iwlwifi: changing EEPROM layout handling
[pandora-kernel.git] / drivers / net / wireless / iwlwifi / iwl-eeprom.c
1 /******************************************************************************
2  *
3  * This file is provided under a dual BSD/GPLv2 license.  When using or
4  * redistributing this file, you may do so under either license.
5  *
6  * GPL LICENSE SUMMARY
7  *
8  * Copyright(c) 2008 Intel Corporation. All rights reserved.
9  *
10  * This program is free software; you can redistribute it and/or modify
11  * it under the terms of version 2 of the GNU General Public License as
12  * published by the Free Software Foundation.
13  *
14  * This program is distributed in the hope that it will be useful, but
15  * WITHOUT ANY WARRANTY; without even the implied warranty of
16  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
17  * General Public License for more details.
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20  * along with this program; if not, write to the Free Software
21  * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110,
22  * USA
23  *
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25  * in the file called LICENSE.GPL.
26  *
27  * Contact Information:
28  * Tomas Winkler <tomas.winkler@intel.com>
29  * Intel Corporation, 5200 N.E. Elam Young Parkway, Hillsboro, OR 97124-6497
30  *
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32  *
33  * Copyright(c) 2005 - 2008 Intel Corporation. All rights reserved.
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37  * modification, are permitted provided that the following conditions
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52  * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
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60  * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
61  *****************************************************************************/
62
63
64 #include <linux/kernel.h>
65 #include <linux/module.h>
66 #include <linux/version.h>
67 #include <linux/init.h>
68
69 #include <net/mac80211.h>
70
71 #include "iwl-4965-commands.h"
72 #include "iwl-4965.h"
73 #include "iwl-core.h"
74 #include "iwl-debug.h"
75 #include "iwl-eeprom.h"
76 #include "iwl-io.h"
77
78 /************************** EEPROM BANDS ****************************
79  *
80  * The iwl_eeprom_band definitions below provide the mapping from the
81  * EEPROM contents to the specific channel number supported for each
82  * band.
83  *
84  * For example, iwl_priv->eeprom.band_3_channels[4] from the band_3
85  * definition below maps to physical channel 42 in the 5.2GHz spectrum.
86  * The specific geography and calibration information for that channel
87  * is contained in the eeprom map itself.
88  *
89  * During init, we copy the eeprom information and channel map
90  * information into priv->channel_info_24/52 and priv->channel_map_24/52
91  *
92  * channel_map_24/52 provides the index in the channel_info array for a
93  * given channel.  We have to have two separate maps as there is channel
94  * overlap with the 2.4GHz and 5.2GHz spectrum as seen in band_1 and
95  * band_2
96  *
97  * A value of 0xff stored in the channel_map indicates that the channel
98  * is not supported by the hardware at all.
99  *
100  * A value of 0xfe in the channel_map indicates that the channel is not
101  * valid for Tx with the current hardware.  This means that
102  * while the system can tune and receive on a given channel, it may not
103  * be able to associate or transmit any frames on that
104  * channel.  There is no corresponding channel information for that
105  * entry.
106  *
107  *********************************************************************/
108
109 /* 2.4 GHz */
110 const u8 iwl_eeprom_band_1[14] = {
111         1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14
112 };
113
114 /* 5.2 GHz bands */
115 static const u8 iwl_eeprom_band_2[] = { /* 4915-5080MHz */
116         183, 184, 185, 187, 188, 189, 192, 196, 7, 8, 11, 12, 16
117 };
118
119 static const u8 iwl_eeprom_band_3[] = { /* 5170-5320MHz */
120         34, 36, 38, 40, 42, 44, 46, 48, 52, 56, 60, 64
121 };
122
123 static const u8 iwl_eeprom_band_4[] = { /* 5500-5700MHz */
124         100, 104, 108, 112, 116, 120, 124, 128, 132, 136, 140
125 };
126
127 static const u8 iwl_eeprom_band_5[] = { /* 5725-5825MHz */
128         145, 149, 153, 157, 161, 165
129 };
130
131 static const u8 iwl_eeprom_band_6[] = {       /* 2.4 FAT channel */
132         1, 2, 3, 4, 5, 6, 7
133 };
134
135 static const u8 iwl_eeprom_band_7[] = {       /* 5.2 FAT channel */
136         36, 44, 52, 60, 100, 108, 116, 124, 132, 149, 157
137 };
138
139 /******************************************************************************
140  *
141  * EEPROM related functions
142  *
143 ******************************************************************************/
144
145 int iwlcore_eeprom_verify_signature(struct iwl_priv *priv)
146 {
147         u32 gp = iwl_read32(priv, CSR_EEPROM_GP);
148         if ((gp & CSR_EEPROM_GP_VALID_MSK) == CSR_EEPROM_GP_BAD_SIGNATURE) {
149                 IWL_ERROR("EEPROM not found, EEPROM_GP=0x%08x", gp);
150                 return -ENOENT;
151         }
152         return 0;
153 }
154 EXPORT_SYMBOL(iwlcore_eeprom_verify_signature);
155
156 /*
157  * The device's EEPROM semaphore prevents conflicts between driver and uCode
158  * when accessing the EEPROM; each access is a series of pulses to/from the
159  * EEPROM chip, not a single event, so even reads could conflict if they
160  * weren't arbitrated by the semaphore.
161  */
162 int iwlcore_eeprom_acquire_semaphore(struct iwl_priv *priv)
163 {
164         u16 count;
165         int ret;
166
167         for (count = 0; count < EEPROM_SEM_RETRY_LIMIT; count++) {
168                 /* Request semaphore */
169                 iwl_set_bit(priv, CSR_HW_IF_CONFIG_REG,
170                             CSR_HW_IF_CONFIG_REG_BIT_EEPROM_OWN_SEM);
171
172                 /* See if we got it */
173                 ret = iwl_poll_bit(priv, CSR_HW_IF_CONFIG_REG,
174                                    CSR_HW_IF_CONFIG_REG_BIT_EEPROM_OWN_SEM,
175                                    CSR_HW_IF_CONFIG_REG_BIT_EEPROM_OWN_SEM,
176                                    EEPROM_SEM_TIMEOUT);
177                 if (ret >= 0) {
178                         IWL_DEBUG_IO("Acquired semaphore after %d tries.\n",
179                                 count+1);
180                         return ret;
181                 }
182         }
183
184         return ret;
185 }
186 EXPORT_SYMBOL(iwlcore_eeprom_acquire_semaphore);
187
188 void iwlcore_eeprom_release_semaphore(struct iwl_priv *priv)
189 {
190         iwl_clear_bit(priv, CSR_HW_IF_CONFIG_REG,
191                 CSR_HW_IF_CONFIG_REG_BIT_EEPROM_OWN_SEM);
192
193 }
194 EXPORT_SYMBOL(iwlcore_eeprom_release_semaphore);
195
196 const u8 *iwlcore_eeprom_query_addr(const struct iwl_priv *priv, size_t offset)
197 {
198         BUG_ON(offset >= priv->cfg->eeprom_size);
199         return &priv->eeprom[offset];
200 }
201 EXPORT_SYMBOL(iwlcore_eeprom_query_addr);
202
203 /**
204  * iwl_eeprom_init - read EEPROM contents
205  *
206  * Load the EEPROM contents from adapter into priv->eeprom
207  *
208  * NOTE:  This routine uses the non-debug IO access functions.
209  */
210 int iwl_eeprom_init(struct iwl_priv *priv)
211 {
212         u16 *e;
213         u32 gp = iwl_read32(priv, CSR_EEPROM_GP);
214         u32 r;
215         int sz = priv->cfg->eeprom_size;
216         int ret;
217         int i;
218         u16 addr;
219
220         /* allocate eeprom */
221         priv->eeprom = kzalloc(sz, GFP_KERNEL);
222         if (!priv->eeprom) {
223                 ret = -ENOMEM;
224                 goto alloc_err;
225         }
226         e = (u16 *)priv->eeprom;
227
228         ret = priv->cfg->ops->lib->eeprom_ops.verify_signature(priv);
229         if (ret < 0) {
230                 IWL_ERROR("EEPROM not found, EEPROM_GP=0x%08x", gp);
231                 ret = -ENOENT;
232                 goto err;
233         }
234
235         /* Make sure driver (instead of uCode) is allowed to read EEPROM */
236         ret = priv->cfg->ops->lib->eeprom_ops.acquire_semaphore(priv);
237         if (ret < 0) {
238                 IWL_ERROR("Failed to acquire EEPROM semaphore.\n");
239                 ret = -ENOENT;
240                 goto err;
241         }
242
243         /* eeprom is an array of 16bit values */
244         for (addr = 0; addr < sz; addr += sizeof(u16)) {
245                 _iwl_write32(priv, CSR_EEPROM_REG, addr << 1);
246                 _iwl_clear_bit(priv, CSR_EEPROM_REG, CSR_EEPROM_REG_BIT_CMD);
247
248                 for (i = 0; i < IWL_EEPROM_ACCESS_TIMEOUT;
249                                         i += IWL_EEPROM_ACCESS_DELAY) {
250                         r = _iwl_read_direct32(priv, CSR_EEPROM_REG);
251                         if (r & CSR_EEPROM_REG_READ_VALID_MSK)
252                                 break;
253                         udelay(IWL_EEPROM_ACCESS_DELAY);
254                 }
255
256                 if (!(r & CSR_EEPROM_REG_READ_VALID_MSK)) {
257                         IWL_ERROR("Time out reading EEPROM[%d]", addr);
258                         ret = -ETIMEDOUT;
259                         goto done;
260                 }
261                 e[addr / 2] = le16_to_cpu((__force __le16)(r >> 16));
262         }
263         ret = 0;
264 done:
265         priv->cfg->ops->lib->eeprom_ops.release_semaphore(priv);
266 err:
267         if (ret)
268                 kfree(priv->eeprom);
269 alloc_err:
270         return ret;
271 }
272 EXPORT_SYMBOL(iwl_eeprom_init);
273
274 void iwl_eeprom_free(struct iwl_priv *priv)
275 {
276         if(priv->eeprom)
277                 kfree(priv->eeprom);
278         priv->eeprom = NULL;
279 }
280 EXPORT_SYMBOL(iwl_eeprom_free);
281
282
283 const u8 *iwl_eeprom_query_addr(const struct iwl_priv *priv, size_t offset)
284 {
285         return priv->cfg->ops->lib->eeprom_ops.query_addr(priv, offset);
286 }
287 EXPORT_SYMBOL(iwl_eeprom_query_addr);
288
289 u16 iwl_eeprom_query16(const struct iwl_priv *priv, size_t offset)
290 {
291         return (u16)priv->eeprom[offset] | ((u16)priv->eeprom[offset + 1] << 8);
292 }
293 EXPORT_SYMBOL(iwl_eeprom_query16);
294
295 void iwl_eeprom_get_mac(const struct iwl_priv *priv, u8 *mac)
296 {
297         const u8 *addr = priv->cfg->ops->lib->eeprom_ops.query_addr(priv,
298                                         EEPROM_MAC_ADDRESS);
299         memcpy(mac, addr, ETH_ALEN);
300 }
301 EXPORT_SYMBOL(iwl_eeprom_get_mac);
302
303 static void iwl_init_band_reference(const struct iwl_priv *priv,
304                         int eep_band, int *eeprom_ch_count,
305                         const struct iwl_eeprom_channel **eeprom_ch_info,
306                         const u8 **eeprom_ch_index)
307 {
308         u32 offset = priv->cfg->ops->lib->
309                         eeprom_ops.regulatory_bands[eep_band - 1];
310         switch (eep_band) {
311         case 1:         /* 2.4GHz band */
312                 *eeprom_ch_count = ARRAY_SIZE(iwl_eeprom_band_1);
313                 *eeprom_ch_info = (struct iwl_eeprom_channel *)
314                                 iwl_eeprom_query_addr(priv, offset);
315                 *eeprom_ch_index = iwl_eeprom_band_1;
316                 break;
317         case 2:         /* 4.9GHz band */
318                 *eeprom_ch_count = ARRAY_SIZE(iwl_eeprom_band_2);
319                 *eeprom_ch_info = (struct iwl_eeprom_channel *)
320                                 iwl_eeprom_query_addr(priv, offset);
321                 *eeprom_ch_index = iwl_eeprom_band_2;
322                 break;
323         case 3:         /* 5.2GHz band */
324                 *eeprom_ch_count = ARRAY_SIZE(iwl_eeprom_band_3);
325                 *eeprom_ch_info = (struct iwl_eeprom_channel *)
326                                 iwl_eeprom_query_addr(priv, offset);
327                 *eeprom_ch_index = iwl_eeprom_band_3;
328                 break;
329         case 4:         /* 5.5GHz band */
330                 *eeprom_ch_count = ARRAY_SIZE(iwl_eeprom_band_4);
331                 *eeprom_ch_info = (struct iwl_eeprom_channel *)
332                                 iwl_eeprom_query_addr(priv, offset);
333                 *eeprom_ch_index = iwl_eeprom_band_4;
334                 break;
335         case 5:         /* 5.7GHz band */
336                 *eeprom_ch_count = ARRAY_SIZE(iwl_eeprom_band_5);
337                 *eeprom_ch_info = (struct iwl_eeprom_channel *)
338                                 iwl_eeprom_query_addr(priv, offset);
339                 *eeprom_ch_index = iwl_eeprom_band_5;
340                 break;
341         case 6:         /* 2.4GHz FAT channels */
342                 *eeprom_ch_count = ARRAY_SIZE(iwl_eeprom_band_6);
343                 *eeprom_ch_info = (struct iwl_eeprom_channel *)
344                                 iwl_eeprom_query_addr(priv, offset);
345                 *eeprom_ch_index = iwl_eeprom_band_6;
346                 break;
347         case 7:         /* 5 GHz FAT channels */
348                 *eeprom_ch_count = ARRAY_SIZE(iwl_eeprom_band_7);
349                 *eeprom_ch_info = (struct iwl_eeprom_channel *)
350                                 iwl_eeprom_query_addr(priv, offset);
351                 *eeprom_ch_index = iwl_eeprom_band_7;
352                 break;
353         default:
354                 BUG();
355                 return;
356         }
357 }
358
359 #define CHECK_AND_PRINT(x) ((eeprom_ch->flags & EEPROM_CHANNEL_##x) \
360                             ? # x " " : "")
361
362 /**
363  * iwl4965_set_fat_chan_info - Copy fat channel info into driver's priv.
364  *
365  * Does not set up a command, or touch hardware.
366  */
367 static int iwl4965_set_fat_chan_info(struct iwl_priv *priv,
368                               enum ieee80211_band band, u16 channel,
369                               const struct iwl_eeprom_channel *eeprom_ch,
370                               u8 fat_extension_channel)
371 {
372         struct iwl_channel_info *ch_info;
373
374         ch_info = (struct iwl_channel_info *)
375                         iwl_get_channel_info(priv, band, channel);
376
377         if (!is_channel_valid(ch_info))
378                 return -1;
379
380         IWL_DEBUG_INFO("FAT Ch. %d [%sGHz] %s%s%s%s%s%s(0x%02x"
381                         " %ddBm): Ad-Hoc %ssupported\n",
382                         ch_info->channel,
383                         is_channel_a_band(ch_info) ?
384                         "5.2" : "2.4",
385                         CHECK_AND_PRINT(IBSS),
386                         CHECK_AND_PRINT(ACTIVE),
387                         CHECK_AND_PRINT(RADAR),
388                         CHECK_AND_PRINT(WIDE),
389                         CHECK_AND_PRINT(NARROW),
390                         CHECK_AND_PRINT(DFS),
391                         eeprom_ch->flags,
392                         eeprom_ch->max_power_avg,
393                         ((eeprom_ch->flags & EEPROM_CHANNEL_IBSS)
394                          && !(eeprom_ch->flags & EEPROM_CHANNEL_RADAR)) ?
395                         "" : "not ");
396
397         ch_info->fat_eeprom = *eeprom_ch;
398         ch_info->fat_max_power_avg = eeprom_ch->max_power_avg;
399         ch_info->fat_curr_txpow = eeprom_ch->max_power_avg;
400         ch_info->fat_min_power = 0;
401         ch_info->fat_scan_power = eeprom_ch->max_power_avg;
402         ch_info->fat_flags = eeprom_ch->flags;
403         ch_info->fat_extension_channel = fat_extension_channel;
404
405         return 0;
406 }
407
408 #define CHECK_AND_PRINT_I(x) ((eeprom_ch_info[ch].flags & EEPROM_CHANNEL_##x) \
409                             ? # x " " : "")
410
411 /**
412  * iwl_init_channel_map - Set up driver's info for all possible channels
413  */
414 int iwl_init_channel_map(struct iwl_priv *priv)
415 {
416         int eeprom_ch_count = 0;
417         const u8 *eeprom_ch_index = NULL;
418         const struct iwl_eeprom_channel *eeprom_ch_info = NULL;
419         int band, ch;
420         struct iwl_channel_info *ch_info;
421
422         if (priv->channel_count) {
423                 IWL_DEBUG_INFO("Channel map already initialized.\n");
424                 return 0;
425         }
426
427         if (iwl_eeprom_query16(priv, EEPROM_VERSION) < 0x2f) {
428                 IWL_WARNING("Unsupported EEPROM version: 0x%04X\n",
429                             iwl_eeprom_query16(priv, EEPROM_VERSION));
430                 return -EINVAL;
431         }
432
433         IWL_DEBUG_INFO("Initializing regulatory info from EEPROM\n");
434
435         priv->channel_count =
436             ARRAY_SIZE(iwl_eeprom_band_1) +
437             ARRAY_SIZE(iwl_eeprom_band_2) +
438             ARRAY_SIZE(iwl_eeprom_band_3) +
439             ARRAY_SIZE(iwl_eeprom_band_4) +
440             ARRAY_SIZE(iwl_eeprom_band_5);
441
442         IWL_DEBUG_INFO("Parsing data for %d channels.\n", priv->channel_count);
443
444         priv->channel_info = kzalloc(sizeof(struct iwl_channel_info) *
445                                      priv->channel_count, GFP_KERNEL);
446         if (!priv->channel_info) {
447                 IWL_ERROR("Could not allocate channel_info\n");
448                 priv->channel_count = 0;
449                 return -ENOMEM;
450         }
451
452         ch_info = priv->channel_info;
453
454         /* Loop through the 5 EEPROM bands adding them in order to the
455          * channel map we maintain (that contains additional information than
456          * what just in the EEPROM) */
457         for (band = 1; band <= 5; band++) {
458
459                 iwl_init_band_reference(priv, band, &eeprom_ch_count,
460                                         &eeprom_ch_info, &eeprom_ch_index);
461
462                 /* Loop through each band adding each of the channels */
463                 for (ch = 0; ch < eeprom_ch_count; ch++) {
464                         ch_info->channel = eeprom_ch_index[ch];
465                         ch_info->band = (band == 1) ? IEEE80211_BAND_2GHZ :
466                             IEEE80211_BAND_5GHZ;
467
468                         /* permanently store EEPROM's channel regulatory flags
469                          *   and max power in channel info database. */
470                         ch_info->eeprom = eeprom_ch_info[ch];
471
472                         /* Copy the run-time flags so they are there even on
473                          * invalid channels */
474                         ch_info->flags = eeprom_ch_info[ch].flags;
475
476                         if (!(is_channel_valid(ch_info))) {
477                                 IWL_DEBUG_INFO("Ch. %d Flags %x [%sGHz] - "
478                                                "No traffic\n",
479                                                ch_info->channel,
480                                                ch_info->flags,
481                                                is_channel_a_band(ch_info) ?
482                                                "5.2" : "2.4");
483                                 ch_info++;
484                                 continue;
485                         }
486
487                         /* Initialize regulatory-based run-time data */
488                         ch_info->max_power_avg = ch_info->curr_txpow =
489                             eeprom_ch_info[ch].max_power_avg;
490                         ch_info->scan_power = eeprom_ch_info[ch].max_power_avg;
491                         ch_info->min_power = 0;
492
493                         IWL_DEBUG_INFO("Ch. %d [%sGHz] %s%s%s%s%s%s%s(0x%02x"
494                                        " %ddBm): Ad-Hoc %ssupported\n",
495                                        ch_info->channel,
496                                        is_channel_a_band(ch_info) ?
497                                        "5.2" : "2.4",
498                                        CHECK_AND_PRINT_I(VALID),
499                                        CHECK_AND_PRINT_I(IBSS),
500                                        CHECK_AND_PRINT_I(ACTIVE),
501                                        CHECK_AND_PRINT_I(RADAR),
502                                        CHECK_AND_PRINT_I(WIDE),
503                                        CHECK_AND_PRINT_I(NARROW),
504                                        CHECK_AND_PRINT_I(DFS),
505                                        eeprom_ch_info[ch].flags,
506                                        eeprom_ch_info[ch].max_power_avg,
507                                        ((eeprom_ch_info[ch].
508                                          flags & EEPROM_CHANNEL_IBSS)
509                                         && !(eeprom_ch_info[ch].
510                                              flags & EEPROM_CHANNEL_RADAR))
511                                        ? "" : "not ");
512
513                         /* Set the user_txpower_limit to the highest power
514                          * supported by any channel */
515                         if (eeprom_ch_info[ch].max_power_avg >
516                             priv->user_txpower_limit)
517                                 priv->user_txpower_limit =
518                                     eeprom_ch_info[ch].max_power_avg;
519
520                         ch_info++;
521                 }
522         }
523
524         /* Two additional EEPROM bands for 2.4 and 5 GHz FAT channels */
525         for (band = 6; band <= 7; band++) {
526                 enum ieee80211_band ieeeband;
527                 u8 fat_extension_chan;
528
529                 iwl_init_band_reference(priv, band, &eeprom_ch_count,
530                                         &eeprom_ch_info, &eeprom_ch_index);
531
532                 /* EEPROM band 6 is 2.4, band 7 is 5 GHz */
533                 ieeeband =
534                         (band == 6) ? IEEE80211_BAND_2GHZ : IEEE80211_BAND_5GHZ;
535
536                 /* Loop through each band adding each of the channels */
537                 for (ch = 0; ch < eeprom_ch_count; ch++) {
538
539                         if ((band == 6) &&
540                             ((eeprom_ch_index[ch] == 5) ||
541                             (eeprom_ch_index[ch] == 6) ||
542                             (eeprom_ch_index[ch] == 7)))
543                                fat_extension_chan = HT_IE_EXT_CHANNEL_MAX;
544                         else
545                                 fat_extension_chan = HT_IE_EXT_CHANNEL_ABOVE;
546
547                         /* Set up driver's info for lower half */
548                         iwl4965_set_fat_chan_info(priv, ieeeband,
549                                                   eeprom_ch_index[ch],
550                                                   &(eeprom_ch_info[ch]),
551                                                   fat_extension_chan);
552
553                         /* Set up driver's info for upper half */
554                         iwl4965_set_fat_chan_info(priv, ieeeband,
555                                                   (eeprom_ch_index[ch] + 4),
556                                                   &(eeprom_ch_info[ch]),
557                                                   HT_IE_EXT_CHANNEL_BELOW);
558                 }
559         }
560
561         return 0;
562 }
563 EXPORT_SYMBOL(iwl_init_channel_map);
564
565 /*
566  * iwl_free_channel_map - undo allocations in iwl4965_init_channel_map
567  */
568 void iwl_free_channel_map(struct iwl_priv *priv)
569 {
570         kfree(priv->channel_info);
571         priv->channel_count = 0;
572 }
573 EXPORT_SYMBOL(iwl_free_channel_map);
574
575 /**
576  * iwl_get_channel_info - Find driver's private channel info
577  *
578  * Based on band and channel number.
579  */
580 const struct iwl_channel_info *iwl_get_channel_info(
581                 const struct iwl_priv *priv,
582                 enum ieee80211_band band, u16 channel)
583 {
584         int i;
585
586         switch (band) {
587         case IEEE80211_BAND_5GHZ:
588                 for (i = 14; i < priv->channel_count; i++) {
589                         if (priv->channel_info[i].channel == channel)
590                                 return &priv->channel_info[i];
591                 }
592                 break;
593         case IEEE80211_BAND_2GHZ:
594                 if (channel >= 1 && channel <= 14)
595                         return &priv->channel_info[channel - 1];
596                 break;
597         default:
598                 BUG();
599         }
600
601         return NULL;
602 }
603 EXPORT_SYMBOL(iwl_get_channel_info);
604