blob: 6269f4eedd3d5c98779a4a844bdde7b07f459968 [file] [log] [blame]
Zefir Kurtisi6ee159e2012-04-03 17:15:49 +02001/*
2 * Copyright (c) 2012 Neratec Solutions AG
3 *
4 * Permission to use, copy, modify, and/or distribute this software for any
5 * purpose with or without fee is hereby granted, provided that the above
6 * copyright notice and this permission notice appear in all copies.
7 *
8 * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
9 * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
10 * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
11 * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
12 * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
13 * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
14 * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
15 */
16
17#include <linux/slab.h>
18#include <linux/export.h>
19
20#include "dfs_pattern_detector.h"
21#include "dfs_pri_detector.h"
Janusz Dziedzicad40d3d2013-10-14 11:06:06 +020022#include "ath.h"
Zefir Kurtisi6ee159e2012-04-03 17:15:49 +020023
24/*
25 * tolerated deviation of radar time stamp in usecs on both sides
26 * TODO: this might need to be HW-dependent
27 */
28#define PRI_TOLERANCE 16
29
30/**
31 * struct radar_types - contains array of patterns defined for one DFS domain
32 * @domain: DFS regulatory domain
33 * @num_radar_types: number of radar types to follow
34 * @radar_types: radar types array
35 */
36struct radar_types {
37 enum nl80211_dfs_regions region;
38 u32 num_radar_types;
39 const struct radar_detector_specs *radar_types;
40};
41
42/* percentage on ppb threshold to trigger detection */
43#define MIN_PPB_THRESH 50
44#define PPB_THRESH(PPB) ((PPB * MIN_PPB_THRESH + 50) / 100)
45#define PRF2PRI(PRF) ((1000000 + PRF / 2) / PRF)
Zefir Kurtisia6952282012-10-31 12:23:01 +010046/* percentage of pulse width tolerance */
47#define WIDTH_TOLERANCE 5
48#define WIDTH_LOWER(X) ((X*(100-WIDTH_TOLERANCE)+50)/100)
49#define WIDTH_UPPER(X) ((X*(100+WIDTH_TOLERANCE)+50)/100)
Zefir Kurtisi6ee159e2012-04-03 17:15:49 +020050
51#define ETSI_PATTERN(ID, WMIN, WMAX, PMIN, PMAX, PRF, PPB) \
52{ \
Zefir Kurtisia6952282012-10-31 12:23:01 +010053 ID, WIDTH_LOWER(WMIN), WIDTH_UPPER(WMAX), \
54 (PRF2PRI(PMAX) - PRI_TOLERANCE), \
Zefir Kurtisi6ee159e2012-04-03 17:15:49 +020055 (PRF2PRI(PMIN) * PRF + PRI_TOLERANCE), PRF, PPB * PRF, \
56 PPB_THRESH(PPB), PRI_TOLERANCE, \
57}
58
59/* radar types as defined by ETSI EN-301-893 v1.5.1 */
60static const struct radar_detector_specs etsi_radar_ref_types_v15[] = {
61 ETSI_PATTERN(0, 0, 1, 700, 700, 1, 18),
62 ETSI_PATTERN(1, 0, 5, 200, 1000, 1, 10),
63 ETSI_PATTERN(2, 0, 15, 200, 1600, 1, 15),
64 ETSI_PATTERN(3, 0, 15, 2300, 4000, 1, 25),
65 ETSI_PATTERN(4, 20, 30, 2000, 4000, 1, 20),
66 ETSI_PATTERN(5, 0, 2, 300, 400, 3, 10),
67 ETSI_PATTERN(6, 0, 2, 400, 1200, 3, 15),
68};
69
70static const struct radar_types etsi_radar_types_v15 = {
71 .region = NL80211_DFS_ETSI,
72 .num_radar_types = ARRAY_SIZE(etsi_radar_ref_types_v15),
73 .radar_types = etsi_radar_ref_types_v15,
74};
75
Janusz Dziedzicf12e3e02014-05-13 12:32:05 +020076#define FCC_PATTERN(ID, WMIN, WMAX, PMIN, PMAX, PRF, PPB) \
77{ \
78 ID, WIDTH_LOWER(WMIN), WIDTH_UPPER(WMAX), \
79 PMIN - PRI_TOLERANCE, \
80 PMAX * PRF + PRI_TOLERANCE, PRF, PPB * PRF, \
81 PPB_THRESH(PPB), PRI_TOLERANCE, \
82}
83
84static const struct radar_detector_specs fcc_radar_ref_types[] = {
85 FCC_PATTERN(0, 0, 1, 1428, 1428, 1, 18),
86 FCC_PATTERN(1, 0, 5, 150, 230, 1, 23),
87 FCC_PATTERN(2, 6, 10, 200, 500, 1, 16),
88 FCC_PATTERN(3, 11, 20, 200, 500, 1, 12),
89 FCC_PATTERN(4, 50, 100, 1000, 2000, 20, 1),
90 FCC_PATTERN(5, 0, 1, 333, 333, 1, 9),
91};
92
93static const struct radar_types fcc_radar_types = {
94 .region = NL80211_DFS_FCC,
95 .num_radar_types = ARRAY_SIZE(fcc_radar_ref_types),
96 .radar_types = fcc_radar_ref_types,
97};
98
Zefir Kurtisi6ee159e2012-04-03 17:15:49 +020099static const struct radar_types *dfs_domains[] = {
100 &etsi_radar_types_v15,
Janusz Dziedzicf12e3e02014-05-13 12:32:05 +0200101 &fcc_radar_types,
Zefir Kurtisi6ee159e2012-04-03 17:15:49 +0200102};
103
104/**
105 * get_dfs_domain_radar_types() - get radar types for a given DFS domain
106 * @param domain DFS domain
107 * @return radar_types ptr on success, NULL if DFS domain is not supported
108 */
109static const struct radar_types *
110get_dfs_domain_radar_types(enum nl80211_dfs_regions region)
111{
112 u32 i;
113 for (i = 0; i < ARRAY_SIZE(dfs_domains); i++) {
114 if (dfs_domains[i]->region == region)
115 return dfs_domains[i];
116 }
117 return NULL;
118}
119
120/**
121 * struct channel_detector - detector elements for a DFS channel
122 * @head: list_head
123 * @freq: frequency for this channel detector in MHz
124 * @detectors: array of dynamically created detector elements for this freq
125 *
126 * Channel detectors are required to provide multi-channel DFS detection, e.g.
127 * to support off-channel scanning. A pattern detector has a list of channels
128 * radar pulses have been reported for in the past.
129 */
130struct channel_detector {
131 struct list_head head;
132 u16 freq;
133 struct pri_detector **detectors;
134};
135
136/* channel_detector_reset() - reset detector lines for a given channel */
137static void channel_detector_reset(struct dfs_pattern_detector *dpd,
138 struct channel_detector *cd)
139{
140 u32 i;
141 if (cd == NULL)
142 return;
143 for (i = 0; i < dpd->num_radar_types; i++)
144 cd->detectors[i]->reset(cd->detectors[i], dpd->last_pulse_ts);
145}
146
147/* channel_detector_exit() - destructor */
148static void channel_detector_exit(struct dfs_pattern_detector *dpd,
149 struct channel_detector *cd)
150{
151 u32 i;
152 if (cd == NULL)
153 return;
154 list_del(&cd->head);
155 for (i = 0; i < dpd->num_radar_types; i++) {
156 struct pri_detector *de = cd->detectors[i];
157 if (de != NULL)
158 de->exit(de);
159 }
160 kfree(cd->detectors);
161 kfree(cd);
162}
163
164static struct channel_detector *
165channel_detector_create(struct dfs_pattern_detector *dpd, u16 freq)
166{
167 u32 sz, i;
168 struct channel_detector *cd;
169
Zefir Kurtisi5d8cd3b2013-04-02 12:51:48 +0200170 cd = kmalloc(sizeof(*cd), GFP_ATOMIC);
Zefir Kurtisi6ee159e2012-04-03 17:15:49 +0200171 if (cd == NULL)
172 goto fail;
173
174 INIT_LIST_HEAD(&cd->head);
175 cd->freq = freq;
176 sz = sizeof(cd->detectors) * dpd->num_radar_types;
Zefir Kurtisi5d8cd3b2013-04-02 12:51:48 +0200177 cd->detectors = kzalloc(sz, GFP_ATOMIC);
Zefir Kurtisi6ee159e2012-04-03 17:15:49 +0200178 if (cd->detectors == NULL)
179 goto fail;
180
181 for (i = 0; i < dpd->num_radar_types; i++) {
182 const struct radar_detector_specs *rs = &dpd->radar_spec[i];
183 struct pri_detector *de = pri_detector_init(rs);
184 if (de == NULL)
185 goto fail;
186 cd->detectors[i] = de;
187 }
188 list_add(&cd->head, &dpd->channel_detectors);
189 return cd;
190
191fail:
Janusz Dziedzic95a59922013-10-14 11:06:03 +0200192 ath_dbg(dpd->common, DFS,
Zefir Kurtisica21cfd2013-04-15 11:29:06 +0200193 "failed to allocate channel_detector for freq=%d\n", freq);
Zefir Kurtisi6ee159e2012-04-03 17:15:49 +0200194 channel_detector_exit(dpd, cd);
195 return NULL;
196}
197
198/**
199 * channel_detector_get() - get channel detector for given frequency
200 * @param dpd instance pointer
201 * @param freq frequency in MHz
202 * @return pointer to channel detector on success, NULL otherwise
203 *
204 * Return existing channel detector for the given frequency or return a
205 * newly create one.
206 */
207static struct channel_detector *
208channel_detector_get(struct dfs_pattern_detector *dpd, u16 freq)
209{
210 struct channel_detector *cd;
211 list_for_each_entry(cd, &dpd->channel_detectors, head) {
212 if (cd->freq == freq)
213 return cd;
214 }
215 return channel_detector_create(dpd, freq);
216}
217
218/*
219 * DFS Pattern Detector
220 */
221
222/* dpd_reset(): reset all channel detectors */
223static void dpd_reset(struct dfs_pattern_detector *dpd)
224{
225 struct channel_detector *cd;
226 if (!list_empty(&dpd->channel_detectors))
227 list_for_each_entry(cd, &dpd->channel_detectors, head)
228 channel_detector_reset(dpd, cd);
229
230}
231static void dpd_exit(struct dfs_pattern_detector *dpd)
232{
233 struct channel_detector *cd, *cd0;
234 if (!list_empty(&dpd->channel_detectors))
235 list_for_each_entry_safe(cd, cd0, &dpd->channel_detectors, head)
236 channel_detector_exit(dpd, cd);
237 kfree(dpd);
238}
239
240static bool
241dpd_add_pulse(struct dfs_pattern_detector *dpd, struct pulse_event *event)
242{
243 u32 i;
Zefir Kurtisi6ee159e2012-04-03 17:15:49 +0200244 struct channel_detector *cd;
245
Zefir Kurtisica21cfd2013-04-15 11:29:06 +0200246 /*
247 * pulses received for a non-supported or un-initialized
248 * domain are treated as detected radars for fail-safety
249 */
250 if (dpd->region == NL80211_DFS_UNSET)
Zefir Kurtisi6ee159e2012-04-03 17:15:49 +0200251 return true;
Zefir Kurtisi6ee159e2012-04-03 17:15:49 +0200252
253 cd = channel_detector_get(dpd, event->freq);
254 if (cd == NULL)
255 return false;
256
Zefir Kurtisi6ee159e2012-04-03 17:15:49 +0200257 dpd->last_pulse_ts = event->ts;
Zefir Kurtisica21cfd2013-04-15 11:29:06 +0200258 /* reset detector on time stamp wraparound, caused by TSF reset */
259 if (event->ts < dpd->last_pulse_ts)
Zefir Kurtisi6ee159e2012-04-03 17:15:49 +0200260 dpd_reset(dpd);
Zefir Kurtisica21cfd2013-04-15 11:29:06 +0200261
Zefir Kurtisi6ee159e2012-04-03 17:15:49 +0200262 /* do type individual pattern matching */
263 for (i = 0; i < dpd->num_radar_types; i++) {
Zefir Kurtisica21cfd2013-04-15 11:29:06 +0200264 struct pri_detector *pd = cd->detectors[i];
265 struct pri_sequence *ps = pd->add_pulse(pd, event);
266 if (ps != NULL) {
Janusz Dziedzic95a59922013-10-14 11:06:03 +0200267 ath_dbg(dpd->common, DFS,
Zefir Kurtisica21cfd2013-04-15 11:29:06 +0200268 "DFS: radar found on freq=%d: id=%d, pri=%d, "
269 "count=%d, count_false=%d\n",
270 event->freq, pd->rs->type_id,
271 ps->pri, ps->count, ps->count_falses);
Zefir Kurtisi6ee159e2012-04-03 17:15:49 +0200272 channel_detector_reset(dpd, cd);
273 return true;
274 }
275 }
276 return false;
277}
278
Janusz Dziedzicd2652142013-10-14 11:06:04 +0200279static struct ath_dfs_pool_stats
280dpd_get_stats(struct dfs_pattern_detector *dpd)
281{
282 return global_dfs_pool_stats;
283}
284
Zefir Kurtisi6ee159e2012-04-03 17:15:49 +0200285static bool dpd_set_domain(struct dfs_pattern_detector *dpd,
286 enum nl80211_dfs_regions region)
287{
288 const struct radar_types *rt;
289 struct channel_detector *cd, *cd0;
290
291 if (dpd->region == region)
292 return true;
293
294 dpd->region = NL80211_DFS_UNSET;
295
296 rt = get_dfs_domain_radar_types(region);
297 if (rt == NULL)
298 return false;
299
300 /* delete all channel detectors for previous DFS domain */
301 if (!list_empty(&dpd->channel_detectors))
302 list_for_each_entry_safe(cd, cd0, &dpd->channel_detectors, head)
303 channel_detector_exit(dpd, cd);
304 dpd->radar_spec = rt->radar_types;
305 dpd->num_radar_types = rt->num_radar_types;
306
307 dpd->region = region;
308 return true;
309}
310
311static struct dfs_pattern_detector default_dpd = {
312 .exit = dpd_exit,
Zefir Kurtisi259bcf82012-10-31 12:21:56 +0100313 .set_dfs_domain = dpd_set_domain,
Zefir Kurtisi6ee159e2012-04-03 17:15:49 +0200314 .add_pulse = dpd_add_pulse,
Janusz Dziedzicd2652142013-10-14 11:06:04 +0200315 .get_stats = dpd_get_stats,
Zefir Kurtisi6ee159e2012-04-03 17:15:49 +0200316 .region = NL80211_DFS_UNSET,
317};
318
319struct dfs_pattern_detector *
Janusz Dziedzic95a59922013-10-14 11:06:03 +0200320dfs_pattern_detector_init(struct ath_common *common,
321 enum nl80211_dfs_regions region)
Zefir Kurtisi6ee159e2012-04-03 17:15:49 +0200322{
323 struct dfs_pattern_detector *dpd;
Joe Perches0d2e7a52013-02-03 17:28:14 +0000324
Janusz Dziedzic379ce862013-10-14 11:06:05 +0200325 if (!config_enabled(CONFIG_CFG80211_CERTIFICATION_ONUS))
326 return NULL;
327
Zefir Kurtisi6ee159e2012-04-03 17:15:49 +0200328 dpd = kmalloc(sizeof(*dpd), GFP_KERNEL);
Joe Perches0d2e7a52013-02-03 17:28:14 +0000329 if (dpd == NULL)
Zefir Kurtisi6ee159e2012-04-03 17:15:49 +0200330 return NULL;
Joe Perches0d2e7a52013-02-03 17:28:14 +0000331
Zefir Kurtisi6ee159e2012-04-03 17:15:49 +0200332 *dpd = default_dpd;
333 INIT_LIST_HEAD(&dpd->channel_detectors);
334
Janusz Dziedzic95a59922013-10-14 11:06:03 +0200335 dpd->common = common;
Zefir Kurtisi259bcf82012-10-31 12:21:56 +0100336 if (dpd->set_dfs_domain(dpd, region))
Zefir Kurtisi6ee159e2012-04-03 17:15:49 +0200337 return dpd;
338
Zefir Kurtisica21cfd2013-04-15 11:29:06 +0200339 ath_dbg(common, DFS,"Could not set DFS domain to %d", region);
Zefir Kurtisi70bf8702012-10-31 12:22:34 +0100340 kfree(dpd);
Zefir Kurtisi6ee159e2012-04-03 17:15:49 +0200341 return NULL;
342}
343EXPORT_SYMBOL(dfs_pattern_detector_init);