2 * Copyright (c) 2006 Damien Bergamini <damien.bergamini@free.fr>
3 * Copyright (c) 2006 Sam Leffler, Errno Consulting
4 * Copyright (c) 2007 Christoph Hellwig <hch@lst.de>
5 * Copyright (c) 2008-2009 Weongyo Jeong <weongyo@freebsd.org>
6 * Copyright (c) 2012 Pontus Fuchs <pontus.fuchs@gmail.com>
8 * Permission to use, copy, modify, and/or distribute this software for any
9 * purpose with or without fee is hereby granted, provided that the above
10 * copyright notice and this permission notice appear in all copies.
12 * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
13 * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
14 * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
15 * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
16 * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
17 * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
18 * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
22 * This driver is based on the uath driver written by Damien Bergamini for
23 * OpenBSD, who did black-box analysis of the Windows binary driver to find
24 * out how the hardware works. It contains a lot magic numbers because of
25 * that and only has minimal functionality.
27 #include <linux/compiler.h>
28 #include <linux/kernel.h>
29 #include <linux/module.h>
30 #include <linux/list.h>
31 #include <linux/completion.h>
32 #include <linux/firmware.h>
33 #include <linux/skbuff.h>
34 #include <linux/usb.h>
35 #include <net/mac80211.h>
38 #include "ar5523_hw.h"
41 * Various supported device vendors/products.
42 * UB51: AR5005UG 802.11b/g, UB52: AR5005UX 802.11a/b/g
45 static int ar5523_submit_rx_cmd(struct ar5523
*ar
);
46 static void ar5523_data_tx_pkt_put(struct ar5523
*ar
);
48 static void ar5523_read_reply(struct ar5523
*ar
, struct ar5523_cmd_hdr
*hdr
,
49 struct ar5523_tx_cmd
*cmd
)
54 dlen
= be32_to_cpu(hdr
->len
) - sizeof(*hdr
);
61 ar5523_dbg(ar
, "Code = %d len = %d\n", be32_to_cpu(hdr
->code
) & 0xff,
64 rp
= (__be32
*)(hdr
+ 1);
65 if (dlen
>= sizeof(u32
)) {
66 olen
= be32_to_cpu(rp
[0]);
69 /* convention is 0 =>'s one word */
76 if (cmd
->olen
< olen
) {
77 ar5523_err(ar
, "olen to small %d < %d\n",
80 cmd
->res
= -EOVERFLOW
;
83 memcpy(cmd
->odata
, &rp
[1], olen
);
92 static void ar5523_cmd_rx_cb(struct urb
*urb
)
94 struct ar5523
*ar
= urb
->context
;
95 struct ar5523_tx_cmd
*cmd
= &ar
->tx_cmd
;
96 struct ar5523_cmd_hdr
*hdr
= ar
->rx_cmd_buf
;
101 if (urb
->status
!= -ESHUTDOWN
)
102 ar5523_err(ar
, "RX USB error %d.\n", urb
->status
);
106 if (urb
->actual_length
< sizeof(struct ar5523_cmd_hdr
)) {
107 ar5523_err(ar
, "RX USB to short.\n");
111 ar5523_dbg(ar
, "%s code %02x priv %d\n", __func__
,
112 be32_to_cpu(hdr
->code
) & 0xff, hdr
->priv
);
114 code
= be32_to_cpu(hdr
->code
);
115 hdrlen
= be32_to_cpu(hdr
->len
);
117 switch (code
& 0xff) {
119 /* reply to a read command */
120 if (hdr
->priv
!= AR5523_CMD_ID
) {
121 ar5523_err(ar
, "Unexpected command id: %02x\n",
125 ar5523_read_reply(ar
, hdr
, cmd
);
128 case WDCMSG_DEVICE_AVAIL
:
129 ar5523_dbg(ar
, "WDCMSG_DEVICE_AVAIL\n");
132 complete(&cmd
->done
);
135 case WDCMSG_SEND_COMPLETE
:
136 ar5523_dbg(ar
, "WDCMSG_SEND_COMPLETE: %d pending\n",
137 atomic_read(&ar
->tx_nr_pending
));
138 if (!test_bit(AR5523_HW_UP
, &ar
->flags
))
139 ar5523_dbg(ar
, "Unexpected WDCMSG_SEND_COMPLETE\n");
141 mod_timer(&ar
->tx_wd_timer
,
142 jiffies
+ AR5523_TX_WD_TIMEOUT
);
143 ar5523_data_tx_pkt_put(ar
);
148 case WDCMSG_TARGET_START
:
149 /* This command returns a bogus id so it needs special
151 dlen
= hdrlen
- sizeof(*hdr
);
152 if (dlen
!= (int)sizeof(u32
)) {
153 ar5523_err(ar
, "Invalid reply to WDCMSG_TARGET_START");
156 memcpy(cmd
->odata
, hdr
+ 1, sizeof(u32
));
157 cmd
->olen
= sizeof(u32
);
159 complete(&cmd
->done
);
162 case WDCMSG_STATS_UPDATE
:
163 ar5523_dbg(ar
, "WDCMSG_STATS_UPDATE\n");
168 ar5523_submit_rx_cmd(ar
);
171 static int ar5523_alloc_rx_cmd(struct ar5523
*ar
)
173 ar
->rx_cmd_urb
= usb_alloc_urb(0, GFP_KERNEL
);
177 ar
->rx_cmd_buf
= usb_alloc_coherent(ar
->dev
, AR5523_MAX_RXCMDSZ
,
179 &ar
->rx_cmd_urb
->transfer_dma
);
180 if (!ar
->rx_cmd_buf
) {
181 usb_free_urb(ar
->rx_cmd_urb
);
187 static void ar5523_cancel_rx_cmd(struct ar5523
*ar
)
189 usb_kill_urb(ar
->rx_cmd_urb
);
192 static void ar5523_free_rx_cmd(struct ar5523
*ar
)
194 usb_free_coherent(ar
->dev
, AR5523_MAX_RXCMDSZ
,
195 ar
->rx_cmd_buf
, ar
->rx_cmd_urb
->transfer_dma
);
196 usb_free_urb(ar
->rx_cmd_urb
);
199 static int ar5523_submit_rx_cmd(struct ar5523
*ar
)
203 usb_fill_bulk_urb(ar
->rx_cmd_urb
, ar
->dev
,
204 ar5523_cmd_rx_pipe(ar
->dev
), ar
->rx_cmd_buf
,
205 AR5523_MAX_RXCMDSZ
, ar5523_cmd_rx_cb
, ar
);
206 ar
->rx_cmd_urb
->transfer_flags
|= URB_NO_TRANSFER_DMA_MAP
;
208 error
= usb_submit_urb(ar
->rx_cmd_urb
, GFP_ATOMIC
);
210 if (error
!= -ENODEV
)
211 ar5523_err(ar
, "error %d when submitting rx urb\n",
219 * Command submitted cb
221 static void ar5523_cmd_tx_cb(struct urb
*urb
)
223 struct ar5523_tx_cmd
*cmd
= urb
->context
;
224 struct ar5523
*ar
= cmd
->ar
;
227 ar5523_err(ar
, "Failed to TX command. Status = %d\n",
229 cmd
->res
= urb
->status
;
230 complete(&cmd
->done
);
234 if (!(cmd
->flags
& AR5523_CMD_FLAG_READ
)) {
236 complete(&cmd
->done
);
240 static int ar5523_cmd(struct ar5523
*ar
, u32 code
, const void *idata
,
241 int ilen
, void *odata
, int olen
, int flags
)
243 struct ar5523_cmd_hdr
*hdr
;
244 struct ar5523_tx_cmd
*cmd
= &ar
->tx_cmd
;
247 /* always bulk-out a multiple of 4 bytes */
248 xferlen
= (sizeof(struct ar5523_cmd_hdr
) + ilen
+ 3) & ~3;
250 hdr
= (struct ar5523_cmd_hdr
*)cmd
->buf_tx
;
251 memset(hdr
, 0, sizeof(struct ar5523_cmd_hdr
));
252 hdr
->len
= cpu_to_be32(xferlen
);
253 hdr
->code
= cpu_to_be32(code
);
254 hdr
->priv
= AR5523_CMD_ID
;
256 if (flags
& AR5523_CMD_FLAG_MAGIC
)
257 hdr
->magic
= cpu_to_be32(1 << 24);
258 memcpy(hdr
+ 1, idata
, ilen
);
264 ar5523_dbg(ar
, "do cmd %02x\n", code
);
266 usb_fill_bulk_urb(cmd
->urb_tx
, ar
->dev
, ar5523_cmd_tx_pipe(ar
->dev
),
267 cmd
->buf_tx
, xferlen
, ar5523_cmd_tx_cb
, cmd
);
268 cmd
->urb_tx
->transfer_flags
|= URB_NO_TRANSFER_DMA_MAP
;
270 error
= usb_submit_urb(cmd
->urb_tx
, GFP_KERNEL
);
272 ar5523_err(ar
, "could not send command 0x%x, error=%d\n",
277 if (!wait_for_completion_timeout(&cmd
->done
, 2 * HZ
)) {
279 ar5523_err(ar
, "timeout waiting for command %02x reply\n",
281 cmd
->res
= -ETIMEDOUT
;
286 static int ar5523_cmd_write(struct ar5523
*ar
, u32 code
, const void *data
,
289 flags
&= ~AR5523_CMD_FLAG_READ
;
290 return ar5523_cmd(ar
, code
, data
, len
, NULL
, 0, flags
);
293 static int ar5523_cmd_read(struct ar5523
*ar
, u32 code
, const void *idata
,
294 int ilen
, void *odata
, int olen
, int flags
)
296 flags
|= AR5523_CMD_FLAG_READ
;
297 return ar5523_cmd(ar
, code
, idata
, ilen
, odata
, olen
, flags
);
300 static int ar5523_config(struct ar5523
*ar
, u32 reg
, u32 val
)
302 struct ar5523_write_mac write
;
305 write
.reg
= cpu_to_be32(reg
);
306 write
.len
= cpu_to_be32(0); /* 0 = single write */
307 *(__be32
*)write
.data
= cpu_to_be32(val
);
309 error
= ar5523_cmd_write(ar
, WDCMSG_TARGET_SET_CONFIG
, &write
,
312 ar5523_err(ar
, "could not write register 0x%02x\n", reg
);
316 static int ar5523_config_multi(struct ar5523
*ar
, u32 reg
, const void *data
,
319 struct ar5523_write_mac write
;
322 write
.reg
= cpu_to_be32(reg
);
323 write
.len
= cpu_to_be32(len
);
324 memcpy(write
.data
, data
, len
);
326 /* properly handle the case where len is zero (reset) */
327 error
= ar5523_cmd_write(ar
, WDCMSG_TARGET_SET_CONFIG
, &write
,
328 (len
== 0) ? sizeof(u32
) : 2 * sizeof(u32
) + len
, 0);
330 ar5523_err(ar
, "could not write %d bytes to register 0x%02x\n",
335 static int ar5523_get_status(struct ar5523
*ar
, u32 which
, void *odata
,
341 which_be
= cpu_to_be32(which
);
342 error
= ar5523_cmd_read(ar
, WDCMSG_TARGET_GET_STATUS
,
343 &which_be
, sizeof(which_be
), odata
, olen
, AR5523_CMD_FLAG_MAGIC
);
345 ar5523_err(ar
, "could not read EEPROM offset 0x%02x\n", which
);
349 static int ar5523_get_capability(struct ar5523
*ar
, u32 cap
, u32
*val
)
352 __be32 cap_be
, val_be
;
354 cap_be
= cpu_to_be32(cap
);
355 error
= ar5523_cmd_read(ar
, WDCMSG_TARGET_GET_CAPABILITY
, &cap_be
,
356 sizeof(cap_be
), &val_be
, sizeof(__be32
),
357 AR5523_CMD_FLAG_MAGIC
);
359 ar5523_err(ar
, "could not read capability %u\n", cap
);
362 *val
= be32_to_cpu(val_be
);
366 static int ar5523_get_devcap(struct ar5523
*ar
)
368 #define GETCAP(x) do { \
369 error = ar5523_get_capability(ar, x, &cap); \
372 ar5523_info(ar, "Cap: " \
373 "%s=0x%08x\n", #x, cap); \
378 /* collect device capabilities */
379 GETCAP(CAP_TARGET_VERSION
);
380 GETCAP(CAP_TARGET_REVISION
);
381 GETCAP(CAP_MAC_VERSION
);
382 GETCAP(CAP_MAC_REVISION
);
383 GETCAP(CAP_PHY_REVISION
);
384 GETCAP(CAP_ANALOG_5GHz_REVISION
);
385 GETCAP(CAP_ANALOG_2GHz_REVISION
);
387 GETCAP(CAP_REG_DOMAIN
);
388 GETCAP(CAP_REG_CAP_BITS
);
389 GETCAP(CAP_WIRELESS_MODES
);
390 GETCAP(CAP_CHAN_SPREAD_SUPPORT
);
391 GETCAP(CAP_COMPRESS_SUPPORT
);
392 GETCAP(CAP_BURST_SUPPORT
);
393 GETCAP(CAP_FAST_FRAMES_SUPPORT
);
394 GETCAP(CAP_CHAP_TUNING_SUPPORT
);
395 GETCAP(CAP_TURBOG_SUPPORT
);
396 GETCAP(CAP_TURBO_PRIME_SUPPORT
);
397 GETCAP(CAP_DEVICE_TYPE
);
398 GETCAP(CAP_WME_SUPPORT
);
399 GETCAP(CAP_TOTAL_QUEUES
);
400 GETCAP(CAP_CONNECTION_ID_MAX
);
402 GETCAP(CAP_LOW_5GHZ_CHAN
);
403 GETCAP(CAP_HIGH_5GHZ_CHAN
);
404 GETCAP(CAP_LOW_2GHZ_CHAN
);
405 GETCAP(CAP_HIGH_2GHZ_CHAN
);
406 GETCAP(CAP_TWICE_ANTENNAGAIN_5G
);
407 GETCAP(CAP_TWICE_ANTENNAGAIN_2G
);
409 GETCAP(CAP_CIPHER_AES_CCM
);
410 GETCAP(CAP_CIPHER_TKIP
);
411 GETCAP(CAP_MIC_TKIP
);
415 static int ar5523_set_ledsteady(struct ar5523
*ar
, int lednum
, int ledmode
)
417 struct ar5523_cmd_ledsteady led
;
419 led
.lednum
= cpu_to_be32(lednum
);
420 led
.ledmode
= cpu_to_be32(ledmode
);
422 ar5523_dbg(ar
, "set %s led %s (steady)\n",
423 (lednum
== UATH_LED_LINK
) ? "link" : "activity",
424 ledmode
? "on" : "off");
425 return ar5523_cmd_write(ar
, WDCMSG_SET_LED_STEADY
, &led
, sizeof(led
),
429 static int ar5523_set_rxfilter(struct ar5523
*ar
, u32 bits
, u32 op
)
431 struct ar5523_cmd_rx_filter rxfilter
;
433 rxfilter
.bits
= cpu_to_be32(bits
);
434 rxfilter
.op
= cpu_to_be32(op
);
436 ar5523_dbg(ar
, "setting Rx filter=0x%x flags=0x%x\n", bits
, op
);
437 return ar5523_cmd_write(ar
, WDCMSG_RX_FILTER
, &rxfilter
,
438 sizeof(rxfilter
), 0);
441 static int ar5523_reset_tx_queues(struct ar5523
*ar
)
443 __be32 qid
= cpu_to_be32(0);
445 ar5523_dbg(ar
, "resetting Tx queue\n");
446 return ar5523_cmd_write(ar
, WDCMSG_RELEASE_TX_QUEUE
,
447 &qid
, sizeof(qid
), 0);
450 static int ar5523_set_chan(struct ar5523
*ar
)
452 struct ieee80211_conf
*conf
= &ar
->hw
->conf
;
454 struct ar5523_cmd_reset reset
;
456 memset(&reset
, 0, sizeof(reset
));
457 reset
.flags
|= cpu_to_be32(UATH_CHAN_2GHZ
);
458 reset
.flags
|= cpu_to_be32(UATH_CHAN_OFDM
);
459 reset
.freq
= cpu_to_be32(conf
->chandef
.chan
->center_freq
);
460 reset
.maxrdpower
= cpu_to_be32(50); /* XXX */
461 reset
.channelchange
= cpu_to_be32(1);
462 reset
.keeprccontent
= cpu_to_be32(0);
464 ar5523_dbg(ar
, "set chan flags 0x%x freq %d\n",
465 be32_to_cpu(reset
.flags
),
466 conf
->chandef
.chan
->center_freq
);
467 return ar5523_cmd_write(ar
, WDCMSG_RESET
, &reset
, sizeof(reset
), 0);
470 static int ar5523_queue_init(struct ar5523
*ar
)
472 struct ar5523_cmd_txq_setup qinfo
;
474 ar5523_dbg(ar
, "setting up Tx queue\n");
475 qinfo
.qid
= cpu_to_be32(0);
476 qinfo
.len
= cpu_to_be32(sizeof(qinfo
.attr
));
477 qinfo
.attr
.priority
= cpu_to_be32(0); /* XXX */
478 qinfo
.attr
.aifs
= cpu_to_be32(3);
479 qinfo
.attr
.logcwmin
= cpu_to_be32(4);
480 qinfo
.attr
.logcwmax
= cpu_to_be32(10);
481 qinfo
.attr
.bursttime
= cpu_to_be32(0);
482 qinfo
.attr
.mode
= cpu_to_be32(0);
483 qinfo
.attr
.qflags
= cpu_to_be32(1); /* XXX? */
484 return ar5523_cmd_write(ar
, WDCMSG_SETUP_TX_QUEUE
, &qinfo
,
488 static int ar5523_switch_chan(struct ar5523
*ar
)
492 error
= ar5523_set_chan(ar
);
494 ar5523_err(ar
, "could not set chan, error %d\n", error
);
499 error
= ar5523_reset_tx_queues(ar
);
501 ar5523_err(ar
, "could not reset Tx queues, error %d\n",
505 /* set Tx rings WME properties */
506 error
= ar5523_queue_init(ar
);
508 ar5523_err(ar
, "could not init wme, error %d\n", error
);
514 static void ar5523_rx_data_put(struct ar5523
*ar
,
515 struct ar5523_rx_data
*data
)
518 spin_lock_irqsave(&ar
->rx_data_list_lock
, flags
);
519 list_move(&data
->list
, &ar
->rx_data_free
);
520 spin_unlock_irqrestore(&ar
->rx_data_list_lock
, flags
);
523 static void ar5523_data_rx_cb(struct urb
*urb
)
525 struct ar5523_rx_data
*data
= urb
->context
;
526 struct ar5523
*ar
= data
->ar
;
527 struct ar5523_rx_desc
*desc
;
528 struct ar5523_chunk
*chunk
;
529 struct ieee80211_hw
*hw
= ar
->hw
;
530 struct ieee80211_rx_status
*rx_status
;
532 int usblen
= urb
->actual_length
;
535 ar5523_dbg(ar
, "%s\n", __func__
);
536 /* sync/async unlink faults aren't errors */
538 if (urb
->status
!= -ESHUTDOWN
)
539 ar5523_err(ar
, "%s: USB err: %d\n", __func__
,
544 if (usblen
< AR5523_MIN_RXBUFSZ
) {
545 ar5523_err(ar
, "RX: wrong xfer size (usblen=%d)\n", usblen
);
549 chunk
= (struct ar5523_chunk
*) data
->skb
->data
;
551 if (((chunk
->flags
& UATH_CFLAGS_FINAL
) == 0) ||
552 chunk
->seqnum
!= 0) {
553 ar5523_dbg(ar
, "RX: No final flag. s: %d f: %02x l: %d\n",
554 chunk
->seqnum
, chunk
->flags
,
555 be16_to_cpu(chunk
->length
));
559 /* Rx descriptor is located at the end, 32-bit aligned */
560 desc
= (struct ar5523_rx_desc
*)
561 (data
->skb
->data
+ usblen
- sizeof(struct ar5523_rx_desc
));
563 rxlen
= be32_to_cpu(desc
->len
);
564 if (rxlen
> ar
->rxbufsz
) {
565 ar5523_dbg(ar
, "RX: Bad descriptor (len=%d)\n",
566 be32_to_cpu(desc
->len
));
571 ar5523_dbg(ar
, "RX: rxlen is 0\n");
575 if (be32_to_cpu(desc
->status
) != 0) {
576 ar5523_dbg(ar
, "Bad RX status (0x%x len = %d). Skip\n",
577 be32_to_cpu(desc
->status
), be32_to_cpu(desc
->len
));
581 skb_reserve(data
->skb
, sizeof(*chunk
));
582 skb_put(data
->skb
, rxlen
- sizeof(struct ar5523_rx_desc
));
584 hdrlen
= ieee80211_get_hdrlen_from_skb(data
->skb
);
585 if (!IS_ALIGNED(hdrlen
, 4)) {
586 ar5523_dbg(ar
, "eek, alignment workaround activated\n");
587 pad
= ALIGN(hdrlen
, 4) - hdrlen
;
588 memmove(data
->skb
->data
+ pad
, data
->skb
->data
, hdrlen
);
589 skb_pull(data
->skb
, pad
);
590 skb_put(data
->skb
, pad
);
593 rx_status
= IEEE80211_SKB_RXCB(data
->skb
);
594 memset(rx_status
, 0, sizeof(*rx_status
));
595 rx_status
->freq
= be32_to_cpu(desc
->channel
);
596 rx_status
->band
= hw
->conf
.chandef
.chan
->band
;
597 rx_status
->signal
= -95 + be32_to_cpu(desc
->rssi
);
599 ieee80211_rx_irqsafe(hw
, data
->skb
);
604 dev_kfree_skb_irq(data
->skb
);
608 ar5523_rx_data_put(ar
, data
);
609 if (atomic_inc_return(&ar
->rx_data_free_cnt
) >=
610 AR5523_RX_DATA_REFILL_COUNT
&&
611 test_bit(AR5523_HW_UP
, &ar
->flags
))
612 queue_work(ar
->wq
, &ar
->rx_refill_work
);
615 static void ar5523_rx_refill_work(struct work_struct
*work
)
617 struct ar5523
*ar
= container_of(work
, struct ar5523
, rx_refill_work
);
618 struct ar5523_rx_data
*data
;
622 ar5523_dbg(ar
, "%s\n", __func__
);
624 spin_lock_irqsave(&ar
->rx_data_list_lock
, flags
);
626 if (!list_empty(&ar
->rx_data_free
))
627 data
= (struct ar5523_rx_data
*) ar
->rx_data_free
.next
;
630 spin_unlock_irqrestore(&ar
->rx_data_list_lock
, flags
);
635 data
->skb
= alloc_skb(ar
->rxbufsz
, GFP_KERNEL
);
637 ar5523_err(ar
, "could not allocate rx skbuff\n");
641 usb_fill_bulk_urb(data
->urb
, ar
->dev
,
642 ar5523_data_rx_pipe(ar
->dev
), data
->skb
->data
,
643 ar
->rxbufsz
, ar5523_data_rx_cb
, data
);
645 spin_lock_irqsave(&ar
->rx_data_list_lock
, flags
);
646 list_move(&data
->list
, &ar
->rx_data_used
);
647 spin_unlock_irqrestore(&ar
->rx_data_list_lock
, flags
);
648 atomic_dec(&ar
->rx_data_free_cnt
);
650 error
= usb_submit_urb(data
->urb
, GFP_KERNEL
);
652 kfree_skb(data
->skb
);
653 if (error
!= -ENODEV
)
654 ar5523_err(ar
, "Err sending rx data urb %d\n",
656 ar5523_rx_data_put(ar
, data
);
657 atomic_inc(&ar
->rx_data_free_cnt
);
666 static void ar5523_cancel_rx_bufs(struct ar5523
*ar
)
668 struct ar5523_rx_data
*data
;
672 spin_lock_irqsave(&ar
->rx_data_list_lock
, flags
);
673 if (!list_empty(&ar
->rx_data_used
))
674 data
= (struct ar5523_rx_data
*) ar
->rx_data_used
.next
;
677 spin_unlock_irqrestore(&ar
->rx_data_list_lock
, flags
);
682 usb_kill_urb(data
->urb
);
683 list_move(&data
->list
, &ar
->rx_data_free
);
684 atomic_inc(&ar
->rx_data_free_cnt
);
688 static void ar5523_free_rx_bufs(struct ar5523
*ar
)
690 struct ar5523_rx_data
*data
;
692 ar5523_cancel_rx_bufs(ar
);
693 while (!list_empty(&ar
->rx_data_free
)) {
694 data
= (struct ar5523_rx_data
*) ar
->rx_data_free
.next
;
695 list_del(&data
->list
);
696 usb_free_urb(data
->urb
);
700 static int ar5523_alloc_rx_bufs(struct ar5523
*ar
)
704 for (i
= 0; i
< AR5523_RX_DATA_COUNT
; i
++) {
705 struct ar5523_rx_data
*data
= &ar
->rx_data
[i
];
708 data
->urb
= usb_alloc_urb(0, GFP_KERNEL
);
711 list_add_tail(&data
->list
, &ar
->rx_data_free
);
712 atomic_inc(&ar
->rx_data_free_cnt
);
717 ar5523_free_rx_bufs(ar
);
721 static void ar5523_data_tx_pkt_put(struct ar5523
*ar
)
723 atomic_dec(&ar
->tx_nr_total
);
724 if (!atomic_dec_return(&ar
->tx_nr_pending
)) {
725 del_timer(&ar
->tx_wd_timer
);
726 wake_up(&ar
->tx_flush_waitq
);
729 if (atomic_read(&ar
->tx_nr_total
) < AR5523_TX_DATA_RESTART_COUNT
) {
730 ar5523_dbg(ar
, "restart tx queue\n");
731 ieee80211_wake_queues(ar
->hw
);
735 static void ar5523_data_tx_cb(struct urb
*urb
)
737 struct sk_buff
*skb
= urb
->context
;
738 struct ieee80211_tx_info
*txi
= IEEE80211_SKB_CB(skb
);
739 struct ar5523_tx_data
*data
= (struct ar5523_tx_data
*)
741 struct ar5523
*ar
= data
->ar
;
744 ar5523_dbg(ar
, "data tx urb completed: %d\n", urb
->status
);
746 spin_lock_irqsave(&ar
->tx_data_list_lock
, flags
);
747 list_del(&data
->list
);
748 spin_unlock_irqrestore(&ar
->tx_data_list_lock
, flags
);
751 ar5523_dbg(ar
, "%s: urb status: %d\n", __func__
, urb
->status
);
752 ar5523_data_tx_pkt_put(ar
);
753 ieee80211_free_txskb(ar
->hw
, skb
);
755 skb_pull(skb
, sizeof(struct ar5523_tx_desc
) + sizeof(__be32
));
756 ieee80211_tx_status_irqsafe(ar
->hw
, skb
);
761 static void ar5523_tx(struct ieee80211_hw
*hw
,
762 struct ieee80211_tx_control
*control
,
765 struct ieee80211_tx_info
*txi
= IEEE80211_SKB_CB(skb
);
766 struct ar5523_tx_data
*data
= (struct ar5523_tx_data
*)
768 struct ar5523
*ar
= hw
->priv
;
771 ar5523_dbg(ar
, "tx called\n");
772 if (atomic_inc_return(&ar
->tx_nr_total
) >= AR5523_TX_DATA_COUNT
) {
773 ar5523_dbg(ar
, "tx queue full\n");
774 ar5523_dbg(ar
, "stop queues (tot %d pend %d)\n",
775 atomic_read(&ar
->tx_nr_total
),
776 atomic_read(&ar
->tx_nr_pending
));
777 ieee80211_stop_queues(hw
);
780 spin_lock_irqsave(&ar
->tx_data_list_lock
, flags
);
781 list_add_tail(&data
->list
, &ar
->tx_queue_pending
);
782 spin_unlock_irqrestore(&ar
->tx_data_list_lock
, flags
);
784 ieee80211_queue_work(ar
->hw
, &ar
->tx_work
);
787 static void ar5523_tx_work_locked(struct ar5523
*ar
)
789 struct ar5523_tx_data
*data
;
790 struct ar5523_tx_desc
*desc
;
791 struct ar5523_chunk
*chunk
;
792 struct ieee80211_tx_info
*txi
;
795 int error
= 0, paylen
;
799 BUILD_BUG_ON(sizeof(struct ar5523_tx_data
) >
800 IEEE80211_TX_INFO_DRIVER_DATA_SIZE
);
802 ar5523_dbg(ar
, "%s\n", __func__
);
804 spin_lock_irqsave(&ar
->tx_data_list_lock
, flags
);
805 if (!list_empty(&ar
->tx_queue_pending
)) {
806 data
= (struct ar5523_tx_data
*)
807 ar
->tx_queue_pending
.next
;
808 list_del(&data
->list
);
811 spin_unlock_irqrestore(&ar
->tx_data_list_lock
, flags
);
816 txi
= container_of((void *)data
, struct ieee80211_tx_info
,
820 skb
= container_of((void *)txi
, struct sk_buff
, cb
);
823 urb
= usb_alloc_urb(0, GFP_KERNEL
);
825 ieee80211_free_txskb(ar
->hw
, skb
);
832 desc
= skb_push(skb
, sizeof(*desc
));
833 chunk
= skb_push(skb
, sizeof(*chunk
));
836 chunk
->flags
= UATH_CFLAGS_FINAL
;
837 chunk
->length
= cpu_to_be16(skb
->len
);
839 desc
->msglen
= cpu_to_be32(skb
->len
);
840 desc
->msgid
= AR5523_DATA_ID
;
841 desc
->buflen
= cpu_to_be32(paylen
);
842 desc
->type
= cpu_to_be32(WDCMSG_SEND
);
843 desc
->flags
= cpu_to_be32(UATH_TX_NOTIFY
);
845 if (test_bit(AR5523_CONNECTED
, &ar
->flags
))
846 desc
->connid
= cpu_to_be32(AR5523_ID_BSS
);
848 desc
->connid
= cpu_to_be32(AR5523_ID_BROADCAST
);
850 if (txi
->flags
& IEEE80211_TX_CTL_USE_MINRATE
)
851 txqid
|= UATH_TXQID_MINRATE
;
853 desc
->txqid
= cpu_to_be32(txqid
);
855 urb
->transfer_flags
= URB_ZERO_PACKET
;
856 usb_fill_bulk_urb(urb
, ar
->dev
, ar5523_data_tx_pipe(ar
->dev
),
857 skb
->data
, skb
->len
, ar5523_data_tx_cb
, skb
);
859 spin_lock_irqsave(&ar
->tx_data_list_lock
, flags
);
860 list_add_tail(&data
->list
, &ar
->tx_queue_submitted
);
861 spin_unlock_irqrestore(&ar
->tx_data_list_lock
, flags
);
862 mod_timer(&ar
->tx_wd_timer
, jiffies
+ AR5523_TX_WD_TIMEOUT
);
863 atomic_inc(&ar
->tx_nr_pending
);
865 ar5523_dbg(ar
, "TX Frame (%d pending)\n",
866 atomic_read(&ar
->tx_nr_pending
));
867 error
= usb_submit_urb(urb
, GFP_KERNEL
);
869 ar5523_err(ar
, "error %d when submitting tx urb\n",
871 spin_lock_irqsave(&ar
->tx_data_list_lock
, flags
);
872 list_del(&data
->list
);
873 spin_unlock_irqrestore(&ar
->tx_data_list_lock
, flags
);
874 atomic_dec(&ar
->tx_nr_pending
);
875 ar5523_data_tx_pkt_put(ar
);
877 ieee80211_free_txskb(ar
->hw
, skb
);
882 static void ar5523_tx_work(struct work_struct
*work
)
884 struct ar5523
*ar
= container_of(work
, struct ar5523
, tx_work
);
886 ar5523_dbg(ar
, "%s\n", __func__
);
887 mutex_lock(&ar
->mutex
);
888 ar5523_tx_work_locked(ar
);
889 mutex_unlock(&ar
->mutex
);
892 static void ar5523_tx_wd_timer(struct timer_list
*t
)
894 struct ar5523
*ar
= from_timer(ar
, t
, tx_wd_timer
);
896 ar5523_dbg(ar
, "TX watchdog timer triggered\n");
897 ieee80211_queue_work(ar
->hw
, &ar
->tx_wd_work
);
900 static void ar5523_tx_wd_work(struct work_struct
*work
)
902 struct ar5523
*ar
= container_of(work
, struct ar5523
, tx_wd_work
);
904 /* Occasionally the TX queues stop responding. The only way to
905 * recover seems to be to reset the dongle.
908 mutex_lock(&ar
->mutex
);
909 ar5523_err(ar
, "TX queue stuck (tot %d pend %d)\n",
910 atomic_read(&ar
->tx_nr_total
),
911 atomic_read(&ar
->tx_nr_pending
));
913 ar5523_err(ar
, "Will restart dongle.\n");
914 ar5523_cmd_write(ar
, WDCMSG_TARGET_RESET
, NULL
, 0, 0);
915 mutex_unlock(&ar
->mutex
);
918 static void ar5523_flush_tx(struct ar5523
*ar
)
920 ar5523_tx_work_locked(ar
);
922 /* Don't waste time trying to flush if USB is disconnected */
923 if (test_bit(AR5523_USB_DISCONNECTED
, &ar
->flags
))
925 if (!wait_event_timeout(ar
->tx_flush_waitq
,
926 !atomic_read(&ar
->tx_nr_pending
), AR5523_FLUSH_TIMEOUT
))
927 ar5523_err(ar
, "flush timeout (tot %d pend %d)\n",
928 atomic_read(&ar
->tx_nr_total
),
929 atomic_read(&ar
->tx_nr_pending
));
932 static void ar5523_free_tx_cmd(struct ar5523
*ar
)
934 struct ar5523_tx_cmd
*cmd
= &ar
->tx_cmd
;
936 usb_free_coherent(ar
->dev
, AR5523_MAX_RXCMDSZ
, cmd
->buf_tx
,
937 cmd
->urb_tx
->transfer_dma
);
938 usb_free_urb(cmd
->urb_tx
);
941 static int ar5523_alloc_tx_cmd(struct ar5523
*ar
)
943 struct ar5523_tx_cmd
*cmd
= &ar
->tx_cmd
;
946 init_completion(&cmd
->done
);
948 cmd
->urb_tx
= usb_alloc_urb(0, GFP_KERNEL
);
951 cmd
->buf_tx
= usb_alloc_coherent(ar
->dev
, AR5523_MAX_TXCMDSZ
,
953 &cmd
->urb_tx
->transfer_dma
);
955 usb_free_urb(cmd
->urb_tx
);
962 * This function is called periodically (every second) when associated to
963 * query device statistics.
965 static void ar5523_stat_work(struct work_struct
*work
)
967 struct ar5523
*ar
= container_of(work
, struct ar5523
, stat_work
.work
);
970 ar5523_dbg(ar
, "%s\n", __func__
);
971 mutex_lock(&ar
->mutex
);
974 * Send request for statistics asynchronously once a second. This
975 * seems to be important. Throughput is a lot better if this is done.
977 error
= ar5523_cmd_write(ar
, WDCMSG_TARGET_GET_STATS
, NULL
, 0, 0);
979 ar5523_err(ar
, "could not query stats, error %d\n", error
);
980 mutex_unlock(&ar
->mutex
);
981 ieee80211_queue_delayed_work(ar
->hw
, &ar
->stat_work
, HZ
);
985 * Interface routines to the mac80211 stack.
987 static int ar5523_start(struct ieee80211_hw
*hw
)
989 struct ar5523
*ar
= hw
->priv
;
993 ar5523_dbg(ar
, "start called\n");
995 mutex_lock(&ar
->mutex
);
996 val
= cpu_to_be32(0);
997 ar5523_cmd_write(ar
, WDCMSG_BIND
, &val
, sizeof(val
), 0);
999 /* set MAC address */
1000 ar5523_config_multi(ar
, CFG_MAC_ADDR
, &ar
->hw
->wiphy
->perm_addr
,
1003 /* XXX honor net80211 state */
1004 ar5523_config(ar
, CFG_RATE_CONTROL_ENABLE
, 0x00000001);
1005 ar5523_config(ar
, CFG_DIVERSITY_CTL
, 0x00000001);
1006 ar5523_config(ar
, CFG_ABOLT
, 0x0000003f);
1007 ar5523_config(ar
, CFG_WME_ENABLED
, 0x00000000);
1009 ar5523_config(ar
, CFG_SERVICE_TYPE
, 1);
1010 ar5523_config(ar
, CFG_TP_SCALE
, 0x00000000);
1011 ar5523_config(ar
, CFG_TPC_HALF_DBM5
, 0x0000003c);
1012 ar5523_config(ar
, CFG_TPC_HALF_DBM2
, 0x0000003c);
1013 ar5523_config(ar
, CFG_OVERRD_TX_POWER
, 0x00000000);
1014 ar5523_config(ar
, CFG_GMODE_PROTECTION
, 0x00000000);
1015 ar5523_config(ar
, CFG_GMODE_PROTECT_RATE_INDEX
, 0x00000003);
1016 ar5523_config(ar
, CFG_PROTECTION_TYPE
, 0x00000000);
1017 ar5523_config(ar
, CFG_MODE_CTS
, 0x00000002);
1019 error
= ar5523_cmd_read(ar
, WDCMSG_TARGET_START
, NULL
, 0,
1020 &val
, sizeof(val
), AR5523_CMD_FLAG_MAGIC
);
1022 ar5523_dbg(ar
, "could not start target, error %d\n", error
);
1025 ar5523_dbg(ar
, "WDCMSG_TARGET_START returns handle: 0x%x\n",
1028 ar5523_switch_chan(ar
);
1030 val
= cpu_to_be32(TARGET_DEVICE_AWAKE
);
1031 ar5523_cmd_write(ar
, WDCMSG_SET_PWR_MODE
, &val
, sizeof(val
), 0);
1033 ar5523_cmd_write(ar
, WDCMSG_RESET_KEY_CACHE
, NULL
, 0, 0);
1035 set_bit(AR5523_HW_UP
, &ar
->flags
);
1036 queue_work(ar
->wq
, &ar
->rx_refill_work
);
1039 ar5523_set_rxfilter(ar
, 0, UATH_FILTER_OP_INIT
);
1040 ar5523_set_rxfilter(ar
,
1041 UATH_FILTER_RX_UCAST
| UATH_FILTER_RX_MCAST
|
1042 UATH_FILTER_RX_BCAST
| UATH_FILTER_RX_BEACON
,
1043 UATH_FILTER_OP_SET
);
1045 ar5523_set_ledsteady(ar
, UATH_LED_ACTIVITY
, UATH_LED_ON
);
1046 ar5523_dbg(ar
, "start OK\n");
1049 mutex_unlock(&ar
->mutex
);
1053 static void ar5523_stop(struct ieee80211_hw
*hw
)
1055 struct ar5523
*ar
= hw
->priv
;
1057 ar5523_dbg(ar
, "stop called\n");
1059 cancel_delayed_work_sync(&ar
->stat_work
);
1060 mutex_lock(&ar
->mutex
);
1061 clear_bit(AR5523_HW_UP
, &ar
->flags
);
1063 ar5523_set_ledsteady(ar
, UATH_LED_LINK
, UATH_LED_OFF
);
1064 ar5523_set_ledsteady(ar
, UATH_LED_ACTIVITY
, UATH_LED_OFF
);
1066 ar5523_cmd_write(ar
, WDCMSG_TARGET_STOP
, NULL
, 0, 0);
1068 del_timer_sync(&ar
->tx_wd_timer
);
1069 cancel_work_sync(&ar
->tx_wd_work
);
1070 cancel_work_sync(&ar
->rx_refill_work
);
1071 ar5523_cancel_rx_bufs(ar
);
1072 mutex_unlock(&ar
->mutex
);
1075 static int ar5523_set_rts_threshold(struct ieee80211_hw
*hw
, u32 value
)
1077 struct ar5523
*ar
= hw
->priv
;
1080 ar5523_dbg(ar
, "set_rts_threshold called\n");
1081 mutex_lock(&ar
->mutex
);
1083 ret
= ar5523_config(ar
, CFG_USER_RTS_THRESHOLD
, value
);
1085 mutex_unlock(&ar
->mutex
);
1089 static void ar5523_flush(struct ieee80211_hw
*hw
, struct ieee80211_vif
*vif
,
1090 u32 queues
, bool drop
)
1092 struct ar5523
*ar
= hw
->priv
;
1094 ar5523_dbg(ar
, "flush called\n");
1095 ar5523_flush_tx(ar
);
1098 static int ar5523_add_interface(struct ieee80211_hw
*hw
,
1099 struct ieee80211_vif
*vif
)
1101 struct ar5523
*ar
= hw
->priv
;
1103 ar5523_dbg(ar
, "add interface called\n");
1106 ar5523_dbg(ar
, "invalid add_interface\n");
1110 switch (vif
->type
) {
1111 case NL80211_IFTYPE_STATION
:
1120 static void ar5523_remove_interface(struct ieee80211_hw
*hw
,
1121 struct ieee80211_vif
*vif
)
1123 struct ar5523
*ar
= hw
->priv
;
1125 ar5523_dbg(ar
, "remove interface called\n");
1129 static int ar5523_hwconfig(struct ieee80211_hw
*hw
, u32 changed
)
1131 struct ar5523
*ar
= hw
->priv
;
1133 ar5523_dbg(ar
, "config called\n");
1134 mutex_lock(&ar
->mutex
);
1135 if (changed
& IEEE80211_CONF_CHANGE_CHANNEL
) {
1136 ar5523_dbg(ar
, "Do channel switch\n");
1137 ar5523_flush_tx(ar
);
1138 ar5523_switch_chan(ar
);
1140 mutex_unlock(&ar
->mutex
);
1144 static int ar5523_get_wlan_mode(struct ar5523
*ar
,
1145 struct ieee80211_bss_conf
*bss_conf
)
1147 struct ieee80211_supported_band
*band
;
1149 struct ieee80211_sta
*sta
;
1152 band
= ar
->hw
->wiphy
->bands
[ar
->hw
->conf
.chandef
.chan
->band
];
1153 sta
= ieee80211_find_sta(ar
->vif
, bss_conf
->bssid
);
1155 ar5523_info(ar
, "STA not found!\n");
1156 return WLAN_MODE_11b
;
1158 sta_rate_set
= sta
->supp_rates
[ar
->hw
->conf
.chandef
.chan
->band
];
1160 for (bit
= 0; bit
< band
->n_bitrates
; bit
++) {
1161 if (sta_rate_set
& 1) {
1162 int rate
= band
->bitrates
[bit
].bitrate
;
1172 return WLAN_MODE_11g
;
1177 return WLAN_MODE_11b
;
1180 static void ar5523_create_rateset(struct ar5523
*ar
,
1181 struct ieee80211_bss_conf
*bss_conf
,
1182 struct ar5523_cmd_rateset
*rs
,
1185 struct ieee80211_supported_band
*band
;
1186 struct ieee80211_sta
*sta
;
1188 u32 sta_rate_set
, basic_rate_set
;
1190 sta
= ieee80211_find_sta(ar
->vif
, bss_conf
->bssid
);
1191 basic_rate_set
= bss_conf
->basic_rates
;
1193 ar5523_info(ar
, "STA not found. Cannot set rates\n");
1194 sta_rate_set
= bss_conf
->basic_rates
;
1196 sta_rate_set
= sta
->supp_rates
[ar
->hw
->conf
.chandef
.chan
->band
];
1198 ar5523_dbg(ar
, "sta rate_set = %08x\n", sta_rate_set
);
1200 band
= ar
->hw
->wiphy
->bands
[ar
->hw
->conf
.chandef
.chan
->band
];
1201 for (bit
= 0; bit
< band
->n_bitrates
; bit
++) {
1202 BUG_ON(i
>= AR5523_MAX_NRATES
);
1203 ar5523_dbg(ar
, "Considering rate %d : %d\n",
1204 band
->bitrates
[bit
].hw_value
, sta_rate_set
& 1);
1205 if (sta_rate_set
& 1) {
1206 rs
->set
[i
] = band
->bitrates
[bit
].hw_value
;
1207 if (basic_rate_set
& 1 && basic
)
1212 basic_rate_set
>>= 1;
1218 static int ar5523_set_basic_rates(struct ar5523
*ar
,
1219 struct ieee80211_bss_conf
*bss
)
1221 struct ar5523_cmd_rates rates
;
1223 memset(&rates
, 0, sizeof(rates
));
1224 rates
.connid
= cpu_to_be32(2); /* XXX */
1225 rates
.size
= cpu_to_be32(sizeof(struct ar5523_cmd_rateset
));
1226 ar5523_create_rateset(ar
, bss
, &rates
.rateset
, true);
1228 return ar5523_cmd_write(ar
, WDCMSG_SET_BASIC_RATE
, &rates
,
1232 static int ar5523_create_connection(struct ar5523
*ar
,
1233 struct ieee80211_vif
*vif
,
1234 struct ieee80211_bss_conf
*bss
)
1236 struct ar5523_cmd_create_connection create
;
1239 memset(&create
, 0, sizeof(create
));
1240 create
.connid
= cpu_to_be32(2);
1241 create
.bssid
= cpu_to_be32(0);
1242 /* XXX packed or not? */
1243 create
.size
= cpu_to_be32(sizeof(struct ar5523_cmd_rateset
));
1245 ar5523_create_rateset(ar
, bss
, &create
.connattr
.rateset
, false);
1247 wlan_mode
= ar5523_get_wlan_mode(ar
, bss
);
1248 create
.connattr
.wlanmode
= cpu_to_be32(wlan_mode
);
1250 return ar5523_cmd_write(ar
, WDCMSG_CREATE_CONNECTION
, &create
,
1254 static int ar5523_write_associd(struct ar5523
*ar
,
1255 struct ieee80211_bss_conf
*bss
)
1257 struct ar5523_cmd_set_associd associd
;
1259 memset(&associd
, 0, sizeof(associd
));
1260 associd
.defaultrateix
= cpu_to_be32(0); /* XXX */
1261 associd
.associd
= cpu_to_be32(bss
->aid
);
1262 associd
.timoffset
= cpu_to_be32(0x3b); /* XXX */
1263 memcpy(associd
.bssid
, bss
->bssid
, ETH_ALEN
);
1264 return ar5523_cmd_write(ar
, WDCMSG_WRITE_ASSOCID
, &associd
,
1265 sizeof(associd
), 0);
1268 static void ar5523_bss_info_changed(struct ieee80211_hw
*hw
,
1269 struct ieee80211_vif
*vif
,
1270 struct ieee80211_bss_conf
*bss
,
1273 struct ar5523
*ar
= hw
->priv
;
1276 ar5523_dbg(ar
, "bss_info_changed called\n");
1277 mutex_lock(&ar
->mutex
);
1279 if (!(changed
& BSS_CHANGED_ASSOC
))
1283 error
= ar5523_create_connection(ar
, vif
, bss
);
1285 ar5523_err(ar
, "could not create connection\n");
1289 error
= ar5523_set_basic_rates(ar
, bss
);
1291 ar5523_err(ar
, "could not set negotiated rate set\n");
1295 error
= ar5523_write_associd(ar
, bss
);
1297 ar5523_err(ar
, "could not set association\n");
1301 /* turn link LED on */
1302 ar5523_set_ledsteady(ar
, UATH_LED_LINK
, UATH_LED_ON
);
1303 set_bit(AR5523_CONNECTED
, &ar
->flags
);
1304 ieee80211_queue_delayed_work(hw
, &ar
->stat_work
, HZ
);
1307 cancel_delayed_work(&ar
->stat_work
);
1308 clear_bit(AR5523_CONNECTED
, &ar
->flags
);
1309 ar5523_set_ledsteady(ar
, UATH_LED_LINK
, UATH_LED_OFF
);
1313 mutex_unlock(&ar
->mutex
);
1317 #define AR5523_SUPPORTED_FILTERS (FIF_ALLMULTI | \
1321 static void ar5523_configure_filter(struct ieee80211_hw
*hw
,
1322 unsigned int changed_flags
,
1323 unsigned int *total_flags
,
1326 struct ar5523
*ar
= hw
->priv
;
1329 ar5523_dbg(ar
, "configure_filter called\n");
1330 mutex_lock(&ar
->mutex
);
1331 ar5523_flush_tx(ar
);
1333 *total_flags
&= AR5523_SUPPORTED_FILTERS
;
1335 /* The filters seems strange. UATH_FILTER_RX_BCAST and
1336 * UATH_FILTER_RX_MCAST does not result in those frames being RXed.
1337 * The only way I have found to get [mb]cast frames seems to be
1338 * to set UATH_FILTER_RX_PROM. */
1339 filter
|= UATH_FILTER_RX_UCAST
| UATH_FILTER_RX_MCAST
|
1340 UATH_FILTER_RX_BCAST
| UATH_FILTER_RX_BEACON
|
1341 UATH_FILTER_RX_PROM
;
1343 ar5523_set_rxfilter(ar
, 0, UATH_FILTER_OP_INIT
);
1344 ar5523_set_rxfilter(ar
, filter
, UATH_FILTER_OP_SET
);
1346 mutex_unlock(&ar
->mutex
);
1349 static const struct ieee80211_ops ar5523_ops
= {
1350 .start
= ar5523_start
,
1351 .stop
= ar5523_stop
,
1353 .set_rts_threshold
= ar5523_set_rts_threshold
,
1354 .add_interface
= ar5523_add_interface
,
1355 .remove_interface
= ar5523_remove_interface
,
1356 .config
= ar5523_hwconfig
,
1357 .bss_info_changed
= ar5523_bss_info_changed
,
1358 .configure_filter
= ar5523_configure_filter
,
1359 .flush
= ar5523_flush
,
1362 static int ar5523_host_available(struct ar5523
*ar
)
1364 struct ar5523_cmd_host_available setup
;
1366 /* inform target the host is available */
1367 setup
.sw_ver_major
= cpu_to_be32(ATH_SW_VER_MAJOR
);
1368 setup
.sw_ver_minor
= cpu_to_be32(ATH_SW_VER_MINOR
);
1369 setup
.sw_ver_patch
= cpu_to_be32(ATH_SW_VER_PATCH
);
1370 setup
.sw_ver_build
= cpu_to_be32(ATH_SW_VER_BUILD
);
1371 return ar5523_cmd_read(ar
, WDCMSG_HOST_AVAILABLE
,
1372 &setup
, sizeof(setup
), NULL
, 0, 0);
1375 static int ar5523_get_devstatus(struct ar5523
*ar
)
1377 u8 macaddr
[ETH_ALEN
];
1380 /* retrieve MAC address */
1381 error
= ar5523_get_status(ar
, ST_MAC_ADDR
, macaddr
, ETH_ALEN
);
1383 ar5523_err(ar
, "could not read MAC address\n");
1387 SET_IEEE80211_PERM_ADDR(ar
->hw
, macaddr
);
1389 error
= ar5523_get_status(ar
, ST_SERIAL_NUMBER
,
1390 &ar
->serial
[0], sizeof(ar
->serial
));
1392 ar5523_err(ar
, "could not read device serial number\n");
1398 #define AR5523_SANE_RXBUFSZ 2000
1400 static int ar5523_get_max_rxsz(struct ar5523
*ar
)
1405 /* Get max rx size */
1406 error
= ar5523_get_status(ar
, ST_WDC_TRANSPORT_CHUNK_SIZE
, &rxsize
,
1409 ar5523_err(ar
, "could not read max RX size\n");
1413 ar
->rxbufsz
= be32_to_cpu(rxsize
);
1415 if (!ar
->rxbufsz
|| ar
->rxbufsz
> AR5523_SANE_RXBUFSZ
) {
1416 ar5523_err(ar
, "Bad rxbufsz from device. Using %d instead\n",
1417 AR5523_SANE_RXBUFSZ
);
1418 ar
->rxbufsz
= AR5523_SANE_RXBUFSZ
;
1421 ar5523_dbg(ar
, "Max RX buf size: %d\n", ar
->rxbufsz
);
1426 * This is copied from rtl818x, but we should probably move this
1427 * to common code as in OpenBSD.
1429 static const struct ieee80211_rate ar5523_rates
[] = {
1430 { .bitrate
= 10, .hw_value
= 2, },
1431 { .bitrate
= 20, .hw_value
= 4 },
1432 { .bitrate
= 55, .hw_value
= 11, },
1433 { .bitrate
= 110, .hw_value
= 22, },
1434 { .bitrate
= 60, .hw_value
= 12, },
1435 { .bitrate
= 90, .hw_value
= 18, },
1436 { .bitrate
= 120, .hw_value
= 24, },
1437 { .bitrate
= 180, .hw_value
= 36, },
1438 { .bitrate
= 240, .hw_value
= 48, },
1439 { .bitrate
= 360, .hw_value
= 72, },
1440 { .bitrate
= 480, .hw_value
= 96, },
1441 { .bitrate
= 540, .hw_value
= 108, },
1444 static const struct ieee80211_channel ar5523_channels
[] = {
1445 { .center_freq
= 2412 },
1446 { .center_freq
= 2417 },
1447 { .center_freq
= 2422 },
1448 { .center_freq
= 2427 },
1449 { .center_freq
= 2432 },
1450 { .center_freq
= 2437 },
1451 { .center_freq
= 2442 },
1452 { .center_freq
= 2447 },
1453 { .center_freq
= 2452 },
1454 { .center_freq
= 2457 },
1455 { .center_freq
= 2462 },
1456 { .center_freq
= 2467 },
1457 { .center_freq
= 2472 },
1458 { .center_freq
= 2484 },
1461 static int ar5523_init_modes(struct ar5523
*ar
)
1463 BUILD_BUG_ON(sizeof(ar
->channels
) != sizeof(ar5523_channels
));
1464 BUILD_BUG_ON(sizeof(ar
->rates
) != sizeof(ar5523_rates
));
1466 memcpy(ar
->channels
, ar5523_channels
, sizeof(ar5523_channels
));
1467 memcpy(ar
->rates
, ar5523_rates
, sizeof(ar5523_rates
));
1469 ar
->band
.band
= NL80211_BAND_2GHZ
;
1470 ar
->band
.channels
= ar
->channels
;
1471 ar
->band
.n_channels
= ARRAY_SIZE(ar5523_channels
);
1472 ar
->band
.bitrates
= ar
->rates
;
1473 ar
->band
.n_bitrates
= ARRAY_SIZE(ar5523_rates
);
1474 ar
->hw
->wiphy
->bands
[NL80211_BAND_2GHZ
] = &ar
->band
;
1479 * Load the MIPS R4000 microcode into the device. Once the image is loaded,
1480 * the device will detach itself from the bus and reattach later with a new
1481 * product Id (a la ezusb).
1483 static int ar5523_load_firmware(struct usb_device
*dev
)
1485 struct ar5523_fwblock
*txblock
, *rxblock
;
1486 const struct firmware
*fw
;
1489 int foolen
; /* XXX(hch): handle short transfers */
1492 if (request_firmware(&fw
, AR5523_FIRMWARE_FILE
, &dev
->dev
)) {
1493 dev_err(&dev
->dev
, "no firmware found: %s\n",
1494 AR5523_FIRMWARE_FILE
);
1498 txblock
= kmalloc(sizeof(*txblock
), GFP_KERNEL
);
1502 rxblock
= kmalloc(sizeof(*rxblock
), GFP_KERNEL
);
1504 goto out_free_txblock
;
1506 fwbuf
= kmalloc(AR5523_MAX_FWBLOCK_SIZE
, GFP_KERNEL
);
1508 goto out_free_rxblock
;
1510 memset(txblock
, 0, sizeof(struct ar5523_fwblock
));
1511 txblock
->flags
= cpu_to_be32(AR5523_WRITE_BLOCK
);
1512 txblock
->total
= cpu_to_be32(fw
->size
);
1517 int mlen
= min(len
, AR5523_MAX_FWBLOCK_SIZE
);
1519 txblock
->remain
= cpu_to_be32(len
- mlen
);
1520 txblock
->len
= cpu_to_be32(mlen
);
1522 /* send firmware block meta-data */
1523 error
= usb_bulk_msg(dev
, ar5523_cmd_tx_pipe(dev
),
1524 txblock
, sizeof(*txblock
), &foolen
,
1525 AR5523_CMD_TIMEOUT
);
1528 "could not send firmware block info\n");
1529 goto out_free_fwbuf
;
1532 /* send firmware block data */
1533 memcpy(fwbuf
, fw
->data
+ offset
, mlen
);
1534 error
= usb_bulk_msg(dev
, ar5523_data_tx_pipe(dev
),
1535 fwbuf
, mlen
, &foolen
,
1536 AR5523_DATA_TIMEOUT
);
1539 "could not send firmware block data\n");
1540 goto out_free_fwbuf
;
1543 /* wait for ack from firmware */
1544 error
= usb_bulk_msg(dev
, ar5523_cmd_rx_pipe(dev
),
1545 rxblock
, sizeof(*rxblock
), &foolen
,
1546 AR5523_CMD_TIMEOUT
);
1549 "could not read firmware answer\n");
1550 goto out_free_fwbuf
;
1558 * Set the error to -ENXIO to make sure we continue probing for
1570 release_firmware(fw
);
1574 static int ar5523_probe(struct usb_interface
*intf
,
1575 const struct usb_device_id
*id
)
1577 struct usb_device
*dev
= interface_to_usbdev(intf
);
1578 struct ieee80211_hw
*hw
;
1580 int error
= -ENOMEM
;
1583 * Load firmware if the device requires it. This will return
1584 * -ENXIO on success and we'll get called back afer the usb
1585 * id changes to indicate that the firmware is present.
1587 if (id
->driver_info
& AR5523_FLAG_PRE_FIRMWARE
)
1588 return ar5523_load_firmware(dev
);
1591 hw
= ieee80211_alloc_hw(sizeof(*ar
), &ar5523_ops
);
1594 SET_IEEE80211_DEV(hw
, &intf
->dev
);
1599 mutex_init(&ar
->mutex
);
1601 INIT_DELAYED_WORK(&ar
->stat_work
, ar5523_stat_work
);
1602 timer_setup(&ar
->tx_wd_timer
, ar5523_tx_wd_timer
, 0);
1603 INIT_WORK(&ar
->tx_wd_work
, ar5523_tx_wd_work
);
1604 INIT_WORK(&ar
->tx_work
, ar5523_tx_work
);
1605 INIT_LIST_HEAD(&ar
->tx_queue_pending
);
1606 INIT_LIST_HEAD(&ar
->tx_queue_submitted
);
1607 spin_lock_init(&ar
->tx_data_list_lock
);
1608 atomic_set(&ar
->tx_nr_total
, 0);
1609 atomic_set(&ar
->tx_nr_pending
, 0);
1610 init_waitqueue_head(&ar
->tx_flush_waitq
);
1612 atomic_set(&ar
->rx_data_free_cnt
, 0);
1613 INIT_WORK(&ar
->rx_refill_work
, ar5523_rx_refill_work
);
1614 INIT_LIST_HEAD(&ar
->rx_data_free
);
1615 INIT_LIST_HEAD(&ar
->rx_data_used
);
1616 spin_lock_init(&ar
->rx_data_list_lock
);
1618 ar
->wq
= create_singlethread_workqueue("ar5523");
1620 ar5523_err(ar
, "Could not create wq\n");
1624 error
= ar5523_alloc_rx_bufs(ar
);
1626 ar5523_err(ar
, "Could not allocate rx buffers\n");
1630 error
= ar5523_alloc_rx_cmd(ar
);
1632 ar5523_err(ar
, "Could not allocate rx command buffers\n");
1633 goto out_free_rx_bufs
;
1636 error
= ar5523_alloc_tx_cmd(ar
);
1638 ar5523_err(ar
, "Could not allocate tx command buffers\n");
1639 goto out_free_rx_cmd
;
1642 error
= ar5523_submit_rx_cmd(ar
);
1644 ar5523_err(ar
, "Failed to submit rx cmd\n");
1645 goto out_free_tx_cmd
;
1649 * We're now ready to send/receive firmware commands.
1651 error
= ar5523_host_available(ar
);
1653 ar5523_err(ar
, "could not initialize adapter\n");
1654 goto out_cancel_rx_cmd
;
1657 error
= ar5523_get_max_rxsz(ar
);
1659 ar5523_err(ar
, "could not get caps from adapter\n");
1660 goto out_cancel_rx_cmd
;
1663 error
= ar5523_get_devcap(ar
);
1665 ar5523_err(ar
, "could not get caps from adapter\n");
1666 goto out_cancel_rx_cmd
;
1669 error
= ar5523_get_devstatus(ar
);
1671 ar5523_err(ar
, "could not get device status\n");
1672 goto out_cancel_rx_cmd
;
1675 ar5523_info(ar
, "MAC/BBP AR5523, RF AR%c112\n",
1676 (id
->driver_info
& AR5523_FLAG_ABG
) ? '5' : '2');
1679 ieee80211_hw_set(hw
, HAS_RATE_CONTROL
);
1680 ieee80211_hw_set(hw
, RX_INCLUDES_FCS
);
1681 ieee80211_hw_set(hw
, SIGNAL_DBM
);
1682 hw
->extra_tx_headroom
= sizeof(struct ar5523_tx_desc
) +
1683 sizeof(struct ar5523_chunk
);
1684 hw
->wiphy
->interface_modes
= BIT(NL80211_IFTYPE_STATION
);
1687 error
= ar5523_init_modes(ar
);
1689 goto out_cancel_rx_cmd
;
1691 wiphy_ext_feature_set(hw
->wiphy
, NL80211_EXT_FEATURE_CQM_RSSI_LIST
);
1693 usb_set_intfdata(intf
, hw
);
1695 error
= ieee80211_register_hw(hw
);
1697 ar5523_err(ar
, "could not register device\n");
1698 goto out_cancel_rx_cmd
;
1701 ar5523_info(ar
, "Found and initialized AR5523 device\n");
1705 ar5523_cancel_rx_cmd(ar
);
1707 ar5523_free_tx_cmd(ar
);
1709 ar5523_free_rx_cmd(ar
);
1711 ar5523_free_rx_bufs(ar
);
1713 destroy_workqueue(ar
->wq
);
1715 ieee80211_free_hw(hw
);
1720 static void ar5523_disconnect(struct usb_interface
*intf
)
1722 struct ieee80211_hw
*hw
= usb_get_intfdata(intf
);
1723 struct ar5523
*ar
= hw
->priv
;
1725 ar5523_dbg(ar
, "detaching\n");
1726 set_bit(AR5523_USB_DISCONNECTED
, &ar
->flags
);
1728 ieee80211_unregister_hw(hw
);
1730 ar5523_cancel_rx_cmd(ar
);
1731 ar5523_free_tx_cmd(ar
);
1732 ar5523_free_rx_cmd(ar
);
1733 ar5523_free_rx_bufs(ar
);
1735 destroy_workqueue(ar
->wq
);
1737 ieee80211_free_hw(hw
);
1738 usb_set_intfdata(intf
, NULL
);
1741 #define AR5523_DEVICE_UG(vendor, device) \
1742 { USB_DEVICE((vendor), (device)) }, \
1743 { USB_DEVICE((vendor), (device) + 1), \
1744 .driver_info = AR5523_FLAG_PRE_FIRMWARE }
1745 #define AR5523_DEVICE_UX(vendor, device) \
1746 { USB_DEVICE((vendor), (device)), \
1747 .driver_info = AR5523_FLAG_ABG }, \
1748 { USB_DEVICE((vendor), (device) + 1), \
1749 .driver_info = AR5523_FLAG_ABG|AR5523_FLAG_PRE_FIRMWARE }
1751 static const struct usb_device_id ar5523_id_table
[] = {
1752 AR5523_DEVICE_UG(0x168c, 0x0001), /* Atheros / AR5523 */
1753 AR5523_DEVICE_UG(0x0cf3, 0x0001), /* Atheros2 / AR5523_1 */
1754 AR5523_DEVICE_UG(0x0cf3, 0x0003), /* Atheros2 / AR5523_2 */
1755 AR5523_DEVICE_UX(0x0cf3, 0x0005), /* Atheros2 / AR5523_3 */
1756 AR5523_DEVICE_UG(0x0d8e, 0x7801), /* Conceptronic / AR5523_1 */
1757 AR5523_DEVICE_UX(0x0d8e, 0x7811), /* Conceptronic / AR5523_2 */
1758 AR5523_DEVICE_UX(0x2001, 0x3a00), /* Dlink / DWLAG132 */
1759 AR5523_DEVICE_UG(0x2001, 0x3a02), /* Dlink / DWLG132 */
1760 AR5523_DEVICE_UX(0x2001, 0x3a04), /* Dlink / DWLAG122 */
1761 AR5523_DEVICE_UG(0x07d1, 0x3a07), /* D-Link / WUA-2340 rev A1 */
1762 AR5523_DEVICE_UG(0x1690, 0x0712), /* Gigaset / AR5523 */
1763 AR5523_DEVICE_UG(0x1690, 0x0710), /* Gigaset / SMCWUSBTG */
1764 AR5523_DEVICE_UG(0x129b, 0x160b), /* Gigaset / USB stick 108
1765 (CyberTAN Technology) */
1766 AR5523_DEVICE_UG(0x16ab, 0x7801), /* Globalsun / AR5523_1 */
1767 AR5523_DEVICE_UX(0x16ab, 0x7811), /* Globalsun / AR5523_2 */
1768 AR5523_DEVICE_UG(0x0d8e, 0x7802), /* Globalsun / AR5523_3 */
1769 AR5523_DEVICE_UX(0x0846, 0x4300), /* Netgear / WG111U */
1770 AR5523_DEVICE_UG(0x0846, 0x4250), /* Netgear / WG111T */
1771 AR5523_DEVICE_UG(0x0846, 0x5f00), /* Netgear / WPN111 */
1772 AR5523_DEVICE_UG(0x157e, 0x3006), /* Umedia / AR5523_1 */
1773 AR5523_DEVICE_UX(0x157e, 0x3205), /* Umedia / AR5523_2 */
1774 AR5523_DEVICE_UG(0x157e, 0x3006), /* Umedia / TEW444UBEU */
1775 AR5523_DEVICE_UG(0x1435, 0x0826), /* Wistronneweb / AR5523_1 */
1776 AR5523_DEVICE_UX(0x1435, 0x0828), /* Wistronneweb / AR5523_2 */
1777 AR5523_DEVICE_UG(0x0cde, 0x0012), /* Zcom / AR5523 */
1778 AR5523_DEVICE_UG(0x1385, 0x4250), /* Netgear3 / WG111T (2) */
1779 AR5523_DEVICE_UG(0x1385, 0x5f00), /* Netgear / WPN111 */
1780 AR5523_DEVICE_UG(0x1385, 0x5f02), /* Netgear / WPN111 */
1783 MODULE_DEVICE_TABLE(usb
, ar5523_id_table
);
1785 static struct usb_driver ar5523_driver
= {
1787 .id_table
= ar5523_id_table
,
1788 .probe
= ar5523_probe
,
1789 .disconnect
= ar5523_disconnect
,
1792 module_usb_driver(ar5523_driver
);
1794 MODULE_LICENSE("Dual BSD/GPL");
1795 MODULE_FIRMWARE(AR5523_FIRMWARE_FILE
);