priv
= priv
;
390 new_node
->timer_context
.timer_is_set
= false;
392 init_timer(&new_node
->timer_context
.timer
);
393 new_node
->timer_context
.timer
.function
= mwifiex_flush_data
;
394 new_node
->timer_context
.timer
.data
=
395 (unsigned long) &new_node
->timer_context
;
397 for (i
= 0; i
< win_size
; ++i
)
398 new_node
->rx_reorder_ptr
[i
] = NULL
;
400 spin_lock_irqsave(&priv
->rx_reorder_tbl_lock
, flags
);
401 list_add_tail(&new_node
->list
, &priv
->rx_reorder_tbl_ptr
);
402 spin_unlock_irqrestore(&priv
->rx_reorder_tbl_lock
, flags
);
406 mwifiex_11n_rxreorder_timer_restart(struct mwifiex_rx_reorder_tbl
*tbl
)
410 if (tbl
->win_size
>= MWIFIEX_BA_WIN_SIZE_32
)
411 min_flush_time
= MIN_FLUSH_TIMER_15_MS
;
413 min_flush_time
= MIN_FLUSH_TIMER_MS
;
415 mod_timer(&tbl
->timer_context
.timer
,
416 jiffies
+ msecs_to_jiffies(min_flush_time
* tbl
->win_size
));
418 tbl
->timer_context
.timer_is_set
= true;
422 * This function prepares command for adding a BA request.
424 * Preparation includes -
425 * - Setting command ID and proper size
426 * - Setting add BA request buffer
427 * - Ensuring correct endian-ness
429 int mwifiex_cmd_11n_addba_req(struct host_cmd_ds_command
*cmd
, void *data_buf
)
431 struct host_cmd_ds_11n_addba_req
*add_ba_req
= &cmd
->params
.add_ba_req
;
433 cmd
->command
= cpu_to_le16(HostCmd_CMD_11N_ADDBA_REQ
);
434 cmd
->size
= cpu_to_le16(sizeof(*add_ba_req
) + S_DS_GEN
);
435 memcpy(add_ba_req
, data_buf
, sizeof(*add_ba_req
));
441 * This function prepares command for adding a BA response.
443 * Preparation includes -
444 * - Setting command ID and proper size
445 * - Setting add BA response buffer
446 * - Ensuring correct endian-ness
448 int mwifiex_cmd_11n_addba_rsp_gen(struct mwifiex_private
*priv
,
449 struct host_cmd_ds_command
*cmd
,
450 struct host_cmd_ds_11n_addba_req
453 struct host_cmd_ds_11n_addba_rsp
*add_ba_rsp
= &cmd
->params
.add_ba_rsp
;
454 struct mwifiex_sta_node
*sta_ptr
;
455 u32 rx_win_size
= priv
->add_ba_param
.rx_win_size
;
458 uint16_t block_ack_param_set
;
460 if ((GET_BSS_ROLE(priv
) == MWIFIEX_BSS_ROLE_STA
) &&
461 ISSUPP_TDLS_ENABLED(priv
->adapter
->fw_cap_info
) &&
462 priv
->adapter
->is_hw_11ac_capable
&&
463 memcmp(priv
->cfg_bssid
, cmd_addba_req
->peer_mac_addr
, ETH_ALEN
)) {
464 sta_ptr
= mwifiex_get_sta_entry(priv
,
465 cmd_addba_req
->peer_mac_addr
);
467 dev_warn(priv
->adapter
->dev
,
468 "BA setup with unknown TDLS peer %pM!\n",
469 cmd_addba_req
->peer_mac_addr
);
472 if (sta_ptr
->is_11ac_enabled
)
473 rx_win_size
= MWIFIEX_11AC_STA_AMPDU_DEF_RXWINSIZE
;
476 cmd
->command
= cpu_to_le16(HostCmd_CMD_11N_ADDBA_RSP
);
477 cmd
->size
= cpu_to_le16(sizeof(*add_ba_rsp
) + S_DS_GEN
);
479 memcpy(add_ba_rsp
->peer_mac_addr
, cmd_addba_req
->peer_mac_addr
,
481 add_ba_rsp
->dialog_token
= cmd_addba_req
->dialog_token
;
482 add_ba_rsp
->block_ack_tmo
= cmd_addba_req
->block_ack_tmo
;
483 add_ba_rsp
->ssn
= cmd_addba_req
->ssn
;
485 block_ack_param_set
= le16_to_cpu(cmd_addba_req
->block_ack_param_set
);
486 tid
= (block_ack_param_set
& IEEE80211_ADDBA_PARAM_TID_MASK
)
487 >> BLOCKACKPARAM_TID_POS
;
488 add_ba_rsp
->status_code
= cpu_to_le16(ADDBA_RSP_STATUS_ACCEPT
);
489 block_ack_param_set
&= ~IEEE80211_ADDBA_PARAM_BUF_SIZE_MASK
;
491 /* If we don't support AMSDU inside AMPDU, reset the bit */
492 if (!priv
->add_ba_param
.rx_amsdu
||
493 (priv
->aggr_prio_tbl
[tid
].amsdu
== BA_STREAM_NOT_ALLOWED
))
494 block_ack_param_set
&= ~BLOCKACKPARAM_AMSDU_SUPP_MASK
;
495 block_ack_param_set
|= rx_win_size
<< BLOCKACKPARAM_WINSIZE_POS
;
496 add_ba_rsp
->block_ack_param_set
= cpu_to_le16(block_ack_param_set
);
497 win_size
= (le16_to_cpu(add_ba_rsp
->block_ack_param_set
)
498 & IEEE80211_ADDBA_PARAM_BUF_SIZE_MASK
)
499 >> BLOCKACKPARAM_WINSIZE_POS
;
500 cmd_addba_req
->block_ack_param_set
= cpu_to_le16(block_ack_param_set
);
502 mwifiex_11n_create_rx_reorder_tbl(priv
, cmd_addba_req
->peer_mac_addr
,
504 le16_to_cpu(cmd_addba_req
->ssn
));
509 * This function prepares command for deleting a BA request.
511 * Preparation includes -
512 * - Setting command ID and proper size
513 * - Setting del BA request buffer
514 * - Ensuring correct endian-ness
516 int mwifiex_cmd_11n_delba(struct host_cmd_ds_command
*cmd
, void *data_buf
)
518 struct host_cmd_ds_11n_delba
*del_ba
= &cmd
->params
.del_ba
;
520 cmd
->command
= cpu_to_le16(HostCmd_CMD_11N_DELBA
);
521 cmd
->size
= cpu_to_le16(sizeof(*del_ba
) + S_DS_GEN
);
522 memcpy(del_ba
, data_buf
, sizeof(*del_ba
));
528 * This function identifies if Rx reordering is needed for a received packet.
530 * In case reordering is required, the function will do the reordering
531 * before sending it to kernel.
533 * The Rx reorder table is checked first with the received TID/TA pair. If
534 * not found, the received packet is dispatched immediately. But if found,
535 * the packet is reordered and all the packets in the updated Rx reordering
536 * table is dispatched until a hole is found.
538 * For sequence number less than the starting window, the packet is dropped.
540 int mwifiex_11n_rx_reorder_pkt(struct mwifiex_private
*priv
,
541 u16 seq_num
, u16 tid
,
542 u8
*ta
, u8 pkt_type
, void *payload
)
544 struct mwifiex_rx_reorder_tbl
*tbl
;
545 int prev_start_win
, start_win
, end_win
, win_size
;
547 bool init_window_shift
= false;
550 tbl
= mwifiex_11n_get_rx_reorder_tbl(priv
, tid
, ta
);
552 if (pkt_type
!= PKT_TYPE_BAR
)
553 mwifiex_11n_dispatch_pkt(priv
, payload
);
557 if ((pkt_type
== PKT_TYPE_AMSDU
) && !tbl
->amsdu
) {
558 mwifiex_11n_dispatch_pkt(priv
, payload
);
562 start_win
= tbl
->start_win
;
563 prev_start_win
= start_win
;
564 win_size
= tbl
->win_size
;
565 end_win
= ((start_win
+ win_size
) - 1) & (MAX_TID_VALUE
- 1);
566 if (tbl
->flags
& RXREOR_INIT_WINDOW_SHIFT
) {
567 init_window_shift
= true;
568 tbl
->flags
&= ~RXREOR_INIT_WINDOW_SHIFT
;
571 if (tbl
->flags
& RXREOR_FORCE_NO_DROP
) {
572 dev_dbg(priv
->adapter
->dev
,
573 "RXREOR_FORCE_NO_DROP when HS is activated\n");
574 tbl
->flags
&= ~RXREOR_FORCE_NO_DROP
;
575 } else if (init_window_shift
&& seq_num
< start_win
&&
576 seq_num
>= tbl
->init_win
) {
577 dev_dbg(priv
->adapter
->dev
,
578 "Sender TID sequence number reset %d->%d for SSN %d\n",
579 start_win
, seq_num
, tbl
->init_win
);
580 tbl
->start_win
= start_win
= seq_num
;
581 end_win
= ((start_win
+ win_size
) - 1) & (MAX_TID_VALUE
- 1);
584 * If seq_num is less then starting win then ignore and drop
587 if ((start_win
+ TWOPOW11
) > (MAX_TID_VALUE
- 1)) {
588 if (seq_num
>= ((start_win
+ TWOPOW11
) &
589 (MAX_TID_VALUE
- 1)) &&
590 seq_num
< start_win
) {
594 } else if ((seq_num
< start_win
) ||
595 (seq_num
>= (start_win
+ TWOPOW11
))) {
602 * If this packet is a BAR we adjust seq_num as
605 if (pkt_type
== PKT_TYPE_BAR
)
606 seq_num
= ((seq_num
+ win_size
) - 1) & (MAX_TID_VALUE
- 1);
608 if (((end_win
< start_win
) &&
609 (seq_num
< start_win
) && (seq_num
> end_win
)) ||
610 ((end_win
> start_win
) && ((seq_num
> end_win
) ||
611 (seq_num
< start_win
)))) {
613 if (((seq_num
- win_size
) + 1) >= 0)
614 start_win
= (end_win
- win_size
) + 1;
616 start_win
= (MAX_TID_VALUE
- (win_size
- seq_num
)) + 1;
617 mwifiex_11n_dispatch_pkt_until_start_win(priv
, tbl
, start_win
);
620 if (pkt_type
!= PKT_TYPE_BAR
) {
621 if (seq_num
>= start_win
)
622 pkt_index
= seq_num
- start_win
;
624 pkt_index
= (seq_num
+MAX_TID_VALUE
) - start_win
;
626 if (tbl
->rx_reorder_ptr
[pkt_index
]) {
631 tbl
->rx_reorder_ptr
[pkt_index
] = payload
;
635 * Dispatch all packets sequentially from start_win until a
636 * hole is found and adjust the start_win appropriately
638 mwifiex_11n_scan_and_dispatch(priv
, tbl
);
641 if (!tbl
->timer_context
.timer_is_set
||
642 prev_start_win
!= tbl
->start_win
)
643 mwifiex_11n_rxreorder_timer_restart(tbl
);
648 * This function deletes an entry for a given TID/TA pair.
650 * The TID/TA are taken from del BA event body.
653 mwifiex_del_ba_tbl(struct mwifiex_private
*priv
, int tid
, u8
*peer_mac
,
654 u8 type
, int initiator
)
656 struct mwifiex_rx_reorder_tbl
*tbl
;
657 struct mwifiex_tx_ba_stream_tbl
*ptx_tbl
;
658 u8 cleanup_rx_reorder_tbl
;
661 if (type
== TYPE_DELBA_RECEIVE
)
662 cleanup_rx_reorder_tbl
= (initiator
) ? true : false;
664 cleanup_rx_reorder_tbl
= (initiator
) ? false : true;
666 dev_dbg(priv
->adapter
->dev
, "event: DELBA: %pM tid=%d initiator=%d\n",
667 peer_mac
, tid
, initiator
);
669 if (cleanup_rx_reorder_tbl
) {
670 tbl
= mwifiex_11n_get_rx_reorder_tbl(priv
, tid
,
673 dev_dbg(priv
->adapter
->dev
,
674 "event: TID, TA not found in table\n");
677 mwifiex_del_rx_reorder_entry(priv
, tbl
);
679 ptx_tbl
= mwifiex_get_ba_tbl(priv
, tid
, peer_mac
);
681 dev_dbg(priv
->adapter
->dev
,
682 "event: TID, RA not found in table\n");
686 spin_lock_irqsave(&priv
->tx_ba_stream_tbl_lock
, flags
);
687 mwifiex_11n_delete_tx_ba_stream_tbl_entry(priv
, ptx_tbl
);
688 spin_unlock_irqrestore(&priv
->tx_ba_stream_tbl_lock
, flags
);
693 * This function handles the command response of an add BA response.
695 * Handling includes changing the header fields into CPU format and
696 * creating the stream, provided the add BA is accepted.
698 int mwifiex_ret_11n_addba_resp(struct mwifiex_private
*priv
,
699 struct host_cmd_ds_command
*resp
)
701 struct host_cmd_ds_11n_addba_rsp
*add_ba_rsp
= &resp
->params
.add_ba_rsp
;
703 struct mwifiex_rx_reorder_tbl
*tbl
;
704 uint16_t block_ack_param_set
;
706 block_ack_param_set
= le16_to_cpu(add_ba_rsp
->block_ack_param_set
);
708 tid
= (block_ack_param_set
& IEEE80211_ADDBA_PARAM_TID_MASK
)
709 >> BLOCKACKPARAM_TID_POS
;
711 * Check if we had rejected the ADDBA, if yes then do not create
714 if (le16_to_cpu(add_ba_rsp
->status_code
) != BA_RESULT_SUCCESS
) {
715 dev_err(priv
->adapter
->dev
, "ADDBA RSP: failed %pM tid=%d)\n",
716 add_ba_rsp
->peer_mac_addr
, tid
);
718 tbl
= mwifiex_11n_get_rx_reorder_tbl(priv
, tid
,
719 add_ba_rsp
->peer_mac_addr
);
721 mwifiex_del_rx_reorder_entry(priv
, tbl
);
726 win_size
= (block_ack_param_set
& IEEE80211_ADDBA_PARAM_BUF_SIZE_MASK
)
727 >> BLOCKACKPARAM_WINSIZE_POS
;
729 tbl
= mwifiex_11n_get_rx_reorder_tbl(priv
, tid
,
730 add_ba_rsp
->peer_mac_addr
);
732 if ((block_ack_param_set
& BLOCKACKPARAM_AMSDU_SUPP_MASK
) &&
733 priv
->add_ba_param
.rx_amsdu
&&
734 (priv
->aggr_prio_tbl
[tid
].amsdu
!= BA_STREAM_NOT_ALLOWED
))
740 dev_dbg(priv
->adapter
->dev
,
741 "cmd: ADDBA RSP: %pM tid=%d ssn=%d win_size=%d\n",
742 add_ba_rsp
->peer_mac_addr
, tid
, add_ba_rsp
->ssn
, win_size
);
748 * This function handles BA stream timeout event by preparing and sending
749 * a command to the firmware.
751 void mwifiex_11n_ba_stream_timeout(struct mwifiex_private
*priv
,
752 struct host_cmd_ds_11n_batimeout
*event
)
754 struct host_cmd_ds_11n_delba delba
;
756 memset(&delba
, 0, sizeof(struct host_cmd_ds_11n_delba
));
757 memcpy(delba
.peer_mac_addr
, event
->peer_mac_addr
, ETH_ALEN
);
759 delba
.del_ba_param_set
|=
760 cpu_to_le16((u16
) event
->tid
<< DELBA_TID_POS
);
761 delba
.del_ba_param_set
|= cpu_to_le16(
762 (u16
) event
->origninator
<< DELBA_INITIATOR_POS
);
763 delba
.reason_code
= cpu_to_le16(WLAN_REASON_QSTA_TIMEOUT
);
764 mwifiex_send_cmd(priv
, HostCmd_CMD_11N_DELBA
, 0, 0, &delba
, false);
768 * This function cleans up the Rx reorder table by deleting all the entries
769 * and re-initializing.
771 void mwifiex_11n_cleanup_reorder_tbl(struct mwifiex_private
*priv
)
773 struct mwifiex_rx_reorder_tbl
*del_tbl_ptr
, *tmp_node
;
776 spin_lock_irqsave(&priv
->rx_reorder_tbl_lock
, flags
);
777 list_for_each_entry_safe(del_tbl_ptr
, tmp_node
,
778 &priv
->rx_reorder_tbl_ptr
, list
) {
779 spin_unlock_irqrestore(&priv
->rx_reorder_tbl_lock
, flags
);
780 mwifiex_del_rx_reorder_entry(priv
, del_tbl_ptr
);
781 spin_lock_irqsave(&priv
->rx_reorder_tbl_lock
, flags
);
783 INIT_LIST_HEAD(&priv
->rx_reorder_tbl_ptr
);
784 spin_unlock_irqrestore(&priv
->rx_reorder_tbl_lock
, flags
);
786 mwifiex_reset_11n_rx_seq_num(priv
);
790 * This function updates all rx_reorder_tbl's flags.
792 void mwifiex_update_rxreor_flags(struct mwifiex_adapter
*adapter
, u8 flags
)
794 struct mwifiex_private
*priv
;
795 struct mwifiex_rx_reorder_tbl
*tbl
;
796 unsigned long lock_flags
;
799 for (i
= 0; i
< adapter
->priv_num
; i
++) {
800 priv
= adapter
->priv
[i
];
804 spin_lock_irqsave(&priv
->rx_reorder_tbl_lock
, lock_flags
);
805 if (list_empty(&priv
->rx_reorder_tbl_ptr
)) {
806 spin_unlock_irqrestore(&priv
->rx_reorder_tbl_lock
,
811 list_for_each_entry(tbl
, &priv
->rx_reorder_tbl_ptr
, list
)
813 spin_unlock_irqrestore(&priv
->rx_reorder_tbl_lock
, lock_flags
);