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[karo-tx-linux.git] / drivers / net / wireless / b43legacy / main.c
1 /*
2  *
3  *  Broadcom B43legacy wireless driver
4  *
5  *  Copyright (c) 2005 Martin Langer <martin-langer@gmx.de>
6  *  Copyright (c) 2005-2008 Stefano Brivio <stefano.brivio@polimi.it>
7  *  Copyright (c) 2005, 2006 Michael Buesch <m@bues.ch>
8  *  Copyright (c) 2005 Danny van Dyk <kugelfang@gentoo.org>
9  *  Copyright (c) 2005 Andreas Jaggi <andreas.jaggi@waterwave.ch>
10  *  Copyright (c) 2007 Larry Finger <Larry.Finger@lwfinger.net>
11  *
12  *  Some parts of the code in this file are derived from the ipw2200
13  *  driver  Copyright(c) 2003 - 2004 Intel Corporation.
14
15  *  This program is free software; you can redistribute it and/or modify
16  *  it under the terms of the GNU General Public License as published by
17  *  the Free Software Foundation; either version 2 of the License, or
18  *  (at your option) any later version.
19  *
20  *  This program is distributed in the hope that it will be useful,
21  *  but WITHOUT ANY WARRANTY; without even the implied warranty of
22  *  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
23  *  GNU General Public License for more details.
24  *
25  *  You should have received a copy of the GNU General Public License
26  *  along with this program; see the file COPYING.  If not, write to
27  *  the Free Software Foundation, Inc., 51 Franklin Steet, Fifth Floor,
28  *  Boston, MA 02110-1301, USA.
29  *
30  */
31
32 #include <linux/delay.h>
33 #include <linux/init.h>
34 #include <linux/module.h>
35 #include <linux/if_arp.h>
36 #include <linux/etherdevice.h>
37 #include <linux/firmware.h>
38 #include <linux/workqueue.h>
39 #include <linux/sched.h>
40 #include <linux/skbuff.h>
41 #include <linux/dma-mapping.h>
42 #include <linux/slab.h>
43 #include <net/dst.h>
44 #include <asm/unaligned.h>
45
46 #include "b43legacy.h"
47 #include "main.h"
48 #include "debugfs.h"
49 #include "phy.h"
50 #include "dma.h"
51 #include "pio.h"
52 #include "sysfs.h"
53 #include "xmit.h"
54 #include "radio.h"
55
56
57 MODULE_DESCRIPTION("Broadcom B43legacy wireless driver");
58 MODULE_AUTHOR("Martin Langer");
59 MODULE_AUTHOR("Stefano Brivio");
60 MODULE_AUTHOR("Michael Buesch");
61 MODULE_LICENSE("GPL");
62
63 MODULE_FIRMWARE("b43legacy/ucode2.fw");
64 MODULE_FIRMWARE("b43legacy/ucode4.fw");
65
66 #if defined(CONFIG_B43LEGACY_DMA) && defined(CONFIG_B43LEGACY_PIO)
67 static int modparam_pio;
68 module_param_named(pio, modparam_pio, int, 0444);
69 MODULE_PARM_DESC(pio, "enable(1) / disable(0) PIO mode");
70 #elif defined(CONFIG_B43LEGACY_DMA)
71 # define modparam_pio   0
72 #elif defined(CONFIG_B43LEGACY_PIO)
73 # define modparam_pio   1
74 #endif
75
76 static int modparam_bad_frames_preempt;
77 module_param_named(bad_frames_preempt, modparam_bad_frames_preempt, int, 0444);
78 MODULE_PARM_DESC(bad_frames_preempt, "enable(1) / disable(0) Bad Frames"
79                  " Preemption");
80
81 static char modparam_fwpostfix[16];
82 module_param_string(fwpostfix, modparam_fwpostfix, 16, 0444);
83 MODULE_PARM_DESC(fwpostfix, "Postfix for the firmware files to load.");
84
85 /* The following table supports BCM4301, BCM4303 and BCM4306/2 devices. */
86 static const struct ssb_device_id b43legacy_ssb_tbl[] = {
87         SSB_DEVICE(SSB_VENDOR_BROADCOM, SSB_DEV_80211, 2),
88         SSB_DEVICE(SSB_VENDOR_BROADCOM, SSB_DEV_80211, 4),
89         SSB_DEVTABLE_END
90 };
91 MODULE_DEVICE_TABLE(ssb, b43legacy_ssb_tbl);
92
93
94 /* Channel and ratetables are shared for all devices.
95  * They can't be const, because ieee80211 puts some precalculated
96  * data in there. This data is the same for all devices, so we don't
97  * get concurrency issues */
98 #define RATETAB_ENT(_rateid, _flags) \
99         {                                                               \
100                 .bitrate        = B43legacy_RATE_TO_100KBPS(_rateid),   \
101                 .hw_value       = (_rateid),                            \
102                 .flags          = (_flags),                             \
103         }
104 /*
105  * NOTE: When changing this, sync with xmit.c's
106  *       b43legacy_plcp_get_bitrate_idx_* functions!
107  */
108 static struct ieee80211_rate __b43legacy_ratetable[] = {
109         RATETAB_ENT(B43legacy_CCK_RATE_1MB, 0),
110         RATETAB_ENT(B43legacy_CCK_RATE_2MB, IEEE80211_RATE_SHORT_PREAMBLE),
111         RATETAB_ENT(B43legacy_CCK_RATE_5MB, IEEE80211_RATE_SHORT_PREAMBLE),
112         RATETAB_ENT(B43legacy_CCK_RATE_11MB, IEEE80211_RATE_SHORT_PREAMBLE),
113         RATETAB_ENT(B43legacy_OFDM_RATE_6MB, 0),
114         RATETAB_ENT(B43legacy_OFDM_RATE_9MB, 0),
115         RATETAB_ENT(B43legacy_OFDM_RATE_12MB, 0),
116         RATETAB_ENT(B43legacy_OFDM_RATE_18MB, 0),
117         RATETAB_ENT(B43legacy_OFDM_RATE_24MB, 0),
118         RATETAB_ENT(B43legacy_OFDM_RATE_36MB, 0),
119         RATETAB_ENT(B43legacy_OFDM_RATE_48MB, 0),
120         RATETAB_ENT(B43legacy_OFDM_RATE_54MB, 0),
121 };
122 #define b43legacy_b_ratetable           (__b43legacy_ratetable + 0)
123 #define b43legacy_b_ratetable_size      4
124 #define b43legacy_g_ratetable           (__b43legacy_ratetable + 0)
125 #define b43legacy_g_ratetable_size      12
126
127 #define CHANTAB_ENT(_chanid, _freq) \
128         {                                                       \
129                 .center_freq    = (_freq),                      \
130                 .hw_value       = (_chanid),                    \
131         }
132 static struct ieee80211_channel b43legacy_bg_chantable[] = {
133         CHANTAB_ENT(1, 2412),
134         CHANTAB_ENT(2, 2417),
135         CHANTAB_ENT(3, 2422),
136         CHANTAB_ENT(4, 2427),
137         CHANTAB_ENT(5, 2432),
138         CHANTAB_ENT(6, 2437),
139         CHANTAB_ENT(7, 2442),
140         CHANTAB_ENT(8, 2447),
141         CHANTAB_ENT(9, 2452),
142         CHANTAB_ENT(10, 2457),
143         CHANTAB_ENT(11, 2462),
144         CHANTAB_ENT(12, 2467),
145         CHANTAB_ENT(13, 2472),
146         CHANTAB_ENT(14, 2484),
147 };
148
149 static struct ieee80211_supported_band b43legacy_band_2GHz_BPHY = {
150         .channels = b43legacy_bg_chantable,
151         .n_channels = ARRAY_SIZE(b43legacy_bg_chantable),
152         .bitrates = b43legacy_b_ratetable,
153         .n_bitrates = b43legacy_b_ratetable_size,
154 };
155
156 static struct ieee80211_supported_band b43legacy_band_2GHz_GPHY = {
157         .channels = b43legacy_bg_chantable,
158         .n_channels = ARRAY_SIZE(b43legacy_bg_chantable),
159         .bitrates = b43legacy_g_ratetable,
160         .n_bitrates = b43legacy_g_ratetable_size,
161 };
162
163 static void b43legacy_wireless_core_exit(struct b43legacy_wldev *dev);
164 static int b43legacy_wireless_core_init(struct b43legacy_wldev *dev);
165 static void b43legacy_wireless_core_stop(struct b43legacy_wldev *dev);
166 static int b43legacy_wireless_core_start(struct b43legacy_wldev *dev);
167
168
169 static int b43legacy_ratelimit(struct b43legacy_wl *wl)
170 {
171         if (!wl || !wl->current_dev)
172                 return 1;
173         if (b43legacy_status(wl->current_dev) < B43legacy_STAT_STARTED)
174                 return 1;
175         /* We are up and running.
176          * Ratelimit the messages to avoid DoS over the net. */
177         return net_ratelimit();
178 }
179
180 void b43legacyinfo(struct b43legacy_wl *wl, const char *fmt, ...)
181 {
182         struct va_format vaf;
183         va_list args;
184
185         if (!b43legacy_ratelimit(wl))
186                 return;
187
188         va_start(args, fmt);
189
190         vaf.fmt = fmt;
191         vaf.va = &args;
192
193         printk(KERN_INFO "b43legacy-%s: %pV",
194                (wl && wl->hw) ? wiphy_name(wl->hw->wiphy) : "wlan", &vaf);
195
196         va_end(args);
197 }
198
199 void b43legacyerr(struct b43legacy_wl *wl, const char *fmt, ...)
200 {
201         struct va_format vaf;
202         va_list args;
203
204         if (!b43legacy_ratelimit(wl))
205                 return;
206
207         va_start(args, fmt);
208
209         vaf.fmt = fmt;
210         vaf.va = &args;
211
212         printk(KERN_ERR "b43legacy-%s ERROR: %pV",
213                (wl && wl->hw) ? wiphy_name(wl->hw->wiphy) : "wlan", &vaf);
214
215         va_end(args);
216 }
217
218 void b43legacywarn(struct b43legacy_wl *wl, const char *fmt, ...)
219 {
220         struct va_format vaf;
221         va_list args;
222
223         if (!b43legacy_ratelimit(wl))
224                 return;
225
226         va_start(args, fmt);
227
228         vaf.fmt = fmt;
229         vaf.va = &args;
230
231         printk(KERN_WARNING "b43legacy-%s warning: %pV",
232                (wl && wl->hw) ? wiphy_name(wl->hw->wiphy) : "wlan", &vaf);
233
234         va_end(args);
235 }
236
237 #if B43legacy_DEBUG
238 void b43legacydbg(struct b43legacy_wl *wl, const char *fmt, ...)
239 {
240         struct va_format vaf;
241         va_list args;
242
243         va_start(args, fmt);
244
245         vaf.fmt = fmt;
246         vaf.va = &args;
247
248         printk(KERN_DEBUG "b43legacy-%s debug: %pV",
249                (wl && wl->hw) ? wiphy_name(wl->hw->wiphy) : "wlan", &vaf);
250
251         va_end(args);
252 }
253 #endif /* DEBUG */
254
255 static void b43legacy_ram_write(struct b43legacy_wldev *dev, u16 offset,
256                                 u32 val)
257 {
258         u32 status;
259
260         B43legacy_WARN_ON(offset % 4 != 0);
261
262         status = b43legacy_read32(dev, B43legacy_MMIO_MACCTL);
263         if (status & B43legacy_MACCTL_BE)
264                 val = swab32(val);
265
266         b43legacy_write32(dev, B43legacy_MMIO_RAM_CONTROL, offset);
267         mmiowb();
268         b43legacy_write32(dev, B43legacy_MMIO_RAM_DATA, val);
269 }
270
271 static inline
272 void b43legacy_shm_control_word(struct b43legacy_wldev *dev,
273                                 u16 routing, u16 offset)
274 {
275         u32 control;
276
277         /* "offset" is the WORD offset. */
278
279         control = routing;
280         control <<= 16;
281         control |= offset;
282         b43legacy_write32(dev, B43legacy_MMIO_SHM_CONTROL, control);
283 }
284
285 u32 b43legacy_shm_read32(struct b43legacy_wldev *dev,
286                        u16 routing, u16 offset)
287 {
288         u32 ret;
289
290         if (routing == B43legacy_SHM_SHARED) {
291                 B43legacy_WARN_ON((offset & 0x0001) != 0);
292                 if (offset & 0x0003) {
293                         /* Unaligned access */
294                         b43legacy_shm_control_word(dev, routing, offset >> 2);
295                         ret = b43legacy_read16(dev,
296                                 B43legacy_MMIO_SHM_DATA_UNALIGNED);
297                         ret <<= 16;
298                         b43legacy_shm_control_word(dev, routing,
299                                                      (offset >> 2) + 1);
300                         ret |= b43legacy_read16(dev, B43legacy_MMIO_SHM_DATA);
301
302                         return ret;
303                 }
304                 offset >>= 2;
305         }
306         b43legacy_shm_control_word(dev, routing, offset);
307         ret = b43legacy_read32(dev, B43legacy_MMIO_SHM_DATA);
308
309         return ret;
310 }
311
312 u16 b43legacy_shm_read16(struct b43legacy_wldev *dev,
313                            u16 routing, u16 offset)
314 {
315         u16 ret;
316
317         if (routing == B43legacy_SHM_SHARED) {
318                 B43legacy_WARN_ON((offset & 0x0001) != 0);
319                 if (offset & 0x0003) {
320                         /* Unaligned access */
321                         b43legacy_shm_control_word(dev, routing, offset >> 2);
322                         ret = b43legacy_read16(dev,
323                                              B43legacy_MMIO_SHM_DATA_UNALIGNED);
324
325                         return ret;
326                 }
327                 offset >>= 2;
328         }
329         b43legacy_shm_control_word(dev, routing, offset);
330         ret = b43legacy_read16(dev, B43legacy_MMIO_SHM_DATA);
331
332         return ret;
333 }
334
335 void b43legacy_shm_write32(struct b43legacy_wldev *dev,
336                            u16 routing, u16 offset,
337                            u32 value)
338 {
339         if (routing == B43legacy_SHM_SHARED) {
340                 B43legacy_WARN_ON((offset & 0x0001) != 0);
341                 if (offset & 0x0003) {
342                         /* Unaligned access */
343                         b43legacy_shm_control_word(dev, routing, offset >> 2);
344                         mmiowb();
345                         b43legacy_write16(dev,
346                                           B43legacy_MMIO_SHM_DATA_UNALIGNED,
347                                           (value >> 16) & 0xffff);
348                         mmiowb();
349                         b43legacy_shm_control_word(dev, routing,
350                                                    (offset >> 2) + 1);
351                         mmiowb();
352                         b43legacy_write16(dev, B43legacy_MMIO_SHM_DATA,
353                                           value & 0xffff);
354                         return;
355                 }
356                 offset >>= 2;
357         }
358         b43legacy_shm_control_word(dev, routing, offset);
359         mmiowb();
360         b43legacy_write32(dev, B43legacy_MMIO_SHM_DATA, value);
361 }
362
363 void b43legacy_shm_write16(struct b43legacy_wldev *dev, u16 routing, u16 offset,
364                            u16 value)
365 {
366         if (routing == B43legacy_SHM_SHARED) {
367                 B43legacy_WARN_ON((offset & 0x0001) != 0);
368                 if (offset & 0x0003) {
369                         /* Unaligned access */
370                         b43legacy_shm_control_word(dev, routing, offset >> 2);
371                         mmiowb();
372                         b43legacy_write16(dev,
373                                           B43legacy_MMIO_SHM_DATA_UNALIGNED,
374                                           value);
375                         return;
376                 }
377                 offset >>= 2;
378         }
379         b43legacy_shm_control_word(dev, routing, offset);
380         mmiowb();
381         b43legacy_write16(dev, B43legacy_MMIO_SHM_DATA, value);
382 }
383
384 /* Read HostFlags */
385 u32 b43legacy_hf_read(struct b43legacy_wldev *dev)
386 {
387         u32 ret;
388
389         ret = b43legacy_shm_read16(dev, B43legacy_SHM_SHARED,
390                                    B43legacy_SHM_SH_HOSTFHI);
391         ret <<= 16;
392         ret |= b43legacy_shm_read16(dev, B43legacy_SHM_SHARED,
393                                     B43legacy_SHM_SH_HOSTFLO);
394
395         return ret;
396 }
397
398 /* Write HostFlags */
399 void b43legacy_hf_write(struct b43legacy_wldev *dev, u32 value)
400 {
401         b43legacy_shm_write16(dev, B43legacy_SHM_SHARED,
402                               B43legacy_SHM_SH_HOSTFLO,
403                               (value & 0x0000FFFF));
404         b43legacy_shm_write16(dev, B43legacy_SHM_SHARED,
405                               B43legacy_SHM_SH_HOSTFHI,
406                               ((value & 0xFFFF0000) >> 16));
407 }
408
409 void b43legacy_tsf_read(struct b43legacy_wldev *dev, u64 *tsf)
410 {
411         /* We need to be careful. As we read the TSF from multiple
412          * registers, we should take care of register overflows.
413          * In theory, the whole tsf read process should be atomic.
414          * We try to be atomic here, by restaring the read process,
415          * if any of the high registers changed (overflew).
416          */
417         if (dev->dev->id.revision >= 3) {
418                 u32 low;
419                 u32 high;
420                 u32 high2;
421
422                 do {
423                         high = b43legacy_read32(dev,
424                                         B43legacy_MMIO_REV3PLUS_TSF_HIGH);
425                         low = b43legacy_read32(dev,
426                                         B43legacy_MMIO_REV3PLUS_TSF_LOW);
427                         high2 = b43legacy_read32(dev,
428                                         B43legacy_MMIO_REV3PLUS_TSF_HIGH);
429                 } while (unlikely(high != high2));
430
431                 *tsf = high;
432                 *tsf <<= 32;
433                 *tsf |= low;
434         } else {
435                 u64 tmp;
436                 u16 v0;
437                 u16 v1;
438                 u16 v2;
439                 u16 v3;
440                 u16 test1;
441                 u16 test2;
442                 u16 test3;
443
444                 do {
445                         v3 = b43legacy_read16(dev, B43legacy_MMIO_TSF_3);
446                         v2 = b43legacy_read16(dev, B43legacy_MMIO_TSF_2);
447                         v1 = b43legacy_read16(dev, B43legacy_MMIO_TSF_1);
448                         v0 = b43legacy_read16(dev, B43legacy_MMIO_TSF_0);
449
450                         test3 = b43legacy_read16(dev, B43legacy_MMIO_TSF_3);
451                         test2 = b43legacy_read16(dev, B43legacy_MMIO_TSF_2);
452                         test1 = b43legacy_read16(dev, B43legacy_MMIO_TSF_1);
453                 } while (v3 != test3 || v2 != test2 || v1 != test1);
454
455                 *tsf = v3;
456                 *tsf <<= 48;
457                 tmp = v2;
458                 tmp <<= 32;
459                 *tsf |= tmp;
460                 tmp = v1;
461                 tmp <<= 16;
462                 *tsf |= tmp;
463                 *tsf |= v0;
464         }
465 }
466
467 static void b43legacy_time_lock(struct b43legacy_wldev *dev)
468 {
469         u32 status;
470
471         status = b43legacy_read32(dev, B43legacy_MMIO_MACCTL);
472         status |= B43legacy_MACCTL_TBTTHOLD;
473         b43legacy_write32(dev, B43legacy_MMIO_MACCTL, status);
474         mmiowb();
475 }
476
477 static void b43legacy_time_unlock(struct b43legacy_wldev *dev)
478 {
479         u32 status;
480
481         status = b43legacy_read32(dev, B43legacy_MMIO_MACCTL);
482         status &= ~B43legacy_MACCTL_TBTTHOLD;
483         b43legacy_write32(dev, B43legacy_MMIO_MACCTL, status);
484 }
485
486 static void b43legacy_tsf_write_locked(struct b43legacy_wldev *dev, u64 tsf)
487 {
488         /* Be careful with the in-progress timer.
489          * First zero out the low register, so we have a full
490          * register-overflow duration to complete the operation.
491          */
492         if (dev->dev->id.revision >= 3) {
493                 u32 lo = (tsf & 0x00000000FFFFFFFFULL);
494                 u32 hi = (tsf & 0xFFFFFFFF00000000ULL) >> 32;
495
496                 b43legacy_write32(dev, B43legacy_MMIO_REV3PLUS_TSF_LOW, 0);
497                 mmiowb();
498                 b43legacy_write32(dev, B43legacy_MMIO_REV3PLUS_TSF_HIGH,
499                                     hi);
500                 mmiowb();
501                 b43legacy_write32(dev, B43legacy_MMIO_REV3PLUS_TSF_LOW,
502                                     lo);
503         } else {
504                 u16 v0 = (tsf & 0x000000000000FFFFULL);
505                 u16 v1 = (tsf & 0x00000000FFFF0000ULL) >> 16;
506                 u16 v2 = (tsf & 0x0000FFFF00000000ULL) >> 32;
507                 u16 v3 = (tsf & 0xFFFF000000000000ULL) >> 48;
508
509                 b43legacy_write16(dev, B43legacy_MMIO_TSF_0, 0);
510                 mmiowb();
511                 b43legacy_write16(dev, B43legacy_MMIO_TSF_3, v3);
512                 mmiowb();
513                 b43legacy_write16(dev, B43legacy_MMIO_TSF_2, v2);
514                 mmiowb();
515                 b43legacy_write16(dev, B43legacy_MMIO_TSF_1, v1);
516                 mmiowb();
517                 b43legacy_write16(dev, B43legacy_MMIO_TSF_0, v0);
518         }
519 }
520
521 void b43legacy_tsf_write(struct b43legacy_wldev *dev, u64 tsf)
522 {
523         b43legacy_time_lock(dev);
524         b43legacy_tsf_write_locked(dev, tsf);
525         b43legacy_time_unlock(dev);
526 }
527
528 static
529 void b43legacy_macfilter_set(struct b43legacy_wldev *dev,
530                              u16 offset, const u8 *mac)
531 {
532         static const u8 zero_addr[ETH_ALEN] = { 0 };
533         u16 data;
534
535         if (!mac)
536                 mac = zero_addr;
537
538         offset |= 0x0020;
539         b43legacy_write16(dev, B43legacy_MMIO_MACFILTER_CONTROL, offset);
540
541         data = mac[0];
542         data |= mac[1] << 8;
543         b43legacy_write16(dev, B43legacy_MMIO_MACFILTER_DATA, data);
544         data = mac[2];
545         data |= mac[3] << 8;
546         b43legacy_write16(dev, B43legacy_MMIO_MACFILTER_DATA, data);
547         data = mac[4];
548         data |= mac[5] << 8;
549         b43legacy_write16(dev, B43legacy_MMIO_MACFILTER_DATA, data);
550 }
551
552 static void b43legacy_write_mac_bssid_templates(struct b43legacy_wldev *dev)
553 {
554         static const u8 zero_addr[ETH_ALEN] = { 0 };
555         const u8 *mac = dev->wl->mac_addr;
556         const u8 *bssid = dev->wl->bssid;
557         u8 mac_bssid[ETH_ALEN * 2];
558         int i;
559         u32 tmp;
560
561         if (!bssid)
562                 bssid = zero_addr;
563         if (!mac)
564                 mac = zero_addr;
565
566         b43legacy_macfilter_set(dev, B43legacy_MACFILTER_BSSID, bssid);
567
568         memcpy(mac_bssid, mac, ETH_ALEN);
569         memcpy(mac_bssid + ETH_ALEN, bssid, ETH_ALEN);
570
571         /* Write our MAC address and BSSID to template ram */
572         for (i = 0; i < ARRAY_SIZE(mac_bssid); i += sizeof(u32)) {
573                 tmp =  (u32)(mac_bssid[i + 0]);
574                 tmp |= (u32)(mac_bssid[i + 1]) << 8;
575                 tmp |= (u32)(mac_bssid[i + 2]) << 16;
576                 tmp |= (u32)(mac_bssid[i + 3]) << 24;
577                 b43legacy_ram_write(dev, 0x20 + i, tmp);
578                 b43legacy_ram_write(dev, 0x78 + i, tmp);
579                 b43legacy_ram_write(dev, 0x478 + i, tmp);
580         }
581 }
582
583 static void b43legacy_upload_card_macaddress(struct b43legacy_wldev *dev)
584 {
585         b43legacy_write_mac_bssid_templates(dev);
586         b43legacy_macfilter_set(dev, B43legacy_MACFILTER_SELF,
587                                 dev->wl->mac_addr);
588 }
589
590 static void b43legacy_set_slot_time(struct b43legacy_wldev *dev,
591                                     u16 slot_time)
592 {
593         /* slot_time is in usec. */
594         if (dev->phy.type != B43legacy_PHYTYPE_G)
595                 return;
596         b43legacy_write16(dev, 0x684, 510 + slot_time);
597         b43legacy_shm_write16(dev, B43legacy_SHM_SHARED, 0x0010,
598                               slot_time);
599 }
600
601 static void b43legacy_short_slot_timing_enable(struct b43legacy_wldev *dev)
602 {
603         b43legacy_set_slot_time(dev, 9);
604 }
605
606 static void b43legacy_short_slot_timing_disable(struct b43legacy_wldev *dev)
607 {
608         b43legacy_set_slot_time(dev, 20);
609 }
610
611 /* Synchronize IRQ top- and bottom-half.
612  * IRQs must be masked before calling this.
613  * This must not be called with the irq_lock held.
614  */
615 static void b43legacy_synchronize_irq(struct b43legacy_wldev *dev)
616 {
617         synchronize_irq(dev->dev->irq);
618         tasklet_kill(&dev->isr_tasklet);
619 }
620
621 /* DummyTransmission function, as documented on
622  * http://bcm-specs.sipsolutions.net/DummyTransmission
623  */
624 void b43legacy_dummy_transmission(struct b43legacy_wldev *dev)
625 {
626         struct b43legacy_phy *phy = &dev->phy;
627         unsigned int i;
628         unsigned int max_loop;
629         u16 value;
630         u32 buffer[5] = {
631                 0x00000000,
632                 0x00D40000,
633                 0x00000000,
634                 0x01000000,
635                 0x00000000,
636         };
637
638         switch (phy->type) {
639         case B43legacy_PHYTYPE_B:
640         case B43legacy_PHYTYPE_G:
641                 max_loop = 0xFA;
642                 buffer[0] = 0x000B846E;
643                 break;
644         default:
645                 B43legacy_BUG_ON(1);
646                 return;
647         }
648
649         for (i = 0; i < 5; i++)
650                 b43legacy_ram_write(dev, i * 4, buffer[i]);
651
652         /* dummy read follows */
653         b43legacy_read32(dev, B43legacy_MMIO_MACCTL);
654
655         b43legacy_write16(dev, 0x0568, 0x0000);
656         b43legacy_write16(dev, 0x07C0, 0x0000);
657         b43legacy_write16(dev, 0x050C, 0x0000);
658         b43legacy_write16(dev, 0x0508, 0x0000);
659         b43legacy_write16(dev, 0x050A, 0x0000);
660         b43legacy_write16(dev, 0x054C, 0x0000);
661         b43legacy_write16(dev, 0x056A, 0x0014);
662         b43legacy_write16(dev, 0x0568, 0x0826);
663         b43legacy_write16(dev, 0x0500, 0x0000);
664         b43legacy_write16(dev, 0x0502, 0x0030);
665
666         if (phy->radio_ver == 0x2050 && phy->radio_rev <= 0x5)
667                 b43legacy_radio_write16(dev, 0x0051, 0x0017);
668         for (i = 0x00; i < max_loop; i++) {
669                 value = b43legacy_read16(dev, 0x050E);
670                 if (value & 0x0080)
671                         break;
672                 udelay(10);
673         }
674         for (i = 0x00; i < 0x0A; i++) {
675                 value = b43legacy_read16(dev, 0x050E);
676                 if (value & 0x0400)
677                         break;
678                 udelay(10);
679         }
680         for (i = 0x00; i < 0x0A; i++) {
681                 value = b43legacy_read16(dev, 0x0690);
682                 if (!(value & 0x0100))
683                         break;
684                 udelay(10);
685         }
686         if (phy->radio_ver == 0x2050 && phy->radio_rev <= 0x5)
687                 b43legacy_radio_write16(dev, 0x0051, 0x0037);
688 }
689
690 /* Turn the Analog ON/OFF */
691 static void b43legacy_switch_analog(struct b43legacy_wldev *dev, int on)
692 {
693         b43legacy_write16(dev, B43legacy_MMIO_PHY0, on ? 0 : 0xF4);
694 }
695
696 void b43legacy_wireless_core_reset(struct b43legacy_wldev *dev, u32 flags)
697 {
698         u32 tmslow;
699         u32 macctl;
700
701         flags |= B43legacy_TMSLOW_PHYCLKEN;
702         flags |= B43legacy_TMSLOW_PHYRESET;
703         ssb_device_enable(dev->dev, flags);
704         msleep(2); /* Wait for the PLL to turn on. */
705
706         /* Now take the PHY out of Reset again */
707         tmslow = ssb_read32(dev->dev, SSB_TMSLOW);
708         tmslow |= SSB_TMSLOW_FGC;
709         tmslow &= ~B43legacy_TMSLOW_PHYRESET;
710         ssb_write32(dev->dev, SSB_TMSLOW, tmslow);
711         ssb_read32(dev->dev, SSB_TMSLOW); /* flush */
712         msleep(1);
713         tmslow &= ~SSB_TMSLOW_FGC;
714         ssb_write32(dev->dev, SSB_TMSLOW, tmslow);
715         ssb_read32(dev->dev, SSB_TMSLOW); /* flush */
716         msleep(1);
717
718         /* Turn Analog ON */
719         b43legacy_switch_analog(dev, 1);
720
721         macctl = b43legacy_read32(dev, B43legacy_MMIO_MACCTL);
722         macctl &= ~B43legacy_MACCTL_GMODE;
723         if (flags & B43legacy_TMSLOW_GMODE) {
724                 macctl |= B43legacy_MACCTL_GMODE;
725                 dev->phy.gmode = true;
726         } else
727                 dev->phy.gmode = false;
728         macctl |= B43legacy_MACCTL_IHR_ENABLED;
729         b43legacy_write32(dev, B43legacy_MMIO_MACCTL, macctl);
730 }
731
732 static void handle_irq_transmit_status(struct b43legacy_wldev *dev)
733 {
734         u32 v0;
735         u32 v1;
736         u16 tmp;
737         struct b43legacy_txstatus stat;
738
739         while (1) {
740                 v0 = b43legacy_read32(dev, B43legacy_MMIO_XMITSTAT_0);
741                 if (!(v0 & 0x00000001))
742                         break;
743                 v1 = b43legacy_read32(dev, B43legacy_MMIO_XMITSTAT_1);
744
745                 stat.cookie = (v0 >> 16);
746                 stat.seq = (v1 & 0x0000FFFF);
747                 stat.phy_stat = ((v1 & 0x00FF0000) >> 16);
748                 tmp = (v0 & 0x0000FFFF);
749                 stat.frame_count = ((tmp & 0xF000) >> 12);
750                 stat.rts_count = ((tmp & 0x0F00) >> 8);
751                 stat.supp_reason = ((tmp & 0x001C) >> 2);
752                 stat.pm_indicated = !!(tmp & 0x0080);
753                 stat.intermediate = !!(tmp & 0x0040);
754                 stat.for_ampdu = !!(tmp & 0x0020);
755                 stat.acked = !!(tmp & 0x0002);
756
757                 b43legacy_handle_txstatus(dev, &stat);
758         }
759 }
760
761 static void drain_txstatus_queue(struct b43legacy_wldev *dev)
762 {
763         u32 dummy;
764
765         if (dev->dev->id.revision < 5)
766                 return;
767         /* Read all entries from the microcode TXstatus FIFO
768          * and throw them away.
769          */
770         while (1) {
771                 dummy = b43legacy_read32(dev, B43legacy_MMIO_XMITSTAT_0);
772                 if (!(dummy & 0x00000001))
773                         break;
774                 dummy = b43legacy_read32(dev, B43legacy_MMIO_XMITSTAT_1);
775         }
776 }
777
778 static u32 b43legacy_jssi_read(struct b43legacy_wldev *dev)
779 {
780         u32 val = 0;
781
782         val = b43legacy_shm_read16(dev, B43legacy_SHM_SHARED, 0x40A);
783         val <<= 16;
784         val |= b43legacy_shm_read16(dev, B43legacy_SHM_SHARED, 0x408);
785
786         return val;
787 }
788
789 static void b43legacy_jssi_write(struct b43legacy_wldev *dev, u32 jssi)
790 {
791         b43legacy_shm_write16(dev, B43legacy_SHM_SHARED, 0x408,
792                               (jssi & 0x0000FFFF));
793         b43legacy_shm_write16(dev, B43legacy_SHM_SHARED, 0x40A,
794                               (jssi & 0xFFFF0000) >> 16);
795 }
796
797 static void b43legacy_generate_noise_sample(struct b43legacy_wldev *dev)
798 {
799         b43legacy_jssi_write(dev, 0x7F7F7F7F);
800         b43legacy_write32(dev, B43legacy_MMIO_MACCMD,
801                           b43legacy_read32(dev, B43legacy_MMIO_MACCMD)
802                           | B43legacy_MACCMD_BGNOISE);
803         B43legacy_WARN_ON(dev->noisecalc.channel_at_start !=
804                             dev->phy.channel);
805 }
806
807 static void b43legacy_calculate_link_quality(struct b43legacy_wldev *dev)
808 {
809         /* Top half of Link Quality calculation. */
810
811         if (dev->noisecalc.calculation_running)
812                 return;
813         dev->noisecalc.channel_at_start = dev->phy.channel;
814         dev->noisecalc.calculation_running = true;
815         dev->noisecalc.nr_samples = 0;
816
817         b43legacy_generate_noise_sample(dev);
818 }
819
820 static void handle_irq_noise(struct b43legacy_wldev *dev)
821 {
822         struct b43legacy_phy *phy = &dev->phy;
823         u16 tmp;
824         u8 noise[4];
825         u8 i;
826         u8 j;
827         s32 average;
828
829         /* Bottom half of Link Quality calculation. */
830
831         B43legacy_WARN_ON(!dev->noisecalc.calculation_running);
832         if (dev->noisecalc.channel_at_start != phy->channel)
833                 goto drop_calculation;
834         *((__le32 *)noise) = cpu_to_le32(b43legacy_jssi_read(dev));
835         if (noise[0] == 0x7F || noise[1] == 0x7F ||
836             noise[2] == 0x7F || noise[3] == 0x7F)
837                 goto generate_new;
838
839         /* Get the noise samples. */
840         B43legacy_WARN_ON(dev->noisecalc.nr_samples >= 8);
841         i = dev->noisecalc.nr_samples;
842         noise[0] = clamp_val(noise[0], 0, ARRAY_SIZE(phy->nrssi_lt) - 1);
843         noise[1] = clamp_val(noise[1], 0, ARRAY_SIZE(phy->nrssi_lt) - 1);
844         noise[2] = clamp_val(noise[2], 0, ARRAY_SIZE(phy->nrssi_lt) - 1);
845         noise[3] = clamp_val(noise[3], 0, ARRAY_SIZE(phy->nrssi_lt) - 1);
846         dev->noisecalc.samples[i][0] = phy->nrssi_lt[noise[0]];
847         dev->noisecalc.samples[i][1] = phy->nrssi_lt[noise[1]];
848         dev->noisecalc.samples[i][2] = phy->nrssi_lt[noise[2]];
849         dev->noisecalc.samples[i][3] = phy->nrssi_lt[noise[3]];
850         dev->noisecalc.nr_samples++;
851         if (dev->noisecalc.nr_samples == 8) {
852                 /* Calculate the Link Quality by the noise samples. */
853                 average = 0;
854                 for (i = 0; i < 8; i++) {
855                         for (j = 0; j < 4; j++)
856                                 average += dev->noisecalc.samples[i][j];
857                 }
858                 average /= (8 * 4);
859                 average *= 125;
860                 average += 64;
861                 average /= 128;
862                 tmp = b43legacy_shm_read16(dev, B43legacy_SHM_SHARED,
863                                              0x40C);
864                 tmp = (tmp / 128) & 0x1F;
865                 if (tmp >= 8)
866                         average += 2;
867                 else
868                         average -= 25;
869                 if (tmp == 8)
870                         average -= 72;
871                 else
872                         average -= 48;
873
874                 dev->stats.link_noise = average;
875 drop_calculation:
876                 dev->noisecalc.calculation_running = false;
877                 return;
878         }
879 generate_new:
880         b43legacy_generate_noise_sample(dev);
881 }
882
883 static void handle_irq_tbtt_indication(struct b43legacy_wldev *dev)
884 {
885         if (b43legacy_is_mode(dev->wl, NL80211_IFTYPE_AP)) {
886                 /* TODO: PS TBTT */
887         } else {
888                 if (1/*FIXME: the last PSpoll frame was sent successfully */)
889                         b43legacy_power_saving_ctl_bits(dev, -1, -1);
890         }
891         if (b43legacy_is_mode(dev->wl, NL80211_IFTYPE_ADHOC))
892                 dev->dfq_valid = true;
893 }
894
895 static void handle_irq_atim_end(struct b43legacy_wldev *dev)
896 {
897         if (dev->dfq_valid) {
898                 b43legacy_write32(dev, B43legacy_MMIO_MACCMD,
899                                   b43legacy_read32(dev, B43legacy_MMIO_MACCMD)
900                                   | B43legacy_MACCMD_DFQ_VALID);
901                 dev->dfq_valid = false;
902         }
903 }
904
905 static void handle_irq_pmq(struct b43legacy_wldev *dev)
906 {
907         u32 tmp;
908
909         /* TODO: AP mode. */
910
911         while (1) {
912                 tmp = b43legacy_read32(dev, B43legacy_MMIO_PS_STATUS);
913                 if (!(tmp & 0x00000008))
914                         break;
915         }
916         /* 16bit write is odd, but correct. */
917         b43legacy_write16(dev, B43legacy_MMIO_PS_STATUS, 0x0002);
918 }
919
920 static void b43legacy_write_template_common(struct b43legacy_wldev *dev,
921                                             const u8 *data, u16 size,
922                                             u16 ram_offset,
923                                             u16 shm_size_offset, u8 rate)
924 {
925         u32 i;
926         u32 tmp;
927         struct b43legacy_plcp_hdr4 plcp;
928
929         plcp.data = 0;
930         b43legacy_generate_plcp_hdr(&plcp, size + FCS_LEN, rate);
931         b43legacy_ram_write(dev, ram_offset, le32_to_cpu(plcp.data));
932         ram_offset += sizeof(u32);
933         /* The PLCP is 6 bytes long, but we only wrote 4 bytes, yet.
934          * So leave the first two bytes of the next write blank.
935          */
936         tmp = (u32)(data[0]) << 16;
937         tmp |= (u32)(data[1]) << 24;
938         b43legacy_ram_write(dev, ram_offset, tmp);
939         ram_offset += sizeof(u32);
940         for (i = 2; i < size; i += sizeof(u32)) {
941                 tmp = (u32)(data[i + 0]);
942                 if (i + 1 < size)
943                         tmp |= (u32)(data[i + 1]) << 8;
944                 if (i + 2 < size)
945                         tmp |= (u32)(data[i + 2]) << 16;
946                 if (i + 3 < size)
947                         tmp |= (u32)(data[i + 3]) << 24;
948                 b43legacy_ram_write(dev, ram_offset + i - 2, tmp);
949         }
950         b43legacy_shm_write16(dev, B43legacy_SHM_SHARED, shm_size_offset,
951                               size + sizeof(struct b43legacy_plcp_hdr6));
952 }
953
954 /* Convert a b43legacy antenna number value to the PHY TX control value. */
955 static u16 b43legacy_antenna_to_phyctl(int antenna)
956 {
957         switch (antenna) {
958         case B43legacy_ANTENNA0:
959                 return B43legacy_TX4_PHY_ANT0;
960         case B43legacy_ANTENNA1:
961                 return B43legacy_TX4_PHY_ANT1;
962         }
963         return B43legacy_TX4_PHY_ANTLAST;
964 }
965
966 static void b43legacy_write_beacon_template(struct b43legacy_wldev *dev,
967                                             u16 ram_offset,
968                                             u16 shm_size_offset)
969 {
970
971         unsigned int i, len, variable_len;
972         const struct ieee80211_mgmt *bcn;
973         const u8 *ie;
974         bool tim_found = false;
975         unsigned int rate;
976         u16 ctl;
977         int antenna;
978         struct ieee80211_tx_info *info = IEEE80211_SKB_CB(dev->wl->current_beacon);
979
980         bcn = (const struct ieee80211_mgmt *)(dev->wl->current_beacon->data);
981         len = min((size_t)dev->wl->current_beacon->len,
982                   0x200 - sizeof(struct b43legacy_plcp_hdr6));
983         rate = ieee80211_get_tx_rate(dev->wl->hw, info)->hw_value;
984
985         b43legacy_write_template_common(dev, (const u8 *)bcn, len, ram_offset,
986                                         shm_size_offset, rate);
987
988         /* Write the PHY TX control parameters. */
989         antenna = B43legacy_ANTENNA_DEFAULT;
990         antenna = b43legacy_antenna_to_phyctl(antenna);
991         ctl = b43legacy_shm_read16(dev, B43legacy_SHM_SHARED,
992                                    B43legacy_SHM_SH_BEACPHYCTL);
993         /* We can't send beacons with short preamble. Would get PHY errors. */
994         ctl &= ~B43legacy_TX4_PHY_SHORTPRMBL;
995         ctl &= ~B43legacy_TX4_PHY_ANT;
996         ctl &= ~B43legacy_TX4_PHY_ENC;
997         ctl |= antenna;
998         ctl |= B43legacy_TX4_PHY_ENC_CCK;
999         b43legacy_shm_write16(dev, B43legacy_SHM_SHARED,
1000                               B43legacy_SHM_SH_BEACPHYCTL, ctl);
1001
1002         /* Find the position of the TIM and the DTIM_period value
1003          * and write them to SHM. */
1004         ie = bcn->u.beacon.variable;
1005         variable_len = len - offsetof(struct ieee80211_mgmt, u.beacon.variable);
1006         for (i = 0; i < variable_len - 2; ) {
1007                 uint8_t ie_id, ie_len;
1008
1009                 ie_id = ie[i];
1010                 ie_len = ie[i + 1];
1011                 if (ie_id == 5) {
1012                         u16 tim_position;
1013                         u16 dtim_period;
1014                         /* This is the TIM Information Element */
1015
1016                         /* Check whether the ie_len is in the beacon data range. */
1017                         if (variable_len < ie_len + 2 + i)
1018                                 break;
1019                         /* A valid TIM is at least 4 bytes long. */
1020                         if (ie_len < 4)
1021                                 break;
1022                         tim_found = true;
1023
1024                         tim_position = sizeof(struct b43legacy_plcp_hdr6);
1025                         tim_position += offsetof(struct ieee80211_mgmt,
1026                                                  u.beacon.variable);
1027                         tim_position += i;
1028
1029                         dtim_period = ie[i + 3];
1030
1031                         b43legacy_shm_write16(dev, B43legacy_SHM_SHARED,
1032                                         B43legacy_SHM_SH_TIMPOS, tim_position);
1033                         b43legacy_shm_write16(dev, B43legacy_SHM_SHARED,
1034                                         B43legacy_SHM_SH_DTIMP, dtim_period);
1035                         break;
1036                 }
1037                 i += ie_len + 2;
1038         }
1039         if (!tim_found) {
1040                 b43legacywarn(dev->wl, "Did not find a valid TIM IE in the "
1041                               "beacon template packet. AP or IBSS operation "
1042                               "may be broken.\n");
1043         } else
1044                 b43legacydbg(dev->wl, "Updated beacon template\n");
1045 }
1046
1047 static void b43legacy_write_probe_resp_plcp(struct b43legacy_wldev *dev,
1048                                             u16 shm_offset, u16 size,
1049                                             struct ieee80211_rate *rate)
1050 {
1051         struct b43legacy_plcp_hdr4 plcp;
1052         u32 tmp;
1053         __le16 dur;
1054
1055         plcp.data = 0;
1056         b43legacy_generate_plcp_hdr(&plcp, size + FCS_LEN, rate->hw_value);
1057         dur = ieee80211_generic_frame_duration(dev->wl->hw,
1058                                                dev->wl->vif,
1059                                                size,
1060                                                rate);
1061         /* Write PLCP in two parts and timing for packet transfer */
1062         tmp = le32_to_cpu(plcp.data);
1063         b43legacy_shm_write16(dev, B43legacy_SHM_SHARED, shm_offset,
1064                               tmp & 0xFFFF);
1065         b43legacy_shm_write16(dev, B43legacy_SHM_SHARED, shm_offset + 2,
1066                               tmp >> 16);
1067         b43legacy_shm_write16(dev, B43legacy_SHM_SHARED, shm_offset + 6,
1068                               le16_to_cpu(dur));
1069 }
1070
1071 /* Instead of using custom probe response template, this function
1072  * just patches custom beacon template by:
1073  * 1) Changing packet type
1074  * 2) Patching duration field
1075  * 3) Stripping TIM
1076  */
1077 static const u8 *b43legacy_generate_probe_resp(struct b43legacy_wldev *dev,
1078                                                u16 *dest_size,
1079                                                struct ieee80211_rate *rate)
1080 {
1081         const u8 *src_data;
1082         u8 *dest_data;
1083         u16 src_size, elem_size, src_pos, dest_pos;
1084         __le16 dur;
1085         struct ieee80211_hdr *hdr;
1086         size_t ie_start;
1087
1088         src_size = dev->wl->current_beacon->len;
1089         src_data = (const u8 *)dev->wl->current_beacon->data;
1090
1091         /* Get the start offset of the variable IEs in the packet. */
1092         ie_start = offsetof(struct ieee80211_mgmt, u.probe_resp.variable);
1093         B43legacy_WARN_ON(ie_start != offsetof(struct ieee80211_mgmt,
1094                                                u.beacon.variable));
1095
1096         if (B43legacy_WARN_ON(src_size < ie_start))
1097                 return NULL;
1098
1099         dest_data = kmalloc(src_size, GFP_ATOMIC);
1100         if (unlikely(!dest_data))
1101                 return NULL;
1102
1103         /* Copy the static data and all Information Elements, except the TIM. */
1104         memcpy(dest_data, src_data, ie_start);
1105         src_pos = ie_start;
1106         dest_pos = ie_start;
1107         for ( ; src_pos < src_size - 2; src_pos += elem_size) {
1108                 elem_size = src_data[src_pos + 1] + 2;
1109                 if (src_data[src_pos] == 5) {
1110                         /* This is the TIM. */
1111                         continue;
1112                 }
1113                 memcpy(dest_data + dest_pos, src_data + src_pos, elem_size);
1114                 dest_pos += elem_size;
1115         }
1116         *dest_size = dest_pos;
1117         hdr = (struct ieee80211_hdr *)dest_data;
1118
1119         /* Set the frame control. */
1120         hdr->frame_control = cpu_to_le16(IEEE80211_FTYPE_MGMT |
1121                                          IEEE80211_STYPE_PROBE_RESP);
1122         dur = ieee80211_generic_frame_duration(dev->wl->hw,
1123                                                dev->wl->vif,
1124                                                *dest_size,
1125                                                rate);
1126         hdr->duration_id = dur;
1127
1128         return dest_data;
1129 }
1130
1131 static void b43legacy_write_probe_resp_template(struct b43legacy_wldev *dev,
1132                                                 u16 ram_offset,
1133                                                 u16 shm_size_offset,
1134                                                 struct ieee80211_rate *rate)
1135 {
1136         const u8 *probe_resp_data;
1137         u16 size;
1138
1139         size = dev->wl->current_beacon->len;
1140         probe_resp_data = b43legacy_generate_probe_resp(dev, &size, rate);
1141         if (unlikely(!probe_resp_data))
1142                 return;
1143
1144         /* Looks like PLCP headers plus packet timings are stored for
1145          * all possible basic rates
1146          */
1147         b43legacy_write_probe_resp_plcp(dev, 0x31A, size,
1148                                         &b43legacy_b_ratetable[0]);
1149         b43legacy_write_probe_resp_plcp(dev, 0x32C, size,
1150                                         &b43legacy_b_ratetable[1]);
1151         b43legacy_write_probe_resp_plcp(dev, 0x33E, size,
1152                                         &b43legacy_b_ratetable[2]);
1153         b43legacy_write_probe_resp_plcp(dev, 0x350, size,
1154                                         &b43legacy_b_ratetable[3]);
1155
1156         size = min((size_t)size,
1157                    0x200 - sizeof(struct b43legacy_plcp_hdr6));
1158         b43legacy_write_template_common(dev, probe_resp_data,
1159                                         size, ram_offset,
1160                                         shm_size_offset, rate->hw_value);
1161         kfree(probe_resp_data);
1162 }
1163
1164 static void b43legacy_upload_beacon0(struct b43legacy_wldev *dev)
1165 {
1166         struct b43legacy_wl *wl = dev->wl;
1167
1168         if (wl->beacon0_uploaded)
1169                 return;
1170         b43legacy_write_beacon_template(dev, 0x68, 0x18);
1171         /* FIXME: Probe resp upload doesn't really belong here,
1172          *        but we don't use that feature anyway. */
1173         b43legacy_write_probe_resp_template(dev, 0x268, 0x4A,
1174                                       &__b43legacy_ratetable[3]);
1175         wl->beacon0_uploaded = true;
1176 }
1177
1178 static void b43legacy_upload_beacon1(struct b43legacy_wldev *dev)
1179 {
1180         struct b43legacy_wl *wl = dev->wl;
1181
1182         if (wl->beacon1_uploaded)
1183                 return;
1184         b43legacy_write_beacon_template(dev, 0x468, 0x1A);
1185         wl->beacon1_uploaded = true;
1186 }
1187
1188 static void handle_irq_beacon(struct b43legacy_wldev *dev)
1189 {
1190         struct b43legacy_wl *wl = dev->wl;
1191         u32 cmd, beacon0_valid, beacon1_valid;
1192
1193         if (!b43legacy_is_mode(wl, NL80211_IFTYPE_AP))
1194                 return;
1195
1196         /* This is the bottom half of the asynchronous beacon update. */
1197
1198         /* Ignore interrupt in the future. */
1199         dev->irq_mask &= ~B43legacy_IRQ_BEACON;
1200
1201         cmd = b43legacy_read32(dev, B43legacy_MMIO_MACCMD);
1202         beacon0_valid = (cmd & B43legacy_MACCMD_BEACON0_VALID);
1203         beacon1_valid = (cmd & B43legacy_MACCMD_BEACON1_VALID);
1204
1205         /* Schedule interrupt manually, if busy. */
1206         if (beacon0_valid && beacon1_valid) {
1207                 b43legacy_write32(dev, B43legacy_MMIO_GEN_IRQ_REASON, B43legacy_IRQ_BEACON);
1208                 dev->irq_mask |= B43legacy_IRQ_BEACON;
1209                 return;
1210         }
1211
1212         if (unlikely(wl->beacon_templates_virgin)) {
1213                 /* We never uploaded a beacon before.
1214                  * Upload both templates now, but only mark one valid. */
1215                 wl->beacon_templates_virgin = false;
1216                 b43legacy_upload_beacon0(dev);
1217                 b43legacy_upload_beacon1(dev);
1218                 cmd = b43legacy_read32(dev, B43legacy_MMIO_MACCMD);
1219                 cmd |= B43legacy_MACCMD_BEACON0_VALID;
1220                 b43legacy_write32(dev, B43legacy_MMIO_MACCMD, cmd);
1221         } else {
1222                 if (!beacon0_valid) {
1223                         b43legacy_upload_beacon0(dev);
1224                         cmd = b43legacy_read32(dev, B43legacy_MMIO_MACCMD);
1225                         cmd |= B43legacy_MACCMD_BEACON0_VALID;
1226                         b43legacy_write32(dev, B43legacy_MMIO_MACCMD, cmd);
1227                 } else if (!beacon1_valid) {
1228                         b43legacy_upload_beacon1(dev);
1229                         cmd = b43legacy_read32(dev, B43legacy_MMIO_MACCMD);
1230                         cmd |= B43legacy_MACCMD_BEACON1_VALID;
1231                         b43legacy_write32(dev, B43legacy_MMIO_MACCMD, cmd);
1232                 }
1233         }
1234 }
1235
1236 static void b43legacy_beacon_update_trigger_work(struct work_struct *work)
1237 {
1238         struct b43legacy_wl *wl = container_of(work, struct b43legacy_wl,
1239                                          beacon_update_trigger);
1240         struct b43legacy_wldev *dev;
1241
1242         mutex_lock(&wl->mutex);
1243         dev = wl->current_dev;
1244         if (likely(dev && (b43legacy_status(dev) >= B43legacy_STAT_INITIALIZED))) {
1245                 spin_lock_irq(&wl->irq_lock);
1246                 /* Update beacon right away or defer to IRQ. */
1247                 handle_irq_beacon(dev);
1248                 /* The handler might have updated the IRQ mask. */
1249                 b43legacy_write32(dev, B43legacy_MMIO_GEN_IRQ_MASK,
1250                                   dev->irq_mask);
1251                 mmiowb();
1252                 spin_unlock_irq(&wl->irq_lock);
1253         }
1254         mutex_unlock(&wl->mutex);
1255 }
1256
1257 /* Asynchronously update the packet templates in template RAM.
1258  * Locking: Requires wl->irq_lock to be locked. */
1259 static void b43legacy_update_templates(struct b43legacy_wl *wl)
1260 {
1261         struct sk_buff *beacon;
1262         /* This is the top half of the ansynchronous beacon update. The bottom
1263          * half is the beacon IRQ. Beacon update must be asynchronous to avoid
1264          * sending an invalid beacon. This can happen for example, if the
1265          * firmware transmits a beacon while we are updating it. */
1266
1267         /* We could modify the existing beacon and set the aid bit in the TIM
1268          * field, but that would probably require resizing and moving of data
1269          * within the beacon template. Simply request a new beacon and let
1270          * mac80211 do the hard work. */
1271         beacon = ieee80211_beacon_get(wl->hw, wl->vif);
1272         if (unlikely(!beacon))
1273                 return;
1274
1275         if (wl->current_beacon)
1276                 dev_kfree_skb_any(wl->current_beacon);
1277         wl->current_beacon = beacon;
1278         wl->beacon0_uploaded = false;
1279         wl->beacon1_uploaded = false;
1280         ieee80211_queue_work(wl->hw, &wl->beacon_update_trigger);
1281 }
1282
1283 static void b43legacy_set_beacon_int(struct b43legacy_wldev *dev,
1284                                      u16 beacon_int)
1285 {
1286         b43legacy_time_lock(dev);
1287         if (dev->dev->id.revision >= 3) {
1288                 b43legacy_write32(dev, B43legacy_MMIO_TSF_CFP_REP,
1289                                  (beacon_int << 16));
1290                 b43legacy_write32(dev, B43legacy_MMIO_TSF_CFP_START,
1291                                  (beacon_int << 10));
1292         } else {
1293                 b43legacy_write16(dev, 0x606, (beacon_int >> 6));
1294                 b43legacy_write16(dev, 0x610, beacon_int);
1295         }
1296         b43legacy_time_unlock(dev);
1297         b43legacydbg(dev->wl, "Set beacon interval to %u\n", beacon_int);
1298 }
1299
1300 static void handle_irq_ucode_debug(struct b43legacy_wldev *dev)
1301 {
1302 }
1303
1304 /* Interrupt handler bottom-half */
1305 static void b43legacy_interrupt_tasklet(struct b43legacy_wldev *dev)
1306 {
1307         u32 reason;
1308         u32 dma_reason[ARRAY_SIZE(dev->dma_reason)];
1309         u32 merged_dma_reason = 0;
1310         int i;
1311         unsigned long flags;
1312
1313         spin_lock_irqsave(&dev->wl->irq_lock, flags);
1314
1315         B43legacy_WARN_ON(b43legacy_status(dev) <
1316                           B43legacy_STAT_INITIALIZED);
1317
1318         reason = dev->irq_reason;
1319         for (i = 0; i < ARRAY_SIZE(dma_reason); i++) {
1320                 dma_reason[i] = dev->dma_reason[i];
1321                 merged_dma_reason |= dma_reason[i];
1322         }
1323
1324         if (unlikely(reason & B43legacy_IRQ_MAC_TXERR))
1325                 b43legacyerr(dev->wl, "MAC transmission error\n");
1326
1327         if (unlikely(reason & B43legacy_IRQ_PHY_TXERR)) {
1328                 b43legacyerr(dev->wl, "PHY transmission error\n");
1329                 rmb();
1330                 if (unlikely(atomic_dec_and_test(&dev->phy.txerr_cnt))) {
1331                         b43legacyerr(dev->wl, "Too many PHY TX errors, "
1332                                               "restarting the controller\n");
1333                         b43legacy_controller_restart(dev, "PHY TX errors");
1334                 }
1335         }
1336
1337         if (unlikely(merged_dma_reason & (B43legacy_DMAIRQ_FATALMASK |
1338                                           B43legacy_DMAIRQ_NONFATALMASK))) {
1339                 if (merged_dma_reason & B43legacy_DMAIRQ_FATALMASK) {
1340                         b43legacyerr(dev->wl, "Fatal DMA error: "
1341                                "0x%08X, 0x%08X, 0x%08X, "
1342                                "0x%08X, 0x%08X, 0x%08X\n",
1343                                dma_reason[0], dma_reason[1],
1344                                dma_reason[2], dma_reason[3],
1345                                dma_reason[4], dma_reason[5]);
1346                         b43legacy_controller_restart(dev, "DMA error");
1347                         mmiowb();
1348                         spin_unlock_irqrestore(&dev->wl->irq_lock, flags);
1349                         return;
1350                 }
1351                 if (merged_dma_reason & B43legacy_DMAIRQ_NONFATALMASK)
1352                         b43legacyerr(dev->wl, "DMA error: "
1353                                "0x%08X, 0x%08X, 0x%08X, "
1354                                "0x%08X, 0x%08X, 0x%08X\n",
1355                                dma_reason[0], dma_reason[1],
1356                                dma_reason[2], dma_reason[3],
1357                                dma_reason[4], dma_reason[5]);
1358         }
1359
1360         if (unlikely(reason & B43legacy_IRQ_UCODE_DEBUG))
1361                 handle_irq_ucode_debug(dev);
1362         if (reason & B43legacy_IRQ_TBTT_INDI)
1363                 handle_irq_tbtt_indication(dev);
1364         if (reason & B43legacy_IRQ_ATIM_END)
1365                 handle_irq_atim_end(dev);
1366         if (reason & B43legacy_IRQ_BEACON)
1367                 handle_irq_beacon(dev);
1368         if (reason & B43legacy_IRQ_PMQ)
1369                 handle_irq_pmq(dev);
1370         if (reason & B43legacy_IRQ_TXFIFO_FLUSH_OK)
1371                 ;/*TODO*/
1372         if (reason & B43legacy_IRQ_NOISESAMPLE_OK)
1373                 handle_irq_noise(dev);
1374
1375         /* Check the DMA reason registers for received data. */
1376         if (dma_reason[0] & B43legacy_DMAIRQ_RX_DONE) {
1377                 if (b43legacy_using_pio(dev))
1378                         b43legacy_pio_rx(dev->pio.queue0);
1379                 else
1380                         b43legacy_dma_rx(dev->dma.rx_ring0);
1381         }
1382         B43legacy_WARN_ON(dma_reason[1] & B43legacy_DMAIRQ_RX_DONE);
1383         B43legacy_WARN_ON(dma_reason[2] & B43legacy_DMAIRQ_RX_DONE);
1384         if (dma_reason[3] & B43legacy_DMAIRQ_RX_DONE) {
1385                 if (b43legacy_using_pio(dev))
1386                         b43legacy_pio_rx(dev->pio.queue3);
1387                 else
1388                         b43legacy_dma_rx(dev->dma.rx_ring3);
1389         }
1390         B43legacy_WARN_ON(dma_reason[4] & B43legacy_DMAIRQ_RX_DONE);
1391         B43legacy_WARN_ON(dma_reason[5] & B43legacy_DMAIRQ_RX_DONE);
1392
1393         if (reason & B43legacy_IRQ_TX_OK)
1394                 handle_irq_transmit_status(dev);
1395
1396         b43legacy_write32(dev, B43legacy_MMIO_GEN_IRQ_MASK, dev->irq_mask);
1397         mmiowb();
1398         spin_unlock_irqrestore(&dev->wl->irq_lock, flags);
1399 }
1400
1401 static void pio_irq_workaround(struct b43legacy_wldev *dev,
1402                                u16 base, int queueidx)
1403 {
1404         u16 rxctl;
1405
1406         rxctl = b43legacy_read16(dev, base + B43legacy_PIO_RXCTL);
1407         if (rxctl & B43legacy_PIO_RXCTL_DATAAVAILABLE)
1408                 dev->dma_reason[queueidx] |= B43legacy_DMAIRQ_RX_DONE;
1409         else
1410                 dev->dma_reason[queueidx] &= ~B43legacy_DMAIRQ_RX_DONE;
1411 }
1412
1413 static void b43legacy_interrupt_ack(struct b43legacy_wldev *dev, u32 reason)
1414 {
1415         if (b43legacy_using_pio(dev) &&
1416             (dev->dev->id.revision < 3) &&
1417             (!(reason & B43legacy_IRQ_PIO_WORKAROUND))) {
1418                 /* Apply a PIO specific workaround to the dma_reasons */
1419                 pio_irq_workaround(dev, B43legacy_MMIO_PIO1_BASE, 0);
1420                 pio_irq_workaround(dev, B43legacy_MMIO_PIO2_BASE, 1);
1421                 pio_irq_workaround(dev, B43legacy_MMIO_PIO3_BASE, 2);
1422                 pio_irq_workaround(dev, B43legacy_MMIO_PIO4_BASE, 3);
1423         }
1424
1425         b43legacy_write32(dev, B43legacy_MMIO_GEN_IRQ_REASON, reason);
1426
1427         b43legacy_write32(dev, B43legacy_MMIO_DMA0_REASON,
1428                           dev->dma_reason[0]);
1429         b43legacy_write32(dev, B43legacy_MMIO_DMA1_REASON,
1430                           dev->dma_reason[1]);
1431         b43legacy_write32(dev, B43legacy_MMIO_DMA2_REASON,
1432                           dev->dma_reason[2]);
1433         b43legacy_write32(dev, B43legacy_MMIO_DMA3_REASON,
1434                           dev->dma_reason[3]);
1435         b43legacy_write32(dev, B43legacy_MMIO_DMA4_REASON,
1436                           dev->dma_reason[4]);
1437         b43legacy_write32(dev, B43legacy_MMIO_DMA5_REASON,
1438                           dev->dma_reason[5]);
1439 }
1440
1441 /* Interrupt handler top-half */
1442 static irqreturn_t b43legacy_interrupt_handler(int irq, void *dev_id)
1443 {
1444         irqreturn_t ret = IRQ_NONE;
1445         struct b43legacy_wldev *dev = dev_id;
1446         u32 reason;
1447
1448         B43legacy_WARN_ON(!dev);
1449
1450         spin_lock(&dev->wl->irq_lock);
1451
1452         if (unlikely(b43legacy_status(dev) < B43legacy_STAT_STARTED))
1453                 /* This can only happen on shared IRQ lines. */
1454                 goto out;
1455         reason = b43legacy_read32(dev, B43legacy_MMIO_GEN_IRQ_REASON);
1456         if (reason == 0xffffffff) /* shared IRQ */
1457                 goto out;
1458         ret = IRQ_HANDLED;
1459         reason &= dev->irq_mask;
1460         if (!reason)
1461                 goto out;
1462
1463         dev->dma_reason[0] = b43legacy_read32(dev,
1464                                               B43legacy_MMIO_DMA0_REASON)
1465                                               & 0x0001DC00;
1466         dev->dma_reason[1] = b43legacy_read32(dev,
1467                                               B43legacy_MMIO_DMA1_REASON)
1468                                               & 0x0000DC00;
1469         dev->dma_reason[2] = b43legacy_read32(dev,
1470                                               B43legacy_MMIO_DMA2_REASON)
1471                                               & 0x0000DC00;
1472         dev->dma_reason[3] = b43legacy_read32(dev,
1473                                               B43legacy_MMIO_DMA3_REASON)
1474                                               & 0x0001DC00;
1475         dev->dma_reason[4] = b43legacy_read32(dev,
1476                                               B43legacy_MMIO_DMA4_REASON)
1477                                               & 0x0000DC00;
1478         dev->dma_reason[5] = b43legacy_read32(dev,
1479                                               B43legacy_MMIO_DMA5_REASON)
1480                                               & 0x0000DC00;
1481
1482         b43legacy_interrupt_ack(dev, reason);
1483         /* Disable all IRQs. They are enabled again in the bottom half. */
1484         b43legacy_write32(dev, B43legacy_MMIO_GEN_IRQ_MASK, 0);
1485         /* Save the reason code and call our bottom half. */
1486         dev->irq_reason = reason;
1487         tasklet_schedule(&dev->isr_tasklet);
1488 out:
1489         mmiowb();
1490         spin_unlock(&dev->wl->irq_lock);
1491
1492         return ret;
1493 }
1494
1495 static void b43legacy_release_firmware(struct b43legacy_wldev *dev)
1496 {
1497         release_firmware(dev->fw.ucode);
1498         dev->fw.ucode = NULL;
1499         release_firmware(dev->fw.pcm);
1500         dev->fw.pcm = NULL;
1501         release_firmware(dev->fw.initvals);
1502         dev->fw.initvals = NULL;
1503         release_firmware(dev->fw.initvals_band);
1504         dev->fw.initvals_band = NULL;
1505 }
1506
1507 static void b43legacy_print_fw_helptext(struct b43legacy_wl *wl)
1508 {
1509         b43legacyerr(wl, "You must go to http://linuxwireless.org/en/users/"
1510                      "Drivers/b43#devicefirmware "
1511                      "and download the correct firmware (version 3).\n");
1512 }
1513
1514 static int do_request_fw(struct b43legacy_wldev *dev,
1515                          const char *name,
1516                          const struct firmware **fw)
1517 {
1518         char path[sizeof(modparam_fwpostfix) + 32];
1519         struct b43legacy_fw_header *hdr;
1520         u32 size;
1521         int err;
1522
1523         if (!name)
1524                 return 0;
1525
1526         snprintf(path, ARRAY_SIZE(path),
1527                  "b43legacy%s/%s.fw",
1528                  modparam_fwpostfix, name);
1529         err = request_firmware(fw, path, dev->dev->dev);
1530         if (err) {
1531                 b43legacyerr(dev->wl, "Firmware file \"%s\" not found "
1532                        "or load failed.\n", path);
1533                 return err;
1534         }
1535         if ((*fw)->size < sizeof(struct b43legacy_fw_header))
1536                 goto err_format;
1537         hdr = (struct b43legacy_fw_header *)((*fw)->data);
1538         switch (hdr->type) {
1539         case B43legacy_FW_TYPE_UCODE:
1540         case B43legacy_FW_TYPE_PCM:
1541                 size = be32_to_cpu(hdr->size);
1542                 if (size != (*fw)->size - sizeof(struct b43legacy_fw_header))
1543                         goto err_format;
1544                 /* fallthrough */
1545         case B43legacy_FW_TYPE_IV:
1546                 if (hdr->ver != 1)
1547                         goto err_format;
1548                 break;
1549         default:
1550                 goto err_format;
1551         }
1552
1553         return err;
1554
1555 err_format:
1556         b43legacyerr(dev->wl, "Firmware file \"%s\" format error.\n", path);
1557         return -EPROTO;
1558 }
1559
1560 static int b43legacy_request_firmware(struct b43legacy_wldev *dev)
1561 {
1562         struct b43legacy_firmware *fw = &dev->fw;
1563         const u8 rev = dev->dev->id.revision;
1564         const char *filename;
1565         int err;
1566
1567         /* do dummy read */
1568         ssb_read32(dev->dev, SSB_TMSHIGH);
1569         if (!fw->ucode) {
1570                 if (rev == 2)
1571                         filename = "ucode2";
1572                 else if (rev == 4)
1573                         filename = "ucode4";
1574                 else
1575                         filename = "ucode5";
1576                 err = do_request_fw(dev, filename, &fw->ucode);
1577                 if (err)
1578                         goto err_load;
1579         }
1580         if (!fw->pcm) {
1581                 if (rev < 5)
1582                         filename = "pcm4";
1583                 else
1584                         filename = "pcm5";
1585                 err = do_request_fw(dev, filename, &fw->pcm);
1586                 if (err)
1587                         goto err_load;
1588         }
1589         if (!fw->initvals) {
1590                 switch (dev->phy.type) {
1591                 case B43legacy_PHYTYPE_B:
1592                 case B43legacy_PHYTYPE_G:
1593                         if ((rev >= 5) && (rev <= 10))
1594                                 filename = "b0g0initvals5";
1595                         else if (rev == 2 || rev == 4)
1596                                 filename = "b0g0initvals2";
1597                         else
1598                                 goto err_no_initvals;
1599                         break;
1600                 default:
1601                         goto err_no_initvals;
1602                 }
1603                 err = do_request_fw(dev, filename, &fw->initvals);
1604                 if (err)
1605                         goto err_load;
1606         }
1607         if (!fw->initvals_band) {
1608                 switch (dev->phy.type) {
1609                 case B43legacy_PHYTYPE_B:
1610                 case B43legacy_PHYTYPE_G:
1611                         if ((rev >= 5) && (rev <= 10))
1612                                 filename = "b0g0bsinitvals5";
1613                         else if (rev >= 11)
1614                                 filename = NULL;
1615                         else if (rev == 2 || rev == 4)
1616                                 filename = NULL;
1617                         else
1618                                 goto err_no_initvals;
1619                         break;
1620                 default:
1621                         goto err_no_initvals;
1622                 }
1623                 err = do_request_fw(dev, filename, &fw->initvals_band);
1624                 if (err)
1625                         goto err_load;
1626         }
1627
1628         return 0;
1629
1630 err_load:
1631         b43legacy_print_fw_helptext(dev->wl);
1632         goto error;
1633
1634 err_no_initvals:
1635         err = -ENODEV;
1636         b43legacyerr(dev->wl, "No Initial Values firmware file for PHY %u, "
1637                "core rev %u\n", dev->phy.type, rev);
1638         goto error;
1639
1640 error:
1641         b43legacy_release_firmware(dev);
1642         return err;
1643 }
1644
1645 static int b43legacy_upload_microcode(struct b43legacy_wldev *dev)
1646 {
1647         struct wiphy *wiphy = dev->wl->hw->wiphy;
1648         const size_t hdr_len = sizeof(struct b43legacy_fw_header);
1649         const __be32 *data;
1650         unsigned int i;
1651         unsigned int len;
1652         u16 fwrev;
1653         u16 fwpatch;
1654         u16 fwdate;
1655         u16 fwtime;
1656         u32 tmp, macctl;
1657         int err = 0;
1658
1659         /* Jump the microcode PSM to offset 0 */
1660         macctl = b43legacy_read32(dev, B43legacy_MMIO_MACCTL);
1661         B43legacy_WARN_ON(macctl & B43legacy_MACCTL_PSM_RUN);
1662         macctl |= B43legacy_MACCTL_PSM_JMP0;
1663         b43legacy_write32(dev, B43legacy_MMIO_MACCTL, macctl);
1664         /* Zero out all microcode PSM registers and shared memory. */
1665         for (i = 0; i < 64; i++)
1666                 b43legacy_shm_write16(dev, B43legacy_SHM_WIRELESS, i, 0);
1667         for (i = 0; i < 4096; i += 2)
1668                 b43legacy_shm_write16(dev, B43legacy_SHM_SHARED, i, 0);
1669
1670         /* Upload Microcode. */
1671         data = (__be32 *) (dev->fw.ucode->data + hdr_len);
1672         len = (dev->fw.ucode->size - hdr_len) / sizeof(__be32);
1673         b43legacy_shm_control_word(dev,
1674                                    B43legacy_SHM_UCODE |
1675                                    B43legacy_SHM_AUTOINC_W,
1676                                    0x0000);
1677         for (i = 0; i < len; i++) {
1678                 b43legacy_write32(dev, B43legacy_MMIO_SHM_DATA,
1679                                     be32_to_cpu(data[i]));
1680                 udelay(10);
1681         }
1682
1683         if (dev->fw.pcm) {
1684                 /* Upload PCM data. */
1685                 data = (__be32 *) (dev->fw.pcm->data + hdr_len);
1686                 len = (dev->fw.pcm->size - hdr_len) / sizeof(__be32);
1687                 b43legacy_shm_control_word(dev, B43legacy_SHM_HW, 0x01EA);
1688                 b43legacy_write32(dev, B43legacy_MMIO_SHM_DATA, 0x00004000);
1689                 /* No need for autoinc bit in SHM_HW */
1690                 b43legacy_shm_control_word(dev, B43legacy_SHM_HW, 0x01EB);
1691                 for (i = 0; i < len; i++) {
1692                         b43legacy_write32(dev, B43legacy_MMIO_SHM_DATA,
1693                                           be32_to_cpu(data[i]));
1694                         udelay(10);
1695                 }
1696         }
1697
1698         b43legacy_write32(dev, B43legacy_MMIO_GEN_IRQ_REASON,
1699                           B43legacy_IRQ_ALL);
1700
1701         /* Start the microcode PSM */
1702         macctl = b43legacy_read32(dev, B43legacy_MMIO_MACCTL);
1703         macctl &= ~B43legacy_MACCTL_PSM_JMP0;
1704         macctl |= B43legacy_MACCTL_PSM_RUN;
1705         b43legacy_write32(dev, B43legacy_MMIO_MACCTL, macctl);
1706
1707         /* Wait for the microcode to load and respond */
1708         i = 0;
1709         while (1) {
1710                 tmp = b43legacy_read32(dev, B43legacy_MMIO_GEN_IRQ_REASON);
1711                 if (tmp == B43legacy_IRQ_MAC_SUSPENDED)
1712                         break;
1713                 i++;
1714                 if (i >= B43legacy_IRQWAIT_MAX_RETRIES) {
1715                         b43legacyerr(dev->wl, "Microcode not responding\n");
1716                         b43legacy_print_fw_helptext(dev->wl);
1717                         err = -ENODEV;
1718                         goto error;
1719                 }
1720                 msleep_interruptible(50);
1721                 if (signal_pending(current)) {
1722                         err = -EINTR;
1723                         goto error;
1724                 }
1725         }
1726         /* dummy read follows */
1727         b43legacy_read32(dev, B43legacy_MMIO_GEN_IRQ_REASON);
1728
1729         /* Get and check the revisions. */
1730         fwrev = b43legacy_shm_read16(dev, B43legacy_SHM_SHARED,
1731                                      B43legacy_SHM_SH_UCODEREV);
1732         fwpatch = b43legacy_shm_read16(dev, B43legacy_SHM_SHARED,
1733                                        B43legacy_SHM_SH_UCODEPATCH);
1734         fwdate = b43legacy_shm_read16(dev, B43legacy_SHM_SHARED,
1735                                       B43legacy_SHM_SH_UCODEDATE);
1736         fwtime = b43legacy_shm_read16(dev, B43legacy_SHM_SHARED,
1737                                       B43legacy_SHM_SH_UCODETIME);
1738
1739         if (fwrev > 0x128) {
1740                 b43legacyerr(dev->wl, "YOU ARE TRYING TO LOAD V4 FIRMWARE."
1741                              " Only firmware from binary drivers version 3.x"
1742                              " is supported. You must change your firmware"
1743                              " files.\n");
1744                 b43legacy_print_fw_helptext(dev->wl);
1745                 err = -EOPNOTSUPP;
1746                 goto error;
1747         }
1748         b43legacyinfo(dev->wl, "Loading firmware version 0x%X, patch level %u "
1749                       "(20%.2i-%.2i-%.2i %.2i:%.2i:%.2i)\n", fwrev, fwpatch,
1750                       (fwdate >> 12) & 0xF, (fwdate >> 8) & 0xF, fwdate & 0xFF,
1751                       (fwtime >> 11) & 0x1F, (fwtime >> 5) & 0x3F,
1752                       fwtime & 0x1F);
1753
1754         dev->fw.rev = fwrev;
1755         dev->fw.patch = fwpatch;
1756
1757         snprintf(wiphy->fw_version, sizeof(wiphy->fw_version), "%u.%u",
1758                         dev->fw.rev, dev->fw.patch);
1759         wiphy->hw_version = dev->dev->id.coreid;
1760
1761         return 0;
1762
1763 error:
1764         macctl = b43legacy_read32(dev, B43legacy_MMIO_MACCTL);
1765         macctl &= ~B43legacy_MACCTL_PSM_RUN;
1766         macctl |= B43legacy_MACCTL_PSM_JMP0;
1767         b43legacy_write32(dev, B43legacy_MMIO_MACCTL, macctl);
1768
1769         return err;
1770 }
1771
1772 static int b43legacy_write_initvals(struct b43legacy_wldev *dev,
1773                                     const struct b43legacy_iv *ivals,
1774                                     size_t count,
1775                                     size_t array_size)
1776 {
1777         const struct b43legacy_iv *iv;
1778         u16 offset;
1779         size_t i;
1780         bool bit32;
1781
1782         BUILD_BUG_ON(sizeof(struct b43legacy_iv) != 6);
1783         iv = ivals;
1784         for (i = 0; i < count; i++) {
1785                 if (array_size < sizeof(iv->offset_size))
1786                         goto err_format;
1787                 array_size -= sizeof(iv->offset_size);
1788                 offset = be16_to_cpu(iv->offset_size);
1789                 bit32 = !!(offset & B43legacy_IV_32BIT);
1790                 offset &= B43legacy_IV_OFFSET_MASK;
1791                 if (offset >= 0x1000)
1792                         goto err_format;
1793                 if (bit32) {
1794                         u32 value;
1795
1796                         if (array_size < sizeof(iv->data.d32))
1797                                 goto err_format;
1798                         array_size -= sizeof(iv->data.d32);
1799
1800                         value = get_unaligned_be32(&iv->data.d32);
1801                         b43legacy_write32(dev, offset, value);
1802
1803                         iv = (const struct b43legacy_iv *)((const uint8_t *)iv +
1804                                                         sizeof(__be16) +
1805                                                         sizeof(__be32));
1806                 } else {
1807                         u16 value;
1808
1809                         if (array_size < sizeof(iv->data.d16))
1810                                 goto err_format;
1811                         array_size -= sizeof(iv->data.d16);
1812
1813                         value = be16_to_cpu(iv->data.d16);
1814                         b43legacy_write16(dev, offset, value);
1815
1816                         iv = (const struct b43legacy_iv *)((const uint8_t *)iv +
1817                                                         sizeof(__be16) +
1818                                                         sizeof(__be16));
1819                 }
1820         }
1821         if (array_size)
1822                 goto err_format;
1823
1824         return 0;
1825
1826 err_format:
1827         b43legacyerr(dev->wl, "Initial Values Firmware file-format error.\n");
1828         b43legacy_print_fw_helptext(dev->wl);
1829
1830         return -EPROTO;
1831 }
1832
1833 static int b43legacy_upload_initvals(struct b43legacy_wldev *dev)
1834 {
1835         const size_t hdr_len = sizeof(struct b43legacy_fw_header);
1836         const struct b43legacy_fw_header *hdr;
1837         struct b43legacy_firmware *fw = &dev->fw;
1838         const struct b43legacy_iv *ivals;
1839         size_t count;
1840         int err;
1841
1842         hdr = (const struct b43legacy_fw_header *)(fw->initvals->data);
1843         ivals = (const struct b43legacy_iv *)(fw->initvals->data + hdr_len);
1844         count = be32_to_cpu(hdr->size);
1845         err = b43legacy_write_initvals(dev, ivals, count,
1846                                  fw->initvals->size - hdr_len);
1847         if (err)
1848                 goto out;
1849         if (fw->initvals_band) {
1850                 hdr = (const struct b43legacy_fw_header *)
1851                       (fw->initvals_band->data);
1852                 ivals = (const struct b43legacy_iv *)(fw->initvals_band->data
1853                         + hdr_len);
1854                 count = be32_to_cpu(hdr->size);
1855                 err = b43legacy_write_initvals(dev, ivals, count,
1856                                          fw->initvals_band->size - hdr_len);
1857                 if (err)
1858                         goto out;
1859         }
1860 out:
1861
1862         return err;
1863 }
1864
1865 /* Initialize the GPIOs
1866  * http://bcm-specs.sipsolutions.net/GPIO
1867  */
1868 static int b43legacy_gpio_init(struct b43legacy_wldev *dev)
1869 {
1870         struct ssb_bus *bus = dev->dev->bus;
1871         struct ssb_device *gpiodev, *pcidev = NULL;
1872         u32 mask;
1873         u32 set;
1874
1875         b43legacy_write32(dev, B43legacy_MMIO_MACCTL,
1876                           b43legacy_read32(dev,
1877                           B43legacy_MMIO_MACCTL)
1878                           & 0xFFFF3FFF);
1879
1880         b43legacy_write16(dev, B43legacy_MMIO_GPIO_MASK,
1881                           b43legacy_read16(dev,
1882                           B43legacy_MMIO_GPIO_MASK)
1883                           | 0x000F);
1884
1885         mask = 0x0000001F;
1886         set = 0x0000000F;
1887         if (dev->dev->bus->chip_id == 0x4301) {
1888                 mask |= 0x0060;
1889                 set |= 0x0060;
1890         }
1891         if (dev->dev->bus->sprom.boardflags_lo & B43legacy_BFL_PACTRL) {
1892                 b43legacy_write16(dev, B43legacy_MMIO_GPIO_MASK,
1893                                   b43legacy_read16(dev,
1894                                   B43legacy_MMIO_GPIO_MASK)
1895                                   | 0x0200);
1896                 mask |= 0x0200;
1897                 set |= 0x0200;
1898         }
1899         if (dev->dev->id.revision >= 2)
1900                 mask  |= 0x0010; /* FIXME: This is redundant. */
1901
1902 #ifdef CONFIG_SSB_DRIVER_PCICORE
1903         pcidev = bus->pcicore.dev;
1904 #endif
1905         gpiodev = bus->chipco.dev ? : pcidev;
1906         if (!gpiodev)
1907                 return 0;
1908         ssb_write32(gpiodev, B43legacy_GPIO_CONTROL,
1909                     (ssb_read32(gpiodev, B43legacy_GPIO_CONTROL)
1910                      & mask) | set);
1911
1912         return 0;
1913 }
1914
1915 /* Turn off all GPIO stuff. Call this on module unload, for example. */
1916 static void b43legacy_gpio_cleanup(struct b43legacy_wldev *dev)
1917 {
1918         struct ssb_bus *bus = dev->dev->bus;
1919         struct ssb_device *gpiodev, *pcidev = NULL;
1920
1921 #ifdef CONFIG_SSB_DRIVER_PCICORE
1922         pcidev = bus->pcicore.dev;
1923 #endif
1924         gpiodev = bus->chipco.dev ? : pcidev;
1925         if (!gpiodev)
1926                 return;
1927         ssb_write32(gpiodev, B43legacy_GPIO_CONTROL, 0);
1928 }
1929
1930 /* http://bcm-specs.sipsolutions.net/EnableMac */
1931 void b43legacy_mac_enable(struct b43legacy_wldev *dev)
1932 {
1933         dev->mac_suspended--;
1934         B43legacy_WARN_ON(dev->mac_suspended < 0);
1935         B43legacy_WARN_ON(irqs_disabled());
1936         if (dev->mac_suspended == 0) {
1937                 b43legacy_write32(dev, B43legacy_MMIO_MACCTL,
1938                                   b43legacy_read32(dev,
1939                                   B43legacy_MMIO_MACCTL)
1940                                   | B43legacy_MACCTL_ENABLED);
1941                 b43legacy_write32(dev, B43legacy_MMIO_GEN_IRQ_REASON,
1942                                   B43legacy_IRQ_MAC_SUSPENDED);
1943                 /* the next two are dummy reads */
1944                 b43legacy_read32(dev, B43legacy_MMIO_MACCTL);
1945                 b43legacy_read32(dev, B43legacy_MMIO_GEN_IRQ_REASON);
1946                 b43legacy_power_saving_ctl_bits(dev, -1, -1);
1947
1948                 /* Re-enable IRQs. */
1949                 spin_lock_irq(&dev->wl->irq_lock);
1950                 b43legacy_write32(dev, B43legacy_MMIO_GEN_IRQ_MASK,
1951                                   dev->irq_mask);
1952                 spin_unlock_irq(&dev->wl->irq_lock);
1953         }
1954 }
1955
1956 /* http://bcm-specs.sipsolutions.net/SuspendMAC */
1957 void b43legacy_mac_suspend(struct b43legacy_wldev *dev)
1958 {
1959         int i;
1960         u32 tmp;
1961
1962         might_sleep();
1963         B43legacy_WARN_ON(irqs_disabled());
1964         B43legacy_WARN_ON(dev->mac_suspended < 0);
1965
1966         if (dev->mac_suspended == 0) {
1967                 /* Mask IRQs before suspending MAC. Otherwise
1968                  * the MAC stays busy and won't suspend. */
1969                 spin_lock_irq(&dev->wl->irq_lock);
1970                 b43legacy_write32(dev, B43legacy_MMIO_GEN_IRQ_MASK, 0);
1971                 spin_unlock_irq(&dev->wl->irq_lock);
1972                 b43legacy_synchronize_irq(dev);
1973
1974                 b43legacy_power_saving_ctl_bits(dev, -1, 1);
1975                 b43legacy_write32(dev, B43legacy_MMIO_MACCTL,
1976                                   b43legacy_read32(dev,
1977                                   B43legacy_MMIO_MACCTL)
1978                                   & ~B43legacy_MACCTL_ENABLED);
1979                 b43legacy_read32(dev, B43legacy_MMIO_GEN_IRQ_REASON);
1980                 for (i = 40; i; i--) {
1981                         tmp = b43legacy_read32(dev,
1982                                                B43legacy_MMIO_GEN_IRQ_REASON);
1983                         if (tmp & B43legacy_IRQ_MAC_SUSPENDED)
1984                                 goto out;
1985                         msleep(1);
1986                 }
1987                 b43legacyerr(dev->wl, "MAC suspend failed\n");
1988         }
1989 out:
1990         dev->mac_suspended++;
1991 }
1992
1993 static void b43legacy_adjust_opmode(struct b43legacy_wldev *dev)
1994 {
1995         struct b43legacy_wl *wl = dev->wl;
1996         u32 ctl;
1997         u16 cfp_pretbtt;
1998
1999         ctl = b43legacy_read32(dev, B43legacy_MMIO_MACCTL);
2000         /* Reset status to STA infrastructure mode. */
2001         ctl &= ~B43legacy_MACCTL_AP;
2002         ctl &= ~B43legacy_MACCTL_KEEP_CTL;
2003         ctl &= ~B43legacy_MACCTL_KEEP_BADPLCP;
2004         ctl &= ~B43legacy_MACCTL_KEEP_BAD;
2005         ctl &= ~B43legacy_MACCTL_PROMISC;
2006         ctl &= ~B43legacy_MACCTL_BEACPROMISC;
2007         ctl |= B43legacy_MACCTL_INFRA;
2008
2009         if (b43legacy_is_mode(wl, NL80211_IFTYPE_AP))
2010                 ctl |= B43legacy_MACCTL_AP;
2011         else if (b43legacy_is_mode(wl, NL80211_IFTYPE_ADHOC))
2012                 ctl &= ~B43legacy_MACCTL_INFRA;
2013
2014         if (wl->filter_flags & FIF_CONTROL)
2015                 ctl |= B43legacy_MACCTL_KEEP_CTL;
2016         if (wl->filter_flags & FIF_FCSFAIL)
2017                 ctl |= B43legacy_MACCTL_KEEP_BAD;
2018         if (wl->filter_flags & FIF_PLCPFAIL)
2019                 ctl |= B43legacy_MACCTL_KEEP_BADPLCP;
2020         if (wl->filter_flags & FIF_PROMISC_IN_BSS)
2021                 ctl |= B43legacy_MACCTL_PROMISC;
2022         if (wl->filter_flags & FIF_BCN_PRBRESP_PROMISC)
2023                 ctl |= B43legacy_MACCTL_BEACPROMISC;
2024
2025         /* Workaround: On old hardware the HW-MAC-address-filter
2026          * doesn't work properly, so always run promisc in filter
2027          * it in software. */
2028         if (dev->dev->id.revision <= 4)
2029                 ctl |= B43legacy_MACCTL_PROMISC;
2030
2031         b43legacy_write32(dev, B43legacy_MMIO_MACCTL, ctl);
2032
2033         cfp_pretbtt = 2;
2034         if ((ctl & B43legacy_MACCTL_INFRA) &&
2035             !(ctl & B43legacy_MACCTL_AP)) {
2036                 if (dev->dev->bus->chip_id == 0x4306 &&
2037                     dev->dev->bus->chip_rev == 3)
2038                         cfp_pretbtt = 100;
2039                 else
2040                         cfp_pretbtt = 50;
2041         }
2042         b43legacy_write16(dev, 0x612, cfp_pretbtt);
2043 }
2044
2045 static void b43legacy_rate_memory_write(struct b43legacy_wldev *dev,
2046                                         u16 rate,
2047                                         int is_ofdm)
2048 {
2049         u16 offset;
2050
2051         if (is_ofdm) {
2052                 offset = 0x480;
2053                 offset += (b43legacy_plcp_get_ratecode_ofdm(rate) & 0x000F) * 2;
2054         } else {
2055                 offset = 0x4C0;
2056                 offset += (b43legacy_plcp_get_ratecode_cck(rate) & 0x000F) * 2;
2057         }
2058         b43legacy_shm_write16(dev, B43legacy_SHM_SHARED, offset + 0x20,
2059                               b43legacy_shm_read16(dev,
2060                               B43legacy_SHM_SHARED, offset));
2061 }
2062
2063 static void b43legacy_rate_memory_init(struct b43legacy_wldev *dev)
2064 {
2065         switch (dev->phy.type) {
2066         case B43legacy_PHYTYPE_G:
2067                 b43legacy_rate_memory_write(dev, B43legacy_OFDM_RATE_6MB, 1);
2068                 b43legacy_rate_memory_write(dev, B43legacy_OFDM_RATE_12MB, 1);
2069                 b43legacy_rate_memory_write(dev, B43legacy_OFDM_RATE_18MB, 1);
2070                 b43legacy_rate_memory_write(dev, B43legacy_OFDM_RATE_24MB, 1);
2071                 b43legacy_rate_memory_write(dev, B43legacy_OFDM_RATE_36MB, 1);
2072                 b43legacy_rate_memory_write(dev, B43legacy_OFDM_RATE_48MB, 1);
2073                 b43legacy_rate_memory_write(dev, B43legacy_OFDM_RATE_54MB, 1);
2074                 /* fallthrough */
2075         case B43legacy_PHYTYPE_B:
2076                 b43legacy_rate_memory_write(dev, B43legacy_CCK_RATE_1MB, 0);
2077                 b43legacy_rate_memory_write(dev, B43legacy_CCK_RATE_2MB, 0);
2078                 b43legacy_rate_memory_write(dev, B43legacy_CCK_RATE_5MB, 0);
2079                 b43legacy_rate_memory_write(dev, B43legacy_CCK_RATE_11MB, 0);
2080                 break;
2081         default:
2082                 B43legacy_BUG_ON(1);
2083         }
2084 }
2085
2086 /* Set the TX-Antenna for management frames sent by firmware. */
2087 static void b43legacy_mgmtframe_txantenna(struct b43legacy_wldev *dev,
2088                                           int antenna)
2089 {
2090         u16 ant = 0;
2091         u16 tmp;
2092
2093         switch (antenna) {
2094         case B43legacy_ANTENNA0:
2095                 ant |= B43legacy_TX4_PHY_ANT0;
2096                 break;
2097         case B43legacy_ANTENNA1:
2098                 ant |= B43legacy_TX4_PHY_ANT1;
2099                 break;
2100         case B43legacy_ANTENNA_AUTO:
2101                 ant |= B43legacy_TX4_PHY_ANTLAST;
2102                 break;
2103         default:
2104                 B43legacy_BUG_ON(1);
2105         }
2106
2107         /* FIXME We also need to set the other flags of the PHY control
2108          * field somewhere. */
2109
2110         /* For Beacons */
2111         tmp = b43legacy_shm_read16(dev, B43legacy_SHM_SHARED,
2112                                    B43legacy_SHM_SH_BEACPHYCTL);
2113         tmp = (tmp & ~B43legacy_TX4_PHY_ANT) | ant;
2114         b43legacy_shm_write16(dev, B43legacy_SHM_SHARED,
2115                               B43legacy_SHM_SH_BEACPHYCTL, tmp);
2116         /* For ACK/CTS */
2117         tmp = b43legacy_shm_read16(dev, B43legacy_SHM_SHARED,
2118                                    B43legacy_SHM_SH_ACKCTSPHYCTL);
2119         tmp = (tmp & ~B43legacy_TX4_PHY_ANT) | ant;
2120         b43legacy_shm_write16(dev, B43legacy_SHM_SHARED,
2121                               B43legacy_SHM_SH_ACKCTSPHYCTL, tmp);
2122         /* For Probe Resposes */
2123         tmp = b43legacy_shm_read16(dev, B43legacy_SHM_SHARED,
2124                                    B43legacy_SHM_SH_PRPHYCTL);
2125         tmp = (tmp & ~B43legacy_TX4_PHY_ANT) | ant;
2126         b43legacy_shm_write16(dev, B43legacy_SHM_SHARED,
2127                               B43legacy_SHM_SH_PRPHYCTL, tmp);
2128 }
2129
2130 /* This is the opposite of b43legacy_chip_init() */
2131 static void b43legacy_chip_exit(struct b43legacy_wldev *dev)
2132 {
2133         b43legacy_radio_turn_off(dev, 1);
2134         b43legacy_gpio_cleanup(dev);
2135         /* firmware is released later */
2136 }
2137
2138 /* Initialize the chip
2139  * http://bcm-specs.sipsolutions.net/ChipInit
2140  */
2141 static int b43legacy_chip_init(struct b43legacy_wldev *dev)
2142 {
2143         struct b43legacy_phy *phy = &dev->phy;
2144         int err;
2145         int tmp;
2146         u32 value32, macctl;
2147         u16 value16;
2148
2149         /* Initialize the MAC control */
2150         macctl = B43legacy_MACCTL_IHR_ENABLED | B43legacy_MACCTL_SHM_ENABLED;
2151         if (dev->phy.gmode)
2152                 macctl |= B43legacy_MACCTL_GMODE;
2153         macctl |= B43legacy_MACCTL_INFRA;
2154         b43legacy_write32(dev, B43legacy_MMIO_MACCTL, macctl);
2155
2156         err = b43legacy_request_firmware(dev);
2157         if (err)
2158                 goto out;
2159         err = b43legacy_upload_microcode(dev);
2160         if (err)
2161                 goto out; /* firmware is released later */
2162
2163         err = b43legacy_gpio_init(dev);
2164         if (err)
2165                 goto out; /* firmware is released later */
2166
2167         err = b43legacy_upload_initvals(dev);
2168         if (err)
2169                 goto err_gpio_clean;
2170         b43legacy_radio_turn_on(dev);
2171
2172         b43legacy_write16(dev, 0x03E6, 0x0000);
2173         err = b43legacy_phy_init(dev);
2174         if (err)
2175                 goto err_radio_off;
2176
2177         /* Select initial Interference Mitigation. */
2178         tmp = phy->interfmode;
2179         phy->interfmode = B43legacy_INTERFMODE_NONE;
2180         b43legacy_radio_set_interference_mitigation(dev, tmp);
2181
2182         b43legacy_phy_set_antenna_diversity(dev);
2183         b43legacy_mgmtframe_txantenna(dev, B43legacy_ANTENNA_DEFAULT);
2184
2185         if (phy->type == B43legacy_PHYTYPE_B) {
2186                 value16 = b43legacy_read16(dev, 0x005E);
2187                 value16 |= 0x0004;
2188                 b43legacy_write16(dev, 0x005E, value16);
2189         }
2190         b43legacy_write32(dev, 0x0100, 0x01000000);
2191         if (dev->dev->id.revision < 5)
2192                 b43legacy_write32(dev, 0x010C, 0x01000000);
2193
2194         value32 = b43legacy_read32(dev, B43legacy_MMIO_MACCTL);
2195         value32 &= ~B43legacy_MACCTL_INFRA;
2196         b43legacy_write32(dev, B43legacy_MMIO_MACCTL, value32);
2197         value32 = b43legacy_read32(dev, B43legacy_MMIO_MACCTL);
2198         value32 |= B43legacy_MACCTL_INFRA;
2199         b43legacy_write32(dev, B43legacy_MMIO_MACCTL, value32);
2200
2201         if (b43legacy_using_pio(dev)) {
2202                 b43legacy_write32(dev, 0x0210, 0x00000100);
2203                 b43legacy_write32(dev, 0x0230, 0x00000100);
2204                 b43legacy_write32(dev, 0x0250, 0x00000100);
2205                 b43legacy_write32(dev, 0x0270, 0x00000100);
2206                 b43legacy_shm_write16(dev, B43legacy_SHM_SHARED, 0x0034,
2207                                       0x0000);
2208         }
2209
2210         /* Probe Response Timeout value */
2211         /* FIXME: Default to 0, has to be set by ioctl probably... :-/ */
2212         b43legacy_shm_write16(dev, B43legacy_SHM_SHARED, 0x0074, 0x0000);
2213
2214         /* Initially set the wireless operation mode. */
2215         b43legacy_adjust_opmode(dev);
2216
2217         if (dev->dev->id.revision < 3) {
2218                 b43legacy_write16(dev, 0x060E, 0x0000);
2219                 b43legacy_write16(dev, 0x0610, 0x8000);
2220                 b43legacy_write16(dev, 0x0604, 0x0000);
2221                 b43legacy_write16(dev, 0x0606, 0x0200);
2222         } else {
2223                 b43legacy_write32(dev, 0x0188, 0x80000000);
2224                 b43legacy_write32(dev, 0x018C, 0x02000000);
2225         }
2226         b43legacy_write32(dev, B43legacy_MMIO_GEN_IRQ_REASON, 0x00004000);
2227         b43legacy_write32(dev, B43legacy_MMIO_DMA0_IRQ_MASK, 0x0001DC00);
2228         b43legacy_write32(dev, B43legacy_MMIO_DMA1_IRQ_MASK, 0x0000DC00);
2229         b43legacy_write32(dev, B43legacy_MMIO_DMA2_IRQ_MASK, 0x0000DC00);
2230         b43legacy_write32(dev, B43legacy_MMIO_DMA3_IRQ_MASK, 0x0001DC00);
2231         b43legacy_write32(dev, B43legacy_MMIO_DMA4_IRQ_MASK, 0x0000DC00);
2232         b43legacy_write32(dev, B43legacy_MMIO_DMA5_IRQ_MASK, 0x0000DC00);
2233
2234         value32 = ssb_read32(dev->dev, SSB_TMSLOW);
2235         value32 |= B43legacy_TMSLOW_MACPHYCLKEN;
2236         ssb_write32(dev->dev, SSB_TMSLOW, value32);
2237
2238         b43legacy_write16(dev, B43legacy_MMIO_POWERUP_DELAY,
2239                           dev->dev->bus->chipco.fast_pwrup_delay);
2240
2241         /* PHY TX errors counter. */
2242         atomic_set(&phy->txerr_cnt, B43legacy_PHY_TX_BADNESS_LIMIT);
2243
2244         B43legacy_WARN_ON(err != 0);
2245         b43legacydbg(dev->wl, "Chip initialized\n");
2246 out:
2247         return err;
2248
2249 err_radio_off:
2250         b43legacy_radio_turn_off(dev, 1);
2251 err_gpio_clean:
2252         b43legacy_gpio_cleanup(dev);
2253         goto out;
2254 }
2255
2256 static void b43legacy_periodic_every120sec(struct b43legacy_wldev *dev)
2257 {
2258         struct b43legacy_phy *phy = &dev->phy;
2259
2260         if (phy->type != B43legacy_PHYTYPE_G || phy->rev < 2)
2261                 return;
2262
2263         b43legacy_mac_suspend(dev);
2264         b43legacy_phy_lo_g_measure(dev);
2265         b43legacy_mac_enable(dev);
2266 }
2267
2268 static void b43legacy_periodic_every60sec(struct b43legacy_wldev *dev)
2269 {
2270         b43legacy_phy_lo_mark_all_unused(dev);
2271         if (dev->dev->bus->sprom.boardflags_lo & B43legacy_BFL_RSSI) {
2272                 b43legacy_mac_suspend(dev);
2273                 b43legacy_calc_nrssi_slope(dev);
2274                 b43legacy_mac_enable(dev);
2275         }
2276 }
2277
2278 static void b43legacy_periodic_every30sec(struct b43legacy_wldev *dev)
2279 {
2280         /* Update device statistics. */
2281         b43legacy_calculate_link_quality(dev);
2282 }
2283
2284 static void b43legacy_periodic_every15sec(struct b43legacy_wldev *dev)
2285 {
2286         b43legacy_phy_xmitpower(dev); /* FIXME: unless scanning? */
2287
2288         atomic_set(&dev->phy.txerr_cnt, B43legacy_PHY_TX_BADNESS_LIMIT);
2289         wmb();
2290 }
2291
2292 static void do_periodic_work(struct b43legacy_wldev *dev)
2293 {
2294         unsigned int state;
2295
2296         state = dev->periodic_state;
2297         if (state % 8 == 0)
2298                 b43legacy_periodic_every120sec(dev);
2299         if (state % 4 == 0)
2300                 b43legacy_periodic_every60sec(dev);
2301         if (state % 2 == 0)
2302                 b43legacy_periodic_every30sec(dev);
2303         b43legacy_periodic_every15sec(dev);
2304 }
2305
2306 /* Periodic work locking policy:
2307  *      The whole periodic work handler is protected by
2308  *      wl->mutex. If another lock is needed somewhere in the
2309  *      pwork callchain, it's acquired in-place, where it's needed.
2310  */
2311 static void b43legacy_periodic_work_handler(struct work_struct *work)
2312 {
2313         struct b43legacy_wldev *dev = container_of(work, struct b43legacy_wldev,
2314                                              periodic_work.work);
2315         struct b43legacy_wl *wl = dev->wl;
2316         unsigned long delay;
2317
2318         mutex_lock(&wl->mutex);
2319
2320         if (unlikely(b43legacy_status(dev) != B43legacy_STAT_STARTED))
2321                 goto out;
2322         if (b43legacy_debug(dev, B43legacy_DBG_PWORK_STOP))
2323                 goto out_requeue;
2324
2325         do_periodic_work(dev);
2326
2327         dev->periodic_state++;
2328 out_requeue:
2329         if (b43legacy_debug(dev, B43legacy_DBG_PWORK_FAST))
2330                 delay = msecs_to_jiffies(50);
2331         else
2332                 delay = round_jiffies_relative(HZ * 15);
2333         ieee80211_queue_delayed_work(wl->hw, &dev->periodic_work, delay);
2334 out:
2335         mutex_unlock(&wl->mutex);
2336 }
2337
2338 static void b43legacy_periodic_tasks_setup(struct b43legacy_wldev *dev)
2339 {
2340         struct delayed_work *work = &dev->periodic_work;
2341
2342         dev->periodic_state = 0;
2343         INIT_DELAYED_WORK(work, b43legacy_periodic_work_handler);
2344         ieee80211_queue_delayed_work(dev->wl->hw, work, 0);
2345 }
2346
2347 /* Validate access to the chip (SHM) */
2348 static int b43legacy_validate_chipaccess(struct b43legacy_wldev *dev)
2349 {
2350         u32 value;
2351         u32 shm_backup;
2352
2353         shm_backup = b43legacy_shm_read32(dev, B43legacy_SHM_SHARED, 0);
2354         b43legacy_shm_write32(dev, B43legacy_SHM_SHARED, 0, 0xAA5555AA);
2355         if (b43legacy_shm_read32(dev, B43legacy_SHM_SHARED, 0) !=
2356                                  0xAA5555AA)
2357                 goto error;
2358         b43legacy_shm_write32(dev, B43legacy_SHM_SHARED, 0, 0x55AAAA55);
2359         if (b43legacy_shm_read32(dev, B43legacy_SHM_SHARED, 0) !=
2360                                  0x55AAAA55)
2361                 goto error;
2362         b43legacy_shm_write32(dev, B43legacy_SHM_SHARED, 0, shm_backup);
2363
2364         value = b43legacy_read32(dev, B43legacy_MMIO_MACCTL);
2365         if ((value | B43legacy_MACCTL_GMODE) !=
2366             (B43legacy_MACCTL_GMODE | B43legacy_MACCTL_IHR_ENABLED))
2367                 goto error;
2368
2369         value = b43legacy_read32(dev, B43legacy_MMIO_GEN_IRQ_REASON);
2370         if (value)
2371                 goto error;
2372
2373         return 0;
2374 error:
2375         b43legacyerr(dev->wl, "Failed to validate the chipaccess\n");
2376         return -ENODEV;
2377 }
2378
2379 static void b43legacy_security_init(struct b43legacy_wldev *dev)
2380 {
2381         dev->max_nr_keys = (dev->dev->id.revision >= 5) ? 58 : 20;
2382         B43legacy_WARN_ON(dev->max_nr_keys > ARRAY_SIZE(dev->key));
2383         dev->ktp = b43legacy_shm_read16(dev, B43legacy_SHM_SHARED,
2384                                         0x0056);
2385         /* KTP is a word address, but we address SHM bytewise.
2386          * So multiply by two.
2387          */
2388         dev->ktp *= 2;
2389         if (dev->dev->id.revision >= 5)
2390                 /* Number of RCMTA address slots */
2391                 b43legacy_write16(dev, B43legacy_MMIO_RCMTA_COUNT,
2392                                   dev->max_nr_keys - 8);
2393 }
2394
2395 #ifdef CONFIG_B43LEGACY_HWRNG
2396 static int b43legacy_rng_read(struct hwrng *rng, u32 *data)
2397 {
2398         struct b43legacy_wl *wl = (struct b43legacy_wl *)rng->priv;
2399         unsigned long flags;
2400
2401         /* Don't take wl->mutex here, as it could deadlock with
2402          * hwrng internal locking. It's not needed to take
2403          * wl->mutex here, anyway. */
2404
2405         spin_lock_irqsave(&wl->irq_lock, flags);
2406         *data = b43legacy_read16(wl->current_dev, B43legacy_MMIO_RNG);
2407         spin_unlock_irqrestore(&wl->irq_lock, flags);
2408
2409         return (sizeof(u16));
2410 }
2411 #endif
2412
2413 static void b43legacy_rng_exit(struct b43legacy_wl *wl)
2414 {
2415 #ifdef CONFIG_B43LEGACY_HWRNG
2416         if (wl->rng_initialized)
2417                 hwrng_unregister(&wl->rng);
2418 #endif
2419 }
2420
2421 static int b43legacy_rng_init(struct b43legacy_wl *wl)
2422 {
2423         int err = 0;
2424
2425 #ifdef CONFIG_B43LEGACY_HWRNG
2426         snprintf(wl->rng_name, ARRAY_SIZE(wl->rng_name),
2427                  "%s_%s", KBUILD_MODNAME, wiphy_name(wl->hw->wiphy));
2428         wl->rng.name = wl->rng_name;
2429         wl->rng.data_read = b43legacy_rng_read;
2430         wl->rng.priv = (unsigned long)wl;
2431         wl->rng_initialized = 1;
2432         err = hwrng_register(&wl->rng);
2433         if (err) {
2434                 wl->rng_initialized = 0;
2435                 b43legacyerr(wl, "Failed to register the random "
2436                        "number generator (%d)\n", err);
2437         }
2438
2439 #endif
2440         return err;
2441 }
2442
2443 static void b43legacy_tx_work(struct work_struct *work)
2444 {
2445         struct b43legacy_wl *wl = container_of(work, struct b43legacy_wl,
2446                                   tx_work);
2447         struct b43legacy_wldev *dev;
2448         struct sk_buff *skb;
2449         int queue_num;
2450         int err = 0;
2451
2452         mutex_lock(&wl->mutex);
2453         dev = wl->current_dev;
2454         if (unlikely(!dev || b43legacy_status(dev) < B43legacy_STAT_STARTED)) {
2455                 mutex_unlock(&wl->mutex);
2456                 return;
2457         }
2458
2459         for (queue_num = 0; queue_num < B43legacy_QOS_QUEUE_NUM; queue_num++) {
2460                 while (skb_queue_len(&wl->tx_queue[queue_num])) {
2461                         skb = skb_dequeue(&wl->tx_queue[queue_num]);
2462                         if (b43legacy_using_pio(dev))
2463                                 err = b43legacy_pio_tx(dev, skb);
2464                         else
2465                                 err = b43legacy_dma_tx(dev, skb);
2466                         if (err == -ENOSPC) {
2467                                 wl->tx_queue_stopped[queue_num] = 1;
2468                                 ieee80211_stop_queue(wl->hw, queue_num);
2469                                 skb_queue_head(&wl->tx_queue[queue_num], skb);
2470                                 break;
2471                         }
2472                         if (unlikely(err))
2473                                 dev_kfree_skb(skb); /* Drop it */
2474                         err = 0;
2475                 }
2476
2477                 if (!err)
2478                         wl->tx_queue_stopped[queue_num] = 0;
2479         }
2480
2481         mutex_unlock(&wl->mutex);
2482 }
2483
2484 static void b43legacy_op_tx(struct ieee80211_hw *hw,
2485                             struct sk_buff *skb)
2486 {
2487         struct b43legacy_wl *wl = hw_to_b43legacy_wl(hw);
2488
2489         if (unlikely(skb->len < 2 + 2 + 6)) {
2490                 /* Too short, this can't be a valid frame. */
2491                 dev_kfree_skb_any(skb);
2492                 return;
2493         }
2494         B43legacy_WARN_ON(skb_shinfo(skb)->nr_frags);
2495
2496         skb_queue_tail(&wl->tx_queue[skb->queue_mapping], skb);
2497         if (!wl->tx_queue_stopped[skb->queue_mapping])
2498                 ieee80211_queue_work(wl->hw, &wl->tx_work);
2499         else
2500                 ieee80211_stop_queue(wl->hw, skb->queue_mapping);
2501 }
2502
2503 static int b43legacy_op_conf_tx(struct ieee80211_hw *hw,
2504                                 struct ieee80211_vif *vif, u16 queue,
2505                                 const struct ieee80211_tx_queue_params *params)
2506 {
2507         return 0;
2508 }
2509
2510 static int b43legacy_op_get_stats(struct ieee80211_hw *hw,
2511                                   struct ieee80211_low_level_stats *stats)
2512 {
2513         struct b43legacy_wl *wl = hw_to_b43legacy_wl(hw);
2514         unsigned long flags;
2515
2516         spin_lock_irqsave(&wl->irq_lock, flags);
2517         memcpy(stats, &wl->ieee_stats, sizeof(*stats));
2518         spin_unlock_irqrestore(&wl->irq_lock, flags);
2519
2520         return 0;
2521 }
2522
2523 static const char *phymode_to_string(unsigned int phymode)
2524 {
2525         switch (phymode) {
2526         case B43legacy_PHYMODE_B:
2527                 return "B";
2528         case B43legacy_PHYMODE_G:
2529                 return "G";
2530         default:
2531                 B43legacy_BUG_ON(1);
2532         }
2533         return "";
2534 }
2535
2536 static int find_wldev_for_phymode(struct b43legacy_wl *wl,
2537                                   unsigned int phymode,
2538                                   struct b43legacy_wldev **dev,
2539                                   bool *gmode)
2540 {
2541         struct b43legacy_wldev *d;
2542
2543         list_for_each_entry(d, &wl->devlist, list) {
2544                 if (d->phy.possible_phymodes & phymode) {
2545                         /* Ok, this device supports the PHY-mode.
2546                          * Set the gmode bit. */
2547                         *gmode = true;
2548                         *dev = d;
2549
2550                         return 0;
2551                 }
2552         }
2553
2554         return -ESRCH;
2555 }
2556
2557 static void b43legacy_put_phy_into_reset(struct b43legacy_wldev *dev)
2558 {
2559         struct ssb_device *sdev = dev->dev;
2560         u32 tmslow;
2561
2562         tmslow = ssb_read32(sdev, SSB_TMSLOW);
2563         tmslow &= ~B43legacy_TMSLOW_GMODE;
2564         tmslow |= B43legacy_TMSLOW_PHYRESET;
2565         tmslow |= SSB_TMSLOW_FGC;
2566         ssb_write32(sdev, SSB_TMSLOW, tmslow);
2567         msleep(1);
2568
2569         tmslow = ssb_read32(sdev, SSB_TMSLOW);
2570         tmslow &= ~SSB_TMSLOW_FGC;
2571         tmslow |= B43legacy_TMSLOW_PHYRESET;
2572         ssb_write32(sdev, SSB_TMSLOW, tmslow);
2573         msleep(1);
2574 }
2575
2576 /* Expects wl->mutex locked */
2577 static int b43legacy_switch_phymode(struct b43legacy_wl *wl,
2578                                       unsigned int new_mode)
2579 {
2580         struct b43legacy_wldev *uninitialized_var(up_dev);
2581         struct b43legacy_wldev *down_dev;
2582         int err;
2583         bool gmode = false;
2584         int prev_status;
2585
2586         err = find_wldev_for_phymode(wl, new_mode, &up_dev, &gmode);
2587         if (err) {
2588                 b43legacyerr(wl, "Could not find a device for %s-PHY mode\n",
2589                        phymode_to_string(new_mode));
2590                 return err;
2591         }
2592         if ((up_dev == wl->current_dev) &&
2593             (!!wl->current_dev->phy.gmode == !!gmode))
2594                 /* This device is already running. */
2595                 return 0;
2596         b43legacydbg(wl, "Reconfiguring PHYmode to %s-PHY\n",
2597                phymode_to_string(new_mode));
2598         down_dev = wl->current_dev;
2599
2600         prev_status = b43legacy_status(down_dev);
2601         /* Shutdown the currently running core. */
2602         if (prev_status >= B43legacy_STAT_STARTED)
2603                 b43legacy_wireless_core_stop(down_dev);
2604         if (prev_status >= B43legacy_STAT_INITIALIZED)
2605                 b43legacy_wireless_core_exit(down_dev);
2606
2607         if (down_dev != up_dev)
2608                 /* We switch to a different core, so we put PHY into
2609                  * RESET on the old core. */
2610                 b43legacy_put_phy_into_reset(down_dev);
2611
2612         /* Now start the new core. */
2613         up_dev->phy.gmode = gmode;
2614         if (prev_status >= B43legacy_STAT_INITIALIZED) {
2615                 err = b43legacy_wireless_core_init(up_dev);
2616                 if (err) {
2617                         b43legacyerr(wl, "Fatal: Could not initialize device"
2618                                      " for newly selected %s-PHY mode\n",
2619                                      phymode_to_string(new_mode));
2620                         goto init_failure;
2621                 }
2622         }
2623         if (prev_status >= B43legacy_STAT_STARTED) {
2624                 err = b43legacy_wireless_core_start(up_dev);
2625                 if (err) {
2626                         b43legacyerr(wl, "Fatal: Coult not start device for "
2627                                "newly selected %s-PHY mode\n",
2628                                phymode_to_string(new_mode));
2629                         b43legacy_wireless_core_exit(up_dev);
2630                         goto init_failure;
2631                 }
2632         }
2633         B43legacy_WARN_ON(b43legacy_status(up_dev) != prev_status);
2634
2635         b43legacy_shm_write32(up_dev, B43legacy_SHM_SHARED, 0x003E, 0);
2636
2637         wl->current_dev = up_dev;
2638
2639         return 0;
2640 init_failure:
2641         /* Whoops, failed to init the new core. No core is operating now. */
2642         wl->current_dev = NULL;
2643         return err;
2644 }
2645
2646 /* Write the short and long frame retry limit values. */
2647 static void b43legacy_set_retry_limits(struct b43legacy_wldev *dev,
2648                                        unsigned int short_retry,
2649                                        unsigned int long_retry)
2650 {
2651         /* The retry limit is a 4-bit counter. Enforce this to avoid overflowing
2652          * the chip-internal counter. */
2653         short_retry = min(short_retry, (unsigned int)0xF);
2654         long_retry = min(long_retry, (unsigned int)0xF);
2655
2656         b43legacy_shm_write16(dev, B43legacy_SHM_WIRELESS, 0x0006, short_retry);
2657         b43legacy_shm_write16(dev, B43legacy_SHM_WIRELESS, 0x0007, long_retry);
2658 }
2659
2660 static int b43legacy_op_dev_config(struct ieee80211_hw *hw,
2661                                    u32 changed)
2662 {
2663         struct b43legacy_wl *wl = hw_to_b43legacy_wl(hw);
2664         struct b43legacy_wldev *dev;
2665         struct b43legacy_phy *phy;
2666         struct ieee80211_conf *conf = &hw->conf;
2667         unsigned long flags;
2668         unsigned int new_phymode = 0xFFFF;
2669         int antenna_tx;
2670         int err = 0;
2671
2672         antenna_tx = B43legacy_ANTENNA_DEFAULT;
2673
2674         mutex_lock(&wl->mutex);
2675         dev = wl->current_dev;
2676         phy = &dev->phy;
2677
2678         if (changed & IEEE80211_CONF_CHANGE_RETRY_LIMITS)
2679                 b43legacy_set_retry_limits(dev,
2680                                            conf->short_frame_max_tx_count,
2681                                            conf->long_frame_max_tx_count);
2682         changed &= ~IEEE80211_CONF_CHANGE_RETRY_LIMITS;
2683         if (!changed)
2684                 goto out_unlock_mutex;
2685
2686         /* Switch the PHY mode (if necessary). */
2687         switch (conf->channel->band) {
2688         case IEEE80211_BAND_2GHZ:
2689                 if (phy->type == B43legacy_PHYTYPE_B)
2690                         new_phymode = B43legacy_PHYMODE_B;
2691                 else
2692                         new_phymode = B43legacy_PHYMODE_G;
2693                 break;
2694         default:
2695                 B43legacy_WARN_ON(1);
2696         }
2697         err = b43legacy_switch_phymode(wl, new_phymode);
2698         if (err)
2699                 goto out_unlock_mutex;
2700
2701         /* Disable IRQs while reconfiguring the device.
2702          * This makes it possible to drop the spinlock throughout
2703          * the reconfiguration process. */
2704         spin_lock_irqsave(&wl->irq_lock, flags);
2705         if (b43legacy_status(dev) < B43legacy_STAT_STARTED) {
2706                 spin_unlock_irqrestore(&wl->irq_lock, flags);
2707                 goto out_unlock_mutex;
2708         }
2709         b43legacy_write32(dev, B43legacy_MMIO_GEN_IRQ_MASK, 0);
2710         spin_unlock_irqrestore(&wl->irq_lock, flags);
2711         b43legacy_synchronize_irq(dev);
2712
2713         /* Switch to the requested channel.
2714          * The firmware takes care of races with the TX handler. */
2715         if (conf->channel->hw_value != phy->channel)
2716                 b43legacy_radio_selectchannel(dev, conf->channel->hw_value, 0);
2717
2718         dev->wl->radiotap_enabled = !!(conf->flags & IEEE80211_CONF_MONITOR);
2719
2720         /* Adjust the desired TX power level. */
2721         if (conf->power_level != 0) {
2722                 if (conf->power_level != phy->power_level) {
2723                         phy->power_level = conf->power_level;
2724                         b43legacy_phy_xmitpower(dev);
2725                 }
2726         }
2727
2728         /* Antennas for RX and management frame TX. */
2729         b43legacy_mgmtframe_txantenna(dev, antenna_tx);
2730
2731         if (wl->radio_enabled != phy->radio_on) {
2732                 if (wl->radio_enabled) {
2733                         b43legacy_radio_turn_on(dev);
2734                         b43legacyinfo(dev->wl, "Radio turned on by software\n");
2735                         if (!dev->radio_hw_enable)
2736                                 b43legacyinfo(dev->wl, "The hardware RF-kill"
2737                                               " button still turns the radio"
2738                                               " physically off. Press the"
2739                                               " button to turn it on.\n");
2740                 } else {
2741                         b43legacy_radio_turn_off(dev, 0);
2742                         b43legacyinfo(dev->wl, "Radio turned off by"
2743                                       " software\n");
2744                 }
2745         }
2746
2747         spin_lock_irqsave(&wl->irq_lock, flags);
2748         b43legacy_write32(dev, B43legacy_MMIO_GEN_IRQ_MASK, dev->irq_mask);
2749         mmiowb();
2750         spin_unlock_irqrestore(&wl->irq_lock, flags);
2751 out_unlock_mutex:
2752         mutex_unlock(&wl->mutex);
2753
2754         return err;
2755 }
2756
2757 static void b43legacy_update_basic_rates(struct b43legacy_wldev *dev, u32 brates)
2758 {
2759         struct ieee80211_supported_band *sband =
2760                 dev->wl->hw->wiphy->bands[IEEE80211_BAND_2GHZ];
2761         struct ieee80211_rate *rate;
2762         int i;
2763         u16 basic, direct, offset, basic_offset, rateptr;
2764
2765         for (i = 0; i < sband->n_bitrates; i++) {
2766                 rate = &sband->bitrates[i];
2767
2768                 if (b43legacy_is_cck_rate(rate->hw_value)) {
2769                         direct = B43legacy_SHM_SH_CCKDIRECT;
2770                         basic = B43legacy_SHM_SH_CCKBASIC;
2771                         offset = b43legacy_plcp_get_ratecode_cck(rate->hw_value);
2772                         offset &= 0xF;
2773                 } else {
2774                         direct = B43legacy_SHM_SH_OFDMDIRECT;
2775                         basic = B43legacy_SHM_SH_OFDMBASIC;
2776                         offset = b43legacy_plcp_get_ratecode_ofdm(rate->hw_value);
2777                         offset &= 0xF;
2778                 }
2779
2780                 rate = ieee80211_get_response_rate(sband, brates, rate->bitrate);
2781
2782                 if (b43legacy_is_cck_rate(rate->hw_value)) {
2783                         basic_offset = b43legacy_plcp_get_ratecode_cck(rate->hw_value);
2784                         basic_offset &= 0xF;
2785                 } else {
2786                         basic_offset = b43legacy_plcp_get_ratecode_ofdm(rate->hw_value);
2787                         basic_offset &= 0xF;
2788                 }
2789
2790                 /*
2791                  * Get the pointer that we need to point to
2792                  * from the direct map
2793                  */
2794                 rateptr = b43legacy_shm_read16(dev, B43legacy_SHM_SHARED,
2795                                                direct + 2 * basic_offset);
2796                 /* and write it to the basic map */
2797                 b43legacy_shm_write16(dev, B43legacy_SHM_SHARED,
2798                                       basic + 2 * offset, rateptr);
2799         }
2800 }
2801
2802 static void b43legacy_op_bss_info_changed(struct ieee80211_hw *hw,
2803                                     struct ieee80211_vif *vif,
2804                                     struct ieee80211_bss_conf *conf,
2805                                     u32 changed)
2806 {
2807         struct b43legacy_wl *wl = hw_to_b43legacy_wl(hw);
2808         struct b43legacy_wldev *dev;
2809         unsigned long flags;
2810
2811         mutex_lock(&wl->mutex);
2812         B43legacy_WARN_ON(wl->vif != vif);
2813
2814         dev = wl->current_dev;
2815
2816         /* Disable IRQs while reconfiguring the device.
2817          * This makes it possible to drop the spinlock throughout
2818          * the reconfiguration process. */
2819         spin_lock_irqsave(&wl->irq_lock, flags);
2820         if (b43legacy_status(dev) < B43legacy_STAT_STARTED) {
2821                 spin_unlock_irqrestore(&wl->irq_lock, flags);
2822                 goto out_unlock_mutex;
2823         }
2824         b43legacy_write32(dev, B43legacy_MMIO_GEN_IRQ_MASK, 0);
2825
2826         if (changed & BSS_CHANGED_BSSID) {
2827                 b43legacy_synchronize_irq(dev);
2828
2829                 if (conf->bssid)
2830                         memcpy(wl->bssid, conf->bssid, ETH_ALEN);
2831                 else
2832                         memset(wl->bssid, 0, ETH_ALEN);
2833         }
2834
2835         if (b43legacy_status(dev) >= B43legacy_STAT_INITIALIZED) {
2836                 if (changed & BSS_CHANGED_BEACON &&
2837                     (b43legacy_is_mode(wl, NL80211_IFTYPE_AP) ||
2838                      b43legacy_is_mode(wl, NL80211_IFTYPE_ADHOC)))
2839                         b43legacy_update_templates(wl);
2840
2841                 if (changed & BSS_CHANGED_BSSID)
2842                         b43legacy_write_mac_bssid_templates(dev);
2843         }
2844         spin_unlock_irqrestore(&wl->irq_lock, flags);
2845
2846         b43legacy_mac_suspend(dev);
2847
2848         if (changed & BSS_CHANGED_BEACON_INT &&
2849             (b43legacy_is_mode(wl, NL80211_IFTYPE_AP) ||
2850              b43legacy_is_mode(wl, NL80211_IFTYPE_ADHOC)))
2851                 b43legacy_set_beacon_int(dev, conf->beacon_int);
2852
2853         if (changed & BSS_CHANGED_BASIC_RATES)
2854                 b43legacy_update_basic_rates(dev, conf->basic_rates);
2855
2856         if (changed & BSS_CHANGED_ERP_SLOT) {
2857                 if (conf->use_short_slot)
2858                         b43legacy_short_slot_timing_enable(dev);
2859                 else
2860                         b43legacy_short_slot_timing_disable(dev);
2861         }
2862
2863         b43legacy_mac_enable(dev);
2864
2865         spin_lock_irqsave(&wl->irq_lock, flags);
2866         b43legacy_write32(dev, B43legacy_MMIO_GEN_IRQ_MASK, dev->irq_mask);
2867         /* XXX: why? */
2868         mmiowb();
2869         spin_unlock_irqrestore(&wl->irq_lock, flags);
2870  out_unlock_mutex:
2871         mutex_unlock(&wl->mutex);
2872 }
2873
2874 static void b43legacy_op_configure_filter(struct ieee80211_hw *hw,
2875                                           unsigned int changed,
2876                                           unsigned int *fflags,u64 multicast)
2877 {
2878         struct b43legacy_wl *wl = hw_to_b43legacy_wl(hw);
2879         struct b43legacy_wldev *dev = wl->current_dev;
2880         unsigned long flags;
2881
2882         if (!dev) {
2883                 *fflags = 0;
2884                 return;
2885         }
2886
2887         spin_lock_irqsave(&wl->irq_lock, flags);
2888         *fflags &= FIF_PROMISC_IN_BSS |
2889                   FIF_ALLMULTI |
2890                   FIF_FCSFAIL |
2891                   FIF_PLCPFAIL |
2892                   FIF_CONTROL |
2893                   FIF_OTHER_BSS |
2894                   FIF_BCN_PRBRESP_PROMISC;
2895
2896         changed &= FIF_PROMISC_IN_BSS |
2897                    FIF_ALLMULTI |
2898                    FIF_FCSFAIL |
2899                    FIF_PLCPFAIL |
2900                    FIF_CONTROL |
2901                    FIF_OTHER_BSS |
2902                    FIF_BCN_PRBRESP_PROMISC;
2903
2904         wl->filter_flags = *fflags;
2905
2906         if (changed && b43legacy_status(dev) >= B43legacy_STAT_INITIALIZED)
2907                 b43legacy_adjust_opmode(dev);
2908         spin_unlock_irqrestore(&wl->irq_lock, flags);
2909 }
2910
2911 /* Locking: wl->mutex */
2912 static void b43legacy_wireless_core_stop(struct b43legacy_wldev *dev)
2913 {
2914         struct b43legacy_wl *wl = dev->wl;
2915         unsigned long flags;
2916         int queue_num;
2917
2918         if (b43legacy_status(dev) < B43legacy_STAT_STARTED)
2919                 return;
2920
2921         /* Disable and sync interrupts. We must do this before than
2922          * setting the status to INITIALIZED, as the interrupt handler
2923          * won't care about IRQs then. */
2924         spin_lock_irqsave(&wl->irq_lock, flags);
2925         b43legacy_write32(dev, B43legacy_MMIO_GEN_IRQ_MASK, 0);
2926         b43legacy_read32(dev, B43legacy_MMIO_GEN_IRQ_MASK); /* flush */
2927         spin_unlock_irqrestore(&wl->irq_lock, flags);
2928         b43legacy_synchronize_irq(dev);
2929
2930         b43legacy_set_status(dev, B43legacy_STAT_INITIALIZED);
2931
2932         mutex_unlock(&wl->mutex);
2933         /* Must unlock as it would otherwise deadlock. No races here.
2934          * Cancel the possibly running self-rearming periodic work. */
2935         cancel_delayed_work_sync(&dev->periodic_work);
2936         cancel_work_sync(&wl->tx_work);
2937         mutex_lock(&wl->mutex);
2938
2939         /* Drain all TX queues. */
2940         for (queue_num = 0; queue_num < B43legacy_QOS_QUEUE_NUM; queue_num++) {
2941                 while (skb_queue_len(&wl->tx_queue[queue_num]))
2942                         dev_kfree_skb(skb_dequeue(&wl->tx_queue[queue_num]));
2943         }
2944
2945 b43legacy_mac_suspend(dev);
2946         free_irq(dev->dev->irq, dev);
2947         b43legacydbg(wl, "Wireless interface stopped\n");
2948 }
2949
2950 /* Locking: wl->mutex */
2951 static int b43legacy_wireless_core_start(struct b43legacy_wldev *dev)
2952 {
2953         int err;
2954
2955         B43legacy_WARN_ON(b43legacy_status(dev) != B43legacy_STAT_INITIALIZED);
2956
2957         drain_txstatus_queue(dev);
2958         err = request_irq(dev->dev->irq, b43legacy_interrupt_handler,
2959                           IRQF_SHARED, KBUILD_MODNAME, dev);
2960         if (err) {
2961                 b43legacyerr(dev->wl, "Cannot request IRQ-%d\n",
2962                        dev->dev->irq);
2963                 goto out;
2964         }
2965         /* We are ready to run. */
2966         ieee80211_wake_queues(dev->wl->hw);
2967         b43legacy_set_status(dev, B43legacy_STAT_STARTED);
2968
2969         /* Start data flow (TX/RX) */
2970         b43legacy_mac_enable(dev);
2971         b43legacy_write32(dev, B43legacy_MMIO_GEN_IRQ_MASK, dev->irq_mask);
2972
2973         /* Start maintenance work */
2974         b43legacy_periodic_tasks_setup(dev);
2975
2976         b43legacydbg(dev->wl, "Wireless interface started\n");
2977 out:
2978         return err;
2979 }
2980
2981 /* Get PHY and RADIO versioning numbers */
2982 static int b43legacy_phy_versioning(struct b43legacy_wldev *dev)
2983 {
2984         struct b43legacy_phy *phy = &dev->phy;
2985         u32 tmp;
2986         u8 analog_type;
2987         u8 phy_type;
2988         u8 phy_rev;
2989         u16 radio_manuf;
2990         u16 radio_ver;
2991         u16 radio_rev;
2992         int unsupported = 0;
2993
2994         /* Get PHY versioning */
2995         tmp = b43legacy_read16(dev, B43legacy_MMIO_PHY_VER);
2996         analog_type = (tmp & B43legacy_PHYVER_ANALOG)
2997                       >> B43legacy_PHYVER_ANALOG_SHIFT;
2998         phy_type = (tmp & B43legacy_PHYVER_TYPE) >> B43legacy_PHYVER_TYPE_SHIFT;
2999         phy_rev = (tmp & B43legacy_PHYVER_VERSION);
3000         switch (phy_type) {
3001         case B43legacy_PHYTYPE_B:
3002                 if (phy_rev != 2 && phy_rev != 4
3003                     && phy_rev != 6 && phy_rev != 7)
3004                         unsupported = 1;
3005                 break;
3006         case B43legacy_PHYTYPE_G:
3007                 if (phy_rev > 8)
3008                         unsupported = 1;
3009                 break;
3010         default:
3011                 unsupported = 1;
3012         }
3013         if (unsupported) {
3014                 b43legacyerr(dev->wl, "FOUND UNSUPPORTED PHY "
3015                        "(Analog %u, Type %u, Revision %u)\n",
3016                        analog_type, phy_type, phy_rev);
3017                 return -EOPNOTSUPP;
3018         }
3019         b43legacydbg(dev->wl, "Found PHY: Analog %u, Type %u, Revision %u\n",
3020                analog_type, phy_type, phy_rev);
3021
3022
3023         /* Get RADIO versioning */
3024         if (dev->dev->bus->chip_id == 0x4317) {
3025                 if (dev->dev->bus->chip_rev == 0)
3026                         tmp = 0x3205017F;
3027                 else if (dev->dev->bus->chip_rev == 1)
3028                         tmp = 0x4205017F;
3029                 else
3030                         tmp = 0x5205017F;
3031         } else {
3032                 b43legacy_write16(dev, B43legacy_MMIO_RADIO_CONTROL,
3033                                   B43legacy_RADIOCTL_ID);
3034                 tmp = b43legacy_read16(dev, B43legacy_MMIO_RADIO_DATA_HIGH);
3035                 tmp <<= 16;
3036                 b43legacy_write16(dev, B43legacy_MMIO_RADIO_CONTROL,
3037                                   B43legacy_RADIOCTL_ID);
3038                 tmp |= b43legacy_read16(dev, B43legacy_MMIO_RADIO_DATA_LOW);
3039         }
3040         radio_manuf = (tmp & 0x00000FFF);
3041         radio_ver = (tmp & 0x0FFFF000) >> 12;
3042         radio_rev = (tmp & 0xF0000000) >> 28;
3043         switch (phy_type) {
3044         case B43legacy_PHYTYPE_B:
3045                 if ((radio_ver & 0xFFF0) != 0x2050)
3046                         unsupported = 1;
3047                 break;
3048         case B43legacy_PHYTYPE_G:
3049                 if (radio_ver != 0x2050)
3050                         unsupported = 1;
3051                 break;
3052         default:
3053                 B43legacy_BUG_ON(1);
3054         }
3055         if (unsupported) {
3056                 b43legacyerr(dev->wl, "FOUND UNSUPPORTED RADIO "
3057                        "(Manuf 0x%X, Version 0x%X, Revision %u)\n",
3058                        radio_manuf, radio_ver, radio_rev);
3059                 return -EOPNOTSUPP;
3060         }
3061         b43legacydbg(dev->wl, "Found Radio: Manuf 0x%X, Version 0x%X,"
3062                      " Revision %u\n", radio_manuf, radio_ver, radio_rev);
3063
3064
3065         phy->radio_manuf = radio_manuf;
3066         phy->radio_ver = radio_ver;
3067         phy->radio_rev = radio_rev;
3068
3069         phy->analog = analog_type;
3070         phy->type = phy_type;
3071         phy->rev = phy_rev;
3072
3073         return 0;
3074 }
3075
3076 static void setup_struct_phy_for_init(struct b43legacy_wldev *dev,
3077                                       struct b43legacy_phy *phy)
3078 {
3079         struct b43legacy_lopair *lo;
3080         int i;
3081
3082         memset(phy->minlowsig, 0xFF, sizeof(phy->minlowsig));
3083         memset(phy->minlowsigpos, 0, sizeof(phy->minlowsigpos));
3084
3085         /* Assume the radio is enabled. If it's not enabled, the state will
3086          * immediately get fixed on the first periodic work run. */
3087         dev->radio_hw_enable = true;
3088
3089         phy->savedpctlreg = 0xFFFF;
3090         phy->aci_enable = false;
3091         phy->aci_wlan_automatic = false;
3092         phy->aci_hw_rssi = false;
3093
3094         lo = phy->_lo_pairs;
3095         if (lo)
3096                 memset(lo, 0, sizeof(struct b43legacy_lopair) *
3097                                      B43legacy_LO_COUNT);
3098         phy->max_lb_gain = 0;
3099         phy->trsw_rx_gain = 0;
3100
3101         /* Set default attenuation values. */
3102         phy->bbatt = b43legacy_default_baseband_attenuation(dev);
3103         phy->rfatt = b43legacy_default_radio_attenuation(dev);
3104         phy->txctl1 = b43legacy_default_txctl1(dev);
3105         phy->txpwr_offset = 0;
3106
3107         /* NRSSI */
3108         phy->nrssislope = 0;
3109         for (i = 0; i < ARRAY_SIZE(phy->nrssi); i++)
3110                 phy->nrssi[i] = -1000;
3111         for (i = 0; i < ARRAY_SIZE(phy->nrssi_lt); i++)
3112                 phy->nrssi_lt[i] = i;
3113
3114         phy->lofcal = 0xFFFF;
3115         phy->initval = 0xFFFF;
3116
3117         phy->interfmode = B43legacy_INTERFMODE_NONE;
3118         phy->channel = 0xFF;
3119 }
3120
3121 static void setup_struct_wldev_for_init(struct b43legacy_wldev *dev)
3122 {
3123         /* Flags */
3124         dev->dfq_valid = false;
3125
3126         /* Stats */
3127         memset(&dev->stats, 0, sizeof(dev->stats));
3128
3129         setup_struct_phy_for_init(dev, &dev->phy);
3130
3131         /* IRQ related flags */
3132         dev->irq_reason = 0;
3133         memset(dev->dma_reason, 0, sizeof(dev->dma_reason));
3134         dev->irq_mask = B43legacy_IRQ_MASKTEMPLATE;
3135
3136         dev->mac_suspended = 1;
3137
3138         /* Noise calculation context */
3139         memset(&dev->noisecalc, 0, sizeof(dev->noisecalc));
3140 }
3141
3142 static void b43legacy_set_synth_pu_delay(struct b43legacy_wldev *dev,
3143                                           bool idle) {
3144         u16 pu_delay = 1050;
3145
3146         if (b43legacy_is_mode(dev->wl, NL80211_IFTYPE_ADHOC) || idle)
3147                 pu_delay = 500;
3148         if ((dev->phy.radio_ver == 0x2050) && (dev->phy.radio_rev == 8))
3149                 pu_delay = max(pu_delay, (u16)2400);
3150
3151         b43legacy_shm_write16(dev, B43legacy_SHM_SHARED,
3152                               B43legacy_SHM_SH_SPUWKUP, pu_delay);
3153 }
3154
3155 /* Set the TSF CFP pre-TargetBeaconTransmissionTime. */
3156 static void b43legacy_set_pretbtt(struct b43legacy_wldev *dev)
3157 {
3158         u16 pretbtt;
3159
3160         /* The time value is in microseconds. */
3161         if (b43legacy_is_mode(dev->wl, NL80211_IFTYPE_ADHOC))
3162                 pretbtt = 2;
3163         else
3164                 pretbtt = 250;
3165         b43legacy_shm_write16(dev, B43legacy_SHM_SHARED,
3166                               B43legacy_SHM_SH_PRETBTT, pretbtt);
3167         b43legacy_write16(dev, B43legacy_MMIO_TSF_CFP_PRETBTT, pretbtt);
3168 }
3169
3170 /* Shutdown a wireless core */
3171 /* Locking: wl->mutex */
3172 static void b43legacy_wireless_core_exit(struct b43legacy_wldev *dev)
3173 {
3174         struct b43legacy_phy *phy = &dev->phy;
3175         u32 macctl;
3176
3177         B43legacy_WARN_ON(b43legacy_status(dev) > B43legacy_STAT_INITIALIZED);
3178         if (b43legacy_status(dev) != B43legacy_STAT_INITIALIZED)
3179                 return;
3180         b43legacy_set_status(dev, B43legacy_STAT_UNINIT);
3181
3182         /* Stop the microcode PSM. */
3183         macctl = b43legacy_read32(dev, B43legacy_MMIO_MACCTL);
3184         macctl &= ~B43legacy_MACCTL_PSM_RUN;
3185         macctl |= B43legacy_MACCTL_PSM_JMP0;
3186         b43legacy_write32(dev, B43legacy_MMIO_MACCTL, macctl);
3187
3188         b43legacy_leds_exit(dev);
3189         b43legacy_rng_exit(dev->wl);
3190         b43legacy_pio_free(dev);
3191         b43legacy_dma_free(dev);
3192         b43legacy_chip_exit(dev);
3193         b43legacy_radio_turn_off(dev, 1);
3194         b43legacy_switch_analog(dev, 0);
3195         if (phy->dyn_tssi_tbl)
3196                 kfree(phy->tssi2dbm);
3197         kfree(phy->lo_control);
3198         phy->lo_control = NULL;
3199         if (dev->wl->current_beacon) {
3200                 dev_kfree_skb_any(dev->wl->current_beacon);
3201                 dev->wl->current_beacon = NULL;
3202         }
3203
3204         ssb_device_disable(dev->dev, 0);
3205         ssb_bus_may_powerdown(dev->dev->bus);
3206 }
3207
3208 static void prepare_phy_data_for_init(struct b43legacy_wldev *dev)
3209 {
3210         struct b43legacy_phy *phy = &dev->phy;
3211         int i;
3212
3213         /* Set default attenuation values. */
3214         phy->bbatt = b43legacy_default_baseband_attenuation(dev);
3215         phy->rfatt = b43legacy_default_radio_attenuation(dev);
3216         phy->txctl1 = b43legacy_default_txctl1(dev);
3217         phy->txctl2 = 0xFFFF;
3218         phy->txpwr_offset = 0;
3219
3220         /* NRSSI */
3221         phy->nrssislope = 0;
3222         for (i = 0; i < ARRAY_SIZE(phy->nrssi); i++)
3223                 phy->nrssi[i] = -1000;
3224         for (i = 0; i < ARRAY_SIZE(phy->nrssi_lt); i++)
3225                 phy->nrssi_lt[i] = i;
3226
3227         phy->lofcal = 0xFFFF;
3228         phy->initval = 0xFFFF;
3229
3230         phy->aci_enable = false;
3231         phy->aci_wlan_automatic = false;
3232         phy->aci_hw_rssi = false;
3233
3234         phy->antenna_diversity = 0xFFFF;
3235         memset(phy->minlowsig, 0xFF, sizeof(phy->minlowsig));
3236         memset(phy->minlowsigpos, 0, sizeof(phy->minlowsigpos));
3237
3238         /* Flags */
3239         phy->calibrated = 0;
3240
3241         if (phy->_lo_pairs)
3242                 memset(phy->_lo_pairs, 0,
3243                        sizeof(struct b43legacy_lopair) * B43legacy_LO_COUNT);
3244         memset(phy->loopback_gain, 0, sizeof(phy->loopback_gain));
3245 }
3246
3247 /* Initialize a wireless core */
3248 static int b43legacy_wireless_core_init(struct b43legacy_wldev *dev)
3249 {
3250         struct b43legacy_wl *wl = dev->wl;
3251         struct ssb_bus *bus = dev->dev->bus;
3252         struct b43legacy_phy *phy = &dev->phy;
3253         struct ssb_sprom *sprom = &dev->dev->bus->sprom;
3254         int err;
3255         u32 hf;
3256         u32 tmp;
3257
3258         B43legacy_WARN_ON(b43legacy_status(dev) != B43legacy_STAT_UNINIT);
3259
3260         err = ssb_bus_powerup(bus, 0);
3261         if (err)
3262                 goto out;
3263         if (!ssb_device_is_enabled(dev->dev)) {
3264                 tmp = phy->gmode ? B43legacy_TMSLOW_GMODE : 0;
3265                 b43legacy_wireless_core_reset(dev, tmp);
3266         }
3267
3268         if ((phy->type == B43legacy_PHYTYPE_B) ||
3269             (phy->type == B43legacy_PHYTYPE_G)) {
3270                 phy->_lo_pairs = kzalloc(sizeof(struct b43legacy_lopair)
3271                                          * B43legacy_LO_COUNT,
3272                                          GFP_KERNEL);
3273                 if (!phy->_lo_pairs)
3274                         return -ENOMEM;
3275         }
3276         setup_struct_wldev_for_init(dev);
3277
3278         err = b43legacy_phy_init_tssi2dbm_table(dev);
3279         if (err)
3280                 goto err_kfree_lo_control;
3281
3282         /* Enable IRQ routing to this device. */
3283         ssb_pcicore_dev_irqvecs_enable(&bus->pcicore, dev->dev);
3284
3285         prepare_phy_data_for_init(dev);
3286         b43legacy_phy_calibrate(dev);
3287         err = b43legacy_chip_init(dev);
3288         if (err)
3289                 goto err_kfree_tssitbl;
3290         b43legacy_shm_write16(dev, B43legacy_SHM_SHARED,
3291                               B43legacy_SHM_SH_WLCOREREV,
3292                               dev->dev->id.revision);
3293         hf = b43legacy_hf_read(dev);
3294         if (phy->type == B43legacy_PHYTYPE_G) {
3295                 hf |= B43legacy_HF_SYMW;
3296                 if (phy->rev == 1)
3297                         hf |= B43legacy_HF_GDCW;
3298                 if (sprom->boardflags_lo & B43legacy_BFL_PACTRL)
3299                         hf |= B43legacy_HF_OFDMPABOOST;
3300         } else if (phy->type == B43legacy_PHYTYPE_B) {
3301                 hf |= B43legacy_HF_SYMW;
3302                 if (phy->rev >= 2 && phy->radio_ver == 0x2050)
3303                         hf &= ~B43legacy_HF_GDCW;
3304         }
3305         b43legacy_hf_write(dev, hf);
3306
3307         b43legacy_set_retry_limits(dev,
3308                                    B43legacy_DEFAULT_SHORT_RETRY_LIMIT,
3309                                    B43legacy_DEFAULT_LONG_RETRY_LIMIT);
3310
3311         b43legacy_shm_write16(dev, B43legacy_SHM_SHARED,
3312                               0x0044, 3);
3313         b43legacy_shm_write16(dev, B43legacy_SHM_SHARED,
3314                               0x0046, 2);
3315
3316         /* Disable sending probe responses from firmware.
3317          * Setting the MaxTime to one usec will always trigger
3318          * a timeout, so we never send any probe resp.
3319          * A timeout of zero is infinite. */
3320         b43legacy_shm_write16(dev, B43legacy_SHM_SHARED,
3321                               B43legacy_SHM_SH_PRMAXTIME, 1);
3322
3323         b43legacy_rate_memory_init(dev);
3324
3325         /* Minimum Contention Window */
3326         if (phy->type == B43legacy_PHYTYPE_B)
3327                 b43legacy_shm_write16(dev, B43legacy_SHM_WIRELESS,
3328                                       0x0003, 31);
3329         else
3330                 b43legacy_shm_write16(dev, B43legacy_SHM_WIRELESS,
3331                                       0x0003, 15);
3332         /* Maximum Contention Window */
3333         b43legacy_shm_write16(dev, B43legacy_SHM_WIRELESS,
3334                               0x0004, 1023);
3335
3336         do {
3337                 if (b43legacy_using_pio(dev))
3338                         err = b43legacy_pio_init(dev);
3339                 else {
3340                         err = b43legacy_dma_init(dev);
3341                         if (!err)
3342                                 b43legacy_qos_init(dev);
3343                 }
3344         } while (err == -EAGAIN);
3345         if (err)
3346                 goto err_chip_exit;
3347
3348         b43legacy_set_synth_pu_delay(dev, 1);
3349
3350         ssb_bus_powerup(bus, 1); /* Enable dynamic PCTL */
3351         b43legacy_upload_card_macaddress(dev);
3352         b43legacy_security_init(dev);
3353         b43legacy_rng_init(wl);
3354
3355         ieee80211_wake_queues(dev->wl->hw);
3356         b43legacy_set_status(dev, B43legacy_STAT_INITIALIZED);
3357
3358         b43legacy_leds_init(dev);
3359 out:
3360         return err;
3361
3362 err_chip_exit:
3363         b43legacy_chip_exit(dev);
3364 err_kfree_tssitbl:
3365         if (phy->dyn_tssi_tbl)
3366                 kfree(phy->tssi2dbm);
3367 err_kfree_lo_control:
3368         kfree(phy->lo_control);
3369         phy->lo_control = NULL;
3370         ssb_bus_may_powerdown(bus);
3371         B43legacy_WARN_ON(b43legacy_status(dev) != B43legacy_STAT_UNINIT);
3372         return err;
3373 }
3374
3375 static int b43legacy_op_add_interface(struct ieee80211_hw *hw,
3376                                       struct ieee80211_vif *vif)
3377 {
3378         struct b43legacy_wl *wl = hw_to_b43legacy_wl(hw);
3379         struct b43legacy_wldev *dev;
3380         unsigned long flags;
3381         int err = -EOPNOTSUPP;
3382
3383         /* TODO: allow WDS/AP devices to coexist */
3384
3385         if (vif->type != NL80211_IFTYPE_AP &&
3386             vif->type != NL80211_IFTYPE_STATION &&
3387             vif->type != NL80211_IFTYPE_WDS &&
3388             vif->type != NL80211_IFTYPE_ADHOC)
3389                 return -EOPNOTSUPP;
3390
3391         mutex_lock(&wl->mutex);
3392         if (wl->operating)
3393                 goto out_mutex_unlock;
3394
3395         b43legacydbg(wl, "Adding Interface type %d\n", vif->type);
3396
3397         dev = wl->current_dev;
3398         wl->operating = true;
3399         wl->vif = vif;
3400         wl->if_type = vif->type;
3401         memcpy(wl->mac_addr, vif->addr, ETH_ALEN);
3402
3403         spin_lock_irqsave(&wl->irq_lock, flags);
3404         b43legacy_adjust_opmode(dev);
3405         b43legacy_set_pretbtt(dev);
3406         b43legacy_set_synth_pu_delay(dev, 0);
3407         b43legacy_upload_card_macaddress(dev);
3408         spin_unlock_irqrestore(&wl->irq_lock, flags);
3409
3410         err = 0;
3411  out_mutex_unlock:
3412         mutex_unlock(&wl->mutex);
3413
3414         return err;
3415 }
3416
3417 static void b43legacy_op_remove_interface(struct ieee80211_hw *hw,
3418                                           struct ieee80211_vif *vif)
3419 {
3420         struct b43legacy_wl *wl = hw_to_b43legacy_wl(hw);
3421         struct b43legacy_wldev *dev = wl->current_dev;
3422         unsigned long flags;
3423
3424         b43legacydbg(wl, "Removing Interface type %d\n", vif->type);
3425
3426         mutex_lock(&wl->mutex);
3427
3428         B43legacy_WARN_ON(!wl->operating);
3429         B43legacy_WARN_ON(wl->vif != vif);
3430         wl->vif = NULL;
3431
3432         wl->operating = false;
3433
3434         spin_lock_irqsave(&wl->irq_lock, flags);
3435         b43legacy_adjust_opmode(dev);
3436         memset(wl->mac_addr, 0, ETH_ALEN);
3437         b43legacy_upload_card_macaddress(dev);
3438         spin_unlock_irqrestore(&wl->irq_lock, flags);
3439
3440         mutex_unlock(&wl->mutex);
3441 }
3442
3443 static int b43legacy_op_start(struct ieee80211_hw *hw)
3444 {
3445         struct b43legacy_wl *wl = hw_to_b43legacy_wl(hw);
3446         struct b43legacy_wldev *dev = wl->current_dev;
3447         int did_init = 0;
3448         int err = 0;
3449
3450         /* Kill all old instance specific information to make sure
3451          * the card won't use it in the short timeframe between start
3452          * and mac80211 reconfiguring it. */
3453         memset(wl->bssid, 0, ETH_ALEN);
3454         memset(wl->mac_addr, 0, ETH_ALEN);
3455         wl->filter_flags = 0;
3456         wl->beacon0_uploaded = false;
3457         wl->beacon1_uploaded = false;
3458         wl->beacon_templates_virgin = true;
3459         wl->radio_enabled = true;
3460
3461         mutex_lock(&wl->mutex);
3462
3463         if (b43legacy_status(dev) < B43legacy_STAT_INITIALIZED) {
3464                 err = b43legacy_wireless_core_init(dev);
3465                 if (err)
3466                         goto out_mutex_unlock;
3467                 did_init = 1;
3468         }
3469
3470         if (b43legacy_status(dev) < B43legacy_STAT_STARTED) {
3471                 err = b43legacy_wireless_core_start(dev);
3472                 if (err) {
3473                         if (did_init)
3474                                 b43legacy_wireless_core_exit(dev);
3475                         goto out_mutex_unlock;
3476                 }
3477         }
3478
3479         wiphy_rfkill_start_polling(hw->wiphy);
3480
3481 out_mutex_unlock:
3482         mutex_unlock(&wl->mutex);
3483
3484         return err;
3485 }
3486
3487 static void b43legacy_op_stop(struct ieee80211_hw *hw)
3488 {
3489         struct b43legacy_wl *wl = hw_to_b43legacy_wl(hw);
3490         struct b43legacy_wldev *dev = wl->current_dev;
3491
3492         cancel_work_sync(&(wl->beacon_update_trigger));
3493
3494         mutex_lock(&wl->mutex);
3495         if (b43legacy_status(dev) >= B43legacy_STAT_STARTED)
3496                 b43legacy_wireless_core_stop(dev);
3497         b43legacy_wireless_core_exit(dev);
3498         wl->radio_enabled = false;
3499         mutex_unlock(&wl->mutex);
3500 }
3501
3502 static int b43legacy_op_beacon_set_tim(struct ieee80211_hw *hw,
3503                                        struct ieee80211_sta *sta, bool set)
3504 {
3505         struct b43legacy_wl *wl = hw_to_b43legacy_wl(hw);
3506         unsigned long flags;
3507
3508         spin_lock_irqsave(&wl->irq_lock, flags);
3509         b43legacy_update_templates(wl);
3510         spin_unlock_irqrestore(&wl->irq_lock, flags);
3511
3512         return 0;
3513 }
3514
3515 static int b43legacy_op_get_survey(struct ieee80211_hw *hw, int idx,
3516                                    struct survey_info *survey)
3517 {
3518         struct b43legacy_wl *wl = hw_to_b43legacy_wl(hw);
3519         struct b43legacy_wldev *dev = wl->current_dev;
3520         struct ieee80211_conf *conf = &hw->conf;
3521
3522         if (idx != 0)
3523                 return -ENOENT;
3524
3525         survey->channel = conf->channel;
3526         survey->filled = SURVEY_INFO_NOISE_DBM;
3527         survey->noise = dev->stats.link_noise;
3528
3529         return 0;
3530 }
3531
3532 static const struct ieee80211_ops b43legacy_hw_ops = {
3533         .tx                     = b43legacy_op_tx,
3534         .conf_tx                = b43legacy_op_conf_tx,
3535         .add_interface          = b43legacy_op_add_interface,
3536         .remove_interface       = b43legacy_op_remove_interface,
3537         .config                 = b43legacy_op_dev_config,
3538         .bss_info_changed       = b43legacy_op_bss_info_changed,
3539         .configure_filter       = b43legacy_op_configure_filter,
3540         .get_stats              = b43legacy_op_get_stats,
3541         .start                  = b43legacy_op_start,
3542         .stop                   = b43legacy_op_stop,
3543         .set_tim                = b43legacy_op_beacon_set_tim,
3544         .get_survey             = b43legacy_op_get_survey,
3545         .rfkill_poll            = b43legacy_rfkill_poll,
3546 };
3547
3548 /* Hard-reset the chip. Do not call this directly.
3549  * Use b43legacy_controller_restart()
3550  */
3551 static void b43legacy_chip_reset(struct work_struct *work)
3552 {
3553         struct b43legacy_wldev *dev =
3554                 container_of(work, struct b43legacy_wldev, restart_work);
3555         struct b43legacy_wl *wl = dev->wl;
3556         int err = 0;
3557         int prev_status;
3558
3559         mutex_lock(&wl->mutex);
3560
3561         prev_status = b43legacy_status(dev);
3562         /* Bring the device down... */
3563         if (prev_status >= B43legacy_STAT_STARTED)
3564                 b43legacy_wireless_core_stop(dev);
3565         if (prev_status >= B43legacy_STAT_INITIALIZED)
3566                 b43legacy_wireless_core_exit(dev);
3567
3568         /* ...and up again. */
3569         if (prev_status >= B43legacy_STAT_INITIALIZED) {
3570                 err = b43legacy_wireless_core_init(dev);
3571                 if (err)
3572                         goto out;
3573         }
3574         if (prev_status >= B43legacy_STAT_STARTED) {
3575                 err = b43legacy_wireless_core_start(dev);
3576                 if (err) {
3577                         b43legacy_wireless_core_exit(dev);
3578                         goto out;
3579                 }
3580         }
3581 out:
3582         if (err)
3583                 wl->current_dev = NULL; /* Failed to init the dev. */
3584         mutex_unlock(&wl->mutex);
3585         if (err)
3586                 b43legacyerr(wl, "Controller restart FAILED\n");
3587         else
3588                 b43legacyinfo(wl, "Controller restarted\n");
3589 }
3590
3591 static int b43legacy_setup_modes(struct b43legacy_wldev *dev,
3592                                  int have_bphy,
3593                                  int have_gphy)
3594 {
3595         struct ieee80211_hw *hw = dev->wl->hw;
3596         struct b43legacy_phy *phy = &dev->phy;
3597
3598         phy->possible_phymodes = 0;
3599         if (have_bphy) {
3600                 hw->wiphy->bands[IEEE80211_BAND_2GHZ] =
3601                         &b43legacy_band_2GHz_BPHY;
3602                 phy->possible_phymodes |= B43legacy_PHYMODE_B;
3603         }
3604
3605         if (have_gphy) {
3606                 hw->wiphy->bands[IEEE80211_BAND_2GHZ] =
3607                         &b43legacy_band_2GHz_GPHY;
3608                 phy->possible_phymodes |= B43legacy_PHYMODE_G;
3609         }
3610
3611         return 0;
3612 }
3613
3614 static void b43legacy_wireless_core_detach(struct b43legacy_wldev *dev)
3615 {
3616         /* We release firmware that late to not be required to re-request
3617          * is all the time when we reinit the core. */
3618         b43legacy_release_firmware(dev);
3619 }
3620
3621 static int b43legacy_wireless_core_attach(struct b43legacy_wldev *dev)
3622 {
3623         struct b43legacy_wl *wl = dev->wl;
3624         struct ssb_bus *bus = dev->dev->bus;
3625         struct pci_dev *pdev = (bus->bustype == SSB_BUSTYPE_PCI) ? bus->host_pci : NULL;
3626         int err;
3627         int have_bphy = 0;
3628         int have_gphy = 0;
3629         u32 tmp;
3630
3631         /* Do NOT do any device initialization here.
3632          * Do it in wireless_core_init() instead.
3633          * This function is for gathering basic information about the HW, only.
3634          * Also some structs may be set up here. But most likely you want to
3635          * have that in core_init(), too.
3636          */
3637
3638         err = ssb_bus_powerup(bus, 0);
3639         if (err) {
3640                 b43legacyerr(wl, "Bus powerup failed\n");
3641                 goto out;
3642         }
3643         /* Get the PHY type. */
3644         if (dev->dev->id.revision >= 5) {
3645                 u32 tmshigh;
3646
3647                 tmshigh = ssb_read32(dev->dev, SSB_TMSHIGH);
3648                 have_gphy = !!(tmshigh & B43legacy_TMSHIGH_GPHY);
3649                 if (!have_gphy)
3650                         have_bphy = 1;
3651         } else if (dev->dev->id.revision == 4)
3652                 have_gphy = 1;
3653         else
3654                 have_bphy = 1;
3655
3656         dev->phy.gmode = (have_gphy || have_bphy);
3657         dev->phy.radio_on = true;
3658         tmp = dev->phy.gmode ? B43legacy_TMSLOW_GMODE : 0;
3659         b43legacy_wireless_core_reset(dev, tmp);
3660
3661         err = b43legacy_phy_versioning(dev);
3662         if (err)
3663                 goto err_powerdown;
3664         /* Check if this device supports multiband. */
3665         if (!pdev ||
3666             (pdev->device != 0x4312 &&
3667              pdev->device != 0x4319 &&
3668              pdev->device != 0x4324)) {
3669                 /* No multiband support. */
3670                 have_bphy = 0;
3671                 have_gphy = 0;
3672                 switch (dev->phy.type) {
3673                 case B43legacy_PHYTYPE_B:
3674                         have_bphy = 1;
3675                         break;
3676                 case B43legacy_PHYTYPE_G:
3677                         have_gphy = 1;
3678                         break;
3679                 default:
3680                         B43legacy_BUG_ON(1);
3681                 }
3682         }
3683         dev->phy.gmode = (have_gphy || have_bphy);
3684         tmp = dev->phy.gmode ? B43legacy_TMSLOW_GMODE : 0;
3685         b43legacy_wireless_core_reset(dev, tmp);
3686
3687         err = b43legacy_validate_chipaccess(dev);
3688         if (err)
3689                 goto err_powerdown;
3690         err = b43legacy_setup_modes(dev, have_bphy, have_gphy);
3691         if (err)
3692                 goto err_powerdown;
3693
3694         /* Now set some default "current_dev" */
3695         if (!wl->current_dev)
3696                 wl->current_dev = dev;
3697         INIT_WORK(&dev->restart_work, b43legacy_chip_reset);
3698
3699         b43legacy_radio_turn_off(dev, 1);
3700         b43legacy_switch_analog(dev, 0);
3701         ssb_device_disable(dev->dev, 0);
3702         ssb_bus_may_powerdown(bus);
3703
3704 out:
3705         return err;
3706
3707 err_powerdown:
3708         ssb_bus_may_powerdown(bus);
3709         return err;
3710 }
3711
3712 static void b43legacy_one_core_detach(struct ssb_device *dev)
3713 {
3714         struct b43legacy_wldev *wldev;
3715         struct b43legacy_wl *wl;
3716
3717         /* Do not cancel ieee80211-workqueue based work here.
3718          * See comment in b43legacy_remove(). */
3719
3720         wldev = ssb_get_drvdata(dev);
3721         wl = wldev->wl;
3722         b43legacy_debugfs_remove_device(wldev);
3723         b43legacy_wireless_core_detach(wldev);
3724         list_del(&wldev->list);
3725         wl->nr_devs--;
3726         ssb_set_drvdata(dev, NULL);
3727         kfree(wldev);
3728 }
3729
3730 static int b43legacy_one_core_attach(struct ssb_device *dev,
3731                                      struct b43legacy_wl *wl)
3732 {
3733         struct b43legacy_wldev *wldev;
3734         int err = -ENOMEM;
3735
3736         wldev = kzalloc(sizeof(*wldev), GFP_KERNEL);
3737         if (!wldev)
3738                 goto out;
3739
3740         wldev->dev = dev;
3741         wldev->wl = wl;
3742         b43legacy_set_status(wldev, B43legacy_STAT_UNINIT);
3743         wldev->bad_frames_preempt = modparam_bad_frames_preempt;
3744         tasklet_init(&wldev->isr_tasklet,
3745                      (void (*)(unsigned long))b43legacy_interrupt_tasklet,
3746                      (unsigned long)wldev);
3747         if (modparam_pio)
3748                 wldev->__using_pio = true;
3749         INIT_LIST_HEAD(&wldev->list);
3750
3751         err = b43legacy_wireless_core_attach(wldev);
3752         if (err)
3753                 goto err_kfree_wldev;
3754
3755         list_add(&wldev->list, &wl->devlist);
3756         wl->nr_devs++;
3757         ssb_set_drvdata(dev, wldev);
3758         b43legacy_debugfs_add_device(wldev);
3759 out:
3760         return err;
3761
3762 err_kfree_wldev:
3763         kfree(wldev);
3764         return err;
3765 }
3766
3767 static void b43legacy_sprom_fixup(struct ssb_bus *bus)
3768 {
3769         /* boardflags workarounds */
3770         if (bus->boardinfo.vendor == PCI_VENDOR_ID_APPLE &&
3771             bus->boardinfo.type == 0x4E &&
3772             bus->boardinfo.rev > 0x40)
3773                 bus->sprom.boardflags_lo |= B43legacy_BFL_PACTRL;
3774 }
3775
3776 static void b43legacy_wireless_exit(struct ssb_device *dev,
3777                                   struct b43legacy_wl *wl)
3778 {
3779         struct ieee80211_hw *hw = wl->hw;
3780
3781         ssb_set_devtypedata(dev, NULL);
3782         ieee80211_free_hw(hw);
3783 }
3784
3785 static int b43legacy_wireless_init(struct ssb_device *dev)
3786 {
3787         struct ssb_sprom *sprom = &dev->bus->sprom;
3788         struct ieee80211_hw *hw;
3789         struct b43legacy_wl *wl;
3790         int err = -ENOMEM;
3791         int queue_num;
3792
3793         b43legacy_sprom_fixup(dev->bus);
3794
3795         hw = ieee80211_alloc_hw(sizeof(*wl), &b43legacy_hw_ops);
3796         if (!hw) {
3797                 b43legacyerr(NULL, "Could not allocate ieee80211 device\n");
3798                 goto out;
3799         }
3800
3801         /* fill hw info */
3802         hw->flags = IEEE80211_HW_RX_INCLUDES_FCS |
3803                     IEEE80211_HW_SIGNAL_DBM;
3804         hw->wiphy->interface_modes =
3805                 BIT(NL80211_IFTYPE_AP) |
3806                 BIT(NL80211_IFTYPE_STATION) |
3807                 BIT(NL80211_IFTYPE_WDS) |
3808                 BIT(NL80211_IFTYPE_ADHOC);
3809         hw->queues = 1; /* FIXME: hardware has more queues */
3810         hw->max_rates = 2;
3811         SET_IEEE80211_DEV(hw, dev->dev);
3812         if (is_valid_ether_addr(sprom->et1mac))
3813                 SET_IEEE80211_PERM_ADDR(hw, sprom->et1mac);
3814         else
3815                 SET_IEEE80211_PERM_ADDR(hw, sprom->il0mac);
3816
3817         /* Get and initialize struct b43legacy_wl */
3818         wl = hw_to_b43legacy_wl(hw);
3819         memset(wl, 0, sizeof(*wl));
3820         wl->hw = hw;
3821         spin_lock_init(&wl->irq_lock);
3822         spin_lock_init(&wl->leds_lock);
3823         mutex_init(&wl->mutex);
3824         INIT_LIST_HEAD(&wl->devlist);
3825         INIT_WORK(&wl->beacon_update_trigger, b43legacy_beacon_update_trigger_work);
3826         INIT_WORK(&wl->tx_work, b43legacy_tx_work);
3827
3828         /* Initialize queues and flags. */
3829         for (queue_num = 0; queue_num < B43legacy_QOS_QUEUE_NUM; queue_num++) {
3830                 skb_queue_head_init(&wl->tx_queue[queue_num]);
3831                 wl->tx_queue_stopped[queue_num] = 0;
3832         }
3833
3834         ssb_set_devtypedata(dev, wl);
3835         b43legacyinfo(wl, "Broadcom %04X WLAN found (core revision %u)\n",
3836                       dev->bus->chip_id, dev->id.revision);
3837         err = 0;
3838 out:
3839         return err;
3840 }
3841
3842 static int b43legacy_probe(struct ssb_device *dev,
3843                          const struct ssb_device_id *id)
3844 {
3845         struct b43legacy_wl *wl;
3846         int err;
3847         int first = 0;
3848
3849         wl = ssb_get_devtypedata(dev);
3850         if (!wl) {
3851                 /* Probing the first core - setup common struct b43legacy_wl */
3852                 first = 1;
3853                 err = b43legacy_wireless_init(dev);
3854                 if (err)
3855                         goto out;
3856                 wl = ssb_get_devtypedata(dev);
3857                 B43legacy_WARN_ON(!wl);
3858         }
3859         err = b43legacy_one_core_attach(dev, wl);
3860         if (err)
3861                 goto err_wireless_exit;
3862
3863         if (first) {
3864                 err = ieee80211_register_hw(wl->hw);
3865                 if (err)
3866                         goto err_one_core_detach;
3867         }
3868
3869 out:
3870         return err;
3871
3872 err_one_core_detach:
3873         b43legacy_one_core_detach(dev);
3874 err_wireless_exit:
3875         if (first)
3876                 b43legacy_wireless_exit(dev, wl);
3877         return err;
3878 }
3879
3880 static void b43legacy_remove(struct ssb_device *dev)
3881 {
3882         struct b43legacy_wl *wl = ssb_get_devtypedata(dev);
3883         struct b43legacy_wldev *wldev = ssb_get_drvdata(dev);
3884
3885         /* We must cancel any work here before unregistering from ieee80211,
3886          * as the ieee80211 unreg will destroy the workqueue. */
3887         cancel_work_sync(&wldev->restart_work);
3888
3889         B43legacy_WARN_ON(!wl);
3890         if (wl->current_dev == wldev)
3891                 ieee80211_unregister_hw(wl->hw);
3892
3893         b43legacy_one_core_detach(dev);
3894
3895         if (list_empty(&wl->devlist))
3896                 /* Last core on the chip unregistered.
3897                  * We can destroy common struct b43legacy_wl.
3898                  */
3899                 b43legacy_wireless_exit(dev, wl);
3900 }
3901
3902 /* Perform a hardware reset. This can be called from any context. */
3903 void b43legacy_controller_restart(struct b43legacy_wldev *dev,
3904                                   const char *reason)
3905 {
3906         /* Must avoid requeueing, if we are in shutdown. */
3907         if (b43legacy_status(dev) < B43legacy_STAT_INITIALIZED)
3908                 return;
3909         b43legacyinfo(dev->wl, "Controller RESET (%s) ...\n", reason);
3910         ieee80211_queue_work(dev->wl->hw, &dev->restart_work);
3911 }
3912
3913 #ifdef CONFIG_PM
3914
3915 static int b43legacy_suspend(struct ssb_device *dev, pm_message_t state)
3916 {
3917         struct b43legacy_wldev *wldev = ssb_get_drvdata(dev);
3918         struct b43legacy_wl *wl = wldev->wl;
3919
3920         b43legacydbg(wl, "Suspending...\n");
3921
3922         mutex_lock(&wl->mutex);
3923         wldev->suspend_init_status = b43legacy_status(wldev);
3924         if (wldev->suspend_init_status >= B43legacy_STAT_STARTED)
3925                 b43legacy_wireless_core_stop(wldev);
3926         if (wldev->suspend_init_status >= B43legacy_STAT_INITIALIZED)
3927                 b43legacy_wireless_core_exit(wldev);
3928         mutex_unlock(&wl->mutex);
3929
3930         b43legacydbg(wl, "Device suspended.\n");
3931
3932         return 0;
3933 }
3934
3935 static int b43legacy_resume(struct ssb_device *dev)
3936 {
3937         struct b43legacy_wldev *wldev = ssb_get_drvdata(dev);
3938         struct b43legacy_wl *wl = wldev->wl;
3939         int err = 0;
3940
3941         b43legacydbg(wl, "Resuming...\n");
3942
3943         mutex_lock(&wl->mutex);
3944         if (wldev->suspend_init_status >= B43legacy_STAT_INITIALIZED) {
3945                 err = b43legacy_wireless_core_init(wldev);
3946                 if (err) {
3947                         b43legacyerr(wl, "Resume failed at core init\n");
3948                         goto out;
3949                 }
3950         }
3951         if (wldev->suspend_init_status >= B43legacy_STAT_STARTED) {
3952                 err = b43legacy_wireless_core_start(wldev);
3953                 if (err) {
3954                         b43legacy_wireless_core_exit(wldev);
3955                         b43legacyerr(wl, "Resume failed at core start\n");
3956                         goto out;
3957                 }
3958         }
3959
3960         b43legacydbg(wl, "Device resumed.\n");
3961 out:
3962         mutex_unlock(&wl->mutex);
3963         return err;
3964 }
3965
3966 #else   /* CONFIG_PM */
3967 # define b43legacy_suspend      NULL
3968 # define b43legacy_resume               NULL
3969 #endif  /* CONFIG_PM */
3970
3971 static struct ssb_driver b43legacy_ssb_driver = {
3972         .name           = KBUILD_MODNAME,
3973         .id_table       = b43legacy_ssb_tbl,
3974         .probe          = b43legacy_probe,
3975         .remove         = b43legacy_remove,
3976         .suspend        = b43legacy_suspend,
3977         .resume         = b43legacy_resume,
3978 };
3979
3980 static void b43legacy_print_driverinfo(void)
3981 {
3982         const char *feat_pci = "", *feat_leds = "",
3983                    *feat_pio = "", *feat_dma = "";
3984
3985 #ifdef CONFIG_B43LEGACY_PCI_AUTOSELECT
3986         feat_pci = "P";
3987 #endif
3988 #ifdef CONFIG_B43LEGACY_LEDS
3989         feat_leds = "L";
3990 #endif
3991 #ifdef CONFIG_B43LEGACY_PIO
3992         feat_pio = "I";
3993 #endif
3994 #ifdef CONFIG_B43LEGACY_DMA
3995         feat_dma = "D";
3996 #endif
3997         printk(KERN_INFO "Broadcom 43xx-legacy driver loaded "
3998                "[ Features: %s%s%s%s ]\n",
3999                feat_pci, feat_leds, feat_pio, feat_dma);
4000 }
4001
4002 static int __init b43legacy_init(void)
4003 {
4004         int err;
4005
4006         b43legacy_debugfs_init();
4007
4008         err = ssb_driver_register(&b43legacy_ssb_driver);
4009         if (err)
4010                 goto err_dfs_exit;
4011
4012         b43legacy_print_driverinfo();
4013
4014         return err;
4015
4016 err_dfs_exit:
4017         b43legacy_debugfs_exit();
4018         return err;
4019 }
4020
4021 static void __exit b43legacy_exit(void)
4022 {
4023         ssb_driver_unregister(&b43legacy_ssb_driver);
4024         b43legacy_debugfs_exit();
4025 }
4026
4027 module_init(b43legacy_init)
4028 module_exit(b43legacy_exit)