carl9170 firmware: trivial checkpatch fixes
[carl9170fw.git] / carlfw / src / wlan.c
1 /*
2  * carl9170 firmware - used by the ar9170 wireless device
3  *
4  * Interface to the WLAN part of the chip
5  *
6  * Copyright (c) 2000-2005 ZyDAS Technology Corporation
7  * Copyright (c) 2007-2009 Atheros Communications, Inc.
8  * Copyright    2009    Johannes Berg <johannes@sipsolutions.net>
9  * Copyright 2009-2011  Christian Lamparter <chunkeey@googlemail.com>
10  *
11  * This program is free software; you can redistribute it and/or modify
12  * it under the terms of the GNU General Public License as published by
13  * the Free Software Foundation; either version 2 of the License, or
14  * (at your option) any later version.
15  *
16  * This program is distributed in the hope that it will be useful,
17  * but WITHOUT ANY WARRANTY; without even the implied warranty of
18  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
19  * GNU General Public License for more details.
20  *
21  * You should have received a copy of the GNU General Public License along
22  * with this program; if not, write to the Free Software Foundation, Inc.,
23  * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
24  */
25
26 #include "carl9170.h"
27 #include "shared/phy.h"
28 #include "hostif.h"
29 #include "timer.h"
30 #include "wl.h"
31 #include "printf.h"
32 #include "rf.h"
33 #include "linux/ieee80211.h"
34 #include "wol.h"
35
36 static void wlan_txunstuck(unsigned int queue)
37 {
38         set_wlan_txq_dma_addr(queue, ((uint32_t) fw.wlan.tx_queue[queue].head) | 1);
39 }
40
41 #ifdef CONFIG_CARL9170FW_DMA_QUEUE_BUMP
42 static void wlan_txupdate(unsigned int queue)
43 {
44         set_wlan_txq_dma_addr(queue, ((uint32_t) fw.wlan.tx_queue[queue].head));
45 }
46
47 static void wlan_dma_bump(unsigned int qidx)
48 {
49         unsigned int offset = qidx;
50         uint32_t status, trigger;
51
52         status = get(AR9170_MAC_REG_DMA_STATUS) >> 12;
53         trigger = get(AR9170_MAC_REG_DMA_TRIGGER) >> 12;
54
55         while (offset != 0) {
56                 status >>= 4;
57                 trigger >>= 4;
58                 offset--;
59         }
60
61         status &= 0xf;
62         trigger &= 0xf;
63
64         if ((trigger == 0xa) && (status == 0x8)) {
65                 DBG("UNSTUCK");
66                 wlan_txunstuck(qidx);
67         } else {
68                 DBG("UPDATE");
69                 wlan_txupdate(qidx);
70         }
71 }
72 #endif /* CONFIG_CARL9170FW_DMA_QUEUE_BUMP */
73
74 #ifdef CONFIG_CARL9170FW_DEBUG
75 static void wlan_dump_queue(unsigned int qidx)
76 {
77
78         struct dma_desc *desc;
79         struct carl9170_tx_superframe *super;
80         int entries = 0;
81
82         __for_each_desc(desc, &fw.wlan.tx_queue[qidx]) {
83                 super = get_super(desc);
84                 DBG("%d: %p s:%x c:%x tl:%x ds:%x n:%p l:%p ", entries, desc,
85                     desc->status, desc->ctrl, desc->totalLen,
86                     desc->dataSize, desc->nextAddr, desc->lastAddr);
87
88                 DBG("c:%x tr:%d ri:%d l:%x m:%x p:%x fc:%x",
89                     super->s.cookie, super->s.cnt, super->s.rix,
90                     super->f.hdr.length, super->f.hdr.mac.set,
91                     (unsigned int) le32_to_cpu(super->f.hdr.phy.set),
92                     super->f.data.i3e.frame_control);
93
94                 entries++;
95         }
96
97         desc = get_wlan_txq_addr(qidx);
98
99         DBG("Queue: %d: te:%d td:%d h:%p c:%p t:%p",
100             qidx, entries, queue_len(&fw.wlan.tx_queue[qidx]),
101             fw.wlan.tx_queue[qidx].head,
102             desc, fw.wlan.tx_queue[qidx].terminator);
103
104         DBG("HW: t:%x s:%x ac:%x c:%x",
105             (unsigned int) get(AR9170_MAC_REG_DMA_TRIGGER),
106             (unsigned int) get(AR9170_MAC_REG_DMA_STATUS),
107             (unsigned int) get(AR9170_MAC_REG_AMPDU_COUNT),
108             (unsigned int) get(AR9170_MAC_REG_DMA_TXQX_ADDR_CURR));
109 }
110 #endif /* CONFIG_CARL9170FW_DEBUG */
111
112 static void wlan_send_buffered_tx_status(void)
113 {
114         unsigned int len;
115
116         while (fw.wlan.tx_status_pending) {
117                 len = min((unsigned int)fw.wlan.tx_status_pending,
118                           CARL9170_RSP_TX_STATUS_NUM);
119                 len = min(len, CARL9170_TX_STATUS_NUM - fw.wlan.tx_status_head_idx);
120
121                 /*
122                  * rather than memcpy each individual request into a large buffer,
123                  * we _splice_ them all together.
124                  *
125                  * The only downside is however that we have to be careful around
126                  * the edges of the tx_status_cache.
127                  *
128                  * Note:
129                  * Each tx_status is about 2 bytes. However every command package
130                  * must have a size which is a multiple of 4.
131                  */
132
133                 send_cmd_to_host((len * sizeof(struct carl9170_tx_status) + 3) & ~3,
134                                  CARL9170_RSP_TXCOMP, len, (void *)
135                                  &fw.wlan.tx_status_cache[fw.wlan.tx_status_head_idx]);
136
137                 fw.wlan.tx_status_pending -= len;
138                 fw.wlan.tx_status_head_idx += len;
139                 fw.wlan.tx_status_head_idx %= CARL9170_TX_STATUS_NUM;
140         }
141 }
142
143 static struct carl9170_tx_status *wlan_get_tx_status_buffer(void)
144 {
145         struct carl9170_tx_status *tmp;
146
147         tmp = &fw.wlan.tx_status_cache[fw.wlan.tx_status_tail_idx++];
148         fw.wlan.tx_status_tail_idx %= CARL9170_TX_STATUS_NUM;
149
150         if (fw.wlan.tx_status_pending == CARL9170_TX_STATUS_NUM)
151                 wlan_send_buffered_tx_status();
152
153         fw.wlan.tx_status_pending++;
154
155         return tmp;
156 }
157
158 /* generate _aggregated_ tx_status for the host */
159 void wlan_tx_complete(struct carl9170_tx_superframe *super,
160                       bool txs)
161 {
162         struct carl9170_tx_status *status;
163
164         status = wlan_get_tx_status_buffer();
165
166         /*
167          * The *unique* cookie and AC_ID is used by the driver for
168          * frame lookup.
169          */
170         status->cookie = super->s.cookie;
171         status->queue = super->s.queue;
172         super->s.cookie = 0;
173
174         /*
175          * This field holds the number of tries of the rate in
176          * the rate index field (rix).
177          */
178         status->rix = super->s.rix;
179         status->tries = super->s.cnt;
180         status->success = (txs) ? 1 : 0;
181 }
182
183 static bool wlan_tx_consume_retry(struct carl9170_tx_superframe *super)
184 {
185         /* check if this was the last possible retry with this rate */
186         if (unlikely(super->s.cnt >= super->s.ri[super->s.rix].tries)) {
187                 /* end of the road - indicate tx failure */
188                 if (unlikely(super->s.rix == CARL9170_TX_MAX_RETRY_RATES))
189                         return false;
190
191                 /* check if there are alternative rates available */
192                 if (!super->s.rr[super->s.rix].set)
193                         return false;
194
195                 /* try next retry rate */
196                 super->f.hdr.phy.set = super->s.rr[super->s.rix].set;
197
198                 /* finally - mark the old rate as USED */
199                 super->s.rix++;
200
201                 /* update MAC flags */
202                 super->f.hdr.mac.erp_prot = super->s.ri[super->s.rix].erp_prot;
203                 super->f.hdr.mac.ampdu = super->s.ri[super->s.rix].ampdu;
204
205                 /* reinitialize try counter */
206                 super->s.cnt = 1;
207         } else {
208                 /* just increase retry counter */
209                 super->s.cnt++;
210         }
211
212         return true;
213 }
214
215 static inline u16 get_tid(struct ieee80211_hdr *hdr)
216 {
217         return (ieee80211_get_qos_ctl(hdr))[0] & IEEE80211_QOS_CTL_TID_MASK;
218 }
219
220 /* This function will only work on uint32_t-aligned pointers! */
221 static bool same_hdr(const void *_d0, const void *_d1)
222 {
223         const uint32_t *d0 = _d0;
224         const uint32_t *d1 = _d1;
225
226         /* BUG_ON((unsigned long)d0 & 3 || (unsigned long)d1 & 3)) */
227         return !((d0[0] ^ d1[0]) |                      /* FC + DU */
228                  (d0[1] ^ d1[1]) |                      /* addr1 */
229                  (d0[2] ^ d1[2]) | (d0[3] ^ d1[3]) |    /* addr2 + addr3 */
230                  (d0[4] ^ d1[4]));                      /* addr3 */
231 }
232
233 static inline bool same_aggr(struct ieee80211_hdr *a, struct ieee80211_hdr *b)
234 {
235         return (get_tid(a) == get_tid(b)) || same_hdr(a, b);
236 }
237
238 static void wlan_tx_ampdu_reset(unsigned int qidx)
239 {
240         fw.wlan.ampdu_prev[qidx] = NULL;
241 }
242
243 static void wlan_tx_ampdu_end(unsigned int qidx)
244 {
245         struct carl9170_tx_superframe *ht_prev = fw.wlan.ampdu_prev[qidx];
246
247         if (ht_prev)
248                 ht_prev->f.hdr.mac.ba_end = 1;
249
250         wlan_tx_ampdu_reset(qidx);
251 }
252
253 static void wlan_tx_ampdu(struct carl9170_tx_superframe *super)
254 {
255         unsigned int qidx = super->s.queue;
256         struct carl9170_tx_superframe *ht_prev = fw.wlan.ampdu_prev[qidx];
257
258         if (super->f.hdr.mac.ampdu) {
259                 if (ht_prev &&
260                     !same_aggr(&super->f.data.i3e, &ht_prev->f.data.i3e))
261                         ht_prev->f.hdr.mac.ba_end = 1;
262                 else
263                         super->f.hdr.mac.ba_end = 0;
264
265                 fw.wlan.ampdu_prev[qidx] = super;
266         } else {
267                 wlan_tx_ampdu_end(qidx);
268         }
269 }
270
271 /* for all tries */
272 static void __wlan_tx(struct dma_desc *desc)
273 {
274         struct carl9170_tx_superframe *super = get_super(desc);
275
276         if (unlikely(super->s.fill_in_tsf)) {
277                 struct ieee80211_mgmt *mgmt = (void *) &super->f.data.i3e;
278                 uint32_t *tsf = (uint32_t *) &mgmt->u.probe_resp.timestamp;
279
280                 /*
281                  * Truth be told: this is a hack.
282                  *
283                  * The *real* TSF is definitely going to be higher/older.
284                  * But this hardware emulation code is head and shoulders
285                  * above anything a driver can possibly do.
286                  *
287                  * (even, if it's got an accurate atomic clock source).
288                  */
289
290                 read_tsf(tsf);
291         }
292
293         wlan_tx_ampdu(super);
294
295 #if (defined CONFIG_CARL9170FW_LOOPBACK) || (defined CONFIG_CARL9170FW_DISCARD)
296         wlan_tx_complete(super, true);
297         unhide_super(desc);
298 # ifdef CONFIG_CARL9170FW_LOOPBACK
299         dma_put(&fw.pta.up_queue, desc);
300         up_trigger();
301 # elif CONFIG_CARL9170FW_DISCARD
302         dma_reclaim(&fw.pta.down_queue, desc);
303         down_trigger();
304 # endif
305 #else /* CONFIG_CARL9170FW_LOOPBACK */
306
307 # ifdef CONFIG_CARL9170FW_DEBUG
308         BUG_ON(fw.phy.psm.state != CARL9170_PSM_WAKE);
309 # endif /* CONFIG_CARL9170FW_DEBUG */
310
311         /* insert desc into the right queue */
312         dma_put(&fw.wlan.tx_queue[super->s.queue], desc);
313 #endif /* CONFIG_CARL9170FW_LOOPBACK */
314 }
315
316 static void wlan_assign_seq(struct ieee80211_hdr *hdr, unsigned int vif)
317 {
318         hdr->seq_ctrl &= cpu_to_le16(~IEEE80211_SCTL_SEQ);
319         hdr->seq_ctrl |= cpu_to_le16(fw.wlan.sequence[vif]);
320
321         if (!(hdr->seq_ctrl & cpu_to_le16(IEEE80211_SCTL_FRAG)))
322                 fw.wlan.sequence[vif] += 0x10;
323 }
324
325 /* prepares frame for the first transmission */
326 static void _wlan_tx(struct dma_desc *desc)
327 {
328         struct carl9170_tx_superframe *super = get_super(desc);
329
330         if (unlikely(super->s.assign_seq))
331                 wlan_assign_seq(&super->f.data.i3e, super->s.vif_id);
332
333         if (unlikely(super->s.ampdu_commit_density)) {
334                 set(AR9170_MAC_REG_AMPDU_DENSITY,
335                     MOD_VAL(AR9170_MAC_AMPDU_DENSITY,
336                             get(AR9170_MAC_REG_AMPDU_DENSITY),
337                             super->s.ampdu_density));
338         }
339
340         if (unlikely(super->s.ampdu_commit_factor)) {
341                 set(AR9170_MAC_REG_AMPDU_FACTOR,
342                     MOD_VAL(AR9170_MAC_AMPDU_FACTOR,
343                             get(AR9170_MAC_REG_AMPDU_FACTOR),
344                             8 << super->s.ampdu_factor));
345         }
346
347         __wlan_tx(desc);
348 }
349
350 /* propagate transmission status back to the driver */
351 static bool wlan_tx_status(struct dma_queue *queue,
352                            struct dma_desc *desc)
353 {
354         struct carl9170_tx_superframe *super = get_super(desc);
355         unsigned int qidx = super->s.queue;
356         bool txfail = false, success;
357
358         success = true;
359
360         /* update hangcheck */
361         fw.wlan.last_super_num[qidx] = 0;
362
363         if (!!(desc->ctrl & AR9170_CTRL_FAIL)) {
364                 txfail = !!(desc->ctrl & AR9170_CTRL_TXFAIL);
365
366                 /* reset retry indicator flags */
367                 desc->ctrl &= ~(AR9170_CTRL_TXFAIL | AR9170_CTRL_BAFAIL);
368
369                 if (wlan_tx_consume_retry(super)) {
370                         /*
371                          * retry for simple and aggregated 802.11 frames.
372                          *
373                          * Note: We must not mess up the original frame
374                          * order.
375                          */
376
377                         if (!super->f.hdr.mac.ampdu) {
378                                 /*
379                                  * 802.11 - 7.1.3.1.5.
380                                  * set "Retry Field" for consecutive attempts
381                                  *
382                                  * Note: For AMPDU see:
383                                  * 802.11n 9.9.1.6 "Retransmit Procedures"
384                                  */
385                                 super->f.data.i3e.frame_control |=
386                                         cpu_to_le16(IEEE80211_FCTL_RETRY);
387                         }
388
389                         if (txfail) {
390                                 /* Normal TX Failure */
391
392                                 /* demise descriptor ownership back to the hardware */
393                                 dma_rearm(desc);
394
395                                 /*
396                                  * And this will get the queue going again.
397                                  * To understand why: you have to get the HW
398                                  * specs... But sadly I never saw them.
399                                  */
400                                 wlan_txunstuck(qidx);
401
402                                 /* abort cycle - this is necessary due to HW design */
403                                 return false;
404                         } else {
405                                 /* (HT-) BlockACK failure */
406
407                                 /*
408                                  * Unlink the failed attempt and put it into
409                                  * the retry queue. The caller routine must
410                                  * be aware of this so the frames don't get lost.
411                                  */
412
413                                 dma_unlink_head(queue);
414                                 dma_put(&fw.wlan.tx_retry, desc);
415                                 return true;
416                         }
417                 } else {
418                         /* out of frame attempts - discard frame */
419                         success = false;
420                 }
421         }
422
423         dma_unlink_head(queue);
424         if (txfail) {
425                 /*
426                  * Issue the queue bump,
427                  * We need to do this in case this was the frame's last
428                  * possible retry attempt and it unfortunately: it failed.
429                  */
430
431                 wlan_txunstuck(qidx);
432         }
433
434         unhide_super(desc);
435
436         if (unlikely(super == fw.wlan.fw_desc_data)) {
437                 fw.wlan.fw_desc = desc;
438                 fw.wlan.fw_desc_available = 1;
439
440                 if (fw.wlan.fw_desc_callback)
441                         fw.wlan.fw_desc_callback(super, success);
442
443                 return true;
444         }
445
446 #ifdef CONFIG_CARL9170FW_CAB_QUEUE
447         if (unlikely(super->s.cab))
448                 fw.wlan.cab_queue_len[super->s.vif_id]--;
449 #endif /* CONFIG_CARL9170FW_CAB_QUEUE */
450
451         wlan_tx_complete(super, success);
452
453         /* recycle freed descriptors */
454         dma_reclaim(&fw.pta.down_queue, desc);
455         down_trigger();
456         return true;
457 }
458
459 static void handle_tx_completion(void)
460 {
461         struct dma_desc *desc;
462         int i;
463
464         for (i = AR9170_TXQ_SPECIAL; i >= AR9170_TXQ0; i--) {
465                 __while_desc_bits(desc, &fw.wlan.tx_queue[i], AR9170_OWN_BITS_SW) {
466                         if (!wlan_tx_status(&fw.wlan.tx_queue[i], desc)) {
467                                 /* termination requested. */
468                                 break;
469                         }
470                 }
471
472                 wlan_tx_ampdu_reset(i);
473
474                 for_each_desc(desc, &fw.wlan.tx_retry)
475                         __wlan_tx(desc);
476
477                 wlan_tx_ampdu_end(i);
478                 if (!queue_empty(&fw.wlan.tx_queue[i]))
479                         wlan_trigger(BIT(i));
480         }
481 }
482
483 void __hot wlan_tx(struct dma_desc *desc)
484 {
485         struct carl9170_tx_superframe *super = DESC_PAYLOAD(desc);
486
487         /* initialize rate control struct */
488         super->s.rix = 0;
489         super->s.cnt = 1;
490         hide_super(desc);
491
492 #ifdef CONFIG_CARL9170FW_CAB_QUEUE
493         if (unlikely(super->s.cab)) {
494                 fw.wlan.cab_queue_len[super->s.vif_id]++;
495                 dma_put(&fw.wlan.cab_queue[super->s.vif_id], desc);
496                 return;
497         }
498 #endif /* CONFIG_CARL9170FW_CAB_QUEUE */
499
500         _wlan_tx(desc);
501         wlan_trigger(BIT(super->s.queue));
502 }
503
504 void wlan_tx_fw(struct carl9170_tx_superdesc *super, fw_desc_callback_t cb)
505 {
506         if (!fw.wlan.fw_desc_available)
507                 return;
508
509         fw.wlan.fw_desc_available = 0;
510
511         /* Format BlockAck */
512         fw.wlan.fw_desc->ctrl = AR9170_CTRL_FS_BIT | AR9170_CTRL_LS_BIT;
513         fw.wlan.fw_desc->status = AR9170_OWN_BITS_SW;
514
515         fw.wlan.fw_desc->totalLen = fw.wlan.fw_desc->dataSize = super->len;
516         fw.wlan.fw_desc_data = fw.wlan.fw_desc->dataAddr = super;
517         fw.wlan.fw_desc->nextAddr = fw.wlan.fw_desc->lastAddr =
518                 fw.wlan.fw_desc;
519         fw.wlan.fw_desc_callback = cb;
520         wlan_tx(fw.wlan.fw_desc);
521 }
522
523 static void wlan_send_buffered_ba(void)
524 {
525         struct carl9170_tx_ba_superframe *baf = &dma_mem.reserved.ba.ba;
526         struct ieee80211_ba *ba = (struct ieee80211_ba *) &baf->f.ba;
527         struct carl9170_bar_ctx *ctx;
528
529         if (likely(fw.wlan.ba_head_idx == fw.wlan.ba_tail_idx))
530                 return;
531
532         /* there's no point to continue when the ba_desc is not available. */
533         if (!fw.wlan.fw_desc_available)
534                 return;
535
536         ctx = &fw.wlan.ba_cache[fw.wlan.ba_head_idx];
537         fw.wlan.ba_head_idx++;
538         fw.wlan.ba_head_idx %= CONFIG_CARL9170FW_BACK_REQS_NUM;
539
540         baf->s.len = sizeof(struct carl9170_tx_superdesc) +
541                      sizeof(struct ar9170_tx_hwdesc) +
542                      sizeof(struct ieee80211_ba);
543         baf->s.ri[0].tries = 1;
544         baf->s.cookie = 0;
545         baf->s.queue = AR9170_TXQ_VO;
546         baf->f.hdr.length = sizeof(struct ieee80211_ba) + FCS_LEN;
547
548         /* HW Duration / Backoff */
549         baf->f.hdr.mac.backoff = 1;
550         baf->f.hdr.mac.hw_duration = 1;
551
552         /* take the TX rate from the RX'd BAR */
553         baf->f.hdr.phy.set = ctx->phy;
554         baf->f.hdr.phy.tx_power = 29; /* 14.5 dBm */
555
556         /* format outgoing BA */
557         ba->frame_control = cpu_to_le16(IEEE80211_FTYPE_CTL | IEEE80211_STYPE_NULLFUNC);
558         ba->duration = cpu_to_le16(0);
559         memcpy(ba->ta, ctx->ta, 6);
560         memcpy(ba->ra, ctx->ra, 6);
561
562         /*
563          * Unfortunately, we cannot look into the hardware's scoreboard.
564          * Therefore we have to proceed as described in 802.11n 9.10.7.5
565          * and send a null BlockAck.
566          */
567         memset(ba->bitmap, 0x0, sizeof(ba->bitmap));
568
569         /*
570          * NB:
571          * not entirely sure if this is 100% correct?!
572          */
573         ba->control = ctx->control | cpu_to_le16(1);
574         ba->start_seq_num = ctx->start_seq_num;
575         wlan_tx_fw(&baf->s, NULL);
576 }
577
578 static struct carl9170_bar_ctx *wlan_get_bar_cache_buffer(void)
579 {
580         struct carl9170_bar_ctx *tmp;
581
582         tmp = &fw.wlan.ba_cache[fw.wlan.ba_tail_idx];
583         fw.wlan.ba_tail_idx++;
584         fw.wlan.ba_tail_idx %= CONFIG_CARL9170FW_BACK_REQS_NUM;
585
586         return tmp;
587 }
588
589 static void handle_bar(struct dma_desc *desc, struct ieee80211_hdr *hdr,
590                        unsigned int len, unsigned int mac_err)
591 {
592         struct ieee80211_bar *bar;
593         struct carl9170_bar_ctx *ctx;
594
595         if (unlikely(mac_err)) {
596                 /*
597                  * This check does a number of things:
598                  * 1. checks if the frame is in good nick
599                  * 2. checks if the RA (MAC) matches
600                  */
601                 return ;
602         }
603
604         if (unlikely(len < (sizeof(struct ieee80211_bar) + FCS_LEN))) {
605                 /*
606                  * Sneaky, corrupted BARs... but not with us!
607                  */
608
609                 return ;
610         }
611
612         bar = (void *) hdr;
613
614         if ((bar->control & cpu_to_le16(IEEE80211_BAR_CTRL_MULTI_TID)) ||
615             !(bar->control & cpu_to_le16(IEEE80211_BAR_CTRL_CBMTID_COMPRESSED_BA))) {
616                 /* not implemented yet */
617
618                 return ;
619         }
620
621         ctx = wlan_get_bar_cache_buffer();
622
623         /* Brilliant! The BAR provides all necessary MACs! */
624         memcpy(ctx->ra, bar->ta, 6);
625         memcpy(ctx->ta, bar->ra, 6);
626
627         /*
628          * NB:
629          * not entirely sure if this is 100% correct to force the
630          * imm ack bit or not...
631          */
632         ctx->control = bar->control | cpu_to_le16(1);
633         ctx->start_seq_num = bar->start_seq_num;
634         ctx->phy = ar9170_rx_to_phy(desc);
635         if (unlikely(!ctx->phy)) {
636                 /* provide a backup, in case ar9170_rx_to_phy fails */
637                 ctx->phy = cpu_to_le32(0x2cc301);
638         }
639 }
640
641 static void wlan_check_rx_overrun(void)
642 {
643         uint32_t overruns, total;
644
645         fw.tally.rx_total += total = get(AR9170_MAC_REG_RX_TOTAL);
646         fw.tally.rx_overrun += overruns = get(AR9170_MAC_REG_RX_OVERRUN);
647         if (unlikely(overruns)) {
648                 if (overruns == total) {
649                         DBG("RX Overrun");
650                         fw.wlan.mac_reset++;
651                 }
652
653                 wlan_trigger(AR9170_DMA_TRIGGER_RXQ);
654         }
655 }
656
657 static unsigned int wlan_rx_filter(struct dma_desc *desc)
658 {
659         struct ieee80211_hdr *hdr;
660         unsigned int data_len;
661         unsigned int rx_filter;
662         unsigned int mac_err;
663
664         data_len = ar9170_get_rx_mpdu_len(desc);
665         mac_err = ar9170_get_rx_macstatus_error(desc);
666
667 #define AR9170_RX_ERROR_BAD (AR9170_RX_ERROR_FCS | AR9170_RX_ERROR_PLCP)
668
669         if (unlikely(data_len < (4 + 6 + FCS_LEN) ||
670             desc->totalLen > CONFIG_CARL9170FW_RX_FRAME_LEN) ||
671             mac_err & AR9170_RX_ERROR_BAD) {
672                 /*
673                  * This frame is too damaged to do anything
674                  * useful with it.
675                  */
676
677                 return CARL9170_RX_FILTER_BAD;
678         }
679
680         rx_filter = 0;
681         if (mac_err & AR9170_RX_ERROR_WRONG_RA)
682                 rx_filter |= CARL9170_RX_FILTER_OTHER_RA;
683
684         if (mac_err & AR9170_RX_ERROR_DECRYPT)
685                 rx_filter |= CARL9170_RX_FILTER_DECRY_FAIL;
686
687         hdr = ar9170_get_rx_i3e(desc);
688         if (likely(ieee80211_is_data(hdr->frame_control))) {
689                 rx_filter |= CARL9170_RX_FILTER_DATA;
690         } else if (ieee80211_is_ctl(hdr->frame_control)) {
691                 switch (le16_to_cpu(hdr->frame_control) & IEEE80211_FCTL_STYPE) {
692                 case IEEE80211_STYPE_BACK_REQ:
693                         handle_bar(desc, hdr, data_len, mac_err);
694                         /* fallthrough */
695                         rx_filter |= CARL9170_RX_FILTER_CTL_BACKR;
696                         break;
697                 case IEEE80211_STYPE_PSPOLL:
698                         rx_filter |= CARL9170_RX_FILTER_CTL_PSPOLL;
699                         break;
700                 default:
701                         rx_filter |= CARL9170_RX_FILTER_CTL_OTHER;
702                         break;
703                 }
704         } else {
705                 /* ieee80211_is_mgmt */
706                 rx_filter |= CARL9170_RX_FILTER_MGMT;
707         }
708
709         if (unlikely(fw.suspend_mode == CARL9170_HOST_SUSPENDED)) {
710                 wol_rx(rx_filter, hdr, min(data_len,
711                         (unsigned int)AR9170_BLOCK_SIZE));
712         }
713
714 #undef AR9170_RX_ERROR_BAD
715
716         return rx_filter;
717 }
718
719 static void handle_rx(void)
720 {
721         struct dma_desc *desc;
722
723         for_each_desc_not_bits(desc, &fw.wlan.rx_queue, AR9170_OWN_BITS_HW) {
724                 if (!(wlan_rx_filter(desc) & fw.wlan.rx_filter)) {
725                         dma_put(&fw.pta.up_queue, desc);
726                         up_trigger();
727                 } else {
728                         dma_reclaim(&fw.wlan.rx_queue, desc);
729                         wlan_trigger(AR9170_DMA_TRIGGER_RXQ);
730                 }
731         }
732 }
733
734 #ifdef CONFIG_CARL9170FW_CAB_QUEUE
735 void wlan_cab_flush_queue(const unsigned int vif)
736 {
737         struct dma_queue *cab_queue = &fw.wlan.cab_queue[vif];
738         struct dma_desc *desc;
739
740         /* move queued frames into the main tx queues */
741         for_each_desc(desc, cab_queue) {
742                 struct carl9170_tx_superframe *super = get_super(desc);
743                 if (!queue_empty(cab_queue)) {
744                         /*
745                          * Set MOREDATA flag for all,
746                          * but the last queued frame.
747                          * see: 802.11-2007 11.2.1.5 f)
748                          *
749                          * This is actually the reason to why
750                          * we need to prevent the reentry.
751                          */
752
753                         super->f.data.i3e.frame_control |=
754                                 cpu_to_le16(IEEE80211_FCTL_MOREDATA);
755                 } else {
756                         super->f.data.i3e.frame_control &=
757                                 cpu_to_le16(~IEEE80211_FCTL_MOREDATA);
758                 }
759
760                 /* ready to roll! */
761                 _wlan_tx(desc);
762                 wlan_trigger(BIT(super->s.queue));
763         }
764 }
765
766 static uint8_t *beacon_find_ie(uint8_t ie, void *addr,
767                                const unsigned int len)
768 {
769         struct ieee80211_mgmt *mgmt = addr;
770         uint8_t *pos, *end;
771
772         pos = mgmt->u.beacon.variable;
773         end = (uint8_t *) ((unsigned long)mgmt + (len - FCS_LEN));
774         while (pos < end) {
775                 if (pos + 2 + pos[1] > end)
776                         return NULL;
777
778                 if (pos[0] == ie)
779                         return pos;
780
781                 pos += pos[1] + 2;
782         }
783
784         return NULL;
785 }
786
787 void wlan_modify_beacon(const unsigned int vif,
788         const unsigned int addr, const unsigned int len)
789 {
790         uint8_t *_ie;
791         struct ieee80211_tim_ie *ie;
792
793         _ie = beacon_find_ie(WLAN_EID_TIM, (void *)addr, len);
794         if (likely(_ie)) {
795                 ie = (struct ieee80211_tim_ie *) &_ie[2];
796
797                 if (!queue_empty(&fw.wlan.cab_queue[vif]) && (ie->dtim_count == 0)) {
798                         /* schedule DTIM transfer */
799                         fw.wlan.cab_flush_trigger[vif] = CARL9170_CAB_TRIGGER_ARMED;
800                 } else if ((fw.wlan.cab_queue_len[vif] == 0) && (fw.wlan.cab_flush_trigger[vif])) {
801                         /* undo all chances to the beacon structure */
802                         ie->bitmap_ctrl &= ~0x1;
803                         fw.wlan.cab_flush_trigger[vif] = CARL9170_CAB_TRIGGER_EMPTY;
804                 }
805
806                 /* Triggered by CARL9170_CAB_TRIGGER_ARMED || CARL9170_CAB_TRIGGER_DEFER */
807                 if (fw.wlan.cab_flush_trigger[vif]) {
808                         /* Set the almighty Multicast Traffic Indication Bit. */
809                         ie->bitmap_ctrl |= 0x1;
810                 }
811         }
812
813         /*
814          * Ideally, the sequence number should be assigned by the TX arbiter
815          * hardware. But AFAIK that's not possible, so we have to go for the
816          * next best thing and write it into the beacon fifo during the open
817          * beacon update window.
818          */
819
820         wlan_assign_seq((struct ieee80211_hdr *)addr, vif);
821 }
822
823 static void wlan_send_buffered_cab(void)
824 {
825         unsigned int i;
826
827         for (i = 0; i < CARL9170_INTF_NUM; i++) {
828                 if (unlikely(fw.wlan.cab_flush_trigger[i] == CARL9170_CAB_TRIGGER_ARMED)) {
829                         /*
830                          * This is hardcoded into carl9170usb driver.
831                          *
832                          * The driver must set the PRETBTT event to beacon_interval -
833                          * CARL9170_PRETBTT_KUS (usually 6) Kus.
834                          *
835                          * But still, we can only do so much about 802.11-2007 9.3.2.1 &
836                          * 11.2.1.6. Let's hope the current solution is adequate enough.
837                          */
838
839                         if (is_after_msecs(fw.wlan.cab_flush_time, (CARL9170_TBTT_DELTA))) {
840                                 wlan_cab_flush_queue(i);
841
842                                 /*
843                                  * This prevents the code from sending new BC/MC frames
844                                  * which were queued after the previous buffered traffic
845                                  * has been sent out... They will have to wait until the
846                                  * next DTIM beacon comes along.
847                                  */
848                                 fw.wlan.cab_flush_trigger[i] = CARL9170_CAB_TRIGGER_DEFER;
849                         }
850                 }
851
852         }
853 }
854 #endif /* CONFIG_CARL9170FW_CAB_QUEUE */
855
856 static void handle_beacon_config(void)
857 {
858         uint32_t bcn_count;
859
860         bcn_count = get(AR9170_MAC_REG_BCN_COUNT);
861         send_cmd_to_host(4, CARL9170_RSP_BEACON_CONFIG, 0x00,
862                          (uint8_t *) &bcn_count);
863 }
864
865 static void handle_pretbtt(void)
866 {
867 #ifdef CONFIG_CARL9170FW_CAB_QUEUE
868         fw.wlan.cab_flush_time = get_clock_counter();
869 #endif /* CONFIG_CARL9170FW_CAB_QUEUE */
870
871 #ifdef CONFIG_CARL9170FW_RADIO_FUNCTIONS
872         rf_psm();
873
874         send_cmd_to_host(4, CARL9170_RSP_PRETBTT, 0x00,
875                          (uint8_t *) &fw.phy.psm.state);
876 #endif /* CONFIG_CARL9170FW_RADIO_FUNCTIONS */
877 }
878
879 static void handle_atim(void)
880 {
881         send_cmd_to_host(0, CARL9170_RSP_ATIM, 0x00, NULL);
882 }
883
884 #ifdef CONFIG_CARL9170FW_DEBUG
885 static void handle_qos(void)
886 {
887         /*
888          * What is the QoS Bit used for?
889          * Is it only an indicator for TXOP & Burst, or
890          * should we do something here?
891          */
892 }
893
894 static void handle_radar(void)
895 {
896         send_cmd_to_host(0, CARL9170_RSP_RADAR, 0x00, NULL);
897 }
898 #endif /* CONFIG_CARL9170FW_DEBUG */
899
900 static void wlan_janitor(void)
901 {
902 #ifdef CONFIG_CARL9170FW_CAB_QUEUE
903         wlan_send_buffered_cab();
904 #endif /* CONFIG_CARL9170FW_CAB_QUEUE */
905
906         wlan_send_buffered_tx_status();
907
908         wlan_send_buffered_ba();
909
910         wol_janitor();
911 }
912
913 void handle_wlan(void)
914 {
915         uint32_t intr;
916
917         intr = get(AR9170_MAC_REG_INT_CTRL);
918         /* ACK Interrupt */
919         set(AR9170_MAC_REG_INT_CTRL, intr);
920
921 #define HANDLER(intr, flag, func)                       \
922         do {                                            \
923                 if ((intr & flag) != 0) {               \
924                         func();                         \
925                 }                                       \
926         } while (0)
927
928         intr |= fw.wlan.soft_int;
929         fw.wlan.soft_int = 0;
930
931         HANDLER(intr, AR9170_MAC_INT_PRETBTT, handle_pretbtt);
932
933         HANDLER(intr, AR9170_MAC_INT_ATIM, handle_atim);
934
935         HANDLER(intr, AR9170_MAC_INT_RXC, handle_rx);
936
937         HANDLER(intr, (AR9170_MAC_INT_TXC | AR9170_MAC_INT_RETRY_FAIL),
938                 handle_tx_completion);
939
940 #ifdef CONFIG_CARL9170FW_DEBUG
941         HANDLER(intr, AR9170_MAC_INT_QOS, handle_qos);
942
943         HANDLER(intr, AR9170_MAC_INT_RADAR, handle_radar);
944 #endif /* CONFIG_CARL9170FW_DEBUG */
945
946         HANDLER(intr, AR9170_MAC_INT_CFG_BCN, handle_beacon_config);
947
948         if (unlikely(intr))
949                 DBG("Unhandled Interrupt %x\n", (unsigned int) intr);
950
951         wlan_janitor();
952
953 #undef HANDLER
954 }
955
956 enum {
957         CARL9170FW_TX_MAC_BUMP = 4,
958         CARL9170FW_TX_MAC_DEBUG = 6,
959         CARL9170FW_TX_MAC_RESET = 7,
960 };
961
962 static void wlan_check_hang(void)
963 {
964         struct dma_desc *desc;
965         int i;
966
967         for (i = AR9170_TXQ_SPECIAL; i >= AR9170_TXQ0; i--) {
968                 if (queue_empty(&fw.wlan.tx_queue[i])) {
969                         /* Nothing to do here... move along */
970                         continue;
971                 }
972
973                 /* fetch the current DMA queue position */
974                 desc = (struct dma_desc *)get_wlan_txq_addr(i);
975
976                 /* Stuck frame detection */
977                 if (unlikely(DESC_PAYLOAD(desc) == fw.wlan.last_super[i])) {
978                         fw.wlan.last_super_num[i]++;
979
980                         if (unlikely(fw.wlan.last_super_num[i] >= CARL9170FW_TX_MAC_RESET)) {
981                                 /*
982                                  * schedule MAC reset (aka OFF/ON => dead)
983                                  *
984                                  * This will almost certainly kill
985                                  * the device for good, but it's the
986                                  * recommended thing to do...
987                                  */
988
989                                 fw.wlan.mac_reset++;
990                         }
991
992 #ifdef CONFIG_CARL9170FW_DEBUG
993                         if (unlikely(fw.wlan.last_super_num[i] >= CARL9170FW_TX_MAC_DEBUG)) {
994                                 /*
995                                  * Sigh, the queue is almost certainly
996                                  * dead. Dump the queue content to the
997                                  * user, maybe we find out why it got
998                                  * so stuck.
999                                  */
1000
1001                                 wlan_dump_queue(i);
1002                         }
1003 #endif /* CONFIG_CARL9170FW_DEBUG */
1004
1005 #ifdef CONFIG_CARL9170FW_DMA_QUEUE_BUMP
1006                         if (unlikely(fw.wlan.last_super_num[i] >= CARL9170FW_TX_MAC_BUMP)) {
1007                                 /*
1008                                  * Hrrm, bump the queue a bit.
1009                                  * maybe this will get it going again.
1010                                  */
1011
1012                                 wlan_dma_bump(i);
1013                                 wlan_trigger(BIT(i));
1014                         }
1015 #endif /* CONFIG_CARL9170FW_DMA_QUEUE_BUMP */
1016                 } else {
1017                         /* Nothing stuck */
1018                         fw.wlan.last_super[i] = DESC_PAYLOAD(desc);
1019                         fw.wlan.last_super_num[i] = 0;
1020                 }
1021         }
1022 }
1023
1024 #ifdef CONFIG_CARL9170FW_FW_MAC_RESET
1025 /*
1026  * NB: Resetting the MAC is a two-edged sword.
1027  * On most occasions, it does what it is supposed to do.
1028  * But there is a chance that this will make it
1029  * even worse and the radio dies silently.
1030  */
1031 static void wlan_mac_reset(void)
1032 {
1033         uint32_t val;
1034         uint32_t agg_wait_counter;
1035         uint32_t agg_density;
1036         uint32_t bcn_start_addr;
1037         uint32_t rctl, rcth;
1038         uint32_t cam_mode;
1039         uint32_t ack_power;
1040         uint32_t rts_cts_tpc;
1041         uint32_t rts_cts_rate;
1042         int i;
1043
1044 #ifdef CONFIG_CARL9170FW_RADIO_FUNCTIONS
1045         uint32_t rx_BB;
1046 #endif /* CONFIG_CARL9170FW_RADIO_FUNCTIONS */
1047
1048 #ifdef CONFIG_CARL9170FW_NOISY_MAC_RESET
1049         INFO("MAC RESET");
1050 #endif /* CONFIG_CARL9170FW_NOISY_MAC_RESET */
1051
1052         /* Save aggregation parameters */
1053         agg_wait_counter = get(AR9170_MAC_REG_AMPDU_FACTOR);
1054         agg_density = get(AR9170_MAC_REG_AMPDU_DENSITY);
1055
1056         bcn_start_addr = get(AR9170_MAC_REG_BCN_ADDR);
1057
1058         cam_mode = get(AR9170_MAC_REG_CAM_MODE);
1059         rctl = get(AR9170_MAC_REG_CAM_ROLL_CALL_TBL_L);
1060         rcth = get(AR9170_MAC_REG_CAM_ROLL_CALL_TBL_H);
1061
1062         ack_power = get(AR9170_MAC_REG_ACK_TPC);
1063         rts_cts_tpc = get(AR9170_MAC_REG_RTS_CTS_TPC);
1064         rts_cts_rate = get(AR9170_MAC_REG_RTS_CTS_RATE);
1065
1066 #ifdef CONFIG_CARL9170FW_RADIO_FUNCTIONS
1067         /* 0x1c8960 write only */
1068         rx_BB = get(AR9170_PHY_REG_SWITCH_CHAIN_0);
1069 #endif /* CONFIG_CARL9170FW_RADIO_FUNCTIONS */
1070
1071         /* TX/RX must be stopped by now */
1072         val = get(AR9170_MAC_REG_POWER_STATE_CTRL);
1073
1074         val |= AR9170_MAC_POWER_STATE_CTRL_RESET;
1075
1076         /*
1077          * Manipulate CCA threshold to stop transmission
1078          *
1079          * set(AR9170_PHY_REG_CCA_THRESHOLD, 0x300);
1080          */
1081
1082         /*
1083          * check Rx state in 0(idle) 9(disable)
1084          *
1085          * chState = (get(AR9170_MAC_REG_MISC_684) >> 16) & 0xf;
1086          * while( (chState != 0) && (chState != 9)) {
1087          *      chState = (get(AR9170_MAC_REG_MISC_684) >> 16) & 0xf;
1088          * }
1089          */
1090
1091         set(AR9170_MAC_REG_POWER_STATE_CTRL, val);
1092
1093         delay(2);
1094
1095         /* Restore aggregation parameters */
1096         set(AR9170_MAC_REG_AMPDU_FACTOR, agg_wait_counter);
1097         set(AR9170_MAC_REG_AMPDU_DENSITY, agg_density);
1098
1099         set(AR9170_MAC_REG_BCN_ADDR, bcn_start_addr);
1100         set(AR9170_MAC_REG_CAM_MODE, cam_mode);
1101         set(AR9170_MAC_REG_CAM_ROLL_CALL_TBL_L, rctl);
1102         set(AR9170_MAC_REG_CAM_ROLL_CALL_TBL_H, rcth);
1103
1104         set(AR9170_MAC_REG_RTS_CTS_TPC, rts_cts_tpc);
1105         set(AR9170_MAC_REG_ACK_TPC, ack_power);
1106         set(AR9170_MAC_REG_RTS_CTS_RATE, rts_cts_rate);
1107
1108 #ifdef CONFIG_CARL9170FW_RADIO_FUNCTIONS
1109         set(AR9170_PHY_REG_SWITCH_CHAIN_2, rx_BB);
1110 #endif /* CONFIG_CARL9170FW_RADIO_FUNCTIONS */
1111
1112         /*
1113          * Manipulate CCA threshold to resume transmission
1114          *
1115          * set(AR9170_PHY_REG_CCA_THRESHOLD, 0x0);
1116          */
1117
1118         val = AR9170_DMA_TRIGGER_RXQ;
1119         /* Reinitialize all WLAN TX DMA queues. */
1120         for (i = AR9170_TXQ_SPECIAL; i >= AR9170_TXQ0; i--) {
1121                 struct dma_desc *iter;
1122
1123                 __for_each_desc_bits(iter, &fw.wlan.tx_queue[i], AR9170_OWN_BITS_SW);
1124
1125                 /* kill the stuck frame */
1126                 if (!is_terminator(&fw.wlan.tx_queue[i], iter) &&
1127                     fw.wlan.last_super_num[i] >= CARL9170FW_TX_MAC_RESET &&
1128                     fw.wlan.last_super[i] == DESC_PAYLOAD(iter)) {
1129                         struct carl9170_tx_superframe *super = get_super(iter);
1130
1131                         iter->status = AR9170_OWN_BITS_SW;
1132                         /*
1133                          * Mark the frame as failed.
1134                          * The BAFAIL flag allows the frame to sail through
1135                          * wlan_tx_status without much "unstuck" trouble.
1136                          */
1137                         iter->ctrl &= ~(AR9170_CTRL_FAIL);
1138                         iter->ctrl |= AR9170_CTRL_BAFAIL;
1139
1140                         super->s.cnt = CARL9170_TX_MAX_RATE_TRIES;
1141                         super->s.rix = CARL9170_TX_MAX_RETRY_RATES;
1142
1143                         fw.wlan.last_super_num[i] = 0;
1144                         fw.wlan.last_super[i] = NULL;
1145                         iter = iter->lastAddr->nextAddr;
1146                 }
1147
1148                 set_wlan_txq_dma_addr(i, (uint32_t) iter);
1149                 if (!is_terminator(&fw.wlan.tx_queue[i], iter))
1150                         val |= BIT(i);
1151
1152                 DBG("Q:%d l:%d h:%p t:%p cu:%p it:%p ct:%x st:%x\n", i, queue_len(&fw.wlan.tx_queue[i]),
1153                      fw.wlan.tx_queue[i].head, fw.wlan.tx_queue[i].terminator,
1154                      get_wlan_txq_addr(i), iter, iter->ctrl, iter->status);
1155         }
1156
1157         fw.wlan.soft_int |= AR9170_MAC_INT_RXC | AR9170_MAC_INT_TXC |
1158                             AR9170_MAC_INT_RETRY_FAIL;
1159
1160         set(AR9170_MAC_REG_DMA_RXQ_ADDR, (uint32_t) fw.wlan.rx_queue.head);
1161         wlan_trigger(val);
1162 }
1163 #else
1164 static void wlan_mac_reset(void)
1165 {
1166         /* The driver takes care of reinitializing the device */
1167         BUG("MAC RESET");
1168 }
1169 #endif /* CONFIG_CARL9170FW_FW_MAC_RESET */
1170
1171 void __cold wlan_timer(void)
1172 {
1173         unsigned int cached_mac_reset;
1174
1175         cached_mac_reset = fw.wlan.mac_reset;
1176
1177         /* TX Queue Hang check */
1178         wlan_check_hang();
1179
1180         /* RX Overrun check */
1181         wlan_check_rx_overrun();
1182
1183         if (unlikely(fw.wlan.mac_reset >= CARL9170_MAC_RESET_RESET)) {
1184                 wlan_mac_reset();
1185                 fw.wlan.mac_reset = CARL9170_MAC_RESET_OFF;
1186         } else {
1187                 if (fw.wlan.mac_reset && cached_mac_reset == fw.wlan.mac_reset)
1188                         fw.wlan.mac_reset--;
1189         }
1190 }