blob: 99476bd6663a4df4e2b14070260717eaf454a82c [file] [log] [blame]
Johannes Bergb1e1adf2013-01-24 14:14:22 +01001/******************************************************************************
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 *
Emmanuel Grumbach51368bf2013-12-30 13:15:54 +02008 * Copyright(c) 2008 - 2014 Intel Corporation. All rights reserved.
Johannes Berg8b4139d2014-07-24 14:05:26 +02009 * Copyright(c) 2013 - 2014 Intel Mobile Communications GmbH
Johannes Bergb1e1adf2013-01-24 14:14:22 +010010 *
11 * This program is free software; you can redistribute it and/or modify
12 * it under the terms of version 2 of the GNU General Public License as
13 * published by the Free Software Foundation.
14 *
15 * This program is distributed in the hope that it will be useful, but
16 * WITHOUT ANY WARRANTY; without even the implied warranty of
17 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
18 * General Public License for more details.
19 *
20 * You should have received a copy of the GNU General Public License
21 * along with this program; if not, write to the Free Software
22 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110,
23 * USA
24 *
25 * The full GNU General Public License is included in this distribution
Emmanuel Grumbach410dc5a2013-02-18 09:22:28 +020026 * in the file called COPYING.
Johannes Bergb1e1adf2013-01-24 14:14:22 +010027 *
28 * Contact Information:
29 * Intel Linux Wireless <ilw@linux.intel.com>
30 * Intel Corporation, 5200 N.E. Elam Young Parkway, Hillsboro, OR 97124-6497
31 *
32 * BSD LICENSE
33 *
Emmanuel Grumbach51368bf2013-12-30 13:15:54 +020034 * Copyright(c) 2005 - 2014 Intel Corporation. All rights reserved.
Johannes Berg8b4139d2014-07-24 14:05:26 +020035 * Copyright(c) 2013 - 2014 Intel Mobile Communications GmbH
Johannes Bergb1e1adf2013-01-24 14:14:22 +010036 * All rights reserved.
37 *
38 * Redistribution and use in source and binary forms, with or without
39 * modification, are permitted provided that the following conditions
40 * are met:
41 *
42 * * Redistributions of source code must retain the above copyright
43 * notice, this list of conditions and the following disclaimer.
44 * * Redistributions in binary form must reproduce the above copyright
45 * notice, this list of conditions and the following disclaimer in
46 * the documentation and/or other materials provided with the
47 * distribution.
48 * * Neither the name Intel Corporation nor the names of its
49 * contributors may be used to endorse or promote products derived
50 * from this software without specific prior written permission.
51 *
52 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
53 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
54 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
55 * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
56 * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
57 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
58 * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
59 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
60 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
61 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
62 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
63 *****************************************************************************/
64#include <linux/types.h>
65#include <linux/slab.h>
66#include <linux/export.h>
Eran Harary9f32e012014-04-28 15:22:40 +030067#include <linux/etherdevice.h>
Eran Harary1e0b3932014-06-11 11:37:09 +030068#include <linux/pci.h>
Johannes Berg48e29342013-03-01 00:13:33 +010069#include "iwl-drv.h"
Johannes Bergb1e1adf2013-01-24 14:14:22 +010070#include "iwl-modparams.h"
71#include "iwl-nvm-parse.h"
72
73/* NVM offsets (in words) definitions */
74enum wkp_nvm_offsets {
75 /* NVM HW-Section offset (in words) definitions */
76 HW_ADDR = 0x15,
77
Eran Harary77db0a32014-02-04 14:21:38 +020078 /* NVM SW-Section offset (in words) definitions */
Johannes Bergb1e1adf2013-01-24 14:14:22 +010079 NVM_SW_SECTION = 0x1C0,
80 NVM_VERSION = 0,
81 RADIO_CFG = 1,
82 SKU = 2,
83 N_HW_ADDRS = 3,
84 NVM_CHANNELS = 0x1E0 - NVM_SW_SECTION,
85
Eran Harary77db0a32014-02-04 14:21:38 +020086 /* NVM calibration section offset (in words) definitions */
Johannes Bergb1e1adf2013-01-24 14:14:22 +010087 NVM_CALIB_SECTION = 0x2B8,
88 XTAL_CALIB = 0x316 - NVM_CALIB_SECTION
89};
90
Eran Harary77db0a32014-02-04 14:21:38 +020091enum family_8000_nvm_offsets {
92 /* NVM HW-Section offset (in words) definitions */
Eran Harary1e0b3932014-06-11 11:37:09 +030093 HW_ADDR0_WFPM_FAMILY_8000 = 0x12,
94 HW_ADDR1_WFPM_FAMILY_8000 = 0x16,
95 HW_ADDR0_PCIE_FAMILY_8000 = 0x8A,
96 HW_ADDR1_PCIE_FAMILY_8000 = 0x8E,
Eran Harary77db0a32014-02-04 14:21:38 +020097 MAC_ADDRESS_OVERRIDE_FAMILY_8000 = 1,
98
99 /* NVM SW-Section offset (in words) definitions */
100 NVM_SW_SECTION_FAMILY_8000 = 0x1C0,
101 NVM_VERSION_FAMILY_8000 = 0,
102 RADIO_CFG_FAMILY_8000 = 2,
103 SKU_FAMILY_8000 = 4,
104 N_HW_ADDRS_FAMILY_8000 = 5,
105
106 /* NVM REGULATORY -Section offset (in words) definitions */
107 NVM_CHANNELS_FAMILY_8000 = 0,
108
109 /* NVM calibration section offset (in words) definitions */
110 NVM_CALIB_SECTION_FAMILY_8000 = 0x2B8,
111 XTAL_CALIB_FAMILY_8000 = 0x316 - NVM_CALIB_SECTION_FAMILY_8000
112};
113
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100114/* SKU Capabilities (actual values from NVM definition) */
115enum nvm_sku_bits {
116 NVM_SKU_CAP_BAND_24GHZ = BIT(0),
117 NVM_SKU_CAP_BAND_52GHZ = BIT(1),
118 NVM_SKU_CAP_11N_ENABLE = BIT(2),
Johannes Bergbfc824b2013-05-06 16:06:51 +0200119 NVM_SKU_CAP_11AC_ENABLE = BIT(3),
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100120};
121
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100122/*
123 * These are the channel numbers in the order that they are stored in the NVM
124 */
125static const u8 iwl_nvm_channels[] = {
126 /* 2.4 GHz */
127 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14,
128 /* 5 GHz */
129 36, 40, 44 , 48, 52, 56, 60, 64,
130 100, 104, 108, 112, 116, 120, 124, 128, 132, 136, 140, 144,
131 149, 153, 157, 161, 165
132};
133
Eran Harary77db0a32014-02-04 14:21:38 +0200134static const u8 iwl_nvm_channels_family_8000[] = {
135 /* 2.4 GHz */
Eran Harary9b1c9a62014-05-07 08:22:41 +0300136 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14,
Eran Harary77db0a32014-02-04 14:21:38 +0200137 /* 5 GHz */
138 36, 40, 44, 48, 52, 56, 60, 64, 68, 72, 76, 80, 84, 88, 92,
139 96, 100, 104, 108, 112, 116, 120, 124, 128, 132, 136, 140, 144,
140 149, 153, 157, 161, 165, 169, 173, 177, 181
141};
142
Eran Harary749f1fe2014-03-06 09:25:30 +0200143#define IWL_NUM_CHANNELS ARRAY_SIZE(iwl_nvm_channels)
Eran Harary77db0a32014-02-04 14:21:38 +0200144#define IWL_NUM_CHANNELS_FAMILY_8000 ARRAY_SIZE(iwl_nvm_channels_family_8000)
Eran Harary749f1fe2014-03-06 09:25:30 +0200145#define NUM_2GHZ_CHANNELS 14
Eran Harary9b1c9a62014-05-07 08:22:41 +0300146#define NUM_2GHZ_CHANNELS_FAMILY_8000 14
Eran Harary749f1fe2014-03-06 09:25:30 +0200147#define FIRST_2GHZ_HT_MINUS 5
148#define LAST_2GHZ_HT_PLUS 9
149#define LAST_5GHZ_HT 161
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100150
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100151/* rate data (static) */
152static struct ieee80211_rate iwl_cfg80211_rates[] = {
153 { .bitrate = 1 * 10, .hw_value = 0, .hw_value_short = 0, },
154 { .bitrate = 2 * 10, .hw_value = 1, .hw_value_short = 1,
155 .flags = IEEE80211_RATE_SHORT_PREAMBLE, },
156 { .bitrate = 5.5 * 10, .hw_value = 2, .hw_value_short = 2,
157 .flags = IEEE80211_RATE_SHORT_PREAMBLE, },
158 { .bitrate = 11 * 10, .hw_value = 3, .hw_value_short = 3,
159 .flags = IEEE80211_RATE_SHORT_PREAMBLE, },
160 { .bitrate = 6 * 10, .hw_value = 4, .hw_value_short = 4, },
161 { .bitrate = 9 * 10, .hw_value = 5, .hw_value_short = 5, },
162 { .bitrate = 12 * 10, .hw_value = 6, .hw_value_short = 6, },
163 { .bitrate = 18 * 10, .hw_value = 7, .hw_value_short = 7, },
164 { .bitrate = 24 * 10, .hw_value = 8, .hw_value_short = 8, },
165 { .bitrate = 36 * 10, .hw_value = 9, .hw_value_short = 9, },
166 { .bitrate = 48 * 10, .hw_value = 10, .hw_value_short = 10, },
167 { .bitrate = 54 * 10, .hw_value = 11, .hw_value_short = 11, },
168};
169#define RATES_24_OFFS 0
170#define N_RATES_24 ARRAY_SIZE(iwl_cfg80211_rates)
171#define RATES_52_OFFS 4
172#define N_RATES_52 (N_RATES_24 - RATES_52_OFFS)
173
174/**
175 * enum iwl_nvm_channel_flags - channel flags in NVM
176 * @NVM_CHANNEL_VALID: channel is usable for this SKU/geo
177 * @NVM_CHANNEL_IBSS: usable as an IBSS channel
178 * @NVM_CHANNEL_ACTIVE: active scanning allowed
179 * @NVM_CHANNEL_RADAR: radar detection required
David Spinadel9ee6dac2013-05-29 11:37:28 +0300180 * @NVM_CHANNEL_INDOOR_ONLY: only indoor use is allowed
181 * @NVM_CHANNEL_GO_CONCURRENT: GO operation is allowed when connected to BSS
182 * on same channel on 2.4 or same UNII band on 5.2
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100183 * @NVM_CHANNEL_WIDE: 20 MHz channel okay (?)
184 * @NVM_CHANNEL_40MHZ: 40 MHz channel okay (?)
Eytan Lifshitz33158fe2013-02-20 11:01:13 +0200185 * @NVM_CHANNEL_80MHZ: 80 MHz channel okay (?)
186 * @NVM_CHANNEL_160MHZ: 160 MHz channel okay (?)
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100187 */
188enum iwl_nvm_channel_flags {
189 NVM_CHANNEL_VALID = BIT(0),
190 NVM_CHANNEL_IBSS = BIT(1),
191 NVM_CHANNEL_ACTIVE = BIT(3),
192 NVM_CHANNEL_RADAR = BIT(4),
David Spinadel9ee6dac2013-05-29 11:37:28 +0300193 NVM_CHANNEL_INDOOR_ONLY = BIT(5),
194 NVM_CHANNEL_GO_CONCURRENT = BIT(6),
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100195 NVM_CHANNEL_WIDE = BIT(8),
196 NVM_CHANNEL_40MHZ = BIT(9),
Eytan Lifshitz33158fe2013-02-20 11:01:13 +0200197 NVM_CHANNEL_80MHZ = BIT(10),
198 NVM_CHANNEL_160MHZ = BIT(11),
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100199};
200
201#define CHECK_AND_PRINT_I(x) \
202 ((ch_flags & NVM_CHANNEL_##x) ? # x " " : "")
203
Arik Nemtsov770ceda2014-03-23 16:18:40 +0200204static u32 iwl_get_channel_flags(u8 ch_num, int ch_idx, bool is_5ghz,
205 u16 nvm_flags)
206{
207 u32 flags = IEEE80211_CHAN_NO_HT40;
208
209 if (!is_5ghz && (nvm_flags & NVM_CHANNEL_40MHZ)) {
210 if (ch_num <= LAST_2GHZ_HT_PLUS)
211 flags &= ~IEEE80211_CHAN_NO_HT40PLUS;
212 if (ch_num >= FIRST_2GHZ_HT_MINUS)
213 flags &= ~IEEE80211_CHAN_NO_HT40MINUS;
214 } else if (ch_num <= LAST_5GHZ_HT && (nvm_flags & NVM_CHANNEL_40MHZ)) {
215 if ((ch_idx - NUM_2GHZ_CHANNELS) % 2 == 0)
216 flags &= ~IEEE80211_CHAN_NO_HT40PLUS;
217 else
218 flags &= ~IEEE80211_CHAN_NO_HT40MINUS;
219 }
220 if (!(nvm_flags & NVM_CHANNEL_80MHZ))
221 flags |= IEEE80211_CHAN_NO_80MHZ;
222 if (!(nvm_flags & NVM_CHANNEL_160MHZ))
223 flags |= IEEE80211_CHAN_NO_160MHZ;
224
225 if (!(nvm_flags & NVM_CHANNEL_IBSS))
226 flags |= IEEE80211_CHAN_NO_IR;
227
228 if (!(nvm_flags & NVM_CHANNEL_ACTIVE))
229 flags |= IEEE80211_CHAN_NO_IR;
230
231 if (nvm_flags & NVM_CHANNEL_RADAR)
232 flags |= IEEE80211_CHAN_RADAR;
233
234 if (nvm_flags & NVM_CHANNEL_INDOOR_ONLY)
235 flags |= IEEE80211_CHAN_INDOOR_ONLY;
236
237 /* Set the GO concurrent flag only in case that NO_IR is set.
238 * Otherwise it is meaningless
239 */
240 if ((nvm_flags & NVM_CHANNEL_GO_CONCURRENT) &&
241 (flags & IEEE80211_CHAN_NO_IR))
242 flags |= IEEE80211_CHAN_GO_CONCURRENT;
243
244 return flags;
245}
246
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100247static int iwl_init_channel_map(struct device *dev, const struct iwl_cfg *cfg,
248 struct iwl_nvm_data *data,
Arik Nemtsov770ceda2014-03-23 16:18:40 +0200249 const __le16 * const nvm_ch_flags,
250 bool lar_supported)
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100251{
252 int ch_idx;
253 int n_channels = 0;
254 struct ieee80211_channel *channel;
255 u16 ch_flags;
256 bool is_5ghz;
Eran Harary749f1fe2014-03-06 09:25:30 +0200257 int num_of_ch, num_2ghz_channels;
Eran Harary77db0a32014-02-04 14:21:38 +0200258 const u8 *nvm_chan;
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100259
Eran Harary77db0a32014-02-04 14:21:38 +0200260 if (cfg->device_family != IWL_DEVICE_FAMILY_8000) {
261 num_of_ch = IWL_NUM_CHANNELS;
262 nvm_chan = &iwl_nvm_channels[0];
Eran Harary749f1fe2014-03-06 09:25:30 +0200263 num_2ghz_channels = NUM_2GHZ_CHANNELS;
Eran Harary77db0a32014-02-04 14:21:38 +0200264 } else {
265 num_of_ch = IWL_NUM_CHANNELS_FAMILY_8000;
266 nvm_chan = &iwl_nvm_channels_family_8000[0];
Eran Harary749f1fe2014-03-06 09:25:30 +0200267 num_2ghz_channels = NUM_2GHZ_CHANNELS_FAMILY_8000;
Eran Harary77db0a32014-02-04 14:21:38 +0200268 }
269
270 for (ch_idx = 0; ch_idx < num_of_ch; ch_idx++) {
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100271 ch_flags = __le16_to_cpup(nvm_ch_flags + ch_idx);
Emmanuel Grumbachc5128652013-12-05 22:42:55 +0200272
Eran Harary749f1fe2014-03-06 09:25:30 +0200273 if (ch_idx >= num_2ghz_channels &&
Emmanuel Grumbachc5128652013-12-05 22:42:55 +0200274 !data->sku_cap_band_52GHz_enable)
275 ch_flags &= ~NVM_CHANNEL_VALID;
276
Arik Nemtsov770ceda2014-03-23 16:18:40 +0200277 if (!lar_supported && !(ch_flags & NVM_CHANNEL_VALID)) {
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100278 IWL_DEBUG_EEPROM(dev,
279 "Ch. %d Flags %x [%sGHz] - No traffic\n",
Eran Harary77db0a32014-02-04 14:21:38 +0200280 nvm_chan[ch_idx],
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100281 ch_flags,
Eran Harary749f1fe2014-03-06 09:25:30 +0200282 (ch_idx >= num_2ghz_channels) ?
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100283 "5.2" : "2.4");
284 continue;
285 }
286
287 channel = &data->channels[n_channels];
288 n_channels++;
289
Eran Harary77db0a32014-02-04 14:21:38 +0200290 channel->hw_value = nvm_chan[ch_idx];
Eran Harary749f1fe2014-03-06 09:25:30 +0200291 channel->band = (ch_idx < num_2ghz_channels) ?
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100292 IEEE80211_BAND_2GHZ : IEEE80211_BAND_5GHZ;
293 channel->center_freq =
294 ieee80211_channel_to_frequency(
295 channel->hw_value, channel->band);
296
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100297 /* Initialize regulatory-based run-time data */
298
Matti Gottlieb88f2fd72013-07-09 15:25:46 +0300299 /*
300 * Default value - highest tx power value. max_power
301 * is not used in mvm, and is used for backwards compatibility
302 */
Eliad Peller22d059a2014-08-26 11:23:11 +0300303 channel->max_power = IWL_DEFAULT_MAX_TX_POWER;
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100304 is_5ghz = channel->band == IEEE80211_BAND_5GHZ;
Arik Nemtsov770ceda2014-03-23 16:18:40 +0200305
306 /* don't put limitations in case we're using LAR */
307 if (!lar_supported)
308 channel->flags = iwl_get_channel_flags(nvm_chan[ch_idx],
309 ch_idx, is_5ghz,
310 ch_flags);
311 else
312 channel->flags = 0;
313
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100314 IWL_DEBUG_EEPROM(dev,
David Spinadel9ee6dac2013-05-29 11:37:28 +0300315 "Ch. %d [%sGHz] %s%s%s%s%s%s%s(0x%02x %ddBm): Ad-Hoc %ssupported\n",
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100316 channel->hw_value,
317 is_5ghz ? "5.2" : "2.4",
318 CHECK_AND_PRINT_I(VALID),
319 CHECK_AND_PRINT_I(IBSS),
320 CHECK_AND_PRINT_I(ACTIVE),
321 CHECK_AND_PRINT_I(RADAR),
322 CHECK_AND_PRINT_I(WIDE),
David Spinadel9ee6dac2013-05-29 11:37:28 +0300323 CHECK_AND_PRINT_I(INDOOR_ONLY),
324 CHECK_AND_PRINT_I(GO_CONCURRENT),
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100325 ch_flags,
326 channel->max_power,
327 ((ch_flags & NVM_CHANNEL_IBSS) &&
328 !(ch_flags & NVM_CHANNEL_RADAR))
329 ? "" : "not ");
330 }
331
332 return n_channels;
333}
334
Eytan Lifshitz33158fe2013-02-20 11:01:13 +0200335static void iwl_init_vht_hw_capab(const struct iwl_cfg *cfg,
336 struct iwl_nvm_data *data,
Johannes Berg6ca89f12014-02-12 21:56:26 +0100337 struct ieee80211_sta_vht_cap *vht_cap,
338 u8 tx_chains, u8 rx_chains)
Eytan Lifshitz33158fe2013-02-20 11:01:13 +0200339{
Johannes Berg6ca89f12014-02-12 21:56:26 +0100340 int num_rx_ants = num_of_ant(rx_chains);
341 int num_tx_ants = num_of_ant(tx_chains);
Eran Hararyc064ddf2014-09-30 06:42:06 +0200342 unsigned int max_ampdu_exponent = (cfg->max_vht_ampdu_exponent ?:
343 IEEE80211_VHT_MAX_AMPDU_1024K);
Eyal Shapira48e6de62013-11-03 10:04:08 +0200344
Eytan Lifshitz33158fe2013-02-20 11:01:13 +0200345 vht_cap->vht_supported = true;
346
347 vht_cap->cap = IEEE80211_VHT_CAP_SHORT_GI_80 |
348 IEEE80211_VHT_CAP_RXSTBC_1 |
349 IEEE80211_VHT_CAP_SU_BEAMFORMEE_CAPABLE |
Eyal Shapirae36b7662014-01-06 20:16:48 +0200350 3 << IEEE80211_VHT_CAP_BEAMFORMEE_STS_SHIFT |
Eran Hararyc064ddf2014-09-30 06:42:06 +0200351 max_ampdu_exponent <<
352 IEEE80211_VHT_CAP_MAX_A_MPDU_LENGTH_EXPONENT_SHIFT;
Eytan Lifshitz33158fe2013-02-20 11:01:13 +0200353
Eyal Shapiraa3576ff2014-08-09 10:57:59 +0300354 if (cfg->ht_params->ldpc)
355 vht_cap->cap |= IEEE80211_VHT_CAP_RXLDPC;
356
Johannes Berg6ca89f12014-02-12 21:56:26 +0100357 if (num_tx_ants > 1)
Eyal Shapira5f7a6f92013-11-12 22:40:40 +0200358 vht_cap->cap |= IEEE80211_VHT_CAP_TXSTBC;
Johannes Berg6ca89f12014-02-12 21:56:26 +0100359 else
360 vht_cap->cap |= IEEE80211_VHT_CAP_TX_ANTENNA_PATTERN;
Eyal Shapira5f7a6f92013-11-12 22:40:40 +0200361
Eytan Lifshitz33158fe2013-02-20 11:01:13 +0200362 if (iwlwifi_mod_params.amsdu_size_8K)
363 vht_cap->cap |= IEEE80211_VHT_CAP_MAX_MPDU_LENGTH_7991;
364
365 vht_cap->vht_mcs.rx_mcs_map =
366 cpu_to_le16(IEEE80211_VHT_MCS_SUPPORT_0_9 << 0 |
367 IEEE80211_VHT_MCS_SUPPORT_0_9 << 2 |
368 IEEE80211_VHT_MCS_NOT_SUPPORTED << 4 |
369 IEEE80211_VHT_MCS_NOT_SUPPORTED << 6 |
370 IEEE80211_VHT_MCS_NOT_SUPPORTED << 8 |
371 IEEE80211_VHT_MCS_NOT_SUPPORTED << 10 |
372 IEEE80211_VHT_MCS_NOT_SUPPORTED << 12 |
373 IEEE80211_VHT_MCS_NOT_SUPPORTED << 14);
374
Johannes Berg6ca89f12014-02-12 21:56:26 +0100375 if (num_rx_ants == 1 || cfg->rx_with_siso_diversity) {
376 vht_cap->cap |= IEEE80211_VHT_CAP_RX_ANTENNA_PATTERN;
Eytan Lifshitz33158fe2013-02-20 11:01:13 +0200377 /* this works because NOT_SUPPORTED == 3 */
378 vht_cap->vht_mcs.rx_mcs_map |=
379 cpu_to_le16(IEEE80211_VHT_MCS_NOT_SUPPORTED << 2);
380 }
381
382 vht_cap->vht_mcs.tx_mcs_map = vht_cap->vht_mcs.rx_mcs_map;
383}
384
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100385static void iwl_init_sbands(struct device *dev, const struct iwl_cfg *cfg,
Eran Harary77db0a32014-02-04 14:21:38 +0200386 struct iwl_nvm_data *data,
387 const __le16 *ch_section, bool enable_vht,
Arik Nemtsov770ceda2014-03-23 16:18:40 +0200388 u8 tx_chains, u8 rx_chains, bool lar_supported)
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100389{
Eran Harary77db0a32014-02-04 14:21:38 +0200390 int n_channels;
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100391 int n_used = 0;
392 struct ieee80211_supported_band *sband;
393
Eran Harary77db0a32014-02-04 14:21:38 +0200394 if (cfg->device_family != IWL_DEVICE_FAMILY_8000)
395 n_channels = iwl_init_channel_map(
396 dev, cfg, data,
Arik Nemtsov770ceda2014-03-23 16:18:40 +0200397 &ch_section[NVM_CHANNELS], lar_supported);
Eran Harary77db0a32014-02-04 14:21:38 +0200398 else
399 n_channels = iwl_init_channel_map(
400 dev, cfg, data,
Arik Nemtsov770ceda2014-03-23 16:18:40 +0200401 &ch_section[NVM_CHANNELS_FAMILY_8000],
402 lar_supported);
Eran Harary77db0a32014-02-04 14:21:38 +0200403
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100404 sband = &data->bands[IEEE80211_BAND_2GHZ];
405 sband->band = IEEE80211_BAND_2GHZ;
406 sband->bitrates = &iwl_cfg80211_rates[RATES_24_OFFS];
407 sband->n_bitrates = N_RATES_24;
408 n_used += iwl_init_sband_channels(data, sband, n_channels,
409 IEEE80211_BAND_2GHZ);
Emmanuel Grumbach9ce4fa72013-05-22 13:16:23 +0300410 iwl_init_ht_hw_capab(cfg, data, &sband->ht_cap, IEEE80211_BAND_2GHZ,
411 tx_chains, rx_chains);
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100412
413 sband = &data->bands[IEEE80211_BAND_5GHZ];
414 sband->band = IEEE80211_BAND_5GHZ;
415 sband->bitrates = &iwl_cfg80211_rates[RATES_52_OFFS];
416 sband->n_bitrates = N_RATES_52;
417 n_used += iwl_init_sband_channels(data, sband, n_channels,
418 IEEE80211_BAND_5GHZ);
Emmanuel Grumbach9ce4fa72013-05-22 13:16:23 +0300419 iwl_init_ht_hw_capab(cfg, data, &sband->ht_cap, IEEE80211_BAND_5GHZ,
420 tx_chains, rx_chains);
Johannes Bergbfc824b2013-05-06 16:06:51 +0200421 if (enable_vht)
Johannes Berg6ca89f12014-02-12 21:56:26 +0100422 iwl_init_vht_hw_capab(cfg, data, &sband->vht_cap,
423 tx_chains, rx_chains);
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100424
425 if (n_channels != n_used)
426 IWL_ERR_DEV(dev, "NVM: used only %d of %d channels\n",
427 n_used, n_channels);
428}
429
Eran Harary77db0a32014-02-04 14:21:38 +0200430static int iwl_get_sku(const struct iwl_cfg *cfg,
431 const __le16 *nvm_sw)
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100432{
Eran Harary77db0a32014-02-04 14:21:38 +0200433 if (cfg->device_family != IWL_DEVICE_FAMILY_8000)
434 return le16_to_cpup(nvm_sw + SKU);
435 else
436 return le32_to_cpup((__le32 *)(nvm_sw + SKU_FAMILY_8000));
437}
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100438
Eran Harary77db0a32014-02-04 14:21:38 +0200439static int iwl_get_nvm_version(const struct iwl_cfg *cfg,
440 const __le16 *nvm_sw)
441{
442 if (cfg->device_family != IWL_DEVICE_FAMILY_8000)
443 return le16_to_cpup(nvm_sw + NVM_VERSION);
444 else
445 return le32_to_cpup((__le32 *)(nvm_sw +
446 NVM_VERSION_FAMILY_8000));
447}
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100448
Eran Harary77db0a32014-02-04 14:21:38 +0200449static int iwl_get_radio_cfg(const struct iwl_cfg *cfg,
450 const __le16 *nvm_sw)
451{
452 if (cfg->device_family != IWL_DEVICE_FAMILY_8000)
453 return le16_to_cpup(nvm_sw + RADIO_CFG);
454 else
455 return le32_to_cpup((__le32 *)(nvm_sw + RADIO_CFG_FAMILY_8000));
456}
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100457
Eran Harary77db0a32014-02-04 14:21:38 +0200458#define N_HW_ADDRS_MASK_FAMILY_8000 0xF
459static int iwl_get_n_hw_addrs(const struct iwl_cfg *cfg,
460 const __le16 *nvm_sw)
461{
462 if (cfg->device_family != IWL_DEVICE_FAMILY_8000)
463 return le16_to_cpup(nvm_sw + N_HW_ADDRS);
464 else
465 return le32_to_cpup((__le32 *)(nvm_sw + N_HW_ADDRS_FAMILY_8000))
466 & N_HW_ADDRS_MASK_FAMILY_8000;
467}
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100468
Eran Harary77db0a32014-02-04 14:21:38 +0200469static void iwl_set_radio_cfg(const struct iwl_cfg *cfg,
470 struct iwl_nvm_data *data,
471 u32 radio_cfg)
472{
473 if (cfg->device_family != IWL_DEVICE_FAMILY_8000) {
474 data->radio_cfg_type = NVM_RF_CFG_TYPE_MSK(radio_cfg);
475 data->radio_cfg_step = NVM_RF_CFG_STEP_MSK(radio_cfg);
476 data->radio_cfg_dash = NVM_RF_CFG_DASH_MSK(radio_cfg);
477 data->radio_cfg_pnum = NVM_RF_CFG_PNUM_MSK(radio_cfg);
Eran Harary77db0a32014-02-04 14:21:38 +0200478 return;
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100479 }
480
Eran Harary77db0a32014-02-04 14:21:38 +0200481 /* set the radio configuration for family 8000 */
482 data->radio_cfg_type = NVM_RF_CFG_TYPE_MSK_FAMILY_8000(radio_cfg);
483 data->radio_cfg_step = NVM_RF_CFG_STEP_MSK_FAMILY_8000(radio_cfg);
484 data->radio_cfg_dash = NVM_RF_CFG_DASH_MSK_FAMILY_8000(radio_cfg);
485 data->radio_cfg_pnum = NVM_RF_CFG_FLAVOR_MSK_FAMILY_8000(radio_cfg);
Moshe Harela0544272014-12-08 21:13:14 +0200486 data->valid_tx_ant = NVM_RF_CFG_TX_ANT_MSK_FAMILY_8000(radio_cfg);
487 data->valid_rx_ant = NVM_RF_CFG_RX_ANT_MSK_FAMILY_8000(radio_cfg);
Eran Harary77db0a32014-02-04 14:21:38 +0200488}
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100489
Eran Harary77db0a32014-02-04 14:21:38 +0200490static void iwl_set_hw_address(const struct iwl_cfg *cfg,
491 struct iwl_nvm_data *data,
492 const __le16 *nvm_sec)
493{
Eran Harary9f32e012014-04-28 15:22:40 +0300494 const u8 *hw_addr = (const u8 *)(nvm_sec + HW_ADDR);
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100495
496 /* The byte order is little endian 16 bit, meaning 214365 */
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100497 data->hw_addr[0] = hw_addr[1];
498 data->hw_addr[1] = hw_addr[0];
499 data->hw_addr[2] = hw_addr[3];
500 data->hw_addr[3] = hw_addr[2];
501 data->hw_addr[4] = hw_addr[5];
502 data->hw_addr[5] = hw_addr[4];
Eran Harary77db0a32014-02-04 14:21:38 +0200503}
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100504
Eran Harary6a68a392014-05-07 11:09:11 +0300505static void iwl_set_hw_address_family_8000(struct device *dev,
506 const struct iwl_cfg *cfg,
Eran Harary9f32e012014-04-28 15:22:40 +0300507 struct iwl_nvm_data *data,
508 const __le16 *mac_override,
509 const __le16 *nvm_hw)
510{
511 const u8 *hw_addr;
512
513 if (mac_override) {
514 hw_addr = (const u8 *)(mac_override +
515 MAC_ADDRESS_OVERRIDE_FAMILY_8000);
516
517 /* The byte order is little endian 16 bit, meaning 214365 */
518 data->hw_addr[0] = hw_addr[1];
519 data->hw_addr[1] = hw_addr[0];
520 data->hw_addr[2] = hw_addr[3];
521 data->hw_addr[3] = hw_addr[2];
522 data->hw_addr[4] = hw_addr[5];
523 data->hw_addr[5] = hw_addr[4];
524
Eran Harary6a68a392014-05-07 11:09:11 +0300525 if (is_valid_ether_addr(data->hw_addr))
Eran Harary9f32e012014-04-28 15:22:40 +0300526 return;
Eran Harary6a68a392014-05-07 11:09:11 +0300527
528 IWL_ERR_DEV(dev,
529 "mac address from nvm override section is not valid\n");
Eran Harary9f32e012014-04-28 15:22:40 +0300530 }
531
Eran Harary6a68a392014-05-07 11:09:11 +0300532 if (nvm_hw) {
Eran Harary1e0b3932014-06-11 11:37:09 +0300533 /* read the MAC address from OTP */
534 if (!dev_is_pci(dev) || (data->nvm_version < 0xE08)) {
535 /* read the mac address from the WFPM location */
536 hw_addr = (const u8 *)(nvm_hw +
537 HW_ADDR0_WFPM_FAMILY_8000);
538 data->hw_addr[0] = hw_addr[3];
539 data->hw_addr[1] = hw_addr[2];
540 data->hw_addr[2] = hw_addr[1];
541 data->hw_addr[3] = hw_addr[0];
Eran Harary9f32e012014-04-28 15:22:40 +0300542
Eran Harary1e0b3932014-06-11 11:37:09 +0300543 hw_addr = (const u8 *)(nvm_hw +
544 HW_ADDR1_WFPM_FAMILY_8000);
545 data->hw_addr[4] = hw_addr[1];
546 data->hw_addr[5] = hw_addr[0];
547 } else if ((data->nvm_version >= 0xE08) &&
548 (data->nvm_version < 0xE0B)) {
549 /* read "reverse order" from the PCIe location */
550 hw_addr = (const u8 *)(nvm_hw +
551 HW_ADDR0_PCIE_FAMILY_8000);
552 data->hw_addr[5] = hw_addr[2];
553 data->hw_addr[4] = hw_addr[1];
554 data->hw_addr[3] = hw_addr[0];
555
556 hw_addr = (const u8 *)(nvm_hw +
557 HW_ADDR1_PCIE_FAMILY_8000);
558 data->hw_addr[2] = hw_addr[3];
559 data->hw_addr[1] = hw_addr[2];
560 data->hw_addr[0] = hw_addr[1];
561 } else {
562 /* read from the PCIe location */
563 hw_addr = (const u8 *)(nvm_hw +
564 HW_ADDR0_PCIE_FAMILY_8000);
565 data->hw_addr[5] = hw_addr[0];
566 data->hw_addr[4] = hw_addr[1];
567 data->hw_addr[3] = hw_addr[2];
568
569 hw_addr = (const u8 *)(nvm_hw +
570 HW_ADDR1_PCIE_FAMILY_8000);
571 data->hw_addr[2] = hw_addr[1];
572 data->hw_addr[1] = hw_addr[2];
573 data->hw_addr[0] = hw_addr[3];
574 }
Eran Hararyca55eb42014-06-29 11:53:06 +0300575 if (!is_valid_ether_addr(data->hw_addr))
576 IWL_ERR_DEV(dev,
577 "mac address from hw section is not valid\n");
Eran Harary1e0b3932014-06-11 11:37:09 +0300578
Eran Harary6a68a392014-05-07 11:09:11 +0300579 return;
580 }
581
582 IWL_ERR_DEV(dev, "mac address is not found\n");
Eran Harary9f32e012014-04-28 15:22:40 +0300583}
584
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100585struct iwl_nvm_data *
586iwl_parse_nvm_data(struct device *dev, const struct iwl_cfg *cfg,
587 const __le16 *nvm_hw, const __le16 *nvm_sw,
Eran Harary77db0a32014-02-04 14:21:38 +0200588 const __le16 *nvm_calib, const __le16 *regulatory,
Arik Nemtsov770ceda2014-03-23 16:18:40 +0200589 const __le16 *mac_override, u8 tx_chains, u8 rx_chains,
590 bool lar_supported)
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100591{
592 struct iwl_nvm_data *data;
Eran Harary77db0a32014-02-04 14:21:38 +0200593 u32 sku;
594 u32 radio_cfg;
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100595
Eran Harary77db0a32014-02-04 14:21:38 +0200596 if (cfg->device_family != IWL_DEVICE_FAMILY_8000)
597 data = kzalloc(sizeof(*data) +
598 sizeof(struct ieee80211_channel) *
599 IWL_NUM_CHANNELS,
600 GFP_KERNEL);
601 else
602 data = kzalloc(sizeof(*data) +
603 sizeof(struct ieee80211_channel) *
604 IWL_NUM_CHANNELS_FAMILY_8000,
605 GFP_KERNEL);
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100606 if (!data)
607 return NULL;
608
Eran Harary77db0a32014-02-04 14:21:38 +0200609 data->nvm_version = iwl_get_nvm_version(cfg, nvm_sw);
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100610
Eran Harary77db0a32014-02-04 14:21:38 +0200611 radio_cfg = iwl_get_radio_cfg(cfg, nvm_sw);
612 iwl_set_radio_cfg(cfg, data, radio_cfg);
Moshe Harela0544272014-12-08 21:13:14 +0200613 if (data->valid_tx_ant)
614 tx_chains &= data->valid_tx_ant;
615 if (data->valid_rx_ant)
616 rx_chains &= data->valid_rx_ant;
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100617
Eran Harary77db0a32014-02-04 14:21:38 +0200618 sku = iwl_get_sku(cfg, nvm_sw);
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100619 data->sku_cap_band_24GHz_enable = sku & NVM_SKU_CAP_BAND_24GHZ;
620 data->sku_cap_band_52GHz_enable = sku & NVM_SKU_CAP_BAND_52GHZ;
621 data->sku_cap_11n_enable = sku & NVM_SKU_CAP_11N_ENABLE;
Eran Harary77db0a32014-02-04 14:21:38 +0200622 data->sku_cap_11ac_enable = sku & NVM_SKU_CAP_11AC_ENABLE;
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100623 if (iwlwifi_mod_params.disable_11n & IWL_DISABLE_HT_ALL)
624 data->sku_cap_11n_enable = false;
625
Eran Harary77db0a32014-02-04 14:21:38 +0200626 data->n_hw_addrs = iwl_get_n_hw_addrs(cfg, nvm_sw);
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100627
Eran Harary77db0a32014-02-04 14:21:38 +0200628 if (cfg->device_family != IWL_DEVICE_FAMILY_8000) {
629 /* Checking for required sections */
630 if (!nvm_calib) {
631 IWL_ERR_DEV(dev,
632 "Can't parse empty Calib NVM sections\n");
Eytan Lifshitz1270c412014-02-18 15:02:29 +0200633 kfree(data);
Eran Harary77db0a32014-02-04 14:21:38 +0200634 return NULL;
635 }
636 /* in family 8000 Xtal calibration values moved to OTP */
637 data->xtal_calib[0] = *(nvm_calib + XTAL_CALIB);
638 data->xtal_calib[1] = *(nvm_calib + XTAL_CALIB + 1);
639 }
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100640
Eran Harary77db0a32014-02-04 14:21:38 +0200641 if (cfg->device_family != IWL_DEVICE_FAMILY_8000) {
642 iwl_set_hw_address(cfg, data, nvm_hw);
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100643
Eran Harary77db0a32014-02-04 14:21:38 +0200644 iwl_init_sbands(dev, cfg, data, nvm_sw,
645 sku & NVM_SKU_CAP_11AC_ENABLE, tx_chains,
Arik Nemtsov770ceda2014-03-23 16:18:40 +0200646 rx_chains, lar_supported);
Eran Harary77db0a32014-02-04 14:21:38 +0200647 } else {
648 /* MAC address in family 8000 */
Eran Harary6a68a392014-05-07 11:09:11 +0300649 iwl_set_hw_address_family_8000(dev, cfg, data, mac_override,
650 nvm_hw);
Eran Harary77db0a32014-02-04 14:21:38 +0200651
652 iwl_init_sbands(dev, cfg, data, regulatory,
653 sku & NVM_SKU_CAP_11AC_ENABLE, tx_chains,
Arik Nemtsov770ceda2014-03-23 16:18:40 +0200654 rx_chains, lar_supported);
Eran Harary77db0a32014-02-04 14:21:38 +0200655 }
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100656
Emmanuel Grumbach33b2f682014-01-14 13:48:22 +0200657 data->calib_version = 255;
Johannes Bergb1e1adf2013-01-24 14:14:22 +0100658
659 return data;
660}
Johannes Berg48e29342013-03-01 00:13:33 +0100661IWL_EXPORT_SYMBOL(iwl_parse_nvm_data);
Arik Nemtsovaf45a902014-03-05 12:19:10 +0200662
663static u32 iwl_nvm_get_regdom_bw_flags(const u8 *nvm_chan,
664 int ch_idx, u16 nvm_flags)
665{
666 u32 flags = NL80211_RRF_NO_HT40;
667
668 if (ch_idx < NUM_2GHZ_CHANNELS &&
669 (nvm_flags & NVM_CHANNEL_40MHZ)) {
670 if (nvm_chan[ch_idx] <= LAST_2GHZ_HT_PLUS)
671 flags &= ~NL80211_RRF_NO_HT40PLUS;
672 if (nvm_chan[ch_idx] >= FIRST_2GHZ_HT_MINUS)
673 flags &= ~NL80211_RRF_NO_HT40MINUS;
674 } else if (nvm_chan[ch_idx] <= LAST_5GHZ_HT &&
675 (nvm_flags & NVM_CHANNEL_40MHZ)) {
676 if ((ch_idx - NUM_2GHZ_CHANNELS) % 2 == 0)
677 flags &= ~NL80211_RRF_NO_HT40PLUS;
678 else
679 flags &= ~NL80211_RRF_NO_HT40MINUS;
680 }
681
682 if (!(nvm_flags & NVM_CHANNEL_80MHZ))
683 flags |= NL80211_RRF_NO_80MHZ;
684 if (!(nvm_flags & NVM_CHANNEL_160MHZ))
685 flags |= NL80211_RRF_NO_160MHZ;
686
Arik Nemtsovaf45a902014-03-05 12:19:10 +0200687 if (!(nvm_flags & NVM_CHANNEL_ACTIVE))
688 flags |= NL80211_RRF_NO_IR;
689
690 if (nvm_flags & NVM_CHANNEL_RADAR)
691 flags |= NL80211_RRF_DFS;
692
693 if (nvm_flags & NVM_CHANNEL_INDOOR_ONLY)
694 flags |= NL80211_RRF_NO_OUTDOOR;
695
696 /* Set the GO concurrent flag only in case that NO_IR is set.
697 * Otherwise it is meaningless
698 */
699 if ((nvm_flags & NVM_CHANNEL_GO_CONCURRENT) &&
700 (flags & NL80211_RRF_NO_IR))
701 flags |= NL80211_RRF_GO_CONCURRENT;
702
703 return flags;
704}
705
706struct ieee80211_regdomain *
707iwl_parse_nvm_mcc_info(struct device *dev, int num_of_ch, __le32 *channels,
708 u16 fw_mcc)
709{
710 int ch_idx;
711 u16 ch_flags, prev_ch_flags = 0;
712 const u8 *nvm_chan = iwl_nvm_channels; /* TODO: 8000 series differs */
713 struct ieee80211_regdomain *regd;
714 int size_of_regd;
715 struct ieee80211_reg_rule *rule;
716 enum ieee80211_band band;
717 int center_freq, prev_center_freq = 0;
718 int valid_rules = 0;
719 bool new_rule;
720
721 if (WARN_ON_ONCE(num_of_ch > NL80211_MAX_SUPP_REG_RULES))
722 return ERR_PTR(-EINVAL);
723
724 IWL_DEBUG_DEV(dev, IWL_DL_LAR, "building regdom for %d channels\n",
725 num_of_ch);
726
727 /* build a regdomain rule for every valid channel */
728 size_of_regd =
729 sizeof(struct ieee80211_regdomain) +
730 num_of_ch * sizeof(struct ieee80211_reg_rule);
731
732 regd = kzalloc(size_of_regd, GFP_KERNEL);
733 if (!regd)
734 return ERR_PTR(-ENOMEM);
735
736 for (ch_idx = 0; ch_idx < num_of_ch; ch_idx++) {
737 ch_flags = (u16)__le32_to_cpup(channels + ch_idx);
738 band = (ch_idx < NUM_2GHZ_CHANNELS) ?
739 IEEE80211_BAND_2GHZ : IEEE80211_BAND_5GHZ;
740 center_freq = ieee80211_channel_to_frequency(nvm_chan[ch_idx],
741 band);
742 new_rule = false;
743
744 if (!(ch_flags & NVM_CHANNEL_VALID)) {
745 IWL_DEBUG_DEV(dev, IWL_DL_LAR,
746 "Ch. %d Flags %x [%sGHz] - No traffic\n",
747 nvm_chan[ch_idx],
748 ch_flags,
749 (ch_idx >= NUM_2GHZ_CHANNELS) ?
750 "5.2" : "2.4");
751 continue;
752 }
753
754 /* we can't continue the same rule */
755 if (ch_idx == 0 || prev_ch_flags != ch_flags ||
756 center_freq - prev_center_freq > 20) {
757 valid_rules++;
758 new_rule = true;
759 }
760
761 rule = &regd->reg_rules[valid_rules - 1];
762
763 if (new_rule)
764 rule->freq_range.start_freq_khz =
765 MHZ_TO_KHZ(center_freq - 10);
766
767 rule->freq_range.end_freq_khz = MHZ_TO_KHZ(center_freq + 10);
768
769 /* this doesn't matter - not used by FW */
770 rule->power_rule.max_antenna_gain = DBI_TO_MBI(6);
771 rule->power_rule.max_eirp = DBM_TO_MBM(20);
772
773 rule->flags = iwl_nvm_get_regdom_bw_flags(nvm_chan, ch_idx,
774 ch_flags);
775
776 /* rely on auto-calculation to merge BW of contiguous chans */
777 rule->flags |= NL80211_RRF_AUTO_BW;
778 rule->freq_range.max_bandwidth_khz = 0;
779
780 prev_ch_flags = ch_flags;
781 prev_center_freq = center_freq;
782
783 IWL_DEBUG_DEV(dev, IWL_DL_LAR,
Arik Nemtsovbdf2fae2014-10-30 15:12:39 +0200784 "Ch. %d [%sGHz] %s%s%s%s%s%s%s%s%s(0x%02x): Ad-Hoc %ssupported\n",
Arik Nemtsovaf45a902014-03-05 12:19:10 +0200785 center_freq,
786 band == IEEE80211_BAND_5GHZ ? "5.2" : "2.4",
787 CHECK_AND_PRINT_I(VALID),
Arik Nemtsovaf45a902014-03-05 12:19:10 +0200788 CHECK_AND_PRINT_I(ACTIVE),
789 CHECK_AND_PRINT_I(RADAR),
790 CHECK_AND_PRINT_I(WIDE),
791 CHECK_AND_PRINT_I(40MHZ),
792 CHECK_AND_PRINT_I(80MHZ),
793 CHECK_AND_PRINT_I(160MHZ),
794 CHECK_AND_PRINT_I(INDOOR_ONLY),
795 CHECK_AND_PRINT_I(GO_CONCURRENT),
796 ch_flags,
Arik Nemtsovbdf2fae2014-10-30 15:12:39 +0200797 ((ch_flags & NVM_CHANNEL_ACTIVE) &&
Arik Nemtsovaf45a902014-03-05 12:19:10 +0200798 !(ch_flags & NVM_CHANNEL_RADAR))
799 ? "" : "not ");
800 }
801
802 regd->n_reg_rules = valid_rules;
803
804 /* set alpha2 from FW. */
805 regd->alpha2[0] = fw_mcc >> 8;
806 regd->alpha2[1] = fw_mcc & 0xff;
807
808 return regd;
809}
810IWL_EXPORT_SYMBOL(iwl_parse_nvm_mcc_info);