blob: 5c016107061f0f791859119d3d7efa1e6e3741d1 [file] [log] [blame]
Dmitry Shmidt391c59f2013-09-03 12:16:28 -07001/*
2 * ACS - Automatic Channel Selection module
3 * Copyright (c) 2011, Atheros Communications
4 * Copyright (c) 2013, Qualcomm Atheros, Inc.
5 *
6 * This software may be distributed under the terms of the BSD license.
7 * See README for more details.
8 */
9
10#include "utils/includes.h"
11#include <math.h>
12
13#include "utils/common.h"
14#include "utils/list.h"
15#include "common/ieee802_11_defs.h"
Hai Shalom74f70d42019-02-11 14:42:39 -080016#include "common/hw_features_common.h"
Dmitry Shmidtcce06662013-11-04 18:44:24 -080017#include "common/wpa_ctrl.h"
Dmitry Shmidt391c59f2013-09-03 12:16:28 -070018#include "drivers/driver.h"
19#include "hostapd.h"
20#include "ap_drv_ops.h"
21#include "ap_config.h"
22#include "hw_features.h"
23#include "acs.h"
24
25/*
26 * Automatic Channel Selection
27 * ===========================
28 *
29 * More info at
30 * ------------
31 * http://wireless.kernel.org/en/users/Documentation/acs
32 *
33 * How to use
34 * ----------
35 * - make sure you have CONFIG_ACS=y in hostapd's .config
36 * - use channel=0 or channel=acs to enable ACS
37 *
38 * How does it work
39 * ----------------
40 * 1. passive scans are used to collect survey data
41 * (it is assumed that scan trigger collection of survey data in driver)
42 * 2. interference factor is calculated for each channel
43 * 3. ideal channel is picked depending on channel width by using adjacent
44 * channel interference factors
45 *
46 * Known limitations
47 * -----------------
48 * - Current implementation depends heavily on the amount of time willing to
49 * spend gathering survey data during hostapd startup. Short traffic bursts
50 * may be missed and a suboptimal channel may be picked.
51 * - Ideal channel may end up overlapping a channel with 40 MHz intolerant BSS
52 *
53 * Todo / Ideas
54 * ------------
55 * - implement other interference computation methods
56 * - BSS/RSSI based
57 * - spectral scan based
58 * (should be possibly to hook this up with current ACS scans)
59 * - add wpa_supplicant support (for P2P)
60 * - collect a histogram of interference over time allowing more educated
61 * guess about an ideal channel (perhaps CSA could be used to migrate AP to a
62 * new "better" channel while running)
63 * - include neighboring BSS scan to avoid conflicts with 40 MHz intolerant BSSs
64 * when choosing the ideal channel
65 *
66 * Survey interference factor implementation details
67 * -------------------------------------------------
68 * Generic interference_factor in struct hostapd_channel_data is used.
69 *
70 * The survey interference factor is defined as the ratio of the
71 * observed busy time over the time we spent on the channel,
72 * this value is then amplified by the observed noise floor on
73 * the channel in comparison to the lowest noise floor observed
74 * on the entire band.
75 *
76 * This corresponds to:
77 * ---
78 * (busy time - tx time) / (active time - tx time) * 2^(chan_nf + band_min_nf)
79 * ---
80 *
81 * The coefficient of 2 reflects the way power in "far-field"
82 * radiation decreases as the square of distance from the antenna [1].
83 * What this does is it decreases the observed busy time ratio if the
84 * noise observed was low but increases it if the noise was high,
85 * proportionally to the way "far field" radiation changes over
86 * distance.
87 *
88 * If channel busy time is not available the fallback is to use channel RX time.
89 *
90 * Since noise floor is in dBm it is necessary to convert it into Watts so that
91 * combined channel interference (e.g., HT40, which uses two channels) can be
92 * calculated easily.
93 * ---
94 * (busy time - tx time) / (active time - tx time) *
95 * 2^(10^(chan_nf/10) + 10^(band_min_nf/10))
96 * ---
97 *
98 * However to account for cases where busy/rx time is 0 (channel load is then
99 * 0%) channel noise floor signal power is combined into the equation so a
100 * channel with lower noise floor is preferred. The equation becomes:
101 * ---
102 * 10^(chan_nf/5) + (busy time - tx time) / (active time - tx time) *
103 * 2^(10^(chan_nf/10) + 10^(band_min_nf/10))
104 * ---
105 *
106 * All this "interference factor" is purely subjective and only time
107 * will tell how usable this is. By using the minimum noise floor we
108 * remove any possible issues due to card calibration. The computation
109 * of the interference factor then is dependent on what the card itself
110 * picks up as the minimum noise, not an actual real possible card
111 * noise value.
112 *
113 * Total interference computation details
114 * --------------------------------------
115 * The above channel interference factor is calculated with no respect to
116 * target operational bandwidth.
117 *
118 * To find an ideal channel the above data is combined by taking into account
119 * the target operational bandwidth and selected band. E.g., on 2.4 GHz channels
120 * overlap with 20 MHz bandwidth, but there is no overlap for 20 MHz bandwidth
121 * on 5 GHz.
122 *
123 * Each valid and possible channel spec (i.e., channel + width) is taken and its
124 * interference factor is computed by summing up interferences of each channel
125 * it overlaps. The one with least total interference is picked up.
126 *
127 * Note: This implies base channel interference factor must be non-negative
128 * allowing easy summing up.
129 *
130 * Example ACS analysis printout
131 * -----------------------------
132 *
133 * ACS: Trying survey-based ACS
134 * ACS: Survey analysis for channel 1 (2412 MHz)
135 * ACS: 1: min_nf=-113 interference_factor=0.0802469 nf=-113 time=162 busy=0 rx=13
136 * ACS: 2: min_nf=-113 interference_factor=0.0745342 nf=-113 time=161 busy=0 rx=12
137 * ACS: 3: min_nf=-113 interference_factor=0.0679012 nf=-113 time=162 busy=0 rx=11
138 * ACS: 4: min_nf=-113 interference_factor=0.0310559 nf=-113 time=161 busy=0 rx=5
139 * ACS: 5: min_nf=-113 interference_factor=0.0248447 nf=-113 time=161 busy=0 rx=4
140 * ACS: * interference factor average: 0.0557166
141 * ACS: Survey analysis for channel 2 (2417 MHz)
142 * ACS: 1: min_nf=-113 interference_factor=0.0185185 nf=-113 time=162 busy=0 rx=3
143 * ACS: 2: min_nf=-113 interference_factor=0.0246914 nf=-113 time=162 busy=0 rx=4
144 * ACS: 3: min_nf=-113 interference_factor=0.037037 nf=-113 time=162 busy=0 rx=6
145 * ACS: 4: min_nf=-113 interference_factor=0.149068 nf=-113 time=161 busy=0 rx=24
146 * ACS: 5: min_nf=-113 interference_factor=0.0248447 nf=-113 time=161 busy=0 rx=4
147 * ACS: * interference factor average: 0.050832
148 * ACS: Survey analysis for channel 3 (2422 MHz)
149 * ACS: 1: min_nf=-113 interference_factor=2.51189e-23 nf=-113 time=162 busy=0 rx=0
150 * ACS: 2: min_nf=-113 interference_factor=0.0185185 nf=-113 time=162 busy=0 rx=3
151 * ACS: 3: min_nf=-113 interference_factor=0.0186335 nf=-113 time=161 busy=0 rx=3
152 * ACS: 4: min_nf=-113 interference_factor=0.0186335 nf=-113 time=161 busy=0 rx=3
153 * ACS: 5: min_nf=-113 interference_factor=0.0186335 nf=-113 time=161 busy=0 rx=3
154 * ACS: * interference factor average: 0.0148838
155 * ACS: Survey analysis for channel 4 (2427 MHz)
156 * ACS: 1: min_nf=-114 interference_factor=1.58489e-23 nf=-114 time=162 busy=0 rx=0
157 * ACS: 2: min_nf=-114 interference_factor=0.0555556 nf=-114 time=162 busy=0 rx=9
158 * ACS: 3: min_nf=-114 interference_factor=1.58489e-23 nf=-114 time=161 busy=0 rx=0
159 * ACS: 4: min_nf=-114 interference_factor=0.0186335 nf=-114 time=161 busy=0 rx=3
160 * ACS: 5: min_nf=-114 interference_factor=0.00621118 nf=-114 time=161 busy=0 rx=1
161 * ACS: * interference factor average: 0.0160801
162 * ACS: Survey analysis for channel 5 (2432 MHz)
163 * ACS: 1: min_nf=-114 interference_factor=0.409938 nf=-113 time=161 busy=0 rx=66
164 * ACS: 2: min_nf=-114 interference_factor=0.0432099 nf=-113 time=162 busy=0 rx=7
165 * ACS: 3: min_nf=-114 interference_factor=0.0124224 nf=-113 time=161 busy=0 rx=2
166 * ACS: 4: min_nf=-114 interference_factor=0.677019 nf=-113 time=161 busy=0 rx=109
167 * ACS: 5: min_nf=-114 interference_factor=0.0186335 nf=-114 time=161 busy=0 rx=3
168 * ACS: * interference factor average: 0.232244
169 * ACS: Survey analysis for channel 6 (2437 MHz)
170 * ACS: 1: min_nf=-113 interference_factor=0.552795 nf=-113 time=161 busy=0 rx=89
171 * ACS: 2: min_nf=-113 interference_factor=0.0807453 nf=-112 time=161 busy=0 rx=13
172 * ACS: 3: min_nf=-113 interference_factor=0.0310559 nf=-113 time=161 busy=0 rx=5
173 * ACS: 4: min_nf=-113 interference_factor=0.434783 nf=-112 time=161 busy=0 rx=70
174 * ACS: 5: min_nf=-113 interference_factor=0.0621118 nf=-113 time=161 busy=0 rx=10
175 * ACS: * interference factor average: 0.232298
176 * ACS: Survey analysis for channel 7 (2442 MHz)
177 * ACS: 1: min_nf=-113 interference_factor=0.440994 nf=-112 time=161 busy=0 rx=71
178 * ACS: 2: min_nf=-113 interference_factor=0.385093 nf=-113 time=161 busy=0 rx=62
179 * ACS: 3: min_nf=-113 interference_factor=0.0372671 nf=-113 time=161 busy=0 rx=6
180 * ACS: 4: min_nf=-113 interference_factor=0.0372671 nf=-113 time=161 busy=0 rx=6
181 * ACS: 5: min_nf=-113 interference_factor=0.0745342 nf=-113 time=161 busy=0 rx=12
182 * ACS: * interference factor average: 0.195031
183 * ACS: Survey analysis for channel 8 (2447 MHz)
184 * ACS: 1: min_nf=-114 interference_factor=0.0496894 nf=-112 time=161 busy=0 rx=8
185 * ACS: 2: min_nf=-114 interference_factor=0.0496894 nf=-114 time=161 busy=0 rx=8
186 * ACS: 3: min_nf=-114 interference_factor=0.0372671 nf=-113 time=161 busy=0 rx=6
187 * ACS: 4: min_nf=-114 interference_factor=0.12963 nf=-113 time=162 busy=0 rx=21
188 * ACS: 5: min_nf=-114 interference_factor=0.166667 nf=-114 time=162 busy=0 rx=27
189 * ACS: * interference factor average: 0.0865885
190 * ACS: Survey analysis for channel 9 (2452 MHz)
191 * ACS: 1: min_nf=-114 interference_factor=0.0124224 nf=-114 time=161 busy=0 rx=2
192 * ACS: 2: min_nf=-114 interference_factor=0.0310559 nf=-114 time=161 busy=0 rx=5
193 * ACS: 3: min_nf=-114 interference_factor=1.58489e-23 nf=-114 time=161 busy=0 rx=0
194 * ACS: 4: min_nf=-114 interference_factor=0.00617284 nf=-114 time=162 busy=0 rx=1
195 * ACS: 5: min_nf=-114 interference_factor=1.58489e-23 nf=-114 time=162 busy=0 rx=0
196 * ACS: * interference factor average: 0.00993022
197 * ACS: Survey analysis for channel 10 (2457 MHz)
198 * ACS: 1: min_nf=-114 interference_factor=0.00621118 nf=-114 time=161 busy=0 rx=1
199 * ACS: 2: min_nf=-114 interference_factor=0.00621118 nf=-114 time=161 busy=0 rx=1
200 * ACS: 3: min_nf=-114 interference_factor=0.00621118 nf=-114 time=161 busy=0 rx=1
201 * ACS: 4: min_nf=-114 interference_factor=0.0493827 nf=-114 time=162 busy=0 rx=8
202 * ACS: 5: min_nf=-114 interference_factor=1.58489e-23 nf=-114 time=162 busy=0 rx=0
203 * ACS: * interference factor average: 0.0136033
204 * ACS: Survey analysis for channel 11 (2462 MHz)
205 * ACS: 1: min_nf=-114 interference_factor=1.58489e-23 nf=-114 time=161 busy=0 rx=0
206 * ACS: 2: min_nf=-114 interference_factor=2.51189e-23 nf=-113 time=161 busy=0 rx=0
207 * ACS: 3: min_nf=-114 interference_factor=2.51189e-23 nf=-113 time=161 busy=0 rx=0
208 * ACS: 4: min_nf=-114 interference_factor=0.0432099 nf=-114 time=162 busy=0 rx=7
209 * ACS: 5: min_nf=-114 interference_factor=0.0925926 nf=-114 time=162 busy=0 rx=15
210 * ACS: * interference factor average: 0.0271605
211 * ACS: Survey analysis for channel 12 (2467 MHz)
212 * ACS: 1: min_nf=-114 interference_factor=0.0621118 nf=-113 time=161 busy=0 rx=10
213 * ACS: 2: min_nf=-114 interference_factor=0.00621118 nf=-114 time=161 busy=0 rx=1
214 * ACS: 3: min_nf=-114 interference_factor=2.51189e-23 nf=-113 time=162 busy=0 rx=0
215 * ACS: 4: min_nf=-114 interference_factor=2.51189e-23 nf=-113 time=162 busy=0 rx=0
216 * ACS: 5: min_nf=-114 interference_factor=0.00617284 nf=-113 time=162 busy=0 rx=1
217 * ACS: * interference factor average: 0.0148992
218 * ACS: Survey analysis for channel 13 (2472 MHz)
219 * ACS: 1: min_nf=-114 interference_factor=0.0745342 nf=-114 time=161 busy=0 rx=12
220 * ACS: 2: min_nf=-114 interference_factor=0.0555556 nf=-114 time=162 busy=0 rx=9
221 * ACS: 3: min_nf=-114 interference_factor=1.58489e-23 nf=-114 time=162 busy=0 rx=0
222 * ACS: 4: min_nf=-114 interference_factor=1.58489e-23 nf=-114 time=162 busy=0 rx=0
223 * ACS: 5: min_nf=-114 interference_factor=1.58489e-23 nf=-114 time=162 busy=0 rx=0
224 * ACS: * interference factor average: 0.0260179
225 * ACS: Survey analysis for selected bandwidth 20MHz
226 * ACS: * channel 1: total interference = 0.121432
227 * ACS: * channel 2: total interference = 0.137512
228 * ACS: * channel 3: total interference = 0.369757
229 * ACS: * channel 4: total interference = 0.546338
230 * ACS: * channel 5: total interference = 0.690538
231 * ACS: * channel 6: total interference = 0.762242
232 * ACS: * channel 7: total interference = 0.756092
233 * ACS: * channel 8: total interference = 0.537451
234 * ACS: * channel 9: total interference = 0.332313
235 * ACS: * channel 10: total interference = 0.152182
236 * ACS: * channel 11: total interference = 0.0916111
237 * ACS: * channel 12: total interference = 0.0816809
238 * ACS: * channel 13: total interference = 0.0680776
239 * ACS: Ideal channel is 13 (2472 MHz) with total interference factor of 0.0680776
240 *
241 * [1] http://en.wikipedia.org/wiki/Near_and_far_field
242 */
243
244
245static int acs_request_scan(struct hostapd_iface *iface);
Dmitry Shmidt7f656022015-02-25 14:36:37 -0800246static int acs_survey_is_sufficient(struct freq_survey *survey);
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700247
248
249static void acs_clean_chan_surveys(struct hostapd_channel_data *chan)
250{
251 struct freq_survey *survey, *tmp;
252
253 if (dl_list_empty(&chan->survey_list))
254 return;
255
256 dl_list_for_each_safe(survey, tmp, &chan->survey_list,
257 struct freq_survey, list) {
258 dl_list_del(&survey->list);
259 os_free(survey);
260 }
261}
262
263
Hai Shalomfdcde762020-04-02 11:19:20 -0700264static void acs_cleanup_mode(struct hostapd_hw_modes *mode)
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700265{
266 int i;
267 struct hostapd_channel_data *chan;
268
Hai Shalomfdcde762020-04-02 11:19:20 -0700269 for (i = 0; i < mode->num_channels; i++) {
270 chan = &mode->channels[i];
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700271
272 if (chan->flag & HOSTAPD_CHAN_SURVEY_LIST_INITIALIZED)
273 acs_clean_chan_surveys(chan);
274
275 dl_list_init(&chan->survey_list);
276 chan->flag |= HOSTAPD_CHAN_SURVEY_LIST_INITIALIZED;
277 chan->min_nf = 0;
278 }
Hai Shalomfdcde762020-04-02 11:19:20 -0700279}
280
281
282void acs_cleanup(struct hostapd_iface *iface)
283{
284 int i;
285
286 for (i = 0; i < iface->num_hw_features; i++)
287 acs_cleanup_mode(&iface->hw_features[i]);
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700288
289 iface->chans_surveyed = 0;
290 iface->acs_num_completed_scans = 0;
291}
292
293
Dmitry Shmidtfb79edc2014-01-10 10:45:54 -0800294static void acs_fail(struct hostapd_iface *iface)
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700295{
296 wpa_printf(MSG_ERROR, "ACS: Failed to start");
297 acs_cleanup(iface);
Dmitry Shmidt2ac5f602014-03-07 10:08:21 -0800298 hostapd_disable_iface(iface);
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700299}
300
301
302static long double
303acs_survey_interference_factor(struct freq_survey *survey, s8 min_nf)
304{
305 long double factor, busy, total;
306
307 if (survey->filled & SURVEY_HAS_CHAN_TIME_BUSY)
308 busy = survey->channel_time_busy;
309 else if (survey->filled & SURVEY_HAS_CHAN_TIME_RX)
310 busy = survey->channel_time_rx;
311 else {
312 /* This shouldn't really happen as survey data is checked in
313 * acs_sanity_check() */
314 wpa_printf(MSG_ERROR, "ACS: Survey data missing");
315 return 0;
316 }
317
318 total = survey->channel_time;
319
320 if (survey->filled & SURVEY_HAS_CHAN_TIME_TX) {
321 busy -= survey->channel_time_tx;
322 total -= survey->channel_time_tx;
323 }
324
325 /* TODO: figure out the best multiplier for noise floor base */
326 factor = pow(10, survey->nf / 5.0L) +
Roshan Pius3a1667e2018-07-03 15:17:14 -0700327 (total ? (busy / total) : 0) *
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700328 pow(2, pow(10, (long double) survey->nf / 10.0L) -
329 pow(10, (long double) min_nf / 10.0L));
330
331 return factor;
332}
333
334
335static void
336acs_survey_chan_interference_factor(struct hostapd_iface *iface,
337 struct hostapd_channel_data *chan)
338{
339 struct freq_survey *survey;
340 unsigned int i = 0;
341 long double int_factor = 0;
Dmitry Shmidt7f656022015-02-25 14:36:37 -0800342 unsigned count = 0;
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700343
Dmitry Shmidtd2986c22017-10-23 14:22:09 -0700344 if (dl_list_empty(&chan->survey_list) ||
345 (chan->flag & HOSTAPD_CHAN_DISABLED))
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700346 return;
347
348 chan->interference_factor = 0;
349
350 dl_list_for_each(survey, &chan->survey_list, struct freq_survey, list)
351 {
Dmitry Shmidt7f656022015-02-25 14:36:37 -0800352 i++;
353
354 if (!acs_survey_is_sufficient(survey)) {
355 wpa_printf(MSG_DEBUG, "ACS: %d: insufficient data", i);
356 continue;
357 }
358
359 count++;
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700360 int_factor = acs_survey_interference_factor(survey,
361 iface->lowest_nf);
362 chan->interference_factor += int_factor;
363 wpa_printf(MSG_DEBUG, "ACS: %d: min_nf=%d interference_factor=%Lg nf=%d time=%lu busy=%lu rx=%lu",
Dmitry Shmidt7f656022015-02-25 14:36:37 -0800364 i, chan->min_nf, int_factor,
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700365 survey->nf, (unsigned long) survey->channel_time,
366 (unsigned long) survey->channel_time_busy,
367 (unsigned long) survey->channel_time_rx);
368 }
369
Dmitry Shmidtd2986c22017-10-23 14:22:09 -0700370 if (count)
371 chan->interference_factor /= count;
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700372}
373
374
Hai Shalom74f70d42019-02-11 14:42:39 -0800375static int acs_usable_ht40_chan(const struct hostapd_channel_data *chan)
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700376{
377 const int allowed[] = { 36, 44, 52, 60, 100, 108, 116, 124, 132, 149,
378 157, 184, 192 };
379 unsigned int i;
380
Dmitry Shmidt68d0e3e2013-10-28 17:59:21 -0700381 for (i = 0; i < ARRAY_SIZE(allowed); i++)
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700382 if (chan->chan == allowed[i])
383 return 1;
384
385 return 0;
386}
387
388
Hai Shalom74f70d42019-02-11 14:42:39 -0800389static int acs_usable_vht80_chan(const struct hostapd_channel_data *chan)
Dmitry Shmidta38abf92014-03-06 13:38:44 -0800390{
391 const int allowed[] = { 36, 52, 100, 116, 132, 149 };
392 unsigned int i;
393
394 for (i = 0; i < ARRAY_SIZE(allowed); i++)
395 if (chan->chan == allowed[i])
396 return 1;
397
398 return 0;
399}
400
401
Hai Shalom74f70d42019-02-11 14:42:39 -0800402static int acs_usable_vht160_chan(const struct hostapd_channel_data *chan)
403{
404 const int allowed[] = { 36, 100 };
405 unsigned int i;
406
407 for (i = 0; i < ARRAY_SIZE(allowed); i++)
408 if (chan->chan == allowed[i])
409 return 1;
410
411 return 0;
412}
413
414
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700415static int acs_survey_is_sufficient(struct freq_survey *survey)
416{
417 if (!(survey->filled & SURVEY_HAS_NF)) {
Dmitry Shmidt7f656022015-02-25 14:36:37 -0800418 wpa_printf(MSG_INFO, "ACS: Survey is missing noise floor");
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700419 return 0;
420 }
421
422 if (!(survey->filled & SURVEY_HAS_CHAN_TIME)) {
Dmitry Shmidt7f656022015-02-25 14:36:37 -0800423 wpa_printf(MSG_INFO, "ACS: Survey is missing channel time");
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700424 return 0;
425 }
426
427 if (!(survey->filled & SURVEY_HAS_CHAN_TIME_BUSY) &&
428 !(survey->filled & SURVEY_HAS_CHAN_TIME_RX)) {
Dmitry Shmidt7f656022015-02-25 14:36:37 -0800429 wpa_printf(MSG_INFO,
430 "ACS: Survey is missing RX and busy time (at least one is required)");
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700431 return 0;
432 }
433
434 return 1;
435}
436
437
Dmitry Shmidt4ce9c872013-10-24 11:08:13 -0700438static int acs_survey_list_is_sufficient(struct hostapd_channel_data *chan)
439{
440 struct freq_survey *survey;
Dmitry Shmidt7f656022015-02-25 14:36:37 -0800441 int ret = -1;
Dmitry Shmidt4ce9c872013-10-24 11:08:13 -0700442
443 dl_list_for_each(survey, &chan->survey_list, struct freq_survey, list)
444 {
Dmitry Shmidt7f656022015-02-25 14:36:37 -0800445 if (acs_survey_is_sufficient(survey)) {
446 ret = 1;
447 break;
Dmitry Shmidt4ce9c872013-10-24 11:08:13 -0700448 }
Dmitry Shmidt7f656022015-02-25 14:36:37 -0800449 ret = 0;
Dmitry Shmidt4ce9c872013-10-24 11:08:13 -0700450 }
451
Dmitry Shmidt7f656022015-02-25 14:36:37 -0800452 if (ret == -1)
453 ret = 1; /* no survey list entries */
Dmitry Shmidt4ce9c872013-10-24 11:08:13 -0700454
Dmitry Shmidt7f656022015-02-25 14:36:37 -0800455 if (!ret) {
456 wpa_printf(MSG_INFO,
457 "ACS: Channel %d has insufficient survey data",
458 chan->chan);
459 }
460
461 return ret;
Dmitry Shmidt4ce9c872013-10-24 11:08:13 -0700462}
463
464
Hai Shalomfdcde762020-04-02 11:19:20 -0700465static int acs_surveys_are_sufficient_mode(struct hostapd_hw_modes *mode)
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700466{
467 int i;
468 struct hostapd_channel_data *chan;
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700469
Hai Shalomfdcde762020-04-02 11:19:20 -0700470 for (i = 0; i < mode->num_channels; i++) {
471 chan = &mode->channels[i];
Dmitry Shmidtd2986c22017-10-23 14:22:09 -0700472 if (!(chan->flag & HOSTAPD_CHAN_DISABLED) &&
473 acs_survey_list_is_sufficient(chan))
Hai Shalomfdcde762020-04-02 11:19:20 -0700474 return 1;
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700475 }
476
Hai Shalomfdcde762020-04-02 11:19:20 -0700477 return 0;
478}
479
480
481static int acs_surveys_are_sufficient(struct hostapd_iface *iface)
482{
483 int i;
484 struct hostapd_hw_modes *mode;
485
486 for (i = 0; i < iface->num_hw_features; i++) {
487 mode = &iface->hw_features[i];
488 if (!hostapd_hw_skip_mode(iface, mode) &&
489 acs_surveys_are_sufficient_mode(mode))
490 return 1;
491 }
492
493 return 0;
Dmitry Shmidt4ce9c872013-10-24 11:08:13 -0700494}
495
496
497static int acs_usable_chan(struct hostapd_channel_data *chan)
498{
Dmitry Shmidtd2986c22017-10-23 14:22:09 -0700499 return !dl_list_empty(&chan->survey_list) &&
500 !(chan->flag & HOSTAPD_CHAN_DISABLED) &&
501 acs_survey_list_is_sufficient(chan);
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700502}
503
504
Dmitry Shmidt2f74e362015-01-21 13:19:05 -0800505static int is_in_chanlist(struct hostapd_iface *iface,
506 struct hostapd_channel_data *chan)
507{
Dmitry Shmidtdda10c22015-03-24 16:05:01 -0700508 if (!iface->conf->acs_ch_list.num)
Dmitry Shmidt2f74e362015-01-21 13:19:05 -0800509 return 1;
510
Dmitry Shmidtdda10c22015-03-24 16:05:01 -0700511 return freq_range_list_includes(&iface->conf->acs_ch_list, chan->chan);
Dmitry Shmidt2f74e362015-01-21 13:19:05 -0800512}
513
514
Hai Shalomfdcde762020-04-02 11:19:20 -0700515static void acs_survey_mode_interference_factor(
516 struct hostapd_iface *iface, struct hostapd_hw_modes *mode)
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700517{
518 int i;
519 struct hostapd_channel_data *chan;
520
Hai Shalomfdcde762020-04-02 11:19:20 -0700521 for (i = 0; i < mode->num_channels; i++) {
522 chan = &mode->channels[i];
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700523
524 if (!acs_usable_chan(chan))
525 continue;
526
Dmitry Shmidt2f74e362015-01-21 13:19:05 -0800527 if (!is_in_chanlist(iface, chan))
528 continue;
529
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700530 wpa_printf(MSG_DEBUG, "ACS: Survey analysis for channel %d (%d MHz)",
531 chan->chan, chan->freq);
532
533 acs_survey_chan_interference_factor(iface, chan);
534
535 wpa_printf(MSG_DEBUG, "ACS: * interference factor average: %Lg",
536 chan->interference_factor);
537 }
538}
539
540
Hai Shalomfdcde762020-04-02 11:19:20 -0700541static void acs_survey_all_chans_interference_factor(
542 struct hostapd_iface *iface)
543{
544 int i;
545 struct hostapd_hw_modes *mode;
546
547 for (i = 0; i < iface->num_hw_features; i++) {
548 mode = &iface->hw_features[i];
549 if (!hostapd_hw_skip_mode(iface, mode))
550 acs_survey_mode_interference_factor(iface, mode);
551 }
552}
553
554
555static struct hostapd_channel_data *
556acs_find_chan_mode(struct hostapd_hw_modes *mode, int freq)
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700557{
558 struct hostapd_channel_data *chan;
559 int i;
560
Hai Shalomfdcde762020-04-02 11:19:20 -0700561 for (i = 0; i < mode->num_channels; i++) {
562 chan = &mode->channels[i];
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700563
Dmitry Shmidt4ce9c872013-10-24 11:08:13 -0700564 if (chan->flag & HOSTAPD_CHAN_DISABLED)
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700565 continue;
566
567 if (chan->freq == freq)
568 return chan;
569 }
570
571 return NULL;
572}
573
574
Hai Shalomfdcde762020-04-02 11:19:20 -0700575static struct hostapd_channel_data *
576acs_find_chan(struct hostapd_iface *iface, int freq)
577{
578 int i;
579 struct hostapd_hw_modes *mode;
580 struct hostapd_channel_data *chan;
581
582 for (i = 0; i < iface->num_hw_features; i++) {
583 mode = &iface->hw_features[i];
584 if (!hostapd_hw_skip_mode(iface, mode)) {
585 chan = acs_find_chan_mode(mode, freq);
586 if (chan)
587 return chan;
588 }
589 }
590
591 return NULL;
592}
593
594
Dmitry Shmidt7f656022015-02-25 14:36:37 -0800595static int is_24ghz_mode(enum hostapd_hw_mode mode)
596{
597 return mode == HOSTAPD_MODE_IEEE80211B ||
598 mode == HOSTAPD_MODE_IEEE80211G;
599}
600
601
602static int is_common_24ghz_chan(int chan)
603{
604 return chan == 1 || chan == 6 || chan == 11;
605}
606
607
608#ifndef ACS_ADJ_WEIGHT
609#define ACS_ADJ_WEIGHT 0.85
610#endif /* ACS_ADJ_WEIGHT */
611
612#ifndef ACS_NEXT_ADJ_WEIGHT
613#define ACS_NEXT_ADJ_WEIGHT 0.55
614#endif /* ACS_NEXT_ADJ_WEIGHT */
615
616#ifndef ACS_24GHZ_PREFER_1_6_11
617/*
618 * Select commonly used channels 1, 6, 11 by default even if a neighboring
619 * channel has a smaller interference factor as long as it is not better by more
620 * than this multiplier.
621 */
622#define ACS_24GHZ_PREFER_1_6_11 0.8
623#endif /* ACS_24GHZ_PREFER_1_6_11 */
624
Hai Shalomfdcde762020-04-02 11:19:20 -0700625static void
626acs_find_ideal_chan_mode(struct hostapd_iface *iface,
627 struct hostapd_hw_modes *mode,
628 int n_chans, u32 bw,
629 struct hostapd_channel_data **rand_chan,
630 struct hostapd_channel_data **ideal_chan,
631 long double *ideal_factor)
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700632{
Hai Shalomfdcde762020-04-02 11:19:20 -0700633 struct hostapd_channel_data *chan, *adj_chan = NULL;
634 long double factor;
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700635 int i, j;
Dmitry Shmidt7f656022015-02-25 14:36:37 -0800636 unsigned int k;
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700637
Hai Shalomfdcde762020-04-02 11:19:20 -0700638 for (i = 0; i < mode->num_channels; i++) {
Dmitry Shmidt7f656022015-02-25 14:36:37 -0800639 double total_weight;
640 struct acs_bias *bias, tmp_bias;
641
Hai Shalomfdcde762020-04-02 11:19:20 -0700642 chan = &mode->channels[i];
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700643
Hai Shalom74f70d42019-02-11 14:42:39 -0800644 /* Since in the current ACS implementation the first channel is
645 * always a primary channel, skip channels not available as
646 * primary until more sophisticated channel selection is
647 * implemented. */
648 if (!chan_pri_allowed(chan))
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700649 continue;
650
Dmitry Shmidt2f74e362015-01-21 13:19:05 -0800651 if (!is_in_chanlist(iface, chan))
652 continue;
Dmitry Shmidt4ce9c872013-10-24 11:08:13 -0700653
Hai Shalom74f70d42019-02-11 14:42:39 -0800654 if (!chan_bw_allowed(chan, bw, 1, 1)) {
655 wpa_printf(MSG_DEBUG,
656 "ACS: Channel %d: BW %u is not supported",
657 chan->chan, bw);
658 continue;
659 }
660
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700661 /* HT40 on 5 GHz has a limited set of primary channels as per
662 * 11n Annex J */
Hai Shalomfdcde762020-04-02 11:19:20 -0700663 if (mode->mode == HOSTAPD_MODE_IEEE80211A &&
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700664 iface->conf->ieee80211n &&
665 iface->conf->secondary_channel &&
666 !acs_usable_ht40_chan(chan)) {
667 wpa_printf(MSG_DEBUG, "ACS: Channel %d: not allowed as primary channel for HT40",
668 chan->chan);
669 continue;
670 }
671
Hai Shalomfdcde762020-04-02 11:19:20 -0700672 if (mode->mode == HOSTAPD_MODE_IEEE80211A &&
Hai Shalom81f62d82019-07-22 12:10:00 -0700673 (iface->conf->ieee80211ac || iface->conf->ieee80211ax)) {
674 if (hostapd_get_oper_chwidth(iface->conf) ==
675 CHANWIDTH_80MHZ &&
Hai Shalom74f70d42019-02-11 14:42:39 -0800676 !acs_usable_vht80_chan(chan)) {
677 wpa_printf(MSG_DEBUG,
678 "ACS: Channel %d: not allowed as primary channel for VHT80",
679 chan->chan);
680 continue;
681 }
682
Hai Shalom81f62d82019-07-22 12:10:00 -0700683 if (hostapd_get_oper_chwidth(iface->conf) ==
684 CHANWIDTH_160MHZ &&
Hai Shalom74f70d42019-02-11 14:42:39 -0800685 !acs_usable_vht160_chan(chan)) {
686 wpa_printf(MSG_DEBUG,
687 "ACS: Channel %d: not allowed as primary channel for VHT160",
688 chan->chan);
689 continue;
690 }
Dmitry Shmidta38abf92014-03-06 13:38:44 -0800691 }
692
Dmitry Shmidt4ce9c872013-10-24 11:08:13 -0700693 factor = 0;
694 if (acs_usable_chan(chan))
695 factor = chan->interference_factor;
Dmitry Shmidt7f656022015-02-25 14:36:37 -0800696 total_weight = 1;
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700697
698 for (j = 1; j < n_chans; j++) {
699 adj_chan = acs_find_chan(iface, chan->freq + (j * 20));
700 if (!adj_chan)
701 break;
702
Hai Shalom74f70d42019-02-11 14:42:39 -0800703 if (!chan_bw_allowed(adj_chan, bw, 1, 0)) {
704 wpa_printf(MSG_DEBUG,
705 "ACS: PRI Channel %d: secondary channel %d BW %u is not supported",
706 chan->chan, adj_chan->chan, bw);
707 break;
708 }
709
Dmitry Shmidt7f656022015-02-25 14:36:37 -0800710 if (acs_usable_chan(adj_chan)) {
Dmitry Shmidt4ce9c872013-10-24 11:08:13 -0700711 factor += adj_chan->interference_factor;
Dmitry Shmidt7f656022015-02-25 14:36:37 -0800712 total_weight += 1;
713 }
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700714 }
715
716 if (j != n_chans) {
717 wpa_printf(MSG_DEBUG, "ACS: Channel %d: not enough bandwidth",
718 chan->chan);
719 continue;
720 }
721
722 /* 2.4 GHz has overlapping 20 MHz channels. Include adjacent
723 * channel interference factor. */
Hai Shalomfdcde762020-04-02 11:19:20 -0700724 if (is_24ghz_mode(mode->mode)) {
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700725 for (j = 0; j < n_chans; j++) {
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700726 adj_chan = acs_find_chan(iface, chan->freq +
727 (j * 20) - 5);
Dmitry Shmidt7f656022015-02-25 14:36:37 -0800728 if (adj_chan && acs_usable_chan(adj_chan)) {
729 factor += ACS_ADJ_WEIGHT *
730 adj_chan->interference_factor;
731 total_weight += ACS_ADJ_WEIGHT;
732 }
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700733
734 adj_chan = acs_find_chan(iface, chan->freq +
735 (j * 20) - 10);
Dmitry Shmidt7f656022015-02-25 14:36:37 -0800736 if (adj_chan && acs_usable_chan(adj_chan)) {
737 factor += ACS_NEXT_ADJ_WEIGHT *
738 adj_chan->interference_factor;
739 total_weight += ACS_NEXT_ADJ_WEIGHT;
740 }
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700741
742 adj_chan = acs_find_chan(iface, chan->freq +
743 (j * 20) + 5);
Dmitry Shmidt7f656022015-02-25 14:36:37 -0800744 if (adj_chan && acs_usable_chan(adj_chan)) {
745 factor += ACS_ADJ_WEIGHT *
746 adj_chan->interference_factor;
747 total_weight += ACS_ADJ_WEIGHT;
748 }
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700749
750 adj_chan = acs_find_chan(iface, chan->freq +
751 (j * 20) + 10);
Dmitry Shmidt7f656022015-02-25 14:36:37 -0800752 if (adj_chan && acs_usable_chan(adj_chan)) {
753 factor += ACS_NEXT_ADJ_WEIGHT *
754 adj_chan->interference_factor;
755 total_weight += ACS_NEXT_ADJ_WEIGHT;
756 }
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700757 }
758 }
759
Dmitry Shmidt7f656022015-02-25 14:36:37 -0800760 factor /= total_weight;
761
762 bias = NULL;
763 if (iface->conf->acs_chan_bias) {
764 for (k = 0; k < iface->conf->num_acs_chan_bias; k++) {
765 bias = &iface->conf->acs_chan_bias[k];
766 if (bias->channel == chan->chan)
767 break;
768 bias = NULL;
769 }
Hai Shalomfdcde762020-04-02 11:19:20 -0700770 } else if (is_24ghz_mode(mode->mode) &&
Dmitry Shmidt7f656022015-02-25 14:36:37 -0800771 is_common_24ghz_chan(chan->chan)) {
772 tmp_bias.channel = chan->chan;
773 tmp_bias.bias = ACS_24GHZ_PREFER_1_6_11;
774 bias = &tmp_bias;
775 }
776
777 if (bias) {
778 factor *= bias->bias;
779 wpa_printf(MSG_DEBUG,
780 "ACS: * channel %d: total interference = %Lg (%f bias)",
781 chan->chan, factor, bias->bias);
782 } else {
783 wpa_printf(MSG_DEBUG,
784 "ACS: * channel %d: total interference = %Lg",
785 chan->chan, factor);
786 }
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700787
Dmitry Shmidt4ce9c872013-10-24 11:08:13 -0700788 if (acs_usable_chan(chan) &&
Hai Shalomfdcde762020-04-02 11:19:20 -0700789 (!*ideal_chan || factor < *ideal_factor)) {
790 *ideal_factor = factor;
791 *ideal_chan = chan;
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700792 }
Dmitry Shmidt4ce9c872013-10-24 11:08:13 -0700793
794 /* This channel would at least be usable */
Hai Shalomfdcde762020-04-02 11:19:20 -0700795 if (!(*rand_chan))
796 *rand_chan = chan;
797 }
798}
799
800
801/*
802 * At this point it's assumed chan->interference_factor has been computed.
803 * This function should be reusable regardless of interference computation
804 * option (survey, BSS, spectral, ...). chan->interference factor must be
805 * summable (i.e., must be always greater than zero).
806 */
807static struct hostapd_channel_data *
808acs_find_ideal_chan(struct hostapd_iface *iface)
809{
810 struct hostapd_channel_data *ideal_chan = NULL,
811 *rand_chan = NULL;
812 long double ideal_factor = 0;
813 int i;
814 int n_chans = 1;
815 u32 bw;
816 struct hostapd_hw_modes *mode;
817
818 /* TODO: HT40- support */
819
820 if (iface->conf->ieee80211n &&
821 iface->conf->secondary_channel == -1) {
822 wpa_printf(MSG_ERROR, "ACS: HT40- is not supported yet. Please try HT40+");
823 return NULL;
824 }
825
826 if (iface->conf->ieee80211n &&
827 iface->conf->secondary_channel)
828 n_chans = 2;
829
830 if (iface->conf->ieee80211ac || iface->conf->ieee80211ax) {
831 switch (hostapd_get_oper_chwidth(iface->conf)) {
832 case CHANWIDTH_80MHZ:
833 n_chans = 4;
834 break;
835 case CHANWIDTH_160MHZ:
836 n_chans = 8;
837 break;
838 }
839 }
840
841 bw = num_chan_to_bw(n_chans);
842
843 /* TODO: VHT/HE80+80. Update acs_adjust_center_freq() too. */
844
845 wpa_printf(MSG_DEBUG,
846 "ACS: Survey analysis for selected bandwidth %d MHz", bw);
847
848 for (i = 0; i < iface->num_hw_features; i++) {
849 mode = &iface->hw_features[i];
850 if (!hostapd_hw_skip_mode(iface, mode))
851 acs_find_ideal_chan_mode(iface, mode, n_chans, bw,
852 &rand_chan, &ideal_chan,
853 &ideal_factor);
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700854 }
855
Dmitry Shmidt4ce9c872013-10-24 11:08:13 -0700856 if (ideal_chan) {
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700857 wpa_printf(MSG_DEBUG, "ACS: Ideal channel is %d (%d MHz) with total interference factor of %Lg",
858 ideal_chan->chan, ideal_chan->freq, ideal_factor);
Dmitry Shmidt4ce9c872013-10-24 11:08:13 -0700859 return ideal_chan;
860 }
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700861
Dmitry Shmidt4ce9c872013-10-24 11:08:13 -0700862 return rand_chan;
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700863}
864
865
Hai Shalom81f62d82019-07-22 12:10:00 -0700866static void acs_adjust_center_freq(struct hostapd_iface *iface)
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700867{
Dmitry Shmidtb36ed7c2014-03-17 10:57:26 -0700868 int offset;
869
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700870 wpa_printf(MSG_DEBUG, "ACS: Adjusting VHT center frequency");
871
Hai Shalom81f62d82019-07-22 12:10:00 -0700872 switch (hostapd_get_oper_chwidth(iface->conf)) {
873 case CHANWIDTH_USE_HT:
Dmitry Shmidtb36ed7c2014-03-17 10:57:26 -0700874 offset = 2 * iface->conf->secondary_channel;
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700875 break;
Hai Shalom81f62d82019-07-22 12:10:00 -0700876 case CHANWIDTH_80MHZ:
Dmitry Shmidtb36ed7c2014-03-17 10:57:26 -0700877 offset = 6;
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700878 break;
Hai Shalom81f62d82019-07-22 12:10:00 -0700879 case CHANWIDTH_160MHZ:
Hai Shalom74f70d42019-02-11 14:42:39 -0800880 offset = 14;
881 break;
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700882 default:
883 /* TODO: How can this be calculated? Adjust
884 * acs_find_ideal_chan() */
Hai Shalom74f70d42019-02-11 14:42:39 -0800885 wpa_printf(MSG_INFO,
886 "ACS: Only VHT20/40/80/160 is supported now");
Dmitry Shmidtb36ed7c2014-03-17 10:57:26 -0700887 return;
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700888 }
Dmitry Shmidtb36ed7c2014-03-17 10:57:26 -0700889
Hai Shalom81f62d82019-07-22 12:10:00 -0700890 hostapd_set_oper_centr_freq_seg0_idx(iface->conf,
891 iface->conf->channel + offset);
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700892}
893
894
895static int acs_study_survey_based(struct hostapd_iface *iface)
896{
897 wpa_printf(MSG_DEBUG, "ACS: Trying survey-based ACS");
898
899 if (!iface->chans_surveyed) {
900 wpa_printf(MSG_ERROR, "ACS: Unable to collect survey data");
901 return -1;
902 }
903
904 if (!acs_surveys_are_sufficient(iface)) {
905 wpa_printf(MSG_ERROR, "ACS: Surveys have insufficient data");
906 return -1;
907 }
908
Hai Shalomfdcde762020-04-02 11:19:20 -0700909 acs_survey_all_chans_interference_factor(iface);
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700910 return 0;
911}
912
913
914static int acs_study_options(struct hostapd_iface *iface)
915{
Dmitry Shmidtd2986c22017-10-23 14:22:09 -0700916 if (acs_study_survey_based(iface) == 0)
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700917 return 0;
918
919 /* TODO: If no surveys are available/sufficient this is a good
920 * place to fallback to BSS-based ACS */
921
922 return -1;
923}
924
925
926static void acs_study(struct hostapd_iface *iface)
927{
928 struct hostapd_channel_data *ideal_chan;
929 int err;
930
931 err = acs_study_options(iface);
932 if (err < 0) {
933 wpa_printf(MSG_ERROR, "ACS: All study options have failed");
934 goto fail;
935 }
936
937 ideal_chan = acs_find_ideal_chan(iface);
938 if (!ideal_chan) {
939 wpa_printf(MSG_ERROR, "ACS: Failed to compute ideal channel");
Dmitry Shmidt4ce9c872013-10-24 11:08:13 -0700940 err = -1;
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700941 goto fail;
942 }
943
944 iface->conf->channel = ideal_chan->chan;
Ahmed ElArabawy0ff61c52019-12-26 12:38:39 -0800945 iface->freq = ideal_chan->freq;
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700946
Hai Shalom81f62d82019-07-22 12:10:00 -0700947 if (iface->conf->ieee80211ac || iface->conf->ieee80211ax)
948 acs_adjust_center_freq(iface);
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700949
Dmitry Shmidt4ce9c872013-10-24 11:08:13 -0700950 err = 0;
951fail:
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700952 /*
953 * hostapd_setup_interface_complete() will return -1 on failure,
954 * 0 on success and 0 is HOSTAPD_CHAN_VALID :)
955 */
Dmitry Shmidt4ce9c872013-10-24 11:08:13 -0700956 if (hostapd_acs_completed(iface, err) == HOSTAPD_CHAN_VALID) {
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700957 acs_cleanup(iface);
958 return;
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700959 }
960
Dmitry Shmidt4ce9c872013-10-24 11:08:13 -0700961 /* This can possibly happen if channel parameters (secondary
962 * channel, center frequencies) are misconfigured */
963 wpa_printf(MSG_ERROR, "ACS: Possibly channel configuration is invalid, please report this along with your config file.");
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700964 acs_fail(iface);
965}
966
967
968static void acs_scan_complete(struct hostapd_iface *iface)
969{
970 int err;
971
972 iface->scan_cb = NULL;
973
974 wpa_printf(MSG_DEBUG, "ACS: Using survey based algorithm (acs_num_scans=%d)",
975 iface->conf->acs_num_scans);
976
977 err = hostapd_drv_get_survey(iface->bss[0], 0);
978 if (err) {
979 wpa_printf(MSG_ERROR, "ACS: Failed to get survey data");
Dmitry Shmidt15907092014-03-25 10:42:57 -0700980 goto fail;
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700981 }
982
983 if (++iface->acs_num_completed_scans < iface->conf->acs_num_scans) {
984 err = acs_request_scan(iface);
985 if (err) {
986 wpa_printf(MSG_ERROR, "ACS: Failed to request scan");
Dmitry Shmidtcce06662013-11-04 18:44:24 -0800987 goto fail;
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700988 }
989
990 return;
991 }
992
993 acs_study(iface);
Dmitry Shmidtcce06662013-11-04 18:44:24 -0800994 return;
995fail:
996 hostapd_acs_completed(iface, 1);
997 acs_fail(iface);
Dmitry Shmidt391c59f2013-09-03 12:16:28 -0700998}
999
1000
Hai Shalomfdcde762020-04-02 11:19:20 -07001001static int * acs_request_scan_add_freqs(struct hostapd_iface *iface,
1002 struct hostapd_hw_modes *mode,
1003 int *freq)
Dmitry Shmidt391c59f2013-09-03 12:16:28 -07001004{
Dmitry Shmidt391c59f2013-09-03 12:16:28 -07001005 struct hostapd_channel_data *chan;
Hai Shalomfdcde762020-04-02 11:19:20 -07001006 int i;
Dmitry Shmidt391c59f2013-09-03 12:16:28 -07001007
Hai Shalomfdcde762020-04-02 11:19:20 -07001008 for (i = 0; i < mode->num_channels; i++) {
1009 chan = &mode->channels[i];
Dmitry Shmidt391c59f2013-09-03 12:16:28 -07001010 if (chan->flag & HOSTAPD_CHAN_DISABLED)
1011 continue;
1012
Dmitry Shmidt8bd70b72015-05-26 16:02:19 -07001013 if (!is_in_chanlist(iface, chan))
1014 continue;
1015
Dmitry Shmidt391c59f2013-09-03 12:16:28 -07001016 *freq++ = chan->freq;
1017 }
Hai Shalomfdcde762020-04-02 11:19:20 -07001018
1019 return freq;
1020}
1021
1022
1023static int acs_request_scan(struct hostapd_iface *iface)
1024{
1025 struct wpa_driver_scan_params params;
1026 int i, *freq;
1027 int num_channels;
1028 struct hostapd_hw_modes *mode;
1029
1030 os_memset(&params, 0, sizeof(params));
1031
1032 num_channels = 0;
1033 for (i = 0; i < iface->num_hw_features; i++) {
1034 mode = &iface->hw_features[i];
1035 if (!hostapd_hw_skip_mode(iface, mode))
1036 num_channels += mode->num_channels;
1037 }
1038
1039 params.freqs = os_calloc(num_channels + 1, sizeof(params.freqs[0]));
1040 if (params.freqs == NULL)
1041 return -1;
1042
1043 freq = params.freqs;
1044
1045 for (i = 0; i < iface->num_hw_features; i++) {
1046 mode = &iface->hw_features[i];
1047 if (!hostapd_hw_skip_mode(iface, mode))
1048 freq = acs_request_scan_add_freqs(iface, mode, freq);
1049 }
1050
Dmitry Shmidt391c59f2013-09-03 12:16:28 -07001051 *freq = 0;
1052
Neo Joue2881702019-10-17 11:32:28 +08001053 if (params.freqs == freq) {
1054 wpa_printf(MSG_ERROR, "ACS: No available channels found");
1055 os_free(params.freqs);
1056 return -1;
1057 }
1058
Dmitry Shmidt391c59f2013-09-03 12:16:28 -07001059 iface->scan_cb = acs_scan_complete;
1060
1061 wpa_printf(MSG_DEBUG, "ACS: Scanning %d / %d",
1062 iface->acs_num_completed_scans + 1,
1063 iface->conf->acs_num_scans);
1064
1065 if (hostapd_driver_scan(iface->bss[0], &params) < 0) {
1066 wpa_printf(MSG_ERROR, "ACS: Failed to request initial scan");
1067 acs_cleanup(iface);
Dmitry Shmidt15907092014-03-25 10:42:57 -07001068 os_free(params.freqs);
Dmitry Shmidt391c59f2013-09-03 12:16:28 -07001069 return -1;
1070 }
1071
1072 os_free(params.freqs);
1073 return 0;
1074}
1075
1076
1077enum hostapd_chan_status acs_init(struct hostapd_iface *iface)
1078{
Dmitry Shmidt391c59f2013-09-03 12:16:28 -07001079 wpa_printf(MSG_INFO, "ACS: Automatic channel selection started, this may take a bit");
1080
Dmitry Shmidt6c0da2b2015-01-05 13:08:17 -08001081 if (iface->drv_flags & WPA_DRIVER_FLAGS_ACS_OFFLOAD) {
1082 wpa_printf(MSG_INFO, "ACS: Offloading to driver");
Dmitry Shmidtd2986c22017-10-23 14:22:09 -07001083 if (hostapd_drv_do_acs(iface->bss[0]))
Dmitry Shmidt6c0da2b2015-01-05 13:08:17 -08001084 return HOSTAPD_CHAN_INVALID;
1085 return HOSTAPD_CHAN_ACS;
1086 }
1087
Hai Shalomfdcde762020-04-02 11:19:20 -07001088 if (!iface->current_mode &&
1089 iface->conf->hw_mode != HOSTAPD_MODE_IEEE80211ANY)
Dmitry Shmidtde47be72016-01-07 12:52:55 -08001090 return HOSTAPD_CHAN_INVALID;
1091
Dmitry Shmidt391c59f2013-09-03 12:16:28 -07001092 acs_cleanup(iface);
1093
Dmitry Shmidtd2986c22017-10-23 14:22:09 -07001094 if (acs_request_scan(iface) < 0)
Dmitry Shmidt391c59f2013-09-03 12:16:28 -07001095 return HOSTAPD_CHAN_INVALID;
1096
Dmitry Shmidtcce06662013-11-04 18:44:24 -08001097 hostapd_set_state(iface, HAPD_IFACE_ACS);
1098 wpa_msg(iface->bss[0]->msg_ctx, MSG_INFO, ACS_EVENT_STARTED);
1099
Dmitry Shmidt391c59f2013-09-03 12:16:28 -07001100 return HOSTAPD_CHAN_ACS;
1101}